| --- |
| license: apache-2.0 |
| pretty_name: CIS-2 — conformance vectors for bit-identical fp32 transformer inference |
| language: |
| - en |
| tags: |
| - reproducibility |
| - determinism |
| - verification |
| - inference |
| - floating-point |
| - specification |
| - conformance |
| size_categories: |
| - n<1K |
| --- |
| |
| # CIS-2 — conformance vectors for bit-identical fp32 transformer inference |
|
|
| Floating-point transformer inference is usually treated as unavoidably |
| nondeterministic across hardware. Reduction order, FMA contraction, denormal |
| handling and platform math libraries all differ between x86_64 and aarch64, and |
| between compilers, so "the same model on the same input" in practice means |
| "agrees to within a tolerance", not bit-for-bit. |
| |
| **CIS-2 is a written specification that removes those degrees of freedom**, and |
| this repository holds the artifacts a third party needs to check whether their |
| own implementation conforms: the spec text, five op-level conformance vectors |
| with pinned expected outputs, the expected end-to-end digests, and the GPU |
| result. |
| |
| Everything here is Apache-2.0. Source of truth and CI: |
| **https://github.com/Aefinity-AI/cis2-spec** — tagged release |
| [`v0.3b`](https://github.com/Aefinity-AI/cis2-spec/releases/tag/v0.3b). |
| |
| This dataset is a snapshot assembled from that repository. If the two ever |
| disagree, the repository wins. |
| |
| ## The claim |
| |
| ``` |
| CIS2_REF, SmolLM2-135M, prompt "Once upon a time", 16 greedy tokens, spec v0.3b |
| d82743059d1db929e710236fe4ec37f89e6f932524801345a006980f7c3cc9df |
| ``` |
| |
| That digest is a SHA-256 witness chain folded over the **complete fp32 logit |
| vector at every decode step** — not the argmax token, the whole vector. It is |
| currently reproduced by: |
| |
| | implementation | written from | platforms | |
| |---|---|---| |
| | Rust reference | — | x86_64, aarch64 (native runners) | |
| | Rust clean-room `verify2/` | the spec text alone | x86_64, aarch64 | |
| | C11 clean-room `verify3/` | the spec text alone | x86_64, aarch64 · gcc and clang | |
| | CUDA port (not published) | the spec text alone | NVIDIA Tesla P100, sm_60, CUDA 12.8 | |
| |
| The two clean-room implementations were written without access to the reference |
| source or to each other. Public CI re-checks all of the CPU rows on every push. |
| The GPU row is documented in `GPU_RESULT.md`; on that run the per-step trace was |
| **byte-identical** to the CPU trace, not merely equal at the final digest. |
| |
| ## What is pinned |
| |
| - Reduction order — strictly left-to-right, sequential. |
| - FMA contraction — forbidden, and gated by `objdump` in CI. |
| - Denormals — FTZ/DAZ on, pinned via MXCSR (x86) and FPCR.FZ (aarch64). |
| - Transcendentals — `sin`/`cos` by octant reduction plus separate Cephes-pattern |
| minimax polynomials; `exp` and `ln` by pinned Cephes-pattern polynomials; |
| `rsqrt` correctly rounded with no table. Every coefficient is pinned as an f32 |
| hex literal and hashed into the witness chain. |
| - RoPE `inv_freq` — pinned table, theta-general. |
| - Tokenization — byte-level BPE pinned at the byte level. |
| |
| Full normative text: `CIS2_SPEC_v0.3b.md` (§13.1 carries the pinned vector). |
| |
| ## Files |
| |
| | file | what it is | |
| |---|---| |
| | `CIS2_SPEC_v0.3b.md` | the normative specification | |
| | `EXPECTED_DIGESTS.md` | pinned end-to-end digests, including the GPU confirmation | |
| | `GPU_RESULT.md` | the 2026-09-08 NVIDIA Tesla P100 run, with its scope limits | |
| | `PROTOCOL.md` | the stdin/stdout wire contract a third-party binary implements | |
| | `vectors/README.md` | per-op field layout of each vector file | |
| | `vectors/*.txt` | five op-level input vectors: matvec, rmsnorm, rope, exp_pinned, attention_block | |
| | `vectors/*.expected` | the pinned expected output for each | |
| |
| The vectors are plain text `key=value` files with float fields given as exact |
| hex bit patterns, so parsing introduces no rounding of its own. They exist so an |
| implementation can be checked **op by op** — you find out *which* operation |
| diverges, instead of only that a 64-character digest came out wrong. |
| |
| ## How to check your own implementation |
| |
| ```bash |
| git clone https://github.com/Aefinity-AI/cis2-spec |
| cd cis2-spec |
| cargo run --release --bin cis2-conformance -- /path/to/your-binary |
| ``` |
| |
| `PROTOCOL.md` is the complete contract; you do not need to read any of this |
| project's Rust to implement against it. |
| |
| ## Scope, stated plainly |
| |
| fp32 scalar reference semantics, not a fast kernel. Greedy decoding. Models |
| checked up to 1.5B parameters. The GPU leg is one Pascal device, one toolchain, |
| correctness only — no tensor cores, no batching, no timing number is claimed |
| anywhere in this project. The CUDA port itself is deliberately not published, so |
| a second GPU implementation written from the spec would be a genuine independent |
| check rather than a re-run of ours; that is the contribution we are asking for. |
| |
| ## Prior art |
| |
| Reproducible and deterministic inference is prior-occupied ground. Gensyn's |
| `repops` demonstrates a hash-matched CPU/CUDA fp32 forward pass; Microsoft's |
| RepDL provides reproducible linear-algebra operators with CPU and CUDA backends; |
| vLLM and SGLang both ship batch-invariant determinism modes; and |
| arXiv:2606.00279 verifies bit-exact GPU inference by emulating vendor silicon |
| tables. **No "first" and no "only" claim is made here**, and none should be |
| inferred. |
| |
| The narrower thing CIS-2 is testing is whether a *written document* can carry |
| enough information for strangers to converge on identical bits — across an ISA |
| boundary, a compiler boundary, a language boundary, and a CPU/GPU boundary, |
| with no implementation consulting another. |
| |
| ## Falsification bounty |
| |
| There is a standing $50-per-distinct-root-cause bounty for breaking this: |
| https://github.com/Aefinity-AI/alice-aegis/blob/main/CHALLENGE.md — write your |
| own implementation from `CIS2_SPEC_v0.3b.md`, in any language for any device, |
| and get a different digest. If the disagreement is because the spec text permits |
| two readings, that is the finding most worth paying for: it means the document |
| is not yet sufficient, which is the entire thing CIS-2 claims to be. |
| |
| --- |
| |
| Aefinity AI Inc. · Justin Brian Thompson |
| |