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28 Commits

Author SHA1 Message Date
378080eb87 Added Custom Path case when saving screenshots (#5086) 2023-05-28 22:44:46 +02:00
e8f5e97fa4 actions: revert timeout-minutes changes for PR workflow
Varibales aren't exposed to PRs...
2023-05-28 11:34:57 +02:00
f3873620a3 actions: Workaround YAML limitation for timeout-minutes
Because Github Actions wants an int, we use fromJSON to hack around
this.
2023-05-28 08:10:43 +02:00
986ac9ff83 Use variables to configure job timeouts (#5123) 2023-05-28 08:02:30 +02:00
42b9c1e8fe Ryujinx.Ava: fixes for random hangs on exit (#4827)
* Attempt at fixing hang on exit by ending the WindowNotificationManager notification loop, so that the Thread running it can exit.

* explicitly apply the NotificationManager template to allow the notification loop to begin

* NotificationHelper - remove explicity call to ApplyTemplate(). Change to ManualResetEventSlim so we can cancel the Wait on it.

* add a timeout to AudioRenderSystem.Stop()'s waiting for the termination signal, log a warning if this timeout occurs, and continue execution

* NotifiationHelper - cancel first, the CompleteAdding()

* Remove AudioRenderSystem._terminationEvent, redundant

* NotificationHelper - use host.Closing event to trigger cancellation instead of _notifationManager.DetachedFromLogicalTree

* Change NotificationHelper to use an explicit Thread for background work.  Wait on the cancellationToken's WaitHandle so the Thread doesn't have to deal with async. Wrap foreach in try/catch (OperationCanceledException) to swallow the escaping exception from the GetConsumingEnumerable().

* adjust formatting of AsyncWorkQueue constructor to use object initializers consistently

* use AsyncWorkQueue to do everything I added in SetNotificationManager()

* Revert "use AsyncWorkQueue to do everything I added in SetNotificationManager()"

This reverts commit f0e78366b8776ec8e2fef8ab023c0db1833155d3.

* use AsyncWorkQueue to handle the Thread-related changes previously made to NotificationHelper.SetNotificationHelper(). Wrap it in Lazy<T> and force instantiation in the TemplateApplied event handler to accomodate for the fact that AsyncWorkQueue starts immediately, and the notification dispatch loop was being delayed by _templateAppliedEvent.

* impl changes suggested by AcK77

* impl changes suggested by AcK77 (more)
2023-05-26 23:57:43 +02:00
3b375525fb Force reciprocal operation with value biased by constant to be precise on macOS (#5110)
* Force operations to be precise in some cases on SPIR-V

* Make it a bit more strict, add comments

* Shader cache version bump
2023-05-26 15:19:37 -03:00
e6658c133c Fix resolution scaling of image operation coordinates (#5102)
* Fix resolution scaling of image operation coordinates

* Shader cache version bump
2023-05-25 23:42:49 -03:00
5b42a4d2c4 Fix mod names (#5088) 2023-05-25 23:41:03 +02:00
8f0c89ffd6 Generate scaling helper functions on IR (#4714)
* Generate scaling helper functions on IR

* Delete unused code

* Split RewriteTextureSample and move gather bias add to an earlier pass

* Remove using

* Shader cache version bump
2023-05-25 17:46:58 -03:00
2c9715acf6 Truncate vertex attribute format if it exceeds stride on MoltenVK (#5094)
* Truncate vertex attribute format if it exceeds stride on MoltenVK

* Fix BGR format

* Move vertex attribute check to pipeline creation to avoid costs

* No need for this to be public
2023-05-25 17:03:51 -03:00
274af65f69 Update release.yml (#5058) 2023-05-25 16:17:37 +02:00
4ca78eded5 Vulkan: Do not set storage flag for multisample textures if not supported (#5060) 2023-05-23 10:41:37 +02:00
6cb6b15612 Implement p2rc, p2ri, p2rr and r2p.cc shaders (#5031)
* implement P2rC, P2rI, P2rR shaders

* implement R2p.CC shader

* bump CodeGenVersion

* address feedback
2023-05-22 17:32:15 -03:00
2725e40838 Revert "Bump MVK Version (#5057)" (#5061)
This reverts commit c2e4c8f98e.
2023-05-22 17:12:11 -03:00
c2e4c8f98e Bump MVK Version (#5057) 2023-05-22 14:41:08 -03:00
b53e7ffd46 Ava UI: Input Menu Redesign (#4990)
* Cleanup

* Remove redundant locales

* Start SVG Fixes…

Better +/- buttons

Fix the grips

Bumpers

Better directional pad

More SVG stuff

Grip adjustments

Final stuff

* Make image bigger

* Border radius

* More cleanup

* Restructure

* Restructure Rumble View

* Use compiled bindings where possible

* Round those pesky corners

* Ack Suggestions

* More suggestions

* Update src/Ryujinx.Ava/UI/Views/Input/RumbleInputView.axaml.cs

Co-authored-by: Ac_K <Acoustik666@gmail.com>

---------

Co-authored-by: Ac_K <Acoustik666@gmail.com>
2023-05-22 01:16:20 +02:00
ac66643346 Fix crash in SettingsViewModel when Vulkan isn't available (#4985)
* fix crash when Vulkan isn't available

* add VulkanRenderer.GetPhysicalDevices() overload that provides its own Vk API object and logs on failure

* adjustments per AcK77
2023-05-21 21:39:06 +02:00
21e88f17f6 ServerBase thread safety (#4577)
* Add guard against ServerBase.Dispose() being called multiple times. Add reset event to avoid Dispose() being called while the ServerLoop is still running.

* remove unused usings

* rework ServerBase to use one collection each for sessions and ports, and make all accesses thread-safe.

* fix Logger call

* use GetSessionObj(int) instead of using _sessions directly

* move _threadStopped check inside "dispose once" test

* - Replace _threadStopped event with attempt to Join() the ending thread (if that isn't the current thread) instead.

- Use the instance-local _selfProcess and (new) _selfThread variables to avoid suggesting that the current KProcess and KThread could change. Per gdkchan, they can't currently, and this old IPC system will be removed before that changes.

- Re-order Dispose() so that the Interlocked _isDisposed check is the last check before disposing, to increase the likelihood that multiple callers will result in one of them succeeding.

* code style suggestions per AcK77

* add infinite wait for thread termination
2023-05-21 21:28:51 +02:00
5626f2ca1c Replace ShaderBindings with new ResourceLayout structure for Vulkan (#5025)
* Introduce ResourceLayout

* Part 1: Use new ResourceSegments array on UpdateAndBind

* Part 2: Use ResourceLayout to build PipelineLayout

* Delete old code

* XML docs

* Fix shader cache load NRE

* Fix typo
2023-05-21 14:04:21 -03:00
402f05b8ef Replace constant buffer access on shader with new Load instruction (#4646) 2023-05-20 16:19:26 -03:00
fb27042e01 Limit compute storage buffer size (#5028) 2023-05-20 16:15:07 +00:00
69a9de33d3 SPIR-V: Only allow implicit LOD sampling on fragment (#5026) 2023-05-20 15:52:26 +02:00
bba51c2eeb Fix macOS Update Script (#5014)
* Update updater.sh

* Better script

* Revert "Better script"

This reverts commit 9bf6be863892e5e10c2f2dba45f1d0a60daca688.
2023-05-19 21:20:01 +02:00
fc26189fe1 Eliminate redundant multiplications by gl_FragCoord.w on the shader (#4578)
* Eliminate redundant multiplications by gl_FragCoord.w on the shader

* Shader cache version bump
2023-05-19 11:52:31 -03:00
a40c90e7dd nuget: bump DynamicData from 7.13.5 to 7.13.8 (#5001)
Bumps [DynamicData](https://github.com/reactiveui/DynamicData) from 7.13.5 to 7.13.8.
- [Release notes](https://github.com/reactiveui/DynamicData/releases)
- [Changelog](https://github.com/reactivemarbles/DynamicData/blob/main/ReleaseNotes.md)
- [Commits](https://github.com/reactiveui/DynamicData/compare/7.13.5...7.13.8)

---
updated-dependencies:
- dependency-name: DynamicData
  dependency-type: direct:production
  update-type: version-update:semver-patch
...

Signed-off-by: dependabot[bot] <support@github.com>
Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com>
2023-05-19 06:52:44 +02:00
f864a49014 Fix Vulkan blit-like operations swizzle (#5003) 2023-05-18 18:16:03 -03:00
ecbf303266 GPU: Avoid using garbage size for non-cb0 storage buffers (#4999)
* GPU: Avoid using garbage size for non-cb0 storage buffers

In the depths area, Tears of the Kingdom uses a global memory access with address on constant buffer slot 6. This isn't standard and thus doesn't actually have a size 8 bytes after it, so we were reading back a garbage size that ended up very large (at least in version 1.1.0), and would synchronize a lot of data per frame.

This PR makes storage buffers created from addresses outside constant buffer slot 0 get their size as the number of bytes remaining in the GPU mapping starting at the given virtual address. This should bound the buffer to a reasonable size, and ideally stop it crossing into other memory.

* Limit max size

* Add TODO

* Feedback
2023-05-18 08:56:34 +02:00
b3bf05356b ava: Fix crash when extracting sections from NCA with no data section (#5002)
Tested against Omega Strickers.
2023-05-17 19:27:49 +00:00
116 changed files with 3985 additions and 2514 deletions

View File

@ -27,7 +27,7 @@ jobs:
build:
name: ${{ matrix.OS_NAME }} (${{ matrix.configuration }})
runs-on: ${{ matrix.os }}
timeout-minutes: 35
timeout-minutes: 45
strategy:
matrix:
os: [ubuntu-latest, macOS-latest, windows-latest]
@ -110,7 +110,7 @@ jobs:
build_macos:
name: macOS Universal (${{ matrix.configuration }})
runs-on: ubuntu-latest
timeout-minutes: 35
timeout-minutes: 45
strategy:
matrix:
configuration: [ Debug, Release ]

View File

@ -12,7 +12,7 @@ concurrency: flatpak-release
jobs:
release:
timeout-minutes: 35
timeout-minutes: ${{ fromJSON(vars.JOB_TIMEOUT) }}
runs-on: ubuntu-latest
env:

View File

@ -7,7 +7,7 @@ jobs:
pr_comment:
if: github.event.workflow_run.event == 'pull_request' && github.event.workflow_run.conclusion == 'success'
runs-on: ubuntu-latest
timeout-minutes: 35
timeout-minutes: ${{ fromJSON(vars.JOB_TIMEOUT) }}
steps:
- uses: actions/github-script@v6
with:

View File

@ -33,7 +33,7 @@ jobs:
shell: bash
- name: Create tag
uses: actions/github-script@v5
uses: actions/github-script@v6
with:
script: |
github.rest.git.createRef({
@ -46,7 +46,7 @@ jobs:
release:
name: Release ${{ matrix.OS_NAME }}
runs-on: ${{ matrix.os }}
timeout-minutes: 35
timeout-minutes: ${{ fromJSON(vars.JOB_TIMEOUT) }}
strategy:
matrix:
os: [ ubuntu-latest, windows-latest ]
@ -144,7 +144,7 @@ jobs:
macos_release:
name: Release MacOS universal
runs-on: ubuntu-latest
timeout-minutes: 35
timeout-minutes: ${{ fromJSON(vars.JOB_TIMEOUT) }}
steps:
- uses: actions/checkout@v3

View File

@ -13,7 +13,7 @@
<PackageVersion Include="CommandLineParser" Version="2.9.1" />
<PackageVersion Include="Concentus" Version="1.1.7" />
<PackageVersion Include="DiscordRichPresence" Version="1.1.3.18" />
<PackageVersion Include="DynamicData" Version="7.13.5" />
<PackageVersion Include="DynamicData" Version="7.13.8" />
<PackageVersion Include="FluentAvaloniaUI" Version="1.4.5" />
<PackageVersion Include="GtkSharp.Dependencies" Version="1.1.1" />
<PackageVersion Include="GtkSharp.Dependencies.osx" Version="0.0.5" />

View File

@ -25,14 +25,14 @@ error_handler() {
exit 1
}
trap 'error_handler ${LINENO}' ERR
# Wait for Ryujinx to exit
# NOTE: in case no fds are open, lsof could be returning with a process still living.
# We wait 1s and assume the process stopped after that
lsof -p $APP_PID +r 1 &>/dev/null
sleep 1
trap 'error_handler ${LINENO}' ERR
# Now replace and reopen.
rm -rf "$INSTALL_DIRECTORY"
mv "$NEW_APP_DIRECTORY" "$INSTALL_DIRECTORY"

View File

@ -31,7 +31,6 @@ namespace Ryujinx.Audio.Renderer.Server
private AudioRendererRenderingDevice _renderingDevice;
private AudioRendererExecutionMode _executionMode;
private IWritableEvent _systemEvent;
private ManualResetEvent _terminationEvent;
private MemoryPoolState _dspMemoryPoolState;
private VoiceContext _voiceContext;
private MixContext _mixContext;
@ -83,7 +82,6 @@ namespace Ryujinx.Audio.Renderer.Server
public AudioRenderSystem(AudioRendererManager manager, IWritableEvent systemEvent)
{
_manager = manager;
_terminationEvent = new ManualResetEvent(false);
_dspMemoryPoolState = MemoryPoolState.Create(MemoryPoolState.LocationType.Dsp);
_voiceContext = new VoiceContext();
_mixContext = new MixContext();
@ -387,11 +385,6 @@ namespace Ryujinx.Audio.Renderer.Server
_isActive = false;
}
if (_executionMode == AudioRendererExecutionMode.Auto)
{
_terminationEvent.WaitOne();
}
Logger.Info?.Print(LogClass.AudioRenderer, $"Stopped renderer id {_sessionId}");
}
@ -668,8 +661,6 @@ namespace Ryujinx.Audio.Renderer.Server
{
if (_isActive)
{
_terminationEvent.Reset();
if (!_manager.Processor.HasRemainingCommands(_sessionId))
{
GenerateCommandList(out CommandList commands);
@ -686,10 +677,6 @@ namespace Ryujinx.Audio.Renderer.Server
_isDspRunningBehind = true;
}
}
else
{
_terminationEvent.Set();
}
}
}
@ -857,7 +844,6 @@ namespace Ryujinx.Audio.Renderer.Server
}
_manager.Unregister(this);
_terminationEvent.Dispose();
_workBufferMemoryPin.Dispose();
if (MemoryManager is IRefCounted rc)

View File

@ -270,7 +270,7 @@ namespace Ryujinx.Ava
string directory = AppDataManager.Mode switch
{
AppDataManager.LaunchMode.Portable => Path.Combine(AppDataManager.BaseDirPath, "screenshots"),
AppDataManager.LaunchMode.Portable or AppDataManager.LaunchMode.Custom => Path.Combine(AppDataManager.BaseDirPath, "screenshots"),
_ => Path.Combine(Environment.GetFolderPath(Environment.SpecialFolder.MyPictures), "Ryujinx")
};

View File

@ -216,26 +216,17 @@
"ControllerSettingsDPadDown": "Down",
"ControllerSettingsDPadLeft": "Left",
"ControllerSettingsDPadRight": "Right",
"ControllerSettingsStickButton": "Button",
"ControllerSettingsStickUp": "Up",
"ControllerSettingsStickDown": "Down",
"ControllerSettingsStickLeft": "Left",
"ControllerSettingsStickRight": "Right",
"ControllerSettingsStickStick": "Stick",
"ControllerSettingsStickInvertXAxis": "Invert Stick X",
"ControllerSettingsStickInvertYAxis": "Invert Stick Y",
"ControllerSettingsStickDeadzone": "Deadzone:",
"ControllerSettingsLStick": "Left Stick",
"ControllerSettingsLStickButton": "Button",
"ControllerSettingsLStickUp": "Up",
"ControllerSettingsLStickDown": "Down",
"ControllerSettingsLStickLeft": "Left",
"ControllerSettingsLStickRight": "Right",
"ControllerSettingsLStickStick": "Stick",
"ControllerSettingsLStickInvertXAxis": "Invert Stick X",
"ControllerSettingsLStickInvertYAxis": "Invert Stick Y",
"ControllerSettingsLStickDeadzone": "Deadzone:",
"ControllerSettingsRStick": "Right Stick",
"ControllerSettingsRStickButton": "Button",
"ControllerSettingsRStickUp": "Up",
"ControllerSettingsRStickDown": "Down",
"ControllerSettingsRStickLeft": "Left",
"ControllerSettingsRStickRight": "Right",
"ControllerSettingsRStickStick": "Stick",
"ControllerSettingsRStickInvertXAxis": "Invert Stick X",
"ControllerSettingsRStickInvertYAxis": "Invert Stick Y",
"ControllerSettingsRStickDeadzone": "Deadzone:",
"ControllerSettingsTriggersLeft": "Triggers Left",
"ControllerSettingsTriggersRight": "Triggers Right",
"ControllerSettingsTriggersButtonsLeft": "Trigger Buttons Left",
@ -647,4 +638,4 @@
"NetworkInterfaceTooltip": "The network interface used for LAN features",
"NetworkInterfaceDefault": "Default",
"PackagingShaders": "Packaging Shaders"
}
}

View File

@ -193,7 +193,7 @@ namespace Ryujinx.Ava.Common
if (nca.Header.ContentType == NcaContentType.Program)
{
int dataIndex = Nca.GetSectionIndexFromType(NcaSectionType.Data, NcaContentType.Program);
if (nca.Header.GetFsHeader(dataIndex).IsPatchSection())
if (nca.SectionExists(NcaSectionType.Data) && nca.Header.GetFsHeader(dataIndex).IsPatchSection())
{
patchNca = nca;
}

View File

@ -3,21 +3,20 @@ using Avalonia.Controls;
using Avalonia.Controls.Notifications;
using Avalonia.Threading;
using Ryujinx.Ava.Common.Locale;
using Ryujinx.Common;
using System;
using System.Collections.Concurrent;
using System.Threading;
using System.Threading.Tasks;
namespace Ryujinx.Ava.UI.Helpers
{
public static class NotificationHelper
{
private const int MaxNotifications = 4;
private const int MaxNotifications = 4;
private const int NotificationDelayInMs = 5000;
private static WindowNotificationManager _notificationManager;
private static readonly ManualResetEvent _templateAppliedEvent = new(false);
private static readonly BlockingCollection<Notification> _notifications = new();
public static void SetNotificationManager(Window host)
@ -29,25 +28,31 @@ namespace Ryujinx.Ava.UI.Helpers
Margin = new Thickness(0, 0, 15, 40)
};
var maybeAsyncWorkQueue = new Lazy<AsyncWorkQueue<Notification>>(
() => new AsyncWorkQueue<Notification>(notification =>
{
Dispatcher.UIThread.Post(() =>
{
_notificationManager.Show(notification);
});
},
"UI.NotificationThread",
_notifications),
LazyThreadSafetyMode.ExecutionAndPublication);
_notificationManager.TemplateApplied += (sender, args) =>
{
_templateAppliedEvent.Set();
// NOTE: Force creation of the AsyncWorkQueue.
_ = maybeAsyncWorkQueue.Value;
};
Task.Run(async () =>
host.Closing += (sender, args) =>
{
_templateAppliedEvent.WaitOne();
foreach (var notification in _notifications.GetConsumingEnumerable())
if (maybeAsyncWorkQueue.IsValueCreated)
{
Dispatcher.UIThread.Post(() =>
{
_notificationManager.Show(notification);
});
await Task.Delay(NotificationDelayInMs / MaxNotifications);
maybeAsyncWorkQueue.Value.Dispose();
}
});
};
}
public static void Show(string title, string text, NotificationType type, bool waitingExit = false, Action onClick = null, Action onClose = null)

View File

@ -7,6 +7,7 @@ using Ryujinx.Ava.Common.Locale;
using Ryujinx.Ava.Input;
using Ryujinx.Ava.UI.Helpers;
using Ryujinx.Ava.UI.Models;
using Ryujinx.Ava.UI.Views.Input;
using Ryujinx.Ava.UI.Windows;
using Ryujinx.Common;
using Ryujinx.Common.Configuration;
@ -30,7 +31,7 @@ using Key = Ryujinx.Common.Configuration.Hid.Key;
namespace Ryujinx.Ava.UI.ViewModels
{
public class ControllerSettingsViewModel : BaseModel, IDisposable
public class ControllerInputViewModel : BaseModel, IDisposable
{
private const string Disabled = "disabled";
private const string ProControllerResource = "Ryujinx.Ui.Common/Resources/Controller_ProCon.svg";
@ -231,7 +232,7 @@ namespace Ryujinx.Ava.UI.ViewModels
public InputConfig Config { get; set; }
public ControllerSettingsViewModel(UserControl owner) : this()
public ControllerInputViewModel(UserControl owner) : this()
{
_owner = owner;
@ -258,7 +259,7 @@ namespace Ryujinx.Ava.UI.ViewModels
}
}
public ControllerSettingsViewModel()
public ControllerInputViewModel()
{
PlayerIndexes = new ObservableCollection<PlayerModel>();
Controllers = new ObservableCollection<ControllerModel>();
@ -328,12 +329,12 @@ namespace Ryujinx.Ava.UI.ViewModels
public async void ShowMotionConfig()
{
await MotionSettingsWindow.Show(this);
await MotionInputView.Show(this);
}
public async void ShowRumbleConfig()
{
await RumbleSettingsWindow.Show(this);
await RumbleInputView.Show(this);
}
private void LoadInputDriver()

View File

@ -0,0 +1,93 @@
namespace Ryujinx.Ava.UI.ViewModels
{
public class MotionInputViewModel : BaseModel
{
private int _slot;
public int Slot
{
get => _slot;
set
{
_slot = value;
OnPropertyChanged();
}
}
private int _altSlot;
public int AltSlot
{
get => _altSlot;
set
{
_altSlot = value;
OnPropertyChanged();
}
}
private string _dsuServerHost;
public string DsuServerHost
{
get => _dsuServerHost;
set
{
_dsuServerHost = value;
OnPropertyChanged();
}
}
private int _dsuServerPort;
public int DsuServerPort
{
get => _dsuServerPort;
set
{
_dsuServerPort = value;
OnPropertyChanged();
}
}
private bool _mirrorInput;
public bool MirrorInput
{
get => _mirrorInput;
set
{
_mirrorInput = value;
OnPropertyChanged();
}
}
private int _sensitivity;
public int Sensitivity
{
get => _sensitivity;
set
{
_sensitivity = value;
OnPropertyChanged();
}
}
private double _gryoDeadzone;
public double GyroDeadzone
{
get => _gryoDeadzone;
set
{
_gryoDeadzone = value;
OnPropertyChanged();
}
}
private bool _enableCemuHookMotion;
public bool EnableCemuHookMotion
{
get => _enableCemuHookMotion;
set
{
_enableCemuHookMotion = value;
OnPropertyChanged();
}
}
}
}

View File

@ -0,0 +1,27 @@
namespace Ryujinx.Ava.UI.ViewModels
{
public class RumbleInputViewModel : BaseModel
{
private float _strongRumble;
public float StrongRumble
{
get => _strongRumble;
set
{
_strongRumble = value;
OnPropertyChanged();
}
}
private float _weakRumble;
public float WeakRumble
{
get => _weakRumble;
set
{
_weakRumble = value;
OnPropertyChanged();
}
}
}
}

View File

@ -311,7 +311,7 @@ namespace Ryujinx.Ava.UI.ViewModels
{
_gpuIds = new List<string>();
List<string> names = new();
var devices = VulkanRenderer.GetPhysicalDevices(Vk.GetApi());
var devices = VulkanRenderer.GetPhysicalDevices();
if (devices.Length == 0)
{

View File

@ -4,7 +4,6 @@ using Avalonia.Input;
using Avalonia.Interactivity;
using Avalonia.LogicalTree;
using Ryujinx.Ava.Common.Locale;
using Ryujinx.Ava.UI.Controls;
using Ryujinx.Ava.UI.Helpers;
using Ryujinx.Ava.UI.Models;
using Ryujinx.Ava.UI.ViewModels;
@ -13,18 +12,18 @@ using Ryujinx.Input;
using Ryujinx.Input.Assigner;
using System;
namespace Ryujinx.Ava.UI.Windows
namespace Ryujinx.Ava.UI.Views.Input
{
public partial class ControllerSettingsWindow : UserControl
public partial class ControllerInputView : UserControl
{
private bool _dialogOpen;
private ButtonKeyAssigner _currentAssigner;
internal ControllerSettingsViewModel ViewModel { get; set; }
internal ControllerInputViewModel ViewModel { get; set; }
public ControllerSettingsWindow()
public ControllerInputView()
{
DataContext = ViewModel = new ControllerSettingsViewModel(this);
DataContext = ViewModel = new ControllerInputViewModel(this);
InitializeComponent();

View File

@ -1,12 +1,15 @@
<UserControl
<UserControl
xmlns="https://github.com/avaloniaui"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
xmlns:d="http://schemas.microsoft.com/expression/blend/2008"
xmlns:mc="http://schemas.openxmlformats.org/markup-compatibility/2006"
xmlns:ui="clr-namespace:FluentAvalonia.UI.Controls;assembly=FluentAvalonia"
xmlns:locale="clr-namespace:Ryujinx.Ava.Common.Locale"
xmlns:viewModels="clr-namespace:Ryujinx.Ava.UI.ViewModels"
mc:Ignorable="d"
x:Class="Ryujinx.Ava.UI.Windows.MotionSettingsWindow"
x:Class="Ryujinx.Ava.UI.Views.Input.MotionInputView"
x:CompileBindings="True"
x:DataType="viewModels:MotionInputViewModel"
Focusable="True">
<Grid Margin="10">
<Grid.RowDefinitions>
@ -14,7 +17,9 @@
<RowDefinition />
</Grid.RowDefinitions>
<StackPanel Orientation="Vertical">
<StackPanel Orientation="Horizontal" HorizontalAlignment="Center">
<StackPanel
Orientation="Horizontal"
HorizontalAlignment="Center">
<TextBlock
Margin="0"
HorizontalAlignment="Center"
@ -28,11 +33,14 @@
Maximum="100"
Minimum="0"
Value="{Binding Sensitivity, Mode=TwoWay}" />
<TextBlock HorizontalAlignment="Center"
Margin="5, 0"
Text="{Binding Sensitivity, StringFormat=\{0:0\}%}" />
<TextBlock
HorizontalAlignment="Center"
Margin="5, 0"
Text="{Binding Sensitivity, StringFormat=\{0:0\}%}" />
</StackPanel>
<StackPanel Orientation="Horizontal" HorizontalAlignment="Center">
<StackPanel
Orientation="Horizontal"
HorizontalAlignment="Center">
<TextBlock
Margin="0"
HorizontalAlignment="Center"
@ -51,17 +59,25 @@
Margin="5, 0"
Text="{Binding GyroDeadzone, StringFormat=\{0:0.00\}}" />
</StackPanel>
<Separator Height="1" Margin="0,5" />
<CheckBox Margin="5" IsChecked="{Binding EnableCemuHookMotion}">
<TextBlock Margin="0,3,0,0" VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionUseCemuhookCompatibleMotion}" />
<Separator
Height="1"
Margin="0,5" />
<CheckBox
Margin="5"
IsChecked="{Binding EnableCemuHookMotion}">
<TextBlock
Margin="0,3,0,0"
VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionUseCemuhookCompatibleMotion}" />
</CheckBox>
</StackPanel>
<Border Grid.Row="1"
Padding="20,5"
BorderBrush="{DynamicResource ThemeControlBorderColor}"
BorderThickness="1"
HorizontalAlignment="Stretch">
<Border
Grid.Row="1"
Padding="20,5"
BorderBrush="{DynamicResource ThemeControlBorderColor}"
BorderThickness="1"
CornerRadius="5"
HorizontalAlignment="Stretch">
<Grid VerticalAlignment="Top">
<Grid.RowDefinitions>
<RowDefinition Height="Auto" />
@ -109,30 +125,42 @@
<ColumnDefinition />
<ColumnDefinition />
</Grid.ColumnDefinitions>
<TextBlock Margin="0,10,0,0" VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionControllerSlot}" />
<ui:NumberBox Grid.Row="0" Grid.Column="1"
Name="CemuHookSlotUpDown"
SmallChange="1"
LargeChange="1"
Maximum="4"
Minimum="0"
Value="{Binding Slot}" />
<TextBlock Margin="0,10,0,0" Grid.Row="1" Grid.Column="0" VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionRightJoyConSlot}" />
<ui:NumberBox Grid.Row="1" Grid.Column="1"
Name="CemuHookRightJoyConSlotUpDown"
SmallChange="1"
LargeChange="1"
Maximum="4"
Minimum="0"
Value="{Binding AltSlot}" />
<TextBlock
Margin="0,10,0,0"
VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionControllerSlot}" />
<ui:NumberBox
Grid.Row="0"
Grid.Column="1"
Name="CemuHookSlotUpDown"
SmallChange="1"
LargeChange="1"
Maximum="4"
Minimum="0"
Value="{Binding Slot}" />
<TextBlock
Margin="0,10,0,0"
Grid.Row="1"
Grid.Column="0"
VerticalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionRightJoyConSlot}" />
<ui:NumberBox
Grid.Row="1"
Grid.Column="1"
Name="CemuHookRightJoyConSlotUpDown"
SmallChange="1"
LargeChange="1"
Maximum="4"
Minimum="0"
Value="{Binding AltSlot}" />
</Grid>
</StackPanel>
<CheckBox HorizontalAlignment="Center"
IsChecked="{Binding MirrorInput, Mode=TwoWay}">
<TextBlock HorizontalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionMirrorInput}" />
<CheckBox
HorizontalAlignment="Center"
IsChecked="{Binding MirrorInput, Mode=TwoWay}">
<TextBlock
HorizontalAlignment="Center"
Text="{locale:Locale ControllerSettingsMotionMirrorInput}" />
</CheckBox>
</StackPanel>
</Grid>

View File

@ -6,44 +6,42 @@ using Ryujinx.Ava.UI.ViewModels;
using Ryujinx.Common.Configuration.Hid.Controller;
using System.Threading.Tasks;
namespace Ryujinx.Ava.UI.Windows
namespace Ryujinx.Ava.UI.Views.Input
{
public partial class MotionSettingsWindow : UserControl
public partial class MotionInputView : UserControl
{
private readonly InputConfiguration<GamepadInputId, StickInputId> _viewmodel;
private MotionInputViewModel _viewModel;
public MotionSettingsWindow()
public MotionInputView()
{
InitializeComponent();
DataContext = _viewmodel;
}
public MotionSettingsWindow(ControllerSettingsViewModel viewmodel)
public MotionInputView(ControllerInputViewModel viewModel)
{
var config = viewmodel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
var config = viewModel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
_viewmodel = new InputConfiguration<GamepadInputId, StickInputId>()
_viewModel = new MotionInputViewModel
{
Slot = config.Slot,
AltSlot = config.AltSlot,
DsuServerHost = config.DsuServerHost,
DsuServerPort = config.DsuServerPort,
MirrorInput = config.MirrorInput,
EnableMotion = config.EnableMotion,
Sensitivity = config.Sensitivity,
GyroDeadzone = config.GyroDeadzone,
EnableCemuHookMotion = config.EnableCemuHookMotion
};
InitializeComponent();
DataContext = _viewmodel;
DataContext = _viewModel;
}
public static async Task Show(ControllerSettingsViewModel viewmodel)
public static async Task Show(ControllerInputViewModel viewModel)
{
MotionSettingsWindow content = new MotionSettingsWindow(viewmodel);
MotionInputView content = new(viewModel);
ContentDialog contentDialog = new ContentDialog
ContentDialog contentDialog = new()
{
Title = LocaleManager.Instance[LocaleKeys.ControllerMotionTitle],
PrimaryButtonText = LocaleManager.Instance[LocaleKeys.ControllerSettingsSave],
@ -53,16 +51,15 @@ namespace Ryujinx.Ava.UI.Windows
};
contentDialog.PrimaryButtonClick += (sender, args) =>
{
var config = viewmodel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
config.Slot = content._viewmodel.Slot;
config.EnableMotion = content._viewmodel.EnableMotion;
config.Sensitivity = content._viewmodel.Sensitivity;
config.GyroDeadzone = content._viewmodel.GyroDeadzone;
config.AltSlot = content._viewmodel.AltSlot;
config.DsuServerHost = content._viewmodel.DsuServerHost;
config.DsuServerPort = content._viewmodel.DsuServerPort;
config.EnableCemuHookMotion = content._viewmodel.EnableCemuHookMotion;
config.MirrorInput = content._viewmodel.MirrorInput;
var config = viewModel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
config.Slot = content._viewModel.Slot;
config.Sensitivity = content._viewModel.Sensitivity;
config.GyroDeadzone = content._viewModel.GyroDeadzone;
config.AltSlot = content._viewModel.AltSlot;
config.DsuServerHost = content._viewModel.DsuServerHost;
config.DsuServerPort = content._viewModel.DsuServerPort;
config.EnableCemuHookMotion = content._viewModel.EnableCemuHookMotion;
config.MirrorInput = content._viewModel.MirrorInput;
};
await contentDialog.ShowAsync();

