cecc05983098cc7eaaf2ee7a86edb323050c9ee3
1648
Commits
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cecc059830 |
fix(windows/capture): 250 Hz cursor poll + HDR white-scale observability
- The polled position is also the composite-blend position: at 16 ms a 240 fps session reused a stale position for ~4 consecutive frames and the composited pointer visibly stuttered against the video. 4 ms out-paces every session rate; a tick is one GetCursorInfo syscall. - Log the queried DISPLAYCONFIG_SDR_WHITE_LEVEL scale on each blend- scratch rebuild so an HDR session shows what is actually applied (the virtual display's own SDR-brightness setting is the suspect when the cursor still reads dark). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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d31d41b6b8 |
fix(windows/capture): match the HDR-composited cursor to the target's SDR white level
sRGB→linear alone lands cursor-white at 80 nits (scRGB 1.0) while DWM composes the surrounding SDR desktop at the user's SDR-brightness setting (~200+ nits by default) — the cursor read visibly dark on HDR. Scale by DISPLAYCONFIG_SDR_WHITE_LEVEL (new win_display::sdr_white_level_scale, queried on blend-scratch rebuilds — the CCD query stays off the per-frame path). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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6e37da8b4e |
fix(windows/capture): clippy unnecessary_lazy_evaluations in scratch build
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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0af280a793 |
feat(windows/capture): host-side cursor compositing for the capture model — the deterministic fix
Root cause, proven on-glass across five driver builds: a declared IddCx hardware cursor is IRREVOCABLE. There is no un-declare DDI, the empty-caps re-setup is rejected INVALID_PARAMETER, and after a successful same-mode re-commit with the driver's re-declare provably suppressed (sticky per-target flag, zero re-setups logged) DWM still never composites the software cursor back into the monitor's frames. Every DWM-based composite flip is therefore unfixable. The composite (capture) model is now implemented in OUR pipeline: - the driver keeps its hardware cursor declared for the session's whole life (the state that works) — frames stay pointer-free always; - in composite mode try_consume routes the conversion through a blend scratch: slot copy + one alpha-blended quad of the GDI poller's shape at its polled position (CursorBlendPass — fullscreen-triangle VS with viewport placement, straight-alpha PS, sRGB→linear for FP16/HDR rings), covering all four convert paths (NV12, 4:4:4 copy, P010, PyroWave) GPU-side under the slot's keyed mutex; - pointer-only motion produces no driver publish (declared hw cursor), so try_consume REGENERATES from the last slot whenever the polled cursor state changes — the cursor moves on a static desktop at tick rate, without faking freshness for the stall/death watchdogs; - set_cursor_forward becomes purely host-internal state; the SET_CURSOR_FORWARD IOCTL machinery is no longer used by the host (driver keeps it, dormant) and its sender plumbing is removed. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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89cfef429e |
fix(windows/vdisplay): cursor-render state sticky per TARGET across monitor generations
On-glass: 're-setup on swap-chain assign -> 0x0' fired AFTER 'enable=0 stored' — duplicate/successor monitor entries (re-arrival churn) kept their default-true flag and re-declared the hardware cursor right after the composite flip's re-commit, undoing it. The desired state now lives in a per-target static (CURSOR_FORWARD_DESIRED): every arrival inherits it (no generation can resurrect a declare the session turned off), and the flip stamps EVERY live entry matching the target, declaring against whichever has the live worker. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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b50e4767de |
fix(windows/cursor-flip): flag + forced same-mode re-commit — the working un-declare
The empty-caps un-declare is REJECTED by IddCx (STATUS_INVALID_PARAMETER, on-glass driver 9.9.0722.1407) — there is no un-declare DDI. The composite flip now works with the only lever the OS gives us: every mode COMMIT reverts the path to the software cursor, and the driver skips its per-commit re-declare while cursor_forward_on is off. So: - driver: disable stores the flag only (no DDI call); enable still declares immediately against the live worker's event. - host capturer: after a successful disable flip, force a same-mode re-commit (win_display::force_mode_reenumeration) — DWM composites the pointer from the very next commit; the swap-chain flap is the class the driver's preserved-publisher machinery already rides out. - state now survives re-arrivals end-to-end: the capturer caches the APPLIED state (cleared on every channel (re)delivery, which re-created driver entries need — their flag defaults to declared), and the stream loop re-applies every tick instead of edge-gating (steady-state cost: one Option compare). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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79d30fde64 |
fix(windows/capture): unsafe block for the extracted dup_into_public call
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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6a8df2ba97 |
fix(windows/cursor-flip): survive driver-side monitor re-arrival — flag-based flip + channel re-delivery
On-glass (.173, match-window session): every window-size convergence re-creates the driver-side monitor (re-arrival resize / sibling-session slot churn), destroying the cursor worker the channel was delivered to — the flip then died NOT_FOUND (no entry with target_id ∧ worker) and the declared state was lost entirely. Driver: set_cursor_forward becomes STATE, not an edge on one monitor generation — find by target_id ∧ hw_cursor, store cursor_forward_on even without a live worker (it steers the next delivery/re-setup); declare/un-declare only when a worker exists. Channel delivery honors the flag: setup_and_spawn(declare=false) adopts + spawns WITHOUT declaring (composite mode), so a later enable-flip declares against the worker's event. Host: retain the SET_CURSOR_CHANNEL sender; extract deliver_cursor_channel and RE-deliver the surviving section on every ring recreate and — with one retry — when a flip IOCTL fails (the re-arrived entry gets a fresh worker, declared per its flag). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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030a779391 |
feat(windows/vdisplay): the driver leg of the mid-stream cursor-render flip
