The Xbox-pad-on-Windows programme is a five-row matrix — classic XInput, WGI `Gamepad`, WGI
`RawGameController`, GameInput, and the HID/DirectInput/Steam family — and nothing in this tree
measured any of it. Every reading in the handoff came from ad-hoc off-tree tools, which is why
several could not be reproduced later and why one was a false positive. `win-input-matrix` makes
the matrix a command you can run twice and diff.
Two traps are baked into it because both have already cost this programme a wrong conclusion.
`--watch` samples repeatedly and reports LIVE vs MUTE per device, because an API listing a pad that
never reports is the exact failure mode here — worse than not listing it, since a title that binds
the first gamepad latches a dead one. And the doc comment insists on a baseline with the virtual pad
STOPPED: a real Xbox pad owns XInput slot 0, which is how `rc=0 LX=-885` was once read as success
with our pad already killed.
⭐ `wake_wgi()` is not optional and is commented as such. `Gamepad::Gamepads()` and
`RawGameController::RawGameControllers()` return a cache filled by WGI's device-watcher, which a
GUI app has already started and a console app has not. Without subscribing to the Added events
first, BOTH collections come back empty with real controllers attached — measured here: a DualSense
sitting in the HID interface class, `RawGameControllers` count=0. A probe missing this reports "WGI
cannot see the pad" when WGI could not see anything.
WHAT IT FOUND (full record in measurements/2026-08-09-xbox-hid-xinputhid-busfilter.md): with
`UpperFilters=xinputhid` on the pad's PARENT devnode AND `DevicePropertyFlags=1` in that parent's
SOFTWARE key, the HID Xbox pad is promoted for the first time — the child gains the `IG_00` token,
an XUSB interface appears, classic XInput admits it, and WGI `Gamepad` lists it. All four had never
happened on this backend. A one-value A/B proves `DevicePropertyFlags` is the decisive half:
removing it alone reverts all four. That retro-explains the earlier "the filter installs fine and
produces nothing" result — the filter was loading without ever being put in bus-filter mode, which
is what `BusDevice = 0x1` means in Microsoft's own comment in `xinputhid.inf`.
Not a workspace member, for the same reason as `hid-descriptor-dump`: it is a Windows-only
bring-your-own-hardware tool with no business on a CI leg.
VERIFIED
* `cargo fmt --check` clean; `cargo clippy --target x86_64-pc-windows-msvc --all-targets
-- -D warnings` clean (cross-checked from macOS; the target is installed).
* Builds and runs on .173 (Win11 26200).
* Self-checked against known-good hardware before any conclusion was drawn from it: baseline
reads the USB DualSense as LIVE in both WGI collections and the resting 8BitDo as MUTE.
* The A/B was run in both directions on the same box in one session.
* `cargo metadata` on the root workspace resolves and does NOT list this crate.
* .173 fully reverted: registry values removed, devnodes removed, oem100.inf deleted, both certs
delstored, 6 pre-existing pf_gamepad packages and the production service untouched.
NOT VERIFIED
* GameInput — no binding in the `windows` crate, needs hand-written COM vtables. Not covered;
the doc comment says so.
* That the promotion survives a reboot or a devnode re-create from a shipped INF `AddReg` rather
than a hand-written registry value. Nothing is shipped: `pf_gamepad.inx` is UNCHANGED and still
contains no AddReg of any kind.
* WHY the promoted pad still translates no data. Enumeration is fixed; translation is not. The
evidence points at the report descriptor, which is gated on the §3.3 decision.
114 lines
5.2 KiB
TOML
114 lines
5.2 KiB
TOML
[workspace]
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resolver = "2"
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members = [
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"crates/punktfunk-core",
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"crates/punktfunk-host",
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"crates/punktfunk-host/vendor/usbip-sim",
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"crates/punktfunk-tray",
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"crates/pf-bitstream",
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"crates/pf-bitstream/vendor/cros-codecs",
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"crates/pf-client-core",
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"crates/pf-clipboard",
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"crates/pf-presenter",
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"crates/pf-console-ui",
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"crates/pf-driver-proto",
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"crates/pf-paths",
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"crates/pf-update",
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"crates/pf-update-check",
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"crates/pf-host-config",
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"crates/pf-gpu",
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"crates/pf-zerocopy",
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"crates/pf-frame",
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"crates/pf-win-display",
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"crates/pf-encode",
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"crates/pf-capture",
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"crates/pf-inject",
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"crates/pf-vdisplay",
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"crates/pf-vkdecode",
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"crates/pf-dxvadec",
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"crates/pf-vaadec",
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"crates/pyrowave-sys",
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"crates/libvpl-sys",
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"clients/probe",
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"clients/cli",
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"clients/linux",
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"clients/session",
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"clients/windows",
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"clients/android/native",
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"tools/cursor-probe",
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"tools/display-disturb",
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"tools/latency-probe",
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"tools/loss-harness",
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]
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# Standalone PoC (built on its own; pulls usbip/tokio/libusb we don't want in the workspace).
