core/CMakeLists: Make some warnings errors
Makes our error coverage a little more consistent across the board by applying it to Linux side of things as well. This also makes it more consistent with the warning settings in other libraries in the project. This also updates httplib to 0.7.9, as there are several warning cleanups made that allow us to enable several warnings as errors.
This commit is contained in:
parent
d291fc1a51
commit
39c8d18feb
32 changed files with 3243 additions and 1539 deletions
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@ -38,10 +38,11 @@ public:
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explicit RequestHelperBase(Kernel::HLERequestContext& context)
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: context(&context), cmdbuf(context.CommandBuffer()) {}
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void Skip(unsigned size_in_words, bool set_to_null) {
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if (set_to_null)
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void Skip(u32 size_in_words, bool set_to_null) {
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if (set_to_null) {
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memset(cmdbuf + index, 0, size_in_words * sizeof(u32));
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index += size_in_words;
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}
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index += static_cast<ptrdiff_t>(size_in_words);
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}
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/**
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@ -49,15 +50,15 @@ public:
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*/
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void AlignWithPadding() {
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if (index & 3) {
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Skip(4 - (index & 3), true);
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Skip(static_cast<u32>(4 - (index & 3)), true);
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}
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}
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unsigned GetCurrentOffset() const {
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return static_cast<unsigned>(index);
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u32 GetCurrentOffset() const {
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return static_cast<u32>(index);
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}
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void SetCurrentOffset(unsigned offset) {
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void SetCurrentOffset(u32 offset) {
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index = static_cast<ptrdiff_t>(offset);
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}
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};
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@ -89,7 +90,7 @@ public:
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// The entire size of the raw data section in u32 units, including the 16 bytes of mandatory
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// padding.
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u32 raw_data_size = sizeof(IPC::DataPayloadHeader) / 4 + 4 + normal_params_size;
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u64 raw_data_size = sizeof(IPC::DataPayloadHeader) / 4 + 4 + normal_params_size;
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u32 num_handles_to_move{};
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u32 num_domain_objects{};
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@ -105,7 +106,7 @@ public:
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raw_data_size += sizeof(DomainMessageHeader) / 4 + num_domain_objects;
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}
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header.data_size.Assign(raw_data_size);
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header.data_size.Assign(static_cast<u32>(raw_data_size));
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if (num_handles_to_copy || num_handles_to_move) {
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header.enable_handle_descriptor.Assign(1);
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}
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@ -118,7 +118,7 @@ std::shared_ptr<Object> HandleTable::GetGeneric(Handle handle) const {
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void HandleTable::Clear() {
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for (u16 i = 0; i < table_size; ++i) {
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generations[i] = i + 1;
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generations[i] = static_cast<u16>(i + 1);
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objects[i] = nullptr;
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}
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next_free_slot = 0;
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@ -72,7 +72,7 @@ u32 GlobalScheduler::SelectThreads() {
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if (top_thread != nullptr) {
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// TODO(Blinkhawk): Implement Thread Pinning
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} else {
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idle_cores |= (1ul << core);
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idle_cores |= (1U << core);
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}
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top_threads[core] = top_thread;
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}
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@ -126,7 +126,7 @@ u32 GlobalScheduler::SelectThreads() {
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top_threads[core_id] = suggested;
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}
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idle_cores &= ~(1ul << core_id);
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idle_cores &= ~(1U << core_id);
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}
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u32 cores_needing_context_switch{};
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for (u32 core = 0; core < Core::Hardware::NUM_CPU_CORES; core++) {
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@ -134,7 +134,7 @@ u32 GlobalScheduler::SelectThreads() {
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ASSERT(top_threads[core] == nullptr ||
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static_cast<u32>(top_threads[core]->GetProcessorID()) == core);
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if (update_thread(top_threads[core], sched)) {
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cores_needing_context_switch |= (1ul << core);
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cores_needing_context_switch |= (1U << core);
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}
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}
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return cores_needing_context_switch;
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@ -364,7 +364,7 @@ void GlobalScheduler::EnableInterruptAndSchedule(u32 cores_pending_reschedule,
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} else {
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must_context_switch = true;
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}
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cores_pending_reschedule &= ~(1ul << core);
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cores_pending_reschedule &= ~(1U << core);
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}
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if (must_context_switch) {
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auto& core_scheduler = kernel.CurrentScheduler();
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@ -767,7 +767,7 @@ void Scheduler::SwitchToCurrent() {
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current_thread->context_guard.unlock();
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break;
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}
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if (current_thread->GetProcessorID() != core_id) {
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if (static_cast<u32>(current_thread->GetProcessorID()) != core_id) {
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current_thread->context_guard.unlock();
