7.951 * [progress]: [Phase 1 of 3] Setting up. 0.001 * * * [progress]: [1/2] Preparing points 0.013 * * * [progress]: [2/2] Setting up program. 0.014 * [progress]: [Phase 2 of 3] Improving. 0.014 * [simplify]: Simplifying using # : (/ (- (* x x) 3.0) 6.0) 0.014 * [simplify]: Sending expressions to egg_math: (/ (- (* h0 h0) h1) h2) 0.016 * * [simplify]: iteration 0 : 11 enodes (cost 3 ) 0.018 * * [simplify]: iteration 1 : 16 enodes (cost 3 ) 0.019 * * [simplify]: iteration 2 : 20 enodes (cost 3 ) 0.020 * * [simplify]: iteration 3 : 21 enodes (cost 3 ) 0.021 * * [simplify]: iteration 4 : 21 enodes (cost 3 ) 0.021 * [simplify]: Simplified to: (/ (- (* x x) 3.0) 6.0) 0.021 * * [progress]: iteration 1 / 4 0.021 * * * [progress]: picking best candidate 0.022 * * * * [pick]: Picked # 0.023 * * * [progress]: localizing error 0.029 * * * [progress]: generating rewritten candidates 0.029 * * * * [progress]: [ 1 / 2 ] rewriting at (2) 0.049 * * * * [progress]: [ 2 / 2 ] rewriting at (2 1) 0.058 * * * [progress]: generating series expansions 0.058 * * * * [progress]: [ 1 / 2 ] generating series at (2) 0.058 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (- (pow x 2) 3.0)) in (x) around 0 0.058 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (pow x 2) 3.0)) in x 0.058 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.058 * [taylor]: Taking taylor expansion of (- (pow x 2) 3.0) in x 0.058 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.058 * [taylor]: Taking taylor expansion of x in x 0.058 * [taylor]: Taking taylor expansion of 3.0 in x 0.058 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (pow x 2) 3.0)) in x 0.058 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.058 * [taylor]: Taking taylor expansion of (- (pow x 2) 3.0) in x 0.058 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.058 * [taylor]: Taking taylor expansion of x in x 0.058 * [taylor]: Taking taylor expansion of 3.0 in x 0.074 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in (x) around 0 0.074 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in x 0.074 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.074 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.074 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.074 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.074 * [taylor]: Taking taylor expansion of x in x 0.075 * [taylor]: Taking taylor expansion of 3.0 in x 0.075 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in x 0.075 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.075 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.075 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.075 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.075 * [taylor]: Taking taylor expansion of x in x 0.075 * [taylor]: Taking taylor expansion of 3.0 in x 0.099 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in (x) around 0 0.099 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in x 0.099 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.099 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.099 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.099 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.099 * [taylor]: Taking taylor expansion of x in x 0.100 * [taylor]: Taking taylor expansion of 3.0 in x 0.100 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (- (/ 1 (pow x 2)) 3.0)) in x 0.100 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.100 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.100 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.100 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.100 * [taylor]: Taking taylor expansion of x in x 0.100 * [taylor]: Taking