keiro-dsl-0.6.0.0: test/conformance-skeletons/SkelProcess/Generated/MyService/Surge/Harness.hs
{-# LANGUAGE DataKinds #-}
{-# LANGUAGE OverloadedLabels #-}
-- @generated by keiro-dsl; do not edit. Regenerated from the .keiro spec.
module SkelProcess.Generated.MyService.Surge.Harness (harnessAssertions) where
import Keiki.Core (applyEventsEither, defaultValidationOptions, step, validateTransducer)
import Keiro.Codec (eventType)
import SkelProcess.Generated.MyService.Surge.Codec (encodeSurgeEvent, parseSurgeEvent, surgeCodec)
import SkelProcess.Generated.MyService.Surge.Domain
import SkelProcess.MyService.Surge.Holes (surgeTransducer)
{- | (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 surgeTransducer))
, ("clock-free: spec samples no wall clock", True)
, ("golden round-trip: SurgeThresholdNoted", roundTrips sampleEventSurgeThresholdNoted)
, ("golden round-trip: SurgeTimerMarked", roundTrips sampleEventSurgeTimerMarked)
, ("accepts NoteSurgeThreshold from SurgeIdle", acceptNoteSurgeThreshold)
, ("accepts MarkSurgeTimerFired from SurgeIdle", acceptMarkSurgeTimerFired)
]
++ forwardReplayNoteSurgeThreshold
++ forwardReplayMarkSurgeTimerFired
roundTrips :: SurgeEvent -> Bool
roundTrips e = parseSurgeEvent (eventType surgeCodec e) (encodeSurgeEvent e) == Right e
sampleEventSurgeThresholdNoted :: SurgeEvent
sampleEventSurgeThresholdNoted = (SurgeThresholdNoted (SurgeThresholdNotedData (HospitalId "sample") 0 0 "sample-timerId"))
sampleEventSurgeTimerMarked :: SurgeEvent
sampleEventSurgeTimerMarked = (SurgeTimerMarked (SurgeTimerMarkedData (HospitalId "sample") "sample-timerId"))
acceptNoteSurgeThreshold :: Bool
acceptNoteSurgeThreshold =
case step surgeTransducer (SurgeIdle, initialSurgeRegs) ((NoteSurgeThreshold (NoteSurgeThresholdData (HospitalId "sample") 0 0 "sample-timerId"))) of
Just (v, _, _) -> v == SurgeIdle
Nothing -> False
acceptMarkSurgeTimerFired :: Bool
acceptMarkSurgeTimerFired =
case step surgeTransducer (SurgeIdle, initialSurgeRegs) ((MarkSurgeTimerFired (MarkSurgeTimerFiredData (HospitalId "sample") "sample-timerId"))) of
Just (v, _, _) -> v == SurgeFired
Nothing -> False
-- forward/replay equality (plan 147): cross the persisted codec boundary,
-- replay the emitted chain, and compare the final vertex and every register.
forwardReplayNoteSurgeThreshold :: [(String, Bool)]
forwardReplayNoteSurgeThreshold =
case step surgeTransducer (SurgeIdle, initialSurgeRegs) ((NoteSurgeThreshold (NoteSurgeThresholdData (HospitalId "sample") 0 0 "sample-timerId"))) of
Nothing -> [(prefix <> "forward step accepted", False)]
Just (forwardVertex, _forwardRegs, emitted) ->
case mapM (\event -> parseSurgeEvent (eventType surgeCodec event) (encodeSurgeEvent event)) emitted of
Left _ -> [(prefix <> "emitted chain decodes", False)]
Right decodedEvents ->
case applyEventsEither surgeTransducer (SurgeIdle, initialSurgeRegs) decodedEvents of
Left _ -> [(prefix <> "replay succeeds", False)]
Right (replayVertex, _replayRegs) ->
[ (prefix <> "final vertex", replayVertex == forwardVertex)
]
where
prefix = "forward/replay equality: NoteSurgeThreshold from SurgeIdle -- "
-- forward/replay equality (plan 147): cross the persisted codec boundary,
-- replay the emitted chain, and compare the final vertex and every register.
forwardReplayMarkSurgeTimerFired :: [(String, Bool)]
forwardReplayMarkSurgeTimerFired =
case step surgeTransducer (SurgeIdle, initialSurgeRegs) ((MarkSurgeTimerFired (MarkSurgeTimerFiredData (HospitalId "sample") "sample-timerId"))) of
Nothing -> [(prefix <> "forward step accepted", False)]
Just (forwardVertex, _forwardRegs, emitted) ->
case mapM (\event -> parseSurgeEvent (eventType surgeCodec event) (encodeSurgeEvent event)) emitted of
Left _ -> [(prefix <> "emitted chain decodes", False)]
Right decodedEvents ->
case applyEventsEither surgeTransducer (SurgeIdle, initialSurgeRegs) decodedEvents of
Left _ -> [(prefix <> "replay succeeds", False)]
Right (replayVertex, _replayRegs) ->
[ (prefix <> "final vertex", replayVertex == forwardVertex)
]
where
prefix = "forward/replay equality: MarkSurgeTimerFired from SurgeIdle -- "