0.002 * [progress]: [Phase 1 of 3] Setting up. 0.003 * * * [progress]: [1/2] Preparing points 4.192 * * * [progress]: [2/2] Setting up program. 4.198 * [progress]: [Phase 2 of 3] Improving. 4.199 * * * * [progress]: [ 1 / 1 ] simplifiying candidate # 4.200 * [simplify]: Simplifying (* (exp (- (* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.re) (* (atan2 x.im x.re) y.im))) (cos (+ (* (log (sqrt (+ (* x.re x.re) (* x.im x.im)))) y.im) (* (atan2 x.im x.re) y.re)))) 4.201 * * [simplify]: iters left: 6 (19 enodes) 4.247 * * [simplify]: iters left: 5 (73 enodes) 4.271 * * [simplify]: iters left: 4 (107 enodes) 4.301 * * [simplify]: iters left: 3 (156 enodes) 4.349 * * [simplify]: iters left: 2 (300 enodes) 4.480 * * [simplify]: Extracting #0: cost 1 inf + 0 4.480 * * [simplify]: Extracting #1: cost 98 inf + 0 4.481 * * [simplify]: Extracting #2: cost 350 inf + 0 4.483 * * [simplify]: Extracting #3: cost 398 inf + 74 4.490 * * [simplify]: Extracting #4: cost 365 inf + 6452 4.497 * * [simplify]: Extracting #5: cost 232 inf + 75591 4.524 * * [simplify]: Extracting #6: cost 53 inf + 216051 4.554 * * [simplify]: Extracting #7: cost 0 inf + 262929 4.580 * [simplify]: Simplified to (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im)))))) 4.580 * [simplify]: Simplified (2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 4.596 * * [progress]: iteration 1 / 4 4.596 * * * [progress]: picking best candidate 4.602 * * * * [pick]: Picked # 4.602 * * * [progress]: localizing error 4.647 * * * [progress]: generating rewritten candidates 4.648 * * * * [progress]: [ 1 / 4 ] rewriting at (2 1) 4.652 * * * * [progress]: [ 2 / 4 ] rewriting at (2 2 1 2) 4.661 * * * * [progress]: [ 3 / 4 ] rewriting at (2 1 1 3) 4.671 * * * * [progress]: [ 4 / 4 ] rewriting at (2 2 1 1) 4.692 * * * [progress]: generating series expansions 4.693 * * * * [progress]: [ 1 / 4 ] generating series at (2 1) 4.697 * [backup-simplify]: Simplify (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) into (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) 4.697 * [approximate]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in (y.im x.re x.im y.re) around 0 4.698 * [taylor]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in y.re 4.698 * [taylor]: Taking taylor expansion of (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re)) in y.re 4.699 * [taylor]: Rewrote expression to (+ (* y.im (log (hypot x.re x.im))) (* (atan2 x.im x.re) y.re)) 4.699 * [taylor]: Taking taylor expansion of (* y.im (log (hypot x.re x.im))) in y.re 4.699 * [taylor]: Taking taylor expansion of y.im in y.re 4.699 * [backup-simplify]: Simplify y.im into y.im 4.699 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in y.re 4.699 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in y.re 4.699 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.699 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in y.re 4.699 * [taylor]: Taking taylor expansion of (* x.re x.re) in y.re 4.699 * [taylor]: Taking taylor expansion of x.re in y.re 4.699 * [backup-simplify]: Simplify x.re into x.re 4.699 * [taylor]: Taking taylor expansion of x.re in y.re 4.699 * [backup-simplify]: Simplify x.re into x.re 4.699 * [taylor]: Taking taylor expansion of (* x.im x.im) in y.re 4.699 * [taylor]: Taking taylor expansion of x.im in y.re 4.699 * [backup-simplify]: Simplify x.im into x.im 4.699 * [taylor]: Taking taylor expansion of x.im in y.re 4.699 * [backup-simplify]: Simplify x.im into x.im 4.700 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.700 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.701 * [backup-simplify]: Simplify (+ (pow x.re 2) (pow x.im 2)) into (+ (pow x.im 2) (pow x.re 2)) 4.701 * [backup-simplify]: Simplify (sqrt (+ (pow x.im 2) (pow x.re 2))) into (sqrt (+ (pow x.re 2) (pow x.im 2))) 4.701 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.701 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.702 * [backup-simplify]: Simplify (+ 0 0) into 0 4.702 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.702 * [backup-simplify]: Simplify (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.702 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 4.702 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 4.702 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.702 * [taylor]: Taking taylor expansion of y.re in y.re 4.702 * [backup-simplify]: Simplify 0 into 0 4.702 * [backup-simplify]: Simplify 1 into 1 4.702 * [backup-simplify]: Simplify (* y.im (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) into (* y.im (log (sqrt (+ (pow x.re 2) (pow x.im 2))))) 4.702 * [backup-simplify]: Simplify (* (atan2 x.im x.re) 0) into 0 4.703 * [backup-simplify]: Simplify (+ (* y.im (log (sqrt (+ (pow x.re 2) (pow x.im 2))))) 0) into (* y.im (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) 4.703 * [backup-simplify]: Simplify (cos (* y.im (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) into (cos (* y.im (log (sqrt (+ (pow x.re 2) (pow x.im 2)))))) 4.703 * [backup-simplify]: Simplify (sin (* y.im (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) into (sin (* y.im (log (sqrt (+ (pow x.re 2) (pow x.im 2)))))) 4.703 * [taylor]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in x.im 4.703 * [taylor]: Taking taylor expansion of (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re)) in x.im 4.703 * [taylor]: Rewrote expression to (+ (* y.im (log (hypot x.re x.im))) (* (atan2 x.im x.re) y.re)) 4.703 * [taylor]: Taking taylor expansion of (* y.im (log (hypot x.re x.im))) in x.im 4.703 * [taylor]: Taking taylor expansion of y.im in x.im 4.703 * [backup-simplify]: Simplify y.im into y.im 4.703 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in x.im 4.703 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in x.im 4.703 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.703 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in x.im 4.703 * [taylor]: Taking taylor expansion of (* x.re x.re) in x.im 4.703 * [taylor]: Taking taylor expansion of x.re in x.im 4.703 * [backup-simplify]: Simplify x.re into x.re 4.703 * [taylor]: Taking taylor expansion of x.re in x.im 4.703 * [backup-simplify]: Simplify x.re into x.re 4.703 * [taylor]: Taking taylor expansion of (* x.im x.im) in x.im 4.703 * [taylor]: Taking taylor expansion of x.im in x.im 4.703 * [backup-simplify]: Simplify 0 into 0 4.703 * [backup-simplify]: Simplify 1 into 1 4.703 * [taylor]: Taking taylor expansion of x.im in x.im 4.703 * [backup-simplify]: Simplify 0 into 0 4.703 * [backup-simplify]: Simplify 1 into 1 4.703 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.704 * [backup-simplify]: Simplify (* 0 0) into 0 4.704 * [backup-simplify]: Simplify (+ (pow x.re 2) 0) into (pow x.re 2) 4.704 * [backup-simplify]: Simplify (sqrt (pow x.re 2)) into x.re 4.704 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.705 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 0)) into 0 4.705 * [backup-simplify]: Simplify (+ 0 0) into 0 4.705 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.re 2)))) into 0 4.705 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.705 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 4.705 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 4.705 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.705 * [taylor]: Taking taylor expansion of y.re in x.im 4.705 * [backup-simplify]: Simplify y.re into y.re 4.705 * [backup-simplify]: Simplify (* y.im (log x.re)) into (* y.im (log x.re)) 4.705 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.705 * [backup-simplify]: Simplify (+ (* y.im (log x.re)) (* (atan2 x.im x.re) y.re)) into (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.re))) 4.705 * [backup-simplify]: Simplify (cos (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.re)))) into (cos (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.re)))) 4.705 * [backup-simplify]: Simplify (sin (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.re)))) into (sin (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.re)))) 4.705 * [taylor]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in x.re 4.705 * [taylor]: Taking taylor expansion of (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re)) in x.re 4.705 * [taylor]: Rewrote expression to (+ (* y.im (log (hypot x.re x.im))) (* (atan2 x.im x.re) y.re)) 4.705 * [taylor]: Taking taylor expansion of (* y.im (log (hypot x.re x.im))) in x.re 4.706 * [taylor]: Taking taylor expansion of y.im in x.re 4.706 * [backup-simplify]: Simplify y.im into y.im 4.706 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in x.re 4.706 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in x.re 4.706 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.706 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in x.re 4.706 * [taylor]: Taking taylor expansion of (* x.re x.re) in x.re 4.706 * [taylor]: Taking taylor expansion of x.re in x.re 4.706 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify 1 into 1 4.706 * [taylor]: Taking taylor expansion of x.re in x.re 4.706 * [backup-simplify]: Simplify 0 into 0 4.706 * [backup-simplify]: Simplify 1 into 1 4.706 * [taylor]: Taking taylor expansion of (* x.im x.im) in x.re 4.706 * [taylor]: Taking taylor expansion of x.im in x.re 4.706 * [backup-simplify]: Simplify x.im into x.im 4.706 * [taylor]: Taking taylor expansion of x.im in x.re 4.706 * [backup-simplify]: Simplify x.im into x.im 4.706 * [backup-simplify]: Simplify (* 0 0) into 0 4.706 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.706 * [backup-simplify]: Simplify (+ 0 (pow x.im 2)) into (pow x.im 2) 4.706 * [backup-simplify]: Simplify (sqrt (pow x.im 2)) into x.im 4.707 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 0)) into 0 4.707 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.707 * [backup-simplify]: Simplify (+ 0 0) into 0 4.707 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.im 2)))) into 0 4.707 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.707 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 4.707 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 4.707 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.707 * [taylor]: Taking taylor expansion of y.re in x.re 4.707 * [backup-simplify]: Simplify y.re into y.re 4.707 * [backup-simplify]: Simplify (* y.im (log x.im)) into (* y.im (log x.im)) 4.707 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.707 * [backup-simplify]: Simplify (+ (* y.im (log x.im)) (* (atan2 x.im x.re) y.re)) into (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.im))) 4.707 * [backup-simplify]: Simplify (cos (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.im)))) into (cos (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.im)))) 4.708 * [backup-simplify]: Simplify (sin (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.im)))) into (sin (+ (* (atan2 x.im x.re) y.re) (* y.im (log x.im)))) 4.708 * [taylor]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in y.im 4.708 * [taylor]: Taking taylor expansion of (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re)) in y.im 4.708 * [taylor]: Rewrote expression to (+ (* y.im (log (hypot x.re x.im))) (* (atan2 x.im x.re) y.re)) 4.708 * [taylor]: Taking taylor expansion of (* y.im (log (hypot x.re x.im))) in y.im 4.708 * [taylor]: Taking taylor expansion of y.im in y.im 4.708 * [backup-simplify]: Simplify 0 into 0 4.708 * [backup-simplify]: Simplify 1 into 1 4.708 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in y.im 4.708 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in y.im 4.708 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.708 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in y.im 4.708 * [taylor]: Taking taylor expansion of (* x.re x.re) in y.im 4.708 * [taylor]: Taking taylor expansion of x.re in y.im 4.708 * [backup-simplify]: Simplify x.re into x.re 4.708 * [taylor]: Taking taylor expansion of x.re in y.im 4.708 * [backup-simplify]: Simplify x.re into x.re 4.708 * [taylor]: Taking taylor expansion of (* x.im x.im) in y.im 4.708 * [taylor]: Taking taylor expansion of x.im in y.im 4.708 * [backup-simplify]: Simplify x.im into x.im 4.708 * [taylor]: Taking taylor expansion of x.im in y.im 4.708 * [backup-simplify]: Simplify x.im into x.im 4.708 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.708 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.708 * [backup-simplify]: Simplify (+ (pow x.re 2) (pow x.im 2)) into (+ (pow x.im 2) (pow x.re 2)) 4.708 * [backup-simplify]: Simplify (sqrt (+ (pow x.im 2) (pow x.re 2))) into (sqrt (+ (pow x.re 2) (pow x.im 2))) 4.708 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.708 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.708 * [backup-simplify]: Simplify (+ 0 0) into 0 4.709 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.709 * [backup-simplify]: Simplify (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.709 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.im 4.709 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.im 4.709 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.709 * [taylor]: Taking taylor expansion of y.re in y.im 4.709 * [backup-simplify]: Simplify y.re into y.re 4.709 * [backup-simplify]: Simplify (* 0 (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.709 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.709 * [backup-simplify]: Simplify (+ 0 (* (atan2 x.im x.re) y.re)) into (* (atan2 x.im x.re) y.re) 4.709 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.709 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.709 * [taylor]: Taking taylor expansion of (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) in y.im 4.709 * [taylor]: Taking taylor expansion of (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re)) in y.im 4.709 * [taylor]: Rewrote expression to (+ (* y.im (log (hypot x.re x.im))) (* (atan2 x.im x.re) y.re)) 4.709 * [taylor]: Taking taylor expansion of (* y.im (log (hypot x.re x.im))) in y.im 4.709 * [taylor]: Taking taylor expansion of y.im in y.im 4.709 * [backup-simplify]: Simplify 0 into 0 4.709 * [backup-simplify]: Simplify 1 into 1 4.709 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in y.im 4.709 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in y.im 4.709 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.709 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in y.im 4.709 * [taylor]: Taking taylor expansion of (* x.re x.re) in y.im 4.709 * [taylor]: Taking taylor expansion of x.re in y.im 4.709 * [backup-simplify]: Simplify x.re into x.re 4.709 * [taylor]: Taking taylor expansion of x.re in y.im 4.709 * [backup-simplify]: Simplify x.re into x.re 4.709 * [taylor]: Taking taylor expansion of (* x.im x.im) in y.im 4.709 * [taylor]: Taking taylor expansion of x.im in y.im 4.709 * [backup-simplify]: Simplify x.im into x.im 4.710 * [taylor]: Taking taylor expansion of x.im in y.im 4.710 * [backup-simplify]: Simplify x.im into x.im 4.710 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.710 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.710 * [backup-simplify]: Simplify (+ (pow x.re 2) (pow x.im 2)) into (+ (pow x.im 2) (pow x.re 2)) 4.710 * [backup-simplify]: Simplify (sqrt (+ (pow x.im 2) (pow x.re 2))) into (sqrt (+ (pow x.re 2) (pow x.im 2))) 4.710 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.710 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.710 * [backup-simplify]: Simplify (+ 0 0) into 0 4.710 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.710 * [backup-simplify]: Simplify (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.710 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.im 4.710 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.im 4.710 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.710 * [taylor]: Taking taylor expansion of y.re in y.im 4.710 * [backup-simplify]: Simplify y.re into y.re 4.711 * [backup-simplify]: Simplify (* 0 (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.711 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.711 * [backup-simplify]: Simplify (+ 0 (* (atan2 x.im x.re) y.re)) into (* (atan2 x.im x.re) y.re) 4.711 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.711 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.711 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 1) into (cos (* (atan2 x.im x.re) y.re)) 4.712 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 0) into 0 4.712 * [backup-simplify]: Simplify (- 0) into 0 4.712 * [backup-simplify]: Simplify (+ (cos (* (atan2 x.im x.re) y.re)) 0) into (cos (* (atan2 x.im x.re) y.re)) 4.712 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in x.re 4.712 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 4.712 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 4.712 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.712 * [taylor]: Taking taylor expansion of y.re in x.re 4.712 * [backup-simplify]: Simplify y.re into y.re 4.712 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.712 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.712 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.712 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 1) into (cos (* (atan2 x.im x.re) y.re)) 4.712 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 0) into 0 4.713 * [backup-simplify]: Simplify (- 0) into 0 4.713 * [backup-simplify]: Simplify (+ (cos (* (atan2 x.im x.re) y.re)) 0) into (cos (* (atan2 x.im x.re) y.re)) 4.713 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in x.im 4.713 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 4.713 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 4.713 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.713 * [taylor]: Taking taylor expansion of y.re in x.im 4.713 * [backup-simplify]: Simplify y.re into y.re 4.713 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.713 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.713 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.713 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 1) into (cos (* (atan2 x.im x.re) y.re)) 4.713 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 0) into 0 4.713 * [backup-simplify]: Simplify (- 0) into 0 4.713 * [backup-simplify]: Simplify (+ (cos (* (atan2 x.im x.re) y.re)) 0) into (cos (* (atan2 x.im x.re) y.re)) 4.713 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in y.re 4.713 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 4.713 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 4.713 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.714 * [taylor]: Taking taylor expansion of y.re in y.re 4.714 * [backup-simplify]: Simplify 0 into 0 4.714 * [backup-simplify]: Simplify 1 into 1 4.714 * [backup-simplify]: Simplify (* (atan2 x.im x.re) 0) into 0 4.714 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 1) (* 0 0)) into (atan2 x.im x.re) 4.714 * [backup-simplify]: Simplify 1 into 1 4.715 * [backup-simplify]: Simplify (+ 0) into 0 4.715 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (* 0 1)) into 0 4.716 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 1)))) 1) into 0 4.717 * [backup-simplify]: Simplify (+ (* 0 0) (* 1 (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) into (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 4.717 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 4.717 * [backup-simplify]: Simplify (+ (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 0) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.718 * [backup-simplify]: Simplify (+ (* 1 (/ (pow (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 1) 1))) into (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 4.718 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.re 2) (pow x.im 2))))) (* 0 0)) into (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) 4.719 * [backup-simplify]: Simplify (- (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) into (- (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.re 2) (pow x.im 2)))))) 4.719 * [backup-simplify]: Simplify (+ 0 (- (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.re 2) (pow x.im 2))))))) into (- (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) 4.719 * [taylor]: Taking taylor expansion of (- (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) in x.re 4.719 * [taylor]: Taking taylor expansion of (* (sin (* (atan2 x.im x.re) y.re)) (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) in x.re 4.719 * [taylor]: Taking taylor expansion of (sin (* (atan2 x.im x.re) y.re)) in x.re 4.719 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 4.719 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 4.719 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.719 * [taylor]: Taking taylor expansion of y.re in x.re 4.719 * [backup-simplify]: Simplify y.re into y.re 4.719 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.719 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.719 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.719 * [taylor]: Taking taylor expansion of (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) in x.re 4.719 * [taylor]: Taking taylor expansion of (sqrt (+ (pow x.im 2) (pow x.re 2))) in x.re 4.719 * [taylor]: Taking taylor expansion of (+ (pow x.im 2) (pow x.re 2)) in x.re 4.720 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.re 4.720 * [taylor]: Taking taylor expansion of x.im in x.re 4.720 * [backup-simplify]: Simplify x.im into x.im 4.720 * [taylor]: Taking taylor expansion of (pow x.re 2) in x.re 4.720 * [taylor]: Taking taylor expansion of x.re in x.re 4.720 * [backup-simplify]: Simplify 0 into 0 4.720 * [backup-simplify]: Simplify 1 into 1 4.720 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.720 * [backup-simplify]: Simplify (+ (pow x.im 2) 0) into (pow x.im 2) 4.720 * [backup-simplify]: Simplify (sqrt (pow x.im 2)) into x.im 4.720 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.721 * [backup-simplify]: Simplify (+ 0 0) into 0 4.721 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.im 2)))) into 0 4.721 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.721 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 1) into (sin (* (atan2 x.im x.re) y.re)) 4.722 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 0) into 0 4.722 * [backup-simplify]: Simplify (+ (sin (* (atan2 x.im x.re) y.re)) 0) into (sin (* (atan2 x.im x.re) y.re)) 4.722 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) into (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) 4.722 * [backup-simplify]: Simplify (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) into (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) 4.722 * [taylor]: Taking taylor expansion of (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) in x.im 4.722 * [taylor]: Taking taylor expansion of (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) in x.im 4.722 * [taylor]: Taking taylor expansion of (sin (* (atan2 x.im x.re) y.re)) in x.im 4.722 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 4.722 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 4.722 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.722 * [taylor]: Taking taylor expansion of y.re in x.im 4.722 * [backup-simplify]: Simplify y.re into y.re 4.722 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.722 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.722 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.722 * [taylor]: Taking taylor expansion of (log x.im) in x.im 4.723 * [taylor]: Taking taylor expansion of x.im in x.im 4.723 * [backup-simplify]: Simplify 0 into 0 4.723 * [backup-simplify]: Simplify 1 into 1 4.723 * [backup-simplify]: Simplify (log 1) into 0 4.723 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 1) into (sin (* (atan2 x.im x.re) y.re)) 4.723 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 0) into 0 4.723 * [backup-simplify]: Simplify (+ (sin (* (atan2 x.im x.re) y.re)) 0) into (sin (* (atan2 x.im x.re) y.re)) 4.724 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.724 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) into (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) 4.724 * [backup-simplify]: Simplify (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) into (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) 4.724 * [taylor]: Taking taylor expansion of (- (* (sin (* (atan2 x.im x.re) y.re)) (log x.im))) in y.re 4.724 * [taylor]: Taking taylor expansion of (* (sin (* (atan2 x.im x.re) y.re)) (log x.im)) in y.re 4.724 * [taylor]: Taking taylor expansion of (sin (* (atan2 x.im x.re) y.re)) in y.re 4.724 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 4.724 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 4.724 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.724 * [taylor]: Taking taylor expansion of y.re in y.re 4.724 * [backup-simplify]: Simplify 0 into 0 4.724 * [backup-simplify]: Simplify 1 into 1 4.724 * [backup-simplify]: Simplify (* (atan2 x.im x.re) 0) into 0 4.725 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 1) (* 0 0)) into (atan2 x.im x.re) 4.725 * [taylor]: Taking taylor expansion of (log x.im) in y.re 4.725 * [taylor]: Taking taylor expansion of x.im in y.re 4.725 * [backup-simplify]: Simplify x.im into x.im 4.725 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.725 * [backup-simplify]: Simplify (* 0 (log x.im)) into 0 4.725 * [backup-simplify]: Simplify (- 0) into 0 4.726 * [backup-simplify]: Simplify 0 into 0 4.726 * [backup-simplify]: Simplify (+ 0) into 0 4.726 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (* 0 1)) into 0 4.727 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 4.727 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.728 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 0)) into 0 4.728 * [backup-simplify]: Simplify (- 0) into 0 4.729 * [backup-simplify]: Simplify (+ 0 0) into 0 4.729 * [taylor]: Taking taylor expansion of 0 in x.im 4.729 * [backup-simplify]: Simplify 0 into 0 4.729 * [taylor]: Taking taylor expansion of 0 in y.re 4.729 * [backup-simplify]: Simplify 0 into 0 4.729 * [backup-simplify]: Simplify 0 into 0 4.729 * [backup-simplify]: Simplify (+ 0) into 0 4.730 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (* 0 1)) into 0 4.730 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 4.731 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.731 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 0)) into 0 4.732 * [backup-simplify]: Simplify (- 0) into 0 4.732 * [backup-simplify]: Simplify (+ 0 0) into 0 4.732 * [taylor]: Taking taylor expansion of 0 in y.re 4.732 * [backup-simplify]: Simplify 0 into 0 4.732 * [backup-simplify]: Simplify 0 into 0 4.732 * [backup-simplify]: Simplify (+ 0) into 0 4.732 * [backup-simplify]: Simplify 0 into 0 4.733 * [backup-simplify]: Simplify (+ (* -1 (/ (pow (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 2) 2)) 0) into (- (* 1/2 (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2))) 4.734 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) (- (* 1/2 (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2)))) (+ (* 0 0) (* 0 1))) into (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 2)))) 4.735 * [backup-simplify]: Simplify (+ (* x.re 0) (+ (* 0 0) (* 0 x.re))) into 0 4.736 * [backup-simplify]: Simplify (+ (* x.im 0) (+ (* 0 0) (* 0 x.im))) into 0 4.736 * [backup-simplify]: Simplify (+ 0 0) into 0 4.737 * [backup-simplify]: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (+ (pow x.re 2) (pow x.im 2))))) into 0 4.739 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 1)))) 2) into 0 4.740 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (* 0 (log (sqrt (+ (pow x.im 2) (pow x.re 2))))))) into 0 4.740 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 0) (* 0 y.re))) into 0 4.741 * [backup-simplify]: Simplify (+ 0 0) into 0 4.741 * [backup-simplify]: Simplify (+ 0 (* 1 (/ (pow 0 1) 1))) into 0 4.742 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (+ (* 0 (log (sqrt (+ (pow x.re 2) (pow x.im 2))))) (* 0 0))) into 0 4.742 * [backup-simplify]: Simplify (- 0) into 0 4.743 * [backup-simplify]: Simplify (+ (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 2)))) 0) into (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2)))) 4.743 * [taylor]: Taking taylor expansion of (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2)))) in x.re 4.743 * [taylor]: Taking taylor expansion of (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2))) in x.re 4.743 * [taylor]: Taking taylor expansion of 1/2 in x.re 4.743 * [backup-simplify]: Simplify 1/2 into 1/2 4.743 * [taylor]: Taking taylor expansion of (* (cos (* (atan2 x.im x.re) y.re)) (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2)) in x.re 4.743 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in x.re 4.743 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 4.743 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 4.743 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.743 * [taylor]: Taking taylor expansion of y.re in x.re 4.743 * [backup-simplify]: Simplify y.re into y.re 4.743 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.743 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.744 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.744 * [taylor]: Taking taylor expansion of (pow (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 2) in x.re 4.744 * [taylor]: Taking taylor expansion of (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) in x.re 4.744 * [taylor]: Taking taylor expansion of (sqrt (+ (pow x.re 2) (pow x.im 2))) in x.re 4.744 * [taylor]: Taking taylor expansion of (+ (pow x.re 2) (pow x.im 2)) in x.re 4.744 * [taylor]: Taking taylor expansion of (pow x.re 2) in x.re 4.744 * [taylor]: Taking taylor expansion of x.re in x.re 4.744 * [backup-simplify]: Simplify 0 into 0 4.744 * [backup-simplify]: Simplify 1 into 1 4.744 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.re 4.744 * [taylor]: Taking taylor expansion of x.im in x.re 4.744 * [backup-simplify]: Simplify x.im into x.im 4.744 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.744 * [backup-simplify]: Simplify (+ 0 (pow x.im 2)) into (pow x.im 2) 4.744 * [backup-simplify]: Simplify (sqrt (pow x.im 2)) into x.im 4.744 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.745 * [backup-simplify]: Simplify (+ 0 0) into 0 4.745 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.im 2)))) into 0 4.745 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.745 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 1) into (cos (* (atan2 x.im x.re) y.re)) 4.745 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 0) into 0 4.745 * [backup-simplify]: Simplify (- 0) into 0 4.745 * [backup-simplify]: Simplify (+ (cos (* (atan2 x.im x.re) y.re)) 0) into (cos (* (atan2 x.im x.re) y.re)) 4.746 * [backup-simplify]: Simplify (* (log x.im) (log x.im)) into (pow (log x.im) 2) 4.746 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) into (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) 4.746 * [backup-simplify]: Simplify (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) into (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) 4.746 * [backup-simplify]: Simplify (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) into (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) 4.746 * [taylor]: Taking taylor expansion of (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) in x.im 4.746 * [taylor]: Taking taylor expansion of (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) in x.im 4.746 * [taylor]: Taking taylor expansion of 1/2 in x.im 4.746 * [backup-simplify]: Simplify 1/2 into 1/2 4.746 * [taylor]: Taking taylor expansion of (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) in x.im 4.746 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in x.im 4.746 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 4.746 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 4.746 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.746 * [taylor]: Taking taylor expansion of y.re in x.im 4.746 * [backup-simplify]: Simplify y.re into y.re 4.747 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 4.747 * [backup-simplify]: Simplify (cos (* (atan2 x.im x.re) y.re)) into (cos (* (atan2 x.im x.re) y.re)) 4.747 * [backup-simplify]: Simplify (sin (* (atan2 x.im x.re) y.re)) into (sin (* (atan2 x.im x.re) y.re)) 4.747 * [taylor]: Taking taylor expansion of (pow (log x.im) 2) in x.im 4.747 * [taylor]: Taking taylor expansion of (log x.im) in x.im 4.747 * [taylor]: Taking taylor expansion of x.im in x.im 4.747 * [backup-simplify]: Simplify 0 into 0 4.747 * [backup-simplify]: Simplify 1 into 1 4.747 * [backup-simplify]: Simplify (log 1) into 0 4.748 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.748 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) 1) into (cos (* (atan2 x.im x.re) y.re)) 4.748 * [backup-simplify]: Simplify (* (sin (* (atan2 x.im x.re) y.re)) 0) into 0 4.748 * [backup-simplify]: Simplify (- 0) into 0 4.748 * [backup-simplify]: Simplify (+ (cos (* (atan2 x.im x.re) y.re)) 0) into (cos (* (atan2 x.im x.re) y.re)) 4.749 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.749 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.749 * [backup-simplify]: Simplify (* (log x.im) (log x.im)) into (pow (log x.im) 2) 4.750 * [backup-simplify]: Simplify (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) into (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) 4.750 * [backup-simplify]: Simplify (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) into (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) 4.750 * [backup-simplify]: Simplify (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) into (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) 4.750 * [taylor]: Taking taylor expansion of (- (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)))) in y.re 4.750 * [taylor]: Taking taylor expansion of (* 1/2 (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2))) in y.re 4.750 * [taylor]: Taking taylor expansion of 1/2 in y.re 4.750 * [backup-simplify]: Simplify 1/2 into 1/2 4.750 * [taylor]: Taking taylor expansion of (* (cos (* (atan2 x.im x.re) y.re)) (pow (log x.im) 2)) in y.re 4.750 * [taylor]: Taking taylor expansion of (cos (* (atan2 x.im x.re) y.re)) in y.re 4.750 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 4.750 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 4.750 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 4.750 * [taylor]: Taking taylor expansion of y.re in y.re 4.750 * [backup-simplify]: Simplify 0 into 0 4.750 * [backup-simplify]: Simplify 1 into 1 4.750 * [backup-simplify]: Simplify (* (atan2 x.im x.re) 0) into 0 4.751 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 1) (* 0 0)) into (atan2 x.im x.re) 4.751 * [taylor]: Taking taylor expansion of (pow (log x.im) 2) in y.re 4.751 * [taylor]: Taking taylor expansion of (log x.im) in y.re 4.751 * [taylor]: Taking taylor expansion of x.im in y.re 4.751 * [backup-simplify]: Simplify x.im into x.im 4.751 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.751 * [backup-simplify]: Simplify (* (log x.im) (log x.im)) into (pow (log x.im) 2) 4.751 * [backup-simplify]: Simplify (* 1 (pow (log x.im) 2)) into (pow (log x.im) 2) 4.751 * [backup-simplify]: Simplify (* 1/2 (pow (log x.im) 2)) into (* 1/2 (pow (log x.im) 2)) 4.752 * [backup-simplify]: Simplify (- (* 1/2 (pow (log x.im) 2))) into (- (* 1/2 (pow (log x.im) 2))) 4.752 * [backup-simplify]: Simplify (- (* 1/2 (pow (log x.im) 2))) into (- (* 1/2 (pow (log x.im) 2))) 4.753 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.im 1)))) 1) into 0 4.753 * [backup-simplify]: Simplify (+ 0) into 0 4.754 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 1)) into 0 4.754 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 4.755 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.755 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (* 0 0)) into 0 4.756 * [backup-simplify]: Simplify (+ 0 0) into 0 4.756 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 (log x.im))) into 0 4.756 * [backup-simplify]: Simplify (- 0) into 0 4.756 * [taylor]: Taking taylor expansion of 0 in x.im 4.756 * [backup-simplify]: Simplify 0 into 0 4.756 * [taylor]: Taking taylor expansion of 0 in y.re 4.756 * [backup-simplify]: Simplify 0 into 0 4.756 * [backup-simplify]: Simplify 0 into 0 4.757 * [backup-simplify]: Simplify (+ (* -1 (/ (pow 0 2) 2)) 0) into 0 4.758 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (+ (* 0 0) (* 0 1))) into 0 4.758 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 0) (* 0 y.re))) into 0 4.759 * [backup-simplify]: Simplify (+ 0 (* 1 (/ (pow 0 1) 1))) into 0 4.760 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (+ (* 0 0) (* 0 0))) into 0 4.760 * [backup-simplify]: Simplify (- 0) into 0 4.760 * [backup-simplify]: Simplify (+ 0 0) into 0 4.760 * [taylor]: Taking taylor expansion of 0 in x.im 4.760 * [backup-simplify]: Simplify 0 into 0 4.761 * [taylor]: Taking taylor expansion of 0 in y.re 4.761 * [backup-simplify]: Simplify 0 into 0 4.761 * [backup-simplify]: Simplify 0 into 0 4.762 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 4.762 * [backup-simplify]: Simplify (+ 0) into 0 4.763 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 1)) into 0 4.763 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 4.764 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.764 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (* 0 0)) into 0 4.764 * [backup-simplify]: Simplify (+ 0 0) into 0 4.764 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.764 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (* 0 (log x.im))) into 0 4.765 * [backup-simplify]: Simplify (- 0) into 0 4.765 * [taylor]: Taking taylor expansion of 0 in y.re 4.765 * [backup-simplify]: Simplify 0 into 0 4.765 * [backup-simplify]: Simplify 0 into 0 4.765 * [taylor]: Taking taylor expansion of 0 in y.re 4.765 * [backup-simplify]: Simplify 0 into 0 4.765 * [backup-simplify]: Simplify 0 into 0 4.765 * [backup-simplify]: Simplify (+ (* -1 (/ (pow 0 2) 2)) 0) into 0 4.766 * [backup-simplify]: Simplify (+ (* (cos (* (atan2 x.im x.re) y.re)) 0) (+ (* 0 0) (* 0 1))) into 0 4.766 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 0) (* 0 y.re))) into 0 4.767 * [backup-simplify]: Simplify (+ 0 (* 1 (/ (pow 0 1) 1))) into 0 4.767 * [backup-simplify]: Simplify (+ (* (sin (* (atan2 x.im x.re) y.re)) 0) (+ (* 0 0) (* 0 0))) into 0 4.767 * [backup-simplify]: Simplify (- 0) into 0 4.767 * [backup-simplify]: Simplify (+ 0 0) into 0 4.767 * [taylor]: Taking taylor expansion of 0 in y.re 4.767 * [backup-simplify]: Simplify 0 into 0 4.767 * [backup-simplify]: Simplify 0 into 0 4.768 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.im 1)))) 1) into 0 4.768 * [backup-simplify]: Simplify (+ (* 1 (/ (pow (atan2 x.im x.re) 1) 1))) into (atan2 x.im x.re) 4.768 * [backup-simplify]: Simplify (+ (* 0 0) (* (atan2 x.im x.re) (log x.im))) into (* (atan2 x.im x.re) (log x.im)) 4.768 * [backup-simplify]: Simplify (- (* (atan2 x.im x.re) (log x.im))) into (- (* (atan2 x.im x.re) (log x.im))) 4.769 * [backup-simplify]: Simplify (- (* (atan2 x.im x.re) (log x.im))) into (- (* (atan2 x.im x.re) (log x.im))) 4.769 * [backup-simplify]: Simplify (+ (* (- (* (atan2 x.im x.re) (log x.im))) (* y.re (* 1 (* 1 y.im)))) (+ (* (- (* 1/2 (pow (log x.im) 2))) (pow (* 1 (* 1 (* 1 y.im))) 2)) 1)) into (- 1 (+ (* y.im (* (atan2 x.im x.re) (* y.re (log x.im)))) (* 1/2 (* (pow y.im 2) (pow (log x.im) 2))))) 4.769 * [backup-simplify]: Simplify (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 1 y.re)))) into (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) 4.769 * [approximate]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in (y.im x.re x.im y.re) around 0 4.769 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in y.re 4.769 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in y.re 4.769 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.769 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in y.re 4.770 * [taylor]: Taking taylor expansion of (/ 1 y.im) in