Files
Sylpheed/tools/re-capture
sylph-decoder 8143499244 re: downgrade -- the drift explains the 4.1% in sign, not magnitude
The port refuted the stronger half of the last claim and was right. I wrote that
the units/frame drift explained the publisher splash's 4.1% error against its
declared dwell. It explains the sign only.

Their test verified exactly here: the publisher/developer dwell ratio is 1.2143
declared, 1.2784 as the corpus's three cold boots measure it, and 1.3678 as this
container's drift predicts -- so the drift's direction is right and real evidence,
but its magnitude is about 2.4x too strong.

One refinement, because the means are being compared more finely than n=3
supports: the corpus's three boots individually give excesses of +0.89%, +8.24%
and +6.79%, a spread of 7.3 percentage points -- WIDER than the 5.30 pp gap under
test -- and boot 1's ratio (1.2251) is essentially the declared 1.2143. This run
sits 2.3 sigma above their mean: suggestive, not established.

Not closable without a frame log from the corpus's instrument, which was
screenshot timing and has none. An attempt to give this side an n of 3 failed on
tooling and is recorded: ARM=early loses its F10 about 40% of the time -- two of
five runs logged "ARMED EARLY" and produced no draw log at all, with nothing in
the session log distinguishing them.

Also fences the 33% drift against a misreading the port flagged: it is
PRESENTATION pacing and cannot reach keyframe_units_per_second = 60, which is the
game's logical rate, decoded under Q1, and which a renderer converts through at
its own frame rate.

And records a cross-check neither side went looking for: the batch counts are 1
and 2 on the publisher against 3 and 6 on the developer, and the port reports a
count restricted to SPRITE-BEARING elements reproduces that exactly from the
export -- so palogo_eff0, the layerless forced backdrop, is not in the batched
draw, confirmed from the file. Two instruments that disagreed about that element
in every previous iteration now agree on which one it is.

New tool splash_boundaries.py carries the corrected counting method.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01QsEPXWVaEpyfudtR6re1Pd
2026-08-29 21:40:23 +00:00
..

Runtime-capture harness (sylph-re container)

Screenshot-driven scripts for reading the running retail game's menus under Xenia Canary + lavapipe, headless. They assume the container helpers screenshot, vgamepad, pad are on $PATH and HOME=/sylph-home/re.

Script What it does
skip_intro.sh Boot → main menu, unattended. Taps A only while the intro movie is actually playing (frame-to-frame RMSE), then once at the PRESS Ⓐ BUTTON title. Static logo screens are left alone, so a stray tap can never land on NEW GAME.
wait_title.sh Older variant: wait for the title (green Ⓐ glyph at px 625,618) and tap A. Superseded by skip_intro.sh.
step.sh One Arsenal navigation step (down/up/next/prev/none) + a compact capture: weapon list stacked over the DATA SHEET.
sweep.sh Walk a whole weapon-type list, capturing only rows that show a DATA SHEET — locked rows (a "Conditions to Develop" panel) are detected by the brightness of the Range Class label box and skipped.
type.sh Change weapon-type tab N times (RB) and report the header strip.
hp.sh / cyc.sh Hangar hard-point carousel: cyc.sh steps it (d-pad down, not left/right) and captures the Name + DATA SHEET.

Input timing under lavapipe: the game polls input at its own low frame rate, so a 60 ms d-pad tap is dropped roughly half the time. 200 ms is reliable; 300 ms starts to auto-repeat (two rows per press).

Findings produced with these: docs/re/weapon-datasheet-runtime.md.

Guest-memory tools (no screenshots)

Script What it does
gmem.py Read the live guest address space out of /dev/shm/xenia_memory_* (Xenia's backing file), addressed by guest VA. find / read / words.
weapon_runtime.py Solve the Weapon/Shell struct layouts against the disc records and read the fields the disc defaults.
unit_discover.py Find which runtime class carries a set of ID strings, assuming no vtable: tallies the word at pointer_site - k across distinct IDs.
unit_runtime.py Same solver for the unit\UN_*.tbl definition objects (vtable 0x820af844). Unions several snapshots — unit definitions are per-stage.
schema_order.py Merge a sub-record's field-declaration order across all tables (topological sort); the layout check that pins fields no table ever values.
order_check.py Test offset = base + 4*index for one table's sub-record against solver output.
grab_tutorial.sh Cold-boot Canary, walk to the Nth TUTORIAL entry, wait for the stage load, snapshot guest RAM. One emulator per capture — backing out of a loaded mission wedges it.

Snapshot first — cp --sparse=always /dev/shm/xenia_memory_* snap.bin (~2 s) — and point $GMEM_FILE at the copy; the running emulator pegs every core under lavapipe.

🔴 pgrep -f / pkill -f match YOUR OWN shell

An agent driving this toolkit runs its commands through a wrapper shell whose command line contains the pattern being searched for. So

pgrep -f 'pilot\.py'        # matches the wrapper running this very command
pkill -f 'fly_session|pilot\.py'   # kills that wrapper — the script dies mid-way

This has cost four separate mistakes in one session: two scripts killed mid-execution, and twice a "is it already running?" guard that answered yes because it had found itself. The [p]ilot bracket trick does not help when the literal invocation (python3 pilot.py …) also appears on the wrapper's command line.

What works:

pgrep -x xenia_canary                       # exact NAME match, no -f
ps -eo pid,args | grep 'python3 pilot.py' | grep -v snapshot-bash
kill -9 <explicit pid>                      # look it up first, then kill by pid

The snapshot-bash filter is the reliable tell: the wrapper's command line always contains the shell-snapshot path.

🔴 The emulator does not survive the end of an agent turn

/work/.claude/settings.json defines a Stop hook that kill -9s every xenia_canary when a turn ends, printing "Stop hook killed N stale xenia process(es)".

So:

  • never launch a run intending to read it in a later turn — it will be dead;
  • an experiment has to produce its evidence within the turn that starts it;
  • prefer measurements that land in the first minutes of flight. REMAINING OB steps 4 → 8 → 12 inside the first few minutes, which is why a two-pass differential works in one turn while a 25-minute freeze watch does not.

This cost three iterations of investigating a "mysterious external SIGKILL", complete with cgroup and host memory forensics, before the hook was found. When a process dies at a session boundary, check the harness first.