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https://git.eden-emu.dev/eden-emu/eden.git
synced 2026-09-25 18:55:57 +00:00
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3 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| bebc19da32 | |||
| 99bf8cf51a | |||
| dbeb73ee01 |
@@ -76,7 +76,6 @@ add_library(
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logging.h
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lz4_compression.cpp
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lz4_compression.h
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make_unique_for_overwrite.h
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math_util.h
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memory_detect.cpp
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memory_detect.h
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@@ -1,27 +0,0 @@
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// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
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// SPDX-License-Identifier: GPL-2.0-or-later
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#pragma once
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#include <memory>
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#include <type_traits>
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namespace Common {
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template <class T>
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requires(!std::is_array_v<T>)
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std::unique_ptr<T> make_unique_for_overwrite() {
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return std::unique_ptr<T>(new T);
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}
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template <class T>
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requires std::is_unbounded_array_v<T>
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std::unique_ptr<T> make_unique_for_overwrite(std::size_t n) {
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return std::unique_ptr<T>(new std::remove_extent_t<T>[n]);
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}
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template <class T, class... Args>
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requires std::is_bounded_array_v<T>
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void make_unique_for_overwrite(Args&&...) = delete;
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} // namespace Common
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@@ -8,8 +8,7 @@
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#include <iterator>
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#include <cstring>
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#include "common/make_unique_for_overwrite.h"
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#include <memory>
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namespace Common {
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@@ -38,8 +37,9 @@ public:
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ScratchBuffer() = default;
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explicit ScratchBuffer(size_type initial_capacity)
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: last_requested_size{initial_capacity}, buffer_capacity{initial_capacity},
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buffer{Common::make_unique_for_overwrite<T[]>(initial_capacity)} {}
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: last_requested_size{initial_capacity}
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, buffer_capacity{initial_capacity}
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, buffer{std::make_unique_for_overwrite<T[]>(initial_capacity)} {}
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~ScratchBuffer() = default;
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ScratchBuffer(const ScratchBuffer&) = delete;
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@@ -64,7 +64,7 @@ public:
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/// The previously held data will remain intact.
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void resize(size_type size) {
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if (size > buffer_capacity) {
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auto new_buffer = Common::make_unique_for_overwrite<T[]>(size);
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auto new_buffer = std::make_unique_for_overwrite<T[]>(size);
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std::memcpy(new_buffer.get(), buffer.get(), buffer_capacity * sizeof(T));
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buffer = std::move(new_buffer);
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buffer_capacity = size;
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@@ -77,7 +77,7 @@ public:
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void resize_destructive(size_type size) {
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if (size > buffer_capacity) {
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buffer_capacity = size;
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buffer = Common::make_unique_for_overwrite<T[]>(buffer_capacity);
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buffer = std::make_unique_for_overwrite<T[]>(buffer_capacity);
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}
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last_requested_size = size;
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}
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@@ -109,8 +109,7 @@ VirtualFile RealVfsFilesystem::OpenFileFromEntry(std::string_view path_, std::op
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auto reference = std::make_unique<FileReference>();
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this->InsertReferenceIntoListLocked(*reference);
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auto file = std::shared_ptr<RealVfsFile>(
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new RealVfsFile(*this, std::move(reference), path, perms, size, std::move(parent_path)));
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auto file = std::make_shared<RealVfsFile>(*this, std::move(reference), path, perms, size, std::move(parent_path));
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cache[path] = file;
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return file;
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@@ -177,7 +176,7 @@ bool RealVfsFilesystem::DeleteFile(std::string_view path_) {
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VirtualDir RealVfsFilesystem::OpenDirectory(std::string_view path_, OpenMode perms) {
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const auto path = FS::SanitizePath(path_, FS::DirectorySeparator::PlatformDefault);
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return std::shared_ptr<RealVfsDirectory>(new RealVfsDirectory(*this, path, perms));
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return std::make_shared<RealVfsDirectory>(*this, path, perms);
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}
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VirtualDir RealVfsFilesystem::CreateDirectory(std::string_view path_, OpenMode perms) {
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@@ -185,7 +184,7 @@ VirtualDir RealVfsFilesystem::CreateDirectory(std::string_view path_, OpenMode p
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if (!FS::CreateDirs(path)) {
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return nullptr;
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}
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return std::shared_ptr<RealVfsDirectory>(new RealVfsDirectory(*this, path, perms));
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return std::make_shared<RealVfsDirectory>(*this, path, perms);
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}
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VirtualDir RealVfsFilesystem::CopyDirectory(std::string_view old_path_,
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@@ -82,6 +82,9 @@ class RealVfsFile : public VfsFile {
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friend class RealVfsFilesystem;
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public:
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RealVfsFile(RealVfsFilesystem& base, std::unique_ptr<FileReference> reference,
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const std::string& path, OpenMode perms = OpenMode::Read,
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std::optional<u64> size = {}, std::optional<std::string> parent_path = {});
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~RealVfsFile() override;
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std::string GetName() const override;
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@@ -95,9 +98,6 @@ public:
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bool Rename(std::string_view name) override;
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private:
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RealVfsFile(RealVfsFilesystem& base, std::unique_ptr<FileReference> reference,
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const std::string& path, OpenMode perms = OpenMode::Read,
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std::optional<u64> size = {}, std::optional<std::string> parent_path = {});
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RealVfsFilesystem& base;
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std::unique_ptr<FileReference> reference;
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@@ -113,6 +113,8 @@ class RealVfsDirectory : public VfsDirectory {
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friend class RealVfsFilesystem;
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public:
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RealVfsDirectory(RealVfsFilesystem& base, const std::string& path,
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OpenMode perms = OpenMode::Read);
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~RealVfsDirectory() override;
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VirtualFile GetFileRelative(std::string_view relative_path) const override;
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@@ -138,9 +140,6 @@ public:
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std::map<std::string, VfsEntryType, std::less<>> GetEntries() const override;
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private:
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RealVfsDirectory(RealVfsFilesystem& base, const std::string& path,
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OpenMode perms = OpenMode::Read);
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template <typename T, typename R>
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std::vector<std::shared_ptr<R>> IterateEntries() const;
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@@ -517,7 +517,7 @@ void WindowSystem::UpdateAppletStateLocked(Applet* applet, bool is_foreground, b
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// Layer ordering. Composition sorts back-to-front. Now with enums for calrity.
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s32 z_index = Background;
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if (is_overlay) {
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z_index = Overlay;
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z_index = this->IsOverlayOpenLocked(*applet) ? Overlay : Background;
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} else if (inherited_foreground) {
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z_index = is_obscured ? Foreground : ForegroundVisible;
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}
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@@ -1,4 +1,4 @@
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// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
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// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
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// SPDX-License-Identifier: GPL-3.0-or-later
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// SPDX-FileCopyrightText: Copyright 2024 yuzu Emulator Project
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@@ -24,7 +24,7 @@ IReceiverService::~IReceiverService() = default;
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Result IReceiverService::OpenReceiver(Out<SharedPointer<IReceiver>> out_receiver) {
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LOG_DEBUG(Service_PSC, "called");
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*out_receiver = std::shared_ptr<IReceiver>(new IReceiver(system));
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*out_receiver = std::make_shared<IReceiver>(system);
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R_SUCCEED();
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}
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@@ -45,6 +45,19 @@ NPad::NPad(Core::HID::HIDCore& hid_core_, KernelHelpers::ServiceContext& service
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AbstractPad{hid_core_.kernel},
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}}
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{
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for (std::size_t aruid_index = 0; aruid_index < AruidIndexMax; ++aruid_index) {
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for (std::size_t i = 0; i < controller_data[aruid_index].size(); ++i) {
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auto& controller = controller_data[aruid_index][i];
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controller.device = hid_core.GetEmulatedControllerByIndex(i);
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Core::HID::ControllerUpdateCallback engine_callback{
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.on_change = [this, i, kernel = &hid_core.kernel](Core::HID::ControllerTriggerType type) {
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ControllerUpdate(*kernel, type, i);
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},
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.is_npad_service = true,
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};
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controller.callback_key = controller.device->SetCallback(engine_callback);
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}
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}
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for (std::size_t i = 0; i < abstracted_pads.size(); ++i) {
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abstracted_pads[i].SetNpadId(IndexToNpadIdType(i));
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}
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@@ -93,16 +106,6 @@ Result NPad::Activate(u64 aruid) {
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for (std::size_t i = 0; i < controller_data[aruid_index].size(); ++i) {
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auto& controller = controller_data[aruid_index][i];
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controller.shared_memory = &data->shared_memory_format->npad.npad_entry[i].internal_state;
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controller.device = hid_core.GetEmulatedControllerByIndex(i);
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if (!controller.callback_key) {
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Core::HID::ControllerUpdateCallback engine_callback{
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.on_change = [this, i](Core::HID::ControllerTriggerType type) {
