17.209 * [progress]: [Phase 1 of 3] Setting up. 0.001 * * * [progress]: [1/2] Preparing points 0.009 * * * [progress]: [2/2] Setting up program. 0.010 * [progress]: [Phase 2 of 3] Improving. 0.011 * [simplify]: Simplifying using # : (- x (/ 1.0 3.0)) 0.013 * * [simplify]: iteration 0 : 7 enodes (cost 2 ) 0.014 * * [simplify]: iteration 1 : 10 enodes (cost 2 ) 0.015 * * [simplify]: iteration 2 : 10 enodes (cost 2 ) 0.016 * [simplify]: Simplified to: (- x (/ 1.0 3.0)) 0.016 * * [progress]: iteration 1 / 4 0.016 * * * [progress]: picking best candidate 0.017 * * * * [pick]: Picked # 0.017 * * * [progress]: localizing error 0.020 * * * [progress]: generating rewritten candidates 0.020 * * * * [progress]: [ 1 / 1 ] rewriting at (2) 0.033 * * * [progress]: generating series expansions 0.033 * * * * [progress]: [ 1 / 1 ] generating series at (2) 0.034 * [approximate]: Taking taylor expansion of (- x 0.3333333333333333) in (x) around 0 0.034 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.034 * [taylor]: Taking taylor expansion of x in x 0.034 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.034 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.034 * [taylor]: Taking taylor expansion of x in x 0.034 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.039 * [approximate]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in (x) around 0 0.039 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.039 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.039 * [taylor]: Taking taylor expansion of x in x 0.040 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.040 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.040 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.040 * [taylor]: Taking taylor expansion of x in x 0.040 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.048 * [approximate]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in (x) around 0 0.048 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.048 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.048 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.048 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.048 * [taylor]: Taking taylor expansion of x in x 0.049 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.049 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.049 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.049 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.049 * [taylor]: Taking taylor expansion of x in x 0.056 * * * [progress]: simplifying candidates 0.058 * [simplify]: Simplifying using # : (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (fma (sqrt x) (sqrt x) (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma (sqrt x) (sqrt x) (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma (sqrt x) (sqrt x) (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (fma 1 x (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma 1 x (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma 1 x (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma 1 x (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma 1 x (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma 1 x (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma 1 x (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma 1 x (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma 1 x (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma 1 x (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (expm1 (- x (/ 1.0 3.0))) (log1p (- x (/ 1.0 3.0))) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (/ (exp x) (exp (/ 1.0 3.0))) (log (- x (/ 1.0 3.0))) (exp (- x (/ 1.0 3.0))) (* (cbrt (- x (/ 1.0 3.0))) (cbrt (- x (/ 1.0 3.0)))) (cbrt (- x (/ 1.0 3.0))) (* (* (- x (/ 1.0 3.0)) (- x (/ 1.0 3.0))) (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (- (pow x 3) (pow (/ 1.0 3.0) 3)) (+ (* x x) (+ (* (/ 1.0 3.0) (/ 1.0 3.0)) (* x (/ 1.0 3.0)))) (- (/ 1.0 3.0)) (- (* x x) (* (/ 1.0 3.0) (/ 1.0 3.0))) (+ x (/ 1.0 3.0)) (+ (sqrt x) (sqrt (/ 1.0 3.0))) (- (sqrt x) (sqrt (/ 1.0 3.0))) (+ (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0)) (- x 0.3333333333333333) (- x 0.3333333333333333) (- x 0.3333333333333333) 0.064 * * [simplify]: iteration 0 : 365 enodes (cost 968 ) 0.071 * * [simplify]: iteration 1 : 1117 enodes (cost 631 ) 0.093 * * [simplify]: iteration 2 : 4922 enodes (cost 511 ) 0.211 * * [simplify]: iteration 3 : 5001 enodes (cost 505 ) 0.214 * [simplify]: Simplified to: (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- (pow (/ (cbrt 1.0) (cbrt 