Belongs to 493f4fae (which shipped only the crates/ side — this packaging/ half was left unstaged, so the deployed driver silently lacked the IOCTL and every flip died NOT_FOUND at dispatch): IOCTL_SET_CURSOR_FORWARD dispatch + monitor::set_cursor_forward (cursor_forward_on flag, resetup gate) + cursor_worker:: unsetup_hardware_cursor (empty-caps un-declare experiment). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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d86073dc6a |
feat(apple/cursor): send the mid-stream cursor-render flip — ABI v12
PunktfunkConnection.setCursorRender(clientDraws:) over the new punktfunk_connection_set_cursor_render export, driven by one edge-detected reconciler in StreamView (clientDraws = captured && desktopMouse) called from every transition — the ⌃⌥⇧M chord, engage/release, and session start. Capture model and released now get the host-composited pointer back in the video (full fidelity); the desktop model keeps the local NSCursor path. xcframework rebuilt v12. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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92761813a9 |
feat(core+host+driver+client): mid-stream cursor-render flip — host composites in the capture model
The cursor channel excluded the host pointer from the video for the whole session, but the client only draws it under the DESKTOP mouse model — flipping ⌃⌥⇧M to capture mid-stream left the session pointer-blind (user-found). The fix makes render ownership LIVE state: - wire: CursorRenderMode 0x51 (client→host, control stream) — client_draws: true = desktop model (host excludes + forwards), false = capture model / released (host composites, full fidelity — DWM on Windows incl. real XOR inversion, encoder blend on Linux). Sessions start client_draws=true (the pre-message behavior). - host: control task stores the flag; the encode loop edge-detects it — forwarding + frame.cursor strip while the client draws, quiet forwarder + overlay-into-blend while composited. SessionPlan now grants blend CAPABILITY wherever the capture has a pointer (dropping the !cursor_forward gate) so the composite side needs no encoder rebuild; per-tick frame.cursor decides what is drawn. - Windows: Capturer::set_cursor_forward → retained IOCTL_SET_CURSOR_FORWARD sender (proto v6) → driver (un)declares the IddCx hardware cursor on the LIVE monitor. Un-declare re-issues the setup with EMPTY caps (candidate mechanism — the DDI has no documented un-setup); resetup-on-commit is skipped while off, so a mode commit's software-cursor default is the fallback path. Failure against a pre-v6 driver logs and keeps declared-at-ADD behavior. - SDL client: one edge-detected reconciler at the cursor pump site — desktop-active = client draws; capture model or released = host composites. Covers the chord, the M3 auto-flip, and engage/release. - C ABI v12: punktfunk_connection_set_cursor_render (additive; wire version unchanged — pre-§8 hosts ignore the unknown message type). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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0420be9fa5 |
fix(apple/cursor): reset per-session cursor-channel state in stop()
cursorChannelActive/hostCursors/cursorState stayed latched across sessions — a next session against a host WITHOUT the cursor cap would wear the previous session's stale shapes via resetCursorRects. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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f2082f8b57 |
fix(windows/capture): drop redundant unsafe at the poller-spawn CCD call (inside open_on's unsafe region)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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9162e7b451 |
fix(windows/vdisplay): drop now-unused INFINITE import (poll-loop wait)
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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e59634a578 |
feat(windows/capture): GDI cursor-shape poller — masked/monochrome cursors for the cursor channel
The M2c redesign (design/remote-desktop-sweep.md §8): the IddCx hardware- cursor query is alpha-only by design — IDDCX_CURSOR_SHAPE_TYPE has no monochrome value, the OS pre-converts monochrome to masked-color, and masked-color delivery is dead code on modern builds (proven on-glass at every ColorXorCursorSupport level). The driver keeps its hardware cursor declared (XOR FULL) purely so DWM excludes every cursor type from the IDD frame; the SHAPE now comes from a GDI poller in the capture host — which runs as SYSTEM inside the interactive session, so no helper process is needed. CursorPoller (idd_push/cursor_poll.rs, the RustDesk/WebRTC/OBS pattern): ~60 Hz GetCursorInfo on a dedicated thread; rasterise via CopyIcon→GetIconInfo→GetDIBits only when the HCURSOR value changes; monochrome via the WebRTC truth table with invert pixels as opaque black plus a white outline; AND-mask alpha for alpha-less color cursors; CURSOR_SUPPRESSED = hidden; per-output visibility via the target's desktop rect; per-monitor-V2 DPI awareness thread-scoped; input-desktop reattach on failure + 2 s cadence (GetCursorInfo on a stale desktop succeeds with stale data). Spawned iff the cursor channel was delivered; a live poller is the sole overlay source (no serial-namespace mixing) — the driver shm read remains as fallback if the poller dies. Not chosen: DXGI Desktop Duplication GetFramePointerShape — PointerPosition.Visible goes stale under injected-only input on current Win11 (Sunshine #5293, exactly our topology), it burns one of the session's four duplication slots, and IDD-output metadata has conflicting field reports. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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d2cc770938 |
fix(windows/vdisplay): QueryHardwareCursor3 + per-mode-commit cursor re-setup — M2c findings
Durable results of the M2c on-glass bring-up (.173, 2026-07-22): - The base IddCxMonitorQueryHardwareCursor DDI slot is stubbed to STATUS_NOT_SUPPORTED on WDK 26100 — add the ...QueryHardwareCursor3 wrapper (wdk-iddcx) and drain it instead; v3 X/Y are only meaningful when PositionValid, so a position-invalid tick keeps the prior position. - Hardware-cursor setup is per-mode-commit: the OS silently reverts to a software cursor on every mode commit, so re-issue the setup on each swap-chain assignment (monitor::resetup_cursor, called from assign_swap_chain) or the query fails NOT_SUPPORTED forever. - One caps definition for initial setup and re-setup, resting at XOR FULL: the query delivers ONLY alpha shapes in every configuration (all three ColorXorCursorSupport levels, event-driven and 30 Hz polled) — masked/monochrome cursors never arrive. FULL keeps the frame cursor-free for ALL cursor types; the full-fidelity shape comes from the session-side cursor source in the host (design/remote-desktop-sweep.md §8). - Poll the query at ~30 Hz instead of pure event-wait: masked cursors never fire the data event, and the seqlock's position/visibility should stay fresh regardless. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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2bbcbc81c6 |
