T03. §9.6 gives load-bearing and attributive sources different obligations, so the archive must record which one a source declared rather than infer it from traffic. evidence_kind and completeness_trade now sit on SenderIdentity, the AUDIT_CORE_SENDERS schema, and the non-secret scope overlay. Two asymmetries are deliberate. The default is attributive, because the other default would have audit-core imply a completeness obligation no source ever accepted. And the overlay may raise the kind but never lower it — the same principle that stops an ExternalSecret refresh shrinking user-engine's tenants: a ConfigMap refresh must not drop a source's atomicity and detection obligations without anyone deciding to. A load-bearing source may not carry a completeness trade at all, since §9.6 requires atomicity of it, and evidence_declaration() reports completeness_claimed: false for both kinds. T09 (in progress). approval-engine's registration inputs are prepared and recorded in docs/approval-engine-source-registration.md: scope entry declared load-bearing, and audit-core-approval-engine-ingress with namespace and pod label ANDed in one `from` peer — narrower than user-engine's namespace-only rule, which is left unchanged. The scope entry lands ahead of the credential because the overlay only applies to senders the Secret already carries, so it admits nothing until the token exists; a test asserts that rather than trusting the reading. Two inputs remain approval-engine's: a confirmed tenant scope, since senders.py requires a missing tenant restriction be justified per sender and audit-core cannot justify it on another repo's behalf, and an explicit secret_policy choice. Applying the manifests is an operator action. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_0185wifnLzCxjEY2MT1XbK7L Assistant: claude-code Assistant-Model: opus Assistant-Process: 713962@bnt-lap001 Assistant-Session: 2718d99d-d3ff-478f-83a2-3a30f01a02fc
61 lines
2.3 KiB
Python
61 lines
2.3 KiB
Python
from pathlib import Path
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ROOT = Path(__file__).parents[1]
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def test_whitehat_ingress_is_bound_to_namespace_and_target_labels():
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documents = (ROOT / "deploy" / "networkpolicies.yaml").read_text().split("\n---\n")
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policy = next(
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document
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for document in documents
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if "name: audit-core-whitehat-ingress" in document
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)
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# Both selectors must remain in the same `from` peer. Splitting them into
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# two list items changes AND to OR and would admit every pod in either set.
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expected_peer = """ - namespaceSelector:
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matchLabels:
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kubernetes.io/metadata.name: whitehat
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podSelector:
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matchLabels:
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whitehat.security/plane: \"true\"
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whitehat.security/target: audit-core"""
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assert expected_peer in policy
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assert policy.count(" - namespaceSelector:") == 1
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assert " - {protocol: TCP, port: 8080}" in policy
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def test_approval_engine_ingress_is_bound_to_namespace_and_pod_labels():
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"""AUDIT-WP-0009-T09. A load-bearing source gets a narrow rule, not a wide one."""
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documents = (ROOT / "deploy" / "networkpolicies.yaml").read_text().split("\n---\n")
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policy = next(
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document
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for document in documents
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if "name: audit-core-approval-engine-ingress" in document
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)
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# One `from` peer holding both selectors. Two list items would be OR, and
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# would admit every pod in the approval-engine namespace plus every pod
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# anywhere carrying the app label.
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expected_peer = """ - namespaceSelector:
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matchLabels:
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kubernetes.io/metadata.name: approval-engine
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podSelector:
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matchLabels:
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app.kubernetes.io/name: approval-engine"""
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assert expected_peer in policy
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assert policy.count(" - namespaceSelector:") == 1
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assert " - {protocol: TCP, port: 8080}" in policy
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def test_user_engine_sender_ingress_is_unchanged_by_the_new_sender():
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"""glas-harness asked for user-engine's sender to stay as it is."""
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documents = (ROOT / "deploy" / "networkpolicies.yaml").read_text().split("\n---\n")
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policy = next(
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document
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for document in documents
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if "name: audit-core-sender-ingress" in document
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)
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assert "kubernetes.io/metadata.name: user-engine" in policy
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assert "approval-engine" not in policy
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