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# The vendored `ndk` is a [patch.crates-io] source, not a member: it only compiles for the
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# `*-linux-android` targets, so workspace membership would break host `cargo build --workspace`.
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exclude = [
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"packaging/linux/steam-deck-gadget/usbip-poc",
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"clients/android/native/vendor/ndk",
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# Bring-your-own-hardware measurement tools. `hid-descriptor-dump` pulls `hidapi`, a C library
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# wanting libudev on Linux; `win-input-matrix` is Windows-only and asks the live input stacks
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# what they can see. Neither belongs in `cargo build --workspace` or on a CI leg with no pad.
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"tools/hid-descriptor-dump",
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"tools/win-input-matrix",
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]
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# ndk 0.9.0 verbatim from crates.io plus ONE visibility change (and two warning fixes — an
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# unnecessary `std::` qualification and a feature-gated `Result` import): `MediaCodec::as_ptr` made public
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# (upstream keeps it private and exposes no frame-rendered binding), so the Android client can
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# call `AMediaCodec_setOnFrameRenderedCallback` via ndk-sys for the HUD's `display` stage
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# (design/stats-unification.md). Drop the patch when upstream exposes the pointer or the callback.
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[patch.crates-io]
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ndk = { path = "clients/android/native/vendor/ndk" }
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[workspace.package]
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version = "0.26.0"
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edition = "2021"
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rust-version = "1.82"
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license = "MIT OR Apache-2.0"
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authors = ["unom"]
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repository = "https://git.unom.io/unom/punktfunk"
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# The `unsafe` discipline the `packaging/windows/drivers/*` crates already run, extended to the
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# workspace. `unsafe fn` marks a CONTRACT the caller must uphold; it is not a licence for the whole
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# body to skip checking. Without this lint an `unsafe fn` body is unchecked end to end, so a 600-line
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# function hides which handful of lines are actually the unsafe ones — exactly the reviewer-hostile
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# shape we are working down. (This is the Rust 2024 default; adopting it early also pays off the
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# edition migration.)
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#
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# `deny`, not `warn`. `warn` was never actually a softer setting: CI runs `cargo clippy … -D
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# warnings`, which promotes it to a hard error anyway — that is how adopting this lint turned main
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# red on every platform for a day without the level in this file ever saying `deny`. A level that
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# lies about its own severity is worse than a strict one, so this now states what CI already does,
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# and the exemptions are written down per file instead of hiding in a 689-warning wall nobody reads.
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#
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# THE EXEMPTIONS. Fourteen GPU/FFI backend files carry `#![allow(unsafe_op_in_unsafe_fn)]` with a
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# one-line reason each. They are not "not done yet" — they are where this lint stops paying:
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# their bodies are ash/CUDA/AMF/libav calls almost line for line (measured: 64% of the sites are a
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# single third-party FFI call, and of the 44 `unsafe fn`s in them only 4 have a body containing no
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# unsafe operation at all). Narrowing them means one `unsafe {}` per line plus, since pf-encode also
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# denies `clippy::undocumented_unsafe_blocks`, one hand-written SAFETY comment per line that could
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# only ever restate "an ash call on a live device" — the precise noise that made `unsafe` stop
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# meaning anything here before (see the header of `pf-win-display/src/win_display.rs`).
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#
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# Everything else in the workspace is at zero and enforced. Removing one of those allows, file by
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# file, is real work with a real payoff; blanket-narrowing all fourteen is not. Prefer DELETING an
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# `unsafe fn` marker over wrapping its body: keep the marker only where a caller can actually break
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# something (a raw pointer, a borrowed HANDLE, a GPU object that must not be in flight).
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[workspace.lints.rust]
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unsafe_op_in_unsafe_fn = "deny"
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[profile.release]
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opt-level = 3
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lto = "thin"
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codegen-units = 1
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# NOTE: deliberately NOT `panic = "abort"`. punktfunk-core ships as a cdylib/staticlib into
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# third-party apps (Swift/Kotlin/C) and its C ABI catches panics at the boundary
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# (`catch_unwind` → `PunktfunkStatus::Panic`). `panic = "abort"` would make that guard a
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# no-op and let a stray panic abort the embedding application. Unwinding keeps the
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# documented isolation guarantee real.
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# The per-frame hot path must stay fast even in dev builds.
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[profile.dev.package."*"]
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opt-level = 2
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