mirror of
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No files matched your search
@@ -5,6 +5,15 @@ on:
|
||||
tags: ["v*"]
|
||||
pull_request:
|
||||
workflow_dispatch:
|
||||
inputs:
|
||||
dev:
|
||||
description: "Publish the bundles as the dev build (testers: Settings → Updates → Install the latest dev build)"
|
||||
type: boolean
|
||||
default: true
|
||||
notes:
|
||||
description: "What testers should try (shown before they install it)"
|
||||
type: string
|
||||
default: ""
|
||||
|
||||
jobs:
|
||||
test:
|
||||
@@ -50,6 +59,9 @@ jobs:
|
||||
if: runner.os == 'Linux'
|
||||
run: sudo apt-get update && sudo apt-get install -y ninja-build libgtk-3-dev
|
||||
- run: uv sync --extra dev
|
||||
- name: Dev build version (next patch + .dev<run number>; not committed)
|
||||
if: github.event_name == 'workflow_dispatch' && inputs.dev
|
||||
run: uv run --no-project python scripts/dev_version.py ${{ github.run_number }}
|
||||
- id: flet
|
||||
run: uv run python scripts/package.py
|
||||
continue-on-error: ${{ runner.os == 'macOS' || runner.arch == 'ARM64' }}
|
||||
@@ -84,8 +96,27 @@ jobs:
|
||||
if: runner.os == 'macOS'
|
||||
run: |
|
||||
app=$(find dist -maxdepth 3 -name "*.app" -type d | head -1)
|
||||
codesign --force --deep --sign - "$app"
|
||||
# Re-signing replaces the signature, entitlements included: pass them again, or the file picker refuses to
|
||||
# open ("ENTITLEMENT_NOT_FOUND", GitHub #63). flet build writes them to Release.entitlements; the
|
||||
# PyInstaller fallback has none, so it gets the same set.
|
||||
ent=build/flutter/macos/Runner/Release.entitlements
|
||||
if [ ! -f "$ent" ]; then
|
||||
ent="$RUNNER_TEMP/FramePort.entitlements"
|
||||
cat > "$ent" <<'EOF'
|
||||
<?xml version="1.0" encoding="UTF-8"?>
|
||||
<!DOCTYPE plist PUBLIC "-//Apple//DTD PLIST 1.0//EN" "http://www.apple.com/DTDs/PropertyList-1.0.dtd">
|
||||
<plist version="1.0"><dict>
|
||||
<key>com.apple.security.cs.allow-jit</key><true/>
|
||||
<key>com.apple.security.cs.allow-unsigned-executable-memory</key><true/>
|
||||
<key>com.apple.security.network.client</key><true/>
|
||||
<key>com.apple.security.network.server</key><true/>
|
||||
<key>com.apple.security.files.user-selected.read-write</key><true/>
|
||||
</dict></plist>
|
||||
EOF
|
||||
fi
|
||||
codesign --force --deep --sign - --entitlements "$ent" "$app"
|
||||
codesign --verify --deep --strict --verbose=2 "$app"
|
||||
codesign -d --entitlements - "$app" 2>/dev/null | tee /dev/stderr | grep -q "files.user-selected.read-write"
|
||||
|
||||
# ---- package (archives keep permissions/symlinks) + provenance ----
|
||||
- name: Package (Windows)
|
||||
@@ -148,3 +179,43 @@ jobs:
|
||||
echo; cat packaging/release-footer.md; } > "$notes" # short: the update dialog shows these notes
|
||||
gh release delete "$tag" --yes 2>/dev/null || true
|
||||
gh release create "$tag" out/* packaging/FramePort-selfsigned.cer --title "FramePort ${tag}" --notes-file "$notes"
|
||||
|
||||
dev-release:
|
||||
# "Run workflow" with dev ticked: replaces the rolling `dev` pre-release (never shown by the automatic update check;
|
||||
# testers install it from Settings → Updates). Same assets + SHA256SUMS as a release.
|
||||
if: github.event_name == 'workflow_dispatch' && inputs.dev
|
||||
needs: bundle
|
||||
runs-on: ubuntu-latest
|
||||
permissions:
|
||||
contents: write
|
||||
steps:
|
||||
- uses: actions/checkout@v7
|
||||
with:
|
||||
fetch-depth: 0
|
||||
- uses: astral-sh/setup-uv@v10.2.0
|
||||
- id: version
|
||||
run: echo "version=$(uv run --no-project python scripts/dev_version.py ${{ github.run_number }})" >> "$GITHUB_OUTPUT"
|
||||
- uses: actions/download-artifact@v8
|
||||
with:
|
||||
path: out
|
||||
merge-multiple: true
|
||||
- name: Wheel
|
||||
run: uv build --wheel -o out && ls out
|
||||
- name: Checksums
|
||||
run: cd out && sha256sum * > SHA256SUMS.txt && cat SHA256SUMS.txt
|
||||
- name: Publish the dev build
|
||||
env:
|
||||
GH_TOKEN: ${{ github.token }}
|
||||
VERSION: ${{ steps.version.outputs.version }}
|
||||
NOTES: ${{ inputs.notes }}
|
||||
run: |
|
||||
notes=$(mktemp)
|
||||
last=$(git describe --tags --abbrev=0 --match 'v*' 2>/dev/null || true)
|
||||
{ echo "Dev build **${VERSION}** from commit ${GITHUB_SHA::7} ($(date -u +%Y-%m-%d)). For testing fixes before"
|
||||
echo "the next release; you get that release as a normal update."; echo
|
||||
if [ -n "$NOTES" ]; then echo "## Please test"; echo; echo "$NOTES"; echo; fi
|
||||
if [ -n "$last" ]; then echo "## Changes since ${last}"; echo
|
||||
git log --no-merges --format='- %s' "${last}..HEAD" | cut -c1-160 | head -40; fi; } > "$notes"
|
||||
gh release delete dev --yes --cleanup-tag 2>/dev/null || true
|
||||
gh release create dev out/* packaging/FramePort-selfsigned.cer --prerelease --target "$GITHUB_SHA" \
|
||||
--title "FramePort dev build ${VERSION}" --notes-file "$notes"
|
||||
@@ -19,3 +19,4 @@ CLAUDE.local.md
|
||||
# outputs of `frameport report` / `parity` / ruff
|
||||
REPORT.md
|
||||
.ruff_cache/
|
||||
.claude/worktrees/
|
||||
@@ -21,7 +21,27 @@ Read `docs/PLAYBOOK.md` (symptom → fix) before debugging a game, and `docs/FRA
|
||||
the "Send files" dialog, game menu → "Add videos & files…" = `go("files", pkg)`; multi-select bar (download/
|
||||
delete); drag-and-drop from the OS via the `flet-dropzone` extension (Apache-2.0, Flutter `desktop_drop`), which
|
||||
only a `flet build` bundle contains: `files.dropzone_available()` keeps it out of source runs and the PyInstaller
|
||||
fallback, which would show an unknown control); settings; welcome; activity panel).
|
||||
fallback, which would show an unknown control); screenshots (Steam screenshots on the Frame, `install/screenshots.py`
|
||||
+ agent v46 `list_screenshots`/`delete_screenshots`: the Frame files every headset shot under SteamVR 250820, so
|
||||
launch.sh logs `start/end <unix>` to `<anchor>/plays.log` (upgrade_launchers adds it; Proton launchers exec → start
|
||||
only) and shots are matched by time; thumbnails cached in `<data>/screenshots-cache/<frame>/`, shown by asset URL;
|
||||
delete leaves screenshots.vdf alone (Steam rewrites it at exit); game menu → "Screenshots" = `go("screenshots",
|
||||
pkg)`); live view (`views/live.py` + `install/livestream.py`: the Frame's built-in SteamVR "headset view" webcam
|
||||
(`steamvr-v4l2cam.service` → v4l2loopback "SteamVR" /dev/video99, see docs/FRAME_RUNTIME.md) + the default
|
||||
output's pulse monitor (sound) → ffmpeg/x264 + AAC (qualities scale down only; "full" = SteamVR's size) →
|
||||
fragmented MP4 on an SSH exec channel's stdout (the script stops ffmpeg on stdin EOF) → relay on 127.0.0.1 (keeps
|
||||
init + fragments since the last keyframe of the *video* track for late viewers) → player page
|
||||
`install/live_player.py` (MSE; starts muted as browsers require, "Sound on" button; 0.3 s cushion, catches up at
|
||||
1.1x, seeks only when >2 s behind: seeking to the very edge starved it) opened
|
||||
in the user's default browser: Flet can't show video outside `flet build` bundles; the stream outlives the tab and
|
||||
stops on disconnect/window close); settings; welcome; activity panel). Files, Screenshots and the Library share right-click menus
|
||||
(one `ft.ContextMenu` per view, filled on right-click; on one of several selected items they act on the whole
|
||||
selection, `C.menu_targets`) and click-and-drag multi-select (`C.DragSelect`: pan start/end on the area + item
|
||||
hover events, which Flutter also sends with the button held; Flet can't report item positions, so no rubber band).
|
||||
Selection bars sit below the list: above it, their appearing shifted the items mid-drag. Async handlers (they
|
||||
await a FilePicker) must be coroutine functions or go through `page.run_task`: Flet doesn't await a lambda's
|
||||
coroutine (the Files row Download button silently did nothing). `ui_smoke.py --fake-frame --gestures` drives real
|
||||
mouse drags/right-clicks.
|
||||
User tags live in library entries (`tags`), filters in library setting `ui.library`.
|
||||
**Performance rules** (the app froze before): never put image bytes in controls — artwork is served by URL from the
|
||||
GUI assets dir (= user data dir; `ft.run(assets_dir=…)`), as thumbnails (`artwork/thumbs.py`, Pillow); the
|
||||
@@ -76,6 +96,11 @@ Rick and Morty runs on the Frame via its catalog recipe (OpenVR, no Revive),
|
||||
auto-start SteamVR on Play (`winhost.start_steamvr`); the Frame launcher always uses `/openxr`. UI (`game.py`
|
||||
where()) states per-game where it runs; installing an Oculus game on the Frame shows a warning. Migration
|
||||
`rift_frame_native` re-analyzes + re-derives existing entries.
|
||||
- Own artwork (0.8.0): game menu → "Use your own artwork…" (also from the Find artwork dialog) =
|
||||
`views/art_dialog.show_custom_art_dialog`: one slot per kind (portrait/landscape/hero/logo/icon), FilePicker →
|
||||
`sources.apply_custom` (Pillow check, ≥64 px, ≤40 MB, scaled to ≤3840 px, PNG if alpha/logo/icon else JPEG,
|
||||
replaces only that kind + its thumbnails, drops the generated cover/banner, writes `.picked` = "custom") /
|
||||
`remove_custom`; Steam shapes are still composed from what exists (`steam.py` PREFER).
|
||||
- Art for Rift games: `artwork/sources.py` — Quest version package (OculusDB packageName, exact name or +
|
||||
"Unplugged"-type suffix, never sequels) → Meta art; OculusDB square cover; Steam (exact names only); exe icon.
|
||||
- Store details (`artwork/details.py`, entry `details`): OculusDB (description, genres, publisher, website; by Quest
|
||||
@@ -86,6 +111,15 @@ Rick and Morty runs on the Frame via its catalog recipe (OpenVR, no Revive),
|
||||
set: the name on a colour from the title hash + the APK icon, `steam_set_for`; 2D Android apps get no store lookups) and tags: how it runs, the original platform
|
||||
(Meta Quest / Oculus Rift), genres, user tags — merged with tags set in Steam (non-Steam shortcuts can't hold a
|
||||
description).
|
||||
- Linux apps (GitHub #31, library kind `linux`, `linux.<slug>`; x86_64 builds run through FEX (app 3127680, no SLR:
|
||||
RootFS /usr/share/guestos/fex-mesa from the OS image; needs `STEAM_COMPAT_DATA_PATH`, see docs/FRAME_RUNTIME.md):
|
||||
agent v61 `linux_x86_tools`/`pick_tool`, `install_proton`/`proton_status` `kind: linux_x86`, `finalize_linux
|
||||
x86_64`, `installer.ensure_proton(kind=)`; an arm64 program wins over an x86_64 one): GUI = Add
|
||||
games → "Add a Linux app…" /
|
||||
"…folder…" (`app.add_linux` job → `pipeline.add_linux_app`); game page `linux_summary` (program + Change…, AppImage,
|
||||
OpenXR, source) instead of recipe/patches, `C.missing_libraries` callout (Frame deployment, else last install);
|
||||
no Analyze/Rebuild/recipe/share/Game settings actions, Frame only; platform "Linux" badge + library filter; Steam
|
||||
tags "Linux app on Frame"/"Linux"; `_follow_catalog` skips them; local files of a lone AppImage = the file only.
|
||||
- Quest/Rift twins stay separate entries, shown and named in Steam "Title (Quest)"/"(Rift)" (`core/titles.py`).
|
||||
- `Recipe.as_is` = install unchanged (pre-patched libraries): `pipeline.prepare_as_is`; auto for APKs that already
|
||||
contain FrameBridge (`frame_patched`). For Rift it changes nothing (the dump is never modified; the Frame copy
|
||||
@@ -147,7 +181,7 @@ Rick and Morty runs on the Frame via its catalog recipe (OpenVR, no Revive),
|
||||
- `agent/frameport_agent.py` — runs **on the Frame** (python3 stdlib only), JSON over SSH. Owns the install layout,
|
||||
launch.sh template, Steam shortcuts (binary VDF), launch tests. Bump `AGENT_VERSION` when changing it.
|
||||
- `bootstrap/bootstrap.sh` — one-time Frame setup served by the pairing server (sshd, app key, avahi service, Lepton).
|
||||
- `catalog/games/<package>.yaml` — 38 recipes (34 verified 2026-09-28; Deadpool VR, 4XVR, NEX Player and AC Nexus's
|
||||
- `catalog/games/<package>.yaml` (installed apps also fetch these from GitHub `main`, see "Catalog updates") — 38 recipes (34 verified 2026-09-28; Deadpool VR, 4XVR, NEX Player and AC Nexus's
|
||||
90 Hz default confirmed later by the owner); `catalog/triage.yaml` — log signatures → fixes.
|
||||
- `native/` — sources of the prebuilt binaries in `artifacts/` (adapter, VrApi bridge patches, GL shim, stubs).
|
||||
`native/build.py` rebuilds them with NDK r27c (downloaded on demand into `native/.cache`, git-ignored; uses
|
||||
@@ -383,7 +417,7 @@ GPU. Learned in the headset: quads can't be a background (the Frame draws quad l
|
||||
whatever the order: hid 4XVR's balcony/controllers), and the Frame doesn't reproject a projection layer from its own
|
||||
pose (images drawn only after head turns, or ahead from xrWaitFrame and sometimes late, wobbled);
|
||||
`equirect_flip/face/res/fps/stereo`), `stable_local`, `focus_hold` (only after 3 s FOCUSED, dips <600 ms),
|
||||
`aim_pitch/aim_yaw/aim_forward`, `refresh_rate`, `layer_debug` (diagnostics). 4XVR re-creates LOCAL spaces every 2–4 s
|
||||
`aim_pitch/aim_yaw/aim_forward`, `refresh_rate`, `layer_debug` (diagnostics); focus_hold is default-on since 2026-10-05. 4XVR re-creates LOCAL spaces every 2–4 s
|
||||
(menu recentring suspect); its theatres are baked 7680×3840 equirect2 images (`assets/100.png` …). Test 360° videos
|
||||
(NASA, public domain) are in the Frame's ~/Videos; copies in `~/Downloads/frameport-360`. 4XVR's "Internal Storage"
|
||||
lists its own `/sdcard/4XPlayer`, not Movies: agent v25 `link_media` hard-links sent files into an app's own top-level
|
||||
@@ -424,15 +458,199 @@ recommended level" → Lucky's Tale restarted the headset; `OVRDisplay.get_recom
|
||||
right eye grey). Both checked against Toy Master's Cpp2IL output, not yet in a headset. VR4 quits itself (System.exit
|
||||
after the intro movie) → catalog `use_alt`. **Catalog changes reach existing games** without hardcoded migrations:
|
||||
recipes store `catalog_rev` (= `CatalogEntry.rev()`), `library._follow_catalog` re-derives non-user recipes whose entry
|
||||
changed; a maintained entry beats the user's shared copy when its `updated`/verified date is later (`catalog._newer`). Unity `boot.config` "vulkan" substring mislabels GLES games as Vulkan
|
||||
changed; a maintained entry beats the user's shared copy when its `updated`/verified date is later (`catalog._newer`).
|
||||
**Round 2 of reports (2026-10-04):** VR4's campaign hang = one fragment shader reading an uninitialized loop counter
|
||||
(reporter's capture): vkshim `vk_shader_fix` setting (`<size>:<sha256>:<offset>:<words>`, from the recipe's `adapter:`;
|
||||
matched by size + SHA-256, words inserted into a copy) — on the device the module is fixed at load ("fixed shader
|
||||
module (6488 -> 6512 bytes)"); campaign itself not yet seen in a headset by us. Text settings (kind "str") stay out of
|
||||
the Game settings dialog (saving it dropped them). I Am Cat: `GetStereoRenderingMode` is inlined (no call sites) →
|
||||
`Il2cppReturnPatch.field_loads` rewrites the field read in `OculusLoader.Initialize` (Cpp2IL gives the field offset,
|
||||
`field:<name>`); verified with Toy Master: eye swapchains array=1 ×2 instead of array=2. Builds record `recipe_fp`
|
||||
(`patches/base.recipe_fingerprint`, `Patch.revision`): a changed recipe or revised patch shows "Update on Frame".
|
||||
Remembered Frames are found again after an address change (`Frame.relocate`: scan, same SSH host key, before
|
||||
login). Packaged apps show artwork by file path (`thumbs.use_file_paths`, #16). Diagnostics: this boot's kernel log.
|
||||
Device tests of requested games (2026-10-04, headless): I Am Cat, Myst 3.3.0, BattleGlide, Blade & Sorcery: Nomad
|
||||
start (RUNNING, frames). Roblox: SIGSEGV in je_free from libroblox.so ~3 s in (likely its anti-tamper vs the re-signed
|
||||
APK). BONELAB (Unity 2021.3 Vulkan, OVRPlugin 1.94): SIGSEGV with pc == fault addr in vkCreateInstance, called from
|
||||
libSLZQuestNative.so's Vulkan hooks into an unmapped (unloaded) library right after OVRPlugin's pre-init
|
||||
xrDestroyInstance; pinning openxr/vrclient libraries (RTLD_NODELETE) did NOT help — find the unloaded library with the
|
||||
linker's dlopen/dlclose logging next. Accounting+ (Unity 2017.4 built-in Oculus, libOVRPlugin + libvrapi): Unity
|
||||
never starts VR on the Frame (no OVRPlugin/OpenXR lines; runs as a 2D app), which is why its "controller setup"
|
||||
screen can't be passed — Unity 2017's Oculus device check, not the controller profiles. Cpp2IL can't read Unity 2017.
|
||||
The Frame's Android runtime (vrclient.so) knows oculus/touch_controller but not Meta's Touch Plus/Pro profiles
|
||||
(OVRPlugin suggests those too, routinely) → adapter `profile_remap`.
|
||||
Headset round 2 (2026-10-04): the Frame drops focus often (ms to 7 s; only some are presence/standby) → games pause
|
||||
or recentre (B&S Player.OnVRPresence → Teleport, BattleGlide/Unreal pauses); focus_hold now 1 s focused / 1 s max dip
|
||||
(longer must still pause). Myst crash = vrclient xrSyncActions race after FOCUSED → `sync_guard` (confirmed); its
|
||||
object glitches: app space warp suspected (FB_space_warp is advertised and used) → recipe `patch_disable_space_warp`.
|
||||
I Am Cat multipass: poses/times consistent, but every frame is submitted after the next xrWaitFrame (one period late;
|
||||
Zink + doubled draws) and the game clamps its physics step to 10 ms → judder while still; testing scale 0.8. Roblox's
|
||||
newest crash is on Fossilize's recording thread → vk_sanitize extended to own-engine libs (engine "Other").
|
||||
Accounting+: unity_oculus_check + native/ovrpshim (libfp_ovrp.so waits via ovrp_WaitToBeginFrame before Unity
|
||||
2017's ovrp_Update2) → VR in the headset at ~72 fps (2026-10-04), but stuck at "press any button" although input
|
||||
reaches its OVRInput cleanly (probe: both Touch connected 0x63, individual buttons, input focus 1) → works with issues.
|
||||
"outside of frame bounds" warnings stay (~2/frame) and are harmless.
|
||||
Steam library (GitHub #4/#21/#27, agent v38): shortcuts go to every Steam account (signed-in first; MostRecent isn't
|
||||
always the account on the Frame); stop_steam also waits for Steam's helpers; after the restart the agent re-reads
|
||||
shortcuts.vdf and writes once more if Steam put its old copy back (`shortcuts_lost`), else reports it. 0.6.3's Play
|
||||
auto-repair (`_add_then_play`) crashed (its job got a Job, not a reporter). Uploads resume on a transient OSError.
|
||||
Lepton's Android 11 has no clipboard service (134 services; checked with `podman exec … service check clipboard`):
|
||||
SDL/LÖVE apps crashed at start → `frame.sdl_clipboard` (`apk/dex.py`: in-place dex edit, nops one invoke, fixes
|
||||
the header checksum/signature; verified with LÖVE for Android 11.5, GitHub #24 Dramatic Shape). 2D apps (vr_kind none)
|
||||
keep every suggested patch that isn't about VR (`needs_vr = False`), not a fixed list. FramePort on the Frame:
|
||||
`frame/local.py` (127.0.0.1, own key authorized; "This Frame (experimental)"; app data in
|
||||
~/.local/share/frameport-app because ~/.local/share/frameport is the agent's) and Steam library changes wait while
|
||||
Desktop Mode is open. Verified on the device 2026-10-04 (install + launch test from the Frame). Library updates on the
|
||||
Frame run one at a time (agent v40 flock): two quick uninstalls used to bring a removed shortcut back (Roblox).
|
||||
Headset round 3 (owner's verdicts, 2026-10-04): Blade & Sorcery works — its freezes were the headset's wear sensor
|
||||
flickering off while worn (vrserver.txt "HMD off/on" 0.5-2 s) → per-game `focus_hold_ms=2500` (only this game reacts;
|
||||
not a default). BattleGlide works (focus_hold). Myst works with issues (object glitches; space warp ruled out, its
|
||||
recipe keeps it on). I Am Cat works with issues (judder; scale 0.8 no help). Roblox unsupported (je_free in
|
||||
libroblox, also with the Vulkan shim). Installs skip the Steam restart when the shortcut is unchanged and wait while a
|
||||
game runs (agent v37). New default fixes in FramePort's code reach games already in a library: after every app update
|
||||
`library._follow_catalog` re-derives each non-user recipe once (setting `recipes.app_version`; tests switch it off via
|
||||
`library.REFRESH_ON_UPDATE`); analysis fields added later still need a re-analysis. Troubleshooting techniques: docs/PLAYBOOK.md "Debugging techniques". Unity `boot.config` "vulkan" substring mislabels GLES games as Vulkan
|
||||
(I Am Cat ran GLES); OVRPlugin's "Unavailable OpenXR extension: XR_FB_scene" is routine (no longer triaged).
|
||||
**Round 4 (2026-10-04):** XR_KHR_android_surface_swapchain is listed by the Frame's runtime but returns
|
||||
FUNCTION_UNSUPPORTED → adapter `surface_emul` (default on, `native/adapter/surface_swapchain.c`): an ordinary runtime
|
||||
swapchain is returned, the game gets a Surface from a SurfaceTexture on a worker thread (own EGL context, JavaVM from
|
||||
XrInstanceCreateInfoAndroidKHR), frames are read back (glReadPixels) and uploaded in xrEndFrame (Vulkan: own command
|
||||
buffer + fence per panel, never waits; GLES: glTexSubImage2D). I Am Monkey's intro works (owner-confirmed). SUPERHOT
|
||||
(Quest) quit at start: its cloud save folder was mode 1700 and Lepton's app writes through the folder's group →
|
||||
launch.sh `fix_perms` adds u+rwx,g+rwx (agent v41). Lucky's Tale: Unity's Loading.PreloadManager thread grows the
|
||||
native heap ~1 GB/s until the OOM killer (Frame freezes); no fix. `perf` works as steamos (paranoid 2; ptrace_scope 1
|
||||
blocks gdb/eu-stack/debuggerd) — see PLAYBOOK "Debugging techniques". QuestCraft downloads its JRE at first run into
|
||||
`files/runtimes/JRE` (Pojlib Installer); on the Frame it was missing (unpacked by hand, unverified). WiiCompiled: its launcher shows
|
||||
(lepton-show-flatscreen) but imports .wcgame files through Android's document picker (OPEN_DOCUMENT), which Lepton
|
||||
lacks (ActivityNotFoundException) → imported by hand: libmain.so + game.json → internal files/game/<profile>,
|
||||
DATA/ → external files/WiiCompiledOpenXRVR/DATA, MOD/ → .../RetroRewind6 (decompiled with jadx). Lepton has no
|
||||
picker at all: a FramePort fix would be an injected picker activity. Generated cover/banner art used to suppress the
|
||||
Steam placeholder set (no Steam art at all) → fixed in artwork/steam.py.
|
||||
**Steam library failures (GitHub #21/#30):** on some Frames Steam never loads FramePort's shortcuts.vdf entries (same SteamOS build and arm64 beta client as the dev Frame; IDs correct; file written before Steam starts): Play → console_log `GameAction [AppID <id>] … RequestingLicense → UpdatingAppInfo → LaunchApp failed with AppError_9` (= "Game configuration unavailable", Steam treats the id as a store app). Cause unknown; agent v42/43 diagnostics: `launch` returns `steam` (started / error + code / silent from console_log), `collect_diag` adds `steam_library` (real Steam dir, beta, Steam start vs vdf write time, entries per account, devkit games) + `steam-console.txt` (incl. Steam's `logs/shortcuts.previous.txt` if present; steamclient.so has "LoadShortcuts: rejecting attempt to load shortcuts: invalid account ID"). **Fallback (agent v43):** when Play gets AppError_9 the agent registers the game through Steam's devkit interface (what Valve's Devkit Management Tool does, MIT: `devkit-1 steam://devkit-1/<~/.steam/steam.token>/create-shortcut?response=<file>&gameid=<id>&directory=~/devkit-game` written to ~/.steam/steam.pipe; answer file / `.error`; `~/devkit-game/<id>/launch.sh` = link to the game's launch.sh, `<id>-argv.json` ["launch.sh"] (relative to the folder), `<id>-settings.json` {steam_play 0, compat_tool ""}). Steam adds it live (no restart), picks its own appid (read back from shortcuts.vdf by DevkitGameID), shows it as a normal non-Steam game named "Devkit Game: <id>" (OpenVR 0, but VR works: owner-verified 2026-10-04), art copied to grid/<appid>*. Ids: letter first, then letters/digits/_ only (spaces, '-', leading digit → "missing/invalid arguments"). Later Plays use the devkit entry; uninstall (`devkit_unregister`, `delete-shortcut` live) and purge remove it. Verified on the dev Frame: register/launch/unregister; the AppError_9 trigger itself only in unit tests. GitHub #42 (two Steam accounts, neither MostRecent): Steam rewrote the active account's shortcuts.vdf without FramePort's entries right after starting, and added the devkit entry live without saving it, so `devkit_appid` (vdf only) failed ("Steam added the devkit entry but didn't save it"); agent v55 `devkit_appid_from_log` reads Steam's `sanitize shortcut app id "~/devkit-game/<id>/launch.sh": replacing 0 with N` console line. GitHub #41 (one account): same Steam behaviour, and every install restarts Steam, which forgets the never-saved devkit entry. Agent v56: the log fallback reads only the current session's console_log.txt; Play re-registers a devkit entry that gets AppError_9; art updates also write the devkit entry's grid art (`copy_grid_art`). Open: why some Frames' Steam never loads or saves shortcuts.vdf (single account too).
|
||||
**Exit game (GitHub #36, 2026-10-04):** `Apps.TerminateApp` (what Exit game calls; reachable for tests through Steam's CEF devtools on 127.0.0.1:8080, SharedJSContext, `Runtime.evaluate` — a stdlib websocket client is enough) closed both a normal shortcut and a devkit entry on the dev Frame within 1-3 s. SIGTERM to Steam's `reaper` alone left launch.sh + Lepton (setsid) + the container running (an earlier headset launch ran on for 87 min); SIGTERM to launch.sh cleans up in ~4 s. Agent v44: launch.sh's 2 s loop ends the game when its parent (the reaper) is gone; `upgrade_launchers` (from ensure_host_fixes) adds that to existing launchers in place. Which in-headset exit path fails is still unknown. Screenshots on the Frame: all under SteamVR's appid 250820 (`760/remote/250820/screenshots`, screenshots.vdf has creation time, no game).
|
||||
**SteamVR dashboard at game start (2026-10-04):** the dashboard (Resume game / controller / VR options) was open whenever a FramePort game started (also over Lepton's 2D launcher). Steam's UI exposes `SteamClient.OpenVR.VROverlay.{IsDashboardVisible,HideDashboard,ShowDashboard}` (CEF devtools, `steam_js` in the agent). Agent v44: launch.sh starts `_dashboard_worker` (waits for FrameBridge's first `pacing:` line in launch.log, then hides a visible dashboard for 25 s, at most 3 times; log `<base>/dashboard.log`; opt out with env FRAMEPORT_KEEP_DASHBOARD=1). Verified on the dev Frame (dashboard shown → 4XVR launched via Steam → hidden ~5 s after the first frames); not yet seen in the headset. **Headset (ITR2, 2026-10-05): too late** — Steam shows its frame menu (`valve.steam.gamepadui.frame.menu`, vrwebhelper_systemui.txt `[PooledPopups] Showing`) ~0.3 s after the game's first submitted frame (FrameBridge `new layer:`), but the first `pacing:` summary comes ~8 s later; the owner had pressed Resume (`[HideDashboard] return_to_game`) before the worker looked. Agent v52: watches from the first `new layer:` line (incremental log reads, 0.5 s polls, 30 s window). Agent v59: watches 120 s and hides up to 10 times (the menu came back after 30 s in the owner's sessions). Agent v53: stops for good once the player opens the dashboard with the controller (`toggle_dashboard_action` in vrwebhelper_systemui.txt since the worker started): v52 closed it 60 ms after each press, and the game, paused for it, stayed paused.
|
||||
**Space warp / ITR2 (2026-10-04):** Into The Radius 2 (UE5, `libUnreal.so` + OVRPlugin, Vulkan) uses Application SpaceWarp (extra swapchains `376x376 format=97` motion vectors + `format=129` depth); #35 reports flickering textures. OVRPort's `patch_disable_space_warp` has no effect on UE5, and hiding XR_FB_space_warp in FrameBridge's enumerate doesn't reach the game either: **OVRPort's dispatcher offers/enables XR_FB_space_warp itself**. FrameBridge `hide_space_warp` (per game, off) hides it and strips `XrCompositionLayerSpaceWarpInfoFB` (1000171000) from the projection views (log `hide_space_warp: removed space warp info`); the game still renders its MV swapchains. Test build installed on the dev Frame; flicker not yet checked in a headset. Heuristic: UE5 + OVRPlugin shows it as an option (off). `equirect_emul` is suggested for Unreal games whose graphics API isn't detected ("GLES or unknown"); on Vulkan it switches itself off (Myst/Riven/ITR2): harmless, but Unreal Vulkan detection is a known gap.
|
||||
**PR #34 (merged 2026-10-04, Lucas-Mathieu):** `native/adapter/audio_metadata.h` patches Meta XR Audio Wwise (only build ID e1619e7f…, Batman: Arkham Shadow 1.4.1) so queued audio metadata isn't freed while the current audio frame references it (smoke-bomb crash). Verified headless: installs ("metadata reclamation follows …"), 72 fps; we added a once-per-second scan limit. Outside PRs: review source, rebuild `artifacts/` ourselves, merge locally (contributor's commit kept), push main.
|
||||
**Heuristics eval (2026-10-04):** `scripts/eval_heuristics.py "<VR CyberDeck Portable>"` → 19/44 recipes exact, 322/352 fields (most diffs: `frame.unity_text_input` suggested where older catalog recipes lack it; the rest are runtime-only findings: use_alt, vk_shader_fix, focus_hold, sync_guard, multipass). `PATCHED/` copies aren't scored (already converted).
|
||||
**Power (0.9, agent v47):** sidebar bar below the Frame card: Sleep / Restart / Shut down, each confirmed (`app.frame_power`, a running game asks again). logind answers CanSuspend/CanReboot/CanPowerOff = "challenge" for an SSH session but "yes" inside a user unit, so agent `power` runs `systemctl suspend|reboot|poweroff` from a transient `systemd-run --user --on-active=3` timer (the command answers first). Restart verified on the device (back in ~84 s, new boot id).
|
||||
**Proton default (agent v51, owner's choice 2026-10-05):** the newest **stable** ARM64 Proton is the default for PC VR games (`pick_proton`: asked-for name/alias, else newest installed stable, else any stable). Agent v49-50 defaulted to Experimental; the owner's headset A/B with Rick and Morty (Experimental 69 % reprojected frames, stable felt much smoother) reverted it. The game page's Customize shows `pcvr.proton_tool` as a dropdown (Stable (default) / Experimental = alias `proton-experimental`); `ensure_proton` installs a chosen one (it asks once more for the runtime Steam only names after Proton is installed; Experimental installed unattended on the device in 53 s). A PC VR launch test that fails on stable suggests Experimental (`pipeline.PROTON_TOOL`, `proton_alternative_worth_trying`, button "Try Proton Experimental and reinstall"). Remaining Rick and Morty stutter on head turns = the game rendering below the refresh rate (reprojection), not Proton.
|
||||
**USB cable link (verified 2026-10-05, cabled to the dev PC):** `usb0` is a USB **NCM** gadget (configfs g1: `ncm.usb0` + `ffs.adb`, Valve 28de:2460) set up by `usb-ncm-gadget@usb0.service`, which only runs with `ConditionPathExists=|/etc/systemd/system/adbd.service.d/steamos-devkit-enabled` = **Developer Mode only**. `usb-ncm-dnsmasq@usb0` serves DHCP with fixed `dhcp-host` entries: Frame 10.86.200.233, PC **10.86.200.234** (`frame/usb.py` FRAME_USB_IP/PC_USB_IP). Windows 11 binds its built-in "UsbNcm Host Device" (no driver); WSL mirrored sees eth 10.86.200.234. USB is high-speed (USB 2.0): upload 36.9 MB/s vs 11.3 MB/s home Wi-Fi. Frame→PC over the cable worked without a firewall change. `scripts/usb_autotest.py` (Windows via powershell.exe from WSL), `frameport frame usb-check`. Wizard "Set up with a USB cable" (`PairingServer(host=PC_USB_IP)`; the real bootstrap ran end to end over USB). Discovery dedupes by SSH host key and prefers USB > Frame hotspot > network (`discovery.dedupe`); a lost address is re-found by key (`Frame.relocate`, tested with a dead saved address).
|
||||
**Catalog updates without a release (2026-10-05):** apps fetch `catalog/games/*.yaml` from GitHub `main` (`recommend/catalog.refresh_remote`: one API call `git/trees/main?recursive=1` + raw.githubusercontent downloads of changed blobs, cached as `catalog-gh-<sha>.yaml`, every 6 h; GUI at start + Settings → Data "Check now"; CLI background thread + `frameport catalog-update`). `catalog.load()` only reads the cache. A remote entry is skipped (`unusable_reason`) when it names a patch/adapter key this app doesn't register, has a field `CatalogEntry` doesn't know, or `min_app` > this version: add `min_app` (or rely on new patch ids) when a config needs an unreleased FramePort. Remote beats bundled unless the bundled entry has a later updated/verified date; the user's own entries still win as before. Off: setting `catalog.auto_update`, env FRAMEPORT_NO_CATALOG_UPDATE; FRAMEPORT_CATALOG_URL still overrides the source. So: **pushing a catalog change to main reaches users within 6 h** (their recipes follow via catalog_rev → Update on Frame).
|
||||
**Start activity / QuestCraft / ITR2 pop-in (2026-10-05):** WiiCompiled's VR part (`QuestActivity`, SDL, process `:game`) stays behind Lepton's flat window when the launcher is shown (`device.text_input_window`). `frame.start_activity` (opt-in; analysis `extra.vr_activity` = the original APK's activity with Meta's VR category when it isn't the launcher) gives that activity's filter LAUNCHER and every other LAUNCHER becomes INFO, per element (`axml.set_start_activity`); Lepton's own `apk-info-extractor --print-activity-name` (on the Frame under Lepton/liblepton/apk_extractor) then answers QuestActivity. **OVRPort gives every MAIN activity LAUNCHER + VR categories**, so the VR activity must come from the original APK's analysis, not the converted manifest. Lepton has no activity override (`APP_ACTIVITY` is reset when app_metadata.sh is sourced). QuestCraft reaches Minecraft 1.21.5 (Fabric, Vivecraft, Sodium; LTW "Large Thin Wrapper" GL 3.0 on the Frame's Zink) and stops at `OpenGL error 1282` in `WindowFramebuffer` createTexture (Minecraft's crash report in `files/instances/1.21.5/crash-reports/`, Pojlib's `files/latestlog.txt`); the vrclient SIGSEGV / "pthread_mutex_lock called on a destroyed mutex" afterwards is only the shutdown (Unity's render thread still in vrclient while the instance is destroyed). ITR2 "models popping in and out" in game: Unreal reads user config from **internal** storage (`lepton-data/internal/<pkg>/files/UnrealGame/<Project>/<Project>/Saved/Config/Android/Engine.ini`, not external); `r.AllowOcclusionQueries=0` there broke its menus (removed again). Vulkan shim `vk_query_slots` (two slots per occlusion query) never saw ITR2 create an occlusion query pool, and the run with it crashed (Unreal RenderThread SIGSEGV, caught by sentry-native: no tombstone; the backtrace is in `cache/sentry/*/.sentry-native/*.run/*.envelope` with module offsets) - left off. Next suspect: Unreal 5 mobile HZB occlusion reading depth stored with Valve's FDM injection layer; test = launcher `VK_INSTANCE_LAYERS=''` (Lepton then loads neither VALVE_rpo nor VALVE_fdm_injection, Fossilize still). QuestCraft: LTW overrides glGetError and returns 0 with `LIBGL_NOERROR` set; Lepton passes `LEPTON_ENV_<NAME>` to the app as `<NAME>`, so catalog `lepton_env: {LEPTON_ENV_LIBGL_NOERROR: '1'}` gets Minecraft past the GL error 1282; then black picture (see the catalog entry). FrameBridge logs `new layer` once per layer type per process and projection views only for the first frames, so a second session in the same process (Vivecraft after Unity) needs `layer_debug=1`.
|
||||
**Vulkan validation / ITR2 solved (2026-10-05):** Khronos' validation layer can't come from Lepton (its layer dir is in the read-only guest image; the Linux copies on the Frame are glibc) and a global `debug.vulkan.layers` property (via the LEPTON_GFXRECON_FP_PROPS trick) kills the container at boot. Working recipe: bundle `libVkLayer_khronos_validation.so` (Khronos android-binaries release, arm64-v8a, stored uncompressed) into a test APK re-signed with the game's key (`apk.sign.sign`), install with `frameport install <pkg> --apk`, and set the Vulkan shim's `vk_validation=1` (it adds the layer at vkCreateInstance; findings under the logcat tag VALIDATION in launch.log, each message ID capped at 10). ITR2's flicker + windows behind models = Unreal's Qualcomm shader-resolve subpasses with a depth resolve of a single-sampled depth attachment (VUID-04908/-03179); `vk_spec_fixes=1` drops that resolve (its TRANSFER_DST half never applies to ITR2: the main depth is transient). Valve's VALVE_rpo layer removed ITR2's fog (catalog `lepton_env: VK_INSTANCE_LAYERS: VK_LAYER_VALVE_fdm_injection`). `r.ViewDistanceScale=2` in the internal Saved/Config/Android/Engine.ini only exists on the owner's Frame (the catalog can't write internal storage yet). Launch tests: Lepton prints a transient "is not a running context" on the first start after an APK change (agent v54 `not_started` waits 30 s for "Boot complete!").
|
||||
**GitHub #38/#39 (2026-10-05):** PowerWash Simulator stuck at "Waiting.." on a reporter's Frame = Unity sized the right-eye image rect past its swapchain (rect 268+1656 on a 1920-wide swapchain; the runtime's recommended size differs per Frame) and SteamVR rejected every frame (`xrEndFrame failed -25`, XR_ERROR_SWAPCHAIN_RECT_INVALID), after which the game stopped calling xrEndFrame. FrameBridge `rect_clamp` (default on; sizes noted in xrCreateSwapchain; clamped layers count as swapped) keeps projection/quad rects inside their swapchain; triage `swapchain-rect-invalid`. Not reproducible on the dev Frame with `scale` (Unity's eye sizing isn't just the recommended width); no regression there (72 fps). The adapter's revision was NOT bumped (that would mark every installed game outdated): affected users rebuild. The Room VR (#38) = Unity's render thread SIGSEGV in libgallium_dri.so ~30 ms after the game recreates its eye swapchain with samples=4 (FrameBridge retries samples=1); the game's own code turns MSAA on (not OVRManager); candidate fix: hide GL_EXT_multisampled_render_to_texture (GL shim) - needs the APK to test. The launch test passed both (render thread dead / no frames): triage gap.
|
||||
**Headset round 2026-10-05 (evening):** I Am Cat's judder = repeated xrLocateViews of one display time returning
|
||||
slightly different poses → FrameBridge `pose_consistency` (owner-verified, works). Lucky's Tale freeze on touching a
|
||||
save slot = OVRPort's OpenXR dispatcher converting XR_FB_haptic_amplitude_envelope with ns read as s (GitHub #9) →
|
||||
xrshim `haptic_fix` (owner-verified); its remaining short pauses were the wear sensor ("HMD off/on" 0.5-1 s in
|
||||
`logs/eyetracking.txt`, not vrserver.txt) → **`focus_hold` is on by default with 5 s** (owner's choice; C defaults
|
||||
too). The Room VR works (`unity_no_overlay_copy`). BattleSisters (Unity 2019.4 built-in VR, no libOculusXRPlugin.so)
|
||||
flooded "outside of frame bounds" ~2400/s and hung the GPU (kernel hangcheck, zink DEVICE LOST) → the ovrpshim frame
|
||||
wait now also applies to Unity 2019 without the Oculus XR Plugin (`UnityOculusCheck.legacy_loop`). Vader Immortal
|
||||
(UE4, stuck on the loading image after the intro, GitHub #49): VRP repacks carry a Frida gadget (`libfrda.so`,
|
||||
config `hijack_responses`), but OVRPort's `patch_clean_up_frida` removes its loadLibrary call, so it never runs on
|
||||
the Frame; `frame.ovr_trace` (opt-in, `native/ovrtrace`: 1138 exported ovr_* stubs → real loader functions, logcat
|
||||
tag `fp_ovrtrace`: calls, PopMessage answers, unanswered requests every 10 s) is the next diagnostic.
|
||||
**Unity built-in VR input (2026-10-05):** probe builds (`FRAMEPORT_INPUT_PROBE=1 frameport build …`; it logs
|
||||
trigger/grip crossings too) showed OVRPlugin returns the full Touch state for every controller mask (also Go masks);
|
||||
presses reach the games' OVRInput. Accounting+ (Il2CppDumper v6.7.46 reads its Unity 2017 metadata v24, run on Windows)
|
||||
passes stance selection (NewtonVR grip/trigger) but its motion warning waits for `Input.GetMouseButtonDown(0/1)`,
|
||||
which Lepton never delivers (no focused Android window) → ovrpshim registers its own
|
||||
`UnityEngine.Input::GetMouseButtonDown(System.Int32)` icall (il2cpp_add_internal_call, after Unity's: resolve first)
|
||||
that adds a click in the frame a Touch trigger or A/B/X/Y is newly pressed (`unity_oculus_check` revision 3).
|
||||
BattleSisters (Unity 2019 InputSystem/XR InputDevices via `VrHandInput`): libunity's Oculus module (OVRPlugin
|
||||
function table: a global pointer at 0x16b57c0 in this build, slots filled by name, e.g. +0x160 GetControllerState,
|
||||
+0x168 State2, +0xe8 GetNodePresent) only reports controllers when `strncmp(deviceModel, "Oculus", 6) == 0` (next to
|
||||
the Go check `deviceModel == "Oculus Pacific"`); Lepton's model is "Valve Lepton" → Go/unknown → only Go masks polled,
|
||||
buttons dead. `unity_oculus_check` revision 4 (`oculus_model_checks`, Unity 2019 only) turns the 17 compares' length
|
||||
into 0 (`orr w2, wzr, #6` → `mov w2, #0` after the adrp/add of the "Oculus" literal; the string stays: it is also
|
||||
Unity's VR device name). Device result: libunity now polls `ovrp_GetControllerState(0x3)` (Touch); owner-confirmed
|
||||
2026-10-06: buttons work. Its first controller vibration then hit OVRPort's haptic-envelope bug (11 GB, OOM kill) →
|
||||
`haptic_fix` is now suggested for every game with libOVRPlugin.so (settings detect), BattleSisters works. Ruled out before: ProductName, GetNodePresent, the device-model string itself, exports.
|
||||
Accounting+ works (owner, 2026-10-06).
|
||||
**Vader Immortal (UE4, GitHub #49, 2026-10-06, headless):** stuck after the intro on an in-game image (the splash
|
||||
quad ends ~6 s in; then the game's own projection frames, 72 fps, balanced xrBeginFrame/xrEndFrame). Not the Platform
|
||||
SDK (`frame.ovr_trace`: only user + entitlement, both answered) and not the repack's Frida gadget (OVRPort's
|
||||
`patch_clean_up_frida` removes its loadLibrary). It **leaks ~430 GPU mappings (/dev/dri/renderD128) and ~20 MB a
|
||||
second** (6.5 GB + swap after 5 min, then 26 fps): page-fault stacks (perf -e page-faults, offsets resolved with the
|
||||
process maps + vrclient.so's own symbols; its text segment is at file offset + 0x4000) end in SteamVR's runtime:
|
||||
`xrBeginFrame → CSxrCompositorOpenVR::BeginFrame → SubmitExplicitTimingData → CVRCompositorSharedTextures::
|
||||
BeginGPUTimingCommandBuffer` and `xrEndFrame → CVRCompositorClient::SubmitWithArrayIndexAndTime`. Ruled out: the
|
||||
layer color scale/bias + image layout structs (FrameBridge `strip_color_bias` 1/2, diagnostic), Valve's Vulkan
|
||||
layers (VK_INSTANCE_LAYERS=""), array swapchains in general (Lucky's Tale/I Am Cat flat). Kernel tracepoints aren't
|
||||
allowed for steamos. FrameBridge: `layer_debug` logs xrDestroySwapchain and per-5 s xrBeginFrame/xrEndFrame counts;
|
||||
`frame_balance` (ends an open frame before the next begin) exists but Vader never leaves one open. Next (built,
|
||||
not yet run: the Frame slept): `layer_debug` also counts xrAcquire/Wait/ReleaseSwapchainImage per 5 s (hooked only
|
||||
with layer_debug, after the other conditional hooks) to see whether Vader skips a wait or release: it doesn't (361/361/361 per 5 s).
|
||||
FrameBridge `snapshot=N` (`snapshot_gl.c`, GLES): every N s the left-eye image the game submits is read back on its
|
||||
own context and saved as `files/fb_snap_0-7.ppm` (quarter size) — headless launches show a black headset view, this
|
||||
shows what the game draws. Vader: Lucasfilm logo (an OBB mp4: video works), then its loading card (portrait + segmented
|
||||
bar) that never advances; the async loader thread sleeps and OBB reads stop (~168 MB of a 2.7 GB pak).
|
||||
**Double launch (agent v57, 2026-10-06):** a second Play while Lepton still boots (~10 s with nothing to see) made
|
||||
the second Lepton stop the first one's container ("Waiting for steamlaunch-<appid> (PID …) to exit", exit 137
|
||||
"(starting)", "Clearing baked app data due to early exit") and both died (Vader, BattleSisters). launch.sh now takes
|
||||
`flock` on `<base>/.launch.lock` (fd 9, inherited by Lepton; the watchdog and dashboard helpers close it with
|
||||
`9>&-`); a second launch exits 0 and logs to `<base>/launch-dup.log`. `upgrade_launchers` adds it to existing
|
||||
launchers. Verified on the device (second launch during boot: ignored, the first kept running). Vader on its loading
|
||||
card ignores input too (owner pressed/held every button: presses reach the runtime, the card never changes).
|
||||
**Issue triage round (2026-10-06, owner's headset):** vibration in OVRPlugin games = 2 s vibrations updated per frame and
|
||||
stopped with amplitude 0; FrameBridge turns amplitude 0 into xrStopHapticFeedback (else each buzz ran 2 s), haptic_fix
|
||||
uses the envelope RMS (was its peak), per-game `haptic_scale` → Creed/The Boys/Jurassic World fine. Lambda1VR (TBXR):
|
||||
loader named by Build.MANUFACTURER (`frame.tbxr_vendor`), no graphics extension enabled (FrameBridge adds
|
||||
XR_KHR_opengl_es_enable + asks for the requirements on -50), always multisampled render-to-texture (GL shim gives
|
||||
single-sampled stand-ins when GL_EXT_multisampled_render_to_texture is hidden) + its xash/ data → works. Jurassic World:
|
||||
`frame.vrapi_stub`. Metro Awakening: contributor's vkshim fixes + hide_space_warp + no VALVE_rpo (jumping polygons like
|
||||
ITR2). Pinball FX VR: hide_space_warp (stutters). Eleven: a Meta online request fails after platform init → needs Meta
|
||||
services. Star Wars Tales: top half black + freeze after loading; ruled out: asset-file paks (never requested), Valve
|
||||
foveation (off: no change), GL errors (MESA_DEBUG=1: none), EGL_BAD_ACCESS once in OVRPlugin init (harmless); the game's
|
||||
eye image reads back black. BlazeRush: VrApi bridge exports + ovr*_ToString stubs + avatar stub get it to the menu room
|
||||
at 72 fps, full input reaches it (diagnostics `input 5s`: Touch type only, sticks 1.0, buttons, poses 0x8f), but the room
|
||||
draws no controllers and ignores input; avatar loader forced to its "Failed" path (no logged-in user) changed nothing.
|
||||
`frame.ovr_trace` can't trace Unity games (P/Invoke dlsym; nothing imports ovr_*). Headless: the VrApi bridge's 30 s
|
||||
head-pose deadline ends VR mode without a worn headset (not a game bug).
|
||||
**Lepton storage (2026-09-30):** each app's /sdcard (= /storage/emulated/0 → `<base>/lepton-data/external`) has `Movies`/`Download`/`Documents` symlinked to the Frame's `~/Videos`/`~/Downloads`/`~/Documents` (liblepton/mounting.sh, only if they exist at start); agent v24 `storage_targets` reads that mapping. Android's MediaProvider canonicalises paths to /home/steamos/... and rejects every file ("doesn't appear under [/system/media...]"), `sm list-volumes` is empty: the media index never works, apps must browse folders. Lepton installs with `adb install -g` (runtime permissions granted, MANAGE_EXTERNAL_STORAGE too). Files: `install/files.py`, `frameport frame send|storage`, GUI Files tab (formerly Frame → Send files).
|
||||
**SteamVR per-app settings (2026-09-30):** editing steamvr.vrsettings while SteamVR runs is lost; the web API (127.0.0.1:27062 /app/setsettings) needs `x-steamvr-secret`. `native/vrsettings` = `fp_vrsettings.exe` (freestanding, OpenVR `FnTable:IVRSettings_003` as a Utility app, loads SteamVR's bin/win64/openvr_api.dll) sets them live and SteamVR persists them: section `steam.app.<shortcut appid>`, keys `preferredRefreshRate` (float) and `motionSmoothingOverride` (0 global, 1 on, 2 off, 3 always). Steam Link (vrlink) lists the Frame's rates 72/80/90/96/108/120/144 in vrserver.txt and follows the per-app preference ("host preferred N Hz"; whether the key is honoured is unverified in-headset yet). Judder metric: vrcompositor.txt session summary dropped + "Timed out. N total" (Stormland: 0 dropped but 313 timeouts in 2 min); fpsVR (`%LOCALAPPDATA%\fpsVR\*.json`, 0.1 ms histograms) gives p99 CPU/GPU ms. `pcvr.steamvr_tuning` (default on, PC only) applies on Play: highest rate whose budget ≥ p99×1.05, at least one step down, smoothing on.
|
||||
|
||||
**Language packs (merged from PR #20, 2026-10-04):** overport's `libovrplatformloader.so` is a dispatcher that `dlopen`s Meta's own loader (`libovrplatformloader_meta.so` / `_meta_q1.so`, also `libpxrplatformloader.so`) and keeps its own message queue; `ovr_LanguagePack_GetCurrent/SetCurrent` are 8-byte `return 0` stubs in it, `ovr_AssetFile_GetList` forwards to Meta's loader. `frame.langpacks` (opt-in, `native/langpack`) serves `<tag>.lang` files from the game's data; `elf.hide_exports` marks the loader's exports STB_LOCAL (bionic and glibc only match GLOBAL/WEAK; verified for glibc, bionic's `is_symbol_global_and_defined` is from memory). `libfp_langpack.so` is built here (`python native/build.py --only langpack`) and committed. Owner-verified 2026-10-04: Deadpool VR with only `en.lang` and the patch on plays English dialogue and runs normally (headless launch tests show 2-6 fps while it loads: not a regression sign). A dispatcher answer that arrives after we answered the timed-out GetList is dropped (one answer per request); games already in a library get `lang_packs` filled after an app update (`library._refresh_data_fields`). The library logs to logcat under the tag `fp_langpack` (dirs looked in, packs found, every language-pack call), so it shows up in the game's `launch.log`; an `ovr_AssetFile_GetList` the dispatcher leaves unanswered for 1.5 s is answered with our packs alone. Deadpool VR (Unreal) accepts a pack only when its `Metadata` equals the game's own version string (`ULanguagePacksSubsystem` compares it with `%s.%s.%s.%s.%s` built from the build info, e.g. `1.0.40.356975.Quest` = versionName; found by disassembling `libUE4.so`): the patch writes the APK's versionName into the library (`@FPMETA@` slot, `with_metadata`), `FRAMEPORT_LANGPACK_META` overrides it. Deadpool VR (2026-10-04, headset): German became selectable with that Metadata, but dialogue stayed silent (even English once reported as a pack) while the path was spelled `/sdcard/Android/obb/<pkg>/x.lang`; with the `/storage/emulated/0/Android/obb/<pkg>/x.lang` spelling (Unreal's own, now listed first in `scan_dirs`) German dialogue plays. `FRAMEPORT_LANGPACK_SKIP=<tags>` or a file `fp_langpack_skip` in the obb folder leaves packs out of the list (experiments).
|
||||
|
||||
**Unresolved (as of 2026-09-28):** Arcsmith (right-eye distortion) and Time Stall (both eyes) — swap, tracking, Valve
|
||||
layers, depth, pacing ruled out. Sniper Elite VR (DEVICE LOST), Espire 1 (Mesa GL upload crash), HITMAN 3 (freedreno
|
||||
crash): use PC versions.
|
||||
|
||||
**Install links / FrameDrop button protocol (2026-10-07, not yet clicked end to end from a browser):** FrameDrop
|
||||
(framedropvr.com, a closed-source Windows sideloader) defines "Install with FrameDrop" buttons:
|
||||
`https://framedropvr.com/install?manifest=<url>|url=<file>` → that page opens `framedrop://install?…` (1.6 s, else its
|
||||
home page); manifest `{"schema":"framedrop.install/v1","name","files":[{"url","sha256"}]}` (name = Steam title; .apk
|
||||
or Linux .zip). `deeplink.py` (no Flet) parses framedrop://, frameport:// and the pasted https link, enforces its
|
||||
rules (https; http only on loopback; no credentials; no LAN/loopback/link-local IPs, also after DNS and redirects; URL
|
||||
ends in a file name), caps manifests at 256 KiB, ignores non-hex sha256 (FrameDrop's own example has a placeholder),
|
||||
downloads into `<data>/downloads/<slug>-<hash>/` (OBBs → `obb/` next to the APK, `.part` removed on cancel/mismatch);
|
||||
`pipeline.add_from_link` routes APK / Linux / exe and sets `title` + `title_locked` + `link` (a bare file link keeps
|
||||
FramePort's title). GUI: `views/link_dialog.py` (always asks first), Add games → "Install from a link…", CLI
|
||||
`frameport open-link [--yes --no-install --gui]`. **A `flet build` bundle can't take a URL argument** (the Flutter
|
||||
host treats any argv as a developer page URL), so `urlhandler.py` registers a script, not FramePort.exe: Windows
|
||||
HKCU `Software\Classes\{framedrop,frameport}` → hidden PowerShell `frameport-link-handler.ps1`; WSL (source runs)
|
||||
the same keys → `wsl.exe -d <distro> -e sh frameport-link-handler.sh`; Linux `frameport-links.desktop` +
|
||||
`xdg-mime`; macOS unsupported (Apple Events, paste instead). The script drops the link into `<data>/links/*.link`
|
||||
and starts FramePort unless `<data>/gui.alive` is < 10 s old (`gui.starting` stops double starts); the GUI's
|
||||
`_watch_links` thread touches the heartbeat and opens links (newest window session). Settings → Install links: one
|
||||
switch per scheme (`links.framedrop`, `links.frameport`, default on); a scheme another program owns (FrameDrop) is
|
||||
only taken with "Use FramePort for these links" (`register([s], force=True)`); off removes only FramePort's own
|
||||
registration (`MARK` in the command). Never registered with FRAMEPORT_HOME/FRAMEPORT_NO_LINK_HANDLER (tests,
|
||||
screenshots). Same round: files dropped on the Library (`ui/dropped.py`, bundles only like the Files tab), "Add a
|
||||
Windows program (.exe)…" (`pipeline.add_windows_exe`: exe in Downloads/home/drive root copied alone into
|
||||
`<data>/windows-apps/<slug>/`), patch `device.display_mode` (Automatic / VR / Flat window → `InstallContext.display`,
|
||||
`installer.show_window`). FramePort-only manifest extension `"frameport": {"description", "icon"}` (bad values ignored; icon: same URL rules,
|
||||
≤2 MiB, Pillow-checked, ≥32 px, saved as PNG in `<data>/downloads/icons/`, shown in the question by asset URL, then
|
||||
`sources.apply_custom(pkg, "icon")` unless `.picked` exists; description fills `details.description` only when
|
||||
empty). Bare file links get a title guessed from the file name (`title_from_filename`: version/arch dropped, package
|
||||
names → last part). Windows test of 0.12.1.dev191 (2026-10-07): a button click opened the dialog; but a click right
|
||||
after closing FramePort did nothing (the closed window's heartbeat was < 10 s old) → the handler scripts now wait
|
||||
up to 4 s for the link file to be taken before trusting the heartbeat, the window's CLOSE event / atexit delete
|
||||
`gui.alive`, and the Windows command runs under `conhost.exe --headless` (plain `-WindowStyle Hidden` flashed a
|
||||
console). Screens: `scripts/ui_smoke.py --links --fake-frame --game <pkg>` (tall pages: `--viewport
|
||||
1280x7000`; Flutter's popup menu ignores Escape).
|
||||
|
||||
## Releases, CI, GitHub
|
||||
Maintainer-only notes (accounts, credentials, key locations) live in the git-ignored `CLAUDE.local.md`.
|
||||
Public repo `github.com/spoopyghosty0/frameport` (branch `main`). Push a `v*` tag → CI (`.github/workflows/build.yml`)
|
||||
@@ -441,6 +659,12 @@ tests, builds Windows x64 / macOS arm64 / Linux x64 bundles, signs, attests and
|
||||
`FramePort-selfsigned.cer`; notes = "What's new" from the annotated tag message + the short `packaging/release-footer.md`; owner: keep release
|
||||
notes short — a few "What's new" bullets, nothing long after them).
|
||||
Installed apps find the release themselves (self-update), so the notes are what users see in the update dialog.
|
||||
- **Dev builds (for testers, no release):** Actions → build → Run workflow (main), "dev" ticked, optional "notes"
|
||||
(what to test). The bundles get version `<next patch>.dev<run number>` (`scripts/dev_version.py`, not committed) and
|
||||
replace the rolling `dev` pre-release (`dev-release` job; same assets + SHA256SUMS). Automatic update checks ignore
|
||||
pre-releases; testers use Settings → Updates → "Install the latest dev build…" (`updates.check_dev`,
|
||||
`Updater.install_dev`). `parse_version` sorts 0.9.0 < 0.9.1.devN < 0.9.1, so testers get the next release normally.
|
||||
- **Upstream trackers:** issues labelled `upstream` (#73 microphone, #74 haptics, #75 VrApi bridge) list our workarounds for OVRPort bugs and how to drop them; check them against OVRPort's latest release before each release.
|
||||
- **Release checklist:** bump `src/frameport/_version.py` (the only version; `scripts/package.py` fails a tag build
|
||||
whose tag ≠ `v<_version>`), commit, `git tag -a vX.Y.Z -m "FramePort X.Y.Z" -m "<What's new, Markdown bullets>"`,
|
||||
push the commit and the tag. Never publish a release without its `SHA256SUMS.txt` (the updater refuses it) and keep
|
||||
@@ -456,6 +680,11 @@ Installed apps find the release themselves (self-update), so the notes are what
|
||||
Windows console) plus PYTHONUTF8; macOS builds need `--python-version 3.12 --arch arm64` (cryptography has no wheels
|
||||
for flet's default Python / x86_64 cross-build), with a PyInstaller fallback step; `astral-sh/setup-uv` has no
|
||||
floating major tags after v7 → pin the exact version; force-moving a tag starts duplicate runs (cancel one).
|
||||
- `jni` (2026-10-06): jni_flutter 1.0.4/1.0.4+1 generate bindings that require jni ^1.1.0 while Flet's build template
|
||||
pins jni 1.0.0 → every `flet build` bundle failed (`JniVersionCheck`, "generated bindings expect package:jni
|
||||
^1.1.0"). pyproject `[tool.flet.flutter.pubspec.dependency_overrides] jni = "1.1.0"` fixes it (pinning
|
||||
jni_flutter 1.0.4 does not); drop it once Flet's template moves to jni 1.1. A failed tag build publishes nothing:
|
||||
delete and re-push the tag on the fixed commit.
|
||||
- macOS runner (2026-10-02): `macos-latest` jobs went unassigned (cancelled after 15 min, no steps); `macos-15`'s Xcode
|
||||
16.4 fails a Flutter plugin (`NWPath has no member`); `macos-26` (Xcode 26) builds with `flet build`. The PyInstaller
|
||||
fallback (`package.py --pyinstaller`) passes `--yes` so a failed `flet build`'s folder doesn't stop it at a prompt.
|
||||
|
||||
@@ -22,12 +22,19 @@ Install games that target the Meta Quest, Android, or general PCVR onto your **V
|
||||
[What it changes](docs/FRAME_SETUP.md).
|
||||
- **Type on Frame:** use your computer's keyboard on the Frame: in VR apps, Android apps, Steam and the desktop.
|
||||
[More](#type-on-frame).
|
||||
- **One click per game:** convert, patch, sign, upload, add to Steam with artwork, launch test.
|
||||
- **One click per game:** convert, patch, sign, upload, add to Steam with artwork, launch test. Artwork that can't be found automatically can be picked from the stores or replaced with your own images.
|
||||
- **Per-game recipes:** a tested catalog plus detection rules; every patch explained in plain words.
|
||||
- **FrameBridge:** FramePort's OpenXR adapter emulates what the Frame natively lacks (passthrough, room, controller models,
|
||||
curved and 360° layers); game settings as simple switches.
|
||||
- **Beyond Quest:** Android apps as windows, PC VR via Proton or Revive, Windows (non-VR) games via Proton, a Files
|
||||
tab with drag and drop.
|
||||
- **Linux apps:** install Linux apps (AppImage, a folder, or a zip/tar archive) on the Frame with a Steam
|
||||
shortcut; arm64 builds run natively on SteamOS, x86_64 builds through Valve's FEX translator.
|
||||
- **Install links:** "Install with FrameDrop" buttons on web pages (the one-click protocol of the FrameDrop
|
||||
sideloader) and pasted links open in FramePort, which asks, downloads, adds and installs the build.
|
||||
- **Screenshots tab:** the screenshots you took in the headset, sorted by game (matched by play time) and day;
|
||||
view them and download them to your computer.
|
||||
- **Live view tab:** watch what the headset shows, with sound, in a browser window on your computer.
|
||||
- **Self-updating** releases, redacted diagnostics, one-click problem reports and working-config sharing.
|
||||
|
||||
## Quick start
|
||||
@@ -48,14 +55,15 @@ Install games that target the Meta Quest, Android, or general PCVR onto your **V
|
||||
3. **Add games → Scan a folder** with your game backups (APK + OBB, or PC VR game folders).
|
||||
4. Open a game → **Install on Frame**, then play it from the Frame's Steam library.
|
||||
|
||||
Full guide, firewalls and troubleshooting: [docs/INSTALL.md](docs/INSTALL.md).
|
||||
Full guide, firewalls and troubleshooting: [docs/INSTALL.md](docs/INSTALL.md). Questions (e.g. how to lay out games
|
||||
with OBB files): [docs/FAQ.md](docs/FAQ.md).
|
||||
|
||||
## Type on Frame
|
||||
|
||||
Typing in VR is painful, so FramePort turns your computer's keyboard into a keyboard for the Frame. Open **Type on
|
||||
Frame** (keyboard icon on the sidebar's Frame card, the Steam Frame page, or a game's menu), select a text field in
|
||||
the headset and type: searches, logins, chat, in any app, in Steam or on the desktop. Paste longer text to type it in
|
||||
one go. Nothing to install: FramePort adds a virtual keyboard on the Frame while the window is open, without root.
|
||||
Frame** (its own tab in the sidebar), select a text field in the headset and type: searches, logins, chat, in any
|
||||
app, in Steam or on the desktop. Paste longer text to type it in one go. Nothing to install: FramePort adds a virtual
|
||||
keyboard on the Frame while the tab is open, without root.
|
||||
|
||||

|
||||
|
||||
@@ -63,6 +71,24 @@ Unity apps whose text fields close the moment you select them on the Frame (no s
|
||||
fix, so Steam's on-screen keyboard and Type on Frame work in them too.
|
||||
[Details](docs/INSTALL.md#typing-on-the-frame).
|
||||
|
||||
## Screenshots
|
||||
|
||||
Screenshots you take in the headset show up in FramePort's **Screenshots** tab, grouped by day and matched to the game
|
||||
you were playing. Open one full size, step through them, and download single shots, a selection or all of them to
|
||||
your computer.
|
||||
|
||||

|
||||
|
||||

|
||||
|
||||
## Live view
|
||||
|
||||
The **Live view** tab streams what the headset shows, with its sound, to your computer: click **Start live view** and
|
||||
it opens in your default web browser (full screen with a double-click; click **Sound on** to hear it, as browsers start
|
||||
videos muted). Pick 360p to 1080p, or the headset view's full size. The picture comes from SteamVR's built-in headset
|
||||
view on the Frame and is encoded there while you watch (about one CPU core), so stop it when you're done. It's black
|
||||
while the headset sleeps.
|
||||
|
||||
## Compatibility
|
||||
|
||||
If a game has already been tested with FramePort, it will automatically use the optimal game config. Otherwise, FramePort
|
||||
|
||||
+1302
-50
File diff suppressed because it is too large.
