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sysadminandClaude Opus 4.8 b7a63a5579 feat(webui): unified session/lease/lock/worktree inventory API (Closes #636)
Co-Authored-By: Claude Opus 4.8 (1M context) <[email protected]>
2026-07-22 21:13:54 -04:00
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# Web console authorization, RBAC, redaction, and audit model (#633)
**Phase 1. Read-only. This document defines the model that future console
writes must pass through; it enables none of them.**
The MVP deployment boundary ([`webui-deployment.md`](webui-deployment.md), #435)
documents internal-only serving and states plainly that MVP authentication is
*none* — protection comes from network placement. That is adequate while every
route is a GET, and inadequate the moment a gated write ships. This document
and the three modules it describes land **before** any write exists, so no
Phase 2 action can be added without an authority to check it against.
| Concern | Module |
|---------|--------|
| Identity, roles, authorization decision | `webui/console_authz.py` |
| Secret redaction for every surface | `webui/console_redaction.py` |
| Audit event schema, retention, sink | `webui/console_audit.py` |
| Machine-readable publication | `GET /api/console/security-model` |
Two invariants hold everywhere and are non-negotiable for every child of #631:
1. **No secrets reach the browser.** Credentials are resolved server-side and
redacted before any payload, page, log line, or audit record leaves.
2. **No ungated mutations.** Authorization is necessary but never sufficient;
execution stays disabled until the Phase 2 framework ships.
## Identity sources
The console performs *authorization*. Authentication is delegated, because a
console that mints its own sessions is a credential store, and this one must
not be.
| Source | Mode value | Authenticated | Shared host | Phase |
|--------|-----------|---------------|-------------|-------|
| None | `none` (default) | No — anonymous, capped at `viewer` | No | 1 |
| Local dev | `local-dev` / `local_dev` | Yes, **asserted not verified** | No | 1 |
| Access proxy | `access-proxy` / `access_proxy` | Yes, asserted by trusted proxy | Yes | 2 |
Selected by `WEBUI_AUTH_MODE`. An unrecognised value falls back to `none`
rather than erroring open.
**Access-proxy mode** reads the subject from the
`Cf-Access-Authenticated-User-Email` header, set by Cloudflare Access, WARP, or
an equivalent org portal that terminates authentication in front of the
console. If the header is absent the request did not traverse the proxy, so the
principal degrades to anonymous — it is never trusted by default.
The **role is always server-side configuration**, never a client assertion. It
comes from `WEBUI_ROLE_MAP`, a JSON object of subject → role:
```json
{"[email protected]": "operator", "[email protected]": "controller"}
```
An unmapped subject gets `viewer`. Malformed JSON yields an empty map, so
everyone gets `viewer` — a parse failure loses authority rather than granting
it.
Full SSO is explicitly a non-goal of this issue.
## Role matrix
Four roles, ordered least to most authority. Each role inherits every lower
role's actions; the table states the *minimum* rank required.
| Role | Authority |
|------|-----------|
| `viewer` | Read every console view. No write, ever, in any phase. |
| `operator` | Viewer, plus author-class work: claim, comment, open a PR. |
| `controller` | Operator, plus reviewer/merger-class decisions on a PR. |
| `admin` | Controller, plus destructive and policy-editing actions. |
`viewer` holds the empty write set by construction, and a test asserts it stays
empty.
## Privileged actions
Every console action maps to a `task_key` in `task_capability_map.py`, the same
single source of truth `gitea_resolve_task_capability` and the MCP tool gates
use. The console therefore cannot invent an authority the MCP layer does not
already define, and a regression test asserts each mapping matches.
| Action | Minimum role | Class | MCP permission | Confirm | Dual control | Break-glass | Phase |
|--------|--------------|-------|----------------|---------|--------------|-------------|-------|
| `claim_issue` | operator | gated_write | `gitea.issue.comment` | Yes | No | No | 2 |
| `comment_issue` | operator | gated_write | `gitea.issue.comment` | Yes | No | No | 2 |
| `create_issue` | operator | gated_write | `gitea.issue.create` | Yes | No | No | 2 |
| `comment_pr` | operator | gated_write | `gitea.pr.comment` | Yes | No | No | 2 |
| `create_pr` | operator | gated_write | `gitea.pr.create` | Yes | No | No | 2 |
| `review_pr` | controller | privileged | `gitea.pr.review` | Yes | No | No | 3 |
| `close_pr` | controller | privileged | `gitea.pr.close` | Yes | No | No | 3 |
| `merge_pr` | controller | privileged | `gitea.pr.merge` | Yes | **Yes** | **Yes** | 3 |
| `delete_branch` | admin | destructive | `gitea.branch.delete` | Yes | **Yes** | **Yes** | 3 |
**Dual control** means the acting principal may not be the sole authority: a
second distinct principal must confirm. **Break-glass** means the action is
expected to be unavailable in normal operation and its use is retained for two
years. Both are declared here and enforced by the Phase 2 framework; Phase 1
records the requirement on every decision so the framework cannot ship without
honouring it.
`delete_branch` is admin-only rather than controller because it is the one
irreversible action in the set.
### Authorization decision
`authorize(action_id, principal, for_execution=False)` returns a decision
record and **denies by default**. The deny reasons are closed and enumerated:
| Reason code | Meaning |
|-------------|---------|
| `unknown_action` | No such console action is registered. |
| `unauthenticated` | The principal is anonymous. |
| `unknown_role` | The role is not in the matrix. |
| `insufficient_role` | The role ranks below the action's minimum. |
| `phase_not_active` | Execution requested for an action whose phase is not open. |
| `allowed_preview_only` | Authorized — preview only, execution still disabled. |
There is no implicit allow branch. Even the allow result reports
`execution_enabled: false` while the console is in Phase 1, so no caller can
read an allow as permission to mutate.
## Secret redaction
One pass applies to **API payloads, rendered HTML, server logs, and audit
records** — the four surfaces where a credential could escape.
Redaction reuses `gitea_audit.redact` rather than forking it: that remains the
authority for secret-looking dict keys, `Authorization` material, and raw URLs.
The console layer then applies its own patterns:
Each rule below matches an *assignment form*: the named key, followed by `=` or
`:`, followed by the value. The keys are listed bare rather than spelled out as
complete assignments, because this document is itself scanned by
`scan_for_secrets` — writing the examples in full assignment form would make the
documentation trip the very detectors it documents.
| Rule | Catches (as an assignment) |
|------|----------------------------|
| `credential_assignment` | `token`, `password`, `passwd`, `secret`, `api_key`, `access_key`, `client_secret`, `private_key` |
| `credential_env_assignment` | `GITEA_TOKEN`, `GITEA_PASS`, `GITEA_PASSWORD` and suffixed variants |
| `keychain_reference` | `keychain:` entry references |
| `keychain_command` | macOS `security` keychain lookups (`find-generic-password`, `find-internet-password`) |
| `private_key_block` | PEM `BEGIN ... PRIVATE KEY` blocks |
| `json_web_token` | Three-segment `eyJ...` JWTs |
| `bearer_credential` | `Bearer` / `Basic` credentials |
Assignments keep the key and replace only the value, so an operator can still
see *what* was removed. Two behaviours are deliberate:
- **Fail closed.** A value that cannot be redacted becomes `[REDACTED]`
outright rather than being emitted raw. Redaction never raises.
- **Redact before persist.** `console_audit.build_event` redacts before
serialization, and `write_event` re-scans and **drops** any record that still
trips a detector. An unredacted record is never durable.
`scan_for_secrets` is the assertion helper: it returns the detector names still
matching a payload, and already-redacted hits are not findings. Tests use it to
prove the published policy, the security-model endpoint, and this document
itself carry no secret material.
## Audit event schema
`gitea_audit` records MCP-side *mutations* — which profile and Gitea user
performed which tool call. It has no console actor, no identity source, no
correlation identifier, and no retention class, and an authorization **denial**
is not a mutation, so it would never appear there at all. The console record is
additive, not a replacement: a Phase 2 action emits both, joined on
`correlation.request_id`.
Required fields, all asserted by tests so an edit cannot quietly drop one:
| Field | Content |
|-------|---------|
| `schema_version` | Currently `1`. |
| `event_id` | Unique per record. |
| `timestamp` | Timezone-aware ISO-8601, UTC. |
| `actor` | `subject`, `role`, `identity_source`, `authenticated`. |
| `action` | Console action id. |
| `action_class` | `gated_write`, `privileged`, `destructive`, or `unknown`. |
| `target` | `{kind, ref}`, e.g. `{"kind": "pr", "ref": "#123"}`. |
| `result` | `allowed`, `denied`, `previewed`, `failed`, `succeeded`. |
| `reason_code` | The authorization reason code above. |
| `correlation` | `request_id`, `session_id`, `mcp_task`, `mcp_permission`. |
| `retention` | `class`, `days`, `expires_at`. |
| `redacted` | Always `true`; records are redacted at build time. |
An unrecognised `result` degrades to `failed` rather than being stored
verbatim.
The sink is an append-only JSON Lines file named by
`WEBUI_CONSOLE_AUDIT_LOG`. It is **off by default**: with the variable unset,
events are still built — so callers and tests exercise the schema — but nothing
is written. Auditing never raises; a failed write returns `False` rather than
breaking the request it describes.
## Retention
| Class | Applies to | Default |
|-------|-----------|---------|
| `standard` | Routine gated writes | 90 days |
| `privileged` | `review_pr`, `close_pr`, and any unclassifiable action | 365 days |
| `break_glass` | `merge_pr`, `delete_branch` | 730 days |
Each record carries its own class, day count, and computed `expires_at`, so
retention is auditable per record rather than inferred from file age. An
**unknown action is retained as privileged, not standard** — for a safety
control the conservative direction is to keep the record longer.
Nothing in this module updates or deletes. Expiry is enforced by an
operator-run policy against `expires_at`, never by the console silently
rewriting its own history.
## Phase 2 integration
Phase 2 opens gated writes. It must reuse this model rather than introduce a
second one. The integration points are already wired and observable:
- **`GET /api/actions/{action_id}/preview`** attaches an `authorization` block
to the existing preview payload and records a `previewed` audit event.
- **`POST /api/actions/{action_id}/attempt`** attaches the same block and
records a `denied` event. The terminal outcome is unchanged — the MVP
registry in `webui/gated_actions.py` still fails closed for every action — so
Phase 1 cannot loosen anything. Phase 2 enforces on this same decision
instead of adding a parallel check.
- **`GET /api/console/security-model`** publishes the RBAC matrix, redaction
policy, and audit policy as JSON for operators and tests.
To open Phase 2, a child issue must: raise `ACTIVE_PHASE`, implement the
confirmation and dual-control flow the matrix already declares, emit a
`succeeded` or `failed` record alongside the `gitea_audit` mutation record, and
keep `viewer` unable to reach any of it. Turning on execution without the
confirmation flow contradicts a declared requirement and is a review failure,
not a shortcut.
## Local-dev mode
`WEBUI_AUTH_MODE=local-dev` reads the principal straight from the environment:
| Variable | Purpose |
|----------|---------|
| `WEBUI_DEV_SUBJECT` | Subject string; absent ⇒ anonymous |
| `WEBUI_DEV_ROLE` | One of `viewer`, `operator`, `controller`, `admin`; unrecognised ⇒ `viewer` |
**INSECURE — this mode is for loopback development only.** The subject and role
are *asserted by the developer running the process and verified by nothing*.
Anyone able to set an environment variable on the host is an `admin`, and
anyone able to reach the port inherits that principal. It provides no
authentication whatsoever; it exists so Phase 2 authorization paths can be
exercised without standing up a proxy.
Never enable local-dev mode on a non-loopback bind. Combining it with
`WEBUI_ALLOW_PUBLIC_BIND=1` or `WEBUI_ALLOW_REMOTE_BIND=1` publishes an
unauthenticated admin console.
For anything beyond a laptop use `access-proxy` mode behind Cloudflare Access,
WARP, or a VPN, as [`webui-deployment.md`](webui-deployment.md) requires.
### Probe authentication
`WEBUI_REQUIRE_PROBE_AUTH=1` declares that non-public probes should require an
authenticated principal. It is **opt-in**: the default is off so the MVP
`/health` contract is unchanged.
**This flag is declarative in Phase 1 and enforces nothing today.**
`console_authz.probe_auth_required()` reports the operator's intent, and no
route consults it — setting the variable does not currently change the
behaviour of `/health` or any other endpoint. It is published here so the Phase
2 action framework has a declared policy to honour rather than inventing a
second one, exactly as `ACTIVE_PHASE` gates execution while the matrix is
already declared. A regression test pins this "declared, not enforced" status,
so wiring it later is a deliberate change rather than a silent one.
Until Phase 2 wires it, probe protection rests on network placement alone, as
[`webui-deployment.md`](webui-deployment.md) (#435) states.
## Environment variables
| Variable | Default | Purpose |
|----------|---------|---------|
| `WEBUI_AUTH_MODE` | `none` | Identity source selection |
| `WEBUI_DEV_SUBJECT` | unset | Local-dev subject (insecure) |
| `WEBUI_DEV_ROLE` | `viewer` | Local-dev role (insecure) |
| `WEBUI_ROLE_MAP` | unset | JSON subject → role map |
| `WEBUI_REQUIRE_PROBE_AUTH` | unset | Require auth for non-public probes |
| `WEBUI_CONSOLE_AUDIT_LOG` | unset | Append-only audit sink path |
All are read server-side only. None is ever rendered into a page or returned by
an API.
## Non-goals
- No full SSO product; authentication stays delegated to the proxy.
- No browser-initiated merges or approvals in any phase covered here.
- No tokens in the frontend, in browser storage, or in committed config.
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## MVP deployment model
- **Default bind:** `127.0.0.1:8765` (`WEBUI_HOST` / `WEBUI_PORT`)
- **Authentication:** none in MVP — protection comes from network placement.
The authorization, RBAC, redaction, and audit model that future gated writes
must pass through is defined in
[`webui-authz-audit.md`](webui-authz-audit.md) (#633).
- **Authentication:** none in MVP — protection comes from network placement
- **Mutations:** read-only routes; gated write actions remain disabled (#434)
- **Secrets:** resolved server-side via `gitea_auth` / `GITEA_MCP_CONFIG`; never
embedded in HTML, JavaScript, or browser storage
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checkout is behind merged safety-gate changes. Restart guidance links to #420;
no tokens or MCP restart actions are exposed.
## Inventory API (#636)
`GET /api/v1/inventory` returns one versioned, read-only snapshot that unifies
what the lease (#433), worktree (#432), and runtime (#430) MVP views each show
separately, so traffic-control and recovery consumers read the same source.
`GET /api/v1/inventory/{section}` returns a single section under the identical
schema (`sessions`, `leases`, `locks`, `worktrees`, `namespaces`); an unknown
section is a `404` with `error: unknown_section`. Both routes are `GET`-only.
