0 CpxTRS
↳1 TrsToWeightedTrsProof (BOTH BOUNDS(ID, ID), 0 ms)
↳2 CpxWeightedTrs
↳3 TypeInferenceProof (BOTH BOUNDS(ID, ID), 0 ms)
↳4 CpxTypedWeightedTrs
↳5 CompletionProof (UPPER BOUND(ID), 0 ms)
↳6 CpxTypedWeightedCompleteTrs
↳7 NarrowingProof (BOTH BOUNDS(ID, ID), 0 ms)
↳8 CpxTypedWeightedCompleteTrs
↳9 CpxTypedWeightedTrsToRntsProof (UPPER BOUND(ID), 0 ms)
↳10 CpxRNTS
↳11 InliningProof (UPPER BOUND(ID), 467 ms)
↳12 CpxRNTS
↳13 SimplificationProof (BOTH BOUNDS(ID, ID), 0 ms)
↳14 CpxRNTS
↳15 CpxRntsAnalysisOrderProof (BOTH BOUNDS(ID, ID), 0 ms)
↳16 CpxRNTS
↳17 IntTrsBoundProof (UPPER BOUND(ID), 162 ms)
↳18 CpxRNTS
↳19 IntTrsBoundProof (UPPER BOUND(ID), 49 ms)
↳20 CpxRNTS
↳21 ResultPropagationProof (UPPER BOUND(ID), 0 ms)
↳22 CpxRNTS
↳23 IntTrsBoundProof (UPPER BOUND(ID), 182 ms)
↳24 CpxRNTS
↳25 IntTrsBoundProof (UPPER BOUND(ID), 18 ms)
↳26 CpxRNTS
↳27 ResultPropagationProof (UPPER BOUND(ID), 0 ms)
↳28 CpxRNTS
↳29 IntTrsBoundProof (UPPER BOUND(ID), 151 ms)
↳30 CpxRNTS
↳31 IntTrsBoundProof (UPPER BOUND(ID), 9 ms)
↳32 CpxRNTS
↳33 ResultPropagationProof (UPPER BOUND(ID), 0 ms)
↳34 CpxRNTS
↳35 IntTrsBoundProof (UPPER BOUND(ID), 1037 ms)
↳36 CpxRNTS
↳37 IntTrsBoundProof (UPPER BOUND(ID), 112 ms)
↳38 CpxRNTS
↳39 FinalProof (⇔, 0 ms)
↳40 BOUNDS(1, n^1)
a__f(f(X)) → a__c(f(g(f(X))))
a__c(X) → d(X)
a__h(X) → a__c(d(X))
mark(f(X)) → a__f(mark(X))
mark(c(X)) → a__c(X)
mark(h(X)) → a__h(mark(X))
mark(g(X)) → g(X)
mark(d(X)) → d(X)
a__f(X) → f(X)
a__c(X) → c(X)
a__h(X) → h(X)
a__f(f(X)) → a__c(f(g(f(X)))) [1]
a__c(X) → d(X) [1]
a__h(X) → a__c(d(X)) [1]
mark(f(X)) → a__f(mark(X)) [1]
mark(c(X)) → a__c(X) [1]
mark(h(X)) → a__h(mark(X)) [1]
mark(g(X)) → g(X) [1]
mark(d(X)) → d(X) [1]
a__f(X) → f(X) [1]
a__c(X) → c(X) [1]
a__h(X) → h(X) [1]
a__f(f(X)) → a__c(f(g(f(X)))) [1]
a__c(X) → d(X) [1]
a__h(X) → a__c(d(X)) [1]
mark(f(X)) → a__f(mark(X)) [1]
mark(c(X)) → a__c(X) [1]
mark(h(X)) → a__h(mark(X)) [1]
mark(g(X)) → g(X) [1]
mark(d(X)) → d(X) [1]
a__f(X) → f(X) [1]
a__c(X) → c(X) [1]
a__h(X) → h(X) [1]
a__f :: f:g:d:c:h → f:g:d:c:h f :: f:g:d:c:h → f:g:d:c:h a__c :: f:g:d:c:h → f:g:d:c:h g :: f:g:d:c:h → f:g:d:c:h d :: f:g:d:c:h → f:g:d:c:h a__h :: f:g:d:c:h → f:g:d:c:h mark :: f:g:d:c:h → f:g:d:c:h c :: f:g:d:c:h → f:g:d:c:h h :: f:g:d:c:h → f:g:d:c:h |
(a) The obligation is a constructor system where every type has a constant constructor,
(b) The following defined symbols do not have to be completely defined, as they can never occur inside other defined symbols:
none
(c) The following functions are completely defined:
mark
a__h
a__c
a__f
mark(v0) → const [0]
const
Runtime Complexity Weighted TRS with Types. The TRS R consists of the following rules:
The TRS has the following type information:
Rewrite Strategy: INNERMOST |
Runtime Complexity Weighted TRS with Types. The TRS R consists of the following rules:
The TRS has the following type information:
Rewrite Strategy: INNERMOST |
const => 0
a__c(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__f(z) -{ 1 }→ a__c(1 + (1 + (1 + X))) :|: z = 1 + X, X >= 0
a__f(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__h(z) -{ 1 }→ a__c(1 + X) :|: X >= 0, z = X
a__h(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
