General: Tidy up clang-format warnings part 2
This commit is contained in:
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4605e4d6ff
commit
b724a4d90c
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@ -8,8 +8,6 @@ fi
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# Default clang-format points to default 3.5 version one
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CLANG_FORMAT=clang-format-10
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ls /usr/bin
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$CLANG_FORMAT --version
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if [ "$TRAVIS_EVENT_TYPE" = "pull_request" ]; then
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@ -78,7 +78,7 @@ public:
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const s16 surround_left{samples[i + 4]};
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const s16 surround_right{samples[i + 5]};
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// Not used in the ATSC reference implementation
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[[maybe_unused]] const s16 low_frequency_effects { samples[i + 3] };
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[[maybe_unused]] const s16 low_frequency_effects{samples[i + 3]};
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constexpr s32 clev{707}; // center mixing level coefficient
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constexpr s32 slev{707}; // surround mixing level coefficient
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@ -161,7 +161,7 @@ public:
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}
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}
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/// This constructor and assignment operator might be considered ambiguous:
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// This constructor and assignment operator might be considered ambiguous:
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// Would they initialize the storage or just the bitfield?
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// Hence, delete them. Use the Assign method to set bitfield values!
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BitField(T val) = delete;
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@ -34,8 +34,7 @@ void DetachedTasks::AddTask(std::function<void()> task) {
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std::unique_lock lock{instance->mutex};
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--instance->count;
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std::notify_all_at_thread_exit(instance->cv, std::move(lock));
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})
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.detach();
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}).detach();
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}
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} // namespace Common
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@ -54,6 +54,6 @@ struct Rectangle {
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};
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template <typename T>
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Rectangle(T, T, T, T)->Rectangle<T>;
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Rectangle(T, T, T, T) -> Rectangle<T>;
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} // namespace Common
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@ -133,8 +133,8 @@ public:
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// Parsing function defines the conversion from raw file to NCA. If there are other steps
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// besides creating the NCA from the file (e.g. NAX0 on SD Card), that should go in a custom
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// parsing function.
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explicit RegisteredCache(VirtualDir dir,
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ContentProviderParsingFunction parsing_function =
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explicit RegisteredCache(
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VirtualDir dir, ContentProviderParsingFunction parsing_function =
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[](const VirtualFile& file, const NcaID& id) { return file; });
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~RegisteredCache() override;
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@ -293,12 +293,14 @@ std::vector<u8> HLERequestContext::ReadBuffer(std::size_t buffer_index) const {
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BufferDescriptorA()[buffer_index].Size()};
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if (is_buffer_a) {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorA().size() > buffer_index, { return buffer; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorA().size() > buffer_index, { return buffer; },
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"BufferDescriptorA invalid buffer_index {}", buffer_index);
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buffer.resize(BufferDescriptorA()[buffer_index].Size());
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memory.ReadBlock(BufferDescriptorA()[buffer_index].Address(), buffer.data(), buffer.size());
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} else {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorX().size() > buffer_index, { return buffer; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorX().size() > buffer_index, { return buffer; },
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"BufferDescriptorX invalid buffer_index {}", buffer_index);
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buffer.resize(BufferDescriptorX()[buffer_index].Size());
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memory.ReadBlock(BufferDescriptorX()[buffer_index].Address(), buffer.data(), buffer.size());
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@ -324,16 +326,16 @@ std::size_t HLERequestContext::WriteBuffer(const void* buffer, std::size_t size,
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}
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if (is_buffer_b) {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorB().size() > buffer_index &&
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorB().size() > buffer_index &&
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BufferDescriptorB()[buffer_index].Size() >= size,
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{ return 0; }, "BufferDescriptorB is invalid, index={}, size={}",
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buffer_index, size);
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{ return 0; }, "BufferDescriptorB is invalid, index={}, size={}", buffer_index, size);
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memory.WriteBlock(BufferDescriptorB()[buffer_index].Address(), buffer, size);
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} else {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorC().size() > buffer_index &&
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorC().size() > buffer_index &&
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BufferDescriptorC()[buffer_index].Size() >= size,
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{ return 0; }, "BufferDescriptorC is invalid, index={}, size={}",
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buffer_index, size);
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{ return 0; }, "BufferDescriptorC is invalid, index={}, size={}", buffer_index, size);
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memory.WriteBlock(BufferDescriptorC()[buffer_index].Address(), buffer, size);
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}
