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191 Commits

Author SHA1 Message Date
IvonWei
9f25816eeb Merge 4f8bb06d8e into e676fd8b17 2025-01-19 21:49:50 +01:00
Evan Husted
e676fd8b17 UI: misc: simplify Intel Mac warning logic 2025-01-19 14:42:15 -06:00
Evan Husted
dd16e3cee1 misc: chore: very small cleanup in AvaHostUIHandler 2025-01-19 13:18:40 -06:00
Evan Husted
31e5f74e05 UI: misc: Replace spaces in Title with newlines when using custom title bar (since the Title is in an Avalonia tooltip) 2025-01-19 13:05:20 -06:00
Evan Husted
f2f099bddb remove Async suffixes; they're factory methods not actual async methods. 2025-01-19 12:46:32 -06:00
Evan Husted
2616dc57fb misc: chore: RelayCommand helper 2025-01-19 12:44:07 -06:00
Evan Husted
0cdf7cfe21 UI: Open cheat manager in catch-all try 2025-01-18 22:48:06 -06:00
Evan Husted
2ecf999569 misc: chore: change ThemeManager ThemeChanged to a basic Action since both arguments are unused 2025-01-18 22:48:06 -06:00
Daenorth
b612fc5155 Updated TitleIDs (#541)
Added more games to the RPC list. Now alphabetical.
2025-01-18 22:19:28 -06:00
madwind
4f8bb06d8e merge 2025-01-19 11:10:03 +08:00
madwind
8fd97963e9 Merge remote-tracking branch 'origin/master2' into SDL3
# Conflicts:
#	src/Ryujinx/Headless/Windows/OpenGLWindow.cs
#	src/Ryujinx/Headless/Windows/WindowBase.cs
2025-01-19 11:01:09 +08:00
Evan Husted
25eb545409 Update bug_report.yml 2025-01-18 20:55:28 -06:00
Jacob
52269964b6 Add the player select applet. (#537)
This introduces the somewhat completed version of the Player Select
Applet, allowing users to select either a user or a guest from the UI.
Note: Selecting the guest more then once currently does not work.

closes https://github.com/Ryubing/Ryujinx/issues/532
2025-01-18 20:40:33 -06:00
Evan Husted
ccdddac8fc Fix compile warnings 2025-01-18 19:34:31 -06:00
Daenorth
1bc30bf3ba Update locales.json (#538)
Added a missing translation line
2025-01-18 18:40:51 -06:00
Evan Husted
4868fface8 UI: Intel Mac warning
Upon launch, shows a warning about using an Intel Mac. This will only show once every boot. You can only turn it off by getting a better system.
2025-01-18 15:33:05 -06:00
Evan Husted
6fca4492d0 misc: chore: Remove status update event stuff in Headless 2025-01-18 15:15:08 -06:00
Evan Husted
ade2f256e0 misc: chore: remove duplicate graphics debug levels in headless windows 2025-01-18 11:19:38 -06:00
Evan Husted
580b150c9a Revert "infra: Conditionally compile Metal & OpenGL depending on if the target RuntimeIdentifier is mac"
This reverts commit 2f93a0f706.
2025-01-18 10:57:02 -06:00
Evan Husted
e6bad52945 Revert "Only selectively compile Metal & fix some compilation issues"
This reverts commit beda3206e0.
2025-01-18 10:56:58 -06:00
Evan Husted
beda3206e0 Only selectively compile Metal & fix some compilation issues 2025-01-18 10:52:32 -06:00
Evan Husted
2f93a0f706 infra: Conditionally compile Metal & OpenGL depending on if the target RuntimeIdentifier is mac 2025-01-18 10:38:29 -06:00
Evan Husted
80f44d9547 misc: chore: small cleanup 2025-01-18 10:33:57 -06:00
Evan Husted
b08e5db6d8 Headless: Dispose of inputmanager in a catch-all try 2025-01-18 10:30:19 -06:00
Evan Husted
6a291d4116 Headless: Use main UI logo for window icon instead of separate bmp 2025-01-18 10:26:12 -06:00
Evan Husted
6fc827fe67 headless: collapse headless window definition into a "Windows" folder, change GetWindowFlags to an abstract property. 2025-01-18 10:15:24 -06:00
Daniel Nylander
6cd4866d76 Updated sv_SE in locales.json (#513) 2025-01-17 18:04:18 -06:00
WilliamWsyHK
4d7ca5c0f0 Update Chinese translations (#375) 2025-01-17 17:35:34 -06:00
GabCoolGuy
a375faecc1 UI: Fix UpdateWaitWindow.axaml windows being too big on windows (#314) 2025-01-17 14:14:19 -06:00
Evan Husted
1728b0f20c WWE 2K18 is not playable. 2025-01-17 11:37:08 -06:00
madwind
f7c70def34 SDL3-3.1.10 2025-01-17 21:26:40 +08:00
IvonWei
846f8940e5 Merge branch 'Ryubing:master' into SDL3 2025-01-17 21:12:15 +08:00
LotP1
5aa071c59b remove notice for unusual core counts (#531) 2025-01-17 05:50:42 -06:00
madwind
c05aa45f30 remove sdl2 text 2025-01-17 19:28:59 +08:00
madwind
8f09f4cec8 disable sdl2 build 2025-01-17 15:37:56 +08:00
madwind
55d7584d0f sdl3 2025-01-17 13:09:25 +08:00
Daenorth
1018c9db8b Update Norwegian Translation (#503)
Norwegian translation updated with the Compatibility list addition
2025-01-16 10:02:33 -06:00
Evan Husted
01ccd18726 UI: Meant to use that method in another place [ci-skip] 2025-01-16 09:52:35 -06:00
Evan Husted
abfbc6f4bc UI: Prevent desynced RPC when toggling it off/on while in-game 2025-01-16 09:52:01 -06:00
madwind
0c25cc1a81 remove log 2025-01-16 21:51:05 +08:00
madwind
6e7c787cb4 update 2025-01-16 21:35:46 +08:00
Francesco Saltori
6a4bc02d7a Update Italian translation (#489) 2025-01-16 06:38:36 -06:00
madwind
cfbe22e9b8 update sdl3 2025-01-16 20:37:54 +08:00
madwind
868e5199c2 fix pro layout 2025-01-16 20:36:07 +08:00
Hack茶ん
814c0526d2 Korean translations for compat list (#502) 2025-01-16 04:57:32 -06:00
IvonWei
48968f1195 Merge branch 'Ryubing:master' into SDL3 2025-01-16 17:36:09 +08:00
madwind
f56cd968e2 update 2025-01-16 17:35:35 +08:00
madwind
82664ef69b fix audiomix 2025-01-16 17:24:00 +08:00
Evan Husted
a5a4ef38e6 HLE: Stub IHidServer SetGestureOutputRanges (#524)
Lets "Donkey Kong Country Returns HD" get into main gameplay.
2025-01-16 02:39:39 -06:00
madwind
e1cb957d7b remove unnecessary code 2025-01-15 23:26:56 +08:00
madwind
dfbcdfa83a sdl3 audio callback 2025-01-15 22:38:21 +08:00
madwind
37f4c1ea1a Merge branch 'master2' into SDL3
# Conflicts:
#	Directory.Packages.props
2025-01-15 18:47:41 +08:00
madwind
fbc5ccfa2c sdl3 audio 2025-01-15 17:23:03 +08:00
Evan Husted
c17e3bfcdf genuinely dont know how that was still there, i thought i got rid of UI.Common 2025-01-15 03:01:17 -06:00
Evan Husted
017f46f318 HLE: misc: throw a more descriptive error when the loaded processes doesn't contain _latestPid (likely missing FW) 2025-01-15 03:01:17 -06:00
madwind
0bd62888a0 sdl3 audio 2025-01-15 12:08:08 +08:00
madwind
b01dcd1963 update 2025-01-15 00:27:57 +08:00
madwind
992fe0e64f JoyConPair setting 2025-01-15 00:27:13 +08:00
madwind
b8b3767613 show button 2025-01-14 18:36:01 +08:00
Keaton
fd4d801bfd Various NuGet package updates (#203)
Updates the following packages:

**nuget: bump the avalonia group with 7 updates**

* Bump Avalonia, Avalonia.Controls.DataGrid, Avalonia.Desktop,
Avalonia.Diagnostics, and Avalonia.Markup.Xaml.Loader from 11.0.10 to
11.0.13
* Bump Avalonia.Svg and Avalonia.Svg.Skia from 11.0.0.18 to 11.0.0.19

**nuget: bump non-avalonia packages**

* Bump Concentus from 2.2.0 to 2.2.2
* Bump Microsoft.IdentityModel.JsonWebTokens from 8.1.2 to 8.3.0
* Bump Silk.NET.Vulkan group with 3 updates (2.21.0 to 2.22.0)
* Bump SkiaSharp group with 2 updates (2.88.7 to 2.88.9)
2025-01-13 11:15:05 -06:00
madwind
c4b9aedc0f update 2025-01-13 22:44:44 +08:00
madwind
106b37f91f Merge branch 'master' into SDL3
# Conflicts:
#	src/Ryujinx/UI/ViewModels/Input/ControllerInputViewModel.cs
2025-01-13 09:14:47 +08:00
madwind
9356b68f26 Add a '*' to label the virtual controller. 2025-01-13 08:41:32 +08:00
IvonWei
14aafebaa6 Merge branch 'Ryubing:master' into master 2025-01-13 08:33:30 +08:00
GabCoolGuy
f1dee50275 infra: Update to LLVM 17 (#519)
This fixes macos builds not building correctly because of a missing
LLVM 14 package.
2025-01-12 14:57:57 -06:00
shinyoyo
c2ae49eb47 Add some missing Simplified Chinese translations (#515) 2025-01-12 12:33:27 -06:00
WilliamWsyHK
47c71966d0 Add compat of Xenoblade 2 JP edition same as global edition (#517) 2025-01-12 12:31:58 -06:00
madwind
f4e7482312 fix sdl3 motion 2025-01-11 23:10:08 +08:00
Evan Husted
f9e8f4bc29 docs: compat: Ori and the Will of the Wisps is now ingame, not playable 2025-01-11 06:10:58 -06:00
Evan Husted
7694c8c046 Do not auto release stable 2025-01-11 04:08:11 -06:00
Evan Husted
0dd789e8a5 misc: chore: remove redundant trimming on CompatibilityEntry.GameName init 2025-01-11 01:26:34 -06:00
Evan Husted
4e0aafd005 docs: compat: Trim redundant/duplicate information to save space 2025-01-11 01:18:10 -06:00
Evan Husted
c5091f499e docs: compat: The House of the Dead: Remake Playable 2025-01-11 00:38:32 -06:00
Evan Husted
41c8fd8194 misc: chore: lol this field was misspelled 2025-01-10 23:23:53 -06:00
Evan Husted
d4a7ee25ea misc: chore: use ObservableProperty on input view models 2025-01-10 23:23:05 -06:00
Evan Husted
3141c560fb misc: chore: remove sender parameter from LdnGameData receieved event 2025-01-10 23:15:55 -06:00
Evan Husted
de341b285b misc: use ObservableProperty on HotkeyConfig fields 2025-01-10 23:15:37 -06:00
Evan Husted
4518666a04 Merge branch 'master' into master 2025-01-10 21:39:41 -06:00
Evan Husted
cc95e80ee9 misc: chore: Move converters into a directory in Helpers. Namespace unchanged 2025-01-10 20:24:53 -06:00
Evan Husted
d75ce52bd4 UI: Show play time in one time unit, maxing out at hours. 2025-01-10 20:23:47 -06:00
madwind
241b0152ad update 2025-01-11 00:24:53 +08:00
Evan Husted
4a4ea557de UI: compat: show last updated date on entry hover 2025-01-10 01:43:34 -06:00
Evan Husted
33f42adb11 Merge remote-tracking branch 'origin/master' 2025-01-09 22:09:01 -06:00
LotP1
918ec1bde3 cores rework (#505)
This PR changes the core count to be defined in the device instead of
being a const value.
This is mostly a change for future features I want to implement and
should not impact any functionality.
The console will now log the range of cores requested from the
application, and for now, if the requested range is not 0 to 2 (the 3
cores used for application emulation), it will give an error message
which tells the user to contact me on discord. I'm doing this because
I'm interested in finding applications/games that don't use 3 cores and
the error will be removed in the future once I've gotten enough data.
2025-01-09 21:43:18 -06:00
Evan Husted
cca429d46a misc: chore: restore not enable 2025-01-09 21:42:54 -06:00
Evan Husted
845c86f545 misc: chore: cleanup AppletMetadata.CanStart 2025-01-09 21:14:35 -06:00
Evan Husted
27993b789f misc: chore: fix some compile warnings 2025-01-09 20:23:26 -06:00
Evan Husted
bdd890cf6f UI: logger function name 2025-01-09 19:48:11 -06:00
Evan Husted
c5574b41a1 UI: collapse LoadFromStream into static ctor
pass the index get delegate to the struct instead of the entire header
2025-01-09 19:44:24 -06:00
Evan Husted
292e27f0da UI: dispose CSV reader when done + use explicit types 2025-01-09 19:24:48 -06:00
Evan Husted
606e149bd3 UI: Create a ColumnIndices struct and pass it by reference to the row ctor instead of recomputing the column index for every column on every row 2025-01-09 18:48:15 -06:00
Evan Husted
a8c3407d11 missing JP title id 2025-01-09 14:25:16 -06:00
Evan Husted
daa8168985 docs: compat: the final title IDs i could find 2025-01-09 14:03:37 -06:00
Vita Chumakova
f580521e99 Update game data in the compatibility database (#507)
The entries were matched with the game database from
https://github.com/blawar/titledb/blob/master/US.en.json, allowing to
fill missing title IDs and fix game names.
2025-01-09 13:18:27 -06:00
madwind
91f70584ec update 2025-01-09 23:47:44 +08:00
madwind
2c26388dde SDL3 2025-01-09 21:36:39 +08:00
IvonWei
7df576b5d4 Merge branch 'Ryubing:master' into joycon 2025-01-09 18:47:07 +08:00
Evan Husted
2226521f6c docs: compat: remove quotes around everything but game titles 2025-01-08 12:36:26 -06:00
Evan Husted
384416953d docs: compat: list title ID column first 2025-01-08 12:30:13 -06:00
Evan Husted
1343fabe41 docs: compat: some more missing title ids 2025-01-08 12:20:20 -06:00
Evan Husted
1e52af5e29 docs: compat: Multiple big changes:
Sort alphabetically,
Remove title IDs in "issue_title" column,
and remove all entries without a playability status.
2025-01-07 20:17:09 -06:00
madwind
7532ba06ad Merge remote-tracking branch 'origin/joycon' into joycon 2025-01-08 10:14:53 +08:00
madwind
6d5dd49550 Merge branch 'DeadZone' into joycon
# Conflicts:
#	src/Ryujinx/Ryujinx.csproj
2025-01-08 10:13:47 +08:00
madwind
1e3718343c Merge branch 'DeadZone' into joycon
# Conflicts:
#	src/Ryujinx/Ryujinx.csproj
2025-01-08 09:50:57 +08:00
IvonWei
39e99ce271 Merge branch 'Ryubing:master' into joycon 2025-01-08 09:41:40 +08:00
Evan Husted
672f5df0f9 docs: compat: Remove issue_number & events_count columns
That's mostly for archival purposes; we don't need it.
2025-01-07 18:49:04 -06:00
Evan Husted
804d9c1efe docs: compat: remove invalid dupe 2025-01-07 06:03:35 -06:00
Evan Husted
9270b35648 no. 2025-01-07 05:53:31 -06:00
Evan Husted
5a6d01db3c docs: compat: trine 4 -> nothing
added Soul Reaver 1 & 2
2025-01-07 05:50:30 -06:00
Evan Husted
ef9c1416ec UI: compat: Only use monospaced font for title ID 2025-01-07 04:49:20 -06:00
Evan Husted
5efa7d5dfa UI: compat: remove custom ContentDialog derived type 2025-01-07 04:37:36 -06:00
Evan Husted
a82569d615 docs: compat: LEGO Horizon Adventures 2025-01-07 04:28:10 -06:00
Evan Husted
ed5832ca73 docs: compat: Add new releases to the end of the file 2025-01-07 04:21:33 -06:00
Evan Husted
574aa9ff9c add a couple missing title IDs 2025-01-07 04:21:08 -06:00
Evan Husted
8a29428de2 docs: compat: update hogwarts legacy compat 2025-01-07 03:57:13 -06:00
Evan Husted
f4272b05fa UI: Compat list disclaimer 2025-01-07 03:53:10 -06:00
Evan Husted
d8265f7772 Embed compatibility list into executable
instead of downloading

Co-Authored-By: Vita Chumakova <me@ezhevita.dev>
2025-01-07 03:37:07 -06:00
Evan Husted
259526430c UI: Properly space language menu items instead of prepending a space to the language name 2025-01-07 00:36:22 -06:00
Evan Husted
b5fafb6394 UI: stop using async voids in MainMenuBarView; use RelayCommands 2025-01-06 23:52:20 -06:00
Evan Husted
323c356d9c UI: Widen compatibility list, and make search box take up all space horizontally 2025-01-06 22:03:39 -06:00
Evan Husted
30b22ce6ba UI: fix nullref 2025-01-06 08:02:37 -06:00
Evan Husted
9acecc9eb2 UI: default OnlyShowOwnedGames in compat list to true 2025-01-06 07:53:27 -06:00
Evan Husted
4193a37a91 these files are a little bit needed 2025-01-06 07:38:11 -06:00
Evan Husted
c4cc657b89 UI: Compatibility List Viewer 2025-01-06 07:31:57 -06:00
Evan Husted
9726b0feb0 Use Canary-Releases for AppImage Canary updates 2025-01-06 01:27:37 -06:00
Evan Husted
159ff828a1 give canary appimages the ryujinx-canary name 2025-01-06 01:22:05 -06:00
Evan Husted
6fa2bfc736 fix canary ci 2025-01-06 01:15:39 -06:00
Piplup
2c24df0247 reworked workflows (#497)
this makes `canary.yml` follow the same order of steps as `release.yml`,
adding appimages to the canary versions and i fixed some bugs with the
`build-appimage.sh` mainly fixing linking to the old repo
2025-01-06 01:07:16 -06:00
Evan Husted
13efc3e544 Switch back to nightly.link
I'm pretty sure them not working was due to old links pointing to GreemDev/Ryujinx after the org change
2025-01-06 00:09:48 -06:00
Evan Husted
845dd9a8db vk: regression: potentially fix various random graphical anomalies 2025-01-05 22:25:05 -06:00
Evan Husted
b661bdd997 Revert "infra: feat: XML Solution"
This reverts commit cc84041270.
2025-01-05 16:41:08 -06:00
Evan Husted
cc84041270 infra: feat: XML Solution 2025-01-05 16:33:44 -06:00
Evan Husted
987ab9be41 Fix part 2 2025-01-05 16:03:34 -06:00
Evan Husted
8a2bc3957a UI: fix: new updates not being autoloaded 2025-01-05 15:45:01 -06:00
Evan Husted
850df38f1e cleaup imports 2025-01-04 06:54:46 -06:00
Emmanuel Hansen
c8d598d5ac use UnmanagedCallersOnly for delegates 2025-01-04 06:52:25 -06:00
Evan Husted
3e5b2bda38 UI: RPC: Goat Simulator 3 asset image 2025-01-03 22:25:32 -06:00
Evan Husted
9bb50fc6dd misc: improve unpacking error & add nullability to SelectedIcon 2025-01-03 22:25:32 -06:00
Evan Husted
e956864697 misc: Remove needless AsObservableList 2025-01-03 22:25:32 -06:00
madwind
270c5bd815 add public method: GetJoystickPosition 2025-01-03 17:03:59 +08:00
madwind
6945a05e45 restore single joy-con svg 2025-01-03 17:01:02 +08:00
madwind
4399edaa9f Fix typo: SQL_JOYBATTERYUPDATED => SDL_JOYBATTERYUPDATED 2025-01-02 11:50:20 +08:00
Evan Husted
4e77bcb55a Merge branch 'master' into master 2025-01-01 21:19:02 -06:00
WilliamWsyHK
f43442f774 Include Hack for XC2 JP Edition (#481)
XC2 has 2 editions, one JP and one global. I own the JP version and
suffered from the soft-lock, meanwhile the current hack only works for
global edition, so PR is simply include JP edition from the hack.
2025-01-01 02:15:14 -06:00
Evan Husted
88d11d3d8d misc: some cleanups and fix compile warnings 2025-01-01 02:14:59 -06:00
Evan Husted
391f57bdd2 misc: Headless: Inherit main input config 2025-01-01 01:55:10 -06:00
Evan Husted
fd2b5a7fc1 misc: Remove RendererHost AXAML 2025-01-01 01:55:10 -06:00
Otozinclus
37c165e9fc Only delay shader translation on Metal (#480)
This way the Arbitrary Shader Translation Delay hack will no longer
affect shader loading when using Vulkan.
2025-01-01 00:18:17 -06:00
Daenorth
003a6d322b Update to no_NO Norwegian Translation (#475)
Updated for time resync & auto graphics backend
2025-01-01 00:15:21 -06:00
jozz024
978d2c132b add a keyboard shortcut for opening amiibo .bin files (#461) 2024-12-31 22:45:52 -06:00
Evan Husted
5d63706cea misc: Bake in ValueEqual logic into ReactiveEventArgs
[ci skip]
2024-12-31 22:34:14 -06:00
Evan Husted
732aafd3bb misc: Prevent value change logging when the value is changed to the same thing it was before the value change. 2024-12-31 22:23:08 -06:00
Evan Husted
3fa714bb72 misc: DateTimeOffset Extract extension from Gommon 2024-12-31 21:21:54 -06:00
Evan Husted
7c01633f13 UI: Show the path of the mod on the folder button 2024-12-31 21:15:50 -06:00
Evan Husted
27c5cba10b misc: More Mvvm usage instead of writing out the observable properties 2024-12-31 21:11:57 -06:00
Evan Husted
3525d5ecd4 UI: clean up slider UI for shader translation delay 2024-12-31 20:11:49 -06:00
Evan Husted
6286501550 misc: do not log dirty hack changes if ShowDirtyHacks is disabled 2024-12-31 20:11:44 -06:00
IvonWei
3cbd7dc1a1 Merge branch 'Ryubing:master' into master 2024-12-31 19:21:10 +08:00
Evan Husted
61ae427a4d misc: Add CommunityToolkit.Mvvm for observable property generation; apply it to MainWindowViewModel for now. 2024-12-31 03:29:08 -06:00
Evan Husted
19d2883a35 UI: Store config migrations in a dictionary and loop through it to do migrations. 2024-12-31 02:51:14 -06:00
Evan Husted
617c03119f misc: clean vsync toggle log 2024-12-31 00:52:39 -06:00
Evan Husted
e43d899e1d misc: Use a few static helpers for Avalonia objects 2024-12-31 00:19:23 -06:00
Evan Husted
0cd09ea0c5 misc: Simplify ControlHolder checks in MainWindowViewModel 2024-12-31 00:04:23 -06:00
Evan Husted
4135d74e4d UI: Only allow right click to create a context menu if a game is selected. 2024-12-30 23:50:55 -06:00
Evan Husted
bd29f658b1 misc: Forgot about OfType [ci skip] 2024-12-30 23:28:32 -06:00
Evan Husted
df150f0788 misc: Significantly reduce duplicated code in ConfigurationState migration logic. 300 lines removed; functionally identical. 2024-12-30 23:14:05 -06:00
Evan Husted
e50198b37d Clarify DramSize XMLdoc 2024-12-30 23:11:59 -06:00
Evan Husted
f426945fec misc: Rename DirtyHacks to DirtyHack
Rename DirtyHack.ShaderCompilationThreadSleep to ShaderTranslationDelay
Changed EnabledDirtyHack to a struct
rename DirtyHackCollection to DirtyHacks
2024-12-30 22:18:35 -06:00
madwind
de9e93606a Display position to help set the deadzone. 2024-12-31 11:08:32 +08:00
IvonWei
536f792558 Merge branch 'Ryubing:master' into master 2024-12-30 22:04:08 +08:00
madwind
7a451ab160 fix GetMappedStateSnapshot 2024-12-30 22:01:21 +08:00
IvonWei
99c7c3fb14 Merge branch 'Ryubing:master' into master 2024-12-29 18:37:03 +08:00
Evan Husted
09e7b660f4 Merge branch 'master' into master 2024-12-29 03:42:20 -06:00
madwind
69dfd8c60e fix right Stick 2024-12-29 02:11:31 +08:00
madwind
8e50dd9fa6 fix right JoyCon stick 2024-12-29 01:49:25 +08:00
madwind
68c03051ad For the JoyCon controller, wrap SDL2Gamepad as SDL2JoyCon to use a suitable layout and correct the motion sensing and joystick orientation. 2024-12-29 00:56:03 +08:00
Evan Husted
a837294b11 Merge branch 'master' into master 2024-12-28 06:01:06 -06:00
IvonWei
f1c0cc8076 Merge branch 'Ryubing:master' into master 2024-12-28 09:09:10 +08:00
madwind
6dec7ff8ba fix motionData 2024-12-28 09:07:22 +08:00
madwind
20fdbff964 clean log 2024-12-26 14:47:40 +08:00
IvonWei
e426680cb0 Merge branch 'GreemDev:master' into master 2024-12-26 11:58:50 +08:00
madwind
7863e97cb0 invoke OnGamepadConnected and OnGamepadDisconnected 2024-12-26 11:58:00 +08:00
madwind
c4dea0ee28 add SQL_JOYBATTERYUPDATED , OnJoyBatteryUpdated 2024-12-26 11:54:52 +08:00
IvonWei
e0b6a01e9d Merge branch 'GreemDev:master' into master 2024-12-25 17:00:53 +08:00
madwind
e509ffa716 delay 2000ms before ShowPowerLevel 2024-12-25 16:57:36 +08:00
IvonWei
714c68b548 Merge branch 'GreemDev:master' into master 2024-12-25 10:41:20 +08:00
madwind
fec197d9ec log powerLevel 2024-12-25 10:39:07 +08:00
IvonWei
a4b2feef79 Merge branch 'GreemDev:master' into master 2024-12-23 22:13:47 +08:00
IvonWei
ad7d9d1ce0 Update NpadController.cs
add ?
2024-12-23 18:55:49 +08:00
IvonWei
86f9544910 Update NpadController.cs
back to Debug
2024-12-23 18:54:11 +08:00
madwind
e9ecbd44fc Add a virtual controller to merge Joy-Cons. 2024-12-23 17:57:55 +08:00
176 changed files with 18751 additions and 3898 deletions

View File

@@ -22,7 +22,7 @@ body:
id: log
attributes:
label: Log file
description: A log file will help our developers to better diagnose and fix the issue.
description: "A log file will help our developers to better diagnose and fix the issue. UPLOAD THE FILE. DO NOT COPY AND PASTE THE FILE'S CONTENT."
placeholder: Logs files can be found under "Logs" folder in Ryujinx program folder. They can also be accessed by opening Ryujinx, then going to File > Open Logs Folder. You can drag and drop the log on to the text area (do not copy paste).
validations:
required: true

View File

@@ -129,11 +129,11 @@ jobs:
with:
global-json-file: global.json
- name: Setup LLVM 14
- name: Setup LLVM 17
run: |
wget https://apt.llvm.org/llvm.sh
chmod +x llvm.sh
sudo ./llvm.sh 14
sudo ./llvm.sh 17
- name: Install rcodesign
run: |

View File

@@ -108,6 +108,7 @@ jobs:
sed -r --in-place 's/\%\%RYUJINX_TARGET_RELEASE_CHANNEL_REPO\%\%/${{ env.RYUJINX_TARGET_RELEASE_CHANNEL_REPO }}/g;' src/Ryujinx.Common/ReleaseInformation.cs
sed -r --in-place 's/\%\%RYUJINX_TARGET_RELEASE_CHANNEL_SOURCE_REPO\%\%/${{ env.RYUJINX_TARGET_RELEASE_CHANNEL_SOURCE_REPO }}/g;' src/Ryujinx.Common/ReleaseInformation.cs
sed -r --in-place 's/\%\%RYUJINX_CONFIG_FILE_NAME\%\%/Config\.json/g;' src/Ryujinx.Common/ReleaseInformation.cs
sed -r --in-place '/^Name=Ryujinx$/s/Name=Ryujinx/Name=Ryujinx-Canary/' distribution/linux/Ryujinx.desktop
shell: bash
- name: Create output dir
@@ -115,71 +116,69 @@ jobs:
- name: Publish
run: |
dotnet publish -c Release -r "${{ matrix.platform.name }}" -o ./publish_ava/publish -p:Version="${{ steps.version_info.outputs.build_version }}" -p:SourceRevisionId="${{ steps.version_info.outputs.git_short_hash }}" -p:DebugType=embedded src/Ryujinx --self-contained
dotnet publish -c Release -r "${{ matrix.platform.name }}" -o ./publish -p:Version="${{ steps.version_info.outputs.build_version }}" -p:SourceRevisionId="${{ steps.version_info.outputs.git_short_hash }}" -p:DebugType=embedded src/Ryujinx --self-contained
- name: Packing Windows builds
if: matrix.platform.os == 'windows-latest'
run: |
pushd publish_ava
rm publish/libarmeilleure-jitsupport.dylib
7z a ../release_output/ryujinx-canary-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.zip publish
pushd publish
rm libarmeilleure-jitsupport.dylib
7z a ../release_output/ryujinx-canary-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.zip ../publish
popd
shell: bash
- name: Packing Linux builds
if: matrix.platform.os == 'ubuntu-latest'
run: |
pushd publish_ava
rm publish/libarmeilleure-jitsupport.dylib
chmod +x publish/Ryujinx.sh publish/Ryujinx
tar -czvf ../release_output/ryujinx-canary-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.tar.gz publish
pushd publish
rm libarmeilleure-jitsupport.dylib
chmod +x Ryujinx.sh Ryujinx
tar -czvf ../release_output/ryujinx-canary-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.tar.gz ../publish
popd
shell: bash
#- name: Build AppImage (Linux)
# if: matrix.platform.os == 'ubuntu-latest'
# run: |
# BUILD_VERSION="${{ steps.version_info.outputs.build_version }}"
# PLATFORM_NAME="${{ matrix.platform.name }}"
- name: Build AppImage (Linux)
if: matrix.platform.os == 'ubuntu-latest'
run: |
BUILD_VERSION="${{ steps.version_info.outputs.build_version }}"
PLATFORM_NAME="${{ matrix.platform.name }}"
# sudo apt install -y zsync desktop-file-utils appstream
sudo apt install -y zsync desktop-file-utils appstream
# mkdir -p tools
# export PATH="$PATH:$(readlink -f tools)"
mkdir -p tools
export PATH="$PATH:$(readlink -f tools)"
# Setup appimagetool
# wget -q -O tools/appimagetool "https://github.com/AppImage/appimagetool/releases/download/continuous/appimagetool-x86_64.AppImage"
# chmod +x tools/appimagetool
# chmod +x distribution/linux/appimage/build-appimage.sh
wget -q -O tools/appimagetool "https://github.com/AppImage/appimagetool/releases/download/continuous/appimagetool-x86_64.AppImage"
chmod +x tools/appimagetool
chmod +x distribution/linux/appimage/build-appimage.sh
# Explicitly set $ARCH for appimagetool ($ARCH_NAME is for the file name)
# if [ "$PLATFORM_NAME" = "linux-x64" ]; then
# ARCH_NAME=x64
# export ARCH=x86_64
# elif [ "$PLATFORM_NAME" = "linux-arm64" ]; then
# ARCH_NAME=arm64
# export ARCH=aarch64
# else
# echo "Unexpected PLATFORM_NAME "$PLATFORM_NAME""
# exit 1
# fi
if [ "$PLATFORM_NAME" = "linux-x64" ]; then
ARCH_NAME=x64
export ARCH=x86_64
elif [ "$PLATFORM_NAME" = "linux-arm64" ]; then
ARCH_NAME=arm64
export ARCH=aarch64
else
echo "Unexpected PLATFORM_NAME "$PLATFORM_NAME""
exit 1
fi
# export UFLAG="gh-releases-zsync|${{ github.repository_owner }}|${{ github.event.repository.name }}|latest|*-$ARCH_NAME.AppImage.zsync"
# BUILDDIR=publish_ava OUTDIR=publish_ava_appimage distribution/linux/appimage/build-appimage.sh
export UFLAG="gh-releases-zsync|${{ github.repository_owner }}|Canary-Releases|latest|*-$ARCH_NAME.AppImage.zsync"
BUILDDIR=publish OUTDIR=publish_appimage distribution/linux/appimage/build-appimage.sh
# Add to release output
# pushd publish_ava_appimage
# mv Ryujinx.AppImage ../release_output/ryujinx-$BUILD_VERSION-$ARCH_NAME.AppImage
# mv Ryujinx.AppImage.zsync ../release_output/ryujinx-$BUILD_VERSION-$ARCH_NAME.AppImage.zsync
# popd
# shell: bash
pushd publish_appimage
mv Ryujinx.AppImage ../release_output/ryujinx-canary-$BUILD_VERSION-$ARCH_NAME.AppImage
mv Ryujinx.AppImage.zsync ../release_output/ryujinx-canary-$BUILD_VERSION-$ARCH_NAME.AppImage.zsync
popd
shell: bash
- name: Pushing new release
uses: ncipollo/release-action@v1
with:
name: ${{ steps.version_info.outputs.build_version }}
artifacts: "release_output/*.tar.gz,release_output/*.zip"
#artifacts: "release_output/*.tar.gz,release_output/*.zip,release_output/*AppImage*"
artifacts: "release_output/*.tar.gz,release_output/*.zip,release_output/*AppImage*"
tag: ${{ steps.version_info.outputs.build_version }}
body: |
# Canary builds:
@@ -211,11 +210,11 @@ jobs:
with:
global-json-file: global.json
- name: Setup LLVM 15
- name: Setup LLVM 17
run: |
wget https://apt.llvm.org/llvm.sh
chmod +x llvm.sh
sudo ./llvm.sh 15
sudo ./llvm.sh 17
- name: Install rcodesign
run: |

View File

@@ -37,11 +37,11 @@ jobs:
if (!artifacts.length) {
return core.error(`No artifacts found`);
}
let body = `*You need to be logged into GitHub to download these files.*\n\nDownload the artifacts for this pull request:\n`;
let body = `Download the artifacts for this pull request:\n`;
let hidden_debug_artifacts = `\n\n <details><summary>Only for Developers</summary>\n`;
for (const art of artifacts) {
const url = `https://github.com/Ryubing/Ryujinx/actions/runs/${run_id}/artifacts/${art.id}`;
if(art.name.includes('Debug')) {
const url = `https://nightly.link/${owner}/${repo}/actions/artifacts/${art.id}.zip`;
if (art.name.includes('Debug')) {
hidden_debug_artifacts += `\n* [${art.name}](${url})`;
} else {
body += `\n* [${art.name}](${url})`;

View File

@@ -3,16 +3,6 @@ name: Release job
on:
workflow_dispatch:
inputs: {}
push:
branches: [ release ]
paths-ignore:
- '.github/**'
- 'docs/**'
- 'assets/**'
- '*.yml'
- '*.json'
- '*.config'
- '*.md'
concurrency: release
@@ -121,6 +111,15 @@ jobs:
7z a ../release_output/ryujinx-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.zip ../publish
popd
shell: bash
- name: Packing Linux builds
if: matrix.platform.os == 'ubuntu-latest'
run: |
pushd publish
chmod +x Ryujinx.sh Ryujinx
tar -czvf ../release_output/ryujinx-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.tar.gz ../publish
popd
shell: bash
- name: Build AppImage (Linux)
if: matrix.platform.os == 'ubuntu-latest'
@@ -157,15 +156,6 @@ jobs:
mv Ryujinx.AppImage ../release_output/ryujinx-$BUILD_VERSION-$ARCH_NAME.AppImage
mv Ryujinx.AppImage.zsync ../release_output/ryujinx-$BUILD_VERSION-$ARCH_NAME.AppImage.zsync
popd
shell: bash
- name: Packing Linux builds
if: matrix.platform.os == 'ubuntu-latest'
run: |
pushd publish
chmod +x Ryujinx.sh Ryujinx
tar -czvf ../release_output/ryujinx-${{ steps.version_info.outputs.build_version }}-${{ matrix.platform.zip_os_name }}.tar.gz ../publish
popd
shell: bash
- name: Pushing new release
@@ -201,11 +191,11 @@ jobs:
with:
global-json-file: global.json
- name: Setup LLVM 15
- name: Setup LLVM 17
run: |
wget https://apt.llvm.org/llvm.sh
chmod +x llvm.sh
sudo ./llvm.sh 15
sudo ./llvm.sh 17
- name: Install rcodesign
run: |

View File

@@ -3,21 +3,22 @@
<ManagePackageVersionsCentrally>true</ManagePackageVersionsCentrally>
</PropertyGroup>
<ItemGroup>
<PackageVersion Include="Avalonia" Version="11.0.10" />
<PackageVersion Include="Avalonia.Controls.DataGrid" Version="11.0.10" />
<PackageVersion Include="Avalonia.Desktop" Version="11.0.10" />
<PackageVersion Include="Avalonia.Diagnostics" Version="11.0.10" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="11.0.10" />
<PackageVersion Include="Avalonia.Svg" Version="11.0.0.18" />
<PackageVersion Include="Avalonia.Svg.Skia" Version="11.0.0.18" />
<PackageVersion Include="Avalonia" Version="11.0.13" />
<PackageVersion Include="Avalonia.Controls.DataGrid" Version="11.0.13" />
<PackageVersion Include="Avalonia.Desktop" Version="11.0.13" />
<PackageVersion Include="Avalonia.Diagnostics" Version="11.0.13" />
<PackageVersion Include="Avalonia.Markup.Xaml.Loader" Version="11.0.13" />
<PackageVersion Include="Avalonia.Svg" Version="11.0.0.19" />
<PackageVersion Include="Avalonia.Svg.Skia" Version="11.0.0.19" />
<PackageVersion Include="Microsoft.Build.Framework" Version="17.11.4" />
<PackageVersion Include="Microsoft.Build.Utilities.Core" Version="17.12.6" />
<PackageVersion Include="Newtonsoft.Json" Version="13.0.3" />
<PackageVersion Include="Projektanker.Icons.Avalonia" Version="9.4.0" />
<PackageVersion Include="Projektanker.Icons.Avalonia.FontAwesome" Version="9.4.0"/>
<PackageVersion Include="Projektanker.Icons.Avalonia.MaterialDesign" Version="9.4.0"/>
<PackageVersion Include="Projektanker.Icons.Avalonia.FontAwesome" Version="9.4.0" />
<PackageVersion Include="Projektanker.Icons.Avalonia.MaterialDesign" Version="9.4.0" />
<PackageVersion Include="CommandLineParser" Version="2.9.1" />
<PackageVersion Include="Concentus" Version="2.2.0" />
<PackageVersion Include="CommunityToolkit.Mvvm" Version="8.4.0" />
<PackageVersion Include="Concentus" Version="2.2.2" />
<PackageVersion Include="DiscordRichPresence" Version="1.2.1.24" />
<PackageVersion Include="DynamicData" Version="9.0.4" />
<PackageVersion Include="FluentAvaloniaUI" Version="2.0.5" />
@@ -25,7 +26,7 @@
<PackageVersion Include="LibHac" Version="0.19.0" />
<PackageVersion Include="Microsoft.CodeAnalysis.Analyzers" Version="3.3.4" />
<PackageVersion Include="Microsoft.CodeAnalysis.CSharp" Version="4.9.2" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.1.2" />
<PackageVersion Include="Microsoft.IdentityModel.JsonWebTokens" Version="8.3.0" />
<PackageVersion Include="Microsoft.NET.Test.Sdk" Version="17.9.0" />
<PackageVersion Include="Microsoft.IO.RecyclableMemoryStream" Version="3.0.1" />
<PackageVersion Include="MsgPack.Cli" Version="1.0.1" />
@@ -40,20 +41,20 @@
<PackageVersion Include="Ryujinx.Audio.OpenAL.Dependencies" Version="1.21.0.1" />
<PackageVersion Include="Ryujinx.Graphics.Nvdec.Dependencies" Version="5.0.3-build14" />
<PackageVersion Include="Ryujinx.Graphics.Vulkan.Dependencies.MoltenVK" Version="1.2.0" />
<PackageVersion Include="Ryujinx.SDL2-CS" Version="2.30.0-build32" />
<PackageVersion Include="Gommon" Version="2.7.0" />
<PackageVersion Include="Gommon" Version="2.7.0.2" />
<PackageVersion Include="securifybv.ShellLink" Version="0.1.0" />
<PackageVersion Include="Sep" Version="0.6.0" />
<PackageVersion Include="shaderc.net" Version="0.1.0" />
<PackageVersion Include="SharpMetal" Version="1.0.0-preview21" />
<PackageVersion Include="SharpZipLib" Version="1.4.2" />
<PackageVersion Include="Silk.NET.Vulkan" Version="2.21.0" />
<PackageVersion Include="Silk.NET.Vulkan.Extensions.EXT" Version="2.21.0" />
<PackageVersion Include="Silk.NET.Vulkan.Extensions.KHR" Version="2.21.0" />
<PackageVersion Include="SkiaSharp" Version="2.88.7" />
<PackageVersion Include="SkiaSharp.NativeAssets.Linux" Version="2.88.7" />
<PackageVersion Include="Silk.NET.Vulkan" Version="2.22.0" />
<PackageVersion Include="Silk.NET.Vulkan.Extensions.EXT" Version="2.22.0" />
<PackageVersion Include="Silk.NET.Vulkan.Extensions.KHR" Version="2.22.0" />
<PackageVersion Include="SkiaSharp" Version="2.88.9" />
<PackageVersion Include="SkiaSharp.NativeAssets.Linux" Version="2.88.9" />
<PackageVersion Include="SPB" Version="0.0.4-build32" />
<PackageVersion Include="System.IO.Hashing" Version="9.0.0" />
<PackageVersion Include="System.Management" Version="9.0.0" />
<PackageVersion Include="UnicornEngine.Unicorn" Version="2.0.2-rc1-fb78016" />
</ItemGroup>
</Project>
</Project>

View File

@@ -95,6 +95,14 @@ Project("{2150E333-8FDC-42A3-9474-1A3956D46DE8}") = "Solution Items", "Solution
.github\workflows\release.yml = .github\workflows\release.yml
EndProjectSection
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Ryujinx.SDL3.Common", "src\Ryujinx.SDL3.Common\Ryujinx.SDL3.Common.csproj", "{7C70B441-F3D1-41FE-A648-19014BFB88D9}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Ryujinx.Input.SDL3", "src\Ryujinx.Input.SDL3\Ryujinx.Input.SDL3.csproj", "{7420A718-7E3C-42B5-82EA-74F6BEE0F1FB}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Ryujinx.SDL3-CS", "src\Ryujinx.SDL3-CS\Ryujinx.SDL3-CS.csproj", "{ED2A7EA4-4098-47ED-BA87-EDB3537CFC10}"
EndProject
Project("{FAE04EC0-301F-11D3-BF4B-00C04F79EFBC}") = "Ryujinx.Audio.Backends.SDL3", "src\Ryujinx.Audio.Backends.SDL3\Ryujinx.Audio.Backends.SDL3.csproj", "{027A38DC-774D-4CF7-A1C0-C510BFC4BD29}"
EndProject
Global
GlobalSection(SolutionConfigurationPlatforms) = preSolution
Debug|Any CPU = Debug|Any CPU
@@ -198,15 +206,12 @@ Global
{C16F112F-38C3-40BC-9F5F-4791112063D6}.Release|Any CPU.ActiveCfg = Release|Any CPU
{C16F112F-38C3-40BC-9F5F-4791112063D6}.Release|Any CPU.Build.0 = Release|Any CPU
{DFAB6F2D-B9BF-4AFF-B22B-7684A328EBA3}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{DFAB6F2D-B9BF-4AFF-B22B-7684A328EBA3}.Debug|Any CPU.Build.0 = Debug|Any CPU
{DFAB6F2D-B9BF-4AFF-B22B-7684A328EBA3}.Release|Any CPU.ActiveCfg = Release|Any CPU
{DFAB6F2D-B9BF-4AFF-B22B-7684A328EBA3}.Release|Any CPU.Build.0 = Release|Any CPU
{2D5D3A1D-5730-4648-B0AB-06C53CB910C0}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{2D5D3A1D-5730-4648-B0AB-06C53CB910C0}.Debug|Any CPU.Build.0 = Debug|Any CPU
{2D5D3A1D-5730-4648-B0AB-06C53CB910C0}.Release|Any CPU.ActiveCfg = Release|Any CPU
{2D5D3A1D-5730-4648-B0AB-06C53CB910C0}.Release|Any CPU.Build.0 = Release|Any CPU
{D99A395A-8569-4DB0-B336-900647890052}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{D99A395A-8569-4DB0-B336-900647890052}.Debug|Any CPU.Build.0 = Debug|Any CPU
{D99A395A-8569-4DB0-B336-900647890052}.Release|Any CPU.ActiveCfg = Release|Any CPU
{D99A395A-8569-4DB0-B336-900647890052}.Release|Any CPU.Build.0 = Release|Any CPU
{BEE1C184-C9A4-410B-8DFC-FB74D5C93AEB}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
@@ -259,6 +264,22 @@ Global
{81EA598C-DBA1-40B0-8DA4-4796B78F2037}.Debug|Any CPU.Build.0 = Debug|Any CPU
{81EA598C-DBA1-40B0-8DA4-4796B78F2037}.Release|Any CPU.ActiveCfg = Release|Any CPU
{81EA598C-DBA1-40B0-8DA4-4796B78F2037}.Release|Any CPU.Build.0 = Release|Any CPU
{7C70B441-F3D1-41FE-A648-19014BFB88D9}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{7C70B441-F3D1-41FE-A648-19014BFB88D9}.Debug|Any CPU.Build.0 = Debug|Any CPU
{7C70B441-F3D1-41FE-A648-19014BFB88D9}.Release|Any CPU.ActiveCfg = Release|Any CPU
{7C70B441-F3D1-41FE-A648-19014BFB88D9}.Release|Any CPU.Build.0 = Release|Any CPU
{7420A718-7E3C-42B5-82EA-74F6BEE0F1FB}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{7420A718-7E3C-42B5-82EA-74F6BEE0F1FB}.Debug|Any CPU.Build.0 = Debug|Any CPU
{7420A718-7E3C-42B5-82EA-74F6BEE0F1FB}.Release|Any CPU.ActiveCfg = Release|Any CPU
{7420A718-7E3C-42B5-82EA-74F6BEE0F1FB}.Release|Any CPU.Build.0 = Release|Any CPU
{ED2A7EA4-4098-47ED-BA87-EDB3537CFC10}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{ED2A7EA4-4098-47ED-BA87-EDB3537CFC10}.Release|Any CPU.ActiveCfg = Release|Any CPU
{ED2A7EA4-4098-47ED-BA87-EDB3537CFC10}.Release|Any CPU.Build.0 = Release|Any CPU
{ED2A7EA4-4098-47ED-BA87-EDB3537CFC10}.Debug|Any CPU.Build.0 = Debug|Any CPU
{027A38DC-774D-4CF7-A1C0-C510BFC4BD29}.Debug|Any CPU.ActiveCfg = Debug|Any CPU
{027A38DC-774D-4CF7-A1C0-C510BFC4BD29}.Debug|Any CPU.Build.0 = Debug|Any CPU
{027A38DC-774D-4CF7-A1C0-C510BFC4BD29}.Release|Any CPU.ActiveCfg = Release|Any CPU
{027A38DC-774D-4CF7-A1C0-C510BFC4BD29}.Release|Any CPU.Build.0 = Release|Any CPU
EndGlobalSection
GlobalSection(SolutionProperties) = preSolution
HideSolutionNode = FALSE

View File

@@ -6,7 +6,7 @@ cd "$ROOTDIR"
BUILDDIR=${BUILDDIR:-publish}
OUTDIR=${OUTDIR:-publish_appimage}
UFLAG=${UFLAG:-"gh-releases-zsync|GreemDev|ryujinx|latest|*-x64.AppImage.zsync"}
UFLAG=${UFLAG:-"gh-releases-zsync|Ryubing|ryujinx|latest|*-x64.AppImage.zsync"}
rm -rf AppDir
mkdir -p AppDir/usr/bin

View File

@@ -19,7 +19,7 @@ if platform.system() == "Darwin":
else:
OTOOL = shutil.which("llvm-otool")
if OTOOL is None:
for llvm_ver in [15, 14, 13]:
for llvm_ver in [17, 16, 15, 14, 13]:
otool_path = shutil.which(f"llvm-otool-{llvm_ver}")
if otool_path is not None:
OTOOL = otool_path

View File

@@ -26,7 +26,7 @@ else:
LIPO = shutil.which("llvm-lipo")
if LIPO is None:
for llvm_ver in [15, 14, 13]:
for llvm_ver in [17, 16, 15, 14, 13]:
lipo_path = shutil.which(f"llvm-lipo-{llvm_ver}")
if lipo_path is not None:
LIPO = lipo_path

View File

@@ -67,11 +67,11 @@ python3 "$BASE_DIR/distribution/macos/construct_universal_dylib.py" "$ARM64_APP_
if ! [ -x "$(command -v lipo)" ];
then
if ! [ -x "$(command -v llvm-lipo-14)" ];
if ! [ -x "$(command -v llvm-lipo-17)" ];
then
LIPO=llvm-lipo
else
LIPO=llvm-lipo-14
LIPO=llvm-lipo-17
fi
else
LIPO=lipo

View File

@@ -62,11 +62,11 @@ python3 "$BASE_DIR/distribution/macos/construct_universal_dylib.py" "$ARM64_OUTP
if ! [ -x "$(command -v lipo)" ];
then
if ! [ -x "$(command -v llvm-lipo-14)" ];
if ! [ -x "$(command -v llvm-lipo-17)" ];
then
LIPO=llvm-lipo
else
LIPO=llvm-lipo-14
LIPO=llvm-lipo-17
fi
else
LIPO=lipo

3424
docs/compatibility.csv Normal file

File diff suppressed because it is too large Load Diff

View File

@@ -406,7 +406,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
});
}
}
@@ -451,7 +451,7 @@ namespace ARMeilleure.Instructions
{
Operand res = EmitSoftFloatCall(context, nameof(SoftFloat32.FPSub), op1, op2);
return EmitUnaryMathCall(context, nameof(Math.Abs), res);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), res);
});
}
}
@@ -483,7 +483,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
});
}
}
@@ -522,7 +522,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Abs), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1);
});
}
}
@@ -2246,7 +2246,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
});
}
}
@@ -2265,7 +2265,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Floor), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1);
});
}
}
@@ -2322,7 +2322,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
});
}
}
@@ -2341,7 +2341,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Ceiling), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1);
});
}
}
@@ -2390,7 +2390,7 @@ namespace ARMeilleure.Instructions
{
EmitScalarUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
});
}
}
@@ -2409,7 +2409,7 @@ namespace ARMeilleure.Instructions
{
EmitVectorUnaryOpF(context, (op1) =>
{
return EmitUnaryMathCall(context, nameof(Math.Truncate), op1);
return EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1);
});
}
}

View File

@@ -43,7 +43,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
}
}
@@ -66,7 +66,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Abs), op1));
EmitVectorUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Abs), op1));
}
}
else

View File

@@ -726,8 +726,8 @@ namespace ARMeilleure.Instructions
if (absolute)
{
ne = EmitUnaryMathCall(context, nameof(Math.Abs), ne);
me = EmitUnaryMathCall(context, nameof(Math.Abs), me);
ne = EmitUnaryMathCall(context, nameof(MathHelper.Abs), ne);
me = EmitUnaryMathCall(context, nameof(MathHelper.Abs), me);
}
Operand e = EmitSoftFloatCall(context, name, ne, me);

View File

@@ -333,7 +333,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
}
}
@@ -349,7 +349,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1), signed: true, scalar: false);
EmitFcvt(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1), signed: true, scalar: false);
}
}
@@ -365,7 +365,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Floor), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), op1));
}
}
@@ -538,7 +538,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
EmitFcvt_s_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
}
}
@@ -554,7 +554,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Ceiling), op1));
EmitFcvt_u_Gp(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op1));
}
}

View File

@@ -357,10 +357,10 @@ namespace ARMeilleure.Instructions
toConvert = EmitRoundMathCall(context, MidpointRounding.ToEven, toConvert);
break;
case 0b10: // Towards positive infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Floor), toConvert);
break;
}
@@ -494,10 +494,10 @@ namespace ARMeilleure.Instructions
toConvert = EmitRoundMathCall(context, MidpointRounding.ToEven, toConvert);
break;
case 0b10: // Towards positive infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Ceiling), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), toConvert);
break;
case 0b11: // Towards negative infinity
toConvert = EmitUnaryMathCall(context, nameof(Math.Floor), toConvert);
toConvert = EmitUnaryMathCall(context, nameof(MathHelper.Floor), toConvert);
break;
}
@@ -534,7 +534,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Floor), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Floor), m));
}
}
@@ -574,7 +574,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(Math.Ceiling), m));
EmitVectorUnaryOpF32(context, (m) => EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), m));
}
}
@@ -613,7 +613,7 @@ namespace ARMeilleure.Instructions
}
else
{
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(Math.Truncate), op1));
EmitScalarUnaryOpF32(context, (op1) => EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op1));
}
}

View File

@@ -460,8 +460,8 @@ namespace ARMeilleure.Instructions
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
MethodInfo info = (op.Size & 1) == 0
? typeof(MathF).GetMethod(name, new Type[] { typeof(float) })
: typeof(Math).GetMethod(name, new Type[] { typeof(double) });
? typeof(MathHelperF).GetMethod(name, new Type[] { typeof(float) })
: typeof(MathHelper).GetMethod(name, new Type[] { typeof(double) });
return context.Call(info, n);
}
@@ -470,11 +470,11 @@ namespace ARMeilleure.Instructions
{
IOpCodeSimd op = (IOpCodeSimd)context.CurrOp;
string name = nameof(Math.Round);
string name = nameof(MathHelper.Round);
MethodInfo info = (op.Size & 1) == 0
? typeof(MathF).GetMethod(name, new Type[] { typeof(float), typeof(MidpointRounding) })
: typeof(Math).GetMethod(name, new Type[] { typeof(double), typeof(MidpointRounding) });
? typeof(MathHelperF).GetMethod(name, new Type[] { typeof(float), typeof(int) })
: typeof(MathHelper).GetMethod(name, new Type[] { typeof(double), typeof(int) });
return context.Call(info, n, Const((int)roundMode));
}
@@ -510,16 +510,16 @@ namespace ARMeilleure.Instructions
context.MarkLabel(lbl1);
context.BranchIf(lbl2, rMode, rP, Comparison.NotEqual);
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Ceiling), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Ceiling), op));
context.Branch(lblEnd);
context.MarkLabel(lbl2);
context.BranchIf(lbl3, rMode, rM, Comparison.NotEqual);
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Floor), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Floor), op));
context.Branch(lblEnd);
context.MarkLabel(lbl3);
context.Copy(res, EmitUnaryMathCall(context, nameof(Math.Truncate), op));
context.Copy(res, EmitUnaryMathCall(context, nameof(MathHelper.Truncate), op));
context.Branch(lblEnd);
context.MarkLabel(lblEnd);

View File

@@ -0,0 +1,71 @@
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
static class MathHelper
{
[UnmanagedCallersOnly]
public static double Abs(double value)
{
return Math.Abs(value);
}
[UnmanagedCallersOnly]
public static double Ceiling(double value)
{
return Math.Ceiling(value);
}
[UnmanagedCallersOnly]
public static double Floor(double value)
{
return Math.Floor(value);
}
[UnmanagedCallersOnly]
public static double Round(double value, int mode)
{
return Math.Round(value, (MidpointRounding)mode);
}
[UnmanagedCallersOnly]
public static double Truncate(double value)
{
return Math.Truncate(value);
}
}
static class MathHelperF
{
[UnmanagedCallersOnly]
public static float Abs(float value)
{
return MathF.Abs(value);
}
[UnmanagedCallersOnly]
public static float Ceiling(float value)
{
return MathF.Ceiling(value);
}
[UnmanagedCallersOnly]
public static float Floor(float value)
{
return MathF.Floor(value);
}
[UnmanagedCallersOnly]
public static float Round(float value, int mode)
{
return MathF.Round(value, (MidpointRounding)mode);
}
[UnmanagedCallersOnly]
public static float Truncate(float value)
{
return MathF.Truncate(value);
}
}
}

View File

@@ -2,6 +2,7 @@ using ARMeilleure.Memory;
using ARMeilleure.State;
using ARMeilleure.Translation;
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -34,6 +35,7 @@ namespace ARMeilleure.Instructions
Context = null;
}
[UnmanagedCallersOnly]
public static void Break(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -43,6 +45,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void SupervisorCall(ulong address, int imm)
{
Statistics.PauseTimer();
@@ -52,6 +55,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
}
[UnmanagedCallersOnly]
public static void Undefined(ulong address, int opCode)
{
Statistics.PauseTimer();
@@ -62,26 +66,31 @@ namespace ARMeilleure.Instructions
}
#region "System registers"
[UnmanagedCallersOnly]
public static ulong GetCtrEl0()
{
return GetContext().CtrEl0;
}
[UnmanagedCallersOnly]
public static ulong GetDczidEl0()
{
return GetContext().DczidEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntfrqEl0()
{
return GetContext().CntfrqEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntpctEl0()
{
return GetContext().CntpctEl0;
}
[UnmanagedCallersOnly]
public static ulong GetCntvctEl0()
{
return GetContext().CntvctEl0;
@@ -89,26 +98,31 @@ namespace ARMeilleure.Instructions
#endregion
#region "Read"
[UnmanagedCallersOnly]
public static byte ReadByte(ulong address)
{
return GetMemoryManager().ReadGuest<byte>(address);
}
[UnmanagedCallersOnly]
public static ushort ReadUInt16(ulong address)
{
return GetMemoryManager().ReadGuest<ushort>(address);
}
[UnmanagedCallersOnly]
public static uint ReadUInt32(ulong address)
{
return GetMemoryManager().ReadGuest<uint>(address);
}
[UnmanagedCallersOnly]
public static ulong ReadUInt64(ulong address)
{
return GetMemoryManager().ReadGuest<ulong>(address);
}
[UnmanagedCallersOnly]
public static V128 ReadVector128(ulong address)
{
return GetMemoryManager().ReadGuest<V128>(address);
@@ -116,47 +130,56 @@ namespace ARMeilleure.Instructions
#endregion
#region "Write"
[UnmanagedCallersOnly]
public static void WriteByte(ulong address, byte value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt16(ulong address, ushort value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt32(ulong address, uint value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteUInt64(ulong address, ulong value)
{
GetMemoryManager().WriteGuest(address, value);
}
[UnmanagedCallersOnly]
public static void WriteVector128(ulong address, V128 value)
{
GetMemoryManager().WriteGuest(address, value);
}
#endregion
[UnmanagedCallersOnly]
public static void EnqueueForRejit(ulong address)
{
Context.Translator.EnqueueForRejit(address, GetContext().ExecutionMode);
}
public static void SignalMemoryTracking(ulong address, ulong size, bool write)
[UnmanagedCallersOnly]
public static void SignalMemoryTracking(ulong address, ulong size, byte write)
{
GetMemoryManager().SignalMemoryTracking(address, size, write);
GetMemoryManager().SignalMemoryTracking(address, size, write == 1);
}
[UnmanagedCallersOnly]
public static void ThrowInvalidMemoryAccess(ulong address)
{
throw new InvalidAccessException(address);
}
[UnmanagedCallersOnly]
public static ulong GetFunctionAddress(ulong address)
{
TranslatedFunction function = Context.Translator.GetOrTranslate(address, GetContext().ExecutionMode);
@@ -164,12 +187,14 @@ namespace ARMeilleure.Instructions
return (ulong)function.FuncPointer.ToInt64();
}
[UnmanagedCallersOnly]
public static void InvalidateCacheLine(ulong address)
{
Context.Translator.InvalidateJitCacheRegion(address, InstEmit.DczSizeInBytes);
}
public static bool CheckSynchronization()
[UnmanagedCallersOnly]
public static byte CheckSynchronization()
{
Statistics.PauseTimer();
@@ -179,7 +204,7 @@ namespace ARMeilleure.Instructions
Statistics.ResumeTimer();
return context.Running;
return (byte)(context.Running ? 1 : 0);
}
public static ExecutionContext GetContext()

View File

@@ -1,11 +1,13 @@
using ARMeilleure.State;
using System;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
static class SoftFallback
{
#region "ShrImm64"
[UnmanagedCallersOnly]
public static long SignedShrImm64(long value, long roundConst, int shift)
{
if (roundConst == 0L)
@@ -48,6 +50,7 @@ namespace ARMeilleure.Instructions
}
}
[UnmanagedCallersOnly]
public static ulong UnsignedShrImm64(ulong value, long roundConst, int shift)
{
if (roundConst == 0L)
@@ -92,6 +95,7 @@ namespace ARMeilleure.Instructions
#endregion
#region "Saturation"
[UnmanagedCallersOnly]
public static int SatF32ToS32(float value)
{
if (float.IsNaN(value))
@@ -103,6 +107,7 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF32ToS64(float value)
{
if (float.IsNaN(value))
@@ -114,6 +119,7 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF32ToU32(float value)
{
if (float.IsNaN(value))
@@ -125,6 +131,7 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF32ToU64(float value)
{
if (float.IsNaN(value))
@@ -136,6 +143,7 @@ namespace ARMeilleure.Instructions
value <= ulong.MinValue ? ulong.MinValue : (ulong)value;
}
[UnmanagedCallersOnly]
public static int SatF64ToS32(double value)
{
if (double.IsNaN(value))
@@ -147,6 +155,7 @@ namespace ARMeilleure.Instructions
value <= int.MinValue ? int.MinValue : (int)value;
}
[UnmanagedCallersOnly]
public static long SatF64ToS64(double value)
{
if (double.IsNaN(value))
@@ -158,6 +167,7 @@ namespace ARMeilleure.Instructions
value <= long.MinValue ? long.MinValue : (long)value;
}
[UnmanagedCallersOnly]
public static uint SatF64ToU32(double value)
{
if (double.IsNaN(value))
@@ -169,6 +179,7 @@ namespace ARMeilleure.Instructions
value <= uint.MinValue ? uint.MinValue : (uint)value;
}
[UnmanagedCallersOnly]
public static ulong SatF64ToU64(double value)
{
if (double.IsNaN(value))
@@ -182,6 +193,7 @@ namespace ARMeilleure.Instructions
#endregion
#region "Count"
[UnmanagedCallersOnly]
public static ulong CountLeadingSigns(ulong value, int size) // size is 8, 16, 32 or 64 (SIMD&FP or Base Inst.).
{
value ^= value >> 1;
@@ -201,6 +213,7 @@ namespace ARMeilleure.Instructions
private static ReadOnlySpan<byte> ClzNibbleTbl => new byte[] { 4, 3, 2, 2, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0, 0 };
[UnmanagedCallersOnly]
public static ulong CountLeadingZeros(ulong value, int size) // size is 8, 16, 32 or 64 (SIMD&FP or Base Inst.).
{
if (value == 0ul)
@@ -224,41 +237,49 @@ namespace ARMeilleure.Instructions
#endregion
#region "Table"
[UnmanagedCallersOnly]
public static V128 Tbl1(V128 vector, int bytes, V128 tb0)
{
return TblOrTbx(default, vector, bytes, tb0);
}
[UnmanagedCallersOnly]
public static V128 Tbl2(V128 vector, int bytes, V128 tb0, V128 tb1)
{
return TblOrTbx(default, vector, bytes, tb0, tb1);
}
[UnmanagedCallersOnly]
public static V128 Tbl3(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2)
{
return TblOrTbx(default, vector, bytes, tb0, tb1, tb2);
}
[UnmanagedCallersOnly]
public static V128 Tbl4(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3)
{
return TblOrTbx(default, vector, bytes, tb0, tb1, tb2, tb3);
}
[UnmanagedCallersOnly]
public static V128 Tbx1(V128 dest, V128 vector, int bytes, V128 tb0)
{
return TblOrTbx(dest, vector, bytes, tb0);
}
[UnmanagedCallersOnly]
public static V128 Tbx2(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1);
}
[UnmanagedCallersOnly]
public static V128 Tbx3(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1, tb2);
}
[UnmanagedCallersOnly]
public static V128 Tbx4(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3)
{
return TblOrTbx(dest, vector, bytes, tb0, tb1, tb2, tb3);
@@ -300,14 +321,22 @@ namespace ARMeilleure.Instructions
private const uint Crc32RevPoly = 0xedb88320;
private const uint Crc32cRevPoly = 0x82f63b78;
[UnmanagedCallersOnly]
public static uint Crc32b(uint crc, byte value) => Crc32(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32h(uint crc, ushort value) => Crc32h(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32w(uint crc, uint value) => Crc32w(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32x(uint crc, ulong value) => Crc32x(crc, Crc32RevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cb(uint crc, byte value) => Crc32(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32ch(uint crc, ushort value) => Crc32h(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cw(uint crc, uint value) => Crc32w(crc, Crc32cRevPoly, value);
[UnmanagedCallersOnly]
public static uint Crc32cx(uint crc, ulong value) => Crc32x(crc, Crc32cRevPoly, value);
private static uint Crc32h(uint crc, uint poly, ushort val)
@@ -358,21 +387,25 @@ namespace ARMeilleure.Instructions
#endregion
#region "Aes"
[UnmanagedCallersOnly]
public static V128 Decrypt(V128 value, V128 roundKey)
{
return CryptoHelper.AesInvSubBytes(CryptoHelper.AesInvShiftRows(value ^ roundKey));
}
[UnmanagedCallersOnly]
public static V128 Encrypt(V128 value, V128 roundKey)
{
return CryptoHelper.AesSubBytes(CryptoHelper.AesShiftRows(value ^ roundKey));
}
[UnmanagedCallersOnly]
public static V128 InverseMixColumns(V128 value)
{
return CryptoHelper.AesInvMixColumns(value);
}
[UnmanagedCallersOnly]
public static V128 MixColumns(V128 value)
{
return CryptoHelper.AesMixColumns(value);
@@ -380,6 +413,7 @@ namespace ARMeilleure.Instructions
#endregion
#region "Sha1"
[UnmanagedCallersOnly]
public static V128 HashChoose(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -400,11 +434,13 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static uint FixedRotate(uint hash_e)
{
return hash_e.Rol(30);
}
[UnmanagedCallersOnly]
public static V128 HashMajority(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -425,6 +461,7 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static V128 HashParity(V128 hash_abcd, uint hash_e, V128 wk)
{
for (int e = 0; e <= 3; e++)
@@ -445,6 +482,7 @@ namespace ARMeilleure.Instructions
return hash_abcd;
}
[UnmanagedCallersOnly]
public static V128 Sha1SchedulePart1(V128 w0_3, V128 w4_7, V128 w8_11)
{
ulong t2 = w4_7.Extract<ulong>(0);
@@ -455,6 +493,7 @@ namespace ARMeilleure.Instructions
return result ^ (w0_3 ^ w8_11);
}
[UnmanagedCallersOnly]
public static V128 Sha1SchedulePart2(V128 tw0_3, V128 w12_15)
{
V128 t = tw0_3 ^ (w12_15 >> 32);
@@ -499,16 +538,19 @@ namespace ARMeilleure.Instructions
#endregion
#region "Sha256"
[UnmanagedCallersOnly]
public static V128 HashLower(V128 hash_abcd, V128 hash_efgh, V128 wk)
{
return Sha256Hash(hash_abcd, hash_efgh, wk, part1: true);
}
[UnmanagedCallersOnly]
public static V128 HashUpper(V128 hash_abcd, V128 hash_efgh, V128 wk)
{
return Sha256Hash(hash_abcd, hash_efgh, wk, part1: false);
}
[UnmanagedCallersOnly]
public static V128 Sha256SchedulePart1(V128 w0_3, V128 w4_7)
{
V128 result = new();
@@ -527,6 +569,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static V128 Sha256SchedulePart2(V128 w0_3, V128 w8_11, V128 w12_15)
{
V128 result = new();
@@ -628,6 +671,7 @@ namespace ARMeilleure.Instructions
}
#endregion
[UnmanagedCallersOnly]
public static V128 PolynomialMult64_128(ulong op1, ulong op2)
{
V128 result = V128.Zero;