Each section carries its own `status` (`ok` / `degraded` / `unavailable`), a
`reason` when not `ok`, and a `scan_ms`. A subsystem that cannot be read
degrades to a reasoned section; it never raises and never emits an empty list
that would read as "nothing is there".
### Field authority
Every section names where its rows came from; authorities are never blended.
| Section | Authority | Source |
|---|---|---|
| `sessions` | `control_plane_db` | #613 control-plane DB (`mode=ro`), authoritative for exclusive ownership (#600/#601) |
| `leases` | `control_plane_db` | #613 control-plane DB; degrades if the `work_items` table is absent |
| `locks` | `filesystem` | durable per-issue lock files (`issue_lock_store`) |
| `worktrees` | `filesystem` | registered git worktrees via the #432 hygiene scanner |
| `namespaces` | `filesystem` | the active profile serving this web process (others are not enumerable) |
The payload restates this map under `field_authority` for machine consumers.
### Ownership safety
`ownership_authority_complete` is true only when every ownership-bearing section
(`sessions`, `leases`, `locks`) read cleanly. While it is false, nothing is
reported as unowned and no collision is asserted from a degraded source —
absence of evidence is reported as absence of evidence, never as free work.
`collisions` surfaces detectable conflicts, each with a `kind` and `severity`:
`lock-without-worktree`, `duplicate-live-lock`, `live-lock-dead-owner` (unexpired
lease, dead pid — a #753 recovery candidate that would read as live to a naive
timestamp check), `stale-lock-dead-owner`, `expired-lock-live-owner` (the
#635/#760 daemon-pid deadlock), `concurrent-active-lease`, `active-lease-past-expiry`,
and `orphan-lease`. Collisions are emitted only from sections that read cleanly.
The control-plane DB is opened through a `mode=ro` URI so a read never creates
or migrates it; paths are collapsed against `$HOME`, URLs lose userinfo and
query strings, and credential-shaped values are redacted at the boundary. Lease
steal/release and worktree deletion are Phase 2+ and have no representation here.
## Tests
```bash
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"""Console authorization, redaction, and audit model tests (#633).
Covers each acceptance criterion and each required test named in the issue:
* AC1 — RBAC matrix and privileged-action list.
* AC2 — redaction rules, unit-tested against sample payloads.
* AC3 — audit event schema with required fields and retention defaults.
* AC4 — Phase 2 integration points.
* AC5 — local-dev mode with explicit insecurity warnings.
Required tests: redaction units (token, keychain, password patterns),
default-deny for unauthenticated write stubs, and audit record creation for a
simulated privileged preview.
"""
from __future__ import annotations
import datetime
import json
import os
import pathlib
import sys
import tempfile
import unittest
from starlette.testclient import TestClient
sys.path.insert(0, str(pathlib.Path(__file__).resolve().parents[1]))
from task_capability_map import TASK_CAPABILITY_MAP # noqa: E402
from webui import console_audit, console_authz # noqa: E402
from webui.app import create_app # noqa: E402
from webui.console_redaction import ( # noqa: E402
REDACTED,
redact_payload,
redact_text,
redaction_policy,
scan_for_secrets,
)
DOCS = pathlib.Path(__file__).resolve().parents[1] / "docs"
AUTHZ_DOC = DOCS / "webui-authz-audit.md"
def _principal(role: str) -> console_authz.Principal:
return console_authz.Principal(
subject=f"{role}@example.com",
role=role,
identity_source=console_authz.IDENTITY_ACCESS_PROXY,
authenticated=True,
)
class TestRoleMatrix(unittest.TestCase):
"""AC1 — the written RBAC matrix and privileged-action list."""
def test_roles_are_ordered_least_to_most_authority(self):
self.assertEqual(
console_authz.ROLE_ORDER,
("viewer", "operator", "controller", "admin"),
)
def test_every_role_has_a_description(self):
for role in console_authz.ROLE_ORDER:
with self.subTest(role=role):
self.assertTrue(console_authz.ROLE_DESCRIPTIONS[role].strip())
def test_higher_roles_inherit_lower_role_actions(self):
matrix = {
entry["role"]: set(entry["permitted_actions"])
for entry in console_authz.rbac_matrix()["roles"]
}
for lower, higher in zip(
console_authz.ROLE_ORDER, console_authz.ROLE_ORDER[1:]
):
with self.subTest(lower=lower, higher=higher):
self.assertTrue(matrix[lower].issubset(matrix[higher]))
def test_viewer_holds_no_write_action(self):
matrix = {
entry["role"]: set(entry["permitted_actions"])
for entry in console_authz.rbac_matrix()["roles"]
}
self.assertEqual(matrix["viewer"], set())
def test_privileged_action_list_is_non_empty_and_classified(self):
privileged = console_authz.privileged_actions()
self.assertTrue(privileged)
ids = {action.action_id for action in privileged}
# Merge and branch deletion are the canonical privileged pair.
self.assertIn("merge_pr", ids)
self.assertIn("delete_branch", ids)
def test_merge_and_delete_require_dual_control_and_break_glass(self):
for action_id in ("merge_pr", "delete_branch"):
with self.subTest(action=action_id):
action = console_authz.get_action(action_id)
self.assertTrue(action.dual_control)
self.assertTrue(action.break_glass)
self.assertTrue(action.requires_confirmation)
def test_every_write_action_requires_confirmation(self):
for action in console_authz.ACTIONS.values():
with self.subTest(action=action.action_id):
self.assertTrue(action.requires_confirmation)
def test_delete_branch_is_admin_only(self):
self.assertEqual(
console_authz.get_action("delete_branch").minimum_role,
console_authz.ADMIN,
)
def test_actions_map_to_real_mcp_capability_vocabulary(self):
"""The console must not invent an authority the MCP layer lacks."""
for action in console_authz.ACTIONS.values():
with self.subTest(action=action.action_id):
self.assertIn(action.task_key, TASK_CAPABILITY_MAP)
self.assertEqual(
action.mcp_permission,
TASK_CAPABILITY_MAP[action.task_key]["permission"],
)
self.assertEqual(
action.mcp_role,
TASK_CAPABILITY_MAP[action.task_key]["role"],
)
def test_matrix_declares_deny_by_default_and_execution_disabled(self):
matrix = console_authz.rbac_matrix()
self.assertEqual(matrix["default_decision"], "deny")
self.assertFalse(matrix["execution_enabled"])
class TestAuthorizeDefaultDeny(unittest.TestCase):
"""Fail-closed behaviour of the authorization decision."""
def test_anonymous_is_denied_every_action(self):
for action_id in console_authz.ACTIONS:
with self.subTest(action=action_id):
decision = console_authz.authorize(action_id)
self.assertFalse(decision.allowed)
self.assertEqual(
decision.reason_code, console_authz.DENY_UNAUTHENTICATED
)
def test_unknown_action_is_denied(self):
decision = console_authz.authorize(
"not_a_real_action", _principal("admin")
)
self.assertFalse(decision.allowed)
self.assertEqual(decision.reason_code, console_authz.DENY_UNKNOWN_ACTION)
def test_unknown_role_is_denied(self):
rogue = console_authz.Principal(
subject="[email protected]",
role="superuser",
identity_source=console_authz.IDENTITY_ACCESS_PROXY,
authenticated=True,
)
decision = console_authz.authorize("comment_issue", rogue)
self.assertFalse(decision.allowed)
self.assertEqual(decision.reason_code, console_authz.DENY_UNKNOWN_ROLE)
def test_insufficient_role_is_denied(self):
decision = console_authz.authorize("merge_pr", _principal("operator"))
self.assertFalse(decision.allowed)
self.assertEqual(
decision.reason_code, console_authz.DENY_INSUFFICIENT_ROLE
)
def test_sufficient_role_allows_preview_only(self):
decision = console_authz.authorize("merge_pr", _principal("controller"))
self.assertTrue(decision.allowed)
self.assertFalse(decision.execution_enabled)
def test_execution_is_refused_while_phase_is_not_active(self):
decision = console_authz.authorize(
"merge_pr", _principal("controller"), for_execution=True
)
self.assertFalse(decision.allowed)
self.assertEqual(
decision.reason_code, console_authz.DENY_PHASE_NOT_ACTIVE
)
def test_allowed_decision_never_reports_execution_enabled(self):
for action_id in console_authz.ACTIONS:
with self.subTest(action=action_id):
decision = console_authz.authorize(
action_id, _principal("admin")
)
self.assertFalse(decision.execution_enabled)
class TestIdentityResolution(unittest.TestCase):
"""AC5 — identity sources, including the insecure local-dev mode."""
def test_no_auth_mode_yields_anonymous_viewer(self):
principal = console_authz.resolve_principal(env={})
self.assertFalse(principal.authenticated)
self.assertEqual(principal.role, console_authz.VIEWER)
self.assertEqual(principal.identity_source, console_authz.IDENTITY_NONE)
def test_local_dev_mode_warns_that_identity_is_unverified(self):
principal = console_authz.resolve_principal(
env={
console_authz.AUTH_MODE_ENV: "local-dev",
console_authz.DEV_SUBJECT_ENV: "[email protected]",
console_authz.DEV_ROLE_ENV: "admin",
}
)
self.assertTrue(principal.authenticated)
self.assertEqual(principal.role, "admin")
self.assertTrue(principal.warnings)
self.assertIn("asserted", " ".join(principal.warnings).lower())
def test_local_dev_without_subject_falls_back_to_anonymous(self):
principal = console_authz.resolve_principal(
env={console_authz.AUTH_MODE_ENV: "local-dev"}
)
self.assertFalse(principal.authenticated)
def test_local_dev_unknown_role_degrades_to_viewer(self):
principal = console_authz.resolve_principal(
env={
console_authz.AUTH_MODE_ENV: "local_dev",
console_authz.DEV_SUBJECT_ENV: "[email protected]",
console_authz.DEV_ROLE_ENV: "root",
}
)
self.assertEqual(principal.role, console_authz.VIEWER)
def test_access_proxy_without_header_fails_closed(self):
"""A proxy-mode request that did not traverse the proxy is anonymous."""
principal = console_authz.resolve_principal(
headers={},
env={console_authz.AUTH_MODE_ENV: "access_proxy"},
)
self.assertFalse(principal.authenticated)
def test_access_proxy_role_comes_from_server_config_not_client(self):
env = {
console_authz.AUTH_MODE_ENV: "access_proxy",
console_authz.ROLE_MAP_ENV: json.dumps(
{"[email protected]": "controller"}
),
}
principal = console_authz.resolve_principal(
headers={
console_authz.ACCESS_SUBJECT_HEADER: "[email protected]",
"x-role": "admin", # client-supplied role must be ignored
},
env=env,
)
self.assertEqual(principal.role, "controller")
def test_access_proxy_unmapped_subject_defaults_to_viewer(self):
principal = console_authz.resolve_principal(
headers={
console_authz.ACCESS_SUBJECT_HEADER: "[email protected]"
},
env={console_authz.AUTH_MODE_ENV: "access_proxy"},
)
self.assertEqual(principal.role, console_authz.VIEWER)
def test_malformed_role_map_does_not_raise_and_denies(self):
principal = console_authz.resolve_principal(
headers={console_authz.ACCESS_SUBJECT_HEADER: "[email protected]"},
env={
console_authz.AUTH_MODE_ENV: "access_proxy",
console_authz.ROLE_MAP_ENV: "{not json",
},
)
self.assertEqual(principal.role, console_authz.VIEWER)
def test_probe_auth_is_opt_in(self):
self.assertFalse(console_authz.probe_auth_required(env={}))
self.assertTrue(
console_authz.probe_auth_required(
env={console_authz.REQUIRE_PROBE_AUTH_ENV: "1"}
)
)
def test_probe_auth_is_declared_but_not_yet_enforced(self):
"""Phase 1 declares the probe-auth policy; no route enforces it yet.
The flag exists so the Phase 2 action framework has a declared policy
to honour instead of inventing a second one. Pinning the current
not-enforced status here means wiring it later is a deliberate change
that updates this test and the documentation together, rather than a
silent behaviour shift. The documentation must say so plainly, because
an operator who sets the variable believing it protects a probe is
worse off than one who knows it does not.
"""
import inspect
from webui import app as webui_app
source = inspect.getsource(webui_app)
self.assertNotIn(
"probe_auth_required",
source,
msg=(
"webui.app now consults probe_auth_required, so probe auth is "
"no longer merely declared. Update the 'Probe authentication' "
"section of docs/webui-authz-audit.md, which states it "
"enforces nothing, and replace this test with real "
"enforcement coverage."
),
)
self.assertIn(
"enforces nothing today",
AUTHZ_DOC.read_text(encoding="utf-8"),
)
class TestRedaction(unittest.TestCase):
"""AC2 — required redaction units: token, keychain, password patterns."""
def test_token_assignment_is_redacted(self):
out = redact_text("GITEA_TOKEN=abcd1234efgh5678ijkl")
self.assertIn(REDACTED, out)
self.assertNotIn("abcd1234efgh5678ijkl", out)
def test_password_assignment_is_redacted(self):
out = redact_text("password: hunter2supersecret")
self.assertIn(REDACTED, out)
self.assertNotIn("hunter2supersecret", out)
def test_keychain_reference_is_redacted(self):
out = redact_text("keychain:gitea-prgs-token")
self.assertIn(REDACTED, out)
self.assertNotIn("gitea-prgs-token", out)
def test_keychain_command_is_redacted(self):
out = redact_text("security find-generic-password -s gitea -w")
self.assertIn(REDACTED, out)
self.assertNotIn("find-generic-password -s gitea", out)
def test_bearer_credential_is_redacted(self):
out = redact_text("Authorization: Bearer abcdef1234567890abcdef")
self.assertNotIn("abcdef1234567890abcdef", out)
def test_jwt_is_redacted(self):
token = "eyJhbGciOiJIUzI1NiJ9.eyJzdWIiOiIxIn0.abcdefghijklmnop"
out = redact_text(f"session={token}")
self.assertNotIn(token, out)
def test_private_key_block_is_redacted(self):
pem = (
"-----BEGIN RSA PRIVATE KEY-----\n"
"MIIEowIBAAKCAQEAsecretmaterial\n"
"-----END RSA PRIVATE KEY-----"
)
out = redact_text(pem)
self.assertNotIn("MIIEowIBAAKCAQEAsecretmaterial", out)
def test_api_key_assignment_is_redacted(self):
out = redact_text('api_key = "sk-live-9f8e7d6c5b4a3210"')
self.assertNotIn("sk-live-9f8e7d6c5b4a3210", out)
def test_nested_payload_is_redacted_recursively(self):
payload = {
"token": "abc123456789",
"nested": {"note": "password=letmein12345"},
"list": ["keychain:some-entry"],
"safe": "plain text",
}
out = redact_payload(payload)
self.assertEqual(out["token"], REDACTED)
self.assertNotIn("letmein12345", json.dumps(out))
self.assertNotIn("some-entry", json.dumps(out))
self.assertEqual(out["safe"], "plain text")
def test_scan_reports_findings_before_and_none_after(self):
dirty = "password: hunter2supersecret"
self.assertTrue(scan_for_secrets(dirty))
self.assertEqual(scan_for_secrets(redact_text(dirty)), [])
def test_non_strings_pass_through_untouched(self):
self.assertEqual(redact_text(42), 42)
self.assertEqual(
redact_payload({"n": 1, "b": True}), {"n": 1, "b": True}
)
def test_policy_is_documented_and_declares_redact_before_persist(self):
policy = redaction_policy()
self.assertTrue(policy["redact_before_persist"])
self.assertIn("audit_records", policy["applies_to"])
self.assertTrue(policy["console_rules"])
def test_policy_statement_contains_no_secret_material(self):
self.assertEqual(scan_for_secrets(redaction_policy()), [])
class TestAuditSchema(unittest.TestCase):
"""AC3 — audit event schema, required fields, and retention defaults."""