taylor expansion of 3.0 in x 0.121 * * * * [progress]: [ 2 / 2 ] generating series at (2 1) 0.121 * [approximate]: Taking taylor expansion of (- (pow x 2) 3.0) in (x) around 0 0.121 * [taylor]: Taking taylor expansion of (- (pow x 2) 3.0) in x 0.121 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.121 * [taylor]: Taking taylor expansion of x in x 0.121 * [taylor]: Taking taylor expansion of 3.0 in x 0.121 * [taylor]: Taking taylor expansion of (- (pow x 2) 3.0) in x 0.121 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.121 * [taylor]: Taking taylor expansion of x in x 0.121 * [taylor]: Taking taylor expansion of 3.0 in x 0.129 * [approximate]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in (x) around 0 0.129 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.129 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.129 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.129 * [taylor]: Taking taylor expansion of x in x 0.130 * [taylor]: Taking taylor expansion of 3.0 in x 0.130 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.130 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.130 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.130 * [taylor]: Taking taylor expansion of x in x 0.130 * [taylor]: Taking taylor expansion of 3.0 in x 0.143 * [approximate]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in (x) around 0 0.143 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.143 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.143 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.143 * [taylor]: Taking taylor expansion of x in x 0.143 * [taylor]: Taking taylor expansion of 3.0 in x 0.144 * [taylor]: Taking taylor expansion of (- (/ 1 (pow x 2)) 3.0) in x 0.144 * [taylor]: Taking taylor expansion of (/ 1 (pow x 2)) in x 0.144 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.144 * [taylor]: Taking taylor expansion of x in x 0.144 * [taylor]: Taking taylor expansion of 3.0 in x 0.157 * * * [progress]: simplifying candidates 0.157 * [simplify]: Simplifying using # : (- (log (- (* x x) 3.0)) (log 6.0)) (log (/ (- (* x x) 3.0) 6.0)) (exp (/ (- (* x x) 3.0) 6.0)) (/ (* (* (- (* x x) 3.0) (- (* x x) 3.0)) (- (* x x) 3.0)) (* (* 6.0 6.0) 6.0)) (* (cbrt (/ (- (* x x) 3.0) 6.0)) (cbrt (/ (- (* x x) 3.0) 6.0))) (cbrt (/ (- (* x x) 3.0) 6.0)) (* (* (/ (- (* x x) 3.0) 6.0) (/ (- (* x x) 3.0) 6.0)) (/ (- (* x x) 3.0) 6.0)) (sqrt (/ (- (* x x) 3.0) 6.0)) (sqrt (/ (- (* x x) 3.0) 6.0)) (- (- (* x x) 3.0)) (- 6.0) (/ (* x x) 6.0) (/ 3.0 6.0) (/ (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (* (cbrt 6.0) (cbrt 6.0))) (/ (cbrt (- (* x x) 3.0)) (cbrt 6.0)) (/ (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (sqrt 6.0)) (/ (cbrt (- (* x x) 3.0)) (sqrt 6.0)) (/ (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) 1) (/ (cbrt (- (* x x) 3.0)) 6.0) (/ (sqrt (- (* x x) 3.0)) (* (cbrt 6.0) (cbrt 6.0))) (/ (sqrt (- (* x x) 3.0)) (cbrt 6.0)) (/ (sqrt (- (* x x) 3.0)) (sqrt 6.0)) (/ (sqrt (- (* x x) 3.0)) (sqrt 6.0)) (/ (sqrt (- (* x x) 3.0)) 1) (/ (sqrt (- (* x x) 3.0)) 6.0) (/ 1 (* (cbrt 6.0) (cbrt 6.0))) (/ (- (* x x) 3.0) (cbrt 6.0)) (/ 1 (sqrt 6.0)) (/ (- (* x x) 3.0) (sqrt 6.0)) (/ 1 1) (/ (- (* x x) 3.0) 6.0) (/ (+ x (sqrt 3.0)) (* (cbrt 6.0) (cbrt 6.0))) (/ (- x (sqrt 3.0)) (cbrt 6.0)) (/ (+ x (sqrt 3.0)) (sqrt 6.0)) (/ (- x (sqrt 3.0)) (sqrt 6.0)) (/ (+ x (sqrt 3.0)) 1) (/ (- x (sqrt 3.0)) 6.0) (/ 1 6.0) (/ 6.0 (- (* x x) 3.0)) (/ (- (* x x) 3.0) (* (cbrt 6.0) (cbrt 6.0))) (/ (- (* x x) 3.0) (sqrt 6.0)) (/ (- (* x x) 3.0) 1) (/ 6.0 (cbrt (- (* x x) 3.0))) (/ 6.0 (sqrt (- (* x x) 3.0))) (/ 6.0 (- (* x x) 3.0)) (/ 6.0 (- x (sqrt 3.0))) (* 6.0 (+ (* (* x x) (* x x)) (+ (* 3.0 