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74 Commits

Author SHA1 Message Date
german77
c218c7d4da yuzu: Remember last selected directory 2022-12-18 00:37:06 -06:00
Matías Locatti
fd1ea0fd84 Enable compiler optimizations and enforce x86-64-v2 on GCC/Clang (#9442)
* Testing LTO (#4)

* Testing LTO

* clang

* linux

* Added the rest of Blinkhawk's optimizations

* Unlikely asserts

* Removing LTO from Linux builds - GCC

* Removing LTO from Linux builds - Clang
2022-12-17 17:16:52 -08:00
bunnei
48108a8c9b Merge pull request #9456 from german77/virtual_gamepad
input_common: Add virtual gamepad
2022-12-17 17:16:13 -08:00
liamwhite
5da72a891f Merge pull request #7450 from FernandoS27/ndc-vulkan
Vulkan: Add support for VK_EXT_depth_clip_control.
2022-12-17 16:08:10 -05:00
Mai
f8a7d6a0ae Merge pull request #9461 from liamwhite/wanative
qt: avoid setting WA_DontCreateNativeAncestors on all platforms
2022-12-17 21:07:01 +00:00
Mai
da31326c17 Merge pull request #9454 from liamwhite/wayland-egl
qt: handle wayland-egl platform name
2022-12-17 21:05:46 +00:00
Liam
45672d43e3 qt: avoid setting WA_DontCreateNativeAncestors on all platforms 2022-12-17 10:41:20 -05:00
liamwhite
a3bac5550d Merge pull request #9451 from ameerj/camera-data-array
camera: Use pre-allocated vector for camera data
2022-12-17 10:21:50 -05:00
liamwhite
4faea2bbf4 Merge pull request #9452 from ameerj/hle-read-buffer-resreve
hle_ipc: Refactor ReadBuffer to set buffer size upon initialization
2022-12-17 10:21:30 -05:00
liamwhite
fa10374d39 Merge pull request #9455 from Kelebek1/audio_signal
[audio_core] Signal buffer event on audio in/out system stop
2022-12-17 10:21:19 -05:00
liamwhite
98135dee16 Merge pull request #9457 from Kelebek1/silence_tfb
Remove unimplemented geometry transform feedback log spam
2022-12-17 10:21:05 -05:00
german77
243404bf34 input_common: Add virtual gamepad 2022-12-16 18:26:11 -06:00
ameerj
7bf4bec257 camera: Use pre-allocated vector for camera data
And avoid an unnecessary copy
2022-12-16 18:00:47 -05:00
Kelebek1
f7d95d0a3a Remove unimplemented transform feedback geometry spam, it should be implemented 2022-12-16 22:52:29 +00:00
liamwhite
bbb202ceed Merge pull request #6354 from ogniK5377/device-name
Set: Allow setting device nickname
2022-12-16 14:05:00 -05:00
liamwhite
789da737af Merge pull request #9450 from ameerj/hle-ipc-vector-reserve
hle_ipc: Reserve vectors before populating
2022-12-16 11:57:48 -05:00
liamwhite
b541a35e27 Merge pull request #9444 from german77/free_threads
kernel: process: Implement GetFreeThreadCount
2022-12-16 11:57:42 -05:00
liamwhite
6bc1a477bf Merge pull request #8605 from devsnek/graceful-shutdown
let games gracefully exit
2022-12-16 11:57:33 -05:00
liamwhite
9bfd4d880e Merge pull request #6769 from lat9nq/create-shortcut-2
yuzu qt, common: Add option to create game shortcuts on Linux
2022-12-16 11:57:16 -05:00
Kelebek1
6a56f42f5d Signal buffer event on audio in/out system stop, and force remove all registered audio buffers 2022-12-16 16:07:24 +00:00
Liam
b81caf1879 qt: handle wayland-egl platform name 2022-12-16 08:47:22 -05:00
ameerj
b1d633532f hle_ipc: Refactor ReadBuffer to set buffer size upon initialization
Initializing the vector size during initialization is more efficient than a later call to resize()
2022-12-15 23:22:11 -05:00
ameerj
12c0f682e6 hle_ipc: Reserve vectors before populating 2022-12-15 22:30:42 -05:00
Narr the Reg
9ff891ce71 Merge pull request #9431 from liamwhite/sixty-five-oh-two
vulkan_common: declare storageBuffer8BitAccess
2022-12-15 17:52:16 -06:00
Matías Locatti
82d80869fc Merge pull request #9430 from liamwhite/capable
spirv_emit_context: declare GroupNonUniform capability for SubgroupLocalInvocationId
2022-12-15 20:52:05 -03:00
Narr the Reg
20cbf6f3db kernel: svc: Fix duplicated InfoType enum 2022-12-15 14:18:30 -06:00
Narr the Reg
dca4f0687a kernel: process: Implement GetFreeThreadCount
Used by Just Dance® 2023 Edition
2022-12-15 13:44:21 -06:00
liamwhite
b8c03411e7 Merge pull request #9433 from Tachi107/cmake-is-awful
build: tweak the find modules even more
2022-12-15 12:05:13 -05:00
liamwhite
3ff7a5de1a Merge pull request #7410 from Nefsen402/wayland-fixes
Wayland fixes
2022-12-15 12:05:01 -05:00
Andrea Pappacoda
4447c9a46e build: tweak the find modules even more
As described in
https://github.com/yuzu-emu/yuzu/pull/9395#discussion_r1047456172
checking for PKG_CONFIG_FOUND before calling pkg_search_module() is
unneeded, and some find modules (like FindFFmpeg.cmake) don't do this
already. Consequently, this patch removes these checks.
2022-12-15 11:52:50 +01:00
bunnei
e2f32e8c88 Merge pull request #9441 from yuzu-emu/revert-9232-audio-default-thread
Revert "hle: service: audio: Use default service thread."
2022-12-14 14:58:17 -08:00
bunnei
beba9c9b61 Revert "hle: service: audio: Use default service thread." 2022-12-14 14:57:33 -08:00
liamwhite
a222f02c7a Merge pull request #6688 from yzct12345/valid-intel-max
render_vulkan: Fix validation errors on less compatible Intel GPUs
2022-12-14 15:33:10 -05:00
FernandoS27
0104e28fe4 Vulkan: Add support for VK_EXT_depth_clip_control. 2022-12-13 21:39:18 -05:00
Chloe Marcec
c5f519e1e4 Set: Allow setting device nickname 2022-12-13 19:54:17 -05:00
lat9nq
5a5bb91f40 main: Address review feedback
Moves icon path to ~/.local/share/icons, though I'm opting to avoid
using the game title for the icon and desktop entry name as that would
cause filenames such as
"yuzu-cadence-of-hyrule-crypt-of-the-necrodancer-featuring-the-legend-of-zelda-demo.desktop".
2022-12-13 19:23:54 -05:00
Liam
4fce72c902 vulkan_common: declare storageBuffer8BitAccess 2022-12-13 18:28:50 -05:00
Liam
77b0d01639 spirv_emit_context: declare GroupNonUniform capability for SubgroupLocalInvocationId 2022-12-13 18:25:53 -05:00
lat9nq
18bdf45868 yuzu qt: Create shortcuts on Linux
This creates a Desktop Entry file and a PNG icon for the entry when the
user right-clicks a game and selects "Create Shortcut -> Create
{Application,Desktop} Shortcut". This uses the current executable's path
to create the shortcut.

yuzu qt: Add more error checking and OS gating for shortcuts

main: Remove FreeBSD gating for shortcuts

I'm not going to test FreeBSD, so I don't know if they follow
Freedesktop.org or not. I just have to let someone else verify that it
works there and let them enable it.

main: Move shortcut function to its own function

This function should really be in a common library, at least among
frontends.

main: Remove image manip references

main: Fix difference in MinGW and native GCC versions

main: Fix negation in creat shortcut

Addresses review comment

Co-authored-by: Jan Beich <jbeich@FreeBSD.org>

main: Re-enable freedesktop shorcuts for FreeBSD
2022-12-13 16:42:00 -05:00
Alexander Orzechowski
09e3029c11 gl_device: Use a more robust way to use strict context mode
Instead of checking a environment variable which may not actually
exist or is just wrong, ask QT if it's running on the wayland
platform.
2022-12-13 15:01:51 -05:00
Alexander Orzechowski
2221afaf26 OpenGL: Check for threading support
We need this.
2022-12-13 13:23:35 -05:00
Alexander Orzechowski
45fcde817e wayland: Always use exclusive fullscreen
Wayland does not allow clients to choose their own size and position
on the screen. The concept of fullscreening an application by sizing
it to the screen and removing decorations does not exist. Use
exclusive fullscreen instead.
2022-12-13 13:23:35 -05:00
Alexander Orzechowski
29fbce9fe6 RenderWidget: Set WA_DontCreateNativeAncestors
Some windowing systems like wayland are designed to show hardware accellerated
surfaces as subsurfaces and not native windows.
2022-12-13 13:23:35 -05:00
Alexander Orzechowski
5754456292 emu_window_sdl2: Respect hidpi
Use SDL_GL_GetDrawableSize instead of SDL_GetWindowSize which
will return the true size our swapchain needs to be in even
for hidpi displays.
2022-12-13 13:23:35 -05:00
Alexander Orzechowski
3cc3176ad6 video_core/vulkan: Explicity check swapchain size when deciding to recreate
Vulkan for whatever reason does not return VK_ERROR_OUT_OF_DATE_KHR when
the swapchain is the wrong size. Explicity make sure the size is indeed
up to date to workaround this.
2022-12-13 13:23:35 -05:00
Liam
d5f53da79d renderer_opengl: refactor context acquire 2022-12-13 13:23:23 -05:00
liamwhite
a4696285af Merge pull request #9425 from german77/german_unlimited
yuzu: Make unlimited frame rate non persistent between game boots
2022-12-12 22:16:17 -05:00
Liam
179adee396 emu_thread: properly force shutdown for unresponsive guest programs 2022-12-12 21:38:20 -05:00
Gus Caplan
f44c60321e let games gracefully exit 2022-12-12 21:18:32 -05:00
yzct12345
f6868ae4dd Fix validation errors on less compatible Intel GPU 2022-12-12 20:53:05 -05:00
Narr the Reg
0ed80c9818 yuzu: Make unlimited frame rate non persistent between game boots 2022-12-12 19:21:30 -06:00
bunnei
339a37f8cb Merge pull request #9398 from liamwhite/fail
general: improve handling of system startup failure
2022-12-12 14:37:42 -08:00
bunnei
da58eb6208 Merge pull request #9406 from vonchenplus/topology
video_core: Adjust topology update logic and Adjust Clear Manage
2022-12-12 14:37:06 -08:00
liamwhite
b32b9524ad Merge pull request #9404 from german77/sdl_filter
input_common: Filter SDL GUID
2022-12-12 17:34:11 -05:00
Narr the Reg
3e1e6c66c0 input_common: Filter SDL GUID 2022-12-12 10:37:55 -06:00
Mai
8ef9075b1b Merge pull request #9420 from liamwhite/aniso
video_core: fix off by one in anisotropic filtering amount
2022-12-12 03:34:09 +00:00
Mai
0c531ff911 Merge pull request #9419 from liamwhite/no-gl
cmake: make OpenGL loader optional
2022-12-11 21:09:52 +00:00
Mai
d5684dbe7d Merge pull request #9415 from liamwhite/dc
memory: correct semantics of data cache management operations
2022-12-11 21:09:31 +00:00
Liam
ed37192441 memory: correct semantics of data cache management operations 2022-12-11 12:46:34 -05:00
Matías Locatti
623429a27e Merge pull request #9409 from liamwhite/smaa2
video_core: Integrate SMAA
2022-12-11 01:38:28 -03:00
Liam
456322dde6 video_core: fix off by one in anisotropic filtering amount 2022-12-10 20:54:45 -05:00
Mai
821da3ed54 Merge pull request #9416 from liamwhite/penicillin
cmake: enable faster linkers if available
2022-12-10 20:43:03 +00:00
Liam
8d1d6e149f cmake: make OpenGL loader optional
Co-authored-by: liushuyu <liushuyu@users.noreply.github.com>
2022-12-10 15:12:27 -05:00
Liam
1085bbb0a3 cmake: enable faster linkers if available 2022-12-10 15:04:25 -05:00
Mai
a5bc86a9ac Merge pull request #9417 from liamwhite/debug-assert
memory: remove DEBUG_ASSERT pointer test
2022-12-10 19:08:45 +00:00
Mai
6982423931 Merge pull request #9418 from liamwhite/implicitly-deleted
audio_core: remove explicitly defaulted and implicitly deleted constructors
2022-12-10 19:04:57 +00:00
Liam
e532b74e11 audio_core: remove explicitly defaulted and implicitly deleted constructors 2022-12-10 13:05:15 -05:00
Liam
985ed1e160 memory: remove DEBUG_ASSERT pointer test 2022-12-10 13:02:38 -05:00
liamwhite
f6e705737a Merge pull request #9412 from Saalvage/fix/trace-log-compilation
Fix compilation error
2022-12-09 17:03:19 -05:00
bunnei
66c4331de5 Merge pull request #9411 from Saalvage/fix/unlock-mutex
Correctly unlock mutex before its destruction
2022-12-09 10:51:19 -08:00
Salvage
c586ac9be2 Remove the lock entirely as per PR discussion
Correctly unlock mutex before its destruction

As per https://en.cppreference.com/w/cpp/thread/mutex/~mutex destroying a locked mutex is undefined behavior and MSVC++ decides to throw in this case

Swap out unique for scoped lock and readd comment
2022-12-09 16:39:59 +01:00
Salvage
0e265db873 Fix compilation error 2022-12-09 14:49:15 +01:00
Liam
5b837157bd video_core: Integrate SMAA
Co-authored-by: goldenx86 <goldenx86@users.noreply.github.com>
Co-authored-by: BreadFish64 <breadfish64@users.noreply.github.com>
2022-12-08 17:17:45 -05:00
Liam
9704acb982 general: improve handling of system startup failure 2022-12-06 16:13:42 -05:00
107 changed files with 14874 additions and 387 deletions

View File

@@ -11,6 +11,7 @@ ccache -s
mkdir build || true && cd build
cmake .. \
-DCMAKE_BUILD_TYPE=Release \
-DCMAKE_CXX_FLAGS="-march=x86-64-v2" \
-DCMAKE_CXX_COMPILER=/usr/lib/ccache/clang++ \
-DCMAKE_C_COMPILER=/usr/lib/ccache/clang \
-DCMAKE_INSTALL_PREFIX="/usr" \

View File

@@ -12,6 +12,7 @@ mkdir build || true && cd build
cmake .. \
-DBoost_USE_STATIC_LIBS=ON \
-DCMAKE_BUILD_TYPE=Release \
-DCMAKE_CXX_FLAGS="-march=x86-64-v2" \
-DCMAKE_CXX_COMPILER=/usr/lib/ccache/g++ \
-DCMAKE_C_COMPILER=/usr/lib/ccache/gcc \
-DCMAKE_INSTALL_PREFIX="/usr" \

View File

@@ -9,7 +9,7 @@ parameters:
steps:
- script: choco install vulkan-sdk
displayName: 'Install vulkan-sdk'
- script: refreshenv && mkdir build && cd build && cmake -G "Visual Studio 17 2022" -A x64 -DYUZU_USE_BUNDLED_QT=1 -DYUZU_USE_BUNDLED_SDL2=1 -DYUZU_USE_QT_WEB_ENGINE=ON -DENABLE_COMPATIBILITY_LIST_DOWNLOAD=ON -DYUZU_ENABLE_COMPATIBILITY_REPORTING=${COMPAT} -DYUZU_TESTS=OFF -DUSE_DISCORD_PRESENCE=ON -DENABLE_QT_TRANSLATION=ON -DDISPLAY_VERSION=${{ parameters['version'] }} -DCMAKE_BUILD_TYPE=Release -DYUZU_CRASH_DUMPS=ON .. && cd ..
- script: refreshenv && mkdir build && cd build && cmake -E env CXXFLAGS="/Gw /GA /Gr /Ob2" cmake -G "Visual Studio 17 2022" -A x64 -DCMAKE_INTERPROCEDURAL_OPTIMIZATION=ON -DCMAKE_POLICY_DEFAULT_CMP0069=NEW -DYUZU_USE_BUNDLED_QT=1 -DYUZU_USE_BUNDLED_SDL2=1 -DYUZU_USE_QT_WEB_ENGINE=ON -DENABLE_COMPATIBILITY_LIST_DOWNLOAD=ON -DYUZU_ENABLE_COMPATIBILITY_REPORTING=${COMPAT} -DYUZU_TESTS=OFF -DUSE_DISCORD_PRESENCE=ON -DENABLE_QT_TRANSLATION=ON -DDISPLAY_VERSION=${{ parameters['version'] }} -DCMAKE_BUILD_TYPE=Release -DYUZU_CRASH_DUMPS=ON .. && cd ..
displayName: 'Configure CMake'
- task: MSBuild@1
displayName: 'Build'

View File

@@ -22,6 +22,8 @@ CMAKE_DEPENDENT_OPTION(YUZU_USE_BUNDLED_SDL2 "Download bundled SDL2 binaries" ON
# On Linux system SDL2 is likely to be lacking HIDAPI support which have drawbacks but is needed for SDL motion
CMAKE_DEPENDENT_OPTION(YUZU_USE_EXTERNAL_SDL2 "Compile external SDL2" ON "ENABLE_SDL2;NOT MSVC" OFF)
option(ENABLE_OPENGL "Enable OpenGL" ON)
mark_as_advanced(FORCE ENABLE_OPENGL)
option(ENABLE_QT "Enable the Qt frontend" ON)
option(ENABLE_QT6 "Allow usage of Qt6 to be attempted" OFF)
set(QT6_LOCATION "" CACHE PATH "Additional Location to search for Qt6 libraries like C:/Qt/6.3.1/msvc2019_64/")
@@ -51,6 +53,8 @@ option(YUZU_USE_BUNDLED_VCPKG "Use vcpkg for yuzu dependencies" "${MSVC}")
option(YUZU_CHECK_SUBMODULES "Check if submodules are present" ON)
CMAKE_DEPENDENT_OPTION(YUZU_USE_FASTER_LD "Check if a faster linker is available" ON "NOT WIN32" OFF)
if (YUZU_USE_BUNDLED_VCPKG)
if (YUZU_TESTS)
list(APPEND VCPKG_MANIFEST_FEATURES "yuzu-tests")
@@ -579,6 +583,21 @@ if (MSVC AND CMAKE_GENERATOR STREQUAL "Ninja")
)
endif()
if (YUZU_USE_FASTER_LD AND CMAKE_CXX_COMPILER_ID STREQUAL "GNU")
# We will assume that if the compiler is GCC, it will attempt to use ld.bfd by default.
# Try to pick a faster linker.
find_program(LLD lld)
find_program(MOLD mold)
if (MOLD AND CMAKE_CXX_COMPILER_VERSION VERSION_GREATER_EQUAL "12.1")
message(NOTICE "Selecting mold as linker")
add_link_options("-fuse-ld=mold")
elseif (LLD)
message(NOTICE "Selecting lld as linker")
add_link_options("-fuse-ld=lld")
endif()
endif()
enable_testing()
add_subdirectory(externals)
add_subdirectory(src)

View File

@@ -2,9 +2,7 @@
# SPDX-License-Identifier: GPL-2.0-or-later
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(OPUS QUIET IMPORTED_TARGET opus)
endif()
pkg_search_module(OPUS QUIET IMPORTED_TARGET opus)
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(Opus

View File

@@ -3,9 +3,7 @@
# SPDX-License-Identifier: GPL-3.0-or-later
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(ENET QUIET IMPORTED_TARGET libenet)
endif()
pkg_search_module(ENET QUIET IMPORTED_TARGET libenet)
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(enet

View File

@@ -9,9 +9,7 @@ if (httplib_FOUND)
find_package_handle_standard_args(httplib CONFIG_MODE)
else()
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(HTTPLIB QUIET IMPORTED_TARGET cpp-httplib)
endif()
pkg_search_module(HTTPLIB QUIET IMPORTED_TARGET cpp-httplib)
find_package_handle_standard_args(httplib
REQUIRED_VARS HTTPLIB_INCLUDEDIR
VERSION_VAR HTTPLIB_VERSION

View File

@@ -3,9 +3,7 @@
# SPDX-License-Identifier: GPL-3.0-or-later
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(INIREADER QUIET IMPORTED_TARGET INIReader)
endif()
pkg_search_module(INIREADER QUIET IMPORTED_TARGET INIReader)
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(inih

View File

@@ -3,9 +3,7 @@
# SPDX-License-Identifier: GPL-3.0-or-later
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(LIBUSB QUIET IMPORTED_TARGET libusb-1.0)
endif()
pkg_search_module(LIBUSB QUIET IMPORTED_TARGET libusb-1.0)
include(FindPackageHandleStandardArgs)
find_package_handle_standard_args(libusb

View File

@@ -8,9 +8,7 @@ if (lz4_FOUND)
find_package_handle_standard_args(lz4 CONFIG_MODE)
else()
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(LZ4 QUIET IMPORTED_TARGET liblz4)
endif()
pkg_search_module(LZ4 QUIET IMPORTED_TARGET liblz4)
find_package_handle_standard_args(lz4
REQUIRED_VARS LZ4_LINK_LIBRARIES
VERSION_VAR LZ4_VERSION

View File

@@ -8,9 +8,7 @@ if (zstd_FOUND)
find_package_handle_standard_args(zstd CONFIG_MODE)
else()
find_package(PkgConfig QUIET)
if (PKG_CONFIG_FOUND)
pkg_search_module(ZSTD QUIET IMPORTED_TARGET libzstd)
endif()
pkg_search_module(ZSTD QUIET IMPORTED_TARGET libzstd)
find_package_handle_standard_args(zstd
REQUIRED_VARS ZSTD_LINK_LIBRARIES
VERSION_VAR ZSTD_VERSION

View File

@@ -91,9 +91,10 @@ public:
* @param core_timing - The CoreTiming instance
* @param session - The device session
*
* @return Is the buffer was released.
* @return If any buffer was released.
*/
bool ReleaseBuffers(const Core::Timing::CoreTiming& core_timing, const DeviceSession& session) {
bool ReleaseBuffers(const Core::Timing::CoreTiming& core_timing, const DeviceSession& session,
bool force) {
std::scoped_lock l{lock};
bool buffer_released{false};
while (registered_count > 0) {
@@ -103,7 +104,8 @@ public:
}
// Check with the backend if this buffer can be released yet.
if (!session.IsBufferConsumed(buffers[index])) {
// If we're shutting down, we don't care if it's been played or not.
if (!force && !session.IsBufferConsumed(buffers[index])) {
break;
}

View File

@@ -73,6 +73,12 @@ void DeviceSession::Stop() {
}
}
void DeviceSession::ClearBuffers() {
if (stream) {
stream->ClearQueue();
}
}
void DeviceSession::AppendBuffers(std::span<const AudioBuffer> buffers) const {
for (const auto& buffer : buffers) {
Sink::SinkBuffer new_buffer{

View File

@@ -90,6 +90,11 @@ public:
*/
void Stop();
/**
* Clear out the underlying audio buffers in the backend stream.
*/
void ClearBuffers();
/**
* Set this device session's volume.
*

View File

@@ -23,7 +23,6 @@ System::~System() {
void System::Finalize() {
Stop();
session->Finalize();
buffer_event->Signal();
}
void System::StartSession() {
@@ -102,6 +101,10 @@ Result System::Stop() {
if (state == State::Started) {
session->Stop();
session->SetVolume(0.0f);
session->ClearBuffers();
if (buffers.ReleaseBuffers(system.CoreTiming(), *session, true)) {
buffer_event->Signal();
}
state = State::Stopped;
}
@@ -138,7 +141,7 @@ void System::RegisterBuffers() {
}
void System::ReleaseBuffers() {
bool signal{buffers.ReleaseBuffers(system.CoreTiming(), *session)};
bool signal{buffers.ReleaseBuffers(system.CoreTiming(), *session, false)};
if (signal) {
// Signal if any buffer was released, or if none are registered, we need more.

