Files
Sylpheed/docs/re
Sylpheed RE agent 00b6259e9a re(ui): finish the top-level rotation census; record the JP-capture blocker
Two threads had converged on needing one capture this container cannot
take, so this iteration records that and finishes something reachable.

BLOCKED, written into MISSION.md rather than worked around: Q1's keyframe
time association and the rest() rule for plateau-less elements both now
hinge on a running capture of GP_TITLE build 7, the Japanese title. The
console language is not settable here -- user_language appears only as
DECLARE_int32 at four call sites with no DEFINE anywhere in the tree, and
it is absent from the registered cvars in xenia-canary.config.toml. There
is no flag to pass, and guessing one is specifically unsafe: run-canary's
own header records that xenia calls ShowSimpleMessageBox from
ParseLaunchArguments before logging starts, so a bad flag blocks forever
with an empty log. Rebuilding canary to add the cvar would be improvising
around the blocker; it needs a human decision. Neither question blocks
the five menu screens.

FINISHED: the disc-wide top-level rotation count, left running four
iterations ago as a shell loop over `screen info --geometry` that never
completed (it decodes every texture per build). Walking the placement
region directly takes seconds.

  top-level elements with a keyframe group   15 493
  carrying a non-zero rotation                2 152  (13.89 %)

Both controls pass: GP_TITLE build 4 reports 0 (its rotations are the
nested ptloop records) and GP_DIALOG build 0 reports the expected two.

The control earned its place -- the first version indexed the pak with a
`screen list` BUILD number and got 0 for a screen that has two, because
GP_DIALOG build 0 is entry 2. GP_TITLE maps 1:1, which is how the
assumption survived. METHOD line added.

Two free corroborations of the rotation decode. The rotated population is
dominated by tactical-map ship icons -- pbb_destroyer 444, pbr_destroyer
402, pbr_fighter 276 -- i.e. markers rotated to heading, the single
largest use of the field on the disc. And GP_TITLE entry 7's Japanese
wordmark pieces settle from ALTERNATING tilts:

  ptlogo3a  r = 0, -14, -4, -1, 0, ...
  ptlogo3b  r = 0, +14, +4, +1, 0, ...
  ptlogo3c  r = 0, -14, -4, -1, 0, ...

Same magnitudes, opposite signs, all decaying to upright. A misread field
does not produce that.
2026-08-28 23:46:54 +00:00
..

Reverse-engineering knowledge base

This directory is the spec-side of the clean-room: it records what the original Project Sylpheed binary does (behaviour) and how its data is laid out, so that the Rust port can be implemented from these specs without re-deriving anything and without ever copying original code.

It exists to answer one question fast: "do we already know how X works, and how sure are we?"


The one rule that matters

Never document a claim more confidently than the evidence supports, and never paste original code here.

A wrong-but-confident note is worse than no note: someone builds on it and the bug hides for weeks. Every entry therefore carries an explicit confidence and its evidence. This mirrors the project method — measure the oracle, never infer; refute before believing.

Clean-room firewall

  • Allowed: behaviour descriptions, field offsets/types, formulas, state machines, observed input→output pairs, and references to the original by address (sub_821B68C0) or to xenia-rs/sylpheed.db.
  • Forbidden here and in crates/: pasted decompiled C/C++ or verbatim disassembled function bodies presented as the thing to reimplement. Cite the address; describe the behaviour in your own words. Disassembly is a tool for understanding, not a source to copy.

Confidence levels

Level Meaning Bar to reach it
CONFIRMED Behaviour verified against ground truth. ≥2 independent observations or one observation cross-checked against an oracle (canary framebuffer, a known-correct value, a second code path).
PROBABLE Strong single-source inference. One clean observation, or an unambiguous static read of the disassembly.
HYPOTHESIS Educated guess, not yet tested. Anything else. Must say what would confirm/refute it.

The status markers

The table above is the confidence scale. The markers that appear in BACKLOG.md and the structures/ pages are a separate, and until now undefined, vocabulary. They mean:

Marker Meaning
Confirmed — verified against ground truth.
🟡 Partial: true as far as it goes, or true under a stated assumption.
Open question. Nobody has answered it yet.
🔴 Refuted — shown false — or blocked by something the container cannot do.
A specific claim that was tried and failed. Prefer 🔴.
🚧 Work started and not finished.

🔴 never means "we have not run it yet." That is or 🚧. Reserve 🔴's "blocked" sense for a real limit of the box — no push credentials, no hardware Vulkan (lavapipe only), or a decision only the user can make. The box can run the emulator, script input, screenshot, read guest memory, and build and test Rust, so "needs a run" is never a blocker. This paragraph exists because the marker was undefined for 98 uses and three of them were mislabelled that way.

Promotion requires new evidence, not re-reading the old evidence. A HYPOTHESIS that "looks right again" is still a HYPOTHESIS. Only an independent check promotes it. If evidence later contradicts an entry, demote it and record the contradiction — do not silently edit the conclusion.


When to document

  • Right after a function/structure crosses from HYPOTHESIS to at least PROBABLE — before moving to the next code path, so the knowledge isn't lost or re-derived.
  • Whenever confidence changes (up or down) — append to the Evidence log, don't overwrite.
  • Not while it's still a pure guess with no evidence — a one-liner in the relevant backlog/plan is enough until there's something to stand on.

What to document

  • Functions/code pathsdocs/re/functions/<name>.md (one file per function or tight cluster).
  • Data structures / formatsdocs/re/structures/<name>.md.
  • Keep the index in INDEX.md (one line each: name · confidence · one-line summary).

Use the templates: _TEMPLATE.function.md, _TEMPLATE.structure.md.


How we find and confirm code paths (the toolchain)

Everything joins on the guest virtual address (PC) — code addresses are fixed by the XEX load, identical across our emulator and canary.

  • Static (cheap, try first): xenia-rs/sylpheed.db (DuckDB: 25 481 functions, xrefs, strings, vtables, imports). Query with xenia-rs/zq.pyzq.py grep <str>, zq.py xref <addr>, zq.py dis <lo> <hi>, zq.py fn <pc>. Entry points are usually a string (zq.py grep MSG_DEMO) or an import (movie/XMA API) xref'd back to the loader.
  • Dynamic (when static is ambiguous): run xenia-rs with its probe suite — --pc-probe / --audit-pc-probe-hex (fires at block entry), --mem-watch (mid-block reads/writes of a VA), --lr-trace (call/return chains), --trace-instructions, --dump-addr (read guest memory). These already exist; prefer them over hacking canary.
  • Oracle (correctness ground truth): canary — the Wine cross-build xenia-canary/build-cross/bin/Windows/Debug/xenia_canary.exe (the native Linux ELF crashes / does not run — do not use it). This is the only emulator that reaches the in-game menu; our xenia-rs never got past the intro video. Use canary to observe output (capture its framebuffer for texture colours), not usually to instrument code — though its build-cross toolchain does compile, so small C++ probes + rebuild are possible when needed. Run muted, one emulator process at a time, point it at the real ISO (not the symlink).

⚠️ VA-equality caveat: join code by PC (fixed), but never assume a data VA holds the same bytes across emulators — allocators differ. Compare data by content/layout.