View File

@ -1,11 +1,14 @@
<UserControl
<UserControl
xmlns="https://github.com/avaloniaui"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
xmlns:d="http://schemas.microsoft.com/expression/blend/2008"
xmlns:mc="http://schemas.openxmlformats.org/markup-compatibility/2006"
xmlns:locale="clr-namespace:Ryujinx.Ava.Common.Locale"
xmlns:viewModels="clr-namespace:Ryujinx.Ava.UI.ViewModels"
mc:Ignorable="d"
x:Class="Ryujinx.Ava.UI.Windows.RumbleSettingsWindow"
x:Class="Ryujinx.Ava.UI.Views.Input.RumbleInputView"
x:DataType="viewModels:RumbleInputViewModel"
x:CompileBindings="True"
Focusable="True">
<Grid Margin="10">
<Grid.RowDefinitions>

View File

@ -6,36 +6,37 @@ using Ryujinx.Ava.UI.ViewModels;
using Ryujinx.Common.Configuration.Hid.Controller;
using System.Threading.Tasks;
namespace Ryujinx.Ava.UI.Windows
namespace Ryujinx.Ava.UI.Views.Input
{
public partial class RumbleSettingsWindow : UserControl
public partial class RumbleInputView : UserControl
{
private readonly InputConfiguration<GamepadInputId, StickInputId> _viewmodel;
private RumbleInputViewModel _viewModel;
public RumbleSettingsWindow()
public RumbleInputView()
{
InitializeComponent();
DataContext = _viewmodel;
}
public RumbleSettingsWindow(ControllerSettingsViewModel viewmodel)
public RumbleInputView(ControllerInputViewModel viewModel)
{
var config = viewmodel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
var config = viewModel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
_viewmodel = new InputConfiguration<GamepadInputId, StickInputId>()
_viewModel = new RumbleInputViewModel
{
StrongRumble = config.StrongRumble, WeakRumble = config.WeakRumble
StrongRumble = config.StrongRumble,
WeakRumble = config.WeakRumble
};
InitializeComponent();
DataContext = _viewmodel;
DataContext = _viewModel;
}
public static async Task Show(ControllerSettingsViewModel viewmodel)
public static async Task Show(ControllerInputViewModel viewModel)
{
RumbleSettingsWindow content = new RumbleSettingsWindow(viewmodel);
RumbleInputView content = new(viewModel);
ContentDialog contentDialog = new ContentDialog
ContentDialog contentDialog = new()
{
Title = LocaleManager.Instance[LocaleKeys.ControllerRumbleTitle],
PrimaryButtonText = LocaleManager.Instance[LocaleKeys.ControllerSettingsSave],
@ -43,14 +44,14 @@ namespace Ryujinx.Ava.UI.Windows
CloseButtonText = LocaleManager.Instance[LocaleKeys.ControllerSettingsClose],
Content = content,
};
contentDialog.PrimaryButtonClick += (sender, args) =>
{
var config = viewmodel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
config.StrongRumble = content._viewmodel.StrongRumble;
config.WeakRumble = content._viewmodel.WeakRumble;
var config = viewModel.Configuration as InputConfiguration<GamepadInputId, StickInputId>;
config.StrongRumble = content._viewModel.StrongRumble;
config.WeakRumble = content._viewModel.WeakRumble;
};
await contentDialog.ShowAsync();
}
}

View File

@ -1,11 +1,11 @@
<UserControl
<UserControl
x:Class="Ryujinx.Ava.UI.Views.Settings.SettingsInputView"
xmlns="https://github.com/avaloniaui"
xmlns:x="http://schemas.microsoft.com/winfx/2006/xaml"
xmlns:d="http://schemas.microsoft.com/expression/blend/2008"
xmlns:mc="http://schemas.openxmlformats.org/markup-compatibility/2006"
xmlns:locale="clr-namespace:Ryujinx.Ava.Common.Locale"
xmlns:window="clr-namespace:Ryujinx.Ava.UI.Windows"
xmlns:views="clr-namespace:Ryujinx.Ava.UI.Views.Input"
xmlns:viewModels="clr-namespace:Ryujinx.Ava.UI.ViewModels"
mc:Ignorable="d"
x:CompileBindings="True"
@ -13,34 +13,56 @@
<Design.DataContext>
<viewModels:SettingsViewModel />
</Design.DataContext>
<ScrollViewer
<ScrollViewer
Name="InputPage"
HorizontalAlignment="Stretch"
VerticalAlignment="Stretch"
HorizontalScrollBarVisibility="Disabled"
VerticalScrollBarVisibility="Auto">
<Border Classes="settings">
<StackPanel Margin="4" Orientation="Vertical">
<StackPanel Orientation="Horizontal">
<CheckBox Margin="5,0"
ToolTip.Tip="{locale:Locale DockModeToggleTooltip}"
IsChecked="{Binding EnableDockedMode}">
<TextBlock VerticalAlignment="Center"
Text="{locale:Locale SettingsTabInputEnableDockedMode}" />
</CheckBox>
<CheckBox Margin="5,0"
ToolTip.Tip="{locale:Locale DirectKeyboardTooltip}"
IsChecked="{Binding EnableKeyboard}">
<TextBlock Text="{locale:Locale SettingsTabInputDirectKeyboardAccess}" />
</CheckBox>
<CheckBox Margin="5,0"
ToolTip.Tip="{locale:Locale DirectMouseTooltip}"
IsChecked="{Binding EnableMouse}">
<TextBlock Text="{locale:Locale SettingsTabInputDirectMouseAccess}" />
</CheckBox>
</StackPanel>
<window:ControllerSettingsWindow Name="ControllerSettings" Margin="0" MinHeight="600" />
</StackPanel>
<Panel
Margin="10">
<Grid>
<Grid.RowDefinitions>
<RowDefinition Height="Auto"/>
<RowDefinition Height="*" />
<RowDefinition Height="Auto" />
</Grid.RowDefinitions>
<views:ControllerInputView
Grid.Row="0"
Name="ControllerSettings" />
<StackPanel
Orientation="Vertical"
Grid.Row="2">
<Separator
Margin="0 10"
Height="1" />
<StackPanel
Orientation="Horizontal"
Spacing="10">
<CheckBox
ToolTip.Tip="{locale:Locale DockModeToggleTooltip}"
MinWidth="0"
IsChecked="{Binding EnableDockedMode}">
<TextBlock
Text="{locale:Locale SettingsTabInputEnableDockedMode}" />
</CheckBox>
<CheckBox
ToolTip.Tip="{locale:Locale DirectKeyboardTooltip}"
IsChecked="{Binding EnableKeyboard}">
<TextBlock
Text="{locale:Locale SettingsTabInputDirectKeyboardAccess}" />
</CheckBox>
<CheckBox
ToolTip.Tip="{locale:Locale DirectMouseTooltip}"
IsChecked="{Binding EnableMouse}">
<TextBlock
Text="{locale:Locale SettingsTabInputDirectMouseAccess}" />
</CheckBox>
</StackPanel>
</StackPanel>
</Grid>
</Panel>
</Border>
</ScrollViewer>
</UserControl>

View File

@ -22,9 +22,11 @@ namespace Ryujinx.Common
_cts = new CancellationTokenSource();
_queue = collection;
_workerAction = callback;
_workerThread = new Thread(DoWork) { Name = name };
_workerThread.IsBackground = true;
_workerThread = new Thread(DoWork)
{
Name = name,
IsBackground = true
};
_workerThread.Start();
}

View File

@ -0,0 +1,179 @@
using System;
using System.Collections.ObjectModel;
namespace Ryujinx.Graphics.GAL
{
public enum ResourceType : byte
{
UniformBuffer,
StorageBuffer,
Texture,
Sampler,
TextureAndSampler,
Image,
BufferTexture,
BufferImage
}
public enum ResourceAccess : byte
{
None = 0,
Read = 1,
Write = 2,
ReadWrite = Read | Write
}
[Flags]
public enum ResourceStages : byte
{
None = 0,
Compute = 1 << 0,
Vertex = 1 << 1,
TessellationControl = 1 << 2,
TessellationEvaluation = 1 << 3,
Geometry = 1 << 4,
Fragment = 1 << 5
}
public readonly struct ResourceDescriptor : IEquatable<ResourceDescriptor>
{
public int Binding { get; }
public int Count { get; }
public ResourceType Type { get; }
public ResourceStages Stages { get; }
public ResourceDescriptor(int binding, int count, ResourceType type, ResourceStages stages)
{
Binding = binding;
Count = count;
Type = type;
Stages = stages;
}
public override int GetHashCode()
{
return HashCode.Combine(Binding, Count, Type, Stages);
}
public override bool Equals(object obj)
{
return obj is ResourceDescriptor other && Equals(other);
}
public bool Equals(ResourceDescriptor other)
{
return Binding == other.Binding && Count == other.Count && Type == other.Type && Stages == other.Stages;
}
}
public readonly struct ResourceUsage : IEquatable<ResourceUsage>
{
public int Binding { get; }
public ResourceType Type { get; }
public ResourceStages Stages { get; }
public ResourceAccess Access { get; }
public ResourceUsage(int binding, ResourceType type, ResourceStages stages, ResourceAccess access)
{
Binding = binding;
Type = type;
Stages = stages;
Access = access;
}
public override int GetHashCode()
{
return HashCode.Combine(Binding, Type, Stages, Access);
}
public override bool Equals(object obj)
{
return obj is ResourceUsage other && Equals(other);
}
public bool Equals(ResourceUsage other)
{
return Binding == other.Binding && Type == other.Type && Stages == other.Stages && Access == other.Access;
}
}
public readonly struct ResourceDescriptorCollection
{
public ReadOnlyCollection<ResourceDescriptor> Descriptors { get; }
public ResourceDescriptorCollection(ReadOnlyCollection<ResourceDescriptor> descriptors)
{
Descriptors = descriptors;
}
public override int GetHashCode()
{
HashCode hasher = new HashCode();
if (Descriptors != null)
{
foreach (var descriptor in Descriptors)
{
hasher.Add(descriptor);
}
}
return hasher.ToHashCode();
}
public override bool Equals(object obj)
{
return obj is ResourceDescriptorCollection other && Equals(other);
}
public bool Equals(ResourceDescriptorCollection other)
{
if ((Descriptors == null) != (other.Descriptors == null))
{
return false;
}
if (Descriptors != null)
{
if (Descriptors.Count != other.Descriptors.Count)
{
return false;
}
for (int index = 0; index < Descriptors.Count; index++)
{
if (!Descriptors[index].Equals(other.Descriptors[index]))
{
return false;
}
}
}
return true;
}
}
public readonly struct ResourceUsageCollection
{
public ReadOnlyCollection<ResourceUsage> Usages { get; }
public ResourceUsageCollection(ReadOnlyCollection<ResourceUsage> usages)
{
Usages = usages;
}
}
public readonly struct ResourceLayout
{
public ReadOnlyCollection<ResourceDescriptorCollection> Sets { get; }
public ReadOnlyCollection<ResourceUsageCollection> SetUsages { get; }
public ResourceLayout(
ReadOnlyCollection<ResourceDescriptorCollection> sets,
ReadOnlyCollection<ResourceUsageCollection> setUsages)
{
Sets = sets;
SetUsages = setUsages;
}
}
}

View File

@ -1,24 +0,0 @@
using System.Collections.Generic;
namespace Ryujinx.Graphics.GAL
{
public readonly struct ShaderBindings
{
public IReadOnlyCollection<int> UniformBufferBindings { get; }
public IReadOnlyCollection<int> StorageBufferBindings { get; }
public IReadOnlyCollection<int> TextureBindings { get; }
public IReadOnlyCollection<int> ImageBindings { get; }
public ShaderBindings(
IReadOnlyCollection<int> uniformBufferBindings,
IReadOnlyCollection<int> storageBufferBindings,
IReadOnlyCollection<int> textureBindings,
IReadOnlyCollection<int> imageBindings)
{
UniformBufferBindings = uniformBufferBindings;
StorageBufferBindings = storageBufferBindings;
TextureBindings = textureBindings;
ImageBindings = imageBindings;
}
}
}

View File

@ -3,19 +3,22 @@ namespace Ryujinx.Graphics.GAL
public struct ShaderInfo
{
public int FragmentOutputMap { get; }
public ResourceLayout ResourceLayout { get; }
public ProgramPipelineState? State { get; }
public bool FromCache { get; set; }
public ShaderInfo(int fragmentOutputMap, ProgramPipelineState state, bool fromCache = false)
public ShaderInfo(int fragmentOutputMap, ResourceLayout resourceLayout, ProgramPipelineState state, bool fromCache = false)
{
FragmentOutputMap = fragmentOutputMap;
ResourceLayout = resourceLayout;
State = state;
FromCache = fromCache;
}
public ShaderInfo(int fragmentOutputMap, bool fromCache = false)
public ShaderInfo(int fragmentOutputMap, ResourceLayout resourceLayout, bool fromCache = false)
{
FragmentOutputMap = fragmentOutputMap;
ResourceLayout = resourceLayout;
State = null;
FromCache = fromCache;
}

View File

@ -7,24 +7,22 @@ namespace Ryujinx.Graphics.GAL
{
public string Code { get; }
public byte[] BinaryCode { get; }
public ShaderBindings Bindings { get; }
public ShaderStage Stage { get; }
public TargetLanguage Language { get; }
public ShaderSource(string code, byte[] binaryCode, ShaderBindings bindings, ShaderStage stage, TargetLanguage language)
public ShaderSource(string code, byte[] binaryCode, ShaderStage stage, TargetLanguage language)
{
Code = code;
BinaryCode = binaryCode;
Bindings = bindings;
Stage = stage;
Language = language;
}
public ShaderSource(string code, ShaderBindings bindings, ShaderStage stage, TargetLanguage language) : this(code, null, bindings, stage, language)
public ShaderSource(string code, ShaderStage stage, TargetLanguage language) : this(code, null, stage, language)
{
}
public ShaderSource(byte[] binaryCode, ShaderBindings bindings, ShaderStage stage, TargetLanguage language) : this(null, binaryCode, bindings, stage, language)
public ShaderSource(byte[] binaryCode, ShaderStage stage, TargetLanguage language) : this(null, binaryCode, stage, language)
{
}
}

View File

@ -40,22 +40,6 @@ namespace Ryujinx.Graphics.Gpu
/// </summary>
public const int TotalTransformFeedbackBuffers = 4;
/// <summary>
/// Maximum number of textures on a single shader stage.
/// </summary>
/// <remarks>
/// The maximum number of textures is API limited, the hardware supports an unlimited amount.
/// </remarks>
public const int TotalTextures = 32;
/// <summary>
/// Maximum number of images on a single shader stage.
/// </summary>
/// <remarks>
/// The maximum number of images is API limited, the hardware supports an unlimited amount.
/// </remarks>
public const int TotalImages = 8;
/// <summary>
/// Maximum number of render target color buffers.
/// </summary>
@ -100,5 +84,15 @@ namespace Ryujinx.Graphics.Gpu
/// Expected byte alignment for storage buffers
/// </summary>
public const int StorageAlignment = 16;
/// <summary>
/// Number of the uniform buffer reserved by the driver to store the storage buffer base addresses.
/// </summary>
public const int DriverReservedUniformBuffer = 0;
/// <summary>
/// Maximum size that an storage buffer is assumed to have when the correct size is unknown.
/// </summary>
public const ulong MaxUnknownStorageSize = 0x100000;
}
}

View File

@ -162,7 +162,19 @@ namespace Ryujinx.Graphics.Gpu.Engine.Compute
SbDescriptor sbDescriptor = _channel.MemoryManager.Physical.Read<SbDescriptor>(sbDescAddress);
_channel.BufferManager.SetComputeStorageBuffer(sb.Slot, sbDescriptor.PackAddress(), (uint)sbDescriptor.Size, sb.Flags);
uint size;
if (sb.SbCbSlot == Constants.DriverReservedUniformBuffer)
{
// Only trust the SbDescriptor size if it comes from slot 0.
size = (uint)sbDescriptor.Size;
}
else
{
// TODO: Use full mapped size and somehow speed up buffer sync.
size = (uint)_channel.MemoryManager.GetMappedSize(sbDescriptor.PackAddress(), Constants.MaxUnknownStorageSize);
}
_channel.BufferManager.SetComputeStorageBuffer(sb.Slot, sbDescriptor.PackAddress(), size, sb.Flags);
}
if ((_channel.BufferManager.HasUnalignedStorageBuffers) != hasUnaligned)

View File

@ -356,7 +356,19 @@ namespace Ryujinx.Graphics.Gpu.Engine.Threed
SbDescriptor sbDescriptor = _channel.MemoryManager.Physical.Read<SbDescriptor>(sbDescAddress);
_channel.BufferManager.SetGraphicsStorageBuffer(stage, sb.Slot, sbDescriptor.PackAddress(), (uint)sbDescriptor.Size, sb.Flags);
uint size;
if (sb.SbCbSlot == Constants.DriverReservedUniformBuffer)
{
// Only trust the SbDescriptor size if it comes from slot 0.
size = (uint)sbDescriptor.Size;
}
else
{
// TODO: Use full mapped size and somehow speed up buffer sync.
size = (uint)_channel.MemoryManager.GetMappedSize(sbDescriptor.PackAddress(), Constants.MaxUnknownStorageSize);
}
_channel.BufferManager.SetGraphicsStorageBuffer(stage, sb.Slot, sbDescriptor.PackAddress(), size, sb.Flags);
}
}
}

View File

@ -637,6 +637,33 @@ namespace Ryujinx.Graphics.Gpu.Memory
return UnpackPaFromPte(pte) + (va & PageMask);
}
/// <summary>
/// Translates a GPU virtual address and returns the number of bytes that are mapped after it.
/// </summary>
/// <param name="va">GPU virtual address to be translated</param>
/// <param name="maxSize">Maximum size in bytes to scan</param>
/// <returns>Number of bytes, 0 if unmapped</returns>
public ulong GetMappedSize(ulong va, ulong maxSize)
{
if (!ValidateAddress(va))
{
return 0;
}
ulong startVa = va;
ulong endVa = va + maxSize;
ulong pte = GetPte(va);
while (pte != PteUnmapped && va < endVa)
{
va += PageSize - (va & PageMask);
pte = GetPte(va);
}
return Math.Min(maxSize, va - startVa);
}
/// <summary>
/// Gets the kind of a given memory page.
/// This might indicate the type of resource that can be allocated on the page, and also texture tiling.

View File

@ -22,7 +22,7 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
private const ushort FileFormatVersionMajor = 1;
private const ushort FileFormatVersionMinor = 2;
private const uint FileFormatVersionPacked = ((uint)FileFormatVersionMajor << 16) | FileFormatVersionMinor;
private const uint CodeGenVersion = 4892;
private const uint CodeGenVersion = 5110;
private const string SharedTocFileName = "shared.toc";
private const string SharedDataFileName = "shared.data";
@ -368,12 +368,7 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
if (hostCode != null)
{
bool hasFragmentShader = shaders.Length > 5 && shaders[5] != null;
int fragmentOutputMap = hasFragmentShader ? shaders[5].Info.FragmentOutputMap : -1;
ShaderInfo shaderInfo = specState.PipelineState.HasValue
? new ShaderInfo(fragmentOutputMap, specState.PipelineState.Value, fromCache: true)
: new ShaderInfo(fragmentOutputMap, fromCache: true);
ShaderInfo shaderInfo = ShaderInfoBuilder.BuildForCache(context, shaders, specState.PipelineState);
IProgram hostProgram;
@ -385,6 +380,8 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
}
else
{
bool hasFragmentShader = shaders.Length > 5 && shaders[5] != null;
hostProgram = context.Renderer.LoadProgramBinary(hostCode, hasFragmentShader, shaderInfo);
}

View File

@ -491,23 +491,16 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
{
ShaderSource[] shaderSources = new ShaderSource[compilation.TranslatedStages.Length];
int fragmentOutputMap = -1;
ShaderInfoBuilder shaderInfoBuilder = new ShaderInfoBuilder(_context);
for (int index = 0; index < compilation.TranslatedStages.Length; index++)
{
ShaderProgram shader = compilation.TranslatedStages[index];
shaderSources[index] = CreateShaderSource(shader);
if (shader.Info.Stage == ShaderStage.Fragment)
{
fragmentOutputMap = shader.Info.FragmentOutputMap;
}
shaderInfoBuilder.AddStageInfo(shader.Info);
}
ShaderInfo shaderInfo = compilation.SpecializationState.PipelineState.HasValue
? new ShaderInfo(fragmentOutputMap, compilation.SpecializationState.PipelineState.Value, fromCache: true)
: new ShaderInfo(fragmentOutputMap, fromCache: true);
ShaderInfo shaderInfo = shaderInfoBuilder.Build(compilation.SpecializationState.PipelineState, fromCache: true);
IProgram hostProgram = _context.Renderer.CreateProgram(shaderSources, shaderInfo);
CachedShaderProgram program = new CachedShaderProgram(hostProgram, compilation.SpecializationState, compilation.Shaders);

View File

@ -42,25 +42,10 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
int binaryCodeLength = reader.ReadInt32();
byte[] binaryCode = reader.ReadBytes(binaryCodeLength);
output.Add(new ShaderSource(binaryCode, GetBindings(stages, stage), stage, TargetLanguage.Spirv));
output.Add(new ShaderSource(binaryCode, stage, TargetLanguage.Spirv));
}
return output.ToArray();
}
private static ShaderBindings GetBindings(CachedShaderStage[] stages, ShaderStage stage)
{
for (int i = 0; i < stages.Length; i++)
{
CachedShaderStage currentStage = stages[i];
if (currentStage?.Info != null && currentStage.Info.Stage == stage)
{
return ShaderCache.GetBindings(currentStage.Info);
}
}
return new ShaderBindings(Array.Empty<int>(), Array.Empty<int>(), Array.Empty<int>(), Array.Empty<int>());
}
}
}

View File

@ -4,6 +4,7 @@ using Ryujinx.Graphics.Gpu.Engine.Threed;
using Ryujinx.Graphics.Gpu.Image;
using Ryujinx.Graphics.Shader;
using Ryujinx.Graphics.Shader.Translation;
using System;
namespace Ryujinx.Graphics.Gpu.Shader
{
@ -16,6 +17,8 @@ namespace Ryujinx.Graphics.Gpu.Shader
private readonly ResourceCounts _resourceCounts;
private readonly int _stageIndex;
private readonly int[] _constantBufferBindings;
/// <summary>
/// Creates a new GPU accessor.
/// </summary>
@ -25,6 +28,12 @@ namespace Ryujinx.Graphics.Gpu.Shader
_context = context;
_resourceCounts = resourceCounts;
_stageIndex = stageIndex;
if (context.Capabilities.Api != TargetApi.Vulkan)
{
_constantBufferBindings = new int[Constants.TotalGpUniformBuffers];
_constantBufferBindings.AsSpan().Fill(-1);
}
}
public int QueryBindingConstantBuffer(int index)
@ -36,7 +45,15 @@ namespace Ryujinx.Graphics.Gpu.Shader
}
else
{
return _resourceCounts.UniformBuffersCount++;
int binding = _constantBufferBindings[index];
if (binding < 0)
{
binding = _resourceCounts.UniformBuffersCount++;
_constantBufferBindings[index] = binding;
}
return binding;
}
}
@ -93,16 +110,16 @@ namespace Ryujinx.Graphics.Gpu.Shader
Logger.Error?.Print(LogClass.Gpu, $"{resourceName} index {index} exceeds per stage limit of {maxPerStage}.");
}
return GetStageIndex() * (int)maxPerStage + index;
return GetStageIndex(_stageIndex) * (int)maxPerStage + index;
}
private int GetStageIndex()
public static int GetStageIndex(int stageIndex)
{
// This is just a simple remapping to ensure that most frequently used shader stages
// have the lowest binding numbers.
// This is useful because if we need to run on a system with a low limit on the bindings,
// then we can still get most games working as the most common shaders will have low binding numbers.
return _stageIndex switch
return stageIndex switch
{
4 => 1, // Fragment
3 => 2, // Geometry

View File

@ -219,12 +219,11 @@ namespace Ryujinx.Graphics.Gpu.Shader
GpuAccessor gpuAccessor = new GpuAccessor(_context, channel, gpuAccessorState);
TranslatorContext translatorContext = DecodeComputeShader(gpuAccessor, _context.Capabilities.Api, gpuVa);
TranslatedShader translatedShader = TranslateShader(_dumper, channel, translatorContext, cachedGuestCode);
ShaderSource[] shaderSourcesArray = new ShaderSource[] { CreateShaderSource(translatedShader.Program) };
IProgram hostProgram = _context.Renderer.CreateProgram(shaderSourcesArray, new ShaderInfo(-1));
ShaderInfo info = ShaderInfoBuilder.BuildForCompute(_context, translatedShader.Program.Info);
IProgram hostProgram = _context.Renderer.CreateProgram(shaderSourcesArray, info);
cpShader = new CachedShaderProgram(hostProgram, specState, translatedShader.Shader);
@ -363,6 +362,8 @@ namespace Ryujinx.Graphics.Gpu.Shader
TranslatorContext previousStage = null;
ShaderInfoBuilder infoBuilder = new ShaderInfoBuilder(_context);
for (int stageIndex = 0; stageIndex < Constants.ShaderStages; stageIndex++)
{
TranslatorContext currentStage = translatorContexts[stageIndex + 1];
@ -398,6 +399,7 @@ namespace Ryujinx.Graphics.Gpu.Shader
if (program != null)
{
shaderSources.Add(CreateShaderSource(program));
infoBuilder.AddStageInfo(program.Info);
}
previousStage = currentStage;
@ -414,8 +416,9 @@ namespace Ryujinx.Graphics.Gpu.Shader
ShaderSource[] shaderSourcesArray = shaderSources.ToArray();
int fragmentOutputMap = shaders[5]?.Info.FragmentOutputMap ?? -1;
IProgram hostProgram = _context.Renderer.CreateProgram(shaderSourcesArray, new ShaderInfo(fragmentOutputMap, pipeline));
ShaderInfo info = infoBuilder.Build(pipeline);
IProgram hostProgram = _context.Renderer.CreateProgram(shaderSourcesArray, info);
gpShaders = new CachedShaderProgram(hostProgram, specState, shaders);
@ -466,7 +469,7 @@ namespace Ryujinx.Graphics.Gpu.Shader
/// <returns>Shader source</returns>
public static ShaderSource CreateShaderSource(ShaderProgram program)
{
return new ShaderSource(program.Code, program.BinaryCode, GetBindings(program.Info), program.Info.Stage, program.Language);
return new ShaderSource(program.Code, program.BinaryCode, program.Info.Stage, program.Language);
}
/// <summary>
@ -717,25 +720,6 @@ namespace Ryujinx.Graphics.Gpu.Shader
};
}
/// <summary>
/// Gets information about the bindings used by a shader program.
/// </summary>
/// <param name="info">Shader program information to get the information from</param>
/// <returns>Shader bindings</returns>
public static ShaderBindings GetBindings(ShaderProgramInfo info)
{
var uniformBufferBindings = info.CBuffers.Select(x => x.Binding).ToArray();
var storageBufferBindings = info.SBuffers.Select(x => x.Binding).ToArray();
var textureBindings = info.Textures.Select(x => x.Binding).ToArray();
var imageBindings = info.Images.Select(x => x.Binding).ToArray();
return new ShaderBindings(
uniformBufferBindings,
storageBufferBindings,
textureBindings,
imageBindings);
}
/// <summary>
/// Creates shader translation options with the requested graphics API and flags.
/// The shader language is choosen based on the current configuration and graphics API.

