agent-policy
Pure-function policy matrix for AI coding agents. Maps
(repo, capability, context)to one of three modes:deny/require_approval/auto_allow.
Status: 0.1.14 alpha. The core evaluator API is stable for v0.1;
additive wrapper helpers may still grow while the package is alpha.
Note: v0.1.10 is retained as a tag-only, unpublished release attempt; use
0.1.14 for installation and provenance verification.
Why
AI coding agents (Claude Code, Codex, Aider, and friends) need a single place to answer one question, the same way, every time:
"The agent wants to do X in repo Y — should I let it?"
agent-policy is that single place. It is deliberately tiny:
- One pure function —
evaluate(policy, repo, capability, context). - No I/O, no logging, no global state. The evaluator does not touch disk, network, or clocks. It is safe to call from a hook, a test, or a long-running daemon.
- Fail-closed defaults. A missing
default_modeisrequire_approval, unknown fields in policy files are rejected, and hard guardrails cannot be overridden by repo policy.
It does not parse shell commands, manage state, or send messages.
Those belong in the wrapper layer that calls evaluate.
Optional runtime companion
agent-guard is the standalone
static entry point for repositories touched by coding agents such as Codex,
Claude Code, Aider, and similar tools. It answers the repository question:
"Does the repository content still obey the safety rules before hooks, CI, release, or publication?"
agent-policy is an optional advanced runtime companion for integrations that
need action-level authorization:
"Given this repo, capability, and context, should the agent be denied, require approval, or be allowed?"
It is not required by agent-guard or a basic static setup. When an integration
needs runtime admission control, it can call agent-policy in a hook or wrapper
before an agent performs a side effect.
| Role | Tool | Responsibility |
|---|---|---|
| Standalone static entry | agent-guard |
Scan paths, text, API surfaces, and pinned digests for repository safety drift. |
| Optional advanced runtime companion | agent-policy |
Decide whether a normalized agent action is deny, require_approval, or auto_allow. |
agent-safety-toolkit-example
is a reference integration for projects that intentionally use both tools; it
is not required setup.
Install
pip install yui-agent-policy==0.1.14
From a source checkout, install the package in editable mode so both the
library and examples/check.py can resolve import agent_policy:
pip install -e .
Requires Python 3.11+ (uses stdlib tomllib). The only runtime dependency
is pydantic >= 2.
Quick start
from agent_policy import evaluate, PolicyMatrix, RepoPolicy
policy = PolicyMatrix(
default_mode="require_approval",
repo_policy=[
RepoPolicy(
repo="acme/app",
ownership_class="internal",
capabilities={
"read": "auto_allow",
"commit": "auto_allow",
"push": "auto_allow",
"shell": "require_approval",
},
),
],
)
decision = evaluate(
policy,
repo="acme/app",
capability="commit",
context={"ownership_class": "internal"},
)
print(decision.mode) # "auto_allow"
print(decision.reason) # "repo_policy"
print(decision.matched_repo) # "acme/app"
Load the same policy from a TOML file:
from agent_policy import evaluate, load_policy_file
policy = load_policy_file("policy.toml")
decision = evaluate(policy, repo="acme/app", capability="commit")
evaluate also accepts a plain dict in the same shape as PolicyMatrix,
which is convenient for tests and one-off scripts.
Decision model
Every call returns a frozen PolicyDecision with three fields:
| Field | Type | Meaning |
|---|---|---|
mode |
"deny" | "require_approval" | "auto_allow" |
What the caller should do. |
reason |
"hard_guardrail" | "repo_policy" | "default_mode" | ... |
Which rule produced the decision. |
matched_repo |
str | None |
The repo string that matched, or None. |
Decisions are evaluated in this order:
- Hard guardrails — cannot be overridden by repo policy.
push.force→ alwaysdeny.merge.pr→ alwaysrequire_approval.- External
first_write_to_repoon a mutating capability →require_approval. Read is not blocked.