fix(apple/cursor): disable M3 visibility-based auto-flip — it broke desktop drags
On-glass (Mac ↔ Windows M2c host): the host cursor's VISIBILITY is not a usable 'a game grabbed the mouse' signal — Windows hides the pointer for ordinary desktop activity (clicking, typing). The per-frame forwarder turned those transients into relative_hint=true, so the client flipped desktop→capture→desktop, which (a) warped the cursor to view-centre and (b) flushed held buttons via releaseAll — a spurious mouse-up ~200 ms into every press that broke window dragging/resizing. Disable the auto-flip; the mouse model stays user-driven (⌃⌥⇧M). The hint still rides the wire, unused, for a future M3 that keys off a REAL pointer-lock signal (host-side ClipCursor/raw-input detection) instead of visibility. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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a99ef7f940 |
fix(windows): hw_cursor_capable must not assume an initialised display manager
The FIRST session's Welcome runs before any backend construction (vdisplay::open happens at display prep, after the Welcome), so the capability probe's vdm() expect panicked the very first handshake of a fresh service — the client saw a dead connect and auto-wake kicked in. init() is idempotent and the driver facade is a unit struct, so the probe now initialises the manager itself. Found on-glass (.173, first Mac-client connect), fix deployed there. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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ec8ca9a535 |
feat(apple): cursor channel on the Mac client — ABI v11 + NSCursor rendering
The Mac client now exercises the full cursor channel against capable hosts: desktop-mode sessions advertise CLIENT_CAP_CURSOR, the host stops compositing the pointer, and StreamView draws the forwarded shapes as the real NSCursor — plus the M3 host-driven model flip. - ABI v11: punktfunk_connect_ex9 (adds client_caps; ex7/ex8 pass 0 — Android untouched), PunktfunkCursorShape/State + the two next_cursor_* poll fns (audio-style borrow contract), and PUNKTFUNK_CLIENT_CAP_CURSOR. Fixed in passing: the first insertion split next_host_timing's cfg/no_mangle attributes off the fn, which silently dropped the symbol from the header AND dylib — caught by the Swift build, reattached with its docs. - PunktfunkConnection: clientCaps connect param, hostSupportsCursor, CursorShapeEvent/CursorStateEvent + nextCursorShape/nextCursorState (one cursor thread drains both planes; cursorLock joins the close() ladder). - SessionModel: desktop-mode sessions (DefaultsKey.mouseMode) connect with the cursor cap on macOS. - StreamView: shape cache (serial → NSCursor, straight-alpha RGBA via CGImage), resetCursorRects wears the HOST shape while the desktop model is engaged (hidden host pointer ⇒ invisible), latest-wins state pump, and the M3 auto-flip — edge-triggered on relative_hint, ⌃⌥⇧M sets an override latch cleared by the next host edge, leaving relative warps the pointer to the host position via the inverse letterbox mapping (CGWarpMouseCursorPosition, CursorCapture's coordinate convention). Verified: swift build + full test suites green (xcframework rebuilt at ABI v11, signed); core 218 tests + clippy -D warnings on Linux (.21). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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3a34440a6b |
feat(windows): IddCx hardware-cursor channel — remote-desktop sweep M2c
Brings the cursor channel to Windows hosts. The pf-vdisplay driver declares an IddCx hardware cursor for sessions that negotiated cursor-forward — DWM then EXCLUDES the pointer from the IDD frame and delivers shape/position out-of-band, into the same CursorOverlay → forwarder → wire → client pipeline the Linux portal path uses. - pf-driver-proto v5 (additive, host floor stays 3): AddRequest's spare tail becomes hw_cursor (same size/offsets); IOCTL_SET_CURSOR_CHANNEL delivers a host-created CursorShm section (64-byte seqlock header + 256² shape buffer, layout pinned + tested). No event crosses the boundary — the host polls at encode-tick pace. - driver: wdk-iddcx grows the two cursor DDI wrappers; a per-monitor cursor worker (event wait → QueryHardwareCursor → seqlock publish) starts only when BOTH the ADD asked and the channel arrived, so a failed delivery leaves DWM compositing as today. Shape bytes ship raw (BGRA/masked + pitch); the host converts. - host: the section rides the existing sealed-channel broker (least- privilege dup, remote reap on failure); IddPushCapturer::cursor() seqlock-reads → CursorOverlay (BGRA→RGBA, masked-color approximation, desktop→frame origin shift, per-shape conversion cache). New Capturer::cursor() trait hook — the encode loop prefers it over the frame-attached overlay because hardware-cursor moves produce NO new frame on a static desktop. hw_cursor survives the re-arrival resize (carried on the manager's Monitor). - negotiation: cursor_forward grows the Windows arm (client cap ∧ driver proto ≥ 5, probed once via the control device); SessionPlan carries cursor_forward → OutputFormat.hw_cursor. - drive-by: wdk-probe's two pre-existing same-type casts (clippy) and pf-vdisplay's stale spike-test refs (crate::win_display moved to pf-win-display; tracing-subscriber was never a dep) repaired. Verified: proto tests on Mac AND MSVC (15/15 incl. the CursorShm layout pin); clippy -D warnings for proto/frame/capture/vdisplay/host on Linux (.21) and native Windows (.173); the DRIVER workspace clippy -D warnings green against the real WDK 10.0.26100 bindgen (DDI names, enum variants and IDARG layouts all bind). On-box driver deploy + on-glass validation follow. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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c3cbffe662 |
feat(host+client): host-driven mouse-model flip — remote-desktop sweep M3