Load diff
+10
-6
@@ -1,10 +1,14 @@
|
||||
0f681f54b59cfad2efc8883aee5a0971c2fba09d9ba2dca15a136b0ac74a59b8 ./arm64-v8a/libfp_vk.so
|
||||
8e00552d1ab90f82749db3caad4f773351fa8a28edcc5ea5cbd1b31c434ff32a ./arm64-v8a/libframe_xrshim.so
|
||||
3dfcb0f2bec47857bcecc7261c58e076d872d4649718c40850f29e10c75477dd ./arm64-v8a/libglshim.so
|
||||
dc62857b4f7a23b194060599339dfe72b38c16cdf4a9eb1b1f3b4d1fb9071a6d ./arm64-v8a/libopenxr_loader_generic.so
|
||||
e7554c6343ee2989b0a273ee6230e65c25bfe6499eefd00de19f5f0fee58754f ./arm64-v8a/libfp_langpack.so
|
||||
98a99cefe93079268d9158b23fa8ad5c7ade8e54c0d31526892635625eb3ef04 ./arm64-v8a/libfp_ovrp.so
|
||||
40defdaddcda53bd2649eb48076fae1622bfc2bfc88e9e03c94fc8b45af2a4f2 ./arm64-v8a/libfp_ovrtrace.so
|
||||
7522a7cfb236e48d3442d418c4820cd37760a9627c6bdef80fb0df82df5fd826 ./arm64-v8a/libfp_vk.so
|
||||
383054f8b3b41dde76d062c71856cd3163655e50009c08454bc1793f393ead65 ./arm64-v8a/libfpg.so
|
||||
06c8a17b37cb1513fdfeba87ece457a02097bb22dd0a3a3a8719fb8fea16b52a ./arm64-v8a/libframe_xrshim.so
|
||||
9f5ba793d1804728394a8fe9e83028e13f1bc939b558892e7beb5c3662317259 ./arm64-v8a/libglshim.so
|
||||
cc5b493cadefe76ad13fd096d3f8494a140ba593e0e1692db12d284bc548c1cf ./arm64-v8a/libopenxr_loader_generic.so
|
||||
1feaeafad467c4cafdf2b018a4d84b0bee200c3f711697b4ce97e66a3ba256ca ./arm64-v8a/libovrplatformcompat.so
|
||||
32525cd0a9ee3d9993d8871cd6905bdcf22cde4f4ba28f5db6434ce7d6554758 ./arm64-v8a/libvrapi.so
|
||||
a79c598744b98b9bf581664a80bcee1a0d11a62fdcdb99f05a0f6f381b6498cd ./armeabi-v7a/libopenxr_loader_generic.so
|
||||
aa4dc0020c77e12d41ef6ce80b23ad90c9cb7e882338eddf2261efe8645cf38d ./arm64-v8a/libvrapi.so
|
||||
c10412dd76a65a1d587b7ed226367d1a6f2bec238c733c97ee67eb8870c868e8 ./armeabi-v7a/libopenxr_loader_generic.so
|
||||
1871eae093432d277da4bc751bf5f3269dfcf11f9168260b0c3caadb0dedb19d ./dex/oculusos-stubs.dex
|
||||
1aa733117cf57ccff7cf23f0425dbfd73b0332a3ef1c905ceeca0ccd0449c4e0 ./linux-arm64/XR_APILAYER_FRAMEPORT_timefix.json
|
||||
28c2430a02bbd8902c5bfb9562c6fd0e318654f9e05c095bfeb94b0450ab1b07 ./linux-arm64/libxr_frameport_timefix.so
|
||||
|
||||
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@@ -0,0 +1,21 @@
|
||||
package: com.Aldin.WotW
|
||||
title: 'Waltz of the Wizard: Extended Edition'
|
||||
status: works
|
||||
notes: From what I tested, it just works. My only complaint is that the haptics go pretty crazy. But I don't remember
|
||||
what it was like when I played it in my Quest. So it could be fine. 100% playable.
|
||||
tested_version: 5.0.8.1578
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 522cfebf954e1cab6054798479b0b32c5ba9e38cca83dd98db2ac0f7e3c0802a
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260922.6101926'
|
||||
agent: 48
|
||||
issue: 44
|
||||
source_hint: WotW
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.Appnori.AllInOneSports
|
||||
title: AllInOneSports
|
||||
status: works
|
||||
tested_version: 1.9.0
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
- frame.oculusos
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
known_good_sha256: a1f9535ac569068bba25f137f131db9d4c3e997c072f3e790beac8ffef701fe3
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 13
|
||||
source_hint: All In One Sports
|
||||
@@ -1,15 +1,21 @@
|
||||
package: com.Armature.VR4
|
||||
title: VR4
|
||||
status: works
|
||||
notes: Installs the no-ForceQuit build (the regular one quits after the opening cutscene).
|
||||
details: The regular build quits itself when the first level loads after the opening cutscene (System.exit, GitHub
|
||||
issue 10), so the no-ForceQuit build is installed.
|
||||
notes: Installs the no-ForceQuit build and fixes a campaign shader that hung the GPU after the opening cutscene.
|
||||
details: Entering the campaign gave a black screen, slowing audio and a crash (Mercenaries loaded). One fragment shader
|
||||
reads a loop counter before setting it, which hangs the GPU; the Vulkan shim zeroes it (vk_shader_fix). The
|
||||
no-ForceQuit build is kept. Diagnosed and confirmed on a Frame by the reporter of GitHub issue 10.
|
||||
tested_version: '2.3'
|
||||
engine: Unreal
|
||||
xr: VrApi
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
use_alt: true
|
||||
adapter:
|
||||
# one campaign shader reads an uninitialized loop counter and hangs the GPU (black screen, slowing audio, crash);
|
||||
# the Vulkan shim inserts two OpStores that zero it and its accumulator (from the reporter's capture, GitHub
|
||||
# issue 10)
|
||||
vk_shader_fix: 6488:5dcd842db8d21e3fdd13ec916d2e34dd0cfdf12a92fffaf8a27115072ef55c59:2624:0x0003003e,138,18,0x0003003e,150,42
|
||||
verified:
|
||||
date: '2026-10-02'
|
||||
known_good_sha256: 40ff74e37264b28ae8826923b69d0731d9620094c76462be34159643d6ae91b3
|
||||
|
||||
@@ -0,0 +1,36 @@
|
||||
package: com.CMGames.IntoTheRadius2
|
||||
title: Into The Radius 2
|
||||
status: works
|
||||
notes: Plays well (owner-verified 2026-10-05). Space warp is off, the headset's brief focus losses are hidden
|
||||
(focus_hold, up to 2.5 s), only Valve's foveation layer is loaded (its render-pass optimizer removed the fog) and
|
||||
an invalid depth resolve in Unreal's render passes is dropped (vk_spec_fixes; it made models flicker and windows
|
||||
show behind them). Needs FramePort 0.10.0 or newer. Loading a save can take over a minute.
|
||||
details: Unreal Engine 5 game that uses Meta's Application SpaceWarp (extra motion-vector and depth swapchains). OVRPort's
|
||||
patch_disable_space_warp doesn't reach Unreal Engine 5, so FrameBridge's hide_space_warp hides XR_FB_space_warp and
|
||||
removes the space warp info from the eye images. Working config shared in GitHub issue 35. In the headset
|
||||
(2026-10-05) the Frame dropped focus for 0.4 s and 1.0 s within ten seconds and Unreal paused each time; loading a save
|
||||
shows no frames for 40-80 s while the game's Sentry SDK (debug mode) logs its breadcrumbs. Valve's VALVE_rpo
|
||||
(render-pass optimizer) Vulkan layer removes the game's fog (owner-verified 2026-10-05; with only VALVE_fdm_injection
|
||||
loaded the fog renders), which also hid the distance culling; ruled out for the remaining pop-in - Vulkan occlusion
|
||||
query slots, Valve's FDM layer. The cause, found with Khronos' validation layer (vk_validation) - Unreal's render
|
||||
passes use Qualcomm's shader resolve (VK_SUBPASS_DESCRIPTION_SHADER_RESOLVE_BIT_QCOM) together with a depth resolve
|
||||
of a single-sampled depth attachment (VUID-VkSubpassDescription2-flags-04908, -03179), harmless on Quest's driver,
|
||||
wrong depth on the Frame's Mesa; the Vulkan shim's vk_spec_fixes drops that resolve.
|
||||
tested_version: 1.2.4
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
adapter:
|
||||
equirect_emul: 1
|
||||
hide_space_warp: 1
|
||||
focus_hold: 1
|
||||
focus_hold_ms: 2500
|
||||
vk_spec_fixes: 1
|
||||
lepton_env:
|
||||
VK_INSTANCE_LAYERS: VK_LAYER_VALVE_fdm_injection
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
issue: 35
|
||||
min_app: 0.10.0
|
||||
source_hint: Into The Radius 2
|
||||
@@ -0,0 +1,19 @@
|
||||
package: com.CyanWorlds.Myst
|
||||
title: Myst
|
||||
status: issues
|
||||
notes: Minor graphical glitches on some objects.
|
||||
details: The crash is in the Frame's SteamVR runtime (vrclient.so CVRInputLatest::UpdateActionStateInternal via
|
||||
xrSyncActions) on the first input sync after focus, in 2 of 4 headset sessions. sync_guard serialises input syncs
|
||||
with event polling and pauses them for 250 ms after focus returns (confirmed in the headset, no crash). The object
|
||||
glitches are not application space warp (turning it off didn't change them and ran slightly worse).
|
||||
tested_version: 3.3.0
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
adapter:
|
||||
sync_guard: 1
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-04'
|
||||
source_hint: Myst
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.CyanWorlds.Riven
|
||||
title: Riven
|
||||
status: works
|
||||
notes: Plays as expected.
|
||||
tested_version: 1.9.0
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
adapter:
|
||||
equirect_emul: 1
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
known_good_sha256: 7c211588f39c21d67998ac6a6aeb44a8ad66c6551a1b0feb1bcf44e2cef98bdf
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 26
|
||||
source_hint: Riven
|
||||
@@ -0,0 +1,25 @@
|
||||
package: com.FireproofStudios.TheRoomVR
|
||||
title: The Room VR
|
||||
status: works
|
||||
notes: Plays normally (it used to stay on a grey screen).
|
||||
details: Unity 2018.4 with built-in Oculus support. It started VR only with frame.unity_oculus_check, then Unity's
|
||||
render thread crashed in the GL driver (Zink) when OVROverlay copied a 4x4 fade texture into its overlay layer;
|
||||
frame.unity_no_overlay_copy skips that copy (the fade still works). frame.unity_runtime_msaa_off keeps the eye buffer
|
||||
at one sample (also GitHub issue 38).
|
||||
tested_version: '1.02'
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_no_msaa
|
||||
- frame.unity_oculus_check
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
- frame.unity_no_overlay_copy
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
issue: 38
|
||||
updated: '2026-10-05'
|
||||
min_app: 0.11.0
|
||||
source_hint: The Room VR
|
||||
@@ -0,0 +1,16 @@
|
||||
package: com.GhostlyBirdGames.BattleGlide
|
||||
title: BattleGlide
|
||||
status: works
|
||||
notes: Freezes from the headset's brief focus losses are hidden (focus_hold).
|
||||
details: The Frame drops the session out of focus for ~0.5 s every few seconds (11 times in 80 s of play) and Unreal
|
||||
pauses each time; focus_hold hides dips up to 1 s once the game has been focused for 1 s. Longer dips (real
|
||||
interruptions) still pause it.
|
||||
tested_version: 0.4.1 (BETA)
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
adapter:
|
||||
focus_hold: 1
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-04'
|
||||
source_hint: BattleGlide
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.ILMxLAB.VaderImmortal.ep1
|
||||
title: 'Vader Immortal: Episode I'
|
||||
status: issues
|
||||
notes: Starts in VR and plays the intro, then stays on the loading card (Vader's portrait with a progress bar).
|
||||
details: Unreal Engine 4 (GLES). After the Lucasfilm intro the game shows its loading card and never loads the next
|
||||
scene; it keeps rendering at 72 fps and ignores input. Ruled out so far - Meta platform requests (all answered),
|
||||
video playback (the intro is a video and plays), the no-ForceQuit build, frame and swapchain handling. The Frame's
|
||||
SteamVR runtime also leaks about 20 MB of memory a second while the game runs, which slows it down after a few
|
||||
minutes. Next steps - find what the loading code waits for in the game's engine library (no symbols) and report
|
||||
the runtime leak to Valve. GitHub issue 49.
|
||||
tested_version: 1.1.1+667256.cl.387770
|
||||
engine: Unreal
|
||||
xr: VrApi
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
issue: 49
|
||||
updated: '2026-10-06'
|
||||
source_hint: Vader Immortal- Episode I
|
||||
@@ -1,10 +1,14 @@
|
||||
package: com.NewFolderGames.IAmCat
|
||||
title: I Am Cat
|
||||
status: issues
|
||||
notes: Renders each eye separately; with the default single-pass rendering the right eye showed only effects on grey.
|
||||
details: Unity 2022.3 with the Oculus XR Plugin falls back to GLES (Zink) on the Frame, where its multiview pass drew
|
||||
the right eye's slice wrong (GitHub issue 8). frame.unity_multipass switches the game to multi-pass rendering; not
|
||||
yet confirmed in a headset.
|
||||
status: works
|
||||
notes: Steady view with pose_consistency (the judder is gone).
|
||||
details: Unity 2022.3 with the Oculus XR Plugin falls back to GLES (Zink) on the Frame, where its single-pass
|
||||
(multiview) rendering drew the right eye wrong (GitHub issue 8); frame.unity_multipass renders each eye in its own
|
||||
pass (OculusSettings.GetStereoRenderingMode + its inlined read in OculusLoader.Initialize). Poses and frame times
|
||||
are consistent, but every frame reaches the runtime one display period late (two passes on Zink) and the game
|
||||
clamps its physics step to 10 ms. The judder came from the game locating its views about three times per frame and
|
||||
getting slightly different poses each time; FrameBridge pose_consistency returns the same views for repeated
|
||||
queries of one display time (proposed in GitHub issue 8). The grey right eye on the loading screen is still open.
|
||||
tested_version: 1.4.0.0
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
@@ -13,8 +17,11 @@ frame:
|
||||
- frame.unity_multipass
|
||||
device:
|
||||
- device.text_input_window
|
||||
adapter:
|
||||
pose_consistency: 1
|
||||
verified:
|
||||
date: '2026-10-03'
|
||||
date: '2026-10-05'
|
||||
issue: 8
|
||||
updated: '2026-10-04'
|
||||
updated: '2026-10-05'
|
||||
min_app: 0.11.0
|
||||
source_hint: I Am Cat
|
||||
@@ -0,0 +1,21 @@
|
||||
package: com.NewFolderGames.IAmMonkey
|
||||
title: I Am Monkey
|
||||
status: works
|
||||
notes: Its intro video plays through FrameBridge's video panels.
|
||||
details: The game plays its intro on a panel that an Android media player (ExoPlayer) draws into
|
||||
(XR_KHR_android_surface_swapchain). The Frame's runtime lists that extension but refuses the call, so the panel had
|
||||
no image and the game stayed black waiting for the video (GitHub issue 25). The adapter's surface_emul (on by
|
||||
default) hands the player a real Android Surface and copies each video frame into an ordinary swapchain the panel
|
||||
shows.
|
||||
tested_version: 1.0.5
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
issue: 25
|
||||
updated: '2026-10-04'
|
||||
source_hint: I Am Monkey
|
||||
@@ -0,0 +1,26 @@
|
||||
package: com.PixelToys.BattleSisters
|
||||
title: BattleSisters
|
||||
status: works
|
||||
notes: Starts in VR; controller buttons and vibration work.
|
||||
details: Unity 2019.4 with Unity's built-in Oculus support. frame.unity_oculus_check starts VR (Meta's system-app check),
|
||||
adds the frame wait its legacy loop never makes (without it the GPU hung, black screen) and lets Unity's Oculus
|
||||
input accept Lepton's device model (it only reported controllers on a device named "Oculus ...", so buttons were
|
||||
dead). haptic_fix stops the first controller vibration from freezing the Frame (OVRPort's loader read its duration
|
||||
in nanoseconds as seconds and the game ran out of memory).
|
||||
tested_version: 1.2.4
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_no_msaa
|
||||
- frame.unity_oculus_check
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
- frame.unity_gl_shim
|
||||
adapter:
|
||||
haptic_fix: 1
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
issue: 48
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.11.1
|
||||
source_hint: Battle Sister
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.StressLevelZero.BONELAB
|
||||
title: BONELAB
|
||||
status: issues
|
||||
notes: Build 1.2068 plays (head tracking and controls work with frame.unity_user_presence); the newer build
|
||||
1.2974 crashes at start (Vulkan), no fix yet.
|
||||
details: The game runs (72 fps), but its player body stayed frozen - no head tracking, the controllers stuck to the
|
||||
model, no buttons - although OpenXR input and OVRPlugin's poses were fine. A few seconds after start (when Unity
|
||||
switches XR loaders) OVRPlugin reports the worn headset as not worn (ovrp_GetUserPresent2 -> 0), and BONELAB's
|
||||
Marrow rig only follows the player while Unity's HMD device reports UserPresence (OpenControllerRig checks
|
||||
XRHMD.IsUserPresent every frame). frame.unity_user_presence reports the headset as worn. Build 1.2974 crashed
|
||||
earlier in vkCreateInstance from the game's own Vulkan hooks (libSLZQuestNative.so); not retested.
|
||||
tested_version: 1.2068.34555
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_user_presence
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
updated: '2026-10-06'
|
||||
source_hint: BONELAB
|
||||
@@ -0,0 +1,22 @@
|
||||
package: com.Warpfrog.BladeAndSorcery
|
||||
title: 'Blade & Sorcery: Nomad'
|
||||
status: works
|
||||
notes: The headset's brief focus losses are hidden (focus_hold, up to 2.5 s).
|
||||
details: The Frame's runtime drops focus now and then (mostly 1.5-7 s, some only milliseconds); the game pauses
|
||||
("System menu opened", the world freezes) and re-aligns the player when focus returns (Player.OnVRPresence ->
|
||||
Teleport, the sideways jump). They match the headset's wear sensor flickering off while worn (SteamVR "HMD off" 0.5-2
|
||||
s), which only this game reacts to; focus_hold hides dips up to 2.5 s here. Rendering keeps 72 fps throughout.
|
||||
tested_version: 1.3.1
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
adapter:
|
||||
focus_hold: 1
|
||||
focus_hold_ms: 2500
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-04'
|
||||
source_hint: Blade & Sorcery Nomad
|
||||
@@ -0,0 +1,23 @@
|
||||
package: com.beatgames.beatpaber
|
||||
title: Beat Saber (co-existence build)
|
||||
status: works
|
||||
notes: A Beat Saber build with its own package name, so a modded and an unmodded Beat Saber can be installed side by
|
||||
side.
|
||||
details: The submitted build's app label was very long and the game didn't appear in the Frame's Steam library (GitHub
|
||||
issue 27, a shortcut Steam dropped again; fixed in 0.7.0); the recipe's title names it.
|
||||
tested_version: 1.45.1_27839
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 9965b01d5d1a3707bce1762f60d5419ce3e89bc095c63586f6940bb69696e9fd
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 29
|
||||
source_hint: Beat Saber
|
||||
@@ -0,0 +1,21 @@
|
||||
package: com.beatgames.beatsaber.lj369vr
|
||||
title: Beat Saber
|
||||
status: works
|
||||
tested_version: 1.40.8_7379
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
- frame.unity_gl_shim
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 6366a5411328b21de9e2da034af78290882b3c27b7a8f0c61688196e91320055
|
||||
app: 0.11.0
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20261005.6135832'
|
||||
agent: 56
|
||||
issue: 68
|
||||
source_hint: Beat Saber
|
||||
@@ -0,0 +1,17 @@
|
||||
package: com.camouflaj.salmon
|
||||
title: Marvel's Iron Man VR
|
||||
status: works
|
||||
tested_version: 0.1.0-250068
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 41e0ab90f622afd50accb0b6e2553520d30a6cc82e5ab4cbb2341b48f7316a71
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
issue: 47
|
||||
source_hint: Marvel's Iron Man VR
|
||||
@@ -0,0 +1,25 @@
|
||||
package: com.coatsink.alone
|
||||
title: Jurassic World Aftermath Collection
|
||||
status: works
|
||||
notes: Plays (owner's headset test, 2026-10-06).
|
||||
tested_version: v3.16
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_no_msaa
|
||||
- frame.unity_oculus_check
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
- frame.unity_gl_shim
|
||||
- frame.vrapi_stub
|
||||
device:
|
||||
- device.text_input_window
|
||||
adapter:
|
||||
haptic_fix: 1
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 0566b39d96258fa15eb1b03f27a7ad4219eb5442b0355cd803ed1cf13313f1b3
|
||||
app: 0.12.0
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.12.0
|
||||
source_hint: Jurassic World Aftermath Collection
|
||||
@@ -0,0 +1,18 @@
|
||||
package: com.crowscrowscrows.AccountingPlus
|
||||
title: Accounting+
|
||||
status: works
|
||||
notes: Plays normally, including the "press any button" screen after choosing to sit or stand.
|
||||
details: Unity 2017.4 built-in Oculus support. frame.unity_oculus_check gets VR started (Meta's system-app check and
|
||||
the frame wait its legacy loop never makes, libfp_ovrp.so), ~72 fps. The motion warning after the stance selection
|
||||
waits for a mouse click (Input.GetMouseButtonDown), which a Quest delivers for the controller press and Lepton never
|
||||
does; the same library now counts a newly pressed trigger or A/B/X/Y as that click.
|
||||
tested_version: 1.24.35
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_oculus_check
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.11.0
|
||||
source_hint: Accounting+
|
||||
@@ -0,0 +1,14 @@
|
||||
package: com.drbeef.doom3quest
|
||||
title: Doom3Quest
|
||||
status: issues
|
||||
notes: PDA shows black screen.
|
||||
tested_version: 1.4.8
|
||||
engine: Other
|
||||
xr: OpenXR
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 3c733f5cd08b6fa5d9e2775b1c1aee36b5943518b5d8451ba87e3c59a702afdf
|
||||
app: 0.12.0
|
||||
overport_cli: 1.2.3
|
||||
issue: 77
|
||||
source_hint: doom3quest148
|
||||
@@ -0,0 +1,17 @@
|
||||
package: com.drbeef.lambda1vr
|
||||
title: Lambda1VR
|
||||
status: works
|
||||
notes: 'Needs the game data: upload the release''s xash folder to the game''s storage (Files tab) and set --msaa
|
||||
1 in xash/commandline.txt. Owner''s headset test, 2026-10-06.'
|
||||
tested_version: 1.7.3
|
||||
engine: Other
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.tbxr_vendor
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 10bbccceb8d9a84ff3bcc9a21fd59db52784ff7742998bbe5b30d938dd7b97d2
|
||||
app: 0.12.0
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.12.0
|
||||
source_hint: Lambda1VR
|
||||
@@ -0,0 +1,18 @@
|
||||
package: com.enhanceexperience.tetriseffect
|
||||
title: TetrisEffect
|
||||
status: works
|
||||
notes: Opened the game, messed around with the menu, and played the first level. Works great.
|
||||
tested_version: 2.0.2
|
||||
engine: Unreal
|
||||
xr: VrApi
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 9ea10027ad8b7aefba8c14f23575c9cbbcaf3b38d12b971ea9c06635721b23c1
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260922.6101926'
|
||||
agent: 48
|
||||
issue: 45
|
||||
source_hint: tetriseffect
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.iillusions.spacepiratetrainerquest
|
||||
title: Space Pirate Trainer Quest
|
||||
status: works
|
||||
tested_version: '1.97'
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
known_good_sha256: 711d87e6c1fa14fdcdc8bab5792657523d0281b5d904f7f1abafd98f3189d2c0
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 14
|
||||
source_hint: Space Pirate Trainer
|
||||
@@ -0,0 +1,19 @@
|
||||
package: com.odders.shapeit
|
||||
title: BodyCombat
|
||||
status: works
|
||||
tested_version: 3.0.0
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 1aa5b2a46b25c86db65e3355a575af14b5d4d89b967c812274f181aab2e62b33
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 48
|
||||
issue: 56
|
||||
source_hint: LES MILLS BODYCOMBAT
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.parkline.wander
|
||||
title: Wander
|
||||
status: works
|
||||
tested_version: '0.3569'
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
known_good_sha256: c0c9de22b3646f35009a53796757d26f8d4e95259713f26a18fae2be995b23aa
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 17
|
||||
source_hint: Wander
|
||||
@@ -1,10 +1,12 @@
|
||||
package: com.playful.LuckysTale
|
||||
title: Lucky's Tale
|
||||
status: issues
|
||||
notes: Keeps MSAA off; the game turned it on by itself and the whole Frame restarted in a menu.
|
||||
details: Meta's OVRManager raises MSAA to 4x at runtime ("Switching to the recommended level"); multisampled
|
||||
render-to-texture on GLES (Zink) hung the Frame's GPU (GitHub issue 9). frame.unity_runtime_msaa_off keeps it at 0;
|
||||
not yet confirmed in a headset.
|
||||
status: works
|
||||
notes: Plays normally; touching a save slot no longer freezes the Frame (haptic_fix).
|
||||
details: Touching a save slot vibrates the controller through XR_FB_haptic_amplitude_envelope; OVRPort's OpenXR
|
||||
loader converts that envelope with the duration in nanoseconds read as seconds and allocates an enormous buffer, so
|
||||
the Frame ran out of memory and froze (found by the GitHub issue 9 reporter). FrameBridge's extension shim turns the
|
||||
envelope into a plain vibration before OVRPort's loader sees it (haptic_fix). Brief pauses came from the headset's
|
||||
wear sensor flickering, now hidden by focus_hold (on by default).
|
||||
tested_version: 1.0.55
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
@@ -13,8 +15,11 @@ frame:
|
||||
- frame.unity_runtime_msaa_off
|
||||
device:
|
||||
- device.text_input_window
|
||||
adapter:
|
||||
haptic_fix: 1
|
||||
verified:
|
||||
date: '2026-10-03'
|
||||
date: '2026-10-05'
|
||||
issue: 9
|
||||
updated: '2026-10-04'
|
||||
updated: '2026-10-05'
|
||||
min_app: 0.11.0
|
||||
source_hint: Luckys Tale
|
||||
@@ -0,0 +1,28 @@
|
||||
package: com.qcxr.qcxr
|
||||
title: QuestCraft
|
||||
status: works
|
||||
notes: Minecraft runs in VR (Vivecraft, about 72 fps; drops while worlds load). Needs FramePort 0.10.0 or newer for
|
||||
the picture (older versions show black). On first start QuestCraft downloads its Java runtime, which didn't unpack on
|
||||
the Frame once (see details).
|
||||
details: QuestCraft downloads its Java runtime (JRE.zip from QuestCraft's GitHub releases) into files/runtimes/JRE
|
||||
on first start; on the Frame that step once left nothing behind ("libjvm.so not found"; unpacked by hand). Two
|
||||
Frame fixes, both owner-verified 2026-10-05. (1) Minecraft 1.21.5 checks GL errors strictly and aborted with
|
||||
"OpenGL error 1282", an error the Frame's Mesa (Zink) reports where Quest's driver doesn't; QuestCraft's GL-to-GLES
|
||||
layer (LTW) ignores GL errors when LIBGL_NOERROR is set, which Lepton passes from LEPTON_ENV_LIBGL_NOERROR. (2) LTW
|
||||
passes desktop GL_DEPTH_COMPONENT32 through, which Mesa rejects, so every framebuffer was incomplete and the picture
|
||||
black; frame.ltw_depth (automatic for APKs with libltw.so) loads GLES through a shim that asks for
|
||||
GL_DEPTH_COMPONENT32F. Left over, harmless so far - Mesa still reports about 4 GL_INVALID_OPERATION per frame
|
||||
("in glthread", so the call is unknown; mesa_glthread=false would name it).
|
||||
tested_version: 6.0.0-RC4
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
lepton_env:
|
||||
LEPTON_ENV_LIBGL_NOERROR: '1'
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
updated: '2026-10-05'
|
||||
source_hint: QuestCraft
|
||||
@@ -0,0 +1,20 @@
|
||||
package: com.resolutiongames.abvriop.santacruz
|
||||
title: palazzo_santacruz
|
||||
status: works
|
||||
notes: Played a few levels. Passthrough also works.
|
||||
tested_version: 3.7.6.10866-release
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 394214a68297c1e5b019dc4f65b145e7bd0e98604205616364e0c151c1afd894
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260922.6101926'
|
||||
agent: 48
|
||||
issue: 46
|
||||
source_hint: abvriop
|
||||
@@ -0,0 +1,14 @@
|
||||
package: com.roblox.client
|
||||
title: Roblox
|
||||
status: unsupported
|
||||
notes: Crashes on its first VR frame on the Frame.
|
||||
details: SIGSEGV on Roblox's render thread right after it re-creates its eye swapchains (format 37, which the Frame
|
||||
doesn't offer, retried as sRGB 43) — in its own code or inside the runtime's xrBeginFrame. No integrity or login
|
||||
check involved; also needs an online login once it runs.
|
||||
tested_version: 2.741.1051
|
||||
engine: Other
|
||||
xr: OpenXR
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-04'
|
||||
source_hint: Roblox
|
||||
@@ -0,0 +1,19 @@
|
||||
package: com.steelcrategames.keeptalkingandnobodyexplodes
|
||||
title: Keep Talking and Nobody Explodes
|
||||
status: works
|
||||
tested_version: 1.10.15
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
known_good_sha256: 1a6f18e6d7b077e2662c7e633d473018067f4c871f5c45c4632c58233feaeac5
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 35
|
||||
issue: 15
|
||||
source_hint: Keep Talking and Nobody Explodes
|
||||
@@ -0,0 +1,17 @@
|
||||
package: com.survios.Creed
|
||||
title: Creed
|
||||
status: works
|
||||
tested_version: CRU-386950
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: c319dd95198a0a96a883aa70f6be9c843da0a265967fa4a7343ce7e6f4bfdc87
|
||||
app: 0.10.0
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 54
|
||||
issue: 60
|
||||
source_hint: Creed Rise to Glory
|
||||
@@ -0,0 +1,26 @@
|
||||
package: com.vertigogames.ImpactDevelopment
|
||||
title: Metro Awakening
|
||||
status: works
|
||||
notes: Plays (owner's headset test) with the Vulkan shim's fixes, fragment density maps hidden, space warp off and without
|
||||
Valve's VALVE_rpo layer (random jumping polygons in 3D without the last two, as in Into The Radius 2).
|
||||
details: Unreal 5.2 (Vulkan) quit itself (ForceQuit, use_alt), then crashed three times in the Frame's Vulkan driver
|
||||
(Turnip) on things Quest's driver ignores - a depth resolve in a subpass without a depth attachment, image barriers
|
||||
and image views for a missing image. Unreal turns on fragment-density-map foveation because the driver offers the
|
||||
extension and then expects the density map from the headset, which the Frame never provides; vk_hide_fdm hides the
|
||||
extension from the game (Valve's own foveation layer is unaffected).
|
||||
tested_version: 1.0-916944
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
use_alt: true
|
||||
adapter:
|
||||
vk_spec_fixes: 1
|
||||
vk_hide_fdm: 1
|
||||
hide_space_warp: 1
|
||||
lepton_env:
|
||||
VK_INSTANCE_LAYERS: VK_LAYER_VALVE_fdm_injection
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
updated: '2026-10-06'
|
||||
source_hint: Metro Awakening
|
||||
@@ -0,0 +1,22 @@
|
||||
package: com.zenstudios.PFXVRQuest
|
||||
title: Pinball FX VR
|
||||
status: issues
|
||||
notes: Plays; mixed reality mode not working yet. Space warp off (fewer stutters).
|
||||
tested_version: '1.9'
|
||||
engine: Unreal
|
||||
xr: OpenXR
|
||||
alt_overport:
|
||||
- patch_remove_unreal_force_quit
|
||||
adapter:
|
||||
equirect_emul: 1
|
||||
hide_space_warp: 1
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: ec5491f6a809c0ee9624e4a43aa0f2c307eb048763492d32a00ff4e0511efe54
|
||||
app: 0.9.1
|
||||
overport_cli: 1.2.5
|
||||
frame_build: '20260930.6234839'
|
||||
agent: 48
|
||||
issue: 50
|
||||
updated: '2026-10-06'
|
||||
source_hint: Pinball FX VR
|
||||
@@ -0,0 +1,21 @@
|
||||
package: io.ARVORE.TheBoysVR
|
||||
title: The Boys VR
|
||||
status: works
|
||||
notes: Plays with space warp off (owner's headset test, 2026-10-06; black screen reported before).
|
||||
tested_version: 1.1.0.345
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.unity_text_input
|
||||
device:
|
||||
- device.text_input_window
|
||||
adapter:
|
||||
haptic_fix: 1
|
||||
hide_space_warp: 1
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 5df46b1771611c607229ee59298d983a4d78a57591d4864a02da2df5d2b6f97b
|
||||
app: 0.12.0
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.12.0
|
||||
source_hint: The Boys
|
||||
@@ -0,0 +1,29 @@
|
||||
package: org.wiicompiled.quest
|
||||
title: WiiCompiled VR
|
||||
status: issues
|
||||
notes: 'To add a game: in FramePort''s Files tab, upload your .wcgame file to this game''s storage, folder
|
||||
Android/data/org.wiicompiled.quest/files/WiiCompiledOpenXRVR/Import, then open WiiCompiled (it imports the newest
|
||||
file there; one at a time). Once your game is imported, turn on "Start straight in VR" (and off "Show the app''s
|
||||
Android window") and update it on the Frame: it then opens in VR without the flat launcher window, which otherwise
|
||||
stays in view (turn it off again to import another game). The right eye jitters during races.'
|
||||
details: A native Mario Kart Wii recompilation (needs your own disc as .wcgame files built by the WiiCompiled
|
||||
launcher on a computer). Lepton's Android has no document picker, so the launcher's "Import from computer" and
|
||||
"select disc image" buttons fail (ActivityNotFoundException for OPEN_DOCUMENT); its Import folder is read when the
|
||||
launcher opens instead. The game's libmain.so has its own OpenXR loader and talks to the Frame's runtime directly
|
||||
(FrameBridge isn't in its path); the right-eye jitter in races comes from its stereo replay of the race view, so it
|
||||
needs a fix in WiiCompiled itself. The launcher is a flat Android window (shown with lepton-show-flatscreen) that
|
||||
stays in view after it starts the VR part (QuestActivity, process :game); frame.start_activity makes QuestActivity
|
||||
the start activity (owner-verified 2026-10-05, opens straight in VR), but it skips the launcher's import step, so it
|
||||
stays off by default.
|
||||
tested_version: 0.4.0-quest
|
||||
engine: Other
|
||||
xr: OpenXR
|
||||
frame:
|
||||
- frame.sdl_clipboard
|
||||
- frame.vk_sanitize
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-05'
|
||||
source_hint: WiiCompiled
|
||||
@@ -0,0 +1,20 @@
|
||||
package: rift.superhot_vr
|
||||
title: SUPERHOT VR
|
||||
status: works
|
||||
notes: 'Supports SteamVR/OpenXR itself: runs directly, without Revive.'
|
||||
engine: Unity
|
||||
xr: OpenXR
|
||||
kind: rift
|
||||
pcvr:
|
||||
- pcvr.xr_timefix
|
||||
- pcvr.steamvr_tuning
|
||||
pcvr_remove:
|
||||
- pcvr.revive
|
||||
as_is: true
|
||||
verified:
|
||||
date: '2026-10-05'
|
||||
known_good_sha256: 143dd3c6a93a45819a98e3cca8fd1535b461cdf860c927d955ca54815faf5d7b
|
||||
app: 0.6.3
|
||||
overport_cli: 1.2.5
|
||||
issue: 28
|
||||
source_hint: SUPERHOT VR
|
||||
@@ -0,0 +1,18 @@
|
||||
package: ru.targem.blazerush
|
||||
title: BlazeRush
|
||||
status: unsupported
|
||||
notes: Starts and reaches the menu room, but the room shows no controllers and ignores all input (it all reaches
|
||||
the game); no fix yet.
|
||||
tested_version: 1.0.349
|
||||
engine: Other
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.vrapi_bridge
|
||||
- frame.avatar_stub
|
||||
verified:
|
||||
date: '2026-10-06'
|
||||
known_good_sha256: 7cbd5d4252788ccd3c95b5c1841dcc798ea029d687938c024e33bd698ba17671
|
||||
app: 0.12.0
|
||||
updated: '2026-10-06'
|
||||
min_app: 0.12.0
|
||||
source_hint: BlazeRush
|
||||
@@ -0,0 +1,22 @@
|
||||
package: unity.SUPERHOT_Team.SUPERHOT_VR_QA
|
||||
title: SUPERHOT VR
|
||||
status: works
|
||||
notes: Quest version. Needs FramePort's launcher from agent 41 (reinstall once) so the game can write its saves.
|
||||
details: Unity 2018.4 with built-in Oculus support (GLES). Its eye swapchains (GL_RGBA8, then a 16-bit format) are
|
||||
created as sRGB by the adapter's swapchain_fix. The game creates its cloud save folder with mode 1700 and quits at
|
||||
start when it can't write there ("Something failed to initialize. Quitting!"); the launcher now gives every folder
|
||||
in the game's storage owner and group write permission.
|
||||
tested_version: '1.161'
|
||||
engine: Unity
|
||||
xr: VrApi
|
||||
frame:
|
||||
- frame.unity_no_msaa
|
||||
- frame.unity_oculus_check
|
||||
- frame.unity_text_input
|
||||
- frame.unity_runtime_msaa_off
|
||||
device:
|
||||
- device.text_input_window
|
||||
verified:
|
||||
date: '2026-10-04'
|
||||
updated: '2026-10-04'
|
||||
source_hint: SUPERHOT VR
|
||||
+121
-2
@@ -8,13 +8,28 @@ signatures:
|
||||
severity: fatal
|
||||
diagnosis: Lepton found no activity with category LAUNCHER.
|
||||
suggest: [frame.launcher]
|
||||
- id: linux-x86-no-fex
|
||||
pattern: '(cannot execute binary file: Exec format error|exec format error)'
|
||||
severity: fatal
|
||||
diagnosis: An x86_64 Linux program was started directly; the Frame's arm64 CPU needs FEX (x86 translation) for it. Reinstall the app with FramePort 0.12 or newer, which installs FEX and starts the program through it.
|
||||
suggest: []
|
||||
- id: no-arm64
|
||||
pattern: 'INSTALL_FAILED_NO_MATCHING_ABIS'
|
||||
severity: fatal
|
||||
diagnosis: 32-bit-only APK. The Steam Frame has no AArch32; this cannot run. Use the PC (Rift) version via Revive.
|
||||
suggest: []
|
||||
- id: unity-render-crash
|
||||
pattern: 'CRASH\s*:.*#\d+\s+pc [0-9a-f]+\s+\S*libgallium_dri\.so'
|
||||
severity: fatal
|
||||
diagnosis: Unity's render thread crashed inside the Frame's GL driver (Mesa/Zink); the picture freezes or stays grey. Known triggers - an OVROverlay copy (try "Unity - skip OVROverlay layers", e.g. The Room VR), MSAA switched on at runtime, a GPU hang (zink DEVICE LOST).
|
||||
suggest: [frame.unity_no_overlay_copy, frame.unity_runtime_msaa_off]
|
||||
- id: swapchain-rect-invalid
|
||||
pattern: 'xrEndFrame failed -25\b'
|
||||
severity: fatal
|
||||
diagnosis: The runtime rejects the game's frames because an image rect reaches past its swapchain (by a few pixels on some Frames); the game stops drawing (e.g. stuck at a "Waiting" box). FrameBridge from FramePort 0.11.0 clamps the rects - rebuild and reinstall the game.
|
||||
suggest: [frame.adapter]
|
||||
- id: missing-ovr-symbol
|
||||
pattern: '(UnsatisfiedLinkError|cannot locate symbol) .*"?(ovr_[A-Za-z0-9_]+|ovrMessageType_ToString)'
|
||||
pattern: '(UnsatisfiedLinkError|cannot locate symbol) .*"?(ovr_[A-Za-z0-9_]+|ovr[A-Z][A-Za-z0-9]*_ToString)'
|
||||
severity: fatal
|
||||
diagnosis: The game imports Meta platform functions overport's loader lacks.
|
||||
suggest: [frame.ovrstubs, frame.ovrplatformcompat]
|
||||
@@ -51,6 +66,42 @@ signatures:
|
||||
diagnosis: The game's OVRManager turns MSAA on at runtime (QualitySettings can't keep it off). On GLES this can
|
||||
hang the Frame's GPU or restart the headset; if it does, keep it off in the game's code.
|
||||
suggest: [frame.unity_runtime_msaa_off]
|
||||
- id: runtime-input-crash
|
||||
pattern: 'vrclient\.so[^\n]*(UpdateActionStateInternal|sxr_xrSyncActions)'
|
||||
severity: fatal
|
||||
diagnosis: The Frame's runtime crashed in its controller-input code (xrSyncActions), typically right after the game
|
||||
got focus. sync_guard serialises input syncs and pauses them briefly after focus returns.
|
||||
suggest: [adapter.sync_guard]
|
||||
- id: focus-dip-teleport
|
||||
pattern: 'OnVRPresence[^\n]*Teleport'
|
||||
severity: warning
|
||||
diagnosis: The game moves the player when the headset reports presence again, which the Frame's brief focus dips
|
||||
trigger (the view jumps). focus_hold hides dips under 600 ms.
|
||||
suggest: [adapter.focus_hold]
|
||||
- id: unity-vr-device-none
|
||||
pattern: 'NewtonVR.*(not setup properly|no headset found)|Loaded VR device: None|XR: Oculus could not be loaded'
|
||||
severity: fatal
|
||||
diagnosis: Unity didn't start its Oculus VR device (older Unity checks for Meta's system apps first), so the game
|
||||
runs as a hidden 2D app.
|
||||
suggest: [frame.unity_oculus_check]
|
||||
- id: sdl-no-clipboard
|
||||
pattern: 'ClipboardManager\.addPrimaryClipChangedListener|SDLClipboardHandler\.<init>'
|
||||
severity: fatal
|
||||
diagnosis: An SDL app (SDL2 / LÖVE) crashed at start because Lepton's Android has no clipboard service.
|
||||
suggest: [frame.sdl_clipboard]
|
||||
- id: controller-profile-rejected
|
||||
pattern: 'PATH_UNSUPPORTED.*xrSuggestInteractionProfileBindings|xrSuggestInteractionProfileBindings.*(-48|PATH_UNSUPPORTED)'
|
||||
severity: info
|
||||
diagnosis: The runtime rejected controller bindings for a profile it doesn't know (Meta's Touch Plus/Pro). Usually
|
||||
harmless (Meta's OVRPlugin suggests plain Touch too); a game that suggests only these gets them again as Touch
|
||||
(profile_remap, on by default; log "controller profile ... -> oculus/touch_controller").
|
||||
suggest: []
|
||||
- id: input-call-failed
|
||||
pattern: 'input_diag: unsupported: (xrStringToPath|xrCreateAction|xrAttachSessionActionSets|xrSyncActions) ->'
|
||||
severity: warning
|
||||
diagnosis: The runtime refused one of the game's controller-input calls (logged by input_diag; the line names the
|
||||
call, the result and the argument), so controls set up through it don't work.
|
||||
suggest: []
|
||||
- id: gl-shader-failed
|
||||
pattern: 'GLShim\s*: SHADER COMPILE FAILED|#extension directive is not allowed in the middle|could not implicitly convert operands'
|
||||
severity: error
|
||||
@@ -61,8 +112,37 @@ signatures:
|
||||
severity: error
|
||||
diagnosis: The game submits a VrApi layer type the bridge can't show; whole frames are dropped (black screen).
|
||||
suggest: []
|
||||
- id: graphics-requirements-missing
|
||||
pattern: '(XR_ERROR_GRAPHICS_REQUIREMENTS_CALL_MISSING|Failed to create XR session: -50\b|xrCreateSession[^\n]*-50\b)'
|
||||
severity: fatal
|
||||
diagnosis: The game creates its OpenXR session without asking for the graphics requirements first; Meta's runtime
|
||||
allows that, the Frame's doesn't (e.g. Lambda1VR). Current FrameBridge builds ask on the game's behalf and retry -
|
||||
rebuild the game.
|
||||
suggest: [frame.adapter]
|
||||
supersedes: [native-crash]
|
||||
- id: avatar-driver-missing
|
||||
pattern: 'OVRAvatar-Loader: DisplayErrorAndExit'
|
||||
severity: fatal
|
||||
diagnosis: Meta's avatar library can't find its driver (it needs Meta's Horizon app) and stops the game (e.g.
|
||||
BlazeRush). Replace it with a do-nothing library; the game runs without Meta avatars.
|
||||
suggest: [frame.avatar_stub]
|
||||
supersedes: [native-crash, java-crash]
|
||||
- id: vrapi-symbol-missing
|
||||
pattern: 'cannot locate symbol "vrapi_\w+"'
|
||||
severity: fatal
|
||||
diagnosis: The game needs a VrApi function its libvrapi.so doesn't have (e.g. BlazeRush before the bridge gained
|
||||
vrapi_PollEvent). Rebuild with the current FramePort; if it persists, report the function name.
|
||||
suggest: []
|
||||
supersedes: [native-crash, java-crash, dlopen-failed]
|
||||
- id: vrapi-before-init
|
||||
pattern: 'VrApiLoader: vrapi_\w+ was called before vrapi_Initialize'
|
||||
severity: fatal
|
||||
diagnosis: Meta's VrApi loader stopped the game. Its OVRPlugin runs on OpenXR but still calls a VrApi function
|
||||
without starting VrApi (e.g. Jurassic World Aftermath); the VrApi bridge can't stand in for this loader.
|
||||
suggest: [frame.vrapi_stub]
|
||||
supersedes: [direct-vrapi, native-crash]
|
||||
- id: direct-vrapi
|
||||
pattern: 'vrapi_Initialize|VrApi.*not supported|libvrapi\.so.*(not found|failed)'
|
||||
pattern: '(?<!called before )vrapi_Initialize|VrApi.*not supported|libvrapi\.so.*(not found|failed)'
|
||||
severity: warning
|
||||
diagnosis: The engine talks to VrApi directly; it needs the VrApi bridge.
|
||||
suggest: [frame.vrapi_bridge]
|
||||
@@ -95,6 +175,18 @@ signatures:
|
||||
severity: warning
|
||||
diagnosis: Runtime lacks timespec time conversion (emulated by the current adapter build).
|
||||
suggest: [frame.adapter]
|
||||
- id: unreal-vulkan-driver-crash
|
||||
pattern: '#00 pc [^\n]*/vulkan\.freedreno\.so[\s\S]{0,3000}?lib(Unreal|UE4)\.so'
|
||||
severity: fatal
|
||||
diagnosis: The Frame's Vulkan driver crashed on a call from Unreal. Unreal 5 passes things Quest's driver ignores - a depth resolve in a subpass without a depth attachment (fixed by the Vulkan shim), image barriers and image views for a missing image when it expects fragment density maps (foveation) from the headset (e.g. Metro Awakening).
|
||||
suggest: [frame.vk_sanitize, adapter.vk_spec_fixes, adapter.vk_hide_fdm]
|
||||
supersedes: [native-crash]
|
||||
- id: unreal-fdm-missing
|
||||
pattern: 'vk shim: left out \d+ image barrier\(s\) without an image \(first: layout \d+ -> 1000218000'
|
||||
unless: 'vk shim: fragment density map extensions hidden'
|
||||
severity: warning
|
||||
diagnosis: Unreal expects fragment density maps (foveation) from the headset, which the Frame doesn't provide; its image views for them crash the Frame's driver a few seconds later (e.g. Metro Awakening).
|
||||
suggest: [adapter.vk_hide_fdm]
|
||||
- id: fossilize-renderpass
|
||||
pattern: '#0\d pc [^\n]*libVkLayer_fossilize\.so[\s\S]{0,4000}?FVulkanRenderPass::FVulkanRenderPass'
|
||||
severity: fatal
|
||||
@@ -119,6 +211,14 @@ signatures:
|
||||
diagnosis: overport's OpenXR dispatcher aborted on a swapchain larger than 4096 px (video players, big textures).
|
||||
suggest: [frame.swapchain_limit]
|
||||
supersedes: [native-crash]
|
||||
- id: ovr-microphone-crash
|
||||
pattern: 'ovr_Microphone_GetOutputBufferMaxSize\+'
|
||||
severity: fatal
|
||||
diagnosis: The game asked OVRPort's Meta platform library for the microphone buffer size before starting the
|
||||
microphone, and the library read the not-yet-opened audio stream (SIGSEGV in libaaudio.so, e.g. Unreal's Oculus
|
||||
voice chat a few seconds after the logo).
|
||||
suggest: [frame.ovr_microphone]
|
||||
supersedes: [native-crash]
|
||||
- id: native-crash
|
||||
pattern: 'Fatal signal (\d+) \(SIG[A-Z]+\)'
|
||||
severity: fatal
|
||||
@@ -233,6 +333,25 @@ signatures:
|
||||
diagnosis: The game crashed under Wine/Proton (set the Proton debug log and check steam-<appid>.log).
|
||||
suggest: [pcvr.proton_log]
|
||||
|
||||
- id: save-folder-permission
|
||||
pattern: "(We don't have write permission to|UnauthorizedAccessException: Access to the path \"/(sdcard|storage/emulated/0)/Android/data/)"
|
||||
severity: error
|
||||
diagnosis: The game can't write to a folder it created in its storage (e.g. SUPERHOT's cloud/data, mode 1700, which
|
||||
makes it quit at start). FramePort's launcher (agent 41 or newer) gives such folders owner and group write
|
||||
permission before and during every launch; update the game on the Frame (reinstall) to get the new launcher.
|
||||
suggest: []
|
||||
- id: surface-swapchain-emulated
|
||||
pattern: 'surface_emul: emulated Android surface swapchain'
|
||||
severity: info
|
||||
diagnosis: The game plays a video on a panel through an Android Surface (XR_KHR_android_surface_swapchain), which the
|
||||
Frame's runtime refuses; FrameBridge emulates it (surface_emul) and copies each video frame into the panel.
|
||||
suggest: []
|
||||
- id: surface-swapchain-failed
|
||||
pattern: 'surface_emul: (setup failed|upload failed|EGL context failed|Vulkan upload path unavailable)'
|
||||
severity: warning
|
||||
diagnosis: FrameBridge couldn't emulate an Android video panel (XR_KHR_android_surface_swapchain); the panel stays
|
||||
empty, and a game waiting for its intro video may stay black (e.g. I Am Monkey's intro).
|
||||
suggest: []
|
||||
milestones: # progress markers, in order; the furthest one reached is reported
|
||||
- {id: pcvr-launch, kind: pcvr, pattern: 'FramePort: launching|Launched injector with', label: Launcher started}
|
||||
- {id: pcvr-oculus-hmd, kind: pcvr, pattern: 'FramePort oculushmd: OculusHMDConnected event ready', label: Oculus headset event provided}
|
||||
|
||||
@@ -0,0 +1,31 @@
|
||||
# Meta XR Audio metadata lifetime
|
||||
|
||||
FrameBridge automatically handles metadata retirement in the verified AArch64
|
||||
Meta XR Audio Wwise build (`e1619e7fb839badf0ea5ecc22d9f028d0b17c34d`). It requires
|
||||
the build ID and exact function prologues; other builds and 32-bit adapters are
|
||||
left unchanged. No additional patch switch or recipe entry is required.
|
||||
|
||||
The SDK queues terminated metadata for deletion, then drains those queues before
|
||||
reading the current `AkAudioObjects` snapshot. In Batman: Arkham Shadow, that
|
||||
snapshot can still reference queued metadata during smoke-bomb playback. The
|
||||
audio thread subsequently clears its dirty flags at offset 8 through the stale
|
||||
pointer. A hardware watch captured this store in
|
||||
`OculusEndpointSink::ConsumeObjectExperimentalMetadata`, at library offset
|
||||
`0x2ced90`. Reallocated input tree nodes occupy the same 48-byte size class;
|
||||
the stale store corrupts their right pointer and the game crashes later.
|
||||
|
||||
`native/adapter/audio_metadata.h` wraps the audio consumption boundary to make
|
||||
the current snapshot available to metadata cleanup. `audio_metadata_queue.h`
|
||||
retains queued objects still referenced by that snapshot, then reclaims them
|
||||
normally when the references disappear. It preserves the SDK's queue mutex,
|
||||
virtual deleting destructor, audio parameters and processing. There is no timed
|
||||
quarantine, replacement allocator, audio suppression or diagnostic memory arena.
|
||||
|
||||
Synthetic regression tests exercise mixed referenced and unreferenced queue
|
||||
entries, both metadata types, subsequent retirement, and cleanup without a live
|
||||
snapshot. On-headset smoke-bomb tests first showed the observed overwrite stopped,
|
||||
then passed with ordinary allocations and all memory diagnostics removed.
|
||||
|
||||
The existing `frame.adapter` install step includes the repair in its packaged
|
||||
adapter and updates already wrapped APKs. Rebuild the adapters and checksums with
|
||||
`python native/build.py --only adapter`.
|
||||
+31
@@ -0,0 +1,31 @@
|
||||
# FAQ
|
||||
|
||||
## How should I lay out a game that has OBB files (an APK plus a data folder)?
|
||||
|
||||
Give every game its own folder, put the APK in it, and put the game's data next to the APK in a folder named
|
||||
after the game's **package name** (the name the `.obb` files contain, e.g. `com.Armature.VR4`):
|
||||
|
||||
```
|
||||
Games/ ← scan this folder (Add games → Scan a folder)
|
||||
├── Resident Evil 4/ ← one folder per game (any name)
|
||||
│ ├── VR4.apk ← the APK (any file name)
|
||||
│ └── com.Armature.VR4/ ← the data folder: exactly the package name
|
||||
│ ├── main.203.com.Armature.VR4.obb
|
||||
│ └── patch.203.com.Armature.VR4.obb
|
||||
└── Beat Saber/
|
||||
└── com.beatgames.beatsaber.apk ← games without OBBs: just the APK
|
||||
```
|
||||
|
||||
- **Data folder name:** the package name (`com.Armature.VR4` above), or `obb`. FramePort uses the first of the two
|
||||
that exists and isn't empty.
|
||||
- **Everything in that folder is copied** to the game's `Android/obb/<package>/` on the Frame, subfolders included.
|
||||
So games that ship raw data files instead of `.obb` files work the same way.
|
||||
- **One game per folder.** Several APKs in one folder count as one game; FramePort uses the first and keeps the others
|
||||
as alternates.
|
||||
- **Scanning:** pick the folder that contains the game folders (`Games/` above) to add them all, or one game's folder
|
||||
to add just that game. FramePort looks up to 5 levels deep.
|
||||
- **A single game:** Add games → Add an APK file… works with a lone APK too. Its data is found when the data folder sits next
|
||||
to the APK, named as above.
|
||||
|
||||
Not sure of the package name? Look at the OBB file names: `main.<version>.<package name>.obb`. Or add the APK
|
||||
first: the game's page shows the package name under **Details**.
|
||||
@@ -55,6 +55,10 @@
|
||||
## Graphics stack
|
||||
- Vulkan: freedreno (Mesa Turnip); Valve injects `VK_LAYER_VALVE_rpo` and `VALVE_fdm_injection` via
|
||||
VK_INSTANCE_LAYERS (set `VK_INSTANCE_LAYERS=""` through `device.lepton_env` to test without them).
|
||||
The FDM layer follows each eye's gaze; one-eye jitter in some games (GitHub #69) is fixed per game with
|
||||
`device.foveation`: `fixed` = `FDM_DEBUG=disable_offsets`, `off` = `VK_INSTANCE_LAYERS=""`. Lepton passes `FDM`,
|
||||
`FDM_DEBUG`, `FOVE_LEVEL` and `FDM_SWAPCHAIN_SIZE` through to the container (liblepton/mounting.sh PASSTHROUGH_VARS);
|
||||
the layers are chosen on the host, so setting them inside the game does nothing.
|
||||
- GL ES: Zink (Mesa GL on Vulkan). Strict GLSL (see PLAYBOOK) and occasional `DEVICE LOST` with MSAA render-to-texture.
|
||||
|
||||
## Proton / Windows games (surveyed 2026-09-29; running a Rift game under it not yet verified)
|
||||
@@ -65,6 +69,17 @@
|
||||
SteamLinuxRuntime_4). None are installed by default.
|
||||
- `steam -ifrunning steam://install/<appid>` only opens a confirmation dialog in the headset. The agent's unattended
|
||||
mode writes an appmanifest stub (StateFlags 1026, installdir from appinfo) and restarts Steam, which then downloads it.
|
||||
- **x86_64 Linux apps (agent v61; verified on the device 2026-10-07: an x86_64 glibc test program installed + launch test RUNNING, "machine=x86_64 glibc=2.41"):**
|
||||
FEX is Steam app 3127680 (`fex`, installs as `common/FEX-Emu`, ~6 MB, 21 s via the appmanifest-stub path:
|
||||
`install_proton` / `proton_status` with `kind: linux_x86`). Its toolmanifest commandline is
|
||||
`/fex-compat-tool %verb% --`, **no** require_tool_appid: it does not use the Steam Linux Runtime. fex-compat-tool
|
||||
(Python) runs `<FEX-Emu>/usr/bin/FEX` with RootFS `/usr/share/guestos/fex-mesa` (part of the SteamOS image: an
|
||||
x86 Arch-style root with glibc 2.41, Mesa, graphics_provider.json for x86_64 + i386), emulates x86_64 and i386
|
||||
(emulator.json), honours `STEAM_FEX_TSOENABLED`, `STEAM_FEX_MULTIBLOCK`, `STEAM_COMPAT_FEX_CONFIG`, sets
|
||||
`tu_override_uncached_as_cache_coherent=true` and logs to `/tmp/fex-compat-tool-<pid>.log`. It **exits 1 ("No compat
|
||||
data path?") without `STEAM_COMPAT_DATA_PATH`** (keeps Config.json/AppConfig/Server/Telemetry in `<it>/fex-emu/`):
|
||||
the Linux launcher exports `<base>/compatdata`. Version seen: FEX-2607-76-g37265b1. ldd can't read x86 programs,
|
||||
so the missing-library check is skipped for them; an x86_64 AppImage is extracted through the same chain.
|
||||
- The command Steam runs is built from each tool's `toolmanifest.vdf` (`commandline`, `require_tool_appid`):
|
||||
`<SLR4-arm64>/_v2-entry-point --verb=waitforexitandrun -- <Proton>/proton waitforexitandrun <exe>`.
|
||||
- Proton sets up VR (vrclient/wineopenxr registry) only when `SteamGameId` is set (steam_helper `setup_vr_registry`).
|
||||
@@ -106,6 +121,29 @@
|
||||
- SSH: `sshd` must be enabled (`sudo systemctl enable --now sshd`), which needs a user password (`passwd`).
|
||||
- mDNS: avahi-daemon runs by default; hostname `frame` → `frame.local`.
|
||||
|
||||
## Video of the headset view (surveyed 2026-10-05; used by the Live view tab)
|
||||
- `steamvr-v4l2cam.service` (user unit, part of gamescope-session.target, `Restart=always`) runs SteamVR's
|
||||
`/opt/steamvr/bin/linuxarm64/v4l2cam --output=99`: it reads the compositor's "Headset View" (IVRHeadsetView) and
|
||||
writes it to a v4l2loopback webcam named **"SteamVR"** (`/dev/video99`, 1920x1080 RGB24, advertised 30 fps, frames
|
||||
arrive at the display rate). Nothing on the Frame reads it by default; idle it costs nothing, read ~0.2 core.
|
||||
It shows what the wearer sees (SteamVR home, Steam's panels; a game's layers are expected but not yet seen in it).
|
||||
Black and ~1 fps (one frame per ~1.0 s) while the headset sleeps (standby): a 30 fps stream then repeats each
|
||||
frame in bursts, which looks like a stall in a player. Its size follows SteamVR's headset view (v4l2cam has no size
|
||||
option), so the live view only scales down (360p/480p/720p/1080p) or sends it as is ("full").
|
||||
- Sound: `pactl get-default-sink` (`alsa_loopback_device.stereo.alsa_output.platform-sound.HiFi__Speaker__sink`) and its
|
||||
`.monitor` source carry what the headset plays; the Frame's ffmpeg has the `pulse` input and `aac`. Timestamps: pulse
|
||||
uses the wall clock, v4l2 CLOCK_MONOTONIC → `-ts mono2abs` on the v4l2 input. Don't force
|
||||
`-use_wallclock_as_timestamps` on the pulse input: it stamped bursts of AAC packets with one time.
|
||||
- Steam's own game recording / Remote Play / broadcast capture the **gamescope** PipeWire node (`CDesktopCapturePipeWire:
|
||||
... node path: gamescope`): with gamescope's `--backend openvr` that's only the flat Steam UI, not VR. Steam's arm64
|
||||
`libvideo.so` encodes with x264 (vaapi/nvenc paths don't apply). No cast/spectator feature for the Frame's own VR view
|
||||
exists in Steam's UI; the SteamVR web server (27062) has no mirror route.
|
||||
- Encoding: the Qualcomm encoder (`/dev/video23` qcom-iris-encoder, V4L2 M2M) doesn't work with the stock tools (ffmpeg
|
||||
`h264_v4l2m2m` hangs, gst `v4l2h264enc` not-negotiated). ffmpeg + libx264 works: FramePort's live view
|
||||
(`install/livestream.py`: `fps=30` before the scale, ultrafast/zerolatency, 3 threads, nice 10, fragmented MP4 on
|
||||
stdout, + AAC 128k) measured 0.34 core at 720p / 0.56 at 1080p with a quiet picture (video only); expect ~1-1.4
|
||||
cores with a busy scene.
|
||||
|
||||
## Text input
|
||||
|
||||
- Lepton's Android has no on-screen keyboard (IME) and VR apps run headless, so no Android window has keyboard focus
|
||||
|
||||
+36
-2
@@ -7,48 +7,82 @@ Generated from [catalog/games](../catalog/games) by `scripts/compat_list.py`.
|
||||
| Game | Platform | Status | Notes |
|
||||
|---|---|---|---|
|
||||
| 4XVR Video Player | Quest | ✅ Works | |
|
||||
| Accounting+ | Quest | ✅ Works | |
|
||||
| AllInOneSports | Quest | ✅ Works | |
|
||||
| Asgard's Wrath 2 | Quest | ✅ Works | |
|
||||
| BAM | Quest | ✅ Works | |
|
||||
| BARTENDER VR SIMULATOR | Quest | ✅ Works | |
|
||||
| Batman: Arkham Shadow | Quest | ✅ Works | |
|
||||
| BattleGlide | Quest | ✅ Works | |
|
||||
| BattleSisters | Quest | ✅ Works | |
|
||||
| Beat Saber | Quest | ✅ Works | |
|
||||
| Beat Saber | Quest | ✅ Works | |
|
||||
| Beat Saber (co-existence build) | Quest | ✅ Works | |
|
||||
| Blade & Sorcery: Nomad | Quest | ✅ Works | |
|
||||
| BodyCombat | Quest | ✅ Works | |
|
||||
| Carve Snowboarding | Quest | ✅ Works | |
|
||||
| Cook-Out | Quest | ✅ Works | |
|
||||
| Creed | Quest | ✅ Works | |
|
||||
| Demeter | Quest | ✅ Works | |
|
||||
| Dinosaur Island | Quest | ✅ Works | |
|
||||
| Espire 2 | Quest | ✅ Works | |
|
||||
| Genotype | Quest | ✅ Works | |
|
||||
| H.U.N.T | Quest | ✅ Works | |
|
||||
| I Am Cat | Quest | ✅ Works | |
|
||||
| I Am Monkey | Quest | ✅ Works | |
|
||||
| In Death: Unchained | Quest | ✅ Works | |
|
||||
| Into The Radius 2 | Quest | ✅ Works | |
|
||||
| Job Simulator | Quest | ✅ Works | |
|
||||
| Jurassic World Aftermath Collection | Quest | ✅ Works | |
|
||||
| Keep Talking and Nobody Explodes | Quest | ✅ Works | |
|
||||
| Lambda1VR | Quest | ✅ Works | |
|
||||
| LEGO® Bricktales | Quest | ✅ Works | |
|
||||
| Lucky's Tale | Quest | ✅ Works | |
|
||||
| Marvel's Deadpool VR | Quest | ✅ Works | |
|
||||
| Marvel's Iron Man VR | Quest | ✅ Works | |
|
||||
| Medieval Dynasty New Settlement | Quest | ✅ Works | |
|
||||
| Metro Awakening | Quest | ✅ Works | |
|
||||
| Mobile Suit Gundam: Silver Phantom | Quest | ✅ Works | |
|
||||
| Nano | Quest | ✅ Works | |
|
||||
| NEX Player | Quest | ✅ Works | |
|
||||
| NOPE CHALLENGE | Quest | ✅ Works | |
|
||||
| palazzo_santacruz | Quest | ✅ Works | |
|
||||
| Path of the Warrior | Quest | ✅ Works | |
|
||||
| PowerWash Simulator VR | Quest | ✅ Works | |
|
||||
| QuestCraft | Quest | ✅ Works | |
|
||||
| Rick and Morty: Virtual Rick-ality | PC VR | ✅ Works | |
|
||||
| Riven | Quest | ✅ Works | |
|
||||
| Robo Recall | Quest | ✅ Works | |
|
||||
| Sniper Elite VR: Winter Warrior | Quest | ✅ Works | |
|
||||
| Space Pirate Trainer Quest | Quest | ✅ Works | |
|
||||
| Stremio | Quest | ✅ Works | |
|
||||
| SUPERHOT VR | PC VR | ✅ Works | |
|
||||
| SUPERHOT VR | Quest | ✅ Works | |
|
||||
| TetrisEffect | Quest | ✅ Works | |
|
||||
| The Boys VR | Quest | ✅ Works | |
|
||||
| The Climb 2 | Quest | ✅ Works | |
|
||||
| The Room VR | Quest | ✅ Works | |
|
||||
| Toy Master | Quest | ✅ Works | |
|
||||
| Under Cover | Quest | ✅ Works | |
|
||||
| VR4 | Quest | ✅ Works | |
|
||||
| Wallace & Gromit in The Grand Getaway | Quest | ✅ Works | |
|
||||
| Waltz of the Wizard: Extended Edition | Quest | ✅ Works | |
|
||||
| Wander | Quest | ✅ Works | |
|
||||
| Arcsmith | Quest | ⚠️ Works with issues | Right eye distorts during movement (unresolved; swap, tracking, Valve layers, depth and pacing ruled out). |
|
||||
| Assassin's Creed Nexus | Quest | ⚠️ Works with issues | Some launch warning text is still upside down; the rest of the UI is fixed by flip emulation. |
|
||||
| I Am Cat | Quest | ⚠️ Works with issues | Renders each eye separately; with the default single-pass rendering the right eye showed only effects on grey. |
|
||||
| Lucky's Tale | Quest | ⚠️ Works with issues | Keeps MSAA off; the game turned it on by itself and the whole Frame restarted in a menu. |
|
||||
| BONELAB | Quest | ⚠️ Works with issues | Build 1.2068 plays (head tracking and controls work with frame.unity_user_presence); the newer build 1.2974 crashes at start (Vulkan), no fix yet. |
|
||||
| Myst | Quest | ⚠️ Works with issues | Minor graphical glitches on some objects. |
|
||||
| Phantom: Covert Ops | Quest | ⚠️ Works with issues | DLC/store button crashes (no Meta store). |
|
||||
| Pinball FX VR | Quest | ⚠️ Works with issues | Plays; mixed reality mode not working yet. |
|
||||
| Silhouette | Quest | ⚠️ Works with issues | Hand-tracking game; the Frame synthesizes hands from controllers, so it is janky. |
|
||||
| Time Stall | Quest | ⚠️ Works with issues | Both eyes distort during movement (unresolved). |
|
||||
| Vader Immortal: Episode I | Quest | ⚠️ Works with issues | Starts in VR and plays the intro, then stays on the loading card (Vader's portrait with a progress bar). |
|
||||
| WiiCompiled VR | Quest | ⚠️ Works with issues | To add a game: in FramePort's Files tab, upload your .wcgame file to this game's storage, folder Android/data/org.wiicompiled.quest/files/WiiCompiledOpenXRVR… |
|
||||
| BlazeRush | Quest | ❌ Doesn't run | Starts and reaches the menu room, but the room shows no controllers and ignores all input (it all reaches the game); no fix yet. |
|
||||
| Espire 1: VR Operative (Quest Edition) | Quest | ❌ Doesn't run | Mesa GL driver crash during texture upload. |
|
||||
| HITMAN 3 VR: Reloaded | Quest | ❌ Doesn't run | Vulkan driver crash (freedreno), even without Valve layers. |
|
||||
| Journey of the Gods | Quest | ❌ Doesn't run | 32-bit only; the Frame has no AArch32. |
|
||||
| Roblox | Quest | ❌ Doesn't run | Crashes on its first VR frame on the Frame. |
|
||||
| Shadow Point | Quest | ❌ Doesn't run | 32-bit only; the Frame has no AArch32. |
|
||||
| Sniper Elite VR | Quest | ❌ Doesn't run | GPU hang (zink: DEVICE LOST) even with MSAA off. |
|
||||
| Sports Scramble (Santa Cruz) | Quest | ❌ Doesn't run | 32-bit only; the Frame has no AArch32. |
|
||||
+93
-7
@@ -49,11 +49,33 @@ The Frame and the computer must be on the same network.