3.0)) 3) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (- x (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0) (/ 1.0 3.0)) (expm1 (- x (/ 1.0 3.0))) (log1p (- x (/ 1.0 3.0))) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (exp (- x (/ 1.0 3.0))) (log (- x (/ 1.0 3.0))) (exp (- x (/ 1.0 3.0))) (* (cbrt (- x (/ 1.0 3.0))) (cbrt (- x (/ 1.0 3.0)))) (cbrt (- x (/ 1.0 3.0))) (pow (- x (/ 1.0 3.0)) 3) (sqrt (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (- (pow x 3) (pow (/ 1.0 3.0) 3)) (fma (/ 1.0 3.0) (+ x (/ 1.0 3.0)) (* x x)) (- (/ 1.0 3.0)) (- (* x x) (* (/ 1.0 3.0) (/ 1.0 3.0))) (+ x (/ 1.0 3.0)) (+ (sqrt x) (sqrt (/ 1.0 3.0))) (- (sqrt x) (sqrt (/ 1.0 3.0))) (+ (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0)) (- x 0.3333333333333333) (- x 0.3333333333333333) (- x 0.3333333333333333) 0.215 * * * [progress]: adding candidates to table 0.262 * * [progress]: iteration 2 / 4 0.262 * * * [progress]: picking best candidate 0.266 * * * * [pick]: Picked # 0.266 * * * [progress]: localizing error 0.282 * * * [progress]: generating rewritten candidates 0.282 * * * * [progress]: [ 1 / 4 ] rewriting at (2 2 1) 0.286 * * * * [progress]: [ 2 / 4 ] rewriting at (2 1 1 1 1) 0.291 * * * * [progress]: [ 3 / 4 ] rewriting at (2 2 2 2) 0.295 * * * * [progress]: [ 4 / 4 ] rewriting at (2 2 2 1 1) 0.306 * * * [progress]: generating series expansions 0.306 * * * * [progress]: [ 1 / 4 ] generating series at (2 2 1) 0.306 * * * * [progress]: [ 2 / 4 ] generating series at (2 1 1 1 1) 0.306 * * * * [progress]: [ 3 / 4 ] generating series at (2 2 2 2) 0.306 * * * * [progress]: [ 4 / 4 ] generating series at (2 2 2 1 1) 0.306 * * * [progress]: simplifying candidates 0.309 * [simplify]: Simplifying using # : (expm1 (/ 1.0 (sqrt 3.0))) (log1p (/ 1.0 (sqrt 3.0))) (- (log 1.0) (log (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (exp (/ 1.0 (sqrt 3.0))) (/ (* (* 1.0 1.0) 1.0) (* (* (sqrt 3.0) (sqrt 3.0)) (sqrt 3.0))) (* (cbrt (/ 1.0 (sqrt 3.0))) (cbrt (/ 1.0 (sqrt 3.0)))) (cbrt (/ 1.0 (sqrt 3.0))) (* (* (/ 1.0 (sqrt 3.0)) (/ 1.0 (sqrt 3.0))) (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (- 1.0) (- (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1.0) (cbrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (cbrt 1.0) (sqrt (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 1)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (/ (cbrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1.0) (cbrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (sqrt 1.0) (sqrt (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 1)) (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) 1) (/ (sqrt 1.0) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (cbrt (sqrt 3.0))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1.0 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1 1) (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1.0) (/ 1.0 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt 1)) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1.0 1) (/ (sqrt 3.0) (cbrt 1.0)) (/ (sqrt 3.0) (sqrt 1.0)) (/ (sqrt 3.0) 1.0) (expm1 (/ 1.0 (sqrt 3.0))) (log1p (/ 1.0 (sqrt 3.0))) (- (log 1.0) (log (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (exp (/ 1.0 (sqrt 3.0))) (/ (* (* 1.0 1.0) 1.0) (* (* (sqrt 3.0) (sqrt 3.0)) (sqrt 3.0))) (* (cbrt (/ 1.0 (sqrt 3.0))) (cbrt (/ 1.0 (sqrt 3.0)))) (cbrt (/ 1.0 (sqrt 3.0))) (* (* (/ 1.0 (sqrt 3.0)) (/ 1.0 (sqrt 3.0))) (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (- 1.0) (- (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1.0) (cbrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (cbrt 1.0) (sqrt (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 1)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (/ (cbrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1.0) (cbrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (sqrt 1.0) (sqrt (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 1)) (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) 1) (/ (sqrt 1.0) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (cbrt (sqrt 3.0))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1.0 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1 1) (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1.0) (/ 1.0 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt 1)) (/ 1.0 (sqrt (sqrt 3.0))) (/ 1.0 1) (/ (sqrt 3.0) (cbrt 1.0)) (/ (sqrt 3.0) (sqrt 1.0)) (/ (sqrt 3.0) 1.0) (expm1 (/ 1 (sqrt 3.0))) (log1p (/ 1 (sqrt 3.0))) (- 1/2) (- 1) (- (/ 1 2)) (- (log (sqrt 3.0))) (- 0 (log (sqrt 3.0))) (- (log 1) (log (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (exp (/ 1 (sqrt 3.0))) (/ (* (* 1 1) 1) (* (* (sqrt 3.0) (sqrt 3.0)) (sqrt 3.0))) (* (cbrt (/ 1 (sqrt 3.0))) (cbrt (/ 1 (sqrt 3.0)))) (cbrt (/ 1 (sqrt 3.0))) (* (* (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (- 1) (- (sqrt 3.0)) (/ (* (cbrt 1) (cbrt 1)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1) (cbrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (cbrt 1) (sqrt (cbrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt (sqrt 3.0))) (/ (cbrt 1) (sqrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt 1)) (/ (cbrt 1) (sqrt 3.0)) (/ (* (cbrt 1) (cbrt 1)) (sqrt (sqrt 3.0))) (/ (cbrt 1) (sqrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) 1) (/ (cbrt 1) (sqrt 3.0)) (/ (sqrt 1) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1) (cbrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (sqrt 1) (sqrt (cbrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt 1)) (/ (sqrt 1) (sqrt 3.0)) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) 1) (/ (sqrt 1) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 1) (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 1) (/ (sqrt 3.0) (cbrt 1)) (/ (sqrt 3.0) (sqrt 1)) (/ (sqrt 3.0) 1) (expm1 (/ 1 (sqrt 3.0))) (log1p (/ 1 (sqrt 3.0))) (- 1/2) (- 1) (- (/ 1 2)) (- (log (sqrt 3.0))) (- 0 (log (sqrt 3.0))) (- (log 1) (log (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (exp (/ 1 (sqrt 3.0))) (/ (* (* 1 1) 1) (* (* (sqrt 3.0) (sqrt 3.0)) (sqrt 3.0))) (* (cbrt (/ 1 (sqrt 3.0))) (cbrt (/ 1 (sqrt 3.0)))) (cbrt (/ 1 (sqrt 3.0))) (* (* (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (- 1) (- (sqrt 3.0)) (/ (* (cbrt 1) (cbrt 1)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1) (cbrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (cbrt 1) (sqrt (cbrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt (sqrt 3.0))) (/ (cbrt 1) (sqrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) (sqrt 1)) (/ (cbrt 1) (sqrt 3.0)) (/ (* (cbrt 1) (cbrt 1)) (sqrt (sqrt 3.0))) (/ (cbrt 1) (sqrt (sqrt 3.0))) (/ (* (cbrt 1) (cbrt 1)) 1) (/ (cbrt 1) (sqrt 3.0)) (/ (sqrt 1) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1) (cbrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ (sqrt 1) (sqrt (cbrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt 1)) (/ (sqrt 1) (sqrt 3.0)) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) (sqrt (sqrt 3.0))) (/ (sqrt 1) 1) (/ (sqrt 1) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 1) (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (sqrt (* (cbrt 3.0) (cbrt 3.0)))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt 1)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 1) (/ (sqrt 3.0) (cbrt 1)) (/ (sqrt 3.0) (sqrt 1)) (/ (sqrt 3.0) 1) (+ (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))))) (+ (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))))) (+ (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))))) (+ (fma (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0)) 1 (pow (cbrt x) 3)) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0))))) 0.316 * * [simplify]: iteration 0 : 214 enodes (cost 944 ) 0.322 * * [simplify]: iteration 1 : 729 enodes (cost 846 ) 0.331 * * [simplify]: iteration 2 : 1680 enodes (cost 742 ) 0.358 * * [simplify]: iteration 3 : 4970 enodes (cost 726 ) 0.460 * * [simplify]: iteration 4 : 5001 enodes (cost 726 ) 0.466 * [simplify]: Simplified to: (expm1 (/ 1.0 (sqrt 3.0))) (log1p (/ 1.0 (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (exp (/ 1.0 (sqrt 3.0))) (pow (/ 1.0 (sqrt 3.0)) 3) (* (cbrt (/ 1.0 (sqrt 3.0))) (cbrt (/ 1.0 (sqrt 3.0)))) (cbrt (/ 1.0 (sqrt 3.0))) (pow (/ 1.0 (sqrt 3.0)) 3) (sqrt (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (- 1.0) (- (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1.0) (cbrt (sqrt 3.0))) (/ (cbrt 1.0) (/ (fabs (cbrt 3.0)) (cbrt 1.0))) (/ (cbrt 1.0) (sqrt (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (* (cbrt 1.0) (cbrt 1.0)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (* (cbrt 1.0) (cbrt 1.0)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1.0) (cbrt (sqrt 3.0))) (/ (sqrt 1.0) (fabs (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (sqrt 1.0) (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (sqrt 1.0) (/ (sqrt 1.0) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1.0 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1 (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1 (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1.0) (/ 