Start: eval_foo_start
Program_Vars: X₀, X₁, X₂, X₃, X₄
Temp_Vars:
Locations: eval_foo_bb0_in, eval_foo_bb1_in, eval_foo_bb2_in, eval_foo_bb3_in, eval_foo_start, eval_foo_stop
Transitions:
t₁: eval_foo_bb0_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(X₂, X₄, X₂, X₃, X₄)
t₂: eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₃
t₃: eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb3_in(X₀, X₁, X₂, X₃, X₄) :|: X₃ ≤ X₀
t₄: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(1+X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₁
t₅: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₁ ∧ X₁ ≤ X₀
t₆: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(1+X₀, 1+X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₁ ∧ X₁ ≤ X₀
t₇: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(X₀, 1+X₁, X₂, X₃, X₄) :|: X₁ ≤ X₀
t₈: eval_foo_bb3_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_stop(X₀, X₁, X₂, X₃, X₄)
t₀: eval_foo_start(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb0_in(X₀, X₁, X₂, X₃, X₄)
Cut unsatisfiable transition [t₅: eval_foo_bb2_in→eval_foo_bb1_in; t₆: eval_foo_bb2_in→eval_foo_bb1_in]
Found invariant X₄ ≤ X₁ ∧ 1+X₂ ≤ X₃ ∧ 1+X₀ ≤ X₃ ∧ X₂ ≤ X₀ for location eval_foo_bb2_in
Found invariant X₄ ≤ X₁ ∧ X₂ ≤ X₀ for location eval_foo_bb1_in
Found invariant X₄ ≤ X₁ ∧ X₃ ≤ X₀ ∧ X₂ ≤ X₀ for location eval_foo_stop
Found invariant X₄ ≤ X₁ ∧ X₃ ≤ X₀ ∧ X₂ ≤ X₀ for location eval_foo_bb3_in
Start: eval_foo_start
Program_Vars: X₀, X₁, X₂, X₃, X₄
Temp_Vars:
Locations: eval_foo_bb0_in, eval_foo_bb1_in, eval_foo_bb2_in, eval_foo_bb3_in, eval_foo_start, eval_foo_stop
Transitions:
t₁: eval_foo_bb0_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(X₂, X₄, X₂, X₃, X₄)
t₂: eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₃ ∧ X₂ ≤ X₀ ∧ X₄ ≤ X₁
t₃: eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb3_in(X₀, X₁, X₂, X₃, X₄) :|: X₃ ≤ X₀ ∧ X₂ ≤ X₀ ∧ X₄ ≤ X₁
t₄: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(1+X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₁ ∧ 1+X₀ ≤ X₃ ∧ 1+X₂ ≤ X₃ ∧ X₂ ≤ X₀ ∧ X₄ ≤ X₁
t₇: eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb1_in(X₀, 1+X₁, X₂, X₃, X₄) :|: X₁ ≤ X₀ ∧ 1+X₀ ≤ X₃ ∧ 1+X₂ ≤ X₃ ∧ X₂ ≤ X₀ ∧ X₄ ≤ X₁
t₈: eval_foo_bb3_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_stop(X₀, X₁, X₂, X₃, X₄) :|: X₂ ≤ X₀ ∧ X₃ ≤ X₀ ∧ X₄ ≤ X₁
t₀: eval_foo_start(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb0_in(X₀, X₁, X₂, X₃, X₄)
new bound:
X₂+X₃ {O(n)}
MPRF:
• eval_foo_bb1_in: [X₃-X₀]
• eval_foo_bb2_in: [X₃-X₀]
new bound:
X₃+X₄ {O(n)}
MPRF:
• eval_foo_bb1_in: [X₃-X₁]
• eval_foo_bb2_in: [X₃-X₁]
knowledge_propagation leads to new time bound 2⋅X₃+X₂+X₄+1 {O(n)} for transition t₂: eval_foo_bb1_in(X₀, X₁, X₂, X₃, X₄) → eval_foo_bb2_in(X₀, X₁, X₂, X₃, X₄) :|: 1+X₀ ≤ X₃ ∧ X₂ ≤ X₀ ∧ X₄ ≤ X₁
Overall timebound:2⋅X₂+2⋅X₄+4⋅X₃+5 {O(n)}
t₀: 1 {O(1)}
t₁: 1 {O(1)}
t₂: 2⋅X₃+X₂+X₄+1 {O(n)}
t₃: 1 {O(1)}
t₄: X₂+X₃ {O(n)}
t₇: X₃+X₄ {O(n)}
t₈: 1 {O(1)}
Overall costbound: 2⋅X₂+2⋅X₄+4⋅X₃+5 {O(n)}
t₀: 1 {O(1)}
t₁: 1 {O(1)}
t₂: 2⋅X₃+X₂+X₄+1 {O(n)}
t₃: 1 {O(1)}
t₄: X₂+X₃ {O(n)}
t₇: X₃+X₄ {O(n)}
t₈: 1 {O(1)}
t₀, X₀: X₀ {O(n)}
t₀, X₁: X₁ {O(n)}
t₀, X₂: X₂ {O(n)}
t₀, X₃: X₃ {O(n)}
t₀, X₄: X₄ {O(n)}
t₁, X₀: X₂ {O(n)}
t₁, X₁: X₄ {O(n)}
t₁, X₂: X₂ {O(n)}
t₁, X₃: X₃ {O(n)}
t₁, X₄: X₄ {O(n)}
t₂, X₀: 2⋅X₂+X₃ {O(n)}
t₂, X₁: 2⋅X₄+X₃ {O(n)}
t₂, X₂: X₂ {O(n)}
t₂, X₃: X₃ {O(n)}
t₂, X₄: X₄ {O(n)}
t₃, X₀: 3⋅X₂+X₃ {O(n)}
t₃, X₁: 3⋅X₄+X₃ {O(n)}
t₃, X₂: 2⋅X₂ {O(n)}
t₃, X₃: 2⋅X₃ {O(n)}
t₃, X₄: 2⋅X₄ {O(n)}
t₄, X₀: 2⋅X₂+X₃ {O(n)}
t₄, X₁: 2⋅X₄+X₃ {O(n)}
t₄, X₂: X₂ {O(n)}
t₄, X₃: X₃ {O(n)}
t₄, X₄: X₄ {O(n)}
t₇, X₀: 2⋅X₂+X₃ {O(n)}
t₇, X₁: 2⋅X₄+X₃ {O(n)}
t₇, X₂: X₂ {O(n)}
t₇, X₃: X₃ {O(n)}
t₇, X₄: X₄ {O(n)}
t₈, X₀: 3⋅X₂+X₃ {O(n)}
t₈, X₁: 3⋅X₄+X₃ {O(n)}
t₈, X₂: 2⋅X₂ {O(n)}
t₈, X₃: 2⋅X₃ {O(n)}
t₈, X₄: 2⋅X₄ {O(n)}