- Repo policy match — every
[[repo_policy]]entry for the requested repo is scanned (optionally gated byownership_class). The first entry that declares the capability wins. Splitting a repo's policy across multiple entries is supported. Entries that can both match the same repo, ownership class, and capability must declare the same mode; contradictory overlaps fail validation instead of depending on list order. default_modefallback — used when no repo policy declares the capability. Defaults torequire_approvalif unset.
HARD_GUARDRAILS remains an ordinary inspection dict for compatibility.
Evaluation uses separate private immutable state, so mutating or rebinding the
public copy cannot weaken the force-push guardrail.
Audit event schema
Wrappers that need logs or approval records can build a deterministic audit
event from the same inputs they pass to evaluate:
from agent_policy import audit_event_to_json, build_audit_event, evaluate
context = {"ownership_class": "internal"}
decision = evaluate(policy, repo="acme/app", capability="shell", context=context)
event = build_audit_event(
repo="acme/app",
capability="shell",
context=context,
decision=decision,
session_id="session-123",
path="scripts/release.sh",
)
print(audit_event_to_json(event))
The event is an immutable value object with these fields:
| Field | Meaning |
|---|---|
repo |
Repository identifier evaluated by the wrapper. |
capability |
Normalized capability evaluated by the wrapper. |
context |
Recursively copied, key-sorted JSON-compatible context used for the decision. |
decision |
Nested PolicyDecision payload. |
session_id, command, path |
Optional wrapper-supplied identifiers. |
Installed wheels include two JSON Schema resources:
| Resource | Contract |
|---|---|
agent_policy.schemas/agent-policy.audit_event.v1.schema.json |
Backward-compatible event shape. Optional wrapper strings remain unconstrained. |
agent_policy.schemas/agent-policy.audit_event.v1.1.schema.json |
Opt-in stricter event shape with additive constraints for decision.matched_repo, session_id, command, and path. |
Downstream wrappers can load either resource with importlib.resources to
validate the event shape they write to logs, CI artifacts, or approval records:
from importlib import resources
import json
schema_text = (
resources.files("agent_policy.schemas")
.joinpath("agent-policy.audit_event.v1.1.schema.json")
.read_text(encoding="utf-8")
)
schema = json.loads(schema_text)
The schemas describe the deterministic payload only; they do not prove that a human approval exists.
session_id, command, and path are serialized verbatim when supplied.
The packaged .v1 schema intentionally accepts any string for those optional
fields for backward compatibility. The packaged .v1.1 schema makes the
recommended length and character constraints machine-checkable for consumers
that opt in. Operators should still enforce public-safe values and keep them
redacted before calling build_audit_event():
| Field | Recommended operator constraint |
|---|---|
session_id |
1-256 characters matching ^[A-Za-z0-9._:@/+~-]+$(?![\s\S]); the final lookahead requires true end-of-input. |
command |
1-4096 redacted characters with no control characters, using ^[^\x00-\x1f]+$(?![\s\S]). |
path |
1-1024 characters with no leading POSIX slash or control characters, using ^[^/\x00-\x1f][^\x00-\x1f]*$(?![\s\S]); producers should also reject parent traversal and alternate local-path syntax before treating it as repository-relative. |
Do not pass private command transcripts, absolute local paths, secrets, or
personal identifiers into these fields if the event may be stored or
published. The bundled examples/check.py --audit-event producer enforces
these stricter optional-field constraints before serialization, including
rejection of parent traversal components, absolute POSIX paths, Windows drive
or UNC paths, local home or environment shorthand, file URI syntax, empty
strings, overlong values, and control characters.
Schema validation does not redact values, scan for secrets, reject parent traversal, reject alternate local-path syntax, or prove repository containment. Those checks remain producer-owned responsibilities.
agent-policy does not persist events, generate timestamps, create IDs,
hash approvals, redact optional wrapper strings, normalize local paths, add a
schema_version field, or verify approval records. Those remain wrapper-owned
side effects so the evaluator stays pure and deterministic.
