§322b — the carve class is COMPLETABLE, and every worktree CARVE-REFUSED was an instrument verdict (.run/sig.<b>.jsonl is gitignored, absent from worktrees, so jr_inventory read every carve as UNOWNED). build_carve's refusal is EXACT, not conservative — one object emits one contiguous .rodata — and the real fix (isolate into its own subseg) already exists and harvest_verify already runs it. Live census: 71 non-contiguous of 123 jtbl stubs; 21 of those are twins of already-banked bodies (3,852 ins) free at ~25s each. End-to-end byte-proven in 23 seconds. Remaining blockers are 18 overlay_src_split plumbing defects (<=30 lines each) plus a jr_isolate_all port for main. §332b — the §332 "walls" are a per-OBJECT assembler mode, not a C limit. A 3-line maspsx reorder-passthrough + as -O2 is byte-INERT across the whole 800c3/800c2 objects and yields 0 diffs for SIX walls whose drafts already exist. That turns "permanently unbankable" into a per-object Makefile switch and retires oracle_reorder.py. Only 13 of the 15 listed walls are even reachable. §378c — a FIFTH decl-blocker variant: the DRAFT redeclares a type/data/callee the TU or a header already owns. Fix the draft to the TU's spelling (§367), never the reverse. Two "integration-blocked" rows were phantoms, one of them my own --any-proto pre-pass breaking a sibling TU (variant 4, second bite). accelerators #19 — a verdict recorded inside an isolated environment describes the ENVIRONMENT. Isolation exists so the worker sees less; every gitignored input is a difference it cannot distinguish from a genuine rejection, and it writes that difference down once per function. Negative-control the environment with a known-good item; assert the worker's inputs; report a missing input as MISSING, never as a verdict.
BFM-decomp
A matching decompilation of Brave Fencer Musashi (PlayStation, SLUS-00726, USA 1998) — the first public decompilation effort for this game.
What "matching" means
The goal is C source code that, compiled with the original-era toolchain (PsyQ 4.x / GCC 2.7.2-family + ASPSX via maspsx), produces a byte-for-byte identical SLUS_007.26 and, eventually, byte-identical overlay binaries. SHA1 checksums are the ground truth; "functionally equivalent" does not count.
No ROM content
This repository contains no game assets, no disassembly output, and no ROM-derived data — only source code, build configuration, symbol names/addresses, hashes, and documentation. To build or contribute you must provide your own dump of the game disc (4-track BIN/CUE, redump layout). See .gitignore for the firewall.
Project status
Latest (Phase 19, 2026-06-20): the project builds 136 binaries byte-identical from a clean tree (the EXE + the resident engine + all 134 location overlays);
make check-all→ 136/136. Fleet byte-identical-from-source is 58.0% (function-instance-weighted; see the PhaseEnds for the byte-weighted ~30% figure and what it includes). Shared engine functions are matched once inov_SC01_077and propagated ×134 viatools/dedup_propagate.py. (The narrative below is Phase-11/12-era; a full refresh is part of the public-flip prep.)
Gen1 (foundation) complete — the matching pipeline is proven end-to-end. make extract && make build && make check rebuilds SLUS_007.26 byte-for-byte identical (SHA1 143dbb89…) from C + assembly, reproducibly across many sessions.
- Compiler pinned by evidence:
gcc-2.7.2-psx -O2 -G0 -mips1 -mcpu=3000+maspsx --aspsx-version=2.56 --expand-div. - 52 functions hand-matched to byte-identical machine code — including the LZSS streaming decompressor — with a decomp-permuter + matching-cookbook "flywheel" to accelerate the next.
- 959 PsyQ SDK functions linked byte-identical (libcd, libgs, libgte, libspu/libsnd, libgpu, libc2, libmcrd, libapi/libcard, libetc) straight from the real PsyQ 4.0 libraries instead of re-decompiling them — bringing byte-identical-from-source coverage of the EXE to ~50%.
- File-loader / overlay system reverse-engineered, with the resident engine blob + location overlays' load addresses proven byte-identical against a live PCSX-Redux RAM dump.
About half the EXE is still INCLUDE_ASM stubs (correct bytes, not yet C), and the bulk of the game lives in compressed overlays inside the .CD archives — Gen2 (overlays & engine at scale) is underway:
- The build toolchain is binary-agnostic (one parameterized pipeline builds any binary), and the always-resident engine blob rebuilds byte-for-byte from source (SHA1
8e17e02f…) — the second binary reconstructed exactly, after the EXE — and is now 86% hand-matched C (123 / 146 functions, up from 0): its scripting turned out to be compiled-MIPS state/mode dispatch, not a bytecode VM, and the save-file + sound (SQV) formats are documented. The harvest used a reusable swarm-of-agents + bit-for-bit byte-gate method (a wrong match can't be accepted) —tools/harvest_verify.py+tools/match_one.py, which carry straight into the overlay phase. - A cross-binary deduplication pipeline is live: a Ghidra-free signer fingerprints all 134 location overlays, and the report finds ~9,000 byte-identical function groups shared across binaries (~28 MB of collapsible code) — a single engine function is byte-identical in all 134 overlays. This is "one match unlocks many": each engine match will be auto-credited across the overlay fleet.
Current phase and detailed progress live in phase-ends/ (newest PhaseEnd_*.md = current state); methodology, rules, and the full roadmap are in PROJECT_CONTEXT.md; environment setup in docs/SETUP.md.
This project is developed primarily by Claude Code driving Ghidra through an MCP server; see CLAUDE.md.
License
Private repository for now. AGPL-3.0 is planned at public release, modeled on sotn-decomp. tools/brave-CUE/ is CUE's BRAVE extractor (GPL, source included) and retains its own license.