def _event(self, action_id="merge_pr", **kwargs):
return console_audit.build_event(
action_id=action_id,
result=console_audit.RESULT_DENIED,
decision=console_authz.authorize(action_id, _principal("operator")),
target={"kind": "pr", "ref": "#123"},
request_id="req-test",
**kwargs,
)
def test_every_required_field_is_present(self):
event = self._event()
for field in console_audit.REQUIRED_FIELDS:
with self.subTest(field=field):
self.assertIn(field, event)
def test_actor_carries_who_and_how_they_were_identified(self):
event = self._event()
for field in console_audit.REQUIRED_ACTOR_FIELDS:
with self.subTest(field=field):
self.assertIn(field, event["actor"])
def test_correlation_ids_are_present(self):
event = self._event()
for field in console_audit.REQUIRED_CORRELATION_FIELDS:
with self.subTest(field=field):
self.assertIn(field, event["correlation"])
self.assertEqual(event["correlation"]["request_id"], "req-test")
self.assertEqual(event["correlation"]["mcp_task"], "merge_pr")
def test_timestamp_is_timezone_aware_utc_iso8601(self):
now = datetime.datetime(
2026, 7, 22, 10, 16, 42, tzinfo=datetime.timezone.utc
)
event = self._event(now=now)
self.assertEqual(event["timestamp"], "2026-07-22T10:16:42+00:00")
parsed = datetime.datetime.fromisoformat(event["timestamp"])
self.assertIsNotNone(parsed.tzinfo)
def test_retention_defaults_by_class(self):
self.assertEqual(
console_audit.RETENTION_DAYS[console_audit.RETENTION_STANDARD], 90
)
self.assertEqual(
console_audit.RETENTION_DAYS[console_audit.RETENTION_PRIVILEGED],
365,
)
self.assertEqual(
console_audit.RETENTION_DAYS[console_audit.RETENTION_BREAK_GLASS],
730,
)
def test_break_glass_action_retains_longest(self):
event = self._event("merge_pr")
self.assertEqual(
event["retention"]["class"], console_audit.RETENTION_BREAK_GLASS
)
def test_routine_write_uses_standard_retention(self):
event = self._event("comment_issue")
self.assertEqual(
event["retention"]["class"], console_audit.RETENTION_STANDARD
)
def test_unknown_action_retains_as_privileged_not_standard(self):
"""Conservative direction: keep an unclassifiable record longer."""
self.assertEqual(
console_audit.retention_class_for(None),
console_audit.RETENTION_PRIVILEGED,
)
def test_retention_expiry_matches_declared_days(self):
now = datetime.datetime(2026, 7, 22, tzinfo=datetime.timezone.utc)
event = self._event("comment_issue", now=now)
expires = datetime.datetime.fromisoformat(
event["retention"]["expires_at"]
)
self.assertEqual((expires - now).days, 90)
def test_invalid_result_degrades_to_failed(self):
event = console_audit.build_event(action_id="merge_pr", result="banana")
self.assertEqual(event["result"], console_audit.RESULT_FAILED)
def test_denied_result_is_representable(self):
"""An authorization denial has no MCP-side mutation record."""
self.assertIn(console_audit.RESULT_DENIED, console_audit.RESULTS)
def test_event_is_redacted_before_it_is_returned(self):
event = console_audit.build_event(
action_id="merge_pr",
result=console_audit.RESULT_DENIED,
detail="failed with token=abcdef1234567890",
metadata={"password": "hunter2supersecret"},
)
serialized = json.dumps(event)
self.assertNotIn("abcdef1234567890", serialized)
self.assertNotIn("hunter2supersecret", serialized)
self.assertTrue(event["redacted"])
def test_audit_policy_reports_schema_and_retention(self):
policy = console_audit.audit_policy()
self.assertTrue(policy["append_only"])
self.assertTrue(policy["redact_before_persist"])
self.assertEqual(
policy["retention_defaults_days"], console_audit.RETENTION_DAYS
)
class TestAuditSink(unittest.TestCase):
"""Append-only persistence behaviour."""
def test_write_is_a_noop_when_sink_is_unconfigured(self):
saved = os.environ.pop(console_audit.AUDIT_LOG_ENV, None)
try:
self.assertFalse(console_audit.audit_enabled())
self.assertFalse(console_audit.write_event({"schema_version": 1}))
finally:
if saved is not None:
os.environ[console_audit.AUDIT_LOG_ENV] = saved
def test_records_append_one_json_line_each(self):
with tempfile.TemporaryDirectory() as tmp:
sink = os.path.join(tmp, "console-audit.jsonl")
for _ in range(3):
event = console_audit.build_event(
action_id="merge_pr", result=console_audit.RESULT_DENIED
)
self.assertTrue(console_audit.write_event(event, path=sink))
with open(sink, encoding="utf-8") as handle:
lines = [json.loads(line) for line in handle if line.strip()]
self.assertEqual(len(lines), 3)
self.assertEqual(len({line["event_id"] for line in lines}), 3)
def test_a_record_that_still_carries_a_secret_is_not_persisted(self):
with tempfile.TemporaryDirectory() as tmp:
sink = os.path.join(tmp, "console-audit.jsonl")
leaky = {
"schema_version": 1,
"detail": "password: hunter2supersecret",
}
self.assertFalse(console_audit.write_event(leaky, path=sink))
self.assertFalse(os.path.exists(sink))
def test_write_never_raises_on_a_bad_path(self):
self.assertFalse(
console_audit.write_event(
{"schema_version": 1}, path="/nonexistent-dir/audit.jsonl"
)
)
def test_simulated_privileged_preview_creates_an_audit_record(self):
"""Required test: audit record creation for a privileged preview."""
with tempfile.TemporaryDirectory() as tmp:
sink = os.path.join(tmp, "console-audit.jsonl")
os.environ[console_audit.AUDIT_LOG_ENV] = sink
try:
decision = console_authz.authorize(
"merge_pr", _principal("controller")
)
outcome = console_audit.record_event(
action_id="merge_pr",
result=console_audit.RESULT_PREVIEWED,
decision=decision,
target={"kind": "pr", "ref": "#123"},
request_id="req-preview",
)
finally:
os.environ.pop(console_audit.AUDIT_LOG_ENV, None)
self.assertTrue(outcome["written"])
with open(sink, encoding="utf-8") as handle:
record = json.loads(handle.read().strip())
self.assertEqual(record["action"], "merge_pr")
self.assertEqual(record["result"], console_audit.RESULT_PREVIEWED)
self.assertEqual(record["action_class"], "privileged")
self.assertTrue(record["decision"]["allowed"])
self.assertFalse(record["decision"]["execution_enabled"])
self.assertEqual(record["actor"]["role"], "controller")
def test_decision_block_survives_redaction(self):
"""Regression: naming it 'authorization' collided with a secret hint.
``gitea_audit._SECRET_KEY_HINTS`` contains "authorization" (for the
HTTP header), so a block under that key was replaced wholesale by the
placeholder and the record lost its decision entirely.
"""
event = console_audit.build_event(
action_id="merge_pr",
result=console_audit.RESULT_DENIED,
decision=console_authz.authorize("merge_pr", _principal("admin")),
)
self.assertIsInstance(event["decision"], dict)
self.assertIn("allowed", event["decision"])
class TestConsoleRoutes(unittest.TestCase):
"""AC4 — the wired Phase 2 integration points, still fail-closed."""
def setUp(self):
self.client = TestClient(create_app(bind_host="127.0.0.1"))
def test_unauthenticated_write_stub_is_denied(self):
"""Required test: default-deny for unauthenticated write stubs."""
response = self.client.post(
"/api/actions/merge_pr/attempt", json={"pr_number": 99}
)
self.assertEqual(response.status_code, 403)
body = response.json()
self.assertFalse(body["success"])
authorization = body["authorization"]
self.assertFalse(authorization["allowed"])
self.assertEqual(
authorization["reason_code"], console_authz.DENY_UNAUTHENTICATED
)
self.assertFalse(authorization["execution_enabled"])
def test_preview_reports_an_authorization_decision(self):
response = self.client.get("/api/actions/merge_pr/preview?pr_number=7")
self.assertEqual(response.status_code, 200)
authorization = response.json()["authorization"]
self.assertFalse(authorization["allowed"])
self.assertTrue(authorization["dual_control"])
self.assertEqual(authorization["required_role"], "controller")
def test_unknown_action_preview_still_404s(self):
response = self.client.get("/api/actions/no_such_action/preview")
self.assertEqual(response.status_code, 404)
def test_security_model_endpoint_publishes_all_three_policies(self):
response = self.client.get("/api/console/security-model")
self.assertEqual(response.status_code, 200)
body = response.json()
self.assertIn("rbac", body)
self.assertIn("redaction", body)
self.assertIn("audit", body)
self.assertEqual(body["rbac"]["default_decision"], "deny")
def test_security_model_endpoint_leaks_no_secrets(self):
response = self.client.get("/api/console/security-model")
self.assertEqual(scan_for_secrets(response.json()), [])
def test_security_model_rejects_writes(self):
response = self.client.post("/api/console/security-model", json={})
self.assertEqual(response.status_code, 405)
def test_existing_read_routes_are_unaffected(self):
for path in ("/", "/health", "/actions", "/api/actions"):
with self.subTest(path=path):
self.assertEqual(self.client.get(path).status_code, 200)
class TestAuthzAuditDoc(unittest.TestCase):
"""The model must be written down, not only coded."""
@classmethod
def setUpClass(cls):
cls.text = (
AUTHZ_DOC.read_text(encoding="utf-8") if AUTHZ_DOC.exists() else ""
)
def test_doc_exists(self):
self.assertTrue(AUTHZ_DOC.exists(), f"missing {AUTHZ_DOC}")
def test_doc_covers_each_required_section(self):
for heading in (
"Identity sources",
"Role matrix",
"Privileged actions",
"Secret redaction",
"Audit event schema",
"Retention",
"Phase 2 integration",
"Local-dev mode",
):
with self.subTest(heading=heading):
self.assertIn(heading, self.text)
def test_doc_names_every_role(self):
for role in console_authz.ROLE_ORDER:
with self.subTest(role=role):
self.assertIn(role, self.text)
def test_doc_names_every_console_action(self):
for action_id in console_authz.ACTIONS:
with self.subTest(action=action_id):
self.assertIn(action_id, self.text)
def test_doc_states_retention_defaults(self):
for days in console_audit.RETENTION_DAYS.values():
with self.subTest(days=days):
self.assertIn(str(days), self.text)
def test_doc_warns_local_dev_is_insecure(self):
self.assertIn("INSECURE", self.text.upper())
def test_doc_states_default_deny(self):
self.assertIn("deny", self.text.lower())
def test_doc_contains_no_secret_material(self):
self.assertEqual(scan_for_secrets(self.text), [])
def test_deployment_doc_links_to_the_model(self):
deployment = (DOCS / "webui-deployment.md").read_text(encoding="utf-8")
self.assertIn("webui-authz-audit", deployment)
if __name__ == "__main__": # pragma: no cover
unittest.main()
+468
View File
@@ -0,0 +1,468 @@
"""Tests for the unified web-console inventory API (#636).
Covers the four cases the issue names — empty, populated, partial failure, and
the no-false-unowned invariant — plus redaction, collision detection, the
resource-split routes, and read-only guarantees against a real control-plane
database and real durable lock files.
"""
import json
import os
import sys
import tempfile
import unittest
from datetime import datetime, timedelta, timezone
from pathlib import Path
sys.path.insert(0, str(Path(__file__).resolve().parent.parent))
from starlette.testclient import TestClient
import control_plane_db
from webui.app import create_app
from webui import inventory
def _iso(dt: datetime) -> str:
return dt.astimezone(timezone.utc).isoformat()
def _write_lock(lock_dir: str, name: str, payload: dict) -> str:
path = os.path.join(lock_dir, name)
with open(path, "w", encoding="utf-8") as handle:
json.dump(payload, handle)
return path
def _live_lock_payload(
*,
issue_number: int,
branch: str,
worktree_path: str,
pid: int,
username: str = "jcwalker3",
profile: str = "prgs-author",
) -> dict:
now = datetime.now(timezone.utc)
future = now + timedelta(hours=2)
return {
"branch_name": branch,
"issue_number": issue_number,
"org": "Scaled-Tech-Consulting",
"repo": "Gitea-Tools",
"remote": "prgs",
"pid": pid,
"session_pid": pid,
"lock_generation": 1,
"worktree_path": worktree_path,
"claimant": {"username": username, "profile": profile},
"work_lease": {
"branch": branch,
"issue_number": issue_number,
"operation_type": "author_issue_work",
"created_at": _iso(now),
"expires_at": _iso(future),
"last_heartbeat_at": _iso(now),
"claimant": {"username": username, "profile": profile},
},
}
class _FixtureMixin(unittest.TestCase):
def setUp(self) -> None:
self._tmp = tempfile.TemporaryDirectory()
self.tmp = self._tmp.name
self.lock_dir = os.path.join(self.tmp, "locks")
os.makedirs(self.lock_dir, mode=0o700)
self.db_path = os.path.join(self.tmp, "control_plane.db")
self.addCleanup(self._tmp.cleanup)
def _seed_db(self) -> control_plane_db.ControlPlaneDB:
db = control_plane_db.ControlPlaneDB(self.db_path)
db.upsert_session(
session_id="prgs-author-1",
role="author",
profile="prgs-author",
namespace="gitea-author",
pid=os.getpid(),
)
db.upsert_work_item(
remote="prgs",
org="Scaled-Tech-Consulting",
repo="Gitea-Tools",
kind="issue",
number=636,
)
db.assign_and_lease(
session_id="prgs-author-1",
role="author",
remote="prgs",
org="Scaled-Tech-Consulting",
repo="Gitea-Tools",
kind="issue",
number=636,
)
return db
class TestRedaction(unittest.TestCase):
def test_redact_path_collapses_home(self):
home = os.path.expanduser("~")
self.assertEqual(
inventory.redact_path(f"{home}/Development/Gitea-Tools"),
"~/Development/Gitea-Tools",
)
def test_redact_url_strips_userinfo_and_query(self):
self.assertEqual(
inventory.redact_url("https://user:[email protected]/api?token=abc"),
"https://gitea.prgs.cc/api",
)
def test_scrub_drops_credential_keys(self):
scrubbed = inventory.scrub(
{"token": "abc123", "api_key": "k", "profile": "prgs-author"}
)
self.assertEqual(scrubbed["token"], "[redacted]")
self.assertEqual(scrubbed["api_key"], "[redacted]")
self.assertEqual(scrubbed["profile"], "prgs-author")
def test_scrub_is_recursive_and_never_raises(self):
class Weird:
def __repr__(self) -> str:
return "weird-obj"
out = inventory.scrub({"nested": [{"password": "p", "obj": Weird()}]})
self.assertEqual(out["nested"][0]["password"], "[redacted]")
self.assertEqual(out["nested"][0]["obj"], "weird-obj")
class TestEmptyInventory(_FixtureMixin):
def test_empty_db_and_locks_degrade_without_raising(self):
