keiro-dsl-0.17.0.0: test/conformance-process-state-authority/Generated/IncidentResponse/Incident/Harness.hs
-- @generated by keiro-dsl 0.17.0.0 (language keiro-dsl 6) from aggregate Incident; do not edit.
module Generated.IncidentResponse.Incident.Harness (harnessAssertions) where
import Generated.IncidentResponse.Incident.Domain
import Generated.IncidentResponse.Incident.Codec (encodeIncidentEvent, parseIncidentEvent, incidentCodec)
import Generated.IncidentResponse.Incident.Transducer (incidentTransducer)
import Keiki.Core (applyEventsEither, defaultValidationOptions, step, validateTransducer)
import Keiro.Codec (eventType)
import Generated.IncidentResponse.Nominals (IncidentId, parseIncidentId)
-- | (label, passed). A driver runs these and exits non-zero on any False,
-- naming the failing assertion. Filling a hole wrongly turns a specific
-- entry False; the scaffold cannot.
harnessAssertions :: [(String, Bool)]
harnessAssertions =
[ ("validateTransducer is empty", null (validateTransducer defaultValidationOptions incidentTransducer))
-- clock-free: spec samples no wall clock (verified at scaffold time)
, ("golden round-trip: IncidentAcknowledged", roundTrips sampleEventIncidentAcknowledged)
, ("golden round-trip: IncidentEscalated", roundTrips sampleEventIncidentEscalated)
, ("accepts AcknowledgeIncident from IncidentOpen", acceptAcknowledgeIncident)
, ("accepts EscalateIncident from IncidentOpen", acceptEscalateIncident)
]
++ forwardReplayAcknowledgeIncident
++ forwardReplayEscalateIncident
roundTrips :: IncidentEvent -> Bool
roundTrips e = parseIncidentEvent (eventType incidentCodec e) (encodeIncidentEvent e) == Right e
sampleIncidentId :: IncidentId
sampleIncidentId =
case parseIncidentId "inc_01h455vb4pex5vsknk084sn02q" of
Right parsed -> parsed
Left problem -> error (show problem)
sampleEventIncidentAcknowledged :: IncidentEvent
sampleEventIncidentAcknowledged = IncidentAcknowledged (IncidentAcknowledgedData sampleIncidentId)
sampleEventIncidentEscalated :: IncidentEvent
sampleEventIncidentEscalated = IncidentEscalated (IncidentEscalatedData sampleIncidentId)
acceptAcknowledgeIncident :: Bool
acceptAcknowledgeIncident =
case step incidentTransducer (IncidentOpen, initialIncidentRegs) (AcknowledgeIncident (AcknowledgeIncidentData sampleIncidentId)) of
Just (v, _, _) -> v == IncidentOpen
Nothing -> False
acceptEscalateIncident :: Bool
acceptEscalateIncident =
case step incidentTransducer (IncidentOpen, initialIncidentRegs) (EscalateIncident (EscalateIncidentData sampleIncidentId)) of
Just (v, _, _) -> v == IncidentOpen
Nothing -> False
-- forward/replay equality (plan 147): cross the persisted codec boundary,
-- replay the emitted chain, and compare the final vertex and every register.
forwardReplayAcknowledgeIncident :: [(String, Bool)]
forwardReplayAcknowledgeIncident =
case step incidentTransducer (IncidentOpen, initialIncidentRegs) (AcknowledgeIncident (AcknowledgeIncidentData sampleIncidentId)) of
Nothing -> [(prefix <> "forward step accepted", False)]
Just (forwardVertex, _forwardRegs, emitted) ->
case mapM (\event -> parseIncidentEvent (eventType incidentCodec event) (encodeIncidentEvent event)) emitted of
Left _ -> [(prefix <> "emitted chain decodes", False)]
Right decodedEvents ->
case applyEventsEither incidentTransducer (IncidentOpen, initialIncidentRegs) decodedEvents of
Left _ -> [(prefix <> "replay succeeds", False)]
Right (replayVertex, _replayRegs) ->
[ (prefix <> "final vertex", replayVertex == forwardVertex)
]
where
prefix = "forward/replay equality: AcknowledgeIncident from IncidentOpen -- "
-- forward/replay equality (plan 147): cross the persisted codec boundary,
-- replay the emitted chain, and compare the final vertex and every register.
forwardReplayEscalateIncident :: [(String, Bool)]
forwardReplayEscalateIncident =
case step incidentTransducer (IncidentOpen, initialIncidentRegs) (EscalateIncident (EscalateIncidentData sampleIncidentId)) of
Nothing -> [(prefix <> "forward step accepted", False)]
Just (forwardVertex, _forwardRegs, emitted) ->
case mapM (\event -> parseIncidentEvent (eventType incidentCodec event) (encodeIncidentEvent event)) emitted of
Left _ -> [(prefix <> "emitted chain decodes", False)]
Right decodedEvents ->
case applyEventsEither incidentTransducer (IncidentOpen, initialIncidentRegs) decodedEvents of
Left _ -> [(prefix <> "replay succeeds", False)]
Right (replayVertex, _replayRegs) ->
[ (prefix <> "final vertex", replayVertex == forwardVertex)
]
where
prefix = "forward/replay equality: EscalateIncident from IncidentOpen -- "