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build: Fix compiling citra-qt for iOS. (#6983)
* build: Fix compiling citra-qt for iOS. * Update src/citra_qt/configuration/configure_general.cpp Co-authored-by: Tobias <thm.frey@gmail.com> --------- Co-authored-by: Tobias <thm.frey@gmail.com>
This commit is contained in:
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d1c16bad78
commit
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@ -292,7 +292,11 @@ public:
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if (GetWindowSystemType() == Frontend::WindowSystemType::Wayland) {
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if (GetWindowSystemType() == Frontend::WindowSystemType::Wayland) {
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setAttribute(Qt::WA_DontCreateNativeAncestors);
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setAttribute(Qt::WA_DontCreateNativeAncestors);
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}
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}
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#ifdef __APPLE__
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windowHandle()->setSurfaceType(QWindow::MetalSurface);
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#else
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windowHandle()->setSurfaceType(QWindow::VulkanSurface);
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windowHandle()->setSurfaceType(QWindow::VulkanSurface);
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#endif
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}
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}
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QPaintEngine* paintEngine() const override {
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QPaintEngine* paintEngine() const override {
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@ -31,7 +31,8 @@ ConfigureGeneral::ConfigureGeneral(QWidget* parent)
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// Set a minimum width for the label to prevent the slider from changing size.
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// Set a minimum width for the label to prevent the slider from changing size.
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// This scales across DPIs, and is acceptable for uncapitalized strings.
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// This scales across DPIs, and is acceptable for uncapitalized strings.
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ui->emulation_speed_display_label->setMinimumWidth(tr("unthrottled").size() * 6);
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const auto width = static_cast<int>(tr("unthrottled").size() * 6);
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ui->emulation_speed_display_label->setMinimumWidth(width);
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ui->emulation_speed_combo->setVisible(!Settings::IsConfiguringGlobal());
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ui->emulation_speed_combo->setVisible(!Settings::IsConfiguringGlobal());
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ui->screenshot_combo->setVisible(!Settings::IsConfiguringGlobal());
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ui->screenshot_combo->setVisible(!Settings::IsConfiguringGlobal());
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ui->updateBox->setVisible(UISettings::values.updater_found);
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ui->updateBox->setVisible(UISettings::values.updater_found);
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@ -285,12 +285,12 @@ void ConfigureSystem::SetConfiguration() {
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date_time.setSecsSinceEpoch(Settings::values.init_time.GetValue());
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date_time.setSecsSinceEpoch(Settings::values.init_time.GetValue());
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ui->edit_init_time->setDateTime(date_time);
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ui->edit_init_time->setDateTime(date_time);
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long long init_time_offset = Settings::values.init_time_offset.GetValue();
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s64 init_time_offset = Settings::values.init_time_offset.GetValue();
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long long days_offset = init_time_offset / 86400;
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int days_offset = static_cast<int>(init_time_offset / 86400);
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ui->edit_init_time_offset_days->setValue(days_offset);
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ui->edit_init_time_offset_days->setValue(days_offset);
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unsigned long long time_offset = std::abs(init_time_offset) - std::abs(days_offset * 86400);
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u64 time_offset = std::abs(init_time_offset) - std::abs(days_offset * 86400);
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QTime time = QTime::fromMSecsSinceStartOfDay(time_offset * 1000);
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QTime time = QTime::fromMSecsSinceStartOfDay(static_cast<int>(time_offset * 1000));
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ui->edit_init_time_offset_time->setTime(time);
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ui->edit_init_time_offset_time->setTime(time);
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if (!enabled) {
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if (!enabled) {
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@ -180,9 +180,10 @@ void LoadingScreen::OnLoadProgress(VideoCore::LoadCallbackStage stage, std::size
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}
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}
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const auto eta_mseconds = std::chrono::duration_cast<std::chrono::milliseconds>(
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const auto eta_mseconds = std::chrono::duration_cast<std::chrono::milliseconds>(
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rolling_average * (total - value));
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rolling_average * (total - value));
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const auto limited_mseconds = std::max<long>(eta_mseconds.count(), 1000);
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estimate = tr("Estimated Time %1")
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estimate = tr("Estimated Time %1")
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.arg(QTime(0, 0, 0, 0)
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.arg(QTime(0, 0, 0, 0)
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.addMSecs(std::max<long>(eta_mseconds.count(), 1000))
