Increment B1 of block-linking: compile a chain of same-page, fully-covered blocks into ONE Cranelift function whose internal block-to-block edges are direct machine jumps, eliminating the per-block return to run_block and the run_superblock dispatch tax for the chain. Env-gated XENIA_JIT_CHAIN (off by default), and additionally disabled under the diff harness or with diagnostic probes / mem-watch armed (chaining runs several blocks natively without the per-block-entry observation those need, so they are mutually exclusive). Mechanism (cranelift-jit can't patch finalized code, so no QEMU-style TB chaining): SUPERBLOCK COMPILATION. compile_chain enumerates the forward-linear chain from the entry — following static bx targets and fall-throughs, all same-page (so the entry page_version is a sound cache key), outside the thunk band, and covered — and emits one node per block plus a shared exit. At every internal boundary it re-checks the two runtime stop-conditions exactly as the Rust runner does: an MMIO touch (*mmio_count advanced vs the entry sample) and the instruction budget (cumulative >= remaining, passed as a runtime param); either stops the chain with pc/cycle/timebase already correct, and the runner re-dispatches from the clean boundary. B1 scope is forward-linear: a bx or fall-through continues; a conditional bcx, dynamic bclrx/bcctrx, off-page / thunk / uncovered / already-visited successor ends the chain (B2 adds bcx two-way + loop back-edges). Being *more* conservative (stopping earlier) is always safe. Correctness rests on composition: each node body is the same emit_node_body IR the single-block path emits (already diff-validated bit-exact), so only the chain glue is new — validated by two new unit tests (multi-block chain vs interpreter over the same PCs; budget cut at the exact boundary) plus e2e. Boundary MMIO check is skipped for load/store-free blocks (a pure-ALU block can't advance mmio_count), dropping a memory load+compare per ALU boundary. Plumbing: build_block exposed (xenia-cpu); KernelState::thunk_band getter; MemEnv mmio_count null-safety (points at a static zero when no flat mapping); CompiledFn gains a remaining-budget param (single-block ignores it); all compiled entries share the (ctx, mem_env, remaining) ABI. Validation: diff MISMATCHES=0 over 25.0M blocks (single-block op bodies unbroken by the emit_node_body refactor); XENIA_JIT_CHAIN=1 movie plays, tid25 resumes, source-read=12; fair perf (RUST_LOG=warn) interp 44.1s vs chain 41.3s = −6.4% wall — run_superblock "other" 30.4%->26.2%, run_block calls 145.7M->116.2M (1.25x block merge), step_block at parity (100.6->102.4 MIPS; the earlier "slower" reading was cranelift IR-logging inside the STEP timer). Uncommitted probe knobs unchanged. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
xenia-rs
Rust reimplementation of the Xbox 360 emulator xenia, focused on reverse-engineering and preservation rather than full-speed play. The initial target is Project Sylpheed — Arc of Deception; getting the title disassembled, traced, and far enough into its init path to understand its engine.
Heavy cross-reference to xenia-canary for CPU context setup, kernel export behavior, and XEX loading semantics.
Status
- XEX loader — XEX2 header parsing, LZX decompression, AES decryption, PE section parsing.
- VFS / XISO — XGD2 dual-layer disc images (with the 0x0FD90000 partition offset).
- PPC interpreter — 200+ opcodes, PowerPC 32/64-bit GPR/FPR, VMX128 decoding.
- Static analyzer — function discovery (prolog/epilog heuristics), cross-references, labels, save/restore helper detection, assembly text + SQLite database output.
- Kernel HLE — minimal subset driving Project Sylpheed: ~170 xboxkrnl + xam exports (critical sections, events, TLS, virtual memory, Vd stubs, XAM input/user/content).
- Debugger — in-memory step/break, SQLite execution + import-call + branch tracing.
Not yet: GPU (xenos/xe-shader), APU audio, HID, kernel scheduler, full threading, exception delivery.
Workspace
crates/
xenia-types # shared primitive types, bitflags
xenia-memory # guest memory, paged allocator, page table
xenia-cpu # PPC decoder, interpreter, context
xenia-xex # XEX2 loader, PE parser, LZX, AES
xenia-vfs # XISO / disc-image reader
xenia-kernel # HLE kernel state, exports, XAM
xenia-gpu # (stub) Xenos command processor
xenia-apu # (stub) XAudio
xenia-hid # (stub) XInput
xenia-debugger # in-memory trace, breakpoints, step modes
xenia-analysis # function/xref analysis, assembly formatter, SQLite DbWriter
xenia-app # `xenia-rs` CLI binary
CLI
Build:
cargo build --release
The binary xenia-rs accepts XEX2 files or ISO / XISO disc images as input
(the loader auto-detects discs and extracts default.xex).
info / browse / disasm
Quick header / disc / first-N-instructions inspection. See --help.
extract — unpack PE + metadata
xenia-rs extract <xex-or-iso> [-o <out-dir>] [--db <sqlite-path>]
Writes <name>.pe (decompressed/decrypted PE image) and <name>.xex.json
(header metadata). With --db, also emits a SQLite database containing the
base tables: metadata, sections, imports.
dis — full disassembly
xenia-rs dis <xex-or-iso> [-o <asm-file>] [--db <sqlite-path>] [--quiet]
Runs function + cross-reference analysis and produces:
- assembly text to stdout or
-o <file>(unless--quiet) - optional SQLite DB with the base tables + disasm tables:
functions,labels,instructions,xrefs
exec — interpret with tracing
xenia-rs exec <xex-or-iso> [-n <max-instrs>] [--db <sqlite-path>]
[--trace-instructions] [--trace-imports] [--trace-branches]
Loads the title, initializes CPU state per xenia-canary, intercepts import
thunks with HLE kernel calls, and interprets from the entry point. Without
-n, runs until halt/fault. With --db, produces a DB that is a superset
of dis --db plus opt-in trace tables:
| flag | table | rows |
|---|---|---|
--trace-instructions |
exec_trace |
one row per interpreted instruction (PC, r3/r4, LR, SP) |
--trace-imports |
import_calls |
one row per kernel/XAM call (module, ordinal, args) |
--trace-branches |
branch_trace |
taken branches classified as call/return/jump/branch |
Cumulative DB layering
Each command's DB is a superset of the previous. A single
xenia-rs exec <iso> --db full.db --trace-instructions --trace-imports --trace-branches
produces the full picture in one pass — base tables, complete static
disassembly, and runtime traces correlatable by address/cycle.
Performance knobs
XENIA_DB_BATCH_SIZE— rows per streaming commit / trace-buffer flush (default100_000). Lower values reduce memory use; higher values reduce fsync overhead on slow disks.
The DB writer uses journal_mode=OFF, synchronous=OFF, locking_mode=EXCLUSIVE
and commits in batches; no ANALYZE is run at finalize. Indices are created
after bulk insertion with progress messages.
Example queries
-- Top 20 kernel functions called during early init
SELECT name, COUNT(*) FROM import_calls GROUP BY name ORDER BY 2 DESC LIMIT 20;
-- All basic-block leaders (targets of taken branches) not already labelled
SELECT DISTINCT bt.target
FROM branch_trace bt LEFT JOIN labels l ON l.address = bt.target
WHERE l.address IS NULL;
-- Correlate a traced call site with its static disassembly
SELECT et.cycle, i.disasm, i.ext_disasm
FROM exec_trace et JOIN instructions i ON i.address = et.address
WHERE et.address = 0x824AB748 ORDER BY et.cycle;
License
BSD-3-Clause, matching upstream xenia.