View File

@@ -1,6 +1,7 @@
using ARMeilleure.State;
using System;
using System.Diagnostics;
using System.Runtime.InteropServices;
namespace ARMeilleure.Instructions
{
@@ -312,6 +313,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_32
{
[UnmanagedCallersOnly]
public static float FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -487,6 +489,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat16_64
{
[UnmanagedCallersOnly]
public static double FPConvert(ushort valueBits)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -662,6 +665,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat32_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -781,12 +785,19 @@ namespace ARMeilleure.Instructions
static class SoftFloat32
{
[UnmanagedCallersOnly]
public static float FPAdd(float value1, float value2)
{
return FPAddFpscr(value1, value2, false);
return FPAddFpscrImpl(value1, value2, false);
}
public static float FPAddFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPAddFpscr(float value1, float value2, byte standardFpscr)
{
return FPAddFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPAddFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -837,7 +848,8 @@ namespace ARMeilleure.Instructions
return result;
}
public static int FPCompare(float value1, float value2, bool signalNaNs)
[UnmanagedCallersOnly]
public static int FPCompare(float value1, float value2, byte signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -851,7 +863,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -875,12 +887,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareEQ(float value1, float value2)
{
return FPCompareEQFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, false);
}
public static float FPCompareEQFpscr(float value1, float value2, bool standardFpscr)
private static float FPCompareEQFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -907,12 +920,25 @@ namespace ARMeilleure.Instructions
return result;
}
public static float FPCompareGE(float value1, float value2)
[UnmanagedCallersOnly]
public static float FPCompareEQFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, standardFpscr == 1);
}
public static float FPCompareGEFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareGE(float value1, float value2)
{
return FPCompareGEFpscrImpl(value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPCompareGEFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPCompareGEFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -936,12 +962,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareGT(float value1, float value2)
{
return FPCompareGTFpscr(value1, value2, false);
return FPCompareGTFpscrImpl(value1, value2, false);
}
public static float FPCompareGTFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareGTFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGTFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPCompareGTFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -965,26 +998,31 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPCompareLE(float value1, float value2)
{
return FPCompareGE(value2, value1);
return FPCompareGEFpscrImpl(value2, value1, false);
}
[UnmanagedCallersOnly]
public static float FPCompareLT(float value1, float value2)
{
return FPCompareGT(value2, value1);
return FPCompareGTFpscrImpl(value2, value1, false);
}
public static float FPCompareLEFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareLEFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGEFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
public static float FPCompareLTFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPCompareLTFpscr(float value1, float value2, byte standardFpscr)
{
return FPCompareGTFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPDiv(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1037,12 +1075,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMax(float value1, float value2)
{
return FPMaxFpscr(value1, value2, false);
return FPMaxFpscrImpl(value1, value2, false);
}
public static float FPMaxFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMaxFpscr(float value1, float value2, byte standardFpscr)
{
return FPMaxFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMaxFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1103,12 +1148,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMaxNum(float value1, float value2)
{
return FPMaxNumFpscr(value1, value2, false);
return FPMaxNumFpscrImpl(value1, value2, false);
}
public static float FPMaxNumFpscr(float value1, float value2, bool standardFpscr)
private static float FPMaxNumFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1125,15 +1171,28 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscr(value1, value2, standardFpscr);
return FPMaxFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMaxNumFpscr(float value1, float value2, byte standardFpscr)
{
return FPMaxNumFpscrImpl(value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPMin(float value1, float value2)
{
return FPMinFpscr(value1, value2, false);
return FPMinFpscrImpl(value1, value2, false);
}
public static float FPMinFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMinFpscr(float value1, float value2, byte standardFpscr)
{
return FPMinFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMinFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1194,12 +1253,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMinNum(float value1, float value2)
{
return FPMinNumFpscr(value1, value2, false);
return FPMinNumFpscrImpl(value1, value2, false);
}
public static float FPMinNumFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMinNumFpscr(float value1, float value2, byte standardFpscr)
{
return FPMinNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMinNumFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1216,15 +1282,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscr(value1, value2, standardFpscr);
return FPMinFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static float FPMul(float value1, float value2)
{
return FPMulFpscr(value1, value2, false);
return FPMulFpscrImpl(value1, value2, false);
}
public static float FPMulFpscr(float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMulFpscr(float value1, float value2, byte standardFpscr)
{
return FPMulFpscrImpl(value1, value2, standardFpscr == 1);
}
private static float FPMulFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1271,12 +1344,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulAdd(float valueA, float value1, float value2)
{
return FPMulAddFpscr(valueA, value1, value2, false);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static float FPMulAddFpscr(float valueA, float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMulAddFpscr(float valueA, float value1, float value2, byte standardFpscr)
{
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
private static float FPMulAddFpscrImpl(float valueA, float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1342,20 +1422,23 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPMulSub(float valueA, float value1, float value2)
{
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static float FPMulSubFpscr(float valueA, float value1, float value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPMulSubFpscr(float valueA, float value1, float value2, byte standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static float FPMulX(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1401,27 +1484,36 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPNegMulAdd(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPNegMulSub(float valueA, float value1, float value2)
{
valueA = valueA.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static float FPRecipEstimate(float value)
{
return FPRecipEstimateFpscr(value, false);
return FPRecipEstimateFpscrImpl(value, false);
}
public static float FPRecipEstimateFpscr(float value, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPRecipEstimateFpscr(float value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRecipEstimateFpscrImpl(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1508,6 +1600,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1533,15 +1626,16 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPSubFpscr(FPTwo(false), product, true);
result = FPSubFpscrImpl(FPTwo(false), product, true);
}
return result;
}
[UnmanagedCallersOnly]
public static float FPRecipStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1585,6 +1679,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRecpX(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1610,12 +1705,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtEstimate(float value)
{
return FPRSqrtEstimateFpscr(value, false);
return FPRSqrtEstimateFpscrImpl(value, false);
}
public static float FPRSqrtEstimateFpscr(float value, bool standardFpscr)
[UnmanagedCallersOnly]
public static float FPRSqrtEstimateFpscr(float value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static float FPRSqrtEstimateFpscrImpl(float value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -1729,6 +1831,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStep(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1754,7 +1857,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -1763,6 +1866,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPRSqrtStepFused(float value1, float value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1806,6 +1910,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSqrt(float value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -1848,12 +1953,13 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static float FPSub(float value1, float value2)
{
return FPSubFpscr(value1, value2, false);
return FPSubFpscrImpl(value1, value2, false);
}
public static float FPSubFpscr(float value1, float value2, bool standardFpscr)
private static float FPSubFpscrImpl(float value1, float value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2094,6 +2200,7 @@ namespace ARMeilleure.Instructions
static class SoftFloat64_16
{
[UnmanagedCallersOnly]
public static ushort FPConvert(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2213,12 +2320,19 @@ namespace ARMeilleure.Instructions
static class SoftFloat64
{
[UnmanagedCallersOnly]
public static double FPAdd(double value1, double value2)
{
return FPAddFpscr(value1, value2, false);
return FPAddFpscrImpl(value1, value2, false);
}
public static double FPAddFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPAddFpscr(double value1, double value2, byte standardFpscr)
{
return FPAddFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPAddFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2269,7 +2383,8 @@ namespace ARMeilleure.Instructions
return result;
}
public static int FPCompare(double value1, double value2, bool signalNaNs)
[UnmanagedCallersOnly]
public static int FPCompare(double value1, double value2, byte signalNaNs)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = context.Fpcr;
@@ -2283,7 +2398,7 @@ namespace ARMeilleure.Instructions
{
result = 0b0011;
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs)
if (type1 == FPType.SNaN || type2 == FPType.SNaN || signalNaNs == 1)
{
SoftFloat.FPProcessException(FPException.InvalidOp, context, fpcr);
}
@@ -2307,12 +2422,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareEQ(double value1, double value2)
{
return FPCompareEQFpscr(value1, value2, false);
return FPCompareEQFpscrImpl(value1, value2, false);
}
public static double FPCompareEQFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareEQFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareEQFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareEQFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2339,12 +2461,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGE(double value1, double value2)
{
return FPCompareGEFpscr(value1, value2, false);
return FPCompareGEFpscrImpl(value1, value2, false);
}
public static double FPCompareGEFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareGEFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGEFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareGEFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2368,12 +2497,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareGT(double value1, double value2)
{
return FPCompareGTFpscr(value1, value2, false);
return FPCompareGTFpscrImpl(value1, value2, false);
}
public static double FPCompareGTFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareGTFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGTFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPCompareGTFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2397,26 +2533,31 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPCompareLE(double value1, double value2)
{
return FPCompareGE(value2, value1);
return FPCompareGEFpscrImpl(value2, value1, false);
}
[UnmanagedCallersOnly]
public static double FPCompareLT(double value1, double value2)
{
return FPCompareGT(value2, value1);
return FPCompareGTFpscrImpl(value2, value1, false);
}
public static double FPCompareLEFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareLEFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGEFpscr(value2, value1, standardFpscr);
return FPCompareGEFpscrImpl(value2, value1, standardFpscr == 1);
}
public static double FPCompareLTFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPCompareLTFpscr(double value1, double value2, byte standardFpscr)
{
return FPCompareGTFpscr(value2, value1, standardFpscr);
return FPCompareGTFpscrImpl(value2, value1, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static double FPDiv(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2469,12 +2610,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMax(double value1, double value2)
{
return FPMaxFpscr(value1, value2, false);
return FPMaxFpscrImpl(value1, value2, false);
}
public static double FPMaxFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMaxFpscr(double value1, double value2, byte standardFpscr)
{
return FPMaxFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMaxFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2535,12 +2683,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMaxNum(double value1, double value2)
{
return FPMaxNumFpscr(value1, value2, false);
return FPMaxNumFpscrImpl(value1, value2, false);
}
public static double FPMaxNumFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMaxNumFpscr(double value1, double value2, byte standardFpscr)
{
return FPMaxNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMaxNumFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2557,15 +2712,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(true);
}
return FPMaxFpscr(value1, value2, standardFpscr);
return FPMaxFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMin(double value1, double value2)
{
return FPMinFpscr(value1, value2, false);
return FPMinFpscrImpl(value1, value2, false);
}
public static double FPMinFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMinFpscr(double value1, double value2, byte standardFpscr)
{
return FPMinFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMinFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2626,12 +2788,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMinNum(double value1, double value2)
{
return FPMinNumFpscr(value1, value2, false);
return FPMinNumFpscrImpl(value1, value2, false);
}
public static double FPMinNumFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMinNumFpscr(double value1, double value2, byte standardFpscr)
{
return FPMinNumFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMinNumFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2648,15 +2817,22 @@ namespace ARMeilleure.Instructions
value2 = FPInfinity(false);
}
return FPMinFpscr(value1, value2, standardFpscr);
return FPMinFpscrImpl(value1, value2, standardFpscr);
}
[UnmanagedCallersOnly]
public static double FPMul(double value1, double value2)
{
return FPMulFpscr(value1, value2, false);
return FPMulFpscrImpl(value1, value2, false);
}
public static double FPMulFpscr(double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMulFpscr(double value1, double value2, byte standardFpscr)
{
return FPMulFpscrImpl(value1, value2, standardFpscr == 1);
}
private static double FPMulFpscrImpl(double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2703,12 +2879,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulAdd(double valueA, double value1, double value2)
{
return FPMulAddFpscr(valueA, value1, value2, false);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static double FPMulAddFpscr(double valueA, double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMulAddFpscr(double valueA, double value1, double value2, byte standardFpscr)
{
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
private static double FPMulAddFpscrImpl(double valueA, double value1, double value2, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2774,20 +2957,23 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPMulSub(double valueA, double value1, double value2)
{
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
public static double FPMulSubFpscr(double valueA, double value1, double value2, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPMulSubFpscr(double valueA, double value1, double value2, byte standardFpscr)
{
value1 = value1.FPNeg();
return FPMulAddFpscr(valueA, value1, value2, standardFpscr);
return FPMulAddFpscrImpl(valueA, value1, value2, standardFpscr == 1);
}
[UnmanagedCallersOnly]
public static double FPMulX(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2833,27 +3019,36 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPNegMulAdd(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
value1 = value1.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPNegMulSub(double valueA, double value1, double value2)
{
valueA = valueA.FPNeg();
return FPMulAdd(valueA, value1, value2);
return FPMulAddFpscrImpl(valueA, value1, value2, false);
}
[UnmanagedCallersOnly]
public static double FPRecipEstimate(double value)
{
return FPRecipEstimateFpscr(value, false);
return FPRecipEstimateFpscrImpl(value, false);
}
public static double FPRecipEstimateFpscr(double value, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPRecipEstimateFpscr(double value, byte standardFpscr)
{
return FPRecipEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRecipEstimateFpscrImpl(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -2940,6 +3135,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -2965,7 +3161,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPSubFpscr(FPTwo(false), product, true);
@@ -2974,6 +3170,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecipStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3017,6 +3214,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRecpX(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3042,12 +3240,19 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtEstimate(double value)
{
return FPRSqrtEstimateFpscr(value, false);
return FPRSqrtEstimateFpscrImpl(value, false);
}
public static double FPRSqrtEstimateFpscr(double value, bool standardFpscr)
[UnmanagedCallersOnly]
public static double FPRSqrtEstimateFpscr(double value, byte standardFpscr)
{
return FPRSqrtEstimateFpscrImpl(value, standardFpscr == 1);
}
private static double FPRSqrtEstimateFpscrImpl(double value, bool standardFpscr)
{
ExecutionContext context = NativeInterface.GetContext();
FPCR fpcr = standardFpscr ? context.StandardFpcrValue : context.Fpcr;
@@ -3161,6 +3366,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStep(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3186,7 +3392,7 @@ namespace ARMeilleure.Instructions
}
else
{
product = FPMulFpscr(value1, value2, true);
product = FPMulFpscrImpl(value1, value2, true);
}
result = FPHalvedSub(FPThree(false), product, context, fpcr);
@@ -3195,6 +3401,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPRSqrtStepFused(double value1, double value2)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3238,6 +3445,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSqrt(double value)
{
ExecutionContext context = NativeInterface.GetContext();
@@ -3280,6 +3488,7 @@ namespace ARMeilleure.Instructions
return result;
}
[UnmanagedCallersOnly]
public static double FPSub(double value1, double value2)
{
return FPSubFpscr(value1, value2, false);

View File

@@ -4,15 +4,9 @@ namespace ARMeilleure.Translation
{
class DelegateInfo
{
#pragma warning disable IDE0052 // Remove unread private member
private readonly Delegate _dlg; // Ensure that this delegate will not be garbage collected.
#pragma warning restore IDE0052
public nint FuncPtr { get; }
public DelegateInfo(Delegate dlg, nint funcPtr)
public nint FuncPtr { get; private set; }
public DelegateInfo(nint funcPtr)
{
_dlg = dlg;
FuncPtr = funcPtr;
}
}