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.addMSecs(static_cast<int>(limited_mseconds))
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.toString(QStringLiteral("mm:ss")));
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.toString(QStringLiteral("mm:ss")));
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}
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}
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@ -125,8 +125,8 @@ void MoviePlayDialog::UpdateUIDisplay() {
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} else {
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} else {
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const u64 msecs = Service::HID::Module::pad_update_ticks * metadata.input_count * 1000 /
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const u64 msecs = Service::HID::Module::pad_update_ticks * metadata.input_count * 1000 /
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BASE_CLOCK_RATE_ARM11;
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BASE_CLOCK_RATE_ARM11;
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ui->lengthLineEdit->setText(
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ui->lengthLineEdit->setText(QTime::fromMSecsSinceStartOfDay(static_cast<int>(msecs))
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QTime::fromMSecsSinceStartOfDay(msecs).toString(QStringLiteral("hh:mm:ss.zzz")));
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.toString(QStringLiteral("hh:mm:ss.zzz")));
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}
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}
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}
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}
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}
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}
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@ -284,7 +284,7 @@ bool LobbyFilterProxyModel::filterAcceptsRow(int sourceRow, const QModelIndex& s
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// filter by empty rooms
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// filter by empty rooms
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if (filter_empty) {
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if (filter_empty) {
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QModelIndex member_list = sourceModel()->index(sourceRow, Column::MEMBER, sourceParent);
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QModelIndex member_list = sourceModel()->index(sourceRow, Column::MEMBER, sourceParent);
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const int player_count =
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const qsizetype player_count =
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sourceModel()->data(member_list, LobbyItemMemberList::MemberListRole).toList().size();
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sourceModel()->data(member_list, LobbyItemMemberList::MemberListRole).toList().size();
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if (player_count == 0) {
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if (player_count == 0) {
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return false;
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return false;
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@ -294,7 +294,7 @@ bool LobbyFilterProxyModel::filterAcceptsRow(int sourceRow, const QModelIndex& s
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// filter by filled rooms
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// filter by filled rooms
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if (filter_full) {
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if (filter_full) {
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QModelIndex member_list = sourceModel()->index(sourceRow, Column::MEMBER, sourceParent);
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QModelIndex member_list = sourceModel()->index(sourceRow, Column::MEMBER, sourceParent);
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const int player_count =
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const qsizetype player_count =
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sourceModel()->data(member_list, LobbyItemMemberList::MemberListRole).toList().size();
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sourceModel()->data(member_list, LobbyItemMemberList::MemberListRole).toList().size();
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const int max_players =
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const int max_players =
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sourceModel()->data(member_list, LobbyItemMemberList::MaxPlayerRole).toInt();
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sourceModel()->data(member_list, LobbyItemMemberList::MaxPlayerRole).toInt();
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@ -198,8 +198,8 @@ public:
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bool operator<(const QStandardItem& other) const override {
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bool operator<(const QStandardItem& other) const override {
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// sort by rooms that have the most players
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// sort by rooms that have the most players
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int left_members = data(MemberListRole).toList().size();
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qsizetype left_members = data(MemberListRole).toList().size();
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int right_members = other.data(MemberListRole).toList().size();
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qsizetype right_members = other.data(MemberListRole).toList().size();
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return left_members < right_members;
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return left_members < right_members;
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}
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}
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};
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};
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@ -194,7 +194,7 @@ QString CSpinBox::TextFromValue() {
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}
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}
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qint64 CSpinBox::ValueFromText() {
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qint64 CSpinBox::ValueFromText() {
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unsigned strpos = prefix.length();
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qsizetype strpos = prefix.length();
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QString num_string = text().mid(strpos, text().length() - strpos - suffix.length());
