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spec-to-code-compliance

Check code against the documentation that specifies it - which requirements hold, which the code contradicts, which are absent, and what the code does that no document mentions

Install / Use

npx skills add trailofbits/skills --skill spec-to-code-compliance

Installs into whichever agent you are using.

About this skill
📄

SKILL.md

Installable skill definition

Quality Score

88/100

Category

Automation

Supported Platforms

Universal

Our assessment of spec-to-code-compliance

spec-to-code-compliance scores 88/100 on our quality scale, 821st of 1,990 Automation skills we index (top 42%).

Its SKILL.md is 7.3 KB long, well organised into 8 sections and no code examples: a thorough specification that gives an agent plenty to work with.

With 7,225 GitHub stars, it is one of the more widely adopted skills in the catalogue.

Substance
29/30
Structure
13/20
Description
15/15
Adoption
16/20
Freshness
15/15

Maintenance, license and trust

  • The repository was last updated 4 days ago, so spec-to-code-compliance is actively maintained.
  • It is released under the CC-BY-SA-4.0 license; check its terms before commercial use.
  • Its trust signals score 100/100, with no cautions. These come from repository metadata, not a code audit — read the skill file before letting an agent act on it.

spec-to-code-compliance compared with similar skills

All 4 of these similar skills score higher than spec-to-code-compliance; compare them before choosing.

SkillScoreStarsUpdatedFormat
spec-to-code-compliance (this skill)by trailofbits887.2k4d agoSKILL.md
Agent-Reachby Panniantong10085.8k12d agoCLAUDE.md
rufloby ruvnet10073.4ktodayCLAUDE.md
Scraplingby D4Vinci10084.1ktodayMCP Server
algorithmic-artby anthropics100177.9k5d agoSKILL.md

Frequently asked questions

How do I install spec-to-code-compliance?
Run npx skills add trailofbits/skills --skill spec-to-code-compliance. The install tabs above show the steps for each supported agent.
Which AI agents does spec-to-code-compliance work with?
It is written for Universal, as a SKILL.md file. Other agents that read the same format can often use it too.
Is spec-to-code-compliance safe to use?
It is CC-BY-SA-4.0-licensed and scores 100/100 on trust signals. Skills are instructions an agent will follow, so read the file before installing it and do not approve commands you do not understand.
Is spec-to-code-compliance still maintained?
The repository was last updated 4 days ago, so spec-to-code-compliance is actively maintained.

name: spec-to-code-compliance description: Check code against the documentation that specifies it - which requirements hold, which the code contradicts, which are absent, and what the code does that no document mentions. Use when comparing an implementation against a whitepaper, protocol spec, or design document. allowed-tools: Workflow Task Read Grep Glob

Spec-to-Code Compliance

Two artifacts disagree, and the job is to find where. The documentation says what the system does; the code decides what it actually does. Every gap between them is either a bug or a documentation fix, and which one it is is the finding.

When to Use

You have both documentation describing intended behavior and the code that should implement it. A whitepaper against a protocol, a design note against a service, a README's stated guarantees against the functions behind them.

Most useful when the document is authoritative — something a client wrote, published, or is audited against — because then a divergence is a defect rather than stale prose.

When NOT to Use

Not for code with no documentation of intended behavior. There is nothing to check against, and a requirement inferred from the code is checked against itself. Build the system model first with audit-context-building.

Not for finding bugs in general. This finds one class: where the code and the document disagree. A bug both artifacts are silent about is out of scope, and a bug the document endorses is a finding against the document.

Not for writing or improving documentation, though it produces the list of what needs fixing.

Do not check requirements in this context

Run /spec-to-code-compliance:spec-compliance <path>. The slash command takes a path; to name the specification directly or widen the fan-out, ask for the run with those values — "run spec-compliance on ./contracts against SPEC.md, checking 20 requirements" — and they reach the script as {path, spec, limit}. Typing the object literally after the slash command does not work; it arrives as a string and becomes the path.

It finds the documents, splits them into individually checkable requirements, gives each requirement its own agent to hunt the code with, has independent agents try to refute every divergence before it is reported, and writes spec-compliance/REPORT.md plus one file per requirement under spec-compliance/requirements/. Only compact records come back here.