The full Parsec model: launching a game from a desktop session flips the client into captured relative automatically, and back — no chords. - Capture overlay now distinguishes 'hidden' from 'no cursor yet': CursorOverlay grows a visible flag, overlay() returns Some whenever a bitmap is known (the encode loop strips invisible overlays after forwarding so no blend path ever draws one; the CPU composite guarded on visibility already). - Host forwarder maps it onto the reserved wire bit: visible ⇒ VISIBLE, hidden-but-known ⇒ RELATIVE_HINT (an app grabbed/hid the pointer), never any hint before the first bitmap — a cold start can't flip a desktop session into capture. - Presenter: edge-triggered auto-flip on hint changes via the new Capture::set_desktop (chord semantics untouched); a manual ⌃⌥⇧M sets an override latch that holds until the HOST's intent next changes, so the hint never fights the user. Leaving relative warps the local cursor to the host's last pointer position through the new content_to_window inverse-letterbox mapping (unit-tested against finger_to_content) — the hand-back is seamless. Verified on .21: fmt + clippy -D warnings + tests (presenter 20 incl. the inverse-mapping roundtrip, host 245). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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4a01bc4463 |
feat(core+host+client): cursor channel — remote-desktop sweep M2a+M2b
The host cursor stops riding the video and becomes a real OS cursor on the client (the Parsec/RDP model): pointer feel no longer pays the capture→encode→network→decode→present round trip. Wire (M2a): - Hello grows a client_caps trailing byte (CLIENT_CAP_CURSOR) after the fixed display_hdr block — presence disambiguated by remaining length, which caps the post-HDR tail at 27 bytes (documented); Welcome answers HOST_CAP_CURSOR (capable-and-asked, the 444/clipboard precedent). - CursorShape (0x50, control stream): serial + dims + hotspot + straight RGBA, ≤120px/side so the u16 frame always fits (128² would overshoot); client caches by serial — re-showing a known shape costs 14 bytes, not a bitmap (RDP pointer-cache for free). - CursorState (0xD0 datagram): serial + visible/relative_hint flags + position, sent once per encode-loop tick — latest-wins, self-healing under loss, no refresh timer. relative_hint is reserved for M3. - Client core: two new planes (control-task + datagram-task arms) → next_cursor_shape/next_cursor_state; connect() grows client_caps (C ABI passes 0 until the v11 cursor poll fns exist). Host (M2b, Linux portal only): - handshake::cursor_forward is THE predicate (client asked ∧ Linux ∧ compositor ≠ gamescope) — Welcome bit and session wiring both read it. - SessionPlan.cursor_blend goes false for a forwarding session; the encode loop ticks a CursorForwarder every iteration: shape-serial diff → control-task bridge (mirrors probe_result), state datagram → conn. - CursorOverlay/capture CursorState carry the hotspot through (nearest-neighbor downscale backstop for XL cursors, unit-tested). Presenter: - CursorChannel drains both planes per loop iteration; shapes become SDL color cursors (from_surface + hotspot), applied while the desktop mouse model is engaged; visibility follows the host; capture/released hands back the system cursor. Sessions advertise the cap when they START in desktop mode. Verified on .21: fmt + clippy -D warnings (7 crates) + tests green (core 218 incl. new wire roundtrips, host 245 incl. e2e + forwarder downscale tests). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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97d20e1f0a |
feat(apple/input): desktop (absolute) mouse mode on macOS — remote-desktop sweep M1
Folds the parked client-side-cursor machinery (cursorMode auto/always/ never, hidden while disabled) into the cross-client mouse model: MouseInputMode capture|desktop under DefaultsKey.mouseMode, picked in Settings ▸ Keyboard & mouse (macOS), resolved at session start and gated off on gamescope hosts (relative-only EIS). Desktop model = the un-neutered absolute path with the SDL cursor policy: pointer never disassociated (enters/leaves the stream freely), monitor forwards letterboxed absolute positions, and the local cursor hides only while over the view via an invisible-cursor rect (the host's composited cursor is the one you see; AppKit manages the rect, so no hide/unhide balancing). ⌘⇧C becomes ⌃⌥⇧M — the same chord as the SDL clients — flipping the model live with an atomic release/re-engage. Verified: swift build + full test suites green (macOS arm64). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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df04880273 |
feat(client/input): desktop (absolute) mouse mode — remote-desktop sweep M1
New physical-mouse model beside capture: Desktop leaves the pointer uncaptured and sends absolute positions through the letterbox (MouseMoveAbs — every host injector already consumes it). Capture stays the default and the game model. - pf-client-core: MouseMode (capture|desktop) persisted in Settings, default capture so existing stores are unchanged. - pf-presenter: Capture grows a desktop model — latest-wins pending abs position coalesced per loop iteration (same 1000 Hz discipline as relative), flushed before clicks/keys/wheel so they land where the cursor is; Ctrl+Alt+Shift+M flips the model live; local cursor stays hidden over the window (the host's composited cursor is the one you see until the M2 cursor channel); Windows keyboard grab only engages for capture (a desktop stream is something you Alt-Tab away from). - gamescope gating: its EIS is relative-only, so desktop mode is pinned off there (resolved_compositor), with a log note. - Settings surfaces: GTK row (dynamic caption), WinUI combo, console-UI row + step test, capture-hint line. Verified: fmt + clippy -D warnings + tests (33/40/19) on Linux .21; clippy -D warnings for all five crates incl. punktfunk-client-windows native on .173. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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73fee86337 |
chore(release): bump workspace version to 0.18.0
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The 0.17.2 placeholder underestimated this cycle: Android mouse & keyboard (physical mouse + capture, TV remote-as-pointer, IME text, clipboard), the new committed-text input plane (InputKind::TextInput / HOST_CAP_TEXT_INPUT), and the ChaCha20-Poly1305 session cipher are feature work — a minor, not a patch. Wire/driver/C-ABI markers all unchanged (2 / 4 / 10): every addition is negotiated or ignored by older peers. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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b5ed486243 |
ci(android): survive fleet-load download truncation in the SDK setup
The android leg failed twice on 2026-07-22 with sdkmanager's "Error on ZipFile unknown archive" — once in our NDK/build-tools step, once inside setup-android's default package set. Root cause is the shared runner fleet dropping packets under parallel-job load (the same class retry.sh documents for the flatpak leg): sdkmanager unzips while streaming, so a truncated stream reads as a corrupt archive. A solo re-download on the same runner verified clean. - setup-android: install only platform-tools — the action's default legacy `tools` package drags in the ~250 MB emulator this job never uses, which was the largest and flakiest download in the whole leg. - NDK/build-tools/CMake: wrap sdkmanager in retry.sh (4 attempts, linear backoff) — a failed attempt leaves no partial package, so re-invoking is safe. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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0e7f6d85d6 |
