Sword of the Stars (2006) reverse-engineering worklog. Infra docs live in trikilli services/re-lab.md.
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lane Y c471a5515f lane Y: the standalone's generator against lane Z's calibrated oracle pairs, and the tail's turn record
The standalone now models the turn's dominant generator cost -- 16 of a measured 18-22
words -- and lands 4 and 2 short of the two calibrated pairs, which is exactly the
per-call-site ledger's split for those turns. The state block is byte-identical; only
left differs. The answer to 'does it match the oracle' is no, by a stated amount, and
tools/rng_oracle_check.py is the instrument that says so.

The tail's last phase is modelled for the six turn-record fields recoverable from the
wire and checked against the record the game itself archived: 480 fields over 80
player-records, 0 mismatches. It stays blocked; --commit-blocked shows exactly which
five fields are missing and what they cost.

By-product, and probably worth more than the phase: the stored bankruptcy elimination
limit is injective in the maximum-income sum it is built from, so every save states the
per-system output term that blocks ComputeBudget. tools/max_income_oracle.py inverts it
-- 25 player-records over the corpus -- and recovers the protection factor as 3.3 from
the saves rather than from the data files. It also shows the engine's -0.15 divisor
disagrees with the game on 6 of those 25.

divergence unchanged: 209->204 and 108->103, 5 closed / 0 regressed on both pairs.
2026-09-08 11:40:19 -04:00
campaign board: VM140 holder = lane N 2026-09-08 11:01:06 -04:00
findings lane Y: the standalone's generator against lane Z's calibrated oracle pairs, and the tail's turn record 2026-09-08 11:40:19 -04:00
ghidra regenerate header (805 entries) 2026-09-08 11:00:24 -04:00
guides rules: 18 - measure first, the lab exists; static reading explains what you measured 2026-09-08 11:20:30 -04:00
notes init commit 2026-09-07 12:31:56 -04:00
objects regenerate both headers (669 addresses); track objects/generated so the shared clone stops sitting dirty 2026-09-08 07:36:16 -04:00
scripts campaign: forgejo issues sync script; issues are the published board 2026-09-07 15:04:57 -04:00
tools lane Y: the standalone's generator against lane Z's calibrated oracle pairs, and the tail's turn record 2026-09-08 11:40:19 -04:00
verify lane Y: the standalone's generator against lane Z's calibrated oracle pairs, and the tail's turn record 2026-09-08 11:40:19 -04:00
.gitignore lane D: automated struct recovery from the IStreamable serializers 2026-09-08 05:51:37 -04:00
README.md guides: RE how-to for 2000s MSVC/DX9 games (98 sources); queue replay-checksum, class recovery, apitrace/TTD 2026-09-07 18:05:58 -04:00

sots-re

Reverse-engineering worklog for Sword of the Stars (2006, SOTS1) — the 32-bit DX9 original + expansions. The nitty-gritty: static/dynamic analysis notes, Ghidra & ReVa scripts, function/struct maps, D3D9 call traces, decomp progress, findings.

Where this runs

Analysis lab on spicy (PVE, 192.168.3.201):

  • CT111 sots-re — Linux workspace: Ghidra + headless ReVa server, radare2/rizin/cutter, binwalk. Hosts the Samba share and this repo's working tree at /srv/re-lab/notes.
  • VM140 sots-re-win10 — Win10 runtime + dynamic analysis (x64dbg, Cheat Engine, RenderDoc/apitrace, DXVK→CPU-Vulkan for GPU-less rendering).

Infra (guests, storage, network, share, ReVa endpoint) is documented from the system-maintainer POV in trikilli → services/re-lab.md. This repo is everything else.

Layout

  • findings/ — the running findings log (append-only), one file per subsystem.
  • ghidra/ — exported scripts, data-type archives, struct definitions.
  • traces/ — D3D9 / Win32 API call captures + analysis.
  • scripts/ — helper tooling (loaders, extractors, parsers).
  • notes/ — session notes, scratch, hypotheses.

Ownership / legality

Game binaries come from the owner's own GOG/Steam copy. RE is for personal interoperability, bug-fixing, and preservation. Binaries themselves are not committed here (see .gitignore) — they live on the lab's Samba share /srv/re-lab/samples.

Campaign (how this repo is run)

A 4-agent crew (defined in ~/.claude/agents/re-*.md) runs the exploration: re-quartermaster (backlog + board) → re-analyst (maps via ReVa) → re-verifier (proves vs real data; old-vs-new differential once reimpl starts) → re-scribe (files the note, links it, commits).

  • campaign/board.md — live status board (start here).
  • Live tracking = Forgejo issues on alex/sots-re (labels status/* are the kanban columns; type/*, conf/*). campaign/board.md is the editable mirror — publish with scripts/forgejo_campaign.py bootstrap (needs FORGEJO_TOKEN).
  • campaign/backlog.md — prioritized target queue.
  • campaign/open-questions.md — unresolved threads.
  • findings/_template.md — the record format every finding follows.
  • findings/{objects,control-flow,subsystems}/ — the growing engine map.
  • verify/{parsers,traces,harness,results}/ — validation: struct parsers now, golden-trace replay + shim compare-mode for reimplementation.
  • ghidra/ — exported scripts + datatype archives.

Approach & north star: findings/00-strategy.md. Binary facts: findings/01-fingerprint.md.

Sibling repo

alex/sots-engine — the from-scratch engine source (clean-room, public-capable). This repo keeps the evidence + planning for both; binary facts cross over only via ghidra/addresses.json → tools/gen_addresses.py.

  • guides/re-windows-2000s-howto.md — annotated bibliography + how-to for RE of mid-2000s MSVC/DX9 Windows games, with our-experience call-outs.