sylph-decoder d98c8214cc re: the title's build-in measured in the guest's draw stream -- the flashes are real
The settle-time decode was confirmed only against a SETTLED frame, which shows
the end state is right and says nothing about whether the five flashes ever
happen. This runs the oracle: a draw capture armed before the title exists,
so the window contains the frames in which the screen is built.

The flashes fire in a six-frame window and are absent from all 155 other
sampled frames. `ptlogo_back2eff1` is drawn in exactly two frames at t = 54.0
against a decoded peak of t54-56; `ptlogo1` first appears at t = 42.2 against
a decoded t42. Units-per-frame was taken from the GLOW's period alone, a
different element, so the timings are not circular. The two holders are
continuous from frame 134.

The plate glow's quad carries a per-vertex colour whose alpha IS the element's
fade alpha, so the ramp is read straight out of the guest: observed range
0..80 against a decoded peak of 80, exact and unfitted; period 51.158
presented frames over 20 cycle starts. Fitting the decoded ramp gives RMS
13.16 alpha levels against 38.18 for the same ramp REVERSED -- if the shape
carried no information those would be equal, so the asymmetry is real and
correctly directed. Further controls: symmetric triangle 15.73, flat 31.13.

`ptlogo_back2eff3` was never drawn, and that is expected rather than a miss: a
2-unit flash peak is 0.85 of a presented frame, so catching one is a matter of
phase. A port drawing all five every time shows more sweep than the console.

METHOD.md gains the trap this cost: a 2D draw's identity is its vertex
geometry, not its bound texture. These sprites sample shared pages, and
matching texture dimensions produced a false negative (no flash is ever drawn)
and a false positive (the intro movie's 640x360 YUV planes read as `ptbase2`)
in the same pass.

Also records the top-level restriction on the settle window, which the port
raised and which is verified here: top-level [160,236] width 76, including the
`ptloop` leaves [269,540] width 271 -- an instant past the end of every
top-level element's timeline.

Evidence committed as a derived per-frame series, not the 7 MB raw log.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01QsEPXWVaEpyfudtR6re1Pd
2026-08-29 19:56:34 +00:00

Sylpheed

A clean-room reverse engineering and port project for Project Sylpheed: Arc of Deception (Xbox 360, 2007).

Three things live here, in one repository so that a change spanning them lands as one commit:

The decoders crates/sylpheed-formats — the disc's formats, read and verified disc-wide
The port port/ — a Godot 4 project, plus crates/sylpheed-export which converts a disc into the open asset tree it reads
The corpus docs/re/ — what has been reverse engineered, with its evidence, its retractions and its dead ends

You need your own copy of the game. No game content is in this repository and none ever will be. The exporter reads the disc you supply.

The oracle is the real game

sylpheed-cli and the Explorer are tools for verifying our decoding. They are hypotheses under test and they have been wrong. When something must be checked against the truth, the truth is the game running in Xenia Canary, captured — not any renderer of ours.

This is stated first because getting it backwards is the most expensive mistake this project has made.

Layout

crates/
  sylpheed-formats/   the decoders. Disc-wide verified; the corpus is its spec
  sylpheed-cli/       headless tools -- render a screen, dump a table, probe audio
  sylpheed-viewer/    the Explorer: a human's window onto the disc. STATIC data only
  sylpheed-export/    disc -> the open, moddable asset tree
port/                 the Godot 4 project. Reads open formats ONLY
authored/             decisions that are NOT on the disc, each with its reason
data/
  base/               generated by the exporter. Gitignored, never hand-edited
  mods/               drop-in overrides. Yours
docs/
  re/                 the corpus: findings, refutations, method traps
  game/               how the game is navigated -- menus, modals, flight
  port/               the port's mission, its handoff contract, modding rules
  agents/             how the agent team works together
tools/                capture harnesses, probes, the share tool
exchange/             transient inter-agent files. NOT in git
docker/               the agent containers

Where to start

Xenia Canary is a separate repository: it is a fork tracking upstream, and it carries our instrumentation.

Conventions

Confidence is per claim, never per document: CONFIRMED · 🟡 PROBABLE · HYPOTHESIS · REFUTED. A withdrawn result is kept with its reasoning rather than deleted — that is why the numbers here can be trusted.

Description
No description provided
Readme MIT 820 MiB
Languages
Rust 57.6%
Python 27.7%
Shell 10.6%
GDScript 3.5%
Dockerfile 0.4%
Other 0.1%