Policy file format
# policy.toml
default_mode = "require_approval"
[[repo_policy]]
repo = "acme/app"
ownership_class = "internal"
[repo_policy.capabilities]
read = "auto_allow"
commit = "auto_allow"
push = "auto_allow"
[[repo_policy]]
repo = "acme/app" # same repo, extra constraint
[repo_policy.capabilities]
shell = "require_approval"
Unknown top-level fields or typos inside [[repo_policy]] fail loudly
with a pydantic.ValidationError — there is no silent degradation.
ownership_class is a closed optional gate: it accepts only internal or
external; omit it (or use None in Python) to match either ownership class.
Overlapping entries may split capabilities or repeat the same mode, but a
wildcard or ownership-specific overlap that assigns different modes to the
same capability is rejected.
Wrapper pattern
agent-policy deliberately does not know how to parse git push --force
or a shell command line. The intended shape is:
┌────────────────────────┐
agent ───▶ │ wrapper (hook / CLI) │ ──▶ agent-policy.evaluate()
│ - normalize capability│ │
│ - build context │ ▼
│ - act on decision │ PolicyDecision
└────────────────────────┘
The wrapper owns: parsing the agent's intent, mapping it to one of the
MVP capabilities (read, write, commit, push, push.force,
merge.pr, shell), and executing whatever side effect the decision
implies (block, prompt for approval, log and allow).
A runnable minimal wrapper lives in examples/check.py.
Approval wrapper checklist
For require_approval decisions, keep the approval layer outside
agent-policy but make the wrapper contract explicit. Production wrappers
should:
- Bind approval records to the exact capability, session, path, and command being executed. A command change after approval should fail closed.
- Record the serialized audit event or a downstream hash of it in the approval record, then verify that the referenced event still exists before running the approved command.
- Treat approvals as single-use for side-effecting operations such as
artifact.publish; reserve a local use marker before executing the command so retry races cannot reuse the same approval. - Keep bypass corpora, private logs,
.env*files, and red-team transcripts outside tracked paths, and add an independent scanner such asyui-agent-guardto CI.
Wrapper contract summary
The stable wrapper contract is:
evaluate()performs no I/O and has no approval, logging, or storage side effects.- Wrappers own command parsing, capability normalization, approval storage, logging, redaction, audit-event schema validation, and any human prompt.
examples/check.pymaps decisions to process exits:0forauto_allow,1for wrapper/program errors,2forrequire_approval, and3fordeny.- Agent-specific hooks may translate both
require_approvalanddenyto the hook platform's blocking exit code when the platform has no inline approval state. - The example hooks take first-write state only from
AGENT_POLICY_FIRST_WRITE=true|false, never from a hook payload. For an external mutating capability, it is required:truesupplies--first-write, whilefalsedoes not. Read-only Claude tools are unaffected. --audit-eventemits deterministic evidence for the decision that was made; it is not itself an approval record.
These checks belong in the wrapper/admission layer rather than the pure
evaluator. The ai_resilience_policy.toml example shows the capability
vocabulary; downstream repositories can combine it with their own approval
record schema and CI gates.