feat(gamestream): signal HDR mode to the client via the 0x010e control message
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punktfunk negotiates HDR correctly (the stream is BT.2020 PQ 10-bit) but never told the client to switch its display into HDR picture mode, so HDR streams stayed in SDR on the TV. Sunshine sends an async control-stream message (IDX_HDR_MODE, type 0x010e, carrying SS_HDR_METADATA) shortly after the stream starts; Moonlight only flips the TV into HDR on that cue. We sent exactly one host→client control message (rumble 0x010B) and never this one. (aurora-tv PR #53 worked around it client-side by inferring HDR from the negotiated format; this fixes it host-side so stock Moonlight clients switch too.) Once the control stream is live and the session negotiated HDR, send a one-shot 0x010e message (enable + 26-byte SS_HDR_METADATA from generic HDR10 defaults), latched per connection and re-armed on Disconnect. The rumble sequence counter is unified into a single monotonic `host_seq` shared by both message types — the GCM nonce derives from `seq`, so a separate per-type counter would reuse (key, nonce) pairs in the host direction. The BT.2020 PQ VUI already rides the bitstream (the encoder derives it from the P010 capture format), so this is purely the missing "switch now" signal; no encoder change needed. Wire layout locked by unit tests. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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2dddf0fefc |
fix(gamestream): accept legacy X.509 v2 Moonlight client certs in mTLS pairing
rustls-webpki 0.103 accepts only X.509 v3 certs and returns `UnsupportedCertVersion` for anything older, aborting the mTLS handshake at the `CertificateVerify` step before it ever checks the signature. The moonlight-embedded client family (moonlight-embedded, aurora-tv, …) still mint self-signed **v2** certs with no keyUsage extension, so pairing fails against punktfunk while it works against Sunshine — whose OpenSSL verify callback never inspects the cert version. (aurora-tv PR #53 worked around this client-side by switching to v3 + keyUsage; this fixes it host-side for stock clients too.) The cert's X.509 version and extensions carry no security weight here: the client cert is self-signed and pinned by SHA-256 (`peer_is_paired`), and the PIN pairing ceremony is the real proof of identity. The property that DOES matter — that the peer holds the private key for the cert it presented — is still enforced: when webpki rejects the cert we re-run exactly that `CertificateVerify` check with a version-agnostic parser (x509-parser SPKI + the same `rsa` verify `pairing::verify256` uses). This is a full cryptographic check, never a bypass: a bad signature still fails, and non-RSA / unsupported schemes fall through to webpki's original error. Matches Sunshine's leniency without loosening the pinned trust model. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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c90343c22f |
feat(android): shared clipboard (text) — device↔host sync while streaming
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The desktop clients' clipboard protocol, adopted on Android (text-only v1): opt-in ClipControl at stream start when the host advertises HOST_CAP_CLIPBOARD and the new "Shared clipboard" setting (default on) allows. Device → host: local copies (primary-clip listener + a probe at start) are announced as lazy format-list offers; the text crosses only when the host actually pastes (FetchRequest → served from the live clipboard). Host → device: a host copy's offer is fetched eagerly and lands in the system clipboard (Android has no practical lazy-paste provider), with an echo guard so the resulting clip-changed callback doesn't bounce it back as a new offer. Native side: session/clipboard.rs JNI shims over NativeClient's clip_* surface; events cross to Kotlin as compact strings from a blocking nativeNextClip poll on a dedicated thread (the nativeNextRumble pattern), joined before the session handle is freed. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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abe6228b42 |
feat(core+host+android): committed-text input plane (IME path) — InputKind::TextInput
The VK key-event vocabulary cannot express text an input method COMMITS (autocorrect, gesture typing, non-Latin scripts, emoji). Add a first-class text event and negotiate it: - punktfunk-core: InputKind::TextInput (= 15) carries one Unicode scalar per event in `code`; HOST_CAP_TEXT_INPUT (0x04) in Welcome::host_caps. - Host advertises the cap only where the session's inject backend can type text: Windows SendInput (KEYEVENTF_UNICODE, surrogate-pair aware) and the Linux wlroots backend — a dedicated second zwp_virtual_keyboard whose xkb keymap grows Unicode keysyms on demand (the wtype model), so keymap re-uploads never disturb the main device's layout/modifier state. The KWin-fake-input/libei/gamescope backends can only press layout keycodes, so those sessions don't set the bit and clients keep the VK fallback. - GameStream plane: Moonlight's UTF-8 text packet (MAGIC_UTF8, previously recognized-and-dropped) now decodes to the same TextInput events. - Android: KeyCaptureView picks a real editable InputConnection when the host has the cap — the IME runs its full machinery, mirrored to the host live via common-prefix diffs of the composition (backspaces + new suffix), with setComposingRegion adopting committed text so autocorrect-revert flows diff instead of retyping; newline→Enter, deleteSurroundingText→Backspace/Delete. Older hosts keep the TYPE_NULL raw-key path unchanged. - keymap: media VKs (0xB0-0xB3) → evdev so the Android media keys land on Linux hosts too. Verified: punktfunk-core + host gamestream + pf-inject tests green on Linux (Ubuntu box), clippy clean; Android app+native builds. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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ddb72edcba |
feat(android): physical mouse + TV remote-as-pointer + keyboard hardening
Phase A — hardware mouse: new MouseForwarder routes every SOURCE_MOUSE event
while streaming. Uncaptured (default): hover/drag positions forward as absolute
cursor moves, wheel with fractional accumulation (high-res wheels), all five
buttons incl. back/forward as X1/X2; the local cursor is hidden over the stream
(TYPE_NULL pointer icon) so the host's composited cursor is the visible one.
