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Syplheed-Reborn/docs/re
Sylpheed RE agent 97d02f0092 re: confirm the cmesh<->model link via GameResourceID; world unit is oracle-blocked
Two follow-ups on yesterday's^Wthis morning's CollisionSet write-up.

1. The _cmesh <-> render-model link, which I recorded as UNTESTED because
   matching stems against .xbg object names covered 4 of 158.  The disc keeps
   only one build manifest, so that corpus was never going to answer it.  The
   right corpus is the GameResourceID field of the DefTables / GP_MAIN_GAME
   records -- 480 distinct values.  Against those, with a control that shuffles
   the characters of each stem:

       ship/mob stems prefixed by a real resource id   108/112 = 96.4%
       same stems, characters shuffled  (control)        0/112 =  0.0%
       asteroid stems prefixed (expected none)           0/46

   So a CollisionSet entry is <GameResourceID>[_<part>]_cmesh.  The 0/46 on
   asteroids matters as much as the 108/112: a test that fired on everything
   would be the bound-check hazard again.

2. The world unit.  Sweeping every pak for a name carrying a kilometre figure
   returns mapmesh_box_500km.col/.rgn and nothing else -- 162 references, all to
   that one pair.  The reading rests on a single filename with no corroborating
   instance anywhere in the data, so no static test can settle it; marking it
   blocked on the oracle rather than leaving it as an open static question.

   My objection's premise did survive: rou_e010 is a real GameResourceID and
   e010_ADAN_Attacker_S is in the stage tables, so the 133-unit mesh does belong
   to a craft the game calls an attacker.  Whether the trailing _S means "small"
   is a further guess (there are _EX4 / _HF / _HF_Wayne variants), so it stays
   suggestive rather than evidence.
2026-08-26 09:41:46 +00:00
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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.

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.