Examples
See examples/. To run them from this source checkout, install it
with pip install -e .; public users who need the released library should use
pip install yui-agent-policy==0.1.14:
policy.toml— a minimal fail-closed policy with two repos.ai_resilience_policy.toml— a safety-oriented vocabulary example for publication, constitution, audit, secret-materialization, and scanner policy changes. These remain repo-policy capabilities rather than hard guardrails until downstream wrappers prove they are universal invariants.check.py— a tiny CLI wrapper that mapsPolicyDecisionto JSON on stdout and a process exit code, suitable for PreToolUse hooks. Pass--audit-eventto emit the wrapper-owned audit event schema instead of the bare decision payload.claude_code_hook.sh— a Claude CodePreToolUsehook that reads the hook payload from stdin, maps the tool to a capability, and shells out tocheck.py. SetAGENT_POLICY_FILEandAGENT_POLICY_REPOin the hook's environment, then point~/.claude/settings.jsonat it. Unknown tools and wrapper failures block with fixed sanitized stderr.codex_hook.sh— a Codex CLIPreToolUsehook (block-style shell guardrail pilot). This wrapper only maps Bash commands:git push --forcetopush.force,gh pr mergetomerge.pr, and everything else toshell. Codex hooks themselves can match more than Bash; this example is intentionally narrower.codex_permission_request_hook.sh— a Codex CLIPermissionRequesthook (delegation shell pilot). It returnsallowforauto_allow, returnsdenyfordeny, and returns no decision forrequire_approval, which delegates to Codex's normal approval prompt. Any wrapper failure returns a fixed protocol-valid deny JSON payload instead of exposing an error.capability_map.py— stdlib-only helper that turns a raw Bash command intopush.force/merge.pr/shell/unknown. The hook wrappers shell out to it instead of doing substring matching, so quoted literals likeprintf '%s\n' 'git push --force'no longer produce a falsepush.forceclassification. Active arithmetic, active unquoted brace or pathname expansion, shell startup selectors and state, selected visible dynamic argv execution, and Git subcommands outside the bounded builtin allowlist becomeunknownand are rejected before policy evaluation. See the file header for the exact bounded flow: heredoc stripping, expansion screening,shlextokenization, statement classification, and recursivebash -c/evalhandling.
Codex CLI hooks — current contract notes
Codex hooks are default enabled. If you need an explicit feature setting, use
features.hooks; older Codex-specific aliases should be avoided. Put
hooks.json in ~/.codex/ or <repo>/.codex/.
Current PreToolUse matchers can target Bash, apply_patch, and MCP tool calls;
apply_patch may also match through Edit / Write aliases. The examples here
stay Bash-focused because they reuse capability_map.py, which only normalizes
shell commands.
- Block-style PreToolUse path.
permissionDecision: "ask"is parsed but not supported by current Codex release behavior. A hook that returns it is reported as a hook run failure and the tool call continues. To stop execution from aPreToolUsehook, returnpermissionDecision: "deny", legacydecision: "block", or exit2.examples/codex_hook.shuses exit2for bothdenyandrequire_approval, with one fixed sanitized stderr message. - PermissionRequest delegation path.
PermissionRequestruns just before Codex asks for approval. A hook can returnallowordeny; if it returns no decision, Codex falls back to the normal approval flow. Thecodex_permission_request_hook.shexample uses that no-decision case forrequire_approval. - Heuristic command parsing.
capability_map.pyisshlex-based, not a full shell. It handles quoted literals, heredocs, compound statements, a bounded set of Git global options such as--git-dir=/path, a deliberate Git builtin allowlist (status,add,commit,diff,fetch,push, andsend-pack), and the commonbash -c '...'/evalwrappers. Active arithmetic is not interpreted, including$((...)),((...)), legacy$[...],let, array/integer/nameref declarations, arithmetic parameter offsets, indexed-array or indirect parameter expansions, and variable-target builtins such asprintf -v; these map tounknownbecause Bash may evaluate variable values and array subscripts recursively. Expanding heredocs are checked after active backslash-newline folding. Active unquoted brace or pathname expansion, selected visiblexargsandfind -exec-style argv generation, and Git subcommands outside that allowlist (includingconfigalias mutation) also map tounknown. LeadingGIT_CONFIG*assignments and shell startup-file selectors such asBASH_ENV, imported shell state throughSHELLOPTS, allexport wrapper options,wait -passignment, and trap mutation map tounknownbecause they can change execution before visible argv is evaluated. Interactive/login shell modes and explicit--rcfile/--init-fileinputs are also rejected because they execute startup files before the inspected body. A modeled shell wrapper is accepted only when-chas exactly one inspected command body; trailing arguments or redirections are not modeled and therefore fail closed. Parameter-expanded builtin options fail closed, and expanding-heredoc delimiters are matched after backslash-newline folding so following commands cannot be mistaken for heredoc data. A standalone-exec,-execdir,-ok, or-okdirtoken infindargv is conservatively blocked even when it could be another primary's value; the example does not model fullfindexpression arity. Unresolved parameter expansion anywhere infindargv is rejected for the same reason. A literal Git,gh, direct Git helper, or shell interpreter token behind an otherwise unmodeled command prefix is also conservatively blocked rather than treated as inert argument text. Leading redirection, known execution prefixes such asexec,time, andnohup, grouping, and shell compound keywords also map tounknown. Forms such asgit -c alias.p=push p --force, process substitution, or function definitions are not modeled. Clear commands outside the narrow patterns map toshell, while ambiguous, unbalanced, or unterminated parsing maps tounknownand is rejected by the hooks.