View File

@@ -24,7 +24,6 @@ System::~System() {
void System::Finalize() {
Stop();
session->Finalize();
buffer_event->Signal();
}
std::string_view System::GetDefaultOutputDeviceName() const {
@@ -102,6 +101,10 @@ Result System::Stop() {
if (state == State::Started) {
session->Stop();
session->SetVolume(0.0f);
session->ClearBuffers();
if (buffers.ReleaseBuffers(system.CoreTiming(), *session, true)) {
buffer_event->Signal();
}
state = State::Stopped;
}
@@ -138,7 +141,7 @@ void System::RegisterBuffers() {
}
void System::ReleaseBuffers() {
bool signal{buffers.ReleaseBuffers(system.CoreTiming(), *session)};
bool signal{buffers.ReleaseBuffers(system.CoreTiming(), *session, false)};
if (signal) {
// Signal if any buffer was released, or if none are registered, we need more.
buffer_event->Signal();

View File

@@ -16,7 +16,6 @@ class CommandGenerator;
*/
class DetailAspect {
public:
DetailAspect() = default;
DetailAspect(CommandGenerator& command_generator, PerformanceEntryType entry_type, s32 node_id,
PerformanceDetailType detail_type);

View File

@@ -16,7 +16,6 @@ class CommandGenerator;
*/
class EntryAspect {
public:
EntryAspect() = default;
EntryAspect(CommandGenerator& command_generator, PerformanceEntryType type, s32 node_id);
/// Command generator the command will be generated into

View File

@@ -34,8 +34,6 @@ add_library(common STATIC
bit_util.h
cityhash.cpp
cityhash.h
cache_management.cpp
cache_management.h
common_funcs.h
common_precompiled_headers.h
common_types.h

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@@ -69,7 +69,7 @@ void assert_fail_impl();
#define ASSERT_OR_EXECUTE(_a_, _b_) \
do { \
ASSERT(_a_); \
if (!(_a_)) { \
if (!(_a_)) [[unlikely]] { \
_b_ \
} \
} while (0)
@@ -78,7 +78,7 @@ void assert_fail_impl();
#define ASSERT_OR_EXECUTE_MSG(_a_, _b_, ...) \
do { \
ASSERT_MSG(_a_, __VA_ARGS__); \
if (!(_a_)) { \
if (!(_a_)) [[unlikely]] { \
_b_ \
} \
} while (0)

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@@ -1,59 +0,0 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#include <cstdint>
#include <cstring>
#include "common/cache_management.h"
namespace Common {
#if defined(ARCHITECTURE_x86_64)
// Most cache operations are no-ops on x86
void DataCacheLineCleanByVAToPoU(void* start, size_t size) {}
void DataCacheLineCleanAndInvalidateByVAToPoC(void* start, size_t size) {}
void DataCacheLineCleanByVAToPoC(void* start, size_t size) {}
void DataCacheZeroByVA(void* start, size_t size) {
std::memset(start, 0, size);
}
#elif defined(ARCHITECTURE_arm64)
// BS/DminLine is log2(cache size in words), we want size in bytes
#define EXTRACT_DMINLINE(ctr_el0) (1 << ((((ctr_el0) >> 16) & 0xf) + 2))
#define EXTRACT_BS(dczid_el0) (1 << (((dczid_el0)&0xf) + 2))
#define DEFINE_DC_OP(op_name, function_name) \
void function_name(void* start, size_t size) { \
size_t ctr_el0; \
asm volatile("mrs %[ctr_el0], ctr_el0\n\t" : [ctr_el0] "=r"(ctr_el0)); \
size_t cacheline_size = EXTRACT_DMINLINE(ctr_el0); \
uintptr_t va_start = reinterpret_cast<uintptr_t>(start); \
uintptr_t va_end = va_start + size; \
for (uintptr_t va = va_start; va < va_end; va += cacheline_size) { \
asm volatile("dc " #op_name ", %[va]\n\t" : : [va] "r"(va) : "memory"); \
} \
}
#define DEFINE_DC_OP_DCZID(op_name, function_name) \
void function_name(void* start, size_t size) { \
size_t dczid_el0; \
asm volatile("mrs %[dczid_el0], dczid_el0\n\t" : [dczid_el0] "=r"(dczid_el0)); \
size_t cacheline_size = EXTRACT_BS(dczid_el0); \
uintptr_t va_start = reinterpret_cast<uintptr_t>(start); \
uintptr_t va_end = va_start + size; \
for (uintptr_t va = va_start; va < va_end; va += cacheline_size) { \
asm volatile("dc " #op_name ", %[va]\n\t" : : [va] "r"(va) : "memory"); \
} \
}
DEFINE_DC_OP(cvau, DataCacheLineCleanByVAToPoU);
DEFINE_DC_OP(civac, DataCacheLineCleanAndInvalidateByVAToPoC);
DEFINE_DC_OP(cvac, DataCacheLineCleanByVAToPoC);
DEFINE_DC_OP_DCZID(zva, DataCacheZeroByVA);
#endif
} // namespace Common

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@@ -1,27 +0,0 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#pragma once
#include <cstddef>
namespace Common {
// Data cache instructions enabled at EL0 by SCTLR_EL1.UCI.
// VA = virtual address
// PoC = point of coherency
// PoU = point of unification
// dc cvau
void DataCacheLineCleanByVAToPoU(void* start, size_t size);
// dc civac
void DataCacheLineCleanAndInvalidateByVAToPoC(void* start, size_t size);
// dc cvac
void DataCacheLineCleanByVAToPoC(void* start, size_t size);
// dc zva
void DataCacheZeroByVA(void* start, size_t size);
} // namespace Common

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@@ -40,6 +40,7 @@ void LogSettings() {
LOG_INFO(Config, "yuzu Configuration:");
log_setting("Controls_UseDockedMode", values.use_docked_mode.GetValue());
log_setting("System_RngSeed", values.rng_seed.GetValue().value_or(0));
log_setting("System_DeviceName", values.device_name.GetValue());
log_setting("System_CurrentUser", values.current_user.GetValue());
log_setting("System_LanguageIndex", values.language_index.GetValue());
log_setting("System_RegionIndex", values.region_index.GetValue());

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@@ -76,7 +76,8 @@ enum class ScalingFilter : u32 {
enum class AntiAliasing : u32 {
None = 0,
Fxaa = 1,
LastAA = Fxaa,
Smaa = 2,
LastAA = Smaa,
};
struct ResolutionScalingInfo {
@@ -457,6 +458,7 @@ struct Values {
// System
SwitchableSetting<std::optional<u32>> rng_seed{std::optional<u32>(), "rng_seed"};
Setting<std::string> device_name{"Yuzu", "device_name"};
// Measured in seconds since epoch
std::optional<s64> custom_rtc;
// Set on game boot, reset on stop. Seconds difference between current time and `custom_rtc`

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@@ -11,6 +11,7 @@
#include <mutex>
#include <thread>
#include "common/common_types.h"
#include "common/polyfill_thread.h"
namespace Common {
@@ -69,7 +70,7 @@ public:
explicit Barrier(std::size_t count_) : count(count_) {}
/// Blocks until all "count" threads have called Sync()
void Sync() {
bool Sync(std::stop_token token = {}) {
std::unique_lock lk{mutex};
const std::size_t current_generation = generation;
@@ -77,14 +78,16 @@ public:
generation++;
waiting = 0;
condvar.notify_all();
return true;
} else {
condvar.wait(lk,
[this, current_generation] { return current_generation != generation; });
CondvarWait(condvar, lk, token,
[this, current_generation] { return current_generation != generation; });
return !token.stop_requested();
}
}
private:
std::condition_variable condvar;
std::condition_variable_any condvar;
std::mutex mutex;
std::size_t count;
std::size_t waiting = 0;

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@@ -389,7 +389,9 @@ struct System::Impl {
kernel.ShutdownCores();
cpu_manager.Shutdown();
debugger.reset();
services->KillNVNFlinger();
if (services) {
services->KillNVNFlinger();
}
kernel.CloseServices();
services.reset();
service_manager.reset();

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@@ -20,23 +20,20 @@ namespace Core {
CpuManager::CpuManager(System& system_) : system{system_} {}
CpuManager::~CpuManager() = default;
void CpuManager::ThreadStart(std::stop_token stop_token, CpuManager& cpu_manager,
std::size_t core) {
cpu_manager.RunThread(core);
}
void CpuManager::Initialize() {
num_cores = is_multicore ? Core::Hardware::NUM_CPU_CORES : 1;
gpu_barrier = std::make_unique<Common::Barrier>(num_cores + 1);
for (std::size_t core = 0; core < num_cores; core++) {
core_data[core].host_thread = std::jthread(ThreadStart, std::ref(*this), core);
core_data[core].host_thread =
std::jthread([this, core](std::stop_token token) { RunThread(token, core); });
}
}
void CpuManager::Shutdown() {
for (std::size_t core = 0; core < num_cores; core++) {
if (core_data[core].host_thread.joinable()) {
core_data[core].host_thread.request_stop();
core_data[core].host_thread.join();
}
}
@@ -184,7 +181,7 @@ void CpuManager::ShutdownThread() {
UNREACHABLE();
}
void CpuManager::RunThread(std::size_t core) {
void CpuManager::RunThread(std::stop_token token, std::size_t core) {
/// Initialization
system.RegisterCoreThread(core);
std::string name;
@@ -206,7 +203,9 @@ void CpuManager::RunThread(std::size_t core) {
});
// Running
gpu_barrier->Sync();
if (!gpu_barrier->Sync(token)) {
return;
}
if (!is_async_gpu && !is_multicore) {
system.GPU().ObtainContext();

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@@ -81,12 +81,10 @@ private:
void SingleCoreRunGuestThread();
void SingleCoreRunIdleThread();
static void ThreadStart(std::stop_token stop_token, CpuManager& cpu_manager, std::size_t core);
void GuestActivate();
void HandleInterrupt();
void ShutdownThread();
void RunThread(std::size_t core);
void RunThread(std::stop_token stop_token, std::size_t core);
struct CoreData {
std::shared_ptr<Common::Fiber> host_context;

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@@ -131,6 +131,10 @@ public:
return active_config;
}
bool StrictContextRequired() const {
return strict_context_required;
}
/**
* Requests the internal configuration to be replaced by the specified argument at some point in
* the future.
@@ -207,6 +211,8 @@ protected:
WindowSystemInfo window_info;
bool strict_context_required = false;
private:
/**
* Handler called when the minimal client area was requested to be changed via SetConfig.

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@@ -145,6 +145,7 @@ void EmulatedController::LoadDevices() {
output_params[3].Set("output", true);
LoadTASParams();
LoadVirtualGamepadParams();
std::ranges::transform(button_params, button_devices.begin(), Common::Input::CreateInputDevice);
std::ranges::transform(stick_params, stick_devices.begin(), Common::Input::CreateInputDevice);
@@ -163,6 +164,12 @@ void EmulatedController::LoadDevices() {
Common::Input::CreateInputDevice);
std::ranges::transform(tas_stick_params, tas_stick_devices.begin(),
Common::Input::CreateInputDevice);
// Initialize virtual gamepad devices
std::ranges::transform(virtual_button_params, virtual_button_devices.begin(),
Common::Input::CreateInputDevice);
std::ranges::transform(virtual_stick_params, virtual_stick_devices.begin(),
Common::Input::CreateInputDevice);
}
void EmulatedController::LoadTASParams() {
@@ -205,6 +212,46 @@ void EmulatedController::LoadTASParams() {
tas_stick_params[Settings::NativeAnalog::RStick].Set("axis_y", 3);
}
void EmulatedController::LoadVirtualGamepadParams() {
const auto player_index = NpadIdTypeToIndex(npad_id_type);
Common::ParamPackage common_params{};
common_params.Set("engine", "virtual_gamepad");
common_params.Set("port", static_cast<int>(player_index));
for (auto& param : virtual_button_params) {
param = common_params;
}
for (auto& param : virtual_stick_params) {
param = common_params;
}
// TODO(german77): Replace this with an input profile or something better
virtual_button_params[Settings::NativeButton::A].Set("button", 0);
virtual_button_params[Settings::NativeButton::B].Set("button", 1);
virtual_button_params[Settings::NativeButton::X].Set("button", 2);
virtual_button_params[Settings::NativeButton::Y].Set("button", 3);
virtual_button_params[Settings::NativeButton::LStick].Set("button", 4);
virtual_button_params[Settings::NativeButton::RStick].Set("button", 5);
virtual_button_params[Settings::NativeButton::L].Set("button", 6);
virtual_button_params[Settings::NativeButton::R].Set("button", 7);
virtual_button_params[Settings::NativeButton::ZL].Set("button", 8);
virtual_button_params[Settings::NativeButton::ZR].Set("button", 9);
virtual_button_params[Settings::NativeButton::Plus].Set("button", 10);
virtual_button_params[Settings::NativeButton::Minus].Set("button", 11);
virtual_button_params[Settings::NativeButton::DLeft].Set("button", 12);
virtual_button_params[Settings::NativeButton::DUp].Set("button", 13);
virtual_button_params[Settings::NativeButton::DRight].Set("button", 14);
virtual_button_params[Settings::NativeButton::DDown].Set("button", 15);
virtual_button_params[Settings::NativeButton::SL].Set("button", 16);
virtual_button_params[Settings::NativeButton::SR].Set("button", 17);
virtual_button_params[Settings::NativeButton::Home].Set("button", 18);
virtual_button_params[Settings::NativeButton::Screenshot].Set("button", 19);
virtual_stick_params[Settings::NativeAnalog::LStick].Set("axis_x", 0);
virtual_stick_params[Settings::NativeAnalog::LStick].Set("axis_y", 1);
virtual_stick_params[Settings::NativeAnalog::RStick].Set("axis_x", 2);
virtual_stick_params[Settings::NativeAnalog::RStick].Set("axis_y", 3);
}
void EmulatedController::ReloadInput() {
// If you load any device here add the equivalent to the UnloadInput() function
LoadDevices();
@@ -322,6 +369,35 @@ void EmulatedController::ReloadInput() {
},
});
}
// Use a common UUID for Virtual Gamepad
static constexpr Common::UUID VIRTUAL_UUID = Common::UUID{
{0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x7, 0xFF, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0, 0x0}};
// Register virtual devices. No need to force update
for (std::size_t index = 0; index < virtual_button_devices.size(); ++index) {
if (!virtual_button_devices[index]) {
continue;
}
virtual_button_devices[index]->SetCallback({
.on_change =
[this, index](const Common::Input::CallbackStatus& callback) {
SetButton(callback, index, VIRTUAL_UUID);
},
});
}
for (std::size_t index = 0; index < virtual_stick_devices.size(); ++index) {
if (!virtual_stick_devices[index]) {
continue;
}
virtual_stick_devices[index]->SetCallback({
.on_change =
[this, index](const Common::Input::CallbackStatus& callback) {
SetStick(callback, index, VIRTUAL_UUID);
},
});
}
}
void EmulatedController::UnloadInput() {
@@ -349,6 +425,12 @@ void EmulatedController::UnloadInput() {
for (auto& stick : tas_stick_devices) {
stick.reset();
}
for (auto& button : virtual_button_devices) {
button.reset();
}
for (auto& stick : virtual_stick_devices) {
stick.reset();
}
camera_devices.reset();
nfc_devices.reset();
}

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@@ -385,6 +385,9 @@ private:
/// Set the params for TAS devices
void LoadTASParams();
/// Set the params for virtual pad devices
void LoadVirtualGamepadParams();
/**
* @param use_temporary_value If true tmp_npad_type will be used
* @return true if the controller style is fullkey
@@ -500,6 +503,12 @@ private:
ButtonDevices tas_button_devices;
StickDevices tas_stick_devices;
// Virtual gamepad related variables
ButtonParams virtual_button_params;
StickParams virtual_stick_params;
ButtonDevices virtual_button_devices;
StickDevices virtual_stick_devices;
mutable std::mutex mutex;
mutable std::mutex callback_mutex;
std::unordered_map<int, ControllerUpdateCallback> callback_list;

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@@ -167,6 +167,9 @@ void HLERequestContext::ParseCommandBuffer(const KHandleTable& handle_table, u32
}
if (incoming) {
// Populate the object lists with the data in the IPC request.
incoming_copy_handles.reserve(handle_descriptor_header->num_handles_to_copy);
incoming_move_handles.reserve(handle_descriptor_header->num_handles_to_move);
for (u32 handle = 0; handle < handle_descriptor_header->num_handles_to_copy; ++handle) {
incoming_copy_handles.push_back(rp.Pop<Handle>());
}
@@ -181,6 +184,11 @@ void HLERequestContext::ParseCommandBuffer(const KHandleTable& handle_table, u32
}
}
buffer_x_desciptors.reserve(command_header->num_buf_x_descriptors);
buffer_a_desciptors.reserve(command_header->num_buf_a_descriptors);
buffer_b_desciptors.reserve(command_header->num_buf_b_descriptors);
buffer_w_desciptors.reserve(command_header->num_buf_w_descriptors);
for (u32 i = 0; i < command_header->num_buf_x_descriptors; ++i) {
buffer_x_desciptors.push_back(rp.PopRaw<IPC::BufferDescriptorX>());
}
@@ -318,25 +326,23 @@ Result HLERequestContext::WriteToOutgoingCommandBuffer(KThread& requesting_threa
}
std::vector<u8> HLERequestContext::ReadBuffer(std::size_t buffer_index) const {
std::vector<u8> buffer{};
const bool is_buffer_a{BufferDescriptorA().size() > buffer_index &&
BufferDescriptorA()[buffer_index].Size()};
if (is_buffer_a) {
ASSERT_OR_EXECUTE_MSG(
BufferDescriptorA().size() > buffer_index, { return buffer; },
BufferDescriptorA().size() > buffer_index, { return {}; },
"BufferDescriptorA invalid buffer_index {}", buffer_index);
buffer.resize(BufferDescriptorA()[buffer_index].Size());
std::vector<u8> buffer(BufferDescriptorA()[buffer_index].Size());
memory.ReadBlock(BufferDescriptorA()[buffer_index].Address(), buffer.data(), buffer.size());
return buffer;
} else {
ASSERT_OR_EXECUTE_MSG(
BufferDescriptorX().size() > buffer_index, { return buffer; },
BufferDescriptorX().size() > buffer_index, { return {}; },
"BufferDescriptorX invalid buffer_index {}", buffer_index);
buffer.resize(BufferDescriptorX()[buffer_index].Size());
std::vector<u8> buffer(BufferDescriptorX()[buffer_index].Size());
memory.ReadBlock(BufferDescriptorX()[buffer_index].Address(), buffer.data(), buffer.size());
return buffer;
}
return buffer;
}
std::size_t HLERequestContext::WriteBuffer(const void* buffer, std::size_t size,

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@@ -285,6 +285,17 @@ void KProcess::UnregisterThread(KThread* thread) {
thread_list.remove(thread);
}
u64 KProcess::GetFreeThreadCount() const {
if (resource_limit != nullptr) {
const auto current_value =
resource_limit->GetCurrentValue(LimitableResource::ThreadCountMax);
const auto limit_value = resource_limit->GetLimitValue(LimitableResource::ThreadCountMax);
return limit_value - current_value;
} else {
return 0;
}
}
Result KProcess::Reset() {
// Lock the process and the scheduler.
KScopedLightLock lk(state_lock);

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@@ -304,6 +304,9 @@ public:
/// from this process' thread list.
void UnregisterThread(KThread* thread);
/// Retrieves the number of available threads for this process.
u64 GetFreeThreadCount() const;
/// Clears the signaled state of the process if and only if it's signaled.
///
/// @pre The process must not be already terminated. If this is called on a

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@@ -104,12 +104,16 @@ struct KernelCore::Impl {
}
void CloseCurrentProcess() {
(*current_process).Finalize();
// current_process->Close();
// TODO: The current process should be destroyed based on accurate ref counting after
KProcess* old_process = current_process.exchange(nullptr);
if (old_process == nullptr) {
return;
}
// old_process->Close();
// TODO: The process should be destroyed based on accurate ref counting after
// calling Close(). Adding a manual Destroy() call instead to avoid a memory leak.
(*current_process).Destroy();
current_process = nullptr;
old_process->Finalize();
old_process->Destroy();
}
void Shutdown() {