1.0 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (fabs (cbrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1.0 (/ 1.0 (sqrt (sqrt 3.0))) 1.0 (/ (sqrt 3.0) (cbrt 1.0)) (/ (sqrt 3.0) (sqrt 1.0)) (/ (sqrt 3.0) 1.0) (expm1 (/ 1.0 (sqrt 3.0))) (log1p (/ 1.0 (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (log (/ 1.0 (sqrt 3.0))) (exp (/ 1.0 (sqrt 3.0))) (pow (/ 1.0 (sqrt 3.0)) 3) (* (cbrt (/ 1.0 (sqrt 3.0))) (cbrt (/ 1.0 (sqrt 3.0)))) (cbrt (/ 1.0 (sqrt 3.0))) (pow (/ 1.0 (sqrt 3.0)) 3) (sqrt (/ 1.0 (sqrt 3.0))) (sqrt (/ 1.0 (sqrt 3.0))) (- 1.0) (- (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (cbrt 1.0) (cbrt (sqrt 3.0))) (/ (cbrt 1.0) (/ (fabs (cbrt 3.0)) (cbrt 1.0))) (/ (cbrt 1.0) (sqrt (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (* (cbrt 1.0) (cbrt 1.0)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt (sqrt 3.0))) (/ (cbrt 1.0) (sqrt (sqrt 3.0))) (* (cbrt 1.0) (cbrt 1.0)) (/ (cbrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ (sqrt 1.0) (cbrt (sqrt 3.0))) (/ (sqrt 1.0) (fabs (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (cbrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (sqrt 1.0) (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (/ (sqrt 1.0) (sqrt (sqrt 3.0))) (sqrt 1.0) (/ (sqrt 1.0) (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1.0 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1 (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1 (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (/ (sqrt 3.0) 1.0) (/ 1.0 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1.0 (fabs (cbrt 3.0))) (/ 1.0 (sqrt (sqrt 3.0))) 1.0 (/ 1.0 (sqrt (sqrt 3.0))) 1.0 (/ (sqrt 3.0) (cbrt 1.0)) (/ (sqrt 3.0) (sqrt 1.0)) (/ (sqrt 3.0) 1.0) (expm1 (/ 1 (sqrt 3.0))) (log1p (/ 1 (sqrt 3.0))) (- 1/2) (- 1) (- 1/2) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (exp (/ 1 (sqrt 3.0))) (/ (/ 1 3.0) (sqrt 3.0)) (* (cbrt (/ 1 (sqrt 3.0))) (cbrt (/ 1 (sqrt 3.0)))) (cbrt (/ 1 (sqrt 3.0))) (/ (/ 1 3.0) (sqrt 3.0)) (sqrt (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (- 1) (- (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (sqrt 3.0) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt (sqrt 3.0))) 1 (sqrt 3.0) (sqrt 3.0) (sqrt 3.0) (expm1 (/ 1 (sqrt 3.0))) (log1p (/ 1 (sqrt 3.0))) (- 1/2) (- 1) (- 1/2) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (log (/ 1 (sqrt 3.0))) (exp (/ 1 (sqrt 3.0))) (/ (/ 1 3.0) (sqrt 3.0)) (* (cbrt (/ 1 (sqrt 3.0))) (cbrt (/ 1 (sqrt 3.0)))) (cbrt (/ 1 (sqrt 3.0))) (/ (/ 1 3.0) (sqrt 3.0)) (sqrt (/ 1 (sqrt 3.0))) (sqrt (/ 1 (sqrt 3.0))) (- 1) (- (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (cbrt (sqrt 3.0))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt (sqrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt 3.0)) (/ 1 (sqrt 3.0)) (sqrt 3.0) (/ 1 (* (cbrt (sqrt 3.0)) (cbrt (sqrt 3.0)))) (/ 1 (fabs (cbrt 3.0))) (/ 1 (sqrt (sqrt 3.0))) 1 (/ 1 (sqrt (sqrt 3.0))) 1 (sqrt 3.0) (sqrt 3.0) (sqrt 3.0) (- x (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- x (/ 1.0 3.0)) (- x (/ 1.0 3.0)) 0.467 * * * [progress]: adding candidates to table 0.778 * * [progress]: iteration 3 / 4 0.779 * * * [progress]: picking best candidate 0.780 * * * * [pick]: Picked # 0.780 * * * [progress]: localizing error 0.787 * * * [progress]: generating rewritten candidates 0.787 * * * * [progress]: [ 1 / 3 ] rewriting at (2) 0.788 * * * * [progress]: [ 2 / 3 ] rewriting at (2 1 1) 0.796 * * * * [progress]: [ 3 / 3 ] rewriting at (2 1) 0.800 * * * [progress]: generating series expansions 0.800 * * * * [progress]: [ 1 / 3 ] generating series at (2) 0.801 * [approximate]: Taking taylor expansion of (expm1 (log1p (- x 0.3333333333333333))) in (x) around 0 0.801 * [taylor]: Taking taylor expansion of (expm1 (log1p (- x 0.3333333333333333))) in x 0.801 * [taylor]: Rewrote expression to (- (exp (log1p (- x 0.3333333333333333))) 1) 0.801 * [taylor]: Taking taylor expansion of (exp (log1p (- x 0.3333333333333333))) in x 0.801 * [taylor]: Taking taylor expansion of (log1p (- x 0.3333333333333333)) in x 0.801 * [taylor]: Rewrote expression to (log (+ 1 (- x 0.3333333333333333))) 0.801 * [taylor]: Taking taylor expansion of (+ 1 (- x 0.3333333333333333)) in x 0.801 * [taylor]: Taking taylor expansion of 1 in x 0.801 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.801 * [taylor]: Taking taylor expansion of x in x 0.801 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.803 * [taylor]: Taking taylor expansion of 1 in x 0.803 * [taylor]: Taking taylor expansion of (expm1 (log1p (- x 0.3333333333333333))) in x 0.803 * [taylor]: Rewrote expression to (- (exp (log1p (- x 0.3333333333333333))) 1) 0.803 * [taylor]: Taking taylor expansion of (exp (log1p (- x 0.3333333333333333))) in x 0.803 * [taylor]: Taking taylor expansion of (log1p (- x 0.3333333333333333)) in x 0.803 * [taylor]: Rewrote expression to (log (+ 1 (- x 0.3333333333333333))) 0.803 * [taylor]: Taking taylor expansion of (+ 1 (- x 0.3333333333333333)) in x 0.803 * [taylor]: Taking taylor expansion of 1 in x 0.804 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.804 * [taylor]: Taking taylor expansion of x in x 0.804 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.806 * [taylor]: Taking taylor expansion of 1 in x 0.835 * [approximate]: Taking taylor expansion of (expm1 (log1p (- (/ 1 x) 0.3333333333333333))) in (x) around 0 0.836 * [taylor]: Taking taylor expansion of (expm1 (log1p (- (/ 1 x) 0.3333333333333333))) in x 0.836 * [taylor]: Rewrote expression to (- (exp (log1p (- (/ 1 x) 0.3333333333333333))) 1) 0.836 * [taylor]: Taking taylor expansion of (exp (log1p (- (/ 1 x) 0.3333333333333333))) in x 0.836 * [taylor]: Taking taylor expansion of (log1p (- (/ 1 x) 0.3333333333333333)) in x 0.836 * [taylor]: Rewrote expression to (log (+ 1 (- (/ 1 x) 0.3333333333333333))) 0.836 * [taylor]: Taking taylor expansion of (+ 1 (- (/ 1 x) 0.3333333333333333)) in x 0.836 * [taylor]: Taking taylor expansion of 1 in x 0.836 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.836 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.836 * [taylor]: Taking taylor expansion of x in x 0.836 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.837 * [taylor]: Taking taylor expansion of 1 in x 0.837 * [taylor]: Taking taylor expansion of (expm1 (log1p (- (/ 1 x) 0.3333333333333333))) in x 0.837 * [taylor]: Rewrote expression to (- (exp (log1p (- (/ 1 x) 0.3333333333333333))) 1) 0.838 * [taylor]: Taking taylor expansion of (exp (log1p (- (/ 1 x) 0.3333333333333333))) in x 0.838 * [taylor]: Taking taylor expansion of (log1p (- (/ 1 x) 0.3333333333333333)) in x 0.838 * [taylor]: Rewrote expression to (log (+ 1 (- (/ 1 x) 0.3333333333333333))) 0.838 * [taylor]: Taking taylor expansion of (+ 1 (- (/ 1 x) 0.3333333333333333)) in x 0.838 * [taylor]: Taking taylor expansion of 1 in x 0.838 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.838 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.838 * [taylor]: Taking taylor expansion of x in x 0.838 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.839 * [taylor]: Taking taylor expansion of 1 in x 0.904 * [approximate]: Taking taylor expansion of (expm1 (log1p (- (+ 0.3333333333333333 (/ 1 x))))) in (x) around 0 0.904 * [taylor]: Taking taylor expansion of (expm1 (log1p (- (+ 0.3333333333333333 (/ 1 x))))) in x 0.904 * [taylor]: Rewrote expression to (- (exp (log1p (- (+ 0.3333333333333333 (/ 1 x))))) 1) 0.904 * [taylor]: Taking taylor expansion of (exp (log1p (- (+ 0.3333333333333333 (/ 1 x))))) in x 0.904 * [taylor]: Taking taylor expansion of (log1p (- (+ 0.3333333333333333 (/ 1 x)))) in x 0.904 * [taylor]: Rewrote expression to (log (+ 1 (- (+ 0.3333333333333333 (/ 1 x))))) 0.904 * [taylor]: Taking taylor expansion of (+ 1 (- (+ 0.3333333333333333 (/ 1 x)))) in x 0.904 * [taylor]: Taking taylor expansion of 1 in x 0.904 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.904 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.904 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.904 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.904 * [taylor]: Taking taylor expansion of x in x 0.906 * [taylor]: Taking taylor expansion of 1 in x 0.907 * [taylor]: Taking taylor expansion of (expm1 (log1p (- (+ 0.3333333333333333 (/ 1 x))))) in x 0.907 * [taylor]: Rewrote expression to (- (exp (log1p (- (+ 0.3333333333333333 (/ 1 x))))) 1) 0.907 * [taylor]: Taking taylor expansion of (exp (log1p (- (+ 0.3333333333333333 (/ 1 x))))) in x 0.907 * [taylor]: Taking taylor expansion of (log1p (- (+ 0.3333333333333333 (/ 1 x)))) in x 0.907 * [taylor]: Rewrote expression to (log (+ 1 (- (+ 0.3333333333333333 (/ 1 x))))) 0.907 * [taylor]: Taking taylor expansion of (+ 1 (- (+ 0.3333333333333333 (/ 1 x)))) in x 0.907 * [taylor]: Taking taylor expansion of 1 in x 0.907 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.907 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.907 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.907 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.907 * [taylor]: Taking taylor expansion of x in x 0.909 * [taylor]: Taking taylor expansion of 1 in x 0.979 * * * * [progress]: [ 2 / 3 ] generating series at (2 1 1) 0.979 * [approximate]: Taking taylor expansion of (- x 0.3333333333333333) in (x) around 0 0.979 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.979 * [taylor]: Taking taylor expansion of x in x 0.979 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.979 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 0.979 * [taylor]: Taking taylor expansion of x in x 0.979 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.984 * [approximate]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in (x) around 0 0.984 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.984 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.984 * [taylor]: Taking taylor expansion of x in x 0.984 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.984 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 0.984 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.984 * [taylor]: Taking taylor expansion of x in x 0.985 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.992 * [approximate]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in (x) around 0 0.992 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.992 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.992 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.992 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.992 * [taylor]: Taking taylor expansion of x in x 0.993 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 0.993 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 0.993 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 0.993 * [taylor]: Taking taylor expansion of (/ 1 x) in x 0.993 * [taylor]: Taking taylor expansion of x in x 1.000 * * * * [progress]: [ 3 / 3 ] generating series at (2 1) 1.001 * [approximate]: Taking taylor expansion of (log1p (- x 0.3333333333333333)) in (x) around 0 1.001 * [taylor]: Taking taylor expansion of (log1p (- x 0.3333333333333333)) in x 1.001 * [taylor]: Rewrote expression to (log (+ 1 (- x 0.3333333333333333))) 1.001 * [taylor]: Taking taylor expansion of (+ 1 (- x 0.3333333333333333)) in x 1.001 * [taylor]: Taking taylor expansion of 1 in x 1.001 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 1.001 * [taylor]: Taking taylor expansion of x in x 1.001 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.002 * [taylor]: Taking taylor expansion of (log1p (- x 0.3333333333333333)) in x 1.003 * [taylor]: Rewrote expression to (log (+ 1 (- x 0.3333333333333333))) 1.003 * [taylor]: Taking taylor expansion of (+ 1 (- x 0.3333333333333333)) in x 1.003 * [taylor]: Taking taylor expansion of 1 in x 1.003 * [taylor]: Taking taylor expansion of (- x 0.3333333333333333) in x 1.003 * [taylor]: Taking taylor expansion of x in x 1.003 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.016 * [approximate]: Taking taylor expansion of (log1p (- (/ 1 x) 0.3333333333333333)) in (x) around 0 1.016 * [taylor]: Taking taylor expansion of (log1p (- (/ 1 x) 0.3333333333333333)) in x 1.016 * [taylor]: Rewrote expression to (log (+ 1 (- (/ 1 x) 0.3333333333333333))) 1.016 * [taylor]: Taking taylor expansion of (+ 1 (- (/ 1 x) 0.3333333333333333)) in x 1.016 * [taylor]: Taking taylor expansion of 1 in x 1.016 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 1.016 * [taylor]: Taking taylor expansion of (/ 1 x) in x 1.016 * [taylor]: Taking taylor expansion of x in x 1.017 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.017 * [taylor]: Taking taylor expansion of (log1p (- (/ 1 x) 0.3333333333333333)) in x 1.018 * [taylor]: Rewrote expression to (log (+ 1 (- (/ 1 x) 0.3333333333333333))) 1.018 * [taylor]: Taking taylor expansion of (+ 1 (- (/ 1 x) 0.3333333333333333)) in x 1.018 * [taylor]: Taking taylor expansion of 1 in x 1.018 * [taylor]: Taking taylor expansion of (- (/ 1 x) 0.3333333333333333) in x 1.018 * [taylor]: Taking taylor expansion of (/ 1 x) in x 1.018 * [taylor]: Taking taylor expansion of x in x 1.018 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.031 * [approximate]: Taking taylor expansion of (log1p (- (+ 0.3333333333333333 (/ 1 x)))) in (x) around 0 1.032 * [taylor]: Taking taylor expansion of (log1p (- (+ 0.3333333333333333 (/ 1 x)))) in x 1.032 * [taylor]: Rewrote expression to (log (+ 1 (- (+ 0.3333333333333333 (/ 1 x))))) 1.032 * [taylor]: Taking taylor expansion of (+ 1 (- (+ 0.3333333333333333 (/ 1 x)))) in x 1.032 * [taylor]: Taking taylor expansion of 1 in x 1.032 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 1.032 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 1.032 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.032 * [taylor]: Taking taylor expansion of (/ 1 x) in x 1.032 * [taylor]: Taking taylor expansion of x in x 1.033 * [taylor]: Taking taylor expansion of (log1p (- (+ 0.3333333333333333 (/ 1 x)))) in x 1.033 * [taylor]: Rewrote expression to (log (+ 1 (- (+ 0.3333333333333333 (/ 1 x))))) 1.033 * [taylor]: Taking taylor expansion of (+ 1 (- (+ 0.3333333333333333 (/ 1 x)))) in x 1.033 * [taylor]: Taking taylor expansion of 1 in x 1.033 * [taylor]: Taking taylor expansion of (- (+ 0.3333333333333333 (/ 1 x))) in x 1.033 * [taylor]: Taking taylor expansion of (+ 0.3333333333333333 (/ 1 x)) in x 1.033 * [taylor]: Taking taylor expansion of 0.3333333333333333 in x 1.033 * [taylor]: Taking taylor expansion of (/ 1 x) in x 1.033 * [taylor]: Taking taylor expansion of x in x 1.053 * * * [progress]: simplifying candidates 1.055 * [simplify]: Simplifying using # : (exp (log1p (- x (/ 1.0 3.0)))) (expm1 (expm1 (log1p (- x (/ 1.0 3.0))))) (log1p (expm1 (log1p (- x (/ 1.0 3.0))))) (log (expm1 (log1p (- x (/ 1.0 3.0))))) (exp (expm1 (log1p (- x (/ 1.0 3.0))))) (* (cbrt (expm1 (log1p (- x (/ 1.0 3.0))))) (cbrt (expm1 (log1p (- x (/ 1.0 3.0)))))) (cbrt (expm1 (log1p (- x (/ 1.0 3.0))))) (* (* (expm1 (log1p (- x (/ 1.0 3.0)))) (expm1 (log1p (- x (/ 1.0 3.0))))) (expm1 (log1p (- x (/ 1.0 3.0))))) (sqrt (expm1 (log1p (- x (/ 1.0 3.0))))) (sqrt (expm1 (log1p (- x (/ 1.0 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma (* (cbrt x) (cbrt x)) (cbrt x) (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (fma (sqrt x) (sqrt x) (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma (sqrt x) (sqrt x) (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma (sqrt x) (sqrt x) (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma (sqrt x) (sqrt x) (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (fma 1 x (- (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0)))))) (fma (- (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))) (* (cbrt (/ 1.0 3.0)) (* (cbrt (/ 1.0 3.0)) (cbrt (/ 1.0 3.0))))) (fma 1 x (- (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0))))) (fma (- (sqrt (/ 1.0 3.0))) (sqrt (/ 1.0 3.0)) (* (sqrt (/ 1.0 3.0)) (sqrt (/ 1.0 3.0)))) (fma 1 x (- (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (cbrt 1.0) (cbrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (cbrt 1.0) (cbrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0))))) (fma (- (/ (cbrt 1.0) (sqrt 3.0))) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)) (* (/ (cbrt 1.0) (sqrt 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) (sqrt 3.0)))) (fma 1 x (- (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1)))) (fma (- (/ (cbrt 1.0) 3.0)) (/ (* (cbrt 1.0) (cbrt 1.0)) 1) (* (/ (cbrt 1.0) 3.0) (/ (* (cbrt 1.0) (cbrt 1.0)) 1))) (fma 1 x (- (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ (sqrt 1.0) (cbrt 3.0))) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))) (* (/ (sqrt 1.0) (cbrt 3.0)) (/ (sqrt 1.0) (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0))))) (fma (- (/ (sqrt 1.0) (sqrt 3.0))) (/ (sqrt 1.0) (sqrt 3.0)) (* (/ (sqrt 1.0) (sqrt 3.0)) (/ (sqrt 1.0) (sqrt 3.0)))) (fma 1 x (- (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1)))) (fma (- (/ (sqrt 1.0) 3.0)) (/ (sqrt 1.0) 1) (* (/ (sqrt 1.0) 3.0) (/ (sqrt 1.0) 1))) (fma 1 x (- (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0)))))) (fma (- (/ 1.0 (cbrt 3.0))) (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (* (/ 1.0 (cbrt 3.0)) (/ 1 (* (cbrt 3.0) (cbrt 3.0))))) (fma 1 x (- (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0))))) (fma (- (/ 1.0 (sqrt 3.0))) (/ 1 (sqrt 3.0)) (* (/ 1.0 (sqrt 3.0)) (/ 1 (sqrt 3.0)))) (fma 1 x (- (* (/ 1.0 3.0) (/ 1 1)))) (fma (- (/ 1.0 3.0)) (/ 1 1) (* (/ 1.0 3.0) (/ 1 1))) (fma 1 x (- (* (/ 1.0 3.0) 1))) (fma (- (/ 1.0 3.0)) 1 (* (/ 1.0 3.0) 1)) (fma 1 x (- (* (/ 1 3.0) 1.0))) (fma (- (/ 1 3.0)) 1.0 (* (/ 1 3.0) 1.0)) (expm1 (- x (/ 1.0 3.0))) (log1p (- x (/ 1.0 3.0))) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (- (/ 1.0 3.0)) (/ (exp x) (exp (/ 1.0 3.0))) (log (- x (/ 1.0 3.0))) (exp (- x (/ 1.0 3.0))) (* (cbrt (- x (/ 1.0 3.0))) (cbrt (- x (/ 1.0 3.0)))) (cbrt (- x (/ 1.0 3.0))) (* (* (- x (/ 1.0 3.0)) (- x (/ 1.0 3.0))) (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (- (pow x 3) (pow (/ 1.0 3.0) 3)) (+ (* x x) (+ (* (/ 1.0 3.0) (/ 1.0 3.0)) (* x (/ 1.0 3.0)))) (- (/ 1.0 3.0)) (- (* x x) (* (/ 1.0 3.0) (/ 1.0 3.0))) (+ x (/ 1.0 3.0)) (+ (sqrt x) (sqrt (/ 1.0 3.0))) (- (sqrt x) (sqrt (/ 1.0 3.0))) (+ (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- (sqrt x) (/ (sqrt 1.0) (sqrt 3.0))) (- x (/ 1.0 3.0)) (- (/ 1.0 3.0)) (+ 1 (- x (/ 1.0 3.0))) (expm1 (log1p (- x (/ 1.0 3.0)))) (log1p (log1p (- x (/ 1.0 3.0)))) (log (log1p (- x (/ 1.0 3.0)))) (exp (log1p (- x (/ 1.0 3.0)))) (* (cbrt (log1p (- x (/ 1.0 3.0)))) (cbrt (log1p (- x (/ 1.0 3.0))))) (cbrt (log1p (- x (/ 1.0 3.0)))) (* (* (log1p (- x (/ 1.0 3.0))) (log1p (- x (/ 1.0 3.0)))) (log1p (- x (/ 1.0 3.0)))) (sqrt (log1p (- x (/ 1.0 3.0)))) (sqrt (log1p (- x (/ 1.0 3.0)))) (- (+ (* 0.7499999999999999 (pow x 2)) (* 1.0 x)) (+ (* 0.33333333333333337 (/ (pow x 2) (pow 0.6666666666666667 2))) 0.33333333333333326)) (- (+ (* 6.938893903907228e-18 (/ (exp (- (log (/ 1 x)))) (pow x 4))) (+ (* 0.6666666666666667 (/ (exp (- (log (/ 1 x)))) x)) (exp (- (log (/ 1 x)))))) 1) (- (+ (exp (- (log -1) (log (/ -1 x)))) (+ (* 6.938893903907228e-18 (/ (exp (- (log -1) (log (/ -1 x)))) (pow x 4))) (* 0.6666666666666667 (/ (exp (- (log -1) (log (/ -1 x)))) x)))) 1) (- x 0.3333333333333333) (- x 0.3333333333333333) (- x 0.3333333333333333) (- (+ (* 1.4999999999999998 x) (log 0.6666666666666667)) (* 1/2 (/ (pow x 2) (pow 0.6666666666666667 2)))) (- (* 0.6666666666666667 (/ 1 x)) (+ (* 0.22222222222222227 (/ 1 (pow x 2))) (log (/ 1 x)))) (- (+ (log -1) (* 0.6666666666666667 (/ 1 x))) (+ (* 0.22222222222222227 (/ 1 (pow x 2))) (log (/ -1 x)))) 1.062 * * [simplify]: iteration 0 : 541 enodes (cost 1133 ) 1.071 * * [simplify]: iteration 1 : 1712 enodes (cost 781 ) 1.101 * * [simplify]: iteration 2 : 5001 enodes (cost 674 ) 1.106 * [simplify]: Simplified to: (exp (log1p (- x (/ 1.0 3.0)))) (expm1 (- x (/ 1.0 3.0))) (log1p (- x (/ 1.0 3.0))) (log (- x (/ 1.0 3.0))) (exp (- x (/ 1.0 3.0))) (* (cbrt (- x (/ 1.0 3.0))) (cbrt (- x (/ 1.0 3.0)))) (cbrt (- x (/ 1.0 3.0))) (pow (- x (/ 1.0 3.0)) 3) (sqrt (- x (/ 1.0 3.0))) (sqrt (- x (/ 1.0 3.0))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 1.0 3.0)) 1 (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 1.0 3.0)) 1 (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (* (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (+ (- (/ 1.0 (cbrt 3.0))) (/ 1.0 (cbrt 3.0)))) (fma (cbrt x) (* (cbrt x) (cbrt x)) (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 1.0 3.0)) 1 (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (* (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (+ (- (/ 1.0 (cbrt 3.0))) (/ 1.0 (cbrt 3.0)))) (fma (cbrt x) (* (cbrt x) (cbrt x)) (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 1.0 3.0)) 1 (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (pow (/ (cbrt 1.0) (cbrt 3.0)) 3)) (* (/ 1 (* (cbrt 3.0) (cbrt 3.0))) (+ (- (/ 1.0 (cbrt 3.0))) (/ 1.0 (cbrt 3.0)))) (fma (cbrt x) (* (cbrt x) (cbrt x)) (/ (- (/ 1.0 (sqrt 3.0))) (sqrt 3.0))) (* (/ 1.0 (sqrt 3.0)) (+ (- (/ 1 (sqrt 3.0))) (/ 1 (sqrt 3.0)))) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 1.0 3.0)) 1 (/ 1.0 3.0)) (- (* (* (cbrt x) (cbrt x)) (cbrt x)) (/ 1.0 3.0)) (fma (- (/ 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(log (log1p (- x (/ 1.0 3.0)))) (exp (log1p (- x (/ 1.0 3.0)))) (* (cbrt (log1p (- x (/ 1.0 3.0)))) (cbrt (log1p (- x (/ 1.0 3.0))))) (cbrt (log1p (- x (/ 1.0 3.0)))) (pow (log1p (- x (/ 1.0 3.0))) 3) (sqrt (log1p (- x (/ 1.0 3.0)))) (sqrt (log1p (- x (/ 1.0 3.0)))) (fma (pow x 2) 0.7499999999999999 (- (* 1.0 x) (fma 0.33333333333333337 (/ (pow x 2) (pow 0.6666666666666667 2)) 0.33333333333333326))) (+ (* 0.6666666666666667 (/ x x)) (+ x (fma 6.938893903907228e-18 (/ 1 (* (pow x 4) (/ 1 x))) (- 1)))) (+ (* 0.6666666666666667 (/ x x)) (+ x (fma 6.938893903907228e-18 (/ 1 (* (pow x 4) (/ 1 x))) (- 1)))) (- x 0.3333333333333333) (- x 0.3333333333333333) (- x 0.3333333333333333) (fma x 1.4999999999999998 (- (log 0.6666666666666667) (* 1/2 (/ (pow x 2) (pow 0.6666666666666667 2))))) (+ (- (/ 0.6666666666666667 x) (/ (/ 0.22222222222222227 x) x)) (log x)) (+ (- (/ 0.6666666666666667 x) (/ (/ 0.22222222222222227 x) x)) (log x)) 1.106 * * * [progress]: adding candidates to table 1.207 * [progress]: [Phase 3 of 3] Extracting. 1.208 * * [regime]: Finding splitpoints for: (# # #) 1.208 * * * [regime-changes]: Trying 2 branch expressions: ((- x (/ 1.0 3.0)) x) 1.208 * * * * [regimes]: Trying to branch on (- x (/ 1.0 3.0)) from (# # #) 1.219 * * * * [regimes]: Trying to branch on x from (# # #) 1.235 * * * [regime]: Found split indices: #