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break;
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}
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@ -196,7 +196,9 @@ private:
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const std::string& content_type_name) {
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if (client == nullptr) {
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client = std::make_unique<httplib::SSLClient>(BOXCAT_HOSTNAME, PORT);
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client->set_timeout_sec(timeout_seconds);
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client->set_connection_timeout(timeout_seconds);
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client->set_read_timeout(timeout_seconds);
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client->set_write_timeout(timeout_seconds);
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}
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httplib::Headers headers{
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@ -255,7 +257,7 @@ private:
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return out;
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}
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std::unique_ptr<httplib::Client> client;
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std::unique_ptr<httplib::SSLClient> client;
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std::string path;
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u64 title_id;
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u64 build_id;
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@ -443,7 +445,9 @@ std::optional<std::vector<u8>> Boxcat::GetLaunchParameter(TitleIDVersion title)
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Boxcat::StatusResult Boxcat::GetStatus(std::optional<std::string>& global,
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std::map<std::string, EventStatus>& games) {
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httplib::SSLClient client{BOXCAT_HOSTNAME, static_cast<int>(PORT)};
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client.set_timeout_sec(static_cast<int>(TIMEOUT_SECONDS));
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client.set_connection_timeout(static_cast<int>(TIMEOUT_SECONDS));
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client.set_read_timeout(static_cast<int>(TIMEOUT_SECONDS));
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client.set_write_timeout(static_cast<int>(TIMEOUT_SECONDS));
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httplib::Headers headers{
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{std::string("Game-Assets-API-Version"), std::string(BOXCAT_API_VERSION)},
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@ -42,8 +42,8 @@ void Controller_Keyboard::OnUpdate(const Core::Timing::CoreTiming& core_timing,
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cur_entry.modifier = 0;
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if (Settings::values.keyboard_enabled) {
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for (std::size_t i = 0; i < keyboard_keys.size(); ++i) {
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cur_entry.key[i / KEYS_PER_BYTE] |=
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(keyboard_keys[i]->GetStatus() << (i % KEYS_PER_BYTE));
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auto& entry = cur_entry.key[i / KEYS_PER_BYTE];
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entry = static_cast<u8>(entry | (keyboard_keys[i]->GetStatus() << (i % KEYS_PER_BYTE)));
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}
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for (std::size_t i = 0; i < keyboard_mods.size(); ++i) {
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@ -269,7 +269,6 @@ void Controller_NPad::RequestPadStateUpdate(u32 npad_id) {
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auto& rstick_entry = npad_pad_states[controller_idx].r_stick;
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const auto& button_state = buttons[controller_idx];
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const auto& analog_state = sticks[controller_idx];
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const auto& motion_state = motions[controller_idx];
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const auto [stick_l_x_f, stick_l_y_f] =
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analog_state[static_cast<std::size_t>(JoystickId::Joystick_Left)]->GetStatus();
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const auto [stick_r_x_f, stick_r_y_f] =
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libnx_entry.connection_status.raw = 0;
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libnx_entry.connection_status.IsConnected.Assign(1);
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auto& full_sixaxis_entry =
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npad.sixaxis_full.sixaxis[npad.sixaxis_full.common.last_entry_index];
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auto& handheld_sixaxis_entry =
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npad.sixaxis_handheld.sixaxis[npad.sixaxis_handheld.common.last_entry_index];
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auto& dual_left_sixaxis_entry =
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npad.sixaxis_dual_left.sixaxis[npad.sixaxis_dual_left.common.last_entry_index];
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auto& dual_right_sixaxis_entry =
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npad.sixaxis_dual_right.sixaxis[npad.sixaxis_dual_right.common.last_entry_index];
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auto& left_sixaxis_entry =
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npad.sixaxis_left.sixaxis[npad.sixaxis_left.common.last_entry_index];
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auto& right_sixaxis_entry =
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npad.sixaxis_right.sixaxis[npad.sixaxis_right.common.last_entry_index];
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switch (controller_type) {
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case NPadControllerType::None:
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}
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}
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auto& main_controller =
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npad.main_controller_states.npad[npad.main_controller_states.common.last_entry_index];
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auto& handheld_entry =
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npad.handheld_states.npad[npad.handheld_states.common.last_entry_index];
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auto& dual_entry = npad.dual_states.npad[npad.dual_states.common.last_entry_index];
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auto& left_entry = npad.left_joy_states.npad[npad.left_joy_states.common.last_entry_index];
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auto& right_entry =
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npad.right_joy_states.npad[npad.right_joy_states.common.last_entry_index];
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auto& pokeball_entry =
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npad.pokeball_states.npad[npad.pokeball_states.common.last_entry_index];
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auto& libnx_entry = npad.libnx.npad[npad.libnx.common.last_entry_index];
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auto& full_sixaxis_entry =
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npad.sixaxis_full.sixaxis[npad.sixaxis_full.common.last_entry_index];
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auto& handheld_sixaxis_entry =
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@ -475,7 +475,7 @@ void Hid::StopSixAxisSensor(Kernel::HLERequestContext& ctx) {
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void Hid::EnableSixAxisSensorFusion(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp{ctx};
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const auto enable{rp.Pop<bool>()};
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[[maybe_unused]] const auto enable{rp.Pop<bool>()};
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const auto handle{rp.Pop<u32>()};
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const auto applet_resource_user_id{rp.Pop<u64>()};
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@ -428,7 +428,7 @@ bool MiiManager::IsFullDatabase() const {
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}