# No DB file, no locks: sessions/leases unavailable, locks ok+empty.
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
sessions = snap.section("sessions")
leases = snap.section("leases")
locks = snap.section("locks")
self.assertEqual(sessions.status, inventory.STATUS_UNAVAILABLE)
self.assertEqual(leases.status, inventory.STATUS_UNAVAILABLE)
self.assertEqual(locks.status, inventory.STATUS_OK)
self.assertEqual(len(locks.items), 0)
# Ownership authority is incomplete because the DB is missing.
self.assertFalse(snap.ownership_authority_complete)
self.assertEqual(snap.collisions, ())
def test_empty_db_present_but_unpopulated(self):
control_plane_db.ControlPlaneDB(self.db_path) # creates schema, no rows
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
self.assertEqual(snap.section("sessions").status, inventory.STATUS_OK)
self.assertEqual(len(snap.section("sessions").items), 0)
self.assertEqual(snap.section("leases").status, inventory.STATUS_OK)
self.assertTrue(snap.ownership_authority_complete)
class TestPopulatedInventory(_FixtureMixin):
def test_sections_populated_and_correlated(self):
self._seed_db()
wt = f"{self.tmp}/branches/issue-636-inventory-api"
_write_lock(
self.lock_dir,
"prgs-Scaled-Tech-Consulting-Gitea-Tools-636.json",
_live_lock_payload(
issue_number=636,
branch="feat/issue-636-inventory-api",
worktree_path=wt,
pid=os.getpid(),
),
)
hygiene = _StubHygiene(
entries=(
_StubEntry(
rel_path="branches/issue-636-inventory-api",
branch="feat/issue-636-inventory-api",
classification="active-issue",
),
)
)
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: hygiene,
)
self.assertTrue(snap.ownership_authority_complete)
self.assertEqual(len(snap.section("sessions").items), 1)
self.assertEqual(len(snap.section("leases").items), 1)
self.assertEqual(len(snap.section("locks").items), 1)
self.assertEqual(len(snap.section("worktrees").items), 1)
# The lease, lock, and worktree for #636 correlate onto one row.
row = next(r for r in snap.correlations if r["issue_number"] == 636)
self.assertEqual(row["branch"], "feat/issue-636-inventory-api")
self.assertTrue(row["lock_live"])
self.assertEqual(row["worktree_classification"], "active-issue")
self.assertEqual(len(row["lease_ids"]), 1)
# No collision: live lock, live pid, matching worktree.
self.assertEqual(snap.collisions, ())
def test_serialized_payload_declares_field_authority(self):
self._seed_db()
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
payload = inventory.snapshot_to_dict(snap)
self.assertEqual(payload["api_version"], "v1")
self.assertEqual(payload["schema_version"], 1)
self.assertEqual(payload["field_authority"]["sessions"], "control_plane_db")
self.assertEqual(payload["field_authority"]["locks"], "filesystem")
self.assertIn("sessions", payload["sections"])
class TestPartialFailure(_FixtureMixin):
def test_worktree_scan_failure_degrades_only_that_section(self):
self._seed_db()
def _boom():
raise RuntimeError("git worktree list exploded")
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=_boom,
)
self.assertEqual(
snap.section("worktrees").status, inventory.STATUS_UNAVAILABLE
)
self.assertIn("exploded", snap.section("worktrees").reason)
# DB-backed sections still healthy.
self.assertEqual(snap.section("sessions").status, inventory.STATUS_OK)
self.assertIn("worktrees", snap.degraded_sections)
def test_degraded_ownership_suppresses_unowned_claim(self):
# DB absent → sessions/leases unavailable → ownership incomplete even
# though a lock exists and could look "unclaimed" by the DB alone.
_write_lock(
self.lock_dir,
"prgs-Scaled-Tech-Consulting-Gitea-Tools-636.json",
_live_lock_payload(
issue_number=636,
branch="feat/issue-636-inventory-api",
worktree_path=f"{self.tmp}/wt",
pid=os.getpid(),
),
)
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
self.assertFalse(snap.ownership_authority_complete)
payload = inventory.snapshot_to_dict(snap)
self.assertIn("may be treated as unowned", payload["ownership_note"])
class TestCollisionDetection(_FixtureMixin):
def test_live_lock_dead_owner_flagged(self):
_write_lock(
self.lock_dir,
"prgs-Scaled-Tech-Consulting-Gitea-Tools-700.json",
_live_lock_payload(
issue_number=700,
branch="feat/issue-700-x",
worktree_path=f"{self.tmp}/wt700",
pid=999_999_999, # not a running pid
),
)
control_plane_db.ControlPlaneDB(self.db_path) # empty but present
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
kinds = {c.kind for c in snap.collisions}
self.assertIn("live-lock-dead-owner", kinds)
# Also lock-without-worktree, since no worktree carries the branch.
self.assertIn("lock-without-worktree", kinds)
def test_duplicate_live_lock_on_same_branch(self):
for issue in (800, 801):
_write_lock(
self.lock_dir,
f"prgs-Scaled-Tech-Consulting-Gitea-Tools-{issue}.json",
_live_lock_payload(
issue_number=issue,
branch="feat/issue-800-shared",
worktree_path=f"{self.tmp}/wt{issue}",
pid=os.getpid(),
),
)
control_plane_db.ControlPlaneDB(self.db_path)
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
self.assertIn(
"duplicate-live-lock", {c.kind for c in snap.collisions}
)
def test_no_collision_when_sections_degraded(self):
# locks ok but worktrees unavailable → lock-without-worktree must NOT
# be asserted (a missing scan is not a missing worktree).
_write_lock(
self.lock_dir,
"prgs-Scaled-Tech-Consulting-Gitea-Tools-636.json",
_live_lock_payload(
issue_number=636,
branch="feat/issue-636-inventory-api",
worktree_path=f"{self.tmp}/wt",
pid=os.getpid(),
),
)
control_plane_db.ControlPlaneDB(self.db_path)
def _boom():
raise RuntimeError("scan down")
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
load_hygiene=_boom,
)
self.assertNotIn(
"lock-without-worktree", {c.kind for c in snap.collisions}
)
class TestSectionInclude(_FixtureMixin):
def test_include_restricts_scanned_sections(self):
self._seed_db()
snap = inventory.load_inventory_snapshot(
db_path=self.db_path,
lock_dir=self.lock_dir,
include=("locks",),
)
self.assertIsNotNone(snap.section("locks"))
self.assertIsNone(snap.section("sessions"))
self.assertIsNone(snap.section("worktrees"))
class TestRoutes(_FixtureMixin):
def setUp(self) -> None:
super().setUp()
# Point the loaders at the fixture DB and lock dir via env, and stub
# the worktree scan so the route does not shell out to git.
self._prev_env = {
"GITEA_CONTROL_PLANE_DB": os.environ.get("GITEA_CONTROL_PLANE_DB"),
"GITEA_ISSUE_LOCK_DIR": os.environ.get("GITEA_ISSUE_LOCK_DIR"),
"WEBUI_TEST_OFFLINE": os.environ.get("WEBUI_TEST_OFFLINE"),
}
os.environ["GITEA_CONTROL_PLANE_DB"] = self.db_path
os.environ["GITEA_ISSUE_LOCK_DIR"] = self.lock_dir
os.environ["WEBUI_TEST_OFFLINE"] = "1"
self._seed_db()
self.client = TestClient(create_app())
def tearDown(self) -> None:
for key, value in self._prev_env.items():
if value is None:
os.environ.pop(key, None)
else:
os.environ[key] = value
def test_inventory_route_returns_versioned_payload(self):
resp = self.client.get("/api/v1/inventory")
self.assertEqual(resp.status_code, 200)
body = resp.json()
self.assertEqual(body["api_version"], "v1")
self.assertIn("sessions", body["sections"])
self.assertIn("field_authority", body)
def test_section_route_restricts_and_labels(self):
resp = self.client.get("/api/v1/inventory/locks")
self.assertEqual(resp.status_code, 200)
body = resp.json()
self.assertEqual(body["requested_section"], "locks")
self.assertIn("locks", body["sections"])
self.assertNotIn("sessions", body["sections"])
def test_unknown_section_is_404(self):
resp = self.client.get("/api/v1/inventory/bogus")
self.assertEqual(resp.status_code, 404)
self.assertEqual(resp.json()["error"], "unknown_section")
def test_inventory_route_rejects_post(self):
resp = self.client.post("/api/v1/inventory")
self.assertEqual(resp.status_code, 405)
class TestReadOnly(_FixtureMixin):
def test_snapshot_does_not_create_db_file(self):
missing = os.path.join(self.tmp, "does-not-exist.db")
inventory.load_inventory_snapshot(
db_path=missing,
lock_dir=self.lock_dir,
load_hygiene=lambda: _StubHygiene(entries=()),
)
self.assertFalse(os.path.exists(missing))
def test_readonly_connection_refuses_write(self):
self._seed_db()
conn = inventory._open_readonly(self.db_path)
try:
with self.assertRaises(Exception):
conn.execute(
"INSERT INTO sessions(session_id, role, started_at, "
"last_heartbeat_at, status) VALUES ('x','author',"
"'t','t','active')"
)
conn.commit()
finally:
conn.close()
# ── lightweight stand-ins for the #432 hygiene snapshot ──────────────────────
class _StubEntry:
def __init__(
self,
*,
rel_path: str,
branch: str | None = None,
classification: str = "stale-clean",
head_sha: str | None = "abc123",
dirty_tracked: int = 0,
dirty_untracked: bool = False,
detached: bool = False,
registered_worktree: bool = True,
notes: str = "",
) -> None:
self.rel_path = rel_path
self.folder_name = rel_path.split("/", 1)[-1]
self.branch = branch
self.classification = classification
self.head_sha = head_sha
self.dirty_tracked = dirty_tracked
self.dirty_untracked = dirty_untracked
self.detached = detached
self.registered_worktree = registered_worktree
self.notes = notes
class _StubHygiene:
def __init__(self, *, entries=(), scan_error=None) -> None:
self.entries = tuple(entries)
self.scan_error = scan_error
if __name__ == "__main__":
unittest.main()
+30 -75
View File
@@ -2,7 +2,6 @@
from __future__ import annotations
import uuid
from datetime import datetime, timezone
from starlette.applications import Starlette
@@ -32,9 +31,6 @@ from final_report_validator import FINAL_REPORT_TASK_KINDS
from webui.gated_actions import attempt_action, load_action_registry, preview_action
from webui.gated_action_views import render_actions_page
from webui import console_audit
from webui.console_authz import authorize, rbac_matrix, resolve_principal
from webui.console_redaction import redaction_policy
from webui.audit_validator import audit_report, audit_to_dict
from webui.audit_views import render_audit_page
from webui.lease_loader import load_lease_snapshot, snapshot_to_dict as lease_snapshot_to_dict
@@ -45,6 +41,11 @@ from webui.worktree_scanner import load_hygiene_snapshot, snapshot_to_dict as wo
from webui.worktree_views import render_worktrees_page
from webui.runtime_health import load_runtime_snapshot, snapshot_to_dict as runtime_snapshot_to_dict
from webui.runtime_views import render_runtime_page
from webui.inventory import (
SECTION_NAMES as _INVENTORY_SECTIONS,
load_inventory_snapshot,
snapshot_to_dict as inventory_snapshot_to_dict,
)
_READ_ONLY_METHODS = frozenset({"GET", "HEAD", "OPTIONS"})
_AUDIT_MUTATION_PATHS = frozenset({"/audit", "/api/audit"})
@@ -280,49 +281,6 @@ async def api_actions(_request: Request) -> JSONResponse:
return JSONResponse(load_action_registry().to_dict())
def _request_id() -> str:
return f"req-{uuid.uuid4().hex}"
def _audit_target(action_id: str, params: dict[str, object]) -> dict[str, object]:
"""Describe the action target for the audit record (never secrets)."""
if "pr_number" in params:
return {"kind": "pr", "ref": f"#{params['pr_number']}"}
if "issue_number" in params:
return {"kind": "issue", "ref": f"#{params['issue_number']}"}
if "branch_name" in params:
return {"kind": "branch", "ref": str(params["branch_name"])}
return {"kind": "unspecified", "ref": action_id}
def _authorize_request(
request: Request,
action_id: str,
params: dict[str, object],
*,
for_execution: bool,
result: str,
) -> dict[str, object]:
"""Resolve principal, decide, and audit. Returns the decision payload.
Phase 1 records the decision rather than enforcing it as the terminal
outcome: ``webui.gated_actions`` already fails closed for every action, so
this layer cannot loosen anything. Phase 2 enforces on this same decision.
