# reqfile
Check that a codebase meets its requirements, so agents and humans get
concrete, fixable violations instead of vague advice.
Requirements live in `Reqfile.yaml` files next to the code. Each one says what
must hold, why, for whom, and how it is checked: with an existing tool when the
rule is mechanical (`command`), or with [Jev](https://docs.typesafe.ai), a
decision model returning calibrated probabilities, when it needs judgment
(`decision`). A requirement written once can be taken by reference in other
folders and repositories (`use`).
```
$ reqfile check
FAIL_FAST services/api/handler.py:42 Do not use bare `except` (E722)
fix: Catch the specific expected error and handle it visibly, or let it propagate.
advisory DECOMPLECT services/sync/worker.ts:88 p=0.91 It mixes several jobs.
fix: Split the I/O from the logic into two functions.
14 checks run, 2 with nothing to check, 212 code units judged. 1 violation, 1 advisory finding, 0 errors.
```
## Install
Give your coding agent this prompt to install Reqfile and wire it into your
project's workflow:
```text
set up https://reqfile.dev/SKILL.md
```
Read the [agent skill](skills/reqfile/SKILL.md) or visit [reqfile.dev](https://reqfile.dev).
With [mise](https://mise.jdx.dev), from the prebuilt binaries (macOS and Linux):
```toml
# mise.toml
[tools]
"github:arkadia-so/reqfile" = "0.2"
```
Or with the install script, `cargo binstall reqfile`, or from source with
`cargo install reqfile --locked` (Rust 1.90 or later):
```sh
reqfile needs `git`, `sh`, `tar` (for requirements taken from other
repositories), and the tools your Reqfiles' commands call.
## Security
Reqfiles, configs and requirements taken with `use` are executable code:
- A command check runs its shell command on your machine or CI runner, with
your environment.
- A config chooses the Jev endpoint and the environment variable whose value is
sent to it as the API key.
- Decision checks send the code they select to the configured provider.
- Taking a requirement from another repository (`use: owner/repo@ref`) means
running that repository's commands in your CI. Pin it to a commit or a tag
you trust, and read what `reqfile add` prints before adding it.
## Reqfile.yaml
```yaml
# Requirements for this folder, checked by reqfile (https://reqfile.dev)
reqfile: 1
code:
- id: FAIL_FAST
ref: Shore, "Fail Fast"
must: No silent fallbacks, no swallowed errors, no default values that hide a failure.
why: A swallowed error is an invariant violation nobody sees.
who: Anyone debugging production.
checks:
- command:
run: ruff check --isolated --select E722,BLE001,S110 --output-format sarif
files: "**/*.py"
pass_files: true
format: sarif
fix_hint: Catch the specific expected error and handle it visibly, or let it propagate.
- decision
- { id: DECOMPLECT, use: acme/reqs@v1.2.0 }
```
- The file is named exactly `Reqfile.yaml` and has a `reqfile: 1` version key.
- Requirements are listed under `product` (what users get), `code` (how the
code is built) or `process` (how the project is run, such as its CI).
- A block with `use` is a use block, taking its requirement by reference
(below); any other block is a definition. A definition has an `id` in
SCREAMING_SNAKE_CASE, `must`, `why` and at least one check, and optionally
`who` and `ref`.
- Unknown keys, missing fields and near-miss file names (`reqfile.yaml`,
`Reqfile.yml`) are errors naming the file and line. A near-miss name is only
an error when the file has a top-level `reqfile`, `product`, `code` or
`process` key, so a CI workflow named `reqfile.yml` is fine.
### Macro and micro
A requirement is a macro: one durable promise, in one or two sentences, that
would get a bug filed if it broke six months from now. Its details are micro:
tests named after the sentence they prove, in the files its checks run.
Implementation decisions, such as a chunk size or a library choice, stay in
specs and pull requests. Keep each Reqfile to at most 10 product requirements;
past that, merge requirements into broader promises, or split the folder into
subfolders with their own Reqfiles.
### Scope
Any folder can hold a `Reqfile.yaml`. For a file and an id, the block that
applies is the one in the nearest Reqfile at or above the file's folder; blocks
with that id in farther Reqfiles do not apply to it. A definition id appears
once in a repository, and an id at most once in a Reqfile, so a nearer block
with the same id is always a use block. Each code unit is judged at most once
per id in a run.
Target files come from git (tracked and untracked, never ignored), minus
`.reqfile/` folders and the `exclude` globs of the configs above them.
