Adds coop_vk_validate, a harness that drives the Vulkan capture path end-to-end
against a shipping title (default Sphere Spectacle, a pure-Vulkan game) and asserts
frames reach the shared texture and advance, the captured resolution/colors are
sane, saves a BMP screenshot for visual confirmation, and reports the present rate.
Findings:
- Layer method WORKS: coop_vk_layer mirrors the game correctly at 1920x1080 --
right colors/brightness, no BGRA/RGBA swizzle, no sRGB darkening (screenshot
confirmed). The layer captures every present (no drops).
- Suspended-inject "Auto-attach" is NOT applicable to a Steam title that must launch
through Steam: its exe renders nothing when launched directly, so there's no Vulkan
present to catch. The layer is the method for Steam Vulkan games (the early-inject
mechanism itself is covered by mock_game_test's suspended-launch path).
- The layer does video, but the game needs coop_hook.dll co-injected for focus-spoof
or an unfocused, event-driven game throttles itself to a few fps (looks like a
capture slowdown but isn't). A present-rate number alone can't prove "no FPS impact"
-- it's the game's own cadence; capture stays off the critical path (every present
copied, read-back on its own queue + present-semaphore re-chain).
Also adds SharedTextureSource::read_frame (bulk RGBA readback) for the screenshot.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
mock_game_test launches coop_mock_game (DX11/DX12, frame-numbered A/V), injects
coop_hook.dll, opens the hook's shared video texture, and decodes the frame
number from the captured pixels to assert a monotonic, advancing mirror for
both backends (catches dropped/stale/out-of-order frames). Then it runs an
A/V + hook/unhook stress pass and confirms no crash + capture resumes. Adds a
read_pixel() readback to the shipping SharedTextureSource for the decode.
Robust to repeated/CI runs (kills stray games, retries inject). Trim the
roadmap (the mock-game item is done) and document the test.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Resolves the DX12 mirror stutter and makes dropped frames observable.
Decouple the D3D11On12 copy from the game's present queue. Submitting the
copy on the game's own present queue (the prior approach) ordered it
correctly but stalled the game's presents: GPU back-pressure, plus the
shared keyed-mutex AcquireSync is a CPU-blocking call on the render
thread. Running it on an independent queue avoids the stall but races the
game's render -> stale frames. Do both: run the copy on our own queue and
order it after the frame with an ID3D12Fence the game's present queue
signals (near-free) and our queue waits on. The present queue is still
recovered for late injection via the ExecuteCommandLists hook (now used to
signal the fence, not host the copy). Producer AcquireSync stays
non-blocking (timeout 0) so a busy mutex drops a mirror frame instead of
stalling the game.
Add drop detection (protocol v12 -> v13). The hook counts captures skipped
because the keyed mutex was busy (VideoShare.frames_dropped); the host
counts published frames it never displayed (generation gaps). The Video
panel shows "Frames lost: N/s capture N/s display", red when nonzero.
This confirmed the game-window-vs-mirror behavior is a display-path
artifact (unfocused windows lose VRR/independent flip), not a capture loss.
Add a one-shot present-pattern log: per distinct swapchain (size/format/
buffer index) and per distinct present-flags value, with DXGI_PRESENT_TEST
spelled out as an occlusion probe that draws nothing -- which is why
Miles Morales shows ~2 presents per captured frame (the test present is
counted but produces no frame).
Docs: add the DX12 capture lessons to the README (rotating back buffer,
fence/own-queue, capture-at-Present decoupling from DWM) and drop the now
-moot DX12 overhead future-work item.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The FPS readout only measured the host's own render rate, hiding capture stutter.
The Video panel now shows a "Pipeline rates" section:
- Tool render (host FPS / frametime, as before);
- hooked source: Game present (/s, from VideoShare.present_calls deltas), Hook
publish (/s, generation deltas), and capture->display latency avg/min/max ms;
- WGC source: WGC capture (/s) from a new WindowCapture frame-arrival counter
(game present + latency are n/a, since WGC frames aren't game-timestamped).
Latency uses a system-wide clock: protocol v11->v12 adds VideoShare.present_qpc,
stamped by the hook at publish (publish_video_frame); the host measures
now_qpc - present_qpc per newly published frame, windowed to min/avg/max each second.
Verified: present_hook_test (x64 + x86) now asserts present_qpc is stamped; full
build x64 + x86 clean; ctest x64 9/9, x86 3/3. The live rate/latency numbers need a
real game mirroring to read meaningfully; wiring validated.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
The host sampled the shared backbuffer copy through a view typed exactly like the
game's backbuffer. For games whose backbuffer is an *_SRGB format (e.g. Life is
Strange: Before the Storm -- confirmed R8G8B8A8_UNORM_SRGB / fmt 29 via the hook
log), the GPU decoded sRGB->linear on the sample, and the host then wrote those
linear values straight to its plain-UNORM swapchain with no re-encode, so the
mirror came out noticeably darker than the game.
Sample the copy as the plain-UNORM sibling of the format (srgb_to_unorm) so the
bytes pass through unchanged -- matching what WGC already does. The UNORM and
*_SRGB formats share a typeless group, so CopyResource from the producer's sRGB
texture into the host's UNORM copy is allowed. Non-sRGB formats are unaffected.
Adds srgb_format_test locking the mapping. All 6 tests pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Add an injected IDXGISwapChain::Present / Present1 hook as a lower-latency,
border-free alternative to WGC. The hook copies the swapchain backbuffer into a
shared keyed-mutex texture (coop_video_<pid>); the host opens it by name and
samples it. New opt-in HookSubsys_Video (protocol v6 -> v7); the Video mirror
panel gains a WGC vs Hooked source toggle that installs/removes the subsystem.
Verified by present_hook_test (drives a real D3D11 swapchain end-to-end and reads
the rendered pixels back through the shared texture) and against Phantom Brave
(D3D9: hook installs cleanly and stays idle, WGC fallback). All 5 tests pass.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Mirror the injected game's window into the host's borderless window so Steam
RPT streams a live copy of the game. No injection needed for video.
- capture/window_capture: WGC capture of a target HWND. Wraps our D3D11 device
as an IDirect3DDevice, creates a free-threaded frame pool + capture session,
hides the cursor and (best-effort) the capture border. Frames arrive on a WGC
thread and are handed to the render thread, which copies the newest into a
shader-resource texture and draws it -- keeping all D3D11 context use on one
thread. Handles window resize via frame-pool Recreate.
- capture/frame_renderer: fullscreen-triangle shader that blits the captured
texture letterboxed (aspect-preserved) into the window.
- capture_panel: "Mirror game window" toggle + lifecycle; target HWND comes
from the hook's reported game window.
- main: winrt apartment init; mirrored frame drawn as background, ImGui on top.
- CMake: link windowsapp + d3dcompiler.
Verified: builds clean; host starts (apartment init + shader compile succeed).
Visual capture quality/latency to be judged on a real game.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>