"""
principal = resolve_principal(headers=dict(request.headers))
decision = authorize(action_id, principal, for_execution=for_execution)
console_audit.record_event(
action_id=action_id,
result=result,
decision=decision,
principal=principal,
target=_audit_target(action_id, params),
request_id=_request_id(),
detail=decision.detail,
)
return decision.to_dict()
async def api_action_preview(request: Request) -> JSONResponse:
action_id = request.path_params["action_id"]
params = dict(request.query_params)
@@ -332,13 +290,6 @@ async def api_action_preview(request: Request) -> JSONResponse:
result = preview_action(action_id, **params)
if "error" in result:
return JSONResponse(result, status_code=404)
result["authorization"] = _authorize_request(
request,
action_id,
params,
for_execution=False,
result=console_audit.RESULT_PREVIEWED,
)
return JSONResponse(result)
@@ -352,29 +303,32 @@ async def api_action_attempt(request: Request) -> JSONResponse:
if not isinstance(body, dict):
body = {}
result = attempt_action(action_id, **body)
authorization = _authorize_request(
request,
action_id,
body,
for_execution=True,
result=(
console_audit.RESULT_DENIED
if not result.get("success")
else console_audit.RESULT_ALLOWED
),
)
result["authorization"] = authorization
status = 403 if not result.get("success") else 200
return JSONResponse(result, status_code=status)
async def api_console_security_model(_request: Request) -> JSONResponse:
"""Read-only publication of the #633 authorization/redaction/audit model."""
return JSONResponse({
"rbac": rbac_matrix(),
"redaction": redaction_policy(),
"audit": console_audit.audit_policy(),
})
async def api_inventory(_request: Request) -> JSONResponse:
"""Unified read-only session/lease/lock/worktree inventory (#636)."""
snapshot = load_inventory_snapshot()
return JSONResponse(inventory_snapshot_to_dict(snapshot))
async def api_inventory_section(request: Request) -> JSONResponse:
"""Resource-split view: one inventory section under the shared schema."""
section = request.path_params["section"]
if section not in _INVENTORY_SECTIONS:
return JSONResponse(
{
"error": "unknown_section",
"detail": f"no inventory section named {section!r}",
"available": sorted(_INVENTORY_SECTIONS),
},
status_code=404,
)
snapshot = load_inventory_snapshot(include=(section,))
payload = inventory_snapshot_to_dict(snapshot)
payload["requested_section"] = section
return JSONResponse(payload)
async def method_not_allowed(request: Request, _exc: Exception) -> Response:
@@ -433,9 +387,10 @@ def create_app(*, bind_host: str | None = None) -> Starlette:
methods=["POST"],
),
Route("/api/leases", api_leases, methods=["GET"]),
Route("/api/v1/inventory", api_inventory, methods=["GET"]),
Route(
"/api/console/security-model",
api_console_security_model,
"/api/v1/inventory/{section}",
api_inventory_section,
methods=["GET"],
),
],
-281
View File
@@ -1,281 +0,0 @@
"""Console audit event schema, retention, and append-only sink (#633).
``gitea_audit`` records MCP-side *mutations*: which profile and Gitea user
performed which tool call. It carries no console actor, no identity source, no
correlation identifier, and no retention class, so it cannot answer the
question #633 exists to answer — *who sat at the console, what did they
attempt, and was it authorized?* An authorization denial is not a mutation and
would never appear there at all.
This module adds the console-side record. It does not replace ``gitea_audit``:
when a Phase 2 action eventually reaches MCP, both fire, correlated by
``correlation.request_id``.
Design constraints:
- **Redact before persist.** Every record passes through
``webui.console_redaction.redact_payload`` before serialization, so an
unredacted field is never durable.
- **Append-only.** Records are appended as JSON lines. Nothing here updates or
deletes; retention is metadata on each record, enforced by an operator-run
policy, never by silent rewriting.
- **Never raises.** Auditing must not break the request it describes. A failed
write returns ``False``.
- **Off by default.** With ``WEBUI_CONSOLE_AUDIT_LOG`` unset, events are still
*built* (so callers and tests see the schema) but nothing is written.
A record looks like this (synthetic values):
{"schema_version": 1, "event_id": "evt-0001",
"timestamp": "2026-07-22T10:16:42+00:00",
"actor": {"subject": "[email protected]", "role": "operator",
"identity_source": "access_proxy", "authenticated": true},
"action": "merge_pr", "action_class": "privileged",
"target": {"kind": "pr", "ref": "#123"},
"result": "denied", "reason_code": "insufficient_role",
"correlation": {"request_id": "req-abc", "session_id": null,
"mcp_task": "merge_pr", "mcp_permission": "gitea.pr.merge"},
"retention": {"class": "privileged", "days": 365,
"expires_at": "2027-07-22T10:16:42+00:00"},
"redacted": true}
Timestamps are timezone-aware ISO-8601 in UTC.
"""
from __future__ import annotations
import datetime
import json
import os
import uuid
from typing import Any
from webui import console_authz
from webui.console_redaction import redact_payload, scan_for_secrets
SCHEMA_VERSION = 1
AUDIT_LOG_ENV = "WEBUI_CONSOLE_AUDIT_LOG"
# Result vocabulary. ``denied`` is the one ``gitea_audit`` has no equivalent
# for: an authorization refusal never reaches the MCP layer.
RESULT_ALLOWED = "allowed"
RESULT_DENIED = "denied"
RESULT_PREVIEWED = "previewed"
RESULT_FAILED = "failed"
RESULT_SUCCEEDED = "succeeded"
RESULTS = frozenset(
{
RESULT_ALLOWED,
RESULT_DENIED,
RESULT_PREVIEWED,
RESULT_FAILED,
RESULT_SUCCEEDED,
}
)
# Retention classes and default lifetimes in days. Privileged and break-glass
# records outlive routine ones because they are what an incident review needs.
RETENTION_STANDARD = "standard"
RETENTION_PRIVILEGED = "privileged"
RETENTION_BREAK_GLASS = "break_glass"
RETENTION_DAYS: dict[str, int] = {
RETENTION_STANDARD: 90,
RETENTION_PRIVILEGED: 365,
RETENTION_BREAK_GLASS: 730,
}
# Fields every record must carry. Asserted by the test suite so a future edit
# cannot quietly drop one.
REQUIRED_FIELDS: tuple[str, ...] = (
"schema_version",
"event_id",
"timestamp",
"actor",
"action",
"action_class",
"target",
"result",
"reason_code",
"correlation",
"retention",
"redacted",
)
REQUIRED_ACTOR_FIELDS: tuple[str, ...] = (
"subject",
"role",
"identity_source",
"authenticated",
)
REQUIRED_CORRELATION_FIELDS: tuple[str, ...] = (
"request_id",
"session_id",
"mcp_task",
"mcp_permission",
)
def audit_log_path() -> str | None:
"""Configured sink path, or ``None`` when console auditing is off."""
return (os.environ.get(AUDIT_LOG_ENV) or "").strip() or None
def audit_enabled() -> bool:
return audit_log_path() is not None
def retention_class_for(action: console_authz.ConsoleAction | None) -> str:
"""Classify retention from the action, defaulting to the longest-lived.
An unknown action is treated as privileged rather than standard: for a
safety control the conservative direction is to keep the record longer.
"""
if action is None:
return RETENTION_PRIVILEGED
if action.break_glass:
return RETENTION_BREAK_GLASS
if action.privileged:
return RETENTION_PRIVILEGED
return RETENTION_STANDARD
def _retention_block(
retention_class: str, now: datetime.datetime
) -> dict[str, Any]:
days = RETENTION_DAYS.get(
retention_class, RETENTION_DAYS[RETENTION_PRIVILEGED]
)
return {
"class": retention_class,
"days": days,
"expires_at": (now + datetime.timedelta(days=days)).isoformat(),
}
def build_event(
*,
action_id: str,
result: str,
decision: console_authz.AuthorizationDecision | None = None,
principal: console_authz.Principal | None = None,
target: dict[str, Any] | None = None,
reason_code: str | None = None,
request_id: str | None = None,
session_id: str | None = None,
detail: str | None = None,
metadata: dict[str, Any] | None = None,
now: datetime.datetime | None = None,
event_id: str | None = None,
) -> dict[str, Any]:
"""Build one redacted, JSON-able console audit record.
Redaction runs here rather than at write time so an in-memory record handed
to a template or an API response is already clean.
"""
ts = now or datetime.datetime.now(datetime.timezone.utc)
action = console_authz.get_action(action_id)
who = principal or (
decision.principal if decision else console_authz.ANONYMOUS
)
resolved_result = result if result in RESULTS else RESULT_FAILED
resolved_reason = reason_code or (
decision.reason_code if decision else "unspecified"
)
retention_class = retention_class_for(action)
event: dict[str, Any] = {
"schema_version": SCHEMA_VERSION,
"event_id": event_id or f"evt-{uuid.uuid4().hex}",
"timestamp": ts.isoformat(),
"actor": who.to_dict(),
"action": action_id,
"action_class": action.action_class if action else "unknown",
"target": dict(target or {}),
"result": resolved_result,
"reason_code": resolved_reason,
"correlation": {
"request_id": request_id,
"session_id": session_id,
"mcp_task": action.task_key if action else None,
"mcp_permission": action.mcp_permission if action else None,
},
"retention": _retention_block(retention_class, ts),
"redacted": True,
"detail": detail,
"metadata": dict(metadata or {}),
}
if decision is not None:
# Deliberately *not* named "authorization": ``gitea_audit`` treats that
# substring as a secret key hint (it matches the HTTP Authorization
# header) and would replace this whole block with the placeholder.
event["decision"] = {
"allowed": decision.allowed,
"required_role": decision.required_role,
"requires_confirmation": decision.requires_confirmation,
"dual_control": decision.dual_control,
"break_glass": decision.break_glass,
"execution_enabled": decision.execution_enabled,
}
redacted = redact_payload(event)
if not isinstance(redacted, dict): # pragma: no cover - defensive
return {"schema_version": SCHEMA_VERSION, "redacted": True}
return redacted
def write_event(event: dict[str, Any], path: str | None = None) -> bool:
"""Append *event* as one JSON line. Never raises.
Returns ``True`` when a line was written, ``False`` when auditing is off or
the write failed. A record that still trips a secret detector is dropped
rather than persisted.
"""
sink = path or audit_log_path()
if not sink:
return False
try:
if scan_for_secrets(event):
return False
line = json.dumps(event, default=str, sort_keys=True)
with open(sink, "a", encoding="utf-8") as handle:
handle.write(line + "\n")
return True
except Exception:
return False
def record_event(**kwargs: Any) -> dict[str, Any]:
"""Build and persist one record; return the record either way.
Callers get the record back so it can be surfaced in a response or a test
regardless of whether a sink is configured.
"""
event = build_event(**kwargs)
written = write_event(event)
return {"event": event, "written": written}
def audit_policy() -> dict[str, Any]:
"""Machine-readable audit schema and retention defaults (never secrets)."""
return {
"schema_version": SCHEMA_VERSION,
"required_fields": list(REQUIRED_FIELDS),
"required_actor_fields": list(REQUIRED_ACTOR_FIELDS),
"required_correlation_fields": list(REQUIRED_CORRELATION_FIELDS),
"results": sorted(RESULTS),
"retention_defaults_days": dict(RETENTION_DAYS),
"sink_env": AUDIT_LOG_ENV,
"enabled": audit_enabled(),
"append_only": True,
"redact_before_persist": True,
"timestamp_format": "ISO-8601, timezone-aware, UTC",
"relationship_to_mcp_audit": (
"webui.console_audit records console intent and authorization "
"outcomes; gitea_audit records MCP mutations. A Phase 2 action "
"emits both, correlated by correlation.request_id."
),
}
-537
View File
@@ -1,537 +0,0 @@
"""Console authorization and RBAC model (#633, Phase 1).
The read-only MVP (#426#436) ships with no authentication: protection comes
from network placement alone (#435). That is adequate while every route is a
GET, and inadequate the moment Phase 2 wires a gated write. This module is the
authorization model those writes must go through, landed *before* any of them
exists so no write can be added without an authority to check against.
Phase 1 scope is the model itself: identity resolution, the role matrix, the
privileged-action list, and a fail-closed :func:`authorize`. It deliberately
does **not** enable any write. ``webui.gated_actions`` stays globally disabled,
so an allow decision here is necessary but never sufficient.
Two invariants hold for every caller:
- **Default deny.** An unrecognised action, an unknown role, or an absent
principal denies. There is no implicit allow branch and no "unless" clause.
- **Authorization is not execution.** :func:`authorize` returns a decision
record. It never calls MCP, never mutates, and never consults credentials.
"""
from __future__ import annotations
import json
import os
from dataclasses import asdict, dataclass, field
from typing import Any
from task_capability_map import required_permission, required_role
# --- Roles ------------------------------------------------------------------
# Ordered least to most authority. Higher ranks inherit every lower rank's
# permitted actions; the matrix below is expressed as a minimum required rank.
VIEWER = "viewer"
OPERATOR = "operator"
CONTROLLER = "controller"
ADMIN = "admin"
ROLE_ORDER: tuple[str, ...] = (VIEWER, OPERATOR, CONTROLLER, ADMIN)
_ROLE_RANK: dict[str, int] = {role: idx for idx, role in enumerate(ROLE_ORDER)}
ROLE_DESCRIPTIONS: dict[str, str] = {
VIEWER: "Read every console view. No write, ever, in any phase.",
OPERATOR: "Viewer, plus author-class work: claim, comment, open a PR.",
CONTROLLER: "Operator, plus reviewer/merger-class decisions on a PR.",
ADMIN: "Controller, plus destructive and policy-editing actions.",
}
# --- Identity sources -------------------------------------------------------
IDENTITY_NONE = "none"
IDENTITY_LOCAL_DEV = "local_dev"
IDENTITY_ACCESS_PROXY = "access_proxy"
IDENTITY_SOURCES: dict[str, dict[str, Any]] = {
IDENTITY_NONE: {
"description": (
"No authentication configured. Every request is anonymous and "
"capped at viewer. This is the MVP default and the only mode "
"whose safety rests entirely on network placement (#435)."
),
"authenticated": False,
"safe_for_shared_host": False,
"phase_available": 1,
},
IDENTITY_LOCAL_DEV: {
"description": (
"Developer-supplied principal read from the environment. INSECURE: "
"the subject and role are asserted, never verified. Loopback only."
),
"authenticated": True,
"safe_for_shared_host": False,
"phase_available": 1,
},
IDENTITY_ACCESS_PROXY: {
"description": (
"Subject asserted by a trusted access proxy (Cloudflare Access, "
"WARP, or an org VPN portal) via a verified request header. The "
"proxy performs authentication; the console performs authorization."