|
||||
and approve it on the Frame (Valve's own devkit pairing; it only sends this computer's key to the Frame). Install
|
||||
Lepton from the Steam Frame page afterwards if it's missing.
|
||||
|
||||
### With a USB cable
|
||||
|
||||
For networks that block the setup (guest Wi-Fi, firewalls, discovery not working), and for faster uploads:
|
||||
|
||||
1. On the Frame, turn on **Developer Mode** (Settings → System → Developer Mode). The Frame's USB network only exists
|
||||
in Developer Mode.
|
||||
2. Connect the Frame's USB-C port to the computer.
|
||||
3. In FramePort: **Steam Frame → Set up with a USB cable**. FramePort detects the cable and shows the setup command,
|
||||
which reaches the computer over the cable. Already set up? It connects over the cable right away.
|
||||
|
||||
The cable needs no driver on Windows 10/11, macOS or Linux, and the computer gets an address from the Frame
|
||||
automatically. Uploads use the cable whenever it's plugged in (about 37 MB/s, ~3× typical Wi-Fi), even when FramePort
|
||||
connected over Wi-Fi. Unplug it any time: FramePort finds the Frame on Wi-Fi again by itself.
|
||||
|
||||
### Firewalls
|
||||
|
||||
If the setup command only says "timed out", a firewall on your computer blocks the Frame; the setup page
|
||||
says which after about 45 seconds. Details per system: [FRAME_SETUP.md](FRAME_SETUP.md#network-and-firewalls).
|
||||
|
||||
## Running FramePort on the Frame (experimental)
|
||||
|
||||
FramePort can run on the Steam Frame itself, without a PC: in **Desktop Mode**, download
|
||||
`FramePort-linux-arm64.tar.gz`, unpack it (`tar xzf FramePort-linux-arm64.tar.gz`) and start `FramePort/FramePort`.
|
||||
Turn on **Developer Mode** first (Steam → Settings → System); FramePort then manages "This Frame" directly, with
|
||||
no pairing. Games are added to the Steam library when you go back to **Gaming Mode** (Steam has to restart for it,
|
||||
which would end Desktop Mode). This is new: please report anything odd with **Report a problem**.
|
||||
|
||||
## Installing games
|
||||
|
||||
- **Install on Frame** on a game's page (or select several in the Library and install them together). Installs run
|
||||
@@ -69,7 +91,39 @@ says which after about 45 seconds. Details per system: [FRAME_SETUP.md](FRAME_SE
|
||||
mixed-reality options in plain words, only those that matter for the game. Changes are kept with the game and,
|
||||
when it's installed, used the next time it starts.
|
||||
- Ordinary Android apps (no VR) are installed unchanged and shown as a flat window in the headset. Android's
|
||||
back/home/recents buttons are hidden by default (patch **Hide Android's navigation bar**).
|
||||
back/home/recents buttons are hidden by default (patch **Hide Android's navigation bar**). If FramePort guesses
|
||||
wrong (a phone app shows nothing in the headset, or a VR app opens as a flat window), choose **VR** or **Flat
|
||||
window** under **Show as VR or as a flat window** in the game's **Customize** section, then **Update on Frame**.
|
||||
- **Add games → Add a Windows program (.exe)…** adds a single Windows program; the Frame runs it through Proton (as a
|
||||
window unless it is a VR game). A program sitting in Downloads, the home folder or a drive root is copied on its
|
||||
own first, so the install doesn't upload everything next to it.
|
||||
- In the packaged app you can also **drag files onto the Library**: APKs, Linux apps (AppImage, `.zip`/`.tar.gz`),
|
||||
Windows programs (`.exe`), folders, or a FrameDrop manifest (`.json`).
|
||||
|
||||
### Install links ("Install with FrameDrop" buttons)
|
||||
|
||||
Some developers put an **Install with FrameDrop** button on their site (the one-click protocol of the FrameDrop
|
||||
sideloader, documented at framedropvr.com/docs). FramePort understands the same links:
|
||||
|
||||
- **Clicking a button** opens FramePort (or the window that's already open) on Windows and Linux. FramePort shows
|
||||
the title, the files, their size and whether a checksum is given, and asks before it downloads anything. Then it
|
||||
downloads the build, adds it to your library and starts the usual install on the Frame. If no Frame is connected,
|
||||
the game is added now and installs once the Frame is back.
|
||||
- **Add games → Install from a link…** takes the button's address (right-click → Copy link), a `framedrop://` or
|
||||
`frameport://` link, a manifest (`.json`) or a direct link to an APK, a Linux build or a Windows program. Use it on
|
||||
macOS, where web pages can't hand links to FramePort yet.
|
||||
- **Settings → Install links** has one switch for `framedrop://` links (the buttons) and one for FramePort's own
|
||||
`frameport://` links. Both are on by default. If FrameDrop is installed too and already opens `framedrop://`
|
||||
links, FramePort leaves them to it; **Use FramePort for these links** takes them over (turn the switch off to give
|
||||
them back).
|
||||
- **For developers:** a FrameDrop manifest works as it is
|
||||
(`{"schema": "framedrop.install/v1", "name": "…", "files": [{"url": "https://…", "sha256": "…"}]}`). FramePort
|
||||
also reads an optional `"frameport": {"description": "…", "icon": "https://….png"}` object (FrameDrop ignores
|
||||
it): the install question then shows the icon and description, and they become the game's icon and "About this
|
||||
game" text when no store has them. Without a manifest (a bare file link) FramePort guesses the title from the
|
||||
file name and replaces it with the app's own name once it's downloaded.
|
||||
- Only `https://` links to public servers are used (plain `http://` only on this PC, for testing); links with a
|
||||
user name or password, or pointing into your local network, are refused. Only install from sites you trust.
|
||||
|
||||

|
||||
|
||||
@@ -80,10 +134,10 @@ reality), showing only what matters for that game. Changes are kept with the gam
|
||||
|
||||
## Typing on the Frame
|
||||
|
||||
- **Type on Frame** (Steam Frame page, a game's menu, or the keyboard icon on the sidebar's Frame card): while the
|
||||
window is open, this computer's keyboard works as a keyboard plugged into the Frame. Select a text field in the
|
||||
headset (in an app, Steam or the desktop) and type; Esc and shortcuts go to the Frame too. Paste longer text into
|
||||
the box to type it in one go (US keyboard layout). Click **Done** to disconnect.
|
||||
- **Type on Frame** (its own tab in the sidebar; also on the Steam Frame page and in a game's menu): while the tab is
|
||||
open, this computer's keyboard works as a keyboard plugged into the Frame. Select a text field in the headset (in
|
||||
an app, Steam or the desktop) and type; Esc and shortcuts go to the Frame too. Paste longer text into the box to
|
||||
type it in one go (US keyboard layout). Opening another tab disconnects the keyboard.
|
||||
- **Steam's on-screen keyboard** opens for text fields of apps shown as a window (2D apps, and VR apps with
|
||||
**Show the app's Android window**). Steam lists that window as **Gamescope** (the Frame's display compositor);
|
||||
leave it open: it's what receives the typing, the VR view isn't affected.
|
||||
@@ -93,6 +147,12 @@ reality), showing only what matters for that game. Changes are kept with the gam
|
||||
|
||||
## Updating
|
||||
|
||||
**Game configs** (the tested recipes in the catalog) update by themselves: FramePort checks GitHub every 6 hours for
|
||||
newly confirmed or fixed configs and uses them without a FramePort update; a game whose recipe changed then shows
|
||||
**Update on Frame**. Configs that need a newer FramePort are skipped until you update. Settings → Data shows the last
|
||||
check (**Check now**) and turns this off.
|
||||
|
||||
|
||||
FramePort checks for a new release at start and every 6 hours (it only downloads the release information). When one
|
||||
exists, the Library shows **Update now**: FramePort downloads the new version, verifies it against the release's
|
||||
`SHA256SUMS.txt` (on Windows also the signature), restarts and opens as the new version. Games, settings, signing keys
|
||||
@@ -102,6 +162,10 @@ Settings → **Updates**: turn the check off, or turn on **Install updates autom
|
||||
installs at the next start). If FramePort's folder isn't writable, **Update now** opens the release page instead. The
|
||||
update log is `logs/update.log` in the data folder.
|
||||
|
||||
**Dev builds:** when you're asked to test a fix before it's released, use Settings → Updates → **Install the latest
|
||||
dev build…**. It shows what to test, then installs like an update (same checks). Dev builds are less tested; the next
|
||||
release is offered to you as a normal update.
|
||||
|
||||
Command line: `frameport update` (`--check` only checks, exit code 10 = update available; `--yes` doesn't ask).
|
||||
`FRAMEPORT_NO_UPDATE_CHECK=1` turns all checks off.
|
||||
|
||||
@@ -124,12 +188,32 @@ starts it if asked). FramePort installs it on the Frame and Proton runs it as a
|
||||
it shows up in the Frame's Steam library tagged "Windows game on Frame". Whether a game runs depends on Proton on ARM
|
||||
(x86 games run through emulation).
|
||||
|
||||
## Linux apps
|
||||
|
||||
The Frame runs SteamOS on an arm64 CPU, so native Linux apps built for **aarch64/arm64** run on it directly (no
|
||||
Android container, no Proton). **Add games → Add a Linux app…** takes an AppImage or a `.zip`/`.tar.gz`/
|
||||
`.tar.xz` archive; **Add a Linux app folder…** takes an unpacked app. FramePort finds the program that starts it (the
|
||||
game page's **Change…** picks another one) and whether it's a VR (OpenXR) app. **Install on Frame** uploads it
|
||||
unchanged and adds it to the Frame's Steam library, tagged "Linux app on Frame"; Play, launch tests and Uninstall
|
||||
work like for other games.
|
||||
|
||||
- **x86_64 builds** run through **FEX**, Valve's x86 translator, with the x86 system libraries SteamOS ships for it
|
||||
(the way Steam on the Frame runs x86 Linux games). The first install of one installs FEX on the Frame (Steam
|
||||
restarts once and downloads it, a few MB). They run slower than arm64 builds: when an app offers both, FramePort picks the arm64 one. The game
|
||||
page shows which CPU a build is for.
|
||||
- The app must bring the libraries SteamOS doesn't have (checked for arm64 builds; x86_64 builds use FEX's x86
|
||||
system, which has glibc and Mesa, and aren't checked ahead). If some are missing, the install reports them and the game
|
||||
page lists them: look for a build that includes them.
|
||||
- From the command line: `frameport add-linux <AppImage, folder or archive> [--exe <program>]`.
|
||||
|
||||
## Files on the Frame (videos, documents, mods, saves)
|
||||
|
||||
The **Files** tab manages files on the Frame over the same connection as installs; no other transfer app is needed.
|
||||
Pick a location, browse folders, and use **Upload files** / **Upload folder**, **New folder**, or the download, rename
|
||||
and delete buttons on each entry. Tick several entries (or the box above the list for all) to download or delete them
|
||||
together. In the downloaded app you can also drag files and folders from Explorer / Finder / your file manager onto
|
||||
and delete buttons on each entry. Right-click an entry (or the empty space) for the same actions in a menu. Tick
|
||||
several entries (or the box above the list for all), or click and drag across them, to download or delete them
|
||||
together; a right-click on one of them then acts on all. The **Screenshots** tab and the **Library** work the same
|
||||
way: right-click for a menu, drag across cards to select several. In the downloaded app you can also drag files and folders from Explorer / Finder / your file manager onto
|
||||
the list to upload them into the open folder. Uploads and downloads run in the Activity panel, resume after an interruption and
|
||||
skip files that are already there.
|
||||
|
||||
@@ -159,11 +243,13 @@ and `frameport <command> --help` describe every option. The main ones:
|
||||
| Command | What it does |
|
||||
|---|---|
|
||||
| `scan <folder>` / `list` / `show <game>` | add games, list the library, show a game's analysis and patches |
|
||||
| `add-linux <path>` | add a Linux app, arm64 or x86_64 (AppImage, folder or archive) |
|
||||
| `recipe <game> --enable/--disable <patch>` | change a game's patches (`patches` lists them all) |
|
||||
| `build <game>` / `install <game>` / `test <game>` | build, install on the Frame (`--to pc` for PC VR on this PC), launch test |
|
||||
| `frame discover` / `frame connect` / `frame info` | find, pair with and describe the Frame |
|
||||
| `frame send` / `frame storage` / `frame cleanup` | copy files to the Frame, show where they go, free space |
|
||||
| `tools status` / `tools install` | the tools FramePort downloads |
|
||||
| `open-link "<link>"` | install from an "Install with FrameDrop" button's address or a manifest/APK/zip link (`--yes`, `--no-install`) |
|
||||
| `diag report <game>` / `share-recipe <game>` | report a problem / share a working recipe |
|
||||
| `update` | update FramePort |
|
||||
|
||||
|
||||
@@ -13,8 +13,23 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
## Startup failures (visible in launch.log)
|
||||
| Symptom | Cause | Fix |
|
||||
|---|---|---|
|
||||
| One eye (usually the right) shimmers or jitters in the 3D view while menus and panels look steady; pacing is clean (GitHub #69, e.g. RTCWQuest, Moss) | Valve's eye-tracked foveation layer (`VALVE_fdm_injection`) moves its low-density regions with each eye's gaze, and the right eye's gaze filter restarts often (`CEyePoseUKF R: Large dt … Bootstrapped` in `~/.local/share/Steam/logs/eyetracking.txt`) | Customize → "Eye-tracked foveation (Valve)" (`device.foveation`): **Fixed** (`FDM_DEBUG=disable_offsets`, keeps the GPU saving) or **Off** (`VK_INSTANCE_LAYERS=""`); catalog field `foveation:` |
|
||||
| A Unity OpenXR game closes right after the OpenXR instance is created: `F VrApiLoader: vrapi_SetPropertyInt was called before vrapi_Initialize()!`, SIGABRT on UnityMain (GitHub #62, Jurassic World Aftermath) | the APK still ships Meta's VrApi loader; OVRPlugin (1.89, on OpenXR) calls it without starting VrApi and Meta's loader aborts. The VrApi bridge can't replace it (39 of the loader's 114 functions: OVRPlugin wouldn't link) | `frame.vrapi_stub` (same exports, each returns 0); triage `vrapi-before-init` |
|
||||
| A VrApi game exits at once: `UnsatisfiedLinkError … dlopen failed: cannot locate symbol "vrapi_PollEvent"` (GitHub #57, BlazeRush) | the engine imports a VrApi function the VrApi bridge didn't implement | the bridge has `vrapi_PollEvent`, `RecenterPose`, `SetDisplayRefreshRate`, `GetSystemPropertyFloatArray` (rebuild the game); the static check "VrApi functions resolvable" names any other missing one; triage `vrapi-symbol-missing` |
|
||||
| A Team Beef port (Lambda1VR, RTCWQuest, …) exits at once: `UnsatisfiedLinkError: dlopen failed: library "libopenxr_loader_valve.so" not found` (GitHub #59) | TBXR loads `openxr_loader_<Build.MANUFACTURER>` (Lepton: valve) and takes the Meta path only when `strstr(OPENXR_HMD, "meta")` matches, else Pico's | `frame.tbxr_vendor` (empty `libopenxr_loader_valve.so` + the "meta" literal → "alve"). Game data (`xash/`, …) goes to /sdcard: upload it with the Files tab to the game's storage. Black eyes with `TBXR: Incomplete frame buffer object: GL_FRAMEBUFFER_INCOMPLETE_MULTISAMPLE`: TBXR always uses multisampled render-to-texture (even `--msaa 1`); `frame.tbxr_vendor` links the GL shim, which hands it single-sampled versions (log `GL shim: multisampled render-to-texture … drawn single-sampled`) |
|
||||
| Logos and a loading animation, then black (no crash, frames keep coming) in a game whose OBB folder has extra `*.pak` files (GitHub #61, Star Wars: Tales from the Galaxy's Edge: seasons + Wwise banks) | the game asks Meta's platform for these asset files (`ovr_AssetFile_GetList` / `DownloadById`); OVRPort's loader doesn't know them, so the content never "arrives" | `frame.asset_files` (native/langpack lists the data's `*.pak` as installed `default` assets, IAP `free`, and answers DownloadById at once with the path; off: env FRAMEPORT_ASSET_FILES=0) |
|
||||
| `cannot locate symbol "ovrPeerConnectionState_ToString"` (or another `ovr<Enum>_ToString`) at start (BlazeRush, GitHub #57) | OVRPort's platform loader lacks several Platform SDK enum helpers | `frame.ovrstubs` now stubs them too; `*_ToString` stubs return "" (not NULL) |
|
||||
| Exits right after the OpenXR instance is created: `Failed to create XR session: -50` (`XR_ERROR_GRAPHICS_REQUIREMENTS_CALL_MISSING`, Lambda1VR) | the game skips `xrGet*GraphicsRequirementsKHR`; Meta's runtime tolerates it, SteamVR's doesn't. Lambda1VR's TBXR doesn't even enable `XR_KHR_opengl_es_enable` (only `XR_EXT_local_floor`) | FrameBridge adds `XR_KHR_opengl_es_enable` when an app enables no graphics API extension, asks for the requirements on the game's behalf and retries xrCreateSession once (logs `added XR_KHR_opengl_es_enable …`, `the app skipped …; asked for it`; every launch logs the final extension list `xrCreateInstance with N extension(s)`); triage `graphics-requirements-missing`. Verified headless: Lambda1VR runs at 72 fps |
|
||||
| Exits at start: `OVRAvatar-Loader: DisplayErrorAndExit: Failed to launch SystemActivities` after `ovrAvatar_Initialize: Failed to load AvatarSDK driver` (BlazeRush, GitHub #57) | Meta's avatar loader needs Horizon; it then tries Meta's error screen and aborts | `frame.avatar_stub` (same exports, do nothing); triage `avatar-driver-missing`. Games that ship the library but don't start avatars at launch (Lucky's Tale, BattleSisters, Arcsmith) don't need it |
|
||||
| Controller vibrations much stronger than on a Quest (The Boys VR, Jurassic World, BONELAB, …) | OVRPlugin games send amplitude envelopes; `haptic_fix` turned each into one vibration at the envelope's *peak* for its whole duration (a short fading pulse became a long full-strength buzz) | `haptic_fix` now uses the envelope's RMS; Game settings → "Vibration strength" (`haptic_scale`, 0-1) scales every vibration in FrameBridge; launch.log shows the first requests (`haptic: …`). OVRPlugin stops a vibration with amplitude 0 (2 s duration): FrameBridge turns that into xrStopHapticFeedback (without it the last buzz ran its full 2 s) |
|
||||
| Every game suddenly fails to start: `crun: create keyring …: Disk quota exceeded`, `is not a running context` | rootless podman leaked a kernel keyring per launch; 200-key quota exhausted | `keyring = false` in `~/.config/containers/containers.conf` (FramePort agent does it), then reboot the Frame once |
|
||||
| A Unity app's text field shows a caret for a moment and loses focus; no keyboard appears (e.g. Stremio VR login) | Unity's TMP_InputField/InputField wait for Android's on-screen keyboard and close themselves without one (Lepton has none); headless VR apps also have no focused Android window, so no key press reaches them | `frame.unity_text_input` (Cpp2IL finds `TouchScreenKeyboardShouldBeUsed`/`isKeyboardUsingEvents`, rewritten to false/true) + `device.text_input_window` (lepton-show-flatscreen: Steam's keyboard and Type on Frame work) |
|
||||
| Play gives Steam's "Game configuration unavailable"; Steam's console_log: `GameAction [AppID <id>] … RequestingLicense → UpdatingAppInfo → LaunchApp failed with AppError_9` | this Frame's Steam never loaded FramePort's shortcuts.vdf entry (it treats the id as a store app); cause unknown (GitHub #21/#30) | automatic since agent v43: Play registers the game through Steam's devkit interface ("Devkit Game: …", `devkit_register`) and starts that; uninstall removes it. Agent v58: a devkit entry Steam forgot after a restart is added again live on Play (no NOT_IN_LIBRARY → no Steam restart), and installs/art updates of devkit games only copy art (no Steam restart, GitHub #41) |
|
||||
| Steam's Exit game leaves the game running (container `lepton-steamlaunch-<appid>` still up) | Steam stopped only its `reaper`; launch.sh and Lepton (setsid) never got a signal (GitHub #36) | agent v44: launch.sh's 2 s loop ends the game when its parent is gone (`upgrade_launchers` adds it to existing launchers); by hand: `podman kill lepton-steamlaunch-<appid>` |
|
||||
| Black screen at start while audio/ExoPlayer runs; log `xrEndFrame: dropped N unusable layer(s)`, a quad layer with swapchain 0x0 (e.g. I Am Monkey's intro video) | The game plays video into an Android-surface swapchain (XR_KHR_android_surface_swapchain); the Frame's runtime lists the extension but returns FUNCTION_UNSUPPORTED | adapter `surface_emul` (default on): FrameBridge gives the player a SurfaceTexture-backed Surface and copies each frame into an ordinary swapchain (log `surface_emul: …`) |
|
||||
| The game quits right after start: `Something failed to initialize. Quitting!` / `We don't have write permission to …/files/cloud/data` (e.g. SUPERHOT) | The game created a save folder with mode 1700; inside Lepton the app writes through the folder's group | launch.sh `fix_perms` adds owner + group write to every folder in the game's storage (agent 41); reinstall to get the new launcher |
|
||||
| The whole Frame slows to a halt, then the game is killed (`Out of memory: Killed process … anon-rss:10+ GB`), e.g. Lucky's Tale | The game's own memory grows ~1 GB/s on Unity's `Loading.PreloadManager` thread (perf page-fault profile); not the flat window, not the text-input patches | none yet: mark unsupported; profile with `perf record -p <pid> -e page-faults --call-graph fp` (works as steamos, `perf_event_paranoid` 2) |
|
||||
| A Linux app exits at once: `cannot execute binary file: Exec format error` in launch.log | an x86_64 program started directly (installed before FramePort ran x86 builds through FEX, or by hand) | reinstall it: x86_64 Linux apps install FEX on the Frame and start through it (agent v61, `kind: linux_x86`; FEX also needs `STEAM_COMPAT_DATA_PATH`: "No compat data path?" in launch.log = an agent v60 launcher, reinstall); triage `linux-x86-no-fex`. Prefer an arm64 build when the app offers one |
|
||||
| `APP_ACTIVITY is empty`, nothing starts | Manifest has category INFO only; Lepton needs LAUNCHER | `frame.launcher` (automatic) |
|
||||
| PC VR game on the Frame shows as a flat window / Revive: `Unable to load LibOVRRT DLL` / `LoaderInstance::CreateInstance chained CreateInstance call failed` | Frame SteamVR runtime rejects OpenXR apiVersion 1.1 (`XR_ERROR_API_VERSION_UNSUPPORTED`), which Proton 11's VR helper requests | `pcvr.xr_timefix` (Frame OpenXR layer, default on): retries xrCreateInstance as 1.0 |
|
||||
| Unreal PC VR game on the Frame runs as a flat window although OpenXR works (no `LogHMD` OVRPlugin lines; Unreal logs nothing when it skips the Oculus plugin) / launch.log: `FramePort oculushmd: could not create the OculusHMDConnected event` | UE's OculusHMD (and LibOVR's `ovr_Detect`) only start when the Windows event `OculusHMDConnected` exists and is signalled; on a PC the Oculus service creates it. Revive hooks `OpenEventW` for it, but that relies on Detours patching Wine's (ARM64EC) kernelbase | `pcvr.oculus_unreal` (default for Unreal Rift games; PC VR counterpart of overport's `patch_oculus_unreal`): launch.sh runs the injector through `fp_oculushmd.exe`, which provides the real event until the game exits |
|
||||
@@ -30,9 +45,11 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
| `INSTALL_FAILED_NO_MATCHING_ABIS` | 32-bit-only APK; Frame has no AArch32 | None. PC/Rift version via Revive |
|
||||
| `UnsatisfiedLinkError` / `cannot locate symbol "ovr_…"` | overport's platform loader lacks Meta platform functions | `frame.ovrstubs` (automatic, generated stubs) |
|
||||
| missing `ovrMessageType_ToString` | same, but the game needs a real string | `frame.ovrplatformcompat` (automatic) |
|
||||
| The game stays in its built-in language or waits at start although its OBB / files hold language packs (`<tag>.lang`, e.g. `de.lang`) | overport's platform loader answers `ovr_LanguagePack_GetCurrent/SetCurrent` with request id 0, so the game never gets the pack's path | `frame.langpacks` (opt-in, experimental, shown for games whose data has `*.lang`; `native/langpack`, build it with `python native/build.py --only langpack`). Default pack: the one the game applies, else env `FRAMEPORT_LANGPACK=<tag>`, else the only pack; search path override `FRAMEPORT_LANGPACK_DIRS`. Unreal games (Deadpool VR) grey out a pack whose asset `Metadata` differs from the game's version string: the patch writes the APK's versionName as Metadata (env `FRAMEPORT_LANGPACK_META` overrides) and reports the pack under the `/storage/emulated/0/Android/obb/<pkg>/` spelling of its path; with `/sdcard/…` the text switched but the dialogue stayed silent (verified in the headset with Deadpool VR) |
|
||||
| `ClassNotFoundException com.oculus.os.AnalyticsEvent` → abort | Quest telemetry lookup in Meta XR Audio (Unreal build) or native code | `frame.metaxr_telemetry` + `frame.oculusos` (automatic) |
|
||||
| `JNI DETECTED ERROR`, `GetStringUTFChars … NULL` | CheckJNI is on because overport marks the app debuggable | `frame.nodebug` |
|
||||
| Unreal game quits a few seconds after start (`System.exit`) | ForceQuit after a failed Quest platform check | alternate build with `patch_remove_unreal_force_quit` (`use_alt`) |
|
||||
| Unreal game crashes a few seconds after the logo with no backtrace (Unreal's own signal handler hides it: logcat-crash.log empty, Zygote `exited due to signal 11`); the crashing thread is `GameThread`, pc in `libaaudio.so`, lr `libovrplatformloader.so (ovr_Microphone_GetOutputBufferMaxSize+0x10)`; the last platform call is `ovr_Microphone_Create` (e.g. The Walking Dead: Saints & Sinners Ch. 2) | OVRPort's platform loader opens the microphone's AAudio stream only in `ovr_Microphone_Start`, but `GetOutputBufferMaxSize` reads that stream unchecked; Unreal's Oculus voice asks for the size right after `Create` | `frame.ovr_microphone` (NULL check rewritten in place; size 0 until the microphone starts) |
|
||||
| `xrCreateSwapchain` -26 / format unsupported (GLES) | Frame takes only sRGB formats, no MSAA | adapter `swapchain_fix` (default on) |
|
||||
| Frames rejected, "Waiting…" forever | a layer uses a failed swapchain or an extension that isn't enabled (e.g. equirect2) | adapter `layer_fix` (default on) |
|
||||
| `xrConvert…TimeKHR` FUNCTION_UNSUPPORTED spam; VrApi bridge stalls before recenter | runtime lacks timespec conversion | current adapter emulates it |
|
||||
@@ -49,7 +66,18 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
| PC VR game judders/stutters although the GPU keeps up; vrcompositor.txt "Timed out. N total" high or frames dropped | the game misses the headset's refresh (e.g. 96 Hz = 10.4 ms; Stormland's slow frames take 10.7 ms) | `pcvr.steamvr_tuning` (default on): next Play sets SteamVR per-app `preferredRefreshRate` + `motionSmoothingOverride` via `fp_vrsettings.exe` |
|
||||
| Quest app keeps recentering / snapping the view when you turn your head; log shows session state 5→4→3→4→5 within a second | the Frame briefly takes focus; the app recenters on focus changes | unfixed: hiding the dips (debounce) made AC Nexus stay black, so it was removed |
|
||||
| Video player / app finds no local videos; MediaProvider "Requested path /home/steamos/... doesn't appear under ..." | Lepton's /sdcard is a symlink to a host path, so Android's media index rejects every file | upload in the Files tab (Videos = /sdcard/Movies) and browse folders in the app |
|
||||
| Batman: Arkham Shadow closes during smoke-bomb effects; later input-tree corruption | Meta XR Audio Wwise deletes queued metadata still referenced by the current audio frame, then writes through the stale pointer | FrameBridge automatically retires metadata after current-frame references disappear, for the verified AArch64 SDK build only; see [AUDIO_METADATA.md](AUDIO_METADATA.md) |
|
||||
| Game stays on a loading or "Waiting" box although it reached FOCUSED; log `FrameBridge: xrEndFrame failed -25` then no more `pacing:` lines (e.g. PowerWash Simulator on some Frames, GitHub #39) | The eye image rect ends a few pixels past its swapchain (Unity rounds the swapchain width, the runtime's recommended size differs per Frame); SteamVR rejects every frame with XR_ERROR_SWAPCHAIN_RECT_INVALID | FrameBridge clamps every projection/quad image rect to its swapchain (`rect_clamp`, default on since 0.11.0; log `rect_clamp: view N image rect clamped`): rebuild + reinstall the game |
|
||||
| Game (Unity, GLES) freezes, `zink: DEVICE LOST` | multisampled render-to-texture hangs the GPU | `frame.unity_no_msaa`; if it persists: unfixable → PC version |
|
||||
| Only the Android home screen shows; the log has Unity's VR device as `None` (e.g. Accounting+, Unity 2017) | Unity 2017–2018 built-in Oculus support starts VR only when `com.oculus.systemactivities` is installed; Lepton has no Meta system apps, so Unity falls back to non-VR | `frame.unity_oculus_check`: that package name in libunity.so → `android`, plus `native/ovrpshim` (libfp_ovrp.so): Unity 2017's legacy frame loop (`ovrp_Update2`/`ovrp_BeginFrame`) never calls `ovrp_WaitToBeginFrame`, so without the shim no `xrWaitFrame` happens, `CompositorOpenXR::Update … outside of frame bounds` floods the log and the dashboard freezes. With it: log `ovrp frame loop shim: waited for frame N`, ~71 fps. Accounting+ then stops at "press any button" although its OVRInput gets clean input (`INPUT_PROBE` in the patch logs connected controllers/buttons/input focus per call) — unresolved |
|
||||
| Black flat window, then a GPU hang: kernel `hangcheck detected gpu lockup` (offending task the game), `zink: DEVICE LOST`, Unity render-thread crash; `outside of frame bounds` thousands of times a second (e.g. BattleSisters, Unity 2019.4) | Unity 2019 on its built-in VR (no `libOculusXRPlugin.so`) uses the same legacy frame loop as Unity 2017: no `xrWaitFrame`, the render thread floods the GPU | `frame.unity_oculus_check` adds the ovrpshim frame wait for these too (revision 2) |
|
||||
| Unreal game stuck on a loading image after the intro, frames keep coming (72 fps), no crash (e.g. Vader Immortal) | suspect: a Meta Platform SDK request no message ever answers | diagnostics: `frame.ovr_trace` (opt-in) logs every `ovr_*` call, the answers `ovr_PopMessage` returns and every 10 s the unanswered requests (`fp_ovrtrace` in launch.log). Never fake an entitlement answer |
|
||||
| Own-engine game crashes in `libVkLayer_fossilize.so` (Fossilize's recording thread, e.g. Roblox) | same as Deadpool VR: uninitialised pointers in what Fossilize records | `frame.vk_sanitize` now also covers own-engine libraries that load `libvulkan.so` by name |
|
||||
| Crash right after the game gets focus, in `vrclient.so … UpdateActionStateInternal` / `sxr_xrSyncActions` (e.g. Myst) | a race in the Frame runtime's input code on the first sync after focus (not every launch) | adapter `sync_guard` (input syncs one at a time with event polling, paused 250 ms after FOCUSED) |
|
||||
| View jumps sideways / game pauses or freezes for a moment every few seconds (e.g. Blade & Sorcery, BattleGlide) | the Frame drops focus for ~0.5 s (FOCUSED→VISIBLE→SYNCHRONIZED); games pause or re-align the player (`OnVRPresence … Teleport`) | adapter `focus_hold` |
|
||||
| SDL / LÖVE app crashes at start: `NullPointerException … ClipboardManager.addPrimaryClipChangedListener` in `SDLClipboardHandler.<init>` (e.g. Dramatic Shape) | Lepton's Android has no clipboard service (`service check clipboard`: not found) | `frame.sdl_clipboard` (that call → nops in classes.dex, in place, `apk/dex.py`); reproduced and verified with LÖVE for Android 11.5 |
|
||||
| Controllers do nothing (e.g. stuck on a setup screen); log: `xrSuggestInteractionProfileBindings … XR_ERROR_PATH_UNSUPPORTED` | the game only suggests bindings for Meta's newer profiles (Touch Plus / Touch Pro); the Frame's Android runtime knows `oculus/touch_controller`, not those | adapter `profile_remap` (default on): the bindings are suggested again for Touch (log: `controller profile … -> oculus/touch_controller`) |
|
||||
| Some buttons do nothing or the wrong thing (e.g. a Quest game's X/Y on the Frame's left controller) | the game binds only Quest Touch and SteamVR maps Touch onto the Frame controllers with its own remap (Touch left X/Y land on the d-pad, right X and Y repeat B), or the runtime rejected a profile or an input call | turn on adapter `input_diag` (diagnostics, off by default; `frameport settings <pkg> input_diag=1`) and look for `input_diag:` lines: `bindings: <profile> accepted` or `unsupported: interaction profile <profile> -> <result>` with the rejected paths, `bindings: /user/hand/<hand> uses <profile>`, `unsupported: function <name>`, `unsupported: xrCreateAction -> <result> (<action>)` |
|
||||
| Unity game hangs or the whole Frame restarts (e.g. in a menu); log: `The current MSAA level is 0, but the recommended MSAA level is 4. Switching to the recommended level.` (e.g. Lucky's Tale) | Meta's OVRManager (`useRecommendedMSAALevel`) turns 4x MSAA on at runtime, past QualitySettings; multisampled render-to-texture on GLES/Zink hangs the GPU | `frame.unity_runtime_msaa_off` (Cpp2IL: `OVRDisplay.get_recommendedMSAALevel` → 0) |
|
||||
| Unity game: one eye shows only effects or grey, the other is fine (e.g. I Am Cat, Oculus XR Plugin on GLES) | the game's single-pass multiview rendering goes wrong for array slice 1 (the adapter submits both slices correctly) | `frame.unity_multipass` (Cpp2IL: `OculusSettings.GetStereoRenderingMode` → MultiPass); `swap_eyes=1` tells whether the game or the adapter is at fault |
|
||||
| Setup/intro loops every launch (Espire 2) | save folders created without write permission | launcher repairs permissions every 2 s (built in) |
|
||||
@@ -59,6 +87,8 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
| Symptom | Cause | Fix |
|
||||
|---|---|---|
|
||||
| 2D Android app: Steam says it's running but nothing shows | Lepton runs apps headless unless the app folder has `lepton-show-flatscreen` | FramePort adds it for apps without VR (agent v28+); reinstall apps installed before |
|
||||
| A phone/tablet app shows nothing in the headset, or a VR app opens as a flat window | FramePort's VR/2D guess (`vr_kind`) is wrong for this app | patch `device.display_mode` → **Flat window** or **VR** (Customize → "Show as VR or as a flat window"), then Update on Frame |
|
||||
| "Install with FrameDrop" button opens FrameDrop (or nothing) instead of FramePort | another program owns `framedrop://`, or the switch is off, or macOS (Flet can't receive links there) | Settings → Install links → **Use FramePort for these links**; else Add games → Install from a link… (paste the button's address) |
|
||||
| 2D Android app: back/home/recents buttons cover the app's own buttons | Android's navigation bar | patch `device.hide_navbar` (on by default for apps without VR) sets `qemu.hw.mainkeys=1`; reinstall to apply |
|
||||
| Black screen, audio works, GLES engine with direct VrApi | Mesa rejects Quest-style GLSL | `frame.gl_shim` (logs `GLShim: SHADER COMPILE FAILED` + source lines) |
|
||||
| Black screen, audio works, log `Unsupported VrApi layer type N` | bridge drops frames containing that layer | extend the bridge (cylinder=3 is converted to a quad already) |
|
||||
@@ -71,6 +101,15 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
| MR game stuck waiting for room data (Demeter) | no Meta scene API | adapter `scene_emul=1` (+ `frame.meta_permissions`) |
|
||||
| Hand-tracking game janky (Silhouette) | Frame synthesizes hands from controllers | `controller_fix=0` passes hands through; not really fixable |
|
||||
| Eye distortion while moving (Arcsmith, Time Stall) | unknown (not eye swap, tracking, Valve layers, depth or pacing) | unresolved |
|
||||
| One eye grey / only effects (I Am Cat, Unity Oculus XR Plugin on GLES) | the game's multiview pass draws array slice 1 wrong on Zink | `frame.unity_multipass` (also rewrites the getter's inlined read in `OculusLoader.Initialize`; check for two `array=1` eye swapchains) |
|
||||
| View vibrates even when holding still after `frame.unity_multipass` (I Am Cat) | poses/times are consistent, but two passes on Zink make every frame one period late, and the game clamps its physics step to 10 ms | not fixed (scale 0.8 didn't help); next ideas: fix multiview instead, or the game's fixed timestep |
|
||||
| Game freezes / pauses for 0.5-2 s now and then, no flicker (e.g. Blade & Sorcery, Lucky's Tale) | the headset's wear sensor flickers off while worn (`logs/eyetracking.txt` `HMD off, stopping eye tracking` … `HMD on`), the Frame turns it into a focus loss and Quest games that pause on focus loss pause | adapter `focus_hold` (on by default since 2026-10-05, dips up to `focus_hold_ms` = 5000 ms are hidden; longer ones still pause) |
|
||||
| Minor glitches on some objects (Myst, Unreal Vulkan) | unknown; not application space warp (turning it off changed nothing and ran worse) | unresolved |
|
||||
| Graphics crash in vkCreateInstance with pc == fault address, from the game's own Vulkan hooks (BONELAB 1.2974 `libSLZQuestNative`) | a pointer into memory freed with OVRPlugin's pre-init OpenXR instance; not the runtime (vrclient.so) or Fossilize being unloaded (keeping both loaded with RTLD_NODELETE didn't help) | unresolved |
|
||||
| Unity game shows a picture but the player body is frozen: no head tracking, the controllers stay on the model, no buttons, although OpenXR input works (BONELAB 1.2068, Oculus XR Plugin) | OVRPlugin reports the headset as not worn (`ovrp_GetUserPresent2` → 0) a few seconds after start, and the game's rig only follows a present user (Marrow `XRHMD.IsUserPresent` = Unity's HMD `UserPresence`) | `frame.unity_user_presence` (the Oculus XR Plugin's lookup → `libfp_ovrp.so`, reports present; log `user presence: OVRPlugin 0 …`) |
|
||||
| Unreal 5 game crashes at its first render pass, backtrace `vulkan.freedreno.so` ← `libVkLayer_fossilize.so` ← `libfp_vk.so (create_render_pass2)` (Metro Awakening) | a subpass without a depth attachment names a depth/stencil resolve attachment; the Frame's Turnip reads the missing depth attachment (NULL) | the Vulkan shim drops that resolve (always, FramePort after 0.11.0; log `dropped the depth resolve of subpass N (no depth attachment)`); triage `unreal-vulkan-driver-crash` |
|
||||
| Unreal 5 game crashes in `vulkan.freedreno.so` called straight from `libUnreal.so` right after its swapchains, or a few seconds into the first frames (Metro Awakening) | Unreal turns on fragment-density-map foveation because Turnip offers VK_EXT_fragment_density_map, then records barriers (to `FRAGMENT_DENSITY_MAP_OPTIMAL`) and image views (2D array R8G8) for a density map the Frame never provides (VK_NULL_HANDLE); Turnip dereferences it | adapter `vk_hide_fdm=1` (the game doesn't see the extension) + `vk_spec_fixes=1` (leaves out null-image barriers, refuses null-image views); triage `unreal-fdm-missing`. Found by disassembling the driver at the crash pc: the struct offsets (0x58 = VkSubpassDescription2, 0x48/0x60 = image barriers, viewType/format in registers) name the call |
|
||||
| Own-engine game crashes in `je_free` from its own library on the first frames (Roblox) | the game frees memory it doesn't own; not the Vulkan shim or the format fallback | unsupported |
|
||||
|
||||
## Debugging techniques that worked
|
||||
- A user's problem report: `frameport diag inspect <FramePort-diag-*.zip>` re-triages its launch log with the current
|
||||
@@ -80,6 +119,31 @@ version is `catalog/triage.yaml` (used by `frameport test` / the Job screen); ke
|
||||
- For GLES/GLAD engines, wrap `eglGetProcAddress` to see shader compile errors (build the shim with `-DGLSHIM_TRACE`
|
||||
for per-FBO draw counts and draw-call errors; the bridge has `-DOVP_GL_DIAG` for eye-image readback).
|
||||
- Anything visual needs one headset session per iteration — batch hypotheses into each build.
|
||||
- Headless launch tests never get focus: they prove startup, not play. Crashes right after FOCUSED (Myst), focus
|
||||
dips and judder only show up in a headset session: ask for one, then `frameport diag collect <pkg>` (it contains
|
||||
the headset sessions too, plus this boot's kernel log).
|
||||
- Which library a stale pointer belonged to: turn on the Android linker's log for one run by adding
|
||||
`debug.ld.app.<pkg>=dlopen` as an extra line of `LEPTON_GFXRECON_FP_PROPS` (first line `0`) in the game's
|
||||
launch.sh on the Frame (back it up, restore it after) and look for `dlclose: unloading "…"`.
|
||||
- Memory runaways / busy loops: `perf` works as steamos (`perf_event_paranoid` 2, user space only; `ptrace_scope` 1
|
||||
blocks eu-stack/gdb/debuggerd). `perf record -p <pid> -e page-faults -c 64 --call-graph fp` names the thread
|
||||
touching new memory (`perf script -F comm,tid,ip,dso`); `-t <tid> -F 499` samples one thread. Map IL2CPP
|
||||
addresses with a full Cpp2IL diffable-cs dump (method `Offset` = address − the r-xp mapping of libil2cpp.so).
|
||||
Sample memory per mapping name from `/proc/<pid>/smaps` (`[anon:libc_malloc]` = native heap).
|
||||
- Unity catches native crashes itself: no debuggerd backtrace in Lepton's logcat-crash.log, but a
|
||||
`tombstone_00` in the game's `Android/data/<pkg>/files/` with the memory map (map pc/lr/registers to libraries).
|
||||
- Focus losses: the game sees FOCUSED→VISIBLE→SYNCHRONIZED (OVRPlugin `[XR_SESSION]`, FrameBridge `focus_hold:`
|
||||
lines); the cause is on the host: `~/.local/share/Steam/logs/vrserver.txt` (`HMD off/on`, `entering standby`,
|
||||
`SystemButtonDown` in vrclient_vrcompositor.txt) and XRService (`[UserPresence]`, `IMUFallback`). Compare the times
|
||||
(Lepton logs UTC, host logs local time).
|
||||
- A Unity getter patch that changes nothing: the compiler may have inlined it (no `BL` to its address in
|
||||
libil2cpp.so) — patch the field read in the caller (`Il2cppReturnPatch.field_loads`).
|
||||
- Fixes found by users count: a reporter's shader capture (VR4) became the `vk_shader_fix` recipe data (match by size
|
||||
+ SHA-256, insert words); verify on the device that the log shows the module being fixed.
|
||||
- Don't install or test on the Frame while the owner is playing: adding a library entry restarts Steam (FramePort
|
||||
now skips the restart when the shortcut is unchanged and waits while a game runs), and a launch test starts a game.
|
||||
- Catalog YAML: a `: ` inside an unquoted value breaks the file and the loader skipped it silently (the game vanished
|
||||
from the list); `tests/test_catalog_files.py` now catches it.
|
||||
- Keep the known-good APK and roll back if a change regresses (`PATCHED/_known-good-*`).
|
||||
|
||||
## When it can't run on the Frame
|
||||
|
||||
Binary file not shown.
|
After Width: | Height: | Size: 916 KiB |
Binary file not shown.
|
After Width: | Height: | Size: 643 KiB |
Binary file not shown.
|
Before Width: | Height: | Size: 102 KiB After Width: | Height: | Size: 62 KiB |
+7
-2
@@ -1,5 +1,9 @@
|
||||
# Native components
|
||||
|
||||
FrameBridge includes automatic metadata retirement for the verified Meta XR Audio
|
||||
Wwise build; see [AUDIO_METADATA.md](../docs/AUDIO_METADATA.md) for its lifetime
|
||||
invariant and regression coverage. It uses the existing adapter installation.
|
||||
|
||||
Sources of the prebuilt binaries in `../artifacts/` (committed, with `SHA256SUMS`). End users never compile anything;
|
||||
developers rebuild with `python native/build.py` (downloads NDK r27c, OpenXR headers at pinned commits, d8 into
|
||||
`native/.cache/`, git-ignored). The adapter, GL shim and platform compat rebuild byte-identically; the VrApi bridge
|
||||
@@ -7,9 +11,10 @@ embeds debug paths (`-g`) and the dex depends on the d8 version, so those differ
|
||||
|
||||
| Dir | Artifact | What / why |
|
||||
|---|---|---|
|
||||
| `adapter/` | `{arm64-v8a,armeabi-v7a}/libopenxr_loader_generic.so` | **FrameBridge**: replaces overport's generic loader (which is renamed `libopenxr_loader_original.so`) and fixes Steam Frame runtime gaps. Hooks xrCreateInstance, swapchains, xrEndFrame, spaces, xrPollEvent, … everything else is forwarded by `gen_forwarders.py`-generated tail calls. `scene_emu.c` = Meta scene/spatial-entity emulation; `flip_vk.c` = Vulkan blit for VERTICAL_FLIP quads. `session_fixes.c` = per-game session fixes, all off by default and hooked only when on (`layer_debug` diagnostics, `stable_local`, `focus_hold`, aim correction `aim_pitch/aim_yaw/aim_forward`, `refresh_rate`); `layer_emul_gl.c` = `equirect_emul` (GLES sessions only): 360° equirect/equirect2 layers become one adapter projection layer, drawn by a worker thread with its own EGL context shared with the app's: each 360° image is converted to a cube map only when it changes, and the view is redrawn only after a 4° head turn (GL/EGL resolved with dlopen, so Vulkan games never load them); `layer_math.h` = their pose/face math, tested on the host by `tests/test_layer_emul.py`. `render_model.c` = XR_FB_render_model emulation (setting `controller_models`, off by default): serves `files/framebridge/controller_{left,right}.glb`, which the agent converts on the Frame from SteamVR's own Frame controller render models (never shipped by FramePort); tested on the host by `tests/test_render_model.py`. Settings: `libframe_settings.so` in the APK + `settings.conf`/`framebridge.conf` on the Frame. |
|
||||
| `vrapi-bridge/` | `arm64-v8a/libvrapi.so` | VrApi → OpenXR bridge from [Android-XR-Bridge/OVRPort](https://github.com/Android-XR-Bridge/OVRPort) `native/vrapi` at 5e7df52 (GPL-3.0, `LICENSE.upstream`; unchanged upstream as of OVRPort v1.2.5, which ships the unpatched code as its opt-in `patch_vrapi_openxr` in experimental CLI builds), with our changes in `upstream-patches/`: GLES sessions + GL texture swapchains, cylinder→quad layers, GL vertical flip, UNORM↔sRGB format twins, 30 s VR-mode deadline, VALID-only recenter, loading-icon layers skipped, diagnostics behind `-DOVP_GL_DIAG`. |
|
||||
| `adapter/` | `{arm64-v8a,armeabi-v7a}/libopenxr_loader_generic.so` | **FrameBridge**: replaces overport's generic loader (which is renamed `libopenxr_loader_original.so`) and fixes Steam Frame runtime gaps. Hooks xrCreateInstance, swapchains, xrEndFrame, spaces, xrPollEvent, … everything else is forwarded by `gen_forwarders.py`-generated tail calls. `scene_emu.c` = Meta scene/spatial-entity emulation; `flip_vk.c` = Vulkan blit for VERTICAL_FLIP quads. `session_fixes.c` = per-game session fixes, all off by default and hooked only when on (`layer_debug` diagnostics, `stable_local`, `focus_hold`, aim correction `aim_pitch/aim_yaw/aim_forward`, `refresh_rate`); `input_diag.c` = controller-input diagnostics (setting `input_diag`, off by default and hooked only when on; logs suggested interaction profiles and the runtime's answers, each hand's current profile, functions the runtime lacks and failing input/haptics/perf calls, each line once; tested on the host by `tests/test_input_diag.py`); `layer_emul_gl.c` = `equirect_emul` (GLES sessions only): 360° equirect/equirect2 layers become one adapter projection layer, drawn by a worker thread with its own EGL context shared with the app's: each 360° image is converted to a cube map only when it changes, and the view is redrawn only after a 4° head turn (GL/EGL resolved with dlopen, so Vulkan games never load them); `layer_math.h` = their pose/face math, tested on the host by `tests/test_layer_emul.py`. `render_model.c` = XR_FB_render_model emulation (setting `controller_models`, off by default): serves `files/framebridge/controller_{left,right}.glb`, which the agent converts on the Frame from SteamVR's own Frame controller render models (never shipped by FramePort); tested on the host by `tests/test_render_model.py`. Settings: `libframe_settings.so` in the APK + `settings.conf`/`framebridge.conf` on the Frame. |
|
||||
| `vrapi-bridge/` | `arm64-v8a/libvrapi.so` | VrApi → OpenXR bridge from [Android-XR-Bridge/OVRPort](https://github.com/Android-XR-Bridge/OVRPort) `native/vrapi` at 5e7df52 (GPL-3.0, `LICENSE.upstream`; unchanged upstream as of OVRPort v1.2.5, which ships the unpatched code as its opt-in `patch_vrapi_openxr` in experimental CLI builds), with our changes in `upstream-patches/`: GLES sessions + GL texture swapchains, cylinder→quad layers, GL vertical flip, UNORM↔sRGB format twins, 30 s VR-mode deadline, VALID-only recenter, loading-icon layers skipped, `vrapi_PollEvent`/`RecenterPose`/`SetDisplayRefreshRate`/`GetSystemPropertyFloatArray` (BlazeRush imports them, GitHub #57), diagnostics behind `-DOVP_GL_DIAG`. `upstream-patches/` reproduces these sources from the fork's `native/vrapi` (checked 2026-10-06 against its latest commit); upstream PRs Android-XR-Bridge/OVRPort#3-#8, tracked in GitHub #75. |
|
||||
| `platformcompat/` | `arm64-v8a/libovrplatformcompat.so` | Real `ovrMessageType_ToString` (same fork, `native/platform`). |
|
||||
| `langpack/` | `arm64-v8a/libfp_langpack.so` | Language packs for the Meta Platform SDK (patch `frame.langpacks`, opt-in). overport's platform loader is a dispatcher in front of Meta's own loader and answers `ovr_LanguagePack_GetCurrent/SetCurrent` with `return 0` (no reply ever). This library becomes the loader's first DT_NEEDED; the loader's own exports of the 31 functions it defines are made STB_LOCAL in `.dynsym` (`elf.hide_exports`, nothing moves), so symbol lookups reach the library first. It serves `<tag>.lang` files found in the game's OBB / app files (`$FRAMEPORT_LANGPACK_DIRS` overrides the search path) through `ovr_LanguagePack_*`, `ovr_AssetFile_GetList` (the loader's list + the packs) and `ovr_AssetFile_StatusById`; its own message queue is merged into `ovr_PopMessage`, and every handle that is not ours (an address-range check) goes to the loader's original function, whose address is read at run time from the loader's in-memory `.dynsym`. With patch `frame.asset_files` (marker byte `@FPASSETS@`, or env `FRAMEPORT_ASSET_FILES=1`) it also lists the data's `*.pak` content files as installed `default` asset files and answers `ovr_AssetFile_DownloadById` for them at once (a completed `DownloadUpdate`, then the result with the path). Host-tested against a stand-in loader (`tests/test_langpack.py`, plain `cc`, no NDK); the bionic/headset side is unverified. |
|
||||
| `glshim/` | `arm64-v8a/libglshim.so` | Mesa GLSL compatibility for GLAD engines (hooks eglGetProcAddress): comments out `#pragma` before `#extension`, enables `GL_EXT_shader_implicit_conversions`, hides GL_OVR_multiview (`gl_hide_multiview`, default 1) and logs failed shaders. `-DGLSHIM_TRACE` adds per-FBO draw/error tracing. |
|
||||
| `xrlayer/` | `linux-arm64/libxr_frameport_timefix.so` + `XR_APILAYER_FRAMEPORT_timefix.json` | OpenXR API layer for Windows PC VR games under Proton on the Frame (glibc aarch64, built freestanding with the NDK's clang), on by default (patch `pcvr.xr_timefix`). Retries `xrCreateInstance` as an OpenXR 1.0 app when the runtime rejects 1.1 (the Frame's SteamVR runtime does, and Proton 11's VR helper asks for 1.1). Also emulates `xrConvertTimespecTimeToTimeKHR`/`xrConvertTimeToTimespecTimeKHR` if the runtime refuses them (the Frame's Android runtime does; its Linux runtime, used by Proton, supports them as of 2026-09-29 — so this part is only a fallback; Proton's wineopenxr needs them for `XR_KHR_win32_convert_performance_counter_time`, which Revive requires) with the adapter's xrWaitFrame-calibrated offset, and drops the extension from xrCreateInstance if the runtime rejects it. Enabled per game by the Proton launch.sh (`XR_API_LAYER_PATH`, `XR_ENABLE_API_LAYERS`). `tests/test_xrlayer.py` builds it for x86_64 and drives it via ctypes. |
|
||||
| `oculushmd/` | `win-x64/fp_oculushmd.exe` | PC VR counterpart of overport's `patch_oculus_unreal` (patch `pcvr.oculus_unreal`, default for Unreal Rift games on the Frame). Unreal's OculusHMD and LibOVR's `ovr_Detect` only start when the Windows named event `OculusHMDConnected` exists and is signalled (the Oculus service creates it). `fp_oculushmd.exe <command line>` creates it (manual reset, signalled), runs the command (Revive's injector) in a job object and keeps the event until every process in the job — the game and its children — has exited (fallback without job support: 3 minutes); returns the command's exit code and logs `FramePort oculushmd: …` to stderr (launch.log). Freestanding Windows x64 console exe (no CRT, no Windows SDK): the NDK's clang + `lld-link /Brepro` with a kernel32 import library generated by `llvm-dlltool`, so it's byte-reproducible. Tested on Windows from WSL with a build whose event name is `-DEVENT_NAME=L"…"` (the Oculus service owns the real event on a PC with the Oculus app). |
|
||||
|
||||
@@ -0,0 +1,111 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// Meta XR Audio Wwise metadata retirement. Enabled automatically for the
|
||||
// exact verified AArch64 SDK build; unrelated libraries remain untouched.
|
||||
#pragma once
|
||||
#if defined(__aarch64__)
|
||||
#include <pthread.h>
|
||||
#include <sched.h>
|
||||
#include <sys/mman.h>
|
||||
#include <unistd.h>
|
||||
#include <stdint.h>
|
||||
#include <time.h>
|
||||
#include <link.h>
|
||||
#include <string.h>
|
||||
static size_t mx_audio_page;
|
||||
static void *mx_audio_detour(unsigned char *address,void *replacement,const uint32_t expected[4]) {
|
||||
if(memcmp(address,expected,16)) return NULL;
|
||||
unsigned char *trampoline=mmap(NULL,mx_audio_page,PROT_READ|PROT_WRITE,MAP_PRIVATE|MAP_ANONYMOUS,-1,0);
|
||||
if(trampoline==MAP_FAILED) return NULL;
|
||||
uint32_t branch[2]={0x58000050u,0xd61f0200u}; // ldr x16, +8; br x16
|
||||
memcpy(trampoline,address,16);
|
||||
memcpy(trampoline+16,branch,8);
|
||||
uintptr_t continuation=(uintptr_t)address+16;
|
||||
memcpy(trampoline+24,&continuation,8);
|
||||
__builtin___clear_cache((char*)trampoline,(char*)trampoline+32);
|
||||
if(mprotect(trampoline,mx_audio_page,PROT_READ|PROT_EXEC)) return NULL;
|
||||
unsigned char *page=(unsigned char*)((uintptr_t)address&~(mx_audio_page-1));
|
||||
if(mprotect(page,mx_audio_page,PROT_READ|PROT_WRITE|PROT_EXEC)) return NULL;
|
||||
memcpy(address,branch,8);
|
||||
memcpy(address+8,&replacement,8);
|
||||
__builtin___clear_cache((char*)address,(char*)address+16);
|
||||
mprotect(page,mx_audio_page,PROT_READ|PROT_EXEC);
|
||||
return trampoline;
|
||||
}
|
||||
#include "audio_metadata_queue.h"
|
||||
typedef struct {float previous,current;} MxAudioRamp;
|
||||
static uintptr_t mx_audio_base;
|
||||
// set once the library was found but isn't the verified build: stop looking (xrPollEvent runs several times a frame)
|
||||
static int mx_audio_checked;
|
||||
static uint64_t (*mx_audio_consume_original)(void*,void*,void*,const void*,MxAudioRamp);
|
||||
static void mx_audio_kill(unsigned experimental) {
|
||||
void *mutex=(void*)(mx_audio_base+(experimental?0x5fe2e0:0x5fe380));
|
||||
int (*trylock)(void*)=(void*)(mx_audio_base+0x5b369c);
|
||||
void (*unlock)(void*)=(void*)(mx_audio_base+0x5b36bc);
|
||||
if(!trylock(mutex))return;
|
||||
mx_audio_drain((void**)(mx_audio_base+(experimental?0x5fe2d8:0x5fe378)),experimental?40:24);
|
||||
unlock(mutex);
|
||||
}
|
||||
static void mx_audio_kill_experimental(void) {mx_audio_kill(1);}
|
||||
static void mx_audio_kill_regular(void) {mx_audio_kill(0);}
|
||||
static uint64_t mx_audio_consume(void *sink,void *main_mix,void *passthrough,const void *objects,MxAudioRamp ramp) {
|
||||
const unsigned char *previous=mx_audio_objects;mx_audio_objects=objects;
|
||||
// An audio thread can enter just after its prologue was patched, before
|
||||
// the installing thread publishes the completed trampoline.
|
||||
uint64_t (*original)(void*,void*,void*,const void*,MxAudioRamp);
|
||||
while(!(original=__atomic_load_n(&mx_audio_consume_original,__ATOMIC_ACQUIRE)))sched_yield();
|
||||
uint64_t result=original(sink,main_mix,passthrough,objects,ramp);
|
||||
mx_audio_objects=previous;return result;
|
||||
}
|
||||
static int mx_audio_find(struct dl_phdr_info *info,size_t size,void *unused) {
|
||||
(void)size;(void)unused;
|
||||
if(!strstr(info->dlpi_name,"/libMetaXRAudioWwise.so"))return 0;
|
||||
if(mx_audio_base)return 1;
|
||||
const unsigned char id[20]={0xe1,0x61,0x9e,0x7f,0xb8,0x39,0xba,0xdf,0x0e,0xa5,0xec,0xc2,0x2d,0x9f,0x02,0x8d,0x0b,0x17,0xc3,0x4d};
|
||||
int match=0;
|
||||
for(unsigned i=0;i<info->dlpi_phnum;i++)if(info->dlpi_phdr[i].p_type==PT_NOTE) {
|
||||
const unsigned char *p=(void*)(info->dlpi_addr+info->dlpi_phdr[i].p_vaddr);
|
||||
const unsigned char *end=p+info->dlpi_phdr[i].p_memsz;
|
||||
while(p+sizeof(Elf64_Nhdr)<=end) {
|
||||
const Elf64_Nhdr *note=(void*)p;
|
||||
const unsigned char *name=p+sizeof(*note),*desc=name+((note->n_namesz+3)&~3u);
|
||||
const unsigned char *next=desc+((note->n_descsz+3)&~3u);
|
||||
if(next>end || next<=p)break;
|
||||
if(note->n_type==NT_GNU_BUILD_ID && note->n_namesz==4 && !memcmp(name,"GNU",4) && note->n_descsz==20 && !memcmp(desc,id,20))match=1;
|
||||
p=next;
|
||||
}
|
||||
}
|
||||
if(!match){__atomic_store_n(&mx_audio_checked,1,__ATOMIC_RELEASE);return 1;}
|
||||
const uint32_t consume[4]={0xd10743ff,0x6d1623e9,0xa9177bfd,0xa9186ffc};
|
||||
const uint32_t kill[4]={0xa9bd7bfd,0xf9000bf5,0xa9024ff4,0x910003fd};
|
||||
unsigned char *base=(void*)info->dlpi_addr;
|
||||
if(memcmp(base+0x2c8fac,consume,16) || memcmp(base+0x2be2c0,kill,16) || memcmp(base+0x2be7b0,kill,16)) {
|
||||
__atomic_store_n(&mx_audio_checked,1,__ATOMIC_RELEASE);return 1;
|
||||
}
|
||||
__atomic_store_n(&mx_audio_base,info->dlpi_addr,__ATOMIC_RELEASE);
|
||||
void *original=mx_audio_detour(base+0x2c8fac,(void*)mx_audio_consume,consume);
|
||||
__atomic_store_n(&mx_audio_consume_original,original,__ATOMIC_RELEASE);
|
||||
if(!__atomic_load_n(&mx_audio_consume_original,__ATOMIC_ACQUIRE)) {
|
||||
__atomic_store_n(&mx_audio_base,0,__ATOMIC_RELEASE);return 1;
|
||||
}
|
||||
if(!mx_audio_detour(base+0x2be2c0,(void*)mx_audio_kill_experimental,kill) || !mx_audio_detour(base+0x2be7b0,(void*)mx_audio_kill_regular,kill)) {
|
||||
LOG("FrameBridge audio metadata: incomplete installation");return 1;
|
||||
}
|
||||
LOG("FrameBridge audio metadata: metadata reclamation follows current audio-frame references; Meta audio base=%p",base);
|
||||
return 1;
|
||||
}
|
||||
static pthread_mutex_t mx_audio_install_mutex=PTHREAD_MUTEX_INITIALIZER;
|
||||
static void mx_audio_initialize(void) {
|
||||
if(__atomic_load_n(&mx_audio_base,__ATOMIC_ACQUIRE) || __atomic_load_n(&mx_audio_checked,__ATOMIC_ACQUIRE))return;
|
||||
// until the game loads the library: look at most once a second (dl_iterate_phdr takes the linker's lock)
|
||||
static _Atomic long mx_audio_last_scan;
|
||||
struct timespec now;clock_gettime(CLOCK_MONOTONIC,&now);
|
||||
if(now.tv_sec==mx_audio_last_scan)return;
|
||||
mx_audio_last_scan=now.tv_sec;
|
||||
if(pthread_mutex_trylock(&mx_audio_install_mutex))return;
|
||||
if(!mx_audio_page)mx_audio_page=(size_t)sysconf(_SC_PAGESIZE);
|
||||
if(!mx_audio_base)dl_iterate_phdr(mx_audio_find,NULL);
|
||||
pthread_mutex_unlock(&mx_audio_install_mutex);
|
||||
}
|
||||
#else
|
||||
static void mx_audio_initialize(void) {}
|
||||
#endif
|
||||
@@ -0,0 +1,47 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
#pragma once
|
||||
#include <stdint.h>
|
||||
#include <stddef.h>
|
||||
#include <string.h>
|
||||
// Experimental lifetime repair for the pinned Meta XR Audio Wwise build.
|
||||
// A queued metadata object must not be reclaimed while the current immutable
|
||||
// AkAudioObjects snapshot still references it. Preserve the SDK's queue mutex,
|
||||
// virtual destructor, list linkage, audio processing, and dirty-flag writes.
|
||||
static _Thread_local const unsigned char *mx_audio_objects;
|
||||
static unsigned mx_audio_held,mx_audio_reclaimed;
|
||||
static int mx_audio_referenced(const void *pointer) {
|
||||
if(!mx_audio_objects)return 0;
|
||||
uint32_t count;memcpy(&count,mx_audio_objects,4);
|
||||
const unsigned char *const *objects;memcpy(&objects,mx_audio_objects+16,8);
|
||||
// Refuse to reclaim on an unrecognised snapshot rather than dereferencing
|
||||
// unbounded arrays. These bounds exceed the game's ordinary voice counts.
|
||||
if(count>4096 || (count && !objects))return 1;
|
||||
for(unsigned i=0;i<count;i++) {
|
||||
const unsigned char *object=objects[i];if(!object)continue;
|
||||
uint32_t metadata_count;const unsigned char *metadata;
|
||||
memcpy(&metadata,object+104,8);memcpy(&metadata_count,object+112,4);
|
||||
if(metadata_count>4096 || (metadata_count && !metadata))return 1;
|
||||
for(unsigned j=0;j<metadata_count;j++) {
|
||||
const void *parameter;memcpy(¶meter,metadata+(size_t)j*24+8,8);
|
||||
if(parameter==pointer)return 1;
|
||||
}
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
// Caller holds the original queue's mutex, just as ExecuteKillList did.
|
||||
static void mx_audio_drain(void **head,size_t next_offset) {
|
||||
void **link=head;
|
||||
while(*link) {
|
||||
void *pointer=*link;void **next=(void**)((unsigned char*)pointer+next_offset);
|
||||
if(mx_audio_referenced(pointer)) {
|
||||
link=next;
|
||||
unsigned held=__atomic_fetch_add(&mx_audio_held,1,__ATOMIC_RELAXED);
|
||||
if(held<8)LOG("FrameBridge audio metadata: queued metadata=%p still referenced by audio frame; retained",pointer);
|
||||
} else {
|
||||
*link=*next;
|
||||
void (**table)(void*)=*(void (***)(void*))pointer;
|
||||
table[1](pointer);
|
||||
__atomic_fetch_add(&mx_audio_reclaimed,1,__ATOMIC_RELAXED);
|
||||
}
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,161 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// Included by frame_adapter.c (after flip_vk.c). Per-game diagnostics for "one eye looks wrong" reports
|
||||
// (eye_debug=1; everything also goes to framebridge.log in the app's external files folder):
|
||||
// * every frame's projection layer: each eye's submitted pose vs. a fresh xrLocateViews at the frame's display time
|
||||
// (game-side pose errors), the left/right eye relation (eye distance, relative rotation: must stay constant),
|
||||
// and how long before xrEndFrame each eye's image was released (images handed over too early/late);
|
||||
// summarised every 5 s, the first frames in full.
|
||||
// * release_wait: before an image is released, wait for the app's GPU work on the session's queue (Vulkan) or
|
||||
// glFinish (GLES), for games that release images whose rendering hasn't finished. 2 = only after the first 60 s
|
||||
// of frames, so one headset session compares both (log "release_wait now ON").
|
||||
|
||||
#define EYE_TRACKED 16
|
||||
|
||||
static struct { XrSwapchain handle; int64_t released_ns; } eye_released[EYE_TRACKED];
|
||||
static pthread_mutex_t eye_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
static int64_t eye_first_frame_ns;
|
||||
|
||||
static int release_wait_active(void) {
|
||||
if (release_wait == 1) return 1;
|
||||
if (release_wait != 2 || !eye_first_frame_ns) return 0;
|
||||
static int announced;
|
||||
int on = monotonic_ns() - eye_first_frame_ns > 60000000000ll;
|
||||
if (on && !announced++) LOG("eye_debug: release_wait now ON (A/B: the first 60 s ran without it)");
|
||||
return on;
|
||||
}
|
||||
|
||||
static void eye_wait_for_gpu(void) {
|
||||
if (vk.device) {
|
||||
static PFN_vkQueueWaitIdle wait_idle;
|
||||
if (!wait_idle && vk_ready()) wait_idle = (PFN_vkQueueWaitIdle)vk.GetDeviceProcAddr(vk.device, "vkQueueWaitIdle");
|
||||
if (wait_idle && vk.queue) wait_idle(vk.queue);
|
||||
} else {
|
||||
static void (*finish)(void);
|
||||
if (!finish) finish = (void (*)(void))dlsym(RTLD_DEFAULT, "glFinish");
|
||||
if (finish) finish();
|
||||
}
|
||||
}
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL eye_hook_xrReleaseSwapchainImage(XrSwapchain swapchain,
|
||||
const XrSwapchainImageReleaseInfo *info) {
|
||||
PFN_xrReleaseSwapchainImage fn = (PFN_xrReleaseSwapchainImage)lookup(active_instance, "xrReleaseSwapchainImage");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (release_wait_active()) eye_wait_for_gpu();
|
||||
XrResult result = fn(swapchain, info);
|
||||
if (eye_debug) {
|
||||
int64_t now = monotonic_ns();
|
||||
pthread_mutex_lock(&eye_lock);
|
||||
int slot = -1;
|
||||
for (int i = 0; i < EYE_TRACKED && slot < 0; ++i)
|
||||
if (eye_released[i].handle == swapchain) slot = i;
|
||||
for (int i = 0; i < EYE_TRACKED && slot < 0; ++i)
|
||||
if (!eye_released[i].handle) slot = i;
|
||||
if (slot < 0) slot = (int)(now % EYE_TRACKED);
|
||||
eye_released[slot].handle = swapchain;
|
||||
eye_released[slot].released_ns = now;
|
||||
pthread_mutex_unlock(&eye_lock);
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
static int64_t eye_release_age_ns(XrSwapchain swapchain, int64_t now) {
|
||||
int64_t age = -1;
|
||||
pthread_mutex_lock(&eye_lock);
|
||||
for (int i = 0; i < EYE_TRACKED; ++i)
|
||||
if (eye_released[i].handle == swapchain) age = now - eye_released[i].released_ns;
|
||||
pthread_mutex_unlock(&eye_lock);
|
||||
return age;
|
||||
}
|
||||
|
||||
static float eye_angle_deg(XrQuaternionf a, XrQuaternionf b) {
|
||||
float d = fabsf(a.x * b.x + a.y * b.y + a.z * b.z + a.w * b.w);
|
||||
return d >= 1.0f ? 0.0f : 2.0f * acosf(d) * 57.29578f;
|
||||
}
|
||||
|
||||
static float eye_dist_mm(XrVector3f a, XrVector3f b) {
|
||||
float x = a.x - b.x, y = a.y - b.y, z = a.z - b.z;
|
||||
return sqrtf(x * x + y * y + z * z) * 1000.0f;
|
||||
}
|
||||
|
||||
static void eye_debug_end_frame(XrSession session, const XrFrameEndInfo *info) {
|
||||
if (!info) return;
|
||||
const XrCompositionLayerProjection *proj = NULL;
|
||||
for (uint32_t i = 0; i < info->layerCount && !proj; ++i)
|
||||
if (info->layers[i] && info->layers[i]->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION &&
|
||||
((const XrCompositionLayerProjection *)info->layers[i])->viewCount == 2)
|
||||
proj = (const XrCompositionLayerProjection *)info->layers[i];
|
||||
if (!proj) return;
|
||||
int64_t now = monotonic_ns();
|
||||
if (!eye_first_frame_ns) eye_first_frame_ns = now;
|
||||
static struct {
|
||||
int frames, located;
|
||||
float pos_err[2], rot_err[2], pos_err_max[2], rot_err_max[2]; // submitted vs. fresh, per eye
|
||||
float ipd_min, ipd_max, rel_rot_max, step_max[2]; // eye relation; frame-to-frame jump per eye
|
||||
float age_min[2], age_max[2]; // ms from release to xrEndFrame
|
||||
int64_t window;
|
||||
} st;
|
||||
static XrPosef last[2];
|
||||
static int have_last;
|
||||
static int detailed;
|
||||
if (!st.window) { st.window = now; st.ipd_min = 1e9f; st.age_min[0] = st.age_min[1] = 1e9f; }
|
||||
// a fresh location of the same views at the frame's display time, in the layer's space
|
||||
XrView fresh[2] = {{XR_TYPE_VIEW, NULL}, {XR_TYPE_VIEW, NULL}};
|
||||
XrViewState vs = {XR_TYPE_VIEW_STATE, NULL};
|
||||
uint32_t n = 0;
|
||||
PFN_xrLocateViews locate = (PFN_xrLocateViews)lookup(active_instance, "xrLocateViews");
|
||||
XrViewLocateInfo li = {XR_TYPE_VIEW_LOCATE_INFO, NULL, XR_VIEW_CONFIGURATION_TYPE_PRIMARY_STEREO, info->displayTime,
|
||||
proj->space};
|
||||
int located = locate && XR_SUCCEEDED(locate(session, &li, &vs, 2, &n, fresh)) && n == 2 &&
|
||||
(vs.viewStateFlags & XR_VIEW_STATE_POSITION_VALID_BIT);
|
||||
const XrCompositionLayerProjectionView *v = proj->views;
|
||||
float ipd = eye_dist_mm(v[0].pose.position, v[1].pose.position);
|
||||
float rel = eye_angle_deg(v[0].pose.orientation, v[1].pose.orientation);
|
||||
++st.frames;
|
||||
if (ipd < st.ipd_min) st.ipd_min = ipd;
|
||||
if (ipd > st.ipd_max) st.ipd_max = ipd;
|
||||
if (rel > st.rel_rot_max) st.rel_rot_max = rel;
|
||||
for (int e = 0; e < 2; ++e) {
|
||||
int64_t age = eye_release_age_ns(v[e].subImage.swapchain, now);
|
||||
float ms = age < 0 ? -1.0f : age / 1e6f;
|
||||
if (ms < st.age_min[e]) st.age_min[e] = ms;
|
||||
if (ms > st.age_max[e]) st.age_max[e] = ms;
|
||||
if (located) {
|
||||
float pe = eye_dist_mm(v[e].pose.position, fresh[e].pose.position);
|
||||
float re = eye_angle_deg(v[e].pose.orientation, fresh[e].pose.orientation);
|
||||
st.pos_err[e] += pe;
|
||||
st.rot_err[e] += re;
|
||||
if (pe > st.pos_err_max[e]) st.pos_err_max[e] = pe;
|
||||
if (re > st.rot_err_max[e]) st.rot_err_max[e] = re;
|
||||
}
|
||||
if (have_last) {
|
||||
float step = eye_angle_deg(last[e].orientation, v[e].pose.orientation);
|
||||
if (step > st.step_max[e]) st.step_max[e] = step;
|
||||
}
|
||||
last[e] = v[e].pose;
|
||||
}
|
||||
have_last = 1;
|
||||
if (located) ++st.located;
|
||||
if (detailed < 4) {
|
||||
++detailed;
|
||||
for (int e = 0; e < 2; ++e)
|
||||
LOG("eye_debug: eye %d swapchain=%p rect=%d,%d %dx%d array=%u pos=%.4f,%.4f,%.4f rot=%.4f,%.4f,%.4f,%.4f "
|
||||
"fov=%.3f/%.3f/%.3f/%.3f fresh pos=%.4f,%.4f,%.4f", e, (void *)(uintptr_t)v[e].subImage.swapchain,
|
||||
v[e].subImage.imageRect.offset.x, v[e].subImage.imageRect.offset.y, v[e].subImage.imageRect.extent.width,
|
||||
v[e].subImage.imageRect.extent.height, v[e].subImage.imageArrayIndex, v[e].pose.position.x,
|
||||
v[e].pose.position.y, v[e].pose.position.z, v[e].pose.orientation.x, v[e].pose.orientation.y,
|
||||
v[e].pose.orientation.z, v[e].pose.orientation.w, v[e].fov.angleLeft, v[e].fov.angleRight,
|
||||
v[e].fov.angleUp, v[e].fov.angleDown, fresh[e].pose.position.x, fresh[e].pose.position.y,
|
||||
fresh[e].pose.position.z);
|
||||
}
|
||||
if (now - st.window > 5000000000ll) {
|
||||
int l = st.located ? st.located : 1;
|
||||
LOG("eye_debug: %d frames | eye distance %.1f-%.1f mm, eye-to-eye rotation max %.2f deg | vs fresh pose: "
|
||||
"L avg %.1f mm/%.2f deg max %.1f mm/%.2f deg, R avg %.1f mm/%.2f deg max %.1f mm/%.2f deg (%d located) | "
|
||||
"largest frame step L %.2f R %.2f deg | release->end L %.1f-%.1f ms R %.1f-%.1f ms | release_wait %s",
|
||||
st.frames, st.ipd_min, st.ipd_max, st.rel_rot_max, st.pos_err[0] / l, st.rot_err[0] / l, st.pos_err_max[0],
|
||||
st.rot_err_max[0], st.pos_err[1] / l, st.rot_err[1] / l, st.pos_err_max[1], st.rot_err_max[1], st.located,
|
||||
st.step_max[0], st.step_max[1], st.age_min[0], st.age_max[0], st.age_min[1], st.age_max[1],
|
||||
release_wait_active() ? "on" : "off");
|
||||
memset(&st, 0, sizeof(st));
|
||||
}
|
||||
}
|
||||
@@ -1,19 +1,4 @@
|
||||
// Generated: register-preserving tail-call forwarders (see frame_adapter.c).
