/export/starexec/sandbox/solver/bin/starexec_run_tct_rc /export/starexec/sandbox/benchmark/theBenchmark.xml /export/starexec/sandbox/output/output_files -------------------------------------------------------------------------------- WORST_CASE(Omega(n^1),?) * Step 1: Sum. WORST_CASE(Omega(n^1),?) + Considered Problem: - Strict TRS: f(x,s(y)) -> f(y,x) f(s(x),y) -> f(x,s(x)) - Signature: {f/2} / {s/1} - Obligation: runtime complexity wrt. defined symbols {f} and constructors {s} + Applied Processor: Sum {left = someStrategy, right = someStrategy} + Details: () * Step 2: Sum. WORST_CASE(Omega(n^1),?) + Considered Problem: - Strict TRS: f(x,s(y)) -> f(y,x) f(s(x),y) -> f(x,s(x)) - Signature: {f/2} / {s/1} - Obligation: runtime complexity wrt. defined symbols {f} and constructors {s} + Applied Processor: Sum {left = someStrategy, right = someStrategy} + Details: () * Step 3: DecreasingLoops. WORST_CASE(Omega(n^1),?) + Considered Problem: - Strict TRS: f(x,s(y)) -> f(y,x) f(s(x),y) -> f(x,s(x)) - Signature: {f/2} / {s/1} - Obligation: runtime complexity wrt. defined symbols {f} and constructors {s} + Applied Processor: DecreasingLoops {bound = AnyLoop, narrow = 10} + Details: The system has following decreasing Loops: f(x,y){x -> s(x)} = f(s(x),y) ->^+ f(x,s(x)) = C[f(x,s(x)) = f(x,y){y -> s(x)}] WORST_CASE(Omega(n^1),?)