3.0) (* (* x x) 3.0)))) (* 6.0 (+ (* x x) 3.0)) (/ (exp (* x x)) (exp 3.0)) (log (- (* x x) 3.0)) (exp (- (* x x) 3.0)) (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (cbrt (- (* x x) 3.0)) (* (* (- (* x x) 3.0) (- (* x x) 3.0)) (- (* x x) 3.0)) (sqrt (- (* x x) 3.0)) (sqrt (- (* x x) 3.0)) (- (pow (* x x) 3) (pow 3.0 3)) (+ (* (* x x) (* x x)) (+ (* 3.0 3.0) (* (* x x) 3.0))) (- 3.0) (- (* (* x x) (* x x)) (* 3.0 3.0)) (+ (* x x) 3.0) (+ x (sqrt 3.0)) (- x (sqrt 3.0)) (- 3.0) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (pow x 2) 3.0) (- (pow x 2) 3.0) (- (pow x 2) 3.0) 0.158 * [simplify]: Sending expressions to egg_math: (- (log (- (* h0 h0) h1)) (log h2)) (log (/ (- (* h0 h0) h1) h2)) (exp (/ (- (* h0 h0) h1) h2)) (/ (* (* (- (* h0 h0) h1) (- (* h0 h0) h1)) (- (* h0 h0) h1)) (* (* h2 h2) h2)) (* (cbrt (/ (- (* h0 h0) h1) h2)) (cbrt (/ (- (* h0 h0) h1) h2))) (cbrt (/ (- (* h0 h0) h1) h2)) (* (* (/ (- (* h0 h0) h1) h2) (/ (- (* h0 h0) h1) h2)) (/ (- (* h0 h0) h1) h2)) (sqrt (/ (- (* h0 h0) h1) h2)) (sqrt (/ (- (* h0 h0) h1) h2)) (- (- (* h0 h0) h1)) (- h2) (/ (* h0 h0) h2) (/ h1 h2) (/ (* (cbrt (- (* h0 h0) h1)) (cbrt (- (* h0 h0) h1))) (* (cbrt h2) (cbrt h2))) (/ (cbrt (- (* h0 h0) h1)) (cbrt h2)) (/ (* (cbrt (- (* h0 h0) h1)) (cbrt (- (* h0 h0) h1))) (sqrt h2)) (/ (cbrt (- (* h0 h0) h1)) (sqrt h2)) (/ (* (cbrt (- (* h0 h0) h1)) (cbrt (- (* h0 h0) h1))) 1) (/ (cbrt (- (* h0 h0) h1)) h2) (/ (sqrt (- (* h0 h0) h1)) (* (cbrt h2) (cbrt h2))) (/ (sqrt (- (* h0 h0) h1)) (cbrt h2)) (/ (sqrt (- (* h0 h0) h1)) (sqrt h2)) (/ (sqrt (- (* h0 h0) h1)) (sqrt h2)) (/ (sqrt (- (* h0 h0) h1)) 1) (/ (sqrt (- (* h0 h0) h1)) h2) (/ 1 (* (cbrt h2) (cbrt h2))) (/ (- (* h0 h0) h1) (cbrt h2)) (/ 1 (sqrt h2)) (/ (- (* h0 h0) h1) (sqrt h2)) (/ 1 1) (/ (- (* h0 h0) h1) h2) (/ (+ h0 (sqrt h1)) (* (cbrt h2) (cbrt h2))) (/ (- h0 (sqrt h1)) (cbrt h2)) (/ (+ h0 (sqrt h1)) (sqrt h2)) (/ (- h0 (sqrt h1)) (sqrt h2)) (/ (+ h0 (sqrt h1)) 1) (/ (- h0 (sqrt h1)) h2) (/ 1 h2) (/ h2 (- (* h0 h0) h1)) (/ (- (* h0 h0) h1) (* (cbrt h2) (cbrt h2))) (/ (- (* h0 h0) h1) (sqrt h2)) (/ (- (* h0 h0) h1) 1) (/ h2 (cbrt (- (* h0 h0) h1))) (/ h2 (sqrt (- (* h0 h0) h1))) (/ h2 (- (* h0 h0) h1)) (/ h2 (- h0 (sqrt h1))) (* h2 (+ (* (* h0 h0) (* h0 h0)) (+ (* h1 h1) (* (* h0 h0) h1)))) (* h2 (+ (* h0 h0) h1)) (/ (exp (* h0 h0)) (exp h1)) (log (- (* h0 h0) h1)) (exp (- (* h0 h0) h1)) (* (cbrt (- (* h0 h0) h1)) (cbrt (- (* h0 h0) h1))) (cbrt (- (* h0 h0) h1)) (* (* (- (* h0 h0) h1) (- (* h0 h0) h1)) (- (* h0 h0) h1)) (sqrt (- (* h0 h0) h1)) (sqrt (- (* h0 h0) h1)) (- (pow (* h0 h0) 3) (pow h1 3)) (+ (* (* h0 h0) (* h0 h0)) (+ (* h1 h1) (* (* h0 h0) h1))) (- h1) (- (* (* h0 h0) (* h0 h0)) (* h1 h1)) (+ (* h0 h0) h1) (+ h0 (sqrt h1)) (- h0 (sqrt h1)) (- h1) (- (* h3 (pow h0 2)) h4) (- (* h3 (pow h0 2)) h4) (- (* h3 (pow h0 2)) h4) (- (pow h0 2) h1) (- (pow h0 2) h1) (- (pow h0 2) h1) 0.161 * * [simplify]: iteration 0 : 204 enodes (cost 285 ) 0.166 * * [simplify]: iteration 1 : 661 enodes (cost 264 ) 0.177 * * [simplify]: iteration 2 : 2616 enodes (cost 264 ) 0.231 * * [simplify]: iteration 3 : 5001 enodes (cost 264 ) 0.233 * [simplify]: Simplified to: (log (/ (- (* x x) 3.0) 6.0)) (log (/ (- (* x x) 3.0) 6.0)) (exp (/ (- (* x x) 3.0) 6.0)) (pow (/ (- (* x x) 3.0) 6.0) 3) (* (cbrt (/ (- (* x x) 3.0) 6.0)) (cbrt (/ (- (* x x) 3.0) 6.0))) (cbrt (/ (- (* x x) 3.0) 6.0)) (pow (/ (- (* x x) 3.0) 6.0) 3) (sqrt (/ (- (* x x) 3.0) 6.0)) (sqrt (/ (- (* x x) 3.0) 6.0)) (- (- (* x x) 3.0)) (- 6.0) (/ (* x x) 6.0) (/ 3.0 6.0) (/ (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (* (cbrt 6.0) (cbrt 6.0))) (/ (cbrt (- (* x x) 3.0)) (cbrt 6.0)) (/ (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (sqrt 