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QString num_string = text().mid(strpos, text().length() - strpos - suffix.length());
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return num_string.toLongLong(nullptr, base);
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return num_string.toLongLong(nullptr, base);
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@ -216,7 +216,7 @@ QValidator::State CSpinBox::validate(QString& input, int& pos) const {
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if (!prefix.isEmpty() && input.left(prefix.length()) != prefix)
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if (!prefix.isEmpty() && input.left(prefix.length()) != prefix)
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return QValidator::Invalid;
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return QValidator::Invalid;
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int strpos = prefix.length();
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qsizetype strpos = prefix.length();
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// Empty "numbers" allowed as intermediate values
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// Empty "numbers" allowed as intermediate values
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if (strpos >= input.length() - HasSign() - suffix.length())
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if (strpos >= input.length() - HasSign() - suffix.length())
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@ -245,7 +245,7 @@ QValidator::State CSpinBox::validate(QString& input, int& pos) const {
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// Match string
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// Match string
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QRegularExpression num_regexp(QRegularExpression::anchoredPattern(regexp));
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QRegularExpression num_regexp(QRegularExpression::anchoredPattern(regexp));
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int num_pos = strpos;
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qsizetype num_pos = strpos;
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QString sub_input = input.mid(strpos, input.length() - strpos - suffix.length());
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QString sub_input = input.mid(strpos, input.length() - strpos - suffix.length());
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auto match = num_regexp.match(sub_input);
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auto match = num_regexp.match(sub_input);
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@ -197,9 +197,9 @@ GatewayCheat::CheatLine::CheatLine(const std::string& line) {
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if (type_temp == "D" || type_temp == "d")
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if (type_temp == "D" || type_temp == "d")
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sub_type_temp = line.substr(1, 1);
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sub_type_temp = line.substr(1, 1);
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type = static_cast<CheatType>(std::stoi(type_temp + sub_type_temp, 0, 16));
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type = static_cast<CheatType>(std::stoi(type_temp + sub_type_temp, 0, 16));
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first = std::stoul(line.substr(0, 8), 0, 16);
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first = static_cast<u32>(std::stoul(line.substr(0, 8), 0, 16));
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address = first & 0x0FFFFFFF;
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address = first & 0x0FFFFFFF;
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value = std::stoul(line.substr(9, 8), 0, 16);
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value = static_cast<u32>(std::stoul(line.substr(9, 8), 0, 16));
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cheat_line = line;
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cheat_line = line;
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} catch (const std::logic_error&) {
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} catch (const std::logic_error&) {
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type = CheatType::Null;
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type = CheatType::Null;
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@ -513,7 +513,7 @@ bool FFmpegAudioStream::Init(FFmpegMuxer& muxer) {
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}
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}
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if (codec_context->frame_size) {
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if (codec_context->frame_size) {
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frame_size = static_cast<u64>(codec_context->frame_size);
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frame_size = codec_context->frame_size;
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} else { // variable frame size support
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} else { // variable frame size support
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frame_size = std::tuple_size<AudioCore::StereoFrame16>::value;
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frame_size = std::tuple_size<AudioCore::StereoFrame16>::value;
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}
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}
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@ -184,7 +184,7 @@ Loader::ResultStatus FileSys::Plugin3GXLoader::Map(
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const u32 block_size = mem_region_sizes[header.infos.flags.memory_region_size.Value()];
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const u32 block_size = mem_region_sizes[header.infos.flags.memory_region_size.Value()];
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const u32 exe_size = (sizeof(PluginHeader) + text_section.size() + rodata_section.size() +
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const u32 exe_size = (sizeof(PluginHeader) + text_section.size() + rodata_section.size() +
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data_section.size() + header.executable.bss_size + 0x1000) &
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data_section.size() + header.executable.bss_size + 0x1000) &
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~0xFFF;
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~0xFFFu;
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// Allocate the framebuffer block so that is in the highest FCRAM position possible
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// Allocate the framebuffer block so that is in the highest FCRAM position possible