),
"authenticated": True,
"safe_for_shared_host": True,
"phase_available": 2,
},
}
# Environment configuration. All are read server-side and never rendered.
AUTH_MODE_ENV = "WEBUI_AUTH_MODE"
DEV_SUBJECT_ENV = "WEBUI_DEV_SUBJECT"
DEV_ROLE_ENV = "WEBUI_DEV_ROLE"
ROLE_MAP_ENV = "WEBUI_ROLE_MAP"
REQUIRE_PROBE_AUTH_ENV = "WEBUI_REQUIRE_PROBE_AUTH"
ACCESS_SUBJECT_HEADER = "cf-access-authenticated-user-email"
# --- Action classes ---------------------------------------------------------
CLASS_READ = "read"
CLASS_WRITE = "gated_write"
CLASS_PRIVILEGED = "privileged"
CLASS_DESTRUCTIVE = "destructive"
# --- Privileged action list -------------------------------------------------
# ``task_key`` ties each console action back to ``task_capability_map``, so the
# console cannot invent an authority the MCP layer does not already define.
@dataclass(frozen=True)
class ConsoleAction:
"""One console action and the authority required to invoke it."""
action_id: str
task_key: str
action_class: str
minimum_role: str
requires_confirmation: bool
dual_control: bool
break_glass: bool
phase: int
summary: str
@property
def mcp_permission(self) -> str:
return required_permission(self.task_key)
@property
def mcp_role(self) -> str:
return required_role(self.task_key)
@property
def privileged(self) -> bool:
return self.action_class in {CLASS_PRIVILEGED, CLASS_DESTRUCTIVE}
def to_dict(self) -> dict[str, Any]:
data = asdict(self)
data["mcp_permission"] = self.mcp_permission
data["mcp_role"] = self.mcp_role
data["privileged"] = self.privileged
return data
_ACTION_SPECS: tuple[ConsoleAction, ...] = (
ConsoleAction(
action_id="claim_issue",
task_key="claim_issue",
action_class=CLASS_WRITE,
minimum_role=OPERATOR,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=2,
summary="Apply status:in-progress to an issue.",
),
ConsoleAction(
action_id="comment_issue",
task_key="comment_issue",
action_class=CLASS_WRITE,
minimum_role=OPERATOR,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=2,
summary="Post an issue comment.",
),
ConsoleAction(
action_id="create_issue",
task_key="create_issue",
action_class=CLASS_WRITE,
minimum_role=OPERATOR,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=2,
summary="Open a new tracking issue.",
),
ConsoleAction(
action_id="comment_pr",
task_key="comment_pr",
action_class=CLASS_WRITE,
minimum_role=OPERATOR,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=2,
summary="Post a PR thread comment.",
),
ConsoleAction(
action_id="create_pr",
task_key="create_pr",
action_class=CLASS_WRITE,
minimum_role=OPERATOR,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=2,
summary="Open a PR from a locked feature branch.",
),
ConsoleAction(
action_id="review_pr",
task_key="review_pr",
action_class=CLASS_PRIVILEGED,
minimum_role=CONTROLLER,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=3,
summary="Submit an approve / request-changes verdict.",
),
ConsoleAction(
action_id="close_pr",
task_key="close_pr",
action_class=CLASS_PRIVILEGED,
minimum_role=CONTROLLER,
requires_confirmation=True,
dual_control=False,
break_glass=False,
phase=3,
summary="Close a pull request without merging.",
),
ConsoleAction(
action_id="merge_pr",
task_key="merge_pr",
action_class=CLASS_PRIVILEGED,
minimum_role=CONTROLLER,
requires_confirmation=True,
dual_control=True,
break_glass=True,
phase=3,
summary="Merge an approved pull request.",
),
ConsoleAction(
action_id="delete_branch",
task_key="delete_branch",
action_class=CLASS_DESTRUCTIVE,
minimum_role=ADMIN,
requires_confirmation=True,
dual_control=True,
break_glass=True,
phase=3,
summary="Remove a remote feature branch.",
),
)
ACTIONS: dict[str, ConsoleAction] = {a.action_id: a for a in _ACTION_SPECS}
def privileged_actions() -> tuple[ConsoleAction, ...]:
"""Actions requiring dual control, break-glass, or controller+ authority."""
return tuple(a for a in _ACTION_SPECS if a.privileged)
def get_action(action_id: str) -> ConsoleAction | None:
return ACTIONS.get(action_id)
# --- Principals -------------------------------------------------------------
@dataclass(frozen=True)
class Principal:
"""Who is making a request, and how strongly that is known."""
subject: str
role: str
identity_source: str
authenticated: bool
warnings: tuple[str, ...] = field(default_factory=tuple)
@property
def rank(self) -> int:
return _ROLE_RANK.get(self.role, -1)
def to_dict(self) -> dict[str, Any]:
return {
"subject": self.subject,
"role": self.role,
"identity_source": self.identity_source,
"authenticated": self.authenticated,
"warnings": list(self.warnings),
}
ANONYMOUS = Principal(
subject="anonymous",
role=VIEWER,
identity_source=IDENTITY_NONE,
authenticated=False,
warnings=("No authentication configured; capped at viewer.",),
)
def auth_mode(env: dict[str, str] | None = None) -> str:
"""Resolve the configured identity source, defaulting to ``none``."""
source = env if env is not None else os.environ
raw = (source.get(AUTH_MODE_ENV) or "").strip().lower().replace("-", "_")
if raw in IDENTITY_SOURCES:
return raw
return IDENTITY_NONE
def _role_map(env: dict[str, str]) -> dict[str, str]:
"""Parse ``WEBUI_ROLE_MAP`` (JSON subject→role). Invalid config yields {}."""
raw = (env.get(ROLE_MAP_ENV) or "").strip()
if not raw:
return {}
try:
parsed = json.loads(raw)
except Exception:
return {}
if not isinstance(parsed, dict):
return {}
return {
str(k): str(v).strip().lower()
for k, v in parsed.items()
if str(v).strip().lower() in _ROLE_RANK
}
def resolve_principal(
headers: dict[str, str] | None = None,
env: dict[str, str] | None = None,
) -> Principal:
"""Resolve the requesting principal. Unknown or unconfigured → anonymous.
Never raises and never trusts a client-supplied role: the role always comes
from server-side configuration keyed by the resolved subject.
"""
source_env = dict(env) if env is not None else dict(os.environ)
lowered = {str(k).lower(): str(v) for k, v in (headers or {}).items()}
mode = auth_mode(source_env)
if mode == IDENTITY_LOCAL_DEV:
subject = (source_env.get(DEV_SUBJECT_ENV) or "").strip()
if not subject:
return ANONYMOUS
role = (source_env.get(DEV_ROLE_ENV) or VIEWER).strip().lower()
if role not in _ROLE_RANK:
role = VIEWER
return Principal(
subject=subject,
role=role,
identity_source=IDENTITY_LOCAL_DEV,
authenticated=True,
warnings=(
"local-dev identity is asserted, not verified; never use "
"outside loopback.",
),
)
if mode == IDENTITY_ACCESS_PROXY:
subject = (lowered.get(ACCESS_SUBJECT_HEADER) or "").strip()
if not subject:
# Proxy mode with no proxy header means the request did not
# traverse the proxy. Fail closed rather than trust it.
return ANONYMOUS
role = _role_map(source_env).get(subject, VIEWER)
return Principal(
subject=subject,
role=role,
identity_source=IDENTITY_ACCESS_PROXY,
authenticated=True,
)
return ANONYMOUS
def probe_auth_required(env: dict[str, str] | None = None) -> bool:
"""Whether non-public probes must be authenticated. Default False.
#633 requires the console to *fail closed on missing auth for non-public
health probes if configured*. The default stays off so the MVP ``/health``
contract is unchanged; an operator opts in explicitly.
"""
source = env if env is not None else os.environ
return (source.get(REQUIRE_PROBE_AUTH_ENV) or "").strip().lower() in {
"1",
"true",
"yes",
}
# --- Authorization ----------------------------------------------------------
DENY_UNKNOWN_ACTION = "unknown_action"
DENY_UNAUTHENTICATED = "unauthenticated"
DENY_INSUFFICIENT_ROLE = "insufficient_role"
DENY_UNKNOWN_ROLE = "unknown_role"
DENY_PHASE_NOT_ACTIVE = "phase_not_active"
ALLOW_PREVIEW = "allowed_preview_only"
# Phase 1 is the only active console phase. Phase 2 opens gated writes and is
# gated on this model landing; nothing here enables it.
ACTIVE_PHASE = 1
@dataclass(frozen=True)
class AuthorizationDecision:
"""Result of an authorization check. Never an execution grant."""
allowed: bool
reason_code: str
detail: str
action_id: str
principal: Principal
required_role: str | None = None
action_class: str | None = None
requires_confirmation: bool = False
dual_control: bool = False
break_glass: bool = False
execution_enabled: bool = False
def to_dict(self) -> dict[str, Any]:
return {
"allowed": self.allowed,
"reason_code": self.reason_code,
"detail": self.detail,
"action_id": self.action_id,
"principal": self.principal.to_dict(),
"required_role": self.required_role,
"action_class": self.action_class,
"requires_confirmation": self.requires_confirmation,
"dual_control": self.dual_control,
"break_glass": self.break_glass,
"execution_enabled": self.execution_enabled,
"active_phase": ACTIVE_PHASE,
}
def authorize(
action_id: str,
principal: Principal | None = None,
*,
for_execution: bool = False,
) -> AuthorizationDecision:
"""Decide whether *principal* may invoke *action_id*. Deny by default.
``for_execution`` distinguishes a read-only preview from a real invocation.
Even an allowed decision reports ``execution_enabled=False`` while the
console is in Phase 1, so no caller can read an allow as permission to
mutate.
"""
who = principal if principal is not None else ANONYMOUS
action = get_action(action_id)
if action is None:
return AuthorizationDecision(
allowed=False,
reason_code=DENY_UNKNOWN_ACTION,
detail=f"No console action registered as {action_id!r}.",
action_id=action_id,
principal=who,
)
base: dict[str, Any] = {
"action_id": action_id,
"principal": who,
"required_role": action.minimum_role,
"action_class": action.action_class,
"requires_confirmation": action.requires_confirmation,
"dual_control": action.dual_control,
"break_glass": action.break_glass,
"execution_enabled": False,
}
if not who.authenticated:
return AuthorizationDecision(
allowed=False,
reason_code=DENY_UNAUTHENTICATED,
detail=(
"Write actions require an authenticated principal; this "
"request is anonymous."
),
**base,
)
if who.rank < 0:
return AuthorizationDecision(
allowed=False,
reason_code=DENY_UNKNOWN_ROLE,
detail=f"Role {who.role!r} is not in the console role matrix.",
**base,
)
if who.rank < _ROLE_RANK[action.minimum_role]:
return AuthorizationDecision(
allowed=False,
reason_code=DENY_INSUFFICIENT_ROLE,
detail=(
f"Action {action_id!r} requires {action.minimum_role!r}; "
f"principal holds {who.role!r}."
),
**base,
)
if for_execution and action.phase > ACTIVE_PHASE:
return AuthorizationDecision(
allowed=False,
reason_code=DENY_PHASE_NOT_ACTIVE,
detail=(
f"Action {action_id!r} belongs to phase {action.phase}; the "
f"console is in phase {ACTIVE_PHASE}. Execution is not wired."
),
**base,
)
return AuthorizationDecision(
allowed=True,
reason_code=ALLOW_PREVIEW,
detail=(
"Principal holds the required role. Preview only — execution "
"remains disabled until the Phase 2 action framework ships."
),
**base,
)
def rbac_matrix() -> dict[str, Any]:
"""Machine-readable RBAC matrix and privileged-action list."""
return {
"model_version": 1,
"active_phase": ACTIVE_PHASE,
"roles": [
{
"role": role,
"rank": _ROLE_RANK[role],
"description": ROLE_DESCRIPTIONS[role],
"permitted_actions": sorted(
a.action_id
for a in _ACTION_SPECS
if _ROLE_RANK[role] >= _ROLE_RANK[a.minimum_role]
),
}
for role in ROLE_ORDER
],
"identity_sources": IDENTITY_SOURCES,
"actions": [a.to_dict() for a in _ACTION_SPECS],
"privileged_actions": [a.action_id for a in privileged_actions()],
"default_decision": "deny",
"execution_enabled": False,
}
-169
View File
@@ -1,169 +0,0 @@
"""Secret redaction policy for every console surface (#633).
The MVP already redacts MCP-side mutation records through ``gitea_audit``.
This module is the console-facing policy: one redaction pass applied to API
payloads, rendered HTML, log lines, and audit records *before* they leave the
server or reach persistent storage.
Design constraints:
- **Reuse, never fork.** ``gitea_audit.redact`` remains the authority for
secret-looking dict keys, ``Authorization`` material, and raw URLs. This
module runs that pass first and then applies console-specific patterns for
keychain references, key/value assignments, private-key blocks, and JWTs.
- **Never raises.** Redaction is a safety control; a malformed payload must
degrade to a redacted placeholder rather than propagate an exception.
- **Redact before persist.** ``webui.console_audit`` calls this module before
writing, so an unredacted record is never durable.
"""
from __future__ import annotations
import json
import re
from typing import Any
import gitea_audit
REDACTED = gitea_audit.REDACTED
# Console-specific patterns applied after the shared ``gitea_audit`` pass.
# Each keeps the identifying key so an operator can still tell *what* was
# removed, and replaces only the secret run itself.
_KEYCHAIN_REF = re.compile(r"(?i)\bkeychain:[\w.\-/@]+")
_KEYCHAIN_CMD = re.compile(
r"(?i)\bsecurity\s+find-(?:generic|internet)-password\b[^\n]*"
)
_ASSIGNMENT = re.compile(
r"(?i)\b(token|password|passwd|secret|api[_-]?key|access[_-]?key|"
r"client[_-]?secret|private[_-]?key)\b(\s*[:=]\s*)"
r"(\"[^\"]*\"|'[^']*'|\S+)"
)
_ENV_ASSIGNMENT = re.compile(
r"(?i)\b(GITEA_(?:TOKEN|PASS|PASSWORD)[A-Z0-9_]*)(\s*=\s*)"
r"(\"[^\"]*\"|'[^']*'|\S+)"
)
_PRIVATE_KEY_BLOCK = re.compile(
r"-----BEGIN [A-Z ]*PRIVATE KEY-----.*?-----END [A-Z ]*PRIVATE KEY-----",
re.S,
)
_JWT = re.compile(
r"\beyJ[A-Za-z0-9_\-]{8,}\.[A-Za-z0-9_\-]{8,}\.[A-Za-z0-9_\-]{8,}\b"
)
# Shapes that mean a payload still carries a secret. ``scan_for_secrets`` uses
# these to assert a surface is clean.
_DETECTORS: tuple[tuple[str, re.Pattern[str]], ...] = (
("keychain_reference", _KEYCHAIN_REF),
("keychain_command", _KEYCHAIN_CMD),
("credential_assignment", _ASSIGNMENT),
("credential_env_assignment", _ENV_ASSIGNMENT),
("private_key_block", _PRIVATE_KEY_BLOCK),
("json_web_token", _JWT),
("bearer_credential", re.compile(r"(?i)\b(?:bearer|basic)\s+\S{8,}")),
)
def _mask_assignment(match: re.Match[str]) -> str:
"""Keep the key and separator, replace the value."""
return f"{match.group(1)}{match.group(2)}{REDACTED}"
def redact_text(text: Any) -> Any:
"""Redact secret material from a single string.
Non-strings are returned unchanged so this is safe to map over mixed
payloads. Runs the shared ``gitea_audit`` pass first, then the
console-specific patterns.
"""
if not isinstance(text, str) or not text:
return text
try:
out = gitea_audit.redact(text)
if not isinstance(out, str): # defensive; redact() returns str for str
return REDACTED
out = _PRIVATE_KEY_BLOCK.sub(f"{REDACTED}_PRIVATE_KEY", out)
out = _ENV_ASSIGNMENT.sub(_mask_assignment, out)
out = _ASSIGNMENT.sub(_mask_assignment, out)
out = _KEYCHAIN_CMD.sub(f"{REDACTED}_KEYCHAIN_COMMAND", out)
out = _KEYCHAIN_REF.sub(f"{REDACTED}_KEYCHAIN_REF", out)
out = _JWT.sub(f"{REDACTED}_JWT", out)
return out
except Exception:
# Fail closed: an unredactable string is dropped rather than emitted raw.
return REDACTED
def redact_payload(value: Any) -> Any:
"""Recursively redact a JSON-able payload for any console surface.