6.0)) (/ (cbrt (- (* x x) 3.0)) (sqrt 6.0)) (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (/ (cbrt (- (* x x) 3.0)) 6.0) (/ (sqrt (- (* x x) 3.0)) (* (cbrt 6.0) (cbrt 6.0))) (/ (sqrt (- (* x x) 3.0)) (cbrt 6.0)) (/ (sqrt (- (* x x) 3.0)) (sqrt 6.0)) (/ (sqrt (- (* x x) 3.0)) (sqrt 6.0)) (sqrt (- (* x x) 3.0)) (/ (sqrt (- (* x x) 3.0)) 6.0) (/ 1 (* (cbrt 6.0) (cbrt 6.0))) (/ (- (* x x) 3.0) (cbrt 6.0)) (/ 1 (sqrt 6.0)) (/ (- (* x x) 3.0) (sqrt 6.0)) 1 (/ (- (* x x) 3.0) 6.0) (/ (+ x (sqrt 3.0)) (* (cbrt 6.0) (cbrt 6.0))) (/ (- x (sqrt 3.0)) (cbrt 6.0)) (/ (+ x (sqrt 3.0)) (sqrt 6.0)) (/ (- x (sqrt 3.0)) (sqrt 6.0)) (+ x (sqrt 3.0)) (/ (- x (sqrt 3.0)) 6.0) (/ 1 6.0) (/ 6.0 (- (* x x) 3.0)) (/ (- (* x x) 3.0) (* (cbrt 6.0) (cbrt 6.0))) (/ (- (* x x) 3.0) (sqrt 6.0)) (- (* x x) 3.0) (/ 6.0 (cbrt (- (* x x) 3.0))) (/ 6.0 (sqrt (- (* x x) 3.0))) (/ 6.0 (- (* x x) 3.0)) (/ 6.0 (- x (sqrt 3.0))) (* (+ (* 3.0 (+ 3.0 (pow x 2))) (* (* x x) (* x x))) 6.0) (* 6.0 (+ (* x x) 3.0)) (exp (- (* x x) 3.0)) (log (- (* x x) 3.0)) (exp (- (* x x) 3.0)) (* (cbrt (- (* x x) 3.0)) (cbrt (- (* x x) 3.0))) (cbrt (- (* x x) 3.0)) (pow (- (* x x) 3.0) 3) (sqrt (- (* x x) 3.0)) (sqrt (- (* x x) 3.0)) (- (pow (* x x) 3) (pow 3.0 3)) (+ (+ (pow x 4) (* (* x x) 3.0)) (* 3.0 3.0)) (- 3.0) (+ (- (* 3.0 3.0)) (pow x 4)) (+ (* x x) 3.0) (+ x (sqrt 3.0)) (- x (sqrt 3.0)) (- 3.0) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (* 0.16666666666666666 (pow x 2)) 0.5) (- (* x x) 3.0) (- (* x x) 3.0) (- (* x x) 3.0) 0.233 * * * [progress]: adding candidates to table 0.314 * * [progress]: iteration 2 / 4 0.314 * * * [progress]: picking best candidate 0.319 * * * * [pick]: Picked # 0.319 * * * [progress]: localizing error 0.324 * * * [progress]: generating rewritten candidates 0.324 * * * * [progress]: [ 1 / 1 ] rewriting at (2 1) 0.334 * * * [progress]: generating series expansions 0.334 * * * * [progress]: [ 1 / 1 ] generating series at (2 1) 0.334 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in (x) around 0 0.334 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.334 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.334 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.334 * [taylor]: Taking taylor expansion of x in x 0.334 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.335 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.335 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.335 * [taylor]: Taking taylor expansion of x in x 0.343 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.343 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.343 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.343 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.343 * [taylor]: Taking taylor expansion of x in x 0.343 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.343 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.343 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.343 * [taylor]: Taking taylor expansion of x in x 0.350 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.350 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.350 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.350 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.350 * [taylor]: Taking taylor expansion of x in x 0.354 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.354 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.354 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.354 * [taylor]: Taking taylor expansion of x in x 0.361 * * * [progress]: simplifying candidates 0.361 * [simplify]: Simplifying using # : (- (+ (log x) (log x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (log (/ (* x x) 6.0)) (exp (/ (* x x) 6.0)) (/ (* (* (* x x) x) (* (* x x) x)) (* (* 6.0 6.0) 6.0)) (/ (* (* (* x x) (* x x)) (* x x)) (* (* 6.0 6.0) 6.0)) (* (cbrt (/ (* x x) 6.0)) (cbrt (/ (* x x) 6.0))) (cbrt (/ (* x x) 6.0)) (* (* (/ (* x x) 6.0) (/ (* x x) 6.0)) (/ (* x x) 6.0)) (sqrt (/ (* x x) 6.0)) (sqrt (/ (* x x) 6.0)) (- (* x x)) (- 6.0) (/ x (* (cbrt 6.0) (cbrt 6.0))) (/ x (cbrt 6.0)) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) (/ x 1) (/ x 6.0) (/ 1 6.0) (/ 6.0 (* x x)) (/ (* x x) (* (cbrt 6.0) (cbrt 6.0))) (/ (* x x) (sqrt 6.0)) (/ (* x x) 1) (/ 6.0 x) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.361 * [simplify]: Sending expressions to egg_math: (- (+ (log h0) (log h0)) (log h1)) (- (log (* h0 h0)) (log h1)) (log (/ (* h0 h0) h1)) (exp (/ (* h0 h0) h1)) (/ (* (* (* h0 h0) h0) (* (* h0 h0) h0)) (* (* h1 h1) h1)) (/ (* (* (* h0 h0) (* h0 h0)) (* h0 h0)) (* (* h1 h1) h1)) (* (cbrt (/ (* h0 h0) h1)) (cbrt (/ (* h0 h0) h1))) (cbrt (/ (* h0 h0) h1)) (* (* (/ (* h0 h0) h1) (/ (* h0 h0) h1)) (/ (* h0 h0) h1)) (sqrt (/ (* h0 h0) h1)) (sqrt (/ (* h0 h0) h1)) (- (* h0 h0)) (- h1) (/ h0 (* (cbrt h1) (cbrt h1))) (/ h0 (cbrt h1)) (/ h0 (sqrt h1)) (/ h0 (sqrt h1)) (/ h0 1) (/ h0 h1) (/ 1 h1) (/ h1 (* h0 h0)) (/ (* h0 h0) (* (cbrt h1) (cbrt h1))) (/ (* h0 h0) (sqrt h1)) (/ (* h0 h0) 1) (/ h1 h0) (* h2 (pow h0 2)) (* h2 (pow h0 2)) (* h2 (pow h0 2)) 0.364 * * [simplify]: iteration 0 : 107 enodes (cost 85 ) 0.367 * * [simplify]: iteration 1 : 464 enodes (cost 70 ) 0.375 * * [simplify]: iteration 2 : 1996 enodes (cost 70 ) 0.423 * * [simplify]: iteration 3 : 5001 enodes (cost 70 ) 0.424 * [simplify]: Simplified to: (log (/ (* x x) 6.0)) (log (/ (* x x) 6.0)) (log (/ (* x x) 6.0)) (exp (/ (* x x) 6.0)) (pow (/ (* x x) 6.0) 3) (pow (/ (* x x) 6.0) 3) (* (cbrt (/ (* x x) 6.0)) (cbrt (/ (* x x) 6.0))) (cbrt (/ (* x x) 6.0)) (pow (/ (* x x) 6.0) 3) (sqrt (/ (* x x) 6.0)) (sqrt (/ (* x x) 6.0)) (- (* x x)) (- 6.0) (/ x (* (cbrt 6.0) (cbrt 6.0))) (/ x (cbrt 6.0)) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) x (/ x 6.0) (/ 1 6.0) (/ 6.0 (* x x)) (/ (* x x) (* (cbrt 6.0) (cbrt 6.0))) (/ (* x x) (sqrt 6.0)) (pow x 2) (/ 6.0 x) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.424 * * * [progress]: adding candidates to table 0.462 * * [progress]: iteration 3 / 4 0.462 * * * [progress]: picking best candidate 0.464 * * * * [pick]: Picked # 0.464 * * * [progress]: localizing error 0.469 * * * [progress]: generating rewritten candidates 0.469 * * * * [progress]: [ 1 / 1 ] rewriting at (2 1) 0.484 * * * [progress]: generating series expansions 0.484 * * * * [progress]: [ 1 / 1 ] generating series at (2 1) 0.484 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in (x) around 0 0.484 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.484 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.484 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.484 * [taylor]: Taking taylor expansion of x in x 0.484 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.484 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.484 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.484 * [taylor]: Taking taylor expansion of x in x 0.492 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.492 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.492 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.492 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.492 * [taylor]: Taking taylor expansion of x in x 0.493 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.493 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.493 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.493 * [taylor]: Taking taylor expansion of x in x 0.500 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.500 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.500 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.500 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.500 * [taylor]: Taking taylor expansion of x in x 0.500 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.500 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.500 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.500 * [taylor]: Taking taylor expansion of x in x 0.507 * * * [progress]: simplifying candidates 0.508 * [simplify]: Simplifying using # : (* x (/ x 6.0)) (+ (log x) (- (log x) (log 6.0))) (+ (log x) (log (/ x 6.0))) (log (* x (/ x 6.0))) (exp (* x (/ x 6.0))) (* (* (* x x) x) (/ (* (* x x) x) (* (* 6.0 6.0) 6.0))) (* (* (* x x) x) (* (* (/ x 6.0) (/ x 6.0)) (/ x 6.0))) (* (cbrt (* x (/ x 6.0))) (cbrt (* x (/ x 6.0)))) (cbrt (* x (/ x 6.0))) (* (* (* x (/ x 6.0)) (* x (/ x 6.0))) (* x (/ x 6.0))) (sqrt (* x (/ x 6.0))) (sqrt (* x (/ x 6.0))) (* (sqrt x) (sqrt (/ x 6.0))) (* (sqrt x) (sqrt (/ x 6.0))) (* (sqrt x) (/ (sqrt x) (sqrt 6.0))) (* (sqrt x) (/ (sqrt x) (sqrt 6.0))) (* x (* (cbrt (/ x 6.0)) (cbrt (/ x 6.0)))) (* x (sqrt (/ x 6.0))) (* x (/ (* (cbrt x) (cbrt x)) (* (cbrt 6.0) (cbrt 6.0)))) (* x (/ (* (cbrt x) (cbrt x)) (sqrt 6.0))) (* x (/ (* (cbrt x) (cbrt x)) 1)) (* x (/ (sqrt x) (* (cbrt 6.0) (cbrt 6.0)))) (* x (/ (sqrt x) (sqrt 6.0))) (* x (/ (sqrt x) 1)) (* x (/ 1 (* (cbrt 6.0) (cbrt 6.0)))) (* x (/ 1 (sqrt 6.0))) (* x (/ 1 1)) (* x 1) (* x x) (* (cbrt x) (/ x 6.0)) (* (sqrt x) (/ x 6.0)) (* x (/ x 6.0)) (* x x) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.508 * [simplify]: Sending expressions to egg_math: (* h0 (/ h0 h1)) (+ (log h0) (- (log h0) (log h1))) (+ (log h0) (log (/ h0 h1))) (log (* h0 (/ h0 h1))) (exp (* h0 (/ h0 h1))) (* (* (* h0 h0) h0) (/ (* (* h0 h0) h0) (* (* h1 h1) h1))) (* (* (* h0 h0) h0) (* (* (/ h0 h1) (/ h0 h1)) (/ h0 h1))) (* (cbrt (* h0 (/ h0 h1))) (cbrt (* h0 (/ h0 h1)))) (cbrt (* h0 (/ h0 h1))) (* (* (* h0 (/ h0 h1)) (* h0 (/ h0 h1))) (* h0 (/ h0 h1))) (sqrt (* h0 (/ h0 h1))) (sqrt (* h0 (/ h0 h1))) (* (sqrt h0) (sqrt (/ h0 h1))) (* (sqrt h0) (sqrt (/ h0 h1))) (* (sqrt h0) (/ (sqrt h0) (sqrt h1))) (* (sqrt h0) (/ (sqrt h0) (sqrt h1))) (* h0 (* (cbrt (/ h0 h1)) (cbrt (/ h0 h1)))) (* h0 (sqrt (/ h0 h1))) (* h0 (/ (* (cbrt h0) (cbrt h0)) (* (cbrt h1) (cbrt h1)))) (* h0 (/ (* (cbrt h0) (cbrt h0)) (sqrt h1))) (* h0 (/ (* (cbrt h0) (cbrt h0)) 1)) (* h0 (/ (sqrt h0) (* (cbrt h1) (cbrt h1)))) (* h0 (/ (sqrt h0) (sqrt h1))) (* h0 (/ (sqrt h0) 1)) (* h0 (/ 1 (* (cbrt h1) (cbrt h1)))) (* h0 (/ 1 (sqrt h1))) (* h0 (/ 1 1)) (* h0 1) (* h0 h0) (* (cbrt h0) (/ h0 h1)) (* (sqrt h0) (/ h0 h1)) (* h0 (/ h0 h1)) (* h0 h0) (* h2 (pow h0 2)) (* h2 (pow h0 2)) (* h2 (pow h0 2)) 0.511 * * [simplify]: iteration 0 : 162 enodes (cost 133 ) 0.515 * * [simplify]: iteration 1 : 780 enodes (cost 112 ) 0.536 * * [simplify]: iteration 2 : 5002 enodes (cost 112 ) 0.537 * [simplify]: Simplified to: (* x (/ x 6.0)) (log (* x (/ x 6.0))) (log (* x (/ x 6.0))) (log (* x (/ x 6.0))) (exp (* x (/ x 6.0))) (pow (* x (/ x 6.0)) 3) (pow (* x (/ x 6.0)) 3) (* (cbrt (* x (/ x 6.0))) (cbrt (* x (/ x 6.0)))) (cbrt (* x (/ x 6.0))) (pow (* x (/ x 6.0)) 3) (sqrt (* x (/ x 6.0))) (sqrt (* x (/ x 6.0))) (* (sqrt x) (sqrt (/ x 6.0))) (* (sqrt x) (sqrt (/ x 6.0))) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) (* x (* (cbrt (/ x 6.0)) (cbrt (/ x 6.0)))) (* x (sqrt (/ x 6.0))) (* x (/ (* (cbrt x) (cbrt x)) (* (cbrt 6.0) (cbrt 6.0)))) (* x (/ (* (cbrt x) (cbrt x)) (sqrt 6.0))) (* (* (cbrt x) (cbrt x)) x) (* x (/ (sqrt x) (* (cbrt 6.0) (cbrt 6.0)))) (* x (/ (sqrt x) (sqrt 