Captured ("Capture pointer for games" setting, or Ctrl+Alt+Shift+Q live): the
OS pointer is grabbed via requestPointerCapture on the (repurposed) key-capture
view and raw relative deltas forward as mouse-look; held buttons are tracked
and flushed on capture loss/teardown, and the engaging click is swallowed
(desktop parity). Mouse clicks are intercepted before Compose so they can never
be misread as trackpad taps; a mouse back-button's FALLBACK BACK is dropped so
it can't yank the user out of the stream.
Phase B — keyboard: media/consumer keys (play/pause/next/prev/stop) now map to
their VKs instead of falling to the system; TV-remote SELECT maps to Enter.
Phase D — Android TV: RemotePointer turns a D-pad-only remote into a pointer
(Siri-remote analogue): hold SELECT ~0.8s toggles, D-pad glides the host cursor
with ramped acceleration (Choreographer-paced, diagonal-normalized), SELECT
taps click, play/pause right-clicks, holding it toggles the on-screen keyboard,
BACK leaves pointer mode; an overlay hint teaches the vocabulary.
Settings: "Capture pointer for games" + "Invert scroll direction" (applies
to the wheel and two-finger touch scrolling).
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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5e088af7ed |
fix(pf-win-display): unpin mode indexes on paths the CCD isolate deactivates
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Field report: with Exclusive Topology, the physical monitor sometimes stayed lit — every isolate attempt re-committed and failed SetDisplayConfig with 0x57 ERROR_INVALID_PARAMETER. Clearing DISPLAYCONFIG_PATH_ACTIVE alone leaves the deactivated path's source/target modeInfoIdx pinned to the queried mode entries, and per the SetDisplayConfig contract a path being turned off must have BOTH mode indexes set to DISPLAYCONFIG_PATH_MODE_IDX_INVALID; some driver/topology combinations (notably when the doomed path shares a source with the kept virtual path) reject the supplied config outright, so the retry loop could never converge. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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b7a00137eb |
feat(host): hold a logind sleep/idle inhibitor while clients stream
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Remote INPUT resets the compositor's idle timers, but a passive (video-only) viewer sends none — observed live: a SteamOS Game-Mode host s2idled mid-day and dropped off the network (in a VM with GPU passthrough it never woke again). Refcounted across planes: the native LiveSessionGuard and the GameStream video worker each hold a share; first hold takes the logind sleep:idle block inhibitor on a dedicated plain thread (zbus blocking must not run on a tokio worker), last drop releases. Best-effort: no logind → warn once and stream on. No-op off Linux (macOS/Windows manage their own assertions). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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acce43ebbf |
feat(steamdeck): self-healing reliability — post-OS-update rebuild check + script/docs polish
- rebuild-check.sh + punktfunk-rebuild-check.service (enabled, ordered Before=punktfunk-host): ldd-probes the host binary at session start — milliseconds when healthy, a full update.sh rebuild only when a SteamOS update actually broke its library links. update.sh restarts go --no-block so the check → update.sh → restart chain can't deadlock against the unit ordering. update.sh retrofits the unit. - installer summary: web console is https (the unit serves TLS). - docs: steamos-host.md (runner in the build step, keep-list + auto rebuild = updates survive hands-free), gamescope.md (Gaming Mode touch = single-finger pointer, exact taps, no multi-touch), plugins.mdx (SteamOS runner note), scripts/steamdeck/README.md (rebuild-check, runner payload, keep list, honest packaging trade-off + the CI-prebuilt future direction). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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35923080fb |
fix(host/linux): scale degenerate-region absolute coords by the session's real output size
The raw-client-pixels fallback is exact only while the managed session runs at the client's mode. When they diverge — foreign-gamescope attach at its own resolution, supersample/under-render, transitions — raw pixels drift or land out of range. The EIS relay file now carries the session's current output size as a second "WxH" line (from current_gamescope_output_size()); the injector scales normalized client positions into it, keeping raw pixels only as the last resort. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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0c9461242c |
fix(host/linux): don't normalize absolute coords into gamescope's degenerate INT32_MAX EIS region
The previous commit's no-region fallback never fired: gamescope DOES advertise a region — (0,0,INT32_MAX,INT32_MAX), meaning "coordinates are raw". Mapping normalized positions into it explodes a center tap to x≈1e9, clamped by gamescope to the far corner — the cursor pinned at (1279,799) and every degraded-touch tap landing there. Treat a region as an output geometry only when plausibly sized (≤16384 px); otherwise emit raw client pixels. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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cc6b37fef0 |
fix(host/linux): emit absolute pointer/touch on region-less EIS devices + abs input-test probe
gamescope's "Gamescope Virtual Input" advertises pointer_abs but no region, so every MouseMoveAbs (and the degraded-touch moves built on it) was silently dropped (emitted=false) — clicks then landed at a stale cursor position. With no region, the managed session runs at the client's mode, so client pixels are output pixels: emit them raw. Also: log region count/dims at device-resume, and add PUNKTFUNK_INPUT_TEST_ABS=WxH to `input-test` (corners + center, 1s apart) so the degraded-touch path is verifiable with xdotool alone. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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1927077cbe |
fix(host/linux): degrade touch to absolute pointer when the EIS has no touchscreen device
gamescope's EIS ("Gamescope Virtual Input") advertises pointer/
pointer_abs/button but never a touchscreen — so in Game Mode every
remote TouchDown/Move/Up was dropped on the floor (Desktop Mode works
via KwinFakeInput, which does touch). Headless KWin's libei has the
same gap. Instead of dropping: degrade to a single-finger absolute
pointer — down = abs-move + left press, move = abs-move, up = release —
synthesized through the normal Mouse* inject paths so region mapping,
held-state tracking, and release_all apply. First finger drives the
pointer; later fingers are ignored (a pinch degrades to a drag). A