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ControllerUpdate(hid_core.kernel, type, i);
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},
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.is_npad_service = true,
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};
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controller.callback_key = controller.device->SetCallback(engine_callback);
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}
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}
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// Prefill controller buffers
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@@ -121,7 +121,7 @@ void BufferCache<P>::UnmapGPUMemory(size_t as_id, GPUVAddr gpu_addr, size_t size
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template <class P>
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void BufferCache<P>::WriteMemory(DAddr device_addr, u64 size) {
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if (memory_tracker.IsRegionGpuModified(device_addr, size)) {
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if (IsRegionGpuModified(device_addr, size)) {
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ClearDownload(device_addr, size);
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gpu_modified_ranges.Subtract(device_addr, size);
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}
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@@ -311,11 +311,8 @@ std::pair<typename P::Buffer*, u32> BufferCache<P>::ObtainCPUBuffer(
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MarkWrittenBuffer(buffer_id, device_addr, size);
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break;
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case ObtainBufferOperation::DiscardWrite: {
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const DAddr device_addr_start = Common::AlignDown(device_addr, 64);
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const DAddr device_addr_end = Common::AlignUp(device_addr + size, 64);
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const size_t new_size = device_addr_end - device_addr_start;
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ClearDownload(device_addr_start, new_size);
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gpu_modified_ranges.Subtract(device_addr_start, new_size);
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ClearDownload(device_addr, size);
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gpu_modified_ranges.Subtract(device_addr, size);
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break;
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}
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default:
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@@ -1742,14 +1739,24 @@ bool BufferCache<P>::SynchronizeBuffer(Buffer& buffer, DAddr device_addr, u32 si
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u64 total_size_bytes = 0;
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u64 largest_copy = 0;
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const DAddr buffer_start = buffer.cpu_addr_cached;
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memory_tracker.ForEachUploadRange(device_addr, size, [&](u64 device_addr_out, u64 range_size) {
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const auto add_upload = [&](DAddr start, DAddr end) {
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if (start == end) return;
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const u64 range_size = end - start;
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upload_copies.push_back(BufferCopy{
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.src_offset = total_size_bytes,
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.dst_offset = device_addr_out - buffer_start,
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.dst_offset = start - buffer_start,
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.size = range_size,
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});
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total_size_bytes += range_size;
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largest_copy = (std::max)(largest_copy, range_size);
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};
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memory_tracker.ForEachUploadRange(device_addr, size, [&](u64 device_addr_out, u64 range_size) {
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DAddr upload_start = device_addr_out;
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gpu_modified_ranges.ForEachInRange(device_addr_out, range_size, [&](DAddr gpu_start, DAddr gpu_end) {
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add_upload(upload_start, gpu_start);
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upload_start = gpu_end;
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});
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add_upload(upload_start, device_addr_out + range_size);
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});
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if (total_size_bytes == 0) {
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return true;
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@@ -16,7 +16,7 @@
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namespace Tegra {
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constexpr u32 MacroRegistersStart = 0xE00;
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[[maybe_unused]] constexpr u32 ComputeInline = 0x6D;
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constexpr u32 ComputeInline = 0x6D;
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DmaPusher::DmaPusher(Core::System& system_, MemoryManager& memory_manager_, Control::ChannelState& channel_state_)
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: system{system_}
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@@ -73,11 +73,16 @@ bool DmaPusher::Step() {
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synced = false;
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}
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if (header.size > 0 && dma_state.method >= MacroRegistersStart && subchannels[dma_state.subchannel]) {
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subchannels[dma_state.subchannel]->current_dirty = memory_manager.IsMemoryDirty(dma_state.dma_get, header.size * sizeof(u32));
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}
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if (header.size > 0) {
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if (subchannels[dma_state.subchannel] && dma_state.method_count) {
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const auto engine = subchannel_type[dma_state.subchannel];
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const bool kepler_payload = engine == Engines::EngineTypes::KeplerCompute && dma_state.method == ComputeInline && dma_state.non_incrementing;
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const bool macro_payload = engine == Engines::EngineTypes::Maxwell3D && dma_state.method >= MacroRegistersStart;
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if (kepler_payload || macro_payload) {
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const size_t words = std::min<size_t>(dma_state.method_count, header.size);
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subchannels[dma_state.subchannel]->current_dirty = memory_manager.IsMemoryDirty(dma_state.dma_get, words * sizeof(u32));
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}
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}
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const bool use_safe = Settings::IsDMALevelDefault() ? Settings::IsGPULevelHigh() : Settings::IsDMALevelSafe();
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if (use_safe) {