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auto offset_fb =
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auto offset_fb =
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@ -509,7 +509,8 @@ void SendReply(const char* reply) {
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u8* ptr = command_buffer;
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u8* ptr = command_buffer;
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u32 left = command_length + 4;
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u32 left = command_length + 4;
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while (left > 0) {
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while (left > 0) {
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int sent_size = send(gdbserver_socket, reinterpret_cast<char*>(ptr), left, 0);
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s32 sent_size =
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static_cast<s32>(send(gdbserver_socket, reinterpret_cast<char*>(ptr), left, 0));
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if (sent_size < 0) {
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if (sent_size < 0) {
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LOG_ERROR(Debug_GDBStub, "gdb: send failed");
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LOG_ERROR(Debug_GDBStub, "gdb: send failed");
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return Shutdown();
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return Shutdown();
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@ -589,7 +589,7 @@ std::string GetTitleMetadataPath(Service::FS::MediaType media_type, u64 tid, boo
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Common::SplitPath(entry.virtualName, nullptr, &filename_filename, &filename_extension);
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Common::SplitPath(entry.virtualName, nullptr, &filename_filename, &filename_extension);
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if (filename_extension == ".tmd") {
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if (filename_extension == ".tmd") {
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const u32 id = std::stoul(filename_filename, nullptr, 16);
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const u32 id = static_cast<u32>(std::stoul(filename_filename, nullptr, 16));
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base_id = std::min(base_id, id);
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base_id = std::min(base_id, id);
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update_id = std::max(update_id, id);
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update_id = std::max(update_id, id);
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}
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}
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@ -982,11 +982,13 @@ void SOC_U::SendToOther(Kernel::HLERequestContext& ctx) {
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CTRSockAddr ctr_dest_addr;
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CTRSockAddr ctr_dest_addr;
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std::memcpy(&ctr_dest_addr, dest_addr_buffer.data(), sizeof(ctr_dest_addr));
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std::memcpy(&ctr_dest_addr, dest_addr_buffer.data(), sizeof(ctr_dest_addr));
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sockaddr dest_addr = CTRSockAddr::ToPlatform(ctr_dest_addr);
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sockaddr dest_addr = CTRSockAddr::ToPlatform(ctr_dest_addr);
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ret = ::sendto(fd_info->second.socket_fd, reinterpret_cast<const char*>(input_buff.data()),
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ret = static_cast<s32>(::sendto(fd_info->second.socket_fd,
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len, flags, &dest_addr, sizeof(dest_addr));
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reinterpret_cast<const char*>(input_buff.data()), len,
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flags, &dest_addr, sizeof(dest_addr)));
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} else {
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} else {
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ret = ::sendto(fd_info->second.socket_fd, reinterpret_cast<const char*>(input_buff.data()),
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ret = static_cast<s32>(::sendto(fd_info->second.socket_fd,
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len, flags, nullptr, 0);
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reinterpret_cast<const char*>(input_buff.data()), len,
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flags, nullptr, 0));
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}
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}
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const auto send_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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const auto send_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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@ -1040,11 +1042,13 @@ void SOC_U::SendTo(Kernel::HLERequestContext& ctx) {
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CTRSockAddr ctr_dest_addr;
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CTRSockAddr ctr_dest_addr;
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std::memcpy(&ctr_dest_addr, dest_addr_buff.data(), sizeof(ctr_dest_addr));
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std::memcpy(&ctr_dest_addr, dest_addr_buff.data(), sizeof(ctr_dest_addr));
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sockaddr dest_addr = CTRSockAddr::ToPlatform(ctr_dest_addr);
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sockaddr dest_addr = CTRSockAddr::ToPlatform(ctr_dest_addr);
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ret = ::sendto(fd_info->second.socket_fd, reinterpret_cast<const char*>(input_buff.data()),
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ret = static_cast<s32>(::sendto(fd_info->second.socket_fd,
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len, flags, &dest_addr, sizeof(dest_addr));
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reinterpret_cast<const char*>(input_buff.data()), len,
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flags, &dest_addr, sizeof(dest_addr)));
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} else {
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} else {
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ret = ::sendto(fd_info->second.socket_fd, reinterpret_cast<const char*>(input_buff.data()),
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ret = static_cast<s32>(::sendto(fd_info->second.socket_fd,
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len, flags, nullptr, 0);