### Command checks
| Field | Required | Meaning |
|---|---|---|
| `run` | yes | Shell command, run from the folder of its Reqfile |
| `fix_hint` | yes | One line telling how to fix a violation |
| `files` | no | Glob relative to that folder; the command runs only if a target file matches |
| `pass_files` | no | Append the matching files as arguments (default false) |
| `format` | no | `exit` (default) or `sarif` |
| `violation_codes` | no | Exit codes meaning "violations found" (default `[1]`; `[101]` for `cargo test`) |
| `timeout` | no | Seconds, default 60 |
| `fast` | no | Quick enough for `reqfile check --fast`, such as in an edit hook (default false) |
A command without `files` always runs. With `pass_files`, the files are
appended at the end of the whole command, so a pipeline such as `tool "$@" |
filter` receives nothing; put pipelines in a script.
Commands reach the files of their requirement through `$REQFILE_ASSETS`, the
absolute path of its `.reqfile/<ID>/` folder, as in `run:
$REQFILE_ASSETS/check.sh`. `$REQFILE` is the reqfile executable running the
check, for commands that inspect the requirements themselves, such as
`$REQFILE list --format json`.
With `format: exit`, exit 0 passes and a code listed in `violation_codes`
reports one violation carrying the last 50 lines of output.
With `format: sarif`, the report is parsed on both exit 0 and a listed violation
code. Each `kind: fail` result is a violation; an absent `kind` defaults to
`fail`. Other kinds and suppressed results are ignored. A suppression with
no status or `status: accepted` suppresses the result; `rejected` and
`underReview` do not. An empty `suppressions` array does not suppress anything.
This catches findings from pipelines such as `clippy | clippy-sarif` even when
the final command exits 0.
Invalid SARIF (including on exit 0), a violation code with no SARIF results,
any unexpected exit code, a signal or a timeout is a tool error. A report
containing only ignored results passes on exit 0 or a listed violation code.
### Decision checks
A `decision` check (or `decision: { mode: blocking }`) reads
`$REQFILE_ASSETS/decision.yaml`, the `.reqfile/<ID>/decision.yaml` of its
requirement:
```yaml
units: # ast-grep rules selecting the code to ask about
- { language: typescript, rule: { kind: catch_clause } }
- { language: tsx, rule: { kind: catch_clause } }
- { language: python, rule: { kind: except_clause } }
- { language: rust, rule: { pattern: $X.unwrap_or_default() } }
context: enclosing # optional: also send the enclosing function
question: Does this error handler hide the failure?
violation_when: It discards the error, only logs it, or replaces it with a default value, and execution continues as if nothing failed.
ok_when: It rethrows, returns an explicit error, or handles a specific expected error in a way the caller can observe.
fix_hint: Rethrow, return an explicit error, or narrow the handler to the expected error and handle it visibly.
thresholds: { violation_above: 0.8, pass_below: 0.2 }
```
Units accept ast-grep's `rule`, `constraints` and `utils`, plus `files` and
`ignores` globs (relative to the Reqfile's folder). A unit rule selects files
of exactly its language: a `typescript` rule never selects `.tsx` files, so
TSX needs its own `tsx` rules. For each unit, reqfile asks Jev the question
with the language, path, unit source and, with `context: enclosing`, the
enclosing function. Each unit is sent once, with the questions of every
decision check that selects it: Jev charges input tokens and reads the state
once per request, so several checks on the same code cost little more than
one. Answers are cached in a local file in the git folder
(`.git/reqfile/jev-cache`), shared by every worktree, so checking never
modifies tracked files. An answer is reused while the unit, the requirement's
question and the exact model behind `latest` are unchanged, and a full run
drops answers no unit uses any more; pruning changes cost, never results. In
CI, keep that file between runs (for example with `actions/cache`). A
probability above `violation_above` is a violation, below `pass_below` a pass,
and anything in between an uncertain finding.
Decision checks are advisory unless `mode: blocking`; uncertain findings are
always advisory. A blocking decision check needs a pinned model (an exact
version, such as `typesafe/jev-1.13-20260917`, set in `.reqfile/config.yaml`),
so its thresholds stay tied to the version they were measured with. Label a few
dozen units of your codebase and adjust the thresholds before making a check
blocking.
## Imports: `use`
A use block takes a requirement defined elsewhere:
```yaml
code:
- { id: FAIL_FAST, use: ./std } # a folder of this repository
- { id: DECOMPLECT, use: acme/reqs@v1.2.0 } # a repository at a tag
- id: CONTRACTS
use: acme/reqs@3f2a9c1e0b7d4c6a8e5f1b2d3c4a5e6f7a8b9c0d # at a commit
why: The billing core must never reach an invalid state.
```
- **Locations.** A folder, relative to the folder of the use block's Reqfile
(`./std`, `../shared`), or `owner/repo@ref`, fetched from
`https://github.com/owner/repo` (`$REQFILE_GIT_BASE/owner/repo` when that
variable is set, for a mirror). The use block resolves to the unique
definition with its id among the Reqfiles at or under that location,
discovered like a repository of its own, with its exclusions. Use blocks are
never resolution targets, so chains cannot form.