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@@ -163,9 +163,6 @@ ServiceThread::Impl::~Impl() {
m_wakeup_event->Signal();
m_host_thread.join();
// Lock mutex.
m_session_mutex.lock();
// Close all remaining sessions.
for (const auto& [server_session, manager] : m_sessions) {
server_session->Close();

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@@ -784,63 +784,29 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
LOG_TRACE(Kernel_SVC, "called info_id=0x{:X}, info_sub_id=0x{:X}, handle=0x{:08X}", info_id,
info_sub_id, handle);
enum class GetInfoType : u64 {
// 1.0.0+
AllowedCPUCoreMask = 0,
AllowedThreadPriorityMask = 1,
MapRegionBaseAddr = 2,
MapRegionSize = 3,
HeapRegionBaseAddr = 4,
HeapRegionSize = 5,
TotalPhysicalMemoryAvailable = 6,
TotalPhysicalMemoryUsed = 7,
IsCurrentProcessBeingDebugged = 8,
RegisterResourceLimit = 9,
IdleTickCount = 10,
RandomEntropy = 11,
ThreadTickCount = 0xF0000002,
// 2.0.0+
ASLRRegionBaseAddr = 12,
ASLRRegionSize = 13,
StackRegionBaseAddr = 14,
StackRegionSize = 15,
// 3.0.0+
SystemResourceSize = 16,
SystemResourceUsage = 17,
TitleId = 18,
// 4.0.0+
PrivilegedProcessId = 19,
// 5.0.0+
UserExceptionContextAddr = 20,
// 6.0.0+
TotalPhysicalMemoryAvailableWithoutSystemResource = 21,
TotalPhysicalMemoryUsedWithoutSystemResource = 22,
// Homebrew only
MesosphereCurrentProcess = 65001,
};
const auto info_id_type = static_cast<GetInfoType>(info_id);
const auto info_id_type = static_cast<InfoType>(info_id);
switch (info_id_type) {
case GetInfoType::AllowedCPUCoreMask:
case GetInfoType::AllowedThreadPriorityMask:
case GetInfoType::MapRegionBaseAddr:
case GetInfoType::MapRegionSize:
case GetInfoType::HeapRegionBaseAddr:
case GetInfoType::HeapRegionSize:
case GetInfoType::ASLRRegionBaseAddr:
case GetInfoType::ASLRRegionSize:
case GetInfoType::StackRegionBaseAddr:
case GetInfoType::StackRegionSize:
case GetInfoType::TotalPhysicalMemoryAvailable:
case GetInfoType::TotalPhysicalMemoryUsed:
case GetInfoType::SystemResourceSize:
case GetInfoType::SystemResourceUsage:
case GetInfoType::TitleId:
case GetInfoType::UserExceptionContextAddr:
case GetInfoType::TotalPhysicalMemoryAvailableWithoutSystemResource:
case GetInfoType::TotalPhysicalMemoryUsedWithoutSystemResource: {
case InfoType::CoreMask:
case InfoType::PriorityMask:
case InfoType::AliasRegionAddress:
case InfoType::AliasRegionSize:
case InfoType::HeapRegionAddress:
case InfoType::HeapRegionSize:
case InfoType::AslrRegionAddress:
case InfoType::AslrRegionSize:
case InfoType::StackRegionAddress:
case InfoType::StackRegionSize:
case InfoType::TotalMemorySize:
case InfoType::UsedMemorySize:
case InfoType::SystemResourceSizeTotal:
case InfoType::SystemResourceSizeUsed:
case InfoType::ProgramId:
case InfoType::UserExceptionContextAddress:
case InfoType::TotalNonSystemMemorySize:
case InfoType::UsedNonSystemMemorySize:
case InfoType::IsApplication:
case InfoType::FreeThreadCount: {
if (info_sub_id != 0) {
LOG_ERROR(Kernel_SVC, "Info sub id is non zero! info_id={}, info_sub_id={}", info_id,
info_sub_id);
@@ -856,79 +822,83 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
}
switch (info_id_type) {
case GetInfoType::AllowedCPUCoreMask:
case InfoType::CoreMask:
*result = process->GetCoreMask();
return ResultSuccess;
case GetInfoType::AllowedThreadPriorityMask:
case InfoType::PriorityMask:
*result = process->GetPriorityMask();
return ResultSuccess;
case GetInfoType::MapRegionBaseAddr:
case InfoType::AliasRegionAddress:
*result = process->PageTable().GetAliasRegionStart();
return ResultSuccess;
case GetInfoType::MapRegionSize:
case InfoType::AliasRegionSize:
*result = process->PageTable().GetAliasRegionSize();
return ResultSuccess;
case GetInfoType::HeapRegionBaseAddr:
case InfoType::HeapRegionAddress:
*result = process->PageTable().GetHeapRegionStart();
return ResultSuccess;
case GetInfoType::HeapRegionSize:
case InfoType::HeapRegionSize:
*result = process->PageTable().GetHeapRegionSize();
return ResultSuccess;
case GetInfoType::ASLRRegionBaseAddr:
case InfoType::AslrRegionAddress:
*result = process->PageTable().GetAliasCodeRegionStart();
return ResultSuccess;
case GetInfoType::ASLRRegionSize:
case InfoType::AslrRegionSize:
*result = process->PageTable().GetAliasCodeRegionSize();
return ResultSuccess;
case GetInfoType::StackRegionBaseAddr:
case InfoType::StackRegionAddress:
*result = process->PageTable().GetStackRegionStart();
return ResultSuccess;
case GetInfoType::StackRegionSize:
case InfoType::StackRegionSize:
*result = process->PageTable().GetStackRegionSize();
return ResultSuccess;
case GetInfoType::TotalPhysicalMemoryAvailable:
case InfoType::TotalMemorySize:
*result = process->GetTotalPhysicalMemoryAvailable();
return ResultSuccess;
case GetInfoType::TotalPhysicalMemoryUsed:
case InfoType::UsedMemorySize:
*result = process->GetTotalPhysicalMemoryUsed();
return ResultSuccess;
case GetInfoType::SystemResourceSize:
case InfoType::SystemResourceSizeTotal:
*result = process->GetSystemResourceSize();
return ResultSuccess;
case GetInfoType::SystemResourceUsage:
case InfoType::SystemResourceSizeUsed:
LOG_WARNING(Kernel_SVC, "(STUBBED) Attempted to query system resource usage");
*result = process->GetSystemResourceUsage();
return ResultSuccess;
case GetInfoType::TitleId:
case InfoType::ProgramId:
*result = process->GetProgramID();
return ResultSuccess;
case GetInfoType::UserExceptionContextAddr:
case InfoType::UserExceptionContextAddress:
*result = process->GetProcessLocalRegionAddress();
return ResultSuccess;
case GetInfoType::TotalPhysicalMemoryAvailableWithoutSystemResource:
case InfoType::TotalNonSystemMemorySize:
*result = process->GetTotalPhysicalMemoryAvailableWithoutSystemResource();
return ResultSuccess;
case GetInfoType::TotalPhysicalMemoryUsedWithoutSystemResource:
case InfoType::UsedNonSystemMemorySize:
*result = process->GetTotalPhysicalMemoryUsedWithoutSystemResource();
return ResultSuccess;
case InfoType::FreeThreadCount:
*result = process->GetFreeThreadCount();
return ResultSuccess;
default:
break;
}
@@ -937,11 +907,11 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
return ResultInvalidEnumValue;
}
case GetInfoType::IsCurrentProcessBeingDebugged:
case InfoType::DebuggerAttached:
*result = 0;
return ResultSuccess;
case GetInfoType::RegisterResourceLimit: {
case InfoType::ResourceLimit: {
if (handle != 0) {
LOG_ERROR(Kernel, "Handle is non zero! handle={:08X}", handle);
return ResultInvalidHandle;
@@ -969,7 +939,7 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
return ResultSuccess;
}
case GetInfoType::RandomEntropy:
case InfoType::RandomEntropy:
if (handle != 0) {
LOG_ERROR(Kernel_SVC, "Process Handle is non zero, expected 0 result but got {:016X}",
handle);
@@ -985,13 +955,13 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
*result = system.Kernel().CurrentProcess()->GetRandomEntropy(info_sub_id);
return ResultSuccess;
case GetInfoType::PrivilegedProcessId:
case InfoType::InitialProcessIdRange:
LOG_WARNING(Kernel_SVC,
"(STUBBED) Attempted to query privileged process id bounds, returned 0");
*result = 0;
return ResultSuccess;
case GetInfoType::ThreadTickCount: {
case InfoType::ThreadTickCount: {
constexpr u64 num_cpus = 4;
if (info_sub_id != 0xFFFFFFFFFFFFFFFF && info_sub_id >= num_cpus) {
LOG_ERROR(Kernel_SVC, "Core count is out of range, expected {} but got {}", num_cpus,
@@ -1026,7 +996,7 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
*result = out_ticks;
return ResultSuccess;
}
case GetInfoType::IdleTickCount: {
case InfoType::IdleTickCount: {
// Verify the input handle is invalid.
R_UNLESS(handle == InvalidHandle, ResultInvalidHandle);
@@ -1040,7 +1010,7 @@ static Result GetInfo(Core::System& system, u64* result, u64 info_id, Handle han
*result = system.Kernel().CurrentScheduler()->GetIdleThread()->GetCpuTime();
return ResultSuccess;
}
case GetInfoType::MesosphereCurrentProcess: {
case InfoType::MesosphereCurrentProcess: {
// Verify the input handle is invalid.
R_UNLESS(handle == InvalidHandle, ResultInvalidHandle);

View File

@@ -203,8 +203,9 @@ private:
};
AudInU::AudInU(Core::System& system_)
: ServiceFramework{system_, "audin:u"}, service_context{system_, "AudInU"},
impl{std::make_unique<AudioCore::AudioIn::Manager>(system_)} {
: ServiceFramework{system_, "audin:u", ServiceThreadType::CreateNew},
service_context{system_, "AudInU"}, impl{std::make_unique<AudioCore::AudioIn::Manager>(
system_)} {
// clang-format off
static const FunctionInfo functions[] = {
{0, &AudInU::ListAudioIns, "ListAudioIns"},

View File

@@ -26,8 +26,9 @@ public:
explicit IAudioOut(Core::System& system_, AudioCore::AudioOut::Manager& manager,
size_t session_id, const std::string& device_name,
const AudioOutParameter& in_params, u32 handle, u64 applet_resource_user_id)
: ServiceFramework{system_, "IAudioOut"}, service_context{system_, "IAudioOut"},
event{service_context.CreateEvent("AudioOutEvent")},
: ServiceFramework{system_, "IAudioOut", ServiceThreadType::CreateNew},
service_context{system_, "IAudioOut"}, event{service_context.CreateEvent(
"AudioOutEvent")},
impl{std::make_shared<AudioCore::AudioOut::Out>(system_, manager, event, session_id)} {
// clang-format off
@@ -220,8 +221,9 @@ private:
};
AudOutU::AudOutU(Core::System& system_)
: ServiceFramework{system_, "audout:u"}, service_context{system_, "AudOutU"},
impl{std::make_unique<AudioCore::AudioOut::Manager>(system_)} {
: ServiceFramework{system_, "audout:u", ServiceThreadType::CreateNew},
service_context{system_, "AudOutU"}, impl{std::make_unique<AudioCore::AudioOut::Manager>(
system_)} {
// clang-format off
static const FunctionInfo functions[] = {
{0, &AudOutU::ListAudioOuts, "ListAudioOuts"},

View File

@@ -35,9 +35,10 @@ public:
AudioCore::AudioRendererParameterInternal& params,
Kernel::KTransferMemory* transfer_memory, u64 transfer_memory_size,
u32 process_handle, u64 applet_resource_user_id, s32 session_id)
: ServiceFramework{system_, "IAudioRenderer"}, service_context{system_, "IAudioRenderer"},
rendered_event{service_context.CreateEvent("IAudioRendererEvent")}, manager{manager_},
impl{std::make_unique<Renderer>(system_, manager, rendered_event)} {
: ServiceFramework{system_, "IAudioRenderer", ServiceThreadType::CreateNew},
service_context{system_, "IAudioRenderer"}, rendered_event{service_context.CreateEvent(
"IAudioRendererEvent")},
manager{manager_}, impl{std::make_unique<Renderer>(system_, manager, rendered_event)} {
// clang-format off
static const FunctionInfo functions[] = {
{0, &IAudioRenderer::GetSampleRate, "GetSampleRate"},
@@ -242,8 +243,10 @@ class IAudioDevice final : public ServiceFramework<IAudioDevice> {
public:
explicit IAudioDevice(Core::System& system_, u64 applet_resource_user_id, u32 revision,
u32 device_num)
: ServiceFramework{system_, "IAudioDevice"}, service_context{system_, "IAudioDevice"},
impl{std::make_unique<AudioDevice>(system_, applet_resource_user_id, revision)},
: ServiceFramework{system_, "IAudioDevice", ServiceThreadType::CreateNew},
service_context{system_, "IAudioDevice"}, impl{std::make_unique<AudioDevice>(
system_, applet_resource_user_id,
revision)},
event{service_context.CreateEvent(fmt::format("IAudioDeviceEvent-{}", device_num))} {
static const FunctionInfo functions[] = {
{0, &IAudioDevice::ListAudioDeviceName, "ListAudioDeviceName"},
@@ -418,7 +421,7 @@ private:
};
AudRenU::AudRenU(Core::System& system_)
: ServiceFramework{system_, "audren:u"},
: ServiceFramework{system_, "audren:u", ServiceThreadType::CreateNew},
service_context{system_, "audren:u"}, impl{std::make_unique<Manager>(system_)} {
// clang-format off
static const FunctionInfo functions[] = {

View File

@@ -191,6 +191,13 @@ void SET::GetKeyCodeMap2(Kernel::HLERequestContext& ctx) {
GetKeyCodeMapImpl(ctx);
}
void SET::GetDeviceNickName(Kernel::HLERequestContext& ctx) {
LOG_DEBUG(Service_SET, "called");
IPC::ResponseBuilder rb{ctx, 2};
rb.Push(ResultSuccess);
ctx.WriteBuffer(Settings::values.device_name.GetValue());
}
SET::SET(Core::System& system_) : ServiceFramework{system_, "set"} {
// clang-format off
static const FunctionInfo functions[] = {
@@ -205,7 +212,7 @@ SET::SET(Core::System& system_) : ServiceFramework{system_, "set"} {
{8, &SET::GetQuestFlag, "GetQuestFlag"},
{9, &SET::GetKeyCodeMap2, "GetKeyCodeMap2"},
{10, nullptr, "GetFirmwareVersionForDebug"},
{11, nullptr, "GetDeviceNickName"},
{11, &SET::GetDeviceNickName, "GetDeviceNickName"},
};
// clang-format on

View File

@@ -50,6 +50,7 @@ private:
void GetRegionCode(Kernel::HLERequestContext& ctx);
void GetKeyCodeMap(Kernel::HLERequestContext& ctx);
void GetKeyCodeMap2(Kernel::HLERequestContext& ctx);
void GetDeviceNickName(Kernel::HLERequestContext& ctx);
};
} // namespace Service::Set

View File

@@ -3,6 +3,7 @@
#include "common/assert.h"
#include "common/logging/log.h"
#include "common/settings.h"
#include "core/file_sys/errors.h"
#include "core/file_sys/system_archive/system_version.h"
#include "core/hle/ipc_helpers.h"
@@ -176,6 +177,13 @@ void SET_SYS::GetSettingsItemValue(Kernel::HLERequestContext& ctx) {
rb.Push(response);
}
void SET_SYS::GetDeviceNickName(Kernel::HLERequestContext& ctx) {
LOG_DEBUG(Service_SET, "called");
IPC::ResponseBuilder rb{ctx, 2};
rb.Push(ResultSuccess);
ctx.WriteBuffer(::Settings::values.device_name.GetValue());
}
SET_SYS::SET_SYS(Core::System& system_) : ServiceFramework{system_, "set:sys"} {
// clang-format off
static const FunctionInfo functions[] = {
@@ -253,7 +261,7 @@ SET_SYS::SET_SYS(Core::System& system_) : ServiceFramework{system_, "set:sys"} {
{74, nullptr, "SetWirelessLanEnableFlag"},
{75, nullptr, "GetInitialLaunchSettings"},
{76, nullptr, "SetInitialLaunchSettings"},
{77, nullptr, "GetDeviceNickName"},
{77, &SET_SYS::GetDeviceNickName, "GetDeviceNickName"},
{78, nullptr, "SetDeviceNickName"},
{79, nullptr, "GetProductModel"},
{80, nullptr, "GetLdnChannel"},

View File

@@ -29,6 +29,7 @@ private:
void GetFirmwareVersion2(Kernel::HLERequestContext& ctx);
void GetColorSetId(Kernel::HLERequestContext& ctx);
void SetColorSetId(Kernel::HLERequestContext& ctx);
void GetDeviceNickName(Kernel::HLERequestContext& ctx);
ColorSet color_set = ColorSet::BasicWhite;
};

View File

@@ -6,7 +6,6 @@
#include "common/assert.h"
#include "common/atomic_ops.h"
#include "common/cache_management.h"
#include "common/common_types.h"
#include "common/logging/log.h"
#include "common/page_table.h"
@@ -195,13 +194,11 @@ struct Memory::Impl {
break;
}
case Common::PageType::Memory: {
DEBUG_ASSERT(pointer);
u8* mem_ptr = pointer + page_offset + (page_index << YUZU_PAGEBITS);
on_memory(copy_amount, mem_ptr);
break;
}
case Common::PageType::DebugMemory: {
DEBUG_ASSERT(pointer);
u8* const mem_ptr{GetPointerFromDebugMemory(current_vaddr)};
on_memory(copy_amount, mem_ptr);
break;
@@ -342,10 +339,9 @@ struct Memory::Impl {
LOG_ERROR(HW_Memory, "Unmapped cache maintenance @ {:#018X}", current_vaddr);
throw InvalidMemoryException();
},
[&](const std::size_t block_size, u8* const host_ptr) { cb(block_size, host_ptr); },
[&](const std::size_t block_size, u8* const host_ptr) {},
[&](const VAddr current_vaddr, const std::size_t block_size, u8* const host_ptr) {
system.GPU().FlushRegion(current_vaddr, block_size);
cb(block_size, host_ptr);
cb(current_vaddr, block_size);
},
[](const std::size_t block_size) {});
} catch (InvalidMemoryException&) {
@@ -356,27 +352,30 @@ struct Memory::Impl {
}
Result InvalidateDataCache(const Kernel::KProcess& process, VAddr dest_addr, std::size_t size) {
auto perform = [&](const std::size_t block_size, u8* const host_ptr) {
// Do nothing; this operation (dc ivac) cannot be supported
// from EL0
auto on_rasterizer = [&](const VAddr current_vaddr, const std::size_t block_size) {
// dc ivac: Invalidate to point of coherency
// GPU flush -> CPU invalidate
system.GPU().FlushRegion(current_vaddr, block_size);
};
return PerformCacheOperation(process, dest_addr, size, perform);
return PerformCacheOperation(process, dest_addr, size, on_rasterizer);
}
Result StoreDataCache(const Kernel::KProcess& process, VAddr dest_addr, std::size_t size) {
auto perform = [&](const std::size_t block_size, u8* const host_ptr) {
auto on_rasterizer = [&](const VAddr current_vaddr, const std::size_t block_size) {
// dc cvac: Store to point of coherency
Common::DataCacheLineCleanByVAToPoC(host_ptr, block_size);
// CPU flush -> GPU invalidate
system.GPU().InvalidateRegion(current_vaddr, block_size);
};
return PerformCacheOperation(process, dest_addr, size, perform);
return PerformCacheOperation(process, dest_addr, size, on_rasterizer);
}
Result FlushDataCache(const Kernel::KProcess& process, VAddr dest_addr, std::size_t size) {
auto perform = [&](const std::size_t block_size, u8* const host_ptr) {
auto on_rasterizer = [&](const VAddr current_vaddr, const std::size_t block_size) {
// dc civac: Store to point of coherency, and invalidate from cache
Common::DataCacheLineCleanAndInvalidateByVAToPoC(host_ptr, block_size);
// CPU flush -> GPU invalidate
system.GPU().InvalidateRegion(current_vaddr, block_size);
};
return PerformCacheOperation(process, dest_addr, size, perform);
return PerformCacheOperation(process, dest_addr, size, on_rasterizer);
}
void MarkRegionDebug(VAddr vaddr, u64 size, bool debug) {

View File

@@ -20,6 +20,8 @@ add_library(input_common STATIC
drivers/udp_client.h
drivers/virtual_amiibo.cpp
drivers/virtual_amiibo.h
drivers/virtual_gamepad.cpp
drivers/virtual_gamepad.h
helpers/stick_from_buttons.cpp
helpers/stick_from_buttons.h
helpers/touch_from_buttons.cpp

View File

@@ -17,7 +17,7 @@ Camera::Camera(std::string input_engine_) : InputEngine(std::move(input_engine_)
PreSetController(identifier);
}
void Camera::SetCameraData(std::size_t width, std::size_t height, std::vector<u32> data) {
void Camera::SetCameraData(std::size_t width, std::size_t height, std::span<const u32> data) {
const std::size_t desired_width = getImageWidth();
const std::size_t desired_height = getImageHeight();
status.data.resize(desired_width * desired_height);

View File

@@ -3,6 +3,8 @@
#pragma once
#include <span>
#include "input_common/input_engine.h"
namespace InputCommon {
@@ -15,7 +17,7 @@ class Camera final : public InputEngine {
public:
explicit Camera(std::string input_engine_);
void SetCameraData(std::size_t width, std::size_t height, std::vector<u32> data);
void SetCameraData(std::size_t width, std::size_t height, std::span<const u32> data);
std::size_t getImageWidth() const;
std::size_t getImageHeight() const;

View File

@@ -16,6 +16,8 @@ Common::UUID GetGUID(SDL_Joystick* joystick) {
const SDL_JoystickGUID guid = SDL_JoystickGetGUID(joystick);
std::array<u8, 16> data{};
std::memcpy(data.data(), guid.data, sizeof(data));
// Clear controller name crc
std::memset(data.data() + 2, 0, sizeof(u16));
return Common::UUID{data};
}
} // Anonymous namespace