View File

@@ -1,9 +1,7 @@
using ARMeilleure.Instructions;
using ARMeilleure.State;
using System;
using System.Collections.Generic;
using System.Reflection;
using System.Runtime.InteropServices;
namespace ARMeilleure.Translation
{
@@ -34,21 +32,7 @@ namespace ARMeilleure.Translation
return _delegates.Values[index].FuncPtr; // O(1).
}
public static nint GetDelegateFuncPtr(MethodInfo info)
{
ArgumentNullException.ThrowIfNull(info);
string key = GetKey(info);
if (!_delegates.TryGetValue(key, out DelegateInfo dlgInfo)) // O(log(n)).
{
throw new KeyNotFoundException($"({nameof(key)} = {key})");
}
return dlgInfo.FuncPtr;
}
public static int GetDelegateIndex(MethodInfo info)
{
ArgumentNullException.ThrowIfNull(info);
@@ -64,12 +48,12 @@ namespace ARMeilleure.Translation
return index;
}
private static void SetDelegateInfo(Delegate dlg, nint funcPtr)
private static void SetDelegateInfo(MethodInfo method)
{
string key = GetKey(dlg.Method);
string key = GetKey(method);
_delegates.Add(key, new DelegateInfo(dlg, funcPtr)); // ArgumentException (key).
_delegates.Add(key, new DelegateInfo(method.MethodHandle.GetFunctionPointer())); // ArgumentException (key).
}
private static string GetKey(MethodInfo info)
@@ -83,528 +67,179 @@ namespace ARMeilleure.Translation
{
_delegates = new SortedList<string, DelegateInfo>();
var dlgMathAbs = new MathAbs(Math.Abs);
var dlgMathCeiling = new MathCeiling(Math.Ceiling);
var dlgMathFloor = new MathFloor(Math.Floor);
var dlgMathRound = new MathRound(Math.Round);
var dlgMathTruncate = new MathTruncate(Math.Truncate);
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Abs)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Ceiling)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Floor)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Round)));
SetDelegateInfo(typeof(MathHelper).GetMethod(nameof(MathHelper.Truncate)));
var dlgMathFAbs = new MathFAbs(MathF.Abs);
var dlgMathFCeiling = new MathFCeiling(MathF.Ceiling);
var dlgMathFFloor = new MathFFloor(MathF.Floor);
var dlgMathFRound = new MathFRound(MathF.Round);
var dlgMathFTruncate = new MathFTruncate(MathF.Truncate);
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Abs)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Ceiling)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Floor)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Round)));
SetDelegateInfo(typeof(MathHelperF).GetMethod(nameof(MathHelperF.Truncate)));
var dlgNativeInterfaceBreak = new NativeInterfaceBreak(NativeInterface.Break);
var dlgNativeInterfaceCheckSynchronization = new NativeInterfaceCheckSynchronization(NativeInterface.CheckSynchronization);
var dlgNativeInterfaceEnqueueForRejit = new NativeInterfaceEnqueueForRejit(NativeInterface.EnqueueForRejit);
var dlgNativeInterfaceGetCntfrqEl0 = new NativeInterfaceGetCntfrqEl0(NativeInterface.GetCntfrqEl0);
var dlgNativeInterfaceGetCntpctEl0 = new NativeInterfaceGetCntpctEl0(NativeInterface.GetCntpctEl0);
var dlgNativeInterfaceGetCntvctEl0 = new NativeInterfaceGetCntvctEl0(NativeInterface.GetCntvctEl0);
var dlgNativeInterfaceGetCtrEl0 = new NativeInterfaceGetCtrEl0(NativeInterface.GetCtrEl0);
var dlgNativeInterfaceGetDczidEl0 = new NativeInterfaceGetDczidEl0(NativeInterface.GetDczidEl0);
var dlgNativeInterfaceGetFunctionAddress = new NativeInterfaceGetFunctionAddress(NativeInterface.GetFunctionAddress);
var dlgNativeInterfaceInvalidateCacheLine = new NativeInterfaceInvalidateCacheLine(NativeInterface.InvalidateCacheLine);
var dlgNativeInterfaceReadByte = new NativeInterfaceReadByte(NativeInterface.ReadByte);
var dlgNativeInterfaceReadUInt16 = new NativeInterfaceReadUInt16(NativeInterface.ReadUInt16);
var dlgNativeInterfaceReadUInt32 = new NativeInterfaceReadUInt32(NativeInterface.ReadUInt32);
var dlgNativeInterfaceReadUInt64 = new NativeInterfaceReadUInt64(NativeInterface.ReadUInt64);
var dlgNativeInterfaceReadVector128 = new NativeInterfaceReadVector128(NativeInterface.ReadVector128);
var dlgNativeInterfaceSignalMemoryTracking = new NativeInterfaceSignalMemoryTracking(NativeInterface.SignalMemoryTracking);
var dlgNativeInterfaceSupervisorCall = new NativeInterfaceSupervisorCall(NativeInterface.SupervisorCall);
var dlgNativeInterfaceThrowInvalidMemoryAccess = new NativeInterfaceThrowInvalidMemoryAccess(NativeInterface.ThrowInvalidMemoryAccess);
var dlgNativeInterfaceUndefined = new NativeInterfaceUndefined(NativeInterface.Undefined);
var dlgNativeInterfaceWriteByte = new NativeInterfaceWriteByte(NativeInterface.WriteByte);
var dlgNativeInterfaceWriteUInt16 = new NativeInterfaceWriteUInt16(NativeInterface.WriteUInt16);
var dlgNativeInterfaceWriteUInt32 = new NativeInterfaceWriteUInt32(NativeInterface.WriteUInt32);
var dlgNativeInterfaceWriteUInt64 = new NativeInterfaceWriteUInt64(NativeInterface.WriteUInt64);
var dlgNativeInterfaceWriteVector128 = new NativeInterfaceWriteVector128(NativeInterface.WriteVector128);
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.Break)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.CheckSynchronization)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.EnqueueForRejit)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntfrqEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntpctEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCntvctEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetCtrEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetDczidEl0)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.GetFunctionAddress)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.InvalidateCacheLine)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadByte)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt16)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt32)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadUInt64)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ReadVector128)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.SignalMemoryTracking)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.SupervisorCall)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.ThrowInvalidMemoryAccess)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.Undefined)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteByte)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt16)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt32)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteUInt64)));
SetDelegateInfo(typeof(NativeInterface).GetMethod(nameof(NativeInterface.WriteVector128)));
var dlgSoftFallbackCountLeadingSigns = new SoftFallbackCountLeadingSigns(SoftFallback.CountLeadingSigns);
var dlgSoftFallbackCountLeadingZeros = new SoftFallbackCountLeadingZeros(SoftFallback.CountLeadingZeros);
var dlgSoftFallbackCrc32b = new SoftFallbackCrc32b(SoftFallback.Crc32b);
var dlgSoftFallbackCrc32cb = new SoftFallbackCrc32cb(SoftFallback.Crc32cb);
var dlgSoftFallbackCrc32ch = new SoftFallbackCrc32ch(SoftFallback.Crc32ch);
var dlgSoftFallbackCrc32cw = new SoftFallbackCrc32cw(SoftFallback.Crc32cw);
var dlgSoftFallbackCrc32cx = new SoftFallbackCrc32cx(SoftFallback.Crc32cx);
var dlgSoftFallbackCrc32h = new SoftFallbackCrc32h(SoftFallback.Crc32h);
var dlgSoftFallbackCrc32w = new SoftFallbackCrc32w(SoftFallback.Crc32w);
var dlgSoftFallbackCrc32x = new SoftFallbackCrc32x(SoftFallback.Crc32x);
var dlgSoftFallbackDecrypt = new SoftFallbackDecrypt(SoftFallback.Decrypt);
var dlgSoftFallbackEncrypt = new SoftFallbackEncrypt(SoftFallback.Encrypt);
var dlgSoftFallbackFixedRotate = new SoftFallbackFixedRotate(SoftFallback.FixedRotate);
var dlgSoftFallbackHashChoose = new SoftFallbackHashChoose(SoftFallback.HashChoose);
var dlgSoftFallbackHashLower = new SoftFallbackHashLower(SoftFallback.HashLower);
var dlgSoftFallbackHashMajority = new SoftFallbackHashMajority(SoftFallback.HashMajority);
var dlgSoftFallbackHashParity = new SoftFallbackHashParity(SoftFallback.HashParity);
var dlgSoftFallbackHashUpper = new SoftFallbackHashUpper(SoftFallback.HashUpper);
var dlgSoftFallbackInverseMixColumns = new SoftFallbackInverseMixColumns(SoftFallback.InverseMixColumns);
var dlgSoftFallbackMixColumns = new SoftFallbackMixColumns(SoftFallback.MixColumns);
var dlgSoftFallbackPolynomialMult64_128 = new SoftFallbackPolynomialMult64_128(SoftFallback.PolynomialMult64_128);
var dlgSoftFallbackSatF32ToS32 = new SoftFallbackSatF32ToS32(SoftFallback.SatF32ToS32);
var dlgSoftFallbackSatF32ToS64 = new SoftFallbackSatF32ToS64(SoftFallback.SatF32ToS64);
var dlgSoftFallbackSatF32ToU32 = new SoftFallbackSatF32ToU32(SoftFallback.SatF32ToU32);
var dlgSoftFallbackSatF32ToU64 = new SoftFallbackSatF32ToU64(SoftFallback.SatF32ToU64);
var dlgSoftFallbackSatF64ToS32 = new SoftFallbackSatF64ToS32(SoftFallback.SatF64ToS32);
var dlgSoftFallbackSatF64ToS64 = new SoftFallbackSatF64ToS64(SoftFallback.SatF64ToS64);
var dlgSoftFallbackSatF64ToU32 = new SoftFallbackSatF64ToU32(SoftFallback.SatF64ToU32);
var dlgSoftFallbackSatF64ToU64 = new SoftFallbackSatF64ToU64(SoftFallback.SatF64ToU64);
var dlgSoftFallbackSha1SchedulePart1 = new SoftFallbackSha1SchedulePart1(SoftFallback.Sha1SchedulePart1);
var dlgSoftFallbackSha1SchedulePart2 = new SoftFallbackSha1SchedulePart2(SoftFallback.Sha1SchedulePart2);
var dlgSoftFallbackSha256SchedulePart1 = new SoftFallbackSha256SchedulePart1(SoftFallback.Sha256SchedulePart1);
var dlgSoftFallbackSha256SchedulePart2 = new SoftFallbackSha256SchedulePart2(SoftFallback.Sha256SchedulePart2);
var dlgSoftFallbackSignedShrImm64 = new SoftFallbackSignedShrImm64(SoftFallback.SignedShrImm64);
var dlgSoftFallbackTbl1 = new SoftFallbackTbl1(SoftFallback.Tbl1);
var dlgSoftFallbackTbl2 = new SoftFallbackTbl2(SoftFallback.Tbl2);
var dlgSoftFallbackTbl3 = new SoftFallbackTbl3(SoftFallback.Tbl3);
var dlgSoftFallbackTbl4 = new SoftFallbackTbl4(SoftFallback.Tbl4);
var dlgSoftFallbackTbx1 = new SoftFallbackTbx1(SoftFallback.Tbx1);
var dlgSoftFallbackTbx2 = new SoftFallbackTbx2(SoftFallback.Tbx2);
var dlgSoftFallbackTbx3 = new SoftFallbackTbx3(SoftFallback.Tbx3);
var dlgSoftFallbackTbx4 = new SoftFallbackTbx4(SoftFallback.Tbx4);
var dlgSoftFallbackUnsignedShrImm64 = new SoftFallbackUnsignedShrImm64(SoftFallback.UnsignedShrImm64);
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.CountLeadingSigns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.CountLeadingZeros)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32b)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cb)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32ch)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cw)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32cx)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32h)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32w)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Crc32x)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Decrypt)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Encrypt)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.FixedRotate)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashChoose)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashLower)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashMajority)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashParity)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.HashUpper)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.InverseMixColumns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.MixColumns)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.PolynomialMult64_128)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToS32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToS64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToU32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF32ToU64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToS32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToS64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToU32)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SatF64ToU64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha1SchedulePart1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha1SchedulePart2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha256SchedulePart1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Sha256SchedulePart2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.SignedShrImm64)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl3)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbl4)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx1)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx2)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx3)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.Tbx4)));
SetDelegateInfo(typeof(SoftFallback).GetMethod(nameof(SoftFallback.UnsignedShrImm64)));
var dlgSoftFloat16_32FPConvert = new SoftFloat16_32FPConvert(SoftFloat16_32.FPConvert);
var dlgSoftFloat16_64FPConvert = new SoftFloat16_64FPConvert(SoftFloat16_64.FPConvert);
SetDelegateInfo(typeof(SoftFloat16_32).GetMethod(nameof(SoftFloat16_32.FPConvert)));
SetDelegateInfo(typeof(SoftFloat16_64).GetMethod(nameof(SoftFloat16_64.FPConvert)));
var dlgSoftFloat32FPAdd = new SoftFloat32FPAdd(SoftFloat32.FPAdd);
var dlgSoftFloat32FPAddFpscr = new SoftFloat32FPAddFpscr(SoftFloat32.FPAddFpscr); // A32 only.
var dlgSoftFloat32FPCompare = new SoftFloat32FPCompare(SoftFloat32.FPCompare);
var dlgSoftFloat32FPCompareEQ = new SoftFloat32FPCompareEQ(SoftFloat32.FPCompareEQ);
var dlgSoftFloat32FPCompareEQFpscr = new SoftFloat32FPCompareEQFpscr(SoftFloat32.FPCompareEQFpscr); // A32 only.
var dlgSoftFloat32FPCompareGE = new SoftFloat32FPCompareGE(SoftFloat32.FPCompareGE);
var dlgSoftFloat32FPCompareGEFpscr = new SoftFloat32FPCompareGEFpscr(SoftFloat32.FPCompareGEFpscr); // A32 only.
var dlgSoftFloat32FPCompareGT = new SoftFloat32FPCompareGT(SoftFloat32.FPCompareGT);
var dlgSoftFloat32FPCompareGTFpscr = new SoftFloat32FPCompareGTFpscr(SoftFloat32.FPCompareGTFpscr); // A32 only.
var dlgSoftFloat32FPCompareLE = new SoftFloat32FPCompareLE(SoftFloat32.FPCompareLE);
var dlgSoftFloat32FPCompareLEFpscr = new SoftFloat32FPCompareLEFpscr(SoftFloat32.FPCompareLEFpscr); // A32 only.
var dlgSoftFloat32FPCompareLT = new SoftFloat32FPCompareLT(SoftFloat32.FPCompareLT);
var dlgSoftFloat32FPCompareLTFpscr = new SoftFloat32FPCompareLTFpscr(SoftFloat32.FPCompareLTFpscr); // A32 only.
var dlgSoftFloat32FPDiv = new SoftFloat32FPDiv(SoftFloat32.FPDiv);
var dlgSoftFloat32FPMax = new SoftFloat32FPMax(SoftFloat32.FPMax);
var dlgSoftFloat32FPMaxFpscr = new SoftFloat32FPMaxFpscr(SoftFloat32.FPMaxFpscr); // A32 only.
var dlgSoftFloat32FPMaxNum = new SoftFloat32FPMaxNum(SoftFloat32.FPMaxNum);
var dlgSoftFloat32FPMaxNumFpscr = new SoftFloat32FPMaxNumFpscr(SoftFloat32.FPMaxNumFpscr); // A32 only.
var dlgSoftFloat32FPMin = new SoftFloat32FPMin(SoftFloat32.FPMin);
var dlgSoftFloat32FPMinFpscr = new SoftFloat32FPMinFpscr(SoftFloat32.FPMinFpscr); // A32 only.
var dlgSoftFloat32FPMinNum = new SoftFloat32FPMinNum(SoftFloat32.FPMinNum);
var dlgSoftFloat32FPMinNumFpscr = new SoftFloat32FPMinNumFpscr(SoftFloat32.FPMinNumFpscr); // A32 only.
var dlgSoftFloat32FPMul = new SoftFloat32FPMul(SoftFloat32.FPMul);
var dlgSoftFloat32FPMulFpscr = new SoftFloat32FPMulFpscr(SoftFloat32.FPMulFpscr); // A32 only.
var dlgSoftFloat32FPMulAdd = new SoftFloat32FPMulAdd(SoftFloat32.FPMulAdd);
var dlgSoftFloat32FPMulAddFpscr = new SoftFloat32FPMulAddFpscr(SoftFloat32.FPMulAddFpscr); // A32 only.
var dlgSoftFloat32FPMulSub = new SoftFloat32FPMulSub(SoftFloat32.FPMulSub);
var dlgSoftFloat32FPMulSubFpscr = new SoftFloat32FPMulSubFpscr(SoftFloat32.FPMulSubFpscr); // A32 only.
var dlgSoftFloat32FPMulX = new SoftFloat32FPMulX(SoftFloat32.FPMulX);
var dlgSoftFloat32FPNegMulAdd = new SoftFloat32FPNegMulAdd(SoftFloat32.FPNegMulAdd);
var dlgSoftFloat32FPNegMulSub = new SoftFloat32FPNegMulSub(SoftFloat32.FPNegMulSub);
var dlgSoftFloat32FPRecipEstimate = new SoftFloat32FPRecipEstimate(SoftFloat32.FPRecipEstimate);
var dlgSoftFloat32FPRecipEstimateFpscr = new SoftFloat32FPRecipEstimateFpscr(SoftFloat32.FPRecipEstimateFpscr); // A32 only.
var dlgSoftFloat32FPRecipStep = new SoftFloat32FPRecipStep(SoftFloat32.FPRecipStep); // A32 only.
var dlgSoftFloat32FPRecipStepFused = new SoftFloat32FPRecipStepFused(SoftFloat32.FPRecipStepFused);
var dlgSoftFloat32FPRecpX = new SoftFloat32FPRecpX(SoftFloat32.FPRecpX);
var dlgSoftFloat32FPRSqrtEstimate = new SoftFloat32FPRSqrtEstimate(SoftFloat32.FPRSqrtEstimate);
var dlgSoftFloat32FPRSqrtEstimateFpscr = new SoftFloat32FPRSqrtEstimateFpscr(SoftFloat32.FPRSqrtEstimateFpscr); // A32 only.
var dlgSoftFloat32FPRSqrtStep = new SoftFloat32FPRSqrtStep(SoftFloat32.FPRSqrtStep); // A32 only.
var dlgSoftFloat32FPRSqrtStepFused = new SoftFloat32FPRSqrtStepFused(SoftFloat32.FPRSqrtStepFused);
var dlgSoftFloat32FPSqrt = new SoftFloat32FPSqrt(SoftFloat32.FPSqrt);
var dlgSoftFloat32FPSub = new SoftFloat32FPSub(SoftFloat32.FPSub);
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompare)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareEQ)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareEQFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGE)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGT)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareGTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLE)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLT)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPCompareLTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPDiv)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMax)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxNum)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMaxNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMin)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinNum)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMinNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMul)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulSub)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulSubFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPMulX)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPNegMulAdd)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPNegMulSub)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipEstimate)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecipStepFused)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRecpX)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtEstimate)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPRSqrtStepFused)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPSqrt)));
SetDelegateInfo(typeof(SoftFloat32).GetMethod(nameof(SoftFloat32.FPSub)));
var dlgSoftFloat32_16FPConvert = new SoftFloat32_16FPConvert(SoftFloat32_16.FPConvert);
SetDelegateInfo(typeof(SoftFloat32_16).GetMethod(nameof(SoftFloat32_16.FPConvert)));
var dlgSoftFloat64FPAdd = new SoftFloat64FPAdd(SoftFloat64.FPAdd);
var dlgSoftFloat64FPAddFpscr = new SoftFloat64FPAddFpscr(SoftFloat64.FPAddFpscr); // A32 only.
var dlgSoftFloat64FPCompare = new SoftFloat64FPCompare(SoftFloat64.FPCompare);
var dlgSoftFloat64FPCompareEQ = new SoftFloat64FPCompareEQ(SoftFloat64.FPCompareEQ);
var dlgSoftFloat64FPCompareEQFpscr = new SoftFloat64FPCompareEQFpscr(SoftFloat64.FPCompareEQFpscr); // A32 only.
var dlgSoftFloat64FPCompareGE = new SoftFloat64FPCompareGE(SoftFloat64.FPCompareGE);
var dlgSoftFloat64FPCompareGEFpscr = new SoftFloat64FPCompareGEFpscr(SoftFloat64.FPCompareGEFpscr); // A32 only.
var dlgSoftFloat64FPCompareGT = new SoftFloat64FPCompareGT(SoftFloat64.FPCompareGT);
var dlgSoftFloat64FPCompareGTFpscr = new SoftFloat64FPCompareGTFpscr(SoftFloat64.FPCompareGTFpscr); // A32 only.
var dlgSoftFloat64FPCompareLE = new SoftFloat64FPCompareLE(SoftFloat64.FPCompareLE);
var dlgSoftFloat64FPCompareLEFpscr = new SoftFloat64FPCompareLEFpscr(SoftFloat64.FPCompareLEFpscr); // A32 only.
var dlgSoftFloat64FPCompareLT = new SoftFloat64FPCompareLT(SoftFloat64.FPCompareLT);
var dlgSoftFloat64FPCompareLTFpscr = new SoftFloat64FPCompareLTFpscr(SoftFloat64.FPCompareLTFpscr); // A32 only.
var dlgSoftFloat64FPDiv = new SoftFloat64FPDiv(SoftFloat64.FPDiv);
var dlgSoftFloat64FPMax = new SoftFloat64FPMax(SoftFloat64.FPMax);
var dlgSoftFloat64FPMaxFpscr = new SoftFloat64FPMaxFpscr(SoftFloat64.FPMaxFpscr); // A32 only.
var dlgSoftFloat64FPMaxNum = new SoftFloat64FPMaxNum(SoftFloat64.FPMaxNum);
var dlgSoftFloat64FPMaxNumFpscr = new SoftFloat64FPMaxNumFpscr(SoftFloat64.FPMaxNumFpscr); // A32 only.
var dlgSoftFloat64FPMin = new SoftFloat64FPMin(SoftFloat64.FPMin);
var dlgSoftFloat64FPMinFpscr = new SoftFloat64FPMinFpscr(SoftFloat64.FPMinFpscr); // A32 only.
var dlgSoftFloat64FPMinNum = new SoftFloat64FPMinNum(SoftFloat64.FPMinNum);
var dlgSoftFloat64FPMinNumFpscr = new SoftFloat64FPMinNumFpscr(SoftFloat64.FPMinNumFpscr); // A32 only.
var dlgSoftFloat64FPMul = new SoftFloat64FPMul(SoftFloat64.FPMul);
var dlgSoftFloat64FPMulFpscr = new SoftFloat64FPMulFpscr(SoftFloat64.FPMulFpscr); // A32 only.
var dlgSoftFloat64FPMulAdd = new SoftFloat64FPMulAdd(SoftFloat64.FPMulAdd);
var dlgSoftFloat64FPMulAddFpscr = new SoftFloat64FPMulAddFpscr(SoftFloat64.FPMulAddFpscr); // A32 only.
var dlgSoftFloat64FPMulSub = new SoftFloat64FPMulSub(SoftFloat64.FPMulSub);
var dlgSoftFloat64FPMulSubFpscr = new SoftFloat64FPMulSubFpscr(SoftFloat64.FPMulSubFpscr); // A32 only.
var dlgSoftFloat64FPMulX = new SoftFloat64FPMulX(SoftFloat64.FPMulX);
var dlgSoftFloat64FPNegMulAdd = new SoftFloat64FPNegMulAdd(SoftFloat64.FPNegMulAdd);
var dlgSoftFloat64FPNegMulSub = new SoftFloat64FPNegMulSub(SoftFloat64.FPNegMulSub);
var dlgSoftFloat64FPRecipEstimate = new SoftFloat64FPRecipEstimate(SoftFloat64.FPRecipEstimate);
var dlgSoftFloat64FPRecipEstimateFpscr = new SoftFloat64FPRecipEstimateFpscr(SoftFloat64.FPRecipEstimateFpscr); // A32 only.
var dlgSoftFloat64FPRecipStep = new SoftFloat64FPRecipStep(SoftFloat64.FPRecipStep); // A32 only.
var dlgSoftFloat64FPRecipStepFused = new SoftFloat64FPRecipStepFused(SoftFloat64.FPRecipStepFused);
var dlgSoftFloat64FPRecpX = new SoftFloat64FPRecpX(SoftFloat64.FPRecpX);
var dlgSoftFloat64FPRSqrtEstimate = new SoftFloat64FPRSqrtEstimate(SoftFloat64.FPRSqrtEstimate);
var dlgSoftFloat64FPRSqrtEstimateFpscr = new SoftFloat64FPRSqrtEstimateFpscr(SoftFloat64.FPRSqrtEstimateFpscr); // A32 only.
var dlgSoftFloat64FPRSqrtStep = new SoftFloat64FPRSqrtStep(SoftFloat64.FPRSqrtStep); // A32 only.
var dlgSoftFloat64FPRSqrtStepFused = new SoftFloat64FPRSqrtStepFused(SoftFloat64.FPRSqrtStepFused);
var dlgSoftFloat64FPSqrt = new SoftFloat64FPSqrt(SoftFloat64.FPSqrt);
var dlgSoftFloat64FPSub = new SoftFloat64FPSub(SoftFloat64.FPSub);
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompare)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareEQ)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareEQFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGE)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGT)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareGTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLE)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLEFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLT)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPCompareLTFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPDiv)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMax)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxNum)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMaxNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMin)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinNum)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMinNumFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMul)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulAddFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulSub)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulSubFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPMulX)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPNegMulAdd)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPNegMulSub)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipEstimate)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecipStepFused)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRecpX)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtEstimate)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtEstimateFpscr))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtStep))); // A32 only.
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPRSqrtStepFused)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPSqrt)));
SetDelegateInfo(typeof(SoftFloat64).GetMethod(nameof(SoftFloat64.FPSub)));
var dlgSoftFloat64_16FPConvert = new SoftFloat64_16FPConvert(SoftFloat64_16.FPConvert);
SetDelegateInfo(dlgMathAbs, Marshal.GetFunctionPointerForDelegate<MathAbs>(dlgMathAbs));
SetDelegateInfo(dlgMathCeiling, Marshal.GetFunctionPointerForDelegate<MathCeiling>(dlgMathCeiling));
SetDelegateInfo(dlgMathFloor, Marshal.GetFunctionPointerForDelegate<MathFloor>(dlgMathFloor));
SetDelegateInfo(dlgMathRound, Marshal.GetFunctionPointerForDelegate<MathRound>(dlgMathRound));
SetDelegateInfo(dlgMathTruncate, Marshal.GetFunctionPointerForDelegate<MathTruncate>(dlgMathTruncate));
SetDelegateInfo(dlgMathFAbs, Marshal.GetFunctionPointerForDelegate<MathFAbs>(dlgMathFAbs));
SetDelegateInfo(dlgMathFCeiling, Marshal.GetFunctionPointerForDelegate<MathFCeiling>(dlgMathFCeiling));
SetDelegateInfo(dlgMathFFloor, Marshal.GetFunctionPointerForDelegate<MathFFloor>(dlgMathFFloor));
SetDelegateInfo(dlgMathFRound, Marshal.GetFunctionPointerForDelegate<MathFRound>(dlgMathFRound));
SetDelegateInfo(dlgMathFTruncate, Marshal.GetFunctionPointerForDelegate<MathFTruncate>(dlgMathFTruncate));
SetDelegateInfo(dlgNativeInterfaceBreak, Marshal.GetFunctionPointerForDelegate<NativeInterfaceBreak>(dlgNativeInterfaceBreak));
SetDelegateInfo(dlgNativeInterfaceCheckSynchronization, Marshal.GetFunctionPointerForDelegate<NativeInterfaceCheckSynchronization>(dlgNativeInterfaceCheckSynchronization));
SetDelegateInfo(dlgNativeInterfaceEnqueueForRejit, Marshal.GetFunctionPointerForDelegate<NativeInterfaceEnqueueForRejit>(dlgNativeInterfaceEnqueueForRejit));
SetDelegateInfo(dlgNativeInterfaceGetCntfrqEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntfrqEl0>(dlgNativeInterfaceGetCntfrqEl0));
SetDelegateInfo(dlgNativeInterfaceGetCntpctEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntpctEl0>(dlgNativeInterfaceGetCntpctEl0));
SetDelegateInfo(dlgNativeInterfaceGetCntvctEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCntvctEl0>(dlgNativeInterfaceGetCntvctEl0));
SetDelegateInfo(dlgNativeInterfaceGetCtrEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetCtrEl0>(dlgNativeInterfaceGetCtrEl0));
SetDelegateInfo(dlgNativeInterfaceGetDczidEl0, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetDczidEl0>(dlgNativeInterfaceGetDczidEl0));
SetDelegateInfo(dlgNativeInterfaceGetFunctionAddress, Marshal.GetFunctionPointerForDelegate<NativeInterfaceGetFunctionAddress>(dlgNativeInterfaceGetFunctionAddress));
SetDelegateInfo(dlgNativeInterfaceInvalidateCacheLine, Marshal.GetFunctionPointerForDelegate<NativeInterfaceInvalidateCacheLine>(dlgNativeInterfaceInvalidateCacheLine));
SetDelegateInfo(dlgNativeInterfaceReadByte, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadByte>(dlgNativeInterfaceReadByte));
SetDelegateInfo(dlgNativeInterfaceReadUInt16, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt16>(dlgNativeInterfaceReadUInt16));
SetDelegateInfo(dlgNativeInterfaceReadUInt32, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt32>(dlgNativeInterfaceReadUInt32));
SetDelegateInfo(dlgNativeInterfaceReadUInt64, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadUInt64>(dlgNativeInterfaceReadUInt64));
SetDelegateInfo(dlgNativeInterfaceReadVector128, Marshal.GetFunctionPointerForDelegate<NativeInterfaceReadVector128>(dlgNativeInterfaceReadVector128));
SetDelegateInfo(dlgNativeInterfaceSignalMemoryTracking, Marshal.GetFunctionPointerForDelegate<NativeInterfaceSignalMemoryTracking>(dlgNativeInterfaceSignalMemoryTracking));
SetDelegateInfo(dlgNativeInterfaceSupervisorCall, Marshal.GetFunctionPointerForDelegate<NativeInterfaceSupervisorCall>(dlgNativeInterfaceSupervisorCall));
SetDelegateInfo(dlgNativeInterfaceThrowInvalidMemoryAccess, Marshal.GetFunctionPointerForDelegate<NativeInterfaceThrowInvalidMemoryAccess>(dlgNativeInterfaceThrowInvalidMemoryAccess));
SetDelegateInfo(dlgNativeInterfaceUndefined, Marshal.GetFunctionPointerForDelegate<NativeInterfaceUndefined>(dlgNativeInterfaceUndefined));
SetDelegateInfo(dlgNativeInterfaceWriteByte, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteByte>(dlgNativeInterfaceWriteByte));
SetDelegateInfo(dlgNativeInterfaceWriteUInt16, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt16>(dlgNativeInterfaceWriteUInt16));
SetDelegateInfo(dlgNativeInterfaceWriteUInt32, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt32>(dlgNativeInterfaceWriteUInt32));
SetDelegateInfo(dlgNativeInterfaceWriteUInt64, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteUInt64>(dlgNativeInterfaceWriteUInt64));
SetDelegateInfo(dlgNativeInterfaceWriteVector128, Marshal.GetFunctionPointerForDelegate<NativeInterfaceWriteVector128>(dlgNativeInterfaceWriteVector128));
SetDelegateInfo(dlgSoftFallbackCountLeadingSigns, Marshal.GetFunctionPointerForDelegate<SoftFallbackCountLeadingSigns>(dlgSoftFallbackCountLeadingSigns));
SetDelegateInfo(dlgSoftFallbackCountLeadingZeros, Marshal.GetFunctionPointerForDelegate<SoftFallbackCountLeadingZeros>(dlgSoftFallbackCountLeadingZeros));
SetDelegateInfo(dlgSoftFallbackCrc32b, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32b>(dlgSoftFallbackCrc32b));
SetDelegateInfo(dlgSoftFallbackCrc32cb, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cb>(dlgSoftFallbackCrc32cb));
SetDelegateInfo(dlgSoftFallbackCrc32ch, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32ch>(dlgSoftFallbackCrc32ch));
SetDelegateInfo(dlgSoftFallbackCrc32cw, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cw>(dlgSoftFallbackCrc32cw));
SetDelegateInfo(dlgSoftFallbackCrc32cx, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32cx>(dlgSoftFallbackCrc32cx));
SetDelegateInfo(dlgSoftFallbackCrc32h, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32h>(dlgSoftFallbackCrc32h));
SetDelegateInfo(dlgSoftFallbackCrc32w, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32w>(dlgSoftFallbackCrc32w));
SetDelegateInfo(dlgSoftFallbackCrc32x, Marshal.GetFunctionPointerForDelegate<SoftFallbackCrc32x>(dlgSoftFallbackCrc32x));
SetDelegateInfo(dlgSoftFallbackDecrypt, Marshal.GetFunctionPointerForDelegate<SoftFallbackDecrypt>(dlgSoftFallbackDecrypt));
SetDelegateInfo(dlgSoftFallbackEncrypt, Marshal.GetFunctionPointerForDelegate<SoftFallbackEncrypt>(dlgSoftFallbackEncrypt));
SetDelegateInfo(dlgSoftFallbackFixedRotate, Marshal.GetFunctionPointerForDelegate<SoftFallbackFixedRotate>(dlgSoftFallbackFixedRotate));
SetDelegateInfo(dlgSoftFallbackHashChoose, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashChoose>(dlgSoftFallbackHashChoose));
SetDelegateInfo(dlgSoftFallbackHashLower, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashLower>(dlgSoftFallbackHashLower));
SetDelegateInfo(dlgSoftFallbackHashMajority, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashMajority>(dlgSoftFallbackHashMajority));
SetDelegateInfo(dlgSoftFallbackHashParity, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashParity>(dlgSoftFallbackHashParity));
SetDelegateInfo(dlgSoftFallbackHashUpper, Marshal.GetFunctionPointerForDelegate<SoftFallbackHashUpper>(dlgSoftFallbackHashUpper));
SetDelegateInfo(dlgSoftFallbackInverseMixColumns, Marshal.GetFunctionPointerForDelegate<SoftFallbackInverseMixColumns>(dlgSoftFallbackInverseMixColumns));
SetDelegateInfo(dlgSoftFallbackMixColumns, Marshal.GetFunctionPointerForDelegate<SoftFallbackMixColumns>(dlgSoftFallbackMixColumns));
SetDelegateInfo(dlgSoftFallbackPolynomialMult64_128, Marshal.GetFunctionPointerForDelegate<SoftFallbackPolynomialMult64_128>(dlgSoftFallbackPolynomialMult64_128));
SetDelegateInfo(dlgSoftFallbackSatF32ToS32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToS32>(dlgSoftFallbackSatF32ToS32));
SetDelegateInfo(dlgSoftFallbackSatF32ToS64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToS64>(dlgSoftFallbackSatF32ToS64));
SetDelegateInfo(dlgSoftFallbackSatF32ToU32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToU32>(dlgSoftFallbackSatF32ToU32));
SetDelegateInfo(dlgSoftFallbackSatF32ToU64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF32ToU64>(dlgSoftFallbackSatF32ToU64));
SetDelegateInfo(dlgSoftFallbackSatF64ToS32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToS32>(dlgSoftFallbackSatF64ToS32));
SetDelegateInfo(dlgSoftFallbackSatF64ToS64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToS64>(dlgSoftFallbackSatF64ToS64));
SetDelegateInfo(dlgSoftFallbackSatF64ToU32, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToU32>(dlgSoftFallbackSatF64ToU32));
SetDelegateInfo(dlgSoftFallbackSatF64ToU64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSatF64ToU64>(dlgSoftFallbackSatF64ToU64));
SetDelegateInfo(dlgSoftFallbackSha1SchedulePart1, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha1SchedulePart1>(dlgSoftFallbackSha1SchedulePart1));
SetDelegateInfo(dlgSoftFallbackSha1SchedulePart2, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha1SchedulePart2>(dlgSoftFallbackSha1SchedulePart2));
SetDelegateInfo(dlgSoftFallbackSha256SchedulePart1, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha256SchedulePart1>(dlgSoftFallbackSha256SchedulePart1));
SetDelegateInfo(dlgSoftFallbackSha256SchedulePart2, Marshal.GetFunctionPointerForDelegate<SoftFallbackSha256SchedulePart2>(dlgSoftFallbackSha256SchedulePart2));
SetDelegateInfo(dlgSoftFallbackSignedShrImm64, Marshal.GetFunctionPointerForDelegate<SoftFallbackSignedShrImm64>(dlgSoftFallbackSignedShrImm64));
SetDelegateInfo(dlgSoftFallbackTbl1, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl1>(dlgSoftFallbackTbl1));
SetDelegateInfo(dlgSoftFallbackTbl2, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl2>(dlgSoftFallbackTbl2));
SetDelegateInfo(dlgSoftFallbackTbl3, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl3>(dlgSoftFallbackTbl3));
SetDelegateInfo(dlgSoftFallbackTbl4, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbl4>(dlgSoftFallbackTbl4));
SetDelegateInfo(dlgSoftFallbackTbx1, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx1>(dlgSoftFallbackTbx1));
SetDelegateInfo(dlgSoftFallbackTbx2, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx2>(dlgSoftFallbackTbx2));
SetDelegateInfo(dlgSoftFallbackTbx3, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx3>(dlgSoftFallbackTbx3));
SetDelegateInfo(dlgSoftFallbackTbx4, Marshal.GetFunctionPointerForDelegate<SoftFallbackTbx4>(dlgSoftFallbackTbx4));
SetDelegateInfo(dlgSoftFallbackUnsignedShrImm64, Marshal.GetFunctionPointerForDelegate<SoftFallbackUnsignedShrImm64>(dlgSoftFallbackUnsignedShrImm64));
SetDelegateInfo(dlgSoftFloat16_32FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat16_32FPConvert>(dlgSoftFloat16_32FPConvert));
SetDelegateInfo(dlgSoftFloat16_64FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat16_64FPConvert>(dlgSoftFloat16_64FPConvert));
SetDelegateInfo(dlgSoftFloat32FPAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPAdd>(dlgSoftFloat32FPAdd));
SetDelegateInfo(dlgSoftFloat32FPAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPAddFpscr>(dlgSoftFloat32FPAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompare, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompare>(dlgSoftFloat32FPCompare));
SetDelegateInfo(dlgSoftFloat32FPCompareEQ, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareEQ>(dlgSoftFloat32FPCompareEQ));
SetDelegateInfo(dlgSoftFloat32FPCompareEQFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareEQFpscr>(dlgSoftFloat32FPCompareEQFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareGE, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGE>(dlgSoftFloat32FPCompareGE));
SetDelegateInfo(dlgSoftFloat32FPCompareGEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGEFpscr>(dlgSoftFloat32FPCompareGEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareGT, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGT>(dlgSoftFloat32FPCompareGT));
SetDelegateInfo(dlgSoftFloat32FPCompareGTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareGTFpscr>(dlgSoftFloat32FPCompareGTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareLE, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLE>(dlgSoftFloat32FPCompareLE));
SetDelegateInfo(dlgSoftFloat32FPCompareLEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLEFpscr>(dlgSoftFloat32FPCompareLEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPCompareLT, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLT>(dlgSoftFloat32FPCompareLT));
SetDelegateInfo(dlgSoftFloat32FPCompareLTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPCompareLTFpscr>(dlgSoftFloat32FPCompareLTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPDiv, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPDiv>(dlgSoftFloat32FPDiv));
SetDelegateInfo(dlgSoftFloat32FPMax, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMax>(dlgSoftFloat32FPMax));
SetDelegateInfo(dlgSoftFloat32FPMaxFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxFpscr>(dlgSoftFloat32FPMaxFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMaxNum, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxNum>(dlgSoftFloat32FPMaxNum));
SetDelegateInfo(dlgSoftFloat32FPMaxNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMaxNumFpscr>(dlgSoftFloat32FPMaxNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMin, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMin>(dlgSoftFloat32FPMin));
SetDelegateInfo(dlgSoftFloat32FPMinFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinFpscr>(dlgSoftFloat32FPMinFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMinNum, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinNum>(dlgSoftFloat32FPMinNum));
SetDelegateInfo(dlgSoftFloat32FPMinNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMinNumFpscr>(dlgSoftFloat32FPMinNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMul, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMul>(dlgSoftFloat32FPMul));
SetDelegateInfo(dlgSoftFloat32FPMulFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulFpscr>(dlgSoftFloat32FPMulFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulAdd>(dlgSoftFloat32FPMulAdd));
SetDelegateInfo(dlgSoftFloat32FPMulAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulAddFpscr>(dlgSoftFloat32FPMulAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulSub>(dlgSoftFloat32FPMulSub));
SetDelegateInfo(dlgSoftFloat32FPMulSubFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulSubFpscr>(dlgSoftFloat32FPMulSubFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPMulX, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPMulX>(dlgSoftFloat32FPMulX));
SetDelegateInfo(dlgSoftFloat32FPNegMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPNegMulAdd>(dlgSoftFloat32FPNegMulAdd));
SetDelegateInfo(dlgSoftFloat32FPNegMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPNegMulSub>(dlgSoftFloat32FPNegMulSub));
SetDelegateInfo(dlgSoftFloat32FPRecipEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipEstimate>(dlgSoftFloat32FPRecipEstimate));
SetDelegateInfo(dlgSoftFloat32FPRecipEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipEstimateFpscr>(dlgSoftFloat32FPRecipEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRecipStep, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipStep>(dlgSoftFloat32FPRecipStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRecipStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecipStepFused>(dlgSoftFloat32FPRecipStepFused));
SetDelegateInfo(dlgSoftFloat32FPRecpX, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRecpX>(dlgSoftFloat32FPRecpX));
SetDelegateInfo(dlgSoftFloat32FPRSqrtEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtEstimate>(dlgSoftFloat32FPRSqrtEstimate));
SetDelegateInfo(dlgSoftFloat32FPRSqrtEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtEstimateFpscr>(dlgSoftFloat32FPRSqrtEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRSqrtStep, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtStep>(dlgSoftFloat32FPRSqrtStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat32FPRSqrtStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPRSqrtStepFused>(dlgSoftFloat32FPRSqrtStepFused));
SetDelegateInfo(dlgSoftFloat32FPSqrt, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPSqrt>(dlgSoftFloat32FPSqrt));
SetDelegateInfo(dlgSoftFloat32FPSub, Marshal.GetFunctionPointerForDelegate<SoftFloat32FPSub>(dlgSoftFloat32FPSub));
SetDelegateInfo(dlgSoftFloat32_16FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat32_16FPConvert>(dlgSoftFloat32_16FPConvert));
SetDelegateInfo(dlgSoftFloat64FPAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPAdd>(dlgSoftFloat64FPAdd));
SetDelegateInfo(dlgSoftFloat64FPAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPAddFpscr>(dlgSoftFloat64FPAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompare, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompare>(dlgSoftFloat64FPCompare));
SetDelegateInfo(dlgSoftFloat64FPCompareEQ, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareEQ>(dlgSoftFloat64FPCompareEQ));
SetDelegateInfo(dlgSoftFloat64FPCompareEQFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareEQFpscr>(dlgSoftFloat64FPCompareEQFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareGE, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGE>(dlgSoftFloat64FPCompareGE));
SetDelegateInfo(dlgSoftFloat64FPCompareGEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGEFpscr>(dlgSoftFloat64FPCompareGEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareGT, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGT>(dlgSoftFloat64FPCompareGT));
SetDelegateInfo(dlgSoftFloat64FPCompareGTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareGTFpscr>(dlgSoftFloat64FPCompareGTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareLE, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLE>(dlgSoftFloat64FPCompareLE));
SetDelegateInfo(dlgSoftFloat64FPCompareLEFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLEFpscr>(dlgSoftFloat64FPCompareLEFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPCompareLT, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLT>(dlgSoftFloat64FPCompareLT));
SetDelegateInfo(dlgSoftFloat64FPCompareLTFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPCompareLTFpscr>(dlgSoftFloat64FPCompareLTFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPDiv, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPDiv>(dlgSoftFloat64FPDiv));
SetDelegateInfo(dlgSoftFloat64FPMax, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMax>(dlgSoftFloat64FPMax));
SetDelegateInfo(dlgSoftFloat64FPMaxFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxFpscr>(dlgSoftFloat64FPMaxFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMaxNum, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxNum>(dlgSoftFloat64FPMaxNum));
SetDelegateInfo(dlgSoftFloat64FPMaxNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMaxNumFpscr>(dlgSoftFloat64FPMaxNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMin, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMin>(dlgSoftFloat64FPMin));
SetDelegateInfo(dlgSoftFloat64FPMinFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinFpscr>(dlgSoftFloat64FPMinFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMinNum, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinNum>(dlgSoftFloat64FPMinNum));
SetDelegateInfo(dlgSoftFloat64FPMinNumFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMinNumFpscr>(dlgSoftFloat64FPMinNumFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMul, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMul>(dlgSoftFloat64FPMul));
SetDelegateInfo(dlgSoftFloat64FPMulFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulFpscr>(dlgSoftFloat64FPMulFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulAdd>(dlgSoftFloat64FPMulAdd));
SetDelegateInfo(dlgSoftFloat64FPMulAddFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulAddFpscr>(dlgSoftFloat64FPMulAddFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulSub>(dlgSoftFloat64FPMulSub));
SetDelegateInfo(dlgSoftFloat64FPMulSubFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulSubFpscr>(dlgSoftFloat64FPMulSubFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPMulX, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPMulX>(dlgSoftFloat64FPMulX));
SetDelegateInfo(dlgSoftFloat64FPNegMulAdd, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPNegMulAdd>(dlgSoftFloat64FPNegMulAdd));
SetDelegateInfo(dlgSoftFloat64FPNegMulSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPNegMulSub>(dlgSoftFloat64FPNegMulSub));
SetDelegateInfo(dlgSoftFloat64FPRecipEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipEstimate>(dlgSoftFloat64FPRecipEstimate));
SetDelegateInfo(dlgSoftFloat64FPRecipEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipEstimateFpscr>(dlgSoftFloat64FPRecipEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRecipStep, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipStep>(dlgSoftFloat64FPRecipStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRecipStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecipStepFused>(dlgSoftFloat64FPRecipStepFused));
SetDelegateInfo(dlgSoftFloat64FPRecpX, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRecpX>(dlgSoftFloat64FPRecpX));
SetDelegateInfo(dlgSoftFloat64FPRSqrtEstimate, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtEstimate>(dlgSoftFloat64FPRSqrtEstimate));
SetDelegateInfo(dlgSoftFloat64FPRSqrtEstimateFpscr, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtEstimateFpscr>(dlgSoftFloat64FPRSqrtEstimateFpscr)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRSqrtStep, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtStep>(dlgSoftFloat64FPRSqrtStep)); // A32 only.
SetDelegateInfo(dlgSoftFloat64FPRSqrtStepFused, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPRSqrtStepFused>(dlgSoftFloat64FPRSqrtStepFused));
SetDelegateInfo(dlgSoftFloat64FPSqrt, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPSqrt>(dlgSoftFloat64FPSqrt));
SetDelegateInfo(dlgSoftFloat64FPSub, Marshal.GetFunctionPointerForDelegate<SoftFloat64FPSub>(dlgSoftFloat64FPSub));
SetDelegateInfo(dlgSoftFloat64_16FPConvert, Marshal.GetFunctionPointerForDelegate<SoftFloat64_16FPConvert>(dlgSoftFloat64_16FPConvert));
SetDelegateInfo(typeof(SoftFloat64_16).GetMethod(nameof(SoftFloat64_16.FPConvert)));
}
private delegate double MathAbs(double value);
private delegate double MathCeiling(double a);
private delegate double MathFloor(double d);
private delegate double MathRound(double value, MidpointRounding mode);
private delegate double MathTruncate(double d);
private delegate float MathFAbs(float x);
private delegate float MathFCeiling(float x);
private delegate float MathFFloor(float x);
private delegate float MathFRound(float x, MidpointRounding mode);
private delegate float MathFTruncate(float x);
private delegate void NativeInterfaceBreak(ulong address, int imm);
private delegate bool NativeInterfaceCheckSynchronization();
private delegate void NativeInterfaceEnqueueForRejit(ulong address);
private delegate ulong NativeInterfaceGetCntfrqEl0();
private delegate ulong NativeInterfaceGetCntpctEl0();
private delegate ulong NativeInterfaceGetCntvctEl0();
private delegate ulong NativeInterfaceGetCtrEl0();
private delegate ulong NativeInterfaceGetDczidEl0();
private delegate ulong NativeInterfaceGetFunctionAddress(ulong address);
private delegate void NativeInterfaceInvalidateCacheLine(ulong address);
private delegate byte NativeInterfaceReadByte(ulong address);
private delegate ushort NativeInterfaceReadUInt16(ulong address);
private delegate uint NativeInterfaceReadUInt32(ulong address);
private delegate ulong NativeInterfaceReadUInt64(ulong address);
private delegate V128 NativeInterfaceReadVector128(ulong address);
private delegate void NativeInterfaceSignalMemoryTracking(ulong address, ulong size, bool write);
private delegate void NativeInterfaceSupervisorCall(ulong address, int imm);
private delegate void NativeInterfaceThrowInvalidMemoryAccess(ulong address);
private delegate void NativeInterfaceUndefined(ulong address, int opCode);
private delegate void NativeInterfaceWriteByte(ulong address, byte value);
private delegate void NativeInterfaceWriteUInt16(ulong address, ushort value);
private delegate void NativeInterfaceWriteUInt32(ulong address, uint value);
private delegate void NativeInterfaceWriteUInt64(ulong address, ulong value);
private delegate void NativeInterfaceWriteVector128(ulong address, V128 value);
private delegate ulong SoftFallbackCountLeadingSigns(ulong value, int size);
private delegate ulong SoftFallbackCountLeadingZeros(ulong value, int size);
private delegate uint SoftFallbackCrc32b(uint crc, byte value);
private delegate uint SoftFallbackCrc32cb(uint crc, byte value);
private delegate uint SoftFallbackCrc32ch(uint crc, ushort value);
private delegate uint SoftFallbackCrc32cw(uint crc, uint value);
private delegate uint SoftFallbackCrc32cx(uint crc, ulong value);
private delegate uint SoftFallbackCrc32h(uint crc, ushort value);
private delegate uint SoftFallbackCrc32w(uint crc, uint value);
private delegate uint SoftFallbackCrc32x(uint crc, ulong value);
private delegate V128 SoftFallbackDecrypt(V128 value, V128 roundKey);
private delegate V128 SoftFallbackEncrypt(V128 value, V128 roundKey);
private delegate uint SoftFallbackFixedRotate(uint hash_e);
private delegate V128 SoftFallbackHashChoose(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashLower(V128 hash_abcd, V128 hash_efgh, V128 wk);
private delegate V128 SoftFallbackHashMajority(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashParity(V128 hash_abcd, uint hash_e, V128 wk);
private delegate V128 SoftFallbackHashUpper(V128 hash_abcd, V128 hash_efgh, V128 wk);
private delegate V128 SoftFallbackInverseMixColumns(V128 value);
private delegate V128 SoftFallbackMixColumns(V128 value);
private delegate V128 SoftFallbackPolynomialMult64_128(ulong op1, ulong op2);
private delegate int SoftFallbackSatF32ToS32(float value);
private delegate long SoftFallbackSatF32ToS64(float value);
private delegate uint SoftFallbackSatF32ToU32(float value);
private delegate ulong SoftFallbackSatF32ToU64(float value);
private delegate int SoftFallbackSatF64ToS32(double value);
private delegate long SoftFallbackSatF64ToS64(double value);
private delegate uint SoftFallbackSatF64ToU32(double value);
private delegate ulong SoftFallbackSatF64ToU64(double value);
private delegate V128 SoftFallbackSha1SchedulePart1(V128 w0_3, V128 w4_7, V128 w8_11);
private delegate V128 SoftFallbackSha1SchedulePart2(V128 tw0_3, V128 w12_15);
private delegate V128 SoftFallbackSha256SchedulePart1(V128 w0_3, V128 w4_7);
private delegate V128 SoftFallbackSha256SchedulePart2(V128 w0_3, V128 w8_11, V128 w12_15);
private delegate long SoftFallbackSignedShrImm64(long value, long roundConst, int shift);
private delegate V128 SoftFallbackTbl1(V128 vector, int bytes, V128 tb0);
private delegate V128 SoftFallbackTbl2(V128 vector, int bytes, V128 tb0, V128 tb1);
private delegate V128 SoftFallbackTbl3(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2);
private delegate V128 SoftFallbackTbl4(V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3);
private delegate V128 SoftFallbackTbx1(V128 dest, V128 vector, int bytes, V128 tb0);
private delegate V128 SoftFallbackTbx2(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1);
private delegate V128 SoftFallbackTbx3(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2);
private delegate V128 SoftFallbackTbx4(V128 dest, V128 vector, int bytes, V128 tb0, V128 tb1, V128 tb2, V128 tb3);
private delegate ulong SoftFallbackUnsignedShrImm64(ulong value, long roundConst, int shift);
private delegate float SoftFloat16_32FPConvert(ushort valueBits);
private delegate double SoftFloat16_64FPConvert(ushort valueBits);
private delegate float SoftFloat32FPAdd(float value1, float value2);
private delegate float SoftFloat32FPAddFpscr(float value1, float value2, bool standardFpscr);
private delegate int SoftFloat32FPCompare(float value1, float value2, bool signalNaNs);
private delegate float SoftFloat32FPCompareEQ(float value1, float value2);
private delegate float SoftFloat32FPCompareEQFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareGE(float value1, float value2);
private delegate float SoftFloat32FPCompareGEFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareGT(float value1, float value2);
private delegate float SoftFloat32FPCompareGTFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareLE(float value1, float value2);
private delegate float SoftFloat32FPCompareLEFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPCompareLT(float value1, float value2);
private delegate float SoftFloat32FPCompareLTFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPDiv(float value1, float value2);
private delegate float SoftFloat32FPMax(float value1, float value2);
private delegate float SoftFloat32FPMaxFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMaxNum(float value1, float value2);
private delegate float SoftFloat32FPMaxNumFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMin(float value1, float value2);
private delegate float SoftFloat32FPMinFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMinNum(float value1, float value2);
private delegate float SoftFloat32FPMinNumFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMul(float value1, float value2);
private delegate float SoftFloat32FPMulFpscr(float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulAdd(float valueA, float value1, float value2);
private delegate float SoftFloat32FPMulAddFpscr(float valueA, float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulSub(float valueA, float value1, float value2);
private delegate float SoftFloat32FPMulSubFpscr(float valueA, float value1, float value2, bool standardFpscr);
private delegate float SoftFloat32FPMulX(float value1, float value2);
private delegate float SoftFloat32FPNegMulAdd(float valueA, float value1, float value2);
private delegate float SoftFloat32FPNegMulSub(float valueA, float value1, float value2);
private delegate float SoftFloat32FPRecipEstimate(float value);
private delegate float SoftFloat32FPRecipEstimateFpscr(float value, bool standardFpscr);
private delegate float SoftFloat32FPRecipStep(float value1, float value2);
private delegate float SoftFloat32FPRecipStepFused(float value1, float value2);
private delegate float SoftFloat32FPRecpX(float value);
private delegate float SoftFloat32FPRSqrtEstimate(float value);
private delegate float SoftFloat32FPRSqrtEstimateFpscr(float value, bool standardFpscr);
private delegate float SoftFloat32FPRSqrtStep(float value1, float value2);
private delegate float SoftFloat32FPRSqrtStepFused(float value1, float value2);
private delegate float SoftFloat32FPSqrt(float value);
private delegate float SoftFloat32FPSub(float value1, float value2);
private delegate ushort SoftFloat32_16FPConvert(float value);
private delegate double SoftFloat64FPAdd(double value1, double value2);
private delegate double SoftFloat64FPAddFpscr(double value1, double value2, bool standardFpscr);
private delegate int SoftFloat64FPCompare(double value1, double value2, bool signalNaNs);
private delegate double SoftFloat64FPCompareEQ(double value1, double value2);
private delegate double SoftFloat64FPCompareEQFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareGE(double value1, double value2);
private delegate double SoftFloat64FPCompareGEFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareGT(double value1, double value2);
private delegate double SoftFloat64FPCompareGTFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareLE(double value1, double value2);
private delegate double SoftFloat64FPCompareLEFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPCompareLT(double value1, double value2);
private delegate double SoftFloat64FPCompareLTFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPDiv(double value1, double value2);
private delegate double SoftFloat64FPMax(double value1, double value2);
private delegate double SoftFloat64FPMaxFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMaxNum(double value1, double value2);
private delegate double SoftFloat64FPMaxNumFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMin(double value1, double value2);
private delegate double SoftFloat64FPMinFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMinNum(double value1, double value2);
private delegate double SoftFloat64FPMinNumFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMul(double value1, double value2);
private delegate double SoftFloat64FPMulFpscr(double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulAdd(double valueA, double value1, double value2);
private delegate double SoftFloat64FPMulAddFpscr(double valueA, double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulSub(double valueA, double value1, double value2);
private delegate double SoftFloat64FPMulSubFpscr(double valueA, double value1, double value2, bool standardFpscr);
private delegate double SoftFloat64FPMulX(double value1, double value2);
private delegate double SoftFloat64FPNegMulAdd(double valueA, double value1, double value2);
private delegate double SoftFloat64FPNegMulSub(double valueA, double value1, double value2);
private delegate double SoftFloat64FPRecipEstimate(double value);
private delegate double SoftFloat64FPRecipEstimateFpscr(double value, bool standardFpscr);
private delegate double SoftFloat64FPRecipStep(double value1, double value2);
private delegate double SoftFloat64FPRecipStepFused(double value1, double value2);
private delegate double SoftFloat64FPRecpX(double value);
private delegate double SoftFloat64FPRSqrtEstimate(double value);
private delegate double SoftFloat64FPRSqrtEstimateFpscr(double value, bool standardFpscr);
private delegate double SoftFloat64FPRSqrtStep(double value1, double value2);
private delegate double SoftFloat64FPRSqrtStepFused(double value1, double value2);
private delegate double SoftFloat64FPSqrt(double value);
private delegate double SoftFloat64FPSub(double value1, double value2);
private delegate ushort SoftFloat64_16FPConvert(double value);
}
}

View File

@@ -97,7 +97,7 @@ namespace ARMeilleure.Translation
public virtual Operand Call(MethodInfo info, params Operand[] callArgs)
{
nint funcPtr = Delegates.GetDelegateFuncPtr(info);
nint funcPtr = info.MethodHandle.GetFunctionPointer();
OperandType returnType = GetOperandType(info.ReturnType);

View File

@@ -29,8 +29,8 @@ namespace ARMeilleure.Translation.PTC
{
private const string OuterHeaderMagicString = "PTCohd\0\0";
private const string InnerHeaderMagicString = "PTCihd\0\0";
private const uint InternalVersion = 6997; //! To be incremented manually for each change to the ARMeilleure project.
private const uint InternalVersion = 6998; //! To be incremented manually for each change to the ARMeilleure project.
private const string ActualDir = "0";
private const string BackupDir = "1";

View File

@@ -0,0 +1,11 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
</PropertyGroup>
<ItemGroup>
<ProjectReference Include="..\Ryujinx.Audio\Ryujinx.Audio.csproj" />
<ProjectReference Include="..\Ryujinx.SDL3.Common\Ryujinx.SDL3.Common.csproj" />
</ItemGroup>
</Project>

View File

@@ -0,0 +1,16 @@
namespace Ryujinx.Audio.Backends.SDL3
{
class SDL3AudioBuffer
{
public readonly ulong DriverIdentifier;
public readonly ulong SampleCount;
public ulong SamplePlayed;
public SDL3AudioBuffer(ulong driverIdentifier, ulong sampleCount)
{
DriverIdentifier = driverIdentifier;
SampleCount = sampleCount;
SamplePlayed = 0;
}
}
}

View File

@@ -0,0 +1,190 @@
using Ryujinx.Audio.Common;
using Ryujinx.Audio.Integration;
using Ryujinx.Common.Logging;
using Ryujinx.Memory;
using Ryujinx.SDL3.Common;
using System;
using System.Collections.Concurrent;
using System.Threading;
using static Ryujinx.Audio.Integration.IHardwareDeviceDriver;
using static SDL3.SDL;
namespace Ryujinx.Audio.Backends.SDL3
{
public class SDL3HardwareDeviceDriver : IHardwareDeviceDriver
{
private readonly ManualResetEvent _updateRequiredEvent;
private readonly ManualResetEvent _pauseEvent;
private readonly ConcurrentDictionary<SDL3HardwareDeviceSession, byte> _sessions;
private readonly bool _supportSurroundConfiguration;
public float Volume { get; set; }
public SDL3HardwareDeviceDriver()
{
_updateRequiredEvent = new ManualResetEvent(false);
_pauseEvent = new ManualResetEvent(true);
_sessions = new ConcurrentDictionary<SDL3HardwareDeviceSession, byte>();
SDL3Driver.Instance.Initialize();
if (!SDL_GetAudioDeviceFormat(SDL_AUDIO_DEVICE_DEFAULT_PLAYBACK, out var spec, out int _))
{
Logger.Error?.Print(LogClass.Application,
$"SDL_GetDefaultAudioInfo failed with error \"{SDL_GetError()}\"");
_supportSurroundConfiguration = true;
}
else
{
_supportSurroundConfiguration = spec.channels >= 6;
}
Volume = 1f;
}
public static bool IsSupported => IsSupportedInternal();
private static bool IsSupportedInternal()
{
nint device = OpenStream(SampleFormat.PcmInt16, Constants.TargetSampleRate, Constants.ChannelCountMax, null);
if (device != 0)
{
SDL_DestroyAudioStream(device);
}
return device != 0;
}
public ManualResetEvent GetUpdateRequiredEvent()
{
return _updateRequiredEvent;
}
public ManualResetEvent GetPauseEvent()
{
return _pauseEvent;
}
public IHardwareDeviceSession OpenDeviceSession(Direction direction, IVirtualMemoryManager memoryManager,
SampleFormat sampleFormat, uint sampleRate, uint channelCount)
{
if (channelCount == 0)
{
channelCount = 2;
}
if (sampleRate == 0)
{
sampleRate = Constants.TargetSampleRate;
}
if (direction != Direction.Output)
{
throw new NotImplementedException("Input direction is currently not implemented on SDL3 backend!");
}
SDL3HardwareDeviceSession session = new(this, memoryManager, sampleFormat, sampleRate, channelCount);
_sessions.TryAdd(session, 0);
return session;
}
internal bool Unregister(SDL3HardwareDeviceSession session)
{
return _sessions.TryRemove(session, out _);
}
private static SDL_AudioSpec GetSDL3Spec(SampleFormat requestedSampleFormat, uint requestedSampleRate,
uint requestedChannelCount)
{
return new SDL_AudioSpec
{
channels = (byte)requestedChannelCount,
format = GetSDL3Format(requestedSampleFormat),
freq = (int)requestedSampleRate,
};
}
internal static SDL_AudioFormat GetSDL3Format(SampleFormat format)
{
return format switch
{
SampleFormat.PcmInt8 => SDL_AudioFormat.SDL_AUDIO_S8,
SampleFormat.PcmInt16 => SDL_AudioFormat.SDL_AUDIO_S16,
SampleFormat.PcmInt32 => SDL_AudioFormat.SDL_AUDIO_S32,
SampleFormat.PcmFloat => SDL_AudioFormat.SDL_AUDIO_F32,
_ => throw new ArgumentException($"Unsupported sample format {format}"),
};
}
internal static nint OpenStream(SampleFormat requestedSampleFormat, uint requestedSampleRate,
uint requestedChannelCount, SDL_AudioStreamCallback callback)
{
SDL_AudioSpec desired = GetSDL3Spec(requestedSampleFormat, requestedSampleRate, requestedChannelCount);
nint stream =
SDL_OpenAudioDeviceStream(SDL_AUDIO_DEVICE_DEFAULT_PLAYBACK, ref desired, callback, nint.Zero);
if (stream == 0)
{
Logger.Error?.Print(LogClass.Application,
$"SDL3 open audio device initialization failed with error \"{SDL_GetError()}\"");
return 0;
}
return stream;
}
public void Dispose()
{
GC.SuppressFinalize(this);
Dispose(true);
}
protected virtual void Dispose(bool disposing)
{
if (disposing)
{
foreach (SDL3HardwareDeviceSession session in _sessions.Keys)
{
session.Dispose();
}
SDL3Driver.Instance.Dispose();
_pauseEvent.Dispose();
}
}
public bool SupportsSampleRate(uint sampleRate)
{
return true;
}
public bool SupportsSampleFormat(SampleFormat sampleFormat)
{
return sampleFormat != SampleFormat.PcmInt24;
}
public bool SupportsChannelCount(uint channelCount)
{
if (channelCount == 6)
{
return _supportSurroundConfiguration;
}
return true;
}
public bool SupportsDirection(Direction direction)
{
// TODO: add direction input when supported.
return direction == Direction.Output;
}
}
}

View File

@@ -0,0 +1,231 @@
using Ryujinx.Audio.Backends.Common;
using Ryujinx.Audio.Common;
using Ryujinx.Common.Logging;
using Ryujinx.Common.Memory;
using Ryujinx.Memory;
using System;
using System.Collections.Concurrent;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.Audio.Backends.SDL3
{
class SDL3HardwareDeviceSession : HardwareDeviceSessionOutputBase
{
private readonly SDL3HardwareDeviceDriver _driver;
private readonly ConcurrentQueue<SDL3AudioBuffer> _queuedBuffers;
private readonly DynamicRingBuffer _ringBuffer;
private ulong _playedSampleCount;
private readonly ManualResetEvent _updateRequiredEvent;
private nint _outputStream;
private bool _hasSetupError;
private readonly SDL_AudioStreamCallback _callbackDelegate;
private readonly int _bytesPerFrame;
private bool _started;
private float _volume;
private readonly SDL_AudioFormat _nativeSampleFormat;
public SDL3HardwareDeviceSession(SDL3HardwareDeviceDriver driver, IVirtualMemoryManager memoryManager,
SampleFormat requestedSampleFormat, uint requestedSampleRate, uint requestedChannelCount) : base(
memoryManager, requestedSampleFormat, requestedSampleRate, requestedChannelCount)
{
_driver = driver;
_updateRequiredEvent = _driver.GetUpdateRequiredEvent();
_queuedBuffers = new ConcurrentQueue<SDL3AudioBuffer>();
_ringBuffer = new DynamicRingBuffer();
_callbackDelegate = Update;
_bytesPerFrame = BackendHelper.GetSampleSize(RequestedSampleFormat) * (int)RequestedChannelCount;
_nativeSampleFormat = SDL3HardwareDeviceDriver.GetSDL3Format(RequestedSampleFormat);
_started = false;
_volume = 1f;
}
private void EnsureAudioStreamSetup(AudioBuffer buffer)
{
uint bufferSampleCount = (uint)GetSampleCount(buffer);
bool needAudioSetup = (_outputStream == 0 && !_hasSetupError) ||
(bufferSampleCount >= Constants.TargetSampleCount);
if (needAudioSetup)
{
nint newOutputStream = SDL3HardwareDeviceDriver.OpenStream(RequestedSampleFormat, RequestedSampleRate,
RequestedChannelCount, _callbackDelegate);
_hasSetupError = newOutputStream == 0;
if (!_hasSetupError)
{
if (_outputStream != 0)
{
SDL_DestroyAudioStream(_outputStream);
}
_outputStream = newOutputStream;
if (_started)
{
SDL_ResumeAudioStreamDevice(_outputStream);
}
else
{
SDL_PauseAudioStreamDevice(_outputStream);
}
}
}
}
private unsafe void Update(nint userdata, nint stream, int additionalAmount, int totalAmount)
{
int maxFrameCount = (int)GetSampleCount(additionalAmount);
int bufferedFrames = _ringBuffer.Length / _bytesPerFrame;
int frameCount = Math.Min(bufferedFrames, maxFrameCount);
if (frameCount == 0)
{
return;
}
using SpanOwner<byte> samplesOwner = SpanOwner<byte>.Rent(frameCount * _bytesPerFrame);
Span<byte> samples = samplesOwner.Span;
int samplesLength = samples.Length;
_ringBuffer.Read(samples, 0, samplesLength);
fixed (byte* p = samples)
{
nint pStreamSrc = (nint)p;
nint pStreamDst = SDL_calloc(1,samplesLength);
// Apply volume to written data
SDL_MixAudio(pStreamDst, pStreamSrc, _nativeSampleFormat, (uint)samplesLength, _driver.Volume);
SDL_PutAudioStreamData(stream, pStreamDst, samplesLength);
SDL_free(pStreamDst);
}
ulong sampleCount = GetSampleCount(samplesLength);
ulong availaibleSampleCount = sampleCount;
bool needUpdate = false;
while (availaibleSampleCount > 0 && _queuedBuffers.TryPeek(out SDL3AudioBuffer driverBuffer))
{
ulong sampleStillNeeded = driverBuffer.SampleCount - Interlocked.Read(ref driverBuffer.SamplePlayed);
ulong playedAudioBufferSampleCount = Math.Min(sampleStillNeeded, availaibleSampleCount);
ulong currentSamplePlayed =
Interlocked.Add(ref driverBuffer.SamplePlayed, playedAudioBufferSampleCount);
availaibleSampleCount -= playedAudioBufferSampleCount;
if (currentSamplePlayed == driverBuffer.SampleCount)
{
_queuedBuffers.TryDequeue(out _);
needUpdate = true;
}
Interlocked.Add(ref _playedSampleCount, playedAudioBufferSampleCount);
}
// Notify the output if needed.
if (needUpdate)
{
_updateRequiredEvent.Set();
}
}
public override ulong GetPlayedSampleCount()
{
return Interlocked.Read(ref _playedSampleCount);
}
public override float GetVolume()
{
return _volume;
}
public override void PrepareToClose() { }
public override void QueueBuffer(AudioBuffer buffer)
{
EnsureAudioStreamSetup(buffer);
if (_outputStream != 0)
{
SDL3AudioBuffer driverBuffer = new(buffer.DataPointer, GetSampleCount(buffer));
_ringBuffer.Write(buffer.Data, 0, buffer.Data.Length);
_queuedBuffers.Enqueue(driverBuffer);
}
else
{
Interlocked.Add(ref _playedSampleCount, GetSampleCount(buffer));
_updateRequiredEvent.Set();
}
}
public override void SetVolume(float volume)
{
_volume = volume;
}
public override void Start()
{
if (!_started)
{
if (_outputStream != 0)
{
SDL_ResumeAudioStreamDevice(_outputStream);
}
_started = true;
}
}
public override void Stop()
{
if (_started)
{
if (_outputStream != 0)
{
SDL_PauseAudioStreamDevice(_outputStream);
}
_started = false;
}
}
public override void UnregisterBuffer(AudioBuffer buffer) { }
public override bool WasBufferFullyConsumed(AudioBuffer buffer)
{
if (!_queuedBuffers.TryPeek(out SDL3AudioBuffer driverBuffer))
{
return true;
}
return driverBuffer.DriverIdentifier != buffer.DataPointer;
}
protected virtual void Dispose(bool disposing)
{
if (disposing && _driver.Unregister(this))
{
PrepareToClose();
Stop();
if (_outputStream != 0)
{
SDL_DestroyAudioStream(_outputStream);
}
}
}
public override void Dispose()
{
Dispose(true);
}
}
}

View File

@@ -0,0 +1,60 @@
using Gommon;
using System;
using System.Collections.Generic;
using System.Linq;
namespace Ryujinx.Common.Configuration
{
[Flags]
public enum DirtyHack : byte
{
Xc2MenuSoftlockFix = 1,
ShaderTranslationDelay = 2
}
public readonly struct EnabledDirtyHack(DirtyHack hack, int value)
{
public DirtyHack Hack => hack;
public int Value => value;
public ulong Pack() => Raw.PackBitFields(PackedFormat);
public static EnabledDirtyHack Unpack(ulong packedHack)
{
var unpackedFields = packedHack.UnpackBitFields(PackedFormat);
if (unpackedFields is not [var hack, var value])
throw new Exception("The unpack operation on the integer resulted in an invalid unpacked result.");
return new EnabledDirtyHack((DirtyHack)hack, (int)value);
}
private uint[] Raw => [(uint)Hack, (uint)Value.CoerceAtLeast(0)];
public static readonly byte[] PackedFormat = [8, 32];
}
public class DirtyHacks : Dictionary<DirtyHack, int>
{
public DirtyHacks(IEnumerable<EnabledDirtyHack> hacks)
=> hacks.ForEach(edh => Add(edh.Hack, edh.Value));
public DirtyHacks(ulong[] packedHacks) : this(packedHacks.Select(EnabledDirtyHack.Unpack)) {}
public ulong[] PackEntries()
=> Entries.Select(it => it.Pack()).ToArray();
public EnabledDirtyHack[] Entries
=> this
.Select(it => new EnabledDirtyHack(it.Key, it.Value))
.ToArray();
public static implicit operator DirtyHacks(EnabledDirtyHack[] hacks) => new(hacks);
public static implicit operator DirtyHacks(ulong[] packedHacks) => new(packedHacks);
public new int this[DirtyHack hack] => TryGetValue(hack, out var value) ? value : -1;
public bool IsEnabled(DirtyHack hack) => ContainsKey(hack);
}
}

View File

@@ -1,55 +0,0 @@
using Gommon;
using System;
using System.Collections.Generic;
using System.Linq;
namespace Ryujinx.Common.Configuration
{
[Flags]
public enum DirtyHacks : byte
{
Xc2MenuSoftlockFix = 1,
ShaderCompilationThreadSleep = 2
}
public record EnabledDirtyHack(DirtyHacks Hack, int Value)
{
public static readonly byte[] PackedFormat = [8, 32];
private uint[] Raw => [(uint)Hack, (uint)Value.CoerceAtLeast(0)];
public ulong Pack() => Raw.PackBitFields(PackedFormat);
public static EnabledDirtyHack Unpack(ulong packedHack)
{
var unpackedFields = packedHack.UnpackBitFields(PackedFormat);
if (unpackedFields is not [var hack, var value])
throw new ArgumentException(nameof(packedHack));
return new EnabledDirtyHack((DirtyHacks)hack, (int)value);
}
}
public class DirtyHackCollection : Dictionary<DirtyHacks, int>
{
public DirtyHackCollection(IEnumerable<EnabledDirtyHack> hacks)
=> hacks.ForEach(edh => Add(edh.Hack, edh.Value));
public DirtyHackCollection(ulong[] packedHacks) : this(packedHacks.Select(EnabledDirtyHack.Unpack)) {}
public ulong[] PackEntries()
=> Entries.Select(it => it.Pack()).ToArray();
public EnabledDirtyHack[] Entries
=> this
.Select(it => new EnabledDirtyHack(it.Key, it.Value))
.ToArray();
public static implicit operator DirtyHackCollection(EnabledDirtyHack[] hacks) => new(hacks);
public static implicit operator DirtyHackCollection(ulong[] packedHacks) => new(packedHacks);
public new int this[DirtyHacks hack] => TryGetValue(hack, out var value) ? value : -1;
public bool IsEnabled(DirtyHacks hack) => ContainsKey(hack);
}
}

View File

@@ -8,6 +8,6 @@ namespace Ryujinx.Common.Configuration.Hid
{
Invalid,
WindowKeyboard,
GamepadSDL2,
GamepadSDL3
}
}

View File

@@ -58,7 +58,7 @@ namespace Ryujinx.Common.Configuration.Hid
return backendType switch
{
InputBackendType.WindowKeyboard => JsonSerializer.Deserialize(ref reader, _serializerContext.StandardKeyboardInputConfig),
InputBackendType.GamepadSDL2 => JsonSerializer.Deserialize(ref reader, _serializerContext.StandardControllerInputConfig),
InputBackendType.GamepadSDL3 => JsonSerializer.Deserialize(ref reader, _serializerContext.StandardControllerInputConfig),
_ => throw new InvalidOperationException($"Unknown backend type {backendType}"),
};
}
@@ -70,7 +70,7 @@ namespace Ryujinx.Common.Configuration.Hid
case InputBackendType.WindowKeyboard:
JsonSerializer.Serialize(writer, value as StandardKeyboardInputConfig, _serializerContext.StandardKeyboardInputConfig);
break;
case InputBackendType.GamepadSDL2:
case InputBackendType.GamepadSDL3:
JsonSerializer.Serialize(writer, value as StandardControllerInputConfig, _serializerContext.StandardControllerInputConfig);
break;
default:

View File

@@ -53,6 +53,9 @@ namespace Ryujinx.Common
{
public static void LogValueChange<T>(LogClass logClass, ReactiveEventArgs<T> eventArgs, string valueName)
{
if (eventArgs.AreValuesEqual)
return;
string message = string.Create(CultureInfo.InvariantCulture, $"{valueName} set to: {eventArgs.NewValue}");
Logger.Info?.Print(logClass, message);
@@ -65,5 +68,22 @@ namespace Ryujinx.Common
{
public T OldValue { get; } = oldValue;
public T NewValue { get; } = newValue;
public bool AreValuesEqual
{
get
{
if (OldValue == null && NewValue == null)
return true;
if (OldValue == null && NewValue != null)
return false;
if (OldValue != null && NewValue == null)
return false;
return OldValue!.Equals(NewValue);
}
}
}
}

View File

@@ -0,0 +1,10 @@
using System;
namespace Ryujinx.Common
{
public class RyujinxException : Exception
{
public RyujinxException(string message) : base(message)
{ }
}
}

View File

@@ -1,4 +1,4 @@
using Gommon;
using Gommon;
using Ryujinx.Common.Configuration;
using System;
using System.Linq;
@@ -47,6 +47,9 @@ namespace Ryujinx.Common
public static readonly string[] DiscordGameAssetKeys =
[
"010008900705c000", // Dragon Quest Builders
"010042000a986000", // Dragon Quest Builders 2
"010055d009f78000", // Fire Emblem: Three Houses
"0100a12011cc8000", // Fire Emblem: Shadow Dragon
"0100a6301214e000", // Fire Emblem Engage
@@ -105,17 +108,18 @@ namespace Ryujinx.Common
"0100f4c009322000", // Pikmin 3 Deluxe
"0100b7c00933a000", // Pikmin 4
"0100f4300bf2c000", // New Pokémon Snap
"0100000011d90000", // Pokémon Brilliant Diamond
"01001f5010dfa000", // Pokémon Legends: Arceus
"010003f003a34000", // Pokémon: Let's Go Pikachu!
"0100187003a36000", // Pokémon: Let's Go Eevee!
"0100abf008968000", // Pokémon Sword
"01008db008c2c000", // Pokémon Shield
"0100000011d90000", // Pokémon Brilliant Diamond
"010018e011d92000", // Pokémon Shining Pearl
"01001f5010dfa000", // Pokémon Legends: Arceus
"01003d200baa2000", // Pokémon Mystery Dungeon - Rescue Team DX
"0100a3d008c5c000", // Pokémon Scarlet
"01008db008c2c000", // Pokémon Shield
"010018e011d92000", // Pokémon Shining Pearl
"0100abf008968000", // Pokémon Sword
"01008f6008c5e000", // Pokémon Violet
"0100b3f000be2000", // Pokkén Tournament DX
"0100f4300bf2c000", // New Pokémon Snap
"01003bc0000a0000", // Splatoon 2 (US)
"0100f8f0000a2000", // Splatoon 2 (EU)
@@ -165,12 +169,21 @@ namespace Ryujinx.Common
"01005ea01c0fc000", // SONIC X SHADOW GENERATIONS
"01005ea01c0fc001", // ^
"0100ff500e34a000", // Xenoblade Chronicles - Definitive Edition
"0100e95004038000", // Xenoblade Chronicles 2
"010074f013262000", // Xenoblade Chronicles 3
"010056e00853a000", // A Hat in Time
"0100fd1014726000", // Baldurs Gate: Dark Alliance
"0100dbf01000a000", // Burnout Paradise Remastered
"0100744001588000", // Cars 3: Driven to Win
"0100b41013c82000", // Cruis'n Blast
"010085900337e000", // Death Squared
"01001b300b9be000", // Diablo III: Eternal Collection
"01008c8012920000", // Dying Light Platinum Edition
"01001cc01b2d4000", // Goat Simulator 3
"01003620068ea000", // Hand of Fate 2
"010085500130a000", // Lego City: Undercover
"010073c01af34000", // LEGO Horizon Adventures
"0100770008dd8000", // Monster Hunter Generations Ultimate
"0100b04011742000", // Monster Hunter Rise
@@ -189,6 +202,8 @@ namespace Ryujinx.Common
"01000a10041ea000", // The Elder Scrolls V: Skyrim
"010057a01e4d4000", // TSUKIHIME -A piece of blue glass moon-
"010080b00ad66000", // Undertale
"010069401adb8000", // Unicorn Overlord
"0100534009ff2000", // Yonder - The cloud catcher chronicles
];
}
}

View File

@@ -92,7 +92,11 @@ namespace Ryujinx.Graphics.Gpu
/// </summary>
internal SupportBufferUpdater SupportBufferUpdater { get; }
internal DirtyHackCollection DirtyHacks { get; }
/// <summary>
/// Enabled dirty hacks.
/// Used for workarounds to emulator bugs we can't fix/don't know how to fix yet.
/// </summary>
internal DirtyHacks DirtyHacks { get; }
/// <summary>
@@ -117,7 +121,7 @@ namespace Ryujinx.Graphics.Gpu
/// Creates a new instance of the GPU emulation context.
/// </summary>
/// <param name="renderer">Host renderer</param>
public GpuContext(IRenderer renderer, DirtyHackCollection hackCollection)
public GpuContext(IRenderer renderer, DirtyHacks hacks)
{
Renderer = renderer;
@@ -140,7 +144,7 @@ namespace Ryujinx.Graphics.Gpu
SupportBufferUpdater = new SupportBufferUpdater(renderer);
DirtyHacks = hackCollection;
DirtyHacks = hacks;
_firstTimestamp = ConvertNanosecondsToTicks((ulong)PerformanceCounter.ElapsedNanoseconds);
}

View File

@@ -367,8 +367,8 @@ namespace Ryujinx.Graphics.Gpu.Shader.DiskCache
{
try
{
if (_context.DirtyHacks.IsEnabled(DirtyHacks.ShaderCompilationThreadSleep))
Thread.Sleep(_context.DirtyHacks[DirtyHacks.ShaderCompilationThreadSleep]);
if (_context.Capabilities.Api == TargetApi.Metal && _context.DirtyHacks.IsEnabled(DirtyHack.ShaderTranslationDelay))
Thread.Sleep(_context.DirtyHacks[DirtyHack.ShaderTranslationDelay]);
AsyncProgramTranslation asyncTranslation = new(guestShaders, specState, programIndex, isCompute);
_asyncTranslationQueue.Add(asyncTranslation, _cancellationToken);

View File

@@ -168,13 +168,15 @@ namespace Ryujinx.Graphics.Vulkan
return BinarySearch(list, offset, size) >= 0;
}
public readonly IEnumerable<Range> FindOverlaps(int offset, int size)
public readonly List<Range> FindOverlaps(int offset, int size)
{
var list = _ranges;
if (list == null)
{
yield break;
return null;
}
List<Range> result = null;
int index = BinarySearch(list, offset, size);
@@ -187,10 +189,12 @@ namespace Ryujinx.Graphics.Vulkan
do
{
yield return list[index++];
(result ??= []).Add(list[index++]);
}
while (index < list.Count && list[index].OverlapsWith(offset, size));
}
return result;
}
private static int BinarySearch(List<Range> list, int offset, int size)

View File

@@ -92,7 +92,7 @@ namespace Ryujinx.Graphics.Vulkan
DriverId.MesaDozen => "Dozen",
DriverId.MesaNvk => "NVK",
DriverId.ImaginationOpenSourceMesa => "Imagination (Open)",
DriverId.MesaAgxv => "Honeykrisp",
DriverId.MesaHoneykrisp => "Honeykrisp",
_ => id.ToString(),
};
}

View File

@@ -26,10 +26,20 @@ namespace Ryujinx.HLE.HOS.Applets
{
_normalSession = normalSession;
_interactiveSession = interactiveSession;
// TODO(jduncanator): Parse PlayerSelectConfig from input data
_normalSession.Push(BuildResponse());
UserProfile selected = _system.Device.UIHandler.ShowPlayerSelectDialog();
if (selected == null)
{
_normalSession.Push(BuildResponse());
}
else if (selected.UserId == new UserId("00000000000000000000000000000080"))
{
_normalSession.Push(BuildGuestResponse());
}
else
{
_normalSession.Push(BuildResponse(selected));
}
AppletStateChanged?.Invoke(this, null);
_system.ReturnFocus();
@@ -37,16 +47,34 @@ namespace Ryujinx.HLE.HOS.Applets
return ResultCode.Success;
}
private byte[] BuildResponse()
private byte[] BuildResponse(UserProfile selectedUser)
{
UserProfile currentUser = _system.AccountManager.LastOpenedUser;
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write((ulong)PlayerSelectResult.Success);
currentUser.UserId.Write(writer);
selectedUser.UserId.Write(writer);
return stream.ToArray();
}
private byte[] BuildGuestResponse()
{
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write(new byte());
return stream.ToArray();
}
private byte[] BuildResponse()
{
using MemoryStream stream = MemoryStreamManager.Shared.GetStream();
using BinaryWriter writer = new(stream);
writer.Write((ulong)PlayerSelectResult.Failure);
return stream.ToArray();
}

View File

@@ -284,7 +284,7 @@ namespace Ryujinx.HLE.HOS
ProcessCreationInfo creationInfo = new("Service", 1, 0, 0x8000000, 1, Flags, 0, 0);
uint[] defaultCapabilities = {
0x030363F7,
(((uint)KScheduler.CpuCoresCount - 1) << 24) + (((uint)KScheduler.CpuCoresCount - 1) << 16) + 0x63F7u,
0x1FFFFFCF,
0x207FFFEF,
0x47E0060F,

View File

@@ -63,6 +63,7 @@ namespace Ryujinx.HLE.HOS.Kernel
TickSource = tickSource;
Device = device;
Memory = memory;
KScheduler.CpuCoresCount = device.CpuCoresCount;
Running = true;

View File

@@ -37,7 +37,7 @@ namespace Ryujinx.HLE.HOS.Kernel
return result;
}
process.DefaultCpuCore = 3;
process.DefaultCpuCore = KScheduler.CpuCoresCount - 1;
context.Processes.TryAdd(process.Pid, process);

View File

@@ -277,7 +277,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
return result;
}
result = Capabilities.InitializeForUser(capabilities, MemoryManager);
result = Capabilities.InitializeForUser(capabilities, MemoryManager, IsApplication);
if (result != Result.Success)
{

View File

@@ -35,15 +35,15 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
DebuggingFlags &= ~3u;
KernelReleaseVersion = KProcess.KernelVersionPacked;
return Parse(capabilities, memoryManager);
return Parse(capabilities, memoryManager, false);
}
public Result InitializeForUser(ReadOnlySpan<uint> capabilities, KPageTableBase memoryManager)
public Result InitializeForUser(ReadOnlySpan<uint> capabilities, KPageTableBase memoryManager, bool isApplication)
{
return Parse(capabilities, memoryManager);
return Parse(capabilities, memoryManager, isApplication);
}
private Result Parse(ReadOnlySpan<uint> capabilities, KPageTableBase memoryManager)
private Result Parse(ReadOnlySpan<uint> capabilities, KPageTableBase memoryManager, bool isApplication)
{
int mask0 = 0;
int mask1 = 0;
@@ -54,7 +54,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
if (cap.GetCapabilityType() != CapabilityType.MapRange)
{
Result result = ParseCapability(cap, ref mask0, ref mask1, memoryManager);
Result result = ParseCapability(cap, ref mask0, ref mask1, memoryManager, isApplication);
if (result != Result.Success)
{
@@ -120,7 +120,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
return Result.Success;
}
private Result ParseCapability(uint cap, ref int mask0, ref int mask1, KPageTableBase memoryManager)
private Result ParseCapability(uint cap, ref int mask0, ref int mask1, KPageTableBase memoryManager, bool isApplication)
{
CapabilityType code = cap.GetCapabilityType();
@@ -176,6 +176,9 @@ namespace Ryujinx.HLE.HOS.Kernel.Process
AllowedCpuCoresMask = GetMaskFromMinMax(lowestCpuCore, highestCpuCore);
AllowedThreadPriosMask = GetMaskFromMinMax(lowestThreadPrio, highestThreadPrio);
if (isApplication)
Ryujinx.Common.Logging.Logger.Info?.Print(Ryujinx.Common.Logging.LogClass.Application, $"Application requested cores with index range {lowestCpuCore} to {highestCpuCore}");
break;
}

View File

@@ -2683,7 +2683,7 @@ namespace Ryujinx.HLE.HOS.Kernel.SupervisorCall
return KernelResult.InvalidCombination;
}
if ((uint)preferredCore > 3)
if ((uint)preferredCore > KScheduler.CpuCoresCount - 1)
{
if ((preferredCore | 2) != -1)
{

View File

@@ -9,13 +9,11 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
partial class KScheduler : IDisposable
{
public const int PrioritiesCount = 64;
public const int CpuCoresCount = 4;
public static int CpuCoresCount;
private const int RoundRobinTimeQuantumMs = 10;
private static readonly int[] _preemptionPriorities = { 59, 59, 59, 63 };
private static readonly int[] _srcCoresHighestPrioThreads = new int[CpuCoresCount];
private static int[] _srcCoresHighestPrioThreads;
private readonly KernelContext _context;
private readonly int _coreId;
@@ -47,6 +45,16 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
_coreId = coreId;
_currentThread = null;
if (_srcCoresHighestPrioThreads == null)
{
_srcCoresHighestPrioThreads = new int[CpuCoresCount];
}
}
private static int PreemptionPriorities(int index)
{
return index == CpuCoresCount - 1 ? 63 : 59;
}
public static ulong SelectThreads(KernelContext context)
@@ -437,7 +445,7 @@ namespace Ryujinx.HLE.HOS.Kernel.Threading
for (int core = 0; core < CpuCoresCount; core++)
{
RotateScheduledQueue(context, core, _preemptionPriorities[core]);
RotateScheduledQueue(context, core, PreemptionPriorities(core));
}
context.CriticalSection.Leave();

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After

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View File

@@ -15,8 +15,10 @@ namespace Ryujinx.HLE.HOS.Services.Fs.FileSystemProxy
{
_baseStorage = SharedRef<LibHac.FsSrv.Sf.IStorage>.CreateMove(ref baseStorage);
}
private const string Xc2TitleId = "0100e95004038000";
private const string Xc2JpTitleId = "0100f3400332c000";
private const string Xc2GlobalTitleId = "0100e95004038000";
private static bool IsXc2 => TitleIDs.CurrentApplication.Value.OrDefault() is Xc2GlobalTitleId or Xc2JpTitleId;
[CommandCmif(0)]
// Read(u64 offset, u64 length) -> buffer<u8, 0x46, 0> buffer
@@ -39,7 +41,7 @@ namespace Ryujinx.HLE.HOS.Services.Fs.FileSystemProxy
using var region = context.Memory.GetWritableRegion(bufferAddress, (int)bufferLen, true);
Result result = _baseStorage.Get.Read((long)offset, new OutBuffer(region.Memory.Span), (long)size);
if (context.Device.DirtyHacks.IsEnabled(DirtyHacks.Xc2MenuSoftlockFix) && TitleIDs.CurrentApplication.Value == Xc2TitleId)
if (context.Device.DirtyHacks.IsEnabled(DirtyHack.Xc2MenuSoftlockFix) && IsXc2)
{
// Add a load-bearing sleep to avoid XC2 softlock
// https://web.archive.org/web/20240728045136/https://github.com/Ryujinx/Ryujinx/issues/2357

View File

@@ -702,6 +702,18 @@ namespace Ryujinx.HLE.HOS.Services.Hid
return ResultCode.Success;
}
[CommandCmif(92)]
// SetGestureOutputRanges(pid, ushort Unknown0)
public ResultCode SetGestureOutputRanges(ServiceCtx context)
{
ulong pid = context.Request.HandleDesc.PId;
ushort unknown0 = context.RequestData.ReadUInt16();
Logger.Stub?.PrintStub(LogClass.ServiceHid, new { pid, unknown0 });
return ResultCode.Success;
}
[CommandCmif(100)]
// SetSupportedNpadStyleSet(pid, nn::applet::AppletResourceUserId, nn::hid::NpadStyleTag)

View File

@@ -24,14 +24,14 @@ namespace Ryujinx.HLE.HOS.Services
// not large enough.
private const int PointerBufferSize = 0x8000;
private readonly static uint[] _defaultCapabilities = {
0x030363F7,
private static uint[] _defaultCapabilities => [
(((uint)KScheduler.CpuCoresCount - 1) << 24) + (((uint)KScheduler.CpuCoresCount - 1) << 16) + 0x63F7u,
0x1FFFFFCF,
0x207FFFEF,
0x47E0060F,
0x0048BFFF,
0x01007FFF,
};
];
// The amount of time Dispose() will wait to Join() the thread executing the ServerLoop()
private static readonly TimeSpan _threadJoinTimeout = TimeSpan.FromSeconds(3);

View File

@@ -26,7 +26,17 @@ namespace Ryujinx.HLE.Loaders.Processes
private ulong _latestPid;
public ProcessResult ActiveApplication => _processesByPid[_latestPid];
public ProcessResult ActiveApplication
{
get
{
if (!_processesByPid.TryGetValue(_latestPid, out ProcessResult value))
throw new RyujinxException(
$"The HLE Process map did not have a process with ID {_latestPid}. Are you missing firmware?");
return value;
}
}
public ProcessLoader(Switch device)
{

View File

@@ -48,6 +48,7 @@
<EmbeddedResource Include="HOS\Applets\SoftwareKeyboard\Resources\Icon_BtnB.png" />
<EmbeddedResource Include="HOS\Applets\SoftwareKeyboard\Resources\Icon_KeyF6.png" />
<EmbeddedResource Include="HOS\Services\Account\Acc\DefaultUserImage.jpg" />
<EmbeddedResource Include="HOS\Services\Account\Acc\GuestUserImage.jpg" />
</ItemGroup>
</Project>

View File

@@ -32,6 +32,8 @@ namespace Ryujinx.HLE
public TamperMachine TamperMachine { get; }
public IHostUIHandler UIHandler { get; }
public int CpuCoresCount = 4; //Switch 1 has 4 cores
public VSyncMode VSyncMode { get; set; } = VSyncMode.Switch;
public bool CustomVSyncIntervalEnabled { get; set; } = false;
public int CustomVSyncInterval { get; set; }
@@ -40,7 +42,7 @@ namespace Ryujinx.HLE
public bool IsFrameAvailable => Gpu.Window.IsFrameAvailable;
public DirtyHackCollection DirtyHacks { get; }
public DirtyHacks DirtyHacks { get; }
public Switch(HLEConfiguration configuration)
{
@@ -57,7 +59,7 @@ namespace Ryujinx.HLE
: MemoryAllocationFlags.Reserve | MemoryAllocationFlags.Mirrorable;
#pragma warning disable IDE0055 // Disable formatting
DirtyHacks = new DirtyHackCollection(Configuration.Hacks);
DirtyHacks = new DirtyHacks(Configuration.Hacks);
AudioDeviceDriver = new CompatLayerHardwareDeviceDriver(Configuration.AudioDeviceDriver);
Memory = new MemoryBlock(Configuration.MemoryConfiguration.ToDramSize(), memoryAllocationFlags);
Gpu = new GpuContext(Configuration.GpuRenderer, DirtyHacks);

View File

@@ -1,4 +1,5 @@
using Ryujinx.HLE.HOS.Applets;
using Ryujinx.HLE.HOS.Services.Account.Acc;
using Ryujinx.HLE.HOS.Services.Am.AppletOE.ApplicationProxyService.ApplicationProxy.Types;
namespace Ryujinx.HLE.UI
@@ -59,5 +60,11 @@ namespace Ryujinx.HLE.UI
/// Gets fonts and colors used by the host.
/// </summary>
IHostUITheme HostUITheme { get; }
/// <summary>
/// Displays the player select dialog and returns the selected profile.
/// </summary>
UserProfile ShowPlayerSelectDialog();
}
}