- **Refs.** A full 40-character commit id, or a tag, resolved through
`refs/tags/<name>` even if a branch has the same name. Branch names, short
ids and `HEAD` are errors: the rules of a repository must not change under
it. Tags are resolved again on each run and every run reports the commit
each ref resolved to; without network access, the last resolution cached in
the git folder is used, and the report says so. Commits are fetched once
into `.git/reqfile/sources/`, addressed by commit id and shared by every
worktree.
- **Types.** Only `code` and `process` requirements can be taken: a `product`
requirement describes its own repository's product. The section of the use
block must match its definition's.
- **What can be set locally.** A use block takes `must`, `ref` and its type
from its definition. It may set `why` and `who`, and `checks`, which then
replace the definition's checks entirely. Setting `must` is an error.
- **Where checks run.** The checks of a use block run in the folder of its
Reqfile, with its globs relative to that folder, and the settings of that
folder in the repository being checked. A source's configs are only used to
discover its definitions.
- **`$REQFILE_ASSETS`** is one `.reqfile/<ID>/` folder, never a merge: the
definition's for inherited checks, the use block's own for checks it sets.
With inherited checks, the use block's own `.reqfile/<ID>/` may only hold
`examples/`.
`reqfile add <location> [IDS]` shows what taking requirements would mean,
without running or writing anything: the definitions and commit the location
resolves to, the use blocks to add under their sections, what their checks
run, and the two commands verifying them, `reqfile test --only` and `reqfile
check --only`. Without ids, it lists every code and process requirement there.
Use blocks need a reqfile of version 0.2 or later: 0.1 reports `use` as an
unknown key, naming its line, so it never skips one silently.
## Evidence: `reqfile test`
Each requirement can keep labeled examples in `.reqfile/<ID>/examples/`: one
folder per case, named `violation-…` or `ok-…`, holding a small file tree.
`reqfile test` puts each case alone in a fresh repository, holding only the
case's files, and runs the requirement's effective checks on it with
`$REQFILE_ASSETS` and the Jev settings of its folder. A requirement taken with
`use` is tested with its definition's examples and its own.
```
UNUSED_CODE asserted: 2 examples, 2 as labeled
FAIL_FAST measured, no assertion: 3 of 4 violations caught (1 missed, 0 not selected, 0 uncertain); 0 of 2 correct examples flagged (0 uncertain)
violation-rust-ok-discard: missed
SIMULATION no evidence: no labeled examples
3 requirements: 1 asserted, 1 measured, 1 without evidence; 6 examples. 0 failing their labels.
```
Each requirement falls in one of three classes:
- **asserted**: command checks only, which must match every label, or `reqfile
test` exits 1;
- **measured**: with a decision check, results are counted, never asserted:
model judgments vary, so exit 0 does not mean the check works. A detector
earns its place, or `mode: blocking`, by the rates it reaches on examples it
was not tuned on;
- **no evidence**: no labeled examples, so nothing is known about its checks.
Violations no check looked at are reported as "not selected", apart from those
it looked at and missed. A case that cannot run exits 3.
What each step establishes:
| `reqfile test` | How the effective checks classify the labeled examples, in isolation | Anything about your code, the tools in CI, or thresholds on your code |
| `reqfile check` | What each check selected (files, units) and found, with your settings and this machine's tools | That the selection covers all relevant code, that no finding means the requirement holds, or that decision thresholds suit your code |
| `reqfile add` | Which definitions and commit the blocks resolve to, and what they will run | Anything else: it runs nothing |
What stays unverified in every case: code no check looks at, decision
precision on your code, the tools installed in CI, and the requirements
themselves. Exit 0 means the checks passed, not that the requirements hold.
## Settings: `.reqfile/config.yaml`
Any folder can hold a `.reqfile/config.yaml`, with or without a `Reqfile.yaml`
next to it. Nothing is specific to the repository root: the settings of a
folder come, key by key, from the nearest config in that folder or its
ancestors, and each check uses the settings of its Reqfile's folder. Every key
is optional, and most repositories need no config at all.
```yaml
base: origin/main # default base of --changed (default: origin/HEAD)
exclude: ["vendor/**", "tests/fixtures/**"] # relative to this folder
decision: # defaults shown
model: "~typesafe/jev-latest" # the latest Jev on OpenRouter
api_key_env: OPENROUTER_API_KEY
endpoint: https://openrouter.ai/api/v1
concurrency: 16
```
`exclude` globs add up down the tree, so a nested config cannot re-include
what a parent excluded; a config inside an excluded folder is ignored.