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@ -344,11 +346,13 @@ std::size_t HLERequestContext::GetReadBufferSize(std::size_t buffer_index) const
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const bool is_buffer_a{BufferDescriptorA().size() > buffer_index &&
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BufferDescriptorA()[buffer_index].Size()};
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if (is_buffer_a) {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorA().size() > buffer_index, { return 0; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorA().size() > buffer_index, { return 0; },
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"BufferDescriptorA invalid buffer_index {}", buffer_index);
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return BufferDescriptorA()[buffer_index].Size();
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} else {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorX().size() > buffer_index, { return 0; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorX().size() > buffer_index, { return 0; },
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"BufferDescriptorX invalid buffer_index {}", buffer_index);
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return BufferDescriptorX()[buffer_index].Size();
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}
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@ -358,11 +362,13 @@ std::size_t HLERequestContext::GetWriteBufferSize(std::size_t buffer_index) cons
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const bool is_buffer_b{BufferDescriptorB().size() > buffer_index &&
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BufferDescriptorB()[buffer_index].Size()};
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if (is_buffer_b) {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorB().size() > buffer_index, { return 0; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorB().size() > buffer_index, { return 0; },
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"BufferDescriptorB invalid buffer_index {}", buffer_index);
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return BufferDescriptorB()[buffer_index].Size();
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} else {
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ASSERT_OR_EXECUTE_MSG(BufferDescriptorC().size() > buffer_index, { return 0; },
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ASSERT_OR_EXECUTE_MSG(
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BufferDescriptorC().size() > buffer_index, { return 0; },
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"BufferDescriptorC invalid buffer_index {}", buffer_index);
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return BufferDescriptorC()[buffer_index].Size();
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}
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@ -851,7 +851,8 @@ ResultCode PageTable::LockForDeviceAddressSpace(VAddr addr, std::size_t size) {
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return result;
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}
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block_manager->UpdateLock(addr, size / PageSize,
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block_manager->UpdateLock(
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addr, size / PageSize,
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[](MemoryBlockManager::iterator block, MemoryPermission perm) {
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block->ShareToDevice(perm);
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},
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@ -873,7 +874,8 @@ ResultCode PageTable::UnlockForDeviceAddressSpace(VAddr addr, std::size_t size)
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return result;
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}
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block_manager->UpdateLock(addr, size / PageSize,
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block_manager->UpdateLock(
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addr, size / PageSize,
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[](MemoryBlockManager::iterator block, MemoryPermission perm) {
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block->UnshareToDevice(perm);
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},
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@ -551,7 +551,8 @@ void WebBrowser::ExecuteShop() {
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}
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void WebBrowser::ExecuteOffline() {
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frontend.OpenPageLocal(filename, [this] { UnpackRomFS(); }, [this] { Finalize(); });
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frontend.OpenPageLocal(
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filename, [this] { UnpackRomFS(); }, [this] { Finalize(); });
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}
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} // namespace Service::AM::Applets
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@ -206,7 +206,7 @@ private:
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AudioCore::StreamPtr stream;
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std::string device_name;
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[[maybe_unused]] AudoutParams audio_params {};
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[[maybe_unused]] AudoutParams audio_params{};
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/// This is the event handle used to check if the audio buffer was released
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Kernel::EventPair buffer_event;
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@ -365,8 +365,7 @@ bool Boxcat::Synchronize(TitleIDVersion title, ProgressServiceBackend& progress)
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std::thread([this, title, &progress] {
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SynchronizeInternal(applet_manager, dir_getter, title, progress);
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})
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.detach();
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}).detach();
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return true;
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}
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@ -377,8 +376,7 @@ bool Boxcat::SynchronizeDirectory(TitleIDVersion title, std::string name,
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std::thread([this, title, name, &progress] {
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SynchronizeInternal(applet_manager, dir_getter, title, progress, name);
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})
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.detach();
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}).detach();
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return true;
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}
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@ -86,9 +86,11 @@ public:
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[[nodiscard]] s64 GetNextTicks() const;
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[[nodiscard]] std::unique_lock<std::mutex> Lock() const { return std::unique_lock{*guard}; }
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[[nodiscard]] std::unique_lock<std::mutex> Lock() const {
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return std::unique_lock{*guard};
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}
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private :
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private:
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/// Finds the display identified by the specified ID.