View File

@@ -0,0 +1,78 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#include "input_common/drivers/virtual_gamepad.h"
namespace InputCommon {
constexpr std::size_t PlayerIndexCount = 10;
VirtualGamepad::VirtualGamepad(std::string input_engine_) : InputEngine(std::move(input_engine_)) {
for (std::size_t i = 0; i < PlayerIndexCount; i++) {
PreSetController(GetIdentifier(i));
}
}
void VirtualGamepad::SetButtonState(std::size_t player_index, int button_id, bool value) {
if (player_index > PlayerIndexCount) {
return;
}
const auto identifier = GetIdentifier(player_index);
SetButton(identifier, button_id, value);
}
void VirtualGamepad::SetButtonState(std::size_t player_index, VirtualButton button_id, bool value) {
SetButtonState(player_index, static_cast<int>(button_id), value);
}
void VirtualGamepad::SetStickPosition(std::size_t player_index, int axis_id, float x_value,
float y_value) {
if (player_index > PlayerIndexCount) {
return;
}
const auto identifier = GetIdentifier(player_index);
SetAxis(identifier, axis_id * 2, x_value);
SetAxis(identifier, (axis_id * 2) + 1, y_value);
}
void VirtualGamepad::SetStickPosition(std::size_t player_index, VirtualStick axis_id, float x_value,
float y_value) {
SetStickPosition(player_index, static_cast<int>(axis_id), x_value, y_value);
}
void VirtualGamepad::ResetControllers() {
for (std::size_t i = 0; i < PlayerIndexCount; i++) {
SetStickPosition(i, VirtualStick::Left, 0.0f, 0.0f);
SetStickPosition(i, VirtualStick::Right, 0.0f, 0.0f);
SetButtonState(i, VirtualButton::ButtonA, false);
SetButtonState(i, VirtualButton::ButtonB, false);
SetButtonState(i, VirtualButton::ButtonX, false);
SetButtonState(i, VirtualButton::ButtonY, false);
SetButtonState(i, VirtualButton::StickL, false);
SetButtonState(i, VirtualButton::StickR, false);
SetButtonState(i, VirtualButton::TriggerL, false);
SetButtonState(i, VirtualButton::TriggerR, false);
SetButtonState(i, VirtualButton::TriggerZL, false);
SetButtonState(i, VirtualButton::TriggerZR, false);
SetButtonState(i, VirtualButton::ButtonPlus, false);
SetButtonState(i, VirtualButton::ButtonMinus, false);
SetButtonState(i, VirtualButton::ButtonLeft, false);
SetButtonState(i, VirtualButton::ButtonUp, false);
SetButtonState(i, VirtualButton::ButtonRight, false);
SetButtonState(i, VirtualButton::ButtonDown, false);
SetButtonState(i, VirtualButton::ButtonSL, false);
SetButtonState(i, VirtualButton::ButtonSR, false);
SetButtonState(i, VirtualButton::ButtonHome, false);
SetButtonState(i, VirtualButton::ButtonCapture, false);
}
}
PadIdentifier VirtualGamepad::GetIdentifier(std::size_t player_index) const {
return {
.guid = Common::UUID{},
.port = player_index,
.pad = 0,
};
}
} // namespace InputCommon

View File

@@ -0,0 +1,73 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#pragma once
#include "input_common/input_engine.h"
namespace InputCommon {
/**
* A virtual controller that is always assigned to the game input
*/
class VirtualGamepad final : public InputEngine {
public:
enum class VirtualButton {
ButtonA,
ButtonB,
ButtonX,
ButtonY,
StickL,
StickR,
TriggerL,
TriggerR,
TriggerZL,
TriggerZR,
ButtonPlus,
ButtonMinus,
ButtonLeft,
ButtonUp,
ButtonRight,
ButtonDown,
ButtonSL,
ButtonSR,
ButtonHome,
ButtonCapture,
};
enum class VirtualStick {
Left = 0,
Right = 1,
};
explicit VirtualGamepad(std::string input_engine_);
/**
* Sets the status of all buttons bound with the key to pressed
* @param player_index the player number that will take this action
* @param button_id the id of the button
* @param value indicates if the button is pressed or not
*/
void SetButtonState(std::size_t player_index, int button_id, bool value);
void SetButtonState(std::size_t player_index, VirtualButton button_id, bool value);
/**
* Sets the status of all buttons bound with the key to released
* @param player_index the player number that will take this action
* @param axis_id the id of the axis to move
* @param x_value the position of the stick in the x axis
* @param y_value the position of the stick in the y axis
*/
void SetStickPosition(std::size_t player_index, int axis_id, float x_value, float y_value);
void SetStickPosition(std::size_t player_index, VirtualStick axis_id, float x_value,
float y_value);
/// Restores all inputs into the neutral position
void ResetControllers();
private:
/// Returns the correct identifier corresponding to the player index
PadIdentifier GetIdentifier(std::size_t player_index) const;
};
} // namespace InputCommon

View File

@@ -12,6 +12,7 @@
#include "input_common/drivers/touch_screen.h"
#include "input_common/drivers/udp_client.h"
#include "input_common/drivers/virtual_amiibo.h"
#include "input_common/drivers/virtual_gamepad.h"
#include "input_common/helpers/stick_from_buttons.h"
#include "input_common/helpers/touch_from_buttons.h"
#include "input_common/input_engine.h"
@@ -85,6 +86,12 @@ struct InputSubsystem::Impl {
Common::Input::RegisterOutputFactory(virtual_amiibo->GetEngineName(),
virtual_amiibo_output_factory);
virtual_gamepad = std::make_shared<VirtualGamepad>("virtual_gamepad");
virtual_gamepad->SetMappingCallback(mapping_callback);
virtual_gamepad_input_factory = std::make_shared<InputFactory>(virtual_gamepad);
Common::Input::RegisterInputFactory(virtual_gamepad->GetEngineName(),
virtual_gamepad_input_factory);
#ifdef HAVE_SDL2
sdl = std::make_shared<SDLDriver>("sdl");
sdl->SetMappingCallback(mapping_callback);
@@ -132,6 +139,9 @@ struct InputSubsystem::Impl {
Common::Input::UnregisterOutputFactory(virtual_amiibo->GetEngineName());
virtual_amiibo.reset();
Common::Input::UnregisterInputFactory(virtual_gamepad->GetEngineName());
virtual_gamepad.reset();
#ifdef HAVE_SDL2
Common::Input::UnregisterInputFactory(sdl->GetEngineName());
Common::Input::UnregisterOutputFactory(sdl->GetEngineName());
@@ -290,6 +300,9 @@ struct InputSubsystem::Impl {
if (engine == tas_input->GetEngineName()) {
return true;
}
if (engine == virtual_gamepad->GetEngineName()) {
return true;
}
#ifdef HAVE_SDL2
if (engine == sdl->GetEngineName()) {
return true;
@@ -338,6 +351,7 @@ struct InputSubsystem::Impl {
std::shared_ptr<CemuhookUDP::UDPClient> udp_client;
std::shared_ptr<Camera> camera;
std::shared_ptr<VirtualAmiibo> virtual_amiibo;
std::shared_ptr<VirtualGamepad> virtual_gamepad;
std::shared_ptr<InputFactory> keyboard_factory;
std::shared_ptr<InputFactory> mouse_factory;
@@ -347,6 +361,7 @@ struct InputSubsystem::Impl {
std::shared_ptr<InputFactory> tas_input_factory;
std::shared_ptr<InputFactory> camera_input_factory;
std::shared_ptr<InputFactory> virtual_amiibo_input_factory;
std::shared_ptr<InputFactory> virtual_gamepad_input_factory;
std::shared_ptr<OutputFactory> keyboard_output_factory;
std::shared_ptr<OutputFactory> mouse_output_factory;
@@ -423,6 +438,14 @@ const VirtualAmiibo* InputSubsystem::GetVirtualAmiibo() const {
return impl->virtual_amiibo.get();
}
VirtualGamepad* InputSubsystem::GetVirtualGamepad() {
return impl->virtual_gamepad.get();
}
const VirtualGamepad* InputSubsystem::GetVirtualGamepad() const {
return impl->virtual_gamepad.get();
}
std::vector<Common::ParamPackage> InputSubsystem::GetInputDevices() const {
return impl->GetInputDevices();
}

View File

@@ -34,6 +34,7 @@ class Keyboard;
class Mouse;
class TouchScreen;
class VirtualAmiibo;
class VirtualGamepad;
struct MappingData;
} // namespace InputCommon
@@ -108,6 +109,12 @@ public:
/// Retrieves the underlying virtual amiibo input device.
[[nodiscard]] const VirtualAmiibo* GetVirtualAmiibo() const;
/// Retrieves the underlying virtual gamepad input device.
[[nodiscard]] VirtualGamepad* GetVirtualGamepad();
/// Retrieves the underlying virtual gamepad input device.
[[nodiscard]] const VirtualGamepad* GetVirtualGamepad() const;
/**
* Returns all available input devices that this Factory can create a new device with.
* Each returned ParamPackage should have a `display` field used for display, a `engine` field

View File

@@ -461,7 +461,7 @@ void EmitSetSampleMask(EmitContext& ctx, Id value) {
}
void EmitSetFragDepth(EmitContext& ctx, Id value) {
if (!ctx.runtime_info.convert_depth_mode) {
if (!ctx.runtime_info.convert_depth_mode || ctx.profile.support_native_ndc) {
ctx.OpStore(ctx.frag_depth, value);
return;
}

View File

@@ -116,7 +116,8 @@ void EmitPrologue(EmitContext& ctx) {
}
void EmitEpilogue(EmitContext& ctx) {
if (ctx.stage == Stage::VertexB && ctx.runtime_info.convert_depth_mode) {
if (ctx.stage == Stage::VertexB && ctx.runtime_info.convert_depth_mode &&
!ctx.profile.support_native_ndc) {
ConvertDepthMode(ctx);
}
if (ctx.stage == Stage::Fragment) {
@@ -125,7 +126,7 @@ void EmitEpilogue(EmitContext& ctx) {
}
void EmitEmitVertex(EmitContext& ctx, const IR::Value& stream) {
if (ctx.runtime_info.convert_depth_mode) {
if (ctx.runtime_info.convert_depth_mode && !ctx.profile.support_native_ndc) {
ConvertDepthMode(ctx);
}
if (stream.IsImmediate()) {

View File

@@ -1345,8 +1345,10 @@ void EmitContext::DefineInputs(const IR::Program& program) {
if (info.uses_fswzadd || info.uses_subgroup_invocation_id || info.uses_subgroup_shuffles ||
(profile.warp_size_potentially_larger_than_guest &&
(info.uses_subgroup_vote || info.uses_subgroup_mask))) {
AddCapability(spv::Capability::GroupNonUniform);
subgroup_local_invocation_id =
DefineInput(*this, U32[1], false, spv::BuiltIn::SubgroupLocalInvocationId);
Decorate(subgroup_local_invocation_id, spv::Decoration::Flat);
}
if (info.uses_fswzadd) {
const Id f32_one{Const(1.0f)};

View File

@@ -35,6 +35,7 @@ struct Profile {
bool support_int64_atomics{};
bool support_derivative_control{};
bool support_geometry_shader_passthrough{};
bool support_native_ndc{};
bool support_gl_nv_gpu_shader_5{};
bool support_gl_amd_gpu_shader_half_float{};
bool support_gl_texture_shadow_lod{};

View File

@@ -178,6 +178,8 @@ add_library(video_core STATIC
renderer_vulkan/vk_scheduler.h
renderer_vulkan/vk_shader_util.cpp
renderer_vulkan/vk_shader_util.h
renderer_vulkan/vk_smaa.cpp
renderer_vulkan/vk_smaa.h
renderer_vulkan/vk_staging_buffer_pool.cpp
renderer_vulkan/vk_staging_buffer_pool.h
renderer_vulkan/vk_state_tracker.cpp
@@ -195,6 +197,8 @@ add_library(video_core STATIC
shader_environment.h
shader_notify.cpp
shader_notify.h
smaa_area_tex.h
smaa_search_tex.h
surface.cpp
surface.h
texture_cache/accelerated_swizzle.cpp

View File

@@ -189,7 +189,7 @@ void DrawManager::UpdateTopology() {
}
void DrawManager::ProcessDraw(bool draw_indexed, u32 instance_count) {
LOG_TRACE(HW_GPU, "called, topology={}, count={}", draw_state.topology.Value(),
LOG_TRACE(HW_GPU, "called, topology={}, count={}", draw_state.topology,
draw_indexed ? draw_state.index_buffer.count : draw_state.vertex_buffer.count);
UpdateTopology();

View File

@@ -223,8 +223,6 @@ struct GPU::Impl {
/// core timing events.
void Start() {
gpu_thread.StartThread(*renderer, renderer->Context(), *scheduler);
cpu_context = renderer->GetRenderWindow().CreateSharedContext();
cpu_context->MakeCurrent();
}
void NotifyShutdown() {
@@ -235,6 +233,9 @@ struct GPU::Impl {
/// Obtain the CPU Context
void ObtainContext() {
if (!cpu_context) {
cpu_context = renderer->GetRenderWindow().CreateSharedContext();
}
cpu_context->MakeCurrent();
}

View File

@@ -26,9 +26,16 @@ set(SHADER_FILES
opengl_present.frag
opengl_present.vert
opengl_present_scaleforce.frag
opengl_smaa.glsl
pitch_unswizzle.comp
present_bicubic.frag
present_gaussian.frag
smaa_edge_detection.vert
smaa_edge_detection.frag
smaa_blending_weight_calculation.vert
smaa_blending_weight_calculation.frag
smaa_neighborhood_blending.vert
smaa_neighborhood_blending.frag
vulkan_blit_color_float.frag
vulkan_blit_depth_stencil.frag
vulkan_fidelityfx_fsr_easu_fp16.comp

View File

@@ -11,10 +11,6 @@ string(TOUPPER ${CONTENTS_NAME} CONTENTS_NAME)
FILE(READ ${SOURCE_FILE} line_contents)
# Replace double quotes with single quotes,
# as double quotes will be used to wrap the lines
STRING(REGEX REPLACE "\"" "'" line_contents "${line_contents}")
# CMake separates list elements with semicolons, but semicolons
# are used extensively in the shader code.
# Replace with a temporary marker, to be reverted later.
@@ -25,7 +21,7 @@ STRING(REGEX REPLACE "\n" ";" line_contents "${line_contents}")
# Build the shader string, wrapping each line in double quotes.
foreach(line IN LISTS line_contents)
string(CONCAT CONTENTS "${CONTENTS}" \"${line}\\n\"\n)
string(CONCAT CONTENTS "${CONTENTS}" "R\"(${line}\n)\" ")
endforeach()
# Revert the original semicolons in the source.

File diff suppressed because it is too large Load Diff

View File

@@ -0,0 +1,36 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
layout (binding = 0) uniform sampler2D edges_tex;
layout (binding = 1) uniform sampler2D area_tex;
layout (binding = 2) uniform sampler2D search_tex;
layout (location = 0) in vec2 tex_coord;
layout (location = 1) in vec2 pix_coord;
layout (location = 2) in vec4 offset[3];
layout (location = 0) out vec4 frag_color;
vec4 metrics = vec4(1.0 / textureSize(edges_tex, 0), textureSize(edges_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 0
#define SMAA_INCLUDE_PS 1
#include "opengl_smaa.glsl"
void main() {
frag_color = SMAABlendingWeightCalculationPS(tex_coord,
pix_coord,
offset,
edges_tex,
area_tex,
search_tex,
vec4(0)
);
}

View File

@@ -0,0 +1,43 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
#ifdef VULKAN
#define VERTEX_ID gl_VertexIndex
#else // ^^^ Vulkan ^^^ // vvv OpenGL vvv
#define VERTEX_ID gl_VertexID
#endif
out gl_PerVertex {
vec4 gl_Position;
};
const vec2 vertices[3] =
vec2[3](vec2(-1,-1), vec2(3,-1), vec2(-1, 3));
layout (binding = 0) uniform sampler2D edges_tex;
layout (binding = 1) uniform sampler2D area_tex;
layout (binding = 2) uniform sampler2D search_tex;
layout (location = 0) out vec2 tex_coord;
layout (location = 1) out vec2 pix_coord;
layout (location = 2) out vec4 offset[3];
vec4 metrics = vec4(1.0 / textureSize(edges_tex, 0), textureSize(edges_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 1
#define SMAA_INCLUDE_PS 0
#include "opengl_smaa.glsl"
void main() {
vec2 vertex = vertices[VERTEX_ID];
gl_Position = vec4(vertex, 0.0, 1.0);
tex_coord = (vertex + 1.0) / 2.0;
SMAABlendingWeightCalculationVS(tex_coord, pix_coord, offset);
}

View File

@@ -0,0 +1,26 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
layout (binding = 0) uniform sampler2D input_tex;
layout (location = 0) in vec2 tex_coord;
layout (location = 1) in vec4 offset[3];
layout (location = 0) out vec2 frag_color;
vec4 metrics = vec4(1.0 / textureSize(input_tex, 0), textureSize(input_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 0
#define SMAA_INCLUDE_PS 1
#include "opengl_smaa.glsl"
void main() {
frag_color = SMAAColorEdgeDetectionPS(tex_coord, offset, input_tex);
}

View File

@@ -0,0 +1,40 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
#ifdef VULKAN
#define VERTEX_ID gl_VertexIndex
#else // ^^^ Vulkan ^^^ // vvv OpenGL vvv
#define VERTEX_ID gl_VertexID
#endif
out gl_PerVertex {
vec4 gl_Position;
};
const vec2 vertices[3] =
vec2[3](vec2(-1,-1), vec2(3,-1), vec2(-1, 3));
layout (binding = 0) uniform sampler2D input_tex;
layout (location = 0) out vec2 tex_coord;
layout (location = 1) out vec4 offset[3];
vec4 metrics = vec4(1.0 / textureSize(input_tex, 0), textureSize(input_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 1
#define SMAA_INCLUDE_PS 0
#include "opengl_smaa.glsl"
void main() {
vec2 vertex = vertices[VERTEX_ID];
gl_Position = vec4(vertex, 0.0, 1.0);
tex_coord = (vertex + 1.0) / 2.0;
SMAAEdgeDetectionVS(tex_coord, offset);
}

View File

@@ -0,0 +1,31 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
layout (binding = 0) uniform sampler2D input_tex;
layout (binding = 1) uniform sampler2D blend_tex;
layout (location = 0) in vec2 tex_coord;
layout (location = 1) in vec4 offset;
layout (location = 0) out vec4 frag_color;
vec4 metrics = vec4(1.0 / textureSize(input_tex, 0), textureSize(input_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 0
#define SMAA_INCLUDE_PS 1
#include "opengl_smaa.glsl"
void main() {
frag_color = SMAANeighborhoodBlendingPS(tex_coord,
offset,
input_tex,
blend_tex
);
}

View File

@@ -0,0 +1,41 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#version 460
#extension GL_GOOGLE_include_directive : enable
#ifdef VULKAN
#define VERTEX_ID gl_VertexIndex
#else // ^^^ Vulkan ^^^ // vvv OpenGL vvv
#define VERTEX_ID gl_VertexID
#endif
out gl_PerVertex {
vec4 gl_Position;
};
const vec2 vertices[3] =
vec2[3](vec2(-1,-1), vec2(3,-1), vec2(-1, 3));
layout (binding = 0) uniform sampler2D input_tex;
layout (binding = 1) uniform sampler2D blend_tex;
layout (location = 0) out vec2 tex_coord;
layout (location = 1) out vec4 offset;
vec4 metrics = vec4(1.0 / textureSize(input_tex, 0), textureSize(input_tex, 0));
#define SMAA_RT_METRICS metrics
#define SMAA_GLSL_4
#define SMAA_PRESET_ULTRA
#define SMAA_INCLUDE_VS 1
#define SMAA_INCLUDE_PS 0
#include "opengl_smaa.glsl"
void main() {
vec2 vertex = vertices[VERTEX_ID];
gl_Position = vec4(vertex, 0.0, 1.0);
tex_coord = (vertex + 1.0) / 2.0;
SMAANeighborhoodBlendingVS(tex_coord, offset);
}

View File

@@ -112,7 +112,7 @@ bool IsASTCSupported() {
}
} // Anonymous namespace
Device::Device() {
Device::Device(Core::Frontend::EmuWindow& emu_window) {
if (!GLAD_GL_VERSION_4_6) {
LOG_ERROR(Render_OpenGL, "OpenGL 4.6 is not available");
throw std::runtime_error{"Insufficient version"};
@@ -126,9 +126,9 @@ Device::Device() {
const bool is_intel = vendor_name == "Intel";
#ifdef __unix__
const bool is_linux = true;
constexpr bool is_linux = true;
#else
const bool is_linux = false;
constexpr bool is_linux = false;
#endif
bool disable_fast_buffer_sub_data = false;
@@ -193,9 +193,11 @@ Device::Device() {
}
}
strict_context_required = emu_window.StrictContextRequired();
// Blocks AMD and Intel OpenGL drivers on Windows from using asynchronous shader compilation.
// Blocks EGL on Wayland from using asynchronous shader compilation.
use_asynchronous_shaders = Settings::values.use_asynchronous_shaders.GetValue() &&
!(is_amd || (is_intel && !is_linux));
!(is_amd || (is_intel && !is_linux)) && !strict_context_required;
use_driver_cache = is_nvidia;
LOG_INFO(Render_OpenGL, "Renderer_VariableAOFFI: {}", has_variable_aoffi);

View File

@@ -5,6 +5,7 @@
#include <cstddef>
#include "common/common_types.h"
#include "core/frontend/emu_window.h"
#include "shader_recompiler/stage.h"
namespace Settings {
@@ -15,7 +16,7 @@ namespace OpenGL {
class Device {
public:
explicit Device();
explicit Device(Core::Frontend::EmuWindow& emu_window);
[[nodiscard]] std::string GetVendorName() const;
@@ -173,6 +174,10 @@ public:
return can_report_memory;
}
bool StrictContextRequired() const {
return strict_context_required;
}
private:
static bool TestVariableAoffi();
static bool TestPreciseBug();
@@ -216,6 +221,7 @@ private:
bool has_cbuf_ftou_bug{};
bool has_bool_ref_bug{};
bool can_report_memory{};
bool strict_context_required{};
std::string vendor_name;
};

View File

@@ -174,6 +174,7 @@ ShaderCache::ShaderCache(RasterizerOpenGL& rasterizer_, Core::Frontend::EmuWindo
texture_cache{texture_cache_}, buffer_cache{buffer_cache_}, program_manager{program_manager_},
state_tracker{state_tracker_}, shader_notify{shader_notify_},
use_asynchronous_shaders{device.UseAsynchronousShaders()},
strict_context_required{device.StrictContextRequired()},
profile{
.supported_spirv = 0x00010000,
@@ -203,6 +204,7 @@ ShaderCache::ShaderCache(RasterizerOpenGL& rasterizer_, Core::Frontend::EmuWindo
.support_int64_atomics = false,
.support_derivative_control = device.HasDerivativeControl(),
.support_geometry_shader_passthrough = device.HasGeometryShaderPassthrough(),
.support_native_ndc = true,
.support_gl_nv_gpu_shader_5 = device.HasNvGpuShader5(),
.support_gl_amd_gpu_shader_half_float = device.HasAmdShaderHalfFloat(),
.support_gl_texture_shadow_lod = device.HasTextureShadowLod(),
@@ -255,9 +257,14 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
}
shader_cache_filename = base_dir / "opengl.bin";
if (!workers) {
if (!workers && !strict_context_required) {
workers = CreateWorkers();
}
std::optional<Context> strict_context;
if (strict_context_required) {
strict_context.emplace(emu_window);
}
struct {
std::mutex mutex;
size_t total{};
@@ -265,44 +272,49 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
bool has_loaded{};
} state;
const auto queue_work{[&](Common::UniqueFunction<void, Context*>&& work) {
if (strict_context_required) {
work(&strict_context.value());
} else {
workers->QueueWork(std::move(work));
}
}};
const auto load_compute{[&](std::ifstream& file, FileEnvironment env) {
ComputePipelineKey key;
file.read(reinterpret_cast<char*>(&key), sizeof(key));
workers->QueueWork(
[this, key, env = std::move(env), &state, &callback](Context* ctx) mutable {
ctx->pools.ReleaseContents();
auto pipeline{CreateComputePipeline(ctx->pools, key, env)};
std::scoped_lock lock{state.mutex};
if (pipeline) {
compute_cache.emplace(key, std::move(pipeline));
}
++state.built;
if (state.has_loaded) {
callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
}
});
queue_work([this, key, env = std::move(env), &state, &callback](Context* ctx) mutable {
ctx->pools.ReleaseContents();
auto pipeline{CreateComputePipeline(ctx->pools, key, env)};
std::scoped_lock lock{state.mutex};
if (pipeline) {
compute_cache.emplace(key, std::move(pipeline));
}
++state.built;
if (state.has_loaded) {
callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
}
});
++state.total;
}};
const auto load_graphics{[&](std::ifstream& file, std::vector<FileEnvironment> envs) {
GraphicsPipelineKey key;
file.read(reinterpret_cast<char*>(&key), sizeof(key));
workers->QueueWork(
[this, key, envs = std::move(envs), &state, &callback](Context* ctx) mutable {
boost::container::static_vector<Shader::Environment*, 5> env_ptrs;
for (auto& env : envs) {
env_ptrs.push_back(&env);
}
ctx->pools.ReleaseContents();
auto pipeline{CreateGraphicsPipeline(ctx->pools, key, MakeSpan(env_ptrs), false)};
std::scoped_lock lock{state.mutex};
if (pipeline) {
graphics_cache.emplace(key, std::move(pipeline));
}
++state.built;
if (state.has_loaded) {
callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
}
});
queue_work([this, key, envs = std::move(envs), &state, &callback](Context* ctx) mutable {
boost::container::static_vector<Shader::Environment*, 5> env_ptrs;
for (auto& env : envs) {
env_ptrs.push_back(&env);
}
ctx->pools.ReleaseContents();
auto pipeline{CreateGraphicsPipeline(ctx->pools, key, MakeSpan(env_ptrs), false)};
std::scoped_lock lock{state.mutex};
if (pipeline) {
graphics_cache.emplace(key, std::move(pipeline));
}
++state.built;
if (state.has_loaded) {
callback(VideoCore::LoadCallbackStage::Build, state.built, state.total);
}
});
++state.total;
}};
LoadPipelines(stop_loading, shader_cache_filename, CACHE_VERSION, load_compute, load_graphics);
@@ -314,6 +326,9 @@ void ShaderCache::LoadDiskResources(u64 title_id, std::stop_token stop_loading,
state.has_loaded = true;
lock.unlock();
if (strict_context_required) {
return;
}
workers->WaitForRequests(stop_loading);
if (!use_asynchronous_shaders) {
workers.reset();

View File

@@ -69,6 +69,7 @@ private:
StateTracker& state_tracker;
VideoCore::ShaderNotify& shader_notify;
const bool use_asynchronous_shaders;
const bool strict_context_required;
GraphicsPipelineKey graphics_key{};
GraphicsPipeline* current_pipeline{};

View File

@@ -22,12 +22,21 @@
#include "video_core/host_shaders/opengl_present_frag.h"
#include "video_core/host_shaders/opengl_present_scaleforce_frag.h"
#include "video_core/host_shaders/opengl_present_vert.h"
#include "video_core/host_shaders/opengl_smaa_glsl.h"
#include "video_core/host_shaders/present_bicubic_frag.h"
#include "video_core/host_shaders/present_gaussian_frag.h"
#include "video_core/host_shaders/smaa_blending_weight_calculation_frag.h"
#include "video_core/host_shaders/smaa_blending_weight_calculation_vert.h"
#include "video_core/host_shaders/smaa_edge_detection_frag.h"
#include "video_core/host_shaders/smaa_edge_detection_vert.h"
#include "video_core/host_shaders/smaa_neighborhood_blending_frag.h"
#include "video_core/host_shaders/smaa_neighborhood_blending_vert.h"
#include "video_core/renderer_opengl/gl_rasterizer.h"
#include "video_core/renderer_opengl/gl_shader_manager.h"
#include "video_core/renderer_opengl/gl_shader_util.h"
#include "video_core/renderer_opengl/renderer_opengl.h"
#include "video_core/smaa_area_tex.h"
#include "video_core/smaa_search_tex.h"
#include "video_core/textures/decoders.h"
namespace OpenGL {
@@ -131,8 +140,8 @@ RendererOpenGL::RendererOpenGL(Core::TelemetrySession& telemetry_session_,
Core::Memory::Memory& cpu_memory_, Tegra::GPU& gpu_,
std::unique_ptr<Core::Frontend::GraphicsContext> context_)
: RendererBase{emu_window_, std::move(context_)}, telemetry_session{telemetry_session_},
emu_window{emu_window_}, cpu_memory{cpu_memory_}, gpu{gpu_}, state_tracker{},
program_manager{device},
emu_window{emu_window_}, cpu_memory{cpu_memory_}, gpu{gpu_}, device{emu_window_},
state_tracker{}, program_manager{device},
rasterizer(emu_window, gpu, cpu_memory, device, screen_info, program_manager, state_tracker) {
if (Settings::values.renderer_debug && GLAD_GL_KHR_debug) {
glEnable(GL_DEBUG_OUTPUT);
@@ -258,6 +267,28 @@ void RendererOpenGL::InitOpenGLObjects() {
// Create shader programs
fxaa_vertex = CreateProgram(HostShaders::FXAA_VERT, GL_VERTEX_SHADER);
fxaa_fragment = CreateProgram(HostShaders::FXAA_FRAG, GL_FRAGMENT_SHADER);
const auto SmaaShader = [](std::string_view specialized_source, GLenum stage) {
std::string shader_source{specialized_source};
constexpr std::string_view include_string = "#include \"opengl_smaa.glsl\"";
const std::size_t pos = shader_source.find(include_string);
ASSERT(pos != std::string::npos);
shader_source.replace(pos, include_string.size(), HostShaders::OPENGL_SMAA_GLSL);
return CreateProgram(shader_source, stage);
};
smaa_edge_detection_vert = SmaaShader(HostShaders::SMAA_EDGE_DETECTION_VERT, GL_VERTEX_SHADER);
smaa_edge_detection_frag =
SmaaShader(HostShaders::SMAA_EDGE_DETECTION_FRAG, GL_FRAGMENT_SHADER);
smaa_blending_weight_calculation_vert =
SmaaShader(HostShaders::SMAA_BLENDING_WEIGHT_CALCULATION_VERT, GL_VERTEX_SHADER);
smaa_blending_weight_calculation_frag =
SmaaShader(HostShaders::SMAA_BLENDING_WEIGHT_CALCULATION_FRAG, GL_FRAGMENT_SHADER);
smaa_neighborhood_blending_vert =
SmaaShader(HostShaders::SMAA_NEIGHBORHOOD_BLENDING_VERT, GL_VERTEX_SHADER);
smaa_neighborhood_blending_frag =
SmaaShader(HostShaders::SMAA_NEIGHBORHOOD_BLENDING_FRAG, GL_FRAGMENT_SHADER);
present_vertex = CreateProgram(HostShaders::OPENGL_PRESENT_VERT, GL_VERTEX_SHADER);
present_bilinear_fragment = CreateProgram(HostShaders::OPENGL_PRESENT_FRAG, GL_FRAGMENT_SHADER);
present_bicubic_fragment = CreateProgram(HostShaders::PRESENT_BICUBIC_FRAG, GL_FRAGMENT_SHADER);
@@ -293,7 +324,16 @@ void RendererOpenGL::InitOpenGLObjects() {
// Clear screen to black
LoadColorToActiveGLTexture(0, 0, 0, 0, screen_info.texture);
fxaa_framebuffer.Create();
aa_framebuffer.Create();
smaa_area_tex.Create(GL_TEXTURE_2D);
glTextureStorage2D(smaa_area_tex.handle, 1, GL_RG8, AREATEX_WIDTH, AREATEX_HEIGHT);
glTextureSubImage2D(smaa_area_tex.handle, 0, 0, 0, AREATEX_WIDTH, AREATEX_HEIGHT, GL_RG,
GL_UNSIGNED_BYTE, areaTexBytes);
smaa_search_tex.Create(GL_TEXTURE_2D);
glTextureStorage2D(smaa_search_tex.handle, 1, GL_R8, SEARCHTEX_WIDTH, SEARCHTEX_HEIGHT);
glTextureSubImage2D(smaa_search_tex.handle, 0, 0, 0, SEARCHTEX_WIDTH, SEARCHTEX_HEIGHT, GL_RED,
GL_UNSIGNED_BYTE, searchTexBytes);
}
void RendererOpenGL::AddTelemetryFields() {
@@ -346,13 +386,22 @@ void RendererOpenGL::ConfigureFramebufferTexture(TextureInfo& texture,
texture.resource.Release();
texture.resource.Create(GL_TEXTURE_2D);
glTextureStorage2D(texture.resource.handle, 1, internal_format, texture.width, texture.height);
fxaa_texture.Release();
fxaa_texture.Create(GL_TEXTURE_2D);
glTextureStorage2D(fxaa_texture.handle, 1, GL_RGBA16F,
aa_texture.Release();
aa_texture.Create(GL_TEXTURE_2D);
glTextureStorage2D(aa_texture.handle, 1, GL_RGBA16F,
Settings::values.resolution_info.ScaleUp(screen_info.texture.width),
Settings::values.resolution_info.ScaleUp(screen_info.texture.height));
glNamedFramebufferTexture(aa_framebuffer.handle, GL_COLOR_ATTACHMENT0, aa_texture.handle, 0);
smaa_edges_tex.Release();
smaa_edges_tex.Create(GL_TEXTURE_2D);
glTextureStorage2D(smaa_edges_tex.handle, 1, GL_RG16F,
Settings::values.resolution_info.ScaleUp(screen_info.texture.width),
Settings::values.resolution_info.ScaleUp(screen_info.texture.height));
smaa_blend_tex.Release();
smaa_blend_tex.Create(GL_TEXTURE_2D);
glTextureStorage2D(smaa_blend_tex.handle, 1, GL_RGBA16F,
Settings::values.resolution_info.ScaleUp(screen_info.texture.width),
Settings::values.resolution_info.ScaleUp(screen_info.texture.height));
glNamedFramebufferTexture(fxaa_framebuffer.handle, GL_COLOR_ATTACHMENT0, fxaa_texture.handle,
0);
}
void RendererOpenGL::DrawScreen(const Layout::FramebufferLayout& layout) {
@@ -377,11 +426,6 @@ void RendererOpenGL::DrawScreen(const Layout::FramebufferLayout& layout) {
state_tracker.ClipControl(GL_LOWER_LEFT, GL_ZERO_TO_ONE);
// Update background color before drawing
glClearColor(Settings::values.bg_red.GetValue() / 255.0f,
Settings::values.bg_green.GetValue() / 255.0f,
Settings::values.bg_blue.GetValue() / 255.0f, 1.0f);
glEnable(GL_CULL_FACE);
glDisable(GL_COLOR_LOGIC_OP);
glDisable(GL_DEPTH_TEST);
@@ -394,12 +438,12 @@ void RendererOpenGL::DrawScreen(const Layout::FramebufferLayout& layout) {
glCullFace(GL_BACK);
glFrontFace(GL_CW);
glColorMaski(0, GL_TRUE, GL_TRUE, GL_TRUE, GL_TRUE);
glDepthRangeIndexed(0, 0.0, 0.0);
glBindTextureUnit(0, screen_info.display_texture);
if (Settings::values.anti_aliasing.GetValue() == Settings::AntiAliasing::Fxaa) {
program_manager.BindPresentPrograms(fxaa_vertex.handle, fxaa_fragment.handle);
const auto anti_aliasing = Settings::values.anti_aliasing.GetValue();
if (anti_aliasing != Settings::AntiAliasing::None) {
glEnablei(GL_SCISSOR_TEST, 0);
auto viewport_width = screen_info.texture.width;
auto scissor_width = framebuffer_crop_rect.GetWidth();
@@ -420,21 +464,60 @@ void RendererOpenGL::DrawScreen(const Layout::FramebufferLayout& layout) {
glScissorIndexed(0, 0, 0, scissor_width, scissor_height);
glViewportIndexedf(0, 0.0f, 0.0f, static_cast<GLfloat>(viewport_width),
static_cast<GLfloat>(viewport_height));
glDepthRangeIndexed(0, 0.0, 0.0);
glBindSampler(0, present_sampler.handle);
GLint old_read_fb;
GLint old_draw_fb;
glGetIntegerv(GL_READ_FRAMEBUFFER_BINDING, &old_read_fb);
glGetIntegerv(GL_DRAW_FRAMEBUFFER_BINDING, &old_draw_fb);
glBindFramebuffer(GL_DRAW_FRAMEBUFFER, fxaa_framebuffer.handle);
glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);
switch (anti_aliasing) {
case Settings::AntiAliasing::Fxaa: {
program_manager.BindPresentPrograms(fxaa_vertex.handle, fxaa_fragment.handle);
glBindFramebuffer(GL_DRAW_FRAMEBUFFER, aa_framebuffer.handle);
glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);
} break;
case Settings::AntiAliasing::Smaa: {
glClearColor(0, 0, 0, 0);
glFrontFace(GL_CCW);
glBindFramebuffer(GL_DRAW_FRAMEBUFFER, aa_framebuffer.handle);
glBindSampler(1, present_sampler.handle);
glBindSampler(2, present_sampler.handle);
glNamedFramebufferTexture(aa_framebuffer.handle, GL_COLOR_ATTACHMENT0,
smaa_edges_tex.handle, 0);
glClear(GL_COLOR_BUFFER_BIT);
program_manager.BindPresentPrograms(smaa_edge_detection_vert.handle,
smaa_edge_detection_frag.handle);
glDrawArrays(GL_TRIANGLES, 0, 3);
glBindTextureUnit(0, smaa_edges_tex.handle);
glBindTextureUnit(1, smaa_area_tex.handle);
glBindTextureUnit(2, smaa_search_tex.handle);
glNamedFramebufferTexture(aa_framebuffer.handle, GL_COLOR_ATTACHMENT0,
smaa_blend_tex.handle, 0);
glClear(GL_COLOR_BUFFER_BIT);
program_manager.BindPresentPrograms(smaa_blending_weight_calculation_vert.handle,
smaa_blending_weight_calculation_frag.handle);
glDrawArrays(GL_TRIANGLES, 0, 3);
glBindTextureUnit(0, screen_info.display_texture);
glBindTextureUnit(1, smaa_blend_tex.handle);
glNamedFramebufferTexture(aa_framebuffer.handle, GL_COLOR_ATTACHMENT0,
aa_texture.handle, 0);
program_manager.BindPresentPrograms(smaa_neighborhood_blending_vert.handle,
smaa_neighborhood_blending_frag.handle);
glDrawArrays(GL_TRIANGLES, 0, 3);
glFrontFace(GL_CW);
} break;
default:
UNREACHABLE();
}
glBindFramebuffer(GL_READ_FRAMEBUFFER, old_read_fb);
glBindFramebuffer(GL_DRAW_FRAMEBUFFER, old_draw_fb);
glBindTextureUnit(0, fxaa_texture.handle);
glBindTextureUnit(0, aa_texture.handle);
}
const std::array ortho_matrix =
MakeOrthographicMatrix(static_cast<float>(layout.width), static_cast<float>(layout.height));
@@ -551,6 +634,11 @@ void RendererOpenGL::DrawScreen(const Layout::FramebufferLayout& layout) {
glBindSampler(0, present_sampler_nn.handle);
}
// Update background color before drawing
glClearColor(Settings::values.bg_red.GetValue() / 255.0f,
Settings::values.bg_green.GetValue() / 255.0f,
Settings::values.bg_blue.GetValue() / 255.0f, 1.0f);
glClear(GL_COLOR_BUFFER_BIT);
glDrawArrays(GL_TRIANGLE_STRIP, 0, 4);

View File

@@ -127,8 +127,19 @@ private:
/// Display information for Switch screen
ScreenInfo screen_info;
OGLTexture fxaa_texture;
OGLFramebuffer fxaa_framebuffer;
OGLTexture aa_texture;
OGLFramebuffer aa_framebuffer;
OGLProgram smaa_edge_detection_vert;
OGLProgram smaa_blending_weight_calculation_vert;
OGLProgram smaa_neighborhood_blending_vert;
OGLProgram smaa_edge_detection_frag;
OGLProgram smaa_blending_weight_calculation_frag;
OGLProgram smaa_neighborhood_blending_frag;
OGLTexture smaa_area_tex;
OGLTexture smaa_search_tex;
OGLTexture smaa_edges_tex;
OGLTexture smaa_blend_tex;
/// OpenGL framebuffer data
std::vector<u8> gl_framebuffer_data;

View File

@@ -139,23 +139,25 @@ void RendererVulkan::SwapBuffers(const Tegra::FramebufferConfig* framebuffer) {
RenderScreenshot(*framebuffer, use_accelerated);
bool has_been_recreated = false;
const auto recreate_swapchain = [&] {
const auto recreate_swapchain = [&](u32 width, u32 height) {
if (!has_been_recreated) {
has_been_recreated = true;
scheduler.Finish();
}
const Layout::FramebufferLayout layout = render_window.GetFramebufferLayout();
swapchain.Create(layout.width, layout.height, is_srgb);
swapchain.Create(width, height, is_srgb);
};
if (swapchain.NeedsRecreation(is_srgb)) {
recreate_swapchain();
const Layout::FramebufferLayout layout = render_window.GetFramebufferLayout();
if (swapchain.NeedsRecreation(is_srgb) || swapchain.GetWidth() != layout.width ||
swapchain.GetHeight() != layout.height) {
recreate_swapchain(layout.width, layout.height);
}
bool is_outdated;
do {
swapchain.AcquireNextImage();
is_outdated = swapchain.IsOutDated();
if (is_outdated) {
recreate_swapchain();
recreate_swapchain(layout.width, layout.height);
}
} while (is_outdated);
if (has_been_recreated) {

View File

@@ -29,6 +29,7 @@
#include "video_core/renderer_vulkan/vk_fsr.h"
#include "video_core/renderer_vulkan/vk_scheduler.h"
#include "video_core/renderer_vulkan/vk_shader_util.h"
#include "video_core/renderer_vulkan/vk_smaa.h"
#include "video_core/renderer_vulkan/vk_swapchain.h"
#include "video_core/surface.h"
#include "video_core/textures/decoders.h"
@@ -156,6 +157,7 @@ VkSemaphore BlitScreen::Draw(const Tegra::FramebufferConfig& framebuffer,
scheduler.Wait(resource_ticks[image_index]);
resource_ticks[image_index] = scheduler.CurrentTick();
VkImage source_image = use_accelerated ? screen_info.image : *raw_images[image_index];
VkImageView source_image_view =
use_accelerated ? screen_info.image_view : *raw_image_views[image_index];
@@ -242,7 +244,7 @@ VkSemaphore BlitScreen::Draw(const Tegra::FramebufferConfig& framebuffer,
}
const auto anti_alias_pass = Settings::values.anti_aliasing.GetValue();
if (use_accelerated && anti_alias_pass != Settings::AntiAliasing::None) {
if (use_accelerated && anti_alias_pass == Settings::AntiAliasing::Fxaa) {
UpdateAADescriptorSet(image_index, source_image_view, false);
const u32 up_scale = Settings::values.resolution_info.up_scale;
const u32 down_shift = Settings::values.resolution_info.down_shift;
@@ -340,7 +342,18 @@ VkSemaphore BlitScreen::Draw(const Tegra::FramebufferConfig& framebuffer,
});
source_image_view = *aa_image_view;
}
if (use_accelerated && anti_alias_pass == Settings::AntiAliasing::Smaa) {
if (!smaa) {
const u32 up_scale = Settings::values.resolution_info.up_scale;
const u32 down_shift = Settings::values.resolution_info.down_shift;
const VkExtent2D smaa_size{
.width = (up_scale * framebuffer.width) >> down_shift,
.height = (up_scale * framebuffer.height) >> down_shift,
};
CreateSMAA(smaa_size);
}
source_image_view = smaa->Draw(scheduler, image_index, source_image, source_image_view);
}
if (fsr) {
auto crop_rect = framebuffer.crop_rect;
if (crop_rect.GetWidth() == 0) {
@@ -467,6 +480,7 @@ void BlitScreen::CreateDynamicResources() {
CreateFramebuffers();
CreateGraphicsPipeline();
fsr.reset();
smaa.reset();
if (Settings::values.scaling_filter.GetValue() == Settings::ScalingFilter::Fsr) {
CreateFSR();
}
@@ -490,6 +504,7 @@ void BlitScreen::RefreshResources(const Tegra::FramebufferConfig& framebuffer) {
raw_height = framebuffer.height;
pixel_format = framebuffer.pixel_format;
smaa.reset();
ReleaseRawImages();
CreateStagingBuffer(framebuffer);
@@ -1448,6 +1463,10 @@ void BlitScreen::SetVertexData(BufferData& data, const Tegra::FramebufferConfig&
ScreenRectVertex(x + w, y + h, texcoords.bottom * scale_u, left_start + right * scale_v);
}
void BlitScreen::CreateSMAA(VkExtent2D smaa_size) {
smaa = std::make_unique<SMAA>(device, memory_allocator, image_count, smaa_size);
}
void BlitScreen::CreateFSR() {
const auto& layout = render_window.GetFramebufferLayout();
const VkExtent2D fsr_size{