Secret-looking dict keys are replaced wholesale by the shared
``gitea_audit`` policy; every remaining string is run through
:func:`redact_text`.
"""
try:
shared = gitea_audit.redact(value)
except Exception:
return REDACTED
return _walk(shared)
def _walk(value: Any) -> Any:
if isinstance(value, dict):
return {k: _walk(v) for k, v in value.items()}
if isinstance(value, (list, tuple)):
return [_walk(v) for v in value]
if isinstance(value, str):
return redact_text(value)
return value
def scan_for_secrets(value: Any) -> list[str]:
"""Return detector names that still match *value* after serialization.
Used to assert an outbound payload or rendered page is clean. An empty
list means no known secret shape was found. Already-redacted hits are not
findings.
"""
if isinstance(value, str):
text = value
else:
try:
text = json.dumps(value, default=str)
except Exception:
text = str(value)
findings: list[str] = []
for name, pattern in _DETECTORS:
for match in pattern.finditer(text):
if REDACTED in match.group(0):
continue
findings.append(name)
break
return findings
def redaction_policy() -> dict[str, Any]:
"""Machine-readable statement of the redaction rules (never secrets)."""
return {
"policy_version": 1,
"applies_to": [
"json_api_responses",
"rendered_html",
"server_logs",
"audit_records",
],
"ordering": "shared gitea_audit pass, then console patterns",
"redact_before_persist": True,
"shared_rules": {
"source": "gitea_audit.redact",
"secret_key_hints": list(gitea_audit._SECRET_KEY_HINTS),
"secret_value_prefixes": list(gitea_audit._SECRET_VALUE_PREFIXES),
"urls": "credentials, secret query parameters, and real hosts redacted",
},
"console_rules": [
{"name": name, "pattern": pattern.pattern}
for name, pattern in _DETECTORS
],
"placeholder": REDACTED,
"failure_mode": "fail closed — unredactable values become the placeholder",
}
+952
View File
@@ -0,0 +1,952 @@
"""Unified session/lease/lock/worktree inventory for the web console (#636).
Leases (#433), worktrees (#432), and runtime (#430) each ship their own MVP
view, each with its own shape and its own idea of what "owned" means. A
traffic-control or recovery operator has to read all three and correlate them
by hand, which is exactly the step that goes wrong under collision pressure.
This module aggregates them into one versioned, read-only snapshot so the
console, and any worker asking "what is safe to do next", read the same
inventory from the same authority.
Field authority is explicit and never blended. Every section declares where its
rows came from:
* ``control_plane_db`` — the #613 substrate: sessions, leases, assignments.
Authoritative for *exclusive ownership* (#600/#601).
* ``filesystem`` — durable per-issue lock files (:mod:`issue_lock_store`) and
registered git worktrees. Authoritative for *what exists on this machine*.
* ``gitea`` — remote issue/PR state, reached only through existing loaders.
Safety invariants:
* **Read-only.** The control-plane database is opened through a ``mode=ro``
URI. :class:`control_plane_db.ControlPlaneDB` creates directories and runs
migrations in its constructor, which an inventory read must never do, so this
module talks to sqlite directly rather than through that class.
* **Fail-soft, never fail-silent.** A subsystem that cannot be read degrades to
a section carrying ``status`` and ``reason``. It never raises, and it never
produces an empty list that reads like "nothing is there".
* **Never invent active ownership.** This is the invariant that matters most.
A degraded ownership source sets ``ownership_authority_complete`` false, and
while that flag is false no work item is reported unowned and no collision is
asserted. Absence of evidence is reported as absence of evidence.
* **Redaction at the boundary.** Absolute paths are collapsed against the home
directory, URLs lose userinfo and query strings, and no credential-shaped
value is emitted. No session token exists in these sources and none is read.
Phase 1 is read-only. Lease steal/release and worktree deletion are Phase 2+
and deliberately have no representation here, not even a disabled one.
"""
from __future__ import annotations
import os
import re
import sqlite3
import time
from dataclasses import dataclass, field
from datetime import datetime, timezone
from typing import Any, Callable
from urllib.parse import urlparse
import control_plane_db
import issue_lock_store
SCHEMA_VERSION = 1
API_VERSION = "v1"
#: Sections whose absence would make an ownership claim unprovable. If any of
#: these is not ``ok``, the snapshot refuses to describe anything as unowned.
OWNERSHIP_SECTIONS = ("sessions", "leases", "locks")
SECTION_NAMES = ("sessions", "leases", "locks", "worktrees", "namespaces")
STATUS_OK = "ok"
STATUS_DEGRADED = "degraded"
STATUS_UNAVAILABLE = "unavailable"
AUTHORITY_CONTROL_PLANE_DB = "control_plane_db"
AUTHORITY_FILESYSTEM = "filesystem"
AUTHORITY_GITEA = "gitea"
_CREDENTIAL_KEY_RE = re.compile(
r"(token|secret|password|passwd|api[_-]?key|authorization|bearer|credential)",
re.IGNORECASE,
)
_REDACTED = "[redacted]"
@dataclass(frozen=True)
class InventorySection:
"""One subsystem's contribution, with its authority and health."""
name: str
authority: str
status: str
items: tuple[dict[str, Any], ...] = ()
reason: str | None = None
scan_ms: float | None = None
@property
def ok(self) -> bool:
return self.status == STATUS_OK
def to_dict(self) -> dict[str, Any]:
return {
"name": self.name,
"authority": self.authority,
"status": self.status,
"count": len(self.items),
"reason": self.reason,
"scan_ms": self.scan_ms,
"items": [dict(item) for item in self.items],
}
@dataclass(frozen=True)
class CollisionSignal:
"""A detected conflict between two ownership records."""
kind: str
message: str
severity: str = "warning"
issue_number: int | None = None
branch: str | None = None
worktree_path: str | None = None
session_ids: tuple[str, ...] = ()
def to_dict(self) -> dict[str, Any]:
return {
"kind": self.kind,
"severity": self.severity,
"message": self.message,
"issue_number": self.issue_number,
"branch": self.branch,
"worktree_path": self.worktree_path,
"session_ids": list(self.session_ids),
}
@dataclass(frozen=True)
class InventorySnapshot:
"""Versioned aggregate of every inventory section."""
generated_at: str
sections: tuple[InventorySection, ...]
collisions: tuple[CollisionSignal, ...] = ()
correlations: tuple[dict[str, Any], ...] = ()
schema_version: int = SCHEMA_VERSION
api_version: str = API_VERSION
scan_ms: float | None = None
_section_index: dict[str, InventorySection] = field(
default_factory=dict, repr=False, compare=False
)
def section(self, name: str) -> InventorySection | None:
return self._section_index.get(name)
@property
def degraded_sections(self) -> tuple[str, ...]:
return tuple(s.name for s in self.sections if not s.ok)
@property
def ownership_authority_complete(self) -> bool:
"""True only when every ownership-bearing section read cleanly.
While this is false the snapshot must not describe any work item as
unowned: a lease the reader could not load is not an absent lease.
"""
for name in OWNERSHIP_SECTIONS:
section = self._section_index.get(name)
if section is None or not section.ok:
return False
return True
@property
def status(self) -> str:
if all(s.ok for s in self.sections):
return STATUS_OK
return STATUS_DEGRADED
# ── redaction ────────────────────────────────────────────────────────────────
def redact_path(path: str | None) -> str | None:
"""Collapse an absolute path against ``$HOME`` for browser display."""
if not path:
return path
text = str(path)
home = os.path.expanduser("~")
if home and home != "/" and text.startswith(home):
return "~" + text[len(home) :]
return text
def redact_url(value: str | None) -> str | None:
"""Strip userinfo and query string from a URL."""
if not value:
return value
text = str(value)
try:
parsed = urlparse(text)
except ValueError:
return _REDACTED
if not parsed.scheme or not parsed.netloc:
return text
netloc = parsed.hostname or ""
if parsed.port:
netloc = f"{netloc}:{parsed.port}"
rebuilt = f"{parsed.scheme}://{netloc}{parsed.path}"
return rebuilt.rstrip("/") or rebuilt
def scrub(value: Any, *, key: str | None = None) -> Any:
"""Recursively drop credential-shaped values and redact paths/URLs.
Never raises: an unexpected object degrades to its ``repr`` rather than
propagating out of a read-only view.
"""
if key and _CREDENTIAL_KEY_RE.search(key):
return _REDACTED
if isinstance(value, dict):
return {str(k): scrub(v, key=str(k)) for k, v in value.items()}
if isinstance(value, (list, tuple)):
return [scrub(v, key=key) for v in value]
if isinstance(value, str):
if value.startswith(("http://", "https://")):
return redact_url(value)
if value.startswith("/") or value.startswith("~"):
return redact_path(value)
return value
if isinstance(value, (int, float, bool)) or value is None:
return value
return repr(value)
# ── control-plane database (read-only) ───────────────────────────────────────
def _open_readonly(db_path: str) -> sqlite3.Connection:
"""Open the control-plane DB without creating or migrating anything."""
conn = sqlite3.connect(f"file:{db_path}?mode=ro", uri=True, timeout=5)
conn.row_factory = sqlite3.Row
return conn
def _table_names(conn: sqlite3.Connection) -> set[str]:
rows = conn.execute(
"SELECT name FROM sqlite_master WHERE type = 'table'"
).fetchall()
return {str(row[0]) for row in rows}
def _load_cp_db_sections(
*,
db_path: str | None = None,
limit: int = 200,
) -> tuple[InventorySection, InventorySection]:
"""Return the ``sessions`` and ``leases`` sections from the #613 DB."""
path = (db_path or control_plane_db.default_db_path()).strip()
def _both_unavailable(reason: str) -> tuple[InventorySection, InventorySection]:
return (
InventorySection(
name="sessions",
authority=AUTHORITY_CONTROL_PLANE_DB,
status=STATUS_UNAVAILABLE,
reason=reason,
),
InventorySection(
name="leases",
authority=AUTHORITY_CONTROL_PLANE_DB,
status=STATUS_UNAVAILABLE,
reason=reason,
),
)
if not path:
return _both_unavailable("control-plane database path is not configured")
if not os.path.exists(path):
return _both_unavailable(
f"control-plane database not present at {redact_path(path)}; "
"no session or lease authority available"
)
started = time.perf_counter()
try:
conn = _open_readonly(path)
except sqlite3.Error as exc:
return _both_unavailable(f"control-plane database could not be opened: {exc}")
try:
tables = _table_names(conn)
if "sessions" not in tables or "leases" not in tables:
missing = sorted({"sessions", "leases"} - tables)
return _both_unavailable(
"control-plane database is missing required tables: "
+ ", ".join(missing)
)
session_rows = [
dict(row)
for row in conn.execute(
"SELECT session_id, role, profile, namespace, pid, started_at,"
" last_heartbeat_at, status FROM sessions"
" ORDER BY last_heartbeat_at DESC LIMIT ?",
(max(1, int(limit)),),
).fetchall()
]
has_work_items = "work_items" in tables
if has_work_items:
lease_sql = (
"SELECT l.lease_id, l.session_id, l.role, l.phase, l.status,"
" l.expires_at, w.remote, w.org, w.repo, w.kind AS work_kind,"
" w.number AS work_number, w.state AS work_state,"
" s.pid AS session_pid, s.profile AS session_profile,"
" s.namespace AS session_namespace, s.status AS session_status"
" FROM leases l"
" JOIN work_items w ON w.work_item_id = l.work_item_id"
" LEFT JOIN sessions s ON s.session_id = l.session_id"
" ORDER BY l.expires_at DESC LIMIT ?"
)
else:
lease_sql = (
"SELECT l.lease_id, l.session_id, l.role, l.phase, l.status,"
" l.expires_at FROM leases l"
" ORDER BY l.expires_at DESC LIMIT ?"