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[[nodiscard]] VI::Display* FindDisplay(u64 display_id);
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@ -224,8 +224,7 @@ void TestCommunication(const std::string& host, u16 port, u8 pad_index, u32 clie
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} else {
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failure_callback();
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}
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})
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.detach();
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}).detach();
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}
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CalibrationConfigurationJob::CalibrationConfigurationJob(
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complete_event.Wait();
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socket.Stop();
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worker_thread.join();
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})
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.detach();
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}).detach();
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}
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CalibrationConfigurationJob::~CalibrationConfigurationJob() {
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@ -756,8 +756,8 @@ public:
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}
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VkResult GetQueryResults(VkQueryPool query_pool, u32 first, u32 count, std::size_t data_size,
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void* data, VkDeviceSize stride, VkQueryResultFlags flags) const
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noexcept {
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void* data, VkDeviceSize stride,
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VkQueryResultFlags flags) const noexcept {
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return dld->vkGetQueryPoolResults(handle, query_pool, first, count, data_size, data, stride,
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flags);
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}
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dld->vkCmdBindPipeline(handle, bind_point, pipeline);
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}
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void BindIndexBuffer(VkBuffer buffer, VkDeviceSize offset, VkIndexType index_type) const
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noexcept {
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void BindIndexBuffer(VkBuffer buffer, VkDeviceSize offset,
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VkIndexType index_type) const noexcept {
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dld->vkCmdBindIndexBuffer(handle, buffer, offset, index_type);
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}
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BindVertexBuffers(binding, 1, &buffer, &offset);
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}
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void Draw(u32 vertex_count, u32 instance_count, u32 first_vertex, u32 first_instance) const
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noexcept {
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void Draw(u32 vertex_count, u32 instance_count, u32 first_vertex,
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u32 first_instance) const noexcept {
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dld->vkCmdDraw(handle, vertex_count, instance_count, first_vertex, first_instance);
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}
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first_instance);
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}
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void ClearAttachments(Span<VkClearAttachment> attachments, Span<VkClearRect> rects) const
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noexcept {
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void ClearAttachments(Span<VkClearAttachment> attachments,
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Span<VkClearRect> rects) const noexcept {
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dld->vkCmdClearAttachments(handle, attachments.size(), attachments.data(), rects.size(),
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rects.data());
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}
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void BlitImage(VkImage src_image, VkImageLayout src_layout, VkImage dst_image,
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VkImageLayout dst_layout, Span<VkImageBlit> regions, VkFilter filter) const
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noexcept {
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VkImageLayout dst_layout, Span<VkImageBlit> regions,
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VkFilter filter) const noexcept {
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dld->vkCmdBlitImage(handle, src_image, src_layout, dst_image, dst_layout, regions.size(),
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regions.data(), filter);
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}
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regions.data());
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}
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void CopyBuffer(VkBuffer src_buffer, VkBuffer dst_buffer, Span<VkBufferCopy> regions) const
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noexcept {
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void CopyBuffer(VkBuffer src_buffer, VkBuffer dst_buffer,
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Span<VkBufferCopy> regions) const noexcept {
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dld->vkCmdCopyBuffer(handle, src_buffer, dst_buffer, regions.size(), regions.data());
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}
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regions.data());
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}
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void FillBuffer(VkBuffer dst_buffer, VkDeviceSize dst_offset, VkDeviceSize size, u32 data) const
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noexcept {
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void FillBuffer(VkBuffer dst_buffer, VkDeviceSize dst_offset, VkDeviceSize size,