touchscreen device appearing later takes over on the next touch —
checked per event, never latched.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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068da456f5 |
fix(steamdeck): survive SteamOS A/B updates — register system tuning on the atomic-update keep list
Verified live on a SteamOS 3.8.14→3.8.16 update: the A/B partset switch rebuilds /etc and drops everything not on Valve's keep list — the udev rule (uhid access: virtual pads silently degrade to Xbox 360), the vhci-hcd autoload (native Deck pad transport), and the UDP buffer sysctl (back to 208 KB → stutter). Valve's sanctioned extension point is a drop-in under /etc/atomic-update.conf.d/ — itself on the stock keep list, so it self-preserves. install.sh §4 and update.sh now register scripts/punktfunk-atomic-keep.conf there. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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256aa5f7f2 |
fix(steamdeck): install the plugin runner + harden Deck pad typing + repair update.sh
- scripts/steamdeck/install.sh (§2b) + update.sh: build and install the scripting runner user-scoped (~/.local wrapper + pinned bun + bundle) — SteamOS's read-only /usr can't take the .deb layout, so the console's plugin store reported "the plugin runner isn't installed" on every SteamOS host. update.sh retrofits it onto existing installs. - plugins.rs runner discovery: check the ~/.local layout after the /usr ones; mention the SteamOS path in the not-installed error. - update.sh: define warn() — it was used but never defined, so under `set -e` the first warn aborted the update before services restarted. - pf-client-core gamepad: a Steam Input virtual pad forwarded on a real Deck (the only-pad case) now declares the DECK kind in its per-pad arrival instead of the wrapper's Xbox 360 identity — the session-level auto_pref already resolved SteamDeck, but the arrival overrides it on current hosts. - reject tests: cover SetupFailed; move the foreign-code probe off 0x68. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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2562663fc6 |
fix(host/linux): survive and self-heal dead gamescope sessions on headless SteamOS boxes
Three fixes for the "most connects simply fail" trap on a SteamOS host with no physical display (VM testbox, panel-less mini PC): - restore path: skip the restore-to-physical-panel when no DRM connector reports a connected display — removing the headless drop-in and restarting gamescope-session.target on such a box just crash-loops gamescope and strands every later connect on "no usable compositor". Keep the headless session (and the takeover state) instead. - connect path: when no live graphical session exists but the MANAGED gamescope infra is present (SteamOS gamescope-session / Bazzite session-plus), route to the gamescope takeover — which rebuilds the session at the client's mode — instead of failing the connect. - error delivery: a session-setup failure used to just drop the QUIC connection, reaching the client as "control stream finished mid-frame" (indistinguishable from transport trouble). Close with a typed setup-failed code (0x68, RejectedSetupFailed = -29) carrying the error text, and give the client handshake/pairing error paths a short grace for the CONNECTION_CLOSE to beat the stream error it caused. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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87e7c82cbc |
chore(release): bump workspace version to 0.17.2
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b2e3d1b540 |
fix(steamdeck/install): add cmake dep + acquire sudo in preflight
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pyrowave-sys's build.rs runs cmake to build the vendored PyroWave C library, but cmake wasn't in the distrobox apt list — so `cargo build -p punktfunk-host` dies on every SteamOS host with "is cmake not installed?". Add it. Also move sudo acquisition from step 4 (after the ~15-min build) into preflight and keep the timestamp warm across the build. Before, a non-interactive run (`ssh host 'bash install.sh'`) silently skipped the UDP-buffer/udev/vhci-hcd/ input-group tuning AND enable-linger — a "successful" host with no gamepad passthrough, lossy streaming, and no headless persistence (dies on logout). Now sudo is prompted once up front (authorize and walk away), and a no-TTY / no-password run fails loudly before the build instead of silently at the end. Validated end-to-end on SteamOS 3.8 in a VM with Radeon 780M passthrough: full host + web build, all planes listening, VAAPI render node, headless auto-start via linger. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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d36bec6e9d |
feat(core+host): negotiate ChaCha20-Poly1305 as the session cipher for soft-AES clients
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Lifts the ~100 Mbps decrypt ceiling on clients without hardware AES — the armv7 soft-AES targets (webOS TVs), where AES-128-GCM resolves to fixsliced software AES + software GHASH (~50-100 cpb) while ChaCha20-Poly1305's ARX construction runs ~10-17 cpb portable, a 4-7x lift that PyroWave-on-TV needs (design/chacha20-session-cipher.md). Phase 1 (core crypto, no wire change): SessionKey merges cipher choice and key material (invalid combinations unrepresentable, zeroize + redacted-Debug discipline kept); SessionCrypto dispatches both aead-0.5 ciphers per call — the salt||seq nonce scheme, per-direction salts, seq-as-AAD and replay window carry over verbatim (same 96-bit nonce / 16-byte tag, const-asserted). Config.key becomes SessionKey; validate's zero-key rejection follows the active variant. The C ABI keeps its fixed 16-byte key mapped to AES — no ABI_VERSION bump. Phase 2 (negotiation): VIDEO_CAP_CHACHA20 (0x40) — support-plus-request in one bit, the VIDEO_CAP_444 precedent. Welcome grows cipher@68 + key_chacha@69..101, emitted only when non-zero so an AES session's Welcome stays byte-identical to the pre-cipher form; decode is fail-closed (short key or unknown id -> Err, never a silent AES fallback). No WIRE_VERSION bump; downgrade resistance inherited from the pinned-TLS control channel. Phase 3 (host): grant only when the client advertised the bit and the PUNKTFUNK_CHACHA20 kill-switch (default on, documented) allows; fresh 32-byte per-session key from the same RNG discipline, legacy key field stays independently random; resolved cipher logged at session start. Verification: seal/open suites parameterized over both ciphers + a cross-cipher tamper case; Welcome roundtrip/truncation/fail-closed tests; ChaCha lossy-loopback soak (loss/replay is cipher-independent); bench gains _chacha20 series (AES ids unchanged for CI history) — host-side sealing line-rate-trivial on both x86 (~640 MiB/s) and Apple Silicon (~535 MiB/s). punktfunk-probe drives the interop matrix via PUNKTFUNK_CLIENT_CHACHA20=1 and logs the negotiated cipher. Phase 4 (pf-webos pin bump + unconditional cap bit) follows the next core release. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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abc54a7d13 |