View File

@ -0,0 +1,260 @@
using Ryujinx.Graphics.GAL;
using Ryujinx.Graphics.Shader;
using System.Collections.Generic;
namespace Ryujinx.Graphics.Gpu.Shader
{
/// <summary>
/// Shader info structure builder.
/// </summary>
class ShaderInfoBuilder
{
private const int TotalSets = 4;
private const int UniformSetIndex = 0;
private const int StorageSetIndex = 1;
private const int TextureSetIndex = 2;
private const int ImageSetIndex = 3;
private const ResourceStages SupportBufferStags =
ResourceStages.Compute |
ResourceStages.Vertex |
ResourceStages.Fragment;
private readonly GpuContext _context;
private int _fragmentOutputMap;
private readonly List<ResourceDescriptor>[] _resourceDescriptors;
private readonly List<ResourceUsage>[] _resourceUsages;
/// <summary>
/// Creates a new shader info builder.
/// </summary>
/// <param name="context">GPU context that owns the shaders that will be added to the builder</param>
public ShaderInfoBuilder(GpuContext context)
{
_context = context;
_fragmentOutputMap = -1;
_resourceDescriptors = new List<ResourceDescriptor>[TotalSets];
_resourceUsages = new List<ResourceUsage>[TotalSets];
for (int index = 0; index < TotalSets; index++)
{
_resourceDescriptors[index] = new();
_resourceUsages[index] = new();
}
AddDescriptor(SupportBufferStags, ResourceType.UniformBuffer, UniformSetIndex, 0, 1);
}
/// <summary>
/// Adds information from a given shader stage.
/// </summary>
/// <param name="info">Shader stage information</param>
public void AddStageInfo(ShaderProgramInfo info)
{
if (info.Stage == ShaderStage.Fragment)
{
_fragmentOutputMap = info.FragmentOutputMap;
}
int stageIndex = GpuAccessorBase.GetStageIndex(info.Stage switch
{
ShaderStage.TessellationControl => 1,
ShaderStage.TessellationEvaluation => 2,
ShaderStage.Geometry => 3,
ShaderStage.Fragment => 4,
_ => 0
});
ResourceStages stages = info.Stage switch
{
ShaderStage.Compute => ResourceStages.Compute,
ShaderStage.Vertex => ResourceStages.Vertex,
ShaderStage.TessellationControl => ResourceStages.TessellationControl,
ShaderStage.TessellationEvaluation => ResourceStages.TessellationEvaluation,
ShaderStage.Geometry => ResourceStages.Geometry,
ShaderStage.Fragment => ResourceStages.Fragment,
_ => ResourceStages.None
};
int uniformsPerStage = (int)_context.Capabilities.MaximumUniformBuffersPerStage;
int storagesPerStage = (int)_context.Capabilities.MaximumStorageBuffersPerStage;
int texturesPerStage = (int)_context.Capabilities.MaximumTexturesPerStage;
int imagesPerStage = (int)_context.Capabilities.MaximumImagesPerStage;
int uniformBinding = 1 + stageIndex * uniformsPerStage;
int storageBinding = stageIndex * storagesPerStage;
int textureBinding = stageIndex * texturesPerStage * 2;
int imageBinding = stageIndex * imagesPerStage * 2;
AddDescriptor(stages, ResourceType.UniformBuffer, UniformSetIndex, uniformBinding, uniformsPerStage);
AddArrayDescriptor(stages, ResourceType.StorageBuffer, StorageSetIndex, storageBinding, storagesPerStage);
AddDualDescriptor(stages, ResourceType.TextureAndSampler, ResourceType.BufferTexture, TextureSetIndex, textureBinding, texturesPerStage);
AddDualDescriptor(stages, ResourceType.Image, ResourceType.BufferImage, ImageSetIndex, imageBinding, imagesPerStage);
AddUsage(info.CBuffers, stages, UniformSetIndex, isStorage: false);
AddUsage(info.SBuffers, stages, StorageSetIndex, isStorage: true);
AddUsage(info.Textures, stages, TextureSetIndex, isImage: false);
AddUsage(info.Images, stages, ImageSetIndex, isImage: true);
}
/// <summary>
/// Adds a resource descriptor to the list of descriptors.
/// </summary>
/// <param name="stages">Shader stages where the resource is used</param>
/// <param name="type">Type of the resource</param>
/// <param name="setIndex">Descriptor set number where the resource will be bound</param>
/// <param name="binding">Binding number where the resource will be bound</param>
/// <param name="count">Number of resources bound at the binding location</param>
private void AddDescriptor(ResourceStages stages, ResourceType type, int setIndex, int binding, int count)
{
for (int index = 0; index < count; index++)
{
_resourceDescriptors[setIndex].Add(new ResourceDescriptor(binding + index, 1, type, stages));
}
}
/// <summary>
/// Adds two interleaved groups of resources to the list of descriptors.
/// </summary>
/// <param name="stages">Shader stages where the resource is used</param>
/// <param name="type">Type of the first interleaved resource</param>
/// <param name="type2">Type of the second interleaved resource</param>
/// <param name="setIndex">Descriptor set number where the resource will be bound</param>
/// <param name="binding">Binding number where the resource will be bound</param>
/// <param name="count">Number of resources bound at the binding location</param>
private void AddDualDescriptor(ResourceStages stages, ResourceType type, ResourceType type2, int setIndex, int binding, int count)
{
AddDescriptor(stages, type, setIndex, binding, count);
AddDescriptor(stages, type2, setIndex, binding + count, count);
}
/// <summary>
/// Adds an array resource to the list of descriptors.
/// </summary>
/// <param name="stages">Shader stages where the resource is used</param>
/// <param name="type">Type of the resource</param>
/// <param name="setIndex">Descriptor set number where the resource will be bound</param>
/// <param name="binding">Binding number where the resource will be bound</param>
/// <param name="count">Number of resources bound at the binding location</param>
private void AddArrayDescriptor(ResourceStages stages, ResourceType type, int setIndex, int binding, int count)
{
_resourceDescriptors[setIndex].Add(new ResourceDescriptor(binding, count, type, stages));
}
/// <summary>
/// Adds buffer usage information to the list of usages.
/// </summary>
/// <param name="buffers">Buffers to be added</param>
/// <param name="stages">Stages where the buffers are used</param>
/// <param name="setIndex">Descriptor set index where the buffers will be bound</param>
/// <param name="isStorage">True for storage buffers, false for uniform buffers</param>
private void AddUsage(IEnumerable<BufferDescriptor> buffers, ResourceStages stages, int setIndex, bool isStorage)
{
foreach (BufferDescriptor buffer in buffers)
{
_resourceUsages[setIndex].Add(new ResourceUsage(
buffer.Binding,
isStorage ? ResourceType.StorageBuffer : ResourceType.UniformBuffer,
stages,
buffer.Flags.HasFlag(BufferUsageFlags.Write) ? ResourceAccess.ReadWrite : ResourceAccess.Read));
}
}
/// <summary>
/// Adds texture usage information to the list of usages.
/// </summary>
/// <param name="textures">Textures to be added</param>
/// <param name="stages">Stages where the textures are used</param>
/// <param name="setIndex">Descriptor set index where the textures will be bound</param>
/// <param name="isImage">True for images, false for textures</param>
private void AddUsage(IEnumerable<TextureDescriptor> textures, ResourceStages stages, int setIndex, bool isImage)
{
foreach (TextureDescriptor texture in textures)
{
bool isBuffer = (texture.Type & SamplerType.Mask) == SamplerType.TextureBuffer;
ResourceType type = isBuffer
? (isImage ? ResourceType.BufferImage : ResourceType.BufferTexture)
: (isImage ? ResourceType.Image : ResourceType.TextureAndSampler);
_resourceUsages[setIndex].Add(new ResourceUsage(
texture.Binding,
type,
stages,
texture.Flags.HasFlag(TextureUsageFlags.ImageStore) ? ResourceAccess.ReadWrite : ResourceAccess.Read));
}
}
/// <summary>
/// Creates a new shader information structure from the added information.
/// </summary>
/// <param name="pipeline">Optional pipeline state for background shader compilation</param>
/// <param name="fromCache">Indicates if the shader comes from a disk cache</param>
/// <returns>Shader information</returns>
public ShaderInfo Build(ProgramPipelineState? pipeline, bool fromCache = false)
{
var descriptors = new ResourceDescriptorCollection[TotalSets];
var usages = new ResourceUsageCollection[TotalSets];
for (int index = 0; index < TotalSets; index++)
{
descriptors[index] = new ResourceDescriptorCollection(_resourceDescriptors[index].ToArray().AsReadOnly());
usages[index] = new ResourceUsageCollection(_resourceUsages[index].ToArray().AsReadOnly());
}
ResourceLayout resourceLayout = new ResourceLayout(descriptors.AsReadOnly(), usages.AsReadOnly());
if (pipeline.HasValue)
{
return new ShaderInfo(_fragmentOutputMap, resourceLayout, pipeline.Value, fromCache);
}
else
{
return new ShaderInfo(_fragmentOutputMap, resourceLayout, fromCache);
}
}
/// <summary>
/// Builds shader information for shaders from the disk cache.
/// </summary>
/// <param name="context">GPU context that owns the shaders</param>
/// <param name="programs">Shaders from the disk cache</param>
/// <param name="pipeline">Optional pipeline for background compilation</param>
/// <returns>Shader information</returns>
public static ShaderInfo BuildForCache(GpuContext context, IEnumerable<CachedShaderStage> programs, ProgramPipelineState? pipeline)
{
ShaderInfoBuilder builder = new ShaderInfoBuilder(context);
foreach (CachedShaderStage program in programs)
{
if (program?.Info != null)
{
builder.AddStageInfo(program.Info);
}
}
return builder.Build(pipeline, fromCache: true);
}
/// <summary>
/// Builds shader information for a compute shader.
/// </summary>
/// <param name="context">GPU context that owns the shader</param>
/// <param name="info">Compute shader information</param>
/// <param name="fromCache">True if the compute shader comes from a disk cache, false otherwise</param>
/// <returns>Shader information</returns>
public static ShaderInfo BuildForCompute(GpuContext context, ShaderProgramInfo info, bool fromCache = false)
{
ShaderInfoBuilder builder = new ShaderInfoBuilder(context);
builder.AddStageInfo(info);
return builder.Build(null, fromCache);
}
}
}

View File

@ -3,6 +3,7 @@ using Ryujinx.Graphics.Shader.StructuredIr;
using Ryujinx.Graphics.Shader.Translation;
using System;
using System.Collections.Generic;
using System.Globalization;
using System.Linq;
using System.Numerics;
@ -102,13 +103,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
context.AppendLine();
}
var cBufferDescriptors = context.Config.GetConstantBufferDescriptors();
if (cBufferDescriptors.Length != 0)
{
DeclareUniforms(context, cBufferDescriptors);
context.AppendLine();
}
DeclareConstantBuffers(context, context.Config.Properties.ConstantBuffers.Values);
var sBufferDescriptors = context.Config.GetStorageBufferDescriptors();
if (sBufferDescriptors.Length != 0)
@ -244,39 +239,10 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
context.AppendLine();
}
bool isFragment = context.Config.Stage == ShaderStage.Fragment;
if (isFragment || context.Config.Stage == ShaderStage.Compute || context.Config.Stage == ShaderStage.Vertex)
if (context.Config.Stage == ShaderStage.Fragment && context.Config.GpuAccessor.QueryEarlyZForce())
{
if (isFragment && context.Config.GpuAccessor.QueryEarlyZForce())
{
context.AppendLine("layout(early_fragment_tests) in;");
context.AppendLine();
}
if ((context.Config.UsedFeatures & (FeatureFlags.FragCoordXY | FeatureFlags.IntegerSampling)) != 0)
{
string stage = OperandManager.GetShaderStagePrefix(context.Config.Stage);
int scaleElements = context.Config.GetTextureDescriptors().Length + context.Config.GetImageDescriptors().Length;
if (isFragment)
{
scaleElements++; // Also includes render target scale, for gl_FragCoord.
}
DeclareSupportUniformBlock(context, context.Config.Stage, scaleElements);
if (context.Config.UsedFeatures.HasFlag(FeatureFlags.IntegerSampling) && scaleElements != 0)
{
AppendHelperFunction(context, $"Ryujinx.Graphics.Shader/CodeGen/Glsl/HelperFunctions/TexelFetchScale_{stage}.glsl");
context.AppendLine();
}
}
else if (isFragment || context.Config.Stage == ShaderStage.Vertex)
{
DeclareSupportUniformBlock(context, context.Config.Stage, 0);
}
context.AppendLine("layout(early_fragment_tests) in;");
context.AppendLine();
}
if ((info.HelperFunctionsMask & HelperFunctionsMask.AtomicMinMaxS32Shared) != 0)
@ -389,36 +355,38 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
};
}
private static void DeclareUniforms(CodeGenContext context, BufferDescriptor[] descriptors)
private static void DeclareConstantBuffers(CodeGenContext context, IEnumerable<BufferDefinition> buffers)
{
string ubSize = "[" + NumberFormatter.FormatInt(Constants.ConstantBufferSize / 16) + "]";
if (context.Config.UsedFeatures.HasFlag(FeatureFlags.CbIndexing))
foreach (BufferDefinition buffer in buffers)
{
string ubName = OperandManager.GetShaderStagePrefix(context.Config.Stage);
ubName += "_" + DefaultNames.UniformNamePrefix;
string blockName = $"{ubName}_{DefaultNames.BlockSuffix}";
context.AppendLine($"layout (binding = {context.Config.FirstConstantBufferBinding}, std140) uniform {blockName}");
context.EnterScope();
context.AppendLine("vec4 " + DefaultNames.DataName + ubSize + ";");
context.LeaveScope($" {ubName}[{NumberFormatter.FormatInt(descriptors.Max(x => x.Slot) + 1)}];");
}
else
{
foreach (var descriptor in descriptors)
string layout = buffer.Layout switch
{
string ubName = OperandManager.GetShaderStagePrefix(context.Config.Stage);
BufferLayout.Std140 => "std140",
_ => "std430"
};
ubName += "_" + DefaultNames.UniformNamePrefix + descriptor.Slot;
context.AppendLine($"layout (binding = {buffer.Binding}, {layout}) uniform _{buffer.Name}");
context.EnterScope();
context.AppendLine($"layout (binding = {descriptor.Binding}, std140) uniform {ubName}");
context.EnterScope();
context.AppendLine("vec4 " + OperandManager.GetUbName(context.Config.Stage, descriptor.Slot, false) + ubSize + ";");
context.LeaveScope(";");
foreach (StructureField field in buffer.Type.Fields)
{
if (field.Type.HasFlag(AggregateType.Array))
{
string typeName = GetVarTypeName(context, field.Type & ~AggregateType.Array);
string arraySize = field.ArrayLength.ToString(CultureInfo.InvariantCulture);
context.AppendLine($"{typeName} {field.Name}[{arraySize}];");
}
else
{
string typeName = GetVarTypeName(context, field.Type);
context.AppendLine($"{typeName} {field.Name};");
}
}
context.LeaveScope($" {buffer.Name};");
context.AppendLine();
}
}
@ -759,39 +727,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
context.AppendLine($"layout (location = {location}) patch out vec4 {name};");
}
private static void DeclareSupportUniformBlock(CodeGenContext context, ShaderStage stage, int scaleElements)
{
bool needsSupportBlock = stage == ShaderStage.Fragment ||
(context.Config.LastInVertexPipeline && context.Config.GpuAccessor.QueryViewportTransformDisable());
if (!needsSupportBlock && scaleElements == 0)
{
return;
}
context.AppendLine($"layout (binding = 0, std140) uniform {DefaultNames.SupportBlockName}");
context.EnterScope();
switch (stage)
{
case ShaderStage.Fragment:
case ShaderStage.Vertex:
context.AppendLine($"uint {DefaultNames.SupportBlockAlphaTestName};");
context.AppendLine($"bool {DefaultNames.SupportBlockIsBgraName}[{SupportBuffer.FragmentIsBgraCount}];");
context.AppendLine($"vec4 {DefaultNames.SupportBlockViewportInverse};");
context.AppendLine($"int {DefaultNames.SupportBlockFragmentScaleCount};");
break;
case ShaderStage.Compute:
context.AppendLine($"uint s_reserved[{SupportBuffer.ComputeRenderScaleOffset / SupportBuffer.FieldSize}];");
break;
}
context.AppendLine($"float {DefaultNames.SupportBlockRenderScaleName}[{SupportBuffer.RenderScaleMaxCount}];");
context.LeaveScope(";");
context.AppendLine();
}
private static void AppendHelperFunction(CodeGenContext context, string filename)
{
string code = EmbeddedResources.ReadAllText(filename);

View File

@ -15,18 +15,8 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
public const string DataName = "data";
public const string SupportBlockName = "support_block";
public const string SupportBlockAlphaTestName = "s_alpha_test";
public const string SupportBlockIsBgraName = "s_is_bgra";
public const string SupportBlockViewportInverse = "s_viewport_inverse";
public const string SupportBlockFragmentScaleCount = "s_frag_scale_count";
public const string SupportBlockRenderScaleName = "s_render_scale";
public const string BlockSuffix = "block";
public const string UniformNamePrefix = "c";
public const string UniformNameSuffix = "data";
public const string LocalMemoryName = "local_mem";
public const string SharedMemoryName = "shared_mem";

View File

@ -1,19 +0,0 @@
ivec2 Helper_TexelFetchScale(ivec2 inputVec, int samplerIndex)
{
float scale = s_render_scale[samplerIndex];
if (scale == 1.0)
{
return inputVec;
}
return ivec2(vec2(inputVec) * scale);
}
int Helper_TextureSizeUnscale(int size, int samplerIndex)
{
float scale = s_render_scale[samplerIndex];
if (scale == 1.0)
{
return size;
}
return int(float(size) / scale);
}

View File

@ -1,26 +0,0 @@
ivec2 Helper_TexelFetchScale(ivec2 inputVec, int samplerIndex)
{
float scale = s_render_scale[1 + samplerIndex];
if (scale == 1.0)
{
return inputVec;
}
if (scale < 0.0) // If less than 0, try interpolate between texels by using the screen position.
{
return ivec2(vec2(inputVec) * (-scale) + mod(gl_FragCoord.xy, 0.0 - scale));
}
else
{
return ivec2(vec2(inputVec) * scale);
}
}
int Helper_TextureSizeUnscale(int size, int samplerIndex)
{
float scale = abs(s_render_scale[1 + samplerIndex]);
if (scale == 1.0)
{
return size;
}
return int(float(size) / scale);
}

View File

@ -1,20 +0,0 @@
ivec2 Helper_TexelFetchScale(ivec2 inputVec, int samplerIndex)
{
float scale = abs(s_render_scale[1 + samplerIndex + s_frag_scale_count]);
if (scale == 1.0)
{
return inputVec;
}
return ivec2(vec2(inputVec) * scale);
}
int Helper_TextureSizeUnscale(int size, int samplerIndex)
{
float scale = abs(s_render_scale[1 + samplerIndex + s_frag_scale_count]);
if (scale == 1.0)
{
return size;
}
return int(float(size) / scale);
}

View File

@ -167,9 +167,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
case Instruction.Load:
return Load(context, operation);
case Instruction.LoadConstant:
return LoadConstant(context, operation);
case Instruction.LoadLocal:
return LoadLocal(context, operation);

View File

@ -83,7 +83,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
Add(Instruction.ImageAtomic, InstType.Special);
Add(Instruction.IsNan, InstType.CallUnary, "isnan");
Add(Instruction.Load, InstType.Special);
Add(Instruction.LoadConstant, InstType.Special);
Add(Instruction.LoadLocal, InstType.Special);
Add(Instruction.LoadShared, InstType.Special);
Add(Instruction.LoadStorage, InstType.Special);
@ -102,6 +101,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
Add(Instruction.MemoryBarrier, InstType.CallNullary, "memoryBarrier");
Add(Instruction.Minimum, InstType.CallBinary, "min");
Add(Instruction.MinimumU32, InstType.CallBinary, "min");
Add(Instruction.Modulo, InstType.CallBinary, "mod");
Add(Instruction.Multiply, InstType.OpBinaryCom, "*", 1);
Add(Instruction.MultiplyHighS32, InstType.CallBinary, HelperFunctionNames.MultiplyHighS32);
Add(Instruction.MultiplyHighU32, InstType.CallBinary, HelperFunctionNames.MultiplyHighU32);

View File

@ -97,30 +97,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
texCallBuilder.Append(str);
}
string ApplyScaling(string vector)
{
if (context.Config.Stage.SupportsRenderScale() &&
texOp.Inst == Instruction.ImageLoad &&
!isBindless &&
!isIndexed)
{
// Image scales start after texture ones.
int scaleIndex = context.Config.GetTextureDescriptors().Length + context.Config.FindImageDescriptorIndex(texOp);
if (pCount == 3 && isArray)
{
// The array index is not scaled, just x and y.
vector = $"ivec3(Helper_TexelFetchScale(({vector}).xy, {scaleIndex}), ({vector}).z)";
}
else if (pCount == 2 && !isArray)
{
vector = $"Helper_TexelFetchScale({vector}, {scaleIndex})";
}
}
return vector;
}
if (pCount > 1)
{
string[] elems = new string[pCount];
@ -130,7 +106,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
elems[index] = Src(AggregateType.S32);
}
Append(ApplyScaling($"ivec{pCount}({string.Join(", ", elems)})"));
Append($"ivec{pCount}({string.Join(", ", elems)})");
}
else
{
@ -215,29 +191,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
return GenerateLoadOrStore(context, operation, isStore: false);
}
public static string LoadConstant(CodeGenContext context, AstOperation operation)
{
IAstNode src1 = operation.GetSource(0);
IAstNode src2 = operation.GetSource(1);
string offsetExpr = GetSoureExpr(context, src2, GetSrcVarType(operation.Inst, 1));
offsetExpr = Enclose(offsetExpr, src2, Instruction.ShiftRightS32, isLhs: true);
var config = context.Config;
bool indexElement = !config.GpuAccessor.QueryHostHasVectorIndexingBug();
if (src1 is AstOperand operand && operand.Type == OperandType.Constant)
{
bool cbIndexable = config.UsedFeatures.HasFlag(Translation.FeatureFlags.CbIndexing);
return OperandManager.GetConstantBufferName(operand.Value, offsetExpr, config.Stage, cbIndexable, indexElement);
}
else
{
string slotExpr = GetSoureExpr(context, src1, GetSrcVarType(operation.Inst, 0));
return OperandManager.GetConstantBufferName(slotExpr, offsetExpr, config.Stage, indexElement);
}
}
public static string LoadLocal(CodeGenContext context, AstOperation operation)
{
return LoadLocalOrShared(context, operation, DefaultNames.LocalMemoryName);
@ -607,53 +560,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
}
}
string ApplyScaling(string vector)
{
if (intCoords)
{
if (context.Config.Stage.SupportsRenderScale() &&
!isBindless &&
!isIndexed)
{
int index = context.Config.FindTextureDescriptorIndex(texOp);
if (pCount == 3 && isArray)
{
// The array index is not scaled, just x and y.
vector = "ivec3(Helper_TexelFetchScale((" + vector + ").xy, " + index + "), (" + vector + ").z)";
}
else if (pCount == 2 && !isArray)
{
vector = "Helper_TexelFetchScale(" + vector + ", " + index + ")";
}
}
}
return vector;
}
string ApplyBias(string vector)
{
int gatherBiasPrecision = context.Config.GpuAccessor.QueryHostGatherBiasPrecision();
if (isGather && gatherBiasPrecision != 0)
{
// GPU requires texture gather to be slightly offset to match NVIDIA behaviour when point is exactly between two texels.
// Offset by the gather precision divided by 2 to correct for rounding.
if (pCount == 1)
{
vector = $"{vector} + (1.0 / (float(textureSize({samplerName}, 0)) * float({1 << (gatherBiasPrecision + 1)})))";
}
else
{
vector = $"{vector} + (1.0 / (vec{pCount}(textureSize({samplerName}, 0).{"xyz".Substring(0, pCount)}) * float({1 << (gatherBiasPrecision + 1)})))";
}
}
return vector;
}
Append(ApplyBias(ApplyScaling(AssemblePVector(pCount))));
Append(AssemblePVector(pCount));
string AssembleDerivativesVector(int count)
{
@ -773,7 +680,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
}
else
{
(TextureDescriptor descriptor, int descriptorIndex) = context.Config.FindTextureDescriptor(texOp);
TextureDescriptor descriptor = context.Config.FindTextureDescriptor(texOp);
bool hasLod = !descriptor.Type.HasFlag(SamplerType.Multisample) && descriptor.Type != SamplerType.TextureBuffer;
string texCall;
@ -790,14 +697,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
texCall = $"textureSize({samplerName}){GetMask(texOp.Index)}";
}
if (context.Config.Stage.SupportsRenderScale() &&
(texOp.Index < 2 || (texOp.Type & SamplerType.Mask) == SamplerType.Texture3D) &&
!isBindless &&
!isIndexed)
{
texCall = $"Helper_TextureSizeUnscale({texCall}, {descriptorIndex})";
}
return texCall;
}
}
@ -809,9 +708,29 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
string varName;
AggregateType varType;
int srcIndex = 0;
int inputsCount = isStore ? operation.SourcesCount - 1 : operation.SourcesCount;
switch (storageKind)
{
case StorageKind.ConstantBuffer:
if (!(operation.GetSource(srcIndex++) is AstOperand bindingIndex) || bindingIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"First input of {operation.Inst} with {storageKind} storage must be a constant operand.");
}
int binding = bindingIndex.Value;
BufferDefinition buffer = context.Config.Properties.ConstantBuffers[binding];
if (!(operation.GetSource(srcIndex++) is AstOperand fieldIndex) || fieldIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"Second input of {operation.Inst} with {storageKind} storage must be a constant operand.");
}
StructureField field = buffer.Type.Fields[fieldIndex.Value];
varName = $"{buffer.Name}.{field.Name}";
varType = field.Type;
break;
case StorageKind.Input:
case StorageKind.InputPerPatch:
case StorageKind.Output:
@ -864,40 +783,39 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
varName = $"gl_out[{expr}].{varName}";
}
}
int firstSrcIndex = srcIndex;
int inputsCount = isStore ? operation.SourcesCount - 1 : operation.SourcesCount;
for (; srcIndex < inputsCount; srcIndex++)
{
IAstNode src = operation.GetSource(srcIndex);
if ((varType & AggregateType.ElementCountMask) != 0 &&
srcIndex == inputsCount - 1 &&
src is AstOperand elementIndex &&
elementIndex.Type == OperandType.Constant)
{
varName += "." + "xyzw"[elementIndex.Value & 3];
}
else if (srcIndex == firstSrcIndex && context.Config.Stage == ShaderStage.TessellationControl && storageKind == StorageKind.Output)
{
// GLSL requires that for tessellation control shader outputs,
// that the index expression must be *exactly* "gl_InvocationID",
// otherwise the compilation fails.
// TODO: Get rid of this and use expression propagation to make sure we generate the correct code from IR.
varName += "[gl_InvocationID]";
}
else
{
varName += $"[{GetSoureExpr(context, src, AggregateType.S32)}]";
}
}
break;
default:
throw new InvalidOperationException($"Invalid storage kind {storageKind}.");
}
int firstSrcIndex = srcIndex;
for (; srcIndex < inputsCount; srcIndex++)
{
IAstNode src = operation.GetSource(srcIndex);
if ((varType & AggregateType.ElementCountMask) != 0 &&
srcIndex == inputsCount - 1 &&
src is AstOperand elementIndex &&
elementIndex.Type == OperandType.Constant)
{
varName += "." + "xyzw"[elementIndex.Value & 3];
}
else if (srcIndex == firstSrcIndex && context.Config.Stage == ShaderStage.TessellationControl && storageKind == StorageKind.Output)
{
// GLSL requires that for tessellation control shader outputs,
// that the index expression must be *exactly* "gl_InvocationID",
// otherwise the compilation fails.
// TODO: Get rid of this and use expression propagation to make sure we generate the correct code from IR.
varName += "[gl_InvocationID]";
}
else
{
varName += $"[{GetSoureExpr(context, src, AggregateType.S32)}]";
}
}
if (isStore)
{
varType &= AggregateType.ElementTypeMask;

View File

@ -27,7 +27,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
IoVariable.FragmentCoord => ("gl_FragCoord", AggregateType.Vector4 | AggregateType.FP32),
IoVariable.FragmentOutputColor => GetFragmentOutputColorVariableName(config, location),
IoVariable.FragmentOutputDepth => ("gl_FragDepth", AggregateType.FP32),
IoVariable.FragmentOutputIsBgra => (DefaultNames.SupportBlockIsBgraName, AggregateType.Array | AggregateType.Bool),
IoVariable.FrontColorDiffuse => ("gl_FrontColor", AggregateType.Vector4 | AggregateType.FP32), // Deprecated.
IoVariable.FrontColorSpecular => ("gl_FrontSecondaryColor", AggregateType.Vector4 | AggregateType.FP32), // Deprecated.
IoVariable.FrontFacing => ("gl_FrontFacing", AggregateType.Bool),
@ -46,8 +45,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl.Instructions
IoVariable.SubgroupLaneId => GetSubgroupInvocationIdVariableName(config),
IoVariable.SubgroupLeMask => GetSubgroupMaskVariableName(config, "Le"),
IoVariable.SubgroupLtMask => GetSubgroupMaskVariableName(config, "Lt"),
IoVariable.SupportBlockRenderScale => (DefaultNames.SupportBlockRenderScaleName, AggregateType.Array | AggregateType.FP32),
IoVariable.SupportBlockViewInverse => (DefaultNames.SupportBlockViewportInverse, AggregateType.Vector2 | AggregateType.FP32),
IoVariable.TessellationCoord => ("gl_TessCoord", AggregateType.Vector3 | AggregateType.FP32),
IoVariable.TessellationLevelInner => ("gl_TessLevelInner", AggregateType.Array | AggregateType.FP32),
IoVariable.TessellationLevelOuter => ("gl_TessLevelOuter", AggregateType.Array | AggregateType.FP32),

View File

@ -36,63 +36,12 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
{
OperandType.Argument => GetArgumentName(operand.Value),
OperandType.Constant => NumberFormatter.FormatInt(operand.Value),
OperandType.ConstantBuffer => GetConstantBufferName(operand, context.Config),
OperandType.LocalVariable => _locals[operand],
OperandType.Undefined => DefaultNames.UndefinedName,
_ => throw new ArgumentException($"Invalid operand type \"{operand.Type}\".")
};
}
private static string GetConstantBufferName(AstOperand operand, ShaderConfig config)
{
return GetConstantBufferName(operand.CbufSlot, operand.CbufOffset, config.Stage, config.UsedFeatures.HasFlag(FeatureFlags.CbIndexing));
}
public static string GetConstantBufferName(int slot, int offset, ShaderStage stage, bool cbIndexable)
{
return $"{GetUbName(stage, slot, cbIndexable)}[{offset >> 2}].{GetSwizzleMask(offset & 3)}";
}
private static string GetVec4Indexed(string vectorName, string indexExpr, bool indexElement)
{
if (indexElement)
{
return $"{vectorName}[{indexExpr}]";
}
string result = $"{vectorName}.x";
for (int i = 1; i < 4; i++)
{
result = $"(({indexExpr}) == {i}) ? ({vectorName}.{GetSwizzleMask(i)}) : ({result})";
}
return $"({result})";
}
public static string GetConstantBufferName(int slot, string offsetExpr, ShaderStage stage, bool cbIndexable, bool indexElement)
{
return GetVec4Indexed(GetUbName(stage, slot, cbIndexable) + $"[{offsetExpr} >> 2]", offsetExpr + " & 3", indexElement);
}
public static string GetConstantBufferName(string slotExpr, string offsetExpr, ShaderStage stage, bool indexElement)
{
return GetVec4Indexed(GetUbName(stage, slotExpr) + $"[{offsetExpr} >> 2]", offsetExpr + " & 3", indexElement);
}
public static string GetUbName(ShaderStage stage, int slot, bool cbIndexable)
{
if (cbIndexable)
{
return GetUbName(stage, NumberFormatter.FormatInt(slot, AggregateType.S32));
}
return $"{GetShaderStagePrefix(stage)}_{DefaultNames.UniformNamePrefix}{slot}_{DefaultNames.UniformNameSuffix}";
}
private static string GetUbName(ShaderStage stage, string slotExpr)
{
return $"{GetShaderStagePrefix(stage)}_{DefaultNames.UniformNamePrefix}[{slotExpr}].{DefaultNames.DataName}";
}
public static string GetSamplerName(ShaderStage stage, AstTextureOperation texOp, string indexExpr)
{
return GetSamplerName(stage, texOp.CbufSlot, texOp.Handle, texOp.Type.HasFlag(SamplerType.Indexed), indexExpr);
@ -168,6 +117,22 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Glsl
{
switch (operation.StorageKind)
{
case StorageKind.ConstantBuffer:
if (!(operation.GetSource(0) is AstOperand bindingIndex) || bindingIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"First input of {operation.Inst} with {operation.StorageKind} storage must be a constant operand.");
}
if (!(operation.GetSource(1) is AstOperand fieldIndex) || fieldIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"Second input of {operation.Inst} with {operation.StorageKind} storage must be a constant operand.");
}
BufferDefinition buffer = context.Config.Properties.ConstantBuffers[bindingIndex.Value];
StructureField field = buffer.Type.Fields[fieldIndex.Value];
return field.Type & AggregateType.ElementTypeMask;
case StorageKind.Input:
case StorageKind.InputPerPatch:
case StorageKind.Output:

View File

@ -23,9 +23,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
public int InputVertices { get; }
public Dictionary<int, Instruction> UniformBuffers { get; } = new Dictionary<int, Instruction>();
public Instruction SupportBuffer { get; set; }
public Instruction UniformBuffersArray { get; set; }
public Dictionary<int, Instruction> ConstantBuffers { get; } = new Dictionary<int, Instruction>();
public Instruction StorageBuffersArray { get; set; }
public Instruction LocalMemory { get; set; }
public Instruction SharedMemory { get; set; }
@ -38,6 +36,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
public Dictionary<IoDefinition, Instruction> OutputsPerPatch { get; } = new Dictionary<IoDefinition, Instruction>();
public Instruction CoordTemp { get; set; }
public StructuredFunction CurrentFunction { get; set; }
private readonly Dictionary<AstOperand, Instruction> _locals = new Dictionary<AstOperand, Instruction>();
private readonly Dictionary<int, Instruction[]> _localForArgs = new Dictionary<int, Instruction[]>();
private readonly Dictionary<int, Instruction> _funcArgs = new Dictionary<int, Instruction>();
@ -217,7 +216,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
IrOperandType.Argument => GetArgument(type, operand),
IrOperandType.Constant => GetConstant(type, operand),
IrOperandType.ConstantBuffer => GetConstantBuffer(type, operand),
IrOperandType.LocalVariable => GetLocal(type, operand),
IrOperandType.Undefined => GetUndefined(type),
_ => throw new ArgumentException($"Invalid operand type \"{operand.Type}\".")
@ -274,31 +272,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
};
}
public Instruction GetConstantBuffer(AggregateType type, AstOperand operand)
{
var i1 = Constant(TypeS32(), 0);
var i2 = Constant(TypeS32(), operand.CbufOffset >> 2);
var i3 = Constant(TypeU32(), operand.CbufOffset & 3);
Instruction elemPointer;
if (UniformBuffersArray != null)
{
var ubVariable = UniformBuffersArray;
var i0 = Constant(TypeS32(), operand.CbufSlot);
elemPointer = AccessChain(TypePointer(StorageClass.Uniform, TypeFP32()), ubVariable, i0, i1, i2, i3);
}
else
{
var ubVariable = UniformBuffers[operand.CbufSlot];
elemPointer = AccessChain(TypePointer(StorageClass.Uniform, TypeFP32()), ubVariable, i1, i2, i3);
}
return BitcastIfNeeded(type, AggregateType.FP32, Load(TypeFP32(), elemPointer));
}
public Instruction GetLocalPointer(AstOperand local)
{
return _locals[local];

View File

@ -98,8 +98,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
DeclareLocalMemory(context, localMemorySize);
}
DeclareSupportBuffer(context);
DeclareUniformBuffers(context, context.Config.GetConstantBufferDescriptors());
DeclareConstantBuffers(context, context.Config.Properties.ConstantBuffers.Values);
DeclareStorageBuffers(context, context.Config.GetStorageBufferDescriptors());
DeclareSamplers(context, context.Config.GetTextureDescriptors());
DeclareImages(context, context.Config.GetImageDescriptors());
@ -127,84 +126,63 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
return variable;
}
private static void DeclareSupportBuffer(CodeGenContext context)
private static void DeclareConstantBuffers(CodeGenContext context, IEnumerable<BufferDefinition> buffers)
{
if (!context.Config.Stage.SupportsRenderScale() && !(context.Config.LastInVertexPipeline && context.Config.GpuAccessor.QueryViewportTransformDisable()))
HashSet<SpvInstruction> decoratedTypes = new HashSet<SpvInstruction>();
foreach (BufferDefinition buffer in buffers)
{
return;
}
int alignment = buffer.Layout == BufferLayout.Std140 ? 16 : 4;
int alignmentMask = alignment - 1;
int offset = 0;
var isBgraArrayType = context.TypeArray(context.TypeU32(), context.Constant(context.TypeU32(), SupportBuffer.FragmentIsBgraCount));
var viewportInverseVectorType = context.TypeVector(context.TypeFP32(), 4);
var renderScaleArrayType = context.TypeArray(context.TypeFP32(), context.Constant(context.TypeU32(), SupportBuffer.RenderScaleMaxCount));
SpvInstruction[] structFieldTypes = new SpvInstruction[buffer.Type.Fields.Length];
int[] structFieldOffsets = new int[buffer.Type.Fields.Length];
context.Decorate(isBgraArrayType, Decoration.ArrayStride, (LiteralInteger)SupportBuffer.FieldSize);
context.Decorate(renderScaleArrayType, Decoration.ArrayStride, (LiteralInteger)SupportBuffer.FieldSize);
for (int fieldIndex = 0; fieldIndex < buffer.Type.Fields.Length; fieldIndex++)
{
StructureField field = buffer.Type.Fields[fieldIndex];
int fieldSize = (field.Type.GetSizeInBytes() + alignmentMask) & ~alignmentMask;
var supportBufferStructType = context.TypeStruct(false, context.TypeU32(), isBgraArrayType, viewportInverseVectorType, context.TypeS32(), renderScaleArrayType);
structFieldTypes[fieldIndex] = context.GetType(field.Type, field.ArrayLength);
structFieldOffsets[fieldIndex] = offset;
context.MemberDecorate(supportBufferStructType, 0, Decoration.Offset, (LiteralInteger)SupportBuffer.FragmentAlphaTestOffset);
context.MemberDecorate(supportBufferStructType, 1, Decoration.Offset, (LiteralInteger)SupportBuffer.FragmentIsBgraOffset);
context.MemberDecorate(supportBufferStructType, 2, Decoration.Offset, (LiteralInteger)SupportBuffer.ViewportInverseOffset);
context.MemberDecorate(supportBufferStructType, 3, Decoration.Offset, (LiteralInteger)SupportBuffer.FragmentRenderScaleCountOffset);
context.MemberDecorate(supportBufferStructType, 4, Decoration.Offset, (LiteralInteger)SupportBuffer.GraphicsRenderScaleOffset);
context.Decorate(supportBufferStructType, Decoration.Block);
if (field.Type.HasFlag(AggregateType.Array))
{
// We can't decorate the type more than once.
if (decoratedTypes.Add(structFieldTypes[fieldIndex]))
{
context.Decorate(structFieldTypes[fieldIndex], Decoration.ArrayStride, (LiteralInteger)fieldSize);
}
var supportBufferPointerType = context.TypePointer(StorageClass.Uniform, supportBufferStructType);
var supportBufferVariable = context.Variable(supportBufferPointerType, StorageClass.Uniform);
offset += fieldSize * field.ArrayLength;
}
else
{
offset += fieldSize;
}
}
context.Decorate(supportBufferVariable, Decoration.DescriptorSet, (LiteralInteger)0);
context.Decorate(supportBufferVariable, Decoration.Binding, (LiteralInteger)0);
var ubStructType = context.TypeStruct(false, structFieldTypes);
context.AddGlobalVariable(supportBufferVariable);
if (decoratedTypes.Add(ubStructType))
{
context.Decorate(ubStructType, Decoration.Block);
context.SupportBuffer = supportBufferVariable;
}
for (int fieldIndex = 0; fieldIndex < structFieldOffsets.Length; fieldIndex++)
{
context.MemberDecorate(ubStructType, fieldIndex, Decoration.Offset, (LiteralInteger)structFieldOffsets[fieldIndex]);
}
}
private static void DeclareUniformBuffers(CodeGenContext context, BufferDescriptor[] descriptors)
{
if (descriptors.Length == 0)
{
return;
}
uint ubSize = Constants.ConstantBufferSize / 16;
var ubArrayType = context.TypeArray(context.TypeVector(context.TypeFP32(), 4), context.Constant(context.TypeU32(), ubSize), true);
context.Decorate(ubArrayType, Decoration.ArrayStride, (LiteralInteger)16);
var ubStructType = context.TypeStruct(true, ubArrayType);
context.Decorate(ubStructType, Decoration.Block);
context.MemberDecorate(ubStructType, 0, Decoration.Offset, (LiteralInteger)0);
if (context.Config.UsedFeatures.HasFlag(FeatureFlags.CbIndexing))
{
int count = descriptors.Max(x => x.Slot) + 1;
var ubStructArrayType = context.TypeArray(ubStructType, context.Constant(context.TypeU32(), count));
var ubPointerType = context.TypePointer(StorageClass.Uniform, ubStructArrayType);
var ubPointerType = context.TypePointer(StorageClass.Uniform, ubStructType);
var ubVariable = context.Variable(ubPointerType, StorageClass.Uniform);
context.Name(ubVariable, $"{GetStagePrefix(context.Config.Stage)}_u");
context.Decorate(ubVariable, Decoration.DescriptorSet, (LiteralInteger)0);
context.Decorate(ubVariable, Decoration.Binding, (LiteralInteger)context.Config.FirstConstantBufferBinding);
context.Name(ubVariable, buffer.Name);
context.Decorate(ubVariable, Decoration.DescriptorSet, (LiteralInteger)buffer.Set);
context.Decorate(ubVariable, Decoration.Binding, (LiteralInteger)buffer.Binding);
context.AddGlobalVariable(ubVariable);
context.UniformBuffersArray = ubVariable;
}
else
{
var ubPointerType = context.TypePointer(StorageClass.Uniform, ubStructType);
foreach (var descriptor in descriptors)
{
var ubVariable = context.Variable(ubPointerType, StorageClass.Uniform);
context.Name(ubVariable, $"{GetStagePrefix(context.Config.Stage)}_c{descriptor.Slot}");
context.Decorate(ubVariable, Decoration.DescriptorSet, (LiteralInteger)0);
context.Decorate(ubVariable, Decoration.Binding, (LiteralInteger)descriptor.Binding);
context.AddGlobalVariable(ubVariable);
context.UniformBuffers.Add(descriptor.Slot, ubVariable);
}
context.ConstantBuffers.Add(buffer.Binding, ubVariable);
}
}
@ -394,25 +372,11 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
foreach (var ioDefinition in info.IoDefinitions)
{
var ioVariable = ioDefinition.IoVariable;
// Those are actually from constant buffer, rather than being actual inputs or outputs,
// so we must ignore them here as they are declared as part of the support buffer.
// TODO: Delete this after we represent this properly on the IR (as a constant buffer rather than "input").
if (ioVariable == IoVariable.FragmentOutputIsBgra ||
ioVariable == IoVariable.SupportBlockRenderScale ||
ioVariable == IoVariable.SupportBlockViewInverse)
{
continue;
}
bool isOutput = ioDefinition.StorageKind.IsOutput();
bool isPerPatch = ioDefinition.StorageKind.IsPerPatch();
PixelImap iq = PixelImap.Unused;
if (context.Config.Stage == ShaderStage.Fragment)
{
var ioVariable = ioDefinition.IoVariable;
if (ioVariable == IoVariable.UserDefined)
{
iq = context.Config.ImapTypes[ioDefinition.Location].GetFirstUsedType();
@ -429,6 +393,9 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
}
}
bool isOutput = ioDefinition.StorageKind.IsOutput();
bool isPerPatch = ioDefinition.StorageKind.IsPerPatch();
DeclareInputOrOutput(context, ioDefinition, isOutput, isPerPatch, iq);
}
}

View File

@ -4,7 +4,6 @@ using Ryujinx.Graphics.Shader.Translation;
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Linq;
using System.Numerics;
using static Spv.Specification;
@ -98,7 +97,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
Add(Instruction.ImageStore, GenerateImageStore);
Add(Instruction.IsNan, GenerateIsNan);
Add(Instruction.Load, GenerateLoad);
Add(Instruction.LoadConstant, GenerateLoadConstant);
Add(Instruction.LoadLocal, GenerateLoadLocal);
Add(Instruction.LoadShared, GenerateLoadShared);
Add(Instruction.LoadStorage, GenerateLoadStorage);
@ -115,6 +113,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
Add(Instruction.MemoryBarrier, GenerateMemoryBarrier);
Add(Instruction.Minimum, GenerateMinimum);
Add(Instruction.MinimumU32, GenerateMinimumU32);
Add(Instruction.Modulo, GenerateModulo);
Add(Instruction.Multiply, GenerateMultiply);
Add(Instruction.MultiplyHighS32, GenerateMultiplyHighS32);
Add(Instruction.MultiplyHighU32, GenerateMultiplyHighU32);
@ -313,10 +312,11 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
for (int i = 0; i < args.Length; i++)
{
var operand = (AstOperand)operation.GetSource(i + 1);
var operand = operation.GetSource(i + 1);
if (i >= function.InArguments.Length)
{
args[i] = context.GetLocalPointer(operand);
args[i] = context.GetLocalPointer((AstOperand)operand);
}
else
{
@ -744,8 +744,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
pCoords = Src(AggregateType.S32);
}
pCoords = ScalingHelpers.ApplyScaling(context, texOp, pCoords, intCoords: true, isBindless, isIndexed, isArray, pCount);
(var imageType, var imageVariable) = context.Images[new TextureMeta(texOp.CbufSlot, texOp.Handle, texOp.Format)];
var image = context.Load(imageType, imageVariable);
@ -867,68 +865,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
return GenerateLoadOrStore(context, operation, isStore: false);
}
private static OperationResult GenerateLoadConstant(CodeGenContext context, AstOperation operation)
{
var src1 = operation.GetSource(0);
var src2 = context.Get(AggregateType.S32, operation.GetSource(1));
var i1 = context.Constant(context.TypeS32(), 0);
var i2 = context.ShiftRightArithmetic(context.TypeS32(), src2, context.Constant(context.TypeS32(), 2));
var i3 = context.BitwiseAnd(context.TypeS32(), src2, context.Constant(context.TypeS32(), 3));
SpvInstruction value = null;
if (context.Config.GpuAccessor.QueryHostHasVectorIndexingBug())
{
// Test for each component individually.
for (int i = 0; i < 4; i++)
{
var component = context.Constant(context.TypeS32(), i);
SpvInstruction elemPointer;
if (context.UniformBuffersArray != null)
{
var ubVariable = context.UniformBuffersArray;
var i0 = context.Get(AggregateType.S32, src1);
elemPointer = context.AccessChain(context.TypePointer(StorageClass.Uniform, context.TypeFP32()), ubVariable, i0, i1, i2, component);
}
else
{
var ubVariable = context.UniformBuffers[((AstOperand)src1).Value];
elemPointer = context.AccessChain(context.TypePointer(StorageClass.Uniform, context.TypeFP32()), ubVariable, i1, i2, component);
}
SpvInstruction newValue = context.Load(context.TypeFP32(), elemPointer);
value = value != null ? context.Select(context.TypeFP32(), context.IEqual(context.TypeBool(), i3, component), newValue, value) : newValue;
}
}
else
{
SpvInstruction elemPointer;
if (context.UniformBuffersArray != null)
{
var ubVariable = context.UniformBuffersArray;
var i0 = context.Get(AggregateType.S32, src1);
elemPointer = context.AccessChain(context.TypePointer(StorageClass.Uniform, context.TypeFP32()), ubVariable, i0, i1, i2, i3);
}
else
{
var ubVariable = context.UniformBuffers[((AstOperand)src1).Value];
elemPointer = context.AccessChain(context.TypePointer(StorageClass.Uniform, context.TypeFP32()), ubVariable, i1, i2, i3);
}
value = context.Load(context.TypeFP32(), elemPointer);
}
return new OperationResult(AggregateType.FP32, value);
}
private static OperationResult GenerateLoadLocal(CodeGenContext context, AstOperation operation)
{
return GenerateLoadLocalOrShared(context, operation, StorageClass.Private, context.LocalMemory);
@ -1102,6 +1038,11 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
return GenerateBinaryU32(context, operation, context.Delegates.GlslUMin);
}
private static OperationResult GenerateModulo(CodeGenContext context, AstOperation operation)
{
return GenerateBinary(context, operation, context.Delegates.FMod, null);
}
private static OperationResult GenerateMultiply(CodeGenContext context, AstOperation operation)
{
return GenerateBinary(context, operation, context.Delegates.FMul, context.Delegates.IMul);
@ -1163,7 +1104,15 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
private static OperationResult GenerateReturn(CodeGenContext context, AstOperation operation)
{
context.Return();
if (operation.SourcesCount != 0)
{
context.ReturnValue(context.Get(context.CurrentFunction.ReturnType, operation.GetSource(0)));
}
else
{
context.Return();
}
return OperationResult.Invalid;
}
@ -1501,35 +1450,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
}
}
SpvInstruction ApplyBias(SpvInstruction vector, SpvInstruction image)
{
int gatherBiasPrecision = context.Config.GpuAccessor.QueryHostGatherBiasPrecision();
if (isGather && gatherBiasPrecision != 0)
{
// GPU requires texture gather to be slightly offset to match NVIDIA behaviour when point is exactly between two texels.
// Offset by the gather precision divided by 2 to correct for rounding.
var sizeType = pCount == 1 ? context.TypeS32() : context.TypeVector(context.TypeS32(), pCount);
var pVectorType = pCount == 1 ? context.TypeFP32() : context.TypeVector(context.TypeFP32(), pCount);
var bias = context.Constant(context.TypeFP32(), (float)(1 << (gatherBiasPrecision + 1)));
var biasVector = context.CompositeConstruct(pVectorType, Enumerable.Repeat(bias, pCount).ToArray());
var one = context.Constant(context.TypeFP32(), 1f);
var oneVector = context.CompositeConstruct(pVectorType, Enumerable.Repeat(one, pCount).ToArray());
var divisor = context.FMul(
pVectorType,
context.ConvertSToF(pVectorType, context.ImageQuerySize(sizeType, image)),
biasVector);
vector = context.FAdd(pVectorType, vector, context.FDiv(pVectorType, oneVector, divisor));
}
return vector;
}
SpvInstruction pCoords = AssemblePVector(pCount);
pCoords = ScalingHelpers.ApplyScaling(context, texOp, pCoords, intCoords, isBindless, isIndexed, isArray, pCount);
SpvInstruction AssembleDerivativesVector(int count)
{
@ -1623,7 +1544,19 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
if (hasLodBias)
{
lodBias = Src(AggregateType.FP32);
lodBias = Src(AggregateType.FP32);
}
if (!isGather && !intCoords && !isMultisample && !hasLodLevel && !hasDerivatives && context.Config.Stage != ShaderStage.Fragment)
{
// Implicit LOD is only valid on fragment.
// Use the LOD bias as explicit LOD if available.
lod = lodBias ?? context.Constant(context.TypeFP32(), 0f);
lodBias = null;
hasLodBias = false;
hasLodLevel = true;
}
SpvInstruction compIdx = null;
@ -1688,8 +1621,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
image = context.Image(imageType, image);
}
pCoords = ApplyBias(pCoords, image);
var operands = operandsList.ToArray();
SpvInstruction result;
@ -1805,11 +1736,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
result = context.CompositeExtract(context.TypeS32(), result, (SpvLiteralInteger)texOp.Index);
}
if (texOp.Index < 2 || (type & SamplerType.Mask) == SamplerType.Texture3D)
{
result = ScalingHelpers.ApplyUnscaling(context, texOp.WithType(type), result, isBindless, isIndexed);
}
return new OperationResult(AggregateType.S32, result);
}
}
@ -1978,12 +1904,32 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
StorageKind storageKind = operation.StorageKind;
SpvInstruction pointer;
StorageClass storageClass;
SpvInstruction baseObj;
AggregateType varType;
int srcIndex = 0;
switch (storageKind)
{
case StorageKind.ConstantBuffer:
if (!(operation.GetSource(srcIndex++) is AstOperand bindingIndex) || bindingIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"First input of {operation.Inst} with {storageKind} storage must be a constant operand.");
}
if (!(operation.GetSource(srcIndex) is AstOperand fieldIndex) || fieldIndex.Type != OperandType.Constant)
{
throw new InvalidOperationException($"Second input of {operation.Inst} with {storageKind} storage must be a constant operand.");
}
BufferDefinition buffer = context.Config.Properties.ConstantBuffers[bindingIndex.Value];
StructureField field = buffer.Type.Fields[fieldIndex.Value];
storageClass = StorageClass.Uniform;
varType = field.Type & AggregateType.ElementTypeMask;
baseObj = context.ConstantBuffers[bindingIndex.Value];
break;
case StorageKind.Input:
case StorageKind.InputPerPatch:
case StorageKind.Output:
@ -2026,33 +1972,6 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
varType = context.Config.GetFragmentOutputColorType(location);
}
else if (ioVariable == IoVariable.FragmentOutputIsBgra)
{
var pointerType = context.TypePointer(StorageClass.Uniform, context.TypeU32());
var elemIndex = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(pointerType, context.SupportBuffer, context.Constant(context.TypeU32(), 1), elemIndex);
varType = AggregateType.U32;
break;
}
else if (ioVariable == IoVariable.SupportBlockRenderScale)
{
var pointerType = context.TypePointer(StorageClass.Uniform, context.TypeFP32());
var elemIndex = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(pointerType, context.SupportBuffer, context.Constant(context.TypeU32(), 4), elemIndex);
varType = AggregateType.FP32;
break;
}
else if (ioVariable == IoVariable.SupportBlockViewInverse)
{
var pointerType = context.TypePointer(StorageClass.Uniform, context.TypeFP32());
var elemIndex = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(pointerType, context.SupportBuffer, context.Constant(context.TypeU32(), 2), elemIndex);
varType = AggregateType.FP32;
break;
}
else
{
(_, varType) = IoMap.GetSpirvBuiltIn(ioVariable);
@ -2060,55 +1979,57 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
varType &= AggregateType.ElementTypeMask;
int inputsCount = (isStore ? operation.SourcesCount - 1 : operation.SourcesCount) - srcIndex;
var storageClass = isOutput ? StorageClass.Output : StorageClass.Input;
storageClass = isOutput ? StorageClass.Output : StorageClass.Input;
var ioDefinition = new IoDefinition(storageKind, ioVariable, location, component);
var dict = isPerPatch
? (isOutput ? context.OutputsPerPatch : context.InputsPerPatch)
: (isOutput ? context.Outputs : context.Inputs);
SpvInstruction baseObj = dict[ioDefinition];
SpvInstruction e0, e1, e2;
switch (inputsCount)
{
case 0:
pointer = baseObj;
break;
case 1:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0);
break;
case 2:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e1 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0, e1);
break;
case 3:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e1 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e2 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0, e1, e2);
break;
default:
var indexes = new SpvInstruction[inputsCount];
int index = 0;
for (; index < inputsCount; srcIndex++, index++)
{
indexes[index] = context.Get(AggregateType.S32, operation.GetSource(srcIndex));
}
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, indexes);
break;
}
baseObj = dict[ioDefinition];
break;
default:
throw new InvalidOperationException($"Invalid storage kind {storageKind}.");
}
int inputsCount = (isStore ? operation.SourcesCount - 1 : operation.SourcesCount) - srcIndex;
SpvInstruction e0, e1, e2;
SpvInstruction pointer;
switch (inputsCount)
{
case 0:
pointer = baseObj;
break;
case 1:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0);
break;
case 2:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e1 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0, e1);
break;
case 3:
e0 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e1 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
e2 = context.Get(AggregateType.S32, operation.GetSource(srcIndex++));
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, e0, e1, e2);
break;
default:
var indexes = new SpvInstruction[inputsCount];
int index = 0;
for (; index < inputsCount; srcIndex++, index++)
{
indexes[index] = context.Get(AggregateType.S32, operation.GetSource(srcIndex));
}
pointer = context.AccessChain(context.TypePointer(storageClass, context.GetType(varType)), baseObj, indexes);
break;
}
if (isStore)
{
context.Store(pointer, context.Get(varType, operation.GetSource(srcIndex)));
@ -2324,7 +2245,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
var result = emitF(context.TypeFP64(), context.GetFP64(src1), context.GetFP64(src2));
if (!context.Config.GpuAccessor.QueryHostReducedPrecision())
if (!context.Config.GpuAccessor.QueryHostReducedPrecision() || operation.ForcePrecise)
{
context.Decorate(result, Decoration.NoContraction);
}
@ -2335,7 +2256,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
var result = emitF(context.TypeFP32(), context.GetFP32(src1), context.GetFP32(src2));
if (!context.Config.GpuAccessor.QueryHostReducedPrecision())
if (!context.Config.GpuAccessor.QueryHostReducedPrecision() || operation.ForcePrecise)
{
context.Decorate(result, Decoration.NoContraction);
}
@ -2395,7 +2316,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
var result = emitF(context.TypeFP64(), context.GetFP64(src1), context.GetFP64(src2), context.GetFP64(src3));
if (!context.Config.GpuAccessor.QueryHostReducedPrecision())
if (!context.Config.GpuAccessor.QueryHostReducedPrecision() || operation.ForcePrecise)
{
context.Decorate(result, Decoration.NoContraction);
}
@ -2406,7 +2327,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
var result = emitF(context.TypeFP32(), context.GetFP32(src1), context.GetFP32(src2), context.GetFP32(src3));
if (!context.Config.GpuAccessor.QueryHostReducedPrecision())
if (!context.Config.GpuAccessor.QueryHostReducedPrecision() || operation.ForcePrecise)
{
context.Decorate(result, Decoration.NoContraction);
}

View File

@ -1,227 +0,0 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.StructuredIr;
using Ryujinx.Graphics.Shader.Translation;
using static Spv.Specification;
namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
{
using SpvInstruction = Spv.Generator.Instruction;
static class ScalingHelpers
{
public static SpvInstruction ApplyScaling(
CodeGenContext context,
AstTextureOperation texOp,
SpvInstruction vector,
bool intCoords,
bool isBindless,
bool isIndexed,
bool isArray,
int pCount)
{
if (intCoords)
{
if (context.Config.Stage.SupportsRenderScale() &&
!isBindless &&
!isIndexed)
{
int index = texOp.Inst == Instruction.ImageLoad
? context.Config.GetTextureDescriptors().Length + context.Config.FindImageDescriptorIndex(texOp)
: context.Config.FindTextureDescriptorIndex(texOp);
if (pCount == 3 && isArray)
{
return ApplyScaling2DArray(context, vector, index);
}
else if (pCount == 2 && !isArray)
{
return ApplyScaling2D(context, vector, index);
}
}
}
return vector;
}
private static SpvInstruction ApplyScaling2DArray(CodeGenContext context, SpvInstruction vector, int index)
{
// The array index is not scaled, just x and y.
var vectorXY = context.VectorShuffle(context.TypeVector(context.TypeS32(), 2), vector, vector, 0, 1);
var vectorZ = context.CompositeExtract(context.TypeS32(), vector, 2);
var vectorXYScaled = ApplyScaling2D(context, vectorXY, index);
var vectorScaled = context.CompositeConstruct(context.TypeVector(context.TypeS32(), 3), vectorXYScaled, vectorZ);
return vectorScaled;
}
private static SpvInstruction ApplyScaling2D(CodeGenContext context, SpvInstruction vector, int index)
{
var pointerType = context.TypePointer(StorageClass.Uniform, context.TypeFP32());
var fieldIndex = context.Constant(context.TypeU32(), 4);
var scaleIndex = context.Constant(context.TypeU32(), index);
if (context.Config.Stage == ShaderStage.Vertex)
{
var scaleCountPointerType = context.TypePointer(StorageClass.Uniform, context.TypeS32());
var scaleCountElemPointer = context.AccessChain(scaleCountPointerType, context.SupportBuffer, context.Constant(context.TypeU32(), 3));
var scaleCount = context.Load(context.TypeS32(), scaleCountElemPointer);
scaleIndex = context.IAdd(context.TypeU32(), scaleIndex, scaleCount);
}
scaleIndex = context.IAdd(context.TypeU32(), scaleIndex, context.Constant(context.TypeU32(), 1));
var scaleElemPointer = context.AccessChain(pointerType, context.SupportBuffer, fieldIndex, scaleIndex);
var scale = context.Load(context.TypeFP32(), scaleElemPointer);
var ivector2Type = context.TypeVector(context.TypeS32(), 2);
var localVector = context.CoordTemp;
var passthrough = context.FOrdEqual(context.TypeBool(), scale, context.Constant(context.TypeFP32(), 1f));
var mergeLabel = context.Label();
if (context.Config.Stage == ShaderStage.Fragment)
{
var scaledInterpolatedLabel = context.Label();
var scaledNoInterpolationLabel = context.Label();
var needsInterpolation = context.FOrdLessThan(context.TypeBool(), scale, context.Constant(context.TypeFP32(), 0f));
context.SelectionMerge(mergeLabel, SelectionControlMask.MaskNone);
context.BranchConditional(needsInterpolation, scaledInterpolatedLabel, scaledNoInterpolationLabel);
// scale < 0.0
context.AddLabel(scaledInterpolatedLabel);
ApplyScalingInterpolated(context, localVector, vector, scale);
context.Branch(mergeLabel);
// scale >= 0.0
context.AddLabel(scaledNoInterpolationLabel);
ApplyScalingNoInterpolation(context, localVector, vector, scale);
context.Branch(mergeLabel);
context.AddLabel(mergeLabel);
var passthroughLabel = context.Label();
var finalMergeLabel = context.Label();
context.SelectionMerge(finalMergeLabel, SelectionControlMask.MaskNone);
context.BranchConditional(passthrough, passthroughLabel, finalMergeLabel);
context.AddLabel(passthroughLabel);
context.Store(localVector, vector);
context.Branch(finalMergeLabel);
context.AddLabel(finalMergeLabel);
return context.Load(ivector2Type, localVector);
}
else
{
var passthroughLabel = context.Label();
var scaledLabel = context.Label();
context.SelectionMerge(mergeLabel, SelectionControlMask.MaskNone);
context.BranchConditional(passthrough, passthroughLabel, scaledLabel);
// scale == 1.0
context.AddLabel(passthroughLabel);
context.Store(localVector, vector);
context.Branch(mergeLabel);
// scale != 1.0
context.AddLabel(scaledLabel);
ApplyScalingNoInterpolation(context, localVector, vector, scale);
context.Branch(mergeLabel);
context.AddLabel(mergeLabel);
return context.Load(ivector2Type, localVector);
}
}
private static void ApplyScalingInterpolated(CodeGenContext context, SpvInstruction output, SpvInstruction vector, SpvInstruction scale)
{
var vector2Type = context.TypeVector(context.TypeFP32(), 2);
var scaleNegated = context.FNegate(context.TypeFP32(), scale);
var scaleVector = context.CompositeConstruct(vector2Type, scaleNegated, scaleNegated);
var vectorFloat = context.ConvertSToF(vector2Type, vector);
var vectorScaled = context.VectorTimesScalar(vector2Type, vectorFloat, scaleNegated);
var fragCoordPointer = context.Inputs[new IoDefinition(StorageKind.Input, IoVariable.FragmentCoord)];
var fragCoord = context.Load(context.TypeVector(context.TypeFP32(), 4), fragCoordPointer);
var fragCoordXY = context.VectorShuffle(vector2Type, fragCoord, fragCoord, 0, 1);
var scaleMod = context.FMod(vector2Type, fragCoordXY, scaleVector);
var vectorInterpolated = context.FAdd(vector2Type, vectorScaled, scaleMod);
context.Store(output, context.ConvertFToS(context.TypeVector(context.TypeS32(), 2), vectorInterpolated));
}
private static void ApplyScalingNoInterpolation(CodeGenContext context, SpvInstruction output, SpvInstruction vector, SpvInstruction scale)
{
if (context.Config.Stage == ShaderStage.Vertex)
{
scale = context.GlslFAbs(context.TypeFP32(), scale);
}
var vector2Type = context.TypeVector(context.TypeFP32(), 2);
var vectorFloat = context.ConvertSToF(vector2Type, vector);
var vectorScaled = context.VectorTimesScalar(vector2Type, vectorFloat, scale);
context.Store(output, context.ConvertFToS(context.TypeVector(context.TypeS32(), 2), vectorScaled));
}
public static SpvInstruction ApplyUnscaling(
CodeGenContext context,
AstTextureOperation texOp,
SpvInstruction size,
bool isBindless,
bool isIndexed)
{
if (context.Config.Stage.SupportsRenderScale() &&
!isBindless &&
!isIndexed)
{
int index = context.Config.FindTextureDescriptorIndex(texOp);
var pointerType = context.TypePointer(StorageClass.Uniform, context.TypeFP32());
var fieldIndex = context.Constant(context.TypeU32(), 4);
var scaleIndex = context.Constant(context.TypeU32(), index);
if (context.Config.Stage == ShaderStage.Vertex)
{
var scaleCountPointerType = context.TypePointer(StorageClass.Uniform, context.TypeS32());
var scaleCountElemPointer = context.AccessChain(scaleCountPointerType, context.SupportBuffer, context.Constant(context.TypeU32(), 3));
var scaleCount = context.Load(context.TypeS32(), scaleCountElemPointer);
scaleIndex = context.IAdd(context.TypeU32(), scaleIndex, scaleCount);
}
scaleIndex = context.IAdd(context.TypeU32(), scaleIndex, context.Constant(context.TypeU32(), 1));
var scaleElemPointer = context.AccessChain(pointerType, context.SupportBuffer, fieldIndex, scaleIndex);
var scale = context.GlslFAbs(context.TypeFP32(), context.Load(context.TypeFP32(), scaleElemPointer));
var passthrough = context.FOrdEqual(context.TypeBool(), scale, context.Constant(context.TypeFP32(), 1f));
var sizeFloat = context.ConvertSToF(context.TypeFP32(), size);
var sizeUnscaled = context.FDiv(context.TypeFP32(), sizeFloat, scale);
var sizeUnscaledInt = context.ConvertFToS(context.TypeS32(), sizeUnscaled);
return context.Select(context.TypeS32(), passthrough, size, sizeUnscaledInt);
}
return size;
}
}
}

View File

@ -67,6 +67,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
public readonly FuncBinaryInstruction GlslSMax;
public readonly FuncBinaryInstruction GlslFMin;
public readonly FuncBinaryInstruction GlslSMin;
public readonly FuncBinaryInstruction FMod;
public readonly FuncBinaryInstruction FMul;
public readonly FuncBinaryInstruction IMul;
public readonly FuncBinaryInstruction FSub;
@ -174,6 +175,7 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
GlslSMax = context.GlslSMax;
GlslFMin = context.GlslFMin;
GlslSMin = context.GlslSMin;
FMod = context.FMod;
FMul = context.FMul;
IMul = context.IMul;
FSub = context.FSub;

View File

@ -144,10 +144,9 @@ namespace Ryujinx.Graphics.Shader.CodeGen.Spirv
private static void Generate(CodeGenContext context, StructuredProgramInfo info, int funcIndex)
{
var function = info.Functions[funcIndex];
(_, var spvFunc) = context.GetFunction(funcIndex);
(var function, var spvFunc) = context.GetFunction(funcIndex);
context.CurrentFunction = function;
context.AddFunction(spvFunc);
context.StartFunction();

View File

@ -187,27 +187,6 @@ namespace Ryujinx.Graphics.Shader.Instructions
context.Config.GpuAccessor.Log("Shader instruction Longjmp is not implemented.");
}
public static void P2rR(EmitterContext context)
{
InstP2rR op = context.GetOp<InstP2rR>();
context.Config.GpuAccessor.Log("Shader instruction P2rR is not implemented.");
}
public static void P2rI(EmitterContext context)
{
InstP2rI op = context.GetOp<InstP2rI>();
context.Config.GpuAccessor.Log("Shader instruction P2rI is not implemented.");
}
public static void P2rC(EmitterContext context)
{
InstP2rC op = context.GetOp<InstP2rC>();
context.Config.GpuAccessor.Log("Shader instruction P2rC is not implemented.");
}
public static void Pexit(EmitterContext context)
{
InstPexit op = context.GetOp<InstPexit>();

View File

@ -160,7 +160,7 @@ namespace Ryujinx.Graphics.Shader.Instructions
{
// FragCoord X/Y must be divided by the render target scale, if resolution scaling is active,
// because the shader code is not expecting scaled values.
res = context.FPDivide(res, context.Load(StorageKind.Input, IoVariable.SupportBlockRenderScale, null, Const(0)));
res = context.FPDivide(res, context.Load(StorageKind.ConstantBuffer, SupportBuffer.Binding, Const((int)SupportBufferField.RenderScale), Const(0)));
}
else if (op.Imm10 == AttributeConsts.FrontFacing && context.Config.GpuAccessor.QueryHostHasFrontFacingBug())
{

View File

@ -1,6 +1,7 @@
using Ryujinx.Graphics.Shader.Decoders;
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.Translation;
using System.Numerics;
using static Ryujinx.Graphics.Shader.Instructions.InstEmitHelper;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
@ -80,7 +81,6 @@ namespace Ryujinx.Graphics.Shader.Instructions
Operand addr = context.IAdd(srcA, Const(Imm16ToSInt(op.CbufOffset)));
Operand wordOffset = context.ShiftRightU32(addr, Const(2));
Operand bitOffset = GetBitOffset(context, addr);
for (int index = 0; index < count; index++)
{
@ -92,11 +92,11 @@ namespace Ryujinx.Graphics.Shader.Instructions
}
Operand offset = context.IAdd(wordOffset, Const(index));
Operand value = context.LoadConstant(slot, offset);
Operand value = EmitLoadConstant(context, slot, offset);
if (isSmallInt)
{
value = ExtractSmallInt(context, (LsSize)op.LsSize, bitOffset, value);
value = ExtractSmallInt(context, (LsSize)op.LsSize, GetBitOffset(context, addr), value);
}
context.Copy(Register(dest), value);
@ -154,6 +154,39 @@ namespace Ryujinx.Graphics.Shader.Instructions
EmitStore(context, MemoryRegion.Shared, op.LsSize, GetSrcReg(context, op.SrcA), op.Dest, Imm24ToSInt(op.Imm24));
}
private static Operand EmitLoadConstant(EmitterContext context, Operand slot, Operand offset)
{
Operand vecIndex = context.ShiftRightU32(offset, Const(2));
Operand elemIndex = context.BitwiseAnd(offset, Const(3));
if (slot.Type == OperandType.Constant)
{
int binding = context.Config.ResourceManager.GetConstantBufferBinding(slot.Value);
return context.Load(StorageKind.ConstantBuffer, binding, Const(0), vecIndex, elemIndex);
}
else
{
Operand value = Const(0);
uint cbUseMask = context.Config.GpuAccessor.QueryConstantBufferUse();
while (cbUseMask != 0)
{
int cbIndex = BitOperations.TrailingZeroCount(cbUseMask);
int binding = context.Config.ResourceManager.GetConstantBufferBinding(cbIndex);
Operand isCurrent = context.ICompareEqual(slot, Const(cbIndex));
Operand currentValue = context.Load(StorageKind.ConstantBuffer, binding, Const(0), vecIndex, elemIndex);
value = context.ConditionalSelect(isCurrent, currentValue, value);
cbUseMask &= ~(1u << cbIndex);
}
return value;
}
}
private static Operand EmitAtomicOp(
EmitterContext context,
StorageKind storageKind,

View File

@ -209,21 +209,15 @@ namespace Ryujinx.Graphics.Shader.Instructions
return context.ICompareNotEqual(context.BitwiseAnd(value, Const(1 << bit)), Const(0));
}
if (ccpr)
int count = ccpr ? RegisterConsts.FlagsCount : RegisterConsts.PredsCount;
RegisterType type = ccpr ? RegisterType.Flag : RegisterType.Predicate;
int shift = (int)byteSel * 8;
for (int bit = 0; bit < count; bit++)
{
// TODO: Support Register to condition code flags copy.
context.Config.GpuAccessor.Log("R2P.CC not implemented.");
}
else
{
int shift = (int)byteSel * 8;
for (int bit = 0; bit < RegisterConsts.PredsCount; bit++)
{
Operand pred = Register(bit, RegisterType.Predicate);
Operand res = context.ConditionalSelect(Test(mask, bit), Test(value, bit + shift), pred);
context.Copy(pred, res);
}
Operand flag = Register(bit, type);
Operand res = context.ConditionalSelect(Test(mask, bit), Test(value, bit + shift), flag);
context.Copy(flag, res);
}
}

View File

@ -1,7 +1,6 @@
using Ryujinx.Graphics.Shader.Decoders;
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.Translation;
using static Ryujinx.Graphics.Shader.Instructions.InstEmitAluHelper;
using static Ryujinx.Graphics.Shader.Instructions.InstEmitHelper;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
@ -50,5 +49,68 @@ namespace Ryujinx.Graphics.Shader.Instructions
context.Copy(Register(op.DestPred, RegisterType.Predicate), p0Res);
context.Copy(Register(op.DestPredInv, RegisterType.Predicate), p1Res);
}
public static void P2rC(EmitterContext context)
{
InstP2rC op = context.GetOp<InstP2rC>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand dest = GetSrcReg(context, op.Dest);
Operand mask = GetSrcCbuf(context, op.CbufSlot, op.CbufOffset);
EmitP2r(context, srcA, dest, mask, op.ByteSel, op.Ccpr);
}
public static void P2rI(EmitterContext context)
{
InstP2rI op = context.GetOp<InstP2rI>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand dest = GetSrcReg(context, op.Dest);
Operand mask = GetSrcImm(context, op.Imm20);
EmitP2r(context, srcA, dest, mask, op.ByteSel, op.Ccpr);
}
public static void P2rR(EmitterContext context)
{
InstP2rR op = context.GetOp<InstP2rR>();
Operand srcA = GetSrcReg(context, op.SrcA);
Operand dest = GetSrcReg(context, op.Dest);
Operand mask = GetSrcReg(context, op.SrcB);
EmitP2r(context, srcA, dest, mask, op.ByteSel, op.Ccpr);
}
private static void EmitP2r(
EmitterContext context,
Operand srcA,
Operand dest,
Operand mask,
ByteSel byteSel,
bool ccpr)
{
int count = ccpr ? RegisterConsts.FlagsCount : RegisterConsts.PredsCount;
int shift = (int)byteSel * 8;
mask = context.BitwiseAnd(mask, Const(0xff));
Operand insert = Const(0);
for (int i = 0; i < count; i++)
{
Operand condition = ccpr
? Register(i, RegisterType.Flag)
: Register(i, RegisterType.Predicate);
Operand bit = context.ConditionalSelect(condition, Const(1 << (i + shift)), Const(0));
insert = context.BitwiseOr(insert, bit);
}
Operand maskShifted = context.ShiftLeft(mask, Const(shift));
Operand masked = context.BitwiseAnd(srcA, context.BitwiseNot(maskShifted));
Operand res = context.BitwiseOr(masked, context.BitwiseAnd(insert, maskShifted));
context.Copy(dest, res);
}
}
}

View File

@ -79,7 +79,6 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
ImageAtomic,
IsNan,
Load,
LoadConstant,
LoadGlobal,
LoadLocal,
LoadShared,
@ -98,6 +97,7 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
MemoryBarrier,
Minimum,
MinimumU32,
Modulo,
Multiply,
MultiplyHighS32,
MultiplyHighU32,

View File

@ -15,7 +15,6 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
FragmentCoord,
FragmentOutputColor,
FragmentOutputDepth,
FragmentOutputIsBgra, // TODO: Remove and use constant buffer access.
FrontColorDiffuse,
FrontColorSpecular,
FrontFacing,
@ -34,8 +33,6 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
SubgroupLaneId,
SubgroupLeMask,
SubgroupLtMask,
SupportBlockViewInverse, // TODO: Remove and use constant buffer access.
SupportBlockRenderScale, // TODO: Remove and use constant buffer access.
TessellationCoord,
TessellationLevelInner,
TessellationLevelOuter,

View File

@ -8,6 +8,8 @@ namespace Ryujinx.Graphics.Shader.IntermediateRepresentation
public Instruction Inst { get; private set; }
public StorageKind StorageKind { get; }
public bool ForcePrecise { get; set; }
private Operand[] _dests;
public Operand Dest

View File

@ -4,10 +4,6 @@
<TargetFramework>net7.0</TargetFramework>
</PropertyGroup>
<ItemGroup>
<None Remove="CodeGen\Glsl\HelperFunctions\TexelFetchScale_vp.glsl" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Ryujinx.Common\Ryujinx.Common.csproj" />
<ProjectReference Include="..\Spv.Generator\Spv.Generator.csproj" />
@ -25,9 +21,6 @@
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\StoreSharedSmallInt.glsl" />
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\StoreStorageSmallInt.glsl" />
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\SwizzleAdd.glsl" />
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\TexelFetchScale_vp.glsl" />
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\TexelFetchScale_fp.glsl" />
<EmbeddedResource Include="CodeGen\Glsl\HelperFunctions\TexelFetchScale_cp.glsl" />
</ItemGroup>
</Project>

View File

@ -15,9 +15,6 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
public int Value { get; }
public int CbufSlot { get; }
public int CbufOffset { get; }
private AstOperand()
{
Defs = new HashSet<IAstNode>();
@ -29,16 +26,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
public AstOperand(Operand operand) : this()
{
Type = operand.Type;
if (Type == OperandType.ConstantBuffer)
{
CbufSlot = operand.GetCbufSlot();
CbufOffset = operand.GetCbufOffset();
}
else
{
Value = operand.Value;
}
Value = operand.Value;
}
public AstOperand(OperandType type, int value = 0) : this()

View File

@ -10,6 +10,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
{
public Instruction Inst { get; }
public StorageKind StorageKind { get; }
public bool ForcePrecise { get; }
public int Index { get; }
@ -17,10 +18,11 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
public int SourcesCount => _sources.Length;
public AstOperation(Instruction inst, StorageKind storageKind, IAstNode[] sources, int sourcesCount)
public AstOperation(Instruction inst, StorageKind storageKind, bool forcePrecise, IAstNode[] sources, int sourcesCount)
{
Inst = inst;
StorageKind = storageKind;
ForcePrecise = forcePrecise;
_sources = sources;
for (int index = 0; index < sources.Length; index++)
@ -38,12 +40,18 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
Index = 0;
}
public AstOperation(Instruction inst, StorageKind storageKind, int index, IAstNode[] sources, int sourcesCount) : this(inst, storageKind, sources, sourcesCount)
public AstOperation(
Instruction inst,
StorageKind storageKind,
bool forcePrecise,
int index,
IAstNode[] sources,
int sourcesCount) : this(inst, storageKind, forcePrecise, sources, sourcesCount)
{
Index = index;
}
public AstOperation(Instruction inst, params IAstNode[] sources) : this(inst, StorageKind.None, sources, sources.Length)
public AstOperation(Instruction inst, params IAstNode[] sources) : this(inst, StorageKind.None, false, sources, sources.Length)
{
}

View File

@ -19,7 +19,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
int cbufSlot,
int handle,
int index,
params IAstNode[] sources) : base(inst, StorageKind.None, index, sources, sources.Length)
params IAstNode[] sources) : base(inst, StorageKind.None, false, index, sources, sources.Length)
{
Type = type;
Format = format;
@ -27,10 +27,5 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
CbufSlot = cbufSlot;
Handle = handle;
}
public AstTextureOperation WithType(SamplerType type)
{
return new AstTextureOperation(Inst, type, Format, Flags, CbufSlot, Handle, Index);
}
}
}

View File

@ -0,0 +1,20 @@
namespace Ryujinx.Graphics.Shader.StructuredIr
{
readonly struct BufferDefinition
{
public BufferLayout Layout { get; }
public int Set { get; }
public int Binding { get; }
public string Name { get; }
public StructureType Type { get; }
public BufferDefinition(BufferLayout layout, int set, int binding, string name, StructureType type)
{
Layout = layout;
Set = set;
Binding = binding;
Name = name;
Type = type;
}
}
}

View File

@ -0,0 +1,8 @@
namespace Ryujinx.Graphics.Shader.StructuredIr
{
enum BufferLayout
{
Std140,
Std430
}
}

View File

@ -90,7 +90,6 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
Add(Instruction.ImageAtomic, AggregateType.S32);
Add(Instruction.IsNan, AggregateType.Bool, AggregateType.Scalar);
Add(Instruction.Load, AggregateType.FP32);
Add(Instruction.LoadConstant, AggregateType.FP32, AggregateType.S32, AggregateType.S32);
Add(Instruction.LoadGlobal, AggregateType.U32, AggregateType.S32, AggregateType.S32);
Add(Instruction.LoadLocal, AggregateType.U32, AggregateType.S32);
Add(Instruction.LoadShared, AggregateType.U32, AggregateType.S32);
@ -105,6 +104,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
Add(Instruction.MaximumU32, AggregateType.U32, AggregateType.U32, AggregateType.U32);
Add(Instruction.Minimum, AggregateType.Scalar, AggregateType.Scalar, AggregateType.Scalar);
Add(Instruction.MinimumU32, AggregateType.U32, AggregateType.U32, AggregateType.U32);
Add(Instruction.Modulo, AggregateType.Scalar, AggregateType.Scalar, AggregateType.Scalar);
Add(Instruction.Multiply, AggregateType.Scalar, AggregateType.Scalar, AggregateType.Scalar);
Add(Instruction.MultiplyHighS32, AggregateType.S32, AggregateType.S32, AggregateType.S32);
Add(Instruction.MultiplyHighU32, AggregateType.U32, AggregateType.U32, AggregateType.U32);

View File

@ -24,7 +24,6 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
{
OperandType.Argument => AggregateType.S32,
OperandType.Constant => AggregateType.S32,
OperandType.ConstantBuffer => AggregateType.FP32,
OperandType.Undefined => AggregateType.S32,
_ => throw new ArgumentException($"Invalid operand type \"{type}\".")
};

View File

@ -0,0 +1,21 @@
using System.Collections.Generic;
namespace Ryujinx.Graphics.Shader.StructuredIr
{
class ShaderProperties
{
private readonly Dictionary<int, BufferDefinition> _constantBuffers;
public IReadOnlyDictionary<int, BufferDefinition> ConstantBuffers => _constantBuffers;
public ShaderProperties()
{
_constantBuffers = new Dictionary<int, BufferDefinition>();
}
public void AddConstantBuffer(int binding, BufferDefinition definition)
{
_constantBuffers[binding] = definition;
}
}
}

View File

@ -0,0 +1,28 @@
using Ryujinx.Graphics.Shader.Translation;
namespace Ryujinx.Graphics.Shader.StructuredIr
{
struct StructureField
{
public AggregateType Type { get; }
public string Name { get; }
public int ArrayLength { get; }
public StructureField(AggregateType type, string name, int arrayLength = 1)
{
Type = type;
Name = name;
ArrayLength = arrayLength;
}
}
class StructureType
{
public StructureField[] Fields { get; }
public StructureType(StructureField[] fields)
{
Fields = fields;
}
}
}

View File

@ -8,11 +8,11 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
{
static class StructuredProgram
{
public static StructuredProgramInfo MakeStructuredProgram(Function[] functions, ShaderConfig config)
public static StructuredProgramInfo MakeStructuredProgram(IReadOnlyList<Function> functions, ShaderConfig config)
{
StructuredProgramContext context = new StructuredProgramContext(config);
for (int funcIndex = 0; funcIndex < functions.Length; funcIndex++)
for (int funcIndex = 0; funcIndex < functions.Count; funcIndex++)
{
Function function = functions[funcIndex];
@ -73,27 +73,34 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
Instruction inst = operation.Inst;
StorageKind storageKind = operation.StorageKind;
if ((inst == Instruction.Load || inst == Instruction.Store) && storageKind.IsInputOrOutput())
if (inst == Instruction.Load || inst == Instruction.Store)
{
IoVariable ioVariable = (IoVariable)operation.GetSource(0).Value;
bool isOutput = storageKind.IsOutput();
bool perPatch = storageKind.IsPerPatch();
int location = 0;
int component = 0;
if (context.Config.HasPerLocationInputOrOutput(ioVariable, isOutput))
if (storageKind.IsInputOrOutput())
{
location = operation.GetSource(1).Value;
IoVariable ioVariable = (IoVariable)operation.GetSource(0).Value;
bool isOutput = storageKind.IsOutput();
bool perPatch = storageKind.IsPerPatch();
int location = 0;
int component = 0;
if (operation.SourcesCount > 2 &&
operation.GetSource(2).Type == OperandType.Constant &&
context.Config.HasPerLocationInputOrOutputComponent(ioVariable, location, operation.GetSource(2).Value, isOutput))
if (context.Config.HasPerLocationInputOrOutput(ioVariable, isOutput))
{
component = operation.GetSource(2).Value;
}
}
location = operation.GetSource(1).Value;
context.Info.IoDefinitions.Add(new IoDefinition(storageKind, ioVariable, location, component));
if (operation.SourcesCount > 2 &&
operation.GetSource(2).Type == OperandType.Constant &&
context.Config.HasPerLocationInputOrOutputComponent(ioVariable, location, operation.GetSource(2).Value, isOutput))
{
component = operation.GetSource(2).Value;
}
}
context.Info.IoDefinitions.Add(new IoDefinition(storageKind, ioVariable, location, component));
}
else if (storageKind == StorageKind.ConstantBuffer && operation.GetSource(0).Type == OperandType.Constant)
{
context.Config.ResourceManager.SetUsedConstantBufferBinding(operation.GetSource(0).Value);
}
}
bool vectorDest = IsVectorDestInst(inst);
@ -105,7 +112,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
for (int index = 0; index < operation.SourcesCount; index++)
{
sources[index] = context.GetOperand(operation.GetSource(index));
sources[index] = context.GetOperandOrCbLoad(operation.GetSource(index));
}
for (int index = 0; index < outDestsCount; index++)
@ -149,7 +156,13 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
}
else
{
source = new AstOperation(inst, operation.StorageKind, operation.Index, sources, operation.SourcesCount);
source = new AstOperation(
inst,
operation.StorageKind,
operation.ForcePrecise,
operation.Index,
sources,
operation.SourcesCount);
}
AggregateType destElemType = destType;
@ -172,7 +185,7 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
dest.VarType = destElemType;
context.AddNode(new AstAssignment(dest, new AstOperation(Instruction.VectorExtract, StorageKind.None, new[] { destVec, index }, 2)));
context.AddNode(new AstAssignment(dest, new AstOperation(Instruction.VectorExtract, StorageKind.None, false, new[] { destVec, index }, 2)));
}
}
else if (operation.Dest != null)
@ -220,7 +233,13 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
}
else if (!isCopy)
{
source = new AstOperation(inst, operation.StorageKind, operation.Index, sources, operation.SourcesCount);
source = new AstOperation(
inst,
operation.StorageKind,
operation.ForcePrecise,
operation.Index,
sources,
operation.SourcesCount);
}
else
{
@ -241,7 +260,13 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
}
else
{
context.AddNode(new AstOperation(inst, operation.StorageKind, operation.Index, sources, operation.SourcesCount));
context.AddNode(new AstOperation(
inst,
operation.StorageKind,
operation.ForcePrecise,
operation.Index,
sources,
operation.SourcesCount));
}
// Those instructions needs to be emulated by using helper functions,

View File

@ -298,6 +298,33 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
return newTemp;
}
public IAstNode GetOperandOrCbLoad(Operand operand)
{
if (operand.Type == OperandType.ConstantBuffer)
{
int cbufSlot = operand.GetCbufSlot();
int cbufOffset = operand.GetCbufOffset();
int binding = Config.ResourceManager.GetConstantBufferBinding(cbufSlot);
int vecIndex = cbufOffset >> 2;
int elemIndex = cbufOffset & 3;
Config.ResourceManager.SetUsedConstantBufferBinding(binding);
IAstNode[] sources = new IAstNode[]
{
new AstOperand(OperandType.Constant, binding),
new AstOperand(OperandType.Constant, 0),
new AstOperand(OperandType.Constant, vecIndex),
new AstOperand(OperandType.Constant, elemIndex)
};
return new AstOperation(Instruction.Load, StorageKind.ConstantBuffer, false, sources, sources.Length);
}
return GetOperand(operand);
}
public AstOperand GetOperand(Operand operand)
{
if (operand == null)
@ -307,11 +334,6 @@ namespace Ryujinx.Graphics.Shader.StructuredIr
if (operand.Type != OperandType.LocalVariable)
{
if (operand.Type == OperandType.ConstantBuffer)
{
Config.SetUsedConstantBuffer(operand.GetCbufSlot());
}
return new AstOperand(operand);
}

View File

@ -1,4 +1,6 @@
using Ryujinx.Common.Memory;
using Ryujinx.Graphics.Shader.StructuredIr;
using Ryujinx.Graphics.Shader.Translation;
using System.Runtime.CompilerServices;
namespace Ryujinx.Graphics.Shader
@ -11,8 +13,20 @@ namespace Ryujinx.Graphics.Shader
public T W;
}
enum SupportBufferField
{
// Must match the order of the fields on the struct.
FragmentAlphaTest,
FragmentIsBgra,
ViewportInverse,
FragmentRenderScaleCount,
RenderScale
}
public struct SupportBuffer
{
internal const int Binding = 0;
public static int FieldSize;
public static int RequiredSize;
@ -47,6 +61,18 @@ namespace Ryujinx.Graphics.Shader
ComputeRenderScaleOffset = GraphicsRenderScaleOffset + FieldSize;
}
internal static StructureType GetStructureType()
{
return new StructureType(new[]
{
new StructureField(AggregateType.U32, "s_alpha_test"),
new StructureField(AggregateType.Array | AggregateType.U32, "s_is_bgra", FragmentIsBgraCount),
new StructureField(AggregateType.Vector4 | AggregateType.FP32, "s_viewport_inverse"),
new StructureField(AggregateType.S32, "s_frag_scale_count"),
new StructureField(AggregateType.Array | AggregateType.FP32, "s_render_scale", RenderScaleMaxCount)
});
}
public Vector4<int> FragmentAlphaTest;
public Array8<Vector4<int>> FragmentIsBgra;
public Vector4<float> ViewportInverse;

View File

@ -22,4 +22,35 @@
Array = 1 << 10
}
static class AggregateTypeExtensions
{
public static int GetSizeInBytes(this AggregateType type)
{
int elementSize = (type & AggregateType.ElementTypeMask) switch
{
AggregateType.Bool or
AggregateType.FP32 or
AggregateType.S32 or
AggregateType.U32 => 4,
AggregateType.FP64 => 8,
_ => 0
};
switch (type & AggregateType.ElementCountMask)
{
case AggregateType.Vector2:
elementSize *= 2;
break;
case AggregateType.Vector3:
elementSize *= 3;
break;
case AggregateType.Vector4:
elementSize *= 4;
break;
}
return elementSize;
}
}
}

View File

@ -49,13 +49,17 @@ namespace Ryujinx.Graphics.Shader.Translation
private readonly List<Operation> _operations;
private readonly Dictionary<ulong, BlockLabel> _labels;
public EmitterContext(DecodedProgram program, ShaderConfig config, bool isNonMain)
public EmitterContext()
{
_operations = new List<Operation>();
_labels = new Dictionary<ulong, BlockLabel>();
}
public EmitterContext(DecodedProgram program, ShaderConfig config, bool isNonMain) : this()
{
Program = program;
Config = config;
IsNonMain = isNonMain;
_operations = new List<Operation>();
_labels = new Dictionary<ulong, BlockLabel>();
EmitStart();
}
@ -234,8 +238,8 @@ namespace Ryujinx.Graphics.Shader.Translation
{
Operand x = this.Load(StorageKind.Output, IoVariable.Position, null, Const(0));
Operand y = this.Load(StorageKind.Output, IoVariable.Position, null, Const(1));
Operand xScale = this.Load(StorageKind.Input, IoVariable.SupportBlockViewInverse, null, Const(0));
Operand yScale = this.Load(StorageKind.Input, IoVariable.SupportBlockViewInverse, null, Const(1));
Operand xScale = this.Load(StorageKind.ConstantBuffer, SupportBuffer.Binding, Const((int)SupportBufferField.ViewportInverse), Const(0));
Operand yScale = this.Load(StorageKind.ConstantBuffer, SupportBuffer.Binding, Const((int)SupportBufferField.ViewportInverse), Const(1));
Operand negativeOne = ConstF(-1.0f);
this.Store(StorageKind.Output, IoVariable.Position, null, Const(0), this.FPFusedMultiplyAdd(x, xScale, negativeOne));
@ -420,7 +424,7 @@ namespace Ryujinx.Graphics.Shader.Translation
// Perform B <-> R swap if needed, for BGRA formats (not supported on OpenGL).
if (!supportsBgra && (component == 0 || component == 2))
{
Operand isBgra = this.Load(StorageKind.Input, IoVariable.FragmentOutputIsBgra, null, Const(rtIndex));
Operand isBgra = this.Load(StorageKind.ConstantBuffer, SupportBuffer.Binding, Const((int)SupportBufferField.FragmentIsBgra), Const(rtIndex));
Operand lblIsBgra = Label();
Operand lblEnd = Label();

View File

@ -307,6 +307,11 @@ namespace Ryujinx.Graphics.Shader.Translation
return context.Add(fpType | Instruction.Minimum, Local(), a, b);
}
public static Operand FPModulo(this EmitterContext context, Operand a, Operand b, Instruction fpType = Instruction.FP32)
{
return context.Add(fpType | Instruction.Modulo, Local(), a, b);
}
public static Operand FPMultiply(this EmitterContext context, Operand a, Operand b, Instruction fpType = Instruction.FP32)
{
return context.Add(fpType | Instruction.Multiply, Local(), a, b);
@ -549,11 +554,31 @@ namespace Ryujinx.Graphics.Shader.Translation
return context.Add(fpType | Instruction.IsNan, Local(), a);
}
public static Operand Load(this EmitterContext context, StorageKind storageKind, int binding)
{
return context.Add(Instruction.Load, storageKind, Local(), Const(binding));
}
public static Operand Load(this EmitterContext context, StorageKind storageKind, int binding, Operand e0)
{
return context.Add(Instruction.Load, storageKind, Local(), Const(binding), e0);
}
public static Operand Load(this EmitterContext context, StorageKind storageKind, int binding, Operand e0, Operand e1)
{
return context.Add(Instruction.Load, storageKind, Local(), Const(binding), e0, e1);
}
public static Operand Load(this EmitterContext context, StorageKind storageKind, int binding, Operand e0, Operand e1, Operand e2)
{
return context.Add(Instruction.Load, storageKind, Local(), Const(binding), e0, e1, e2);
}
public static Operand Load(this EmitterContext context, StorageKind storageKind, IoVariable ioVariable, Operand primVertex = null)
{
return primVertex != null
? context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable), primVertex)
: context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable));
? context.Load(storageKind, (int)ioVariable, primVertex)
: context.Load(storageKind, (int)ioVariable);
}
public static Operand Load(
@ -564,8 +589,8 @@ namespace Ryujinx.Graphics.Shader.Translation
Operand elemIndex)
{
return primVertex != null
? context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable), primVertex, elemIndex)
: context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable), elemIndex);
? context.Load(storageKind, (int)ioVariable, primVertex, elemIndex)
: context.Load(storageKind, (int)ioVariable, elemIndex);
}
public static Operand Load(
@ -577,22 +602,8 @@ namespace Ryujinx.Graphics.Shader.Translation
Operand elemIndex)
{
return primVertex != null
? context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable), primVertex, arrayIndex, elemIndex)
: context.Add(Instruction.Load, storageKind, Local(), Const((int)ioVariable), arrayIndex, elemIndex);
}
public static Operand LoadConstant(this EmitterContext context, Operand a, Operand b)
{
if (a.Type == OperandType.Constant)
{
context.Config.SetUsedConstantBuffer(a.Value);
}
else
{
context.Config.SetUsedFeature(FeatureFlags.CbIndexing);
}
return context.Add(Instruction.LoadConstant, Local(), a, b);
? context.Load(storageKind, (int)ioVariable, primVertex, arrayIndex, elemIndex)
: context.Load(storageKind, (int)ioVariable, arrayIndex, elemIndex);
}
public static Operand LoadGlobal(this EmitterContext context, Operand a, Operand b)
@ -650,7 +661,6 @@ namespace Ryujinx.Graphics.Shader.Translation
public static void Return(this EmitterContext context, Operand returnValue)
{
context.PrepareForReturn();
context.Add(Instruction.Return, null, returnValue);
}

View File

@ -19,7 +19,6 @@ namespace Ryujinx.Graphics.Shader.Translation
InstanceId = 1 << 3,
DrawParameters = 1 << 4,
RtLayer = 1 << 5,
CbIndexing = 1 << 6,
IaIndexing = 1 << 7,
OaIndexing = 1 << 8,
FixedFuncAttr = 1 << 9

View File

@ -0,0 +1,134 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using System;
using System.Collections.Generic;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
namespace Ryujinx.Graphics.Shader.Translation
{
class HelperFunctionManager
{
private readonly List<Function> _functionList;
private readonly Dictionary<HelperFunctionName, int> _functionIds;
private readonly ShaderStage _stage;
public HelperFunctionManager(List<Function> functionList, ShaderStage stage)
{
_functionList = functionList;
_functionIds = new Dictionary<HelperFunctionName, int>();
_stage = stage;
}
public int GetOrCreateFunctionId(HelperFunctionName functionName)
{
if (_functionIds.TryGetValue(functionName, out int functionId))
{
return functionId;
}
Function function = GenerateFunction(functionName);
functionId = _functionList.Count;
_functionList.Add(function);
_functionIds.Add(functionName, functionId);
return functionId;
}
private Function GenerateFunction(HelperFunctionName functionName)
{
return functionName switch
{
HelperFunctionName.TexelFetchScale => GenerateTexelFetchScaleFunction(),
HelperFunctionName.TextureSizeUnscale => GenerateTextureSizeUnscaleFunction(),
_ => throw new ArgumentException($"Invalid function name {functionName}")
};
}
private Function GenerateTexelFetchScaleFunction()
{
EmitterContext context = new EmitterContext();
Operand input = Argument(0);
Operand samplerIndex = Argument(1);
Operand index = GetScaleIndex(context, samplerIndex);
Operand scale = context.Load(StorageKind.ConstantBuffer, 0, Const((int)SupportBufferField.RenderScale), index);
Operand scaleIsOne = context.FPCompareEqual(scale, ConstF(1f));
Operand lblScaleNotOne = Label();
context.BranchIfFalse(lblScaleNotOne, scaleIsOne);
context.Return(input);
context.MarkLabel(lblScaleNotOne);
int inArgumentsCount;
if (_stage == ShaderStage.Fragment)
{
Operand scaleIsLessThanZero = context.FPCompareLess(scale, ConstF(0f));
Operand lblScaleGreaterOrEqualZero = Label();
context.BranchIfFalse(lblScaleGreaterOrEqualZero, scaleIsLessThanZero);
Operand negScale = context.FPNegate(scale);
Operand inputScaled = context.FPMultiply(context.IConvertS32ToFP32(input), negScale);
Operand fragCoordX = context.Load(StorageKind.Input, IoVariable.FragmentCoord, null, Const(0));
Operand fragCoordY = context.Load(StorageKind.Input, IoVariable.FragmentCoord, null, Const(1));
Operand fragCoord = context.ConditionalSelect(Argument(2), fragCoordY, fragCoordX);
Operand inputBias = context.FPModulo(fragCoord, negScale);
Operand inputWithBias = context.FPAdd(inputScaled, inputBias);
context.Return(context.FP32ConvertToS32(inputWithBias));
context.MarkLabel(lblScaleGreaterOrEqualZero);
inArgumentsCount = 3;
}
else
{
inArgumentsCount = 2;
}
Operand inputScaled2 = context.FPMultiply(context.IConvertS32ToFP32(input), scale);
context.Return(context.FP32ConvertToS32(inputScaled2));
return new Function(ControlFlowGraph.Create(context.GetOperations()).Blocks, "TexelFetchScale", true, inArgumentsCount, 0);
}
private Function GenerateTextureSizeUnscaleFunction()
{
EmitterContext context = new EmitterContext();
Operand input = Argument(0);
Operand samplerIndex = Argument(1);
Operand index = GetScaleIndex(context, samplerIndex);
Operand scale = context.FPAbsolute(context.Load(StorageKind.ConstantBuffer, 0, Const((int)SupportBufferField.RenderScale), index));
Operand scaleIsOne = context.FPCompareEqual(scale, ConstF(1f));
Operand lblScaleNotOne = Label();
context.BranchIfFalse(lblScaleNotOne, scaleIsOne);
context.Return(input);
context.MarkLabel(lblScaleNotOne);
Operand inputUnscaled = context.FPDivide(context.IConvertS32ToFP32(input), scale);
context.Return(context.FP32ConvertToS32(inputUnscaled));
return new Function(ControlFlowGraph.Create(context.GetOperations()).Blocks, "TextureSizeUnscale", true, 2, 0);
}
private Operand GetScaleIndex(EmitterContext context, Operand index)
{
switch (_stage)
{
case ShaderStage.Vertex:
Operand fragScaleCount = context.Load(StorageKind.ConstantBuffer, 0, Const((int)SupportBufferField.FragmentRenderScaleCount));
return context.IAdd(Const(1), context.IAdd(index, fragScaleCount));
default:
return context.IAdd(Const(1), index);
}
}
}
}

View File

@ -0,0 +1,11 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using System.Collections.Generic;
namespace Ryujinx.Graphics.Shader.Translation
{
enum HelperFunctionName
{
TexelFetchScale,
TextureSizeUnscale
}
}

View File

@ -32,25 +32,49 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
continue;
}
if (handleAsgOp.Inst != Instruction.LoadConstant)
if (handleAsgOp.Inst != Instruction.Load ||
handleAsgOp.StorageKind != StorageKind.ConstantBuffer ||
handleAsgOp.SourcesCount != 4)
{
continue;
}
Operand ldcSrc0 = handleAsgOp.GetSource(0);
if (ldcSrc0.Type != OperandType.Constant ||
!config.ResourceManager.TryGetConstantBufferSlot(ldcSrc0.Value, out int src0CbufSlot) ||
src0CbufSlot != 2)
{
continue;
}
Operand ldcSrc1 = handleAsgOp.GetSource(1);
if (ldcSrc0.Type != OperandType.Constant || ldcSrc0.Value != 2)
// We expect field index 0 to be accessed.
if (ldcSrc1.Type != OperandType.Constant || ldcSrc1.Value != 0)
{
continue;
}
if (!(ldcSrc1.AsgOp is Operation shrOp) || shrOp.Inst != Instruction.ShiftRightU32)
Operand ldcSrc2 = handleAsgOp.GetSource(2);
// FIXME: This is missing some checks, for example, a check to ensure that the shift value is 2.
// Might be not worth fixing since if that doesn't kick in, the result will be no texture
// to access anyway which is also wrong.
// Plus this whole transform is fundamentally flawed as-is since we have no way to know the array size.
// Eventually, this should be entirely removed in favor of a implementation that supports true bindless
// texture access.
if (!(ldcSrc2.AsgOp is Operation shrOp) || shrOp.Inst != Instruction.ShiftRightU32)
{
continue;
}
if (!(shrOp.GetSource(0).AsgOp is Operation addOp) || addOp.Inst != Instruction.Add)
if (!(shrOp.GetSource(0).AsgOp is Operation shrOp2) || shrOp2.Inst != Instruction.ShiftRightU32)
{
continue;
}
if (!(shrOp2.GetSource(0).AsgOp is Operation addOp) || addOp.Inst != Instruction.Add)
{
continue;
}

View File

@ -8,7 +8,7 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
{
static class ConstantFolding
{
public static void RunPass(Operation operation)
public static void RunPass(ShaderConfig config, Operation operation)
{
if (!AreAllSourcesConstant(operation))
{
@ -153,8 +153,21 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
EvaluateFPUnary(operation, (x) => float.IsNaN(x));
break;
case Instruction.LoadConstant:
operation.TurnIntoCopy(Cbuf(operation.GetSource(0).Value, operation.GetSource(1).Value));
case Instruction.Load:
if (operation.StorageKind == StorageKind.ConstantBuffer && operation.SourcesCount == 4)
{
int binding = operation.GetSource(0).Value;
int fieldIndex = operation.GetSource(1).Value;
if (config.ResourceManager.TryGetConstantBufferSlot(binding, out int cbufSlot) && fieldIndex == 0)
{
int vecIndex = operation.GetSource(2).Value;
int elemIndex = operation.GetSource(3).Value;
int cbufOffset = vecIndex * 4 + elemIndex;
operation.TurnIntoCopy(Cbuf(cbufSlot, cbufOffset));
}
}
break;
case Instruction.Maximum:

View File

@ -347,21 +347,23 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
return wordOffset;
}
Operand[] sources = new Operand[operation.SourcesCount];
Operand cbufOffset = GetCbufOffset();
Operand vecIndex = Local();
Operand elemIndex = Local();
node.List.AddBefore(node, new Operation(Instruction.ShiftRightU32, 0, vecIndex, cbufOffset, Const(2)));
node.List.AddBefore(node, new Operation(Instruction.BitwiseAnd, 0, elemIndex, cbufOffset, Const(3)));
Operand[] sources = new Operand[4];
int cbSlot = UbeFirstCbuf + storageIndex;
sources[0] = Const(cbSlot);
sources[1] = GetCbufOffset();
sources[0] = Const(config.ResourceManager.GetConstantBufferBinding(cbSlot));
sources[1] = Const(0);
sources[2] = vecIndex;
sources[3] = elemIndex;
config.SetUsedConstantBuffer(cbSlot);
for (int index = 2; index < operation.SourcesCount; index++)
{
sources[index] = operation.GetSource(index);
}
Operation ldcOp = new Operation(Instruction.LoadConstant, operation.Dest, sources);
Operation ldcOp = new Operation(Instruction.Load, StorageKind.ConstantBuffer, operation.Dest, sources);
for (int index = 0; index < operation.SourcesCount; index++)
{

View File

@ -9,7 +9,7 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
{
public static void RunPass(BasicBlock[] blocks, ShaderConfig config)
{
RunOptimizationPasses(blocks);
RunOptimizationPasses(blocks, config);
int sbUseMask = 0;
int ubeUseMask = 0;
@ -20,15 +20,21 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
GlobalToStorage.RunPass(blocks[blkIndex], config, ref sbUseMask, ref ubeUseMask);
BindlessToIndexed.RunPass(blocks[blkIndex], config);
BindlessElimination.RunPass(blocks[blkIndex], config);
// FragmentCoord only exists on fragment shaders, so we don't need to check other stages.
if (config.Stage == ShaderStage.Fragment)
{
EliminateMultiplyByFragmentCoordW(blocks[blkIndex]);
}
}
config.SetAccessibleBufferMasks(sbUseMask, ubeUseMask);
// Run optimizations one last time to remove any code that is now optimizable after above passes.
RunOptimizationPasses(blocks);
RunOptimizationPasses(blocks, config);
}
private static void RunOptimizationPasses(BasicBlock[] blocks)
private static void RunOptimizationPasses(BasicBlock[] blocks, ShaderConfig config)
{
bool modified;
@ -67,7 +73,7 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
continue;
}
ConstantFolding.RunPass(operation);
ConstantFolding.RunPass(config, operation);
Simplification.RunPass(operation);
if (DestIsLocalVar(operation))
@ -281,6 +287,75 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
return modified;
}
private static void EliminateMultiplyByFragmentCoordW(BasicBlock block)
{
foreach (INode node in block.Operations)
{
if (node is Operation operation)
{
EliminateMultiplyByFragmentCoordW(operation);
}
}
}
private static void EliminateMultiplyByFragmentCoordW(Operation operation)
{
// We're looking for the pattern:
// y = x * gl_FragCoord.w
// v = y * (1.0 / gl_FragCoord.w)
// Then we transform it into:
// v = x
// This pattern is common on fragment shaders due to the way how perspective correction is done.
// We are expecting a multiplication by the reciprocal of gl_FragCoord.w.
if (operation.Inst != (Instruction.FP32 | Instruction.Multiply))
{
return;
}
Operand lhs = operation.GetSource(0);
Operand rhs = operation.GetSource(1);
// Check LHS of the the main multiplication operation. We expect an input being multiplied by gl_FragCoord.w.
if (!(lhs.AsgOp is Operation attrMulOp) || attrMulOp.Inst != (Instruction.FP32 | Instruction.Multiply))
{
return;
}
Operand attrMulLhs = attrMulOp.GetSource(0);
Operand attrMulRhs = attrMulOp.GetSource(1);
// LHS should be any input, RHS should be exactly gl_FragCoord.w.
if (!Utils.IsInputLoad(attrMulLhs.AsgOp) || !Utils.IsInputLoad(attrMulRhs.AsgOp, IoVariable.FragmentCoord, 3))
{
return;
}
// RHS of the main multiplication should be a reciprocal operation (1.0 / x).
if (!(rhs.AsgOp is Operation reciprocalOp) || reciprocalOp.Inst != (Instruction.FP32 | Instruction.Divide))
{
return;
}
Operand reciprocalLhs = reciprocalOp.GetSource(0);
Operand reciprocalRhs = reciprocalOp.GetSource(1);
// Check if the divisor is a constant equal to 1.0.
if (reciprocalLhs.Type != OperandType.Constant || reciprocalLhs.AsFloat() != 1.0f)
{
return;
}
// Check if the dividend is gl_FragCoord.w.
if (!Utils.IsInputLoad(reciprocalRhs.AsgOp, IoVariable.FragmentCoord, 3))
{
return;
}
// If everything matches, we can replace the operation with the input load result.
operation.TurnIntoCopy(attrMulLhs);
}
private static void RemoveNode(BasicBlock block, LinkedListNode<INode> llNode)
{
// Remove a node from the nodes list, and also remove itself

View File

@ -4,6 +4,35 @@ namespace Ryujinx.Graphics.Shader.Translation.Optimizations
{
static class Utils
{
public static bool IsInputLoad(INode node)
{
return (node is Operation operation) &&
operation.Inst == Instruction.Load &&
operation.StorageKind == StorageKind.Input;
}
public static bool IsInputLoad(INode node, IoVariable ioVariable, int elemIndex)
{
if (!(node is Operation operation) ||
operation.Inst != Instruction.Load ||
operation.StorageKind != StorageKind.Input ||
operation.SourcesCount != 2)
{
return false;
}
Operand ioVariableSrc = operation.GetSource(0);
if (ioVariableSrc.Type != OperandType.Constant || (IoVariable)ioVariableSrc.Value != ioVariable)
{
return false;
}
Operand elemIndexSrc = operation.GetSource(1);
return elemIndexSrc.Type == OperandType.Constant && elemIndexSrc.Value == elemIndex;
}
private static Operation FindBranchSource(BasicBlock block)
{
foreach (BasicBlock sourceBlock in block.Predecessors)

View File

@ -0,0 +1,126 @@
using Ryujinx.Graphics.Shader.StructuredIr;
using System;
using System.Collections.Generic;
using System.Globalization;
namespace Ryujinx.Graphics.Shader.Translation
{
class ResourceManager
{
private static readonly string[] _stagePrefixes = new string[] { "cp", "vp", "tcp", "tep", "gp", "fp" };
private readonly IGpuAccessor _gpuAccessor;
private readonly ShaderProperties _properties;
private readonly string _stagePrefix;
private readonly int[] _cbSlotToBindingMap;
private readonly HashSet<int> _usedConstantBufferBindings;
public ResourceManager(ShaderStage stage, IGpuAccessor gpuAccessor, ShaderProperties properties)
{
_gpuAccessor = gpuAccessor;
_properties = properties;
_stagePrefix = GetShaderStagePrefix(stage);
_cbSlotToBindingMap = new int[18];
_cbSlotToBindingMap.AsSpan().Fill(-1);
_usedConstantBufferBindings = new HashSet<int>();
properties.AddConstantBuffer(0, new BufferDefinition(BufferLayout.Std140, 0, 0, "support_buffer", SupportBuffer.GetStructureType()));
}
public int GetConstantBufferBinding(int slot)
{
int binding = _cbSlotToBindingMap[slot];
if (binding < 0)
{
binding = _gpuAccessor.QueryBindingConstantBuffer(slot);
_cbSlotToBindingMap[slot] = binding;
string slotNumber = slot.ToString(CultureInfo.InvariantCulture);
AddNewConstantBuffer(binding, $"{_stagePrefix}_c{slotNumber}");
}
return binding;
}
public bool TryGetConstantBufferSlot(int binding, out int slot)
{
for (slot = 0; slot < _cbSlotToBindingMap.Length; slot++)
{
if (_cbSlotToBindingMap[slot] == binding)
{
return true;
}
}
slot = 0;
return false;
}
public void SetUsedConstantBufferBinding(int binding)
{
_usedConstantBufferBindings.Add(binding);
}
public BufferDescriptor[] GetConstantBufferDescriptors()
{
var descriptors = new BufferDescriptor[_usedConstantBufferBindings.Count];
int descriptorIndex = 0;
for (int slot = 0; slot < _cbSlotToBindingMap.Length; slot++)
{
int binding = _cbSlotToBindingMap[slot];
if (binding >= 0 && _usedConstantBufferBindings.Contains(binding))
{
descriptors[descriptorIndex++] = new BufferDescriptor(binding, slot);
}
}
if (descriptors.Length != descriptorIndex)
{
Array.Resize(ref descriptors, descriptorIndex);
}
return descriptors;
}
private void AddNewConstantBuffer(int binding, string name)
{
StructureType type = new StructureType(new[]
{
new StructureField(AggregateType.Array | AggregateType.Vector4 | AggregateType.FP32, "data", Constants.ConstantBufferSize / 16)
});
_properties.AddConstantBuffer(binding, new BufferDefinition(BufferLayout.Std140, 0, binding, name, type));
}
public void InheritFrom(ResourceManager other)
{
for (int i = 0; i < other._cbSlotToBindingMap.Length; i++)
{
int binding = other._cbSlotToBindingMap[i];
if (binding >= 0)
{
_cbSlotToBindingMap[i] = binding;
}
}
}
public static string GetShaderStagePrefix(ShaderStage stage)
{
uint index = (uint)stage;
if (index >= _stagePrefixes.Length)
{
return "invalid";
}
return _stagePrefixes[index];
}
}
}

View File

@ -1,7 +1,6 @@
using Ryujinx.Graphics.Shader.Decoders;
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.StructuredIr;
using System.Collections.Generic;
using System.Diagnostics;
using System.Linq;
using System.Numerics;
@ -12,10 +11,12 @@ namespace Ryujinx.Graphics.Shader.Translation
{
static class Rewriter
{
public static void RunPass(BasicBlock[] blocks, ShaderConfig config)
public static void RunPass(HelperFunctionManager hfm, BasicBlock[] blocks, ShaderConfig config)
{
bool isVertexShader = config.Stage == ShaderStage.Vertex;
bool isImpreciseFragmentShader = config.Stage == ShaderStage.Fragment && config.GpuAccessor.QueryHostReducedPrecision();
bool hasConstantBufferDrawParameters = config.GpuAccessor.QueryHasConstantBufferDrawParameters();
bool hasVectorIndexingBug = config.GpuAccessor.QueryHostHasVectorIndexingBug();
bool supportsSnormBufferTextureFormat = config.GpuAccessor.QueryHostSupportsSnormBufferTextureFormat();
for (int blkIndex = 0; blkIndex < blocks.Length; blkIndex++)
@ -45,13 +46,28 @@ namespace Ryujinx.Graphics.Shader.Translation
}
}
if (isImpreciseFragmentShader)
{
EnableForcePreciseIfNeeded(operation);
}
if (hasVectorIndexingBug)
{
InsertVectorComponentSelect(node, config);
}
LinkedListNode<INode> nextNode = node.Next;
if (operation is TextureOperation texOp)
{
node = InsertTexelFetchScale(hfm, node, config);
node = InsertTextureSizeUnscale(hfm, node, config);
if (texOp.Inst == Instruction.TextureSample)
{
node = RewriteTextureSample(node, config);
node = InsertCoordNormalization(node, config);
node = InsertCoordGatherBias(node, config);
node = InsertConstOffsets(node, config);
if (texOp.Type == SamplerType.TextureBuffer && !supportsSnormBufferTextureFormat)
{
@ -71,6 +87,103 @@ namespace Ryujinx.Graphics.Shader.Translation
}
}
private static void EnableForcePreciseIfNeeded(Operation operation)
{
// There are some cases where a small bias is added to values to prevent division by zero.
// When operating with reduced precision, it is possible for this bias to get rounded to 0
// and cause a division by zero.
// To prevent that, we force those operations to be precise even if the host wants
// imprecise operations for performance.
if (operation.Inst == (Instruction.FP32 | Instruction.Divide) &&
operation.GetSource(0).Type == OperandType.Constant &&
operation.GetSource(0).AsFloat() == 1f &&
operation.GetSource(1).AsgOp is Operation addOp &&
addOp.Inst == (Instruction.FP32 | Instruction.Add) &&
addOp.GetSource(1).Type == OperandType.Constant)
{
addOp.ForcePrecise = true;
}
}
private static void InsertVectorComponentSelect(LinkedListNode<INode> node, ShaderConfig config)
{
Operation operation = (Operation)node.Value;
if (operation.Inst != Instruction.Load ||
operation.StorageKind != StorageKind.ConstantBuffer ||
operation.SourcesCount < 3)
{
return;
}
Operand bindingIndex = operation.GetSource(0);
Operand fieldIndex = operation.GetSource(1);
Operand elemIndex = operation.GetSource(operation.SourcesCount - 1);
if (bindingIndex.Type != OperandType.Constant ||
fieldIndex.Type != OperandType.Constant ||
elemIndex.Type == OperandType.Constant)
{
return;
}
BufferDefinition buffer = config.Properties.ConstantBuffers[bindingIndex.Value];
StructureField field = buffer.Type.Fields[fieldIndex.Value];
int elemCount = (field.Type & AggregateType.ElementCountMask) switch
{
AggregateType.Vector2 => 2,
AggregateType.Vector3 => 3,
AggregateType.Vector4 => 4,
_ => 1
};
if (elemCount == 1)
{
return;
}
Operand result = null;
for (int i = 0; i < elemCount; i++)
{
Operand value = Local();
Operand[] inputs = new Operand[operation.SourcesCount];
for (int srcIndex = 0; srcIndex < inputs.Length - 1; srcIndex++)
{
inputs[srcIndex] = operation.GetSource(srcIndex);
}
inputs[inputs.Length - 1] = Const(i);
Operation loadOp = new Operation(Instruction.Load, StorageKind.ConstantBuffer, value, inputs);
node.List.AddBefore(node, loadOp);
if (i == 0)
{
result = value;
}
else
{
Operand isCurrentIndex = Local();
Operand selection = Local();
Operation compareOp = new Operation(Instruction.CompareEqual, isCurrentIndex, new Operand[] { elemIndex, Const(i) });
Operation selectOp = new Operation(Instruction.ConditionalSelect, selection, new Operand[] { isCurrentIndex, value, result });
node.List.AddBefore(node, compareOp);
node.List.AddBefore(node, selectOp);
result = selection;
}
}
operation.TurnIntoCopy(result);
}
private static LinkedListNode<INode> RewriteGlobalAccess(LinkedListNode<INode> node, ShaderConfig config)
{
Operation operation = (Operation)node.Value;
@ -90,6 +203,15 @@ namespace Ryujinx.Graphics.Shader.Translation
return local;
}
Operand PrependStorageOperation(Instruction inst, StorageKind storageKind, params Operand[] sources)
{
Operand local = Local();
node.List.AddBefore(node, new Operation(inst, storageKind, local, sources));
return local;
}
Operand PrependExistingOperation(Operation operation)
{
Operand local = Local();
@ -204,8 +326,6 @@ namespace Ryujinx.Graphics.Shader.Translation
cbeUseMask &= ~(1 << slot);
config.SetUsedConstantBuffer(cbSlot);
Operand previousResult = PrependExistingOperation(storageOp);
int cbOffset = GetConstantUbeOffset(slot);
@ -216,18 +336,17 @@ namespace Ryujinx.Graphics.Shader.Translation
Operand byteOffsetConst = PrependOperation(Instruction.Subtract, addrLow, baseAddrTruncConst);
Operand cbIndex = PrependOperation(Instruction.ShiftRightU32, byteOffsetConst, Const(2));
Operand vecIndex = PrependOperation(Instruction.ShiftRightU32, cbIndex, Const(2));
Operand elemIndex = PrependOperation(Instruction.BitwiseAnd, cbIndex, Const(3));
Operand[] sourcesCb = new Operand[operation.SourcesCount];
Operand[] sourcesCb = new Operand[4];
sourcesCb[0] = Const(cbSlot);
sourcesCb[1] = cbIndex;
sourcesCb[0] = Const(config.ResourceManager.GetConstantBufferBinding(cbSlot));
sourcesCb[1] = Const(0);
sourcesCb[2] = vecIndex;
sourcesCb[3] = elemIndex;
for (int index = 2; index < operation.SourcesCount; index++)
{
sourcesCb[index] = operation.GetSource(index);
}
Operand ldcResult = PrependOperation(Instruction.LoadConstant, sourcesCb);
Operand ldcResult = PrependStorageOperation(Instruction.Load, StorageKind.ConstantBuffer, sourcesCb);
storageOp = new Operation(Instruction.ConditionalSelect, operation.Dest, inRange, ldcResult, previousResult);
}
@ -255,10 +374,279 @@ namespace Ryujinx.Graphics.Shader.Translation
return node;
}
private static LinkedListNode<INode> RewriteTextureSample(LinkedListNode<INode> node, ShaderConfig config)
private static LinkedListNode<INode> InsertTexelFetchScale(HelperFunctionManager hfm, LinkedListNode<INode> node, ShaderConfig config)
{
TextureOperation texOp = (TextureOperation)node.Value;
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool intCoords = (texOp.Flags & TextureFlags.IntCoords) != 0;
bool isArray = (texOp.Type & SamplerType.Array) != 0;
bool isIndexed = (texOp.Type & SamplerType.Indexed) != 0;
int coordsCount = texOp.Type.GetDimensions();
int coordsIndex = isBindless || isIndexed ? 1 : 0;
bool isImage = IsImageInstructionWithScale(texOp.Inst);
if ((texOp.Inst == Instruction.TextureSample || isImage) &&
(intCoords || isImage) &&
!isBindless &&
!isIndexed &&
config.Stage.SupportsRenderScale() &&
TypeSupportsScale(texOp.Type))
{
int functionId = hfm.GetOrCreateFunctionId(HelperFunctionName.TexelFetchScale);
int samplerIndex = isImage
? config.GetTextureDescriptors().Length + config.FindImageDescriptorIndex(texOp)
: config.FindTextureDescriptorIndex(texOp);
for (int index = 0; index < coordsCount; index++)
{
Operand scaledCoord = Local();
Operand[] callArgs;
if (config.Stage == ShaderStage.Fragment)
{
callArgs = new Operand[] { Const(functionId), texOp.GetSource(coordsIndex + index), Const(samplerIndex), Const(index) };
}
else
{
callArgs = new Operand[] { Const(functionId), texOp.GetSource(coordsIndex + index), Const(samplerIndex) };
}
node.List.AddBefore(node, new Operation(Instruction.Call, 0, scaledCoord, callArgs));
texOp.SetSource(coordsIndex + index, scaledCoord);
}
}
return node;
}
private static LinkedListNode<INode> InsertTextureSizeUnscale(HelperFunctionManager hfm, LinkedListNode<INode> node, ShaderConfig config)
{
TextureOperation texOp = (TextureOperation)node.Value;
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool intCoords = (texOp.Flags & TextureFlags.IntCoords) != 0;
bool isArray = (texOp.Type & SamplerType.Array) != 0;
bool isIndexed = (texOp.Type & SamplerType.Indexed) != 0;
if (texOp.Inst == Instruction.TextureSize &&
texOp.Index < 2 &&
!isBindless &&
!isIndexed &&
config.Stage.SupportsRenderScale() &&
TypeSupportsScale(texOp.Type))
{
int functionId = hfm.GetOrCreateFunctionId(HelperFunctionName.TextureSizeUnscale);
int samplerIndex = config.FindTextureDescriptorIndex(texOp, ignoreType: true);
for (int index = texOp.DestsCount - 1; index >= 0; index--)
{
Operand dest = texOp.GetDest(index);
Operand unscaledSize = Local();
// Replace all uses with the unscaled size value.
// This must be done before the call is added, since it also is a use of the original size.
foreach (INode useOp in dest.UseOps)
{
for (int srcIndex = 0; srcIndex < useOp.SourcesCount; srcIndex++)
{
if (useOp.GetSource(srcIndex) == dest)
{
useOp.SetSource(srcIndex, unscaledSize);
}
}
}
Operand[] callArgs = new Operand[] { Const(functionId), dest, Const(samplerIndex) };
node.List.AddAfter(node, new Operation(Instruction.Call, 0, unscaledSize, callArgs));
}
}
return node;
}
private static bool IsImageInstructionWithScale(Instruction inst)
{
// Currently, we don't support scaling images that are modified,
// so we only need to care about the load instruction.
return inst == Instruction.ImageLoad;
}
private static bool TypeSupportsScale(SamplerType type)
{
return (type & SamplerType.Mask) == SamplerType.Texture2D;
}
private static LinkedListNode<INode> InsertCoordNormalization(LinkedListNode<INode> node, ShaderConfig config)
{
// Emulate non-normalized coordinates by normalizing the coordinates on the shader.
// Without normalization, the coordinates are expected to the in the [0, W or H] range,
// and otherwise, it is expected to be in the [0, 1] range.
// We normalize by dividing the coords by the texture size.
TextureOperation texOp = (TextureOperation)node.Value;
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool intCoords = (texOp.Flags & TextureFlags.IntCoords) != 0;
bool isCoordNormalized = isBindless || config.GpuAccessor.QueryTextureCoordNormalized(texOp.Handle, texOp.CbufSlot);
if (isCoordNormalized || intCoords)
{
return node;
}
bool isArray = (texOp.Type & SamplerType.Array) != 0;
bool isIndexed = (texOp.Type & SamplerType.Indexed) != 0;
int coordsCount = texOp.Type.GetDimensions();
int coordsIndex = isBindless || isIndexed ? 1 : 0;
config.SetUsedFeature(FeatureFlags.IntegerSampling);
int normCoordsCount = (texOp.Type & SamplerType.Mask) == SamplerType.TextureCube ? 2 : coordsCount;
for (int index = 0; index < normCoordsCount; index++)
{
Operand coordSize = Local();
Operand[] texSizeSources;
if (isBindless || isIndexed)
{
texSizeSources = new Operand[] { texOp.GetSource(0), Const(0) };
}
else
{
texSizeSources = new Operand[] { Const(0) };
}
node.List.AddBefore(node, new TextureOperation(
Instruction.TextureSize,
texOp.Type,
texOp.Format,
texOp.Flags,
texOp.CbufSlot,
texOp.Handle,
index,
new[] { coordSize },
texSizeSources));
config.SetUsedTexture(Instruction.TextureSize, texOp.Type, texOp.Format, texOp.Flags, texOp.CbufSlot, texOp.Handle);
Operand source = texOp.GetSource(coordsIndex + index);
Operand coordNormalized = Local();
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Divide, coordNormalized, source, GenerateI2f(node, coordSize)));
texOp.SetSource(coordsIndex + index, coordNormalized);
}
return node;
}
private static LinkedListNode<INode> InsertCoordGatherBias(LinkedListNode<INode> node, ShaderConfig config)
{
// The gather behavior when the coordinate sits right in the middle of two texels is not well defined.
// To ensure the correct texel is sampled, we add a small bias value to the coordinate.
// This value is calculated as the minimum value required to change the texel it will sample from,
// and is 0 if the host does not require the bias.
TextureOperation texOp = (TextureOperation)node.Value;
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool isGather = (texOp.Flags & TextureFlags.Gather) != 0;
int gatherBiasPrecision = config.GpuAccessor.QueryHostGatherBiasPrecision();
if (!isGather || gatherBiasPrecision == 0)
{
return node;
}
bool intCoords = (texOp.Flags & TextureFlags.IntCoords) != 0;
bool isArray = (texOp.Type & SamplerType.Array) != 0;
bool isIndexed = (texOp.Type & SamplerType.Indexed) != 0;
int coordsCount = texOp.Type.GetDimensions();
int coordsIndex = isBindless || isIndexed ? 1 : 0;
config.SetUsedFeature(FeatureFlags.IntegerSampling);
int normCoordsCount = (texOp.Type & SamplerType.Mask) == SamplerType.TextureCube ? 2 : coordsCount;
for (int index = 0; index < normCoordsCount; index++)
{
Operand coordSize = Local();
Operand scaledSize = Local();
Operand bias = Local();
Operand[] texSizeSources;
if (isBindless || isIndexed)
{
texSizeSources = new Operand[] { texOp.GetSource(0), Const(0) };
}
else
{
texSizeSources = new Operand[] { Const(0) };
}
node.List.AddBefore(node, new TextureOperation(
Instruction.TextureSize,
texOp.Type,
texOp.Format,
texOp.Flags,
texOp.CbufSlot,
texOp.Handle,
index,
new[] { coordSize },
texSizeSources));
config.SetUsedTexture(Instruction.TextureSize, texOp.Type, texOp.Format, texOp.Flags, texOp.CbufSlot, texOp.Handle);
node.List.AddBefore(node, new Operation(
Instruction.FP32 | Instruction.Multiply,
scaledSize,
GenerateI2f(node, coordSize),
ConstF((float)(1 << (gatherBiasPrecision + 1)))));
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Divide, bias, ConstF(1f), scaledSize));
Operand source = texOp.GetSource(coordsIndex + index);
Operand coordBiased = Local();
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Add, coordBiased, source, bias));
texOp.SetSource(coordsIndex + index, coordBiased);
}
return node;
}
private static LinkedListNode<INode> InsertConstOffsets(LinkedListNode<INode> node, ShaderConfig config)
{
// Non-constant texture offsets are not allowed (according to the spec),
// however some GPUs does support that.
// For GPUs where it is not supported, we can replace the instruction with the following:
// For texture*Offset, we replace it by texture*, and add the offset to the P coords.
// The offset can be calculated as offset / textureSize(lod), where lod = textureQueryLod(coords).
// For texelFetchOffset, we replace it by texelFetch and add the offset to the P coords directly.
// For textureGatherOffset, we split the operation into up to 4 operations, one for each component
// that is accessed, where each textureGather operation has a different offset for each pixel.
TextureOperation texOp = (TextureOperation)node.Value;
bool hasOffset = (texOp.Flags & TextureFlags.Offset) != 0;
bool hasOffsets = (texOp.Flags & TextureFlags.Offsets) != 0;
@ -266,9 +654,7 @@ namespace Ryujinx.Graphics.Shader.Translation
bool isBindless = (texOp.Flags & TextureFlags.Bindless) != 0;
bool isCoordNormalized = isBindless || config.GpuAccessor.QueryTextureCoordNormalized(texOp.Handle, texOp.CbufSlot);
if (!hasInvalidOffset && isCoordNormalized)
if (!hasInvalidOffset)
{
return node;
}
@ -365,7 +751,7 @@ namespace Ryujinx.Graphics.Shader.Translation
hasInvalidOffset &= !areAllOffsetsConstant;
if (!hasInvalidOffset && isCoordNormalized)
if (!hasInvalidOffset)
{
return node;
}
@ -384,63 +770,6 @@ namespace Ryujinx.Graphics.Shader.Translation
int componentIndex = texOp.Index;
Operand Float(Operand value)
{
Operand res = Local();
node.List.AddBefore(node, new Operation(Instruction.ConvertS32ToFP32, res, value));
return res;
}
// Emulate non-normalized coordinates by normalizing the coordinates on the shader.
// Without normalization, the coordinates are expected to the in the [0, W or H] range,
// and otherwise, it is expected to be in the [0, 1] range.
// We normalize by dividing the coords by the texture size.
if (!isCoordNormalized && !intCoords)
{
config.SetUsedFeature(FeatureFlags.IntegerSampling);
int normCoordsCount = (texOp.Type & SamplerType.Mask) == SamplerType.TextureCube ? 2 : coordsCount;
for (int index = 0; index < normCoordsCount; index++)
{
Operand coordSize = Local();
Operand[] texSizeSources;
if (isBindless || isIndexed)
{
texSizeSources = new Operand[] { sources[0], Const(0) };
}
else
{
texSizeSources = new Operand[] { Const(0) };
}
node.List.AddBefore(node, new TextureOperation(
Instruction.TextureSize,
texOp.Type,
texOp.Format,
texOp.Flags,
texOp.CbufSlot,
texOp.Handle,
index,
new[] { coordSize },
texSizeSources));
config.SetUsedTexture(Instruction.TextureSize, texOp.Type, texOp.Format, texOp.Flags, texOp.CbufSlot, texOp.Handle);
Operand source = sources[coordsIndex + index];
Operand coordNormalized = Local();
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Divide, coordNormalized, source, Float(coordSize)));
sources[coordsIndex + index] = coordNormalized;
}
}
Operand[] dests = new Operand[texOp.DestsCount];
for (int i = 0; i < texOp.DestsCount; i++)
@ -452,15 +781,7 @@ namespace Ryujinx.Graphics.Shader.Translation
LinkedListNode<INode> oldNode = node;
// Technically, non-constant texture offsets are not allowed (according to the spec),
// however some GPUs does support that.
// For GPUs where it is not supported, we can replace the instruction with the following:
// For texture*Offset, we replace it by texture*, and add the offset to the P coords.
// The offset can be calculated as offset / textureSize(lod), where lod = textureQueryLod(coords).
// For texelFetchOffset, we replace it by texelFetch and add the offset to the P coords directly.
// For textureGatherOffset, we split the operation into up to 4 operations, one for each component
// that is accessed, where each textureGather operation has a different offset for each pixel.
if (hasInvalidOffset && isGather && !isShadow)
if (isGather && !isShadow)
{
config.SetUsedFeature(FeatureFlags.IntegerSampling);
@ -468,7 +789,7 @@ namespace Ryujinx.Graphics.Shader.Translation
sources.CopyTo(newSources, 0);
Operand[] texSizes = InsertTextureSize(node, texOp, lodSources, bindlessHandle, coordsCount);
Operand[] texSizes = InsertTextureLod(node, texOp, lodSources, bindlessHandle, coordsCount);
int destIndex = 0;
@ -487,7 +808,11 @@ namespace Ryujinx.Graphics.Shader.Translation
Operand intOffset = offsets[index + (hasOffsets ? compIndex * coordsCount : 0)];
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Divide, offset, Float(intOffset), Float(texSizes[index])));
node.List.AddBefore(node, new Operation(
Instruction.FP32 | Instruction.Divide,
offset,
GenerateI2f(node, intOffset),
GenerateI2f(node, texSizes[index])));
Operand source = sources[coordsIndex + index];
@ -514,45 +839,46 @@ namespace Ryujinx.Graphics.Shader.Translation
}
else
{
if (hasInvalidOffset)
if (intCoords)
{
if (intCoords)
for (int index = 0; index < coordsCount; index++)
{
for (int index = 0; index < coordsCount; index++)
{
Operand source = sources[coordsIndex + index];
Operand source = sources[coordsIndex + index];
Operand coordPlusOffset = Local();
Operand coordPlusOffset = Local();
node.List.AddBefore(node, new Operation(Instruction.Add, coordPlusOffset, source, offsets[index]));
node.List.AddBefore(node, new Operation(Instruction.Add, coordPlusOffset, source, offsets[index]));
sources[coordsIndex + index] = coordPlusOffset;
}
sources[coordsIndex + index] = coordPlusOffset;
}
else
}
else
{
config.SetUsedFeature(FeatureFlags.IntegerSampling);
Operand[] texSizes = InsertTextureLod(node, texOp, lodSources, bindlessHandle, coordsCount);
for (int index = 0; index < coordsCount; index++)
{
config.SetUsedFeature(FeatureFlags.IntegerSampling);
config.SetUsedTexture(Instruction.TextureSize, texOp.Type, texOp.Format, texOp.Flags, texOp.CbufSlot, texOp.Handle);
Operand[] texSizes = InsertTextureSize(node, texOp, lodSources, bindlessHandle, coordsCount);
Operand offset = Local();
for (int index = 0; index < coordsCount; index++)
{
config.SetUsedTexture(Instruction.TextureSize, texOp.Type, texOp.Format, texOp.Flags, texOp.CbufSlot, texOp.Handle);
Operand intOffset = offsets[index];
Operand offset = Local();
node.List.AddBefore(node, new Operation(
Instruction.FP32 | Instruction.Divide,
offset,
GenerateI2f(node, intOffset),
GenerateI2f(node, texSizes[index])));
Operand intOffset = offsets[index];
Operand source = sources[coordsIndex + index];
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Divide, offset, Float(intOffset), Float(texSizes[index])));
Operand coordPlusOffset = Local();
Operand source = sources[coordsIndex + index];
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Add, coordPlusOffset, source, offset));
Operand coordPlusOffset = Local();
node.List.AddBefore(node, new Operation(Instruction.FP32 | Instruction.Add, coordPlusOffset, source, offset));
sources[coordsIndex + index] = coordPlusOffset;
}
sources[coordsIndex + index] = coordPlusOffset;
}
}
@ -580,22 +906,13 @@ namespace Ryujinx.Graphics.Shader.Translation
return node;
}
private static Operand[] InsertTextureSize(
private static Operand[] InsertTextureLod(
LinkedListNode<INode> node,
TextureOperation texOp,
Operand[] lodSources,
Operand bindlessHandle,
int coordsCount)
{
Operand Int(Operand value)
{
Operand res = Local();
node.List.AddBefore(node, new Operation(Instruction.ConvertFP32ToS32, res, value));
return res;
}
Operand[] texSizes = new Operand[coordsCount];
Operand lod = Local();
@ -619,11 +936,11 @@ namespace Ryujinx.Graphics.Shader.Translation
if (bindlessHandle != null)
{
texSizeSources = new Operand[] { bindlessHandle, Int(lod) };
texSizeSources = new Operand[] { bindlessHandle, GenerateF2i(node, lod) };
}
else
{
texSizeSources = new Operand[] { Int(lod) };
texSizeSources = new Operand[] { GenerateF2i(node, lod) };
}
node.List.AddBefore(node, new TextureOperation(
@ -707,6 +1024,24 @@ namespace Ryujinx.Graphics.Shader.Translation
return node;
}
private static Operand GenerateI2f(LinkedListNode<INode> node, Operand value)
{
Operand res = Local();
node.List.AddBefore(node, new Operation(Instruction.ConvertS32ToFP32, res, value));
return res;
}
private static Operand GenerateF2i(LinkedListNode<INode> node, Operand value)
{
Operand res = Local();
node.List.AddBefore(node, new Operation(Instruction.ConvertFP32ToS32, res, value));
return res;
}
private static bool ReplaceConstantBufferWithDrawParameters(LinkedListNode<INode> node, Operation operation)
{
Operand GenerateLoad(IoVariable ioVariable)

View File

@ -39,6 +39,10 @@ namespace Ryujinx.Graphics.Shader.Translation
public TranslationOptions Options { get; }
public ShaderProperties Properties { get; }
public ResourceManager ResourceManager { get; }
public bool TransformFeedbackEnabled { get; }
private TransformFeedbackOutput[] _transformFeedbackOutputs;
@ -109,7 +113,6 @@ namespace Ryujinx.Graphics.Shader.Translation
public int AccessibleStorageBuffersMask { get; private set; }
public int AccessibleConstantBuffersMask { get; private set; }
private int _usedConstantBuffers;
private int _usedStorageBuffers;
private int _usedStorageBuffersWrite;
@ -128,20 +131,17 @@ namespace Ryujinx.Graphics.Shader.Translation
private readonly Dictionary<int, int> _sbSlots;
private readonly Dictionary<int, int> _sbSlotsReverse;
private BufferDescriptor[] _cachedConstantBufferDescriptors;
private BufferDescriptor[] _cachedStorageBufferDescriptors;
private TextureDescriptor[] _cachedTextureDescriptors;
private TextureDescriptor[] _cachedImageDescriptors;
private int _firstConstantBufferBinding;
private int _firstStorageBufferBinding;
public int FirstConstantBufferBinding => _firstConstantBufferBinding;
public int FirstStorageBufferBinding => _firstStorageBufferBinding;
public ShaderConfig(IGpuAccessor gpuAccessor, TranslationOptions options)
public ShaderConfig(ShaderStage stage, IGpuAccessor gpuAccessor, TranslationOptions options)
{
Stage = ShaderStage.Compute;
Stage = stage;
GpuAccessor = gpuAccessor;
Options = options;
@ -158,6 +158,9 @@ namespace Ryujinx.Graphics.Shader.Translation
_sbSlots = new Dictionary<int, int>();
_sbSlotsReverse = new Dictionary<int, int>();
Properties = new ShaderProperties();
ResourceManager = new ResourceManager(stage, gpuAccessor, Properties);
}
public ShaderConfig(
@ -165,9 +168,8 @@ namespace Ryujinx.Graphics.Shader.Translation
OutputTopology outputTopology,
int maxOutputVertices,
IGpuAccessor gpuAccessor,
TranslationOptions options) : this(gpuAccessor, options)
TranslationOptions options) : this(stage, gpuAccessor, options)
{
Stage = stage;
ThreadsPerInputPrimitive = 1;
OutputTopology = outputTopology;
MaxOutputVertices = maxOutputVertices;
@ -179,9 +181,8 @@ namespace Ryujinx.Graphics.Shader.Translation
}
}
public ShaderConfig(ShaderHeader header, IGpuAccessor gpuAccessor, TranslationOptions options) : this(gpuAccessor, options)
public ShaderConfig(ShaderHeader header, IGpuAccessor gpuAccessor, TranslationOptions options) : this(header.Stage, gpuAccessor, options)
{
Stage = header.Stage;
GpPassthrough = header.Stage == ShaderStage.Geometry && header.GpPassthrough;
ThreadsPerInputPrimitive = header.ThreadsPerInputPrimitive;
OutputTopology = header.OutputTopology;
@ -428,12 +429,13 @@ namespace Ryujinx.Graphics.Shader.Translation
public void InheritFrom(ShaderConfig other)
{
ResourceManager.InheritFrom(other.ResourceManager);
ClipDistancesWritten |= other.ClipDistancesWritten;
UsedFeatures |= other.UsedFeatures;
UsedInputAttributes |= other.UsedInputAttributes;
UsedOutputAttributes |= other.UsedOutputAttributes;
_usedConstantBuffers |= other._usedConstantBuffers;
_usedStorageBuffers |= other._usedStorageBuffers;
_usedStorageBuffersWrite |= other._usedStorageBuffersWrite;
@ -641,11 +643,6 @@ namespace Ryujinx.Graphics.Shader.Translation
AccessibleConstantBuffersMask = ubeMask;
}
public void SetUsedConstantBuffer(int slot)
{
_usedConstantBuffers |= 1 << slot;
}
public void SetUsedStorageBuffer(int slot, bool write)
{
int mask = 1 << slot;
@ -762,27 +759,6 @@ namespace Ryujinx.Graphics.Shader.Translation
return meta;
}
public BufferDescriptor[] GetConstantBufferDescriptors()
{
if (_cachedConstantBufferDescriptors != null)
{
return _cachedConstantBufferDescriptors;
}
int usedMask = _usedConstantBuffers;
if (UsedFeatures.HasFlag(FeatureFlags.CbIndexing))
{
usedMask |= (int)GpuAccessor.QueryConstantBufferUse();
}
return _cachedConstantBufferDescriptors = GetUniformBufferDescriptors(
usedMask,
UsedFeatures.HasFlag(FeatureFlags.CbIndexing),
out _firstConstantBufferBinding,
GpuAccessor.QueryBindingConstantBuffer);
}
public BufferDescriptor[] GetStorageBufferDescriptors()
{
if (_cachedStorageBufferDescriptors != null)
@ -798,47 +774,6 @@ namespace Ryujinx.Graphics.Shader.Translation
GpuAccessor.QueryBindingStorageBuffer);
}
private static BufferDescriptor[] GetUniformBufferDescriptors(int usedMask, bool isArray, out int firstBinding, Func<int, int> getBindingCallback)
{
firstBinding = 0;
int lastSlot = -1;
bool hasFirstBinding = false;
var descriptors = new BufferDescriptor[BitOperations.PopCount((uint)usedMask)];
for (int i = 0; i < descriptors.Length; i++)
{
int slot = BitOperations.TrailingZeroCount(usedMask);
if (isArray)
{
// The next array entries also consumes bindings, even if they are unused.
for (int j = lastSlot + 1; j < slot; j++)
{
int binding = getBindingCallback(j);
if (!hasFirstBinding)
{
firstBinding = binding;
hasFirstBinding = true;
}
}
}
lastSlot = slot;
descriptors[i] = new BufferDescriptor(getBindingCallback(slot), slot);
if (!hasFirstBinding)
{
firstBinding = descriptors[i].Binding;
hasFirstBinding = true;
}
usedMask &= ~(1 << slot);
}
return descriptors;
}
private BufferDescriptor[] GetStorageBufferDescriptors(
int usedMask,
int writtenMask,
@ -925,7 +860,7 @@ namespace Ryujinx.Graphics.Shader.Translation
return descriptors;
}
public (TextureDescriptor, int) FindTextureDescriptor(AstTextureOperation texOp)
public TextureDescriptor FindTextureDescriptor(AstTextureOperation texOp)
{
TextureDescriptor[] descriptors = GetTextureDescriptors();
@ -937,11 +872,11 @@ namespace Ryujinx.Graphics.Shader.Translation
descriptor.HandleIndex == texOp.Handle &&
descriptor.Format == texOp.Format)
{
return (descriptor, i);
return descriptor;
}
}
return (default, -1);
return default;
}
private static int FindDescriptorIndex(TextureDescriptor[] array, AstTextureOperation texOp)
@ -962,12 +897,30 @@ namespace Ryujinx.Graphics.Shader.Translation
return -1;
}
public int FindTextureDescriptorIndex(AstTextureOperation texOp)
private static int FindDescriptorIndex(TextureDescriptor[] array, TextureOperation texOp, bool ignoreType = false)
{
return FindDescriptorIndex(GetTextureDescriptors(), texOp);
for (int i = 0; i < array.Length; i++)
{
var descriptor = array[i];
if ((descriptor.Type == texOp.Type || ignoreType) &&
descriptor.CbufSlot == texOp.CbufSlot &&
descriptor.HandleIndex == texOp.Handle &&
descriptor.Format == texOp.Format)
{
return i;
}
}
return -1;
}
public int FindImageDescriptorIndex(AstTextureOperation texOp)
public int FindTextureDescriptorIndex(TextureOperation texOp, bool ignoreType = false)
{
return FindDescriptorIndex(GetTextureDescriptors(), texOp, ignoreType);
}
public int FindImageDescriptorIndex(TextureOperation texOp)
{
return FindDescriptorIndex(GetImageDescriptors(), texOp);
}
@ -1009,7 +962,7 @@ namespace Ryujinx.Graphics.Shader.Translation
public ShaderProgramInfo CreateProgramInfo(ShaderIdentification identification = ShaderIdentification.None)
{
return new ShaderProgramInfo(
GetConstantBufferDescriptors(),
ResourceManager.GetConstantBufferDescriptors(),
GetStorageBufferDescriptors(),
GetTextureDescriptors(),
GetImageDescriptors(),

View File

@ -1,11 +1,11 @@
using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
using System.Collections.Generic;
namespace Ryujinx.Graphics.Shader.Translation
{
static class ShaderIdentifier
{
public static ShaderIdentification Identify(Function[] functions, ShaderConfig config)
public static ShaderIdentification Identify(IReadOnlyList<Function> functions, ShaderConfig config)
{
if (config.Stage == ShaderStage.Geometry &&
config.GpuAccessor.QueryPrimitiveTopology() == InputTopology.Triangles &&
@ -20,12 +20,12 @@ namespace Ryujinx.Graphics.Shader.Translation
return ShaderIdentification.None;
}
private static bool IsLayerPassthroughGeometryShader(Function[] functions, out int layerInputAttr)
private static bool IsLayerPassthroughGeometryShader(IReadOnlyList<Function> functions, out int layerInputAttr)
{
bool writesLayer = false;
layerInputAttr = 0;
if (functions.Length != 1)
if (functions.Count != 1)
{
return false;
}

View File

@ -5,6 +5,7 @@ using Ryujinx.Graphics.Shader.IntermediateRepresentation;
using Ryujinx.Graphics.Shader.StructuredIr;
using Ryujinx.Graphics.Shader.Translation.Optimizations;
using System;
using System.Collections.Generic;
using System.Linq;
using static Ryujinx.Graphics.Shader.IntermediateRepresentation.OperandHelper;
@ -44,7 +45,14 @@ namespace Ryujinx.Graphics.Shader.Translation
}
}
Function[] funcs = new Function[functions.Length];
List<Function> funcs = new List<Function>(functions.Length);
for (int i = 0; i < functions.Length; i++)
{
funcs.Add(null);
}
HelperFunctionManager hfm = new HelperFunctionManager(funcs, config.Stage);
for (int i = 0; i < functions.Length; i++)
{
@ -71,7 +79,7 @@ namespace Ryujinx.Graphics.Shader.Translation
Ssa.Rename(cfg.Blocks);
Optimizer.RunPass(cfg.Blocks, config);
Rewriter.RunPass(cfg.Blocks, config);
Rewriter.RunPass(hfm, cfg.Blocks, config);
}
funcs[i] = new Function(cfg.Blocks, $"fun{i}", false, inArgumentsCount, outArgumentsCount);
@ -99,7 +107,7 @@ namespace Ryujinx.Graphics.Shader.Translation
if (options.Flags.HasFlag(TranslationFlags.Compute))
{
config = new ShaderConfig(gpuAccessor, options);
config = new ShaderConfig(ShaderStage.Compute, gpuAccessor, options);
program = Decoder.Decode(config, address);
}

View File

@ -1,4 +1,5 @@
using Ryujinx.Graphics.GAL;
using Ryujinx.Common.Logging;
using Ryujinx.Graphics.GAL;
using Silk.NET.Vulkan;
using System;
using System.Runtime.CompilerServices;
@ -95,16 +96,27 @@ namespace Ryujinx.Graphics.Vulkan
return Unsafe.As<ulong, BufferHandle>(ref handle64);
}
public BufferHandle CreateWithHandle(VulkanRenderer gd, int size, BufferAllocationType baseType = BufferAllocationType.HostMapped, BufferHandle storageHint = default)
public BufferHandle CreateWithHandle(
VulkanRenderer gd,
int size,
BufferAllocationType baseType = BufferAllocationType.HostMapped,
BufferHandle storageHint = default)
{
return CreateWithHandle(gd, size, out _, baseType, storageHint);
}
public BufferHandle CreateWithHandle(VulkanRenderer gd, int size, out BufferHolder holder, BufferAllocationType baseType = BufferAllocationType.HostMapped, BufferHandle storageHint = default)
public BufferHandle CreateWithHandle(
VulkanRenderer gd,
int size,
out BufferHolder holder,
BufferAllocationType baseType = BufferAllocationType.HostMapped,
BufferHandle storageHint = default)
{
holder = Create(gd, size, baseType: baseType, storageHint: storageHint);
if (holder == null)
{
Logger.Error?.Print(LogClass.Gpu, $"Failed to create buffer with size 0x{size:X} and type \"{baseType}\".");
return BufferHandle.Null;
}

View File

@ -228,7 +228,12 @@ namespace Ryujinx.Graphics.Vulkan
SignalDirty(DirtyFlags.Storage);
}
public void SetTextureAndSampler(CommandBufferScoped cbs, ShaderStage stage, int binding, ITexture texture, ISampler sampler)
public void SetTextureAndSampler(
CommandBufferScoped cbs,
ShaderStage stage,
int binding,
ITexture texture,
ISampler sampler)
{
if (texture is TextureBuffer textureBuffer)
{
@ -251,6 +256,28 @@ namespace Ryujinx.Graphics.Vulkan
SignalDirty(DirtyFlags.Texture);
}
public void SetTextureAndSamplerIdentitySwizzle(
CommandBufferScoped cbs,
ShaderStage stage,
int binding,
ITexture texture,
ISampler sampler)
{
if (texture is TextureView view)
{
view.Storage.InsertWriteToReadBarrier(cbs, AccessFlags.ShaderReadBit, stage.ConvertToPipelineStageFlags());
_textureRefs[binding] = view.GetIdentityImageView();
_samplerRefs[binding] = ((SamplerHolder)sampler)?.GetSampler();
SignalDirty(DirtyFlags.Texture);
}
else
{
SetTextureAndSampler(cbs, stage, binding, texture, sampler);
}
}
public void SetUniformBuffers(CommandBuffer commandBuffer, ReadOnlySpan<BufferAssignment> buffers)
{
for (int i = 0; i < buffers.Length; i++)
@ -345,8 +372,9 @@ namespace Ryujinx.Graphics.Vulkan
private void UpdateAndBind(CommandBufferScoped cbs, int setIndex, PipelineBindPoint pbp)
{
var program = _program;
int stagesCount = program.Bindings[setIndex].Length;
if (stagesCount == 0 && setIndex != PipelineBase.UniformSetIndex)
var bindingSegments = program.BindingSegments[setIndex];
if (bindingSegments.Length == 0 && setIndex != PipelineBase.UniformSetIndex)
{
return;
}
@ -383,125 +411,113 @@ namespace Ryujinx.Graphics.Vulkan
}
}
for (int stageIndex = 0; stageIndex < stagesCount; stageIndex++)
foreach (ResourceBindingSegment segment in bindingSegments)
{
var stageBindings = program.Bindings[setIndex][stageIndex];
int bindingsCount = stageBindings.Length;
int count;
int binding = segment.Binding;
int count = segment.Count;
for (int bindingIndex = 0; bindingIndex < bindingsCount; bindingIndex += count)
if (setIndex == PipelineBase.UniformSetIndex)
{
int binding = stageBindings[bindingIndex];
count = 1;
while (bindingIndex + count < bindingsCount && stageBindings[bindingIndex + count] == binding + count)
for (int i = 0; i < count; i++)
{
count++;
int index = binding + i;
if (!_uniformSet[index])
{
UpdateBuffer(cbs, ref _uniformBuffers[index], _uniformBufferRefs[index], dummyBuffer);
_uniformSet[index] = true;
}
}
if (setIndex == PipelineBase.UniformSetIndex)
ReadOnlySpan<DescriptorBufferInfo> uniformBuffers = _uniformBuffers;
dsc.UpdateBuffers(0, binding, uniformBuffers.Slice(binding, count), DescriptorType.UniformBuffer);
}
else if (setIndex == PipelineBase.StorageSetIndex)
{
for (int i = 0; i < count; i++)
{
int index = binding + i;
if (!_storageSet[index])
{
UpdateBuffer(cbs, ref _storageBuffers[index], _storageBufferRefs[index], dummyBuffer);
_storageSet[index] = true;
}
}
ReadOnlySpan<DescriptorBufferInfo> storageBuffers = _storageBuffers;
if (program.HasMinimalLayout)
{
dsc.UpdateBuffers(0, binding, storageBuffers.Slice(binding, count), DescriptorType.StorageBuffer);
}
else
{
dsc.UpdateStorageBuffers(0, binding, storageBuffers.Slice(binding, count));
}
}
else if (setIndex == PipelineBase.TextureSetIndex)
{
if (segment.Type != ResourceType.BufferTexture)
{
Span<DescriptorImageInfo> textures = _textures;
for (int i = 0; i < count; i++)
{
int index = binding + i;
ref var texture = ref textures[i];
if (!_uniformSet[index])
texture.ImageView = _textureRefs[binding + i]?.Get(cbs).Value ?? default;
texture.Sampler = _samplerRefs[binding + i]?.Get(cbs).Value ?? default;
if (texture.ImageView.Handle == 0)
{
UpdateBuffer(cbs, ref _uniformBuffers[index], _uniformBufferRefs[index], dummyBuffer);
texture.ImageView = _dummyTexture.GetImageView().Get(cbs).Value;
}
_uniformSet[index] = true;
if (texture.Sampler.Handle == 0)
{
texture.Sampler = _dummySampler.GetSampler().Get(cbs).Value;
}
}
ReadOnlySpan<DescriptorBufferInfo> uniformBuffers = _uniformBuffers;
dsc.UpdateBuffers(0, binding, uniformBuffers.Slice(binding, count), DescriptorType.UniformBuffer);
dsc.UpdateImages(0, binding, textures.Slice(0, count), DescriptorType.CombinedImageSampler);
}
else if (setIndex == PipelineBase.StorageSetIndex)
else
{
Span<BufferView> bufferTextures = _bufferTextures;
for (int i = 0; i < count; i++)
{
int index = binding + i;
if (!_storageSet[index])
{
UpdateBuffer(cbs, ref _storageBuffers[index], _storageBufferRefs[index], dummyBuffer);
_storageSet[index] = true;
}
bufferTextures[i] = _bufferTextureRefs[binding + i]?.GetBufferView(cbs) ?? default;
}
ReadOnlySpan<DescriptorBufferInfo> storageBuffers = _storageBuffers;
if (program.HasMinimalLayout)
{
dsc.UpdateBuffers(0, binding, storageBuffers.Slice(binding, count), DescriptorType.StorageBuffer);
}
else
{
dsc.UpdateStorageBuffers(0, binding, storageBuffers.Slice(binding, count));
}
dsc.UpdateBufferImages(0, binding, bufferTextures.Slice(0, count), DescriptorType.UniformTexelBuffer);
}
else if (setIndex == PipelineBase.TextureSetIndex)
}
else if (setIndex == PipelineBase.ImageSetIndex)
{
if (segment.Type != ResourceType.BufferImage)
{
if (((uint)binding % (Constants.MaxTexturesPerStage * 2)) < Constants.MaxTexturesPerStage || program.HasMinimalLayout)
Span<DescriptorImageInfo> images = _images;
for (int i = 0; i < count; i++)
{
Span<DescriptorImageInfo> textures = _textures;
for (int i = 0; i < count; i++)
{
ref var texture = ref textures[i];
texture.ImageView = _textureRefs[binding + i]?.Get(cbs).Value ?? default;
texture.Sampler = _samplerRefs[binding + i]?.Get(cbs).Value ?? default;
if (texture.ImageView.Handle == 0)
{
texture.ImageView = _dummyTexture.GetImageView().Get(cbs).Value;
}
if (texture.Sampler.Handle == 0)
{
texture.Sampler = _dummySampler.GetSampler().Get(cbs).Value;
}
}
dsc.UpdateImages(0, binding, textures.Slice(0, count), DescriptorType.CombinedImageSampler);
images[i].ImageView = _imageRefs[binding + i]?.Get(cbs).Value ?? default;
}
else
{
Span<BufferView> bufferTextures = _bufferTextures;
for (int i = 0; i < count; i++)
{
bufferTextures[i] = _bufferTextureRefs[binding + i]?.GetBufferView(cbs) ?? default;
}
dsc.UpdateBufferImages(0, binding, bufferTextures.Slice(0, count), DescriptorType.UniformTexelBuffer);
}
dsc.UpdateImages(0, binding, images.Slice(0, count), DescriptorType.StorageImage);
}
else if (setIndex == PipelineBase.ImageSetIndex)
else
{
if (((uint)binding % (Constants.MaxImagesPerStage * 2)) < Constants.MaxImagesPerStage || program.HasMinimalLayout)
Span<BufferView> bufferImages = _bufferImages;
for (int i = 0; i < count; i++)
{
Span<DescriptorImageInfo> images = _images;
for (int i = 0; i < count; i++)
{
images[i].ImageView = _imageRefs[binding + i]?.Get(cbs).Value ?? default;
}
dsc.UpdateImages(0, binding, images.Slice(0, count), DescriptorType.StorageImage);
bufferImages[i] = _bufferImageRefs[binding + i]?.GetBufferView(cbs, _bufferImageFormats[binding + i]) ?? default;
}
else
{
Span<BufferView> bufferImages = _bufferImages;
for (int i = 0; i < count; i++)
{
bufferImages[i] = _bufferImageRefs[binding + i]?.GetBufferView(cbs, _bufferImageFormats[binding + i]) ?? default;
}
dsc.UpdateBufferImages(0, binding, bufferImages.Slice(0, count), DescriptorType.StorageTexelBuffer);
}
dsc.UpdateBufferImages(0, binding, bufferImages.Slice(0, count), DescriptorType.StorageTexelBuffer);
}
}
}
@ -541,9 +557,6 @@ namespace Ryujinx.Graphics.Vulkan
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private void UpdateAndBindUniformBufferPd(CommandBufferScoped cbs, PipelineBindPoint pbp)
{
var dummyBuffer = _dummyBuffer?.GetBuffer();
int stagesCount = _program.Bindings[PipelineBase.UniformSetIndex].Length;
if (!_uniformSet[0])
{
Span<DescriptorBufferInfo> uniformBuffer = stackalloc DescriptorBufferInfo[1];
@ -560,41 +573,32 @@ namespace Ryujinx.Graphics.Vulkan
UpdateBuffers(cbs, pbp, 0, uniformBuffer, DescriptorType.UniformBuffer);
}
for (int stageIndex = 0; stageIndex < stagesCount; stageIndex++)
var bindingSegments = _program.BindingSegments[PipelineBase.UniformSetIndex];
var dummyBuffer = _dummyBuffer?.GetBuffer();
foreach (ResourceBindingSegment segment in bindingSegments)
{
var stageBindings = _program.Bindings[PipelineBase.UniformSetIndex][stageIndex];
int bindingsCount = stageBindings.Length;
int count;
int binding = segment.Binding;
int count = segment.Count;
for (int bindingIndex = 0; bindingIndex < bindingsCount; bindingIndex += count)
bool doUpdate = false;
for (int i = 0; i < count; i++)
{
int binding = stageBindings[bindingIndex];
count = 1;
int index = binding + i;
while (bindingIndex + count < bindingsCount && stageBindings[bindingIndex + count] == binding + count)
if (!_uniformSet[index])
{
count++;
UpdateBuffer(cbs, ref _uniformBuffers[index], _uniformBufferRefs[index], dummyBuffer);
_uniformSet[index] = true;
doUpdate = true;
}
}
bool doUpdate = false;
for (int i = 0; i < count; i++)
{
int index = binding + i;
if (!_uniformSet[index])
{
UpdateBuffer(cbs, ref _uniformBuffers[index], _uniformBufferRefs[index], dummyBuffer);
_uniformSet[index] = true;
doUpdate = true;
}
}
if (doUpdate)
{
ReadOnlySpan<DescriptorBufferInfo> uniformBuffers = _uniformBuffers;
UpdateBuffers(cbs, pbp, binding, uniformBuffers.Slice(binding, count), DescriptorType.UniformBuffer);
}
if (doUpdate)
{
ReadOnlySpan<DescriptorBufferInfo> uniformBuffers = _uniformBuffers;
UpdateBuffers(cbs, pbp, binding, uniformBuffers.Slice(binding, count), DescriptorType.UniformBuffer);
}
}
}

View File

@ -54,29 +54,29 @@ namespace Ryujinx.Graphics.Vulkan.Effects
var scalingShader = EmbeddedResources.Read("Ryujinx.Graphics.Vulkan/Effects/Shaders/FsrScaling.spv");
var sharpeningShader = EmbeddedResources.Read("Ryujinx.Graphics.Vulkan/Effects/Shaders/FsrSharpening.spv");
var computeBindings = new ShaderBindings(
new[] { 2 },
Array.Empty<int>(),
new[] { 1 },
new[] { 0 });
var scalingResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
var sharpeningBindings = new ShaderBindings(
new[] { 2, 3, 4 },
Array.Empty<int>(),
new[] { 1 },
new[] { 0 });
var sharpeningResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 3)
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 4)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
_sampler = _renderer.CreateSampler(GAL.SamplerCreateInfo.Create(MinFilter.Linear, MagFilter.Linear));
_scalingProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(scalingShader, computeBindings, ShaderStage.Compute, TargetLanguage.Spirv)
});
new ShaderSource(scalingShader, ShaderStage.Compute, TargetLanguage.Spirv)
}, scalingResourceLayout);
_sharpeningProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(sharpeningShader, sharpeningBindings, ShaderStage.Compute, TargetLanguage.Spirv)
});
new ShaderSource(sharpeningShader, ShaderStage.Compute, TargetLanguage.Spirv)
}, sharpeningResourceLayout);
}
public void Run(
@ -160,10 +160,8 @@ namespace Ryujinx.Graphics.Vulkan.Effects
_pipeline.ComputeBarrier();
// Sharpening pass
_pipeline.SetCommandBuffer(cbs);
_pipeline.SetProgram(_sharpeningProgram);
_pipeline.SetTextureAndSampler(ShaderStage.Compute, 1, _intermediaryTexture, _sampler);
_pipeline.SetUniformBuffers(stackalloc[] { new BufferAssignment(2, bufferRanges) });
var sharpeningRange = new BufferRange(sharpeningBufferHandle, 0, sizeof(float));
_pipeline.SetUniformBuffers(stackalloc[] { new BufferAssignment(4, sharpeningRange) });
_pipeline.SetImage(0, destinationTexture);

View File

@ -38,18 +38,17 @@ namespace Ryujinx.Graphics.Vulkan.Effects
var shader = EmbeddedResources.Read("Ryujinx.Graphics.Vulkan/Effects/Shaders/Fxaa.spv");
var computeBindings = new ShaderBindings(
new[] { 2 },
Array.Empty<int>(),
new[] { 1 },
new[] { 0 });
var resourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
_samplerLinear = _renderer.CreateSampler(GAL.SamplerCreateInfo.Create(MinFilter.Linear, MagFilter.Linear));
_shaderProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(shader, computeBindings, ShaderStage.Compute, TargetLanguage.Spirv)
});
new ShaderSource(shader, ShaderStage.Compute, TargetLanguage.Spirv)
}, resourceLayout);
}
public TextureView Run(TextureView view, CommandBufferScoped cbs, int width, int height)

View File

@ -77,23 +77,23 @@ namespace Ryujinx.Graphics.Vulkan.Effects
var blendShader = EmbeddedResources.Read("Ryujinx.Graphics.Vulkan/Effects/Shaders/SmaaBlend.spv");
var neighbourShader = EmbeddedResources.Read("Ryujinx.Graphics.Vulkan/Effects/Shaders/SmaaNeighbour.spv");
var edgeBindings = new ShaderBindings(
new[] { 2 },
Array.Empty<int>(),
new[] { 1 },
new[] { 0 });
var edgeResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
var blendBindings = new ShaderBindings(
new[] { 2 },
Array.Empty<int>(),
new[] { 1, 3, 4 },
new[] { 0 });
var blendResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 3)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 4)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
var neighbourBindings = new ShaderBindings(
new[] { 2 },
Array.Empty<int>(),
new[] { 1, 3 },
new[] { 0 });
var neighbourResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 1)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 3)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
_samplerLinear = _renderer.CreateSampler(GAL.SamplerCreateInfo.Create(MinFilter.Linear, MagFilter.Linear));
@ -117,18 +117,18 @@ namespace Ryujinx.Graphics.Vulkan.Effects
_edgeProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(edgeShader, edgeBindings, ShaderStage.Compute, TargetLanguage.Spirv)
}, new[] { specInfo });
new ShaderSource(edgeShader, ShaderStage.Compute, TargetLanguage.Spirv)
}, edgeResourceLayout, new[] { specInfo });
_blendProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(blendShader, blendBindings, ShaderStage.Compute, TargetLanguage.Spirv)
}, new[] { specInfo });
new ShaderSource(blendShader, ShaderStage.Compute, TargetLanguage.Spirv)
}, blendResourceLayout, new[] { specInfo });
_neighbourProgram = _renderer.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(neighbourShader, neighbourBindings, ShaderStage.Compute, TargetLanguage.Spirv)
}, new[] { specInfo });
new ShaderSource(neighbourShader, ShaderStage.Compute, TargetLanguage.Spirv)
}, neighbourResourceLayout, new[] { specInfo });
}
public void DeletePipelines()

View File

@ -36,6 +36,56 @@ namespace Ryujinx.Graphics.Vulkan
};
}
public static ShaderStageFlags Convert(this ResourceStages stages)
{
ShaderStageFlags stageFlags = stages.HasFlag(ResourceStages.Compute)
? ShaderStageFlags.ComputeBit
: ShaderStageFlags.None;
if (stages.HasFlag(ResourceStages.Vertex))
{
stageFlags |= ShaderStageFlags.VertexBit;
}
if (stages.HasFlag(ResourceStages.TessellationControl))
{
stageFlags |= ShaderStageFlags.TessellationControlBit;
}
if (stages.HasFlag(ResourceStages.TessellationEvaluation))
{
stageFlags |= ShaderStageFlags.TessellationEvaluationBit;
}
if (stages.HasFlag(ResourceStages.Geometry))
{
stageFlags |= ShaderStageFlags.GeometryBit;
}
if (stages.HasFlag(ResourceStages.Fragment))
{
stageFlags |= ShaderStageFlags.FragmentBit;
}
return stageFlags;
}
public static DescriptorType Convert(this ResourceType type)
{
return type switch
{
ResourceType.UniformBuffer => DescriptorType.UniformBuffer,
ResourceType.StorageBuffer => DescriptorType.StorageBuffer,
ResourceType.Texture => DescriptorType.SampledImage,
ResourceType.Sampler => DescriptorType.Sampler,
ResourceType.TextureAndSampler => DescriptorType.CombinedImageSampler,
ResourceType.Image => DescriptorType.StorageImage,
ResourceType.BufferTexture => DescriptorType.UniformTexelBuffer,
ResourceType.BufferImage => DescriptorType.StorageTexelBuffer,
_ => throw new ArgumentException($"Invalid resource type \"{type}\".")
};
}
public static SamplerAddressMode Convert(this AddressMode mode)
{
return mode switch
@ -48,7 +98,7 @@ namespace Ryujinx.Graphics.Vulkan
AddressMode.ClampToBorder => SamplerAddressMode.ClampToBorder,
AddressMode.MirroredRepeat => SamplerAddressMode.MirroredRepeat,
AddressMode.ClampToEdge => SamplerAddressMode.ClampToEdge,
_ => LogInvalidAndReturn(mode, nameof(AddressMode), SamplerAddressMode.ClampToEdge) // TODO: Should be clamp.
_ => LogInvalidAndReturn(mode, nameof(AddressMode), SamplerAddressMode.ClampToEdge) // TODO: Should be clamp.
};
}

View File

@ -168,5 +168,223 @@ namespace Ryujinx.Graphics.Vulkan
{
return _table[(int)format];
}
public static int GetAttributeFormatSize(VkFormat format)
{
switch (format)
{
case VkFormat.R8Unorm:
case VkFormat.R8SNorm:
case VkFormat.R8Uint:
case VkFormat.R8Sint:
case VkFormat.R8Uscaled:
case VkFormat.R8Sscaled:
return 1;
case VkFormat.R8G8Unorm:
case VkFormat.R8G8SNorm:
case VkFormat.R8G8Uint:
case VkFormat.R8G8Sint:
case VkFormat.R8G8Uscaled:
case VkFormat.R8G8Sscaled:
case VkFormat.R16Sfloat:
case VkFormat.R16Unorm:
case VkFormat.R16SNorm:
case VkFormat.R16Uint:
case VkFormat.R16Sint:
case VkFormat.R16Uscaled:
case VkFormat.R16Sscaled:
return 2;
case VkFormat.R8G8B8Unorm:
case VkFormat.R8G8B8SNorm:
case VkFormat.R8G8B8Uint:
case VkFormat.R8G8B8Sint:
case VkFormat.R8G8B8Uscaled:
case VkFormat.R8G8B8Sscaled:
return 3;
case VkFormat.R8G8B8A8Unorm:
case VkFormat.R8G8B8A8SNorm:
case VkFormat.R8G8B8A8Uint:
case VkFormat.R8G8B8A8Sint:
case VkFormat.R8G8B8A8Srgb:
case VkFormat.R8G8B8A8Uscaled:
case VkFormat.R8G8B8A8Sscaled:
case VkFormat.B8G8R8A8Unorm:
case VkFormat.B8G8R8A8Srgb:
case VkFormat.R16G16Sfloat:
case VkFormat.R16G16Unorm:
case VkFormat.R16G16SNorm:
case VkFormat.R16G16Uint:
case VkFormat.R16G16Sint:
case VkFormat.R16G16Uscaled:
case VkFormat.R16G16Sscaled:
case VkFormat.R32Sfloat:
case VkFormat.R32Uint:
case VkFormat.R32Sint:
case VkFormat.A2B10G10R10UnormPack32:
case VkFormat.A2B10G10R10UintPack32:
case VkFormat.B10G11R11UfloatPack32:
case VkFormat.E5B9G9R9UfloatPack32:
case VkFormat.A2B10G10R10SNormPack32:
case VkFormat.A2B10G10R10SintPack32:
case VkFormat.A2B10G10R10UscaledPack32:
case VkFormat.A2B10G10R10SscaledPack32:
return 4;
case VkFormat.R16G16B16Sfloat:
case VkFormat.R16G16B16Unorm:
case VkFormat.R16G16B16SNorm:
case VkFormat.R16G16B16Uint:
case VkFormat.R16G16B16Sint:
case VkFormat.R16G16B16Uscaled:
case VkFormat.R16G16B16Sscaled:
return 6;
case VkFormat.R16G16B16A16Sfloat:
case VkFormat.R16G16B16A16Unorm:
case VkFormat.R16G16B16A16SNorm:
case VkFormat.R16G16B16A16Uint:
case VkFormat.R16G16B16A16Sint:
case VkFormat.R16G16B16A16Uscaled:
case VkFormat.R16G16B16A16Sscaled:
case VkFormat.R32G32Sfloat:
case VkFormat.R32G32Uint:
case VkFormat.R32G32Sint:
return 8;
case VkFormat.R32G32B32Sfloat:
case VkFormat.R32G32B32Uint:
case VkFormat.R32G32B32Sint:
return 12;
case VkFormat.R32G32B32A32Sfloat:
case VkFormat.R32G32B32A32Uint:
case VkFormat.R32G32B32A32Sint:
return 16;
}
return 1;
}
public static VkFormat DropLastComponent(VkFormat format)
{
switch (format)
{
case VkFormat.R8G8Unorm:
return VkFormat.R8Unorm;
case VkFormat.R8G8SNorm:
return VkFormat.R8SNorm;
case VkFormat.R8G8Uint:
return VkFormat.R8Uint;
case VkFormat.R8G8Sint:
return VkFormat.R8Sint;
case VkFormat.R8G8Uscaled:
return VkFormat.R8Uscaled;
case VkFormat.R8G8Sscaled:
return VkFormat.R8Sscaled;
case VkFormat.R8G8B8Unorm:
return VkFormat.R8G8Unorm;
case VkFormat.R8G8B8SNorm:
return VkFormat.R8G8SNorm;
case VkFormat.R8G8B8Uint:
return VkFormat.R8G8Uint;
case VkFormat.R8G8B8Sint:
return VkFormat.R8G8Sint;
case VkFormat.R8G8B8Uscaled:
return VkFormat.R8G8Uscaled;
case VkFormat.R8G8B8Sscaled:
return VkFormat.R8G8Sscaled;
case VkFormat.R8G8B8A8Unorm:
return VkFormat.R8G8B8Unorm;
case VkFormat.R8G8B8A8SNorm:
return VkFormat.R8G8B8SNorm;
case VkFormat.R8G8B8A8Uint:
return VkFormat.R8G8B8Uint;
case VkFormat.R8G8B8A8Sint:
return VkFormat.R8G8B8Sint;
case VkFormat.R8G8B8A8Srgb:
return VkFormat.R8G8B8Srgb;
case VkFormat.R8G8B8A8Uscaled:
return VkFormat.R8G8B8Uscaled;
case VkFormat.R8G8B8A8Sscaled:
return VkFormat.R8G8B8Sscaled;
case VkFormat.B8G8R8A8Unorm:
return VkFormat.B8G8R8Unorm;
case VkFormat.B8G8R8A8Srgb:
return VkFormat.B8G8R8Srgb;
case VkFormat.R16G16Sfloat:
return VkFormat.R16Sfloat;
case VkFormat.R16G16Unorm:
return VkFormat.R16Unorm;
case VkFormat.R16G16SNorm:
return VkFormat.R16SNorm;
case VkFormat.R16G16Uint:
return VkFormat.R16Uint;
case VkFormat.R16G16Sint:
return VkFormat.R16Sint;
case VkFormat.R16G16Uscaled:
return VkFormat.R16Uscaled;
case VkFormat.R16G16Sscaled:
return VkFormat.R16Sscaled;
case VkFormat.R16G16B16Sfloat:
return VkFormat.R16G16Sfloat;
case VkFormat.R16G16B16Unorm:
return VkFormat.R16G16Unorm;
case VkFormat.R16G16B16SNorm:
return VkFormat.R16G16SNorm;
case VkFormat.R16G16B16Uint:
return VkFormat.R16G16Uint;
case VkFormat.R16G16B16Sint:
return VkFormat.R16G16Sint;
case VkFormat.R16G16B16Uscaled:
return VkFormat.R16G16Uscaled;
case VkFormat.R16G16B16Sscaled:
return VkFormat.R16G16Sscaled;
case VkFormat.R16G16B16A16Sfloat:
return VkFormat.R16G16B16Sfloat;
case VkFormat.R16G16B16A16Unorm:
return VkFormat.R16G16B16Unorm;
case VkFormat.R16G16B16A16SNorm:
return VkFormat.R16G16B16SNorm;
case VkFormat.R16G16B16A16Uint:
return VkFormat.R16G16B16Uint;
case VkFormat.R16G16B16A16Sint:
return VkFormat.R16G16B16Sint;
case VkFormat.R16G16B16A16Uscaled:
return VkFormat.R16G16B16Uscaled;
case VkFormat.R16G16B16A16Sscaled:
return VkFormat.R16G16B16Sscaled;
case VkFormat.R32G32Sfloat:
return VkFormat.R32Sfloat;
case VkFormat.R32G32Uint:
return VkFormat.R32Uint;
case VkFormat.R32G32Sint:
return VkFormat.R32Sint;
case VkFormat.R32G32B32Sfloat:
return VkFormat.R32G32Sfloat;
case VkFormat.R32G32B32Uint:
return VkFormat.R32G32Uint;
case VkFormat.R32G32B32Sint:
return VkFormat.R32G32Sint;
case VkFormat.R32G32B32A32Sfloat:
return VkFormat.R32G32B32Sfloat;
case VkFormat.R32G32B32A32Uint:
return VkFormat.R32G32B32Uint;
case VkFormat.R32G32B32A32Sint:
return VkFormat.R32G32B32Sint;
}
return format;
}
}
}

View File

@ -28,6 +28,7 @@ namespace Ryujinx.Graphics.Vulkan
public readonly bool SupportsSubgroupSizeControl;
public readonly bool SupportsShaderInt8;
public readonly bool SupportsShaderStencilExport;
public readonly bool SupportsShaderStorageImageMultisample;
public readonly bool SupportsConditionalRendering;
public readonly bool SupportsExtendedDynamicState;
public readonly bool SupportsMultiView;
@ -63,6 +64,7 @@ namespace Ryujinx.Graphics.Vulkan
bool supportsSubgroupSizeControl,
bool supportsShaderInt8,
bool supportsShaderStencilExport,
bool supportsShaderStorageImageMultisample,
bool supportsConditionalRendering,
bool supportsExtendedDynamicState,
bool supportsMultiView,
@ -97,6 +99,7 @@ namespace Ryujinx.Graphics.Vulkan
SupportsSubgroupSizeControl = supportsSubgroupSizeControl;
SupportsShaderInt8 = supportsShaderInt8;
SupportsShaderStencilExport = supportsShaderStencilExport;
SupportsShaderStorageImageMultisample = supportsShaderStorageImageMultisample;
SupportsConditionalRendering = supportsConditionalRendering;
SupportsExtendedDynamicState = supportsExtendedDynamicState;
SupportsMultiView = supportsMultiView;

View File

@ -55,192 +55,168 @@ namespace Ryujinx.Graphics.Vulkan
_samplerLinear = gd.CreateSampler(GAL.SamplerCreateInfo.Create(MinFilter.Linear, MagFilter.Linear));
_samplerNearest = gd.CreateSampler(GAL.SamplerCreateInfo.Create(MinFilter.Nearest, MagFilter.Nearest));
var blitVertexBindings = new ShaderBindings(
new[] { 1 },
Array.Empty<int>(),
Array.Empty<int>(),
Array.Empty<int>());
var blitFragmentBindings = new ShaderBindings(
Array.Empty<int>(),
Array.Empty<int>(),
new[] { 0 },
Array.Empty<int>());
var blitResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Vertex, ResourceType.UniformBuffer, 1)
.Add(ResourceStages.Fragment, ResourceType.TextureAndSampler, 0).Build();
_programColorBlit = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programColorBlitMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitMsFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programColorBlitClearAlpha = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitClearAlphaFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorBlitClearAlphaFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
var colorClearFragmentBindings = new ShaderBindings(
Array.Empty<int>(),
Array.Empty<int>(),
Array.Empty<int>(),
Array.Empty<int>());
var colorClearResourceLayout = new ResourceLayoutBuilder().Add(ResourceStages.Vertex, ResourceType.UniformBuffer, 1).Build();
_programColorClearF = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearFFragmentShaderSource, colorClearFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearFFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorClearResourceLayout);
_programColorClearSI = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearSIFragmentShaderSource, colorClearFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearSIFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorClearResourceLayout);
_programColorClearUI = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearUIFragmentShaderSource, colorClearFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorClearVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorClearUIFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorClearResourceLayout);
var strideChangeBindings = new ShaderBindings(
new[] { 0 },
new[] { 1, 2 },
Array.Empty<int>(),
Array.Empty<int>());
var strideChangeResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 1)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 2).Build();
_programStrideChange = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ChangeBufferStrideShaderSource, strideChangeBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ChangeBufferStrideShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, strideChangeResourceLayout);
var colorCopyBindings = new ShaderBindings(
new[] { 0 },
Array.Empty<int>(),
new[] { 0 },
new[] { 0 });
var colorCopyResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Compute, ResourceType.TextureAndSampler, 0)
.Add(ResourceStages.Compute, ResourceType.Image, 0).Build();
_programColorCopyShortening = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorCopyShorteningComputeShaderSource, colorCopyBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorCopyShorteningComputeShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, colorCopyResourceLayout);
_programColorCopyToNonMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorCopyToNonMsComputeShaderSource, colorCopyBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorCopyToNonMsComputeShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, colorCopyResourceLayout);
_programColorCopyWidening = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorCopyWideningComputeShaderSource, colorCopyBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorCopyWideningComputeShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, colorCopyResourceLayout);
var colorDrawToMsVertexBindings = new ShaderBindings(
Array.Empty<int>(),
Array.Empty<int>(),
Array.Empty<int>(),
Array.Empty<int>());
var colorDrawToMsFragmentBindings = new ShaderBindings(
new[] { 0 },
Array.Empty<int>(),
new[] { 0 },
Array.Empty<int>());
var colorDrawToMsResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Fragment, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Fragment, ResourceType.TextureAndSampler, 0).Build();
_programColorDrawToMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, colorDrawToMsVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorDrawToMsFragmentShaderSource, colorDrawToMsFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.ColorDrawToMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorDrawToMsResourceLayout);
var convertD32S8ToD24S8Bindings = new ShaderBindings(
new[] { 0 },
new[] { 1, 2 },
Array.Empty<int>(),
Array.Empty<int>());
var convertD32S8ToD24S8ResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 1)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 2).Build();
_programConvertD32S8ToD24S8 = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ConvertD32S8ToD24S8ShaderSource, convertD32S8ToD24S8Bindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ConvertD32S8ToD24S8ShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, convertD32S8ToD24S8ResourceLayout);
var convertIndexBufferBindings = new ShaderBindings(
new[] { 0 },
new[] { 1, 2 },
Array.Empty<int>(),
Array.Empty<int>());
var convertIndexBufferResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 1)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 2).Build();
_programConvertIndexBuffer = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ConvertIndexBufferShaderSource, convertIndexBufferBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ConvertIndexBufferShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, convertIndexBufferResourceLayout);
var convertIndirectDataBindings = new ShaderBindings(
new[] { 0 },
new[] { 1, 2, 3 },
Array.Empty<int>(),
Array.Empty<int>());
var convertIndirectDataResourceLayout = new ResourceLayoutBuilder()
.Add(ResourceStages.Compute, ResourceType.UniformBuffer, 0)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 1)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 2)
.Add(ResourceStages.Compute, ResourceType.StorageBuffer, 3).Build();
_programConvertIndirectData = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ConvertIndirectDataShaderSource, convertIndirectDataBindings, ShaderStage.Compute, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ConvertIndirectDataShaderSource, ShaderStage.Compute, TargetLanguage.Spirv),
}, convertIndirectDataResourceLayout);
_programDepthBlit = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthBlitFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthBlitFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programDepthBlitMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthBlitMsFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthBlitMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programDepthDrawToMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, colorDrawToMsVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthDrawToMsFragmentShaderSource, colorDrawToMsFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthDrawToMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorDrawToMsResourceLayout);
_programDepthDrawToNonMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, colorDrawToMsVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthDrawToNonMsFragmentShaderSource, colorDrawToMsFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.DepthDrawToNonMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorDrawToMsResourceLayout);
if (gd.Capabilities.SupportsShaderStencilExport)
{
_programStencilBlit = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilBlitFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilBlitFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programStencilBlitMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, blitVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilBlitMsFragmentShaderSource, blitFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorBlitVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilBlitMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, blitResourceLayout);
_programStencilDrawToMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, colorDrawToMsVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilDrawToMsFragmentShaderSource, colorDrawToMsFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilDrawToMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorDrawToMsResourceLayout);
_programStencilDrawToNonMs = gd.CreateProgramWithMinimalLayout(new[]
{
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, colorDrawToMsVertexBindings, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilDrawToNonMsFragmentShaderSource, colorDrawToMsFragmentBindings, ShaderStage.Fragment, TargetLanguage.Spirv),
});
new ShaderSource(ShaderBinaries.ColorDrawToMsVertexShaderSource, ShaderStage.Vertex, TargetLanguage.Spirv),
new ShaderSource(ShaderBinaries.StencilDrawToNonMsFragmentShaderSource, ShaderStage.Fragment, TargetLanguage.Spirv),
}, colorDrawToMsResourceLayout);
}
}
@ -415,7 +391,7 @@ namespace Ryujinx.Graphics.Vulkan
var sampler = linearFilter ? _samplerLinear : _samplerNearest;
_pipeline.SetTextureAndSampler(ShaderStage.Fragment, 0, src, sampler);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Fragment, 0, src, sampler);
Span<float> region = stackalloc float[RegionBufferSize / sizeof(float)];
@ -625,7 +601,7 @@ namespace Ryujinx.Graphics.Vulkan
private void BlitDepthStencilDraw(TextureView src, bool isDepth)
{
_pipeline.SetTextureAndSampler(ShaderStage.Fragment, 0, src, _samplerNearest);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Fragment, 0, src, _samplerNearest);
if (isDepth)
{
@ -1037,7 +1013,7 @@ namespace Ryujinx.Graphics.Vulkan
var srcView = Create2DLayerView(src, srcLayer + z, srcLevel + l, srcFormat);
var dstView = Create2DLayerView(dst, dstLayer + z, dstLevel + l);
_pipeline.SetTextureAndSampler(ShaderStage.Compute, 0, srcView, null);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Compute, 0, srcView, null);
_pipeline.SetImage(0, dstView, dstFormat);
int dispatchX = (Math.Min(srcView.Info.Width, dstView.Info.Width) + 31) / 32;
@ -1177,7 +1153,7 @@ namespace Ryujinx.Graphics.Vulkan
var srcView = Create2DLayerView(src, srcLayer + z, 0, format);
var dstView = Create2DLayerView(dst, dstLayer + z, 0);
_pipeline.SetTextureAndSampler(ShaderStage.Compute, 0, srcView, null);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Compute, 0, srcView, null);
_pipeline.SetImage(0, dstView, format);
_pipeline.DispatchCompute(dispatchX, dispatchY, 1);
@ -1313,7 +1289,7 @@ namespace Ryujinx.Graphics.Vulkan
var srcView = Create2DLayerView(src, srcLayer + z, 0, format);
var dstView = Create2DLayerView(dst, dstLayer + z, 0);
_pipeline.SetTextureAndSampler(ShaderStage.Fragment, 0, srcView, null);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Fragment, 0, srcView, null);
_pipeline.SetRenderTarget(
((TextureView)dstView).GetView(format).GetImageViewForAttachment(),
(uint)dst.Width,
@ -1384,7 +1360,7 @@ namespace Ryujinx.Graphics.Vulkan
private void CopyMSAspectDraw(TextureView src, bool fromMS, bool isDepth)
{
_pipeline.SetTextureAndSampler(ShaderStage.Fragment, 0, src, _samplerNearest);
_pipeline.SetTextureAndSamplerIdentitySwizzle(ShaderStage.Fragment, 0, src, _samplerNearest);
if (isDepth)
{

View File

@ -1098,6 +1098,11 @@ namespace Ryujinx.Graphics.Vulkan
_descriptorSetUpdater.SetTextureAndSampler(Cbs, stage, binding, texture, sampler);
}
public void SetTextureAndSamplerIdentitySwizzle(ShaderStage stage, int binding, ITexture texture, ISampler sampler)
{
_descriptorSetUpdater.SetTextureAndSamplerIdentitySwizzle(Cbs, stage, binding, texture, sampler);
}
public void SetTransformFeedbackBuffers(ReadOnlySpan<BufferRange> buffers)
{
PauseTransformFeedbackInternal();

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