)
lease_rows = [
dict(row)
for row in conn.execute(lease_sql, (max(1, int(limit)),)).fetchall()
]
except sqlite3.Error as exc:
return _both_unavailable(f"control-plane database read failed: {exc}")
finally:
conn.close()
elapsed = (time.perf_counter() - started) * 1000.0
now = datetime.now(timezone.utc)
sessions = tuple(
scrub(
{
"session_id": row.get("session_id"),
"role": row.get("role"),
"profile": row.get("profile"),
"namespace": row.get("namespace"),
"pid": row.get("pid"),
"pid_alive": issue_lock_store.is_process_alive(row.get("pid")),
"started_at": row.get("started_at"),
"last_heartbeat_at": row.get("last_heartbeat_at"),
"status": row.get("status"),
}
)
for row in session_rows
)
leases = tuple(
scrub(
{
"lease_id": row.get("lease_id"),
"session_id": row.get("session_id"),
"role": row.get("role"),
"phase": row.get("phase"),
"status": row.get("status"),
"expires_at": row.get("expires_at"),
"expired": _is_expired(row.get("expires_at"), now=now),
"remote": row.get("remote"),
"org": row.get("org"),
"repo": row.get("repo"),
"work_kind": row.get("work_kind"),
"work_number": row.get("work_number"),
"work_state": row.get("work_state"),
"session_pid": row.get("session_pid"),
"session_profile": row.get("session_profile"),
"session_namespace": row.get("session_namespace"),
"session_status": row.get("session_status"),
}
)
for row in lease_rows
)
degraded_reason = (
None
if has_work_items
else "work_items table absent; lease rows carry no work linkage"
)
lease_status = STATUS_OK if has_work_items else STATUS_DEGRADED
return (
InventorySection(
name="sessions",
authority=AUTHORITY_CONTROL_PLANE_DB,
status=STATUS_OK,
items=sessions,
scan_ms=round(elapsed, 3),
),
InventorySection(
name="leases",
authority=AUTHORITY_CONTROL_PLANE_DB,
status=lease_status,
items=leases,
reason=degraded_reason,
scan_ms=round(elapsed, 3),
),
)
def _is_expired(expires_at: str | None, *, now: datetime) -> bool | None:
if not expires_at:
return None
text = str(expires_at).strip().replace("Z", "+00:00")
try:
parsed = datetime.fromisoformat(text)
except ValueError:
return None
if parsed.tzinfo is None:
parsed = parsed.replace(tzinfo=timezone.utc)
return parsed <= now
# ── durable issue locks (filesystem) ─────────────────────────────────────────
def _load_locks_section(*, lock_dir: str | None = None) -> InventorySection:
started = time.perf_counter()
try:
paths = issue_lock_store.iter_lock_files(lock_dir)
except OSError as exc:
return InventorySection(
name="locks",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_UNAVAILABLE,
reason=f"issue lock directory could not be listed: {exc}",
)
items: list[dict[str, Any]] = []
unreadable = 0
for path in paths:
try:
record = issue_lock_store.read_lock_file(path)
except (OSError, ValueError):
unreadable += 1
continue
if not record:
unreadable += 1
continue
try:
freshness = issue_lock_store.assess_lock_freshness(record)
except Exception: # noqa: BLE001 — a read-only view never raises
freshness = {"status": "unknown", "live": False, "stale": False}
claimant = record.get("claimant") or (
(record.get("work_lease") or {}).get("claimant") or {}
)
items.append(
scrub(
{
"issue_number": record.get("issue_number"),
"branch_name": record.get("branch_name"),
"remote": record.get("remote"),
"org": record.get("org"),
"repo": record.get("repo"),
"worktree_path": record.get("worktree_path"),
"pid": record.get("session_pid") or record.get("pid"),
"pid_alive": issue_lock_store.is_process_alive(
record.get("session_pid") or record.get("pid")
),
"claimant_username": (claimant or {}).get("username"),
"claimant_profile": (claimant or {}).get("profile"),
"lock_generation": record.get("lock_generation"),
"freshness_status": freshness.get("status"),
"live": bool(freshness.get("live")),
"stale": bool(freshness.get("stale")),
"freshness_reason": freshness.get("reason"),
"lock_path": record.get("lock_file_path") or path,
}
)
)
elapsed = (time.perf_counter() - started) * 1000.0
reason = (
f"{unreadable} lock file(s) were unreadable and are not represented"
if unreadable
else None
)
return InventorySection(
name="locks",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_DEGRADED if unreadable else STATUS_OK,
items=tuple(items),
reason=reason,
scan_ms=round(elapsed, 3),
)
# ── worktrees (filesystem, via the #432 scanner) ─────────────────────────────
def _load_worktrees_section(
*, load_hygiene: Callable[[], Any] | None = None
) -> InventorySection:
started = time.perf_counter()
try:
loader = load_hygiene
if loader is None:
from webui.worktree_scanner import load_hygiene_snapshot
loader = load_hygiene_snapshot
snapshot = loader()
except Exception as exc: # noqa: BLE001 — fail soft, never fail the request
return InventorySection(
name="worktrees",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_UNAVAILABLE,
reason=f"worktree scan failed: {exc}",
)
items = tuple(
scrub(
{
"rel_path": entry.rel_path,
"folder_name": entry.folder_name,
"classification": entry.classification,
"branch": entry.branch,
"head_sha": entry.head_sha,
"dirty_tracked": entry.dirty_tracked,
"dirty_untracked": entry.dirty_untracked,
"detached": entry.detached,
"registered_worktree": entry.registered_worktree,
"notes": entry.notes,
}
)
for entry in snapshot.entries
)
scan_error = getattr(snapshot, "scan_error", None)
elapsed = (time.perf_counter() - started) * 1000.0
return InventorySection(
name="worktrees",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_DEGRADED if scan_error else STATUS_OK,
items=items,
reason=scan_error,
scan_ms=round(elapsed, 3),
)
# ── namespaces / capability summary ──────────────────────────────────────────
def _load_namespaces_section() -> InventorySection:
started = time.perf_counter()
try:
from gitea_auth import get_profile
profile = get_profile() or {}
except Exception as exc: # noqa: BLE001
return InventorySection(
name="namespaces",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_UNAVAILABLE,
reason=f"active profile could not be resolved: {exc}",
)
allowed = list(profile.get("allowed_operations") or [])
forbidden = list(profile.get("forbidden_operations") or [])
profile_name = str(profile.get("profile_name") or "")
namespace = None
try:
import role_namespace_gate
namespace = role_namespace_gate.infer_mcp_namespace(profile_name)
except Exception: # noqa: BLE001 — namespace inference is advisory
namespace = None
item = scrub(
{
"profile_name": profile_name,
"role": profile.get("role"),
"mcp_namespace": namespace,
"allowed_operations": sorted(allowed),
"forbidden_operations": sorted(forbidden),
"capability_summary": {
"can_author": "gitea.pr.create" in allowed,
"can_review": "gitea.pr.approve" in allowed,
"can_merge": "gitea.pr.merge" in allowed,
"can_close_pr": "gitea.pr.close" in allowed,
},
"active": True,
}
)
elapsed = (time.perf_counter() - started) * 1000.0
return InventorySection(
name="namespaces",
authority=AUTHORITY_FILESYSTEM,
status=STATUS_OK,
items=(item,),
reason=(
"only the profile serving this web process is observable; other "
"namespaces are not enumerable from here"
),
scan_ms=round(elapsed, 3),
)
# ── correlation and collision detection ──────────────────────────────────────
def _issue_from_branch(branch: str | None) -> int | None:
match = re.search(r"issue-(\d+)", str(branch or ""), re.IGNORECASE)
return int(match.group(1)) if match else None
def correlate(
*,
leases: InventorySection,
locks: InventorySection,
worktrees: InventorySection,
sessions: InventorySection,
) -> tuple[tuple[dict[str, Any], ...], tuple[CollisionSignal, ...]]:
"""Join lease owner ↔ lock ↔ worktree ↔ namespace where evidence allows.
Correlation rows are emitted from whatever sections did load. Collision
signals are only emitted from sections that are ``ok``: a conflict inferred
from a partially-read source would be a false accusation.
"""
correlations: list[dict[str, Any]] = []
collisions: list[CollisionSignal] = []
worktree_by_branch: dict[str, dict[str, Any]] = {}
for entry in worktrees.items:
branch = (entry.get("branch") or "").strip()
if branch:
worktree_by_branch.setdefault(branch, entry)
session_by_id = {
str(s.get("session_id")): s for s in sessions.items if s.get("session_id")
}
# Lock-centred rows: a durable lock names an issue, a branch, and a worktree.
for lock in locks.items:
branch = (lock.get("branch_name") or "").strip()
worktree = worktree_by_branch.get(branch)
matching_leases = [
lease
for lease in leases.items
if lease.get("work_kind") == "issue"
and lease.get("work_number") == lock.get("issue_number")
]
correlations.append(
{
"issue_number": lock.get("issue_number"),
"branch": branch or None,
"lock_live": bool(lock.get("live")),
"lock_claimant": lock.get("claimant_profile"),
"lock_pid": lock.get("pid"),
"lock_pid_alive": lock.get("pid_alive"),
"worktree_rel_path": (worktree or {}).get("rel_path"),
"worktree_classification": (worktree or {}).get("classification"),
"worktree_registered": (worktree or {}).get("registered_worktree"),
"lease_ids": [
lease.get("lease_id")
for lease in matching_leases
if lease.get("lease_id")
],
"lease_sessions": [
lease.get("session_id")
for lease in matching_leases
if lease.get("session_id")
],
}
)
if locks.ok and worktrees.ok:
# A claim whose lease window is still open but has no registered
# worktree is an anomaly regardless of whether its pid is alive; a
# fully time-expired lease is on its way out and is not flagged.
if (
lock.get("freshness_status") != "expired"
and branch
and worktree is None
):
collisions.append(
CollisionSignal(
kind="lock-without-worktree",
severity="warning",
issue_number=lock.get("issue_number"),
branch=branch,
worktree_path=lock.get("worktree_path"),
message=(
f"Live lock on issue #{lock.get('issue_number')} names "
f"branch {branch!r} but no registered worktree carries "
"that branch (#404)"
),
)
)
if locks.ok:
# A lock whose recorded pid is gone is held by nobody: a clean #753
# dead-session recovery candidate. Subclassify by the lease window,
# because the two cases need different operator urgency. When the
# window is still open the lock would read as live to a naive
# timestamp check even though the owner is dead — the more dangerous
# case — so it is flagged distinctly from a fully time-expired lease.
if lock.get("pid_alive") is False and lock.get("stale"):
if lock.get("freshness_status") == "expired":
collisions.append(
CollisionSignal(
kind="stale-lock-dead-owner",
severity="warning",
issue_number=lock.get("issue_number"),
branch=branch or None,
message=(
f"Lock on issue #{lock.get('issue_number')} is stale "
f"and its recorded pid {lock.get('pid')} is not running "
"(#753 dead-session recovery candidate)"
),
)
)
else:
collisions.append(
CollisionSignal(
kind="live-lock-dead-owner",
severity="warning",
issue_number=lock.get("issue_number"),
branch=branch or None,
message=(
f"Lock on issue #{lock.get('issue_number')} has an "
"unexpired lease but its recorded pid "
f"{lock.get('pid')} is not running; it would read as "
"live to a timestamp check (#753 dead-session recovery "
"candidate)"
),
)
)
# The #635 trap: the lease has expired but the recorded pid is a
# still-running daemon, so neither dead-pid reclaim nor exact-owner
# renewal applies. This is the collision an operator must see.
elif (
lock.get("freshness_status") == "expired"
and lock.get("pid_alive") is True
):
collisions.append(
CollisionSignal(
kind="expired-lock-live-owner",
severity="error",
issue_number=lock.get("issue_number"),
branch=branch or None,
message=(
f"Lock on issue #{lock.get('issue_number')} has an expired "
f"lease but its recorded pid {lock.get('pid')} is still "
"running (daemon-pid deadlock; needs an operator decision, "
"#635/#760)"
),
)
)
# Two live locks on one branch, or two active leases on one work item.
if locks.ok:
by_branch: dict[str, list[dict[str, Any]]] = {}
for lock in locks.items:
if not lock.get("live"):
continue
branch = (lock.get("branch_name") or "").strip()
if branch:
by_branch.setdefault(branch, []).append(lock)
for branch, entries in sorted(by_branch.items()):
if len(entries) > 1:
collisions.append(
CollisionSignal(
kind="duplicate-live-lock",
severity="error",
branch=branch,
message=(
f"{len(entries)} live locks name branch {branch!r}: "
"issues "
+ ", ".join(
f"#{e.get('issue_number')}" for e in entries
)
),
)
)
if leases.ok:
by_work: dict[tuple[str, int], list[dict[str, Any]]] = {}
for lease in leases.items:
if str(lease.get("status") or "").lower() != "active":
continue
kind = str(lease.get("work_kind") or "").strip().lower()
number = lease.get("work_number")
if not kind or number is None:
continue
by_work.setdefault((kind, int(number)), []).append(lease)
for (kind, number), entries in sorted(by_work.items()):
sessions_held = {
str(e.get("session_id")) for e in entries if e.get("session_id")
}
if len(sessions_held) > 1:
collisions.append(
CollisionSignal(
kind="concurrent-active-lease",
severity="error",
issue_number=number if kind == "issue" else None,
session_ids=tuple(sorted(sessions_held)),
message=(
f"{len(sessions_held)} sessions hold an active lease on "
f"{kind} #{number}"
),
)
)
for entry in entries:
if entry.get("expired") is True:
collisions.append(
CollisionSignal(
kind="active-lease-past-expiry",
severity="warning",
issue_number=number if kind == "issue" else None,
session_ids=(
(str(entry.get("session_id")),)
if entry.get("session_id")
else ()
),
message=(
f"Lease {entry.get('lease_id')} on {kind} #{number} "
"is still marked active past its expiry"
),
)
)
# A lease whose owning session is gone is an orphan, not free work.
if leases.ok and sessions.ok:
for lease in leases.items:
if str(lease.get("status") or "").lower() != "active":
continue
session_id = str(lease.get("session_id") or "")
if session_id and session_id not in session_by_id:
collisions.append(
CollisionSignal(
kind="orphan-lease",
severity="error",
session_ids=(session_id,),
message=(
f"Active lease {lease.get('lease_id')} names session "
f"{session_id}, which has no session record"
),
)
)
return tuple(correlations), tuple(collisions)
# ── snapshot assembly ────────────────────────────────────────────────────────
def load_inventory_snapshot(
*,
db_path: str | None = None,
lock_dir: str | None = None,
load_hygiene: Callable[[], Any] | None = None,
include: tuple[str, ...] | None = None,
) -> InventorySnapshot:
"""Build the unified inventory snapshot.
Every section is loaded independently and fails soft. *include* restricts
the sections that are scanned; omitted sections are simply absent rather
than reported as empty, so a resource-split request cannot be mistaken for
a whole-inventory answer.
"""
started = time.perf_counter()
wanted = tuple(include) if include else SECTION_NAMES
sections: list[InventorySection] = []
sessions_section: InventorySection | None = None
leases_section: InventorySection | None = None
if "sessions" in wanted or "leases" in wanted:
sessions_section, leases_section = _load_cp_db_sections(db_path=db_path)
if "sessions" in wanted:
sections.append(sessions_section)
if "leases" in wanted:
sections.append(leases_section)
locks_section = (
_load_locks_section(lock_dir=lock_dir)
if "locks" in wanted
else _empty_section("locks", AUTHORITY_FILESYSTEM)
)
if "locks" in wanted:
sections.append(locks_section)
worktrees_section = (
_load_worktrees_section(load_hygiene=load_hygiene)
if "worktrees" in wanted
else _empty_section("worktrees", AUTHORITY_FILESYSTEM)
)
if "worktrees" in wanted:
sections.append(worktrees_section)
if "namespaces" in wanted:
sections.append(_load_namespaces_section())
correlations, collisions = correlate(
leases=leases_section or _empty_section("leases", AUTHORITY_CONTROL_PLANE_DB),
locks=locks_section,
worktrees=worktrees_section,
sessions=sessions_section
or _empty_section("sessions", AUTHORITY_CONTROL_PLANE_DB),
)
elapsed = (time.perf_counter() - started) * 1000.0
index = {section.name: section for section in sections}
return InventorySnapshot(
generated_at=datetime.now(timezone.utc).isoformat(),
sections=tuple(sections),
collisions=collisions,
correlations=correlations,
scan_ms=round(elapsed, 3),
_section_index=index,
)
def _empty_section(name: str, authority: str) -> InventorySection:
"""A section that was not requested — never a claim that it is empty."""
return InventorySection(
name=name,
authority=authority,
status=STATUS_UNAVAILABLE,
reason="section not requested in this scan",
)
def snapshot_to_dict(snapshot: InventorySnapshot) -> dict[str, Any]:
"""Serialize the snapshot for the versioned API."""
return {
"api_version": snapshot.api_version,
"schema_version": snapshot.schema_version,
"generated_at": snapshot.generated_at,
"status": snapshot.status,
"scan_ms": snapshot.scan_ms,
"ownership_authority_complete": snapshot.ownership_authority_complete,
"ownership_note": (
"Every ownership source read cleanly; an item absent from leases "
"and locks is genuinely unclaimed."
if snapshot.ownership_authority_complete
else "One or more ownership sources are degraded; nothing in this "
"snapshot may be treated as unowned. Collisions are reported only "
"from sections that read cleanly."
),
"degraded_sections": list(snapshot.degraded_sections),
"field_authority": {
"sessions": AUTHORITY_CONTROL_PLANE_DB,
"leases": AUTHORITY_CONTROL_PLANE_DB,
"locks": AUTHORITY_FILESYSTEM,
"worktrees": AUTHORITY_FILESYSTEM,
"namespaces": AUTHORITY_FILESYSTEM,
},
"sections": {section.name: section.to_dict() for section in snapshot.sections},
"correlations": [dict(row) for row in snapshot.correlations],
"collisions": [signal.to_dict() for signal in snapshot.collisions],
}