View File

@@ -1,3 +1,4 @@
using Ryujinx.Common.Logging;
using Ryujinx.SDL2.Common;
using System;
using System.Collections.Generic;
@@ -36,6 +37,7 @@ namespace Ryujinx.Input.SDL2
SDL2Driver.Instance.Initialize();
SDL2Driver.Instance.OnJoyStickConnected += HandleJoyStickConnected;
SDL2Driver.Instance.OnJoystickDisconnected += HandleJoyStickDisconnected;
SDL2Driver.Instance.OnJoyBatteryUpdated += HandleJoyBatteryUpdated;
// Add already connected gamepads
int numJoysticks = SDL_NumJoysticks();
@@ -83,19 +85,30 @@ namespace Ryujinx.Input.SDL2
private void HandleJoyStickDisconnected(int joystickInstanceId)
{
bool joyConPairDisconnected = false;
if (!_gamepadsInstanceIdsMapping.Remove(joystickInstanceId, out string id))
return;
lock (_lock)
{
_gamepadsIds.Remove(id);
if (!SDL2JoyConPair.IsCombinable(_gamepadsIds))
{
_gamepadsIds.Remove(SDL2JoyConPair.Id);
joyConPairDisconnected = true;
}
}
OnGamepadDisconnected?.Invoke(id);
if (joyConPairDisconnected)
{
OnGamepadDisconnected?.Invoke(SDL2JoyConPair.Id);
}
}
private void HandleJoyStickConnected(int joystickDeviceId, int joystickInstanceId)
{
bool joyConPairConnected = false;
if (SDL_IsGameController(joystickDeviceId) == SDL_bool.SDL_TRUE)
{
if (_gamepadsInstanceIdsMapping.ContainsKey(joystickInstanceId))
@@ -120,13 +133,29 @@ namespace Ryujinx.Input.SDL2
_gamepadsIds.Insert(joystickDeviceId, id);
else
_gamepadsIds.Add(id);
if (SDL2JoyConPair.IsCombinable(_gamepadsIds))
{
_gamepadsIds.Remove(SDL2JoyConPair.Id);
_gamepadsIds.Add(SDL2JoyConPair.Id);
joyConPairConnected = true;
}
}
OnGamepadConnected?.Invoke(id);
if (joyConPairConnected)
{
OnGamepadConnected?.Invoke(SDL2JoyConPair.Id);
}
}
}
}
private void HandleJoyBatteryUpdated(int joystickDeviceId, SDL_JoystickPowerLevel powerLevel)
{
Logger.Info?.Print(LogClass.Hid,
$"{SDL_GameControllerNameForIndex(joystickDeviceId)} power level: {powerLevel}");
}
protected virtual void Dispose(bool disposing)
{
if (disposing)
@@ -157,6 +186,14 @@ namespace Ryujinx.Input.SDL2
public IGamepad GetGamepad(string id)
{
if (id == SDL2JoyConPair.Id)
{
lock (_lock)
{
return SDL2JoyConPair.GetGamepad(_gamepadsIds);
}
}
int joystickIndex = GetJoystickIndexByGamepadId(id);
if (joystickIndex == -1)
@@ -165,12 +202,16 @@ namespace Ryujinx.Input.SDL2
}
nint gamepadHandle = SDL_GameControllerOpen(joystickIndex);
if (gamepadHandle == nint.Zero)
{
return null;
}
if (SDL_GameControllerName(gamepadHandle).StartsWith(SDL2JoyCon.Prefix))
{
return new SDL2JoyCon(gamepadHandle, id);
}
return new SDL2Gamepad(gamepadHandle, id);
}
}

View File

@@ -0,0 +1,409 @@
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Controller;
using Ryujinx.Common.Logging;
using System;
using System.Collections.Generic;
using System.Numerics;
using System.Threading;
using static SDL2.SDL;
namespace Ryujinx.Input.SDL2
{
internal class SDL2JoyCon : IGamepad
{
private bool HasConfiguration => _configuration != null;
private readonly record struct ButtonMappingEntry(GamepadButtonInputId To, GamepadButtonInputId From)
{
public bool IsValid => To is not GamepadButtonInputId.Unbound && From is not GamepadButtonInputId.Unbound;
}
private StandardControllerInputConfig _configuration;
private readonly Dictionary<GamepadButtonInputId,SDL_GameControllerButton> _leftButtonsDriverMapping = new()
{
{ GamepadButtonInputId.LeftStick , SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_LEFTSTICK },
{GamepadButtonInputId.DpadUp ,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_Y},
{GamepadButtonInputId.DpadDown ,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_A},
{GamepadButtonInputId.DpadLeft ,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_B},
{GamepadButtonInputId.DpadRight ,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_X},
{GamepadButtonInputId.Minus ,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_START},
{GamepadButtonInputId.LeftShoulder,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_PADDLE2},
{GamepadButtonInputId.LeftTrigger,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_PADDLE4},
{GamepadButtonInputId.SingleRightTrigger0,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_RIGHTSHOULDER},
{GamepadButtonInputId.SingleLeftTrigger0,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_LEFTSHOULDER},
};
private readonly Dictionary<GamepadButtonInputId,SDL_GameControllerButton> _rightButtonsDriverMapping = new()
{
{GamepadButtonInputId.RightStick,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_LEFTSTICK},
{GamepadButtonInputId.A,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_B},
{GamepadButtonInputId.B,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_Y},
{GamepadButtonInputId.X,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_A},
{GamepadButtonInputId.Y,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_X},
{GamepadButtonInputId.Plus,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_START},
{GamepadButtonInputId.RightShoulder,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_PADDLE1},
{GamepadButtonInputId.RightTrigger,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_PADDLE3},
{GamepadButtonInputId.SingleRightTrigger1,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_RIGHTSHOULDER},
{GamepadButtonInputId.SingleLeftTrigger1,SDL_GameControllerButton.SDL_CONTROLLER_BUTTON_LEFTSHOULDER}
};
private readonly Dictionary<GamepadButtonInputId, SDL_GameControllerButton> _buttonsDriverMapping;
private readonly Lock _userMappingLock = new();
private readonly List<ButtonMappingEntry> _buttonsUserMapping;
private readonly StickInputId[] _stickUserMapping = new StickInputId[(int)StickInputId.Count]
{
StickInputId.Unbound, StickInputId.Left, StickInputId.Right,
};
public GamepadFeaturesFlag Features { get; }
private nint _gamepadHandle;
private enum JoyConType
{
Left, Right
}
public const string Prefix = "Nintendo Switch Joy-Con";
public const string LeftName = "Nintendo Switch Joy-Con (L)";
public const string RightName = "Nintendo Switch Joy-Con (R)";
private readonly JoyConType _joyConType;
public SDL2JoyCon(nint gamepadHandle, string driverId)
{
_gamepadHandle = gamepadHandle;
_buttonsUserMapping = new List<ButtonMappingEntry>(10);
Name = SDL_GameControllerName(_gamepadHandle);
Id = driverId;
Features = GetFeaturesFlag();
// Enable motion tracking
if (Features.HasFlag(GamepadFeaturesFlag.Motion))
{
if (SDL_GameControllerSetSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL,
SDL_bool.SDL_TRUE) != 0)
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_ACCEL}.");
}
if (SDL_GameControllerSetSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO,
SDL_bool.SDL_TRUE) != 0)
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_GYRO}.");
}
}
switch (Name)
{
case LeftName:
{
_buttonsDriverMapping = _leftButtonsDriverMapping;
_joyConType = JoyConType.Left;
break;
}
case RightName:
{
_buttonsDriverMapping = _rightButtonsDriverMapping;
_joyConType = JoyConType.Right;
break;
}
}
}
private GamepadFeaturesFlag GetFeaturesFlag()
{
GamepadFeaturesFlag result = GamepadFeaturesFlag.None;
if (SDL_GameControllerHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL) == SDL_bool.SDL_TRUE &&
SDL_GameControllerHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO) == SDL_bool.SDL_TRUE)
{
result |= GamepadFeaturesFlag.Motion;
}
int error = SDL_GameControllerRumble(_gamepadHandle, 0, 0, 100);
if (error == 0)
{
result |= GamepadFeaturesFlag.Rumble;
}
return result;
}
public string Id { get; }
public string Name { get; }
public bool IsConnected => SDL_GameControllerGetAttached(_gamepadHandle) == SDL_bool.SDL_TRUE;
protected virtual void Dispose(bool disposing)
{
if (disposing && _gamepadHandle != nint.Zero)
{
SDL_GameControllerClose(_gamepadHandle);
_gamepadHandle = nint.Zero;
}
}
public void Dispose()
{
Dispose(true);
}
public void SetTriggerThreshold(float triggerThreshold)
{
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (!Features.HasFlag(GamepadFeaturesFlag.Rumble))
return;
ushort lowFrequencyRaw = (ushort)(lowFrequency * ushort.MaxValue);
ushort highFrequencyRaw = (ushort)(highFrequency * ushort.MaxValue);
if (durationMs == uint.MaxValue)
{
if (SDL_GameControllerRumble(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, SDL_HAPTIC_INFINITY) !=
0)
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
else if (durationMs > SDL_HAPTIC_INFINITY)
{
Logger.Error?.Print(LogClass.Hid, $"Unsupported rumble duration {durationMs}");
}
else
{
if (SDL_GameControllerRumble(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, durationMs) != 0)
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
}
public Vector3 GetMotionData(MotionInputId inputId)
{
SDL_SensorType sensorType = inputId switch
{
MotionInputId.Accelerometer => SDL_SensorType.SDL_SENSOR_ACCEL,
MotionInputId.Gyroscope => SDL_SensorType.SDL_SENSOR_GYRO,
_ => SDL_SensorType.SDL_SENSOR_INVALID
};
if (!Features.HasFlag(GamepadFeaturesFlag.Motion) || sensorType is SDL_SensorType.SDL_SENSOR_INVALID)
return Vector3.Zero;
const int ElementCount = 3;
unsafe
{
float* values = stackalloc float[ElementCount];
int result = SDL_GameControllerGetSensorData(_gamepadHandle, sensorType, (nint)values, ElementCount);
if (result != 0)
return Vector3.Zero;
Vector3 value = _joyConType switch
{
JoyConType.Left => new Vector3(-values[2], values[1], values[0]),
JoyConType.Right => new Vector3(values[2], values[1], -values[0])
};
return inputId switch
{
MotionInputId.Gyroscope => RadToDegree(value),
MotionInputId.Accelerometer => GsToMs2(value),
_ => value
};
}
}
private static Vector3 RadToDegree(Vector3 rad) => rad * (180 / MathF.PI);
private static Vector3 GsToMs2(Vector3 gs) => gs / SDL_STANDARD_GRAVITY;
public void SetConfiguration(InputConfig configuration)
{
lock (_userMappingLock)
{
_configuration = (StandardControllerInputConfig)configuration;
_buttonsUserMapping.Clear();
// First update sticks
_stickUserMapping[(int)StickInputId.Left] = (StickInputId)_configuration.LeftJoyconStick.Joystick;
_stickUserMapping[(int)StickInputId.Right] = (StickInputId)_configuration.RightJoyconStick.Joystick;
switch (_joyConType)
{
case JoyConType.Left:
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftStick, (GamepadButtonInputId)_configuration.LeftJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadUp, (GamepadButtonInputId)_configuration.LeftJoycon.DpadUp));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadDown, (GamepadButtonInputId)_configuration.LeftJoycon.DpadDown));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadLeft, (GamepadButtonInputId)_configuration.LeftJoycon.DpadLeft));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadRight, (GamepadButtonInputId)_configuration.LeftJoycon.DpadRight));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Minus, (GamepadButtonInputId)_configuration.LeftJoycon.ButtonMinus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftShoulder, (GamepadButtonInputId)_configuration.LeftJoycon.ButtonL));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftTrigger, (GamepadButtonInputId)_configuration.LeftJoycon.ButtonZl));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger0, (GamepadButtonInputId)_configuration.LeftJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger0, (GamepadButtonInputId)_configuration.LeftJoycon.ButtonSl));
break;
case JoyConType.Right:
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightStick, (GamepadButtonInputId)_configuration.RightJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.A, (GamepadButtonInputId)_configuration.RightJoycon.ButtonA));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.B, (GamepadButtonInputId)_configuration.RightJoycon.ButtonB));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.X, (GamepadButtonInputId)_configuration.RightJoycon.ButtonX));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Y, (GamepadButtonInputId)_configuration.RightJoycon.ButtonY));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Plus, (GamepadButtonInputId)_configuration.RightJoycon.ButtonPlus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightShoulder, (GamepadButtonInputId)_configuration.RightJoycon.ButtonR));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightTrigger, (GamepadButtonInputId)_configuration.RightJoycon.ButtonZr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger1, (GamepadButtonInputId)_configuration.RightJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger1, (GamepadButtonInputId)_configuration.RightJoycon.ButtonSl));
break;
default:
throw new ArgumentOutOfRangeException();
}
SetTriggerThreshold(_configuration.TriggerThreshold);
}
}
public GamepadStateSnapshot GetStateSnapshot()
{
return IGamepad.GetStateSnapshot(this);
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
GamepadStateSnapshot rawState = GetStateSnapshot();
GamepadStateSnapshot result = default;
lock (_userMappingLock)
{
if (_buttonsUserMapping.Count == 0)
return rawState;
// ReSharper disable once ForeachCanBePartlyConvertedToQueryUsingAnotherGetEnumerator
foreach (ButtonMappingEntry entry in _buttonsUserMapping)
{
if (!entry.IsValid)
continue;
// Do not touch state of button already pressed
if (!result.IsPressed(entry.To))
{
result.SetPressed(entry.To, rawState.IsPressed(entry.From));
}
}
(float leftStickX, float leftStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Left]);
(float rightStickX, float rightStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Right]);
result.SetStick(StickInputId.Left, leftStickX, leftStickY);
result.SetStick(StickInputId.Right, rightStickX, rightStickY);
}
return result;
}
private static float ConvertRawStickValue(short value)
{
const float ConvertRate = 1.0f / (short.MaxValue + 0.5f);
return value * ConvertRate;
}
private JoyconConfigControllerStick<GamepadInputId, Common.Configuration.Hid.Controller.StickInputId>
GetLogicalJoyStickConfig(StickInputId inputId)
{
switch (inputId)
{
case StickInputId.Left:
if (_configuration.RightJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Left)
return _configuration.RightJoyconStick;
else
return _configuration.LeftJoyconStick;
case StickInputId.Right:
if (_configuration.LeftJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Right)
return _configuration.LeftJoyconStick;
else
return _configuration.RightJoyconStick;
}
return null;
}
public (float, float) GetStick(StickInputId inputId)
{
if (inputId == StickInputId.Unbound)
return (0.0f, 0.0f);
if (inputId == StickInputId.Left && _joyConType == JoyConType.Right || inputId == StickInputId.Right && _joyConType == JoyConType.Left)
{
return (0.0f, 0.0f);
}
(short stickX, short stickY) = GetStickXY();
float resultX = ConvertRawStickValue(stickX);
float resultY = -ConvertRawStickValue(stickY);
if (HasConfiguration)
{
var joyconStickConfig = GetLogicalJoyStickConfig(inputId);
if (joyconStickConfig != null)
{
if (joyconStickConfig.InvertStickX)
resultX = -resultX;
if (joyconStickConfig.InvertStickY)
resultY = -resultY;
if (joyconStickConfig.Rotate90CW)
{
float temp = resultX;
resultX = resultY;
resultY = -temp;
}
}
}
return inputId switch
{
StickInputId.Left when _joyConType == JoyConType.Left => (resultY, -resultX),
StickInputId.Right when _joyConType == JoyConType.Right => (-resultY, resultX),
_ => (0.0f, 0.0f)
};
}
private (short, short) GetStickXY()
{
return (
SDL_GameControllerGetAxis(_gamepadHandle, SDL_GameControllerAxis.SDL_CONTROLLER_AXIS_LEFTX),
SDL_GameControllerGetAxis(_gamepadHandle, SDL_GameControllerAxis.SDL_CONTROLLER_AXIS_LEFTY));
}
public bool IsPressed(GamepadButtonInputId inputId)
{
if (!_buttonsDriverMapping.TryGetValue(inputId, out var button))
{
return false;
}
return SDL_GameControllerGetButton(_gamepadHandle, button) == 1;
}
}
}

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using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Controller;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Numerics;
using static SDL2.SDL;
namespace Ryujinx.Input.SDL2
{
internal class SDL2JoyConPair(IGamepad left, IGamepad right) : IGamepad
{
private StandardControllerInputConfig _configuration;
private readonly StickInputId[] _stickUserMapping =
[
StickInputId.Unbound,
StickInputId.Left,
StickInputId.Right
];
public GamepadFeaturesFlag Features => (left?.Features ?? GamepadFeaturesFlag.None) |
(right?.Features ?? GamepadFeaturesFlag.None);
public const string Id = "JoyConPair";
string IGamepad.Id => Id;
public string Name => "* Nintendo Switch Joy-Con (L/R)";
public bool IsConnected => left is { IsConnected: true } && right is { IsConnected: true };
public void Dispose()
{
left?.Dispose();
right?.Dispose();
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
return GetStateSnapshot();
}
public Vector3 GetMotionData(MotionInputId inputId)
{
return inputId switch
{
MotionInputId.Accelerometer or
MotionInputId.Gyroscope => left.GetMotionData(inputId),
MotionInputId.SecondAccelerometer => right.GetMotionData(MotionInputId.Accelerometer),
MotionInputId.SecondGyroscope => right.GetMotionData(MotionInputId.Gyroscope),
_ => Vector3.Zero
};
}
public GamepadStateSnapshot GetStateSnapshot()
{
return IGamepad.GetStateSnapshot(this);
}
public (float, float) GetStick(StickInputId inputId)
{
return inputId switch
{
StickInputId.Left => left.GetStick(StickInputId.Left),
StickInputId.Right => right.GetStick(StickInputId.Right),
_ => (0, 0)
};
}
public bool IsPressed(GamepadButtonInputId inputId)
{
return left.IsPressed(inputId) || right.IsPressed(inputId);
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (lowFrequency != 0)
{
right.Rumble(lowFrequency, lowFrequency, durationMs);
}
if (highFrequency != 0)
{
left.Rumble(highFrequency, highFrequency, durationMs);
}
if (lowFrequency == 0 && highFrequency == 0)
{
left.Rumble(0, 0, durationMs);
right.Rumble(0, 0, durationMs);
}
}
public void SetConfiguration(InputConfig configuration)
{
left.SetConfiguration(configuration);
right.SetConfiguration(configuration);
}
public void SetTriggerThreshold(float triggerThreshold)
{
left.SetTriggerThreshold(triggerThreshold);
right.SetTriggerThreshold(triggerThreshold);
}
public static bool IsCombinable(List<string> gamepadsIds)
{
(int leftIndex, int rightIndex) = DetectJoyConPair(gamepadsIds);
return leftIndex >= 0 && rightIndex >= 0;
}
private static (int leftIndex, int rightIndex) DetectJoyConPair(List<string> gamepadsIds)
{
var gamepadNames = gamepadsIds.Where(gamepadId => gamepadId != Id)
.Select((_, index) => SDL_GameControllerNameForIndex(index)).ToList();
int leftIndex = gamepadNames.IndexOf(SDL2JoyCon.LeftName);
int rightIndex = gamepadNames.IndexOf(SDL2JoyCon.RightName);
return (leftIndex, rightIndex);
}
public static IGamepad GetGamepad(List<string> gamepadsIds)
{
(int leftIndex, int rightIndex) = DetectJoyConPair(gamepadsIds);
if (leftIndex == -1 || rightIndex == -1)
{
return null;
}
nint leftGamepadHandle = SDL_GameControllerOpen(leftIndex);
nint rightGamepadHandle = SDL_GameControllerOpen(rightIndex);
if (leftGamepadHandle == nint.Zero || rightGamepadHandle == nint.Zero)
{
return null;
}
return new SDL2JoyConPair(new SDL2JoyCon(leftGamepadHandle, gamepadsIds[leftIndex]),
new SDL2JoyCon(rightGamepadHandle, gamepadsIds[rightIndex]));
}
}
}

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<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
</PropertyGroup>
<ItemGroup>
<ProjectReference Include="..\Ryujinx.Input\Ryujinx.Input.csproj" />
<ProjectReference Include="..\Ryujinx.SDL3.Common\Ryujinx.SDL3.Common.csproj" />
</ItemGroup>
</Project>

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using Humanizer;
using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Controller;
using Ryujinx.Common.Logging;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Numerics;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.Input.SDL3
{
class SDL3Gamepad : IGamepad
{
private bool HasConfiguration => _configuration != null;
private readonly record struct ButtonMappingEntry(GamepadButtonInputId To, GamepadButtonInputId From)
{
public bool IsValid => To is not GamepadButtonInputId.Unbound && From is not GamepadButtonInputId.Unbound;
}
private static readonly Dictionary<GamepadButtonInputId, SDL_GamepadButton> _buttonsDriverDict = new()
{
{ GamepadButtonInputId.LeftStick, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_STICK },
{ GamepadButtonInputId.DpadUp, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_DPAD_UP },
{ GamepadButtonInputId.DpadDown, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_DPAD_DOWN },
{ GamepadButtonInputId.DpadLeft, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_DPAD_LEFT },
{ GamepadButtonInputId.DpadRight, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_DPAD_RIGHT },
{ GamepadButtonInputId.Minus, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_BACK },
{ GamepadButtonInputId.LeftShoulder, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_SHOULDER },
{ GamepadButtonInputId.LeftTrigger, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_PADDLE2 },
{ GamepadButtonInputId.RightStick, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_STICK },
{ GamepadButtonInputId.A, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_EAST },
{ GamepadButtonInputId.B, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_SOUTH },
{ GamepadButtonInputId.X, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_NORTH },
{ GamepadButtonInputId.Y, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_WEST },
{ GamepadButtonInputId.Plus, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_START },
{ GamepadButtonInputId.RightShoulder, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_SHOULDER },
{ GamepadButtonInputId.RightTrigger, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_PADDLE2 },
};
private StandardControllerInputConfig _configuration;
private static readonly SDL_GamepadButton[] _buttonsDriverMapping = ToSDLButtonMapping(_buttonsDriverDict);
private readonly Lock _userMappingLock = new();
private readonly List<ButtonMappingEntry> _buttonsUserMapping;
private readonly StickInputId[] _stickUserMapping = new StickInputId[(int)StickInputId.Count]
{
StickInputId.Unbound, StickInputId.Left, StickInputId.Right,
};
public GamepadFeaturesFlag Features { get; }
private nint _gamepadHandle;
private float _triggerThreshold;
public SDL3Gamepad(uint joystickId, string driverId)
{
_gamepadHandle = SDL_OpenGamepad(joystickId);
_buttonsUserMapping = new List<ButtonMappingEntry>(20);
Name = SDL_GetGamepadName(_gamepadHandle);
Id = driverId;
Features = GetFeaturesFlag();
_triggerThreshold = 0.0f;
// Enable motion tracking
if (Features.HasFlag(GamepadFeaturesFlag.Motion))
{
if (!SDL_SetGamepadSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL, true))
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_ACCEL}.");
}
if (!SDL_SetGamepadSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO, true))
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_GYRO}.");
}
}
}
private static SDL_GamepadButton[] ToSDLButtonMapping(
Dictionary<GamepadButtonInputId, SDL_GamepadButton> buttonsDriverMapping)
{
return Enumerable.Range(0, (int)GamepadButtonInputId.Count)
.Select(i =>
buttonsDriverMapping.GetValueOrDefault((GamepadButtonInputId)i,
SDL_GamepadButton.SDL_GAMEPAD_BUTTON_INVALID))
.ToArray();
}
private GamepadFeaturesFlag GetFeaturesFlag()
{
GamepadFeaturesFlag result = GamepadFeaturesFlag.None;
if (SDL_GamepadHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL) &&
SDL_GamepadHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO))
{
result |= GamepadFeaturesFlag.Motion;
}
if (SDL_RumbleGamepad(_gamepadHandle, 0, 0, 100))
{
result |= GamepadFeaturesFlag.Rumble;
}
return result;
}
public string Id { get; }
public string Name { get; }
public bool IsConnected => SDL_GamepadConnected(_gamepadHandle);
private void Dispose(bool disposing)
{
if (disposing && _gamepadHandle != nint.Zero)
{
SDL_CloseGamepad(_gamepadHandle);
_gamepadHandle = nint.Zero;
}
}
public void Dispose()
{
Dispose(true);
}
public void SetTriggerThreshold(float triggerThreshold)
{
_triggerThreshold = triggerThreshold;
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (!Features.HasFlag(GamepadFeaturesFlag.Rumble))
return;
ushort lowFrequencyRaw = (ushort)(lowFrequency * ushort.MaxValue);
ushort highFrequencyRaw = (ushort)(highFrequency * ushort.MaxValue);
if (!SDL_RumbleGamepad(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, durationMs))
{
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
}
public Vector3 GetMotionData(MotionInputId inputId)
{
SDL_SensorType sensorType = inputId switch
{
MotionInputId.Accelerometer => SDL_SensorType.SDL_SENSOR_ACCEL,
MotionInputId.Gyroscope => SDL_SensorType.SDL_SENSOR_GYRO,
_ => SDL_SensorType.SDL_SENSOR_INVALID
};
if (!Features.HasFlag(GamepadFeaturesFlag.Motion) || sensorType is SDL_SensorType.SDL_SENSOR_INVALID)
return Vector3.Zero;
const int ElementCount = 3;
unsafe
{
float* values = stackalloc float[ElementCount];
if (!SDL_GetGamepadSensorData(_gamepadHandle, sensorType, values, ElementCount))
{
return Vector3.Zero;
}
Vector3 value = new(values[0], values[1], values[2]);
return inputId switch
{
MotionInputId.Gyroscope => RadToDegree(value),
MotionInputId.Accelerometer => GsToMs2(value),
_ => value
};
}
}
private static Vector3 RadToDegree(Vector3 rad) => rad * (180 / MathF.PI);
private static Vector3 GsToMs2(Vector3 gs) => gs / SDL_STANDARD_GRAVITY;
public void SetConfiguration(InputConfig configuration)
{
lock (_userMappingLock)
{
_configuration = (StandardControllerInputConfig)configuration;
_buttonsUserMapping.Clear();
// First update sticks
_stickUserMapping[(int)StickInputId.Left] = (StickInputId)_configuration.LeftJoyconStick.Joystick;
_stickUserMapping[(int)StickInputId.Right] = (StickInputId)_configuration.RightJoyconStick.Joystick;
// Then left joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftStick,
(GamepadButtonInputId)_configuration.LeftJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadUp,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadUp));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadDown,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadDown));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadLeft,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadLeft));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadRight,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadRight));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Minus,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonMinus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftShoulder,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonL));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftTrigger,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonZl));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSl));
// Finally right joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightStick,
(GamepadButtonInputId)_configuration.RightJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.A,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonA));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.B,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonB));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.X,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonX));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Y,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonY));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Plus,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonPlus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightShoulder,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonR));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightTrigger,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonZr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSl));
SetTriggerThreshold(_configuration.TriggerThreshold);
}
}
public GamepadStateSnapshot GetStateSnapshot()
{
return IGamepad.GetStateSnapshot(this);
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
GamepadStateSnapshot rawState = GetStateSnapshot();
GamepadStateSnapshot result = default;
lock (_userMappingLock)
{
if (_buttonsUserMapping.Count == 0)
return rawState;
// ReSharper disable once ForeachCanBePartlyConvertedToQueryUsingAnotherGetEnumerator
foreach (ButtonMappingEntry entry in _buttonsUserMapping)
{
if (!entry.IsValid)
continue;
// Do not touch state of button already pressed
if (!result.IsPressed(entry.To))
{
result.SetPressed(entry.To, rawState.IsPressed(entry.From));
}
}
(float leftStickX, float leftStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Left]);
(float rightStickX, float rightStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Right]);
result.SetStick(StickInputId.Left, leftStickX, leftStickY);
result.SetStick(StickInputId.Right, rightStickX, rightStickY);
}
return result;
}
private static float ConvertRawStickValue(short value)
{
const float ConvertRate = 1.0f / (short.MaxValue + 0.5f);
return value * ConvertRate;
}
private JoyconConfigControllerStick<GamepadInputId, Common.Configuration.Hid.Controller.StickInputId>
GetLogicalJoyStickConfig(StickInputId inputId)
{
switch (inputId)
{
case StickInputId.Left:
if (_configuration.RightJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Left)
return _configuration.RightJoyconStick;
else
return _configuration.LeftJoyconStick;
case StickInputId.Right:
if (_configuration.LeftJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Right)
return _configuration.LeftJoyconStick;
else
return _configuration.RightJoyconStick;
}
return null;
}
public (float, float) GetStick(StickInputId inputId)
{
if (inputId == StickInputId.Unbound)
return (0.0f, 0.0f);
(short stickX, short stickY) = GetStickXY(inputId);
float resultX = ConvertRawStickValue(stickX);
float resultY = -ConvertRawStickValue(stickY);
if (HasConfiguration)
{
var joyconStickConfig = GetLogicalJoyStickConfig(inputId);
if (joyconStickConfig != null)
{
if (joyconStickConfig.InvertStickX)
resultX = -resultX;
if (joyconStickConfig.InvertStickY)
resultY = -resultY;
if (joyconStickConfig.Rotate90CW)
{
float temp = resultX;
resultX = resultY;
resultY = -temp;
}
}
}
return (resultX, resultY);
}
// ReSharper disable once InconsistentNaming
private (short, short) GetStickXY(StickInputId inputId) =>
inputId switch
{
StickInputId.Left => (
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_LEFTX),
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_LEFTY)),
StickInputId.Right => (
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_RIGHTX),
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_RIGHTY)),
_ => throw new NotSupportedException($"Unsupported stick {inputId}")
};
public bool IsPressed(GamepadButtonInputId inputId)
{
switch (inputId)
{
case GamepadButtonInputId.LeftTrigger:
return ConvertRawStickValue(SDL_GetGamepadAxis(_gamepadHandle,
SDL_GamepadAxis.SDL_GAMEPAD_AXIS_LEFT_TRIGGER)) > _triggerThreshold;
case GamepadButtonInputId.RightTrigger:
return ConvertRawStickValue(SDL_GetGamepadAxis(_gamepadHandle,
SDL_GamepadAxis.SDL_GAMEPAD_AXIS_RIGHT_TRIGGER)) > _triggerThreshold;
}
var button = _buttonsDriverMapping[(int)inputId];
if (button == SDL_GamepadButton.SDL_GAMEPAD_BUTTON_INVALID)
{
return false;
}
return SDL_GetGamepadButton(_gamepadHandle, button);
}
}
}

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using Ryujinx.Common.Logging;
using Ryujinx.Input.SDL3;
using Ryujinx.SDL3.Common;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Text;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.Input.SDL3
{
public class SDL3GamepadDriver : IGamepadDriver
{
private readonly Dictionary<uint, string> _gamepadsInstanceIdsMapping;
private readonly List<string> _gamepadsIds;
private readonly Lock _lock = new();
public ReadOnlySpan<string> GamepadsIds
{
get
{
lock (_lock)
{
return _gamepadsIds.ToArray();
}
}
}
public string DriverName => "SDL3";
public event Action<string> OnGamepadConnected;
public event Action<string> OnGamepadDisconnected;
public SDL3GamepadDriver()
{
_gamepadsInstanceIdsMapping = new Dictionary<uint, string>();
_gamepadsIds = new List<string>();
SDL3Driver.Instance.Initialize();
SDL3Driver.Instance.OnJoyStickConnected += HandleJoyStickConnected;
SDL3Driver.Instance.OnJoystickDisconnected += HandleJoyStickDisconnected;
SDL3Driver.Instance.OnJoyBatteryUpdated += HandleJoyBatteryUpdated;
}
private string GenerateGamepadId(uint joystickId)
{
int bufferSize = 33;
Span<byte> pszGuid = stackalloc byte[bufferSize];
SDL_GUIDToString(SDL_GetJoystickGUIDForID(joystickId), pszGuid, bufferSize);
var guid = Encoding.UTF8.GetString(pszGuid);
string id;
lock (_lock)
{
int guidIndex = 0;
id = guidIndex + guid;
while (_gamepadsIds.Contains(id))
{
id = (++guidIndex) + "-" + guid;
}
}
return id;
}
private KeyValuePair<uint,string> GetGamepadInfoByGamepadId(string id)
{
lock (_lock)
{
return _gamepadsInstanceIdsMapping.FirstOrDefault(gamepadId => gamepadId.Value == id);
}
}
private void HandleJoyStickDisconnected(uint joystickId)
{
bool joyConPairDisconnected = false;
if (!_gamepadsInstanceIdsMapping.Remove(joystickId, out string id))
return;
lock (_lock)
{
_gamepadsIds.Remove(id);
if (!SDL3JoyConPair.IsCombinable(_gamepadsInstanceIdsMapping))
{
_gamepadsIds.Remove(SDL3JoyConPair.Id);
joyConPairDisconnected = true;
}
}
OnGamepadDisconnected?.Invoke(id);
if (joyConPairDisconnected)
{
OnGamepadDisconnected?.Invoke(SDL3JoyConPair.Id);
}
}
private void HandleJoyStickConnected(uint joystickId)
{
bool joyConPairConnected = false;
if (_gamepadsInstanceIdsMapping.ContainsKey(joystickId))
{
// Sometimes a JoyStick connected event fires after the app starts even though it was connected before
// so it is rejected to avoid doubling the entries.
return;
}
string id = GenerateGamepadId(joystickId);
if (id == null)
{
return;
}
if (_gamepadsInstanceIdsMapping.TryAdd(joystickId, id))
{
lock (_lock)
{
_gamepadsIds.Add(id);
if (SDL3JoyConPair.IsCombinable(_gamepadsInstanceIdsMapping))
{
_gamepadsIds.Remove(SDL3JoyConPair.Id);
_gamepadsIds.Add(SDL3JoyConPair.Id);
joyConPairConnected = true;
}
}
OnGamepadConnected?.Invoke(id);
if (joyConPairConnected)
{
OnGamepadConnected?.Invoke(SDL3JoyConPair.Id);
}
}
}
private void HandleJoyBatteryUpdated(uint joystickId, SDL_JoyBatteryEvent joyBatteryEvent)
{
Logger.Info?.Print(LogClass.Hid,
$"{SDL_GetGamepadNameForID(joystickId)}, Battery percent: {joyBatteryEvent.percent}");
}
protected virtual void Dispose(bool disposing)
{
if (disposing)
{
SDL3Driver.Instance.OnJoyStickConnected -= HandleJoyStickConnected;
SDL3Driver.Instance.OnJoystickDisconnected -= HandleJoyStickDisconnected;
// Simulate a full disconnect when disposing
foreach (string id in _gamepadsIds)
{
OnGamepadDisconnected?.Invoke(id);
}
lock (_lock)
{
_gamepadsIds.Clear();
}
SDL3Driver.Instance.Dispose();
}
}
public void Dispose()
{
GC.SuppressFinalize(this);
Dispose(true);
}
public IGamepad GetGamepad(string id)
{
if (id == SDL3JoyConPair.Id)
{
lock (_lock)
{
return SDL3JoyConPair.GetGamepad(_gamepadsInstanceIdsMapping);
}
}
var gamepadInfo = GetGamepadInfoByGamepadId(id);
if (SDL3JoyCon.IsJoyCon(gamepadInfo.Key))
{
return new SDL3JoyCon(gamepadInfo.Key, gamepadInfo.Value);
}
return new SDL3Gamepad(gamepadInfo.Key, gamepadInfo.Value);
}
}
}