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrApplyHapticFeedback
|
||||
.type xrApplyHapticFeedback, %function
|
||||
xrApplyHapticFeedback:
|
||||
adrp x16, fwd_xrApplyHapticFeedback
|
||||
ldr x16, [x16, :lo12:fwd_xrApplyHapticFeedback]
|
||||
br x16
|
||||
.size xrApplyHapticFeedback, .-xrApplyHapticFeedback
|
||||
.data
|
||||
.p2align 3
|
||||
.globl fwd_xrApplyHapticFeedback
|
||||
.hidden fwd_xrApplyHapticFeedback
|
||||
fwd_xrApplyHapticFeedback:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrAttachSessionActionSets
|
||||
@@ -28,21 +13,6 @@ xrAttachSessionActionSets:
|
||||
.globl fwd_xrAttachSessionActionSets
|
||||
.hidden fwd_xrAttachSessionActionSets
|
||||
fwd_xrAttachSessionActionSets:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrBeginFrame
|
||||
.type xrBeginFrame, %function
|
||||
xrBeginFrame:
|
||||
adrp x16, fwd_xrBeginFrame
|
||||
ldr x16, [x16, :lo12:fwd_xrBeginFrame]
|
||||
br x16
|
||||
.size xrBeginFrame, .-xrBeginFrame
|
||||
.data
|
||||
.p2align 3
|
||||
.globl fwd_xrBeginFrame
|
||||
.hidden fwd_xrBeginFrame
|
||||
fwd_xrBeginFrame:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
@@ -403,21 +373,6 @@ xrPathToString:
|
||||
.globl fwd_xrPathToString
|
||||
.hidden fwd_xrPathToString
|
||||
fwd_xrPathToString:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrReleaseSwapchainImage
|
||||
.type xrReleaseSwapchainImage, %function
|
||||
xrReleaseSwapchainImage:
|
||||
adrp x16, fwd_xrReleaseSwapchainImage
|
||||
ldr x16, [x16, :lo12:fwd_xrReleaseSwapchainImage]
|
||||
br x16
|
||||
.size xrReleaseSwapchainImage, .-xrReleaseSwapchainImage
|
||||
.data
|
||||
.p2align 3
|
||||
.globl fwd_xrReleaseSwapchainImage
|
||||
.hidden fwd_xrReleaseSwapchainImage
|
||||
fwd_xrReleaseSwapchainImage:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
@@ -523,20 +478,5 @@ xrSyncActions:
|
||||
.globl fwd_xrSyncActions
|
||||
.hidden fwd_xrSyncActions
|
||||
fwd_xrSyncActions:
|
||||
.quad frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrWaitSwapchainImage
|
||||
.type xrWaitSwapchainImage, %function
|
||||
xrWaitSwapchainImage:
|
||||
adrp x16, fwd_xrWaitSwapchainImage
|
||||
ldr x16, [x16, :lo12:fwd_xrWaitSwapchainImage]
|
||||
br x16
|
||||
.size xrWaitSwapchainImage, .-xrWaitSwapchainImage
|
||||
.data
|
||||
.p2align 3
|
||||
.globl fwd_xrWaitSwapchainImage
|
||||
.hidden fwd_xrWaitSwapchainImage
|
||||
fwd_xrWaitSwapchainImage:
|
||||
.quad frame_unsupported
|
||||
.section .note.GNU-stack,"",%progbits
|
||||
@@ -1,7 +1,5 @@
|
||||
// Generated from overport 3.4.3 libopenxr_loader_generic.so exports minus hooked functions.
|
||||
FORWARD(xrApplyHapticFeedback)
|
||||
FORWARD(xrAttachSessionActionSets)
|
||||
FORWARD(xrBeginFrame)
|
||||
FORWARD(xrBeginSession)
|
||||
FORWARD(xrCreateAction)
|
||||
FORWARD(xrCreateActionSet)
|
||||
@@ -26,7 +24,6 @@ FORWARD(xrGetReferenceSpaceBoundsRect)
|
||||
FORWARD(xrGetSystem)
|
||||
FORWARD(xrGetViewConfigurationProperties)
|
||||
FORWARD(xrPathToString)
|
||||
FORWARD(xrReleaseSwapchainImage)
|
||||
FORWARD(xrRequestExitSession)
|
||||
FORWARD(xrResultToString)
|
||||
FORWARD(xrStopHapticFeedback)
|
||||
@@ -34,4 +31,3 @@ FORWARD(xrStringToPath)
|
||||
FORWARD(xrStructureTypeToString)
|
||||
FORWARD(xrSuggestInteractionProfileBindings)
|
||||
FORWARD(xrSyncActions)
|
||||
FORWARD(xrWaitSwapchainImage)
|
||||
@@ -3,23 +3,6 @@
|
||||
.arm
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrApplyHapticFeedback
|
||||
.type xrApplyHapticFeedback, %function
|
||||
xrApplyHapticFeedback:
|
||||
ldr ip, 1f
|
||||
2: add ip, pc, ip
|
||||
ldr ip, [ip]
|
||||
bx ip
|
||||
1: .word fwd_xrApplyHapticFeedback - (2b + 8)
|
||||
.size xrApplyHapticFeedback, .-xrApplyHapticFeedback
|
||||
.data
|
||||
.p2align 2
|
||||
.globl fwd_xrApplyHapticFeedback
|
||||
.hidden fwd_xrApplyHapticFeedback
|
||||
fwd_xrApplyHapticFeedback:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrAttachSessionActionSets
|
||||
.type xrAttachSessionActionSets, %function
|
||||
xrAttachSessionActionSets:
|
||||
@@ -34,23 +17,6 @@ xrAttachSessionActionSets:
|
||||
.globl fwd_xrAttachSessionActionSets
|
||||
.hidden fwd_xrAttachSessionActionSets
|
||||
fwd_xrAttachSessionActionSets:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrBeginFrame
|
||||
.type xrBeginFrame, %function
|
||||
xrBeginFrame:
|
||||
ldr ip, 1f
|
||||
2: add ip, pc, ip
|
||||
ldr ip, [ip]
|
||||
bx ip
|
||||
1: .word fwd_xrBeginFrame - (2b + 8)
|
||||
.size xrBeginFrame, .-xrBeginFrame
|
||||
.data
|
||||
.p2align 2
|
||||
.globl fwd_xrBeginFrame
|
||||
.hidden fwd_xrBeginFrame
|
||||
fwd_xrBeginFrame:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
@@ -459,23 +425,6 @@ xrPathToString:
|
||||
.globl fwd_xrPathToString
|
||||
.hidden fwd_xrPathToString
|
||||
fwd_xrPathToString:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrReleaseSwapchainImage
|
||||
.type xrReleaseSwapchainImage, %function
|
||||
xrReleaseSwapchainImage:
|
||||
ldr ip, 1f
|
||||
2: add ip, pc, ip
|
||||
ldr ip, [ip]
|
||||
bx ip
|
||||
1: .word fwd_xrReleaseSwapchainImage - (2b + 8)
|
||||
.size xrReleaseSwapchainImage, .-xrReleaseSwapchainImage
|
||||
.data
|
||||
.p2align 2
|
||||
.globl fwd_xrReleaseSwapchainImage
|
||||
.hidden fwd_xrReleaseSwapchainImage
|
||||
fwd_xrReleaseSwapchainImage:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
@@ -595,22 +544,5 @@ xrSyncActions:
|
||||
.globl fwd_xrSyncActions
|
||||
.hidden fwd_xrSyncActions
|
||||
fwd_xrSyncActions:
|
||||
.word frame_unsupported
|
||||
.text
|
||||
.p2align 2
|
||||
.globl xrWaitSwapchainImage
|
||||
.type xrWaitSwapchainImage, %function
|
||||
xrWaitSwapchainImage:
|
||||
ldr ip, 1f
|
||||
2: add ip, pc, ip
|
||||
ldr ip, [ip]
|
||||
bx ip
|
||||
1: .word fwd_xrWaitSwapchainImage - (2b + 8)
|
||||
.size xrWaitSwapchainImage, .-xrWaitSwapchainImage
|
||||
.data
|
||||
.p2align 2
|
||||
.globl fwd_xrWaitSwapchainImage
|
||||
.hidden fwd_xrWaitSwapchainImage
|
||||
fwd_xrWaitSwapchainImage:
|
||||
.word frame_unsupported
|
||||
.section .note.GNU-stack,"",%progbits
|
||||
@@ -26,6 +26,9 @@
|
||||
// render_model.c);
|
||||
// * per-game session fixes (session_fixes.c, all off by default): layer_debug diagnostics, stable_local,
|
||||
// focus_hold, aim pose correction (aim_pitch/aim_yaw/aim_forward), refresh_rate;
|
||||
// * optionally logs controller-input diagnostics: suggested interaction profiles and the runtime's answers, each
|
||||
// hand's current profile, functions the runtime lacks, failing input/haptics/perf calls (input_diag,
|
||||
// input_diag.c, off by default);
|
||||
// * optionally shows 360° (equirect/equirect2) layers as cube-face quads drawn by a worker thread with a shared
|
||||
// GLES context (equirect_emul, layer_emul_gl.c; GLES sessions only, off by default).
|
||||
//
|
||||
@@ -45,17 +48,63 @@
|
||||
#include <string.h>
|
||||
|
||||
#define TAG "FrameBridge"
|
||||
#define LOG(...) __android_log_print(ANDROID_LOG_INFO, TAG, __VA_ARGS__)
|
||||
#include <stdarg.h>
|
||||
#include <time.h>
|
||||
// Everything also goes to <app external files>/framebridge.log when eye_debug is on: some games end Lepton's logcat
|
||||
// mirror early (WiiCompiled), so a headset session's diagnostics would otherwise be lost.
|
||||
static FILE *log_file;
|
||||
static void fb_log(const char *fmt, ...) __attribute__((format(printf, 1, 2)));
|
||||
static void fb_log(const char *fmt, ...) {
|
||||
va_list args;
|
||||
va_start(args, fmt);
|
||||
__android_log_vprint(ANDROID_LOG_INFO, TAG, fmt, args);
|
||||
va_end(args);
|
||||
if (!log_file) return;
|
||||
struct timespec now;
|
||||
clock_gettime(CLOCK_REALTIME, &now);
|
||||
flockfile(log_file);
|
||||
fprintf(log_file, "%lld.%03ld ", (long long)now.tv_sec, now.tv_nsec / 1000000);
|
||||
va_start(args, fmt);
|
||||
vfprintf(log_file, fmt, args);
|
||||
va_end(args);
|
||||
fputc('\n', log_file);
|
||||
fflush(log_file);
|
||||
funlockfile(log_file);
|
||||
}
|
||||
#define LOG(...) fb_log(__VA_ARGS__)
|
||||
#include "audio_metadata.h"
|
||||
|
||||
static void *loader;
|
||||
static PFN_xrGetInstanceProcAddr next_gipa;
|
||||
static pthread_once_t init_once = PTHREAD_ONCE_INIT;
|
||||
static XrInstance active_instance = XR_NULL_HANDLE;
|
||||
static void *android_vm; // JavaVM from XrInstanceCreateInfoAndroidKHR (surface_swapchain.c)
|
||||
static int surface_emul = 1; // setting: emulate Android surface swapchains
|
||||
static int eye_debug; // setting: per-eye diagnostics + file log (eye_debug.c)
|
||||
static int release_wait; // setting: wait for the app's GPU work before releasing images (2 = after 60 s: A/B)
|
||||
static void surf_on_destroy(XrSwapchain handle);
|
||||
|
||||
static float scale = 1.0f;
|
||||
static int foveation_fix = 1;
|
||||
// hide XR_FB_space_warp: games then render every frame themselves (UE5 Application SpaceWarp flickered on the Frame,
|
||||
// e.g. Into The Radius 2; OVRPort's patch_disable_space_warp doesn't reach UE5's OpenXR plugin)
|
||||
static int hide_space_warp = 0;
|
||||
static int strip_color_bias = 0;
|
||||
static int snapshot = 0; // seconds between eye-image snapshots (snapshot_gl.c; 0 = off)
|
||||
static char snap_dir[256];
|
||||
static void snap_on_create(XrSwapchain handle, const XrSwapchainCreateInfo *info);
|
||||
static void snap_on_destroy(XrSwapchain handle);
|
||||
static void snap_on_enumerate(XrSwapchain handle, uint32_t count, const XrSwapchainImageBaseHeader *images);
|
||||
static void snap_on_acquire(XrSwapchain handle, uint32_t index);
|
||||
static void snap_end_frame(const XrFrameEndInfo *info);
|
||||
static int frame_balance = 0; // end a still-open frame before the next xrBeginFrame
|
||||
static int frame_begins, frame_discarded, frame_ends, frame_balanced; // per pacing period (layer_debug)
|
||||
static int frame_open;
|
||||
static int sc_acquires, sc_waits, sc_releases, sc_wait_fails; // per pacing period (layer_debug) // drop XrCompositionLayerColorScaleBiasKHR (the runtime's color pass)
|
||||
static int controller_fix = 1;
|
||||
static int swapchain_fix = 1;
|
||||
static int rect_clamp = 1;
|
||||
static int pose_consistency = 0; // repeat xrLocateViews queries for one display time get the same poses (GitHub #8) // clamp submitted image rects to their swapchain (SteamVR rejects a 1 px overrun)
|
||||
static int layer_fix = 1;
|
||||
static int mutable_fix = 0;
|
||||
static int swap_eyes = 0;
|
||||
@@ -76,9 +125,14 @@ static int no_equirect, no_equirect2, no_cylinder, no_cube;
|
||||
static int runtime_has_fb_passthrough, emulate_passthrough, alpha_blend_failed;
|
||||
static int controller_models; // serve Frame controller models via XR_FB_render_model (render_model.c)
|
||||
// Per-game settings, all off by default (session_fixes.c, layer_emul_gl.c).
|
||||
static int sync_guard; // xrSyncActions one at a time with xrPollEvent, paused briefly after focus returns
|
||||
static int profile_remap = 1; // Meta's newer controller profiles (rejected by the Frame) -> oculus/touch_controller
|
||||
static int layer_debug; // diagnostics: layers, swapchains, session states, spaces, aim/grip, refresh rates
|
||||
static int input_diag; // diagnostics: controller profiles, bindings, missing functions, failing input calls
|
||||
static int stable_local; // keep every LOCAL space the app creates on the session-start origin
|
||||
static int focus_hold; // hide brief focus dips once the session has been focused for a while
|
||||
static int focus_hold = 1; // hide brief focus dips once the session has been focused for a while
|
||||
static float focus_hold_ms = 5000; // longest focus dip focus_hold hides
|
||||
static float haptic_scale = 1.0f; // vibration strength (0-1), all vibration types (xrApplyHapticFeedback)
|
||||
static float aim_pitch, aim_yaw, aim_forward; // aim pose correction (degrees, degrees, metres)
|
||||
static float refresh_rate; // requested display refresh rate (Hz), 0 = the app's choice
|
||||
static int equirect_emul; // show 360 layers as cube faces (GLES)
|
||||
@@ -98,8 +152,14 @@ static void read_settings(const char *path) {
|
||||
while (fgets(line, sizeof(line), f)) {
|
||||
if (sscanf(line, "scale=%f", &value) == 1 && value >= 0.5f && value <= 2.0f) scale = value;
|
||||
if (sscanf(line, "foveation_fix=%f", &value) == 1) foveation_fix = value != 0;
|
||||
if (sscanf(line, "hide_space_warp=%f", &value) == 1) hide_space_warp = value != 0;
|
||||
if (sscanf(line, "strip_color_bias=%f", &value) == 1) strip_color_bias = (int)value;
|
||||
if (sscanf(line, "frame_balance=%f", &value) == 1) frame_balance = value != 0;
|
||||
if (sscanf(line, "snapshot=%f", &value) == 1) snapshot = value > 0 ? (int)value : 0;
|
||||
if (sscanf(line, "controller_fix=%f", &value) == 1) controller_fix = value != 0;
|
||||
if (sscanf(line, "swapchain_fix=%f", &value) == 1) swapchain_fix = value != 0;
|
||||
if (sscanf(line, "rect_clamp=%f", &value) == 1) rect_clamp = value != 0;
|
||||
if (sscanf(line, "pose_consistency=%f", &value) == 1) pose_consistency = value != 0;
|
||||
if (sscanf(line, "layer_fix=%f", &value) == 1) layer_fix = value != 0;
|
||||
if (sscanf(line, "mutable_fix=%f", &value) == 1) mutable_fix = value != 0;
|
||||
if (sscanf(line, "swap_eyes=%f", &value) == 1) swap_eyes = value != 0;
|
||||
@@ -115,8 +175,16 @@ static void read_settings(const char *path) {
|
||||
if (sscanf(line, "scene_depth=%f", &value) == 1 && value > 0.5f && value < 20.0f) scene_depth = value;
|
||||
if (sscanf(line, "controller_models=%f", &value) == 1) controller_models = value != 0;
|
||||
if (sscanf(line, "layer_debug=%f", &value) == 1) layer_debug = value != 0;
|
||||
if (sscanf(line, "input_diag=%f", &value) == 1) input_diag = value != 0;
|
||||
if (sscanf(line, "surface_emul=%f", &value) == 1) surface_emul = value != 0;
|
||||
if (sscanf(line, "eye_debug=%f", &value) == 1) eye_debug = value != 0;
|
||||
if (sscanf(line, "release_wait=%f", &value) == 1) release_wait = (int)value;
|
||||
if (sscanf(line, "profile_remap=%f", &value) == 1) profile_remap = value != 0;
|
||||
if (sscanf(line, "sync_guard=%f", &value) == 1) sync_guard = value != 0;
|
||||
if (sscanf(line, "stable_local=%f", &value) == 1) stable_local = value != 0;
|
||||
if (sscanf(line, "focus_hold=%f", &value) == 1) focus_hold = value != 0;
|
||||
if (sscanf(line, "focus_hold_ms=%f", &value) == 1 && value >= 100 && value <= 5000) focus_hold_ms = value;
|
||||
if (sscanf(line, "haptic_scale=%f", &value) == 1 && value >= 0 && value <= 1) haptic_scale = value;
|
||||
if (sscanf(line, "aim_pitch=%f", &value) == 1 && fabsf(value) <= 90) aim_pitch = value;
|
||||
if (sscanf(line, "aim_yaw=%f", &value) == 1 && fabsf(value) <= 90) aim_yaw = value;
|
||||
if (sscanf(line, "aim_forward=%f", &value) == 1 && fabsf(value) <= 0.5f) aim_forward = value;
|
||||
@@ -163,6 +231,20 @@ static void initialize(void) {
|
||||
}
|
||||
const char *env = getenv("FRAMEBRIDGE_CONFIG");
|
||||
if (env && *env) read_settings(env);
|
||||
if (snapshot && *process && !strchr(process, '/')) {
|
||||
snprintf(snap_dir, sizeof(snap_dir), "/sdcard/Android/data/%s/files", process);
|
||||
LOG("per-game: snapshot every %d s to %s/fb_snap_N.ppm", snapshot, snap_dir);
|
||||
}
|
||||
if (eye_debug && *process && !strchr(process, '/')) {
|
||||
snprintf(path, sizeof(path), "/sdcard/Android/data/%s/files/framebridge.log", process);
|
||||
log_file = fopen(path, "a");
|
||||
}
|
||||
if (input_diag) LOG("per-game: input_diag=1 (controller-input diagnostics)");
|
||||
if (hide_space_warp) LOG("per-game: hide_space_warp=1 (XR_FB_space_warp hidden, space warp info removed)");
|
||||
if (strip_color_bias) LOG("per-game: strip_color_bias=%d (layer color scale/bias removed)", strip_color_bias);
|
||||
if (frame_balance) LOG("per-game: frame_balance=1 (an open frame is ended before the next one begins)");
|
||||
if (eye_debug || release_wait) LOG("per-game: eye_debug=%d release_wait=%d log_file=%s", eye_debug, release_wait,
|
||||
log_file ? path : "none");
|
||||
if (controller_models && *process && !strchr(process, '/')) render_model_init(process);
|
||||
|
||||
LOG("scale=%.2f foveation_fix=%d controller_fix=%d swapchain_fix=%d layer_fix=%d mutable_fix=%d swap_eyes=%d passthrough_emul=%d respace_kick=%d flip_quads=%d controller_models=%d loader=%s",
|
||||
@@ -193,7 +275,10 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
|
||||
int chained = 0, enabled = 0;
|
||||
for (const XrBaseInStructure *p = (const XrBaseInStructure *)info->next; p; p = p->next)
|
||||
if (p->type == XR_TYPE_INSTANCE_CREATE_INFO_ANDROID_KHR) chained = 1;
|
||||
if (p->type == XR_TYPE_INSTANCE_CREATE_INFO_ANDROID_KHR) {
|
||||
chained = 1;
|
||||
android_vm = ((const struct { XrStructureType type; const void *next; void *vm; void *activity; } *)p)->vm;
|
||||
}
|
||||
for (uint32_t i = 0; i < info->enabledExtensionCount; ++i)
|
||||
if (!strcmp(info->enabledExtensionNames[i], "XR_KHR_android_create_instance")) enabled = 1;
|
||||
|
||||
@@ -215,7 +300,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
}
|
||||
|
||||
XrInstanceCreateInfo fixed = *info;
|
||||
const char **names = calloc(info->enabledExtensionCount + 2, sizeof(*names));
|
||||
const char **names = calloc(info->enabledExtensionCount + 3, sizeof(*names));
|
||||
if (!names) { free(available); return XR_ERROR_OUT_OF_MEMORY; }
|
||||
uint32_t kept = 0;
|
||||
for (uint32_t i = 0; i < info->enabledExtensionCount; ++i) {
|
||||
@@ -223,6 +308,10 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
int supported = !available; // if we could not enumerate, pass everything through
|
||||
for (uint32_t j = 0; available && j < available_count && !supported; ++j)
|
||||
supported = !strcmp(available[j].extensionName, ext);
|
||||
if (hide_space_warp && !strcmp(ext, "XR_FB_space_warp")) {
|
||||
LOG("hide_space_warp: XR_FB_space_warp not enabled");
|
||||
continue;
|
||||
}
|
||||
if (supported) names[kept++] = ext;
|
||||
else if (scene_emul && is_scene_extension(ext)) {
|
||||
if (!emulate_scene) LOG("emulating Meta scene/spatial-entity extensions from the guardian bounds");
|
||||
@@ -239,6 +328,19 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
names[kept++] = "XR_KHR_android_create_instance";
|
||||
LOG("added %s", "XR_KHR_android_create_instance");
|
||||
}
|
||||
{ // no graphics API extension at all: Meta's runtime still accepts a GLES session, the Frame's doesn't
|
||||
// (Lambda1VR's TBXR enables only XR_EXT_local_floor). Add GLES, which every such app uses, if offered.
|
||||
int graphics = 0, gles_offered = 0;
|
||||
for (uint32_t i = 0; i < kept; ++i)
|
||||
graphics |= !strcmp(names[i], "XR_KHR_opengl_es_enable") || !strcmp(names[i], "XR_KHR_vulkan_enable") ||
|
||||
!strcmp(names[i], "XR_KHR_vulkan_enable2");
|
||||
for (uint32_t j = 0; available && j < available_count; ++j)
|
||||
gles_offered |= !strcmp(available[j].extensionName, "XR_KHR_opengl_es_enable");
|
||||
if (!graphics && gles_offered) {
|
||||
names[kept++] = "XR_KHR_opengl_es_enable";
|
||||
LOG("added XR_KHR_opengl_es_enable (the app enabled no graphics API extension)");
|
||||
}
|
||||
}
|
||||
if (refresh_rate > 0) { // the refresh_rate setting needs XR_FB_display_refresh_rate even if the app doesn't use it
|
||||
int requested = 0, offered = 0;
|
||||
for (uint32_t i = 0; i < kept; ++i) requested |= !strcmp(names[i], "XR_FB_display_refresh_rate");
|
||||
@@ -247,6 +349,14 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
}
|
||||
fixed.enabledExtensionNames = names;
|
||||
fixed.enabledExtensionCount = kept;
|
||||
{ // what the runtime gets (diagnostics: e.g. a graphics extension the app forgot)
|
||||
char list[1024] = "";
|
||||
for (uint32_t i = 0; i < kept; ++i) {
|
||||
size_t len = strlen(list);
|
||||
snprintf(list + len, sizeof list - len, "%s%s", i ? " " : "", names[i] + (strncmp(names[i], "XR_", 3) ? 0 : 3));
|
||||
}
|
||||
LOG("xrCreateInstance with %u extension(s): %s", kept, list);
|
||||
}
|
||||
for (uint32_t j = 0; available && j < available_count; ++j)
|
||||
if (!strcmp(available[j].extensionName, "XR_FB_composition_layer_image_layout")) runtime_has_image_layout = 1;
|
||||
// Layer types are only valid if their extension ends up enabled; some apps submit them regardless.
|
||||
@@ -259,10 +369,11 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateInstance(const XrInstanceCreateInfo *info
|
||||
}
|
||||
no_equirect = !has_equirect; no_equirect2 = !has_equirect2; no_cylinder = !has_cylinder; no_cube = !has_cube;
|
||||
free(available);
|
||||
mx_audio_initialize();
|
||||
XrResult result = fn(&fixed, instance);
|
||||
free(names);
|
||||
LOG("xrCreateInstance result=%d", result);
|
||||
if (XR_SUCCEEDED(result)) active_instance = *instance;
|
||||
if (XR_SUCCEEDED(result)) { active_instance = *instance; mx_audio_initialize(); }
|
||||
return result;
|
||||
}
|
||||
|
||||
@@ -333,6 +444,45 @@ static void remember_swapchain(XrSwapchain handle) {
|
||||
pthread_mutex_unlock(&swapchains_lock);
|
||||
}
|
||||
|
||||
// Swapchain sizes, to keep submitted image rects inside them (rect_clamp).
|
||||
#define MAX_SIZES 256
|
||||
static struct { XrSwapchain handle; uint32_t w, h; } sizes[MAX_SIZES];
|
||||
static pthread_mutex_t sizes_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
|
||||
static void note_swapchain_size(XrSwapchain handle, uint32_t w, uint32_t h) {
|
||||
pthread_mutex_lock(&sizes_lock);
|
||||
int slot = -1;
|
||||
for (int i = 0; i < MAX_SIZES; ++i) {
|
||||
if (sizes[i].handle == handle) { slot = i; break; }
|
||||
if (slot < 0 && sizes[i].handle == XR_NULL_HANDLE) slot = i;
|
||||
}
|
||||
if (slot >= 0) { sizes[slot].handle = handle; sizes[slot].w = w; sizes[slot].h = h; }
|
||||
pthread_mutex_unlock(&sizes_lock);
|
||||
}
|
||||
|
||||
static int swapchain_size(XrSwapchain handle, uint32_t *w, uint32_t *h) {
|
||||
int found = 0;
|
||||
pthread_mutex_lock(&sizes_lock);
|
||||
for (int i = 0; i < MAX_SIZES && !found; ++i)
|
||||
if (sizes[i].handle == handle && handle != XR_NULL_HANDLE) { *w = sizes[i].w; *h = sizes[i].h; found = 1; }
|
||||
pthread_mutex_unlock(&sizes_lock);
|
||||
return found;
|
||||
}
|
||||
|
||||
// Clamp `r` to a w x h image; returns whether it changed.
|
||||
static int clamp_rect(XrRect2Di *r, uint32_t w, uint32_t h) {
|
||||
XrRect2Di c = *r;
|
||||
if (c.offset.x < 0) { c.extent.width += c.offset.x; c.offset.x = 0; }
|
||||
if (c.offset.y < 0) { c.extent.height += c.offset.y; c.offset.y = 0; }
|
||||
if ((uint32_t)c.offset.x >= w || (uint32_t)c.offset.y >= h) return 0; // nothing sensible to keep: leave it
|
||||
if ((int64_t)c.offset.x + c.extent.width > (int64_t)w) c.extent.width = (int32_t)(w - (uint32_t)c.offset.x);
|
||||
if ((int64_t)c.offset.y + c.extent.height > (int64_t)h) c.extent.height = (int32_t)(h - (uint32_t)c.offset.y);
|
||||
if (c.extent.width <= 0 || c.extent.height <= 0) return 0;
|
||||
int changed = memcmp(&c, r, sizeof c) != 0;
|
||||
*r = c;
|
||||
return changed;
|
||||
}
|
||||
|
||||
static void forget_swapchain(XrSwapchain handle) {
|
||||
pthread_mutex_lock(&swapchains_lock);
|
||||
for (size_t i = 0; i < swapchain_count; ++i)
|
||||
@@ -374,6 +524,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateSwapchain(XrSession session, const XrSwap
|
||||
if (equirect_emul && swapchain && emul_virtual_create(session, &fixed, swapchain)) {
|
||||
remember_swapchain(*swapchain);
|
||||
emul_on_create_swapchain(*swapchain, &fixed);
|
||||
snap_on_create(*swapchain, &fixed);
|
||||
return XR_SUCCESS;
|
||||
}
|
||||
XrResult result = fn(session, &fixed, swapchain);
|
||||
@@ -382,8 +533,10 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateSwapchain(XrSession session, const XrSwap
|
||||
(unsigned long long)fixed.usageFlags, (unsigned long long)fixed.createFlags, result);
|
||||
if (XR_SUCCEEDED(result)) {
|
||||
remember_swapchain(*swapchain);
|
||||
note_swapchain_size(*swapchain, fixed.width, fixed.height);
|
||||
flip_on_create_swapchain(*swapchain, &fixed);
|
||||
emul_on_create_swapchain(*swapchain, &fixed);
|
||||
snap_on_create(*swapchain, &fixed);
|
||||
return result;
|
||||
}
|
||||
if (!swapchain_fix) return result;
|
||||
@@ -404,8 +557,10 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateSwapchain(XrSession session, const XrSwap
|
||||
}
|
||||
if (XR_SUCCEEDED(result)) {
|
||||
remember_swapchain(*swapchain);
|
||||
note_swapchain_size(*swapchain, fixed.width, fixed.height);
|
||||
flip_on_create_swapchain(*swapchain, &fixed);
|
||||
emul_on_create_swapchain(*swapchain, &fixed);
|
||||
snap_on_create(*swapchain, &fixed);
|
||||
}
|
||||
return result;
|
||||
}
|
||||
@@ -413,9 +568,15 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateSwapchain(XrSession session, const XrSwap
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrDestroySwapchain(XrSwapchain swapchain) {
|
||||
PFN_xrDestroySwapchain fn = (PFN_xrDestroySwapchain)lookup(active_instance, "xrDestroySwapchain");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (layer_debug) {
|
||||
static int logged;
|
||||
if (logged++ < 200) LOG("layer_debug: xrDestroySwapchain %p", (void *)swapchain);
|
||||
}
|
||||
forget_swapchain(swapchain);
|
||||
surf_on_destroy(swapchain);
|
||||
flip_on_destroy(swapchain);
|
||||
emul_on_destroy_swapchain(swapchain);
|
||||
snap_on_destroy(swapchain);
|
||||
if (equirect_emul && emul_is_virtual(swapchain)) { emul_virtual_destroy(swapchain); return XR_SUCCESS; }
|
||||
return fn(swapchain);
|
||||
}
|
||||
@@ -665,13 +826,47 @@ XRAPI_ATTR XrResult XRAPI_CALL xrDestroySpace(XrSpace space) {
|
||||
return fn ? fn(space) : XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
}
|
||||
|
||||
#include "input_diag.c"
|
||||
#include "session_fixes.c"
|
||||
#include "layer_emul_gl.c"
|
||||
#include "snapshot_gl.c"
|
||||
#include "surface_swapchain.c"
|
||||
#include "eye_debug.c"
|
||||
|
||||
// OpenXR requires xrGet*GraphicsRequirementsKHR before xrCreateSession; Meta's runtime doesn't enforce it, the Frame's
|
||||
// does (XR_ERROR_GRAPHICS_REQUIREMENTS_CALL_MISSING, e.g. Lambda1VR's TBXR). Ask on the app's behalf, once, and retry.
|
||||
static int ask_graphics_requirements(XrInstance instance, const XrSessionCreateInfo *info) {
|
||||
const XrBaseInStructure *binding = info ? (const XrBaseInStructure *)info->next : NULL;
|
||||
for (; binding; binding = binding->next) {
|
||||
const char *name = NULL;
|
||||
XrStructureType type = 0;
|
||||
if (binding->type == (XrStructureType)1000024001) { // XR_TYPE_GRAPHICS_BINDING_OPENGL_ES_ANDROID_KHR
|
||||
name = "xrGetOpenGLESGraphicsRequirementsKHR";
|
||||
type = (XrStructureType)1000024003; // XR_TYPE_GRAPHICS_REQUIREMENTS_OPENGL_ES_KHR
|
||||
} else if (binding->type == (XrStructureType)1000025000) { // XR_TYPE_GRAPHICS_BINDING_VULKAN_KHR
|
||||
name = "xrGetVulkanGraphicsRequirementsKHR";
|
||||
type = (XrStructureType)1000025002; // XR_TYPE_GRAPHICS_REQUIREMENTS_VULKAN_KHR
|
||||
}
|
||||
if (!name) continue;
|
||||
// XrGraphicsRequirementsOpenGLESKHR and ...VulkanKHR share this layout
|
||||
struct { XrStructureType type; void *next; XrVersion min, max; } req = {type, NULL, 0, 0};
|
||||
typedef XrResult (XRAPI_PTR *PFN_requirements)(XrInstance, XrSystemId, void *);
|
||||
PFN_requirements get = (PFN_requirements)lookup(instance, name);
|
||||
if (!get && type == (XrStructureType)1000025002) // XR_KHR_vulkan_enable2 apps: same struct and call
|
||||
get = (PFN_requirements)lookup(instance, "xrGetVulkanGraphicsRequirements2KHR");
|
||||
XrResult r = get ? get(instance, info->systemId, &req) : XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
LOG("xrCreateSession: the app skipped %s; asked for it (result=%d)", name, (int)r);
|
||||
return XR_SUCCEEDED(r);
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrCreateSession(XrInstance instance, const XrSessionCreateInfo *info, XrSession *session) {
|
||||
PFN_xrCreateSession fn = (PFN_xrCreateSession)lookup(instance, "xrCreateSession");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
XrResult result = fn(instance, info, session);
|
||||
if (result == XR_ERROR_GRAPHICS_REQUIREMENTS_CALL_MISSING && ask_graphics_requirements(instance, info))
|
||||
result = fn(instance, info, session);
|
||||
if (XR_SUCCEEDED(result)) {
|
||||
flip_emul = flip_emul_setting;
|
||||
flip_on_create_session(info);
|
||||
@@ -682,6 +877,63 @@ XRAPI_ATTR XrResult XRAPI_CALL xrCreateSession(XrInstance instance, const XrSess
|
||||
return result;
|
||||
}
|
||||
|
||||
// Vibrations: logged (the first few, to see what games ask for) and scaled by haptic_scale. Plain vibrations, Meta's
|
||||
// amplitude envelopes and PCM buffers all pass here: games' own calls, OVRPort's VrApi bridge and the xrshim alike.
|
||||
static int haptics_logged;
|
||||
static XrResult apply_haptics(XrSession session, const XrHapticActionInfo *info, const XrHapticBaseHeader *feedback) {
|
||||
PFN_xrApplyHapticFeedback fn = (PFN_xrApplyHapticFeedback)lookup(active_instance, "xrApplyHapticFeedback");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (!feedback) return fn(session, info, feedback);
|
||||
if (feedback->type == XR_TYPE_HAPTIC_VIBRATION) {
|
||||
XrHapticVibration v = *(const XrHapticVibration *)feedback;
|
||||
if (haptics_logged++ < 8)
|
||||
LOG("haptic: vibration amplitude=%.2f duration=%lld ns frequency=%.0f (scale %.2f)", v.amplitude,
|
||||
(long long)v.duration, v.frequency, haptic_scale);
|
||||
v.amplitude *= haptic_scale;
|
||||
if (v.amplitude <= 0.001f) {
|
||||
// OVRPlugin stops a vibration by sending amplitude 0 with its usual 2 s duration (Jurassic World, The Boys
|
||||
// VR): on a Quest that stops the motor; OpenXR's stop is xrStopHapticFeedback, and without it the last
|
||||
// buzz ran its full 2 s
|
||||
PFN_xrStopHapticFeedback stop = (PFN_xrStopHapticFeedback)lookup(active_instance, "xrStopHapticFeedback");
|
||||
if (stop) return stop(session, info);
|
||||
}
|
||||
return fn(session, info, (const XrHapticBaseHeader *)&v);
|
||||
}
|
||||
if (feedback->type == (XrStructureType)1000173001 || feedback->type == (XrStructureType)1000209001) {
|
||||
// XR_TYPE_HAPTIC_AMPLITUDE_ENVELOPE_VIBRATION_FB / XR_TYPE_HAPTIC_PCM_VIBRATION_FB: a sample buffer
|
||||
typedef struct { XrStructureType type; const void *next; XrDuration duration; uint32_t count; const float *s; } env_t;
|
||||
typedef struct { XrStructureType type; const void *next; uint32_t count; const float *s; float rate; XrBool32 append;
|
||||
uint32_t *consumed; } pcm_t;
|
||||
int envelope = feedback->type == (XrStructureType)1000173001;
|
||||
uint32_t n = envelope ? ((const env_t *)feedback)->count : ((const pcm_t *)feedback)->count;
|
||||
const float *in = envelope ? ((const env_t *)feedback)->s : ((const pcm_t *)feedback)->s;
|
||||
if (haptics_logged++ < 8) {
|
||||
float peak = 0;
|
||||
for (uint32_t i = 0; in && i < n; ++i) peak = fmaxf(peak, in[i]);
|
||||
LOG("haptic: %s %u samples peak=%.2f (scale %.2f)", envelope ? "envelope" : "pcm", n, peak, haptic_scale);
|
||||
}
|
||||
if (haptic_scale >= 0.999f || !in || !n || n > 1u << 20) return fn(session, info, feedback);
|
||||
float *scaled = malloc(n * sizeof *scaled);
|
||||
if (!scaled) return fn(session, info, feedback);
|
||||
for (uint32_t i = 0; i < n; ++i) scaled[i] = in[i] * haptic_scale;
|
||||
XrResult r;
|
||||
if (envelope) { env_t e = *(const env_t *)feedback; e.s = scaled; r = fn(session, info, (const XrHapticBaseHeader *)&e); }
|
||||
else { pcm_t c = *(const pcm_t *)feedback; c.s = scaled; r = fn(session, info, (const XrHapticBaseHeader *)&c); }
|
||||
free(scaled);
|
||||
return r;
|
||||
}
|
||||
return fn(session, info, feedback);
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrApplyHapticFeedback(XrSession session, const XrHapticActionInfo *info,
|
||||
const XrHapticBaseHeader *feedback) {
|
||||
XrResult result = apply_haptics(session, info, feedback);
|
||||
if (input_diag && XR_FAILED(result)) // always hooked (haptic_scale), so input_diag reports failures here
|
||||
diag_call_failed("xrApplyHapticFeedback", result,
|
||||
feedback && feedback->type != XR_TYPE_HAPTIC_VIBRATION ? "(not XrHapticVibration)" : NULL);
|
||||
return result;
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrEnumerateSwapchainImages(XrSwapchain swapchain, uint32_t capacity, uint32_t *count,
|
||||
XrSwapchainImageBaseHeader *images) {
|
||||
PFN_xrEnumerateSwapchainImages fn = (PFN_xrEnumerateSwapchainImages)lookup(active_instance, "xrEnumerateSwapchainImages");
|
||||
@@ -691,10 +943,28 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEnumerateSwapchainImages(XrSwapchain swapchain,
|
||||
if (XR_SUCCEEDED(result) && images && capacity && count) {
|
||||
flip_on_enumerate_images(swapchain, *count, images);
|
||||
emul_on_enumerate(swapchain, *count < capacity ? *count : capacity, images);
|
||||
snap_on_enumerate(swapchain, *count < capacity ? *count : capacity, images);
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
// counted for layer_debug (an app that skips the wait or release keeps runtime resources alive)
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrWaitSwapchainImage(XrSwapchain swapchain, const XrSwapchainImageWaitInfo *info) {
|
||||
PFN_xrWaitSwapchainImage fn = (PFN_xrWaitSwapchainImage)lookup(active_instance, "xrWaitSwapchainImage");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
XrResult result = fn(swapchain, info);
|
||||
__atomic_add_fetch(&sc_waits, 1, __ATOMIC_RELAXED);
|
||||
if (result != XR_SUCCESS) __atomic_add_fetch(&sc_wait_fails, 1, __ATOMIC_RELAXED);
|
||||
return result;
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrReleaseSwapchainImage(XrSwapchain swapchain, const XrSwapchainImageReleaseInfo *info) {
|
||||
PFN_xrReleaseSwapchainImage fn = (PFN_xrReleaseSwapchainImage)lookup(active_instance, "xrReleaseSwapchainImage");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
__atomic_add_fetch(&sc_releases, 1, __ATOMIC_RELAXED);
|
||||
return fn(swapchain, info);
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrAcquireSwapchainImage(XrSwapchain swapchain, const XrSwapchainImageAcquireInfo *info,
|
||||
uint32_t *index) {
|
||||
PFN_xrAcquireSwapchainImage fn = (PFN_xrAcquireSwapchainImage)lookup(active_instance, "xrAcquireSwapchainImage");
|
||||
@@ -706,7 +976,12 @@ XRAPI_ATTR XrResult XRAPI_CALL xrAcquireSwapchainImage(XrSwapchain swapchain, co
|
||||
return XR_SUCCESS;
|
||||
}
|
||||
XrResult result = fn(swapchain, info, index);
|
||||
if (XR_SUCCEEDED(result) && index) { flip_on_acquire(swapchain, *index); emul_on_acquire(swapchain, *index); }
|
||||
__atomic_add_fetch(&sc_acquires, 1, __ATOMIC_RELAXED);
|
||||
if (XR_SUCCEEDED(result) && index) {
|
||||
flip_on_acquire(swapchain, *index);
|
||||
emul_on_acquire(swapchain, *index);
|
||||
snap_on_acquire(swapchain, *index);
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
@@ -720,6 +995,7 @@ static XrSession focused_session = XR_NULL_HANDLE;
|
||||
static int kicks_pending = -1; // -1: not yet armed
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrPollEvent(XrInstance instance, XrEventDataBuffer *event) {
|
||||
mx_audio_initialize();
|
||||
PFN_xrPollEvent fn = (PFN_xrPollEvent)lookup(instance, "xrPollEvent");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (emulate_scene && event) {
|
||||
@@ -728,7 +1004,13 @@ XRAPI_ATTR XrResult XRAPI_CALL xrPollEvent(XrInstance instance, XrEventDataBuffe
|
||||
pthread_mutex_unlock(&scene_lock);
|
||||
if (got) return XR_SUCCESS;
|
||||
}
|
||||
if (sync_guard) pthread_mutex_lock(&sync_lock);
|
||||
XrResult result = focus_hold && event ? focus_hold_poll(fn, instance, event) : fn(instance, event);
|
||||
if (sync_guard) {
|
||||
if (result == XR_SUCCESS && event && session_state_of(event) == XR_SESSION_STATE_FOCUSED)
|
||||
sync_resume_at = monotonic_ns() + SYNC_GUARD_PAUSE_NS;
|
||||
pthread_mutex_unlock(&sync_lock);
|
||||
}
|
||||
if (result == XR_SUCCESS && event && (layer_debug || stable_local)) {
|
||||
if (event->type == XR_TYPE_EVENT_DATA_SESSION_STATE_CHANGED && layer_debug)
|
||||
LOG("layer_debug: session state %d at %.3f", ((const XrEventDataSessionStateChanged *)event)->state,
|
||||
@@ -802,11 +1084,69 @@ XRAPI_ATTR XrResult XRAPI_CALL xrWaitFrame(XrSession session, const XrFrameWaitI
|
||||
return result;
|
||||
}
|
||||
|
||||
// pose_consistency (GitHub #8, proposed by Klownicle for I Am Cat): the game asks xrLocateViews ~3 times per frame
|
||||
// for the same display time and got slightly different poses each time (tenths of a degree), so parts of its pipeline
|
||||
// rendered with different heads: judder. The first fully tracked answer for (session, space, view configuration,
|
||||
// display time) is kept and repeated; a new display time, another space or a failed/untracked answer is never cached.
|
||||
#define POSE_CACHE 8
|
||||
static struct {
|
||||
XrSession session; XrSpace space; XrViewConfigurationType config; XrTime time;
|
||||
XrViewStateFlags flags; uint32_t count; XrPosef pose[2]; XrFovf fov[2];
|
||||
} pose_cache[POSE_CACHE];
|
||||
static int pose_cache_next, pose_cache_hits;
|
||||
static pthread_mutex_t pose_cache_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
#define POSE_TRACKED (XR_VIEW_STATE_ORIENTATION_VALID_BIT | XR_VIEW_STATE_POSITION_VALID_BIT | \
|
||||
XR_VIEW_STATE_ORIENTATION_TRACKED_BIT | XR_VIEW_STATE_POSITION_TRACKED_BIT)
|
||||
|
||||
static int pose_cache_lookup(XrSession session, const XrViewLocateInfo *info, XrViewState *state, uint32_t capacity,
|
||||
uint32_t *count, XrView *views) {
|
||||
int hit = 0;
|
||||
pthread_mutex_lock(&pose_cache_lock);
|
||||
for (int i = 0; i < POSE_CACHE && !hit; ++i) {
|
||||
if (pose_cache[i].session != session || pose_cache[i].space != info->space ||
|
||||
pose_cache[i].config != info->viewConfigurationType || pose_cache[i].time != info->displayTime ||
|
||||
!pose_cache[i].count || capacity < pose_cache[i].count)
|
||||
continue;
|
||||
state->viewStateFlags = pose_cache[i].flags;
|
||||
*count = pose_cache[i].count;
|
||||
for (uint32_t v = 0; v < pose_cache[i].count; ++v) { // only the values: the caller's type/next stay
|
||||
views[v].pose = pose_cache[i].pose[v];
|
||||
views[v].fov = pose_cache[i].fov[v];
|
||||
}
|
||||
hit = 1;
|
||||
}
|
||||
if (hit && pose_cache_hits++ == 0) LOG("pose_consistency: repeated query answered with the frame's first poses");
|
||||
pthread_mutex_unlock(&pose_cache_lock);
|
||||
return hit;
|
||||
}
|
||||
|
||||
static void pose_cache_store(XrSession session, const XrViewLocateInfo *info, const XrViewState *state,
|
||||
uint32_t count, const XrView *views) {
|
||||
if (count == 0 || count > 2 || (state->viewStateFlags & POSE_TRACKED) != POSE_TRACKED) return;
|
||||
pthread_mutex_lock(&pose_cache_lock);
|
||||
int slot = pose_cache_next;
|
||||
pose_cache_next = (pose_cache_next + 1) % POSE_CACHE;
|
||||
pose_cache[slot].session = session;
|
||||
pose_cache[slot].space = info->space;
|
||||
pose_cache[slot].config = info->viewConfigurationType;
|
||||
pose_cache[slot].time = info->displayTime;
|
||||
pose_cache[slot].flags = state->viewStateFlags;
|
||||
pose_cache[slot].count = count;
|
||||
for (uint32_t v = 0; v < count; ++v) {
|
||||
pose_cache[slot].pose[v] = views[v].pose;
|
||||
pose_cache[slot].fov[v] = views[v].fov;
|
||||
}
|
||||
pthread_mutex_unlock(&pose_cache_lock);
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrLocateViews(XrSession session, const XrViewLocateInfo *info, XrViewState *state,
|
||||
uint32_t capacity, uint32_t *count, XrView *views) {
|
||||
PFN_xrLocateViews fn = (PFN_xrLocateViews)lookup(active_instance, "xrLocateViews");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
int cacheable = pose_consistency && info && state && count && views && capacity > 0;
|
||||
if (cacheable && pose_cache_lookup(session, info, state, capacity, count, views)) return XR_SUCCESS;
|
||||
XrResult result = fn(session, info, state, capacity, count, views);
|
||||
if (cacheable && result == XR_SUCCESS) pose_cache_store(session, info, state, *count, views);
|
||||
if (equirect_emul && XR_SUCCEEDED(result) && info && count && views && state &&
|
||||
(state->viewStateFlags & XR_VIEW_STATE_ORIENTATION_VALID_BIT))
|
||||
emul_on_locate_views(info->space, info->displayTime, *count < capacity ? *count : capacity, views);
|
||||
@@ -849,9 +1189,41 @@ XRAPI_ATTR XrResult XRAPI_CALL xrLocateViews(XrSession session, const XrViewLoca
|
||||
return result;
|
||||
}
|
||||
|
||||
// xrBeginFrame: counted for layer_debug. A game that begins a new frame while the previous one is still open
|
||||
// (never ended) makes the runtime discard it; the Frame's runtime then never recycles that frame's GPU timing
|
||||
// command buffer (Vader Immortal: ~430 GPU mappings / 20 MB a second). frame_balance ends the open frame first,
|
||||
// with no layers, as the runtime expects.
|
||||
static XrTime last_begin_display_time;
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrBeginFrame(XrSession session, const XrFrameBeginInfo *info) {
|
||||
PFN_xrBeginFrame fn = (PFN_xrBeginFrame)lookup(active_instance, "xrBeginFrame");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (frame_open && frame_balance) {
|
||||
PFN_xrEndFrame end = (PFN_xrEndFrame)lookup(active_instance, "xrEndFrame");
|
||||
XrFrameEndInfo empty = {XR_TYPE_FRAME_END_INFO, NULL, last_begin_display_time ? last_begin_display_time
|
||||
: last_predicted_time,
|
||||
XR_ENVIRONMENT_BLEND_MODE_OPAQUE, 0, NULL};
|
||||
XrResult r = end ? end(session, &empty) : XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
static int logged;
|
||||
if (logged++ < 3) LOG("frame_balance: ended an open frame before xrBeginFrame (result %d)", r);
|
||||
__atomic_add_fetch(&frame_balanced, 1, __ATOMIC_RELAXED);
|
||||
}
|
||||
XrResult result = fn(session, info);
|
||||
__atomic_add_fetch(&frame_begins, 1, __ATOMIC_RELAXED);
|
||||
if (result == XR_FRAME_DISCARDED) __atomic_add_fetch(&frame_discarded, 1, __ATOMIC_RELAXED);
|
||||
if (XR_SUCCEEDED(result)) {
|
||||
frame_open = 1;
|
||||
last_begin_display_time = last_predicted_time;
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
XRAPI_ATTR XrResult XRAPI_CALL xrEndFrame(XrSession session, const XrFrameEndInfo *info) {
|
||||
PFN_xrEndFrame fn = (PFN_xrEndFrame)lookup(active_instance, "xrEndFrame");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
frame_open = 0;
|
||||
__atomic_add_fetch(&frame_ends, 1, __ATOMIC_RELAXED);
|
||||
snap_end_frame(info);
|
||||
if (eye_debug) eye_debug_end_frame(session, info);
|
||||
{ // frame pacing statistics every ~5 s: fps and submitted-vs-predicted display time
|
||||
static struct timespec start;
|
||||
static int frames;
|
||||
@@ -867,6 +1239,24 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEndFrame(XrSession session, const XrFrameEndInf
|
||||
if (elapsed >= 5.0) {
|
||||
LOG("pacing: %.1f fps, displayTime vs predicted: avg %.2f ms, max %.2f ms", frames / elapsed,
|
||||
drift_sum / (double)frames / 1e6, drift_max / 1e6);
|
||||
if (layer_debug)
|
||||
LOG("layer_debug: swapchain images: %d acquired, %d waited (%d not ok), %d released",
|
||||
__atomic_exchange_n(&sc_acquires, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&sc_waits, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&sc_wait_fails, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&sc_releases, 0, __ATOMIC_RELAXED));
|
||||
if (layer_debug)
|
||||
LOG("layer_debug: frames: %d xrBeginFrame (%d discarded), %d xrEndFrame, %d balanced",
|
||||
__atomic_exchange_n(&frame_begins, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&frame_discarded, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&frame_ends, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&frame_balanced, 0, __ATOMIC_RELAXED));
|
||||
if (layer_debug)
|
||||
LOG("layer_debug: input: %d xrSyncActions (%d ok, last %d), %d bool reads, %d pressed",
|
||||
__atomic_exchange_n(&input_syncs, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&input_sync_ok, 0, __ATOMIC_RELAXED), input_last_sync_result,
|
||||
__atomic_exchange_n(&input_bool_reads, 0, __ATOMIC_RELAXED),
|
||||
__atomic_exchange_n(&input_bool_true, 0, __ATOMIC_RELAXED));
|
||||
frames = 0; drift_sum = drift_max = 0;
|
||||
}
|
||||
}
|
||||
@@ -951,6 +1341,13 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEndFrame(XrSession session, const XrFrameEndInf
|
||||
continue;
|
||||
}
|
||||
}
|
||||
if (layer && (layer->type == XR_TYPE_COMPOSITION_LAYER_QUAD || layer->type == XR_TYPE_COMPOSITION_LAYER_CYLINDER_KHR) &&
|
||||
!surf_prepare_layer(layer->type == XR_TYPE_COMPOSITION_LAYER_QUAD
|
||||
? ((const XrCompositionLayerQuad *)layer)->subImage.swapchain
|
||||
: ((const XrCompositionLayerCylinderKHR *)layer)->subImage.swapchain)) {
|
||||
++dropped; // an emulated video surface without a frame yet
|
||||
continue;
|
||||
}
|
||||
if (!layer || (layer_fix && !layer_usable(layer))) { ++dropped; continue; }
|
||||
if (layer->type == XR_TYPE_COMPOSITION_LAYER_QUAD) {
|
||||
const XrCompositionLayerQuad *flipped = flip_quad(session, (const XrCompositionLayerQuad *)layer, &quads[count]);
|
||||
@@ -987,6 +1384,73 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEndFrame(XrSession session, const XrFrameEndInf
|
||||
if (!logged++) LOG("strip_depth: removed depth info from projection layer");
|
||||
++swapped;
|
||||
}
|
||||
{
|
||||
// XR_KHR_composition_layer_color_scale_bias (1000034000) on the layer itself: logged when its values
|
||||
// change (layer_debug); with strip_color_bias the runtime never gets it (Vader Immortal: the Frame's
|
||||
// runtime allocates GPU memory for it every frame and never frees it)
|
||||
const XrBaseInStructure *head = (const XrBaseInStructure *)layer->next;
|
||||
const XrCompositionLayerColorScaleBiasKHR *cb = NULL;
|
||||
for (const XrBaseInStructure *n = head; n; n = n->next)
|
||||
if (n->type == XR_TYPE_COMPOSITION_LAYER_COLOR_SCALE_BIAS_KHR) cb = (const XrCompositionLayerColorScaleBiasKHR *)n;
|
||||
if (cb && layer_debug) {
|
||||
static float last[8] = {-1};
|
||||
float now[8] = {cb->colorScale.r, cb->colorScale.g, cb->colorScale.b, cb->colorScale.a,
|
||||
cb->colorBias.r, cb->colorBias.g, cb->colorBias.b, cb->colorBias.a};
|
||||
static int logged;
|
||||
if (memcmp(now, last, sizeof(now)) && logged++ < 100) {
|
||||
LOG("layer_debug: layer type=%d color scale %.2f %.2f %.2f %.2f bias %.2f %.2f %.2f %.2f", layer->type,
|
||||
now[0], now[1], now[2], now[3], now[4], now[5], now[6], now[7]);
|
||||
memcpy(last, now, sizeof(now));
|
||||
}
|
||||
}
|
||||
if (cb && strip_color_bias && (layer->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION ||
|
||||
layer->type == XR_TYPE_COMPOSITION_LAYER_QUAD)) {
|
||||
const XrBaseInStructure *rest = head; // skip leading color structs; one further down drops the chain
|
||||
while (rest && rest->type == XR_TYPE_COMPOSITION_LAYER_COLOR_SCALE_BIAS_KHR) rest = rest->next;
|
||||
for (const XrBaseInStructure *n = rest; n; n = n->next)
|
||||
if (n->type == XR_TYPE_COMPOSITION_LAYER_COLOR_SCALE_BIAS_KHR) rest = NULL;
|
||||
if (strip_color_bias > 1) rest = NULL; // 2: the layer's whole extension chain (diagnostics)
|
||||
if (layer->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION) {
|
||||
if (layer != (const XrCompositionLayerBaseHeader *)&projections[count])
|
||||
projections[count] = *(const XrCompositionLayerProjection *)layer;
|
||||
projections[count].next = rest;
|
||||
layer = (const XrCompositionLayerBaseHeader *)&projections[count];
|
||||
} else {
|
||||
if (layer != (const XrCompositionLayerBaseHeader *)&quads[count])
|
||||
quads[count] = *(const XrCompositionLayerQuad *)layer;
|
||||
quads[count].next = rest;
|
||||
layer = (const XrCompositionLayerBaseHeader *)&quads[count];
|
||||
}
|
||||
static int logged;
|
||||
if (!logged++) LOG("strip_color_bias: removed the color scale/bias from a layer");
|
||||
++swapped;
|
||||
}
|
||||
}
|
||||
if (hide_space_warp && layer->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION &&
|
||||
((const XrCompositionLayerProjection *)layer)->viewCount == 2) {
|
||||
// The game may still attach XrCompositionLayerSpaceWarpInfoFB (1000171000) to its views: OVRPort's
|
||||
// dispatcher offers XR_FB_space_warp itself even when hidden here. Unlink it (keeping what follows when
|
||||
// it heads the chain, else the whole chain) so the runtime never uses the motion vectors.
|
||||
const XrCompositionLayerProjection *src = (const XrCompositionLayerProjection *)layer;
|
||||
int found = 0;
|
||||
for (uint32_t v = 0; v < 2; ++v)
|
||||
for (const XrBaseInStructure *n = (const XrBaseInStructure *)src->views[v].next; n; n = n->next)
|
||||
found |= n->type == 1000171000;
|
||||
if (found) {
|
||||
if (layer != (const XrCompositionLayerBaseHeader *)&projections[count]) projections[count] = *src;
|
||||
for (uint32_t v = 0; v < 2; ++v) {
|
||||
views[count][v] = src->views[v];
|
||||
const XrBaseInStructure *head = (const XrBaseInStructure *)src->views[v].next;
|
||||
if (head && head->type == 1000171000) views[count][v].next = head->next;
|
||||
else if (head) views[count][v].next = NULL;
|
||||
}
|
||||
projections[count].views = views[count];
|
||||
layer = (const XrCompositionLayerBaseHeader *)&projections[count];
|
||||
static int logged;
|
||||
if (!logged++) LOG("hide_space_warp: removed space warp info from the eye images");
|
||||
++swapped;
|
||||
}
|
||||
}
|
||||
if (swap_eyes && layer->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION &&
|
||||
((const XrCompositionLayerProjection *)layer)->viewCount == 2) {
|
||||
// Show each eye the image the game rendered for it: keep poses/FOVs, swap sub-images.
|
||||
@@ -1004,6 +1468,51 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEndFrame(XrSession session, const XrFrameEndInf
|
||||
layer = (const XrCompositionLayerBaseHeader *)&projections[count];
|
||||
++swapped;
|
||||
}
|
||||
if (rect_clamp) {
|
||||
// Keep every image rect inside its swapchain: Unity/OVRPlugin can size the eye area a few pixels past
|
||||
// the image on some Frames (PowerWash Simulator: rect 268+1656 on a 1920 wide swapchain) and SteamVR
|
||||
// then rejects every frame with XR_ERROR_SWAPCHAIN_RECT_INVALID (-25) (GitHub #39).
|
||||
uint32_t w, h;
|
||||
if (layer->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION &&
|
||||
((const XrCompositionLayerProjection *)layer)->viewCount <= 2) {
|
||||
const XrCompositionLayerProjection *cur = (const XrCompositionLayerProjection *)layer;
|
||||
int over = 0;
|
||||
for (uint32_t v = 0; v < cur->viewCount; ++v) {
|
||||
XrRect2Di r = cur->views[v].subImage.imageRect;
|
||||
if (swapchain_size(cur->views[v].subImage.swapchain, &w, &h) && clamp_rect(&r, w, h)) over = 1;
|
||||
}
|
||||
if (over) {
|
||||
if (layer != (const XrCompositionLayerBaseHeader *)&projections[count]) projections[count] = *cur;
|
||||
if (projections[count].views != views[count])
|
||||
for (uint32_t v = 0; v < cur->viewCount; ++v) views[count][v] = cur->views[v];
|
||||
for (uint32_t v = 0; v < cur->viewCount; ++v)
|
||||
if (swapchain_size(views[count][v].subImage.swapchain, &w, &h) &&
|
||||
clamp_rect(&views[count][v].subImage.imageRect, w, h)) {
|
||||
static int logged;
|
||||
if (logged++ < 3)
|
||||
LOG("rect_clamp: view %u image rect clamped to %dx%d at %d,%d (swapchain %ux%u)", v,
|
||||
views[count][v].subImage.imageRect.extent.width,
|
||||
views[count][v].subImage.imageRect.extent.height,
|
||||
views[count][v].subImage.imageRect.offset.x,
|
||||
views[count][v].subImage.imageRect.offset.y, w, h);
|
||||
}
|
||||
projections[count].views = views[count];
|
||||
layer = (const XrCompositionLayerBaseHeader *)&projections[count];
|
||||
++swapped;
|
||||
}
|
||||
} else if (layer->type == XR_TYPE_COMPOSITION_LAYER_QUAD) {
|
||||
const XrCompositionLayerQuad *q = (const XrCompositionLayerQuad *)layer;
|
||||
XrRect2Di r = q->subImage.imageRect;
|
||||
if (swapchain_size(q->subImage.swapchain, &w, &h) && clamp_rect(&r, w, h)) {
|
||||
if (layer != (const XrCompositionLayerBaseHeader *)&quads[count]) quads[count] = *q;
|
||||
quads[count].subImage.imageRect = r;
|
||||
layer = (const XrCompositionLayerBaseHeader *)&quads[count];
|
||||
++swapped;
|
||||
static int logged;
|
||||
if (!logged++) LOG("rect_clamp: quad image rect clamped (swapchain %ux%u)", w, h);
|
||||
}
|
||||
}
|
||||
}
|
||||
kept[count++] = layer;
|
||||
}
|
||||
XrFrameEndInfo fixed = *info;
|
||||
@@ -1079,6 +1588,19 @@ XRAPI_ATTR XrResult XRAPI_CALL xrGetCurrentInteractionProfile(XrSession session,
|
||||
(PFN_xrGetCurrentInteractionProfile)lookup(active_instance, "xrGetCurrentInteractionProfile");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
XrResult result = fn(session, user, state);
|
||||
if (input_diag && XR_SUCCEEDED(result) && state) input_diag_current_profile(user, state->interactionProfile);
|
||||
if (layer_debug && active_instance) { // which device each hand has, as the runtime reports it
|
||||
PFN_xrPathToString str = (PFN_xrPathToString)lookup(active_instance, "xrPathToString");
|
||||
char who[XR_MAX_PATH_LENGTH] = "?", what[XR_MAX_PATH_LENGTH] = "(none)";
|
||||
uint32_t n = 0;
|
||||
if (str) {
|
||||
str(active_instance, user, sizeof(who), &n, who);
|
||||
if (XR_SUCCEEDED(result) && state && state->interactionProfile)
|
||||
str(active_instance, state->interactionProfile, sizeof(what), &n, what);
|
||||
}
|
||||
static int logged;
|
||||
if (logged++ < 40) LOG("layer_debug: interaction profile of %s: %s (result %d)", who, what, result);
|
||||
}
|
||||
if (!controller_fix || XR_FAILED(result) || !state || !state->interactionProfile || !active_instance)
|
||||
return result;
|
||||
PFN_xrPathToString to_string = (PFN_xrPathToString)lookup(active_instance, "xrPathToString");
|
||||
@@ -1098,7 +1620,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEnumerateInstanceExtensionProperties(const char
|
||||
XR_NULL_HANDLE, "xrEnumerateInstanceExtensionProperties");
|
||||
if (!fn) return XR_ERROR_INITIALIZATION_FAILED;
|
||||
if (!count) return XR_ERROR_VALIDATION_FAILURE;
|
||||
if ((!foveation_fix && !passthrough_emul && !scene_emul && !controller_models) || layer)
|
||||
if ((!foveation_fix && !hide_space_warp && !passthrough_emul && !scene_emul && !controller_models) || layer)
|
||||
return fn(layer, capacity, count, properties);
|
||||
|
||||
uint32_t total = 0;
|
||||
@@ -1115,6 +1637,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrEnumerateInstanceExtensionProperties(const char
|
||||
if (!strcmp(all[i].extensionName, "XR_FB_passthrough")) runtime_has_fb_passthrough = 1;
|
||||
if (!strcmp(all[i].extensionName, XR_FB_RENDER_MODEL_EXTENSION_NAME)) runtime_has_render_model = 1;
|
||||
if (foveation_fix && strstr(all[i].extensionName, "foveation")) continue;
|
||||
if (hide_space_warp && !strcmp(all[i].extensionName, "XR_FB_space_warp")) continue;
|
||||
if (properties && kept < capacity) properties[kept] = all[i];
|
||||
++kept;
|
||||
}
|
||||
@@ -1182,6 +1705,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrGetInstanceProcAddr(XrInstance instance, const
|
||||
if (!emulated && emulate_scene && !strcmp(name, "xrLocateSpacesKHR")) emulated = (PFN_xrVoidFunction)emu_locate_spaces_khr;
|
||||
if (emulated) { *function = emulated; return XR_SUCCESS; }
|
||||
HOOK(xrGetSystemProperties)
|
||||
HOOK(xrApplyHapticFeedback)
|
||||
HOOK(xrCreateReferenceSpace)
|
||||
HOOK(xrLocateViews)
|
||||
HOOK(xrPollEvent)
|
||||
@@ -1197,6 +1721,7 @@ XRAPI_ATTR XrResult XRAPI_CALL xrGetInstanceProcAddr(XrInstance instance, const
|
||||
HOOK(xrCreateSwapchain)
|
||||
HOOK(xrDestroySwapchain)
|
||||
HOOK(xrEndFrame)
|
||||
HOOK(xrBeginFrame)
|
||||
HOOK(xrLocateHandJointsEXT)
|
||||
HOOK(xrGetCurrentInteractionProfile)
|
||||
HOOK(xrEnumerateInstanceExtensionProperties)
|
||||
@@ -1211,12 +1736,28 @@ XRAPI_ATTR XrResult XRAPI_CALL xrGetInstanceProcAddr(XrInstance instance, const
|
||||
if (layer_debug || refresh_rate > 0) {
|
||||
HOOK_AS(xrRequestDisplayRefreshRateFB, hook_request_refresh_rate)
|
||||
}
|
||||
if (layer_debug || aim_correction_on()) {
|
||||
if (surface_emul) HOOK_AS(xrCreateSwapchainAndroidSurfaceKHR, hook_xrCreateSwapchainAndroidSurfaceKHR)
|
||||
if (eye_debug || release_wait) HOOK_AS(xrReleaseSwapchainImage, eye_hook_xrReleaseSwapchainImage)
|
||||
if (layer_debug) { // counters only; every other wait/release hook above takes precedence
|
||||
HOOK(xrWaitSwapchainImage)
|
||||
HOOK(xrReleaseSwapchainImage)
|
||||
}
|
||||
if (sync_guard || layer_debug || input_diag) HOOK_AS(xrSyncActions, hook_xrSyncActions)
|
||||
if (layer_debug) HOOK_AS(xrGetActionStateBoolean, hook_xrGetActionStateBoolean)
|
||||
if (layer_debug || aim_correction_on() || profile_remap || input_diag)
|
||||
HOOK_AS(xrSuggestInteractionProfileBindings, hook_xrSuggestInteractionProfileBindings)
|
||||
if (layer_debug || aim_correction_on()) {
|
||||
HOOK_AS(xrCreateActionSpace, hook_xrCreateActionSpace)
|
||||
}
|
||||
#undef HOOK_AS
|
||||
#undef HOOK
|
||||
if (input_diag) { // logs only: wraps a few input/haptics/perf calls, notes lookups the runtime can't answer
|
||||
PFN_xrVoidFunction diag = input_diag_hook(name);
|
||||
XrResult result = next_gipa(instance, name, function);
|
||||
input_diag_lookup(instance, name, result, *function);
|
||||
if (diag && XR_SUCCEEDED(result) && *function) *function = diag;
|
||||
return result;
|
||||
}
|
||||
return next_gipa(instance, name, function);
|
||||
}
|
||||
|
||||
|
||||
@@ -0,0 +1,138 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// Included by frame_adapter.c (before session_fixes.c). input_diag: controller-input diagnostics, off by default and
|
||||
// hooked only when on; logs only, never changes what the game or the runtime sees. Each distinct line is logged once:
|
||||
// * every interaction profile the game suggests bindings for, with the runtime's answer; a rejected profile lists
|
||||
// all its binding paths ("unsupported: interaction profile ...");
|
||||
// * the profile the runtime reports for each hand (xrGetCurrentInteractionProfile, before controller_fix rewrites
|
||||
// the answer for the game): a game without a Steam Frame binding gets SteamVR's Touch remap, so this shows
|
||||
// whether the game's input runs through it;
|
||||
// * functions the game looks up that the runtime doesn't provide ("unsupported: function ...");
|
||||
// * failing input, haptics and performance calls with the result name and the argument that failed.
|
||||
|
||||
#define DIAG_MAX 512
|
||||
#define DIAG_KEY (2 * XR_MAX_PATH_LENGTH + 32)
|
||||
static uint64_t diag_seen[DIAG_MAX]; // FNV-1a hashes of the keys already logged
|
||||
static int diag_count;
|
||||
static pthread_mutex_t diag_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
|
||||
static int diag_first(const char *key) { // 1 the first time `key` is seen; 0 for everything after DIAG_MAX keys
|
||||
uint64_t hash = 14695981039346656037ull;
|
||||
for (const unsigned char *c = (const unsigned char *)key; *c; ++c) hash = (hash ^ *c) * 1099511628211ull;
|
||||
pthread_mutex_lock(&diag_lock);
|
||||
int first = 1;
|
||||
for (int i = 0; i < diag_count && first; ++i) first = diag_seen[i] != hash;
|
||||
if (first && diag_count < DIAG_MAX) diag_seen[diag_count++] = hash;
|
||||
else if (first) { // full: stop rather than repeat a per-frame failure
|
||||
static int full;
|
||||
if (!full) { full = 1; LOG("input_diag: %d distinct findings, logging no more", DIAG_MAX); }
|
||||
first = 0;
|
||||
}
|
||||
pthread_mutex_unlock(&diag_lock);
|
||||
return first;
|
||||
}
|
||||
|
||||
static const char *diag_result_name(XrResult result, char *buf, size_t size) {
|
||||
PFN_xrResultToString fn =
|
||||
active_instance ? (PFN_xrResultToString)lookup(active_instance, "xrResultToString") : NULL;
|
||||
char name[XR_MAX_RESULT_STRING_SIZE];
|
||||
if (fn && XR_SUCCEEDED(fn(active_instance, result, name))) snprintf(buf, size, "%s", name);
|
||||
else snprintf(buf, size, "%d", result);
|
||||
return buf;
|
||||
}
|
||||
|
||||
static void diag_call_failed(const char *fn, XrResult result, const char *detail) {
|
||||
char key[DIAG_KEY], name[XR_MAX_RESULT_STRING_SIZE];
|
||||
snprintf(key, sizeof(key), "%s:%d:%s", fn, result, detail ? detail : "");
|
||||
if (diag_first(key))
|
||||
LOG("input_diag: unsupported: %s -> %s%s%s", fn, diag_result_name(result, name, sizeof(name)),
|
||||
detail ? " " : "", detail ? detail : "");
|
||||
}
|
||||
|
||||
// Called by hook_xrSuggestInteractionProfileBindings with the runtime's answer to the game's own suggestion (before
|
||||
// profile_remap suggests it again for Touch).
|
||||
static void input_diag_suggested(XrInstance instance, const XrInteractionProfileSuggestedBinding *suggested,
|
||||
XrResult result, PFN_xrPathToString to_string) {
|
||||
if (!input_diag || !suggested || !to_string) return;
|
||||
char profile[XR_MAX_PATH_LENGTH] = "?", key[DIAG_KEY], name[XR_MAX_RESULT_STRING_SIZE];
|
||||
uint32_t size = 0;
|
||||
to_string(instance, suggested->interactionProfile, sizeof(profile), &size, profile);
|
||||
snprintf(key, sizeof(key), "suggest:%s:%d", profile, result);
|
||||
if (!diag_first(key)) return;
|
||||
if (XR_SUCCEEDED(result)) {
|
||||
LOG("input_diag: bindings: %s accepted (%u paths)", profile, suggested->countSuggestedBindings);
|
||||
return;
|
||||
}
|
||||
LOG("input_diag: unsupported: interaction profile %s -> %s (%u bindings):", profile,
|
||||
diag_result_name(result, name, sizeof(name)), suggested->countSuggestedBindings);
|
||||
for (uint32_t i = 0; i < suggested->countSuggestedBindings; ++i) {
|
||||
char path[XR_MAX_PATH_LENGTH];
|
||||
if (XR_SUCCEEDED(to_string(instance, suggested->suggestedBindings[i].binding, sizeof(path), &size, path)))
|
||||
LOG("input_diag: %s", path);
|
||||
}
|
||||
}
|
||||
|
||||
// Called by xrGetCurrentInteractionProfile with the runtime's answer.
|
||||
static void input_diag_current_profile(XrPath user, XrPath profile) {
|
||||
PFN_xrPathToString to_string =
|
||||
active_instance ? (PFN_xrPathToString)lookup(active_instance, "xrPathToString") : NULL;
|
||||
if (!input_diag || !to_string) return;
|
||||
char u[XR_MAX_PATH_LENGTH] = "?", p[XR_MAX_PATH_LENGTH] = "none", key[DIAG_KEY];
|
||||
uint32_t size = 0;
|
||||
to_string(active_instance, user, sizeof(u), &size, u);
|
||||
if (profile) to_string(active_instance, profile, sizeof(p), &size, p);
|
||||
snprintf(key, sizeof(key), "current:%s:%s", u, p);
|
||||
if (diag_first(key)) LOG("input_diag: bindings: %s uses %s", u, p);
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- failing calls
|
||||
// xrSyncActions and xrSuggestInteractionProfileBindings are reported from session_fixes.c's hooks,
|
||||
// xrApplyHapticFeedback from frame_adapter.c's (always hooked for haptic_scale).
|
||||
#define DIAG_CHECKED(name, params, args, detail) \
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL diag_##name params { \
|
||||
PFN_##name fn = (PFN_##name)lookup(active_instance, #name); \
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED; \
|
||||
XrResult result = fn args; \
|
||||
if (XR_FAILED(result)) diag_call_failed(#name, result, detail); \
|
||||
return result; \
|
||||
}
|
||||
static const char *diag_name_detail(const char *name) {
|
||||
static __thread char buf[XR_MAX_PATH_LENGTH + 8];
|
||||
snprintf(buf, sizeof(buf), "(%s)", name ? name : "null");
|
||||
return buf;
|
||||
}
|
||||
static const char *diag_perf_detail(XrPerfSettingsDomainEXT domain, XrPerfSettingsLevelEXT level) {
|
||||
static __thread char buf[64];
|
||||
snprintf(buf, sizeof(buf), "(domain %d level %d)", (int)domain, (int)level);
|
||||
return buf;
|
||||
}
|
||||
DIAG_CHECKED(xrStringToPath, (XrInstance instance, const char *path, XrPath *out), (instance, path, out),
|
||||
diag_name_detail(path))
|
||||
DIAG_CHECKED(xrCreateAction, (XrActionSet set, const XrActionCreateInfo *info, XrAction *action), (set, info, action),
|
||||
diag_name_detail(info ? info->actionName : NULL))
|
||||
DIAG_CHECKED(xrAttachSessionActionSets, (XrSession session, const XrSessionActionSetsAttachInfo *info),
|
||||
(session, info), NULL)
|
||||
DIAG_CHECKED(xrPerfSettingsSetPerformanceLevelEXT,
|
||||
(XrSession session, XrPerfSettingsDomainEXT domain, XrPerfSettingsLevelEXT level),
|
||||
(session, domain, level), diag_perf_detail(domain, level))
|
||||
#undef DIAG_CHECKED
|
||||
|
||||
// xrGetInstanceProcAddr: our wrapper for `name`, NULL if it isn't one of ours.
|
||||
static PFN_xrVoidFunction input_diag_hook(const char *name) {
|
||||
#define DIAG(fn) if (!strcmp(name, #fn)) return (PFN_xrVoidFunction)diag_##fn;
|
||||
DIAG(xrStringToPath)
|
||||
DIAG(xrCreateAction)
|
||||
DIAG(xrAttachSessionActionSets)
|
||||
DIAG(xrPerfSettingsSetPerformanceLevelEXT)
|
||||
#undef DIAG
|
||||
return NULL;
|
||||
}
|
||||
|
||||
// After the runtime's own lookup: a function the game asked for that the runtime doesn't provide.
|
||||
static void input_diag_lookup(XrInstance instance, const char *name, XrResult result, PFN_xrVoidFunction fn) {
|
||||
if (!input_diag || instance == XR_NULL_HANDLE || (XR_SUCCEEDED(result) && fn)) return;
|
||||
char key[DIAG_KEY], rname[XR_MAX_RESULT_STRING_SIZE];
|
||||
snprintf(key, sizeof(key), "fn:%s", name);
|
||||
if (diag_first(key))
|
||||
LOG("input_diag: unsupported: function %s not provided by the runtime (%s)", name,
|
||||
diag_result_name(result, rname, sizeof(rname)));
|
||||
}
|
||||
@@ -95,9 +95,57 @@ static void debug_reference_space(XrSession session, const XrReferenceSpaceCreat
|
||||
LOG("layer_debug: that LOCAL space can't be located yet (no tracking)");
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- sync_guard
|
||||
// The Frame's runtime crashed in xrSyncActions right after focus returned (SIGSEGV in vrclient.so
|
||||
// CVRInputLatest::UpdateActionStateInternal, Myst; a race inside the runtime, not every launch). sync_guard runs
|
||||
// xrSyncActions one at a time with xrPollEvent and skips it for a moment after FOCUSED arrives (XR_SESSION_NOT_FOCUSED
|
||||
// is a success code every app handles: no input for those few frames).
|
||||
#define SYNC_GUARD_PAUSE_NS 250000000ll
|
||||
static pthread_mutex_t sync_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
static int64_t sync_resume_at;
|
||||
|
||||
// layer_debug input counters, logged with the pacing line: were actions synced, did any button read as pressed?
|
||||
static int input_syncs, input_sync_ok, input_bool_reads, input_bool_true, input_last_sync_result;
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL hook_xrSyncActions(XrSession session, const XrActionsSyncInfo *info) {
|
||||
PFN_xrSyncActions fn = (PFN_xrSyncActions)lookup(active_instance, "xrSyncActions");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (!sync_guard) { // installed for layer_debug / input_diag only: count, report failures
|
||||
XrResult r = fn(session, info);
|
||||
__atomic_add_fetch(&input_syncs, 1, __ATOMIC_RELAXED);
|
||||
if (r == XR_SUCCESS) __atomic_add_fetch(&input_sync_ok, 1, __ATOMIC_RELAXED);
|
||||
input_last_sync_result = r;
|
||||
if (input_diag && XR_FAILED(r)) diag_call_failed("xrSyncActions", r, NULL);
|
||||
return r;
|
||||
}
|
||||
pthread_mutex_lock(&sync_lock);
|
||||
int64_t wait = sync_resume_at - monotonic_ns();
|
||||
XrResult r = wait > 0 ? XR_SESSION_NOT_FOCUSED : fn(session, info);
|
||||
pthread_mutex_unlock(&sync_lock);
|
||||
static int logged;
|
||||
if (wait > 0 && logged++ < 5) LOG("sync_guard: input paused for %.0f ms after focus returned", wait / 1e6);
|
||||
if (input_diag && XR_FAILED(r)) diag_call_failed("xrSyncActions", r, NULL);
|
||||
return r;
|
||||
}
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL hook_xrGetActionStateBoolean(XrSession session, const XrActionStateGetInfo *info,
|
||||
XrActionStateBoolean *state) {
|
||||
PFN_xrGetActionStateBoolean fn = (PFN_xrGetActionStateBoolean)lookup(active_instance, "xrGetActionStateBoolean");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
XrResult r = fn(session, info, state);
|
||||
__atomic_add_fetch(&input_bool_reads, 1, __ATOMIC_RELAXED);
|
||||
if (r == XR_SUCCESS && state && state->isActive && state->currentState)
|
||||
__atomic_add_fetch(&input_bool_true, 1, __ATOMIC_RELAXED);
|
||||
return r;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- focus_hold
|
||||
#define FOCUS_HOLD_MIN_FOCUSED_NS 3000000000ll // only after this long in FOCUSED (start-up transitions untouched)
|
||||
#define FOCUS_HOLD_MAX_DIP_NS 600000000ll // dips longer than this are delivered (late, in order)
|
||||
#define FOCUS_HOLD_MIN_FOCUSED_NS 1000000000ll // only after this long in FOCUSED (start-up transitions untouched;
|
||||
// 3 s let a 27 ms dip through in Blade & Sorcery)
|
||||
// dips longer than focus_hold_ms (setting, default 5000) are delivered (late, in order): taking the headset off or the
|
||||
// system menu must still pause the game. A longer limit is for headsets whose wear sensor flickers ("HMD off" for
|
||||
// 0.5-2 s while worn; Blade & Sorcery pauses on each)
|
||||
#define FOCUS_HOLD_MAX_DIP_NS ((int64_t)(focus_hold_ms * 1000000.0f))
|
||||
static struct {
|
||||
XrEventDataBuffer events[6];
|
||||
int count, holding, delivering;
|
||||
@@ -131,7 +179,7 @@ static XrResult focus_hold_poll(PFN_xrPollEvent fn, XrInstance instance, XrEvent
|
||||
if (result != XR_SUCCESS) {
|
||||
if (held.holding && now - held.since > FOCUS_HOLD_MAX_DIP_NS) {
|
||||
LOG("focus_hold: focus lost for > %lld ms, delivering %d state change(s)",
|
||||
FOCUS_HOLD_MAX_DIP_NS / 1000000, held.count);
|
||||
(long long)(FOCUS_HOLD_MAX_DIP_NS / 1000000), held.count);
|
||||
held.holding = 0; held.delivering = 1;
|
||||
continue;
|
||||
}
|
||||
@@ -195,20 +243,101 @@ static int pose_action_kind(XrAction action) { // 1 aim, 0 grip, -1 unknown
|
||||
return kind;
|
||||
}
|
||||
|
||||
// Meta's newer controller profiles, which the Frame's runtime doesn't know (it has oculus/touch_controller). An app
|
||||
// that suggests bindings only for these gets XR_ERROR_PATH_UNSUPPORTED and no input (e.g. a setup screen that can't be
|
||||
// passed); its bindings are suggested again for Touch, keeping the components Touch controllers have.
|
||||
static const char *const NEWER_TOUCH[] = {"/interaction_profiles/meta/touch_controller_plus",
|
||||
"/interaction_profiles/meta/touch_plus_controller",
|
||||
"/interaction_profiles/facebook/touch_controller_pro",
|
||||
"/interaction_profiles/meta/touch_pro_controller",
|
||||
"/interaction_profiles/meta/touch_controller_rift_cv1",
|
||||
"/interaction_profiles/meta/touch_controller_quest_1_rift_s",
|
||||
"/interaction_profiles/meta/touch_controller_quest_2"};
|
||||
static const char *const TOUCH_PROFILE = "/interaction_profiles/oculus/touch_controller";
|
||||
// oculus/touch_controller components (OpenXR spec), after /user/hand/<left|right>/
|
||||
static const char *const TOUCH_COMMON[] = {"input/squeeze/value", "input/trigger/value", "input/trigger/touch",
|
||||
"input/thumbstick", "input/thumbstick/x", "input/thumbstick/y", "input/thumbstick/click",
|
||||
"input/thumbstick/touch", "input/thumbrest/touch", "input/grip/pose", "input/aim/pose", "output/haptic"};
|
||||
static const char *const TOUCH_LEFT[] = {"input/x/click", "input/x/touch", "input/y/click", "input/y/touch",
|
||||
"input/menu/click"};
|
||||
static const char *const TOUCH_RIGHT[] = {"input/a/click", "input/a/touch", "input/b/click", "input/b/touch",
|
||||
"input/system/click"};
|
||||
static int app_suggested_touch;
|
||||
|
||||
static int in_list(const char *s, const char *const *list, size_t n) {
|
||||
for (size_t i = 0; i < n; ++i)
|
||||
if (!strcmp(s, list[i])) return 1;
|
||||
return 0;
|
||||
}
|
||||
#define IN(s, list) in_list(s, list, sizeof(list) / sizeof(*list))
|
||||
|
||||
// 1 if the binding path exists on oculus/touch_controller
|
||||
static int touch_has(const char *path) {
|
||||
const char *left = "/user/hand/left/", *right = "/user/hand/right/";
|
||||
if (!strncmp(path, left, strlen(left))) {
|
||||
path += strlen(left);
|
||||
return IN(path, TOUCH_COMMON) || IN(path, TOUCH_LEFT);
|
||||
}
|
||||
if (!strncmp(path, right, strlen(right))) {
|
||||
path += strlen(right);
|
||||
return IN(path, TOUCH_COMMON) || IN(path, TOUCH_RIGHT);
|
||||
}
|
||||
return 0;
|
||||
}
|
||||
|
||||
static XrResult remap_to_touch(XrInstance instance, PFN_xrSuggestInteractionProfileBindings fn,
|
||||
PFN_xrPathToString to_string, const XrInteractionProfileSuggestedBinding *suggested,
|
||||
const char *profile) {
|
||||
PFN_xrStringToPath to_path = (PFN_xrStringToPath)lookup(instance, "xrStringToPath");
|
||||
XrPath touch;
|
||||
if (!to_path || XR_FAILED(to_path(instance, TOUCH_PROFILE, &touch))) return XR_ERROR_PATH_UNSUPPORTED;
|
||||
uint32_t n = suggested->countSuggestedBindings, kept = 0;
|
||||
XrActionSuggestedBinding *b = calloc(n ? n : 1, sizeof(*b));
|
||||
if (!b) return XR_ERROR_OUT_OF_MEMORY;
|
||||
for (uint32_t i = 0; i < n; ++i) {
|
||||
char path[XR_MAX_PATH_LENGTH];
|
||||
uint32_t size = 0;
|
||||
if (XR_SUCCEEDED(to_string(instance, suggested->suggestedBindings[i].binding, sizeof(path), &size, path))
|
||||
&& touch_has(path))
|
||||
b[kept++] = suggested->suggestedBindings[i];
|
||||
}
|
||||
XrInteractionProfileSuggestedBinding copy = *suggested;
|
||||
copy.interactionProfile = touch;
|
||||
copy.countSuggestedBindings = kept;
|
||||
copy.suggestedBindings = b;
|
||||
XrResult r = kept ? fn(instance, ©) : XR_ERROR_PATH_UNSUPPORTED;
|
||||
free(b);
|
||||
LOG("controller profile %s -> oculus/touch_controller (%u bindings, %u dropped): %d", profile + 22, kept,
|
||||
n - kept, r);
|
||||
return r;
|
||||
}
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL hook_xrSuggestInteractionProfileBindings(XrInstance instance,
|
||||
const XrInteractionProfileSuggestedBinding *suggested) {
|
||||
PFN_xrSuggestInteractionProfileBindings fn =
|
||||
(PFN_xrSuggestInteractionProfileBindings)lookup(instance, "xrSuggestInteractionProfileBindings");
|
||||
if (!fn) return XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
PFN_xrPathToString to_string = (PFN_xrPathToString)lookup(instance, "xrPathToString");
|
||||
if (suggested && to_string)
|
||||
if (suggested && to_string && (layer_debug || aim_correction_on()))
|
||||
for (uint32_t i = 0; i < suggested->countSuggestedBindings; ++i) {
|
||||
char path[XR_MAX_PATH_LENGTH];
|
||||
uint32_t size = 0;
|
||||
if (XR_SUCCEEDED(to_string(instance, suggested->suggestedBindings[i].binding, sizeof(path), &size, path)))
|
||||
note_pose_binding(suggested->suggestedBindings[i].action, path);
|
||||
}
|
||||
return fn(instance, suggested);
|
||||
XrResult r = fn(instance, suggested);
|
||||
input_diag_suggested(instance, suggested, r, to_string); // the runtime's answer to the game's own suggestion
|
||||
if (!profile_remap || !suggested || !to_string) return r;
|
||||
char profile[XR_MAX_PATH_LENGTH] = {0};
|
||||
uint32_t size = 0;
|
||||
if (XR_FAILED(to_string(instance, suggested->interactionProfile, sizeof(profile), &size, profile))) return r;
|
||||
if (!strcmp(profile, TOUCH_PROFILE)) {
|
||||
if (XR_SUCCEEDED(r)) app_suggested_touch = 1; // the app's own Touch bindings win over a remap
|
||||
return r;
|
||||
}
|
||||
if (r != XR_ERROR_PATH_UNSUPPORTED || app_suggested_touch || !IN(profile, NEWER_TOUCH)) return r;
|
||||
XrResult remapped = remap_to_touch(instance, fn, to_string, suggested, profile);
|
||||
return XR_SUCCEEDED(remapped) ? XR_SUCCESS : r;
|
||||
}
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL hook_xrCreateActionSpace(XrSession session, const XrActionSpaceCreateInfo *info,
|
||||
|
||||
@@ -0,0 +1,173 @@
|
||||
// FramePort FrameBridge: eye-image snapshots for headless diagnostics (setting snapshot=<seconds>, GLES games only).
|
||||
// Every <seconds>, at xrEndFrame, the left-eye image the game just submitted (projection layer, view 0: its swapchain
|
||||
// image and array layer) is read back on the game's own GL context and written at a quarter of its size as
|
||||
// /sdcard/Android/data/<package>/files/fb_snap_<n>.ppm (n = 0-7, the oldest is overwritten). Nobody wears the headset
|
||||
// in a launch test, so the headset view stays black: this shows what the game itself draws (e.g. which screen it is
|
||||
// stuck on). The game's framebuffer, pack-buffer and pack-alignment bindings are restored afterwards.
|
||||
#define SNAP_MAX_SWAPCHAINS 16
|
||||
#define SNAP_MAX_IMAGES 8
|
||||
#define SNAP_SCALE 4
|
||||
|
||||
|
||||
#define SNAP_GL_FUNCS(X) X(glGenFramebuffers) X(glDeleteFramebuffers) X(glBindFramebuffer) X(glFramebufferTexture2D) \
|
||||
X(glFramebufferTextureLayer) X(glCheckFramebufferStatus) X(glReadPixels) X(glGetIntegerv) X(glPixelStorei) \
|
||||
X(glBindBuffer) X(glGetError)
|
||||
#define SNAP_DECLARE(fn) static __typeof__(&fn) s_##fn;
|
||||
SNAP_GL_FUNCS(SNAP_DECLARE)
|
||||
#undef SNAP_DECLARE
|
||||
static EGLContext (*s_eglGetCurrentContext)(void);
|
||||
|
||||
static struct {
|
||||
XrSwapchain handle;
|
||||
uint32_t width, height, array_size, count, last_acquired;
|
||||
GLuint images[SNAP_MAX_IMAGES];
|
||||
} snap_chains[SNAP_MAX_SWAPCHAINS];
|
||||
static pthread_mutex_t snap_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
|
||||
static int snap_load_gl(void) {
|
||||
static int state; // 0 untried, 1 ok, -1 failed
|
||||
if (state) return state > 0;
|
||||
void *egl = dlopen("libEGL.so", RTLD_NOW | RTLD_LOCAL), *gles = dlopen("libGLESv3.so", RTLD_NOW | RTLD_LOCAL);
|
||||
int ok = egl && gles;
|
||||
if (ok) s_eglGetCurrentContext = (EGLContext (*)(void))dlsym(egl, "eglGetCurrentContext");
|
||||
#define SNAP_RESOLVE(fn) ok &= gles && (s_##fn = (__typeof__(s_##fn))dlsym(gles, #fn)) != NULL;
|
||||
SNAP_GL_FUNCS(SNAP_RESOLVE)
|
||||
#undef SNAP_RESOLVE
|
||||
state = ok && s_eglGetCurrentContext ? 1 : -1;
|
||||
if (state < 0) LOG("snapshot: OpenGL ES not available, no snapshots");
|
||||
return state > 0;
|
||||
}
|
||||
|
||||
static int snap_find(XrSwapchain handle, int create) {
|
||||
for (int i = 0; i < SNAP_MAX_SWAPCHAINS; ++i)
|
||||
if (snap_chains[i].handle == handle) return i;
|
||||
if (!create) return -1;
|
||||
for (int i = 0; i < SNAP_MAX_SWAPCHAINS; ++i)
|
||||
if (!snap_chains[i].handle) { snap_chains[i].handle = handle; snap_chains[i].count = 0; return i; }
|
||||
return -1;
|
||||
}
|
||||
|
||||
static void snap_on_create(XrSwapchain handle, const XrSwapchainCreateInfo *info) {
|
||||
if (!snapshot || !info) return;
|
||||
pthread_mutex_lock(&snap_lock);
|
||||
int i = snap_find(handle, 1);
|
||||
if (i >= 0) {
|
||||
snap_chains[i].width = info->width;
|
||||
snap_chains[i].height = info->height;
|
||||
snap_chains[i].array_size = info->arraySize ? info->arraySize : 1;
|
||||
}
|
||||
pthread_mutex_unlock(&snap_lock);
|
||||
}
|
||||
|
||||
static void snap_on_destroy(XrSwapchain handle) {
|
||||
if (!snapshot) return;
|
||||
pthread_mutex_lock(&snap_lock);
|
||||
int i = snap_find(handle, 0);
|
||||
if (i >= 0) snap_chains[i].handle = XR_NULL_HANDLE;
|
||||
pthread_mutex_unlock(&snap_lock);
|
||||
}
|
||||
|
||||
static void snap_on_enumerate(XrSwapchain handle, uint32_t count, const XrSwapchainImageBaseHeader *images) {
|
||||
if (!snapshot || !images || !count || images->type != (XrStructureType)1000024002) return; // OPENGL_ES_KHR
|
||||
pthread_mutex_lock(&snap_lock);
|
||||
int i = snap_find(handle, 1);
|
||||
if (i >= 0) {
|
||||
uint32_t n = count < SNAP_MAX_IMAGES ? count : SNAP_MAX_IMAGES;
|
||||
const emul_gles_image *gl = (const emul_gles_image *)images;
|
||||
for (uint32_t k = 0; k < n; ++k) snap_chains[i].images[k] = gl[k].image;
|
||||
snap_chains[i].count = n;
|
||||
}
|
||||
pthread_mutex_unlock(&snap_lock);
|
||||
}
|
||||
|
||||
static void snap_on_acquire(XrSwapchain handle, uint32_t index) {
|
||||
if (!snapshot) return;
|
||||
pthread_mutex_lock(&snap_lock);
|
||||
int i = snap_find(handle, 0);
|
||||
if (i >= 0) snap_chains[i].last_acquired = index;
|
||||
pthread_mutex_unlock(&snap_lock);
|
||||
}
|
||||
|
||||
static void snap_write(const unsigned char *rgba, uint32_t w, uint32_t h, int n) {
|
||||
char path[320];
|
||||
snprintf(path, sizeof(path), "%s/fb_snap_%d.ppm", snap_dir, n);
|
||||
FILE *f = fopen(path, "wb");
|
||||
if (!f) { LOG("snapshot: can't write %s", path); return; }
|
||||
uint32_t ow = w / SNAP_SCALE, oh = h / SNAP_SCALE;
|
||||
fprintf(f, "P6\n%u %u\n255\n", ow, oh);
|
||||
unsigned char *row = malloc((size_t)ow * 3);
|
||||
for (uint32_t y = 0; row && y < oh; ++y) {
|
||||
const unsigned char *src = rgba + (size_t)(h - 1 - y * SNAP_SCALE) * w * 4; // GL rows are bottom-up
|
||||
for (uint32_t x = 0; x < ow; ++x) {
|
||||
const unsigned char *p = src + (size_t)x * SNAP_SCALE * 4;
|
||||
row[x * 3] = p[0], row[x * 3 + 1] = p[1], row[x * 3 + 2] = p[2];
|
||||
}
|
||||
fwrite(row, 1, (size_t)ow * 3, f);
|
||||
}
|
||||
free(row);
|
||||
fclose(f);
|
||||
LOG("snapshot: %s (%ux%u)", path, ow, oh);
|
||||
}
|
||||
|
||||
static void snap_end_frame(const XrFrameEndInfo *info) {
|
||||
if (!snapshot || !*snap_dir || !info) return;
|
||||
static int64_t next_ns;
|
||||
static int taken;
|
||||
struct timespec now;
|
||||
clock_gettime(CLOCK_MONOTONIC, &now);
|
||||
int64_t t = (int64_t)now.tv_sec * 1000000000ll + now.tv_nsec;
|
||||
if (t < next_ns) return;
|
||||
next_ns = t + (int64_t)snapshot * 1000000000ll;
|
||||
const XrCompositionLayerProjection *proj = NULL;
|
||||
for (uint32_t i = 0; i < info->layerCount && !proj; ++i)
|
||||
if (info->layers[i] && info->layers[i]->type == XR_TYPE_COMPOSITION_LAYER_PROJECTION &&
|
||||
((const XrCompositionLayerProjection *)info->layers[i])->viewCount)
|
||||
proj = (const XrCompositionLayerProjection *)info->layers[i];
|
||||
if (!proj || !snap_load_gl()) return;
|
||||
if (!s_eglGetCurrentContext()) {
|
||||
static int logged;
|
||||
if (!logged++) LOG("snapshot: no GL context current in xrEndFrame, no snapshot");
|
||||
return;
|
||||
}
|
||||
const XrSwapchainSubImage *sub = &proj->views[0].subImage;
|
||||
pthread_mutex_lock(&snap_lock);
|
||||
int i = snap_find(sub->swapchain, 0);
|
||||
GLuint tex = 0;
|
||||
uint32_t w = 0, h = 0, array_size = 1;
|
||||
if (i >= 0 && snap_chains[i].count && snap_chains[i].last_acquired < snap_chains[i].count) {
|
||||
tex = snap_chains[i].images[snap_chains[i].last_acquired];
|
||||
w = snap_chains[i].width, h = snap_chains[i].height, array_size = snap_chains[i].array_size;
|
||||
}
|
||||
pthread_mutex_unlock(&snap_lock);
|
||||
if (!tex || !w || !h) return;
|
||||
GLint read_fb = 0, pack_buffer = 0, pack_alignment = 4;
|
||||
s_glGetIntegerv(GL_READ_FRAMEBUFFER_BINDING, &read_fb);
|
||||
s_glGetIntegerv(GL_PIXEL_PACK_BUFFER_BINDING, &pack_buffer);
|
||||
s_glGetIntegerv(GL_PACK_ALIGNMENT, &pack_alignment);
|
||||
GLuint fb = 0;
|
||||
s_glGenFramebuffers(1, &fb);
|
||||
s_glBindFramebuffer(GL_READ_FRAMEBUFFER, fb);
|
||||
if (array_size > 1)
|
||||
s_glFramebufferTextureLayer(GL_READ_FRAMEBUFFER, GL_COLOR_ATTACHMENT0, tex, 0, (GLint)sub->imageArrayIndex);
|
||||
else
|
||||
s_glFramebufferTexture2D(GL_READ_FRAMEBUFFER, GL_COLOR_ATTACHMENT0, GL_TEXTURE_2D, tex, 0);
|
||||
unsigned char *rgba = NULL;
|
||||
if (s_glCheckFramebufferStatus(GL_READ_FRAMEBUFFER) == GL_FRAMEBUFFER_COMPLETE &&
|
||||
(rgba = malloc((size_t)w * h * 4))) {
|
||||
s_glBindBuffer(GL_PIXEL_PACK_BUFFER, 0);
|
||||
s_glPixelStorei(GL_PACK_ALIGNMENT, 1);
|
||||
s_glReadPixels(0, 0, (GLsizei)w, (GLsizei)h, GL_RGBA, GL_UNSIGNED_BYTE, rgba);
|
||||
} else {
|
||||
static int logged;
|
||||
if (logged++ < 3) LOG("snapshot: eye image %u not readable (framebuffer incomplete)", tex);
|
||||
}
|
||||
s_glPixelStorei(GL_PACK_ALIGNMENT, pack_alignment);
|
||||
s_glBindBuffer(GL_PIXEL_PACK_BUFFER, (GLuint)pack_buffer);
|
||||
s_glBindFramebuffer(GL_READ_FRAMEBUFFER, (GLuint)read_fb);
|
||||
s_glDeleteFramebuffers(1, &fb);
|
||||
while (s_glGetError() != GL_NO_ERROR) {} // our calls must not leave errors for the game to find
|
||||
if (rgba) {
|
||||
snap_write(rgba, w, h, taken++ % 8);
|
||||
free(rgba);
|
||||
}
|
||||
}
|
||||
@@ -0,0 +1,510 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// Included by frame_adapter.c (after flip_vk.c and layer_emul_gl.c). Emulates XR_KHR_android_surface_swapchain,
|
||||
// which the Frame's runtime lists but answers with XR_ERROR_FUNCTION_UNSUPPORTED. Games use it to play a video on a
|
||||
// panel (OVROverlay "external surface", Android MediaPlayer/ExoPlayer drawing into a Surface): without it the panel has
|
||||
// no image and is dropped, and a game that waits for its intro video shows black forever (I Am Monkey).
|
||||
//
|
||||
// * xrCreateSwapchainAndroidSurfaceKHR: the runtime first; if it can't, an ordinary runtime swapchain of the same size
|
||||
// (sRGB RGBA8) is created and returned as the game's swapchain, and the game gets a real android.view.Surface from a
|
||||
// SurfaceTexture owned by a worker thread (own EGL context; JNI through the JavaVM of xrCreateInstance).
|
||||
// * The worker latches each new video frame (any size, YUV: SurfaceTexture samples it), draws it into an RGBA8
|
||||
// texture of the swapchain's size and reads it back (glReadPixels) into a shared buffer.
|
||||
// * xrEndFrame: a layer showing an emulated swapchain gets the newest frame uploaded first (Vulkan: staging buffer +
|
||||
// copy on the session's queue; GLES: glTexSubImage2D in the app's context), then is submitted as usual.
|
||||
// * Any failure: the call returns the runtime's own result (as before), so nothing gets worse.
|
||||
#include <jni.h>
|
||||
|
||||
#define SURF_MAX 8
|
||||
|
||||
typedef void *(*PFN_ASurfaceTexture_fromSurfaceTexture)(JNIEnv *, jobject);
|
||||
typedef int (*PFN_ASurfaceTexture_updateTexImage)(void *);
|
||||
typedef void (*PFN_ASurfaceTexture_getTransformMatrix)(void *, float[16]);
|
||||
typedef int64_t (*PFN_ASurfaceTexture_getTimestamp)(void *);
|
||||
typedef void (*PFN_ASurfaceTexture_release)(void *);
|
||||
|
||||
#define surf_vm ((JavaVM *)android_vm) // from XrInstanceCreateInfoAndroidKHR (frame_adapter.c)
|
||||
|
||||
typedef struct {
|
||||
int used;
|
||||
XrSwapchain handle;
|
||||
uint32_t width, height;
|
||||
// worker
|
||||
pthread_t thread;
|
||||
int stop, ready, failed; // ready: surface handed out; failed: worker gave up
|
||||
jobject surface; // global ref, returned to the game
|
||||
// newest frame (RGBA8, top row first), written by the worker
|
||||
uint8_t *pixels;
|
||||
uint64_t seq; // bumps with every new frame
|
||||
int64_t frames;
|
||||
// upload side (app render thread)
|
||||
uint64_t uploaded_seq;
|
||||
int uploads, upload_failures, has_content;
|
||||
VkImage vk_images[MAX_IMAGES];
|
||||
uint32_t gl_images[MAX_IMAGES];
|
||||
uint32_t image_count;
|
||||
VkBuffer staging;
|
||||
VkDeviceMemory staging_memory;
|
||||
void *staging_map;
|
||||
VkCommandPool pool; // own command buffer + fence: uploads never wait for the GPU in xrEndFrame
|
||||
VkCommandBuffer cmd;
|
||||
VkFence fence;
|
||||
int in_flight; // a copy was submitted and its fence not yet seen signalled
|
||||
} surf_swapchain;
|
||||
|
||||
static pthread_mutex_t surf_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
static pthread_cond_t surf_cond = PTHREAD_COND_INITIALIZER;
|
||||
static surf_swapchain surfs[SURF_MAX];
|
||||
static int surf_vulkan; // the session is Vulkan (else GLES)
|
||||
|
||||
static surf_swapchain *surf_find(XrSwapchain handle) {
|
||||
for (int i = 0; i < SURF_MAX; ++i)
|
||||
if (surfs[i].used && surfs[i].handle == handle) return &surfs[i];
|
||||
return NULL;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- worker: SurfaceTexture -> RGBA pixels
|
||||
static const char *surf_vs = "#version 300 es\nout vec2 uv;\nvoid main() {\n"
|
||||
" vec2 p = vec2(float((gl_VertexID << 1) & 2), float(gl_VertexID & 2));\n"
|
||||
" uv = p; gl_Position = vec4(p * 2.0 - 1.0, 0.0, 1.0);\n}\n";
|
||||
// window row 0 (glReadPixels' first row) must hold the image's top: sample t = 1 - y (SurfaceTexture t=0 is the bottom)
|
||||
static const char *surf_fs = "#version 300 es\n#extension GL_OES_EGL_image_external_essl3 : require\n"
|
||||
"precision mediump float;\nuniform samplerExternalOES tex;\nuniform mat4 st;\nin vec2 uv;\nout vec4 color;\n"
|
||||
"void main() { color = texture(tex, (st * vec4(uv.x, 1.0 - uv.y, 0.0, 1.0)).xy); }\n";
|
||||
|
||||
typedef void (*PFN_glReadPixels_)(GLint, GLint, GLsizei, GLsizei, GLenum, GLenum, void *);
|
||||
typedef void (*PFN_glTexParameteri_)(GLenum, GLenum, GLint);
|
||||
typedef void (*PFN_glUniformMatrix4fv_)(GLint, GLsizei, GLboolean, const GLfloat *);
|
||||
typedef void (*PFN_glPixelStorei_)(GLenum, GLint);
|
||||
typedef void (*PFN_glTexSubImage2D_)(GLenum, GLint, GLint, GLint, GLsizei, GLsizei, GLenum, GLenum, const void *);
|
||||
typedef EGLDisplay (*PFN_eglGetDisplay_)(EGLNativeDisplayType);
|
||||
typedef EGLBoolean (*PFN_eglInitialize_)(EGLDisplay, EGLint *, EGLint *);
|
||||
static PFN_glReadPixels_ s_glReadPixels;
|
||||
static PFN_glTexParameteri_ s_glTexParameteri;
|
||||
static PFN_glUniformMatrix4fv_ s_glUniformMatrix4fv;
|
||||
static PFN_glPixelStorei_ s_glPixelStorei;
|
||||
static PFN_glTexSubImage2D_ s_glTexSubImage2D;
|
||||
static PFN_eglGetDisplay_ s_eglGetDisplay;
|
||||
static PFN_eglInitialize_ s_eglInitialize;
|
||||
static PFN_ASurfaceTexture_fromSurfaceTexture s_ast_from;
|
||||
static PFN_ASurfaceTexture_updateTexImage s_ast_update;
|
||||
static PFN_ASurfaceTexture_getTransformMatrix s_ast_matrix;
|
||||
static PFN_ASurfaceTexture_getTimestamp s_ast_timestamp;
|
||||
static PFN_ASurfaceTexture_release s_ast_release;
|
||||
|
||||
static int surf_load(void) {
|
||||
static int state; // 0 untried, 1 ok, -1 failed
|
||||
if (state) return state > 0;
|
||||
state = -1;
|
||||
if (!emul_load_gl()) { LOG("surface_emul: EGL/GLES not available"); return 0; }
|
||||
void *egl = dlopen("libEGL.so", RTLD_NOW | RTLD_LOCAL), *gles = dlopen("libGLESv3.so", RTLD_NOW | RTLD_LOCAL);
|
||||
void *android = dlopen("libandroid.so", RTLD_NOW | RTLD_LOCAL);
|
||||
if (!egl || !gles || !android) { LOG("surface_emul: libEGL/libGLESv3/libandroid missing"); return 0; }
|
||||
s_glReadPixels = (PFN_glReadPixels_)dlsym(gles, "glReadPixels");
|
||||
s_glTexParameteri = (PFN_glTexParameteri_)dlsym(gles, "glTexParameteri");
|
||||
s_glUniformMatrix4fv = (PFN_glUniformMatrix4fv_)dlsym(gles, "glUniformMatrix4fv");
|
||||
s_glPixelStorei = (PFN_glPixelStorei_)dlsym(gles, "glPixelStorei");
|
||||
s_glTexSubImage2D = (PFN_glTexSubImage2D_)dlsym(gles, "glTexSubImage2D");
|
||||
s_eglGetDisplay = (PFN_eglGetDisplay_)dlsym(egl, "eglGetDisplay");
|
||||
s_eglInitialize = (PFN_eglInitialize_)dlsym(egl, "eglInitialize");
|
||||
s_ast_from = (PFN_ASurfaceTexture_fromSurfaceTexture)dlsym(android, "ASurfaceTexture_fromSurfaceTexture");
|
||||
s_ast_update = (PFN_ASurfaceTexture_updateTexImage)dlsym(android, "ASurfaceTexture_updateTexImage");
|
||||
s_ast_matrix = (PFN_ASurfaceTexture_getTransformMatrix)dlsym(android, "ASurfaceTexture_getTransformMatrix");
|
||||
s_ast_timestamp = (PFN_ASurfaceTexture_getTimestamp)dlsym(android, "ASurfaceTexture_getTimestamp");
|
||||
s_ast_release = (PFN_ASurfaceTexture_release)dlsym(android, "ASurfaceTexture_release");
|
||||
if (!s_glReadPixels || !s_glTexParameteri || !s_glUniformMatrix4fv || !s_glPixelStorei || !s_glTexSubImage2D ||
|
||||
!s_eglGetDisplay || !s_eglInitialize || !s_ast_from || !s_ast_update || !s_ast_matrix || !s_ast_timestamp ||
|
||||
!s_ast_release) {
|
||||
LOG("surface_emul: a GL/EGL/ASurfaceTexture function is missing");
|
||||
return 0;
|
||||
}
|
||||
state = 1;
|
||||
return 1;
|
||||
}
|
||||
|
||||
static void surf_fail(surf_swapchain *s, const char *why) {
|
||||
LOG("surface_emul: %s", why);
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
s->failed = 1;
|
||||
pthread_cond_broadcast(&surf_cond);
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
}
|
||||
|
||||
static void *surf_worker(void *arg) {
|
||||
surf_swapchain *s = arg;
|
||||
JNIEnv *env = NULL;
|
||||
if ((*surf_vm)->AttachCurrentThread(surf_vm, &env, NULL) != JNI_OK || !env) { surf_fail(s, "no JNI env"); return NULL; }
|
||||
EGLDisplay dpy = s_eglGetDisplay(EGL_DEFAULT_DISPLAY);
|
||||
EGLint cfg_attribs[] = {EGL_RENDERABLE_TYPE, 0x40 /* EGL_OPENGL_ES3_BIT */, EGL_SURFACE_TYPE, EGL_PBUFFER_BIT,
|
||||
EGL_RED_SIZE, 8, EGL_GREEN_SIZE, 8, EGL_BLUE_SIZE, 8, EGL_ALPHA_SIZE, 8, EGL_NONE};
|
||||
EGLConfig config = NULL;
|
||||
EGLint n = 0, ctx_attribs[] = {EGL_CONTEXT_CLIENT_VERSION, 3, EGL_NONE}, pb[] = {EGL_WIDTH, 16, EGL_HEIGHT, 16, EGL_NONE};
|
||||
EGLContext ctx = EGL_NO_CONTEXT;
|
||||
EGLSurface pbuf = EGL_NO_SURFACE;
|
||||
void *ast = NULL;
|
||||
jobject st_local = NULL, st_global = NULL;
|
||||
GLuint ext_tex = 0, rgba_tex = 0, fbo = 0, vao = 0, program = 0;
|
||||
if (dpy == EGL_NO_DISPLAY || !s_eglInitialize(dpy, NULL, NULL) || !p_eglChooseConfig(dpy, cfg_attribs, &config, 1, &n) ||
|
||||
n < 1 || (ctx = p_eglCreateContext(dpy, config, EGL_NO_CONTEXT, ctx_attribs)) == EGL_NO_CONTEXT ||
|
||||
(pbuf = p_eglCreatePbufferSurface(dpy, config, pb)) == EGL_NO_SURFACE || !p_eglMakeCurrent(dpy, pbuf, pbuf, ctx)) {
|
||||
surf_fail(s, "EGL context failed");
|
||||
goto out;
|
||||
}
|
||||
// the SurfaceTexture's external texture, and the RGBA target the frames are drawn into
|
||||
p_glGenTextures(1, &ext_tex);
|
||||
p_glBindTexture(0x8D65 /* GL_TEXTURE_EXTERNAL_OES */, ext_tex);
|
||||
s_glTexParameteri(0x8D65, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
|
||||
s_glTexParameteri(0x8D65, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
|
||||
p_glGenTextures(1, &rgba_tex);
|
||||
p_glBindTexture(GL_TEXTURE_2D, rgba_tex);
|
||||
p_glTexStorage2D(GL_TEXTURE_2D, 1, GL_RGBA8, (GLsizei)s->width, (GLsizei)s->height);
|
||||
p_glGenFramebuffers(1, &fbo);
|
||||
p_glBindFramebuffer(GL_FRAMEBUFFER, fbo);
|
||||
p_glFramebufferTexture2D(GL_FRAMEBUFFER, GL_COLOR_ATTACHMENT0, GL_TEXTURE_2D, rgba_tex, 0);
|
||||
if (p_glCheckFramebufferStatus(GL_FRAMEBUFFER) != GL_FRAMEBUFFER_COMPLETE) { surf_fail(s, "framebuffer incomplete"); goto out; }
|
||||
{
|
||||
GLuint v = emul_compile(GL_VERTEX_SHADER, "", surf_vs), f = emul_compile(GL_FRAGMENT_SHADER, "", surf_fs);
|
||||
if (!v || !f) { surf_fail(s, "shader compile failed"); goto out; }
|
||||
program = p_glCreateProgram();
|
||||
p_glAttachShader(program, v);
|
||||
p_glAttachShader(program, f);
|
||||
p_glLinkProgram(program);
|
||||
GLint ok = 0;
|
||||
p_glGetProgramiv(program, GL_LINK_STATUS, &ok);
|
||||
if (!ok) { surf_fail(s, "program link failed"); goto out; }
|
||||
}
|
||||
p_glGenVertexArrays(1, &vao);
|
||||
// android.graphics.SurfaceTexture(texName) + android.view.Surface(SurfaceTexture)
|
||||
{
|
||||
jclass st_class = (*env)->FindClass(env, "android/graphics/SurfaceTexture");
|
||||
jclass surface_class = (*env)->FindClass(env, "android/view/Surface");
|
||||
if (!st_class || !surface_class) { (*env)->ExceptionClear(env); surf_fail(s, "SurfaceTexture/Surface class missing"); goto out; }
|
||||
jmethodID st_init = (*env)->GetMethodID(env, st_class, "<init>", "(I)V");
|
||||
jmethodID st_size = (*env)->GetMethodID(env, st_class, "setDefaultBufferSize", "(II)V");
|
||||
jmethodID surface_init = (*env)->GetMethodID(env, surface_class, "<init>", "(Landroid/graphics/SurfaceTexture;)V");
|
||||
st_local = (*env)->NewObject(env, st_class, st_init, (jint)ext_tex);
|
||||
if (!st_local || (*env)->ExceptionCheck(env)) { (*env)->ExceptionClear(env); surf_fail(s, "new SurfaceTexture failed"); goto out; }
|
||||
(*env)->CallVoidMethod(env, st_local, st_size, (jint)s->width, (jint)s->height);
|
||||
jobject surface_local = (*env)->NewObject(env, surface_class, surface_init, st_local);
|
||||
if (!surface_local || (*env)->ExceptionCheck(env)) { (*env)->ExceptionClear(env); surf_fail(s, "new Surface failed"); goto out; }
|
||||
st_global = (*env)->NewGlobalRef(env, st_local);
|
||||
ast = s_ast_from(env, st_local);
|
||||
if (!ast) { surf_fail(s, "ASurfaceTexture_fromSurfaceTexture failed"); goto out; }
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
s->surface = (*env)->NewGlobalRef(env, surface_local);
|
||||
s->ready = 1;
|
||||
pthread_cond_broadcast(&surf_cond);
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
(*env)->DeleteLocalRef(env, surface_local);
|
||||
}
|
||||
LOG("surface_emul: Surface ready for %ux%u swapchain %p", s->width, s->height, (void *)(uintptr_t)s->handle);
|
||||
{
|
||||
GLint u_tex = p_glGetUniformLocation(program, "tex"), u_st = p_glGetUniformLocation(program, "st");
|
||||
size_t bytes = (size_t)s->width * s->height * 4;
|
||||
uint8_t *buf = malloc(bytes);
|
||||
int64_t last_ts = -1, window_frames = 0, window_start = 0;
|
||||
while (!s->stop && buf) {
|
||||
struct timespec pause = {0, 8000000}; // ~120 checks a second: well above video frame rates
|
||||
nanosleep(&pause, NULL);
|
||||
if (s_ast_update(ast) != 0) continue;
|
||||
int64_t ts = s_ast_timestamp(ast);
|
||||
if (ts == last_ts) continue; // no new frame latched
|
||||
last_ts = ts;
|
||||
float m[16];
|
||||
s_ast_matrix(ast, m);
|
||||
p_glBindFramebuffer(GL_FRAMEBUFFER, fbo);
|
||||
p_glViewport(0, 0, (GLsizei)s->width, (GLsizei)s->height);
|
||||
p_glUseProgram(program);
|
||||
p_glActiveTexture(GL_TEXTURE0);
|
||||
p_glBindTexture(0x8D65, ext_tex);
|
||||
p_glUniform1i(u_tex, 0);
|
||||
s_glUniformMatrix4fv(u_st, 1, GL_FALSE, m);
|
||||
p_glBindVertexArray(vao);
|
||||
p_glDrawArrays(GL_TRIANGLES, 0, 3);
|
||||
s_glPixelStorei(GL_PACK_ALIGNMENT, 1);
|
||||
s_glReadPixels(0, 0, (GLsizei)s->width, (GLsizei)s->height, GL_RGBA, GL_UNSIGNED_BYTE, buf);
|
||||
GLenum err = p_glGetError();
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
if (!err && s->pixels) { memcpy(s->pixels, buf, bytes); s->seq++; s->frames++; }
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
if (err) { static int warned; if (warned++ < 5) LOG("surface_emul: GL error 0x%x drawing a frame", err); }
|
||||
int64_t now = monotonic_ns();
|
||||
if (!window_start) {
|
||||
window_start = now;
|
||||
LOG("surface_emul: first video frame (timestamp %lld)", (long long)ts);
|
||||
}
|
||||
if (++window_frames && now - window_start > 5000000000ll) {
|
||||
LOG("surface_emul: %.1f video frames/s, %d uploaded, %d upload failures", window_frames * 1e9 / (now - window_start),
|
||||
s->uploads, s->upload_failures);
|
||||
window_frames = 0;
|
||||
window_start = now;
|
||||
}
|
||||
}
|
||||
free(buf);
|
||||
}
|
||||
out:
|
||||
if (ast) s_ast_release(ast);
|
||||
if (st_global) (*env)->DeleteGlobalRef(env, st_global);
|
||||
if (ctx != EGL_NO_CONTEXT) { p_eglMakeCurrent(dpy, EGL_NO_SURFACE, EGL_NO_SURFACE, EGL_NO_CONTEXT); p_eglDestroyContext(dpy, ctx); }
|
||||
if (pbuf != EGL_NO_SURFACE) p_eglDestroySurface(dpy, pbuf);
|
||||
(*surf_vm)->DetachCurrentThread(surf_vm);
|
||||
return NULL;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- uploads (app render thread)
|
||||
static struct {
|
||||
PFN_vkCreateBuffer CreateBuffer;
|
||||
PFN_vkGetBufferMemoryRequirements GetBufferMemoryRequirements;
|
||||
PFN_vkAllocateMemory AllocateMemory;
|
||||
PFN_vkBindBufferMemory BindBufferMemory;
|
||||
PFN_vkMapMemory MapMemory;
|
||||
PFN_vkCmdCopyBufferToImage CmdCopyBufferToImage;
|
||||
PFN_vkCmdClearColorImage CmdClearColorImage;
|
||||
PFN_vkGetPhysicalDeviceMemoryProperties GetPhysicalDeviceMemoryProperties;
|
||||
PFN_vkGetFenceStatus GetFenceStatus;
|
||||
int state;
|
||||
} svk;
|
||||
|
||||
static int surf_vk_ready(void) {
|
||||
if (svk.state) return svk.state > 0;
|
||||
svk.state = -1;
|
||||
if (!vk_ready()) return 0;
|
||||
#define SDEV(name) svk.name = (PFN_vk##name)vk.GetDeviceProcAddr(vk.device, "vk" #name); if (!svk.name) return 0;
|
||||
SDEV(CreateBuffer) SDEV(GetBufferMemoryRequirements) SDEV(AllocateMemory) SDEV(BindBufferMemory) SDEV(MapMemory)
|
||||
SDEV(CmdCopyBufferToImage) SDEV(CmdClearColorImage) SDEV(GetFenceStatus)
|
||||
#undef SDEV
|
||||
void *lib = dlopen("libvulkan.so", RTLD_NOW | RTLD_LOCAL);
|
||||
PFN_vkGetInstanceProcAddr gipa = lib ? (PFN_vkGetInstanceProcAddr)dlsym(lib, "vkGetInstanceProcAddr") : NULL;
|
||||
svk.GetPhysicalDeviceMemoryProperties = gipa ? (PFN_vkGetPhysicalDeviceMemoryProperties)gipa(vk.instance,
|
||||
"vkGetPhysicalDeviceMemoryProperties") : NULL;
|
||||
if (!svk.GetPhysicalDeviceMemoryProperties) return 0;
|
||||
svk.state = 1;
|
||||
return 1;
|
||||
}
|
||||
|
||||
static void surf_barrier(VkCommandBuffer cmd, VkImage image, VkImageLayout from, VkImageLayout to,
|
||||
VkAccessFlags src_access, VkAccessFlags dst_access) {
|
||||
VkImageMemoryBarrier b = {VK_STRUCTURE_TYPE_IMAGE_MEMORY_BARRIER, NULL, src_access, dst_access, from, to,
|
||||
VK_QUEUE_FAMILY_IGNORED, VK_QUEUE_FAMILY_IGNORED, image,
|
||||
{VK_IMAGE_ASPECT_COLOR_BIT, 0, 1, 0, 1}};
|
||||
vk.CmdPipelineBarrier(cmd, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, VK_PIPELINE_STAGE_ALL_COMMANDS_BIT, 0, 0, NULL, 0,
|
||||
NULL, 1, &b);
|
||||
}
|
||||
|
||||
static int surf_staging(surf_swapchain *s) {
|
||||
if (s->staging_map) return 1;
|
||||
VkCommandPoolCreateInfo pool = {VK_STRUCTURE_TYPE_COMMAND_POOL_CREATE_INFO, NULL,
|
||||
VK_COMMAND_POOL_CREATE_RESET_COMMAND_BUFFER_BIT, vk.family};
|
||||
if (vk.CreateCommandPool(vk.device, &pool, NULL, &s->pool) != VK_SUCCESS) return 0;
|
||||
VkCommandBufferAllocateInfo alloc = {VK_STRUCTURE_TYPE_COMMAND_BUFFER_ALLOCATE_INFO, NULL, s->pool,
|
||||
VK_COMMAND_BUFFER_LEVEL_PRIMARY, 1};
|
||||
if (vk.AllocateCommandBuffers(vk.device, &alloc, &s->cmd) != VK_SUCCESS) return 0;
|
||||
VkFenceCreateInfo fence = {VK_STRUCTURE_TYPE_FENCE_CREATE_INFO, NULL, 0};
|
||||
if (vk.CreateFence(vk.device, &fence, NULL, &s->fence) != VK_SUCCESS) return 0;
|
||||
VkBufferCreateInfo bi = {VK_STRUCTURE_TYPE_BUFFER_CREATE_INFO, NULL, 0, (VkDeviceSize)s->width * s->height * 4,
|
||||
VK_BUFFER_USAGE_TRANSFER_SRC_BIT, VK_SHARING_MODE_EXCLUSIVE, 0, NULL};
|
||||
if (svk.CreateBuffer(vk.device, &bi, NULL, &s->staging) != VK_SUCCESS) return 0;
|
||||
VkMemoryRequirements req;
|
||||
svk.GetBufferMemoryRequirements(vk.device, s->staging, &req);
|
||||
VkPhysicalDeviceMemoryProperties props;
|
||||
svk.GetPhysicalDeviceMemoryProperties(vk.physical, &props);
|
||||
uint32_t want = VK_MEMORY_PROPERTY_HOST_VISIBLE_BIT | VK_MEMORY_PROPERTY_HOST_COHERENT_BIT, type = UINT32_MAX;
|
||||
for (uint32_t i = 0; i < props.memoryTypeCount && type == UINT32_MAX; ++i)
|
||||
if ((req.memoryTypeBits & (1u << i)) && (props.memoryTypes[i].propertyFlags & want) == want) type = i;
|
||||
if (type == UINT32_MAX) return 0;
|
||||
VkMemoryAllocateInfo ai = {VK_STRUCTURE_TYPE_MEMORY_ALLOCATE_INFO, NULL, req.size, type};
|
||||
if (svk.AllocateMemory(vk.device, &ai, NULL, &s->staging_memory) != VK_SUCCESS) return 0;
|
||||
if (svk.BindBufferMemory(vk.device, s->staging, s->staging_memory, 0) != VK_SUCCESS) return 0;
|
||||
return svk.MapMemory(vk.device, s->staging_memory, 0, VK_WHOLE_SIZE, 0, &s->staging_map) == VK_SUCCESS;
|
||||
}
|
||||
|
||||
// Copy the newest frame (or black, the first time) into the next image of the runtime swapchain. Returns 1 if the
|
||||
// swapchain now has an image to show, -1 if the previous copy is still running (try next frame), 0 on failure.