View File

@@ -40,9 +40,11 @@ class Device;
class FSR;
class RasterizerVulkan;
class Scheduler;
class SMAA;
class Swapchain;
struct ScreenInfo {
VkImage image{};
VkImageView image_view{};
u32 width{};
u32 height{};
@@ -101,6 +103,7 @@ private:
void SetVertexData(BufferData& data, const Tegra::FramebufferConfig& framebuffer,
const Layout::FramebufferLayout layout) const;
void CreateSMAA(VkExtent2D smaa_size);
void CreateFSR();
u64 CalculateBufferSize(const Tegra::FramebufferConfig& framebuffer) const;
@@ -163,6 +166,7 @@ private:
Service::android::PixelFormat pixel_format{};
std::unique_ptr<FSR> fsr;
std::unique_ptr<SMAA> smaa;
};
} // namespace Vulkan

View File

@@ -285,6 +285,9 @@ void BufferCacheRuntime::BindQuadArrayIndexBuffer(u32 first, u32 count) {
void BufferCacheRuntime::BindVertexBuffer(u32 index, VkBuffer buffer, u32 offset, u32 size,
u32 stride) {
if (index >= device.GetMaxVertexInputBindings()) {
return;
}
if (device.IsExtExtendedDynamicStateSupported()) {
scheduler.Record([index, buffer, offset, size, stride](vk::CommandBuffer cmdbuf) {
const VkDeviceSize vk_offset = buffer != VK_NULL_HANDLE ? offset : 0;

View File

@@ -529,7 +529,9 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
static_vector<VkVertexInputBindingDivisorDescriptionEXT, 32> vertex_binding_divisors;
static_vector<VkVertexInputAttributeDescription, 32> vertex_attributes;
if (key.state.dynamic_vertex_input) {
for (size_t index = 0; index < key.state.attributes.size(); ++index) {
const size_t num_vertex_arrays = std::min(
key.state.attributes.size(), static_cast<size_t>(device.GetMaxVertexInputBindings()));
for (size_t index = 0; index < num_vertex_arrays; ++index) {
const u32 type = key.state.DynamicAttributeType(index);
if (!stage_infos[0].loads.Generic(index) || type == 0) {
continue;
@@ -551,7 +553,9 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
});
}
} else {
for (size_t index = 0; index < Maxwell::NumVertexArrays; ++index) {
const size_t num_vertex_arrays = std::min(
Maxwell::NumVertexArrays, static_cast<size_t>(device.GetMaxVertexInputBindings()));
for (size_t index = 0; index < num_vertex_arrays; ++index) {
const bool instanced = key.state.binding_divisors[index] != 0;
const auto rate =
instanced ? VK_VERTEX_INPUT_RATE_INSTANCE : VK_VERTEX_INPUT_RATE_VERTEX;
@@ -580,6 +584,8 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
});
}
}
ASSERT(vertex_attributes.size() <= device.GetMaxVertexInputAttributes());
VkPipelineVertexInputStateCreateInfo vertex_input_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_STATE_CREATE_INFO,
.pNext = nullptr,
@@ -634,23 +640,33 @@ void GraphicsPipeline::MakePipeline(VkRenderPass render_pass) {
};
std::array<VkViewportSwizzleNV, Maxwell::NumViewports> swizzles;
std::ranges::transform(key.state.viewport_swizzles, swizzles.begin(), UnpackViewportSwizzle);
const VkPipelineViewportSwizzleStateCreateInfoNV swizzle_ci{
VkPipelineViewportSwizzleStateCreateInfoNV swizzle_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VIEWPORT_SWIZZLE_STATE_CREATE_INFO_NV,
.pNext = nullptr,
.flags = 0,
.viewportCount = Maxwell::NumViewports,
.pViewportSwizzles = swizzles.data(),
};
const VkPipelineViewportStateCreateInfo viewport_ci{
VkPipelineViewportDepthClipControlCreateInfoEXT ndc_info{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VIEWPORT_DEPTH_CLIP_CONTROL_CREATE_INFO_EXT,
.pNext = nullptr,
.negativeOneToOne = key.state.ndc_minus_one_to_one.Value() != 0 ? VK_TRUE : VK_FALSE,
};
VkPipelineViewportStateCreateInfo viewport_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VIEWPORT_STATE_CREATE_INFO,
.pNext = device.IsNvViewportSwizzleSupported() ? &swizzle_ci : nullptr,
.pNext = nullptr,
.flags = 0,
.viewportCount = Maxwell::NumViewports,
.pViewports = nullptr,
.scissorCount = Maxwell::NumViewports,
.pScissors = nullptr,
};
if (device.IsNvViewportSwizzleSupported()) {
swizzle_ci.pNext = std::exchange(viewport_ci.pNext, &swizzle_ci);
}
if (device.IsExtDepthClipControlSupported()) {
ndc_info.pNext = std::exchange(viewport_ci.pNext, &ndc_info);
}
VkPipelineRasterizationStateCreateInfo rasterization_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_STATE_CREATE_INFO,
.pNext = nullptr,

View File

@@ -321,6 +321,7 @@ PipelineCache::PipelineCache(RasterizerVulkan& rasterizer_, const Device& device
.support_int64_atomics = device.IsExtShaderAtomicInt64Supported(),
.support_derivative_control = true,
.support_geometry_shader_passthrough = device.IsNvGeometryShaderPassthroughSupported(),
.support_native_ndc = device.IsExtDepthClipControlSupported(),
.warp_size_potentially_larger_than_guest = device.IsWarpSizePotentiallyBiggerThanGuest(),
@@ -341,6 +342,15 @@ PipelineCache::PipelineCache(RasterizerVulkan& rasterizer_, const Device& device
.support_snorm_render_buffer = true,
.support_viewport_index_layer = device.IsExtShaderViewportIndexLayerSupported(),
};
if (device.GetMaxVertexInputAttributes() < Maxwell::NumVertexAttributes) {
LOG_WARNING(Render_Vulkan, "maxVertexInputAttributes is too low: {} < {}",
device.GetMaxVertexInputAttributes(), Maxwell::NumVertexAttributes);
}
if (device.GetMaxVertexInputBindings() < Maxwell::NumVertexArrays) {
LOG_WARNING(Render_Vulkan, "maxVertexInputBindings is too low: {} < {}",
device.GetMaxVertexInputBindings(), Maxwell::NumVertexArrays);
}
}
PipelineCache::~PipelineCache() = default;

View File

@@ -580,6 +580,7 @@ bool RasterizerVulkan::AccelerateDisplay(const Tegra::FramebufferConfig& config,
if (!image_view) {
return false;
}
screen_info.image = image_view->ImageHandle();
screen_info.image_view = image_view->Handle(Shader::TextureType::Color2D);
screen_info.width = image_view->size.width;
screen_info.height = image_view->size.height;
@@ -657,8 +658,7 @@ void RasterizerVulkan::BeginTransformFeedback() {
return;
}
UNIMPLEMENTED_IF(regs.IsShaderConfigEnabled(Maxwell::ShaderType::TessellationInit) ||
regs.IsShaderConfigEnabled(Maxwell::ShaderType::Tessellation) ||
regs.IsShaderConfigEnabled(Maxwell::ShaderType::Geometry));
regs.IsShaderConfigEnabled(Maxwell::ShaderType::Tessellation));
scheduler.Record(
[](vk::CommandBuffer cmdbuf) { cmdbuf.BeginTransformFeedbackEXT(0, 0, nullptr, nullptr); });
}

