mirror of
https://github.com/priyanshujain/sanderling.git
synced 2026-10-02 19:17:10 +00:00
Rewrite a -> b to (not a) or b in NNF so a pending temporal antecedent can no longer defer the whole implication and drop a consequent that was false at the current step. Carry a pending inner past a bounded-Always window close instead of dropping it to holds, so a deferred obligation is resolved by a later step or Finalize.
88 lines
2.8 KiB
Go
88 lines
2.8 KiB
Go
package ltl
|
|
|
|
// nnf rewrites a formula into negation normal form: every NotFormula is pushed
|
|
// down until it wraps only an opaque leaf (a ThunkFormula or ErrorFormula).
|
|
// Temporal operators are dualized along the way (Always <-> Eventually) so the
|
|
// evaluator never has to reduce a negated temporal obligation, which it cannot
|
|
// do soundly across steps.
|
|
func nnf(formula Formula) Formula {
|
|
switch concrete := formula.(type) {
|
|
case NotFormula:
|
|
return pushNot(concrete.Inner)
|
|
case AlwaysFormula:
|
|
next := concrete
|
|
next.Inner = nnf(concrete.Inner)
|
|
return next
|
|
case EventuallyFormula:
|
|
next := concrete
|
|
next.Inner = nnf(concrete.Inner)
|
|
return next
|
|
case NextFormula:
|
|
return NextFormula{Inner: nnf(concrete.Inner)}
|
|
case NowFormula:
|
|
return NowFormula{Inner: nnf(concrete.Inner)}
|
|
case AndFormula:
|
|
return AndFormula{Left: nnf(concrete.Left), Right: nnf(concrete.Right)}
|
|
case OrFormula:
|
|
return OrFormula{Left: nnf(concrete.Left), Right: nnf(concrete.Right)}
|
|
case ImpliesFormula:
|
|
// a -> b is rewritten to (not a) or b so the consequent is always
|
|
// reduced live each step. Keeping it as ImpliesFormula let a pending
|
|
// (temporal) antecedent defer the whole implication and silently drop a
|
|
// consequent that was false at the current step.
|
|
return OrFormula{
|
|
Left: pushNot(concrete.Antecedent),
|
|
Right: nnf(concrete.Consequent),
|
|
}
|
|
default:
|
|
return formula
|
|
}
|
|
}
|
|
|
|
// pushNot returns the negation normal form of NOT f.
|
|
func pushNot(formula Formula) Formula {
|
|
switch concrete := formula.(type) {
|
|
case PureFormula:
|
|
return PureFormula{Value: !concrete.Value}
|
|
case ThunkFormula:
|
|
return NotFormula{Inner: concrete}
|
|
case ErrorFormula:
|
|
return NotFormula{Inner: concrete}
|
|
case NotFormula:
|
|
return nnf(concrete.Inner)
|
|
case AndFormula:
|
|
return OrFormula{Left: pushNot(concrete.Left), Right: pushNot(concrete.Right)}
|
|
case OrFormula:
|
|
return AndFormula{Left: pushNot(concrete.Left), Right: pushNot(concrete.Right)}
|
|
case ImpliesFormula:
|
|
return AndFormula{
|
|
Left: nnf(concrete.Antecedent),
|
|
Right: pushNot(concrete.Consequent),
|
|
}
|
|
case NowFormula:
|
|
return NowFormula{Inner: pushNot(concrete.Inner)}
|
|
case NextFormula:
|
|
return NextFormula{Inner: pushNot(concrete.Inner)}
|
|
case AlwaysFormula:
|
|
return EventuallyFormula{
|
|
Inner: pushNot(concrete.Inner),
|
|
StepBound: concrete.StepBound,
|
|
HasStepBound: concrete.HasStepBound,
|
|
Duration: concrete.Duration,
|
|
Deadline: concrete.Deadline,
|
|
HasDeadline: concrete.HasDeadline,
|
|
}
|
|
case EventuallyFormula:
|
|
return AlwaysFormula{
|
|
Inner: pushNot(concrete.Inner),
|
|
StepBound: concrete.StepBound,
|
|
HasStepBound: concrete.HasStepBound,
|
|
Duration: concrete.Duration,
|
|
Deadline: concrete.Deadline,
|
|
HasDeadline: concrete.HasDeadline,
|
|
}
|
|
default:
|
|
return NotFormula{Inner: formula}
|
|
}
|
|
}
|