Releases
Tag-driven. Pushing a vX.Y.Z annotated tag triggers
.github/workflows/release.yml, which verifies
that the tag matches [project].version, points at the current master
commit, and has a successful completed master push CI run. It also checks
that the version is not already present on PyPI, then builds the sdist + wheel
and publishes through PyPI Trusted Publishing (OIDC). No maintainer-side PyPI
token is required. Manual workflow_dispatch with publish=false is a
build-only dry run; it skips attestation and publication. Manual publish=true
must run against a v* tag ref; running it from a branch fails before build.
After PyPI publication succeeds, the separate
github-release workflow creates the
GitHub Release notes from the verified tag commit, or verifies that an existing
Release is already public and asset-free. The automatic path proceeds only
after a fully successful tag-push release.yml run for the same annotated tag
object and peeled commit.
Manual recovery must be dispatched from the repository's default branch for an
exact vX.Y.Z tag. Successful 0.1.1 through 0.1.9 tag-push runs use the
bounded historical path when their build and publish jobs succeeded and PyPI exposes the exact expected,
non-yanked wheel and sdist. Historical releases do not require retained workflow
artifacts or an attestation job that did not yet exist; the historical path also
accepts the repository's v0.1.6 legacy lightweight tag when its exact commit is
unchanged. Other successful versions must match the full current job topology
and use an annotated tag. If a historical tagged tree predates CHANGELOG.md, a newly created Release
uses a fixed provenance-only recovery note rather than invented feature notes.
A failed current tag-push run is recoverable only from an annotated tag and only
when the build, attestation, publisher step, retained artifact, and matching
PyPI wheel/sdist byte evidence are all proven.
When automatic run selection is ambiguous, the optional release_run_id input
selects the exact run. Recovery fails closed when evidence required for the
selected path is unavailable, ambiguous, or inconsistent. It never moves tags
or reuploads distributions; immediately before creating or accepting the
GitHub Release, it rechecks that the remote tag is unchanged.
The release build creates GitHub artifact attestations for dist/* before the
publish job downloads those files. PyPI Trusted Publishing and the PyPA
publish action also provide PyPI-side distribution attestations. These are
provenance and integrity evidence for a specific artifact and workflow
identity. They do not prove code correctness, dependency safety, maintainer
approval, absence of secrets, or policy compliance.
