- Modes: creator ruling 2026-09-01 — the VOD is the copy; dual encode degrades both
outputs on mediocre hardware ('we're not them'). ai.md 'cheap on NVENC' claim
retired; TASK 18 three-modes -> two; pills-become-radios noted as PENDING code.
- Design Principle gains 'we're not them' (hardware realism) as its fifth bullet.
- TASK 34 scope: countdown+notify live scheduling is the whole story — 'going live is
our schedule'. Scheduled playout discussed & DECLINED; premiere/upload + playout +
simultaneous-record-stream added to the closed out-of-product table.
- TASK 22: SYNC slider provenance restored — creator-requested (OBS delay-filter fix,
native). Placement question stays open; capability does not.
- MyMistakes: the provenance rule (a fact without its who/why becomes a future argument).
Docs only — zero code in this commit, per creator instruction.
9.4 KiB
MyMistakes.md
Two jobs, distinguished by heading:
- Per-task failure log — updated before every commit touching that task: current iteration + why the last one failed. On task complete, committed AND pushed → truncate to this stub. A new task does NOT seed this file until its first failure.
- Recipes registry (DERIVED-SOLUTION RULE, see
AGENTS.md🔬) — the durable home for one-off derived solutions, recipes, and how-tos. The moment you work out a reusable solution, write it here in the same session. GREP THIS FILE FIRST when you hit a "I've done this before but have to figure it out again" wall. Recipe entries stay permanently (they are NOT truncated on task completion) — only the failure log truncates.
🔬 Recipes registry
Shrink / re-encode an image for the README (screenshots → small hero image)
Worked out 2026-08-29 (the recipe was NEVER recorded the first time it was done, so it had to be re-derived from scratch — that's the incident this entry exists to end).
Approach: a throwaway Windows-dotnet console app uses WPF's imaging stack
(System.Windows.Media.Imaging) — same framework the app runs on, zero NuGet
packages, high-quality downscale via TransformedBitmap. Screenshots compress
far smaller as JPEG than PNG (PNG 1400px = ~1.2MB; JPEG q82 1400px = ~188KB).
Recipe (run via the Windows dotnet host from WSL):
- Create
imgresize.csprojtargetingnet8.0-windowswith<UseWPF>true</UseWPF>(SDK controller). Put it in a Windows-visible temp path, e.g.C:\Users\gramp\AppData\Local\Temp\imgresize— NOT/tmp(Windows dotnet can't reach a Linux-only path reliably). Program.cs: loadBitmapImage(CacheOption=OnLoad→Freeze()), downscale withTransformedBitmap(src, new ScaleTransform(scale, scale))to max width (1400 for the README hero), encode withJpegBitmapEncoder { QualityLevel = 82 }, save.- Run:
"/mnt/c/Program Files/dotnet/dotnet.exe" run -c Release --project .
-- "C:\Users\gramp\Downloads\Screenshot 2026-08-29 075626.png"
"C:\Users\gramp\Documents\Code\projects\ytLive\docs\ytLlive-preview.jpg" 1400
- Point
README.mdat the.jpg(not.png).
Result: 3.2MB screenshot → 1400×794 → 188KB ytLlive-preview.jpg in docs/.
Splitting a large file into partials — NEVER awk … > SRC while awking SRC
(2026-08-31, Commit D) Tried to split SocialsDialogViewModel.cs in one line:
{ awk '…' SRC; echo ""; awk '…2…' SRC; } > SRC. The first write truncated
SRC to 1 line, so the second awk read the already-truncated file → the whole
source was lost (1 line left). Recovered with git checkout -- SRC, then redid
it, but the same bug could have meant making it up from scratch.
Rule: when a cut needs N blocks from one source into N files, never write a
block back onto the source that the awks still read. Instead:
- Read the source once at the start into temp files (
mktemp -d, one file per block), with a$Dvariable you carry forward. - Verify block sizes (
wc -l) and brace balance (python3 -ccounting{/}) before touching any real file. - Then assemble each new file from
cat D/block …— never truncating the source until every read is done.
git status can't save you here if you don't notice until the file is gone —
git checkout -- <path> from the last commit is the recovery. Cheap insurance:
restore-then-retry, do it atomically from temp files the first time.
Verifying an ffmpeg decode contract from WSL (no real CLR needed)
(2026-08-31, TASK 21) When a change depends on ffmpeg producing output with an exact frame-size contract (rawvideo W×H×4 BGRA), you can prove the command + frame accounting here without any .NET process:
- Fetch a static Linux ffmpeg into
/tmp/opencode(no sudo needed):curl -sLO https://johnvansickle.com/ffmpeg/releases/ffmpeg-release-amd64-static.tar.xz && tar -xf … - Generate a tiny known clip:
ffmpeg -f lavfi -i "testsrc2=duration=1:size=640x360:rate=30" -pix_fmt yuv420p clip.mp4 - Decode with exactly the app's args:
-f rawvideo -pix_fmt bgra -vf scale=640:360 -an - Assert
total_bytes % (W*H*4) == 0(python3) → exact integer frames, no pad.