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using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Controller;
using Ryujinx.Common.Logging;
using System;
using System.Collections.Generic;
using System.Linq;
using System.Numerics;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.Input.SDL3
{
class SDL3JoyCon : IGamepad
{
private bool HasConfiguration => _configuration != null;
private readonly record struct ButtonMappingEntry(GamepadButtonInputId To, GamepadButtonInputId From)
{
public bool IsValid => To is not GamepadButtonInputId.Unbound && From is not GamepadButtonInputId.Unbound;
}
private StandardControllerInputConfig _configuration;
private static readonly Dictionary<GamepadButtonInputId, SDL_GamepadButton> _leftButtonsDriverDict = new()
{
{ GamepadButtonInputId.LeftStick, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_STICK },
{ GamepadButtonInputId.DpadUp, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_WEST },
{ GamepadButtonInputId.DpadDown, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_EAST },
{ GamepadButtonInputId.DpadLeft, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_SOUTH },
{ GamepadButtonInputId.DpadRight, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_NORTH },
{ GamepadButtonInputId.Minus, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_START },
{ GamepadButtonInputId.LeftShoulder, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_PADDLE1 },
{ GamepadButtonInputId.LeftTrigger, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_PADDLE2 },
{ GamepadButtonInputId.SingleRightTrigger0, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_SHOULDER },
{ GamepadButtonInputId.SingleLeftTrigger0, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_SHOULDER },
};
private static readonly Dictionary<GamepadButtonInputId, SDL_GamepadButton> _rightButtonsDriverDict = new()
{
{ GamepadButtonInputId.RightStick, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_STICK },
{ GamepadButtonInputId.A, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_SOUTH },
{ GamepadButtonInputId.B, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_WEST },
{ GamepadButtonInputId.X, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_EAST },
{ GamepadButtonInputId.Y, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_NORTH },
{ GamepadButtonInputId.Plus, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_START },
{ GamepadButtonInputId.RightShoulder, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_PADDLE1 },
{ GamepadButtonInputId.RightTrigger, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_PADDLE2 },
{ GamepadButtonInputId.SingleRightTrigger1, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_RIGHT_SHOULDER },
{ GamepadButtonInputId.SingleLeftTrigger1, SDL_GamepadButton.SDL_GAMEPAD_BUTTON_LEFT_SHOULDER }
};
private readonly SDL_GamepadButton[] _buttonsDriverMapping;
private readonly Lock _userMappingLock = new();
private readonly List<ButtonMappingEntry> _buttonsUserMapping;
private readonly StickInputId[] _stickUserMapping = new StickInputId[(int)StickInputId.Count]
{
StickInputId.Unbound, StickInputId.Left, StickInputId.Right,
};
public GamepadFeaturesFlag Features { get; }
private nint _gamepadHandle;
private readonly SDL_GamepadType _gamepadType;
public SDL3JoyCon(uint joystickId, string driverId)
{
_gamepadHandle = SDL_OpenGamepad(joystickId);
_buttonsUserMapping = new List<ButtonMappingEntry>(10);
Name = SDL_GetGamepadName(_gamepadHandle);
Id = driverId;
Features = GetFeaturesFlag();
// Enable motion tracking
if (Features.HasFlag(GamepadFeaturesFlag.Motion))
{
if (!SDL_SetGamepadSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL, true))
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_ACCEL}.");
}
if (!SDL_SetGamepadSensorEnabled(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO, true))
{
Logger.Error?.Print(LogClass.Hid,
$"Could not enable data reporting for SensorType {SDL_SensorType.SDL_SENSOR_GYRO}.");
}
}
_gamepadType = SDL_GetGamepadType(_gamepadHandle);
_buttonsDriverMapping = _gamepadType switch
{
SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT => ToSDLButtonMapping(
_leftButtonsDriverDict),
SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT => ToSDLButtonMapping(
_rightButtonsDriverDict),
_ => throw new InvalidOperationException($"Unexpected JoyConType value: {_gamepadType}")
};
}
private static SDL_GamepadButton[] ToSDLButtonMapping(
Dictionary<GamepadButtonInputId, SDL_GamepadButton> buttonsDriverDict)
{
return Enumerable.Range(0, (int)GamepadButtonInputId.Count)
.Select(i =>
buttonsDriverDict.GetValueOrDefault((GamepadButtonInputId)i,
SDL_GamepadButton.SDL_GAMEPAD_BUTTON_INVALID))
.ToArray();
}
private GamepadFeaturesFlag GetFeaturesFlag()
{
GamepadFeaturesFlag result = GamepadFeaturesFlag.None;
if (SDL_GamepadHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_ACCEL) &&
SDL_GamepadHasSensor(_gamepadHandle, SDL_SensorType.SDL_SENSOR_GYRO))
{
result |= GamepadFeaturesFlag.Motion;
}
if (SDL_RumbleGamepad(_gamepadHandle, 0, 0, 100))
{
result |= GamepadFeaturesFlag.Rumble;
}
return result;
}
public string Id { get; }
public string Name { get; }
public bool IsConnected => SDL_GamepadConnected(_gamepadHandle);
private void Dispose(bool disposing)
{
if (disposing && _gamepadHandle != nint.Zero)
{
SDL_CloseGamepad(_gamepadHandle);
_gamepadHandle = nint.Zero;
}
}
public void Dispose()
{
Dispose(true);
}
public void SetTriggerThreshold(float triggerThreshold)
{
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (!Features.HasFlag(GamepadFeaturesFlag.Rumble))
return;
ushort lowFrequencyRaw = (ushort)(lowFrequency * ushort.MaxValue);
ushort highFrequencyRaw = (ushort)(highFrequency * ushort.MaxValue);
if (!SDL_RumbleGamepad(_gamepadHandle, lowFrequencyRaw, highFrequencyRaw, durationMs))
{
Logger.Error?.Print(LogClass.Hid, "Rumble is not supported on this game controller.");
}
}
public Vector3 GetMotionData(MotionInputId inputId)
{
SDL_SensorType sensorType = inputId switch
{
MotionInputId.Accelerometer => SDL_SensorType.SDL_SENSOR_ACCEL,
MotionInputId.Gyroscope => SDL_SensorType.SDL_SENSOR_GYRO,
_ => SDL_SensorType.SDL_SENSOR_INVALID
};
if (!Features.HasFlag(GamepadFeaturesFlag.Motion) || sensorType is SDL_SensorType.SDL_SENSOR_INVALID)
return Vector3.Zero;
const int ElementCount = 3;
unsafe
{
float* values = stackalloc float[ElementCount];
if (!SDL_GetGamepadSensorData(_gamepadHandle, sensorType, values, ElementCount))
{
return Vector3.Zero;
}
Vector3 value = _gamepadType switch
{
SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT => new Vector3(-values[2], values[1], values[0]),
SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT => new Vector3(values[2], values[1], -values[0]),
_ => throw new ArgumentOutOfRangeException($"Unexpected JoyConType value: {_gamepadType}")
};
return inputId switch
{
MotionInputId.Gyroscope => RadToDegree(value),
MotionInputId.Accelerometer => GsToMs2(value),
_ => value
};
}
}
private static Vector3 RadToDegree(Vector3 rad) => rad * (180 / MathF.PI);
private static Vector3 GsToMs2(Vector3 gs) => gs / SDL_STANDARD_GRAVITY;
public void SetConfiguration(InputConfig configuration)
{
lock (_userMappingLock)
{
_configuration = (StandardControllerInputConfig)configuration;
_buttonsUserMapping.Clear();
// First update sticks
_stickUserMapping[(int)StickInputId.Left] = (StickInputId)_configuration.LeftJoyconStick.Joystick;
_stickUserMapping[(int)StickInputId.Right] = (StickInputId)_configuration.RightJoyconStick.Joystick;
switch (_gamepadType)
{
case SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT:
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftStick,
(GamepadButtonInputId)_configuration.LeftJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadUp,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadUp));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadDown,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadDown));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadLeft,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadLeft));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadRight,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadRight));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Minus,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonMinus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftShoulder,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonL));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftTrigger,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonZl));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSl));
break;
case SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT:
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightStick,
(GamepadButtonInputId)_configuration.RightJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.A,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonA));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.B,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonB));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.X,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonX));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Y,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonY));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Plus,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonPlus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightShoulder,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonR));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightTrigger,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonZr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSl));
break;
default:
throw new ArgumentOutOfRangeException();
}
SetTriggerThreshold(_configuration.TriggerThreshold);
}
}
public GamepadStateSnapshot GetStateSnapshot()
{
return IGamepad.GetStateSnapshot(this);
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
GamepadStateSnapshot rawState = GetStateSnapshot();
GamepadStateSnapshot result = default;
lock (_userMappingLock)
{
if (_buttonsUserMapping.Count == 0)
return rawState;
// ReSharper disable once ForeachCanBePartlyConvertedToQueryUsingAnotherGetEnumerator
foreach (ButtonMappingEntry entry in _buttonsUserMapping)
{
if (!entry.IsValid)
continue;
// Do not touch state of button already pressed
if (!result.IsPressed(entry.To))
{
result.SetPressed(entry.To, rawState.IsPressed(entry.From));
}
}
(float leftStickX, float leftStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Left]);
(float rightStickX, float rightStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Right]);
result.SetStick(StickInputId.Left, leftStickX, leftStickY);
result.SetStick(StickInputId.Right, rightStickX, rightStickY);
}
return result;
}
private static float ConvertRawStickValue(short value)
{
const float ConvertRate = 1.0f / (short.MaxValue + 0.5f);
return value * ConvertRate;
}
private JoyconConfigControllerStick<GamepadInputId, Common.Configuration.Hid.Controller.StickInputId>
GetLogicalJoyStickConfig(StickInputId inputId)
{
switch (inputId)
{
case StickInputId.Left:
if (_configuration.RightJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Left)
return _configuration.RightJoyconStick;
else
return _configuration.LeftJoyconStick;
case StickInputId.Right:
if (_configuration.LeftJoyconStick.Joystick ==
Common.Configuration.Hid.Controller.StickInputId.Right)
return _configuration.LeftJoyconStick;
else
return _configuration.RightJoyconStick;
}
return null;
}
public (float, float) GetStick(StickInputId inputId)
{
if (inputId == StickInputId.Unbound)
return (0.0f, 0.0f);
if (inputId == StickInputId.Left && _gamepadType == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT ||
inputId == StickInputId.Right && _gamepadType == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT)
{
return (0.0f, 0.0f);
}
(short stickX, short stickY) = GetStickXY();
float resultX = ConvertRawStickValue(stickX);
float resultY = -ConvertRawStickValue(stickY);
if (HasConfiguration)
{
var joyconStickConfig = GetLogicalJoyStickConfig(inputId);
if (joyconStickConfig != null)
{
if (joyconStickConfig.InvertStickX)
resultX = -resultX;
if (joyconStickConfig.InvertStickY)
resultY = -resultY;
if (joyconStickConfig.Rotate90CW)
{
float temp = resultX;
resultX = resultY;
resultY = -temp;
}
}
}
return inputId switch
{
StickInputId.Left when _gamepadType == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT => (resultY, -resultX),
StickInputId.Right when _gamepadType == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT => (-resultY, resultX),
_ => (0.0f, 0.0f)
};
}
private (short, short) GetStickXY()
{
return (
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_LEFTX),
SDL_GetGamepadAxis(_gamepadHandle, SDL_GamepadAxis.SDL_GAMEPAD_AXIS_LEFTY));
}
public bool IsPressed(GamepadButtonInputId inputId)
{
var button = _buttonsDriverMapping[(int)inputId];
if (button == SDL_GamepadButton.SDL_GAMEPAD_BUTTON_INVALID)
{
return false;
}
return SDL_GetGamepadButton(_gamepadHandle, button);
}
public static bool IsJoyCon(uint joystickId)
{
var gamepadName = SDL_GetGamepadTypeForID(joystickId);
return gamepadName is SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT
or SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT;
}
}
}

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using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Controller;
using System.Collections.Generic;
using System.Linq;
using System.Numerics;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.Input.SDL3
{
class SDL3JoyConPair(SDL3JoyCon left, SDL3JoyCon right) : IGamepad
{
private StandardControllerInputConfig _configuration;
private readonly record struct ButtonMappingEntry(GamepadButtonInputId To, GamepadButtonInputId From)
{
public bool IsValid => To is not GamepadButtonInputId.Unbound && From is not GamepadButtonInputId.Unbound;
}
private readonly StickInputId[] _stickUserMapping = new StickInputId[(int)StickInputId.Count]
{
StickInputId.Unbound, StickInputId.Left, StickInputId.Right,
};
public GamepadFeaturesFlag Features => (left?.Features ?? GamepadFeaturesFlag.None) |
(right?.Features ?? GamepadFeaturesFlag.None);
public const string Id = "JoyConPair";
private readonly Lock _userMappingLock = new();
private readonly List<ButtonMappingEntry> _buttonsUserMapping = new List<ButtonMappingEntry>(20);
string IGamepad.Id => Id;
public string Name => "* Nintendo Switch Joy-Con (L/R)";
public bool IsConnected => left is { IsConnected: true } && right is { IsConnected: true };
public void Dispose()
{
left?.Dispose();
right?.Dispose();
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
GamepadStateSnapshot rawState = GetStateSnapshot();
GamepadStateSnapshot result = default;
lock (_userMappingLock)
{
if (_buttonsUserMapping.Count == 0)
return rawState;
// ReSharper disable once ForeachCanBePartlyConvertedToQueryUsingAnotherGetEnumerator
foreach (ButtonMappingEntry entry in _buttonsUserMapping)
{
if (!entry.IsValid)
continue;
// Do not touch state of button already pressed
if (!result.IsPressed(entry.To))
{
result.SetPressed(entry.To, rawState.IsPressed(entry.From));
}
}
(float leftStickX, float leftStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Left]);
(float rightStickX, float rightStickY) = rawState.GetStick(_stickUserMapping[(int)StickInputId.Right]);
result.SetStick(StickInputId.Left, leftStickX, leftStickY);
result.SetStick(StickInputId.Right, rightStickX, rightStickY);
}
return result;
}
public Vector3 GetMotionData(MotionInputId inputId)
{
return inputId switch
{
MotionInputId.Accelerometer or
MotionInputId.Gyroscope => left.GetMotionData(inputId),
MotionInputId.SecondAccelerometer => right.GetMotionData(MotionInputId.Accelerometer),
MotionInputId.SecondGyroscope => right.GetMotionData(MotionInputId.Gyroscope),
_ => Vector3.Zero
};
}
public GamepadStateSnapshot GetStateSnapshot()
{
return IGamepad.GetStateSnapshot(this);
}
public (float, float) GetStick(StickInputId inputId)
{
return inputId switch
{
StickInputId.Left => left.GetStick(StickInputId.Left),
StickInputId.Right => right.GetStick(StickInputId.Right),
_ => (0, 0)
};
}
public bool IsPressed(GamepadButtonInputId inputId)
{
return left.IsPressed(inputId) || right.IsPressed(inputId);
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
if (lowFrequency != 0)
{
right.Rumble(lowFrequency, lowFrequency, durationMs);
}
if (highFrequency != 0)
{
left.Rumble(highFrequency, highFrequency, durationMs);
}
if (lowFrequency == 0 && highFrequency == 0)
{
left.Rumble(0, 0, durationMs);
right.Rumble(0, 0, durationMs);
}
}
public void SetConfiguration(InputConfig configuration)
{
lock (_userMappingLock)
{
_configuration = (StandardControllerInputConfig)configuration;
_buttonsUserMapping.Clear();
// First update sticks
_stickUserMapping[(int)StickInputId.Left] = (StickInputId)_configuration.LeftJoyconStick.Joystick;
_stickUserMapping[(int)StickInputId.Right] = (StickInputId)_configuration.RightJoyconStick.Joystick;
// Then left joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftStick,
(GamepadButtonInputId)_configuration.LeftJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadUp,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadUp));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadDown,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadDown));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadLeft,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadLeft));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadRight,
(GamepadButtonInputId)_configuration.LeftJoycon.DpadRight));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Minus,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonMinus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftShoulder,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonL));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftTrigger,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonZl));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger0,
(GamepadButtonInputId)_configuration.LeftJoycon.ButtonSl));
// Finally right joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightStick,
(GamepadButtonInputId)_configuration.RightJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.A,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonA));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.B,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonB));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.X,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonX));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Y,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonY));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Plus,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonPlus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightShoulder,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonR));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightTrigger,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonZr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger1,
(GamepadButtonInputId)_configuration.RightJoycon.ButtonSl));
left.SetConfiguration(configuration);
right.SetConfiguration(configuration);
}
}
public void SetTriggerThreshold(float triggerThreshold)
{
}
public static bool IsCombinable(Dictionary<uint, string> gamepadsInstanceIdsMapping)
{
var gamepadTypes = gamepadsInstanceIdsMapping.Keys.Select(SDL_GetGamepadTypeForID).ToArray();
return gamepadTypes.Contains(SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT) &&
gamepadTypes.Contains(SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT);
}
public static IGamepad GetGamepad(Dictionary<uint, string> gamepadsInstanceIdsMapping)
{
var leftPair =
gamepadsInstanceIdsMapping.FirstOrDefault(pair =>
SDL_GetGamepadTypeForID(pair.Key) == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_LEFT);
var rightPair =
gamepadsInstanceIdsMapping.FirstOrDefault(pair =>
SDL_GetGamepadTypeForID(pair.Key) == SDL_GamepadType.SDL_GAMEPAD_TYPE_NINTENDO_SWITCH_JOYCON_RIGHT);
if (leftPair.Key == 0 || rightPair.Key == 0)
{
return null;
}
return new SDL3JoyConPair(new SDL3JoyCon(leftPair.Key, leftPair.Value),
new SDL3JoyCon(rightPair.Key, rightPair.Value));
}
}
}

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using Ryujinx.Common.Configuration.Hid;
using Ryujinx.Common.Configuration.Hid.Keyboard;
using System;
using System.Collections.Generic;
using System.Diagnostics;
using System.Numerics;
using System.Runtime.CompilerServices;
using System.Threading;
using static SDL3.SDL;
using ConfigKey = Ryujinx.Common.Configuration.Hid.Key;
namespace Ryujinx.Input.SDL3
{
class SDL3Keyboard : IKeyboard
{
private readonly record struct ButtonMappingEntry(GamepadButtonInputId To, Key From)
{
public bool IsValid => To is not GamepadButtonInputId.Unbound && From is not Key.Unbound;
}
private readonly Lock _userMappingLock = new();
#pragma warning disable IDE0052 // Remove unread private member
private readonly SDL3KeyboardDriver _driver;
#pragma warning restore IDE0052
private StandardKeyboardInputConfig _configuration;
private readonly List<ButtonMappingEntry> _buttonsUserMapping;
private static readonly SDL_Keycode[] _keysDriverMapping = new SDL_Keycode[(int)Key.Count]
{
// INVALID
SDL_Keycode.SDLK_0,
// Presented as modifiers, so invalid here.
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_F1,
SDL_Keycode.SDLK_F2,
SDL_Keycode.SDLK_F3,
SDL_Keycode.SDLK_F4,
SDL_Keycode.SDLK_F5,
SDL_Keycode.SDLK_F6,
SDL_Keycode.SDLK_F7,
SDL_Keycode.SDLK_F8,
SDL_Keycode.SDLK_F9,
SDL_Keycode.SDLK_F10,
SDL_Keycode.SDLK_F11,
SDL_Keycode.SDLK_F12,
SDL_Keycode.SDLK_F13,
SDL_Keycode.SDLK_F14,
SDL_Keycode.SDLK_F15,
SDL_Keycode.SDLK_F16,
SDL_Keycode.SDLK_F17,
SDL_Keycode.SDLK_F18,
SDL_Keycode.SDLK_F19,
SDL_Keycode.SDLK_F20,
SDL_Keycode.SDLK_F21,
SDL_Keycode.SDLK_F22,
SDL_Keycode.SDLK_F23,
SDL_Keycode.SDLK_F24,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_UP,
SDL_Keycode.SDLK_DOWN,
SDL_Keycode.SDLK_LEFT,
SDL_Keycode.SDLK_RIGHT,
SDL_Keycode.SDLK_RETURN,
SDL_Keycode.SDLK_ESCAPE,
SDL_Keycode.SDLK_SPACE,
SDL_Keycode.SDLK_TAB,
SDL_Keycode.SDLK_BACKSPACE,
SDL_Keycode.SDLK_INSERT,
SDL_Keycode.SDLK_DELETE,
SDL_Keycode.SDLK_PAGEUP,
SDL_Keycode.SDLK_PAGEDOWN,
SDL_Keycode.SDLK_HOME,
SDL_Keycode.SDLK_END,
SDL_Keycode.SDLK_CAPSLOCK,
SDL_Keycode.SDLK_SCROLLLOCK,
SDL_Keycode.SDLK_PRINTSCREEN,
SDL_Keycode.SDLK_PAUSE,
SDL_Keycode.SDLK_NUMLOCKCLEAR,
SDL_Keycode.SDLK_CLEAR,
SDL_Keycode.SDLK_KP_0,
SDL_Keycode.SDLK_KP_1,
SDL_Keycode.SDLK_KP_2,
SDL_Keycode.SDLK_KP_3,
SDL_Keycode.SDLK_KP_4,
SDL_Keycode.SDLK_KP_5,
SDL_Keycode.SDLK_KP_6,
SDL_Keycode.SDLK_KP_7,
SDL_Keycode.SDLK_KP_8,
SDL_Keycode.SDLK_KP_9,
SDL_Keycode.SDLK_KP_DIVIDE,
SDL_Keycode.SDLK_KP_MULTIPLY,
SDL_Keycode.SDLK_KP_MINUS,
SDL_Keycode.SDLK_KP_PLUS,
SDL_Keycode.SDLK_KP_DECIMAL,
SDL_Keycode.SDLK_KP_ENTER,
SDL_Keycode.SDLK_A,
SDL_Keycode.SDLK_B,
SDL_Keycode.SDLK_C,
SDL_Keycode.SDLK_D,
SDL_Keycode.SDLK_E,
SDL_Keycode.SDLK_F,
SDL_Keycode.SDLK_G,
SDL_Keycode.SDLK_H,
SDL_Keycode.SDLK_I,
SDL_Keycode.SDLK_J,
SDL_Keycode.SDLK_K,
SDL_Keycode.SDLK_L,
SDL_Keycode.SDLK_M,
SDL_Keycode.SDLK_N,
SDL_Keycode.SDLK_O,
SDL_Keycode.SDLK_P,
SDL_Keycode.SDLK_Q,
SDL_Keycode.SDLK_R,
SDL_Keycode.SDLK_S,
SDL_Keycode.SDLK_T,
SDL_Keycode.SDLK_U,
SDL_Keycode.SDLK_V,
SDL_Keycode.SDLK_W,
SDL_Keycode.SDLK_X,
SDL_Keycode.SDLK_Y,
SDL_Keycode.SDLK_Z,
SDL_Keycode.SDLK_0,
SDL_Keycode.SDLK_1,
SDL_Keycode.SDLK_2,
SDL_Keycode.SDLK_3,
SDL_Keycode.SDLK_4,
SDL_Keycode.SDLK_5,
SDL_Keycode.SDLK_6,
SDL_Keycode.SDLK_7,
SDL_Keycode.SDLK_8,
SDL_Keycode.SDLK_9,
SDL_Keycode.SDLK_GRAVE,
SDL_Keycode.SDLK_GRAVE,
SDL_Keycode.SDLK_MINUS,
SDL_Keycode.SDLK_PLUS,
SDL_Keycode.SDLK_LEFTBRACKET,
SDL_Keycode.SDLK_RIGHTBRACKET,
SDL_Keycode.SDLK_SEMICOLON,
SDL_Keycode.SDLK_APOSTROPHE,
SDL_Keycode.SDLK_COMMA,
SDL_Keycode.SDLK_PERIOD,
SDL_Keycode.SDLK_SLASH,
SDL_Keycode.SDLK_BACKSLASH,
// Invalids
SDL_Keycode.SDLK_0,
};
public SDL3Keyboard(SDL3KeyboardDriver driver, string id, string name)
{
_driver = driver;
Id = id;
Name = name;
_buttonsUserMapping = new List<ButtonMappingEntry>();
}
private bool HasConfiguration => _configuration != null;
public string Id { get; }
public string Name { get; }
public bool IsConnected => true;
public GamepadFeaturesFlag Features => GamepadFeaturesFlag.None;
public void Dispose()
{
// No operations
}
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private static int ToSDL3Scancode(Key key)
{
if (key >= Key.Unknown && key <= Key.Menu)
{
return -1;
}
IntPtr modstate = (int)SDL_Keymod.SDL_KMOD_NONE;
return (int)SDL_GetScancodeFromKey((uint)_keysDriverMapping[(int)key], modstate);
}
private static SDL_Keymod GetKeyboardModifierMask(Key key)
{
return key switch
{
Key.ShiftLeft => SDL_Keymod.SDL_KMOD_LSHIFT,
Key.ShiftRight => SDL_Keymod.SDL_KMOD_RSHIFT,
Key.ControlLeft => SDL_Keymod.SDL_KMOD_LCTRL,
Key.ControlRight => SDL_Keymod.SDL_KMOD_RCTRL,
Key.AltLeft => SDL_Keymod.SDL_KMOD_LALT,
Key.AltRight => SDL_Keymod.SDL_KMOD_RALT,
Key.WinLeft => SDL_Keymod.SDL_KMOD_LGUI,
Key.WinRight => SDL_Keymod.SDL_KMOD_RGUI,
// NOTE: Menu key isn't supported by SDL3.
_ => SDL_Keymod.SDL_KMOD_NONE,
};
}
public KeyboardStateSnapshot GetKeyboardStateSnapshot()
{
Span<SDLBool> rawKeyboardState;
SDL_Keymod rawKeyboardModifierState = SDL_GetModState();
unsafe
{
rawKeyboardState = SDL_GetKeyboardState(out int numKeys);
}
bool[] keysState = new bool[(int)Key.Count];
for (Key key = 0; key < Key.Count; key++)
{
int index = ToSDL3Scancode(key);
if (index == -1)
{
SDL_Keymod modifierMask = GetKeyboardModifierMask(key);
if (modifierMask == SDL_Keymod.SDL_KMOD_NONE)
{
continue;
}
keysState[(int)key] = (rawKeyboardModifierState & modifierMask) == modifierMask;
}
else
{
keysState[(int)key] = rawKeyboardState[index];
}
}
return new KeyboardStateSnapshot(keysState);
}
private static float ConvertRawStickValue(short value)
{
const float ConvertRate = 1.0f / (short.MaxValue + 0.5f);
return value * ConvertRate;
}
private static (short, short) GetStickValues(ref KeyboardStateSnapshot snapshot, JoyconConfigKeyboardStick<ConfigKey> stickConfig)
{
short stickX = 0;
short stickY = 0;
if (snapshot.IsPressed((Key)stickConfig.StickUp))
{
stickY += 1;
}
if (snapshot.IsPressed((Key)stickConfig.StickDown))
{
stickY -= 1;
}
if (snapshot.IsPressed((Key)stickConfig.StickRight))
{
stickX += 1;
}
if (snapshot.IsPressed((Key)stickConfig.StickLeft))
{
stickX -= 1;
}
Vector2 stick = Vector2.Normalize(new Vector2(stickX, stickY));
return ((short)(stick.X * short.MaxValue), (short)(stick.Y * short.MaxValue));
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
KeyboardStateSnapshot rawState = GetKeyboardStateSnapshot();
GamepadStateSnapshot result = default;
lock (_userMappingLock)
{
if (!HasConfiguration)
{
return result;
}
foreach (ButtonMappingEntry entry in _buttonsUserMapping)
{
if (entry.From == Key.Unknown || entry.From == Key.Unbound || entry.To == GamepadButtonInputId.Unbound)
{
continue;
}
// Do not touch state of button already pressed
if (!result.IsPressed(entry.To))
{
result.SetPressed(entry.To, rawState.IsPressed(entry.From));
}
}
(short leftStickX, short leftStickY) = GetStickValues(ref rawState, _configuration.LeftJoyconStick);
(short rightStickX, short rightStickY) = GetStickValues(ref rawState, _configuration.RightJoyconStick);
result.SetStick(StickInputId.Left, ConvertRawStickValue(leftStickX), ConvertRawStickValue(leftStickY));
result.SetStick(StickInputId.Right, ConvertRawStickValue(rightStickX), ConvertRawStickValue(rightStickY));
}
return result;
}
public GamepadStateSnapshot GetStateSnapshot()
{
throw new NotSupportedException();
}
public (float, float) GetStick(StickInputId inputId)
{
throw new NotSupportedException();
}
public bool IsPressed(GamepadButtonInputId inputId)
{
throw new NotSupportedException();
}
public bool IsPressed(Key key)
{
// We only implement GetKeyboardStateSnapshot.
throw new NotSupportedException();
}
public void SetConfiguration(InputConfig configuration)
{
lock (_userMappingLock)
{
_configuration = (StandardKeyboardInputConfig)configuration;
// First clear the buttons mapping
_buttonsUserMapping.Clear();
// Then configure left joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftStick, (Key)_configuration.LeftJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadUp, (Key)_configuration.LeftJoycon.DpadUp));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadDown, (Key)_configuration.LeftJoycon.DpadDown));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadLeft, (Key)_configuration.LeftJoycon.DpadLeft));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.DpadRight, (Key)_configuration.LeftJoycon.DpadRight));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Minus, (Key)_configuration.LeftJoycon.ButtonMinus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftShoulder, (Key)_configuration.LeftJoycon.ButtonL));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.LeftTrigger, (Key)_configuration.LeftJoycon.ButtonZl));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger0, (Key)_configuration.LeftJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger0, (Key)_configuration.LeftJoycon.ButtonSl));
// Finally configure right joycon
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightStick, (Key)_configuration.RightJoyconStick.StickButton));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.A, (Key)_configuration.RightJoycon.ButtonA));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.B, (Key)_configuration.RightJoycon.ButtonB));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.X, (Key)_configuration.RightJoycon.ButtonX));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Y, (Key)_configuration.RightJoycon.ButtonY));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.Plus, (Key)_configuration.RightJoycon.ButtonPlus));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightShoulder, (Key)_configuration.RightJoycon.ButtonR));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.RightTrigger, (Key)_configuration.RightJoycon.ButtonZr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleRightTrigger1, (Key)_configuration.RightJoycon.ButtonSr));
_buttonsUserMapping.Add(new ButtonMappingEntry(GamepadButtonInputId.SingleLeftTrigger1, (Key)_configuration.RightJoycon.ButtonSl));
}
}
public void SetTriggerThreshold(float triggerThreshold)
{
// No operations
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
// No operations
}
public Vector3 GetMotionData(MotionInputId inputId)
{
// No operations
return Vector3.Zero;
}
}
}

View File

@@ -0,0 +1,55 @@
using Ryujinx.SDL3.Common;
using System;
namespace Ryujinx.Input.SDL3
{
public class SDL3KeyboardDriver : IGamepadDriver
{
public SDL3KeyboardDriver()
{
SDL3Driver.Instance.Initialize();
}
public string DriverName => "SDL3";
private static readonly string[] _keyboardIdentifers = new string[1] { "0" };
public ReadOnlySpan<string> GamepadsIds => _keyboardIdentifers;
public event Action<string> OnGamepadConnected
{
add { }
remove { }
}
public event Action<string> OnGamepadDisconnected
{
add { }
remove { }
}
protected virtual void Dispose(bool disposing)
{
if (disposing)
{
SDL3Driver.Instance.Dispose();
}
}
public void Dispose()
{
GC.SuppressFinalize(this);
Dispose(true);
}
public IGamepad GetGamepad(string id)
{
if (!_keyboardIdentifers[0].Equals(id))
{
return null;
}
return new SDL3Keyboard(this, _keyboardIdentifers[0], "All keyboards");
}
}
}

View File

@@ -0,0 +1,90 @@
using Ryujinx.Common.Configuration.Hid;
using System;
using System.Drawing;
using System.Numerics;
namespace Ryujinx.Input.SDL3
{
public class SDL3Mouse : IMouse
{
private SDL3MouseDriver _driver;
public GamepadFeaturesFlag Features => throw new NotImplementedException();
public string Id => "0";
public string Name => "SDL3Mouse";
public bool IsConnected => true;
public bool[] Buttons => _driver.PressedButtons;
Size IMouse.ClientSize => _driver.GetClientSize();
public SDL3Mouse(SDL3MouseDriver driver)
{
_driver = driver;
}
public Vector2 GetPosition()
{
return _driver.CurrentPosition;
}
public Vector2 GetScroll()
{
return _driver.Scroll;
}
public GamepadStateSnapshot GetMappedStateSnapshot()
{
throw new NotImplementedException();
}
public Vector3 GetMotionData(MotionInputId inputId)
{
throw new NotImplementedException();
}
public GamepadStateSnapshot GetStateSnapshot()
{
throw new NotImplementedException();
}
public (float, float) GetStick(StickInputId inputId)
{
throw new NotImplementedException();
}
public bool IsButtonPressed(MouseButton button)
{
return _driver.IsButtonPressed(button);
}
public bool IsPressed(GamepadButtonInputId inputId)
{
throw new NotImplementedException();
}
public void Rumble(float lowFrequency, float highFrequency, uint durationMs)
{
throw new NotImplementedException();
}
public void SetConfiguration(InputConfig configuration)
{
throw new NotImplementedException();
}
public void SetTriggerThreshold(float triggerThreshold)
{
throw new NotImplementedException();
}
public void Dispose()
{
GC.SuppressFinalize(this);
_driver = null;
}
}
}

View File

@@ -0,0 +1,179 @@
using Ryujinx.Common.Configuration;
using Ryujinx.Common.Logging;
using System;
using System.Diagnostics;
using System.Drawing;
using System.Numerics;
using System.Runtime.CompilerServices;
using static SDL3.SDL;
namespace Ryujinx.Input.SDL3
{
public class SDL3MouseDriver : IGamepadDriver
{
private const int CursorHideIdleTime = 5; // seconds
private bool _isDisposed;
private readonly HideCursorMode _hideCursorMode;
private bool _isHidden;
private long _lastCursorMoveTime;
public bool[] PressedButtons { get; }
public Vector2 CurrentPosition { get; private set; }
public Vector2 Scroll { get; private set; }
public Size ClientSize;
public SDL3MouseDriver(HideCursorMode hideCursorMode)
{
PressedButtons = new bool[(int)MouseButton.Count];
_hideCursorMode = hideCursorMode;
if (_hideCursorMode == HideCursorMode.Always)
{
if (!SDL_HideCursor())
{
Logger.Error?.PrintMsg(LogClass.Application, "Failed to disable the cursor.");
}
_isHidden = true;
}
}
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private static MouseButton DriverButtonToMouseButton(uint rawButton)
{
Debug.Assert(rawButton is > 0 and <= (int)MouseButton.Count);
return (MouseButton)(rawButton - 1);
}
public void UpdatePosition()
{
_ = SDL_GetMouseState(out float posX, out float posY);
Vector2 position = new(posX, posY);
if (CurrentPosition != position)
{
CurrentPosition = position;
_lastCursorMoveTime = Stopwatch.GetTimestamp();
}
CheckIdle();
}
private void CheckIdle()
{
if (_hideCursorMode != HideCursorMode.OnIdle)
{
return;
}
long cursorMoveDelta = Stopwatch.GetTimestamp() - _lastCursorMoveTime;
if (cursorMoveDelta >= CursorHideIdleTime * Stopwatch.Frequency)
{
if (!_isHidden)
{
if (!SDL_HideCursor())
{
Logger.Error?.PrintMsg(LogClass.Application, "Failed to disable the cursor.");
}
_isHidden = true;
}
}
else
{
if (_isHidden)
{
if (!SDL_HideCursor())
{
Logger.Error?.PrintMsg(LogClass.Application, "Failed to enable the cursor.");
}
_isHidden = false;
}
}
}
public void Update(SDL_Event evnt)
{
var type = (SDL_EventType)evnt.type;
switch (type)
{
case SDL_EventType.SDL_EVENT_MOUSE_BUTTON_DOWN:
case SDL_EventType.SDL_EVENT_MOUSE_BUTTON_UP:
uint rawButton = evnt.button.button;
if (rawButton > 0 && rawButton <= (int)MouseButton.Count)
{
PressedButtons[(int)DriverButtonToMouseButton(rawButton)] = type == SDL_EventType.SDL_EVENT_MOUSE_BUTTON_DOWN;
CurrentPosition = new Vector2(evnt.button.x, evnt.button.y);
}
break;
// NOTE: On Linux using Wayland mouse motion events won't be received at all.
case SDL_EventType.SDL_EVENT_MOUSE_MOTION:
CurrentPosition = new Vector2(evnt.motion.x, evnt.motion.y);
_lastCursorMoveTime = Stopwatch.GetTimestamp();
break;
case SDL_EventType.SDL_EVENT_MOUSE_WHEEL:
Scroll = new Vector2(evnt.wheel.x, evnt.wheel.y);
break;
}
}
public void SetClientSize(int width, int height)
{
ClientSize = new Size(width, height);
}
public bool IsButtonPressed(MouseButton button)
{
return PressedButtons[(int)button];
}
public Size GetClientSize()
{
return ClientSize;
}
public string DriverName => "SDL3";
public event Action<string> OnGamepadConnected
{
add { }
remove { }
}
public event Action<string> OnGamepadDisconnected
{
add { }
remove { }
}
public ReadOnlySpan<string> GamepadsIds => new[] { "0" };
public IGamepad GetGamepad(string id)
{
return new SDL3Mouse(this);
}
public void Dispose()
{
if (_isDisposed)
{
return;
}
GC.SuppressFinalize(this);
_isDisposed = true;
}
}
}