To verify the GitHub provenance for downloaded 0.1.14 artifacts, check the
tag, repository, and signer workflow explicitly:
(
set -euo pipefail
verify_dir="$(mktemp -d "${TMPDIR:-/tmp}/agent-policy-dist-verify.XXXXXX")"
trap 'rm -rf -- "$verify_dir"' EXIT
python - "$verify_dir" <<'PY'
import json
import shutil
import sys
import urllib.request
from pathlib import Path
from urllib.parse import urlparse
version = "0.1.14"
target = Path(sys.argv[1])
request_timeout_seconds = 20
metadata_url = f"https://pypi.org/pypi/yui-agent-policy/{version}/json"
with urllib.request.urlopen(metadata_url, timeout=request_timeout_seconds) as response:
final_metadata_url = urlparse(response.geturl())
if final_metadata_url.scheme != "https" or final_metadata_url.hostname != "pypi.org":
raise SystemExit("PyPI release metadata URL is not an expected HTTPS host")
release = json.load(response)
if not isinstance(release, dict):
raise SystemExit("PyPI release metadata is malformed")
expected = {
f"yui_agent_policy-{version}-py3-none-any.whl": "bdist_wheel",
f"yui_agent_policy-{version}.tar.gz": "sdist",
}
files = release.get("urls")
if not isinstance(files, list) or len(files) != len(expected):
raise SystemExit("PyPI release does not contain the exact expected artifact set")
by_name = {}
for file_info in files:
if not isinstance(file_info, dict):
raise SystemExit("PyPI release metadata is malformed")
filename = file_info.get("filename")
url = file_info.get("url")
if (
not isinstance(filename, str)
or filename not in expected
or file_info.get("packagetype") != expected[filename]
or file_info.get("yanked") is not False
or not isinstance(url, str)
):
raise SystemExit("PyPI release metadata does not match the expected artifact contract")
parsed = urlparse(url)
if parsed.scheme != "https" or parsed.hostname != "files.pythonhosted.org":
raise SystemExit("PyPI release artifact URL is not an expected HTTPS host")
if filename in by_name:
raise SystemExit("PyPI release metadata contains duplicate artifacts")
by_name[filename] = url
if set(by_name) != set(expected):
raise SystemExit("PyPI release does not contain the exact expected artifact set")
for filename in sorted(expected):
with urllib.request.urlopen(
by_name[filename], timeout=request_timeout_seconds
) as response:
final_artifact_url = urlparse(response.geturl())
if (
final_artifact_url.scheme != "https"
or final_artifact_url.hostname != "files.pythonhosted.org"
):
raise SystemExit("Downloaded artifact URL is not an expected HTTPS host")
with (target / filename).open("xb") as destination:
shutil.copyfileobj(response, destination)
PY
gh attestation verify "$verify_dir/yui_agent_policy-0.1.14-py3-none-any.whl" \
--repo yui-stingray/agent-policy \
--signer-workflow yui-stingray/agent-policy/.github/workflows/release.yml \
--source-ref refs/tags/v0.1.14
gh attestation verify "$verify_dir/yui_agent_policy-0.1.14.tar.gz" \
--repo yui-stingray/agent-policy \
--signer-workflow yui-stingray/agent-policy/.github/workflows/release.yml \
--source-ref refs/tags/v0.1.14
)
License
MIT.
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Runner Environment:
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Publication workflow:
release.yml@3b8fd0d8d48110ed3655b3cf5ffe3d0d6e32b93a -
Trigger Event:
push
-
Statement type:
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Provenance
The following attestation bundles were made for yui_agent_policy-0.1.14-py3-none-any.whl:
Publisher:
release.yml on yui-stingray/agent-policy
-
Statement:
-
Statement type:
https://in-toto.io/Statement/v1 -
Predicate type:
https://docs.pypi.org/attestations/publish/v1 -
Subject name:
yui_agent_policy-0.1.14-py3-none-any.whl -
Subject digest:
d9a84669393501992e7c98ea633043a98e84cc946748a16be8a4ddee7544c012 - Sigstore transparency entry: 2579905710
- Sigstore integration time:
-
Permalink:
yui-stingray/agent-policy@3b8fd0d8d48110ed3655b3cf5ffe3d0d6e32b93a -
Branch / Tag:
refs/tags/v0.1.14 - Owner: https://github.com/yui-stingray
-
Access:
public
-
Token Issuer:
https://token.actions.githubusercontent.com -
Runner Environment:
github-hosted -
Publication workflow:
release.yml@3b8fd0d8d48110ed3655b3cf5ffe3d0d6e32b93a -
Trigger Event:
push
-
Statement type: