62fafaaec5
3-Tier-MaschinenVO-Verdict (direkt / sicherheitsrelevant / nicht relevant) aus Personengefährdungs-Signal: eine Komponente ist keine Maschine, aber wenn ihre Funktion bei Fehler ODER Manipulation Personen gefaehrden kann (Bewegung, Laser/ Auge, Kraft, Temperatur, elektrisch), ist sie sicherheitsrelevant — Pflicht trifft den Maschinenbauer, Zulieferer liefert Nachweise, und ein Cyber-Angriff kann die Sicherheitsfunktion aushebeln (Cyber-Safety-Bruecke). OWIS-mit-Laser landet so korrekt als 'sicherheitsrelevante Komponente'. Engine + /readiness additiv; Frontend: Gefährdungs-Frage + -Typen, MaschinenVO-Ergebnisblock. Presets aktualisiert (OWIS: Laser+Bewegung, Zwick: Bewegung). 22 Tests gruen. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
122 lines
4.8 KiB
Python
122 lines
4.8 KiB
Python
"""Neutral CRA applicability verdict (Eingangstür): legal duty vs market pull."""
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from compliance.services.cra_applicability import (
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ZWINGEND, RATSAM, NICHT_BETROFFEN, COMPONENT, MACHINE_INTEGRATOR,
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MV_DIREKT, MV_SICHERHEITSRELEVANT, MV_NICHT,
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compute_verdict, compute_machinery_verdict, maturity, in_scope, EVIDENCE_ITEMS,
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)
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class TestInScope:
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def test_digital_element_classes_are_in_scope(self):
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for c in ("STANDARD", "IMPORTANT_I", "IMPORTANT_II", "CRITICAL"):
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assert in_scope(c) is True
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def test_not_in_scope(self):
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assert in_scope("NOT_IN_SCOPE") is False
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assert in_scope("") is False
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class TestVerdict:
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def test_zwingend_when_in_scope_and_after_cutoff(self):
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v = compute_verdict("STANDARD", True)
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assert v["tier"] == ZWINGEND
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assert v["in_scope"] is True
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def test_ratsam_when_in_scope_but_not_after_cutoff(self):
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v = compute_verdict("STANDARD", False)
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assert v["tier"] == RATSAM
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assert any("Geltungszeitraum" in r for r in v["reasons"])
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def test_nicht_betroffen_when_no_digital_elements(self):
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v = compute_verdict("NOT_IN_SCOPE", True)
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assert v["tier"] == NICHT_BETROFFEN
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assert v["in_scope"] is False
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def test_unknown_market_date_assumed_after_cutoff(self):
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# None = unknown -> conservative -> zwingend
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v = compute_verdict("STANDARD", None)
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assert v["tier"] == ZWINGEND
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assert v["placed_on_market_after_cutoff"] is True
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def test_component_has_market_pull_without_explicit_signal(self):
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v = compute_verdict("STANDARD", True, producer_type=COMPONENT)
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assert v["market_pull"] is True
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assert any("Markt-Druck" in r for r in v["reasons"])
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def test_customers_request_sets_market_pull(self):
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v = compute_verdict("STANDARD", True, producer_type="end_device", customers_request=True)
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assert v["market_pull"] is True
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def test_end_device_no_signal_no_market_pull(self):
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v = compute_verdict("STANDARD", True, producer_type="end_device")
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assert v["market_pull"] is False
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def test_not_betroffen_with_market_pull_adds_hint_not_pull_reason(self):
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v = compute_verdict("NOT_IN_SCOPE", True, producer_type=COMPONENT)
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assert v["tier"] == NICHT_BETROFFEN
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assert any("anfragen" in r for r in v["reasons"])
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def test_class_passthrough_uppercased(self):
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v = compute_verdict("important_ii", True)
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assert v["cra_class"] == "IMPORTANT_II"
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class TestMachineryVerdict:
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def test_machine_integrator_is_direct(self):
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v = compute_machinery_verdict(producer_type=MACHINE_INTEGRATOR)
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assert v["tier"] == MV_DIREKT
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assert v["cyber_safety_bridge"] is True
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def test_is_machinery_flag_is_direct(self):
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v = compute_machinery_verdict(producer_type="end_device", is_machinery=True)
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assert v["tier"] == MV_DIREKT
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def test_component_with_person_hazard_is_safety_relevant(self):
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# OWIS-with-laser borderline: component, not a machine, but can harm persons
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v = compute_machinery_verdict(
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producer_type=COMPONENT, safety_relevant=True, hazard_types=["laser_radiation", "movement_crush"],
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)
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assert v["tier"] == MV_SICHERHEITSRELEVANT
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assert v["cyber_safety_bridge"] is True
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assert {h["key"] for h in v["hazards"]} == {"laser_radiation", "movement_crush"}
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def test_hazard_types_alone_imply_safety_relevant(self):
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v = compute_machinery_verdict(producer_type=COMPONENT, hazard_types=["force_energy"])
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assert v["tier"] == MV_SICHERHEITSRELEVANT
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def test_component_no_hazard_not_relevant(self):
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v = compute_machinery_verdict(producer_type=COMPONENT)
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assert v["tier"] == MV_NICHT
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assert v["cyber_safety_bridge"] is False
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def test_safety_component_is_direct(self):
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v = compute_machinery_verdict(producer_type=COMPONENT, is_safety_component=True)
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assert v["tier"] == MV_DIREKT
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def test_unknown_hazard_keys_ignored(self):
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v = compute_machinery_verdict(producer_type=COMPONENT, hazard_types=["nonsense"])
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assert v["hazards"] == []
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assert v["tier"] == MV_NICHT
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class TestMaturity:
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def test_empty_is_zero(self):
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m = maturity([])
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assert m["pct"] == 0
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assert len(m["missing"]) == len(EVIDENCE_ITEMS)
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assert m["present"] == []
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def test_partial(self):
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m = maturity(["sbom", "vdp"])
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assert m["pct"] == round(100 * 2 / len(EVIDENCE_ITEMS))
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assert {e["key"] for e in m["present"]} == {"sbom", "vdp"}
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def test_unknown_keys_ignored(self):
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m = maturity(["sbom", "nonsense"])
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assert {e["key"] for e in m["present"]} == {"sbom"}
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def test_full(self):
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m = maturity([e["key"] for e in EVIDENCE_ITEMS])
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assert m["pct"] == 100
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assert m["missing"] == []
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