|
||||
static int surf_upload(surf_swapchain *s, int black) {
|
||||
PFN_xrAcquireSwapchainImage acquire = (PFN_xrAcquireSwapchainImage)lookup(active_instance, "xrAcquireSwapchainImage");
|
||||
PFN_xrWaitSwapchainImage wait = (PFN_xrWaitSwapchainImage)lookup(active_instance, "xrWaitSwapchainImage");
|
||||
PFN_xrReleaseSwapchainImage release = (PFN_xrReleaseSwapchainImage)lookup(active_instance, "xrReleaseSwapchainImage");
|
||||
if (!acquire || !wait || !release || !s->image_count) return 0;
|
||||
uint32_t index = 0;
|
||||
XrSwapchainImageAcquireInfo ai = {XR_TYPE_SWAPCHAIN_IMAGE_ACQUIRE_INFO, NULL};
|
||||
XrSwapchainImageWaitInfo wi = {XR_TYPE_SWAPCHAIN_IMAGE_WAIT_INFO, NULL, 100000000};
|
||||
XrSwapchainImageReleaseInfo ri = {XR_TYPE_SWAPCHAIN_IMAGE_RELEASE_INFO, NULL};
|
||||
if (surf_vulkan && s->in_flight) { // the previous copy still reads the staging buffer: try again next frame
|
||||
if (svk.GetFenceStatus(vk.device, s->fence) != VK_SUCCESS) return -1;
|
||||
vk.ResetFences(vk.device, 1, &s->fence);
|
||||
s->in_flight = 0;
|
||||
}
|
||||
if (XR_FAILED(acquire(s->handle, &ai, &index)) || index >= s->image_count) return 0;
|
||||
if (XR_FAILED(wait(s->handle, &wi))) { release(s->handle, &ri); return 0; }
|
||||
int ok = 0;
|
||||
size_t bytes = (size_t)s->width * s->height * 4;
|
||||
if (surf_vulkan) {
|
||||
if (!black) {
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
memcpy(s->staging_map, s->pixels, bytes);
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
}
|
||||
VkImage img = s->vk_images[index];
|
||||
VkCommandBufferBeginInfo begin = {VK_STRUCTURE_TYPE_COMMAND_BUFFER_BEGIN_INFO, NULL,
|
||||
VK_COMMAND_BUFFER_USAGE_ONE_TIME_SUBMIT_BIT, NULL};
|
||||
VkCommandBuffer cmd = s->cmd;
|
||||
vk.ResetCommandBuffer(cmd, 0);
|
||||
vk.BeginCommandBuffer(cmd, &begin);
|
||||
surf_barrier(cmd, img, VK_IMAGE_LAYOUT_UNDEFINED, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 0, VK_ACCESS_TRANSFER_WRITE_BIT);
|
||||
if (black) {
|
||||
VkClearColorValue c = {{0, 0, 0, 1}};
|
||||
VkImageSubresourceRange r = {VK_IMAGE_ASPECT_COLOR_BIT, 0, 1, 0, 1};
|
||||
svk.CmdClearColorImage(cmd, img, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, &c, 1, &r);
|
||||
} else {
|
||||
VkBufferImageCopy copy = {0, 0, 0, {VK_IMAGE_ASPECT_COLOR_BIT, 0, 0, 1}, {0, 0, 0}, {s->width, s->height, 1}};
|
||||
svk.CmdCopyBufferToImage(cmd, s->staging, img, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, 1, ©);
|
||||
}
|
||||
surf_barrier(cmd, img, VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, VK_IMAGE_LAYOUT_COLOR_ATTACHMENT_OPTIMAL,
|
||||
VK_ACCESS_TRANSFER_WRITE_BIT, VK_ACCESS_COLOR_ATTACHMENT_WRITE_BIT);
|
||||
vk.EndCommandBuffer(cmd);
|
||||
VkSubmitInfo submit = {VK_STRUCTURE_TYPE_SUBMIT_INFO, NULL, 0, NULL, NULL, 1, &cmd, 0, NULL};
|
||||
// released right after the submit: the runtime's own work on this queue runs after the copy
|
||||
ok = vk.QueueSubmit(vk.queue, 1, &submit, s->fence) == VK_SUCCESS;
|
||||
s->in_flight = ok;
|
||||
} else if (!black) { // GLES: the app's context is current on its render thread (xrEndFrame)
|
||||
GLint prev_tex = 0, prev_align = 4, prev_unpack = 0;
|
||||
p_glGetIntegerv(GL_TEXTURE_BINDING_2D, &prev_tex);
|
||||
p_glGetIntegerv(GL_UNPACK_ALIGNMENT, &prev_align);
|
||||
p_glGetIntegerv(0x88EF /* GL_PIXEL_UNPACK_BUFFER_BINDING */, &prev_unpack);
|
||||
if (prev_unpack) { typedef void (*bb)(GLenum, GLuint); static bb bind; if (!bind) bind = (bb)dlsym(RTLD_DEFAULT, "glBindBuffer"); if (bind) bind(0x88EC, 0); }
|
||||
p_glBindTexture(GL_TEXTURE_2D, s->gl_images[index]);
|
||||
s_glPixelStorei(GL_UNPACK_ALIGNMENT, 1);
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
s_glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, (GLsizei)s->width, (GLsizei)s->height, GL_RGBA, GL_UNSIGNED_BYTE, s->pixels);
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
ok = p_glGetError() == GL_NO_ERROR;
|
||||
s_glPixelStorei(GL_UNPACK_ALIGNMENT, prev_align);
|
||||
p_glBindTexture(GL_TEXTURE_2D, (GLuint)prev_tex);
|
||||
if (prev_unpack) { typedef void (*bb)(GLenum, GLuint); static bb bind; if (!bind) bind = (bb)dlsym(RTLD_DEFAULT, "glBindBuffer"); if (bind) bind(0x88EC, (GLuint)prev_unpack); }
|
||||
}
|
||||
release(s->handle, &ri);
|
||||
return ok;
|
||||
}
|
||||
|
||||
// xrEndFrame: before a layer showing an emulated swapchain is submitted. Returns 0 if it has nothing to show yet.
|
||||
static int surf_prepare_layer(XrSwapchain handle) {
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
surf_swapchain *s = surf_find(handle);
|
||||
uint64_t seq = s ? s->seq : 0;
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
if (!s) return 1; // not ours
|
||||
if (seq != s->uploaded_seq) {
|
||||
int r = surf_upload(s, 0);
|
||||
if (r > 0) { s->uploaded_seq = seq; s->uploads++; s->has_content = 1; }
|
||||
else if (r == 0 && s->upload_failures++ < 5) LOG("surface_emul: upload failed (swapchain %p)", (void *)(uintptr_t)handle);
|
||||
}
|
||||
return s->has_content;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- the emulated entry points
|
||||
typedef XrResult (XRAPI_PTR *PFN_xrCreateSwapchainAndroidSurfaceKHR_)(XrSession, const XrSwapchainCreateInfo *,
|
||||
XrSwapchain *, jobject *);
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL hook_xrCreateSwapchainAndroidSurfaceKHR(XrSession session,
|
||||
const XrSwapchainCreateInfo *info, XrSwapchain *swapchain, jobject *surface) {
|
||||
PFN_xrCreateSwapchainAndroidSurfaceKHR_ fn =
|
||||
(PFN_xrCreateSwapchainAndroidSurfaceKHR_)lookup(active_instance, "xrCreateSwapchainAndroidSurfaceKHR");
|
||||
XrResult result = fn ? fn(session, info, swapchain, surface) : XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (result != XR_ERROR_FUNCTION_UNSUPPORTED || !info || !swapchain || !surface) return result;
|
||||
LOG("surface_emul: runtime has no Android surface swapchains: emulating %ux%u (vm %s, %s session)", info->width,
|
||||
info->height, surf_vm ? "ok" : "MISSING", vk.device ? "Vulkan" : "GLES");
|
||||
if (!surf_vm || !info->width || !info->height || !surf_load()) return result;
|
||||
surf_vulkan = vk.device != VK_NULL_HANDLE;
|
||||
if (surf_vulkan && !surf_vk_ready()) { LOG("surface_emul: Vulkan upload path unavailable"); return result; }
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
surf_swapchain *s = NULL;
|
||||
for (int i = 0; i < SURF_MAX && !s; ++i)
|
||||
if (!surfs[i].used) s = &surfs[i];
|
||||
if (s) { memset(s, 0, sizeof(*s)); s->used = 1; }
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
if (!s) { LOG("surface_emul: too many surface swapchains"); return result; }
|
||||
// the runtime swapchain the game gets instead (what its layer will show)
|
||||
PFN_xrCreateSwapchain create = (PFN_xrCreateSwapchain)lookup(active_instance, "xrCreateSwapchain");
|
||||
PFN_xrEnumerateSwapchainImages enumerate =
|
||||
(PFN_xrEnumerateSwapchainImages)lookup(active_instance, "xrEnumerateSwapchainImages");
|
||||
PFN_xrDestroySwapchain destroy = (PFN_xrDestroySwapchain)lookup(active_instance, "xrDestroySwapchain");
|
||||
XrSwapchainCreateInfo ci = {XR_TYPE_SWAPCHAIN_CREATE_INFO, NULL, 0,
|
||||
XR_SWAPCHAIN_USAGE_COLOR_ATTACHMENT_BIT | XR_SWAPCHAIN_USAGE_TRANSFER_DST_BIT |
|
||||
XR_SWAPCHAIN_USAGE_SAMPLED_BIT,
|
||||
surf_vulkan ? 43 /* VK_FORMAT_R8G8B8A8_SRGB */ : 0x8C43 /* GL_SRGB8_ALPHA8 */,
|
||||
1, info->width, info->height, 1, 1, 1};
|
||||
XrSwapchain handle = XR_NULL_HANDLE;
|
||||
XrResult cr = create && enumerate ? create(session, &ci, &handle) : XR_ERROR_FUNCTION_UNSUPPORTED;
|
||||
if (XR_FAILED(cr)) {
|
||||
LOG("surface_emul: xrCreateSwapchain failed %d", cr);
|
||||
pthread_mutex_lock(&surf_lock); s->used = 0; pthread_mutex_unlock(&surf_lock);
|
||||
return result;
|
||||
}
|
||||
s->handle = handle;
|
||||
s->width = info->width;
|
||||
s->height = info->height;
|
||||
s->pixels = calloc((size_t)s->width * s->height, 4);
|
||||
uint32_t n = 0;
|
||||
if (surf_vulkan) {
|
||||
XrSwapchainImageVulkanKHR images[MAX_IMAGES];
|
||||
for (int i = 0; i < MAX_IMAGES; ++i) images[i] = (XrSwapchainImageVulkanKHR){XR_TYPE_SWAPCHAIN_IMAGE_VULKAN_KHR, NULL, VK_NULL_HANDLE};
|
||||
if (XR_SUCCEEDED(enumerate(handle, MAX_IMAGES, &n, (XrSwapchainImageBaseHeader *)images)))
|
||||
for (uint32_t i = 0; i < n && i < MAX_IMAGES; ++i) s->vk_images[i] = images[i].image;
|
||||
} else {
|
||||
emul_gles_image images[MAX_IMAGES];
|
||||
for (int i = 0; i < MAX_IMAGES; ++i) images[i] = (emul_gles_image){XR_TYPE_SWAPCHAIN_IMAGE_OPENGL_ES_KHR, NULL, 0};
|
||||
if (XR_SUCCEEDED(enumerate(handle, MAX_IMAGES, &n, (XrSwapchainImageBaseHeader *)images)))
|
||||
for (uint32_t i = 0; i < n && i < MAX_IMAGES; ++i) s->gl_images[i] = images[i].image;
|
||||
}
|
||||
s->image_count = n < MAX_IMAGES ? n : MAX_IMAGES;
|
||||
int setup_ok = s->pixels && s->image_count && (!surf_vulkan || surf_staging(s));
|
||||
if (setup_ok) {
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
setup_ok = pthread_create(&s->thread, NULL, surf_worker, s) == 0;
|
||||
struct timespec until;
|
||||
clock_gettime(CLOCK_REALTIME, &until);
|
||||
until.tv_sec += 3;
|
||||
while (setup_ok && !s->ready && !s->failed && pthread_cond_timedwait(&surf_cond, &surf_lock, &until) == 0) {}
|
||||
setup_ok = setup_ok && s->ready;
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
}
|
||||
if (!setup_ok) {
|
||||
LOG("surface_emul: setup failed (images %u, pixels %d): the panel stays empty", s->image_count, s->pixels != NULL);
|
||||
if (s->thread) { s->stop = 1; pthread_join(s->thread, NULL); }
|
||||
if (destroy) destroy(handle);
|
||||
free(s->pixels);
|
||||
pthread_mutex_lock(&surf_lock); s->used = 0; pthread_mutex_unlock(&surf_lock);
|
||||
return result;
|
||||
}
|
||||
// something valid to show from the first frame on (Vulkan: a black image; GLES: the layer waits for a frame)
|
||||
if (surf_vulkan && surf_upload(s, 1) > 0) s->has_content = 1;
|
||||
remember_swapchain(handle);
|
||||
*swapchain = handle;
|
||||
*surface = s->surface;
|
||||
LOG("surface_emul: emulated Android surface swapchain %p (%u images)", (void *)(uintptr_t)handle, s->image_count);
|
||||
return XR_SUCCESS;
|
||||
}
|
||||
|
||||
// xrDestroySwapchain: an emulated swapchain's worker and surface go with it
|
||||
static void surf_on_destroy(XrSwapchain handle) {
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
surf_swapchain *s = surf_find(handle);
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
if (!s) return;
|
||||
s->stop = 1;
|
||||
if (s->thread) pthread_join(s->thread, NULL);
|
||||
if (surf_vm && s->surface) {
|
||||
JNIEnv *env = NULL;
|
||||
int attached = 0;
|
||||
if ((*surf_vm)->GetEnv(surf_vm, (void **)&env, JNI_VERSION_1_6) != JNI_OK) {
|
||||
attached = (*surf_vm)->AttachCurrentThread(surf_vm, &env, NULL) == JNI_OK;
|
||||
}
|
||||
if (env) (*env)->DeleteGlobalRef(env, s->surface);
|
||||
if (attached) (*surf_vm)->DetachCurrentThread(surf_vm);
|
||||
}
|
||||
pthread_mutex_lock(&surf_lock);
|
||||
free(s->pixels);
|
||||
s->pixels = NULL;
|
||||
s->used = 0;
|
||||
pthread_mutex_unlock(&surf_lock);
|
||||
LOG("surface_emul: destroyed %p", (void *)(uintptr_t)handle);
|
||||
}
|
||||
+42
-5
@@ -5,12 +5,12 @@ Everything is fetched on demand into native/.cache (git-ignored):
|
||||
- Android NDK r27c (27.2.12479018) from Google's repository (checksummed via repository2-3.xml)
|
||||
- OpenXR headers at the commits each component was written against (KhronosGroup/OpenXR-SDK)
|
||||
- Temurin JDK 21 (javac) and Android build-tools (d8) for the Java stub classes
|
||||
Then builds: FrameBridge adapter (arm64 + arm32), VrApi bridge, platform compat, GL shim, oculusos stub dex, the
|
||||
Then builds: FrameBridge adapter (arm64 + arm32), VrApi bridge, platform compat, language packs, GL shim, oculusos stub dex, the
|
||||
timefix OpenXR layer for Proton games (linux-arm64, glibc; the NDK's clang builds it freestanding), the
|
||||
OculusHMDConnected helper for Rift games under Proton (win-x64 PE; the NDK's clang + lld-link, no Windows SDK), and
|
||||
rewrites artifacts/SHA256SUMS. Run `frameport parity` afterwards to see which games change.
|
||||
|
||||
python native/build.py [--only adapter,bridge,compat,glshim,dex,xrlayer,oculushmd,xrshim,vkshim,vrsettings] [--ndk PATH]
|
||||
python native/build.py [--only adapter,bridge,compat,langpack,glshim,eglfmt,ovrtrace,dex,xrlayer,oculushmd,xrshim,vkshim,ovrpshim,vrsettings] [--ndk PATH]
|
||||
"""
|
||||
from __future__ import annotations
|
||||
|
||||
@@ -223,6 +223,15 @@ def build_compat(tc: Path):
|
||||
"-Wl,--version-script=exports.map", "-o", ART / "arm64-v8a/libovrplatformcompat.so"], cwd=src)
|
||||
|
||||
|
||||
def build_langpack(tc: Path):
|
||||
"""Language packs from the game's files (see langpack/langpack.c): DT_NEEDED-injected into overport's platform loader."""
|
||||
src = HERE / "langpack"
|
||||
run([exe(tc, "aarch64-linux-android29-clang"), "-shared", "-fPIC", "-O2", "-Wall", "-Wextra", "-Werror",
|
||||
"-fvisibility=hidden", f"-ffile-prefix-map={src}=native/langpack", "-Wl,--no-undefined",
|
||||
"-Wl,-z,max-page-size=16384", "-Wl,-soname,libfp_langpack.so", "langpack.c", "-ldl", "-llog",
|
||||
"-o", ART / "arm64-v8a/libfp_langpack.so"], cwd=src)
|
||||
|
||||
|
||||
def build_glshim(tc: Path):
|
||||
src = HERE / "glshim"
|
||||
run([exe(tc, "aarch64-linux-android29-clang"), "-shared", "-fPIC", "-O2", "-Wall", "-Wextra", "-Werror",
|
||||
@@ -230,6 +239,24 @@ def build_glshim(tc: Path):
|
||||
"-Wl,-z,max-page-size=16384", "glshim.c", "-ldl", "-llog", "-o", ART / "arm64-v8a/libglshim.so"], cwd=src)
|
||||
|
||||
|
||||
def build_eglfmt(tc: Path):
|
||||
"""Depth-format shim (see glshim/eglfmt.c) that GL-to-GLES wrappers (QuestCraft's LTW) load in place of libEGL.so.
|
||||
Named libfpg.so: no longer than "libEGL.so", whose dlopen string in the wrapper is rewritten in place. Linked to
|
||||
libEGL so a dlsym on its handle still finds every EGL function."""
|
||||
src = HERE / "glshim"
|
||||
run([exe(tc, "aarch64-linux-android29-clang"), "-shared", "-fPIC", "-O2", "-Wall", "-Wextra", "-Werror",
|
||||
"-fvisibility=hidden", "-Wl,-soname,libfpg.so", "-Wl,-z,max-page-size=16384", "eglfmt.c",
|
||||
"-Wl,--no-as-needed", "-lEGL", "-Wl,--as-needed", "-ldl", "-llog", "-o", ART / "arm64-v8a/libfpg.so"], cwd=src)
|
||||
|
||||
|
||||
def build_ovrtrace(tc: Path):
|
||||
"""Meta Platform SDK tracer (see ovrtrace/ovrtrace.c): diagnostics, the game's engine library loads it first."""
|
||||
src = HERE / "ovrtrace"
|
||||
run([exe(tc, "aarch64-linux-android29-clang"), "-shared", "-fPIC", "-O2", "-Wall", "-Wextra", "-Werror",
|
||||
"-Wl,-soname,libfp_ovrtrace.so", "-Wl,-z,max-page-size=16384", "ovrtrace.c", "-ldl", "-llog",
|
||||
"-o", ART / "arm64-v8a/libfp_ovrtrace.so"], cwd=src)
|
||||
|
||||
|
||||
def build_xrshim(tc: Path):
|
||||
"""FrameBridge extension shim (see xrshim/xrshim.c): DT_NEEDED-injected in front of overport's libopenxr_loader.so."""
|
||||
src = HERE / "xrshim"
|
||||
@@ -247,6 +274,14 @@ def build_vkshim(tc: Path):
|
||||
cwd=src)
|
||||
|
||||
|
||||
def build_ovrpshim(tc: Path):
|
||||
"""OVRPlugin frame-loop shim (see ovrpshim/ovrpshim.c) for Unity 2017-2018 built-in Oculus support."""
|
||||
src = HERE / "ovrpshim"
|
||||
run([exe(tc, "aarch64-linux-android29-clang"), "-shared", "-fPIC", "-O2", "-Wall", "-Wextra", "-Werror",
|
||||
"-fvisibility=hidden", "-Wl,-soname,libfp_ovrp.so", "-Wl,-z,max-page-size=16384", "ovrpshim.c", "-ldl",
|
||||
"-llog", "-o", ART / "arm64-v8a/libfp_ovrp.so"], cwd=src)
|
||||
|
||||
|
||||
def build_dex():
|
||||
javac = shutil.which("javac")
|
||||
if not javac:
|
||||
@@ -291,7 +326,7 @@ def write_sums():
|
||||
|
||||
def main():
|
||||
ap = argparse.ArgumentParser()
|
||||
ap.add_argument("--only", default="adapter,bridge,compat,glshim,dex,xrlayer,oculushmd,xrshim,vkshim,vrsettings")
|
||||
ap.add_argument("--only", default="adapter,bridge,compat,langpack,glshim,eglfmt,ovrtrace,dex,xrlayer,oculushmd,xrshim,vkshim,ovrpshim,vrsettings")
|
||||
ap.add_argument("--ndk")
|
||||
args = ap.parse_args()
|
||||
parts = set(args.only.split(","))
|
||||
@@ -299,10 +334,12 @@ def main():
|
||||
(ART / d).mkdir(parents=True, exist_ok=True)
|
||||
tc = clang_dir(ndk(args.ndk)) if parts - {"dex"} else None
|
||||
steps = {"adapter": lambda: build_adapter(tc), "bridge": lambda: build_bridge(tc), "compat": lambda: build_compat(tc),
|
||||
"glshim": lambda: build_glshim(tc), "xrshim": lambda: build_xrshim(tc), "dex": build_dex, "xrlayer": lambda: build_xrlayer(tc),
|
||||
"langpack": lambda: build_langpack(tc),
|
||||
"glshim": lambda: build_glshim(tc), "eglfmt": lambda: build_eglfmt(tc), "ovrtrace": lambda: build_ovrtrace(tc), "xrshim": lambda: build_xrshim(tc), "dex": build_dex, "xrlayer": lambda: build_xrlayer(tc),
|
||||
"oculushmd": lambda: build_oculushmd(tc), "vkshim": lambda: build_vkshim(tc),
|
||||
"ovrpshim": lambda: build_ovrpshim(tc),
|
||||
"vrsettings": lambda: build_vrsettings(tc)}
|
||||
for name in ("adapter", "bridge", "compat", "glshim", "xrshim", "vkshim", "dex", "xrlayer", "oculushmd", "vrsettings"):
|
||||
for name in ("adapter", "bridge", "compat", "langpack", "glshim", "eglfmt", "ovrtrace", "xrshim", "vkshim", "ovrpshim", "dex", "xrlayer", "oculushmd", "vrsettings"):
|
||||
if name in parts:
|
||||
log(f"build {name}")
|
||||
steps[name]()
|
||||
|
||||
@@ -0,0 +1,97 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// FramePort depth-format shim for GL-to-GLES wrappers (QuestCraft's LTW): desktop OpenGL's sized depth format
|
||||
// GL_DEPTH_COMPONENT32 doesn't exist in OpenGL ES. Qualcomm's Quest driver accepts it anyway; the Frame's Mesa (Zink)
|
||||
// rejects it (GL_INVALID_OPERATION in glTexImage2D), so Minecraft's depth textures never exist, every framebuffer that
|
||||
// uses them is incomplete and the picture stays black. LTW resolves every GLES function through eglGetProcAddress from
|
||||
// a libEGL it dlopens itself; FramePort points that dlopen string at this library (patches/frame/ltw_depth.py), which
|
||||
// hands back wrappers for the texture/renderbuffer allocation functions and the real functions for everything else:
|
||||
// GL_DEPTH_COMPONENT32 -> GL_DEPTH_COMPONENT32F (GL_DEPTH_COMPONENT24 when pixel data comes as GL_UNSIGNED_INT),
|
||||
// unsized GL_DEPTH_COMPONENT with GL_FLOAT data -> GL_DEPTH_COMPONENT32F.
|
||||
#define _GNU_SOURCE
|
||||
#include <EGL/egl.h>
|
||||
#include <GLES3/gl32.h>
|
||||
#include <android/log.h>
|
||||
#include <dlfcn.h>
|
||||
#include <pthread.h>
|
||||
#include <string.h>
|
||||
|
||||
#define LOG(...) __android_log_print(ANDROID_LOG_INFO, "FrameBridge", __VA_ARGS__)
|
||||
#define EXPORT __attribute__((visibility("default")))
|
||||
#ifndef GL_DEPTH_COMPONENT32
|
||||
#define GL_DEPTH_COMPONENT32 0x81A7
|
||||
#endif
|
||||
|
||||
typedef __eglMustCastToProperFunctionPointerType FnPtr;
|
||||
static FnPtr (*real_gpa)(const char *);
|
||||
static pthread_once_t once = PTHREAD_ONCE_INIT;
|
||||
static int logged;
|
||||
|
||||
static void init(void) {
|
||||
void *egl = dlopen("libEGL.so", RTLD_NOW | RTLD_LOCAL);
|
||||
real_gpa = egl ? (FnPtr (*)(const char *))dlsym(egl, "eglGetProcAddress") : NULL;
|
||||
LOG("depth format shim: libEGL.so %s", real_gpa ? "OK" : "MISSING");
|
||||
}
|
||||
|
||||
// the ES internal format for a desktop depth request (`type` = the pixel data type, 0 when there is none)
|
||||
static GLint fix(GLint internal, GLenum type, const char *fn) {
|
||||
GLint out = internal;
|
||||
if (internal == GL_DEPTH_COMPONENT32) out = type == GL_UNSIGNED_INT ? GL_DEPTH_COMPONENT24 : GL_DEPTH_COMPONENT32F;
|
||||
else if (internal == GL_DEPTH_COMPONENT && type == GL_FLOAT) out = GL_DEPTH_COMPONENT32F;
|
||||
if (out != internal && logged < 8) {
|
||||
logged++;
|
||||
LOG("depth format shim: %s 0x%x -> 0x%x", fn, internal, out);
|
||||
}
|
||||
return out;
|
||||
}
|
||||
|
||||
static PFNGLTEXIMAGE2DPROC r_ti2;
|
||||
static PFNGLTEXIMAGE3DPROC r_ti3;
|
||||
static PFNGLTEXSTORAGE2DPROC r_ts2;
|
||||
static PFNGLTEXSTORAGE3DPROC r_ts3;
|
||||
static PFNGLTEXSTORAGE2DMULTISAMPLEPROC r_ts2ms;
|
||||
static PFNGLTEXSTORAGE3DMULTISAMPLEPROC r_ts3ms;
|
||||
static PFNGLRENDERBUFFERSTORAGEPROC r_rbs;
|
||||
static PFNGLRENDERBUFFERSTORAGEMULTISAMPLEPROC r_rbsms;
|
||||
|
||||
static void GL_APIENTRY w_ti2(GLenum t, GLint l, GLint i, GLsizei w, GLsizei h, GLint b, GLenum f, GLenum ty, const void *d) {
|
||||
r_ti2(t, l, fix(i, ty, "glTexImage2D"), w, h, b, f, ty, d);
|
||||
}
|
||||
static void GL_APIENTRY w_ti3(GLenum t, GLint l, GLint i, GLsizei w, GLsizei h, GLsizei dp, GLint b, GLenum f, GLenum ty,
|
||||
const void *d) {
|
||||
r_ti3(t, l, fix(i, ty, "glTexImage3D"), w, h, dp, b, f, ty, d);
|
||||
}
|
||||
static void GL_APIENTRY w_ts2(GLenum t, GLsizei l, GLenum i, GLsizei w, GLsizei h) {
|
||||
r_ts2(t, l, (GLenum)fix((GLint)i, 0, "glTexStorage2D"), w, h);
|
||||
}
|
||||
static void GL_APIENTRY w_ts3(GLenum t, GLsizei l, GLenum i, GLsizei w, GLsizei h, GLsizei d) {
|
||||
r_ts3(t, l, (GLenum)fix((GLint)i, 0, "glTexStorage3D"), w, h, d);
|
||||
}
|
||||
static void GL_APIENTRY w_ts2ms(GLenum t, GLsizei s, GLenum i, GLsizei w, GLsizei h, GLboolean fl) {
|
||||
r_ts2ms(t, s, (GLenum)fix((GLint)i, 0, "glTexStorage2DMultisample"), w, h, fl);
|
||||
}
|
||||
static void GL_APIENTRY w_ts3ms(GLenum t, GLsizei s, GLenum i, GLsizei w, GLsizei h, GLsizei d, GLboolean fl) {
|
||||
r_ts3ms(t, s, (GLenum)fix((GLint)i, 0, "glTexStorage3DMultisample"), w, h, d, fl);
|
||||
}
|
||||
static void GL_APIENTRY w_rbs(GLenum t, GLenum i, GLsizei w, GLsizei h) {
|
||||
r_rbs(t, (GLenum)fix((GLint)i, 0, "glRenderbufferStorage"), w, h);
|
||||
}
|
||||
static void GL_APIENTRY w_rbsms(GLenum t, GLsizei s, GLenum i, GLsizei w, GLsizei h) {
|
||||
r_rbsms(t, s, (GLenum)fix((GLint)i, 0, "glRenderbufferStorageMultisample"), w, h);
|
||||
}
|
||||
|
||||
EXPORT FnPtr eglGetProcAddress(const char *name) {
|
||||
pthread_once(&once, init);
|
||||
FnPtr fn = real_gpa && name ? real_gpa(name) : NULL;
|
||||
if (!fn) return fn;
|
||||
#define WRAP(sym, real, w) if (!strcmp(name, sym)) { real = (void *)fn; return (FnPtr)w; }
|
||||
WRAP("glTexImage2D", r_ti2, w_ti2)
|
||||
WRAP("glTexImage3D", r_ti3, w_ti3)
|
||||
WRAP("glTexStorage2D", r_ts2, w_ts2)
|
||||
WRAP("glTexStorage3D", r_ts3, w_ts3)
|
||||
WRAP("glTexStorage2DMultisample", r_ts2ms, w_ts2ms)
|
||||
WRAP("glTexStorage3DMultisample", r_ts3ms, w_ts3ms)
|
||||
WRAP("glRenderbufferStorage", r_rbs, w_rbs)
|
||||
WRAP("glRenderbufferStorageMultisample", r_rbsms, w_rbsms)
|
||||
#undef WRAP
|
||||
return fn;
|
||||
}
|
||||
+79
-17
@@ -13,9 +13,14 @@
|
||||
|
||||
#define LOG(...) __android_log_print(ANDROID_LOG_INFO, "GLShim", __VA_ARGS__)
|
||||
|
||||
static const char *const hidden[] = {
|
||||
static const char *const hidden_multiview[] = {
|
||||
"GL_OVR_multiview", "GL_OVR_multiview2", "GL_OVR_multiview_multisampled_render_to_texture",
|
||||
};
|
||||
// multisampled render-to-texture: Unity renders a runtime MSAA eye buffer through it, which crashes Zink (SIGSEGV in
|
||||
// libgallium_dri.so, e.g. The Room VR); hidden, Unity uses an ordinary MSAA renderbuffer + resolve
|
||||
static const char *const hidden_msrtt[] = {
|
||||
"GL_EXT_multisampled_render_to_texture", "GL_EXT_multisampled_render_to_texture2",
|
||||
"GL_OVR_multiview_multisampled_render_to_texture",
|
||||
};
|
||||
|
||||
static void *gles;
|
||||
@@ -25,23 +30,47 @@ static void (*real_glGetIntegerv)(GLenum, GLint *);
|
||||
static __eglMustCastToProperFunctionPointerType (*real_eglGetProcAddress)(const char *);
|
||||
static pthread_once_t once = PTHREAD_ONCE_INIT;
|
||||
|
||||
static int hide_multiview = 1;
|
||||
static int hide_multiview = -1; // -1: not set (Unity keeps multiview, everything else hides it)
|
||||
static int hide_msrtt = 1;
|
||||
|
||||
static void read_conf(void) {
|
||||
char pkg[256] = {0}, path[512];
|
||||
FILE *f = fopen("/proc/self/cmdline", "r");
|
||||
static void read_conf_file(const char *path) {
|
||||
FILE *f = fopen(path, "r");
|
||||
if (!f) return;
|
||||
size_t n = fread(pkg, 1, sizeof(pkg) - 1, f);
|
||||
char line[256];
|
||||
while (fgets(line, sizeof(line), f)) {
|
||||
if (!strncmp(line, "gl_hide_multiview=", 18)) hide_multiview = atoi(line + 18);
|
||||
if (!strncmp(line, "gl_hide_msrtt=", 14)) hide_msrtt = atoi(line + 14);
|
||||
}
|
||||
fclose(f);
|
||||
pkg[n] = 0;
|
||||
}
|
||||
|
||||
// The same settings sources as FrameBridge, later ones winning: the build's libframe_settings.so (next to this
|
||||
// library), the game's framebridge.conf, then FRAMEBRIDGE_CONFIG (Lepton's per-game settings.conf).
|
||||
static void read_conf(void) {
|
||||
Dl_info info;
|
||||
char path[600];
|
||||
if (dladdr((void *)read_conf, &info) && info.dli_fname) {
|
||||
const char *slash = strrchr(info.dli_fname, '/');
|
||||
if (slash && slash - info.dli_fname < 500) {
|
||||
snprintf(path, sizeof(path), "%.*s/libframe_settings.so", (int)(slash - info.dli_fname), info.dli_fname);
|
||||
read_conf_file(path);
|
||||
}
|
||||
}
|
||||
char pkg[256] = {0};
|
||||
FILE *f = fopen("/proc/self/cmdline", "r");
|
||||
if (f) {
|
||||
size_t n = fread(pkg, 1, sizeof(pkg) - 1, f);
|
||||
fclose(f);
|
||||
pkg[n] = 0;
|
||||
}
|
||||
char *colon = strchr(pkg, ':');
|
||||
if (colon) *colon = 0;
|
||||
snprintf(path, sizeof(path), "/sdcard/Android/data/%s/files/framebridge.conf", pkg);
|
||||
if (!(f = fopen(path, "r"))) return;
|
||||
char line[128];
|
||||
while (fgets(line, sizeof(line), f))
|
||||
if (!strncmp(line, "gl_hide_multiview=", 18)) hide_multiview = atoi(line + 18);
|
||||
fclose(f);
|
||||
if (*pkg && !strchr(pkg, '/')) {
|
||||
snprintf(path, sizeof(path), "/sdcard/Android/data/%s/files/framebridge.conf", pkg);
|
||||
read_conf_file(path);
|
||||
}
|
||||
const char *env = getenv("FRAMEBRIDGE_CONFIG");
|
||||
if (env && *env) read_conf_file(env);
|
||||
}
|
||||
|
||||
// Logging wrappers for the framebuffer calls engines use for eye buffers.
|
||||
@@ -306,13 +335,21 @@ static void init(void) {
|
||||
real_glGetStringi = gles ? dlsym(gles, "glGetStringi") : NULL;
|
||||
real_glGetIntegerv = gles ? dlsym(gles, "glGetIntegerv") : NULL;
|
||||
real_eglGetProcAddress = egl ? dlsym(egl, "eglGetProcAddress") : NULL;
|
||||
LOG("GL shim active: hide_multiview=%d", hide_multiview);
|
||||
if (hide_multiview < 0) { // Unity renders multiview itself and only needs MSRTT hidden
|
||||
void *unity = dlopen("libunity.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
hide_multiview = unity ? 0 : 1;
|
||||
if (unity) dlclose(unity);
|
||||
}
|
||||
LOG("GL shim active: hide_multiview=%d hide_msrtt=%d", hide_multiview, hide_msrtt);
|
||||
}
|
||||
|
||||
static int is_hidden(const char *name) {
|
||||
if (!hide_multiview) return 0;
|
||||
for (size_t i = 0; i < sizeof(hidden) / sizeof(hidden[0]); ++i)
|
||||
if (!strcmp(name, hidden[i])) return 1;
|
||||
if (hide_multiview)
|
||||
for (size_t i = 0; i < sizeof(hidden_multiview) / sizeof(hidden_multiview[0]); ++i)
|
||||
if (!strcmp(name, hidden_multiview[i])) return 1;
|
||||
if (hide_msrtt)
|
||||
for (size_t i = 0; i < sizeof(hidden_msrtt) / sizeof(hidden_msrtt[0]); ++i)
|
||||
if (!strcmp(name, hidden_msrtt[i])) return 1;
|
||||
return 0;
|
||||
}
|
||||
|
||||
@@ -362,6 +399,24 @@ __attribute__((visibility("default"))) const GLubyte *glGetString(GLenum name) {
|
||||
return (const GLubyte *)filtered;
|
||||
}
|
||||
|
||||
// With GL_EXT_multisampled_render_to_texture hidden (gl_hide_msrtt), an app that calls its functions anyway (Team
|
||||
// Beef's TBXR, e.g. Lambda1VR: color via glFramebufferTexture2DMultisampleEXT, depth via
|
||||
// glRenderbufferStorageMultisampleEXT) gets plain single-sampled versions, so both attachments match: Zink called
|
||||
// the mix GL_FRAMEBUFFER_INCOMPLETE_MULTISAMPLE and the eyes stayed black.
|
||||
typedef void (*PFN_FT2D)(GLenum, GLenum, GLenum, GLuint, GLint);
|
||||
typedef void (*PFN_RBS)(GLenum, GLenum, GLsizei, GLsizei);
|
||||
static PFN_FT2D r_plain_ft2d;
|
||||
static PFN_RBS r_plain_rbs;
|
||||
static int msrtt_logged;
|
||||
static void plain_ft2dms(GLenum target, GLenum attachment, GLenum textarget, GLuint texture, GLint level, GLsizei samples) {
|
||||
if (!msrtt_logged++) LOG("GL shim: multisampled render-to-texture (%d samples) drawn single-sampled", (int)samples);
|
||||
if (r_plain_ft2d) r_plain_ft2d(target, attachment, textarget, texture, level);
|
||||
}
|
||||
static void plain_rbsms(GLenum target, GLsizei samples, GLenum format, GLsizei width, GLsizei height) {
|
||||
(void)samples;
|
||||
if (r_plain_rbs) r_plain_rbs(target, format, width, height);
|
||||
}
|
||||
|
||||
__attribute__((visibility("default"))) __eglMustCastToProperFunctionPointerType eglGetProcAddress(const char *name) {
|
||||
pthread_once(&once, init);
|
||||
if (name && !strcmp(name, "glGetStringi")) return (__eglMustCastToProperFunctionPointerType)glGetStringi;
|
||||
@@ -370,6 +425,13 @@ __attribute__((visibility("default"))) __eglMustCastToProperFunctionPointerType
|
||||
__eglMustCastToProperFunctionPointerType fn = real_eglGetProcAddress ? real_eglGetProcAddress(name) : NULL;
|
||||
if (!fn || !name) return fn;
|
||||
#define WRAP(sym, real, w) if (!strcmp(name, sym)) { real = (void *)fn; return (__eglMustCastToProperFunctionPointerType)w; }
|
||||
if (hide_msrtt && (!strcmp(name, "glFramebufferTexture2DMultisampleEXT") ||
|
||||
!strcmp(name, "glRenderbufferStorageMultisampleEXT"))) {
|
||||
if (!r_plain_ft2d) r_plain_ft2d = (PFN_FT2D)real_eglGetProcAddress("glFramebufferTexture2D");
|
||||
if (!r_plain_rbs) r_plain_rbs = (PFN_RBS)real_eglGetProcAddress("glRenderbufferStorage");
|
||||
return name[2] == 'F' ? (__eglMustCastToProperFunctionPointerType)plain_ft2dms
|
||||
: (__eglMustCastToProperFunctionPointerType)plain_rbsms;
|
||||
}
|
||||
#ifdef GLSHIM_TRACE // build with -DGLSHIM_TRACE for eye-buffer / draw / error tracing
|
||||
WRAP("glFramebufferTextureMultiviewOVR", real_ftmv, w_ftmv)
|
||||
WRAP("glFramebufferTextureMultisampleMultiviewOVR", real_ftmsmv, w_ftmsmv)
|
||||
|
||||
File diff suppressed because it is too large.
Load diff
@@ -0,0 +1,316 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// FramePort OVRPlugin shim: the frame loop for Unity 2017-2018 built-in Oculus support, and Unity's user presence.
|
||||
//
|
||||
// That Unity drives OVRPlugin with the legacy frame loop: ovrp_Update2(render step, frame index, ...) on the main
|
||||
// thread, then ovrp_BeginFrame / ovrp_EndFrame on the render thread. It never calls ovrp_WaitToBeginFrame, which
|
||||
// newer OVRPlugin builds (OVRPort's OpenXR OVRPlugin) need to call xrWaitFrame: no frame ever begins, OVRPlugin logs
|
||||
// "CompositorOpenXR::Update called for frame N outside of frame bounds" thousands of times a second and the Frame's
|
||||
// dashboard freezes (Accounting+, Unity 2017.4).
|
||||
//
|
||||
// FramePort renames the "ovrp_Update2" lookup in libunity.so to "fpov_Update2" (same length) and adds this library to
|
||||
// libOVRPlugin.so's DT_NEEDED, so Unity's dlsym on the plugin finds this function: it waits for the frame first (once
|
||||
// per frame index, render step only), then calls the real ovrp_Update2.
|
||||
#include <android/log.h>
|
||||
#include <dlfcn.h>
|
||||
#include <pthread.h>
|
||||
|
||||
#define TAG "FrameBridge"
|
||||
#define EXPORT __attribute__((visibility("default")))
|
||||
#define LOG(...) __android_log_print(ANDROID_LOG_INFO, TAG, __VA_ARGS__)
|
||||
|
||||
typedef int (*PFN_Update2)(int step, int frame_index, double prediction_seconds);
|
||||
typedef int (*PFN_WaitToBeginFrame)(int frame_index);
|
||||
|
||||
static PFN_Update2 real_update2;
|
||||
static PFN_WaitToBeginFrame real_wait;
|
||||
static pthread_once_t once = PTHREAD_ONCE_INIT;
|
||||
|
||||
static void init(void) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (!ovrp) ovrp = dlopen("libOVRPlugin.so", RTLD_NOW);
|
||||
if (ovrp) {
|
||||
real_update2 = (PFN_Update2)dlsym(ovrp, "ovrp_Update2");
|
||||
real_wait = (PFN_WaitToBeginFrame)dlsym(ovrp, "ovrp_WaitToBeginFrame");
|
||||
}
|
||||
LOG("ovrp frame loop shim: ovrp_Update2 %s, ovrp_WaitToBeginFrame %s", real_update2 ? "OK" : "MISSING",
|
||||
real_wait ? "OK" : "MISSING");
|
||||
}
|
||||
|
||||
#define STEP_RENDER (-1) // ovrpStep_Render
|
||||
|
||||
static void mouse_click_frame(void); // below: controller presses as Unity mouse clicks
|
||||
|
||||
EXPORT int fpov_Update2(int step, int frame_index, double prediction_seconds) {
|
||||
pthread_once(&once, init);
|
||||
static int last_waited = -1, logged;
|
||||
if (step == STEP_RENDER && real_wait && frame_index != last_waited) {
|
||||
last_waited = frame_index;
|
||||
int r = real_wait(frame_index);
|
||||
if (logged++ < 3) LOG("ovrp frame loop shim: waited for frame %d: %d", frame_index, r);
|
||||
mouse_click_frame();
|
||||
}
|
||||
return real_update2 ? real_update2(step, frame_index, prediction_seconds) : -1000; // ovrpFailure
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- input diagnostics (pass-through)
|
||||
// The game's C# input (OVRInput) asks OVRPlugin which controllers are connected and for their button state. These
|
||||
// wrappers return exactly what OVRPlugin returns and log the connected mask and every change of the button bits, to
|
||||
// see whether presses reach the game (Accounting+ stuck at "press any button" while the runtime reports presses).
|
||||
typedef struct { unsigned int words[3]; } State; // the common start: ConnectedControllers, Buttons, Touches
|
||||
// ovrpControllerState2 is returned by value (through x8): the type must have its exact size, 64 bytes (4 uint32,
|
||||
// IndexTrigger[2], HandTrigger[2], Thumbstick[2] and Touchpad[2] as float pairs)
|
||||
typedef struct { unsigned int words[16]; } State2;
|
||||
_Static_assert(sizeof(State2) == 64, "ovrpControllerState2 is 64 bytes");
|
||||
typedef unsigned int (*PFN_GetConnected)(void);
|
||||
typedef int (*PFN_GetState4)(unsigned int mask, State *state); // (written by OVRPlugin; only the start is read)
|
||||
typedef State2 (*PFN_GetState2)(unsigned int mask);
|
||||
static PFN_GetConnected real_connected;
|
||||
static PFN_GetState4 real_state4;
|
||||
static PFN_GetState2 real_state2;
|
||||
static pthread_once_t input_once = PTHREAD_ONCE_INIT;
|
||||
|
||||
static void input_init(void) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (!ovrp) return;
|
||||
real_connected = (PFN_GetConnected)dlsym(ovrp, "ovrp_GetConnectedControllers");
|
||||
real_state4 = (PFN_GetState4)dlsym(ovrp, "ovrp_GetControllerState4");
|
||||
real_state2 = (PFN_GetState2)dlsym(ovrp, "ovrp_GetControllerState2");
|
||||
}
|
||||
|
||||
// per requested controller mask (the game may ask for Touch, Remote, Gamepad... separately)
|
||||
static struct { unsigned int mask, connected, buttons; int seen; } masks[8];
|
||||
static int changes;
|
||||
|
||||
// Face buttons on the Frame's controllers can read as clicked while only touched (Accounting+: buttons == touches ==
|
||||
// A|B|X|Y held for seconds). A button held for more than STUCK_NS is reported released until it really lets go, so
|
||||
// real presses (short) still register as a change.
|
||||
#include <time.h>
|
||||
#define STUCK_NS 2000000000ll
|
||||
static long long held_since[32];
|
||||
static unsigned int suppressed;
|
||||
|
||||
static long long now_ns(void) {
|
||||
struct timespec t;
|
||||
clock_gettime(CLOCK_MONOTONIC, &t);
|
||||
return t.tv_sec * 1000000000ll + t.tv_nsec;
|
||||
}
|
||||
|
||||
static unsigned int unstick(unsigned int buttons) {
|
||||
long long now = now_ns();
|
||||
for (int b = 0; b < 32; b++) {
|
||||
unsigned int bit = 1u << b;
|
||||
if (!(buttons & bit)) {
|
||||
held_since[b] = 0;
|
||||
suppressed &= ~bit;
|
||||
continue;
|
||||
}
|
||||
if (!held_since[b]) held_since[b] = now;
|
||||
if (now - held_since[b] > STUCK_NS && !(suppressed & bit)) {
|
||||
suppressed |= bit;
|
||||
static int logged;
|
||||
if (logged++ < 20) LOG("ovrp input: button 0x%x held for > 2 s: reported released until let go", bit);
|
||||
}
|
||||
}
|
||||
return buttons & ~suppressed;
|
||||
}
|
||||
|
||||
static void note_state(const char *which, unsigned int mask, const State *s) {
|
||||
int i = 0;
|
||||
while (i < 8 && masks[i].seen && masks[i].mask != mask) i++;
|
||||
if (i == 8) return;
|
||||
if (!masks[i].seen || masks[i].buttons != s->words[1] || masks[i].connected != s->words[0]) {
|
||||
if (changes++ < 400)
|
||||
LOG("ovrp input: %s(mask 0x%x): connected 0x%x buttons 0x%x touches 0x%x%s", which, mask, s->words[0],
|
||||
s->words[1], s->words[2], masks[i].seen ? "" : " (first call with this mask)");
|
||||
masks[i].seen = 1;
|
||||
masks[i].mask = mask;
|
||||
masks[i].connected = s->words[0];
|
||||
masks[i].buttons = s->words[1];
|
||||
}
|
||||
}
|
||||
|
||||
EXPORT unsigned int fpov_GetConnectedControllers(void) {
|
||||
pthread_once(&input_once, input_init);
|
||||
unsigned int c = real_connected ? real_connected() : 0;
|
||||
static unsigned int last = 0xffffffffu;
|
||||
static int logged;
|
||||
if (c != last && logged++ < 20) LOG("ovrp input: connected controllers 0x%x", c);
|
||||
last = c;
|
||||
return c;
|
||||
}
|
||||
|
||||
EXPORT int fpov_GetControllerState4(unsigned int mask, State *state) {
|
||||
pthread_once(&input_once, input_init);
|
||||
int r = real_state4 ? real_state4(mask, state) : -1000;
|
||||
if (state) {
|
||||
// ovrpControllerState4 continues with 4 floats after the 4 masks: L/R IndexTrigger, L/R HandTrigger. OVRInput
|
||||
// turns them into the trigger/grip buttons at 0.5; log each time one crosses it (per requested mask)
|
||||
const float *axis = (const float *)((const char *)state + 16);
|
||||
static struct { unsigned int mask, bits; } seen[8];
|
||||
static int axis_logs;
|
||||
unsigned int bits = 0;
|
||||
for (int k = 0; k < 4; ++k) bits |= (axis[k] >= 0.5f) << k;
|
||||
int i = 0;
|
||||
while (i < 8 && seen[i].mask && seen[i].mask != mask) i++;
|
||||
if (i < 8 && (!seen[i].mask || seen[i].bits != bits)) {
|
||||
if (seen[i].mask && axis_logs++ < 200)
|
||||
LOG("ovrp input: State4(mask 0x%x) triggers L %.2f R %.2f grips L %.2f R %.2f", mask, axis[0], axis[1],
|
||||
axis[2], axis[3]);
|
||||
seen[i].mask = mask;
|
||||
seen[i].bits = bits;
|
||||
}
|
||||
note_state("State4", mask, state);
|
||||
state->words[1] = unstick(state->words[1]);
|
||||
}
|
||||
return r;
|
||||
}
|
||||
|
||||
EXPORT State2 fpov_GetControllerState2(unsigned int mask) {
|
||||
pthread_once(&input_once, input_init);
|
||||
State2 s = {{0}};
|
||||
if (real_state2) s = real_state2(mask);
|
||||
note_state("State2", mask, (const State *)&s);
|
||||
s.words[1] = unstick(s.words[1]);
|
||||
return s;
|
||||
}
|
||||
|
||||
// Unity's own input (libunity.so: Input.GetKey/anyKey on the Oculus device) reads ovrp_GetControllerState (v1,
|
||||
// returned by value, 48 bytes: 4 uint32, IndexTrigger[2], HandTrigger[2], Thumbstick[2]) and ovrp_GetControllerState2
|
||||
typedef struct { unsigned int words[12]; } State1;
|
||||
_Static_assert(sizeof(State1) == 48, "ovrpControllerState is 48 bytes");
|
||||
typedef State1 (*PFN_GetState1)(unsigned int mask);
|
||||
static PFN_GetState1 real_state1;
|
||||
|
||||
EXPORT State1 fpov_GetControllerState(unsigned int mask) {
|
||||
pthread_once(&input_once, input_init);
|
||||
if (!real_state1) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (ovrp) real_state1 = (PFN_GetState1)dlsym(ovrp, "ovrp_GetControllerState");
|
||||
}
|
||||
State1 s = {{0}};
|
||||
if (real_state1) s = real_state1(mask);
|
||||
note_state("State1(unity)", mask, (const State *)&s);
|
||||
return s;
|
||||
}
|
||||
|
||||
// Oculus Utilities (1.3x) ignores every button unless OVRPlugin reports input focus; with Unity 2017's legacy frame
|
||||
// loop on OVRPort's OVRPlugin that may never be true. Report it as true (the session's own focus still pauses the game)
|
||||
// and log what OVRPlugin said.
|
||||
typedef int (*PFN_GetInputFocus)(int *has_focus);
|
||||
static PFN_GetInputFocus real_input_focus;
|
||||
|
||||
EXPORT int fpov_GetAppHasInputFocus(int *has_focus) {
|
||||
pthread_once(&input_once, input_init);
|
||||
if (!real_input_focus) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (ovrp) real_input_focus = (PFN_GetInputFocus)dlsym(ovrp, "ovrp_GetAppHasInputFocus");
|
||||
}
|
||||
int value = 0, r = real_input_focus ? real_input_focus(&value) : -1000;
|
||||
static int last = -2, logged;
|
||||
if ((r < 0 ? -1 : value) != last && logged++ < 20) LOG("ovrp input: OVRPlugin input focus %d (result %d)", value, r);
|
||||
last = r < 0 ? -1 : value;
|
||||
if (has_focus) *has_focus = 1;
|
||||
return 0; // ovrpSuccess
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- controller presses as mouse clicks
|
||||
// Unity 2017-2019 games made for Go/Gear VR-era input wait for Input.GetMouseButtonDown(0/1), which a Quest delivers
|
||||
// for the controller's primary press (Accounting+'s "press any button" motion warning checks only that). Lepton runs
|
||||
// VR apps without a focused Android window, so no touch/mouse event ever arrives. IL2CPP looks engine functions up by
|
||||
// name (il2cpp_resolve_icall) on first use: this registers a replacement for UnityEngine.Input::GetMouseButtonDown
|
||||
// that returns Unity's answer, or true in the frame a Touch trigger (>= 0.5) or A/B/X/Y is newly pressed.
|
||||
#define MOUSE_ICALL "UnityEngine.Input::GetMouseButtonDown(System.Int32)"
|
||||
typedef void (*PFN_AddICall)(const char *name, const void *fn);
|
||||
typedef const void *(*PFN_ResolveICall)(const char *name);
|
||||
typedef int (*PFN_MouseDown)(int button);
|
||||
static PFN_MouseDown real_mouse_down;
|
||||
static volatile int click_now; // set for the frame in which a press began
|
||||
|
||||
static int fp_mouse_down(int button) {
|
||||
int real = real_mouse_down ? real_mouse_down(button) : 0;
|
||||
return real || ((button == 0 || button == 1) && click_now);
|
||||
}
|
||||
|
||||
static void mouse_install(void) {
|
||||
static int tries;
|
||||
if (real_mouse_down || tries > 600) return; // ~10 s of frames
|
||||
tries++;
|
||||
PFN_AddICall add = (PFN_AddICall)dlsym(RTLD_DEFAULT, "il2cpp_add_internal_call");
|
||||
PFN_ResolveICall resolve = (PFN_ResolveICall)dlsym(RTLD_DEFAULT, "il2cpp_resolve_icall");
|
||||
if (!add || !resolve) {
|
||||
void *il2cpp = dlopen("libil2cpp.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (il2cpp) {
|
||||
add = (PFN_AddICall)dlsym(il2cpp, "il2cpp_add_internal_call");
|
||||
resolve = (PFN_ResolveICall)dlsym(il2cpp, "il2cpp_resolve_icall");
|
||||
}
|
||||
}
|
||||
if (!add || !resolve) return;
|
||||
const void *current = resolve(MOUSE_ICALL);
|
||||
if (!current) return; // Unity hasn't registered its own yet: try again next frame
|
||||
real_mouse_down = (PFN_MouseDown)current;
|
||||
add(MOUSE_ICALL, (const void *)fp_mouse_down);
|
||||
LOG("controller presses count as mouse clicks (%s %s)", MOUSE_ICALL,
|
||||
resolve(MOUSE_ICALL) == (const void *)fp_mouse_down ? "replaced" : "NOT replaced");
|
||||
}
|
||||
|
||||
static void mouse_click_frame(void) {
|
||||
mouse_install();
|
||||
pthread_once(&input_once, input_init);
|
||||
static int was_pressed;
|
||||
unsigned char raw[512] __attribute__((aligned(16))) = {0}; // ovrpControllerState4 (+ room for newer layouts)
|
||||
int pressed = 0;
|
||||
if (real_state4 && real_state4(0x3, (State *)raw) >= 0) {
|
||||
const unsigned int *w = (const unsigned int *)raw;
|
||||
const float *axis = (const float *)(raw + 16); // L/R IndexTrigger, L/R HandTrigger
|
||||
pressed = (w[1] & 0x303u) != 0 || axis[0] >= 0.5f || axis[1] >= 0.5f; // A, B, X, Y or a trigger
|
||||
}
|
||||
click_now = pressed && !was_pressed;
|
||||
was_pressed = pressed;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- hand nodes
|
||||
// Unity's built-in Oculus XR input creates its left/right controller devices (InputDevices.GetDeviceAtXRNode, the
|
||||
// Touch buttons and triggers games read through CommonUsages) for the hand nodes OVRPlugin reports as present
|
||||
// (ovrp_GetNodePresent). Logged per node; a hand node whose Touch controller is connected counts as present.
|
||||
typedef int (*PFN_NodePresent)(int node);
|
||||
#define NODE_HAND_LEFT 3
|
||||
#define NODE_HAND_RIGHT 4
|
||||
|
||||
EXPORT int fpov_GetNodePresent(int node) {
|
||||
static PFN_NodePresent real;
|
||||
static int logged[16];
|
||||
pthread_once(&input_once, input_init);
|
||||
if (!real) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (ovrp) real = (PFN_NodePresent)dlsym(ovrp, "ovrp_GetNodePresent");
|
||||
}
|
||||
int present = real ? real(node) : 0, answer = present;
|
||||
if (!present && (node == NODE_HAND_LEFT || node == NODE_HAND_RIGHT) && real_connected)
|
||||
answer = (real_connected() & (node == NODE_HAND_LEFT ? 0x1u : 0x2u)) != 0; // LTouch / RTouch
|
||||
if (node >= 0 && node < 16 && logged[node] != (answer ? 2 : 1)) {
|
||||
logged[node] = answer ? 2 : 1;
|
||||
LOG("ovrp node %d present: OVRPlugin %d -> Unity %d", node, present, answer);
|
||||
}
|
||||
return answer;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- user presence (patch frame.unity_user_presence)
|
||||
// Unity's Oculus XR Plugin gives its HMD input device a UserPresence feature from ovrp_GetUserPresent2. On the Frame
|
||||
// OVRPort's OVRPlugin answers "not worn" a few seconds after start while the headset is worn, and games that drive
|
||||
// their rig only while the user is present stay frozen (BONELAB's Marrow rig: XRHMD.IsUserPresent). The plugin's
|
||||
// lookup is renamed to this function, which reports the user as present and logs OVRPlugin's own answer on change.
|
||||
typedef int (*PFN_UserPresent2)(int *present);
|
||||
|
||||
EXPORT int fpov_GetUserPresent2(int *present) {
|
||||
static PFN_UserPresent2 real;
|
||||
if (!real) {
|
||||
void *ovrp = dlopen("libOVRPlugin.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (ovrp) real = (PFN_UserPresent2)dlsym(ovrp, "ovrp_GetUserPresent2");
|
||||
}
|
||||
int value = 0, r = real ? real(&value) : -1000;
|
||||
static int last = -2, logged;
|
||||
if ((r < 0 ? -1 : value) != last && logged++ < 20) LOG("user presence: OVRPlugin %d (result %d) -> 1", value, r);
|
||||
last = r < 0 ? -1 : value;
|
||||
if (present) *present = 1;
|
||||
return 0; // ovrpSuccess
|
||||
}
|
||||
File diff suppressed because it is too large.
Load diff
@@ -0,0 +1,203 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
// FramePort Meta Platform SDK tracer (diagnostics, patch frame.ovr_trace): logs the game's ovr_* calls and the
|
||||
// messages that answer them, to find a request that never gets an answer (a game waiting forever, e.g. Vader
|
||||
// Immortal after its intro). Nothing is answered or changed here: every call goes to the real function.
|
||||
//
|
||||
// Wiring: this library is the first DT_NEEDED of the game's engine library, so the engine's ovr_* imports resolve to
|
||||
// the exports below. Each export is a tiny assembly stub that saves the argument registers (x0-x8, d0-d7), asks
|
||||
// trace_before() for the real function (dlsym on the platform loader's handle, which also finds the language-pack
|
||||
// library's functions when frame.langpacks is on), calls it with the original registers, then reports the result to
|
||||
// trace_after(). Signatures don't matter (functions with more than 8 integer arguments would; the Platform SDK has
|
||||
// none). Logcat tag fp_ovrtrace.
|
||||
//
|
||||
// What is logged: the first calls of every function (argument 0 and the result), every message ovr_PopMessage
|
||||
// returns (type, request id, error flag), and every 10 s the request ids no message has answered yet with the
|
||||
// function that made them ("request" = a function whose name says it starts one: the result is kept when it looks
|
||||
// like a request id and the function isn't an accessor).
|
||||
#define _GNU_SOURCE
|
||||
#include <android/log.h>
|
||||
#include <dlfcn.h>
|
||||
#include <pthread.h>
|
||||
#include <stdint.h>
|
||||
#include <string.h>
|
||||
#include <time.h>
|
||||
|
||||
#define TAG "fp_ovrtrace"
|
||||
#define LOG(...) __android_log_print(ANDROID_LOG_INFO, TAG, __VA_ARGS__)
|
||||
|
||||
static const char *const NAMES[] = {
|
||||
#define N(name) #name,
|
||||
#include "names.inc"
|
||||
#undef N
|
||||
};
|
||||
#define COUNT (sizeof(NAMES) / sizeof(NAMES[0]))
|
||||
|
||||
static void *real_fn[COUNT];
|
||||
static int calls[COUNT];
|
||||
static int is_pop[COUNT], is_request[COUNT];
|
||||
static void *loader;
|
||||
static pthread_once_t once = PTHREAD_ONCE_INIT;
|
||||
static pthread_mutex_t lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
|
||||
typedef uint32_t (*get_type_t)(const void *);
|
||||
typedef uint64_t (*get_id_t)(const void *);
|
||||
typedef _Bool (*is_error_t)(const void *);
|
||||
static get_type_t msg_type;
|
||||
static get_id_t msg_id;
|
||||
static is_error_t msg_error;
|
||||
|
||||
#define PENDING 256
|
||||
static struct { uint64_t id; int fn; double t; } pending[PENDING];
|
||||
static double last_report;
|
||||
|
||||
static double now(void) {
|
||||
struct timespec ts;
|
||||
clock_gettime(CLOCK_MONOTONIC, &ts);
|
||||
return ts.tv_sec + ts.tv_nsec * 1e-9;
|
||||
}
|
||||
|
||||
// accessors read data out of handles; everything else that returns a 64-bit id starts a request
|
||||
static int looks_like_request(const char *n) {
|
||||
static const char *const accessors[] = {"ovr_Message_", "Array_", "_Get", "_Is", "_Has", "_Create", "_Destroy",
|
||||
"_Set", "_Free", "ovr_PopMessage", "ovr_Platform", "ovr_GetLoggedInUser",
|
||||
"ovr_Error_", "Options_", "ovr_Voip_", "ovr_Net_", "ovr_Microphone_"};
|
||||
for (size_t i = 0; i < sizeof(accessors) / sizeof(accessors[0]); ++i)
|
||||
if (strstr(n, accessors[i])) return 0;
|
||||
return 1;
|
||||
}
|
||||
|
||||
static void init(void) {
|
||||
loader = dlopen("libovrplatformloader.so", RTLD_NOW | RTLD_NOLOAD);
|
||||
if (!loader) loader = dlopen("libovrplatformloader.so", RTLD_NOW);
|
||||
for (size_t i = 0; i < COUNT; ++i) {
|
||||
is_pop[i] = !strcmp(NAMES[i], "ovr_PopMessage");
|
||||
is_request[i] = looks_like_request(NAMES[i]);
|
||||
// "requests" whose names start with Get (e.g. ovr_User_GetLoggedInUser): Area_GetX with an upper-case X
|
||||
const char *u = strchr(NAMES[i] + 4, '_');
|
||||
if (u && !strncmp(u, "_Get", 4) && strncmp(NAMES[i], "ovr_Message_", 12) && !strstr(NAMES[i], "Array_"))
|
||||
is_request[i] = 2; // maybe: kept only when the result looks like a request id
|
||||
}
|
||||
if (loader) {
|
||||
msg_type = (get_type_t)dlsym(loader, "ovr_Message_GetType");
|
||||
msg_id = (get_id_t)dlsym(loader, "ovr_Message_GetRequestID");
|
||||
msg_error = (is_error_t)dlsym(loader, "ovr_Message_IsError");
|
||||
}
|
||||
LOG("tracer active: %zu functions, platform loader %s", COUNT, loader ? "OK" : "MISSING");
|
||||
last_report = now();
|
||||
}
|
||||
|
||||
void *fp_trace_before(uint64_t idx, uint64_t arg0) __attribute__((visibility("hidden")));
|
||||
void *fp_trace_before(uint64_t idx, uint64_t arg0) {
|
||||
pthread_once(&once, init);
|
||||
if (idx >= COUNT) return NULL;
|
||||
if (!real_fn[idx] && loader) real_fn[idx] = dlsym(loader, NAMES[idx]);
|
||||
int n = __atomic_add_fetch(&calls[idx], 1, __ATOMIC_RELAXED);
|
||||
if (n <= 3 && !is_pop[idx]) LOG("call %s(0x%llx)%s", NAMES[idx], (unsigned long long)arg0,
|
||||
real_fn[idx] ? "" : " - not in the loader: returns 0");
|
||||
return real_fn[idx];
|
||||
}
|
||||
|
||||
static void report_pending(double t) {
|
||||
int shown = 0;
|
||||
for (int i = 0; i < PENDING; ++i) {
|
||||
if (!pending[i].id) continue;
|
||||
if (shown++ < 12)
|
||||
LOG("unanswered after %.0f s: request %llu from %s", t - pending[i].t, (unsigned long long)pending[i].id,
|
||||
NAMES[pending[i].fn]);
|
||||
}
|
||||
if (shown) LOG("%d request(s) without an answer", shown);
|
||||
}
|
||||
|
||||
uint64_t fp_trace_after(uint64_t idx, uint64_t ret) __attribute__((visibility("hidden")));
|
||||
uint64_t fp_trace_after(uint64_t idx, uint64_t ret) {
|
||||
if (idx >= COUNT) return ret;
|
||||
double t = now();
|
||||
pthread_mutex_lock(&lock);
|
||||
if (is_pop[idx]) {
|
||||
if (ret && msg_type && msg_id) {
|
||||
const void *m = (const void *)(uintptr_t)ret;
|
||||
uint64_t id = msg_id(m);
|
||||
int answered = -1;
|
||||
for (int i = 0; i < PENDING; ++i)
|
||||
if (pending[i].id && pending[i].id == id) { answered = pending[i].fn; pending[i].id = 0; break; }
|
||||
LOG("message type=0x%08x request=%llu error=%d%s%s", msg_type(m), (unsigned long long)id,
|
||||
msg_error ? msg_error(m) : -1, answered >= 0 ? " answers " : "", answered >= 0 ? NAMES[answered] : "");
|
||||
}
|
||||
} else {
|
||||
int n = calls[idx];
|
||||
if (n <= 3) LOG(" %s -> 0x%llx", NAMES[idx], (unsigned long long)ret);
|
||||
// request ids are small positive counters; pointers (handles) are large
|
||||
if (is_request[idx] && ret && ret < (1ull << 40)) {
|
||||
for (int i = 0; i < PENDING; ++i)
|
||||
if (!pending[i].id) { pending[i].id = ret; pending[i].fn = (int)idx; pending[i].t = t; break; }
|
||||
if (n <= 20) LOG("request %llu <- %s", (unsigned long long)ret, NAMES[idx]);
|
||||
}
|
||||
}
|
||||
if (t - last_report >= 10.0) {
|
||||
last_report = t;
|
||||
report_pending(t);
|
||||
}
|
||||
pthread_mutex_unlock(&lock);
|
||||
return ret;
|
||||
}
|
||||
|
||||
// The shared stub: x16 = function index. Saves the argument registers, gets the real function, calls it with them,
|
||||
// reports the result. x8 (indirect result) and d0-d7 (float/HFA arguments) are preserved, x0/x1/d0-d3 returned.
|
||||
__asm__(
|
||||
".text\n"
|
||||
".p2align 2\n"
|
||||
"fp_trace_common:\n"
|
||||
" stp x29, x30, [sp, #-224]!\n"
|
||||
" mov x29, sp\n"
|
||||
" stp x0, x1, [sp, #16]\n"
|
||||
" stp x2, x3, [sp, #32]\n"
|
||||
" stp x4, x5, [sp, #48]\n"
|
||||
" stp x6, x7, [sp, #64]\n"
|
||||
" stp d0, d1, [sp, #80]\n"
|
||||
" stp d2, d3, [sp, #96]\n"
|
||||
" stp d4, d5, [sp, #112]\n"
|
||||
" stp d6, d7, [sp, #128]\n"
|
||||
" stp x8, x16, [sp, #144]\n"
|
||||
" mov x0, x16\n"
|
||||
" ldr x1, [sp, #16]\n"
|
||||
" bl fp_trace_before\n"
|
||||
" str x0, [sp, #160]\n"
|
||||
" ldp x0, x1, [sp, #16]\n"
|
||||
" ldp x2, x3, [sp, #32]\n"
|
||||
" ldp x4, x5, [sp, #48]\n"
|
||||
" ldp x6, x7, [sp, #64]\n"
|
||||
" ldp d0, d1, [sp, #80]\n"
|
||||
" ldp d2, d3, [sp, #96]\n"
|
||||
" ldp d4, d5, [sp, #112]\n"
|
||||
" ldp d6, d7, [sp, #128]\n"
|
||||
" ldr x8, [sp, #144]\n"
|
||||
" ldr x17, [sp, #160]\n"
|
||||
" cbz x17, 1f\n"
|
||||
" blr x17\n"
|
||||
" b 2f\n"
|
||||
"1:\n"
|
||||
" mov x0, #0\n"
|
||||
" mov x1, #0\n"
|
||||
" movi d0, #0\n"
|
||||
"2:\n"
|
||||
" stp x0, x1, [sp, #16]\n"
|
||||
" stp d0, d1, [sp, #80]\n"
|
||||
" stp d2, d3, [sp, #96]\n"
|
||||
" ldr x0, [sp, #152]\n"
|
||||
" ldr x1, [sp, #16]\n"
|
||||
" bl fp_trace_after\n"
|
||||
" ldp x0, x1, [sp, #16]\n"
|
||||
" ldp d0, d1, [sp, #80]\n"
|
||||
" ldp d2, d3, [sp, #96]\n"
|
||||
" ldp x29, x30, [sp], #224\n"
|
||||
" ret\n");
|
||||
|
||||
// one exported stub per name: x16 = its index
|
||||
#define STR2(x) #x
|
||||
#define STR(x) STR2(x)
|
||||
static const int dummy_index_base __attribute__((unused)) = 0;
|
||||
#define N(name) \
|
||||
__asm__(".text\n.p2align 2\n.globl " #name "\n.type " #name ", %function\n" #name ":\n" \
|
||||
" mov x16, #" STR(__COUNTER__) "\n b fp_trace_common\n");
|
||||
#include "names.inc"
|
||||
#undef N
|
||||
+675
-10
@@ -8,6 +8,30 @@
|
||||
// at this shim (patches/frame/vk_sanitize.py). dlsym on the shim finds the functions below first and every other
|
||||
// symbol in its dependency, the real libvulkan.so. Valid pointers are kept; a pointer is dropped only when it isn't
|
||||
// readable memory or doesn't point at a structure type the parent may chain.