For a single requirement, dispatch the spec-to-code-compliance:spec-compliance-checker agent at it.

This is not a preference about where output lands. The check does not fit in one context window if it is done honestly: judging one requirement means reading the enforcement, its callees, and its callers, and doing that for thirty requirements means holding thirty call chains at once. Attempted inline, the first few get a real check and the rest get a plausible one — and the transcript looks the same either way, because a verdict resting on a promising function name reads exactly like one resting on having read the function. Per requirement, in its own context, is what makes that difference visible.

Two properties come from the script rather than from instructions, and cannot be had here:

  • A refutation the finding's author did not perform. Claude favors findings it produced when asked to check them. The workflow sends each divergence to agents that did not produce it — one reading the code again, one re-reading the document — and drops what either knocks down.
  • Records that cannot be prose. A subagent bound to a return schema has to name the lines it read and the searches it ran. An absent verdict arrives with the patterns tried and their results attached, which is the only thing separating a real absence from a search that stopped early.

Measured on the routes-not-inline eval: with this plugin installed the work is dispatched every run, without it never — Δ +1.00. Deleting this section while leaving the workflow in place changes nothing, because the workflow is a real command that gets found and dispatched on its own. Read that as the mechanism carrying the behavior rather than this text: the section is here so a human knows what runs and why, not because the routing depends on it.

What comes back, and how to read it

Every requirement gets one of six verdicts: implemented, partial, contradicted, stronger-than-spec, absent, or undecidable. The interesting ones are the middle four.

  • partial is usually the most serious thing in the report. The requirement holds on the paths anyone would test and fails on one nobody did, which is how it survived long enough to be found.
  • absent rests entirely on its searched record. Read it. Enforcement often lives somewhere the search did not go — a modifier, a base class, a caller that checks first.
  • undecidable, and any documentProblem, are findings about the documentation. A requirement too vague to check is one the client cannot hold anyone to.
  • stronger-than-spec is an undocumented constraint. It works today, and nothing tells the next person changing that code that anything depended on it.

The report also carries the reverse direction — behavior the code has that no document mentions — which the per-requirement pass cannot find by construction, since it is driven by the documents.

Read notChecked, unverified, and unreadableDocuments before treating the report as complete. Requirements below the fan-out cut were never checked, and a divergence whose refutation agents both failed is unverified rather than confirmed.

Judgment the workflow does not make for you

Severity is consequence, not distance from the text: DIVERGENCE_RUBRIC.md. A rounding step that bleeds a pool outranks a MUST satisfied by different means than the document describes, and documentation drift with no behavioral consequence is a docs ticket.

The verdict is not the finding. absent on a mandatory requirement is a finding; absent on a sentence describing a roadmap item is not. Deciding which is which is what this skill is for, and the workflow hands you the evidence to decide it with.

The target does not have to be a contract

The question is the same everywhere — what does this requirement demand, where would it be enforced, is it enforced on every path — but what counts as a specification and where enforcement hides both change. DOMAIN_NOTES.md maps that across contracts, C and C++, services, and decompiled firmware, and covers the case where the specification is an RFC or a standard rather than a project document. Read it when the target is not a contract, and when scoping a check against a large standard.

Reference

  • ANALYSIS_FORMAT.md — the on-disk format for a per-requirement analysis. Read when extending this plugin or judging whether a record is trustworthy.
  • WORKED_EXAMPLE.md — three requirements chased to a verdict, one per verdict that is easy to get wrong: arithmetic that satisfies a requirement it does not resemble, an absence whose searches are the finding, and enforcement present on every path but the one nobody tested.
  • DOMAIN_NOTES.md — per-domain mapping of specifications and enforcement.
  • DIVERGENCE_RUBRIC.md — severity, and the two directions of a gap.

Related Skills

View on GitHub
GitHub Stars7.2k
CategoryAutomation
Updated4d ago
Forks615

Languages

Python

Trust signals

100/100

From repository metadata: license, adoption, age and documentation. Not a code audit — see the Safety scan above for what the skill file itself contains.

No cautions