mark(z) -{ 2 }→ a__h(a__h(mark(X6))) :|: X6 >= 0, z = 1 + (1 + X6)
mark(z) -{ 2 }→ a__h(a__f(mark(X4))) :|: z = 1 + (1 + X4), X4 >= 0
mark(z) -{ 2 }→ a__h(a__c(X5)) :|: X5 >= 0, z = 1 + (1 + X5)
mark(z) -{ 1 }→ a__h(0) :|: z = 1 + X, X >= 0
mark(z) -{ 2 }→ a__h(1 + X7) :|: X7 >= 0, z = 1 + (1 + X7)
mark(z) -{ 2 }→ a__h(1 + X8) :|: X8 >= 0, z = 1 + (1 + X8)
mark(z) -{ 2 }→ a__f(a__h(mark(X1))) :|: X1 >= 0, z = 1 + (1 + X1)
mark(z) -{ 2 }→ a__f(a__f(mark(X'))) :|: X' >= 0, z = 1 + (1 + X')
mark(z) -{ 2 }→ a__f(a__c(X'')) :|: z = 1 + (1 + X''), X'' >= 0
mark(z) -{ 1 }→ a__f(0) :|: z = 1 + X, X >= 0
mark(z) -{ 2 }→ a__f(1 + X2) :|: z = 1 + (1 + X2), X2 >= 0
mark(z) -{ 2 }→ a__f(1 + X3) :|: z = 1 + (1 + X3), X3 >= 0
mark(z) -{ 1 }→ a__c(X) :|: z = 1 + X, X >= 0
mark(z) -{ 0 }→ 0 :|: v0 >= 0, z = v0
mark(z) -{ 1 }→ 1 + X :|: z = 1 + X, X >= 0
a__c(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__f(z) -{ 1 }→ a__c(1 + (1 + (1 + X))) :|: z = 1 + X, X >= 0
a__f(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__h(z) -{ 1 }→ a__c(1 + X) :|: X >= 0, z = X
a__h(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__c(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__f(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__f(z) -{ 2 }→ 1 + X' :|: z = 1 + X, X >= 0, X' >= 0, 1 + (1 + (1 + X)) = X'
a__h(z) -{ 1 }→ 1 + X :|: X >= 0, z = X
a__h(z) -{ 2 }→ 1 + X' :|: X >= 0, z = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(X6))) :|: X6 >= 0, z = 1 + (1 + X6)
mark(z) -{ 2 }→ a__h(a__f(mark(X4))) :|: z = 1 + (1 + X4), X4 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(X1))) :|: X1 >= 0, z = 1 + (1 + X1)
mark(z) -{ 2 }→ a__f(a__f(mark(X'))) :|: X' >= 0, z = 1 + (1 + X')
mark(z) -{ 3 }→ a__c(1 + X) :|: X7 >= 0, z = 1 + (1 + X7), X >= 0, 1 + X7 = X
mark(z) -{ 3 }→ a__c(1 + X) :|: X8 >= 0, z = 1 + (1 + X8), X >= 0, 1 + X8 = X
mark(z) -{ 2 }→ a__c(1 + X') :|: z = 1 + X, X >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ a__c(1 + X') :|: X5 >= 0, z = 1 + (1 + X5), X >= 0, X5 = X, X' >= 0, 1 + X = X'
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z = 1 + (1 + X2), X2 >= 0, 1 + X2 = 1 + X, X >= 0
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z = 1 + (1 + X3), X3 >= 0, 1 + X3 = 1 + X, X >= 0
mark(z) -{ 4 }→ a__c(1 + (1 + (1 + X'))) :|: z = 1 + (1 + X''), X'' >= 0, X >= 0, X'' = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 0 }→ 0 :|: v0 >= 0, z = v0
mark(z) -{ 1 }→ 1 + X :|: z = 1 + X, X >= 0
mark(z) -{ 3 }→ 1 + X :|: z = 1 + (1 + X2), X2 >= 0, X >= 0, 1 + X2 = X
mark(z) -{ 3 }→ 1 + X :|: z = 1 + (1 + X3), X3 >= 0, X >= 0, 1 + X3 = X
mark(z) -{ 3 }→ 1 + X :|: X7 >= 0, z = 1 + (1 + X7), X >= 0, 1 + X7 = X
mark(z) -{ 3 }→ 1 + X :|: X8 >= 0, z = 1 + (1 + X8), X >= 0, 1 + X8 = X
mark(z) -{ 2 }→ 1 + X' :|: z = 1 + X, X >= 0, X' >= 0, X = X'
mark(z) -{ 2 }→ 1 + X' :|: z = 1 + X, X >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z = 1 + (1 + X''), X'' >= 0, X >= 0, X'' = X, X' >= 0, 1 + X = X'
mark(z) -{ 4 }→ 1 + X' :|: X5 >= 0, z = 1 + (1 + X5), X >= 0, X5 = X, X' >= 0, 1 + X = X'
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 3 }→ a__c(1 + X) :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ a__c(1 + X') :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ a__c(1 + X') :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 4 }→ a__c(1 + (1 + (1 + X'))) :|: z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
{ a__c } { a__h } { a__f } { mark } |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 3 }→ a__c(1 + X) :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ a__c(1 + X') :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ a__c(1 + X') :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 4 }→ a__c(1 + (1 + (1 + X'))) :|: z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 3 }→ a__c(1 + X) :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ a__c(1 + X') :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ a__c(1 + X') :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 4 }→ a__c(1 + (1 + (1 + X'))) :|: z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: ?, size: O(n1) [1 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 3 }→ a__c(1 + X) :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ a__c(1 + X') :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ a__c(1 + X') :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 3 }→ a__c(1 + (1 + (1 + X))) :|: z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 4 }→ a__c(1 + (1 + (1 + X'))) :|: z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: ?, size: O(n1) [2 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] a__f: runtime: ?, size: O(n1) [3 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] a__f: runtime: O(1) [3], size: O(n1) [3 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] a__f: runtime: O(1) [3], size: O(n1) [3 + z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] a__f: runtime: O(1) [3], size: O(n1) [3 + z] mark: runtime: ?, size: O(n1) [3·z] |
a__c(z) -{ 1 }→ 1 + z :|: z >= 0
a__f(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 1 + (1 + (1 + (z - 1))) = X'
a__f(z) -{ 1 }→ 1 + z :|: z >= 0
a__h(z) -{ 2 }→ 1 + X' :|: z >= 0, X' >= 0, 1 + z = X'
a__h(z) -{ 1 }→ 1 + z :|: z >= 0
mark(z) -{ 4 }→ s :|: s >= 0, s <= 1 * (1 + (1 + (1 + X))) + 1, z - 2 >= 0, 1 + (z - 2) = 1 + X, X >= 0
mark(z) -{ 5 }→ s' :|: s' >= 0, s' <= 1 * (1 + (1 + (1 + X'))) + 1, z - 2 >= 0, X >= 0, z - 2 = X, 1 + X = 1 + X', X' >= 0
mark(z) -{ 4 }→ s'' :|: s'' >= 0, s'' <= 1 * (1 + X) + 1, z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 3 }→ s1 :|: s1 >= 0, s1 <= 1 * (1 + X') + 1, z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 5 }→ s2 :|: s2 >= 0, s2 <= 1 * (1 + X') + 1, z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 2 }→ a__h(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__h(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__h(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 2 }→ a__f(a__f(mark(z - 2))) :|: z - 2 >= 0
mark(z) -{ 0 }→ 0 :|: z >= 0
mark(z) -{ 3 }→ 1 + X :|: z - 2 >= 0, X >= 0, 1 + (z - 2) = X
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, z - 1 = X'
mark(z) -{ 2 }→ 1 + X' :|: z - 1 >= 0, X' >= 0, 0 = X'
mark(z) -{ 4 }→ 1 + X' :|: z - 2 >= 0, X >= 0, z - 2 = X, X' >= 0, 1 + X = X'
mark(z) -{ 1 }→ 1 + (z - 1) :|: z - 1 >= 0
a__c: runtime: O(1) [1], size: O(n1) [1 + z] a__h: runtime: O(1) [3], size: O(n1) [2 + z] a__f: runtime: O(1) [3], size: O(n1) [3 + z] mark: runtime: O(n1) [33 + 8·z], size: O(n1) [3·z] |