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reinterpret_cast<const char*>(input_buff.data()), len,
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flags, nullptr, 0));
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}
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}
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auto send_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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auto send_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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@ -1103,15 +1107,17 @@ void SOC_U::RecvFromOther(Kernel::HLERequestContext& ctx) {
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}
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}
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if (addr_len > 0) {
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if (addr_len > 0) {
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ret = ::recvfrom(fd_info->second.socket_fd, reinterpret_cast<char*>(output_buff.data()),
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ret = static_cast<s32>(::recvfrom(fd_info->second.socket_fd,
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len, flags, &src_addr, &src_addr_len);
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reinterpret_cast<char*>(output_buff.data()), len, flags,
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&src_addr, &src_addr_len));
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if (ret >= 0 && src_addr_len > 0) {
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if (ret >= 0 && src_addr_len > 0) {
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ctr_src_addr = CTRSockAddr::FromPlatform(src_addr);
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ctr_src_addr = CTRSockAddr::FromPlatform(src_addr);
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std::memcpy(addr_buff.data(), &ctr_src_addr, addr_len);
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std::memcpy(addr_buff.data(), &ctr_src_addr, addr_len);
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}
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}
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} else {
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} else {
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ret = ::recvfrom(fd_info->second.socket_fd, reinterpret_cast<char*>(output_buff.data()),
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ret = static_cast<s32>(::recvfrom(fd_info->second.socket_fd,
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len, flags, NULL, 0);
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reinterpret_cast<char*>(output_buff.data()), len, flags,
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NULL, 0));
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addr_buff.resize(0);
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addr_buff.resize(0);
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}
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}
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int recv_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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int recv_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
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@ -1178,15 +1184,17 @@ void SOC_U::RecvFrom(Kernel::HLERequestContext& ctx) {
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}
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}
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if (addr_len > 0) {
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if (addr_len > 0) {
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// Only get src adr if input adr available
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// Only get src adr if input adr available
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ret = ::recvfrom(fd_info->second.socket_fd, reinterpret_cast<char*>(output_buff.data()),
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ret = static_cast<s32>(::recvfrom(fd_info->second.socket_fd,
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len, flags, &src_addr, &src_addr_len);
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reinterpret_cast<char*>(output_buff.data()), len, flags,
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&src_addr, &src_addr_len));
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if (ret >= 0 && src_addr_len > 0) {
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if (ret >= 0 && src_addr_len > 0) {
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ctr_src_addr = CTRSockAddr::FromPlatform(src_addr);
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ctr_src_addr = CTRSockAddr::FromPlatform(src_addr);
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std::memcpy(addr_buff.data(), &ctr_src_addr, addr_len);
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std::memcpy(addr_buff.data(), &ctr_src_addr, addr_len);
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}
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}
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} else {
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} else {
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ret = ::recvfrom(fd_info->second.socket_fd, reinterpret_cast<char*>(output_buff.data()),
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ret = static_cast<s32>(::recvfrom(fd_info->second.socket_fd,
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len, flags, NULL, 0);
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reinterpret_cast<char*>(output_buff.data()), len, flags,
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NULL, 0));
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addr_buff.resize(0);
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addr_buff.resize(0);
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}
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}
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int recv_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
|
int recv_error = (ret == SOCKET_ERROR_VALUE) ? GET_ERRNO : 0;
|
||||||
|
@ -1753,7 +1761,11 @@ std::optional<SOC_U::InterfaceInfo> SOC_U::GetDefaultInterfaceInfo() {
|
||||||
}
|
}
|
||||||
|
|
||||||
InterfaceInfo ret;
|
InterfaceInfo ret;
|
||||||
s64 sock_fd = -1;
|
#ifdef _WIN32
|
||||||
|
SOCKET sock_fd = -1;
|
||||||
|
#else
|
||||||
|
int sock_fd = -1;
|
||||||
|
#endif
|
||||||
bool interface_found = false;
|
bool interface_found = false;
|
||||||
struct sockaddr_in s_in = {.sin_family = AF_INET, .sin_port = htons(53), .sin_addr = {}};
|
struct sockaddr_in s_in = {.sin_family = AF_INET, .sin_port = htons(53), .sin_addr = {}};
|
||||||
s_in.sin_addr.s_addr = inet_addr("8.8.8.8");
|
s_in.sin_addr.s_addr = inet_addr("8.8.8.8");
|
||||||
|
|
Loading…
Reference in a new issue