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u32 MiiManager::GetCount(SourceFlag source_flag) const {
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u32 count{};
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std::size_t count{};
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if ((source_flag & SourceFlag::Database) != SourceFlag::None) {
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// TODO(bunnei): We don't implement the Mii database, but when we do, update this
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count += 0;
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if ((source_flag & SourceFlag::Default) != SourceFlag::None) {
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count += DefaultMiiCount;
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}
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return count;
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return static_cast<u32>(count);
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}
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ResultVal<MiiInfo> MiiManager::UpdateLatest([[maybe_unused]] const MiiInfo& info,
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@ -89,9 +89,9 @@ Network::Protocol Translate(Type type, Protocol protocol) {
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}
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}
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u16 TranslatePollEventsToHost(u16 flags) {
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u16 result = 0;
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const auto translate = [&result, &flags](u16 from, u16 to) {
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u16 TranslatePollEventsToHost(u32 flags) {
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u32 result = 0;
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const auto translate = [&result, &flags](u32 from, u32 to) {
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if ((flags & from) != 0) {
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flags &= ~from;
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result |= to;
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translate(POLL_NVAL, Network::POLL_NVAL);
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UNIMPLEMENTED_IF_MSG(flags != 0, "Unimplemented flags={}", flags);
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return result;
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return static_cast<u16>(result);
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}
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u16 TranslatePollEventsToGuest(u16 flags) {
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u16 result = 0;
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const auto translate = [&result, &flags](u16 from, u16 to) {
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u16 TranslatePollEventsToGuest(u32 flags) {
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u32 result = 0;
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const auto translate = [&result, &flags](u32 from, u32 to) {
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if ((flags & from) != 0) {
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flags &= ~from;
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result |= to;
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translate(Network::POLL_NVAL, POLL_NVAL);
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UNIMPLEMENTED_IF_MSG(flags != 0, "Unimplemented flags={}", flags);
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return result;
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return static_cast<u16>(result);
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}
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Network::SockAddrIn Translate(SockAddrIn value) {
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@ -31,10 +31,10 @@ Network::Type Translate(Type type);
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Network::Protocol Translate(Type type, Protocol protocol);
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/// Translate abstract poll event flags to guest poll event flags
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u16 TranslatePollEventsToHost(u16 flags);
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u16 TranslatePollEventsToHost(u32 flags);
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/// Translate guest poll event flags to abstract poll event flags
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u16 TranslatePollEventsToGuest(u16 flags);
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u16 TranslatePollEventsToGuest(u32 flags);
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/// Translate guest socket address structure to abstract socket address structure
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Network::SockAddrIn Translate(SockAddrIn value);
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@ -820,7 +820,10 @@ static ResultCode ToCalendarTimeImpl(const TimeZoneRule& rules, s64 time, Calend
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const ResultCode result{
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ToCalendarTimeInternal(rules, time, calendar_time, calendar.additiona_info)};
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calendar.time.year = static_cast<s16>(calendar_time.year);
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calendar.time.month = calendar_time.month + 1; // Internal impl. uses 0-indexed month
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// Internal impl. uses 0-indexed month
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calendar.time.month = static_cast<s8>(calendar_time.month + 1);
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calendar.time.day = calendar_time.day;
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calendar.time.hour = calendar_time.hour;
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calendar.time.minute = calendar_time.minute;
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const CalendarTime& calendar_time, s64& posix_time) const {
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posix_time = 0;
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CalendarTimeInternal internal_time{};
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internal_time.year = calendar_time.year;
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internal_time.month = calendar_time.month - 1; // Internal impl. uses 0-indexed month
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internal_time.day = calendar_time.day;
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internal_time.hour = calendar_time.hour;
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internal_time.minute = calendar_time.minute;
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internal_time.second = calendar_time.second;
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CalendarTimeInternal internal_time{
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.year = calendar_time.year,
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// Internal impl. uses 0-indexed month
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.month = static_cast<s8>(calendar_time.month - 1),
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.day = calendar_time.day,
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.hour = calendar_time.hour,
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.minute = calendar_time.minute,
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.second = calendar_time.second,
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};
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s32 hour{internal_time.hour};
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s32 minute{internal_time.minute};
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@ -159,7 +159,7 @@ public:
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header.data_size = static_cast<u32_le>(write_index - sizeof(Header));
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header.data_offset = sizeof(Header);
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header.objects_size = 4;
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header.objects_offset = sizeof(Header) + header.data_size;
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header.objects_offset = static_cast<u32>(sizeof(Header) + header.data_size);
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std::memcpy(buffer.data(), &header, sizeof(Header));
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return buffer;
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