Why not a dotnet-spawned ffmpeg here: the only CLR on this box
(/home/gramps/bin/dotnet) is a Windows-bound shim — Process.Start resolves
paths to \\wsl.localhost\Debian\… and throws "not a valid application for this
OS" when handed a Linux ELF ffmpeg. So never plan to have dotnet exec a Linux
ffmpeg here; verify the contract with shell/python instead, and leave the
CLR→real-ffmpeg run to the native Windows suite.
WPF hit-test truth in tests: UIElement.InputHitTest, NOT VisualTreeHelper.HitTest
(2026-09-01, the RoundClip "known failure" post-mortem — a failure the map carried as "not a regression" for weeks without ever recording WHY.)
The trap: VisualTreeHelper.HitTest(window, pt) returned the window's
WebViewHostPanel overlay (IsHitTestVisible="False", Opacity=0, ZERO children) for
EVERY point in the window — so a "corner is grabbable" assertion could never pass, and
it looked like a real interaction bug. The actual input pipeline (UIElement.InputHitTest,
what Mouse routing uses) correctly returned the element's Grid at elem-center/corner-in/
corner-exact and fell through to CanvasGrid just past the corner. The product was fine;
the TEST was probing an API that doesn't model input semantics.
Rule: any test asserting "where does a click land" uses window.InputHitTest(pt) +
IsDescendantOf — never VisualTreeHelper.HitTest.
Diagnosis recipe (how the lie was caught in ~3 probe cycles, no guessing): add a TEMP
probe [Fact] in the RealApp collection that hit-tests a spread of points
(elem-center / corner-in / corner-exact / corner-out / bg-center) and Assert.Fails with a
composed dump: per-point VTH hit + InputHitTest hit + ancestor chain (GetParent walk
with #Name) + panel properties (IsHitTestVisible/Opacity/children/actual size) +
TranslatePoint origins. Run the class alone, read the message, delete the probe.
Two sibling facts learned the same session (record-once):
- A UserControl owns its own XAML namescope — after extracting a region out of a window,
window.FindName("InnerPart")returns null; resolve the UserControl by its window-level name, thenpane.FindName("InnerPart"). And window-scope STYLES are invisible to a UserControl'sStaticResourceat parse time — move such styles toThemes/Controls.xaml(the app-scope rule exists for this). - Per-class
dotnet.exe vstestfrom WSL DOES execute the RealApp/MainWindowtests fine (they passed natively 2026-09-01) — only the FULL suite hangs (WASAPI startup). And the test process shares%APPDATA%\ytLlive\startup.logwith the real app: lines likecamera 'test-camera' failedare test noise, not DB state — to check pollution, query the DB directly (python3 sqlite3,SELECT DeviceId FROM Webcam), not the log.
A "known failure" label without a recorded cause = a bug on life support
(2026-09-01, the audio triple-take) One line — _delayedMix (nullable, added by TASK 22,
never initialized) dereferenced as delayed.Length — produced THREE symptoms that lived in
the map as two separate "pre-existing, do-not-chase" entries: (a)
Mix_HonorsProviderGains… "known failure", (b) AudioPipelineTests hangs when run at all
(a test reading a named pipe with no writer blocks — hung test ≠ flaky test, it's a starved
producer), (c) startup.log flooded "Audio live loop error" every 10ms (the mixer loop caught
and logged only ex.Message — stack thrown away).
Rules derived:
- NEVER label a test "known/pre-existing" without writing WHY (exception type + first app frame). An unexplained known-failure is deferred archaeology that hardens into fog.
- A test that waits on IPC + a producer whose output vanished are usually ONE bug — look for the producer before blaming the test.
- Catch-and-log-swallow of
ex.Messagehides root causes; log with stack (AppLog.Write(ex, ...)) and throttle (5s) instead of dropping or flooding. Bonus: the "failing" test encoded the MAP's contract (loopbackGain = GameAudioVolume); the code had drifted to unity on a disproven premise (loopback capture does NOT follow endpoint volume — creator's 20%-volume/pegged-meter observation killed it). The test was right all along — failing tests may be the last honest witnesses; interrogate, don't pardon.
Feature provenance: record WHO asked and WHY, in the task entry itself
(2026-08-31/09-01, the SYNC slider scare) TASK 22's lip-sync slider surfaced on the preview rail and the creator's reaction was "totally don't remember ordering that" — because the queue entry recorded WHAT shipped (a slider, 0-500ms, a converter class) but not WHO asked (the creator, explicitly, for OBS's delay-filter fix built natively). Eight days later his own request read like AI drift and nearly got deleted. Rule: the moment a creator-driven feature is queued or shipped, its entry carries a one-line provenance — who asked, what triggered it ("creator: OBS delay-filter lip-sync fix, native"). Features without attribution become roadmap orphans that get punted, removed, or re-litigated. Same disease as an unexplained "known failure" label — a fact recorded without its reason is a future argument.