View File

@@ -266,6 +266,7 @@ namespace Ryujinx.Input.HLE
if (motionConfig.MotionBackend != MotionInputBackendType.CemuHook)
{
_leftMotionInput = new MotionInput();
_rightMotionInput = new MotionInput();
}
else
{
@@ -298,7 +299,20 @@ namespace Ryujinx.Input.HLE
if (controllerConfig.ControllerType == ConfigControllerType.JoyconPair)
{
_rightMotionInput = _leftMotionInput;
if (gamepad.Id== "JoyConPair")
{
Vector3 rightAccelerometer = gamepad.GetMotionData(MotionInputId.SecondAccelerometer);
Vector3 rightGyroscope = gamepad.GetMotionData(MotionInputId.SecondGyroscope);
rightAccelerometer = new Vector3(rightAccelerometer.X, -rightAccelerometer.Z, rightAccelerometer.Y);
rightGyroscope = new Vector3(rightGyroscope.X, -rightGyroscope.Z, rightGyroscope.Y);
_rightMotionInput.Update(rightAccelerometer, rightGyroscope, (ulong)PerformanceCounter.ElapsedNanoseconds / 1000, controllerConfig.Motion.Sensitivity, (float)controllerConfig.Motion.GyroDeadzone);
}
else
{
_rightMotionInput = _leftMotionInput;
}
}
}
}
@@ -333,6 +347,7 @@ namespace Ryujinx.Input.HLE
// Reset states
State = default;
_leftMotionInput = null;
_rightMotionInput = null;
}
}
@@ -377,6 +392,11 @@ namespace Ryujinx.Input.HLE
return state;
}
public static JoystickPosition GetJoystickPosition(float x, float y, float deadzone, float range)
{
return ClampToCircle(ApplyDeadzone(x, y,deadzone), range);
}
[MethodImpl(MethodImplOptions.AggressiveInlining)]
private static JoystickPosition ApplyDeadzone(float x, float y, float deadzone)

View File

@@ -21,5 +21,17 @@ namespace Ryujinx.Input
/// </summary>
/// <remarks>Values are in degrees</remarks>
Gyroscope,
/// <summary>
/// Second accelerometer.
/// </summary>
/// <remarks>Values are in m/s^2</remarks>
SecondAccelerometer,
/// <summary>
/// Second gyroscope.
/// </summary>
/// <remarks>Values are in degrees</remarks>
SecondGyroscope
}
}

View File

@@ -25,14 +25,17 @@ namespace Ryujinx.SDL2.Common
public static Action<Action> MainThreadDispatcher { get; set; }
private const uint SdlInitFlags = SDL_INIT_EVENTS | SDL_INIT_GAMECONTROLLER | SDL_INIT_JOYSTICK | SDL_INIT_AUDIO | SDL_INIT_VIDEO;
private const uint SdlInitFlags = SDL_INIT_EVENTS | SDL_INIT_GAMECONTROLLER | SDL_INIT_JOYSTICK |
SDL_INIT_AUDIO | SDL_INIT_VIDEO;
private bool _isRunning;
private uint _refereceCount;
private Thread _worker;
private const uint SDL_JOYBATTERYUPDATED = 1543;
public event Action<int, int> OnJoyStickConnected;
public event Action<int> OnJoystickDisconnected;
public event Action<int, SDL_JoystickPowerLevel> OnJoyBatteryUpdated;
private ConcurrentDictionary<uint, Action<SDL_Event>> _registeredWindowHandlers;
@@ -78,12 +81,14 @@ namespace Ryujinx.SDL2.Common
// First ensure that we only enable joystick events (for connected/disconnected).
if (SDL_GameControllerEventState(SDL_IGNORE) != SDL_IGNORE)
{
Logger.Error?.PrintMsg(LogClass.Application, "Couldn't change the state of game controller events.");
Logger.Error?.PrintMsg(LogClass.Application,
"Couldn't change the state of game controller events.");
}
if (SDL_JoystickEventState(SDL_ENABLE) < 0)
{
Logger.Error?.PrintMsg(LogClass.Application, $"Failed to enable joystick event polling: {SDL_GetError()}");
Logger.Error?.PrintMsg(LogClass.Application,
$"Failed to enable joystick event polling: {SDL_GetError()}");
}
// Disable all joysticks information, we don't need them no need to flood the event queue for that.
@@ -143,7 +148,12 @@ namespace Ryujinx.SDL2.Common
OnJoystickDisconnected?.Invoke(evnt.cbutton.which);
}
else if (evnt.type is SDL_EventType.SDL_WINDOWEVENT or SDL_EventType.SDL_MOUSEBUTTONDOWN or SDL_EventType.SDL_MOUSEBUTTONUP)
else if ((uint)evnt.type == SDL_JOYBATTERYUPDATED)
{
OnJoyBatteryUpdated?.Invoke(evnt.cbutton.which, (SDL_JoystickPowerLevel)evnt.user.code);
}
else if (evnt.type is SDL_EventType.SDL_WINDOWEVENT or SDL_EventType.SDL_MOUSEBUTTONDOWN
or SDL_EventType.SDL_MOUSEBUTTONUP)
{
if (_registeredWindowHandlers.TryGetValue(evnt.window.windowID, out Action<SDL_Event> handler))
{

View File

@@ -0,0 +1,31 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<TargetFramework>net9.0</TargetFramework>
<RootNamespace>Ryujinx.SDL3_CS</RootNamespace>
<ImplicitUsings>enable</ImplicitUsings>
<Nullable>enable</Nullable>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
</PropertyGroup>
<ItemGroup Condition="'$(OS)' == 'Windows_NT'">
<None Include="runtimes\win-x64\native\SDL3.dll">
<CopyToOutputDirectory>PreserveNewest</CopyToOutputDirectory>
<Link>SDL3.dll</Link>
</None>
</ItemGroup>
<!-- <ItemGroup Condition="'$(OS)' == 'Linux'">-->
<!-- <None Include="runtimes\linux-x64\native\SDL3.dll">-->
<!-- <CopyToOutputDirectory>PreserveNewest</CopyToOutputDirectory>-->
<!-- <DestinationFolder>$(ProjectDir)</DestinationFolder>-->
<!-- </None>-->
<!-- </ItemGroup>-->
<!-- <ItemGroup Condition="'$(OS)' == 'Darwin'">-->
<!-- <None Include="runtimes\osx-x64\native\SDL3.dll">-->
<!-- <CopyToOutputDirectory>PreserveNewest</CopyToOutputDirectory>-->
<!-- <DestinationFolder>$(ProjectDir)</DestinationFolder>-->
<!-- </None>-->
<!-- </ItemGroup>-->
</Project>

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@@ -0,0 +1,12 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
</PropertyGroup>
<ItemGroup>
<ProjectReference Include="..\Ryujinx.Common\Ryujinx.Common.csproj" />
<ProjectReference Include="..\Ryujinx.SDL3-CS\Ryujinx.SDL3-CS.csproj" />
</ItemGroup>
</Project>

View File

@@ -0,0 +1,210 @@
using Ryujinx.Common.Configuration;
using Ryujinx.Common.Logging;
using System;
using System.Collections.Concurrent;
using System.Collections.Generic;
using System.IO;
using System.Threading;
using static SDL3.SDL;
namespace Ryujinx.SDL3.Common
{
public class SDL3Driver : IDisposable
{
private static SDL3Driver _instance;
public static SDL3Driver Instance
{
get
{
_instance ??= new SDL3Driver();
return _instance;
}
}
public static Action<Action> MainThreadDispatcher { get; set; }
private const SDL_InitFlags SdlInitFlags = SDL_InitFlags.SDL_INIT_GAMEPAD | SDL_InitFlags.SDL_INIT_AUDIO |
SDL_InitFlags.SDL_INIT_VIDEO;
private bool _isRunning;
private uint _refereceCount;
private Thread _worker;
public event Action<uint> OnJoyStickConnected;
public event Action<uint> OnJoystickDisconnected;
public event Action<uint, SDL_JoyBatteryEvent> OnJoyBatteryUpdated;
private ConcurrentDictionary<uint, Action<SDL_Event>> _registeredWindowHandlers;
private readonly Lock _lock = new();
private SDL3Driver() { }
public void Initialize()
{
lock (_lock)
{
_refereceCount++;
if (_isRunning)
{
return;
}
SDL_SetHint(SDL_HINT_APP_NAME, "Ryujinx");
// SDL_SetHint(SDL_HINT_JOYSTICK_HIDAPI_PS4_RUMBLE, "1");
// SDL_SetHint(SDL_HINT_JOYSTICK_HIDAPI_PS5_RUMBLE, "1");
SDL_SetHint(SDL_HINT_JOYSTICK_ALLOW_BACKGROUND_EVENTS, "1");
SDL_SetHint(SDL_HINT_JOYSTICK_HIDAPI_SWITCH_HOME_LED, "0");
SDL_SetHint(SDL_HINT_VIDEO_ALLOW_SCREENSAVER, "1");
//
//
// // NOTE: As of SDL2 2.24.0, joycons are combined by default but the motion source only come from one of them.
// // We disable this behavior for now.
SDL_SetHint(SDL_HINT_JOYSTICK_HIDAPI_COMBINE_JOY_CONS, "0");
if (!SDL_Init(SdlInitFlags))
{
string errorMessage = $"SDL3 initialization failed with error \"{SDL_GetError()}\"";
Logger.Error?.Print(LogClass.Application, errorMessage);
throw new Exception(errorMessage);
}
// First ensure that we only enable joystick events (for connected/disconnected).
if (!SDL_GamepadEventsEnabled())
{
Logger.Error?.PrintMsg(LogClass.Application,
"Couldn't change the state of game controller events.");
}
if (!SDL_JoystickEventsEnabled())
{
Logger.Error?.PrintMsg(LogClass.Application,
$"Failed to enable joystick event polling: {SDL_GetError()}");
}
// Disable all joysticks information, we don't need them no need to flood the event queue for that.
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_JOYSTICK_AXIS_MOTION, false);
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_JOYSTICK_BALL_MOTION, false);
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_JOYSTICK_HAT_MOTION, false);
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_JOYSTICK_BUTTON_DOWN, false);
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_JOYSTICK_BUTTON_UP, false);
SDL_SetEventEnabled((uint)SDL_EventType.SDL_EVENT_GAMEPAD_SENSOR_UPDATE, false);
string gamepadDbPath = Path.Combine(AppDataManager.BaseDirPath, "SDL_GameControllerDB.txt");
if (File.Exists(gamepadDbPath))
{
SDL_AddGamepadMappingsFromFile(gamepadDbPath);
}
_registeredWindowHandlers = new ConcurrentDictionary<uint, Action<SDL_Event>>();
_worker = new Thread(EventWorker);
_isRunning = true;
_worker.Start();
}
}
public bool RegisterWindow(uint windowId, Action<SDL_Event> windowEventHandler)
{
return _registeredWindowHandlers.TryAdd(windowId, windowEventHandler);
}
public void UnregisterWindow(uint windowId)
{
_registeredWindowHandlers.Remove(windowId, out _);
}
private void HandleSDLEvent(ref SDL_Event evnt)
{
if (evnt.type == (uint)SDL_EventType.SDL_EVENT_GAMEPAD_ADDED)
{
var instanceId = evnt.jdevice.which;
Logger.Debug?.Print(LogClass.Application, $"Added joystick instance id {instanceId}");
OnJoyStickConnected?.Invoke(instanceId);
}
else if (evnt.type == (uint)SDL_EventType.SDL_EVENT_GAMEPAD_REMOVED)
{
var instanceId = evnt.jdevice.which;
Logger.Debug?.Print(LogClass.Application, $"Removed joystick instance id {instanceId}");
OnJoystickDisconnected?.Invoke(instanceId);
}
else if (evnt.type == (uint)SDL_EventType.SDL_EVENT_JOYSTICK_BATTERY_UPDATED)
{
OnJoyBatteryUpdated?.Invoke(evnt.jbattery.which, evnt.jbattery);
}
else if (evnt.type is >= (uint)SDL_EventType.SDL_EVENT_WINDOW_FIRST and <= (uint)SDL_EventType.SDL_EVENT_WINDOW_LAST
or (uint)SDL_EventType.SDL_EVENT_MOUSE_BUTTON_DOWN
or (uint)SDL_EventType.SDL_EVENT_MOUSE_BUTTON_UP)
{
if (_registeredWindowHandlers.TryGetValue(evnt.window.windowID, out Action<SDL_Event> handler))
{
handler(evnt);
}
}
}
private void EventWorker()
{
const int WaitTimeMs = 10;
using ManualResetEventSlim waitHandle = new(false);
while (_isRunning)
{
MainThreadDispatcher?.Invoke(() =>
{
while (SDL_PollEvent(out SDL_Event evnt))
{
HandleSDLEvent(ref evnt);
}
});
waitHandle.Wait(WaitTimeMs);
}
}
protected virtual void Dispose(bool disposing)
{
if (!disposing)
{
return;
}
lock (_lock)
{
if (_isRunning)
{
_refereceCount--;
if (_refereceCount == 0)
{
_isRunning = false;
_worker?.Join();
SDL_Quit();
OnJoyStickConnected = null;
OnJoystickDisconnected = null;
}
}
}
}
public void Dispose()
{
GC.SuppressFinalize(this);
Dispose(true);
}
}
}

View File

@@ -1,36 +0,0 @@
<Project Sdk="Microsoft.NET.Sdk">
<PropertyGroup>
<AllowUnsafeBlocks>true</AllowUnsafeBlocks>
<DefaultItemExcludes>$(DefaultItemExcludes);._*</DefaultItemExcludes>
</PropertyGroup>
<ItemGroup>
<None Remove="Resources\Controller_JoyConLeft.svg" />
<None Remove="Resources\Controller_JoyConPair.svg" />
<None Remove="Resources\Controller_JoyConRight.svg" />
<None Remove="Resources\Controller_ProCon.svg" />
<None Remove="Resources\Icon_NCA.png" />
<None Remove="Resources\Icon_NRO.png" />
<None Remove="Resources\Icon_NSO.png" />
<None Remove="Resources\Icon_NSP.png" />
<None Remove="Resources\Icon_XCI.png" />
<None Remove="Resources\Logo_Amiibo.png" />
<None Remove="Resources\Logo_Discord.png" />
<None Remove="Resources\Logo_GitHub.png" />
<None Remove="Resources\Logo_Ryujinx.png" />
</ItemGroup>
<ItemGroup>
<PackageReference Include="DiscordRichPresence" />
<PackageReference Include="DynamicData" />
<PackageReference Include="securifybv.ShellLink" />
</ItemGroup>
<ItemGroup>
<ProjectReference Include="..\Ryujinx.Common\Ryujinx.Common.csproj" />
<ProjectReference Include="..\Ryujinx.HLE\Ryujinx.HLE.csproj" />
<ProjectReference Include="..\Ryujinx.Graphics.Vulkan\Ryujinx.Graphics.Vulkan.csproj" />
</ItemGroup>
</Project>

View File

@@ -19,7 +19,7 @@ namespace Ryujinx.UI.LocaleGenerator
StringBuilder enumSourceBuilder = new();
enumSourceBuilder.AppendLine("namespace Ryujinx.Ava.Common.Locale;");
enumSourceBuilder.AppendLine("internal enum LocaleKeys");
enumSourceBuilder.AppendLine("public enum LocaleKeys");
enumSourceBuilder.AppendLine("{");
foreach (var line in lines)
{

View File

@@ -3,13 +3,12 @@ using Avalonia.Controls;
using Avalonia.Controls.ApplicationLifetimes;
using Avalonia.Input;
using Avalonia.Threading;
using Gommon;
using LibHac.Common;
using LibHac.Ns;
using LibHac.Tools.FsSystem;
using Ryujinx.Audio.Backends.Dummy;
using Ryujinx.Audio.Backends.OpenAL;
using Ryujinx.Audio.Backends.SDL2;
using Ryujinx.Audio.Backends.SDL3;
using Ryujinx.Audio.Backends.SoundIo;
using Ryujinx.Audio.Integration;
using Ryujinx.Ava.Common;
@@ -43,7 +42,6 @@ using Ryujinx.HLE.HOS.Services.Account.Acc;
using Ryujinx.HLE.HOS.SystemState;
using Ryujinx.Input;
using Ryujinx.Input.HLE;
using Silk.NET.Vulkan;
using SkiaSharp;
using SPB.Graphics.Vulkan;
using System;
@@ -314,7 +312,7 @@ namespace Ryujinx.Ava
_renderer.Window?.ChangeVSyncMode(e.NewValue);
_viewModel.ShowCustomVSyncIntervalPicker = (e.NewValue == VSyncMode.Custom);
_viewModel.UpdateVSyncIntervalPicker();
}
public void VSyncModeToggle()
@@ -491,7 +489,7 @@ namespace Ryujinx.Ava
Dispatcher.UIThread.InvokeAsync(() =>
{
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device.Processes.ActiveApplication, Program.Version);
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device.Processes.ActiveApplication, Program.Version, !ConfigurationState.Instance.ShowTitleBar);
});
_viewModel.SetUiProgressHandlers(Device);
@@ -874,7 +872,7 @@ namespace Ryujinx.Ava
Device?.System.TogglePauseEmulation(false);
_viewModel.IsPaused = false;
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device?.Processes.ActiveApplication, Program.Version);
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device?.Processes.ActiveApplication, Program.Version, !ConfigurationState.Instance.ShowTitleBar);
Logger.Info?.Print(LogClass.Emulation, "Emulation was resumed");
}
@@ -883,7 +881,7 @@ namespace Ryujinx.Ava
Device?.System.TogglePauseEmulation(true);
_viewModel.IsPaused = true;
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device?.Processes.ActiveApplication, Program.Version, LocaleManager.Instance[LocaleKeys.Paused]);
_viewModel.Title = TitleHelper.ActiveApplicationTitle(Device?.Processes.ActiveApplication, Program.Version, !ConfigurationState.Instance.ShowTitleBar, LocaleManager.Instance[LocaleKeys.Paused]);
Logger.Info?.Print(LogClass.Emulation, "Emulation was paused");
}
@@ -959,7 +957,7 @@ namespace Ryujinx.Ava
{
var availableBackends = new List<AudioBackend>
{
AudioBackend.SDL2,
AudioBackend.SDL3,
AudioBackend.SoundIo,
AudioBackend.OpenAl,
AudioBackend.Dummy,
@@ -998,7 +996,7 @@ namespace Ryujinx.Ava
deviceDriver = currentBackend switch
{
AudioBackend.SDL2 => InitializeAudioBackend<SDL2HardwareDeviceDriver>(AudioBackend.SDL2, nextBackend),
AudioBackend.SDL3 => InitializeAudioBackend<SDL3HardwareDeviceDriver>(AudioBackend.SDL3, nextBackend),
AudioBackend.SoundIo => InitializeAudioBackend<SoundIoHardwareDeviceDriver>(AudioBackend.SoundIo, nextBackend),
AudioBackend.OpenAl => InitializeAudioBackend<OpenALHardwareDeviceDriver>(AudioBackend.OpenAl, nextBackend),
_ => new DummyHardwareDeviceDriver(),

View File

@@ -0,0 +1,10 @@
# This is the official list of project authors for copyright purposes.
# This file is distinct from the CONTRIBUTORS.txt file.
# See the latter for an explanation.
#
# Names should be added to this file as:
# Name or Organization <email address>
JetBrains <>
Philipp Nurullin <philipp.nurullin@jetbrains.com>
Konstantin Bulenkov <kb@jetbrains.com>

Binary file not shown.

View File

@@ -0,0 +1,93 @@
Copyright 2020 The JetBrains Mono Project Authors (https://github.com/JetBrains/JetBrainsMono)
This Font Software is licensed under the SIL Open Font License, Version 1.1.
This license is copied below, and is also available with a FAQ at:
https://scripts.sil.org/OFL
-----------------------------------------------------------
SIL OPEN FONT LICENSE Version 1.1 - 26 February 2007
-----------------------------------------------------------
PREAMBLE
The goals of the Open Font License (OFL) are to stimulate worldwide
development of collaborative font projects, to support the font creation
efforts of academic and linguistic communities, and to provide a free and
open framework in which fonts may be shared and improved in partnership
with others.
The OFL allows the licensed fonts to be used, studied, modified and
redistributed freely as long as they are not sold by themselves. The
fonts, including any derivative works, can be bundled, embedded,
redistributed and/or sold with any software provided that any reserved
names are not used by derivative works. The fonts and derivatives,
however, cannot be released under any other type of license. The
requirement for fonts to remain under this license does not apply
to any document created using the fonts or their derivatives.
DEFINITIONS
"Font Software" refers to the set of files released by the Copyright
Holder(s) under this license and clearly marked as such. This may
include source files, build scripts and documentation.
"Reserved Font Name" refers to any names specified as such after the
copyright statement(s).
"Original Version" refers to the collection of Font Software components as
distributed by the Copyright Holder(s).
"Modified Version" refers to any derivative made by adding to, deleting,
or substituting -- in part or in whole -- any of the components of the
Original Version, by changing formats or by porting the Font Software to a
new environment.
"Author" refers to any designer, engineer, programmer, technical
writer or other person who contributed to the Font Software.
PERMISSION & CONDITIONS
Permission is hereby granted, free of charge, to any person obtaining
a copy of the Font Software, to use, study, copy, merge, embed, modify,
redistribute, and sell modified and unmodified copies of the Font
Software, subject to the following conditions:
1) Neither the Font Software nor any of its individual components,
in Original or Modified Versions, may be sold by itself.
2) Original or Modified Versions of the Font Software may be bundled,
redistributed and/or sold with any software, provided that each copy
contains the above copyright notice and this license. These can be
included either as stand-alone text files, human-readable headers or
in the appropriate machine-readable metadata fields within text or
binary files as long as those fields can be easily viewed by the user.
3) No Modified Version of the Font Software may use the Reserved Font
Name(s) unless explicit written permission is granted by the corresponding
Copyright Holder. This restriction only applies to the primary font name as
presented to the users.
4) The name(s) of the Copyright Holder(s) or the Author(s) of the Font
Software shall not be used to promote, endorse or advertise any
Modified Version, except to acknowledge the contribution(s) of the
Copyright Holder(s) and the Author(s) or with their explicit written
permission.
5) The Font Software, modified or unmodified, in part or in whole,
must be distributed entirely under this license, and must not be
distributed under any other license. The requirement for fonts to
remain under this license does not apply to any document created
using the Font Software.
TERMINATION
This license becomes null and void if any of the above conditions are
not met.
DISCLAIMER
THE FONT SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO ANY WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT
OF COPYRIGHT, PATENT, TRADEMARK, OR OTHER RIGHT. IN NO EVENT SHALL THE
COPYRIGHT HOLDER BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
INCLUDING ANY GENERAL, SPECIAL, INDIRECT, INCIDENTAL, OR CONSEQUENTIAL
DAMAGES, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF THE USE OR INABILITY TO USE THE FONT SOFTWARE OR FROM
OTHER DEALINGS IN THE FONT SOFTWARE.

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@@ -402,7 +402,7 @@
<x:Double x:Key="ControlContentThemeFontSize">13</x:Double>
<x:Double x:Key="MenuItemHeight">26</x:Double>
<x:Double x:Key="TabItemMinHeight">28</x:Double>
<x:Double x:Key="ContentDialogMaxWidth">700</x:Double>
<x:Double x:Key="ContentDialogMaxWidth">900</x:Double>
<x:Double x:Key="ContentDialogMaxHeight">756</x:Double>
</Styles.Resources>
</Styles>

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@@ -4,11 +4,11 @@ namespace Ryujinx.Ava.Common
{
public static class ThemeManager
{
public static event EventHandler ThemeChanged;
public static event Action ThemeChanged;
public static void OnThemeChanged()
{
ThemeChanged?.Invoke(null, EventArgs.Empty);
ThemeChanged?.Invoke();
}
}
}

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@@ -1,6 +1,8 @@
using DiscordRPC;
using Gommon;
using Humanizer;
using Humanizer.Localisation;
using Ryujinx.Ava.Utilities;
using Ryujinx.Ava.Utilities.AppLibrary;
using Ryujinx.Ava.Utilities.Configuration;
using Ryujinx.Common;
@@ -45,16 +47,7 @@ namespace Ryujinx.Ava
};
ConfigurationState.Instance.EnableDiscordIntegration.Event += Update;
TitleIDs.CurrentApplication.Event += (_, e) =>
{
if (e.NewValue)
SwitchToPlayingState(
ApplicationLibrary.LoadAndSaveMetaData(e.NewValue),
Switch.Shared.Processes.ActiveApplication
);
else
SwitchToMainState();
};
TitleIDs.CurrentApplication.Event += (_, e) => Use(e.NewValue);
}
private static void Update(object sender, ReactiveEventArgs<bool> evnt)
@@ -75,11 +68,23 @@ namespace Ryujinx.Ava
_discordClient = new DiscordRpcClient(ApplicationId);
_discordClient.Initialize();
_discordClient.SetPresence(_discordPresenceMain);
Use(TitleIDs.CurrentApplication);
}
}
}
public static void Use(Optional<string> titleId)
{
if (titleId.TryGet(out string tid))
SwitchToPlayingState(
ApplicationLibrary.LoadAndSaveMetaData(tid),
Switch.Shared.Processes.ActiveApplication
);
else
SwitchToMainState();
}
private static void SwitchToPlayingState(ApplicationMetadata appMeta, ProcessResult procRes)
{
_discordClient?.SetPresence(new RichPresence
@@ -93,7 +98,7 @@ namespace Ryujinx.Ava
},
Details = TruncateToByteLength($"Playing {appMeta.Title}"),
State = appMeta.LastPlayed.HasValue && appMeta.TimePlayed.TotalSeconds > 5
? $"Total play time: {appMeta.TimePlayed.Humanize(2, false, maxUnit: TimeUnit.Hour)}"
? $"Total play time: {ValueFormatUtils.FormatTimeSpan(appMeta.TimePlayed)}"
: "Never played",
Timestamps = Timestamps.Now
});

View File

@@ -1,6 +1,6 @@
using DiscordRPC;
using DiscordRPC;
using LibHac.Tools.FsSystem;
using Ryujinx.Audio.Backends.SDL2;
using Ryujinx.Audio.Backends.SDL3;
using Ryujinx.Ava;
using Ryujinx.Ava.Utilities.Configuration;
using Ryujinx.Common.Configuration;
@@ -157,7 +157,7 @@ namespace Ryujinx.Headless
config = new StandardControllerInputConfig
{
Version = InputConfig.CurrentVersion,
Backend = InputBackendType.GamepadSDL2,
Backend = InputBackendType.GamepadSDL3,
Id = null,
ControllerType = ControllerType.JoyconPair,
DeadzoneLeft = 0.1f,
@@ -335,7 +335,7 @@ namespace Ryujinx.Headless
_accountManager,
_userChannelPersistence,
renderer,
new SDL2HardwareDeviceDriver(),
new SDL3HardwareDeviceDriver(),
options.DramSize,
window,
options.SystemLanguage,

View File

@@ -21,8 +21,8 @@ using Ryujinx.HLE.HOS;
using Ryujinx.HLE.HOS.Services.Account.Acc;
using Ryujinx.Input;
using Ryujinx.Input.HLE;
using Ryujinx.Input.SDL2;
using Ryujinx.SDL2.Common;
using Ryujinx.Input.SDL3;
using Ryujinx.SDL3.Common;
using System;
using System.Collections.Generic;
using System.IO;
@@ -52,14 +52,14 @@ namespace Ryujinx.Headless
// Make process DPI aware for proper window sizing on high-res screens.
ForceDpiAware.Windows();
Console.Title = $"Ryujinx Console {Program.Version} (Headless)";
Console.Title = $"HeadlessRyujinx Console {Program.Version}";
if (OperatingSystem.IsMacOS() || OperatingSystem.IsLinux())
{
AutoResetEvent invoked = new(false);
// MacOS must perform SDL polls from the main thread.
SDL2Driver.MainThreadDispatcher = action =>
SDL3Driver.MainThreadDispatcher = action =>
{
invoked.Reset();
@@ -162,6 +162,11 @@ namespace Ryujinx.Headless
}
ReloadConfig();
if (option.InheritConfig)
{
option.InheritMainConfigInput(originalArgs, ConfigurationState.Instance);
}
_virtualFileSystem = VirtualFileSystem.CreateInstance();
_libHacHorizonManager = new LibHacHorizonManager();
@@ -175,7 +180,7 @@ namespace Ryujinx.Headless
_accountManager = new AccountManager(_libHacHorizonManager.RyujinxClient, option.UserProfile);
_userChannelPersistence = new UserChannelPersistence();
_inputManager = new InputManager(new SDL2KeyboardDriver(), new SDL2GamepadDriver());
_inputManager = new InputManager(new SDL3KeyboardDriver(), new SDL3GamepadDriver());
GraphicsConfig.EnableShaderCache = !option.DisableShaderCache;
@@ -223,16 +228,6 @@ namespace Ryujinx.Headless
_inputConfiguration ??= [];
_enableKeyboard = option.EnableKeyboard;
_enableMouse = option.EnableMouse;
static void LoadPlayerConfiguration(string inputProfileName, string inputId, PlayerIndex index)
{
InputConfig inputConfig = HandlePlayerConfiguration(inputProfileName, inputId, index);
if (inputConfig != null)
{
_inputConfiguration.Add(inputConfig);
}
}
LoadPlayerConfiguration(option.InputProfile1Name, option.InputId1, PlayerIndex.Player1);
LoadPlayerConfiguration(option.InputProfile2Name, option.InputId2, PlayerIndex.Player2);
@@ -244,7 +239,6 @@ namespace Ryujinx.Headless
LoadPlayerConfiguration(option.InputProfile8Name, option.InputId8, PlayerIndex.Player8);
LoadPlayerConfiguration(option.InputProfileHandheldName, option.InputIdHandheld, PlayerIndex.Handheld);
if (_inputConfiguration.Count == 0)
{
return;
@@ -305,7 +299,28 @@ namespace Ryujinx.Headless
_userChannelPersistence.ShouldRestart = false;
}
_inputManager.Dispose();
try
{
_inputManager.Dispose();
} catch {}
return;
void LoadPlayerConfiguration(string inputProfileName, string inputId, PlayerIndex index)
{
if (index == PlayerIndex.Handheld && _inputConfiguration.Count > 0)
{
Logger.Info?.Print(LogClass.Configuration, "Skipping handheld configuration as there are already other players configured.");
return;
}
InputConfig inputConfig = option.InheritedInputConfigs[index] ?? HandlePlayerConfiguration(inputProfileName, inputId, index);
if (inputConfig != null)
{
_inputConfiguration.Add(inputConfig);
}
}
}
private static void SetupProgressHandler()
@@ -324,12 +339,12 @@ namespace Ryujinx.Headless
{
string label = state switch
{
LoadState => $"PTC : {current}/{total}",
ShaderCacheState => $"Shaders : {current}/{total}",
_ => throw new ArgumentException($"Unknown Progress Handler type {typeof(T)}"),
LoadState => "PTC",
ShaderCacheState => "Shaders",
_ => throw new ArgumentException($"Unknown Progress Handler type {typeof(T)}")
};
Logger.Info?.Print(LogClass.Application, label);
Logger.Info?.Print(LogClass.Application, $"{label} : {current}/{total}");
}
private static WindowBase CreateWindow(Options options)

View File

@@ -154,10 +154,37 @@ namespace Ryujinx.Headless
return;
bool NeedsOverride(string argKey) => originalArgs.None(arg => arg.TrimStart('-').EqualsIgnoreCase(OptionName(argKey)));
string OptionName(string propertyName) =>
typeof(Options)!.GetProperty(propertyName)!.GetCustomAttribute<OptionAttribute>()!.LongName;
}
public void InheritMainConfigInput(string[] originalArgs, ConfigurationState configurationState)
{
Dictionary<PlayerIndex, (string InputId, string InputProfileName)> indicesToProperties = new()
{
{ PlayerIndex.Handheld, (nameof(InputIdHandheld), nameof(InputProfileHandheldName)) },
{ PlayerIndex.Player1, (nameof(InputId1), nameof(InputProfile1Name)) },
{ PlayerIndex.Player2, (nameof(InputId2), nameof(InputProfile2Name)) },
{ PlayerIndex.Player3, (nameof(InputId3), nameof(InputProfile3Name)) },
{ PlayerIndex.Player4, (nameof(InputId4), nameof(InputProfile4Name)) },
{ PlayerIndex.Player5, (nameof(InputId5), nameof(InputProfile5Name)) },
{ PlayerIndex.Player6, (nameof(InputId6), nameof(InputProfile6Name)) },
{ PlayerIndex.Player7, (nameof(InputId7), nameof(InputProfile7Name)) },
{ PlayerIndex.Player8, (nameof(InputId8), nameof(InputProfile8Name)) }
};
foreach ((PlayerIndex playerIndex, _) in indicesToProperties
.Where(it => NeedsOverride(it.Value.InputId) && NeedsOverride(it.Value.InputProfileName)))
{
configurationState.Hid.InputConfig.Value.FindFirst(x => x.PlayerIndex == playerIndex)
.IfPresent(ic => InheritedInputConfigs[playerIndex] = ic);
}
return;
bool NeedsOverride(string argKey) => originalArgs.None(arg => arg.TrimStart('-').EqualsIgnoreCase(OptionName(argKey)));
}
private static string OptionName(string propertyName) =>
typeof(Options)!.GetProperty(propertyName)!.GetCustomAttribute<OptionAttribute>()!.LongName;
// General
@@ -391,5 +418,7 @@ namespace Ryujinx.Headless
[Value(0, MetaName = "input", HelpText = "Input to load.", Required = true)]
public string InputPath { get; set; }
public SafeDictionary<PlayerIndex, InputConfig> InheritedInputConfigs = new();
}
}

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@@ -1,21 +0,0 @@
using System;
namespace Ryujinx.Headless
{
class StatusUpdatedEventArgs(
string vSyncMode,
string dockedMode,
string aspectRatio,
string gameStatus,
string fifoStatus,
string gpuName)
: EventArgs
{
public string VSyncMode = vSyncMode;
public string DockedMode = dockedMode;
public string AspectRatio = aspectRatio;
public string GameStatus = gameStatus;
public string FifoStatus = fifoStatus;
public string GpuName = gpuName;
}
}

View File

@@ -1,9 +1,9 @@
using Ryujinx.Common.Configuration;
using Ryujinx.Input.HLE;
using Ryujinx.SDL2.Common;
using Ryujinx.SDL3.Common;
using SharpMetal.QuartzCore;
using System.Runtime.Versioning;
using static SDL2.SDL;
using static SDL3.SDL;
namespace Ryujinx.Headless
{
@@ -26,7 +26,7 @@ namespace Ryujinx.Headless
bool ignoreControllerApplet)
: base(inputManager, glLogLevel, aspectRatio, enableMouse, hideCursorMode, ignoreControllerApplet) { }
public override SDL_WindowFlags GetWindowFlags() => SDL_WindowFlags.SDL_WINDOW_METAL;
public override SDL_WindowFlags WindowFlags => SDL_WindowFlags.SDL_WINDOW_METAL;
protected override void InitializeWindowRenderer()
{
@@ -35,7 +35,7 @@ namespace Ryujinx.Headless
_caMetalLayer = new CAMetalLayer(SDL_Metal_GetLayer(SDL_Metal_CreateView(WindowHandle)));
}
SDL2Driver.MainThreadDispatcher?.Invoke(CreateLayer);
SDL3Driver.MainThreadDispatcher?.Invoke(CreateLayer);
}
protected override void InitializeRenderer() { }

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