View File

@@ -0,0 +1,761 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#include <list>
#include "common/assert.h"
#include "common/polyfill_ranges.h"
#include "video_core/renderer_vulkan/vk_scheduler.h"
#include "video_core/renderer_vulkan/vk_shader_util.h"
#include "video_core/renderer_vulkan/vk_smaa.h"
#include "video_core/smaa_area_tex.h"
#include "video_core/smaa_search_tex.h"
#include "video_core/vulkan_common/vulkan_device.h"
#include "video_core/host_shaders/smaa_blending_weight_calculation_frag_spv.h"
#include "video_core/host_shaders/smaa_blending_weight_calculation_vert_spv.h"
#include "video_core/host_shaders/smaa_edge_detection_frag_spv.h"
#include "video_core/host_shaders/smaa_edge_detection_vert_spv.h"
#include "video_core/host_shaders/smaa_neighborhood_blending_frag_spv.h"
#include "video_core/host_shaders/smaa_neighborhood_blending_vert_spv.h"
namespace Vulkan {
namespace {
#define ARRAY_TO_SPAN(a) std::span(a, (sizeof(a) / sizeof(a[0])))
std::pair<vk::Image, MemoryCommit> CreateWrappedImage(const Device& device,
MemoryAllocator& allocator,
VkExtent2D dimensions, VkFormat format) {
const VkImageCreateInfo image_ci{
.sType = VK_STRUCTURE_TYPE_IMAGE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.imageType = VK_IMAGE_TYPE_2D,
.format = format,
.extent = {.width = dimensions.width, .height = dimensions.height, .depth = 1},
.mipLevels = 1,
.arrayLayers = 1,
.samples = VK_SAMPLE_COUNT_1_BIT,
.tiling = VK_IMAGE_TILING_OPTIMAL,
.usage = VK_IMAGE_USAGE_TRANSFER_DST_BIT | VK_IMAGE_USAGE_STORAGE_BIT |
VK_IMAGE_USAGE_SAMPLED_BIT | VK_IMAGE_USAGE_COLOR_ATTACHMENT_BIT,
.sharingMode = VK_SHARING_MODE_EXCLUSIVE,
.queueFamilyIndexCount = 0,
.pQueueFamilyIndices = nullptr,
.initialLayout = VK_IMAGE_LAYOUT_UNDEFINED,
};
auto image = device.GetLogical().CreateImage(image_ci);
auto commit = allocator.Commit(image, Vulkan::MemoryUsage::DeviceLocal);
return std::make_pair(std::move(image), std::move(commit));
}
void TransitionImageLayout(vk::CommandBuffer& cmdbuf, VkImage image, VkImageLayout target_layout,
VkImageLayout source_layout = VK_IMAGE_LAYOUT_GENERAL) {
constexpr VkFlags flags{VK_ACCESS_COLOR_ATTACHMENT_READ_BIT |
VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT | VK_ACCESS_SHADER_READ_BIT};
const VkImageMemoryBarrier barrier{
.sType = VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER,
.pNext = nullptr,
.srcAccessMask = flags,
.dstAccessMask = flags,
.oldLayout = source_layout,
.newLayout = target_layout,
.srcQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED,
.dstQueueFamilyIndex = VK_QUEUE_FAMILY_IGNORED,
.image = image,
.subresourceRange{
.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
.baseMipLevel = 0,
.levelCount = 1,
.baseArrayLayer = 0,
.layerCount = 1,
},
};
cmdbuf.PipelineBarrier(VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT,
0, barrier);
}
void UploadImage(const Device& device, MemoryAllocator& allocator, Scheduler& scheduler,
vk::Image& image, VkExtent2D dimensions, VkFormat format,
std::span<const u8> initial_contents = {}) {
auto upload_buffer = device.GetLogical().CreateBuffer(VkBufferCreateInfo{
.sType = VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.size = initial_contents.size_bytes(),
.usage = VK_BUFFER_USAGE_TRANSFER_SRC_BIT,
.sharingMode = VK_SHARING_MODE_EXCLUSIVE,
.queueFamilyIndexCount = 0,
.pQueueFamilyIndices = nullptr,
});
auto upload_commit = allocator.Commit(upload_buffer, MemoryUsage::Upload);
std::ranges::copy(initial_contents, upload_commit.Map().begin());
const std::array<VkBufferImageCopy, 1> regions{{{
.bufferOffset = 0,
.bufferRowLength = dimensions.width,
.bufferImageHeight = dimensions.height,
.imageSubresource{.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
.mipLevel = 0,
.baseArrayLayer = 0,
.layerCount = 1},
.imageOffset{},
.imageExtent{.width = dimensions.width, .height = dimensions.height, .depth = 1},
}}};
scheduler.RequestOutsideRenderPassOperationContext();
scheduler.Record([&](vk::CommandBuffer cmdbuf) {
TransitionImageLayout(cmdbuf, *image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
VK_IMAGE_LAYOUT_UNDEFINED);
cmdbuf.CopyBufferToImage(*upload_buffer, *image, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL,
regions);
TransitionImageLayout(cmdbuf, *image, VK_IMAGE_LAYOUT_GENERAL,
VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL);
});
scheduler.Finish();
// This should go out of scope before the commit
auto upload_buffer2 = std::move(upload_buffer);
}
vk::ImageView CreateWrappedImageView(const Device& device, vk::Image& image, VkFormat format) {
return device.GetLogical().CreateImageView(VkImageViewCreateInfo{
.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.image = *image,
.viewType = VK_IMAGE_VIEW_TYPE_2D,
.format = format,
.components{},
.subresourceRange{.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
.baseMipLevel = 0,
.levelCount = 1,
.baseArrayLayer = 0,
.layerCount = 1},
});
}
vk::RenderPass CreateWrappedRenderPass(const Device& device, VkFormat format) {
const VkAttachmentDescription attachment{
.flags = VK_ATTACHMENT_DESCRIPTION_MAY_ALIAS_BIT,
.format = format,
.samples = VK_SAMPLE_COUNT_1_BIT,
.loadOp = VK_ATTACHMENT_LOAD_OP_LOAD,
.storeOp = VK_ATTACHMENT_STORE_OP_STORE,
.stencilLoadOp = VK_ATTACHMENT_LOAD_OP_LOAD,
.stencilStoreOp = VK_ATTACHMENT_STORE_OP_STORE,
.initialLayout = VK_IMAGE_LAYOUT_GENERAL,
.finalLayout = VK_IMAGE_LAYOUT_GENERAL,
};
constexpr VkAttachmentReference color_attachment_ref{
.attachment = 0,
.layout = VK_IMAGE_LAYOUT_GENERAL,
};
const VkSubpassDescription subpass_description{
.flags = 0,
.pipelineBindPoint = VK_PIPELINE_BIND_POINT_GRAPHICS,
.inputAttachmentCount = 0,
.pInputAttachments = nullptr,
.colorAttachmentCount = 1,
.pColorAttachments = &color_attachment_ref,
.pResolveAttachments = nullptr,
.pDepthStencilAttachment = nullptr,
.preserveAttachmentCount = 0,
.pPreserveAttachments = nullptr,
};
constexpr VkSubpassDependency dependency{
.srcSubpass = VK_SUBPASS_EXTERNAL,
.dstSubpass = 0,
.srcStageMask = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT,
.dstStageMask = VK_PIPELINE_STAGE_COLOR_ATTACHMENT_OUTPUT_BIT,
.srcAccessMask = 0,
.dstAccessMask = VK_ACCESS_COLOR_ATTACHMENT_READ_BIT | VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT,
.dependencyFlags = 0,
};
return device.GetLogical().CreateRenderPass(VkRenderPassCreateInfo{
.sType = VK_STRUCTURE_TYPE_RENDER_PASS_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.attachmentCount = 1,
.pAttachments = &attachment,
.subpassCount = 1,
.pSubpasses = &subpass_description,
.dependencyCount = 1,
.pDependencies = &dependency,
});
}
vk::Framebuffer CreateWrappedFramebuffer(const Device& device, vk::RenderPass& render_pass,
vk::ImageView& dest_image, VkExtent2D extent) {
return device.GetLogical().CreateFramebuffer(VkFramebufferCreateInfo{
.sType = VK_STRUCTURE_TYPE_FRAMEBUFFER_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.renderPass = *render_pass,
.attachmentCount = 1,
.pAttachments = dest_image.address(),
.width = extent.width,
.height = extent.height,
.layers = 1,
});
}
vk::Sampler CreateWrappedSampler(const Device& device) {
return device.GetLogical().CreateSampler(VkSamplerCreateInfo{
.sType = VK_STRUCTURE_TYPE_SAMPLER_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.magFilter = VK_FILTER_LINEAR,
.minFilter = VK_FILTER_LINEAR,
.mipmapMode = VK_SAMPLER_MIPMAP_MODE_LINEAR,
.addressModeU = VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
.addressModeV = VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
.addressModeW = VK_SAMPLER_ADDRESS_MODE_CLAMP_TO_EDGE,
.mipLodBias = 0.0f,
.anisotropyEnable = VK_FALSE,
.maxAnisotropy = 0.0f,
.compareEnable = VK_FALSE,
.compareOp = VK_COMPARE_OP_NEVER,
.minLod = 0.0f,
.maxLod = 0.0f,
.borderColor = VK_BORDER_COLOR_FLOAT_OPAQUE_BLACK,
.unnormalizedCoordinates = VK_FALSE,
});
}
vk::ShaderModule CreateWrappedShaderModule(const Device& device, std::span<const u32> code) {
return device.GetLogical().CreateShaderModule(VkShaderModuleCreateInfo{
.sType = VK_STRUCTURE_TYPE_SHADER_MODULE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.codeSize = code.size_bytes(),
.pCode = code.data(),
});
}
vk::DescriptorPool CreateWrappedDescriptorPool(const Device& device, u32 max_descriptors,
u32 max_sets) {
const VkDescriptorPoolSize pool_size{
.type = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
.descriptorCount = static_cast<u32>(max_descriptors),
};
return device.GetLogical().CreateDescriptorPool(VkDescriptorPoolCreateInfo{
.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_POOL_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.maxSets = max_sets,
.poolSizeCount = 1,
.pPoolSizes = &pool_size,
});
}
vk::DescriptorSetLayout CreateWrappedDescriptorSetLayout(const Device& device,
u32 max_sampler_bindings) {
std::vector<VkDescriptorSetLayoutBinding> bindings(max_sampler_bindings);
for (u32 i = 0; i < max_sampler_bindings; i++) {
bindings[i] = {
.binding = i,
.descriptorType = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
.descriptorCount = 1,
.stageFlags = VK_SHADER_STAGE_VERTEX_BIT | VK_SHADER_STAGE_FRAGMENT_BIT,
.pImmutableSamplers = nullptr,
};
}
return device.GetLogical().CreateDescriptorSetLayout(VkDescriptorSetLayoutCreateInfo{
.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_LAYOUT_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.bindingCount = static_cast<u32>(bindings.size()),
.pBindings = bindings.data(),
});
}
vk::DescriptorSets CreateWrappedDescriptorSets(vk::DescriptorPool& pool,
vk::Span<VkDescriptorSetLayout> layouts) {
return pool.Allocate(VkDescriptorSetAllocateInfo{
.sType = VK_STRUCTURE_TYPE_DESCRIPTOR_SET_ALLOCATE_INFO,
.pNext = nullptr,
.descriptorPool = *pool,
.descriptorSetCount = layouts.size(),
.pSetLayouts = layouts.data(),
});
}
vk::PipelineLayout CreateWrappedPipelineLayout(const Device& device,
vk::DescriptorSetLayout& layout) {
return device.GetLogical().CreatePipelineLayout(VkPipelineLayoutCreateInfo{
.sType = VK_STRUCTURE_TYPE_PIPELINE_LAYOUT_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.setLayoutCount = 1,
.pSetLayouts = layout.address(),
.pushConstantRangeCount = 0,
.pPushConstantRanges = nullptr,
});
}
vk::Pipeline CreateWrappedPipeline(const Device& device, vk::RenderPass& renderpass,
vk::PipelineLayout& layout,
std::tuple<vk::ShaderModule&, vk::ShaderModule&> shaders) {
const std::array<VkPipelineShaderStageCreateInfo, 2> shader_stages{{
{
.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.stage = VK_SHADER_STAGE_VERTEX_BIT,
.module = *std::get<0>(shaders),
.pName = "main",
.pSpecializationInfo = nullptr,
},
{
.sType = VK_STRUCTURE_TYPE_PIPELINE_SHADER_STAGE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.stage = VK_SHADER_STAGE_FRAGMENT_BIT,
.module = *std::get<1>(shaders),
.pName = "main",
.pSpecializationInfo = nullptr,
},
}};
constexpr VkPipelineVertexInputStateCreateInfo vertex_input_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VERTEX_INPUT_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.vertexBindingDescriptionCount = 0,
.pVertexBindingDescriptions = nullptr,
.vertexAttributeDescriptionCount = 0,
.pVertexAttributeDescriptions = nullptr,
};
constexpr VkPipelineInputAssemblyStateCreateInfo input_assembly_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_INPUT_ASSEMBLY_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.topology = VK_PRIMITIVE_TOPOLOGY_TRIANGLE_STRIP,
.primitiveRestartEnable = VK_FALSE,
};
constexpr VkPipelineViewportStateCreateInfo viewport_state_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_VIEWPORT_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.viewportCount = 1,
.pViewports = nullptr,
.scissorCount = 1,
.pScissors = nullptr,
};
constexpr VkPipelineRasterizationStateCreateInfo rasterization_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_RASTERIZATION_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.depthClampEnable = VK_FALSE,
.rasterizerDiscardEnable = VK_FALSE,
.polygonMode = VK_POLYGON_MODE_FILL,
.cullMode = VK_CULL_MODE_NONE,
.frontFace = VK_FRONT_FACE_CLOCKWISE,
.depthBiasEnable = VK_FALSE,
.depthBiasConstantFactor = 0.0f,
.depthBiasClamp = 0.0f,
.depthBiasSlopeFactor = 0.0f,
.lineWidth = 1.0f,
};
constexpr VkPipelineMultisampleStateCreateInfo multisampling_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_MULTISAMPLE_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.rasterizationSamples = VK_SAMPLE_COUNT_1_BIT,
.sampleShadingEnable = VK_FALSE,
.minSampleShading = 0.0f,
.pSampleMask = nullptr,
.alphaToCoverageEnable = VK_FALSE,
.alphaToOneEnable = VK_FALSE,
};
constexpr VkPipelineColorBlendAttachmentState color_blend_attachment{
.blendEnable = VK_FALSE,
.srcColorBlendFactor = VK_BLEND_FACTOR_ZERO,
.dstColorBlendFactor = VK_BLEND_FACTOR_ZERO,
.colorBlendOp = VK_BLEND_OP_ADD,
.srcAlphaBlendFactor = VK_BLEND_FACTOR_ZERO,
.dstAlphaBlendFactor = VK_BLEND_FACTOR_ZERO,
.alphaBlendOp = VK_BLEND_OP_ADD,
.colorWriteMask = VK_COLOR_COMPONENT_R_BIT | VK_COLOR_COMPONENT_G_BIT |
VK_COLOR_COMPONENT_B_BIT | VK_COLOR_COMPONENT_A_BIT,
};
const VkPipelineColorBlendStateCreateInfo color_blend_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_COLOR_BLEND_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.logicOpEnable = VK_FALSE,
.logicOp = VK_LOGIC_OP_COPY,
.attachmentCount = 1,
.pAttachments = &color_blend_attachment,
.blendConstants = {0.0f, 0.0f, 0.0f, 0.0f},
};
constexpr std::array dynamic_states{
VK_DYNAMIC_STATE_VIEWPORT,
VK_DYNAMIC_STATE_SCISSOR,
};
const VkPipelineDynamicStateCreateInfo dynamic_state_ci{
.sType = VK_STRUCTURE_TYPE_PIPELINE_DYNAMIC_STATE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.dynamicStateCount = static_cast<u32>(dynamic_states.size()),
.pDynamicStates = dynamic_states.data(),
};
return device.GetLogical().CreateGraphicsPipeline(VkGraphicsPipelineCreateInfo{
.sType = VK_STRUCTURE_TYPE_GRAPHICS_PIPELINE_CREATE_INFO,
.pNext = nullptr,
.flags = 0,
.stageCount = static_cast<u32>(shader_stages.size()),
.pStages = shader_stages.data(),
.pVertexInputState = &vertex_input_ci,
.pInputAssemblyState = &input_assembly_ci,
.pTessellationState = nullptr,
.pViewportState = &viewport_state_ci,
.pRasterizationState = &rasterization_ci,
.pMultisampleState = &multisampling_ci,
.pDepthStencilState = nullptr,
.pColorBlendState = &color_blend_ci,
.pDynamicState = &dynamic_state_ci,
.layout = *layout,
.renderPass = *renderpass,
.subpass = 0,
.basePipelineHandle = 0,
.basePipelineIndex = 0,
});
}
VkWriteDescriptorSet CreateWriteDescriptorSet(std::vector<VkDescriptorImageInfo>& images,
VkSampler sampler, VkImageView view,
VkDescriptorSet set, u32 binding) {
ASSERT(images.capacity() > images.size());
auto& image_info = images.emplace_back(VkDescriptorImageInfo{
.sampler = sampler,
.imageView = view,
.imageLayout = VK_IMAGE_LAYOUT_GENERAL,
});
return VkWriteDescriptorSet{
.sType = VK_STRUCTURE_TYPE_WRITE_DESCRIPTOR_SET,
.pNext = nullptr,
.dstSet = set,
.dstBinding = binding,
.dstArrayElement = 0,
.descriptorCount = 1,
.descriptorType = VK_DESCRIPTOR_TYPE_COMBINED_IMAGE_SAMPLER,
.pImageInfo = &image_info,
.pBufferInfo = nullptr,
.pTexelBufferView = nullptr,
};
}
void ClearColorImage(vk::CommandBuffer& cmdbuf, VkImage image) {
constexpr std::array<VkImageSubresourceRange, 1> subresources{{{
.aspectMask = VK_IMAGE_ASPECT_COLOR_BIT,
.baseMipLevel = 0,
.levelCount = 1,
.baseArrayLayer = 0,
.layerCount = 1,
}}};
TransitionImageLayout(cmdbuf, image, VK_IMAGE_LAYOUT_GENERAL, VK_IMAGE_LAYOUT_UNDEFINED);
cmdbuf.ClearColorImage(image, VK_IMAGE_LAYOUT_GENERAL, {}, subresources);
}
void BeginRenderPass(vk::CommandBuffer& cmdbuf, vk::RenderPass& render_pass,
VkFramebuffer framebuffer, VkExtent2D extent) {
const VkRenderPassBeginInfo renderpass_bi{
.sType = VK_STRUCTURE_TYPE_RENDER_PASS_BEGIN_INFO,
.pNext = nullptr,
.renderPass = *render_pass,
.framebuffer = framebuffer,
.renderArea{
.offset{},
.extent = extent,
},
.clearValueCount = 0,
.pClearValues = nullptr,
};
cmdbuf.BeginRenderPass(renderpass_bi, VK_SUBPASS_CONTENTS_INLINE);
const VkViewport viewport{
.x = 0.0f,
.y = 0.0f,
.width = static_cast<float>(extent.width),
.height = static_cast<float>(extent.height),
.minDepth = 0.0f,
.maxDepth = 1.0f,
};
const VkRect2D scissor{
.offset = {0, 0},
.extent = extent,
};
cmdbuf.SetViewport(0, viewport);
cmdbuf.SetScissor(0, scissor);
}
} // Anonymous namespace
SMAA::SMAA(const Device& device, MemoryAllocator& allocator, size_t image_count, VkExtent2D extent)
: m_device(device), m_allocator(allocator), m_extent(extent),
m_image_count(static_cast<u32>(image_count)) {
CreateImages();
CreateRenderPasses();
CreateSampler();
CreateShaders();
CreateDescriptorPool();
CreateDescriptorSetLayouts();
CreateDescriptorSets();
CreatePipelineLayouts();
CreatePipelines();
}
void SMAA::CreateImages() {
constexpr VkExtent2D area_extent{AREATEX_WIDTH, AREATEX_HEIGHT};
constexpr VkExtent2D search_extent{SEARCHTEX_WIDTH, SEARCHTEX_HEIGHT};
std::tie(m_static_images[Area], m_static_buffer_commits[Area]) =
CreateWrappedImage(m_device, m_allocator, area_extent, VK_FORMAT_R8G8_UNORM);
std::tie(m_static_images[Search], m_static_buffer_commits[Search]) =
CreateWrappedImage(m_device, m_allocator, search_extent, VK_FORMAT_R8_UNORM);
m_static_image_views[Area] =
CreateWrappedImageView(m_device, m_static_images[Area], VK_FORMAT_R8G8_UNORM);
m_static_image_views[Search] =
CreateWrappedImageView(m_device, m_static_images[Search], VK_FORMAT_R8_UNORM);
for (u32 i = 0; i < m_image_count; i++) {
Images& images = m_dynamic_images.emplace_back();
std::tie(images.images[Blend], images.buffer_commits[Blend]) =
CreateWrappedImage(m_device, m_allocator, m_extent, VK_FORMAT_R16G16B16A16_SFLOAT);
std::tie(images.images[Edges], images.buffer_commits[Edges]) =
CreateWrappedImage(m_device, m_allocator, m_extent, VK_FORMAT_R16G16_SFLOAT);
std::tie(images.images[Output], images.buffer_commits[Output]) =
CreateWrappedImage(m_device, m_allocator, m_extent, VK_FORMAT_R16G16B16A16_SFLOAT);
images.image_views[Blend] =
CreateWrappedImageView(m_device, images.images[Blend], VK_FORMAT_R16G16B16A16_SFLOAT);
images.image_views[Edges] =
CreateWrappedImageView(m_device, images.images[Edges], VK_FORMAT_R16G16_SFLOAT);
images.image_views[Output] =
CreateWrappedImageView(m_device, images.images[Output], VK_FORMAT_R16G16B16A16_SFLOAT);
}
}
void SMAA::CreateRenderPasses() {
m_renderpasses[EdgeDetection] = CreateWrappedRenderPass(m_device, VK_FORMAT_R16G16_SFLOAT);
m_renderpasses[BlendingWeightCalculation] =
CreateWrappedRenderPass(m_device, VK_FORMAT_R16G16B16A16_SFLOAT);
m_renderpasses[NeighborhoodBlending] =
CreateWrappedRenderPass(m_device, VK_FORMAT_R16G16B16A16_SFLOAT);
for (auto& images : m_dynamic_images) {
images.framebuffers[EdgeDetection] = CreateWrappedFramebuffer(
m_device, m_renderpasses[EdgeDetection], images.image_views[Edges], m_extent);
images.framebuffers[BlendingWeightCalculation] =
CreateWrappedFramebuffer(m_device, m_renderpasses[BlendingWeightCalculation],
images.image_views[Blend], m_extent);
images.framebuffers[NeighborhoodBlending] = CreateWrappedFramebuffer(
m_device, m_renderpasses[NeighborhoodBlending], images.image_views[Output], m_extent);
}
}
void SMAA::CreateSampler() {
m_sampler = CreateWrappedSampler(m_device);
}
void SMAA::CreateShaders() {
// These match the order of the SMAAStage enum
constexpr std::array vert_shader_sources{
ARRAY_TO_SPAN(SMAA_EDGE_DETECTION_VERT_SPV),
ARRAY_TO_SPAN(SMAA_BLENDING_WEIGHT_CALCULATION_VERT_SPV),
ARRAY_TO_SPAN(SMAA_NEIGHBORHOOD_BLENDING_VERT_SPV),
};
constexpr std::array frag_shader_sources{
ARRAY_TO_SPAN(SMAA_EDGE_DETECTION_FRAG_SPV),
ARRAY_TO_SPAN(SMAA_BLENDING_WEIGHT_CALCULATION_FRAG_SPV),
ARRAY_TO_SPAN(SMAA_NEIGHBORHOOD_BLENDING_FRAG_SPV),
};
for (size_t i = 0; i < MaxSMAAStage; i++) {
m_vertex_shaders[i] = CreateWrappedShaderModule(m_device, vert_shader_sources[i]);
m_fragment_shaders[i] = CreateWrappedShaderModule(m_device, frag_shader_sources[i]);
}
}
void SMAA::CreateDescriptorPool() {
// Edge detection: 1 descriptor
// Blending weight calculation: 3 descriptors
// Neighborhood blending: 2 descriptors
// 6 descriptors, 3 descriptor sets per image
m_descriptor_pool = CreateWrappedDescriptorPool(m_device, 6 * m_image_count, 3 * m_image_count);
}
void SMAA::CreateDescriptorSetLayouts() {
m_descriptor_set_layouts[EdgeDetection] = CreateWrappedDescriptorSetLayout(m_device, 1);
m_descriptor_set_layouts[BlendingWeightCalculation] =
CreateWrappedDescriptorSetLayout(m_device, 3);
m_descriptor_set_layouts[NeighborhoodBlending] = CreateWrappedDescriptorSetLayout(m_device, 2);
}
void SMAA::CreateDescriptorSets() {
std::vector<VkDescriptorSetLayout> layouts(m_descriptor_set_layouts.size());
std::ranges::transform(m_descriptor_set_layouts, layouts.begin(),
[](auto& layout) { return *layout; });
for (auto& images : m_dynamic_images) {
images.descriptor_sets = CreateWrappedDescriptorSets(m_descriptor_pool, layouts);
}
}
void SMAA::CreatePipelineLayouts() {
for (size_t i = 0; i < MaxSMAAStage; i++) {
m_pipeline_layouts[i] = CreateWrappedPipelineLayout(m_device, m_descriptor_set_layouts[i]);
}
}
void SMAA::CreatePipelines() {
for (size_t i = 0; i < MaxSMAAStage; i++) {
m_pipelines[i] =
CreateWrappedPipeline(m_device, m_renderpasses[i], m_pipeline_layouts[i],
std::tie(m_vertex_shaders[i], m_fragment_shaders[i]));
}
}
void SMAA::UpdateDescriptorSets(VkImageView image_view, size_t image_index) {
Images& images = m_dynamic_images[image_index];
std::vector<VkDescriptorImageInfo> image_infos;
std::vector<VkWriteDescriptorSet> updates;
image_infos.reserve(6);
updates.push_back(CreateWriteDescriptorSet(image_infos, *m_sampler, image_view,
images.descriptor_sets[EdgeDetection], 0));
updates.push_back(CreateWriteDescriptorSet(image_infos, *m_sampler, *images.image_views[Edges],
images.descriptor_sets[BlendingWeightCalculation],
0));
updates.push_back(CreateWriteDescriptorSet(image_infos, *m_sampler, *m_static_image_views[Area],
images.descriptor_sets[BlendingWeightCalculation],
1));
updates.push_back(
CreateWriteDescriptorSet(image_infos, *m_sampler, *m_static_image_views[Search],
images.descriptor_sets[BlendingWeightCalculation], 2));
updates.push_back(CreateWriteDescriptorSet(image_infos, *m_sampler, image_view,
images.descriptor_sets[NeighborhoodBlending], 0));
updates.push_back(CreateWriteDescriptorSet(image_infos, *m_sampler, *images.image_views[Blend],
images.descriptor_sets[NeighborhoodBlending], 1));
m_device.GetLogical().UpdateDescriptorSets(updates, {});
}
void SMAA::UploadImages(Scheduler& scheduler) {
if (m_images_ready) {
return;
}
constexpr VkExtent2D area_extent{AREATEX_WIDTH, AREATEX_HEIGHT};
constexpr VkExtent2D search_extent{SEARCHTEX_WIDTH, SEARCHTEX_HEIGHT};
UploadImage(m_device, m_allocator, scheduler, m_static_images[Area], area_extent,
VK_FORMAT_R8G8_UNORM, ARRAY_TO_SPAN(areaTexBytes));
UploadImage(m_device, m_allocator, scheduler, m_static_images[Search], search_extent,
VK_FORMAT_R8_UNORM, ARRAY_TO_SPAN(searchTexBytes));
scheduler.Record([&](vk::CommandBuffer& cmdbuf) {
for (auto& images : m_dynamic_images) {
for (size_t i = 0; i < MaxDynamicImage; i++) {
ClearColorImage(cmdbuf, *images.images[i]);
}
}
});
scheduler.Finish();
m_images_ready = true;
}
VkImageView SMAA::Draw(Scheduler& scheduler, size_t image_index, VkImage source_image,
VkImageView source_image_view) {
Images& images = m_dynamic_images[image_index];
VkImage output_image = *images.images[Output];
VkImage edges_image = *images.images[Edges];
VkImage blend_image = *images.images[Blend];
VkDescriptorSet edge_detection_descriptor_set = images.descriptor_sets[EdgeDetection];
VkDescriptorSet blending_weight_calculation_descriptor_set =
images.descriptor_sets[BlendingWeightCalculation];
VkDescriptorSet neighborhood_blending_descriptor_set =
images.descriptor_sets[NeighborhoodBlending];
VkFramebuffer edge_detection_framebuffer = *images.framebuffers[EdgeDetection];
VkFramebuffer blending_weight_calculation_framebuffer =
*images.framebuffers[BlendingWeightCalculation];
VkFramebuffer neighborhood_blending_framebuffer = *images.framebuffers[NeighborhoodBlending];
UploadImages(scheduler);
UpdateDescriptorSets(source_image_view, image_index);
scheduler.RequestOutsideRenderPassOperationContext();
scheduler.Record([=, this](vk::CommandBuffer& cmdbuf) {
TransitionImageLayout(cmdbuf, source_image, VK_IMAGE_LAYOUT_GENERAL);
TransitionImageLayout(cmdbuf, edges_image, VK_IMAGE_LAYOUT_GENERAL);
BeginRenderPass(cmdbuf, m_renderpasses[EdgeDetection], edge_detection_framebuffer,
m_extent);
cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_GRAPHICS, *m_pipelines[EdgeDetection]);
cmdbuf.BindDescriptorSets(VK_PIPELINE_BIND_POINT_GRAPHICS,
*m_pipeline_layouts[EdgeDetection], 0,
edge_detection_descriptor_set, {});
cmdbuf.Draw(3, 1, 0, 0);
cmdbuf.EndRenderPass();
TransitionImageLayout(cmdbuf, edges_image, VK_IMAGE_LAYOUT_GENERAL);
TransitionImageLayout(cmdbuf, blend_image, VK_IMAGE_LAYOUT_GENERAL);
BeginRenderPass(cmdbuf, m_renderpasses[BlendingWeightCalculation],
blending_weight_calculation_framebuffer, m_extent);
cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_GRAPHICS,
*m_pipelines[BlendingWeightCalculation]);
cmdbuf.BindDescriptorSets(VK_PIPELINE_BIND_POINT_GRAPHICS,
*m_pipeline_layouts[BlendingWeightCalculation], 0,
blending_weight_calculation_descriptor_set, {});
cmdbuf.Draw(3, 1, 0, 0);
cmdbuf.EndRenderPass();
TransitionImageLayout(cmdbuf, blend_image, VK_IMAGE_LAYOUT_GENERAL);
TransitionImageLayout(cmdbuf, output_image, VK_IMAGE_LAYOUT_GENERAL);
BeginRenderPass(cmdbuf, m_renderpasses[NeighborhoodBlending],
neighborhood_blending_framebuffer, m_extent);
cmdbuf.BindPipeline(VK_PIPELINE_BIND_POINT_GRAPHICS, *m_pipelines[NeighborhoodBlending]);
cmdbuf.BindDescriptorSets(VK_PIPELINE_BIND_POINT_GRAPHICS,
*m_pipeline_layouts[NeighborhoodBlending], 0,
neighborhood_blending_descriptor_set, {});
cmdbuf.Draw(3, 1, 0, 0);
cmdbuf.EndRenderPass();
TransitionImageLayout(cmdbuf, output_image, VK_IMAGE_LAYOUT_GENERAL);
});
return *images.image_views[Output];
}
} // namespace Vulkan

View File

@@ -0,0 +1,86 @@
// SPDX-FileCopyrightText: Copyright 2022 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#pragma once
#include <array>
#include "video_core/vulkan_common/vulkan_memory_allocator.h"
#include "video_core/vulkan_common/vulkan_wrapper.h"
namespace Vulkan {
class Device;
class Scheduler;
class StagingBufferPool;
class SMAA {
public:
explicit SMAA(const Device& device, MemoryAllocator& allocator, size_t image_count,
VkExtent2D extent);
VkImageView Draw(Scheduler& scheduler, size_t image_index, VkImage source_image,
VkImageView source_image_view);
private:
enum SMAAStage {
EdgeDetection = 0,
BlendingWeightCalculation = 1,
NeighborhoodBlending = 2,
MaxSMAAStage = 3,
};
enum StaticImageType {
Area = 0,
Search = 1,
MaxStaticImage = 2,
};
enum DynamicImageType {
Blend = 0,
Edges = 1,
Output = 2,
MaxDynamicImage = 3,
};
void CreateImages();
void CreateRenderPasses();
void CreateSampler();
void CreateShaders();
void CreateDescriptorPool();
void CreateDescriptorSetLayouts();
void CreateDescriptorSets();
void CreatePipelineLayouts();
void CreatePipelines();
void UpdateDescriptorSets(VkImageView image_view, size_t image_index);
void UploadImages(Scheduler& scheduler);
const Device& m_device;
MemoryAllocator& m_allocator;
const VkExtent2D m_extent;
const u32 m_image_count;
vk::DescriptorPool m_descriptor_pool{};
std::array<vk::DescriptorSetLayout, MaxSMAAStage> m_descriptor_set_layouts{};
std::array<vk::PipelineLayout, MaxSMAAStage> m_pipeline_layouts{};
std::array<vk::ShaderModule, MaxSMAAStage> m_vertex_shaders{};
std::array<vk::ShaderModule, MaxSMAAStage> m_fragment_shaders{};
std::array<vk::Pipeline, MaxSMAAStage> m_pipelines{};
std::array<vk::RenderPass, MaxSMAAStage> m_renderpasses{};
std::array<MemoryCommit, MaxStaticImage> m_static_buffer_commits;
std::array<vk::Image, MaxStaticImage> m_static_images{};
std::array<vk::ImageView, MaxStaticImage> m_static_image_views{};
struct Images {
vk::DescriptorSets descriptor_sets{};
std::array<MemoryCommit, MaxDynamicImage> buffer_commits;
std::array<vk::Image, MaxDynamicImage> images{};
std::array<vk::ImageView, MaxDynamicImage> image_views{};
std::array<vk::Framebuffer, MaxSMAAStage> framebuffers{};
};
std::vector<Images> m_dynamic_images{};
bool m_images_ready{};
vk::Sampler m_sampler{};
};
} // namespace Vulkan