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u32 data) const noexcept {
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dld->vkCmdFillBuffer(handle, dst_buffer, dst_offset, size, data);
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}
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@ -187,7 +187,8 @@ std::optional<std::pair<BufferInfo, u64>> TrackLDC(const CFGRebuildState& state,
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std::optional<u64> TrackSHLRegister(const CFGRebuildState& state, u32& pos,
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u64 ldc_tracked_register) {
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return TrackInstruction<u64>(state, pos,
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return TrackInstruction<u64>(
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state, pos,
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[ldc_tracked_register](auto instr, const auto& opcode) {
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return opcode.GetId() == OpCode::Id::SHL_IMM &&
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instr.gpr0.Value() == ldc_tracked_register;
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std::optional<u32> TrackIMNMXValue(const CFGRebuildState& state, u32& pos,
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u64 shl_tracked_register) {
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return TrackInstruction<u32>(state, pos,
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return TrackInstruction<u32>(
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state, pos,
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[shl_tracked_register](auto instr, const auto& opcode) {
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return opcode.GetId() == OpCode::Id::IMNMX_IMM &&
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instr.gpr0.Value() == shl_tracked_register;
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@ -471,8 +471,8 @@ std::tuple<Node, Node, GlobalMemoryBase> ShaderIR::TrackGlobalMemory(NodeBlock&
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const auto [base_address, index, offset] =
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TrackCbuf(addr_register, global_code, static_cast<s64>(global_code.size()));
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ASSERT_OR_EXECUTE_MSG(base_address != nullptr,
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{ return std::make_tuple(nullptr, nullptr, GlobalMemoryBase{}); },
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ASSERT_OR_EXECUTE_MSG(
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base_address != nullptr, { return std::make_tuple(nullptr, nullptr, GlobalMemoryBase{}); },
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"Global memory tracking failed");
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bb.push_back(Comment(fmt::format("Base address is c[0x{:x}][0x{:x}]", index, offset)));
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@ -281,7 +281,8 @@ ConfigureInputPlayer::ConfigureInputPlayer(QWidget* parent, std::size_t player_i
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button->setContextMenuPolicy(Qt::CustomContextMenu);
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connect(button, &QPushButton::clicked, [=, this] {
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HandleClick(button_map[button_id],
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HandleClick(
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button_map[button_id],
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[=, this](Common::ParamPackage params) {
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// Workaround for ZL & ZR for analog triggers like on XBOX controllors.
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// Analog triggers (from controllers like the XBOX controller) would not
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@ -325,7 +326,8 @@ ConfigureInputPlayer::ConfigureInputPlayer(QWidget* parent, std::size_t player_i
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analog_button->setContextMenuPolicy(Qt::CustomContextMenu);
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connect(analog_button, &QPushButton::clicked, [=, this] {
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HandleClick(analog_map_buttons[analog_id][sub_button_id],
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HandleClick(
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analog_map_buttons[analog_id][sub_button_id],
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[=, this](const Common::ParamPackage& params) {
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SetAnalogButton(params, analogs_param[analog_id],
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analog_sub_buttons[sub_button_id]);
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@ -357,7 +359,8 @@ ConfigureInputPlayer::ConfigureInputPlayer(QWidget* parent, std::size_t player_i
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tr("After pressing OK, first move your joystick horizontally, "
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"and then vertically."),
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QMessageBox::Ok | QMessageBox::Cancel) == QMessageBox::Ok) {
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HandleClick(analog_map_stick[analog_id],
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HandleClick(
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analog_map_stick[analog_id],
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[=, this](const Common::ParamPackage& params) {
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analogs_param[analog_id] = params;
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},
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@ -84,7 +84,8 @@ ConfigureMouseAdvanced::ConfigureMouseAdvanced(QWidget* parent)
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button->setContextMenuPolicy(Qt::CustomContextMenu);
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connect(button, &QPushButton::clicked, [=, this] {
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HandleClick(button_map[button_id],
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HandleClick(
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button_map[button_id],
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[=, this](const Common::ParamPackage& params) {
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buttons_param[button_id] = params;
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},
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