Advisory decision checks follow the latest Jev by default. Set `model` to an
exact version (such as `typesafe/jev-1.13-20260917`) to keep thresholds tied to
the version they were chosen with; blocking decision checks require it. The
endpoint also accepts TypeSafe's own API (`https://api.typesafe.ai/v1`, model
`jev-latest`).
## CLI
```
reqfile check [--fast] [--changed [BASE]] [--only ID,...] [--format summary|json]
[--log FILE [--log-tag KEY=VALUE]...]
reqfile explain <PATH>
reqfile list [--kind product|code|process] [--format summary|json]
reqfile test [--only ID,...]
reqfile add <LOCATION> [ID]...
```
- `--changed` checks everything a change since the merge-base of BASE and HEAD
can affect: the changed files (committed, uncommitted, untracked and
deleted), and every file whose applicable block is not the same as at the
merge-base, because another block now applies to it or because its
requirement, its `$REQFILE_ASSETS` files, its settings or the commit of its
source changed. Unchanged files are checked against a redefined requirement,
and only files in its scope. Commands without `files` still run.
- `--fast` runs only decision checks and the commands declared `fast: true`,
for edit hooks; the summary counts the checks left for a full run. Without
it, every check runs, so a CI running `reqfile check` never skips checks.
- `--only` runs only the listed requirements.
- `--log FILE` appends one JSON line per judged code unit (clean ones
included), command check and command finding: run id, git HEAD, requirement,
location, the unit's source and fingerprint, the question's fingerprint,
probability, verdict, exact model and whether the answer was cached, plus
any `--log-tag KEY=VALUE`. It feeds evaluation and replay without changing
results.
- `explain` lists the requirements that apply to a path: for each, the block
that applies, and for a use block its resolved definition and whether its
checks are inherited or set in the block.
- `list` lists every requirement of the repository with its type, the types of
its checks and, for a use block, its source; `--format json` gives the same
as data.
- `test` runs each requirement's checks on its labeled examples (above).
- `add` shows the use blocks taking requirements from a location (above).
Every finding of a requirement taken with `use` names its use block and where
its definition was resolved; the summary lists the commit every ref resolved
to.
Exit codes: `0` when every blocking check ran and found no blocking violation,
`1` on blocking violations, `3` on any config error or any error in a blocking
check (which takes precedence). An advisory check that cannot run, such as a
decision check without an API key in a pull request from a fork, is reported
as an advisory error without changing the exit code: it could never have
blocked. Command checks are always blocking. Exit 0 means the checks passed,
not that the requirements hold: checks approximate requirements. The summary
counts checks run, checks with nothing to check, and code units judged, so a
run that looked at nothing shows.
## Using it
**In CI**, as a required check on pull requests:
```yaml
# .github/workflows/reqfile.yml
name: reqfile
on: pull_request
jobs:
check:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v4
with:
fetch-depth: 0
- run: cargo install reqfile --locked
# Also install the tools the Reqfiles' commands use (ruff, ast-grep, knip, ...).
- run: reqfile check
env:
OPENROUTER_API_KEY: ${{ secrets.OPENROUTER_API_KEY }}
- run: reqfile test
```
**With Claude Code**, as a Stop hook that sends violations back to the agent
before it finishes:
```json
{
"hooks": {
"Stop": [
{ "hooks": [{ "type": "command",
"command": "jq -e '.stop_hook_active' >/dev/null && exit 0; reqfile check --fast --changed >&2 || exit 2" }] }
]
}
}
```
With `--fast`, only decision checks (advisory unless blocking) and the command
checks declared `fast: true` run, so the hook blocks only on those; declare
quick commands `fast`. The `stop_hook_active` guard lets the agent stop after
one forced retry, which avoids infinite loops but allows finishing with
violations left. CI remains the gate.
**In AGENTS.md**:
```markdown
Before editing a folder, run `reqfile explain <folder>` to see the requirements that apply.
Before finishing, run `reqfile check --fast --changed` and fix every violation.
```
## License
Licensed under either of [Apache License, Version 2.0](LICENSE-APACHE) or
[MIT license](LICENSE-MIT) at your option.
## Development
reqfile checks itself: `Reqfile.yaml` lists its product requirements, each a
macro promise checked by the integration tests in `tests/`, whose names are
its micro requirements. Decision tests call a local fake of Jev, and import
tests local git repositories, so the suite runs offline.
```sh
cargo test
reqfile check
reqfile test
```
CI (`.github/check.sh`, run for every pull request and before every release)
compiles the tests with `cargo test --no-run --locked` before running `cargo
test --locked`, `reqfile check` and `reqfile test`, so cold builds and Cargo's
build lock cannot exhaust a check's timeout.