View File

@@ -67,17 +67,19 @@ VkExtent2D ChooseSwapExtent(const VkSurfaceCapabilitiesKHR& capabilities, u32 wi
} // Anonymous namespace
Swapchain::Swapchain(VkSurfaceKHR surface_, const Device& device_, Scheduler& scheduler_, u32 width,
u32 height, bool srgb)
Swapchain::Swapchain(VkSurfaceKHR surface_, const Device& device_, Scheduler& scheduler_,
u32 width_, u32 height_, bool srgb)
: surface{surface_}, device{device_}, scheduler{scheduler_} {
Create(width, height, srgb);
Create(width_, height_, srgb);
}
Swapchain::~Swapchain() = default;
void Swapchain::Create(u32 width, u32 height, bool srgb) {
void Swapchain::Create(u32 width_, u32 height_, bool srgb) {
is_outdated = false;
is_suboptimal = false;
width = width_;
height = height_;
const auto physical_device = device.GetPhysical();
const auto capabilities{physical_device.GetSurfaceCapabilitiesKHR(surface)};
@@ -88,7 +90,7 @@ void Swapchain::Create(u32 width, u32 height, bool srgb) {
device.GetLogical().WaitIdle();
Destroy();
CreateSwapchain(capabilities, width, height, srgb);
CreateSwapchain(capabilities, srgb);
CreateSemaphores();
CreateImageViews();
@@ -148,8 +150,7 @@ void Swapchain::Present(VkSemaphore render_semaphore) {
}
}
void Swapchain::CreateSwapchain(const VkSurfaceCapabilitiesKHR& capabilities, u32 width, u32 height,
bool srgb) {
void Swapchain::CreateSwapchain(const VkSurfaceCapabilitiesKHR& capabilities, bool srgb) {
const auto physical_device{device.GetPhysical()};
const auto formats{physical_device.GetSurfaceFormatsKHR(surface)};
const auto present_modes{physical_device.GetSurfacePresentModesKHR(surface)};

View File

@@ -80,9 +80,16 @@ public:
return *present_semaphores[frame_index];
}
u32 GetWidth() const {
return width;
}
u32 GetHeight() const {
return height;
}
private:
void CreateSwapchain(const VkSurfaceCapabilitiesKHR& capabilities, u32 width, u32 height,
bool srgb);
void CreateSwapchain(const VkSurfaceCapabilitiesKHR& capabilities, bool srgb);
void CreateSemaphores();
void CreateImageViews();
@@ -105,6 +112,9 @@ private:
std::vector<u64> resource_ticks;
std::vector<vk::Semaphore> present_semaphores;
u32 width;
u32 height;
u32 image_index{};
u32 frame_index{};

11223
src/video_core/smaa_area_tex.h Normal file

File diff suppressed because it is too large Load Diff

View File

@@ -0,0 +1,88 @@
// SPDX-FileCopyrightText: 2013 Jorge Jimenez (jorge@iryoku.com)
// SPDX-FileCopyrightText: 2013 Jose I. Echevarria (joseignacioechevarria@gmail.com)
// SPDX-FileCopyrightText: 2013 Belen Masia (bmasia@unizar.es)
// SPDX-FileCopyrightText: 2013 Fernando Navarro (fernandn@microsoft.com)
// SPDX-FileCopyrightText: 2013 Diego Gutierrez (diegog@unizar.es)
// SPDX-License-Identifier: MIT
#ifndef SEARCHTEX_H
#define SEARCHTEX_H
#define SEARCHTEX_WIDTH 64
#define SEARCHTEX_HEIGHT 16
#define SEARCHTEX_PITCH SEARCHTEX_WIDTH
#define SEARCHTEX_SIZE (SEARCHTEX_HEIGHT * SEARCHTEX_PITCH)
/**
* Stored in R8 format. Load it in the following format:
* - DX9: D3DFMT_L8
* - DX10: DXGI_FORMAT_R8_UNORM
*/
static const unsigned char searchTexBytes[] = {
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};
#endif

View File

@@ -64,10 +64,11 @@ float TSCEntry::MaxAnisotropy() const noexcept {
return 1.0f;
}
const auto anisotropic_settings = Settings::values.max_anisotropy.GetValue();
u32 added_anisotropic{};
s32 added_anisotropic{};
if (anisotropic_settings == 0) {
added_anisotropic = Settings::values.resolution_info.up_scale >>
Settings::values.resolution_info.down_shift;
added_anisotropic = std::max(added_anisotropic - 1, 0);
} else {
added_anisotropic = Settings::values.max_anisotropy.GetValue() - 1U;
}

View File

@@ -421,7 +421,7 @@ Device::Device(VkInstance instance_, vk::PhysicalDevice physical_, VkSurfaceKHR
VkPhysicalDevice8BitStorageFeatures bit8_storage{
.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_8BIT_STORAGE_FEATURES,
.pNext = nullptr,
.storageBuffer8BitAccess = false,
.storageBuffer8BitAccess = true,
.uniformAndStorageBuffer8BitAccess = true,
.storagePushConstant8 = false,
};
@@ -660,6 +660,16 @@ Device::Device(VkInstance instance_, vk::PhysicalDevice physical_, VkSurfaceKHR
LOG_INFO(Render_Vulkan, "Device doesn't support depth range unrestricted");
}
VkPhysicalDeviceDepthClipControlFeaturesEXT depth_clip_control_features;
if (ext_depth_clip_control) {
depth_clip_control_features = {
.sType = VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_DEPTH_CLIP_CONTROL_FEATURES_EXT,
.pNext = nullptr,
.depthClipControl = VK_TRUE,
};
SetNext(next, depth_clip_control_features);
}
VkDeviceDiagnosticsConfigCreateInfoNV diagnostics_nv;
if (Settings::values.enable_nsight_aftermath && nv_device_diagnostics_config) {
nsight_aftermath_tracker = std::make_unique<NsightAftermathTracker>();
@@ -1044,6 +1054,7 @@ void Device::CheckSuitability(bool requires_swapchain) const {
std::make_pair(bit16_storage.storageBuffer16BitAccess, "storageBuffer16BitAccess"),
std::make_pair(bit16_storage.uniformAndStorageBuffer16BitAccess,
"uniformAndStorageBuffer16BitAccess"),
std::make_pair(bit8_storage.storageBuffer8BitAccess, "storageBuffer8BitAccess"),
std::make_pair(bit8_storage.uniformAndStorageBuffer8BitAccess,
"uniformAndStorageBuffer8BitAccess"),
std::make_pair(host_query_reset.hostQueryReset, "hostQueryReset"),
@@ -1083,6 +1094,7 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
bool has_ext_vertex_input_dynamic_state{};
bool has_ext_line_rasterization{};
bool has_ext_primitive_topology_list_restart{};
bool has_ext_depth_clip_control{};
for (const std::string& extension : supported_extensions) {
const auto test = [&](std::optional<std::reference_wrapper<bool>> status, const char* name,
bool push) {
@@ -1116,6 +1128,7 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
test(ext_shader_stencil_export, VK_EXT_SHADER_STENCIL_EXPORT_EXTENSION_NAME, true);
test(ext_conservative_rasterization, VK_EXT_CONSERVATIVE_RASTERIZATION_EXTENSION_NAME,
true);
test(has_ext_depth_clip_control, VK_EXT_DEPTH_CLIP_CONTROL_EXTENSION_NAME, false);
test(has_ext_transform_feedback, VK_EXT_TRANSFORM_FEEDBACK_EXTENSION_NAME, false);
test(has_ext_custom_border_color, VK_EXT_CUSTOM_BORDER_COLOR_EXTENSION_NAME, false);
test(has_ext_extended_dynamic_state, VK_EXT_EXTENDED_DYNAMIC_STATE_EXTENSION_NAME, false);
@@ -1279,6 +1292,19 @@ std::vector<const char*> Device::LoadExtensions(bool requires_surface) {
ext_line_rasterization = true;
}
}
if (has_ext_depth_clip_control) {
VkPhysicalDeviceDepthClipControlFeaturesEXT depth_clip_control_features;
depth_clip_control_features.sType =
VK_STRUCTURE_TYPE_PHYSICAL_DEVICE_DEPTH_CLIP_CONTROL_FEATURES_EXT;
depth_clip_control_features.pNext = nullptr;
features.pNext = &depth_clip_control_features;
physical.GetFeatures2(features);
if (depth_clip_control_features.depthClipControl) {
extensions.push_back(VK_EXT_DEPTH_CLIP_CONTROL_EXTENSION_NAME);
ext_depth_clip_control = true;
}
}
if (has_khr_workgroup_memory_explicit_layout) {
VkPhysicalDeviceWorkgroupMemoryExplicitLayoutFeaturesKHR layout;
layout.sType =
@@ -1380,6 +1406,10 @@ void Device::SetupFeatures() {
is_shader_storage_image_multisample = features.shaderStorageImageMultisample;
is_blit_depth_stencil_supported = TestDepthStencilBlits();
is_optimal_astc_supported = IsOptimalAstcSupported(features);
const VkPhysicalDeviceLimits& limits{properties.limits};
max_vertex_input_attributes = limits.maxVertexInputAttributes;
max_vertex_input_bindings = limits.maxVertexInputBindings;
}
void Device::SetupProperties() {

View File

@@ -256,6 +256,11 @@ public:
return ext_depth_range_unrestricted;
}
/// Returns true if the device supports VK_EXT_depth_clip_control.
bool IsExtDepthClipControlSupported() const {
return ext_depth_clip_control;
}
/// Returns true if the device supports VK_EXT_shader_viewport_index_layer.
bool IsExtShaderViewportIndexLayerSupported() const {
return ext_shader_viewport_index_layer;
@@ -368,6 +373,14 @@ public:
return must_emulate_bgr565;
}
u32 GetMaxVertexInputAttributes() const {
return max_vertex_input_attributes;
}
u32 GetMaxVertexInputBindings() const {
return max_vertex_input_bindings;
}
private:
/// Checks if the physical device is suitable.
void CheckSuitability(bool requires_swapchain) const;
@@ -446,6 +459,7 @@ private:
bool khr_swapchain_mutable_format{}; ///< Support for VK_KHR_swapchain_mutable_format.
bool ext_index_type_uint8{}; ///< Support for VK_EXT_index_type_uint8.
bool ext_sampler_filter_minmax{}; ///< Support for VK_EXT_sampler_filter_minmax.
bool ext_depth_clip_control{}; ///< Support for VK_EXT_depth_clip_control
bool ext_depth_range_unrestricted{}; ///< Support for VK_EXT_depth_range_unrestricted.
bool ext_shader_viewport_index_layer{}; ///< Support for VK_EXT_shader_viewport_index_layer.
bool ext_tooling_info{}; ///< Support for VK_EXT_tooling_info.
@@ -467,6 +481,8 @@ private:
bool supports_d24_depth{}; ///< Supports D24 depth buffers.
bool cant_blit_msaa{}; ///< Does not support MSAA<->MSAA blitting.
bool must_emulate_bgr565{}; ///< Emulates BGR565 by swizzling RGB565 format.
u32 max_vertex_input_attributes{}; ///< Max vertex input attributes in pipeline
u32 max_vertex_input_bindings{}; ///< Max vertex input buffers in pipeline
// Telemetry parameters
std::string vendor_name; ///< Device's driver name.

View File

@@ -86,6 +86,7 @@ void Load(VkDevice device, DeviceDispatch& dld) noexcept {
X(vkCmdBindVertexBuffers);
X(vkCmdBlitImage);
X(vkCmdClearAttachments);
X(vkCmdClearColorImage);
X(vkCmdCopyBuffer);
X(vkCmdCopyBufferToImage);
X(vkCmdCopyImage);

View File

@@ -205,6 +205,7 @@ struct DeviceDispatch : InstanceDispatch {
PFN_vkCmdBindVertexBuffers2EXT vkCmdBindVertexBuffers2EXT{};
PFN_vkCmdBlitImage vkCmdBlitImage{};
PFN_vkCmdClearAttachments vkCmdClearAttachments{};
PFN_vkCmdClearColorImage vkCmdClearColorImage{};
PFN_vkCmdCopyBuffer vkCmdCopyBuffer{};
PFN_vkCmdCopyBufferToImage vkCmdCopyBufferToImage{};
PFN_vkCmdCopyImage vkCmdCopyImage{};
@@ -1024,6 +1025,11 @@ public:
rects.data());
}
void ClearColorImage(VkImage image, VkImageLayout layout, VkClearColorValue color,
Span<VkImageSubresourceRange> ranges) {
dld->vkCmdClearColorImage(handle, image, layout, &color, ranges.size(), ranges.data());
}
void BlitImage(VkImage src_image, VkImageLayout src_layout, VkImage dst_image,
VkImageLayout dst_layout, Span<VkImageBlit> regions,
VkFilter filter) const noexcept {

View File

@@ -402,7 +402,7 @@ if (MSVC)
copy_yuzu_FFmpeg_deps(yuzu)
endif()
if (NOT APPLE)
if (NOT APPLE AND ENABLE_OPENGL)
target_compile_definitions(yuzu PRIVATE HAS_OPENGL)
endif()

View File

@@ -44,6 +44,8 @@
#include "yuzu/bootmanager.h"
#include "yuzu/main.h"
static Core::Frontend::WindowSystemType GetWindowSystemType();
EmuThread::EmuThread(Core::System& system_) : system{system_} {}
EmuThread::~EmuThread() = default;
@@ -61,8 +63,6 @@ void EmuThread::run() {
// Main process has been loaded. Make the context current to this thread and begin GPU and CPU
// execution.
gpu.Start();
gpu.ObtainContext();
emit LoadProgress(VideoCore::LoadCallbackStage::Prepare, 0, 0);
@@ -77,9 +77,15 @@ void EmuThread::run() {
emit LoadProgress(VideoCore::LoadCallbackStage::Complete, 0, 0);
gpu.ReleaseContext();
gpu.Start();
system.GetCpuManager().OnGpuReady();
system.RegisterExitCallback([this]() {
stop_source.request_stop();
SetRunning(false);
});
// Holds whether the cpu was running during the last iteration,
// so that the DebugModeLeft signal can be emitted before the
// next execution step
@@ -225,6 +231,9 @@ public:
explicit RenderWidget(GRenderWindow* parent) : QWidget(parent), render_window(parent) {
setAttribute(Qt::WA_NativeWindow);
setAttribute(Qt::WA_PaintOnScreen);
if (GetWindowSystemType() == Core::Frontend::WindowSystemType::Wayland) {
setAttribute(Qt::WA_DontCreateNativeAncestors);
}
}
virtual ~RenderWidget() = default;
@@ -269,12 +278,14 @@ static Core::Frontend::WindowSystemType GetWindowSystemType() {
return Core::Frontend::WindowSystemType::X11;
else if (platform_name == QStringLiteral("wayland"))
return Core::Frontend::WindowSystemType::Wayland;
else if (platform_name == QStringLiteral("wayland-egl"))
return Core::Frontend::WindowSystemType::Wayland;
else if (platform_name == QStringLiteral("cocoa"))
return Core::Frontend::WindowSystemType::Cocoa;
else if (platform_name == QStringLiteral("android"))
return Core::Frontend::WindowSystemType::Android;
LOG_CRITICAL(Frontend, "Unknown Qt platform!");
LOG_CRITICAL(Frontend, "Unknown Qt platform {}!", platform_name.toStdString());
return Core::Frontend::WindowSystemType::Windows;
}
@@ -314,6 +325,9 @@ GRenderWindow::GRenderWindow(GMainWindow* parent, EmuThread* emu_thread_,
input_subsystem->Initialize();
this->setMouseTracking(true);
strict_context_required = QGuiApplication::platformName() == QStringLiteral("wayland") ||
QGuiApplication::platformName() == QStringLiteral("wayland-egl");
connect(this, &GRenderWindow::FirstFrameDisplayed, parent, &GMainWindow::OnLoadComplete);
connect(this, &GRenderWindow::ExecuteProgramSignal, parent, &GMainWindow::OnExecuteProgram,
Qt::QueuedConnection);
@@ -750,6 +764,7 @@ void GRenderWindow::InitializeCamera() {
return;
}
camera_data.resize(CAMERA_WIDTH * CAMERA_HEIGHT);
camera_capture->setCaptureDestination(QCameraImageCapture::CaptureDestination::CaptureToBuffer);
connect(camera_capture.get(), &QCameraImageCapture::imageCaptured, this,
&GRenderWindow::OnCameraCapture);
@@ -805,16 +820,13 @@ void GRenderWindow::RequestCameraCapture() {
}
void GRenderWindow::OnCameraCapture(int requestId, const QImage& img) {
constexpr std::size_t camera_width = 320;
constexpr std::size_t camera_height = 240;
// TODO: Capture directly in the format and resolution needed
const auto converted =
img.scaled(camera_width, camera_height, Qt::AspectRatioMode::IgnoreAspectRatio,
img.scaled(CAMERA_WIDTH, CAMERA_HEIGHT, Qt::AspectRatioMode::IgnoreAspectRatio,
Qt::TransformationMode::SmoothTransformation)
.mirrored(false, true);
std::vector<u32> camera_data{};
camera_data.resize(camera_width * camera_height);
std::memcpy(camera_data.data(), converted.bits(), camera_width * camera_height * sizeof(u32));
input_subsystem->GetCamera()->SetCameraData(camera_width, camera_height, camera_data);
std::memcpy(camera_data.data(), converted.bits(), CAMERA_WIDTH * CAMERA_HEIGHT * sizeof(u32));
input_subsystem->GetCamera()->SetCameraData(CAMERA_WIDTH, CAMERA_HEIGHT, camera_data);
pending_camera_snapshots = 0;
}
@@ -952,6 +964,12 @@ void GRenderWindow::OnMinimalClientAreaChangeRequest(std::pair<u32, u32> minimal
bool GRenderWindow::InitializeOpenGL() {
#ifdef HAS_OPENGL
if (!QOpenGLContext::supportsThreadedOpenGL()) {
QMessageBox::warning(this, tr("OpenGL not available!"),
tr("OpenGL shared contexts are not supported."));
return false;
}
// TODO: One of these flags might be interesting: WA_OpaquePaintEvent, WA_NoBackground,
// WA_DontShowOnScreen, WA_DeleteOnClose
auto child = new OpenGLRenderWidget(this);

View File

@@ -84,9 +84,10 @@ public:
}
/**
* Requests for the emulation thread to stop running
* Requests for the emulation thread to immediately stop running
*/
void RequestStop() {
void ForceStop() {
LOG_WARNING(Frontend, "Force stopping EmuThread");
stop_source.request_stop();
SetRunning(false);
}
@@ -246,6 +247,9 @@ private:
#if (QT_VERSION < QT_VERSION_CHECK(6, 0, 0)) && YUZU_USE_QT_MULTIMEDIA
std::unique_ptr<QCamera> camera;
std::unique_ptr<QCameraImageCapture> camera_capture;
static constexpr std::size_t CAMERA_WIDTH = 320;
static constexpr std::size_t CAMERA_HEIGHT = 240;
std::vector<u32> camera_data;
#endif
std::unique_ptr<QTimer> camera_timer;

View File

@@ -697,7 +697,6 @@ void Config::ReadRendererValues() {
ReadGlobalSetting(Settings::values.fsr_sharpening_slider);
ReadGlobalSetting(Settings::values.anti_aliasing);
ReadGlobalSetting(Settings::values.max_anisotropy);
ReadGlobalSetting(Settings::values.use_speed_limit);
ReadGlobalSetting(Settings::values.speed_limit);
ReadGlobalSetting(Settings::values.use_disk_shader_cache);
ReadGlobalSetting(Settings::values.gpu_accuracy);
@@ -784,6 +783,8 @@ void Config::ReadSystemValues() {
}
}
ReadBasicSetting(Settings::values.device_name);
if (global) {
ReadBasicSetting(Settings::values.current_user);
Settings::values.current_user = std::clamp<int>(Settings::values.current_user.GetValue(), 0,
@@ -1328,7 +1329,6 @@ void Config::SaveRendererValues() {
static_cast<u32>(Settings::values.anti_aliasing.GetDefault()),
Settings::values.anti_aliasing.UsingGlobal());
WriteGlobalSetting(Settings::values.max_anisotropy);
WriteGlobalSetting(Settings::values.use_speed_limit);
WriteGlobalSetting(Settings::values.speed_limit);
WriteGlobalSetting(Settings::values.use_disk_shader_cache);
WriteSetting(QString::fromStdString(Settings::values.gpu_accuracy.GetLabel()),
@@ -1407,6 +1407,7 @@ void Config::SaveSystemValues() {
Settings::values.rng_seed.UsingGlobal());
WriteSetting(QStringLiteral("rng_seed"), Settings::values.rng_seed.GetValue(global).value_or(0),
0, Settings::values.rng_seed.UsingGlobal());
WriteBasicSetting(Settings::values.device_name);
if (global) {
WriteBasicSetting(Settings::values.current_user);

View File

@@ -487,6 +487,11 @@
<string>FXAA</string>
</property>
</item>
<item>
<property name="text">
<string>SMAA</string>
</property>
</item>
</widget>
</item>
</layout>
@@ -524,6 +529,12 @@
</property>
<item>
<layout class="QHBoxLayout" name="fsr_sharpening_label_group">
<property name="rightMargin">
<number>0</number>
</property>
<property name="bottomMargin">
<number>0</number>
</property>
<item>
<widget class="QComboBox" name="fsr_sharpening_combobox">
<property name="sizePolicy">

View File

@@ -72,6 +72,8 @@ void ConfigureSystem::SetConfiguration() {
ui->custom_rtc_checkbox->setChecked(Settings::values.custom_rtc.has_value());
ui->custom_rtc_edit->setEnabled(Settings::values.custom_rtc.has_value());
ui->custom_rtc_edit->setDateTime(QDateTime::fromSecsSinceEpoch(rtc_time));
ui->device_name_edit->setText(
QString::fromUtf8(Settings::values.device_name.GetValue().c_str()));
if (Settings::IsConfiguringGlobal()) {
ui->combo_language->setCurrentIndex(Settings::values.language_index.GetValue());
@@ -115,6 +117,8 @@ void ConfigureSystem::ApplyConfiguration() {
}
}
Settings::values.device_name = ui->device_name_edit->text().toStdString();
if (!enabled) {
return;
}

View File

@@ -432,6 +432,13 @@
</property>
</widget>
</item>
<item row="7" column="0">
<widget class="QLabel" name="device_name_label">
<property name="text">
<string>Device Name</string>
</property>
</widget>
</item>
<item row="3" column="1">
<widget class="QComboBox" name="combo_sound">
<item>
@@ -476,6 +483,13 @@
</property>
</widget>
</item>
<item row="7" column="1">
<widget class="QLineEdit" name="device_name_edit">
<property name="maxLength">
<number>128</number>
</property>
</widget>
</item>
<item row="6" column="1">
<widget class="QLineEdit" name="rng_seed_edit">
<property name="sizePolicy">

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