fix(decky): actually ship shortcut artwork + Steam Input layout in the published plugin
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The CI workflow assembled the store zip by hand and silently drifted from
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309e37f1e1 |
fix(host/linux): scope the GPU clock pin to live client sessions
The PUNKTFUNK_PIN_CLOCKS clock pin (AMD power_dpm_force_performance_level=high / NVIDIA nvmlDeviceSetGpuLockedClocks) was armed once at host start and released only at host exit, so the box's clocks stayed pinned the whole time the host ran — even with no client connected. Move the pin behind a box-wide refcount (gpuclocks::session_pin()) shared across both streaming planes (native + GameStream): it arms on the first live client and releases on the last disconnect. on_host_start() now only installs the process-scoped NVIDIA P2-cap application profile. No behavior change when PUNKTFUNK_PIN_CLOCKS is unset. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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56d21f9445 |
fix(client/wol): retry the QUIC dial across the connect budget so wake-from-sleep launches survive
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Launching from the Decky plugin against a sleeping host fired the Wake-on-LAN packet and dialed immediately — but the dial was a single quinn attempt that gave up after the transport's 8 s idle window, far shorter than a suspend-to-RAM resume. The host woke to find the client already gone (its retransmitted Initials show up host-side as "QUIC accept failed error=timed out"), the stream shortcut exited, and the launch looked cancelled. - punktfunk-core: dial in a loop until the embedder's connect budget is spent — short 3 s attempts keep the Initial cadence dense, so the connect lands within ~a second of the host's network returning. Only silence is retried: pin mismatches, typed rejections, and any real answer surface immediately, and the shutdown flag stops the loop. - decky: stretch the budget to 75 s when a magic packet actually went out (PF_CONNECT_TIMEOUT → --connect-timeout via the wrapper), so the retry window covers the resume; an awake host still connects in <1 s. - host: a clean close before the control handshake is a reachability probe (hosts-page online pips), not a failed session — log it at debug instead of WARN "session ended with error", which buried the real failures in the reporter's log. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
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f36d13e371 |
fix(steamdeck/install): prompt for sudo instead of requiring passwordless
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The system-tuning block (UDP buffers, gamepad udev rule, vhci-hcd autoload, input group) was gated on `sudo -n true` — passwordless sudo — so on a stock SteamOS box (the deck account needs a password) the whole block was silently skipped: /dev/uhid stayed root-only so the gamepad degraded to an Xbox 360 pad, and the UDP buffers stayed at the 416 KB default. Video was unaffected because Game Mode/gamescope needs none of it, which masked the skip on-glass. - install.sh + update.sh: acquire sudo interactively (`sudo -v` prompt on a TTY) instead of requiring passwordless; skip only when there's no TTY or auth fails, and then print the exact manual block plus a `passwd` hint — a stock SteamOS 'deck' account has no password, so sudo can't work until one is set. - update.sh: also retrofit the UDP-buffer sysctl for older/skipped installs, and loudly nag to reboot when the input group was just added (a --user restart does not pick up the new group; only a fresh login does). - steamos-host.md: note this step prompts for the sudo password. Root is unavoidable: the udev rule, input group, and vhci-hcd module are all kernel operations with no user-space alternative. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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aacd610b68 |
fix(steamdeck/install): set up controller passthrough + surface the required reboot
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A fresh SteamOS host install failed on-glass two ways: KWin denied Desktop-mode capture (zkde_screencast_unstable_v1) so every session died in the pipeline build, and the native Steam Deck pad degraded to an Xbox 360 controller. Both stem from setup that only a fresh login applies — the host user-service keeps the pre-install group set and KWin reads its .desktop grant at session start — plus a missing vhci-hcd autoload the pad's USB/IP transport needs (the deb/rpm/arch packages ship it; the Deck installer did not). - install.sh: install punktfunk-modules.conf (+ modprobe vhci-hcd now) for the native Deck controller transport, seed the KDE RemoteDesktop grant (kde-authorized) for Desktop-mode input, and print a loud "reboot before streaming" notice when a relogin is actually required (input group added or the .desktop grant first installed). - update.sh: retrofit the udev rule, vhci-hcd autoload, input group, and grant so existing installs pick them up on the next update without a reinstall. - steamos-host.md: document the first-install reboot and the native controller passthrough requirements (input group + vhci-hcd + client-side Steam Input Off). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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081ff64087 |
docs: explain how to actually run the VirtualHere passthrough example
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The VirtualHere DualSense recipe linked the `virtualhere-dualsense.ts` SDK example as a deployable recipe but skipped everything needed to run it: that VirtualHere is a server (couch) + client (host) pair, and that the example — like every example — imports `../src/index.js`, which only resolves inside the SDK repo. A user copying it out had no way to know they must `bun add @punktfunk/host` and swap that import. - automation.md: rewrite the recipe into a full walkthrough — the two-sided VirtualHere setup, the `-t` verbs, the zero-code hooks version, and a new scripted section with exact deploy steps, env vars, and running it as a service (its own SIGTERM handler makes `systemctl stop` release the pad). - sdk/README.md: say how to run an example in-repo vs deployed on a host. - virtualhere-dualsense.ts: header note on the import swap + service setup, since that file is where the doc link lands. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |