--- license: mit task_categories: - text-classification - question-answering language: - en tags: - formal-methods - protocol-verification - security - model-checking - ieee-802-11 - 3gpp - reasoning - counterexamples pretty_name: Protocol-Bench size_categories: - n<1K configs: - config_name: default data_files: protocol_bench.jsonl --- # Protocol-Bench **15 published IEEE 802.11 and 3GPP procedures with ground-truth safety verdicts — and, where a property fails, the shortest counterexample trace that proves it.** Most reasoning benchmarks accept an answer. This one asks for a **proof**: if a model says a protocol is broken, it must supply a trace that starts at the initial state, moves only along real transitions, and ends in a genuinely violating state. Traces are replayed mechanically. A plausible-sounding trace that does not replay earns nothing. ## Why the metric is shaped this way The task set is **deliberately imbalanced** — 13 of 15 procedures are safe, which is what the published-procedure population actually looks like. | Strategy | Accuracy | Balanced accuracy | Valid counterexamples | |---|---|---|---| | Answer "safe" every time | **0.867** | 0.500 | 0 | | Answer "violated" every time | 0.133 | 0.500 | **0** | | Exhaustive model checker | 1.000 | **1.000** | **2** | Plain accuracy is nearly uninformative here — hence **balanced accuracy** as the headline, and the **valid-counterexample count** as the column separating a detector from a guesser. There is a second reason, specific to language models: a verdict is separable from the reasoning that should justify it. *"The WPA2 four-way handshake"* is strongly associated with *"vulnerable"* in any training corpus, so a model can be right about it having done no reasoning at all. Recalling a CVE does not produce a replaying trace; reasoning about the state machine does. ## Schema 21 fields per row. Everything is derived from the live models at export time, never hand-maintained. | Field | Type | Description | |---|---|---| | `id` | string | Task identifier | | `standards_body` | string | `IEEE` (8) or `3GPP` (7) | | `spec_clause` | string | The published clause modelled | | `property` | string | Name of the safety property that must hold | | `label` | string | `KNOWN_COUNTEREXAMPLE` \| `CANDIDATE_COUNTEREXAMPLE` \| `PROVEN_SAFE` | | `violated` | bool | Binary target, derived from `label` | | `prompt` | string | Ready-to-use prompt | | `prompt_mode` | string | `model` or `spec` (see below) | | `state_machine` | string | Human-readable rendering of the machine | | `state_fields` | list[string] | State variable names, in order | | `initial_state` | object | Field → initial value | | `transitions` | list[object] | Every reachable edge: `{from, label, to}` | | `n_state_fields` | int | Number of state variables | | `n_reachable_states` | int | Reachable state count | | `n_transitions` | int | Reachable edge count | | `counterexample` | list[object] \| null | Shortest violating trace: `{label, state}` per step | | `counterexample_length` | int | Steps in the trace (0 if none) | | `has_fixed_twin` | bool | Whether a repaired variant exists | | `fixed_twin_holds` | bool \| null | Whether the repair actually removes the violation | | `citation` | string \| null | Publication, where the finding is published | | `known_finding` | string \| null | One-line description of the published finding | Corpus totals: **67 reachable states** and **83 transitions** across the 15 machines; 2 rows carry a counterexample; 2 carry a repaired twin, and both twins verify. ## Two difficulty modes - **`model`** — the full transition table is in the prompt. No protocol knowledge needed; isolates formal reasoning. - **`spec`** — only the standards clause and a description of the procedure. The model must know or infer the behaviour. This is the mode corresponding to what a security researcher actually does. Regenerate either: `python load_dataset.py --regenerate --mode spec`. ## Usage ```python # No dependencies from load_dataset import load, stats rows = load() stats() # {'n_rows': 15, 'n_violated': 2, 'trivial_always_safe_accuracy': 0.8667, ...} # Or as a datasets.Dataset from load_dataset import load_hf ds = load_hf() print(ds[0]["prompt"]) ``` ```bash python load_dataset.py --stats # summary counts python load_dataset.py --regenerate # rebuild from the package, so data cannot drift from code ``` Scoring — including trace replay — needs the package, because a trace only means something when replayed against the real model: ```bash pip install "protocol-bench @ git+https://github.com/nickharris808/protocol-bench.git" # `pip install protocol-bench` does not work yet — the package is not on PyPI. protocol-bench prompts --mode model -o prompts.json # ... run your model, save {task_id: completion} to completions.json ... protocol-bench score-completions completions.json ``` ## Provenance Rows are generated by `protocol_bench.export.export_rows()` from the same finite-state models the package ships and the test suite checks. Nothing in this file is hand-written: - `n_reachable_states`, `n_transitions`, and `transitions` come from exhaustive reachability; - `counterexample` is the shortest violating trace found by breadth-first search; - `fixed_twin_holds` is the verdict on the repaired model; - `label` is cross-checked against exhaustive reachability by a test, so a label cannot drift away from its model. A further test asserts that **the committed JSONL is byte-equal to what the package generates**, and another asserts that **every counterexample in this file replays against its own model**. ## Labels, and one deliberate open question `KNOWN_COUNTEREXAMPLE` means the violation is published and cited. The single instance is the WPA2 4-way handshake — **KRACK** (Vanhoef & Piessens, ACM CCS 2017, CVE-2017-13077…13088). `CANDIDATE_COUNTEREXAMPLE` means the property fails and **no published citation was found**. It is labelled unconfirmed on purpose, and it is a genuine open question posed publicly: if you can cite it, or show the model is wrong, please say so. ## Limitations These are **models of published procedures**, not the standards themselves and not implementations. `PROVEN_SAFE` means the property holds over the modelled state space — not that any shipping product is secure. Abstractions hide things. The set is small (15 rows) and drawn from one modelling effort, so a system tuned on it will overfit quickly. Treat per-task outcomes as the primary result and the aggregate as a summary. Two further procedures exist in the source corpus and are withheld. Replay validation checks that a trace is a genuine execution reaching a violating state; it does not check that the trace is the *explanation* a human would give. ## Licence and attribution MIT, for the code and the task metadata. The KRACK finding belongs to Vanhoef & Piessens; this dataset reproduces it and does not claim it. Specification clauses are cited, not reproduced. ## Citation ```bibtex @misc{protocolbench2026, title = {Protocol-Bench: ground-truth safety verdicts for published IEEE 802.11 and 3GPP procedures}, year = {2026}, note = {Counterexamples are machine-validated by replay against the model.} } ```