|
||||
// A depth/stencil resolve named in a subpass without a depth attachment is dropped as well: the Frame's driver
|
||||
// (Turnip) reads the missing depth attachment and crashes in vkCreateRenderPass2 (Unreal 5, e.g. Metro Awakening).
|
||||
//
|
||||
// Shader fixes (adapter setting vk_shader_fix, from a game's recipe): a SPIR-V module whose size and SHA-256 match is
|
||||
// copied with extra words inserted at a byte offset, e.g. stores that initialize locals a shader reads before writing
|
||||
// (an undefined loop counter hung the GPU in VR4's campaign). Every other module passes through unchanged.
|
||||
// Format: vk_shader_fix=<size>:<sha256 hex>:<byte offset>:<word>,<word>,...[;<next fix>]
|
||||
//
|
||||
// Query slots (adapter setting vk_query_slots=2, per game): with multiview, Vulkan counts a query that runs in a
|
||||
// multiview render pass as one query per view (N consecutive indices). Mesa's drivers (the Frame's Turnip) write a
|
||||
// zero result into the extra views' slots; Meta's Quest driver doesn't. Engines that allocate one slot per query
|
||||
// (Into The Radius 2, Unreal 5) then have the next object's occlusion query overwritten with "0 samples" and cull it:
|
||||
// models pop in and out. With the setting, occlusion pools get N slots per query; query i uses slot N*i, so the extra
|
||||
// views land in N*i+1.., and results are read from slot N*i only (view 0's count; Turnip counts every view there).
|
||||
//
|
||||
// Spec fixes (vk_spec_fixes=1, per game; found with the validation layer in Into The Radius 2, Unreal 5):
|
||||
// * depth/stencil images created without VK_IMAGE_USAGE_TRANSFER_DST_BIT are cleared with vkCmdClearDepthStencilImage
|
||||
// (VUID-vkCmdClearDepthStencilImage-pRanges-02659); Mesa's Turnip picks the image's compression from its usage, so
|
||||
// the flag is added at vkCreateImage.
|
||||
// * subpasses with Qualcomm's shader resolve (VK_SUBPASS_DESCRIPTION_SHADER_RESOLVE_BIT_QCOM) also name a depth
|
||||
// resolve attachment for a single-sampled depth attachment (VUID-VkSubpassDescription2-flags-04908, -03179): the
|
||||
// resolve is dropped (there is nothing to resolve from one sample).
|
||||
// * image memory barriers whose image is VK_NULL_HANDLE (Unreal 5, e.g. Metro Awakening) are left out of
|
||||
// vkCmdPipelineBarrier(2): Quest's driver skips them, the Frame's Turnip crashes on them.
|
||||
#define _GNU_SOURCE
|
||||
#include <vulkan/vulkan.h>
|
||||
#include <android/log.h>
|
||||
@@ -15,6 +39,7 @@
|
||||
#include <errno.h>
|
||||
#include <fcntl.h>
|
||||
#include <pthread.h>
|
||||
#include <stddef.h>
|
||||
#include <stdlib.h>
|
||||
#include <string.h>
|
||||
#include <unistd.h>
|
||||
@@ -27,14 +52,180 @@ static void *real_vk;
|
||||
static PFN_vkGetInstanceProcAddr real_gipa;
|
||||
static PFN_vkGetDeviceProcAddr real_gdpa;
|
||||
static PFN_vkCreateRenderPass2 real_rp2_trampoline;
|
||||
static PFN_vkCreateShaderModule real_csm_trampoline;
|
||||
static pthread_once_t once = PTHREAD_ONCE_INIT;
|
||||
|
||||
// ---------------------------------------------------------------- shader fixes (settings)
|
||||
|
||||
#define MAX_FIXES 16
|
||||
#define MAX_WORDS 64
|
||||
static struct {
|
||||
size_t size, offset;
|
||||
uint8_t sha[32];
|
||||
uint32_t words[MAX_WORDS];
|
||||
int nwords;
|
||||
} fixes[MAX_FIXES];
|
||||
static int nfixes;
|
||||
|
||||
static int hexval(char c) {
|
||||
return c >= '0' && c <= '9' ? c - '0' : c >= 'a' && c <= 'f' ? c - 'a' + 10 : c >= 'A' && c <= 'F' ? c - 'A' + 10 : -1;
|
||||
}
|
||||
|
||||
static void parse_fixes(char *v) {
|
||||
for (char *save = NULL, *item = strtok_r(v, ";", &save); item && nfixes < MAX_FIXES; item = strtok_r(NULL, ";", &save)) {
|
||||
char *f[4] = {0}, *save2 = NULL;
|
||||
int n = 0;
|
||||
for (char *t = strtok_r(item, ":", &save2); t && n < 4; t = strtok_r(NULL, ":", &save2)) f[n++] = t;
|
||||
if (n != 4 || strlen(f[1]) != 64) continue;
|
||||
int ok = 1;
|
||||
for (int i = 0; i < 32 && ok; i++) {
|
||||
int hi = hexval(f[1][2 * i]), lo = hexval(f[1][2 * i + 1]);
|
||||
if (hi < 0 || lo < 0) ok = 0; else fixes[nfixes].sha[i] = (uint8_t)(hi << 4 | lo);
|
||||
}
|
||||
fixes[nfixes].size = strtoul(f[0], NULL, 0);
|
||||
fixes[nfixes].offset = strtoul(f[2], NULL, 0);
|
||||
int nw = 0;
|
||||
for (char *save3 = NULL, *w = strtok_r(f[3], ",", &save3); w && nw < MAX_WORDS; w = strtok_r(NULL, ",", &save3))
|
||||
fixes[nfixes].words[nw++] = (uint32_t)strtoul(w, NULL, 0);
|
||||
fixes[nfixes].nwords = nw;
|
||||
if (ok && nw && fixes[nfixes].size % 4 == 0 && fixes[nfixes].offset % 4 == 0 &&
|
||||
fixes[nfixes].offset >= 20 && fixes[nfixes].offset <= fixes[nfixes].size)
|
||||
nfixes++;
|
||||
}
|
||||
}
|
||||
|
||||
static int query_slots = 1; // vk_query_slots: slots per occlusion query (1 = untouched)
|
||||
static int spec_fixes; // vk_spec_fixes: make two Unreal habits valid Vulkan (depth clears, depth resolves)
|
||||
#define VALIDATION_LAYER "VK_LAYER_KHRONOS_validation"
|
||||
static int validation; // vk_validation: add Khronos' validation layer (bundled in the APK) to the instance
|
||||
static int hide_fdm; // vk_hide_fdm: the game doesn't see VK_EXT_fragment_density_map(2)
|
||||
|
||||
static void read_settings(const char *path) {
|
||||
FILE *f = fopen(path, "r");
|
||||
if (!f) return;
|
||||
char line[4096];
|
||||
while (fgets(line, sizeof line, f)) {
|
||||
line[strcspn(line, "\r\n")] = 0;
|
||||
if (!strncmp(line, "vk_validation=", 14)) validation = atoi(line + 14) != 0;
|
||||
if (!strncmp(line, "vk_hide_fdm=", 12)) hide_fdm = atoi(line + 12) != 0;
|
||||
if (!strncmp(line, "vk_spec_fixes=", 14)) spec_fixes = atoi(line + 14) != 0;
|
||||
if (!strncmp(line, "vk_query_slots=", 15)) {
|
||||
int v = atoi(line + 15);
|
||||
query_slots = v == 1 ? 2 : v >= 2 && v <= 4 ? v : 1; // 1 = on (the settings dialog's switch) = 2 slots
|
||||
}
|
||||
if (!strncmp(line, "vk_shader_fix=", 14)) {
|
||||
nfixes = 0; // later sources override earlier ones (as for the adapter's settings)
|
||||
parse_fixes(line + 14);
|
||||
}
|
||||
}
|
||||
fclose(f);
|
||||
}
|
||||
|
||||
static void read_all_settings(void) {
|
||||
char path[600];
|
||||
Dl_info info;
|
||||
if (dladdr((void *)read_all_settings, &info) && info.dli_fname) {
|
||||
const char *slash = strrchr(info.dli_fname, '/');
|
||||
if (slash && slash - info.dli_fname < 500) {
|
||||
snprintf(path, sizeof path, "%.*s/libframe_settings.so", (int)(slash - info.dli_fname), info.dli_fname);
|
||||
read_settings(path);
|
||||
}
|
||||
}
|
||||
char pkg[256] = {0};
|
||||
FILE *f = fopen("/proc/self/cmdline", "r");
|
||||
if (f) {
|
||||
size_t n = fread(pkg, 1, sizeof pkg - 1, f);
|
||||
pkg[n] = 0;
|
||||
fclose(f);
|
||||
}
|
||||
char *colon = strchr(pkg, ':');
|
||||
if (colon) *colon = 0;
|
||||
if (*pkg && !strchr(pkg, '/')) {
|
||||
snprintf(path, sizeof path, "/sdcard/Android/data/%s/files/framebridge.conf", pkg);
|
||||
read_settings(path);
|
||||
}
|
||||
const char *env = getenv("FRAMEBRIDGE_CONFIG");
|
||||
if (env && *env) read_settings(env);
|
||||
}
|
||||
|
||||
// SHA-256 (FIPS 180-4), only run for modules whose size matches a fix
|
||||
static const uint32_t K[64] = {
|
||||
0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5, 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5, 0xd807aa98, 0x12835b01,
|
||||
0x243185be, 0x550c7dc3, 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174, 0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc,
|
||||
0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da, 0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7, 0xc6e00bf3, 0xd5a79147,
|
||||
0x06ca6351, 0x14292967, 0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13, 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,
|
||||
0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3, 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070, 0x19a4c116, 0x1e376c08,
|
||||
0x2748774c, 0x34b0bcb5, 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3, 0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208,
|
||||
0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2};
|
||||
#define ROR(x, n) (((x) >> (n)) | ((x) << (32 - (n))))
|
||||
|
||||
static void sha256_block(uint32_t h[8], const uint8_t *p) {
|
||||
uint32_t w[64];
|
||||
for (int i = 0; i < 16; i++) w[i] = (uint32_t)p[4 * i] << 24 | (uint32_t)p[4 * i + 1] << 16 | (uint32_t)p[4 * i + 2] << 8 | p[4 * i + 3];
|
||||
for (int i = 16; i < 64; i++) {
|
||||
uint32_t s0 = ROR(w[i - 15], 7) ^ ROR(w[i - 15], 18) ^ (w[i - 15] >> 3);
|
||||
uint32_t s1 = ROR(w[i - 2], 17) ^ ROR(w[i - 2], 19) ^ (w[i - 2] >> 10);
|
||||
w[i] = w[i - 16] + s0 + w[i - 7] + s1;
|
||||
}
|
||||
uint32_t a = h[0], b = h[1], c = h[2], d = h[3], e = h[4], f = h[5], g = h[6], hh = h[7];
|
||||
for (int i = 0; i < 64; i++) {
|
||||
uint32_t t1 = hh + (ROR(e, 6) ^ ROR(e, 11) ^ ROR(e, 25)) + ((e & f) ^ (~e & g)) + K[i] + w[i];
|
||||
uint32_t t2 = (ROR(a, 2) ^ ROR(a, 13) ^ ROR(a, 22)) + ((a & b) ^ (a & c) ^ (b & c));
|
||||
hh = g; g = f; f = e; e = d + t1; d = c; c = b; b = a; a = t1 + t2;
|
||||
}
|
||||
h[0] += a; h[1] += b; h[2] += c; h[3] += d; h[4] += e; h[5] += f; h[6] += g; h[7] += hh;
|
||||
}
|
||||
|
||||
static void sha256(const uint8_t *data, size_t len, uint8_t out[32]) {
|
||||
uint32_t h[8] = {0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a, 0x510e527f, 0x9b05688c, 0x1f83d9ab, 0x5be0cd19};
|
||||
size_t i = 0;
|
||||
for (; i + 64 <= len; i += 64) sha256_block(h, data + i);
|
||||
uint8_t tail[128] = {0};
|
||||
size_t rest = len - i;
|
||||
memcpy(tail, data + i, rest);
|
||||
tail[rest] = 0x80;
|
||||
size_t blocks = rest + 9 > 64 ? 2 : 1;
|
||||
uint64_t bits = (uint64_t)len * 8;
|
||||
for (int b = 0; b < 8; b++) tail[blocks * 64 - 1 - b] = (uint8_t)(bits >> (8 * b));
|
||||
for (size_t b = 0; b < blocks; b++) sha256_block(h, tail + 64 * b);
|
||||
for (int b = 0; b < 8; b++) {
|
||||
out[4 * b] = h[b] >> 24; out[4 * b + 1] = h[b] >> 16; out[4 * b + 2] = h[b] >> 8; out[4 * b + 3] = h[b];
|
||||
}
|
||||
}
|
||||
|
||||
// The fixed copy of `code` (caller frees) and its size, or NULL when no fix matches.
|
||||
static uint32_t *fixed_shader(const uint32_t *code, size_t size, size_t *out_size) {
|
||||
for (int i = 0; i < nfixes; i++) {
|
||||
if (fixes[i].size != size) continue;
|
||||
uint8_t digest[32];
|
||||
sha256((const uint8_t *)code, size, digest);
|
||||
if (memcmp(digest, fixes[i].sha, 32)) continue;
|
||||
size_t extra = (size_t)fixes[i].nwords * 4;
|
||||
uint32_t *copy = malloc(size + extra);
|
||||
if (!copy) return NULL;
|
||||
memcpy(copy, code, fixes[i].offset);
|
||||
memcpy((uint8_t *)copy + fixes[i].offset, fixes[i].words, extra);
|
||||
memcpy((uint8_t *)copy + fixes[i].offset + extra, (const uint8_t *)code + fixes[i].offset, size - fixes[i].offset);
|
||||
*out_size = size + extra;
|
||||
return copy;
|
||||
}
|
||||
return NULL;
|
||||
}
|
||||
|
||||
static void init(void) {
|
||||
read_all_settings();
|
||||
if (nfixes) LOG("vk shim: %d shader fix(es) configured", nfixes);
|
||||
if (query_slots > 1) LOG("vk shim: %d slots per occlusion query", query_slots);
|
||||
if (validation) LOG("vk shim: adding %s to the instance", VALIDATION_LAYER);
|
||||
if (hide_fdm) LOG("vk shim: fragment density map extensions hidden from the game");
|
||||
if (spec_fixes) LOG("vk shim: Vulkan spec fixes on (depth images can be cleared, no depth resolve in shader-resolve "
|
||||
"subpasses)");
|
||||
real_vk = dlopen("libvulkan.so", RTLD_NOW | RTLD_LOCAL);
|
||||
if (real_vk) {
|
||||
real_gipa = (PFN_vkGetInstanceProcAddr)dlsym(real_vk, "vkGetInstanceProcAddr");
|
||||
real_gdpa = (PFN_vkGetDeviceProcAddr)dlsym(real_vk, "vkGetDeviceProcAddr");
|
||||
real_rp2_trampoline = (PFN_vkCreateRenderPass2)dlsym(real_vk, "vkCreateRenderPass2");
|
||||
real_csm_trampoline = (PFN_vkCreateShaderModule)dlsym(real_vk, "vkCreateShaderModule");
|
||||
}
|
||||
LOG("vk shim: libvulkan.so %s", real_gipa && real_gdpa ? "OK" : "MISSING");
|
||||
}
|
||||
@@ -165,6 +356,24 @@ static const void *clean_chain(Arena *a, const void *head, int *fixes) {
|
||||
return first;
|
||||
}
|
||||
|
||||
static int resolves_logged, sourceless_logged;
|
||||
|
||||
// A subpass without a depth/stencil attachment that still names a depth/stencil resolve attachment (Unreal 5, e.g.
|
||||
// Metro Awakening; valid Vulkan only while that resolve is VK_ATTACHMENT_UNUSED): the Frame's Turnip reads the
|
||||
// subpass's depth attachment whenever a resolve attachment is named and crashes on the NULL pointer in
|
||||
// vkCreateRenderPass2. With nothing to resolve from, no resolve attachment means the same thing.
|
||||
// `sp` is our copy; its known pNext members are copies too (clean_chain), the first unknown one ends the walk.
|
||||
static void drop_sourceless_resolve(VkSubpassDescription2 *sp, uint32_t index, int *fixes) {
|
||||
for (VkBaseOutStructure *n = (VkBaseOutStructure *)sp->pNext; n && chain_size(n->sType); n = n->pNext) {
|
||||
if (n->sType != VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_DEPTH_STENCIL_RESOLVE) continue;
|
||||
VkSubpassDescriptionDepthStencilResolve *r = (void *)n;
|
||||
if (!r->pDepthStencilResolveAttachment) continue;
|
||||
r->pDepthStencilResolveAttachment = NULL;
|
||||
(*fixes)++;
|
||||
if (sourceless_logged++ < 5) LOG("vk shim: dropped the depth resolve of subpass %u (no depth attachment)", index);
|
||||
}
|
||||
}
|
||||
|
||||
static VkRenderPassCreateInfo2 clean_create_info(Arena *a, const VkRenderPassCreateInfo2 *ci, int *fixes) {
|
||||
VkRenderPassCreateInfo2 out = *ci;
|
||||
out.pNext = clean_chain(a, ci->pNext, fixes);
|
||||
@@ -185,10 +394,32 @@ static VkRenderPassCreateInfo2 clean_create_info(Arena *a, const VkRenderPassCre
|
||||
sp[i].pColorAttachments = clean_refs(a, sp[i].pColorAttachments, sp[i].colorAttachmentCount, fixes);
|
||||
sp[i].pResolveAttachments = clean_refs(a, sp[i].pResolveAttachments, sp[i].colorAttachmentCount, fixes);
|
||||
sp[i].pDepthStencilAttachment = clean_refs(a, sp[i].pDepthStencilAttachment, 1, fixes);
|
||||
if (!sp[i].pDepthStencilAttachment) drop_sourceless_resolve(&sp[i], i, fixes);
|
||||
}
|
||||
out.pSubpasses = sp;
|
||||
}
|
||||
}
|
||||
if (spec_fixes && out.pSubpasses) {
|
||||
VkSubpassDescription2 *sp = (VkSubpassDescription2 *)out.pSubpasses;
|
||||
for (uint32_t i = 0; i < ci->subpassCount; i++) {
|
||||
if (!(sp[i].flags & 0x8 /* VK_SUBPASS_DESCRIPTION_SHADER_RESOLVE_BIT_QCOM */) || !sp[i].pDepthStencilAttachment)
|
||||
continue;
|
||||
uint32_t att = sp[i].pDepthStencilAttachment->attachment;
|
||||
if (att == VK_ATTACHMENT_UNUSED || att >= ci->attachmentCount || !ci->pAttachments ||
|
||||
ci->pAttachments[att].samples != VK_SAMPLE_COUNT_1_BIT)
|
||||
continue;
|
||||
for (VkBaseOutStructure *n = (VkBaseOutStructure *)sp[i].pNext; n; n = n->pNext) {
|
||||
if (n->sType != VK_STRUCTURE_TYPE_SUBPASS_DESCRIPTION_DEPTH_STENCIL_RESOLVE) continue;
|
||||
VkSubpassDescriptionDepthStencilResolve *r = (void *)n;
|
||||
if (r->pDepthStencilResolveAttachment &&
|
||||
r->pDepthStencilResolveAttachment->attachment != VK_ATTACHMENT_UNUSED) {
|
||||
r->pDepthStencilResolveAttachment = NULL;
|
||||
(*fixes)++;
|
||||
if (resolves_logged++ < 5) LOG("vk shim: dropped the depth resolve of shader-resolve subpass %u", i);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
if (ci->pDependencies && ci->dependencyCount) {
|
||||
VkSubpassDependency2 *dep = arena_dup(a, ci->pDependencies, sizeof *dep * ci->dependencyCount);
|
||||
if (dep) {
|
||||
@@ -203,17 +434,31 @@ static VkRenderPassCreateInfo2 clean_create_info(Arena *a, const VkRenderPassCre
|
||||
// ---------------------------------------------------------------- entry points
|
||||
|
||||
#define MAX_DEVICES 8
|
||||
static struct { VkDevice device; PFN_vkCreateRenderPass2 rp2, rp2khr; } devices[MAX_DEVICES];
|
||||
enum { FN_RP2, FN_RP2KHR, FN_CSM, FN_CIMG, FN_CQP, FN_DQP, FN_BQ, FN_EQ, FN_CRQP, FN_RQP, FN_RQPEXT, FN_GQPR, FN_CCQPR,
|
||||
FN_PB, FN_PB2, FN_PB2KHR, FN_EDEP, FN_CDEV, FN_CIV, FN_COUNT };
|
||||
static const char *const FN_NAMES[FN_COUNT] = {
|
||||
"vkCreateRenderPass2", "vkCreateRenderPass2KHR", "vkCreateShaderModule", "vkCreateImage", "vkCreateQueryPool", "vkDestroyQueryPool",
|
||||
"vkCmdBeginQuery", "vkCmdEndQuery", "vkCmdResetQueryPool", "vkResetQueryPool", "vkResetQueryPoolEXT",
|
||||
"vkGetQueryPoolResults", "vkCmdCopyQueryPoolResults", "vkCmdPipelineBarrier", "vkCmdPipelineBarrier2",
|
||||
"vkCmdPipelineBarrier2KHR", "vkEnumerateDeviceExtensionProperties", "vkCreateDevice", "vkCreateImageView"};
|
||||
static struct { VkDevice device; PFN_vkVoidFunction fn[FN_COUNT]; } devices[MAX_DEVICES];
|
||||
static PFN_vkCreateRenderPass2 fallback_rp2khr; // from vkGetInstanceProcAddr
|
||||
static pthread_mutex_t dev_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
|
||||
static PFN_vkCreateRenderPass2 real_for(VkDevice device, int khr) {
|
||||
PFN_vkCreateRenderPass2 fn = NULL;
|
||||
// The next implementation of a wrapped device function: the one vkGetDeviceProcAddr returned for this device, else
|
||||
// a fresh lookup, else the loader's trampoline.
|
||||
static PFN_vkVoidFunction device_fn(VkDevice device, int which) {
|
||||
PFN_vkVoidFunction fn = NULL;
|
||||
pthread_mutex_lock(&dev_lock);
|
||||
for (int i = 0; i < MAX_DEVICES; i++)
|
||||
if (devices[i].device == device) { fn = khr ? devices[i].rp2khr : devices[i].rp2; break; }
|
||||
if (devices[i].device == device) { fn = devices[i].fn[which]; break; }
|
||||
pthread_mutex_unlock(&dev_lock);
|
||||
if (!fn && real_gdpa) fn = (PFN_vkCreateRenderPass2)real_gdpa(device, khr ? "vkCreateRenderPass2KHR" : "vkCreateRenderPass2");
|
||||
if (!fn && real_gdpa) fn = real_gdpa(device, FN_NAMES[which]);
|
||||
return fn;
|
||||
}
|
||||
|
||||
static PFN_vkCreateRenderPass2 real_for(VkDevice device, int khr) {
|
||||
PFN_vkCreateRenderPass2 fn = (PFN_vkCreateRenderPass2)device_fn(device, khr ? FN_RP2KHR : FN_RP2);
|
||||
if (!fn) fn = khr ? fallback_rp2khr : real_rp2_trampoline;
|
||||
return fn;
|
||||
}
|
||||
@@ -246,10 +491,426 @@ static VKAPI_ATTR VkResult VKAPI_CALL create_render_pass2_khr(VkDevice device, c
|
||||
return create_render_pass2(device, ci, alloc, rp, 1);
|
||||
}
|
||||
|
||||
static int fixes_applied;
|
||||
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkCreateShaderModule(VkDevice device, const VkShaderModuleCreateInfo *ci,
|
||||
const VkAllocationCallbacks *alloc, VkShaderModule *module) {
|
||||
pthread_once(&once, init);
|
||||
PFN_vkCreateShaderModule real = (PFN_vkCreateShaderModule)device_fn(device, FN_CSM);
|
||||
if (!real) real = real_csm_trampoline;
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
size_t size = 0;
|
||||
uint32_t *code = nfixes && ci && ci->pCode ? fixed_shader(ci->pCode, ci->codeSize, &size) : NULL;
|
||||
if (!code) return real(device, ci, alloc, module);
|
||||
VkShaderModuleCreateInfo copy = *ci; // the caller's create info and code stay untouched
|
||||
copy.codeSize = size;
|
||||
copy.pCode = code;
|
||||
VkResult r = real(device, ©, alloc, module);
|
||||
free(code);
|
||||
if (fixes_applied++ < 20) LOG("vk shim: fixed shader module (%zu -> %zu bytes): %d", ci->codeSize, size, r);
|
||||
return r;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- query slots
|
||||
|
||||
// Command buffer functions carry no VkDevice: their next implementation is the one the (single) game device got.
|
||||
static PFN_vkVoidFunction cmd_fn[FN_COUNT];
|
||||
static PFN_vkVoidFunction any_fn(VkDevice device, int which) {
|
||||
PFN_vkVoidFunction fn = device ? device_fn(device, which) : NULL;
|
||||
if (!fn) fn = cmd_fn[which];
|
||||
if (!fn && real_vk) fn = (PFN_vkVoidFunction)dlsym(real_vk, FN_NAMES[which]);
|
||||
return fn;
|
||||
}
|
||||
|
||||
#define MAX_POOLS 4096
|
||||
static uint64_t occlusion_pools[MAX_POOLS]; // open addressing; 0 = empty, 1 = deleted
|
||||
static pthread_mutex_t pool_lock = PTHREAD_MUTEX_INITIALIZER;
|
||||
static int pools_logged;
|
||||
|
||||
static unsigned pool_hash(uint64_t h) { return (unsigned)((h * 0x9E3779B97F4A7C15ull) >> 52) % MAX_POOLS; }
|
||||
|
||||
static void pool_add(VkQueryPool pool) {
|
||||
uint64_t h = (uint64_t)pool;
|
||||
pthread_mutex_lock(&pool_lock);
|
||||
for (unsigned i = pool_hash(h), n = 0; n < MAX_POOLS; i = (i + 1) % MAX_POOLS, n++)
|
||||
if (occlusion_pools[i] <= 1) { occlusion_pools[i] = h; break; }
|
||||
pthread_mutex_unlock(&pool_lock);
|
||||
}
|
||||
|
||||
static int pool_slot(VkQueryPool pool, int remove) {
|
||||
uint64_t h = (uint64_t)pool;
|
||||
if (h <= 1) return 0;
|
||||
int found = 0;
|
||||
pthread_mutex_lock(&pool_lock);
|
||||
for (unsigned i = pool_hash(h), n = 0; n < MAX_POOLS && occlusion_pools[i]; i = (i + 1) % MAX_POOLS, n++)
|
||||
if (occlusion_pools[i] == h) {
|
||||
found = 1;
|
||||
if (remove) occlusion_pools[i] = 1;
|
||||
break;
|
||||
}
|
||||
pthread_mutex_unlock(&pool_lock);
|
||||
return found;
|
||||
}
|
||||
|
||||
// the remapped first query of `pool` (unchanged for pools that aren't remapped)
|
||||
static uint32_t q(VkQueryPool pool, uint32_t query) { return pool_slot(pool, 0) ? query * (uint32_t)query_slots : query; }
|
||||
|
||||
static VKAPI_ATTR VkResult VKAPI_CALL create_query_pool(VkDevice device, const VkQueryPoolCreateInfo *ci,
|
||||
const VkAllocationCallbacks *alloc, VkQueryPool *pool) {
|
||||
PFN_vkCreateQueryPool real = (PFN_vkCreateQueryPool)any_fn(device, FN_CQP);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!ci || ci->queryType != VK_QUERY_TYPE_OCCLUSION || query_slots < 2) return real(device, ci, alloc, pool);
|
||||
VkQueryPoolCreateInfo copy = *ci;
|
||||
copy.queryCount = ci->queryCount * (uint32_t)query_slots;
|
||||
VkResult r = real(device, ©, alloc, pool);
|
||||
if (r == VK_SUCCESS) {
|
||||
pool_add(*pool);
|
||||
if (pools_logged++ < 5)
|
||||
LOG("vk shim: occlusion query pool %u -> %u slots", ci->queryCount, copy.queryCount);
|
||||
}
|
||||
return r;
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL destroy_query_pool(VkDevice device, VkQueryPool pool, const VkAllocationCallbacks *alloc) {
|
||||
PFN_vkDestroyQueryPool real = (PFN_vkDestroyQueryPool)any_fn(device, FN_DQP);
|
||||
pool_slot(pool, 1);
|
||||
if (real) real(device, pool, alloc);
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_begin_query(VkCommandBuffer cb, VkQueryPool pool, uint32_t query,
|
||||
VkQueryControlFlags flags) {
|
||||
PFN_vkCmdBeginQuery real = (PFN_vkCmdBeginQuery)any_fn(NULL, FN_BQ);
|
||||
if (real) real(cb, pool, q(pool, query), flags);
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_end_query(VkCommandBuffer cb, VkQueryPool pool, uint32_t query) {
|
||||
PFN_vkCmdEndQuery real = (PFN_vkCmdEndQuery)any_fn(NULL, FN_EQ);
|
||||
if (real) real(cb, pool, q(pool, query));
|
||||
}
|
||||
|
||||
static uint32_t span(VkQueryPool pool, uint32_t count) { return pool_slot(pool, 0) ? count * (uint32_t)query_slots : count; }
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_reset_query_pool(VkCommandBuffer cb, VkQueryPool pool, uint32_t first, uint32_t count) {
|
||||
PFN_vkCmdResetQueryPool real = (PFN_vkCmdResetQueryPool)any_fn(NULL, FN_CRQP);
|
||||
if (real) real(cb, pool, q(pool, first), span(pool, count));
|
||||
}
|
||||
|
||||
static void reset_query_pool(VkDevice device, VkQueryPool pool, uint32_t first, uint32_t count, int ext) {
|
||||
PFN_vkResetQueryPool real = (PFN_vkResetQueryPool)any_fn(device, ext ? FN_RQPEXT : FN_RQP);
|
||||
if (real) real(device, pool, q(pool, first), span(pool, count));
|
||||
}
|
||||
static VKAPI_ATTR void VKAPI_CALL host_reset_query_pool(VkDevice d, VkQueryPool p, uint32_t f, uint32_t c) { reset_query_pool(d, p, f, c, 0); }
|
||||
static VKAPI_ATTR void VKAPI_CALL host_reset_query_pool_ext(VkDevice d, VkQueryPool p, uint32_t f, uint32_t c) { reset_query_pool(d, p, f, c, 1); }
|
||||
|
||||
// Results come from slot N*i of each query, one query at a time: the extra slots are only written in multiview passes,
|
||||
// so reading them (with VK_QUERY_RESULT_WAIT_BIT) could wait forever.
|
||||
static VKAPI_ATTR VkResult VKAPI_CALL get_query_pool_results(VkDevice device, VkQueryPool pool, uint32_t first, uint32_t count,
|
||||
size_t size, void *data, VkDeviceSize stride,
|
||||
VkQueryResultFlags flags) {
|
||||
PFN_vkGetQueryPoolResults real = (PFN_vkGetQueryPoolResults)any_fn(device, FN_GQPR);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!pool_slot(pool, 0) || !count) return real(device, pool, first, count, size, data, stride, flags);
|
||||
VkResult result = VK_SUCCESS;
|
||||
for (uint32_t i = 0; i < count; i++) {
|
||||
size_t offset = (size_t)(i * stride);
|
||||
if (offset >= size) break;
|
||||
VkResult r = real(device, pool, (first + i) * (uint32_t)query_slots, 1, size - offset, (uint8_t *)data + offset,
|
||||
stride, flags);
|
||||
if (r < 0) return r;
|
||||
if (r == VK_NOT_READY) result = VK_NOT_READY;
|
||||
}
|
||||
return result;
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_copy_query_pool_results(VkCommandBuffer cb, VkQueryPool pool, uint32_t first,
|
||||
uint32_t count, VkBuffer buffer, VkDeviceSize offset,
|
||||
VkDeviceSize stride, VkQueryResultFlags flags) {
|
||||
PFN_vkCmdCopyQueryPoolResults real = (PFN_vkCmdCopyQueryPoolResults)any_fn(NULL, FN_CCQPR);
|
||||
if (!real) return;
|
||||
if (!pool_slot(pool, 0)) { real(cb, pool, first, count, buffer, offset, stride, flags); return; }
|
||||
for (uint32_t i = 0; i < count; i++)
|
||||
real(cb, pool, (first + i) * (uint32_t)query_slots, 1, buffer, offset + i * stride, stride, flags);
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- spec fixes: depth images
|
||||
|
||||
static int is_depth_format(VkFormat f) {
|
||||
return f == VK_FORMAT_D16_UNORM || f == VK_FORMAT_X8_D24_UNORM_PACK32 || f == VK_FORMAT_D32_SFLOAT ||
|
||||
f == VK_FORMAT_S8_UINT || f == VK_FORMAT_D16_UNORM_S8_UINT || f == VK_FORMAT_D24_UNORM_S8_UINT ||
|
||||
f == VK_FORMAT_D32_SFLOAT_S8_UINT;
|
||||
}
|
||||
static int images_logged;
|
||||
|
||||
static VKAPI_ATTR VkResult VKAPI_CALL create_image(VkDevice device, const VkImageCreateInfo *ci,
|
||||
const VkAllocationCallbacks *alloc, VkImage *image) {
|
||||
PFN_vkCreateImage real = (PFN_vkCreateImage)any_fn(device, FN_CIMG);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!spec_fixes || !ci || !is_depth_format(ci->format) || !(ci->usage & VK_IMAGE_USAGE_DEPTH_STENCIL_ATTACHMENT_BIT) ||
|
||||
(ci->usage & (VK_IMAGE_USAGE_TRANSFER_DST_BIT | VK_IMAGE_USAGE_TRANSIENT_ATTACHMENT_BIT))) // transient: no
|
||||
return real(device, ci, alloc, image);
|
||||
VkImageCreateInfo copy = *ci;
|
||||
copy.usage |= VK_IMAGE_USAGE_TRANSFER_DST_BIT;
|
||||
VkResult r = real(device, ©, alloc, image);
|
||||
if (images_logged++ < 5) LOG("vk shim: depth image %ux%u format %d can be cleared now: %d", ci->extent.width,
|
||||
ci->extent.height, ci->format, r);
|
||||
if (r != VK_SUCCESS) r = real(device, ci, alloc, image); // the flag isn't allowed here: as the game asked
|
||||
return r;
|
||||
}
|
||||
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkCreateImage(VkDevice d, const VkImageCreateInfo *ci, const VkAllocationCallbacks *a,
|
||||
VkImage *img) {
|
||||
pthread_once(&once, init);
|
||||
return create_image(d, ci, a, img);
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- validation (diagnostics)
|
||||
|
||||
static PFN_vkCreateInstance real_ci;
|
||||
|
||||
static VKAPI_ATTR VkResult VKAPI_CALL create_instance(const VkInstanceCreateInfo *ci, const VkAllocationCallbacks *a,
|
||||
VkInstance *inst) {
|
||||
if (!real_ci && real_vk) real_ci = (PFN_vkCreateInstance)dlsym(real_vk, "vkCreateInstance");
|
||||
if (!real_ci) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!validation || !ci) return real_ci(ci, a, inst);
|
||||
for (uint32_t i = 0; i < ci->enabledLayerCount; i++)
|
||||
if (!strcmp(ci->ppEnabledLayerNames[i], VALIDATION_LAYER)) return real_ci(ci, a, inst);
|
||||
const char **names = malloc(sizeof(char *) * (ci->enabledLayerCount + 1));
|
||||
if (!names) return real_ci(ci, a, inst);
|
||||
for (uint32_t i = 0; i < ci->enabledLayerCount; i++) names[i] = ci->ppEnabledLayerNames[i];
|
||||
names[ci->enabledLayerCount] = VALIDATION_LAYER;
|
||||
VkInstanceCreateInfo copy = *ci;
|
||||
copy.enabledLayerCount = ci->enabledLayerCount + 1;
|
||||
copy.ppEnabledLayerNames = names;
|
||||
VkResult r = real_ci(©, a, inst);
|
||||
LOG("vk shim: vkCreateInstance with %s: %d", VALIDATION_LAYER, r);
|
||||
if (r == VK_ERROR_LAYER_NOT_PRESENT) r = real_ci(ci, a, inst); // not bundled: start without it
|
||||
free(names);
|
||||
return r;
|
||||
}
|
||||
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkCreateInstance(const VkInstanceCreateInfo *ci, const VkAllocationCallbacks *a,
|
||||
VkInstance *inst) {
|
||||
pthread_once(&once, init);
|
||||
return create_instance(ci, a, inst);
|
||||
}
|
||||
|
||||
// The same entry points for engines that dlsym them from the shim instead of asking vkGet*ProcAddr
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkCreateQueryPool(VkDevice d, const VkQueryPoolCreateInfo *ci,
|
||||
const VkAllocationCallbacks *a, VkQueryPool *p) {
|
||||
pthread_once(&once, init);
|
||||
return create_query_pool(d, ci, a, p);
|
||||
}
|
||||
EXPORT VKAPI_ATTR void VKAPI_CALL vkDestroyQueryPool(VkDevice d, VkQueryPool p, const VkAllocationCallbacks *a) {
|
||||
pthread_once(&once, init);
|
||||
destroy_query_pool(d, p, a);
|
||||
}
|
||||
EXPORT VKAPI_ATTR void VKAPI_CALL vkCmdBeginQuery(VkCommandBuffer cb, VkQueryPool p, uint32_t i, VkQueryControlFlags f) {
|
||||
pthread_once(&once, init);
|
||||
cmd_begin_query(cb, p, i, f);
|
||||
}
|
||||
EXPORT VKAPI_ATTR void VKAPI_CALL vkCmdEndQuery(VkCommandBuffer cb, VkQueryPool p, uint32_t i) {
|
||||
pthread_once(&once, init);
|
||||
cmd_end_query(cb, p, i);
|
||||
}
|
||||
EXPORT VKAPI_ATTR void VKAPI_CALL vkCmdResetQueryPool(VkCommandBuffer cb, VkQueryPool p, uint32_t f, uint32_t c) {
|
||||
pthread_once(&once, init);
|
||||
cmd_reset_query_pool(cb, p, f, c);
|
||||
}
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkGetQueryPoolResults(VkDevice d, VkQueryPool p, uint32_t f, uint32_t c, size_t s,
|
||||
void *data, VkDeviceSize st, VkQueryResultFlags fl) {
|
||||
pthread_once(&once, init);
|
||||
return get_query_pool_results(d, p, f, c, s, data, st, fl);
|
||||
}
|
||||
EXPORT VKAPI_ATTR void VKAPI_CALL vkCmdCopyQueryPoolResults(VkCommandBuffer cb, VkQueryPool p, uint32_t f, uint32_t c,
|
||||
VkBuffer b, VkDeviceSize o, VkDeviceSize st,
|
||||
VkQueryResultFlags fl) {
|
||||
pthread_once(&once, init);
|
||||
cmd_copy_query_pool_results(cb, p, f, c, b, o, st, fl);
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- fragment density map (vk_hide_fdm)
|
||||
|
||||
// Unreal 5 turns on fragment-density-map foveation when the driver offers VK_EXT_fragment_density_map (the Frame's
|
||||
// Turnip does) and expects the density map from the headset's runtime, which the Frame doesn't provide (e.g. Metro
|
||||
// Awakening: image views and barriers for a VK_NULL_HANDLE image, then a crash). Hidden, the game renders without it;
|
||||
// Valve's own FDM layer sits below this shim and isn't affected.
|
||||
static int is_fdm_extension(const char *name) { return strstr(name, "fragment_density_map") != NULL; }
|
||||
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkEnumerateDeviceExtensionProperties(VkPhysicalDevice pd, const char *layer,
|
||||
uint32_t *count, VkExtensionProperties *props) {
|
||||
pthread_once(&once, init);
|
||||
PFN_vkEnumerateDeviceExtensionProperties real = (PFN_vkEnumerateDeviceExtensionProperties)any_fn(NULL, FN_EDEP);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!hide_fdm || layer || !count) return real(pd, layer, count, props);
|
||||
uint32_t n = 0;
|
||||
VkResult r = real(pd, NULL, &n, NULL);
|
||||
if (r != VK_SUCCESS) return r;
|
||||
VkExtensionProperties *all = calloc(n ? n : 1, sizeof *all);
|
||||
if (!all) return VK_ERROR_OUT_OF_HOST_MEMORY;
|
||||
r = real(pd, NULL, &n, all);
|
||||
if (r < 0) { free(all); return r; }
|
||||
uint32_t kept = 0;
|
||||
for (uint32_t i = 0; i < n; i++)
|
||||
if (!is_fdm_extension(all[i].extensionName)) all[kept++] = all[i];
|
||||
if (!props) {
|
||||
*count = kept;
|
||||
free(all);
|
||||
return VK_SUCCESS;
|
||||
}
|
||||
uint32_t c = *count < kept ? *count : kept;
|
||||
memcpy(props, all, c * sizeof *props);
|
||||
*count = c;
|
||||
free(all);
|
||||
return c < kept ? VK_INCOMPLETE : VK_SUCCESS;
|
||||
}
|
||||
|
||||
EXPORT VKAPI_ATTR VkResult VKAPI_CALL vkCreateDevice(VkPhysicalDevice pd, const VkDeviceCreateInfo *ci,
|
||||
const VkAllocationCallbacks *alloc, VkDevice *device) {
|
||||
pthread_once(&once, init);
|
||||
PFN_vkCreateDevice real = (PFN_vkCreateDevice)any_fn(NULL, FN_CDEV);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!ci || (!hide_fdm && !spec_fixes)) return real(pd, ci, alloc, device);
|
||||
char names[1024] = "";
|
||||
VkDeviceCreateInfo copy = *ci;
|
||||
const char **kept = calloc(ci->enabledExtensionCount + 1, sizeof *kept);
|
||||
if (!kept) return VK_ERROR_OUT_OF_HOST_MEMORY;
|
||||
copy.enabledExtensionCount = 0;
|
||||
for (uint32_t i = 0; i < ci->enabledExtensionCount; i++) {
|
||||
const char *e = ci->ppEnabledExtensionNames[i];
|
||||
size_t len = strlen(names);
|
||||
snprintf(names + len, sizeof names - len, "%s%s", len ? " " : "", e + (strncmp(e, "VK_", 3) ? 0 : 3));
|
||||
if (hide_fdm && is_fdm_extension(e)) continue;
|
||||
kept[copy.enabledExtensionCount++] = e;
|
||||
}
|
||||
copy.ppEnabledExtensionNames = kept;
|
||||
LOG("vk shim: vkCreateDevice with %u extension(s): %s", ci->enabledExtensionCount, names);
|
||||
VkResult r = real(pd, ©, alloc, device);
|
||||
free(kept);
|
||||
return r;
|
||||
}
|
||||
|
||||
static int null_views_logged;
|
||||
|
||||
// An image view of VK_NULL_HANDLE crashes the Frame's Turnip (it reads the image); with vk_spec_fixes it fails with
|
||||
// an error instead, which names the call in the game's own log.
|
||||
static VKAPI_ATTR VkResult VKAPI_CALL create_image_view(VkDevice device, const VkImageViewCreateInfo *ci,
|
||||
const VkAllocationCallbacks *alloc, VkImageView *view) {
|
||||
PFN_vkCreateImageView real = (PFN_vkCreateImageView)any_fn(device, FN_CIV);
|
||||
if (!real) return VK_ERROR_INITIALIZATION_FAILED;
|
||||
if (!ci || ci->image) return real(device, ci, alloc, view);
|
||||
if (null_views_logged++ < 10)
|
||||
LOG("vk shim: refused an image view without an image (format %d, view type %d, aspect 0x%x, layers %u)",
|
||||
ci->format, ci->viewType, ci->subresourceRange.aspectMask, ci->subresourceRange.layerCount);
|
||||
if (view) *view = VK_NULL_HANDLE;
|
||||
return VK_ERROR_INITIALIZATION_FAILED;
|
||||
}
|
||||
|
||||
// ---------------------------------------------------------------- image barriers without an image (vk_spec_fixes)
|
||||
|
||||
// Unreal 5 (e.g. Metro Awakening) records image memory barriers whose image is VK_NULL_HANDLE (invalid Vulkan,
|
||||
// VUID-VkImageMemoryBarrier-image-parameter). Quest's driver skips them; the Frame's Turnip reads the image and
|
||||
// crashes in vkCmdPipelineBarrier. They change nothing, so they are left out.
|
||||
static int null_barriers_logged;
|
||||
|
||||
// The barriers without the ones naming no image: `src` itself when there are none, else a copy in `buf` (or a malloc'd
|
||||
// one in *heap, which the caller frees); *count is updated.
|
||||
static const void *without_null_images(const void *src, uint32_t *count, size_t size, size_t image_offset, void *buf,
|
||||
size_t buf_size, void **heap) {
|
||||
uint32_t n = *count, kept = 0;
|
||||
for (uint32_t i = 0; i < n; i++)
|
||||
if (*(const uint64_t *)((const char *)src + i * size + image_offset)) kept++;
|
||||
if (kept == n) return src;
|
||||
char *out = n * size <= buf_size ? buf : (*heap = malloc(n * size));
|
||||
if (!out) return src;
|
||||
for (uint32_t i = 0, j = 0; i < n; i++)
|
||||
if (*(const uint64_t *)((const char *)src + i * size + image_offset)) memcpy(out + j++ * size, (const char *)src + i * size, size);
|
||||
if (null_barriers_logged++ < 5) {
|
||||
// in both barrier versions oldLayout/newLayout sit 16 bytes before the image, the subresource range 8 after it
|
||||
const char *first = NULL;
|
||||
for (uint32_t i = 0; i < n && !first; i++)
|
||||
if (!*(const uint64_t *)((const char *)src + i * size + image_offset)) first = (const char *)src + i * size;
|
||||
const uint32_t *layouts = (const uint32_t *)(first + image_offset - 16); // oldLayout, newLayout, srcQFI, dstQFI
|
||||
const uint32_t *range = (const uint32_t *)(first + image_offset + 8); // aspect, mip, levels, layer, layers
|
||||
LOG("vk shim: left out %u image barrier(s) without an image (first: layout %u -> %u, aspect 0x%x, layers %u)",
|
||||
n - kept, layouts[0], layouts[1], range[0], range[4]);
|
||||
}
|
||||
*count = kept;
|
||||
return out;
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_pipeline_barrier(VkCommandBuffer cb, VkPipelineStageFlags src, VkPipelineStageFlags dst,
|
||||
VkDependencyFlags flags, uint32_t memory_count,
|
||||
const VkMemoryBarrier *memory, uint32_t buffer_count,
|
||||
const VkBufferMemoryBarrier *buffers, uint32_t image_count,
|
||||
const VkImageMemoryBarrier *images) {
|
||||
PFN_vkCmdPipelineBarrier real = (PFN_vkCmdPipelineBarrier)any_fn(NULL, FN_PB);
|
||||
if (!real) return;
|
||||
VkImageMemoryBarrier buf[16];
|
||||
void *heap = NULL;
|
||||
const VkImageMemoryBarrier *kept = images && image_count
|
||||
? without_null_images(images, &image_count, sizeof *images, offsetof(VkImageMemoryBarrier, image), buf, sizeof buf, &heap)
|
||||
: images;
|
||||
real(cb, src, dst, flags, memory_count, memory, buffer_count, buffers, image_count, kept);
|
||||
free(heap);
|
||||
}
|
||||
|
||||
static void pipeline_barrier2(VkCommandBuffer cb, const VkDependencyInfo *info, int which) {
|
||||
PFN_vkCmdPipelineBarrier2 real = (PFN_vkCmdPipelineBarrier2)any_fn(NULL, which);
|
||||
if (!real) return;
|
||||
if (!info || !info->pImageMemoryBarriers || !info->imageMemoryBarrierCount) {
|
||||
real(cb, info);
|
||||
return;
|
||||
}
|
||||
VkImageMemoryBarrier2 buf[16];
|
||||
void *heap = NULL;
|
||||
VkDependencyInfo copy = *info;
|
||||
copy.pImageMemoryBarriers = without_null_images(info->pImageMemoryBarriers, ©.imageMemoryBarrierCount,
|
||||
sizeof *buf, offsetof(VkImageMemoryBarrier2, image), buf, sizeof buf, &heap);
|
||||
real(cb, ©);
|
||||
free(heap);
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_pipeline_barrier2(VkCommandBuffer cb, const VkDependencyInfo *info) {
|
||||
pipeline_barrier2(cb, info, FN_PB2);
|
||||
}
|
||||
|
||||
static VKAPI_ATTR void VKAPI_CALL cmd_pipeline_barrier2_khr(VkCommandBuffer cb, const VkDependencyInfo *info) {
|
||||
pipeline_barrier2(cb, info, FN_PB2KHR);
|
||||
}
|
||||
|
||||
static int wrapped_index(const char *name) {
|
||||
for (int i = 0; i < FN_COUNT; i++)
|
||||
if (!strcmp(name, FN_NAMES[i])) return i;
|
||||
return -1;
|
||||
}
|
||||
|
||||
static PFN_vkVoidFunction wrap(const char *name) {
|
||||
if (!strcmp(name, "vkCreateRenderPass2")) return (PFN_vkVoidFunction)vkCreateRenderPass2;
|
||||
if (!strcmp(name, "vkCreateRenderPass2KHR")) return (PFN_vkVoidFunction)create_render_pass2_khr;
|
||||
return NULL;
|
||||
switch (wrapped_index(name)) {
|
||||
case FN_RP2: return (PFN_vkVoidFunction)vkCreateRenderPass2;
|
||||
case FN_RP2KHR: return (PFN_vkVoidFunction)create_render_pass2_khr;
|
||||
case FN_CSM: return nfixes ? (PFN_vkVoidFunction)vkCreateShaderModule : NULL; // nothing to fix: no detour
|
||||
case FN_CIMG: return spec_fixes ? (PFN_vkVoidFunction)create_image : NULL;
|
||||
case FN_PB: return spec_fixes ? (PFN_vkVoidFunction)cmd_pipeline_barrier : NULL;
|
||||
case FN_PB2: return spec_fixes ? (PFN_vkVoidFunction)cmd_pipeline_barrier2 : NULL;
|
||||
case FN_PB2KHR: return spec_fixes ? (PFN_vkVoidFunction)cmd_pipeline_barrier2_khr : NULL;
|
||||
case FN_EDEP: return hide_fdm ? (PFN_vkVoidFunction)vkEnumerateDeviceExtensionProperties : NULL;
|
||||
case FN_CDEV: return hide_fdm || spec_fixes ? (PFN_vkVoidFunction)vkCreateDevice : NULL;
|
||||
case FN_CIV: return spec_fixes ? (PFN_vkVoidFunction)create_image_view : NULL;
|
||||
default: break;
|
||||
}
|
||||
if (query_slots < 2) return NULL; // no query remapping: no detours
|
||||
switch (wrapped_index(name)) {
|
||||
case FN_CQP: return (PFN_vkVoidFunction)create_query_pool;
|
||||
case FN_DQP: return (PFN_vkVoidFunction)destroy_query_pool;
|
||||
case FN_BQ: return (PFN_vkVoidFunction)cmd_begin_query;
|
||||
case FN_EQ: return (PFN_vkVoidFunction)cmd_end_query;
|
||||
case FN_CRQP: return (PFN_vkVoidFunction)cmd_reset_query_pool;
|
||||
case FN_RQP: return (PFN_vkVoidFunction)host_reset_query_pool;
|
||||
case FN_RQPEXT: return (PFN_vkVoidFunction)host_reset_query_pool_ext;
|
||||
case FN_GQPR: return (PFN_vkVoidFunction)get_query_pool_results;
|
||||
case FN_CCQPR: return (PFN_vkVoidFunction)cmd_copy_query_pool_results;
|
||||
default: return NULL;
|
||||
}
|
||||
}
|
||||
|
||||
EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetDeviceProcAddr(VkDevice device, const char *name) {
|
||||
@@ -258,7 +919,7 @@ EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetDeviceProcAddr(VkDevice dev
|
||||
PFN_vkVoidFunction fn = real_gdpa(device, name);
|
||||
PFN_vkVoidFunction w = fn ? wrap(name) : NULL;
|
||||
if (!w) return fn;
|
||||
int khr = name[strlen(name) - 1] == 'R';
|
||||
int which = wrapped_index(name);
|
||||
pthread_mutex_lock(&dev_lock);
|
||||
int slot = -1;
|
||||
for (int i = 0; i < MAX_DEVICES; i++) {
|
||||
@@ -267,8 +928,9 @@ EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetDeviceProcAddr(VkDevice dev
|
||||
}
|
||||
if (slot >= 0) {
|
||||
devices[slot].device = device;
|
||||
if (khr) devices[slot].rp2khr = (PFN_vkCreateRenderPass2)fn; else devices[slot].rp2 = (PFN_vkCreateRenderPass2)fn;
|
||||
devices[slot].fn[which] = fn;
|
||||
}
|
||||
cmd_fn[which] = fn;
|
||||
pthread_mutex_unlock(&dev_lock);
|
||||
return w;
|
||||
}
|
||||
@@ -278,9 +940,12 @@ EXPORT VKAPI_ATTR PFN_vkVoidFunction VKAPI_CALL vkGetInstanceProcAddr(VkInstance
|
||||
if (!real_gipa || !name) return NULL;
|
||||
if (!strcmp(name, "vkGetDeviceProcAddr")) return (PFN_vkVoidFunction)vkGetDeviceProcAddr;
|
||||
if (!strcmp(name, "vkGetInstanceProcAddr")) return (PFN_vkVoidFunction)vkGetInstanceProcAddr;
|
||||
if (!strcmp(name, "vkCreateInstance") && validation) return (PFN_vkVoidFunction)vkCreateInstance;
|
||||
PFN_vkVoidFunction fn = real_gipa(instance, name);
|
||||
PFN_vkVoidFunction w = fn ? wrap(name) : NULL;
|
||||
if (!w) return fn;
|
||||
if (!strcmp(name, "vkCreateRenderPass2KHR")) fallback_rp2khr = (PFN_vkCreateRenderPass2)fn;
|
||||
int which = wrapped_index(name);
|
||||
if (which >= FN_CQP && !cmd_fn[which]) cmd_fn[which] = fn;
|
||||
return w;
|
||||
}
|
||||
@@ -11,6 +11,7 @@
|
||||
using ovrResult = int32_t;
|
||||
constexpr ovrResult Success = 0, NotInitialized = -1004, InvalidParameter = -1005,
|
||||
DeviceUnavailable = -1010, InvalidOperation = -1015, Unsupported = -1050, NoDevice = -1051;
|
||||
struct ovrEventHeader { int32_t EventType; }; // VrApi_Types.h: followed by event-specific data
|
||||
struct ovrJava { JavaVM* Vm; JNIEnv* Env; jobject ActivityObject; };
|
||||
struct ovrVector2f { float x, y; };
|
||||
struct ovrVector3f { float x, y, z; };
|
||||
|
||||
@@ -1361,7 +1361,8 @@ namespace {
|
||||
constexpr int64_t kFormat8888 = 4, kFormat8888Srgb = 5, kFormatRgba16f = 6;
|
||||
}
|
||||
|
||||
VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain2(int32_t type, int64_t format, int width, int height,
|
||||
// format: VrApi's 32-bit ovrTextureFormat enum (only vrapi_CreateTextureSwapChain3 takes a 64-bit format)
|
||||
VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain2(int32_t type, int32_t format, int width, int height,
|
||||
int levels, int bufferCount) {
|
||||
ovp::Runtime& s = ovp::runtime();
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
@@ -1413,7 +1414,7 @@ VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain2(int32_t type, int64_t f
|
||||
return chain;
|
||||
}
|
||||
|
||||
VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain(int32_t type, int64_t format, int width, int height,
|
||||
VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain(int32_t type, int32_t format, int width, int height,
|
||||
int levels, bool buffered) {
|
||||
return vrapi_CreateTextureSwapChain2(type, format, width, height, levels, buffered ? 3 : 1);
|
||||
}
|
||||
|
||||
@@ -426,11 +426,43 @@ void sync() {
|
||||
}
|
||||
} // namespace ovp::input
|
||||
|
||||
// Input diagnostics: every 5 s, how the game uses the controller API (FramePort, e.g. BlazeRush's untracked
|
||||
// controllers): call counts, the last tracking status/position per hand, and the vibration amplitudes it asked for.
|
||||
namespace ovp::input::diag {
|
||||
struct Counters {
|
||||
uint32_t enumerate = 0, caps = 0, state = 0, tracking = 0, trackingFail = 0, haptic = 0;
|
||||
uint32_t stateTypes = 0, capsTypes = 0, stateRefused = 0, buttons = 0; // ControllerType bits asked for
|
||||
float stickMax[HandCount] = {};
|
||||
uint32_t lastStatus[HandCount] = {};
|
||||
float lastPos[HandCount][3] = {};
|
||||
float hapticMin = 2.0f, hapticMax = -1.0f;
|
||||
double lastTime = 0, lastLog = 0;
|
||||
};
|
||||
static Counters c;
|
||||
static void maybeLog() {
|
||||
const double now = ovp::secondsNow();
|
||||
if (c.lastLog == 0) c.lastLog = now;
|
||||
if (now - c.lastLog < 5.0) return;
|
||||
OVP_LOG("input 5s: enumerate=%u caps=%u state=%u tracking=%u (failed %u, time %.3f vs now %.3f) "
|
||||
"L status=0x%x pos=%.2f,%.2f,%.2f R status=0x%x pos=%.2f,%.2f,%.2f haptic=%u amp %.2f..%.2f",
|
||||
c.enumerate, c.caps, c.state, c.tracking, c.trackingFail, c.lastTime, now,
|
||||
c.lastStatus[Left], c.lastPos[Left][0], c.lastPos[Left][1], c.lastPos[Left][2],
|
||||
c.lastStatus[Right], c.lastPos[Right][0], c.lastPos[Right][1], c.lastPos[Right][2],
|
||||
c.haptic, c.haptic ? c.hapticMin : 0.0f, c.haptic ? c.hapticMax : 0.0f);
|
||||
OVP_LOG("input 5s: state types asked 0x%x (refused %u), caps types 0x%x, buttons seen 0x%x, stick max L %.2f R %.2f",
|
||||
c.stateTypes, c.stateRefused, c.capsTypes, c.buttons, c.stickMax[Left], c.stickMax[Right]);
|
||||
const double last = now;
|
||||
c = {};
|
||||
c.lastLog = last;
|
||||
}
|
||||
} // namespace ovp::input::diag
|
||||
|
||||
VRAPI ovrResult vrapi_EnumerateInputDevices(ovrMobile* mobile, uint32_t index,
|
||||
ovrInputCapabilityHeader* capsHeader) {
|
||||
ovp::Runtime& s = ovp::runtime();
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (capsHeader == nullptr) return InvalidParameter;
|
||||
++ovp::input::diag::c.enumerate;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
uint32_t connectedIndex = 0;
|
||||
for (size_t hand = 0; hand < ovp::input::HandCount; ++hand) {
|
||||
@@ -450,6 +482,8 @@ VRAPI ovrResult vrapi_GetInputDeviceCapabilities(ovrMobile* mobile,
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (capsHeader == nullptr) return InvalidParameter;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
++ovp::input::diag::c.caps;
|
||||
ovp::input::diag::c.capsTypes |= static_cast<uint32_t>(capsHeader->Type);
|
||||
if (capsHeader->Type != ovrControllerType_TrackedRemote) return Unsupported;
|
||||
size_t hand = 0;
|
||||
ovp::input::Hand* value = ovp::input::handForId(capsHeader->DeviceID, &hand);
|
||||
@@ -478,7 +512,13 @@ VRAPI ovrResult vrapi_GetCurrentInputState(ovrMobile* mobile, ovrDeviceID device
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (inputState == nullptr) return InvalidParameter;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
if (inputState->ControllerType != ovrControllerType_TrackedRemote) return Unsupported;
|
||||
++ovp::input::diag::c.state;
|
||||
ovp::input::diag::c.stateTypes |= static_cast<uint32_t>(inputState->ControllerType);
|
||||
ovp::input::diag::maybeLog();
|
||||
if (inputState->ControllerType != ovrControllerType_TrackedRemote) {
|
||||
++ovp::input::diag::c.stateRefused;
|
||||
return Unsupported;
|
||||
}
|
||||
ovp::input::Hand* hand = ovp::input::handForId(deviceID);
|
||||
if (hand == nullptr) return NoDevice;
|
||||
auto* state = reinterpret_cast<ovrInputStateTrackedRemote*>(inputState);
|
||||
@@ -489,6 +529,12 @@ VRAPI ovrResult vrapi_GetCurrentInputState(ovrMobile* mobile, ovrDeviceID device
|
||||
return DeviceUnavailable;
|
||||
}
|
||||
*state = hand->state;
|
||||
{
|
||||
auto& d = ovp::input::diag::c;
|
||||
size_t i = hand == &ovp::input::g.hands[ovp::input::Left] ? ovp::input::Left : ovp::input::Right;
|
||||
d.buttons |= state->Buttons;
|
||||
d.stickMax[i] = std::max(d.stickMax[i], std::max(std::fabs(state->Joystick.x), std::fabs(state->Joystick.y)));
|
||||
}
|
||||
return Success;
|
||||
}
|
||||
|
||||
@@ -507,9 +553,18 @@ VRAPI ovrResult vrapi_GetInputTrackingState(ovrMobile* mobile, ovrDeviceID devic
|
||||
if (!hand->active) return DeviceUnavailable;
|
||||
const double requestedSeconds = absTimeInSeconds == 0.0 ? ovp::secondsNow() : absTimeInSeconds;
|
||||
const XrTime requestedTime = ovp::toXrTime(requestedSeconds);
|
||||
auto& d = ovp::input::diag::c;
|
||||
++d.tracking;
|
||||
d.lastTime = requestedSeconds;
|
||||
ovp::input::diag::maybeLog();
|
||||
if (!ovp::locate(hand->gripSpace, requestedTime, tracking->HeadPose, tracking->Status)) {
|
||||
++d.trackingFail;
|
||||
return DeviceUnavailable;
|
||||
}
|
||||
d.lastStatus[handIndex] = tracking->Status;
|
||||
d.lastPos[handIndex][0] = tracking->HeadPose.Pose.Position.x;
|
||||
d.lastPos[handIndex][1] = tracking->HeadPose.Pose.Position.y;
|
||||
d.lastPos[handIndex][2] = tracking->HeadPose.Pose.Position.z;
|
||||
return Success;
|
||||
}
|
||||
|
||||
@@ -525,6 +580,12 @@ VRAPI ovrResult vrapi_SetHapticVibrationSimple(ovrMobile* mobile, ovrDeviceID de
|
||||
if (!hand->active) return DeviceUnavailable;
|
||||
|
||||
const float amplitude = std::clamp(intensity, 0.0f, 1.0f);
|
||||
auto& d = ovp::input::diag::c;
|
||||
if (amplitude > 0.0f) {
|
||||
++d.haptic;
|
||||
d.hapticMin = std::min(d.hapticMin, amplitude);
|
||||
d.hapticMax = std::max(d.hapticMax, amplitude);
|
||||
}
|
||||
if (amplitude == 0.0f) {
|
||||
XrHapticActionInfo info{XR_TYPE_HAPTIC_ACTION_INFO};
|
||||
info.action = ovp::input::g.actions.haptic;
|
||||
|
||||
@@ -527,6 +527,7 @@ VRAPI int vrapi_Initialize(const ovrInitParms* parms) {
|
||||
if (s.threadExtension) load("xrSetAndroidApplicationThreadKHR", reinterpret_cast<PFN_xrVoidFunction*>(&s.setThread));
|
||||
if (s.systemDisplayRefreshRateExtension) load("xrGetSystemDisplayRefreshRateAXRB", reinterpret_cast<PFN_xrVoidFunction*>(&s.getSystemDisplayRefreshRate));
|
||||
if (s.displayRefreshRateExtension) load("xrGetDisplayRefreshRateFB", reinterpret_cast<PFN_xrVoidFunction*>(&s.getDisplayRefreshRate));
|
||||
if (s.displayRefreshRateExtension) load("xrRequestDisplayRefreshRateFB", reinterpret_cast<PFN_xrVoidFunction*>(&s.requestDisplayRefreshRate));
|
||||
if (s.glesExtension) load("xrGetOpenGLESGraphicsRequirementsKHR", reinterpret_cast<PFN_xrVoidFunction*>(&s.getGlesRequirements));
|
||||
OVP_LOG("Initialized Vulkan/GLES OpenXR adapter (gles=%d), stereo=%ux%u", s.glesExtension ? 1 : 0, s.viewConfig[0].recommendedImageRectWidth, s.viewConfig[0].recommendedImageRectHeight);
|
||||
return 0;
|
||||
@@ -730,13 +731,40 @@ VRAPI ovrResult vrapi_SetClientColorDesc(ovrMobile* mobile, const ovrHmdColorDes
|
||||
return xrOk(s.setColorSpace(s.session, static_cast<XrColorSpaceFB>(color->ColorSpace)), "xrSetColorSpaceFB") ? Success : InvalidParameter;
|
||||
}
|
||||
|
||||
VRAPI void vrapi_SetTrackingSpace(ovrMobile* mobile, int32_t space) {
|
||||
// Tracking-space changes (eye/floor level) are handled by the app's own poses; accept and ignore.
|
||||
VRAPI ovrResult vrapi_SetTrackingSpace(ovrMobile* mobile, int32_t space) {
|
||||
// Tracking-space changes (eye/floor level) are handled by the app's own poses; accept and ignore. VrApi returns an
|
||||
// ovrResult here: a void function left the caller reading whatever was in w0.
|
||||
(void)mobile;
|
||||
OVP_LOG("vrapi_SetTrackingSpace(%d) ignored", space);
|
||||
return Success;
|
||||
}
|
||||
VRAPI bool vrapi_ShowSystemUI(const ovrJava* java, int32_t type) {
|
||||
(void)java;
|
||||
OVP_LOG("vrapi_ShowSystemUI(%d) unsupported", type);
|
||||
return false;
|
||||
}
|
||||
|
||||
// Functions some engines import even when they never rely on them (e.g. BlazeRush's libtargemapp.so): a missing one
|
||||
// stops the game from loading at all ("cannot locate symbol").
|
||||
VRAPI ovrResult vrapi_PollEvent(ovrEventHeader* event) {
|
||||
// No VrApi events are produced: VRAPI_EVENT_NONE + ovrSuccess_EventUnavailable ends the app's polling loop.
|
||||
if (event) event->EventType = 0;
|
||||
return 1002; // ovrSuccess_EventUnavailable
|
||||
}
|
||||
VRAPI void vrapi_RecenterPose(ovrMobile* mobile) {
|
||||
// Deprecated in VrApi; OpenXR has no application recenter (the runtime's own recenter is reported via status 13).
|
||||
(void)mobile;
|
||||
OVP_LOG("vrapi_RecenterPose ignored");
|
||||
}
|
||||
VRAPI ovrResult vrapi_SetDisplayRefreshRate(ovrMobile* mobile, float rate) {
|
||||
LOCK_STATE;
|
||||
if (!validMobile(mobile)) return NotInitialized;
|
||||
if (!s.requestDisplayRefreshRate || !s.session) return Unsupported;
|
||||
return xrOk(s.requestDisplayRefreshRate(s.session, rate), "xrRequestDisplayRefreshRateFB") ? Success : InvalidParameter;
|
||||
}
|
||||
VRAPI int vrapi_GetSystemPropertyFloatArray(const ovrJava*, int property, float* values, int count) {
|
||||
// The only array property is the supported refresh rates; its count property is 0 here, so report none.