6.0))) (* (sqrt x) x) (/ x (* (cbrt 6.0) (cbrt 6.0))) (/ x (sqrt 6.0)) x x (pow x 2) (* (cbrt x) (/ x 6.0)) (* (sqrt x) (/ x 6.0)) (* x (/ x 6.0)) (pow x 2) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.537 * * * [progress]: adding candidates to table 0.589 * * [progress]: iteration 4 / 4 0.589 * * * [progress]: picking best candidate 0.590 * * * * [pick]: Picked # 0.590 * * * [progress]: localizing error 0.597 * * * [progress]: generating rewritten candidates 0.597 * * * * [progress]: [ 1 / 1 ] rewriting at (2 1) 0.627 * * * [progress]: generating series expansions 0.627 * * * * [progress]: [ 1 / 1 ] generating series at (2 1) 0.627 * [approximate]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in (x) around 0 0.627 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.627 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.627 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.627 * [taylor]: Taking taylor expansion of x in x 0.628 * [taylor]: Taking taylor expansion of (* 0.16666666666666666 (pow x 2)) in x 0.628 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.628 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.628 * [taylor]: Taking taylor expansion of x in x 0.636 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.636 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.636 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.636 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.636 * [taylor]: Taking taylor expansion of x in x 0.636 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.636 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.636 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.637 * [taylor]: Taking taylor expansion of x in x 0.644 * [approximate]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in (x) around 0 0.644 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.644 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.644 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.644 * [taylor]: Taking taylor expansion of x in x 0.644 * [taylor]: Taking taylor expansion of (/ 0.16666666666666666 (pow x 2)) in x 0.644 * [taylor]: Taking taylor expansion of 0.16666666666666666 in x 0.644 * [taylor]: Taking taylor expansion of (pow x 2) in x 0.644 * [taylor]: Taking taylor expansion of x in x 0.651 * * * [progress]: simplifying candidates 0.652 * [simplify]: Simplifying using # : (* (* x x) (/ 1 6.0)) (* (* x x) (/ 1 6.0)) (+ (+ (log x) (log x)) (- (log 6.0))) (+ (+ (log x) (log x)) (- 0 (log 6.0))) (+ (+ (log x) (log x)) (- (log 1) (log 6.0))) (+ (+ (log x) (log x)) (log (/ 1 6.0))) (+ (log (* x x)) (- (log 6.0))) (+ (log (* x x)) (- 0 (log 6.0))) (+ (log (* x x)) (- (log 1) (log 6.0))) (+ (log (* x x)) (log (/ 1 6.0))) (log (* (* x x) (/ 1 6.0))) (exp (* (* x x) (/ 1 6.0))) (* (* (* (* x x) x) (* (* x x) x)) (/ (* (* 1 1) 1) (* (* 6.0 6.0) 6.0))) (* (* (* (* x x) x) (* (* x x) x)) (* (* (/ 1 6.0) (/ 1 6.0)) (/ 1 6.0))) (* (* (* (* x x) (* x x)) (* x x)) (/ (* (* 1 1) 1) (* (* 6.0 6.0) 6.0))) (* (* (* (* x x) (* x x)) (* x x)) (* (* (/ 1 6.0) (/ 1 6.0)) (/ 1 6.0))) (* (cbrt (* (* x x) (/ 1 6.0))) (cbrt (* (* x x) (/ 1 6.0)))) (cbrt (* (* x x) (/ 1 6.0))) (* (* (* (* x x) (/ 1 6.0)) (* (* x x) (/ 1 6.0))) (* (* x x) (/ 1 6.0))) (sqrt (* (* x x) (/ 1 6.0))) (sqrt (* (* x x) (/ 1 6.0))) (* x (sqrt (/ 1 6.0))) (* x (sqrt (/ 1 6.0))) (* x (/ (sqrt 1) (sqrt 6.0))) (* x (/ (sqrt 1) (sqrt 6.0))) (* x (/ 1 (sqrt 6.0))) (* x (/ 1 (sqrt 6.0))) (* (* x x) (* (cbrt (/ 1 6.0)) (cbrt (/ 1 6.0)))) (* (* x x) (sqrt (/ 1 6.0))) (* (* x x) (/ (* (cbrt 1) (cbrt 1)) (* (cbrt 6.0) (cbrt 6.0)))) (* (* x x) (/ (* (cbrt 1) (cbrt 1)) (sqrt 6.0))) (* (* x x) (/ (* (cbrt 1) (cbrt 