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Tegra::Memory::GpuGuestMemory<Tegra::CommandHeader, Tegra::Memory::GuestMemoryFlags::SafeRead>headers(memory_manager, dma_state.dma_get, header.size, &command_headers);
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@@ -49,13 +49,16 @@ void KeplerCompute::CallMethod(Core::System& system, u32 method, u32 method_argu
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case KEPLER_COMPUTE_REG_INDEX(exec_upload): {
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UploadInfo info{.upload_address = upload_address,
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.exec_address = upload_state.ExecTargetAddress(),
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.copy_size = upload_state.GetUploadSize()};
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.copy_size = upload_state.GetUploadSize(),
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.was_dirty = upload_dirty};
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uploads.push_back(info);
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upload_state.ProcessExec(regs.exec_upload.linear != 0);
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break;
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}
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case KEPLER_COMPUTE_REG_INDEX(data_upload): {
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upload_address = current_dma_segment;
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upload_dirty = current_dirty;
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current_dirty = false;
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upload_state.ProcessData(method_argument, is_last_call);
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break;
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}
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@@ -64,9 +67,11 @@ void KeplerCompute::CallMethod(Core::System& system, u32 method, u32 method_argu
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for (auto& data : uploads) {
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const GPUVAddr offset = data.exec_address - launch_desc_loc;
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if (offset / sizeof(u32) == LAUNCH_REG_INDEX(grid_dim_x) &&
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memory_manager.IsMemoryDirty(data.upload_address, data.copy_size)) {
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indirect_compute = {data.upload_address};
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if (offset / sizeof(u32) == LAUNCH_REG_INDEX(grid_dim_x)) {
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const bool source_dirty = memory_manager.IsMemoryDirty(data.upload_address, data.copy_size);
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if (data.was_dirty || source_dirty) {
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indirect_compute = {data.upload_address};
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}
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}
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}
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uploads.clear();
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@@ -83,6 +88,8 @@ void KeplerCompute::CallMultiMethod(Core::System& system, u32 method, const u32*
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switch (method) {
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case KEPLER_COMPUTE_REG_INDEX(data_upload):
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upload_address = current_dma_segment;
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upload_dirty = current_dirty;
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current_dirty = false;
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upload_state.ProcessData(base_start, amount);
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return;
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default:
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|
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@@ -226,11 +226,13 @@ private:
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VideoCore::RasterizerInterface* rasterizer = nullptr;
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Upload::State upload_state;
|
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GPUVAddr upload_address;
|
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bool upload_dirty{};
|
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|
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struct UploadInfo {
|
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GPUVAddr upload_address;
|
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GPUVAddr exec_address;
|
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u32 copy_size;
|
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bool was_dirty;
|
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};
|
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std::vector<UploadInfo> uploads;
|
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std::optional<GPUVAddr> indirect_compute{};
|
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|
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@@ -94,13 +94,13 @@ void Layer::ConfigureDraw(const Device& device, PresentPushConstants* out_push_c
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const u32 scaled_width = texture_info ? texture_info->scaled_width : texture_width;
|
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const u32 scaled_height = texture_info ? texture_info->scaled_height : texture_height;
|
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const bool use_accelerated = texture_info.has_value();
|
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const bool is_applet =
|
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(framebuffer.layer_stack_mask & Service::Nvnflinger::LayerStackBit(
|
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Service::Nvnflinger::LayerStackId::Recording)) == 0;
|
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|
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RefreshResources(device, framebuffer);
|
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SetAntiAliasPass(device);
|
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#ifdef HAS_RESHADE
|
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const bool is_applet =
|
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(framebuffer.layer_stack_mask & Service::Nvnflinger::LayerStackBit(
|
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Service::Nvnflinger::LayerStackId::Recording)) == 0;
|
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SetPostProcessPass(device, is_applet);
|
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#endif
|
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|
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@@ -141,8 +141,11 @@ void Layer::ConfigureDraw(const Device& device, PresentPushConstants* out_push_c
|
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source_image_view = fsr->Draw(device, scheduler, image_index, source_image, source_image_view, render_extent, crop_rect);
|
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crop_rect = {0, 0, 1, 1};
|
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} else if (auto* sgsr = std::get_if<SGSR>(&sr_filter)) {
|
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source_image_view = sgsr->Draw(device, scheduler, image_index, source_image, source_image_view, render_extent, crop_rect);
|
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crop_rect = {0, 0, 1, 1};
|
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if (!is_applet) {
|
||||
source_image_view = sgsr->Draw(device, scheduler, image_index, source_image,
|
||||
source_image_view, render_extent, crop_rect);
|
||||
crop_rect = {0, 0, 1, 1};
|
||||
}
|
||||
}
|
||||
|
||||
SetMatrixData(device, *out_push_constants, layout);
|
||||
|
||||
Reference in New Issue
Block a user