|
||||
(void)values;
|
||||
OVP_LOG("Float array system property %d (%d values) unsupported", property, count);
|
||||
return 0;
|
||||
}
|
||||
@@ -80,6 +80,7 @@ struct Runtime {
|
||||
PFN_xrSetAndroidApplicationThreadKHR setThread = nullptr;
|
||||
PFN_axrbGetSystemDisplayRefreshRate getSystemDisplayRefreshRate = nullptr;
|
||||
PFN_xrGetDisplayRefreshRateFB getDisplayRefreshRate = nullptr;
|
||||
PFN_xrRequestDisplayRefreshRateFB requestDisplayRefreshRate = nullptr;
|
||||
DisplayRefreshRateSource loggedDisplayRefreshRateSource = DisplayRefreshRateSource::Unqueried;
|
||||
float loggedDisplayRefreshRate = 0;
|
||||
ovrPosef trackingTransform{{0, 0, 0, 1}, {0, 0, 0}};
|
||||
|
||||
@@ -1,8 +1,14 @@
|
||||
diff --git a/native/vrapi/abi.h b/native/vrapi/abi.h
|
||||
index 975698a..c9a2a9d 100644
|
||||
--- a/native/vrapi/abi.h
|
||||
+++ b/native/vrapi/abi.h
|
||||
@@ -62,6 +62,17 @@ struct ovrLayerProjection2 {
|
||||
@@ -11,6 +11,7 @@
|
||||
using ovrResult = int32_t;
|
||||
constexpr ovrResult Success = 0, NotInitialized = -1004, InvalidParameter = -1005,
|
||||
DeviceUnavailable = -1010, InvalidOperation = -1015, Unsupported = -1050, NoDevice = -1051;
|
||||
+struct ovrEventHeader { int32_t EventType; }; // VrApi_Types.h: followed by event-specific data
|
||||
struct ovrJava { JavaVM* Vm; JNIEnv* Env; jobject ActivityObject; };
|
||||
struct ovrVector2f { float x, y; };
|
||||
struct ovrVector3f { float x, y, z; };
|
||||
@@ -62,6 +63,17 @@
|
||||
ovrRectf TextureRect;
|
||||
} Textures[2];
|
||||
};
|
||||
@@ -20,7 +26,7 @@ index 975698a..c9a2a9d 100644
|
||||
struct ovrSubmitFrameDescription2 {
|
||||
uint32_t Flags, SwapInterval;
|
||||
uint64_t FrameIndex;
|
||||
@@ -77,3 +88,4 @@ static_assert(sizeof(ovrRigidBodyPosef) == 96 && sizeof(ovrTracking2) == 360);
|
||||
@@ -77,3 +89,4 @@
|
||||
static_assert(sizeof(ovrTracking) == 104 && sizeof(ovrLayerHeader2) == 40);
|
||||
static_assert(sizeof(ovrLayerProjection2) == 328 && sizeof(ovrSubmitFrameDescription2) == 48);
|
||||
static_assert(offsetof(ovrLayerProjection2, Textures) == 136);
|
||||
|
||||
@@ -1,5 +1,5 @@
|
||||
--- graphics.cpp.orig 2026-09-28 17:20:25.629612301 -0400
|
||||
+++ graphics.cpp 2026-09-28 18:50:49.704207711 -0400
|
||||
--- graphics.cpp.orig
|
||||
+++ graphics.cpp
|
||||
@@ -1,6 +1,9 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
#include "runtime.h"
|
||||
@@ -102,7 +102,43 @@
|
||||
|
||||
uint32_t formatCount = 0;
|
||||
XrResult result = s.xr.xrEnumerateSwapchainFormats(s.session, 0, &formatCount, nullptr);
|
||||
@@ -502,8 +572,104 @@
|
||||
@@ -331,12 +401,29 @@
|
||||
ovp::xrOk(result, "xrEnumerateSwapchainFormats");
|
||||
return false;
|
||||
}
|
||||
- const int64_t wanted = static_cast<int64_t>(chain->format);
|
||||
- if (std::find(formats.begin(), formats.begin() + formatCount, wanted) ==
|
||||
- formats.begin() + formatCount) {
|
||||
- OVP_ERROR("OpenXR runtime does not expose requested VkFormat %lld",
|
||||
- static_cast<long long>(wanted));
|
||||
- return false;
|
||||
+ int64_t wanted = static_cast<int64_t>(chain->format);
|
||||
+ auto exposed = [&](int64_t f) {
|
||||
+ return std::find(formats.begin(), formats.begin() + formatCount, f) != formats.begin() + formatCount;
|
||||
+ };
|
||||
+ if (!exposed(wanted)) {
|
||||
+ // Steam Frame exposes only the sRGB variants. The output is filled with vkCmdCopyImage, a raw
|
||||
+ // copy that is valid between size-compatible UNORM/SRGB twins, so use the twin instead.
|
||||
+ int64_t twin = 0;
|
||||
+ switch (wanted) {
|
||||
+ case VK_FORMAT_R8G8B8A8_UNORM: twin = VK_FORMAT_R8G8B8A8_SRGB; break;
|
||||
+ case VK_FORMAT_R8G8B8A8_SRGB: twin = VK_FORMAT_R8G8B8A8_UNORM; break;
|
||||
+ case VK_FORMAT_B8G8R8A8_UNORM: twin = VK_FORMAT_B8G8R8A8_SRGB; break;
|
||||
+ case VK_FORMAT_B8G8R8A8_SRGB: twin = VK_FORMAT_B8G8R8A8_UNORM; break;
|
||||
+ default: break;
|
||||
+ }
|
||||
+ if (!twin || !exposed(twin)) {
|
||||
+ OVP_ERROR("OpenXR runtime does not expose requested VkFormat %lld",
|
||||
+ static_cast<long long>(wanted));
|
||||
+ return false;
|
||||
+ }
|
||||
+ OVP_LOG("Runtime lacks VkFormat %lld; using size-compatible VkFormat %lld for the output swapchain",
|
||||
+ static_cast<long long>(wanted), static_cast<long long>(twin));
|
||||
+ wanted = twin;
|
||||
}
|
||||
|
||||
XrSwapchainCreateInfo create{XR_TYPE_SWAPCHAIN_CREATE_INFO};
|
||||
@@ -485,8 +572,104 @@
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -207,7 +243,7 @@
|
||||
bool black = false;
|
||||
XrCompositionLayerProjection projection{XR_TYPE_COMPOSITION_LAYER_PROJECTION};
|
||||
std::array<XrCompositionLayerProjectionView, 2> views{{
|
||||
@@ -564,7 +730,97 @@
|
||||
@@ -547,7 +730,97 @@
|
||||
return true;
|
||||
}
|
||||
|
||||
@@ -305,7 +341,7 @@
|
||||
if (!settleCopy(kFrameWaitNs, false)) return false;
|
||||
reapRetired();
|
||||
if (count == 0) return true;
|
||||
@@ -843,6 +1099,28 @@
|
||||
@@ -826,6 +1099,28 @@
|
||||
for (uint32_t i = 0; i < description->LayerCount; ++i) {
|
||||
const ovrLayerHeader2* header = description->Layers[i];
|
||||
if (!header) return failFrame(InvalidParameter);
|
||||
@@ -334,7 +370,7 @@
|
||||
if (header->Type != kProjectionLayer) {
|
||||
OVP_ERROR("Unsupported VrApi layer type %d", header->Type);
|
||||
return failFrame(Unsupported);
|
||||
@@ -927,6 +1205,56 @@
|
||||
@@ -910,6 +1205,56 @@
|
||||
for (uint32_t i = 0; i < description->LayerCount; ++i) {
|
||||
PreparedLayer& output = prepared[i];
|
||||
if (output.black) continue;
|
||||
@@ -391,7 +427,7 @@
|
||||
const bool headLocked = (output.source->Header.Flags & kLayerFixedToView) != 0;
|
||||
if (headLocked && !haveHeadLockedViews) {
|
||||
XrViewLocateInfo locate{XR_TYPE_VIEW_LOCATE_INFO};
|
||||
@@ -968,6 +1296,9 @@
|
||||
@@ -951,6 +1296,9 @@
|
||||
rect.x, rect.y, rect.width, rect.height);
|
||||
return failFrame(InvalidParameter);
|
||||
}
|
||||
@@ -401,7 +437,7 @@
|
||||
output.views[eye].subImage.swapchain = chain->output;
|
||||
output.views[eye].subImage.imageArrayIndex =
|
||||
chain->type == kTexture2DArray ? eye : 0;
|
||||
@@ -1024,3 +1355,73 @@
|
||||
@@ -1007,3 +1355,74 @@
|
||||
destroyCopyContext();
|
||||
}
|
||||
} // namespace ovp::graphics
|
||||
@@ -411,7 +447,8 @@
|
||||
+constexpr int64_t kFormat8888 = 4, kFormat8888Srgb = 5, kFormatRgba16f = 6;
|
||||
+}
|
||||
+
|
||||
+VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain2(int32_t type, int64_t format, int width, int height,
|
||||
+// format: VrApi's 32-bit ovrTextureFormat enum (only vrapi_CreateTextureSwapChain3 takes a 64-bit format)
|
||||
+VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain2(int32_t type, int32_t format, int width, int height,
|
||||
+ int levels, int bufferCount) {
|
||||
+ ovp::Runtime& s = ovp::runtime();
|
||||
+ std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
@@ -463,7 +500,7 @@
|
||||
+ return chain;
|
||||
+}
|
||||
+
|
||||
+VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain(int32_t type, int64_t format, int width, int height,
|
||||
+VRAPI ovrTextureSwapChain* vrapi_CreateTextureSwapChain(int32_t type, int32_t format, int width, int height,
|
||||
+ int levels, bool buffered) {
|
||||
+ return vrapi_CreateTextureSwapChain2(type, format, width, height, levels, buffered ? 3 : 1);
|
||||
+}
|
||||
|
||||
@@ -0,0 +1,115 @@
|
||||
--- input.cpp.orig
|
||||
+++ input.cpp
|
||||
@@ -426,11 +426,43 @@
|
||||
}
|
||||
} // namespace ovp::input
|
||||
|
||||
+// Input diagnostics: every 5 s, how the game uses the controller API (FramePort, e.g. BlazeRush's untracked
|
||||
+// controllers): call counts, the last tracking status/position per hand, and the vibration amplitudes it asked for.
|
||||
+namespace ovp::input::diag {
|
||||
+struct Counters {
|
||||
+ uint32_t enumerate = 0, caps = 0, state = 0, tracking = 0, trackingFail = 0, haptic = 0;
|
||||
+ uint32_t stateTypes = 0, capsTypes = 0, stateRefused = 0, buttons = 0; // ControllerType bits asked for
|
||||
+ float stickMax[HandCount] = {};
|
||||
+ uint32_t lastStatus[HandCount] = {};
|
||||
+ float lastPos[HandCount][3] = {};
|
||||
+ float hapticMin = 2.0f, hapticMax = -1.0f;
|
||||
+ double lastTime = 0, lastLog = 0;
|
||||
+};
|
||||
+static Counters c;
|
||||
+static void maybeLog() {
|
||||
+ const double now = ovp::secondsNow();
|
||||
+ if (c.lastLog == 0) c.lastLog = now;
|
||||
+ if (now - c.lastLog < 5.0) return;
|
||||
+ OVP_LOG("input 5s: enumerate=%u caps=%u state=%u tracking=%u (failed %u, time %.3f vs now %.3f) "
|
||||
+ "L status=0x%x pos=%.2f,%.2f,%.2f R status=0x%x pos=%.2f,%.2f,%.2f haptic=%u amp %.2f..%.2f",
|
||||
+ c.enumerate, c.caps, c.state, c.tracking, c.trackingFail, c.lastTime, now,
|
||||
+ c.lastStatus[Left], c.lastPos[Left][0], c.lastPos[Left][1], c.lastPos[Left][2],
|
||||
+ c.lastStatus[Right], c.lastPos[Right][0], c.lastPos[Right][1], c.lastPos[Right][2],
|
||||
+ c.haptic, c.haptic ? c.hapticMin : 0.0f, c.haptic ? c.hapticMax : 0.0f);
|
||||
+ OVP_LOG("input 5s: state types asked 0x%x (refused %u), caps types 0x%x, buttons seen 0x%x, stick max L %.2f R %.2f",
|
||||
+ c.stateTypes, c.stateRefused, c.capsTypes, c.buttons, c.stickMax[Left], c.stickMax[Right]);
|
||||
+ const double last = now;
|
||||
+ c = {};
|
||||
+ c.lastLog = last;
|
||||
+}
|
||||
+} // namespace ovp::input::diag
|
||||
+
|
||||
VRAPI ovrResult vrapi_EnumerateInputDevices(ovrMobile* mobile, uint32_t index,
|
||||
ovrInputCapabilityHeader* capsHeader) {
|
||||
ovp::Runtime& s = ovp::runtime();
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (capsHeader == nullptr) return InvalidParameter;
|
||||
+ ++ovp::input::diag::c.enumerate;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
uint32_t connectedIndex = 0;
|
||||
for (size_t hand = 0; hand < ovp::input::HandCount; ++hand) {
|
||||
@@ -450,6 +482,8 @@
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (capsHeader == nullptr) return InvalidParameter;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
+ ++ovp::input::diag::c.caps;
|
||||
+ ovp::input::diag::c.capsTypes |= static_cast<uint32_t>(capsHeader->Type);
|
||||
if (capsHeader->Type != ovrControllerType_TrackedRemote) return Unsupported;
|
||||
size_t hand = 0;
|
||||
ovp::input::Hand* value = ovp::input::handForId(capsHeader->DeviceID, &hand);
|
||||
@@ -478,7 +512,13 @@
|
||||
std::lock_guard<std::recursive_mutex> lock(s.mutex);
|
||||
if (inputState == nullptr) return InvalidParameter;
|
||||
if (!ovp::validMobile(mobile) || !ovp::input::ready()) return NotInitialized;
|
||||
- if (inputState->ControllerType != ovrControllerType_TrackedRemote) return Unsupported;
|
||||
+ ++ovp::input::diag::c.state;
|
||||
+ ovp::input::diag::c.stateTypes |= static_cast<uint32_t>(inputState->ControllerType);
|
||||
+ ovp::input::diag::maybeLog();
|
||||
+ if (inputState->ControllerType != ovrControllerType_TrackedRemote) {
|
||||
+ ++ovp::input::diag::c.stateRefused;
|
||||
+ return Unsupported;
|
||||
+ }
|
||||
ovp::input::Hand* hand = ovp::input::handForId(deviceID);
|
||||
if (hand == nullptr) return NoDevice;
|
||||
auto* state = reinterpret_cast<ovrInputStateTrackedRemote*>(inputState);
|
||||
@@ -489,6 +529,12 @@
|
||||
return DeviceUnavailable;
|
||||
}
|
||||
*state = hand->state;
|
||||
+ {
|
||||
+ auto& d = ovp::input::diag::c;
|
||||
+ size_t i = hand == &ovp::input::g.hands[ovp::input::Left] ? ovp::input::Left : ovp::input::Right;
|
||||
+ d.buttons |= state->Buttons;
|
||||
+ d.stickMax[i] = std::max(d.stickMax[i], std::max(std::fabs(state->Joystick.x), std::fabs(state->Joystick.y)));
|
||||
+ }
|
||||
return Success;
|
||||
}
|
||||
|
||||
@@ -507,9 +553,18 @@
|
||||
if (!hand->active) return DeviceUnavailable;
|
||||
const double requestedSeconds = absTimeInSeconds == 0.0 ? ovp::secondsNow() : absTimeInSeconds;
|
||||
const XrTime requestedTime = ovp::toXrTime(requestedSeconds);
|
||||
+ auto& d = ovp::input::diag::c;
|
||||
+ ++d.tracking;
|
||||
+ d.lastTime = requestedSeconds;
|
||||
+ ovp::input::diag::maybeLog();
|
||||
if (!ovp::locate(hand->gripSpace, requestedTime, tracking->HeadPose, tracking->Status)) {
|
||||
+ ++d.trackingFail;
|
||||
return DeviceUnavailable;
|
||||
}
|
||||
+ d.lastStatus[handIndex] = tracking->Status;
|
||||
+ d.lastPos[handIndex][0] = tracking->HeadPose.Pose.Position.x;
|
||||
+ d.lastPos[handIndex][1] = tracking->HeadPose.Pose.Position.y;
|
||||
+ d.lastPos[handIndex][2] = tracking->HeadPose.Pose.Position.z;
|
||||
return Success;
|
||||
}
|
||||
|
||||
@@ -525,6 +580,12 @@
|
||||
if (!hand->active) return DeviceUnavailable;
|
||||
|
||||
const float amplitude = std::clamp(intensity, 0.0f, 1.0f);
|
||||
+ auto& d = ovp::input::diag::c;
|
||||
+ if (amplitude > 0.0f) {
|
||||
+ ++d.haptic;
|
||||
+ d.hapticMin = std::min(d.hapticMin, amplitude);
|
||||
+ d.hapticMax = std::max(d.hapticMax, amplitude);
|
||||
+ }
|
||||
if (amplitude == 0.0f) {
|
||||
XrHapticActionInfo info{XR_TYPE_HAPTIC_ACTION_INFO};
|
||||
info.action = ovp::input::g.actions.haptic;
|
||||
@@ -1,5 +1,5 @@
|
||||
--- runtime.cpp.orig 2026-09-28 17:20:25.629612301 -0400
|
||||
+++ runtime.cpp 2026-09-28 17:24:17.092150139 -0400
|
||||
--- runtime.cpp.orig
|
||||
+++ runtime.cpp
|
||||
@@ -176,9 +176,44 @@
|
||||
}
|
||||
return true;
|
||||
@@ -45,7 +45,30 @@
|
||||
if (!s.instance || !s.vk.Device) return false;
|
||||
VkPhysicalDevice expected = VK_NULL_HANDLE;
|
||||
if (!xrOk(s.xr.xrGetVulkanGraphicsDeviceKHR(s.instance, s.system, s.vk.Instance, &expected), "xrGetVulkanGraphicsDeviceKHR") || expected != s.vk.PhysicalDevice) {
|
||||
@@ -413,11 +448,14 @@
|
||||
@@ -246,12 +281,16 @@
|
||||
// OpenXR LOCAL need not be eye-level. Establish VrApi's initial yaw/position
|
||||
// origin from a tracked, visible head before exposing it to the application.
|
||||
XrSpaceLocation head{XR_TYPE_SPACE_LOCATION};
|
||||
- constexpr XrSpaceLocationFlags tracked =
|
||||
- XR_SPACE_LOCATION_ORIENTATION_VALID_BIT | XR_SPACE_LOCATION_POSITION_VALID_BIT |
|
||||
- XR_SPACE_LOCATION_ORIENTATION_TRACKED_BIT | XR_SPACE_LOCATION_POSITION_TRACKED_BIT;
|
||||
- if ((s.sessionState != XR_SESSION_STATE_VISIBLE && s.sessionState != XR_SESSION_STATE_FOCUSED) ||
|
||||
- !xrOk(s.xr.xrLocateSpace(s.viewSpace, s.localSpace, s.frame.predictedDisplayTime, &head), "initial eye-level origin") ||
|
||||
- (head.locationFlags & tracked) != tracked) {
|
||||
+ // Steam Frame reports poses as VALID without the TRACKED bits here, so only validity is required.
|
||||
+ constexpr XrSpaceLocationFlags tracked = XR_SPACE_LOCATION_ORIENTATION_VALID_BIT | XR_SPACE_LOCATION_POSITION_VALID_BIT;
|
||||
+ const bool visible = s.sessionState == XR_SESSION_STATE_VISIBLE || s.sessionState == XR_SESSION_STATE_FOCUSED;
|
||||
+ const bool located = visible &&
|
||||
+ xrOk(s.xr.xrLocateSpace(s.viewSpace, s.localSpace, s.frame.predictedDisplayTime, &head), "initial eye-level origin");
|
||||
+ static int logged;
|
||||
+ if (visible && logged++ % 90 == 0)
|
||||
+ OVP_LOG("initial recenter: head flags=0x%llx pos=%.3f,%.3f,%.3f", (unsigned long long)head.locationFlags,
|
||||
+ head.pose.position.x, head.pose.position.y, head.pose.position.z);
|
||||
+ if (!located || (head.locationFlags & tracked) != tracked) {
|
||||
endFrame(nullptr, 0);
|
||||
return false;
|
||||
}
|
||||
@@ -409,11 +448,14 @@
|
||||
VRAPI int vrapi_Initialize(const ovrInitParms* parms) {
|
||||
LOCK_STATE;
|
||||
if (s.instance) return -3;
|
||||
@@ -62,7 +85,7 @@
|
||||
s.activity = parms->Java.Env->NewGlobalRef(parms->Java.ActivityObject);
|
||||
if (!s.activity) { shutdown(); return -1; }
|
||||
s.loader = dlopen("libopenxr_loader.so", RTLD_NOW | RTLD_LOCAL);
|
||||
@@ -439,10 +477,13 @@
|
||||
@@ -435,10 +477,13 @@
|
||||
if (!xrOk(s.xr.xrEnumerateInstanceExtensionProperties(nullptr, count, &count, supported.data()), "enumerate extensions")) { shutdown(); return -4; }
|
||||
auto has = [&](const char* name) { return std::any_of(supported.begin(), supported.end(), [&](const auto& e) { return std::strcmp(e.extensionName, name) == 0; }); };
|
||||
std::vector<const char*> extensions;
|
||||
@@ -80,17 +103,18 @@
|
||||
s.viewConfigurationFovExtension = has(XR_EPIC_VIEW_CONFIGURATION_FOV_EXTENSION_NAME);
|
||||
if (s.viewConfigurationFovExtension) extensions.push_back(XR_EPIC_VIEW_CONFIGURATION_FOV_EXTENSION_NAME);
|
||||
s.systemDisplayRefreshRateExtension = has(SystemDisplayRefreshRateExtension);
|
||||
@@ -486,7 +527,8 @@
|
||||
@@ -482,7 +527,9 @@
|
||||
if (s.threadExtension) load("xrSetAndroidApplicationThreadKHR", reinterpret_cast<PFN_xrVoidFunction*>(&s.setThread));
|
||||
if (s.systemDisplayRefreshRateExtension) load("xrGetSystemDisplayRefreshRateAXRB", reinterpret_cast<PFN_xrVoidFunction*>(&s.getSystemDisplayRefreshRate));
|
||||
if (s.displayRefreshRateExtension) load("xrGetDisplayRefreshRateFB", reinterpret_cast<PFN_xrVoidFunction*>(&s.getDisplayRefreshRate));
|
||||
- OVP_LOG("Initialized Vulkan/OpenXR adapter, stereo=%ux%u", s.viewConfig[0].recommendedImageRectWidth, s.viewConfig[0].recommendedImageRectHeight);
|
||||
+ if (s.displayRefreshRateExtension) load("xrRequestDisplayRefreshRateFB", reinterpret_cast<PFN_xrVoidFunction*>(&s.requestDisplayRefreshRate));
|
||||
+ if (s.glesExtension) load("xrGetOpenGLESGraphicsRequirementsKHR", reinterpret_cast<PFN_xrVoidFunction*>(&s.getGlesRequirements));
|
||||
+ OVP_LOG("Initialized Vulkan/GLES OpenXR adapter (gles=%d), stereo=%ux%u", s.glesExtension ? 1 : 0, s.viewConfig[0].recommendedImageRectWidth, s.viewConfig[0].recommendedImageRectHeight);
|
||||
return 0;
|
||||
}
|
||||
VRAPI void vrapi_Shutdown() { LOCK_STATE; shutdown(); }
|
||||
@@ -522,9 +564,27 @@
|
||||
@@ -518,18 +565,36 @@
|
||||
}
|
||||
VRAPI ovrMobile* vrapi_EnterVrMode(const ovrModeParms* parms) {
|
||||
LOCK_STATE;
|
||||
@@ -119,20 +143,59 @@
|
||||
+ }
|
||||
+ if (!ensureSession(queue)) return nullptr;
|
||||
// Runtime READY can arrive asynchronously. Wait only for a bounded lifecycle transition.
|
||||
auto deadline = std::chrono::steady_clock::now() + std::chrono::seconds(30); // Frame: session reaches FOCUSED and first tracked pose later than Quest
|
||||
- auto deadline = std::chrono::steady_clock::now() + std::chrono::seconds(5);
|
||||
+ auto deadline = std::chrono::steady_clock::now() + std::chrono::seconds(30); // Frame: session reaches FOCUSED and first tracked pose later than Quest
|
||||
while (!s.running) {
|
||||
@@ -669,3 +729,14 @@
|
||||
- if (!pollEvents() || std::chrono::steady_clock::now() >= deadline) { destroySession(); return nullptr; }
|
||||
+ if (!pollEvents() || std::chrono::steady_clock::now() >= deadline) { OVP_LOG("EnterVrMode: session never started running"); destroySession(); return nullptr; }
|
||||
if (!s.running) std::this_thread::sleep_for(std::chrono::milliseconds(5));
|
||||
}
|
||||
while (s.initialRecenterPending) {
|
||||
if (beginFrame(s.frameIndex + 1)) break;
|
||||
- if (std::chrono::steady_clock::now() >= deadline) { destroySession(); return nullptr; }
|
||||
+ if (std::chrono::steady_clock::now() >= deadline) { OVP_LOG("EnterVrMode: no tracked head pose before deadline"); destroySession(); return nullptr; }
|
||||
std::this_thread::sleep_for(std::chrono::milliseconds(5));
|
||||
}
|
||||
++s.mobile.generation;
|
||||
@@ -665,3 +730,41 @@
|
||||
if (!s.setColorSpace) return color->ColorSpace == 0 ? Success : Unsupported;
|
||||
return xrOk(s.setColorSpace(s.session, static_cast<XrColorSpaceFB>(color->ColorSpace)), "xrSetColorSpaceFB") ? Success : InvalidParameter;
|
||||
}
|
||||
+
|
||||
+VRAPI void vrapi_SetTrackingSpace(ovrMobile* mobile, int32_t space) {
|
||||
+ // Tracking-space changes (eye/floor level) are handled by the app's own poses; accept and ignore.
|
||||
+VRAPI ovrResult vrapi_SetTrackingSpace(ovrMobile* mobile, int32_t space) {
|
||||
+ // Tracking-space changes (eye/floor level) are handled by the app's own poses; accept and ignore. VrApi returns an
|
||||
+ // ovrResult here: a void function left the caller reading whatever was in w0.
|
||||
+ (void)mobile;
|
||||
+ OVP_LOG("vrapi_SetTrackingSpace(%d) ignored", space);
|
||||
+ return Success;
|
||||
+}
|
||||
+VRAPI bool vrapi_ShowSystemUI(const ovrJava* java, int32_t type) {
|
||||
+ (void)java;
|
||||
+ OVP_LOG("vrapi_ShowSystemUI(%d) unsupported", type);
|
||||
+ return false;
|
||||
+}
|
||||
+
|
||||
+// Functions some engines import even when they never rely on them (e.g. BlazeRush's libtargemapp.so): a missing one
|
||||
+// stops the game from loading at all ("cannot locate symbol").
|
||||
+VRAPI ovrResult vrapi_PollEvent(ovrEventHeader* event) {
|
||||
+ // No VrApi events are produced: VRAPI_EVENT_NONE + ovrSuccess_EventUnavailable ends the app's polling loop.
|
||||
+ if (event) event->EventType = 0;
|
||||
+ return 1002; // ovrSuccess_EventUnavailable
|
||||
+}
|
||||
+VRAPI void vrapi_RecenterPose(ovrMobile* mobile) {
|
||||
+ // Deprecated in VrApi; OpenXR has no application recenter (the runtime's own recenter is reported via status 13).
|
||||
+ (void)mobile;
|
||||
+ OVP_LOG("vrapi_RecenterPose ignored");
|
||||
+}
|
||||
+VRAPI ovrResult vrapi_SetDisplayRefreshRate(ovrMobile* mobile, float rate) {
|
||||
+ LOCK_STATE;
|
||||
+ if (!validMobile(mobile)) return NotInitialized;
|
||||
+ if (!s.requestDisplayRefreshRate || !s.session) return Unsupported;
|
||||
+ return xrOk(s.requestDisplayRefreshRate(s.session, rate), "xrRequestDisplayRefreshRateFB") ? Success : InvalidParameter;
|
||||
+}
|
||||
+VRAPI int vrapi_GetSystemPropertyFloatArray(const ovrJava*, int property, float* values, int count) {
|
||||
+ // The only array property is the supported refresh rates; its count property is 0 here, so report none.
|
||||
+ (void)values;
|
||||
+ OVP_LOG("Float array system property %d (%d values) unsupported", property, count);
|
||||
+ return 0;
|
||||
+}
|
||||
@@ -1,5 +1,5 @@
|
||||
--- runtime.h.orig 2026-09-28 17:20:25.629612301 -0400
|
||||
+++ runtime.h 2026-09-28 17:20:25.629612301 -0400
|
||||
--- runtime.h.orig
|
||||
+++ runtime.h
|
||||
@@ -1,6 +1,7 @@
|
||||
// SPDX-License-Identifier: GPL-3.0-only
|
||||
#pragma once
|
||||
@@ -21,3 +21,11 @@
|
||||
VkQueue queue = VK_NULL_HANDLE;
|
||||
uint32_t queueFamily = 0;
|
||||
double timeOffset = 0;
|
||||
@@ -73,6 +80,7 @@
|
||||
PFN_xrSetAndroidApplicationThreadKHR setThread = nullptr;
|
||||
PFN_axrbGetSystemDisplayRefreshRate getSystemDisplayRefreshRate = nullptr;
|
||||
PFN_xrGetDisplayRefreshRateFB getDisplayRefreshRate = nullptr;
|
||||
+ PFN_xrRequestDisplayRefreshRateFB requestDisplayRefreshRate = nullptr;
|
||||
DisplayRefreshRateSource loggedDisplayRefreshRateSource = DisplayRefreshRateSource::Unqueried;
|
||||
float loggedDisplayRefreshRate = 0;
|
||||
ovrPosef trackingTransform{{0, 0, 0, 1}, {0, 0, 0}};
|
||||
@@ -7,11 +7,20 @@
|
||||
// Meta's OVRPlugin finds xrGetInstanceProcAddr with dlopen("libopenxr_loader.so") + dlsym, so FramePort points that
|
||||
// string in libOVRPlugin.so at this library instead (patches/frame/adapter.py). Names the adapter emulates are served
|
||||
// by the adapter (framebridge_extension_proc); everything else goes to overport's xrGetInstanceProcAddr unchanged.
|
||||
//
|
||||
// Haptics (GitHub #9, found by Klownicle in Lucky's Tale): overport's dispatcher converts an
|
||||
// XrHapticAmplitudeEnvelopeVibrationFB with its nanosecond duration taken as seconds, so one vibration allocates an
|
||||
// enormous sample buffer and the Frame runs out of memory and freezes. The shim hands OVRPlugin its own
|
||||
// xrApplyHapticFeedback, which turns such an envelope into a plain XrHapticVibration (same duration, its peak
|
||||
// amplitude) before the dispatcher sees it. Everything else passes through unchanged.
|
||||
// Upstream: ovrport/app#73; tracked in FramePort GitHub #74.
|
||||
#include <openxr/openxr.h>
|
||||
#include <android/log.h>
|
||||
#include <dlfcn.h>
|
||||
#include <pthread.h>
|
||||
#include <math.h>
|
||||
#include <stddef.h>
|
||||
#include <string.h>
|
||||
|
||||
#define TAG "FrameBridge"
|
||||
#define EXPORT __attribute__((visibility("default")))
|
||||
@@ -40,9 +49,41 @@ static PFN_xrVoidFunction adapter_proc(const char *name) {
|
||||
return fn(name);
|
||||
}
|
||||
|
||||
static PFN_xrApplyHapticFeedback overport_haptics;
|
||||
static int haptics_logged;
|
||||
|
||||
static XRAPI_ATTR XrResult XRAPI_CALL apply_haptic_feedback(XrSession session, const XrHapticActionInfo *info,
|
||||
const XrHapticBaseHeader *feedback) {
|
||||
if (feedback && feedback->type == XR_TYPE_HAPTIC_AMPLITUDE_ENVELOPE_VIBRATION_FB) {
|
||||
const XrHapticAmplitudeEnvelopeVibrationFB *env = (const XrHapticAmplitudeEnvelopeVibrationFB *)feedback;
|
||||
// the envelope's energy (RMS), not its peak: a short fading pulse held at its peak for the whole duration
|
||||
// felt far stronger than on a Quest (The Boys VR, Jurassic World, BONELAB)
|
||||
double sum = 0.0;
|
||||
for (uint32_t i = 0; env->amplitudes && i < env->amplitudeCount; ++i)
|
||||
sum += (double)env->amplitudes[i] * env->amplitudes[i];
|
||||
float rms = env->amplitudeCount ? (float)sqrt(sum / env->amplitudeCount) : 0.0f;
|
||||
XrHapticVibration plain = {XR_TYPE_HAPTIC_VIBRATION, NULL, env->duration, XR_FREQUENCY_UNSPECIFIED,
|
||||
rms > 1.0f ? 1.0f : rms};
|
||||
if (haptics_logged++ < 3)
|
||||
__android_log_print(ANDROID_LOG_INFO, TAG, "extension shim: haptic envelope (%u samples, %lld ns) -> "
|
||||
"vibration %.2f", env->amplitudeCount, (long long)env->duration, plain.amplitude);
|
||||
return overport_haptics(session, info, (const XrHapticBaseHeader *)&plain);
|
||||
}
|
||||
return overport_haptics(session, info, feedback);
|
||||
}
|
||||
|
||||
EXPORT XRAPI_ATTR XrResult XRAPI_CALL xrGetInstanceProcAddr(XrInstance instance, const char *name,
|
||||
PFN_xrVoidFunction *function) {
|
||||
pthread_once(&once, resolve_overport);
|
||||
if (name && function && instance != XR_NULL_HANDLE && overport_gipa && !strcmp(name, "xrApplyHapticFeedback")) {
|
||||
PFN_xrVoidFunction real = NULL;
|
||||
XrResult r = overport_gipa(instance, name, &real);
|
||||
if (XR_SUCCEEDED(r) && real) {
|
||||
overport_haptics = (PFN_xrApplyHapticFeedback)real;
|
||||
*function = (PFN_xrVoidFunction)apply_haptic_feedback;
|
||||
}
|
||||
return r;
|
||||
}
|
||||
if (name && function && instance != XR_NULL_HANDLE) {
|
||||
PFN_xrVoidFunction emulated = adapter_proc(name);
|
||||
if (emulated) {
|
||||
|
||||
+10
-1
@@ -79,10 +79,19 @@ company = "FramePort"
|
||||
path = "src"
|
||||
module = "main"
|
||||
|
||||
# jni_flutter (1.0.4 and 1.0.4+1, 2026-10) generates bindings that require jni ^1.1.0, while Flet's build template pins
|
||||
# jni 1.0.0: every bundle failed ("generated bindings expect package:jni ^1.1.0"). jni 1.1 also satisfies bindings
|
||||
# made for 1.0 (the check is "same major, at least this minor"). Remove once Flet's template moves to jni 1.1.
|
||||
[tool.flet.flutter.pubspec.dependency_overrides]
|
||||
jni = "1.1.0"
|
||||
|
||||
[tool.flet.macos]
|
||||
entitlement."com.apple.security.files.user-selected.read-write" = true
|
||||
|
||||
[tool.ruff]
|
||||
line-length = 120
|
||||
target-version = "py311"
|
||||
extend-exclude = ["native", "src/frameport/_data"]
|
||||
extend-exclude = ["native", "src/frameport/_data", ".claude"]
|
||||
|
||||
[tool.ruff.lint]
|
||||
select = ["E", "F", "W", "I", "B", "UP"]
|
||||
|
||||
@@ -24,7 +24,9 @@ def short(note: str) -> str:
|
||||
|
||||
|
||||
def render() -> str:
|
||||
entries = [e for e in catalog.load().values() if e.origin == "bundled" and e.status in STATUS]
|
||||
# the repo's own recipes only (a local user catalog would replace or hide entries)
|
||||
bundled = catalog._load_dir(catalog.catalog_dir() / "games", "bundled")
|
||||
entries = [e for e in bundled.values() if e.status in STATUS]
|
||||
entries.sort(key=lambda e: (ORDER[e.status], e.title.lower()))
|
||||
rows = ["| Game | Platform | Status | Notes |", "|---|---|---|---|"]
|
||||
for e in entries:
|
||||
|
||||
@@ -0,0 +1,32 @@
|
||||
#!/usr/bin/env python3
|
||||
"""Stamp a dev build's version into src/frameport/_version.py (CI only; never committed): the next patch release plus
|
||||
.dev<build number>, e.g. 0.9.0 -> 0.9.1.dev57. It sorts above the current release and below the next one, so
|
||||
testers on a dev build get the next release offered as a normal update.
|
||||
|
||||
python scripts/dev_version.py <build number> # prints the stamped version
|
||||
"""
|
||||
import re
|
||||
import sys
|
||||
from pathlib import Path
|
||||
|
||||
VERSION_FILE = Path(__file__).resolve().parents[1] / "src/frameport/_version.py"
|
||||
|
||||
|
||||
def dev_version(current: str, build: int) -> str:
|
||||
base = re.match(r"(\d+)\.(\d+)\.(\d+)", current)
|
||||
if not base:
|
||||
raise ValueError(f"unexpected version {current!r}")
|
||||
major, minor, patch = (int(x) for x in base.groups())
|
||||
return f"{major}.{minor}.{patch + 1}.dev{int(build)}"
|
||||
|
||||
|
||||
def main() -> None:
|
||||
text = VERSION_FILE.read_text(encoding="utf-8")
|
||||
current = re.search(r'__version__\s*=\s*"([^"]+)"', text).group(1)
|
||||
version = dev_version(current, int(sys.argv[1]))
|
||||
VERSION_FILE.write_text(text.replace(f'"{current}"', f'"{version}"', 1), encoding="utf-8")
|
||||
print(version)
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
+256
-13
@@ -3,6 +3,9 @@
|
||||
Chromium (Playwright). Any exception in a view shows up on stdout; screenshots land in --out.
|
||||
|
||||
FRAMEPORT_HOME=<a test data dir> python scripts/ui_smoke.py --out /tmp/shots [--game <package>]
|
||||
|
||||
--linux adds two pretend arm64 Linux apps (an AppImage and a VR folder app, tiny fake ELF files in FRAMEPORT_HOME)
|
||||
and renders their pages; with --fake-frame the AppImage is "installed" with a missing library.
|
||||
"""
|
||||
from __future__ import annotations
|
||||
|
||||
@@ -21,7 +24,7 @@ import flet as ft # noqa: E402
|
||||
from frameport.core import library # noqa: E402
|
||||
from frameport.ui.app import FramePortApp # noqa: E402
|
||||
|
||||
PORT = 8557
|
||||
PORT = int(os.environ.get("FRAMEPORT_SMOKE_PORT", "8557")) # two smoke runs at once need different ports
|
||||
ERRORS: list[str] = []
|
||||
|
||||
|
||||
@@ -44,12 +47,65 @@ class FakeFS:
|
||||
else:
|
||||
with open(os.path.join(base, n), "wb") as f:
|
||||
f.truncate(sizes.get(os.path.splitext(n)[1], 48_000)) # sparse: no real disk use
|
||||
self.shots = self._screenshots()
|
||||
|
||||
def _screenshots(self) -> list[dict]:
|
||||
"""Sample Steam screenshots for the Screenshots tab, two days, a few games + SteamVR: crops of the games' own
|
||||
store art (hero/landscape) when the library has some (docs screenshots), else colour gradients."""
|
||||
from PIL import Image, ImageOps
|
||||
|
||||
from frameport.artwork import fetch
|
||||
|
||||
folder = os.path.join(self.home, "shots")
|
||||
os.makedirs(folder, exist_ok=True)
|
||||
games = []
|
||||
for g in library.games():
|
||||
if g.get("kind") == "rift":
|
||||
continue
|
||||
# the store's own screenshots look like real captures; else hero/wide art
|
||||
shots_art = sorted(fetch.artwork_dir(g["package"]).glob("shot_*.jpg"))
|
||||
games.append((g, shots_art or [p for p in fetch.files(g["package"]) if p.stem in ("hero", "landscape")],
|
||||
bool(shots_art)))
|
||||
games.sort(key=lambda ga: (not ga[2], -len(ga[1])))
|
||||
owners = [(g["package"], g.get("title") or g["package"], arts) for g, arts, _real in games[:3]]
|
||||
spare = games[3][1] if len(games) > 3 else [] # SteamVR's own shots (taken outside a FramePort game)
|
||||
owners.append((None, "SteamVR", spare))
|
||||
now, shots = time.time(), []
|
||||
for i in range(10):
|
||||
t = now - i * 2400 - (86400 if i >= 6 else 0)
|
||||
name = time.strftime("%Y%m%d%H%M%S", time.localtime(t)) + "_1.jpg"
|
||||
path = os.path.join(folder, name)
|
||||
pkg, title, arts = owners[i % len(owners)]
|
||||
if arts: # a different crop of the game's art per shot, so they don't all look alike
|
||||
with Image.open(arts[i % len(arts)]) as src:
|
||||
src = src.convert("RGB")
|
||||
zoom = 1.0 + 0.15 * (i % 3) * (src.width < 2 * src.height)
|
||||
w, h = int(src.width / zoom), int(src.height / zoom)
|
||||
x, y = (src.width - w) * (i % 2), (src.height - h) // 2
|
||||
im = ImageOps.fit(src.crop((x, y, x + w, y + h)), (1280, 720))
|
||||
else:
|
||||
im = Image.linear_gradient("L").resize((640, 360)).convert("RGB")
|
||||
im = Image.merge("RGB", (im.getchannel(0).point(lambda v, i=i: (v + 40 * i) % 256),
|
||||
im.getchannel(1).point(lambda v: 255 - v), im.getchannel(2)))
|
||||
im.save(path, "JPEG", quality=85)
|
||||
shots.append({"path": path, "thumb": None, "time": int(t), "width": 1920, "height": 1080,
|
||||
"size": os.path.getsize(path), "account": "1", "appid": "250820", "package": pkg,
|
||||
"title": title})
|
||||
return shots
|
||||
|
||||
def agent(self, command, **args):
|
||||
if command == "storage_targets":
|
||||
return {"targets": [{"id": n.lower(), "path": os.path.join(self.home, n), "android": a, "shared": True}
|
||||
for n, a in (("Videos", "/sdcard/Movies"), ("Downloads", "/sdcard/Download"),
|
||||
("Documents", "/sdcard/Documents"))]}
|
||||
if command == "list_screenshots":
|
||||
want = args.get("package")
|
||||
shots = [s for s in self.shots if want is None or (s["package"] or "") == want]
|
||||
games = {}
|
||||
for s in self.shots:
|
||||
games.setdefault(s["package"] or "", {"package": s["package"], "title": s["title"], "count": 0})
|
||||
games[s["package"] or ""]["count"] += 1
|
||||
return {"shots": shots, "total": len(shots), "games": list(games.values())}
|
||||
raise RuntimeError(f"fake Frame: {command} not available")
|
||||
|
||||
@property
|
||||
@@ -67,6 +123,11 @@ class FakeFS:
|
||||
|
||||
def stat(self, path):
|
||||
return paramiko.SFTPAttributes.from_stat(os.stat(path))
|
||||
|
||||
def get(self, remote, local, callback=None):
|
||||
import shutil
|
||||
|
||||
shutil.copyfile(remote, local)
|
||||
return SFTP()
|
||||
|
||||
|
||||
@@ -86,6 +147,11 @@ class FakeTarget:
|
||||
self.games = [{"package": g["package"], "kind": "quest", "title": g.get("title"),
|
||||
"apk_size": (g.get("data_bytes") or 0) + 2**28, "sha256": g["build"]["sha256"],
|
||||
"recipe": {"patches": (g.get("recipe") or {}).get("patches", [])}} for g in works[:count]]
|
||||
# --linux: the AppImage is on the Frame, but SteamOS lacks one of its libraries
|
||||
self.games += [{"package": g["package"], "kind": "linux", "title": g.get("title"), "apk_size": 2**26,
|
||||
"apk_present": True, "recipe": None, "exe": g.get("exe"),
|
||||
"missing_libraries": ["libwebkit2gtk-4.1.so.0"]}
|
||||
for g in library.games() if g.get("kind") == "linux" and g["package"] == LINUX_APPIMAGE]
|
||||
|
||||
def describe(self) -> dict:
|
||||
return {"hostname": "steamframe", "os": "SteamOS", "os_version": "3.8", "build_id": "20260922",
|
||||
@@ -116,17 +182,41 @@ class FakeKeyboardSession:
|
||||
self.closed = True
|
||||
|
||||
|
||||
def open_type_dialog(app: FramePortApp) -> None:
|
||||
"""Type on Frame over the Steam Frame page, with one key 'pressed' so the screenshot shows it working."""
|
||||
from types import SimpleNamespace
|
||||
|
||||
app.navigate(1)
|
||||
time.sleep(1.5)
|
||||
def open_type_tab(app: FramePortApp) -> None:
|
||||
"""The Type on Frame tab, with one key 'pressed' so the screenshot shows it working."""
|
||||
app.type_on_frame()
|
||||
time.sleep(1.5)
|
||||
dialog = [d for d in app.page._dialogs.controls if d.open][-1]
|
||||
listener = dialog.content.controls[1]
|
||||
listener.on_key_down(SimpleNamespace(key="Enter"))
|
||||
app.keyboard_view.press("Enter")
|
||||
|
||||
|
||||
LINUX_APPIMAGE = "linux.venera" # --linux's packages
|
||||
LINUX_FOLDER = "linux.matineevr"
|
||||
|
||||
|
||||
def _elf(machine: int = 183, appimage: bool = False, extra: bytes = b"") -> bytes:
|
||||
"""A minimal ELF header (183 = aarch64): enough for FramePort's Linux app detection."""
|
||||
head = bytearray(64)
|
||||
head[:4], head[4], head[5] = b"\x7fELF", 2, 1
|
||||
if appimage:
|
||||
head[8:11] = b"AI\x02"
|
||||
head[18:20] = machine.to_bytes(2, "little")
|
||||
return bytes(head) + extra
|
||||
|
||||
|
||||
def add_fake_linux_apps() -> None:
|
||||
"""--linux: an AppImage and a VR app folder (with a helper program, so "Change program…" shows) in the library."""
|
||||
from frameport import pipeline
|
||||
from frameport.core.paths import user_data_dir
|
||||
|
||||
base = user_data_dir() / "smoke-linux"
|
||||
app = base / "MatineeVR"
|
||||
(app / "lib").mkdir(parents=True, exist_ok=True)
|
||||
(base / "Venera-2.4.2-aarch64.AppImage").write_bytes(_elf(appimage=True, extra=b"\0" * 4096))
|
||||
(app / "MatineeVR").write_bytes(_elf(extra=b"\0" * 8192))
|
||||
(app / "crashpad_handler").write_bytes(_elf())
|
||||
(app / "lib" / "libopenxr_loader.so.1").write_bytes(_elf(extra=b"xrCreateInstance"))
|
||||
pipeline.add_linux_app(base / "Venera-2.4.2-aarch64.AppImage")
|
||||
pipeline.add_linux_app(app)
|
||||
|
||||
|
||||
STEP_SECONDS = 4 # per screen (the screenshot is taken ~3 s in)
|
||||
@@ -143,6 +233,35 @@ def driver(app: FramePortApp, steps: list[tuple[str, callable]], ready: threadin
|
||||
time.sleep(STEP_SECONDS)
|
||||
|
||||
|
||||
def find_button(root, text: str):
|
||||
"""The first button under `root` whose label is `text` (walks Flet's control tree)."""
|
||||
seen, stack = set(), [root]
|
||||
while stack:
|
||||
c = stack.pop()
|
||||
if c is None or id(c) in seen:
|
||||
continue
|
||||
seen.add(id(c))
|
||||
label = getattr(c, "content", None)
|
||||
if (label == text or getattr(c, "text", None) == text) and getattr(c, "on_click", None):
|
||||
return c
|
||||
for attr in ("controls", "content", "actions"):
|
||||
v = getattr(c, attr, None)
|
||||
if isinstance(v, list):
|
||||
stack.extend(v)
|
||||
elif v is not None and not isinstance(v, str):
|
||||
stack.append(v)
|
||||
return None
|
||||
|
||||
|
||||
def click_usb_setup(app) -> None:
|
||||
app.navigate(1)
|
||||
time.sleep(2)
|
||||
button = find_button(app.body, "Set up with a USB cable")
|
||||
print(f"usb button found: {button is not None}", flush=True)
|
||||
if button:
|
||||
button.on_click(None)
|
||||
|
||||
|
||||
def main() -> int:
|
||||
ap = argparse.ArgumentParser()
|
||||
ap.add_argument("--out", type=Path, required=True)
|
||||
@@ -157,8 +276,18 @@ def main() -> int:
|
||||
ap.add_argument("--install-questions", nargs="+", metavar="PKG", default=None,
|
||||
help="open the install questions for these games, then click each dialog's main button twice "
|
||||
"(a double click must not duplicate dialogs); nothing is installed")
|
||||
ap.add_argument("--usb-setup", action="store_true", help="click 'Set up with a USB cable' on the connect page "
|
||||
"(a Frame cabled to this PC) and screenshot what follows")
|
||||
ap.add_argument("--docs", action="store_true", help="only the screens used in the docs (Library, --game, Frame)")
|
||||
ap.add_argument("--gestures", action="store_true", help="with --fake-frame: real mouse drags (drag-select) and "
|
||||
"right-clicks (menus) in Files, Screenshots and the Library; prints what got selected")
|
||||
ap.add_argument("--linux", action="store_true", help="add two pretend arm64 Linux apps and render their pages")
|
||||
ap.add_argument("--links", action="store_true", help="install links: the Add games menu, the paste dialog, the "
|
||||
"confirmation for a pretend FrameDrop manifest, Settings → Install links and (with --game) the "
|
||||
"VR / flat window choice")
|
||||
args = ap.parse_args()
|
||||
if args.linux:
|
||||
add_fake_linux_apps()
|
||||
global STEP_SECONDS
|
||||
if args.hover:
|
||||
STEP_SECONDS = 7
|
||||
@@ -169,12 +298,15 @@ def main() -> int:
|
||||
args.out.mkdir(parents=True, exist_ok=True)
|
||||
game = args.game or (library.games()[0]["package"] if library.games() else None)
|
||||
steps = [("library", lambda a: a.navigate(0)), ("frame", lambda a: a.navigate(1)),
|
||||
("files", lambda a: a.go("files")), ("tools", lambda a: a.go("settings"))]
|
||||
("files", lambda a: a.go("files")), ("screenshots", lambda a: a.go("screenshots")),
|
||||
("live", lambda a: a.go("live")), ("keyboard", lambda a: a.go("keyboard")),
|
||||
("tools", lambda a: a.go("settings"))]
|
||||
if game:
|
||||
steps.insert(1, ("game", lambda a: a.open_game(game)))
|
||||
steps.insert(2, ("game-customize", lambda a: a.open_game(game, advanced=True)))
|
||||
steps += [("share-dialog", lambda a: a.share_config_dialog(game)),
|
||||
("report-dialog", lambda a: (a.page.pop_dialog(), a.report_problem_dialog(game)))]
|
||||
("report-dialog", lambda a: (a.page.pop_dialog(), a.report_problem_dialog(game))),
|
||||
("custom-art-dialog", lambda a: (a.page.pop_dialog(), a.custom_artwork(game)))]
|
||||
# last: the right-click menu stays open over whatever comes next
|
||||
steps.append(("library-menu", lambda a: (a.page.pop_dialog(), a.navigate(0), time.sleep(3),
|
||||
a.library_view.open_menu(game))))
|
||||
@@ -187,7 +319,113 @@ def main() -> int:
|
||||
steps.append(("files", lambda a: a.go("files")))
|
||||
steps.append(("files-select", lambda a: [a.files_view._toggle(e.path, True)
|
||||
for e in a.files_view.entries[1:3]]))
|
||||
steps.append(("type-on-frame", open_type_dialog))
|
||||
steps.append(("screenshots", lambda a: a.go("screenshots")))
|
||||
steps.append(("screenshot-viewer", lambda a: a.screenshots_view.viewer(0)))
|
||||
steps.append(("type-on-frame", lambda a: (a.page.pop_dialog(), open_type_tab(a))))
|
||||
steps.append(("power-confirm", lambda a: (a.page.pop_dialog(), a.frame_power("restart"))))
|
||||
mouse: dict[str, callable] = {} # step name -> mouse actions (Playwright page) after its screenshot
|
||||
if args.gestures:
|
||||
STEP_SECONDS = 14 # the mouse actions run after each step's screenshot, before the next step
|
||||
|
||||
def drag(*points):
|
||||
def run(page):
|
||||
page.mouse.move(*points[0])
|
||||
time.sleep(0.5)
|
||||
page.mouse.down()
|
||||
for pt in points[1:]:
|
||||
page.mouse.move(*pt, steps=25)
|
||||
time.sleep(0.4)
|
||||
page.mouse.up()
|
||||
return run
|
||||
|
||||
def right_click(x, y):
|
||||
return lambda page: (page.mouse.move(x, y), time.sleep(0.5), page.mouse.click(x, y, button="right"))
|
||||
|
||||
def report(label, view, extra=""):
|
||||
def run(a):
|
||||
v = getattr(a, view)
|
||||
print(f"GESTURE {label}: selected={sorted(v.selected)} {extra and eval(extra)}", flush=True)
|
||||
return run
|
||||
|
||||
def escape(page):
|
||||
page.keyboard.press("Escape")
|
||||
steps = [("files", lambda a: a.go("files")),
|
||||
("files-dragged", report("files drag", "files_view")),
|
||||
("files-menu", lambda a: None),
|
||||
("files-space-menu", lambda a: None),
|
||||
("screenshots", lambda a: a.go("screenshots")),
|
||||
("screenshots-dragged", report("screenshots drag", "screenshots_view")),
|
||||
("screenshots-menu", lambda a: None),
|
||||
("library", lambda a: a.navigate(0)),
|
||||
("library-dragged", report("library drag", "library_view", "a.library_view.select_mode")),
|
||||
("library-undrag", report("library drag back", "library_view"))]
|
||||
mouse = {"files": drag((900, 268), (900, 320), (900, 372)), # the folder + 2 files
|
||||
"files-dragged": right_click(900, 320), # a selected one: "… 3 items"
|
||||
"files-menu": lambda page: (escape(page), time.sleep(0.5), right_click(900, 600)(page)),
|
||||
"files-space-menu": escape,
|
||||
"screenshots": drag((680, 280), (950, 280), (950, 430)), # 3 shots
|
||||
"screenshots-dragged": right_click(950, 430),
|
||||
"screenshots-menu": escape,
|
||||
"library": drag((360, 300), (560, 300), (760, 300)), # 3 cards, select mode on
|
||||
"library-dragged": drag((560, 300), (760, 300))} # from a selected card: deselects 2
|
||||
if args.linux:
|
||||
def linux_filter(a, value):
|
||||
a.navigate(0)
|
||||
time.sleep(2)
|
||||
a.library_view._set("platform", value)
|
||||
steps = [("library", lambda a: a.navigate(0)), ("library-linux", lambda a: linux_filter(a, "linux")),
|
||||
("linux-appimage", lambda a: (a.library_view._set("platform", "all"), a.open_game(LINUX_APPIMAGE))),
|
||||
("linux-folder", lambda a: a.open_game(LINUX_FOLDER)),
|
||||
("linux-folder-customize", lambda a: a.open_game(LINUX_FOLDER, advanced=True)),
|
||||
("linux-change-program", lambda a: a.choose_exe(LINUX_FOLDER)),
|
||||
("frame", lambda a: (a.page.pop_dialog(), a.navigate(1))),
|
||||
("linux-menu", lambda a: (a.navigate(0), time.sleep(3), a.library_view.open_menu(LINUX_APPIMAGE)))]
|
||||
if args.links:
|
||||
from frameport import deeplink
|
||||
from frameport.ui.views import link_dialog
|
||||
|
||||
fake = deeplink.Manifest("Example Game", [
|
||||
deeplink.ManifestFile("https://cdn.example.com/example-game-arm64.apk", "ab" * 32),
|
||||
deeplink.ManifestFile("https://cdn.example.com/main.1.com.example.game.obb")],
|
||||
"https://example.com/example-game.framedrop.json",
|
||||
description="A puzzle adventure across floating islands: build bridges, bend light and find your way home. "
|
||||
"Room-scale or seated, with smooth or snap turning.",
|
||||
icon="https://example.com/icon.png")
|
||||
sizes = {fake.files[0].url: 412_000_000, fake.files[1].url: 1_900_000_000}
|
||||
from PIL import Image, ImageDraw
|
||||
|
||||
from frameport.core.paths import user_data_dir
|
||||
|
||||
icon = user_data_dir() / "downloads" / "icons" / "smoke-example.png" # a stand-in for the downloaded icon
|
||||
icon.parent.mkdir(parents=True, exist_ok=True)
|
||||
im = Image.new("RGBA", (256, 256), (0, 0, 0, 0))
|
||||
ImageDraw.Draw(im).rounded_rectangle((8, 8, 248, 248), 48, fill=(124, 92, 255, 255))
|
||||
ImageDraw.Draw(im).ellipse((72, 72, 184, 184), fill=(255, 214, 102, 255))
|
||||
im.save(icon)
|
||||
|
||||
def add_menu(a):
|
||||
a.navigate(0)
|
||||
time.sleep(2)
|
||||
steps = [("library", add_menu),
|
||||
("links-paste", lambda a: a.pick_link()),
|
||||
("links-confirm", lambda a: (a.page.pop_dialog(), link_dialog._confirm(a, fake, sizes, False, icon))),
|
||||
("links-settings", lambda a: (a.page.pop_dialog(), a.go("settings")))]
|
||||
if game:
|
||||
steps.append(("links-display-mode", lambda a: a.open_game(game, advanced=True)))
|
||||
def add_menu_open(page):
|
||||
page.mouse.click(1194, 94) # Add games (1280-wide viewport)
|
||||
time.sleep(2)
|
||||
page.screenshot(path=str(args.out / "library-add-menu.png"))
|
||||
page.mouse.click(120, 520) # outside the menu (Flutter's popup ignores Escape)
|
||||
mouse["library"] = add_menu_open # tall pages: run with e.g. --viewport 1280x3200
|
||||
if args.usb_setup:
|
||||
def continue_usb(a):
|
||||
dialog = [d for d in a.page._dialogs.controls if d.open and type(d).__name__ == "AlertDialog"][-1]
|
||||
button = find_button(dialog, "Done: look for the cable") or dialog.actions[-1] # (label inside a Row)
|
||||
print(f"dialog button found: {button is not None}", flush=True)
|
||||
button.on_click(None)
|
||||
steps = [("usb-explain", click_usb_setup), ("usb-continue", continue_usb),
|
||||
("usb-wait", lambda a: time.sleep(8)), ("usb-after", lambda a: time.sleep(10))]
|
||||
if args.install_questions:
|
||||
queued: list[str] = []
|
||||
|
||||
@@ -279,6 +517,11 @@ def main() -> int:
|
||||
time.sleep(1.5)
|
||||
page.screenshot(path=str(args.out / f"{shot:02d}-{name}.png"))
|
||||
shot += 1
|
||||
if name in mouse:
|
||||
mouse[name](page)
|
||||
time.sleep(2)
|
||||
page.screenshot(path=str(args.out / f"{shot:02d}-{name}-mouse.png"))
|
||||
shot += 1
|
||||
browser.close()
|
||||
except Exception: # noqa: BLE001
|
||||
ERRORS.append("browser: " + traceback.format_exc())
|
||||
|
||||
@@ -0,0 +1,157 @@
|
||||
#!/usr/bin/env python3
|
||||
# ruff: noqa: E501 (the shell snippet for the Frame keeps its lines whole)
|
||||
"""Autonomous USB-cable test (Frame cabled to this PC): everything needed to decide on a "Connect with a USB cable"
|
||||
setup option, in one run, without touching the headset. Writes a Markdown report.
|
||||
|
||||
uv run python scripts/usb_autotest.py --out <report.md> [--no-speed]
|
||||
|
||||
Checks: Windows (via powershell.exe from WSL, or directly): new network adapters, Valve USB devices (VID 28DE), the
|
||||
driver Windows bound and the USB class codes (NCM 02/0D, ECM 02/06, RNDIS E0 or EF/04); the adapter's IPv4 and
|
||||
network category; Frame side (over the normal connection): agent `usb_link`, the systemd units / NetworkManager
|
||||
connection behind usb0 (does it depend on Developer Mode?); Frame -> PC over the cable (the setup direction: a
|
||||
temporary listener on a pairing port); PC -> Frame SSH over the cable (same host key); upload speed USB vs normal.
|
||||
"""
|
||||
from __future__ import annotations
|
||||
|
||||
import argparse
|
||||
import json
|
||||
import os
|
||||
import shutil
|
||||
import socket
|
||||
import subprocess
|
||||
import sys
|
||||
import threading
|
||||
import time
|
||||
from pathlib import Path
|
||||
|
||||
sys.path.insert(0, str(Path(__file__).resolve().parents[1] / "src"))
|
||||
|
||||
PS_PATHS = ("/mnt/c/Windows/System32/WindowsPowerShell/v1.0/powershell.exe", "powershell.exe", "powershell")
|
||||
LISTEN_PORT = 8766 # in FramePort's pairing range (8765-8767)
|
||||
|
||||
|
||||
def powershell() -> str | None:
|
||||
for p in PS_PATHS:
|
||||
if os.path.exists(p) or shutil.which(p):
|
||||
return p
|
||||
return None
|
||||
|
||||
|
||||
def ps(script: str, timeout: int = 60) -> str:
|
||||
exe = powershell()
|
||||
if not exe:
|
||||
return "(no PowerShell)"
|
||||
env = {k: v for k, v in os.environ.items() if k != "PSModulePath"}
|
||||
try:
|
||||
p = subprocess.run([exe, "-NoProfile", "-NonInteractive", "-Command", script], capture_output=True,
|
||||
text=True, timeout=timeout, env=env)
|
||||
return (p.stdout + p.stderr).replace("\r", "").strip()
|
||||
except (OSError, subprocess.SubprocessError) as exc:
|
||||
return f"(powershell failed: {exc})"
|
||||
|
||||
|
||||
WINDOWS = r"""
|
||||
$ErrorActionPreference = 'SilentlyContinue'
|
||||
'== adapters'
|
||||
Get-NetAdapter -IncludeHidden | Select-Object Name,InterfaceDescription,Status,LinkSpeed,MacAddress |
|
||||
Format-Table -AutoSize | Out-String -Width 250
|
||||
'== Valve USB devices (VID 28DE)'
|
||||
Get-PnpDevice -PresentOnly | Where-Object { $_.InstanceId -match 'VID_28DE' } | ForEach-Object {
|
||||
$d = $_
|
||||
$compat = (Get-PnpDeviceProperty -InstanceId $d.InstanceId -KeyName 'DEVPKEY_Device_CompatibleIds').Data -join ' '
|
||||
$svc = (Get-PnpDeviceProperty -InstanceId $d.InstanceId -KeyName 'DEVPKEY_Device_Service').Data
|
||||
$drv = (Get-PnpDeviceProperty -InstanceId $d.InstanceId -KeyName 'DEVPKEY_Device_DriverDesc').Data
|
||||
"{0} | {1} | status={2} | class={3} | service={4} | driver={5} | compat={6}" -f $d.FriendlyName, $d.InstanceId,
|
||||
$d.Status, $d.Class, $svc, $drv, $compat
|
||||
}
|
||||
'== problem devices'
|
||||
Get-PnpDevice -PresentOnly | Where-Object { $_.Status -ne 'OK' -and $_.InstanceId -match 'USB' } |
|
||||
Select-Object FriendlyName,Status,InstanceId | Format-Table -AutoSize | Out-String -Width 250
|
||||
'== IPv4 on 10.86.200.*'
|
||||
Get-NetIPAddress -AddressFamily IPv4 | Where-Object { $_.IPAddress -like '10.86.200.*' } |
|
||||
Select-Object InterfaceAlias,IPAddress,PrefixLength,PrefixOrigin | Format-Table | Out-String
|
||||
'== network profiles'
|
||||
Get-NetConnectionProfile | Select-Object InterfaceAlias,NetworkCategory | Format-Table | Out-String
|
||||
'== SSH to the Frame over the cable (from Windows)'
|
||||
(Test-NetConnection 10.86.200.233 -Port 22 -WarningAction SilentlyContinue).TcpTestSucceeded
|
||||
'== FramePort firewall rules'
|
||||
Get-NetFirewallRule -DisplayName '*FramePort*' | Select-Object DisplayName,Enabled,Profile,Direction |
|
||||
Format-Table | Out-String
|
||||
"""
|
||||
|
||||
FRAME_UNITS = r"""
|
||||
echo "== units mentioning usb/gadget"; systemctl list-units --all --no-pager 2>/dev/null | grep -i -E 'gadget|usb' | head -20
|
||||
for u in $(systemctl list-unit-files --no-pager 2>/dev/null | grep -i -E 'gadget|usb' | awk '{print $1}' | head -8); do
|
||||
echo "== $u"; systemctl cat "$u" --no-pager 2>/dev/null | grep -v '^#' | grep -v '^$' | head -30; done
|
||||
echo "== NetworkManager usb0"; nmcli -f GENERAL.CONNECTION,IP4.ADDRESS device show usb0 2>/dev/null
|
||||
c=$(nmcli -g GENERAL.CONNECTION device show usb0 2>/dev/null); [ -n "$c" ] && nmcli -f ipv4.method,ipv4.addresses,connection.autoconnect connection show "$c" 2>/dev/null
|
||||
echo "== configfs"; ls -la /sys/kernel/config/usb_gadget/ 2>&1 | head; ls /sys/kernel/config/usb_gadget/*/functions/ 2>&1 | head
|
||||
echo "== udc"; for u in /sys/class/udc/*; do echo "$u $(cat $u/current_speed 2>/dev/null) $(cat $u/state 2>/dev/null)"; done
|
||||
echo "== devkit"; ls -la /etc/steamos-devkit-enabled 2>&1
|
||||
"""
|
||||
|
||||
|
||||
def frame_to_pc(frame, pc_ips: list[str]) -> list[str]:
|
||||
"""Can the Frame open a TCP connection to this PC over the cable (what the setup step needs)?"""
|
||||
lines, got = [], []
|
||||
srv = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
|
||||
srv.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
|
||||
try:
|
||||
srv.bind(("0.0.0.0", LISTEN_PORT))
|
||||
except OSError as exc:
|
||||
return [f"couldn't listen on {LISTEN_PORT}: {exc}"]
|
||||
srv.listen(4)
|
||||
srv.settimeout(1)
|
||||
|
||||
def accept():
|
||||
end = time.time() + 20
|
||||
while time.time() < end:
|
||||
try:
|
||||
conn, addr = srv.accept()
|
||||
got.append(addr[0])
|
||||
conn.sendall(b"HTTP/1.0 200 OK\r\n\r\nframeport-usb-ok\n")
|
||||
conn.close()
|
||||
except OSError:
|
||||
continue
|
||||
t = threading.Thread(target=accept, daemon=True)
|
||||
t.start()
|
||||
for ip in pc_ips:
|
||||
code, out, err = frame.run(f"curl -s --max-time 6 http://{ip}:{LISTEN_PORT}/ping || echo FAILED", timeout=20)
|
||||
lines.append(f"Frame -> {ip}:{LISTEN_PORT}: {(out or err).strip()[:80]}")
|
||||
t.join(timeout=22)
|
||||
srv.close()
|
||||
lines.append(f"connections seen from: {got or 'none'}")
|
||||
return lines
|
||||
|
||||
|
||||
def main() -> None:
|
||||
ap = argparse.ArgumentParser()
|
||||
ap.add_argument("--out", type=Path, default=Path("usb-autotest.md"))
|
||||
ap.add_argument("--no-speed", action="store_true")
|
||||
args = ap.parse_args()
|
||||
from frameport.frame import usb
|
||||
from frameport.frame.connection import saved_targets
|
||||
from frameport.targets.frame_lepton import FrameLeptonTarget
|
||||
|
||||
report = [f"# USB cable autotest {time.strftime('%Y-%m-%d %H:%M')}", ""]
|
||||
|
||||
def section(title, text):
|
||||
report.extend([f"## {title}", "```", text.strip() or "(nothing)", "```", ""])
|
||||
print(f"--- {title}\n{text.strip()[:3000]}\n", flush=True)
|
||||
|
||||
section("Windows", ps(WINDOWS, timeout=120))
|
||||
wsl = subprocess.run(["ip", "-4", "-o", "addr", "show"], capture_output=True, text=True).stdout
|
||||
section("This side (WSL/Linux) IPv4", wsl)
|
||||
frame = FrameLeptonTarget(saved_targets()[0], None).connect().frame
|
||||
section("Frame units / NetworkManager / configfs", frame.run(FRAME_UNITS, timeout=60)[1])
|
||||
result = usb.check(frame, measure=not args.no_speed)
|
||||
section("frameport frame usb-check", json.dumps(result, indent=1, default=str))
|
||||
ips = result.get("pc_addresses") or []
|
||||
section("Frame -> PC over the cable (setup direction)", "\n".join(frame_to_pc(frame, ips)) if ips else
|
||||
"skipped: this side has no address on the Frame's USB network")
|
||||
args.out.write_text("\n".join(report), encoding="utf-8")
|
||||
print(f"report: {args.out}")
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
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Block a user