1)) 1)) (* (* x x) (/ (sqrt 1) (* (cbrt 6.0) (cbrt 6.0)))) (* (* x x) (/ (sqrt 1) (sqrt 6.0))) (* (* x x) (/ (sqrt 1) 1)) (* (* x x) (/ 1 (* (cbrt 6.0) (cbrt 6.0)))) (* (* x x) (/ 1 (sqrt 6.0))) (* (* x x) (/ 1 1)) (* (* x x) 1) (* (* x x) 1) (* x (/ 1 6.0)) (* (* x x) 1) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.652 * [simplify]: Sending expressions to egg_math: (* (* h0 h0) (/ 1 h1)) (* (* h0 h0) (/ 1 h1)) (+ (+ (log h0) (log h0)) (- (log h1))) (+ (+ (log h0) (log h0)) (- 0 (log h1))) (+ (+ (log h0) (log h0)) (- (log 1) (log h1))) (+ (+ (log h0) (log h0)) (log (/ 1 h1))) (+ (log (* h0 h0)) (- (log h1))) (+ (log (* h0 h0)) (- 0 (log h1))) (+ (log (* h0 h0)) (- (log 1) (log h1))) (+ (log (* h0 h0)) (log (/ 1 h1))) (log (* (* h0 h0) (/ 1 h1))) (exp (* (* h0 h0) (/ 1 h1))) (* (* (* (* h0 h0) h0) (* (* h0 h0) h0)) (/ (* (* 1 1) 1) (* (* h1 h1) h1))) (* (* (* (* h0 h0) h0) (* (* h0 h0) h0)) (* (* (/ 1 h1) (/ 1 h1)) (/ 1 h1))) (* (* (* (* h0 h0) (* h0 h0)) (* h0 h0)) (/ (* (* 1 1) 1) (* (* h1 h1) h1))) (* (* (* (* h0 h0) (* h0 h0)) (* h0 h0)) (* (* (/ 1 h1) (/ 1 h1)) (/ 1 h1))) (* (cbrt (* (* h0 h0) (/ 1 h1))) (cbrt (* (* h0 h0) (/ 1 h1)))) (cbrt (* (* h0 h0) (/ 1 h1))) (* (* (* (* h0 h0) (/ 1 h1)) (* (* h0 h0) (/ 1 h1))) (* (* h0 h0) (/ 1 h1))) (sqrt (* (* h0 h0) (/ 1 h1))) (sqrt (* (* h0 h0) (/ 1 h1))) (* h0 (sqrt (/ 1 h1))) (* h0 (sqrt (/ 1 h1))) (* h0 (/ (sqrt 1) (sqrt h1))) (* h0 (/ (sqrt 1) (sqrt h1))) (* h0 (/ 1 (sqrt h1))) (* h0 (/ 1 (sqrt h1))) (* (* h0 h0) (* (cbrt (/ 1 h1)) (cbrt (/ 1 h1)))) (* (* h0 h0) (sqrt (/ 1 h1))) (* (* h0 h0) (/ (* (cbrt 1) (cbrt 1)) (* (cbrt h1) (cbrt h1)))) (* (* h0 h0) (/ (* (cbrt 1) (cbrt 1)) (sqrt h1))) (* (* h0 h0) (/ (* (cbrt 1) (cbrt 1)) 1)) (* (* h0 h0) (/ (sqrt 1) (* (cbrt h1) (cbrt h1)))) (* (* h0 h0) (/ (sqrt 1) (sqrt h1))) (* (* h0 h0) (/ (sqrt 1) 1)) (* (* h0 h0) (/ 1 (* (cbrt h1) (cbrt h1)))) (* (* h0 h0) (/ 1 (sqrt h1))) (* (* h0 h0) (/ 1 1)) (* (* h0 h0) 1) (* (* h0 h0) 1) (* h0 (/ 1 h1)) (* (* h0 h0) 1) (* h2 (pow h0 2)) (* h2 (pow h0 2)) (* h2 (pow h0 2)) 0.656 * * [simplify]: iteration 0 : 249 enodes (cost 203 ) 0.662 * * [simplify]: iteration 1 : 1233 enodes (cost 159 ) 0.686 * * [simplify]: iteration 2 : 5002 enodes (cost 142 ) 0.688 * [simplify]: Simplified to: (/ (pow x 2) 6.0) (/ (pow x 2) 6.0) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (- (log (* x x)) (log 6.0)) (exp (* (* x x) (/ 1 6.0))) (pow (/ (pow x 2) 6.0) 3) (pow (/ (pow x 2) 6.0) 3) (pow (/ (pow x 2) 6.0) 3) (pow (/ (pow x 2) 6.0) 3) (* (cbrt (* (* x x) (/ 1 6.0))) (cbrt (* (* x x) (/ 1 6.0)))) (cbrt (* (* x x) (/ 1 6.0))) (pow (/ (pow x 2) 6.0) 3) (sqrt (* (* x x) (/ 1 6.0))) (sqrt (* (* x x) (/ 1 6.0))) (* x (sqrt (/ 1 6.0))) (* x (sqrt (/ 1 6.0))) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) (/ x (sqrt 6.0)) (* (* x x) (* (cbrt (/ 1 6.0)) (cbrt (/ 1 6.0)))) (* (* x x) (sqrt (/ 1 6.0))) (/ (pow x 2) (* (cbrt 6.0) (cbrt 6.0))) (/ (pow x 2) (sqrt 6.0)) (pow x 2) (/ (pow x 2) (* (cbrt 6.0) (cbrt 6.0))) (/ (pow x 2) (sqrt 6.0)) (pow x 2) (/ (pow x 2) (* (cbrt 6.0) (cbrt 6.0))) (/ (pow x 2) (sqrt 6.0)) (pow x 2) (pow x 2) (pow x 2) (/ x 6.0) (pow x 2) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) (* 0.16666666666666666 (pow x 2)) 0.688 * * * [progress]: adding candidates to table 0.748 * [progress]: [Phase 3 of 3] Extracting. 0.748 * * [regime]: Finding splitpoints for: (# # #) 0.748 * * * [regime-changes]: Trying 2 branch expressions: ((* x x) x) 0.748 * * * * [regimes]: Trying to branch on (* x x) from (# # #) 0.758 * * * * [regimes]: Trying to branch on (* x x) from (# #) 0.767 * * * * [regimes]: Trying to branch on x from (# # #) 0.778 * * * [regime]: Found split indices: #