y.re 4.770 * [taylor]: Taking taylor expansion of y.im in y.re 4.770 * [backup-simplify]: Simplify y.im into y.im 4.770 * [backup-simplify]: Simplify (/ 1 y.im) into (/ 1 y.im) 4.770 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in y.re 4.770 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in y.re 4.770 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.770 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in y.re 4.770 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in y.re 4.770 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.770 * [taylor]: Taking taylor expansion of x.re in y.re 4.770 * [backup-simplify]: Simplify x.re into x.re 4.770 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.770 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.770 * [taylor]: Taking taylor expansion of x.re in y.re 4.770 * [backup-simplify]: Simplify x.re into x.re 4.770 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.770 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in y.re 4.770 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.770 * [taylor]: Taking taylor expansion of x.im in y.re 4.770 * [backup-simplify]: Simplify x.im into x.im 4.770 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.770 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.770 * [taylor]: Taking taylor expansion of x.im in y.re 4.770 * [backup-simplify]: Simplify x.im into x.im 4.770 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.770 * [backup-simplify]: Simplify (* (/ 1 x.re) (/ 1 x.re)) into (/ 1 (pow x.re 2)) 4.770 * [backup-simplify]: Simplify (* (/ 1 x.im) (/ 1 x.im)) into (/ 1 (pow x.im 2)) 4.770 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.771 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.771 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.771 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.771 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (* 0 (/ 1 x.re))) into 0 4.771 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.771 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.771 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (* 0 (/ 1 x.im))) into 0 4.771 * [backup-simplify]: Simplify (+ 0 0) into 0 4.772 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.772 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.772 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.re 4.772 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.re 4.772 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.772 * [taylor]: Taking taylor expansion of y.re in y.re 4.772 * [backup-simplify]: Simplify 0 into 0 4.772 * [backup-simplify]: Simplify 1 into 1 4.772 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.772 * [backup-simplify]: Simplify (+ 0 (atan2 (/ 1 x.im) (/ 1 x.re))) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.772 * [backup-simplify]: Simplify (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) into (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) 4.772 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in x.im 4.772 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in x.im 4.772 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.772 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in x.im 4.772 * [taylor]: Taking taylor expansion of (/ 1 y.im) in x.im 4.772 * [taylor]: Taking taylor expansion of y.im in x.im 4.772 * [backup-simplify]: Simplify y.im into y.im 4.772 * [backup-simplify]: Simplify (/ 1 y.im) into (/ 1 y.im) 4.772 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in x.im 4.772 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in x.im 4.772 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.772 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in x.im 4.772 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in x.im 4.773 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.im 4.773 * [taylor]: Taking taylor expansion of x.re in x.im 4.773 * [backup-simplify]: Simplify x.re into x.re 4.773 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.773 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.im 4.773 * [taylor]: Taking taylor expansion of x.re in x.im 4.773 * [backup-simplify]: Simplify x.re into x.re 4.773 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.773 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in x.im 4.773 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.im 4.773 * [taylor]: Taking taylor expansion of x.im in x.im 4.773 * [backup-simplify]: Simplify 0 into 0 4.773 * [backup-simplify]: Simplify 1 into 1 4.773 * [backup-simplify]: Simplify (/ 1 1) into 1 4.773 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.im 4.773 * [taylor]: Taking taylor expansion of x.im in x.im 4.773 * [backup-simplify]: Simplify 0 into 0 4.773 * [backup-simplify]: Simplify 1 into 1 4.773 * [backup-simplify]: Simplify (/ 1 1) into 1 4.774 * [backup-simplify]: Simplify (* 1 1) into 1 4.774 * [backup-simplify]: Simplify (+ 0 1) into 1 4.774 * [backup-simplify]: Simplify (sqrt 1) into 1 4.774 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.775 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.775 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.776 * [backup-simplify]: Simplify (+ 0 0) into 0 4.776 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.777 * [backup-simplify]: Simplify (log 1) into 0 4.777 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.im 4.777 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 4.777 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.777 * [taylor]: Taking taylor expansion of y.re in x.im 4.777 * [backup-simplify]: Simplify y.re into y.re 4.777 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.778 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.778 * [backup-simplify]: Simplify (* (/ 1 y.im) (- (log x.im))) into (* -1 (/ (log x.im) y.im)) 4.778 * [backup-simplify]: Simplify (+ (* -1 (/ (log x.im) y.im)) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) into (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.im) y.im)) 4.778 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.im) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.im) y.im))) 4.778 * [backup-simplify]: Simplify (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.im) y.im))) into (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.im) y.im))) 4.778 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in x.re 4.778 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in x.re 4.778 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.778 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in x.re 4.778 * [taylor]: Taking taylor expansion of (/ 1 y.im) in x.re 4.779 * [taylor]: Taking taylor expansion of y.im in x.re 4.779 * [backup-simplify]: Simplify y.im into y.im 4.779 * [backup-simplify]: Simplify (/ 1 y.im) into (/ 1 y.im) 4.779 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in x.re 4.779 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in x.re 4.779 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.779 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in x.re 4.779 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in x.re 4.779 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.779 * [taylor]: Taking taylor expansion of x.re in x.re 4.779 * [backup-simplify]: Simplify 0 into 0 4.779 * [backup-simplify]: Simplify 1 into 1 4.779 * [backup-simplify]: Simplify (/ 1 1) into 1 4.779 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.779 * [taylor]: Taking taylor expansion of x.re in x.re 4.779 * [backup-simplify]: Simplify 0 into 0 4.779 * [backup-simplify]: Simplify 1 into 1 4.780 * [backup-simplify]: Simplify (/ 1 1) into 1 4.780 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in x.re 4.780 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.780 * [taylor]: Taking taylor expansion of x.im in x.re 4.780 * [backup-simplify]: Simplify x.im into x.im 4.780 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.780 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.780 * [taylor]: Taking taylor expansion of x.im in x.re 4.780 * [backup-simplify]: Simplify x.im into x.im 4.780 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.780 * [backup-simplify]: Simplify (* 1 1) into 1 4.781 * [backup-simplify]: Simplify (+ 1 0) into 1 4.781 * [backup-simplify]: Simplify (sqrt 1) into 1 4.782 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.783 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.783 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.784 * [backup-simplify]: Simplify (+ 0 0) into 0 4.784 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.785 * [backup-simplify]: Simplify (log 1) into 0 4.785 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.re 4.785 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 4.785 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.785 * [taylor]: Taking taylor expansion of y.re in x.re 4.785 * [backup-simplify]: Simplify y.re into y.re 4.785 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.786 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.786 * [backup-simplify]: Simplify (* (/ 1 y.im) (- (log x.re))) into (* -1 (/ (log x.re) y.im)) 4.786 * [backup-simplify]: Simplify (+ (* -1 (/ (log x.re) y.im)) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) into (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im)) 4.786 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.786 * [backup-simplify]: Simplify (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.786 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in y.im 4.786 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in y.im 4.786 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.786 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in y.im 4.786 * [taylor]: Taking taylor expansion of (/ 1 y.im) in y.im 4.787 * [taylor]: Taking taylor expansion of y.im in y.im 4.787 * [backup-simplify]: Simplify 0 into 0 4.787 * [backup-simplify]: Simplify 1 into 1 4.787 * [backup-simplify]: Simplify (/ 1 1) into 1 4.787 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in y.im 4.787 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in y.im 4.787 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.787 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in y.im 4.787 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in y.im 4.787 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.im 4.787 * [taylor]: Taking taylor expansion of x.re in y.im 4.787 * [backup-simplify]: Simplify x.re into x.re 4.787 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.787 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.im 4.787 * [taylor]: Taking taylor expansion of x.re in y.im 4.787 * [backup-simplify]: Simplify x.re into x.re 4.787 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.787 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in y.im 4.787 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.im 4.788 * [taylor]: Taking taylor expansion of x.im in y.im 4.788 * [backup-simplify]: Simplify x.im into x.im 4.788 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.788 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.im 4.788 * [taylor]: Taking taylor expansion of x.im in y.im 4.788 * [backup-simplify]: Simplify x.im into x.im 4.788 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.788 * [backup-simplify]: Simplify (* (/ 1 x.re) (/ 1 x.re)) into (/ 1 (pow x.re 2)) 4.788 * [backup-simplify]: Simplify (* (/ 1 x.im) (/ 1 x.im)) into (/ 1 (pow x.im 2)) 4.788 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.788 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.788 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.789 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.789 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (* 0 (/ 1 x.re))) into 0 4.789 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.789 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.789 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (* 0 (/ 1 x.im))) into 0 4.789 * [backup-simplify]: Simplify (+ 0 0) into 0 4.790 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.790 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.790 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.im 4.790 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.im 4.790 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.790 * [taylor]: Taking taylor expansion of y.re in y.im 4.790 * [backup-simplify]: Simplify y.re into y.re 4.790 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.790 * [backup-simplify]: Simplify (* 1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.791 * [backup-simplify]: Simplify (+ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 0) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.791 * [backup-simplify]: Simplify (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) into (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) 4.791 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in y.im 4.791 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in y.im 4.791 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.791 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in y.im 4.791 * [taylor]: Taking taylor expansion of (/ 1 y.im) in y.im 4.791 * [taylor]: Taking taylor expansion of y.im in y.im 4.791 * [backup-simplify]: Simplify 0 into 0 4.791 * [backup-simplify]: Simplify 1 into 1 4.792 * [backup-simplify]: Simplify (/ 1 1) into 1 4.792 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in y.im 4.792 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in y.im 4.792 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.792 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in y.im 4.792 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in y.im 4.792 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.im 4.792 * [taylor]: Taking taylor expansion of x.re in y.im 4.792 * [backup-simplify]: Simplify x.re into x.re 4.792 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.792 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.im 4.792 * [taylor]: Taking taylor expansion of x.re in y.im 4.792 * [backup-simplify]: Simplify x.re into x.re 4.792 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.792 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in y.im 4.792 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.im 4.792 * [taylor]: Taking taylor expansion of x.im in y.im 4.792 * [backup-simplify]: Simplify x.im into x.im 4.792 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.792 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.im 4.792 * [taylor]: Taking taylor expansion of x.im in y.im 4.792 * [backup-simplify]: Simplify x.im into x.im 4.793 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.793 * [backup-simplify]: Simplify (* (/ 1 x.re) (/ 1 x.re)) into (/ 1 (pow x.re 2)) 4.793 * [backup-simplify]: Simplify (* (/ 1 x.im) (/ 1 x.im)) into (/ 1 (pow x.im 2)) 4.793 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.793 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.793 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.793 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.793 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (* 0 (/ 1 x.re))) into 0 4.794 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.794 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.794 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (* 0 (/ 1 x.im))) into 0 4.794 * [backup-simplify]: Simplify (+ 0 0) into 0 4.794 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.795 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.795 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.im 4.795 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.im 4.795 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.795 * [taylor]: Taking taylor expansion of y.re in y.im 4.795 * [backup-simplify]: Simplify y.re into y.re 4.795 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.795 * [backup-simplify]: Simplify (* 1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.795 * [backup-simplify]: Simplify (+ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 0) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.796 * [backup-simplify]: Simplify (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) into (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) 4.796 * [taylor]: Taking taylor expansion of (cos (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re))) in x.re 4.796 * [taylor]: Taking taylor expansion of (fma (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) in x.re 4.796 * [taylor]: Rewrote expression to (+ (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) 4.796 * [taylor]: Taking taylor expansion of (* (/ 1 y.im) (log (hypot (/ 1 x.re) (/ 1 x.im)))) in x.re 4.796 * [taylor]: Taking taylor expansion of (/ 1 y.im) in x.re 4.796 * [taylor]: Taking taylor expansion of y.im in x.re 4.796 * [backup-simplify]: Simplify y.im into y.im 4.796 * [backup-simplify]: Simplify (/ 1 y.im) into (/ 1 y.im) 4.796 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in x.re 4.796 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in x.re 4.796 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.796 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in x.re 4.796 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in x.re 4.796 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.796 * [taylor]: Taking taylor expansion of x.re in x.re 4.796 * [backup-simplify]: Simplify 0 into 0 4.796 * [backup-simplify]: Simplify 1 into 1 4.797 * [backup-simplify]: Simplify (/ 1 1) into 1 4.797 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.797 * [taylor]: Taking taylor expansion of x.re in x.re 4.797 * [backup-simplify]: Simplify 0 into 0 4.797 * [backup-simplify]: Simplify 1 into 1 4.797 * [backup-simplify]: Simplify (/ 1 1) into 1 4.797 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in x.re 4.797 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.797 * [taylor]: Taking taylor expansion of x.im in x.re 4.797 * [backup-simplify]: Simplify x.im into x.im 4.798 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.798 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.798 * [taylor]: Taking taylor expansion of x.im in x.re 4.798 * [backup-simplify]: Simplify x.im into x.im 4.798 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.798 * [backup-simplify]: Simplify (* 1 1) into 1 4.798 * [backup-simplify]: Simplify (+ 1 0) into 1 4.799 * [backup-simplify]: Simplify (sqrt 1) into 1 4.800 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.800 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.801 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.801 * [backup-simplify]: Simplify (+ 0 0) into 0 4.802 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.803 * [backup-simplify]: Simplify (log 1) into 0 4.803 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.re 4.803 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 4.803 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.803 * [taylor]: Taking taylor expansion of y.re in x.re 4.803 * [backup-simplify]: Simplify y.re into y.re 4.803 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.804 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.804 * [backup-simplify]: Simplify (* (/ 1 y.im) (- (log x.re))) into (* -1 (/ (log x.re) y.im)) 4.804 * [backup-simplify]: Simplify (+ (* -1 (/ (log x.re) y.im)) (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re)) into (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im)) 4.804 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.804 * [backup-simplify]: Simplify (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.805 * [backup-simplify]: Simplify (* (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 1) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.805 * [backup-simplify]: Simplify (* (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) into 0 4.805 * [backup-simplify]: Simplify (- 0) into 0 4.806 * [backup-simplify]: Simplify (+ (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.806 * [taylor]: Taking taylor expansion of (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) in x.im 4.806 * [taylor]: Taking taylor expansion of (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im)) in x.im 4.806 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.im 4.806 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 4.806 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.806 * [taylor]: Taking taylor expansion of y.re in x.im 4.806 * [backup-simplify]: Simplify y.re into y.re 4.806 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 4.806 * [taylor]: Taking taylor expansion of (/ (log x.re) y.im) in x.im 4.806 * [taylor]: Taking taylor expansion of (log x.re) in x.im 4.806 * [taylor]: Taking taylor expansion of x.re in x.im 4.806 * [backup-simplify]: Simplify x.re into x.re 4.806 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.806 * [taylor]: Taking taylor expansion of y.im in x.im 4.806 * [backup-simplify]: Simplify y.im into y.im 4.806 * [backup-simplify]: Simplify (/ (log x.re) y.im) into (/ (log x.re) y.im) 4.806 * [backup-simplify]: Simplify (- (/ (log x.re) y.im)) into (- (/ (log x.re) y.im)) 4.807 * [backup-simplify]: Simplify (+ (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (- (/ (log x.re) y.im))) into (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im)) 4.807 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.807 * [backup-simplify]: Simplify (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.807 * [backup-simplify]: Simplify (* (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 1) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.807 * [backup-simplify]: Simplify (* (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) into 0 4.808 * [backup-simplify]: Simplify (- 0) into 0 4.808 * [backup-simplify]: Simplify (+ (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.808 * [taylor]: Taking taylor expansion of (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) in y.re 4.808 * [taylor]: Taking taylor expansion of (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im)) in y.re 4.808 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.re 4.808 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.re 4.808 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.808 * [taylor]: Taking taylor expansion of y.re in y.re 4.808 * [backup-simplify]: Simplify 0 into 0 4.808 * [backup-simplify]: Simplify 1 into 1 4.809 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.809 * [taylor]: Taking taylor expansion of (/ (log x.re) y.im) in y.re 4.809 * [taylor]: Taking taylor expansion of (log x.re) in y.re 4.809 * [taylor]: Taking taylor expansion of x.re in y.re 4.809 * [backup-simplify]: Simplify x.re into x.re 4.809 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.809 * [taylor]: Taking taylor expansion of y.im in y.re 4.809 * [backup-simplify]: Simplify y.im into y.im 4.809 * [backup-simplify]: Simplify (/ (log x.re) y.im) into (/ (log x.re) y.im) 4.809 * [backup-simplify]: Simplify (+ (atan2 (/ 1 x.im) (/ 1 x.re)) 0) into (atan2 (/ 1 x.im) (/ 1 x.re)) 4.809 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.809 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) into (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 4.809 * [taylor]: Taking taylor expansion of 0 in x.re 4.810 * [backup-simplify]: Simplify 0 into 0 4.810 * [taylor]: Taking taylor expansion of 0 in x.im 4.810 * [backup-simplify]: Simplify 0 into 0 4.810 * [taylor]: Taking taylor expansion of 0 in y.re 4.810 * [backup-simplify]: Simplify 0 into 0 4.810 * [backup-simplify]: Simplify 0 into 0 4.810 * [backup-simplify]: Simplify (+ 0) into 0 4.811 * [backup-simplify]: Simplify (+ (* (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) (* 0 1)) into 0 4.820 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 4.820 * [backup-simplify]: Simplify (- (+ (* (/ 1 y.im) (/ 0 y.im)))) into 0 4.821 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.821 * [backup-simplify]: Simplify (+ (* (/ 1 y.im) 0) (* 0 (- (log x.re)))) into 0 4.821 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)))) into 0 4.822 * [backup-simplify]: Simplify (+ 0 0) into 0 4.822 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.823 * [backup-simplify]: Simplify (+ (* (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) (* 0 0)) into 0 4.823 * [backup-simplify]: Simplify (- 0) into 0 4.824 * [backup-simplify]: Simplify (+ 0 0) into 0 4.824 * [taylor]: Taking taylor expansion of 0 in x.im 4.824 * [backup-simplify]: Simplify 0 into 0 4.824 * [taylor]: Taking taylor expansion of 0 in y.re 4.824 * [backup-simplify]: Simplify 0 into 0 4.824 * [backup-simplify]: Simplify 0 into 0 4.824 * [backup-simplify]: Simplify (+ 0) into 0 4.825 * [backup-simplify]: Simplify (+ (* (cos (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) (* 0 1)) into 0 4.825 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)))) into 0 4.826 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.re 1)))) 1) into 0 4.826 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (log x.re) y.im) (/ 0 y.im)))) into 0 4.826 * [backup-simplify]: Simplify (- 0) into 0 4.827 * [backup-simplify]: Simplify (+ 0 0) into 0 4.827 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.828 * [backup-simplify]: Simplify (+ (* (sin (- (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ (log x.re) y.im))) 0) (* 0 0)) into 0 4.828 * [backup-simplify]: Simplify (- 0) into 0 4.829 * [backup-simplify]: Simplify (+ 0 0) into 0 4.829 * [taylor]: Taking taylor expansion of 0 in y.re 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [taylor]: Taking taylor expansion of 0 in x.re 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [taylor]: Taking taylor expansion of 0 in x.im 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [taylor]: Taking taylor expansion of 0 in y.re 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [taylor]: Taking taylor expansion of 0 in x.im 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [taylor]: Taking taylor expansion of 0 in y.re 4.829 * [backup-simplify]: Simplify 0 into 0 4.829 * [backup-simplify]: Simplify 0 into 0 4.830 * [backup-simplify]: Simplify (cos (- (/ (atan2 (/ 1 (/ 1 x.im)) (/ 1 (/ 1 x.re))) (/ 1 y.re)) (/ (log (/ 1 x.re)) (/ 1 y.im)))) into (cos (- (* (atan2 x.im x.re) y.re) (* y.im (log (/ 1 x.re))))) 4.830 * [backup-simplify]: Simplify (cos (fma (/ 1 (- y.im)) (log (hypot (/ 1 (- x.re)) (/ 1 (- x.im)))) (* (atan2 (/ 1 (- x.im)) (/ 1 (- x.re))) (/ 1 (- y.re))))) into (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) 4.830 * [approximate]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in (y.im x.re x.im y.re) around 0 4.830 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in y.re 4.830 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in y.re 4.830 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.830 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in y.re 4.830 * [taylor]: Taking taylor expansion of (/ -1 y.im) in y.re 4.830 * [taylor]: Taking taylor expansion of -1 in y.re 4.830 * [backup-simplify]: Simplify -1 into -1 4.830 * [taylor]: Taking taylor expansion of y.im in y.re 4.830 * [backup-simplify]: Simplify y.im into y.im 4.831 * [backup-simplify]: Simplify (/ -1 y.im) into (/ -1 y.im) 4.831 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in y.re 4.831 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in y.re 4.831 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.831 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in y.re 4.831 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in y.re 4.831 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 4.831 * [taylor]: Taking taylor expansion of -1 in y.re 4.831 * [backup-simplify]: Simplify -1 into -1 4.831 * [taylor]: Taking taylor expansion of x.re in y.re 4.831 * [backup-simplify]: Simplify x.re into x.re 4.831 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.831 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 4.831 * [taylor]: Taking taylor expansion of -1 in y.re 4.831 * [backup-simplify]: Simplify -1 into -1 4.831 * [taylor]: Taking taylor expansion of x.re in y.re 4.831 * [backup-simplify]: Simplify x.re into x.re 4.831 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.831 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in y.re 4.831 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 4.831 * [taylor]: Taking taylor expansion of -1 in y.re 4.831 * [backup-simplify]: Simplify -1 into -1 4.831 * [taylor]: Taking taylor expansion of x.im in y.re 4.831 * [backup-simplify]: Simplify x.im into x.im 4.831 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.831 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 4.831 * [taylor]: Taking taylor expansion of -1 in y.re 4.831 * [backup-simplify]: Simplify -1 into -1 4.831 * [taylor]: Taking taylor expansion of x.im in y.re 4.831 * [backup-simplify]: Simplify x.im into x.im 4.831 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.832 * [backup-simplify]: Simplify (* (/ -1 x.re) (/ -1 x.re)) into (/ 1 (pow x.re 2)) 4.832 * [backup-simplify]: Simplify (* (/ -1 x.im) (/ -1 x.im)) into (/ 1 (pow x.im 2)) 4.832 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.832 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.832 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.832 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.832 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (* 0 (/ -1 x.re))) into 0 4.833 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.833 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.833 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (* 0 (/ -1 x.im))) into 0 4.833 * [backup-simplify]: Simplify (+ 0 0) into 0 4.833 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.834 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.834 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.re 4.834 * [taylor]: Taking taylor expansion of -1 in y.re 4.834 * [backup-simplify]: Simplify -1 into -1 4.834 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.re 4.834 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.re 4.834 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.834 * [taylor]: Taking taylor expansion of y.re in y.re 4.834 * [backup-simplify]: Simplify 0 into 0 4.834 * [backup-simplify]: Simplify 1 into 1 4.834 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.834 * [backup-simplify]: Simplify (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) into (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) 4.834 * [backup-simplify]: Simplify (+ 0 (* -1 (atan2 (/ -1 x.im) (/ -1 x.re)))) into (- (atan2 (/ -1 x.im) (/ -1 x.re))) 4.835 * [backup-simplify]: Simplify (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) into (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) 4.835 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in x.im 4.835 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in x.im 4.835 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.835 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in x.im 4.835 * [taylor]: Taking taylor expansion of (/ -1 y.im) in x.im 4.835 * [taylor]: Taking taylor expansion of -1 in x.im 4.835 * [backup-simplify]: Simplify -1 into -1 4.835 * [taylor]: Taking taylor expansion of y.im in x.im 4.835 * [backup-simplify]: Simplify y.im into y.im 4.835 * [backup-simplify]: Simplify (/ -1 y.im) into (/ -1 y.im) 4.835 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in x.im 4.835 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in x.im 4.835 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.835 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in x.im 4.835 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in x.im 4.835 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.im 4.835 * [taylor]: Taking taylor expansion of -1 in x.im 4.835 * [backup-simplify]: Simplify -1 into -1 4.835 * [taylor]: Taking taylor expansion of x.re in x.im 4.835 * [backup-simplify]: Simplify x.re into x.re 4.835 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.835 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.im 4.835 * [taylor]: Taking taylor expansion of -1 in x.im 4.835 * [backup-simplify]: Simplify -1 into -1 4.836 * [taylor]: Taking taylor expansion of x.re in x.im 4.836 * [backup-simplify]: Simplify x.re into x.re 4.836 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.836 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in x.im 4.836 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.im 4.836 * [taylor]: Taking taylor expansion of -1 in x.im 4.836 * [backup-simplify]: Simplify -1 into -1 4.836 * [taylor]: Taking taylor expansion of x.im in x.im 4.836 * [backup-simplify]: Simplify 0 into 0 4.836 * [backup-simplify]: Simplify 1 into 1 4.836 * [backup-simplify]: Simplify (/ -1 1) into -1 4.836 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.im 4.836 * [taylor]: Taking taylor expansion of -1 in x.im 4.836 * [backup-simplify]: Simplify -1 into -1 4.836 * [taylor]: Taking taylor expansion of x.im in x.im 4.836 * [backup-simplify]: Simplify 0 into 0 4.836 * [backup-simplify]: Simplify 1 into 1 4.837 * [backup-simplify]: Simplify (/ -1 1) into -1 4.837 * [backup-simplify]: Simplify (* -1 -1) into 1 4.838 * [backup-simplify]: Simplify (+ 0 1) into 1 4.838 * [backup-simplify]: Simplify (sqrt 1) into 1 4.839 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.840 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.840 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 -1)) into 0 4.841 * [backup-simplify]: Simplify (+ 0 0) into 0 4.841 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.842 * [backup-simplify]: Simplify (log 1) into 0 4.842 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.im 4.842 * [taylor]: Taking taylor expansion of -1 in x.im 4.842 * [backup-simplify]: Simplify -1 into -1 4.842 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.im 4.842 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 4.842 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.842 * [taylor]: Taking taylor expansion of y.re in x.im 4.842 * [backup-simplify]: Simplify y.re into y.re 4.842 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.842 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.843 * [backup-simplify]: Simplify (* (/ -1 y.im) (- (log x.im))) into (/ (log x.im) y.im) 4.843 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.843 * [backup-simplify]: Simplify (+ (/ (log x.im) y.im) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (- (/ (log x.im) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.843 * [backup-simplify]: Simplify (cos (- (/ (log x.im) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.im) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.843 * [backup-simplify]: Simplify (sin (- (/ (log x.im) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (sin (- (/ (log x.im) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.843 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in x.re 4.843 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in x.re 4.843 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.844 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in x.re 4.844 * [taylor]: Taking taylor expansion of (/ -1 y.im) in x.re 4.844 * [taylor]: Taking taylor expansion of -1 in x.re 4.844 * [backup-simplify]: Simplify -1 into -1 4.844 * [taylor]: Taking taylor expansion of y.im in x.re 4.844 * [backup-simplify]: Simplify y.im into y.im 4.844 * [backup-simplify]: Simplify (/ -1 y.im) into (/ -1 y.im) 4.844 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in x.re 4.844 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in x.re 4.844 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.844 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in x.re 4.844 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in x.re 4.844 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.844 * [taylor]: Taking taylor expansion of -1 in x.re 4.844 * [backup-simplify]: Simplify -1 into -1 4.844 * [taylor]: Taking taylor expansion of x.re in x.re 4.844 * [backup-simplify]: Simplify 0 into 0 4.844 * [backup-simplify]: Simplify 1 into 1 4.845 * [backup-simplify]: Simplify (/ -1 1) into -1 4.845 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.845 * [taylor]: Taking taylor expansion of -1 in x.re 4.845 * [backup-simplify]: Simplify -1 into -1 4.845 * [taylor]: Taking taylor expansion of x.re in x.re 4.845 * [backup-simplify]: Simplify 0 into 0 4.845 * [backup-simplify]: Simplify 1 into 1 4.845 * [backup-simplify]: Simplify (/ -1 1) into -1 4.845 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in x.re 4.845 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.845 * [taylor]: Taking taylor expansion of -1 in x.re 4.845 * [backup-simplify]: Simplify -1 into -1 4.845 * [taylor]: Taking taylor expansion of x.im in x.re 4.845 * [backup-simplify]: Simplify x.im into x.im 4.845 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.845 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.845 * [taylor]: Taking taylor expansion of -1 in x.re 4.845 * [backup-simplify]: Simplify -1 into -1 4.845 * [taylor]: Taking taylor expansion of x.im in x.re 4.846 * [backup-simplify]: Simplify x.im into x.im 4.846 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.846 * [backup-simplify]: Simplify (* -1 -1) into 1 4.846 * [backup-simplify]: Simplify (+ 1 0) into 1 4.847 * [backup-simplify]: Simplify (sqrt 1) into 1 4.848 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.848 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.849 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 -1)) into 0 4.849 * [backup-simplify]: Simplify (+ 0 0) into 0 4.850 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.850 * [backup-simplify]: Simplify (log 1) into 0 4.850 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.re 4.850 * [taylor]: Taking taylor expansion of -1 in x.re 4.851 * [backup-simplify]: Simplify -1 into -1 4.851 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.re 4.851 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 4.851 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.851 * [taylor]: Taking taylor expansion of y.re in x.re 4.851 * [backup-simplify]: Simplify y.re into y.re 4.851 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.851 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.851 * [backup-simplify]: Simplify (* (/ -1 y.im) (- (log x.re))) into (/ (log x.re) y.im) 4.852 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.852 * [backup-simplify]: Simplify (+ (/ (log x.re) y.im) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.852 * [backup-simplify]: Simplify (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.852 * [backup-simplify]: Simplify (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.852 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in y.im 4.852 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in y.im 4.852 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.852 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in y.im 4.852 * [taylor]: Taking taylor expansion of (/ -1 y.im) in y.im 4.853 * [taylor]: Taking taylor expansion of -1 in y.im 4.853 * [backup-simplify]: Simplify -1 into -1 4.853 * [taylor]: Taking taylor expansion of y.im in y.im 4.853 * [backup-simplify]: Simplify 0 into 0 4.853 * [backup-simplify]: Simplify 1 into 1 4.853 * [backup-simplify]: Simplify (/ -1 1) into -1 4.853 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in y.im 4.853 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in y.im 4.853 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.853 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in y.im 4.853 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in y.im 4.853 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.im 4.853 * [taylor]: Taking taylor expansion of -1 in y.im 4.853 * [backup-simplify]: Simplify -1 into -1 4.853 * [taylor]: Taking taylor expansion of x.re in y.im 4.853 * [backup-simplify]: Simplify x.re into x.re 4.853 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.853 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.im 4.853 * [taylor]: Taking taylor expansion of -1 in y.im 4.853 * [backup-simplify]: Simplify -1 into -1 4.854 * [taylor]: Taking taylor expansion of x.re in y.im 4.854 * [backup-simplify]: Simplify x.re into x.re 4.854 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.854 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in y.im 4.854 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.im 4.854 * [taylor]: Taking taylor expansion of -1 in y.im 4.854 * [backup-simplify]: Simplify -1 into -1 4.854 * [taylor]: Taking taylor expansion of x.im in y.im 4.854 * [backup-simplify]: Simplify x.im into x.im 4.854 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.854 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.im 4.854 * [taylor]: Taking taylor expansion of -1 in y.im 4.854 * [backup-simplify]: Simplify -1 into -1 4.854 * [taylor]: Taking taylor expansion of x.im in y.im 4.854 * [backup-simplify]: Simplify x.im into x.im 4.854 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.854 * [backup-simplify]: Simplify (* (/ -1 x.re) (/ -1 x.re)) into (/ 1 (pow x.re 2)) 4.854 * [backup-simplify]: Simplify (* (/ -1 x.im) (/ -1 x.im)) into (/ 1 (pow x.im 2)) 4.854 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.855 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.855 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.855 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.855 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (* 0 (/ -1 x.re))) into 0 4.855 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.855 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.855 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (* 0 (/ -1 x.im))) into 0 4.856 * [backup-simplify]: Simplify (+ 0 0) into 0 4.856 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.856 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.856 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.im 4.856 * [taylor]: Taking taylor expansion of -1 in y.im 4.856 * [backup-simplify]: Simplify -1 into -1 4.856 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.im 4.856 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.im 4.856 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.857 * [taylor]: Taking taylor expansion of y.re in y.im 4.857 * [backup-simplify]: Simplify y.re into y.re 4.857 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.857 * [backup-simplify]: Simplify (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 4.857 * [backup-simplify]: Simplify (+ (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 0) into (- (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 4.857 * [backup-simplify]: Simplify (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) into (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) 4.857 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in y.im 4.858 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in y.im 4.858 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.858 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in y.im 4.858 * [taylor]: Taking taylor expansion of (/ -1 y.im) in y.im 4.858 * [taylor]: Taking taylor expansion of -1 in y.im 4.858 * [backup-simplify]: Simplify -1 into -1 4.858 * [taylor]: Taking taylor expansion of y.im in y.im 4.858 * [backup-simplify]: Simplify 0 into 0 4.858 * [backup-simplify]: Simplify 1 into 1 4.858 * [backup-simplify]: Simplify (/ -1 1) into -1 4.858 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in y.im 4.858 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in y.im 4.858 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.858 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in y.im 4.858 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in y.im 4.859 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.im 4.859 * [taylor]: Taking taylor expansion of -1 in y.im 4.859 * [backup-simplify]: Simplify -1 into -1 4.859 * [taylor]: Taking taylor expansion of x.re in y.im 4.859 * [backup-simplify]: Simplify x.re into x.re 4.859 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.859 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.im 4.859 * [taylor]: Taking taylor expansion of -1 in y.im 4.859 * [backup-simplify]: Simplify -1 into -1 4.859 * [taylor]: Taking taylor expansion of x.re in y.im 4.859 * [backup-simplify]: Simplify x.re into x.re 4.859 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.859 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in y.im 4.859 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.im 4.859 * [taylor]: Taking taylor expansion of -1 in y.im 4.859 * [backup-simplify]: Simplify -1 into -1 4.859 * [taylor]: Taking taylor expansion of x.im in y.im 4.859 * [backup-simplify]: Simplify x.im into x.im 4.859 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.859 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.im 4.859 * [taylor]: Taking taylor expansion of -1 in y.im 4.859 * [backup-simplify]: Simplify -1 into -1 4.859 * [taylor]: Taking taylor expansion of x.im in y.im 4.859 * [backup-simplify]: Simplify x.im into x.im 4.859 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.859 * [backup-simplify]: Simplify (* (/ -1 x.re) (/ -1 x.re)) into (/ 1 (pow x.re 2)) 4.859 * [backup-simplify]: Simplify (* (/ -1 x.im) (/ -1 x.im)) into (/ 1 (pow x.im 2)) 4.860 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.860 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.860 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.860 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 4.860 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (* 0 (/ -1 x.re))) into 0 4.860 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.860 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 4.861 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (* 0 (/ -1 x.im))) into 0 4.861 * [backup-simplify]: Simplify (+ 0 0) into 0 4.861 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.861 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.861 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.im 4.862 * [taylor]: Taking taylor expansion of -1 in y.im 4.862 * [backup-simplify]: Simplify -1 into -1 4.862 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.im 4.862 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.im 4.862 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.862 * [taylor]: Taking taylor expansion of y.re in y.im 4.862 * [backup-simplify]: Simplify y.re into y.re 4.862 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.862 * [backup-simplify]: Simplify (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 4.862 * [backup-simplify]: Simplify (+ (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 0) into (- (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 4.863 * [backup-simplify]: Simplify (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) into (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) 4.863 * [taylor]: Taking taylor expansion of (cos (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) in x.re 4.863 * [taylor]: Taking taylor expansion of (fma (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in x.re 4.863 * [taylor]: Rewrote expression to (+ (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.863 * [taylor]: Taking taylor expansion of (* (/ -1 y.im) (log (hypot (/ -1 x.re) (/ -1 x.im)))) in x.re 4.863 * [taylor]: Taking taylor expansion of (/ -1 y.im) in x.re 4.863 * [taylor]: Taking taylor expansion of -1 in x.re 4.863 * [backup-simplify]: Simplify -1 into -1 4.863 * [taylor]: Taking taylor expansion of y.im in x.re 4.863 * [backup-simplify]: Simplify y.im into y.im 4.863 * [backup-simplify]: Simplify (/ -1 y.im) into (/ -1 y.im) 4.863 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in x.re 4.863 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in x.re 4.863 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.863 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in x.re 4.863 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in x.re 4.863 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.863 * [taylor]: Taking taylor expansion of -1 in x.re 4.863 * [backup-simplify]: Simplify -1 into -1 4.863 * [taylor]: Taking taylor expansion of x.re in x.re 4.863 * [backup-simplify]: Simplify 0 into 0 4.863 * [backup-simplify]: Simplify 1 into 1 4.864 * [backup-simplify]: Simplify (/ -1 1) into -1 4.864 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.864 * [taylor]: Taking taylor expansion of -1 in x.re 4.864 * [backup-simplify]: Simplify -1 into -1 4.864 * [taylor]: Taking taylor expansion of x.re in x.re 4.864 * [backup-simplify]: Simplify 0 into 0 4.864 * [backup-simplify]: Simplify 1 into 1 4.865 * [backup-simplify]: Simplify (/ -1 1) into -1 4.865 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in x.re 4.865 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.865 * [taylor]: Taking taylor expansion of -1 in x.re 4.865 * [backup-simplify]: Simplify -1 into -1 4.865 * [taylor]: Taking taylor expansion of x.im in x.re 4.865 * [backup-simplify]: Simplify x.im into x.im 4.865 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.865 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.865 * [taylor]: Taking taylor expansion of -1 in x.re 4.865 * [backup-simplify]: Simplify -1 into -1 4.865 * [taylor]: Taking taylor expansion of x.im in x.re 4.865 * [backup-simplify]: Simplify x.im into x.im 4.865 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.865 * [backup-simplify]: Simplify (* -1 -1) into 1 4.866 * [backup-simplify]: Simplify (+ 1 0) into 1 4.866 * [backup-simplify]: Simplify (sqrt 1) into 1 4.867 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.868 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.868 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 -1)) into 0 4.868 * [backup-simplify]: Simplify (+ 0 0) into 0 4.869 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.869 * [backup-simplify]: Simplify (log 1) into 0 4.869 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.re 4.869 * [taylor]: Taking taylor expansion of -1 in x.re 4.869 * [backup-simplify]: Simplify -1 into -1 4.869 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.re 4.869 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 4.869 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.869 * [taylor]: Taking taylor expansion of y.re in x.re 4.869 * [backup-simplify]: Simplify y.re into y.re 4.869 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.870 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.870 * [backup-simplify]: Simplify (* (/ -1 y.im) (- (log x.re))) into (/ (log x.re) y.im) 4.870 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.870 * [backup-simplify]: Simplify (+ (/ (log x.re) y.im) (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.870 * [backup-simplify]: Simplify (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.870 * [backup-simplify]: Simplify (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.870 * [backup-simplify]: Simplify (* (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 1) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.871 * [backup-simplify]: Simplify (* (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) into 0 4.871 * [backup-simplify]: Simplify (- 0) into 0 4.871 * [backup-simplify]: Simplify (+ (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.871 * [taylor]: Taking taylor expansion of (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in x.im 4.871 * [taylor]: Taking taylor expansion of (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.im 4.871 * [taylor]: Taking taylor expansion of (/ (log x.re) y.im) in x.im 4.871 * [taylor]: Taking taylor expansion of (log x.re) in x.im 4.871 * [taylor]: Taking taylor expansion of x.re in x.im 4.871 * [backup-simplify]: Simplify x.re into x.re 4.871 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.871 * [taylor]: Taking taylor expansion of y.im in x.im 4.871 * [backup-simplify]: Simplify y.im into y.im 4.871 * [backup-simplify]: Simplify (/ (log x.re) y.im) into (/ (log x.re) y.im) 4.871 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.im 4.871 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 4.871 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.872 * [taylor]: Taking taylor expansion of y.re in x.im 4.872 * [backup-simplify]: Simplify y.re into y.re 4.872 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 4.872 * [backup-simplify]: Simplify (- (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (- (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.872 * [backup-simplify]: Simplify (+ (/ (log x.re) y.im) (- (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 4.872 * [backup-simplify]: Simplify (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.872 * [backup-simplify]: Simplify (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.872 * [backup-simplify]: Simplify (* (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 1) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.872 * [backup-simplify]: Simplify (* (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) into 0 4.873 * [backup-simplify]: Simplify (- 0) into 0 4.873 * [backup-simplify]: Simplify (+ (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.873 * [taylor]: Taking taylor expansion of (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) in y.re 4.873 * [taylor]: Taking taylor expansion of (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.re 4.873 * [taylor]: Taking taylor expansion of (/ (log x.re) y.im) in y.re 4.873 * [taylor]: Taking taylor expansion of (log x.re) in y.re 4.873 * [taylor]: Taking taylor expansion of x.re in y.re 4.873 * [backup-simplify]: Simplify x.re into x.re 4.873 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.873 * [taylor]: Taking taylor expansion of y.im in y.re 4.873 * [backup-simplify]: Simplify y.im into y.im 4.873 * [backup-simplify]: Simplify (/ (log x.re) y.im) into (/ (log x.re) y.im) 4.873 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.re 4.873 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.re 4.873 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.873 * [taylor]: Taking taylor expansion of y.re in y.re 4.873 * [backup-simplify]: Simplify 0 into 0 4.873 * [backup-simplify]: Simplify 1 into 1 4.873 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 4.873 * [backup-simplify]: Simplify (- (atan2 (/ -1 x.im) (/ -1 x.re))) into (- (atan2 (/ -1 x.im) (/ -1 x.re))) 4.873 * [backup-simplify]: Simplify (+ 0 (- (atan2 (/ -1 x.im) (/ -1 x.re)))) into (- (atan2 (/ -1 x.im) (/ -1 x.re))) 4.874 * [backup-simplify]: Simplify (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.874 * [backup-simplify]: Simplify (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 4.874 * [taylor]: Taking taylor expansion of 0 in x.re 4.874 * [backup-simplify]: Simplify 0 into 0 4.874 * [taylor]: Taking taylor expansion of 0 in x.im 4.874 * [backup-simplify]: Simplify 0 into 0 4.874 * [taylor]: Taking taylor expansion of 0 in y.re 4.874 * [backup-simplify]: Simplify 0 into 0 4.874 * [backup-simplify]: Simplify 0 into 0 4.874 * [backup-simplify]: Simplify (+ 0) into 0 4.875 * [backup-simplify]: Simplify (+ (* (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) (* 0 1)) into 0 4.876 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 4.876 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ -1 y.im) (/ 0 y.im)))) into 0 4.876 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.876 * [backup-simplify]: Simplify (+ (* (/ -1 y.im) 0) (* 0 (- (log x.re)))) into 0 4.876 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)))) into 0 4.877 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into 0 4.877 * [backup-simplify]: Simplify (+ 0 0) into 0 4.877 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.878 * [backup-simplify]: Simplify (+ (* (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) (* 0 0)) into 0 4.878 * [backup-simplify]: Simplify (- 0) into 0 4.878 * [backup-simplify]: Simplify (+ 0 0) into 0 4.878 * [taylor]: Taking taylor expansion of 0 in x.im 4.878 * [backup-simplify]: Simplify 0 into 0 4.878 * [taylor]: Taking taylor expansion of 0 in y.re 4.878 * [backup-simplify]: Simplify 0 into 0 4.878 * [backup-simplify]: Simplify 0 into 0 4.879 * [backup-simplify]: Simplify (+ 0) into 0 4.879 * [backup-simplify]: Simplify (+ (* (cos (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) (* 0 1)) into 0 4.880 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.re 1)))) 1) into 0 4.880 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (log x.re) y.im) (/ 0 y.im)))) into 0 4.880 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)))) into 0 4.880 * [backup-simplify]: Simplify (- 0) into 0 4.880 * [backup-simplify]: Simplify (+ 0 0) into 0 4.881 * [backup-simplify]: Simplify (+ (* 1 (/ (pow 0 1) 1))) into 0 4.881 * [backup-simplify]: Simplify (+ (* (sin (- (/ (log x.re) y.im) (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) 0) (* 0 0)) into 0 4.881 * [backup-simplify]: Simplify (- 0) into 0 4.882 * [backup-simplify]: Simplify (+ 0 0) into 0 4.882 * [taylor]: Taking taylor expansion of 0 in y.re 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [taylor]: Taking taylor expansion of 0 in x.re 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [taylor]: Taking taylor expansion of 0 in x.im 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [taylor]: Taking taylor expansion of 0 in y.re 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [taylor]: Taking taylor expansion of 0 in x.im 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [taylor]: Taking taylor expansion of 0 in y.re 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [backup-simplify]: Simplify 0 into 0 4.882 * [backup-simplify]: Simplify (cos (- (/ (log (/ 1 (- x.re))) (/ 1 (- y.im))) (/ (atan2 (/ -1 (/ 1 (- x.im))) (/ -1 (/ 1 (- x.re)))) (/ 1 (- y.re))))) into (cos (- (* (atan2 x.im x.re) y.re) (* y.im (log (/ -1 x.re))))) 4.882 * * * * [progress]: [ 2 / 4 ] generating series at (2 2 1 2) 4.882 * [backup-simplify]: Simplify (* y.re (log (hypot x.re x.im))) into (* y.re (log (hypot x.re x.im))) 4.882 * [approximate]: Taking taylor expansion of (* y.re (log (hypot x.re x.im))) in (y.re x.re x.im) around 0 4.882 * [taylor]: Taking taylor expansion of (* y.re (log (hypot x.re x.im))) in x.im 4.882 * [taylor]: Taking taylor expansion of y.re in x.im 4.882 * [backup-simplify]: Simplify y.re into y.re 4.882 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in x.im 4.882 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in x.im 4.883 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.883 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in x.im 4.883 * [taylor]: Taking taylor expansion of (* x.re x.re) in x.im 4.883 * [taylor]: Taking taylor expansion of x.re in x.im 4.883 * [backup-simplify]: Simplify x.re into x.re 4.883 * [taylor]: Taking taylor expansion of x.re in x.im 4.883 * [backup-simplify]: Simplify x.re into x.re 4.883 * [taylor]: Taking taylor expansion of (* x.im x.im) in x.im 4.883 * [taylor]: Taking taylor expansion of x.im in x.im 4.883 * [backup-simplify]: Simplify 0 into 0 4.883 * [backup-simplify]: Simplify 1 into 1 4.883 * [taylor]: Taking taylor expansion of x.im in x.im 4.883 * [backup-simplify]: Simplify 0 into 0 4.883 * [backup-simplify]: Simplify 1 into 1 4.883 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.883 * [backup-simplify]: Simplify (* 0 0) into 0 4.883 * [backup-simplify]: Simplify (+ (pow x.re 2) 0) into (pow x.re 2) 4.883 * [backup-simplify]: Simplify (sqrt (pow x.re 2)) into x.re 4.883 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.884 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 0)) into 0 4.884 * [backup-simplify]: Simplify (+ 0 0) into 0 4.885 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.re 2)))) into 0 4.885 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.885 * [taylor]: Taking taylor expansion of (* y.re (log (hypot x.re x.im))) in x.re 4.885 * [taylor]: Taking taylor expansion of y.re in x.re 4.885 * [backup-simplify]: Simplify y.re into y.re 4.885 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in x.re 4.885 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in x.re 4.885 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.885 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in x.re 4.885 * [taylor]: Taking taylor expansion of (* x.re x.re) in x.re 4.885 * [taylor]: Taking taylor expansion of x.re in x.re 4.885 * [backup-simplify]: Simplify 0 into 0 4.885 * [backup-simplify]: Simplify 1 into 1 4.885 * [taylor]: Taking taylor expansion of x.re in x.re 4.885 * [backup-simplify]: Simplify 0 into 0 4.885 * [backup-simplify]: Simplify 1 into 1 4.885 * [taylor]: Taking taylor expansion of (* x.im x.im) in x.re 4.885 * [taylor]: Taking taylor expansion of x.im in x.re 4.885 * [backup-simplify]: Simplify x.im into x.im 4.885 * [taylor]: Taking taylor expansion of x.im in x.re 4.885 * [backup-simplify]: Simplify x.im into x.im 4.886 * [backup-simplify]: Simplify (* 0 0) into 0 4.886 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.886 * [backup-simplify]: Simplify (+ 0 (pow x.im 2)) into (pow x.im 2) 4.886 * [backup-simplify]: Simplify (sqrt (pow x.im 2)) into x.im 4.887 * [backup-simplify]: Simplify (+ (* 0 1) (* 1 0)) into 0 4.887 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.887 * [backup-simplify]: Simplify (+ 0 0) into 0 4.887 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.im 2)))) into 0 4.887 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.887 * [taylor]: Taking taylor expansion of (* y.re (log (hypot x.re x.im))) in y.re 4.887 * [taylor]: Taking taylor expansion of y.re in y.re 4.887 * [backup-simplify]: Simplify 0 into 0 4.887 * [backup-simplify]: Simplify 1 into 1 4.887 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in y.re 4.888 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in y.re 4.888 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.888 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in y.re 4.888 * [taylor]: Taking taylor expansion of (* x.re x.re) in y.re 4.888 * [taylor]: Taking taylor expansion of x.re in y.re 4.888 * [backup-simplify]: Simplify x.re into x.re 4.888 * [taylor]: Taking taylor expansion of x.re in y.re 4.888 * [backup-simplify]: Simplify x.re into x.re 4.888 * [taylor]: Taking taylor expansion of (* x.im x.im) in y.re 4.888 * [taylor]: Taking taylor expansion of x.im in y.re 4.888 * [backup-simplify]: Simplify x.im into x.im 4.888 * [taylor]: Taking taylor expansion of x.im in y.re 4.888 * [backup-simplify]: Simplify x.im into x.im 4.888 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.888 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.888 * [backup-simplify]: Simplify (+ (pow x.re 2) (pow x.im 2)) into (+ (pow x.im 2) (pow x.re 2)) 4.888 * [backup-simplify]: Simplify (sqrt (+ (pow x.im 2) (pow x.re 2))) into (sqrt (+ (pow x.re 2) (pow x.im 2))) 4.888 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.888 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.889 * [backup-simplify]: Simplify (+ 0 0) into 0 4.889 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.889 * [backup-simplify]: Simplify (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.889 * [taylor]: Taking taylor expansion of (* y.re (log (hypot x.re x.im))) in y.re 4.889 * [taylor]: Taking taylor expansion of y.re in y.re 4.889 * [backup-simplify]: Simplify 0 into 0 4.889 * [backup-simplify]: Simplify 1 into 1 4.889 * [taylor]: Taking taylor expansion of (log (hypot x.re x.im)) in y.re 4.889 * [taylor]: Taking taylor expansion of (hypot x.re x.im) in y.re 4.889 * [taylor]: Rewrote expression to (sqrt (+ (* x.re x.re) (* x.im x.im))) 4.889 * [taylor]: Taking taylor expansion of (+ (* x.re x.re) (* x.im x.im)) in y.re 4.889 * [taylor]: Taking taylor expansion of (* x.re x.re) in y.re 4.889 * [taylor]: Taking taylor expansion of x.re in y.re 4.889 * [backup-simplify]: Simplify x.re into x.re 4.889 * [taylor]: Taking taylor expansion of x.re in y.re 4.890 * [backup-simplify]: Simplify x.re into x.re 4.890 * [taylor]: Taking taylor expansion of (* x.im x.im) in y.re 4.890 * [taylor]: Taking taylor expansion of x.im in y.re 4.890 * [backup-simplify]: Simplify x.im into x.im 4.890 * [taylor]: Taking taylor expansion of x.im in y.re 4.890 * [backup-simplify]: Simplify x.im into x.im 4.890 * [backup-simplify]: Simplify (* x.re x.re) into (pow x.re 2) 4.890 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.890 * [backup-simplify]: Simplify (+ (pow x.re 2) (pow x.im 2)) into (+ (pow x.im 2) (pow x.re 2)) 4.890 * [backup-simplify]: Simplify (sqrt (+ (pow x.im 2) (pow x.re 2))) into (sqrt (+ (pow x.re 2) (pow x.im 2))) 4.890 * [backup-simplify]: Simplify (+ (* x.re 0) (* 0 x.re)) into 0 4.890 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.891 * [backup-simplify]: Simplify (+ 0 0) into 0 4.891 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.891 * [backup-simplify]: Simplify (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) into (log (sqrt (+ (pow x.im 2) (pow x.re 2)))) 4.891 * [backup-simplify]: Simplify (* 0 (log (sqrt (+ (pow x.im 2) (pow x.re 2))))) into 0 4.891 * [taylor]: Taking taylor expansion of 0 in x.re 4.891 * [backup-simplify]: Simplify 0 into 0 4.891 * [taylor]: Taking taylor expansion of 0 in x.im 4.891 * [backup-simplify]: Simplify 0 into 0 4.891 * [backup-simplify]: Simplify 0 into 0 4.892 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 1)))) 1) into 0 4.892 * [backup-simplify]: Simplify (+ (* 0 0) (* 1 (log (sqrt (+ (pow x.im 2) (pow x.re 2)))))) into (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) 4.892 * [taylor]: Taking taylor expansion of (log (sqrt (+ (pow x.re 2) (pow x.im 2)))) in x.re 4.892 * [taylor]: Taking taylor expansion of (sqrt (+ (pow x.re 2) (pow x.im 2))) in x.re 4.892 * [taylor]: Taking taylor expansion of (+ (pow x.re 2) (pow x.im 2)) in x.re 4.892 * [taylor]: Taking taylor expansion of (pow x.re 2) in x.re 4.892 * [taylor]: Taking taylor expansion of x.re in x.re 4.892 * [backup-simplify]: Simplify 0 into 0 4.892 * [backup-simplify]: Simplify 1 into 1 4.892 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.re 4.892 * [taylor]: Taking taylor expansion of x.im in x.re 4.892 * [backup-simplify]: Simplify x.im into x.im 4.892 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.892 * [backup-simplify]: Simplify (+ 0 (pow x.im 2)) into (pow x.im 2) 4.892 * [backup-simplify]: Simplify (sqrt (pow x.im 2)) into x.im 4.892 * [backup-simplify]: Simplify (+ (* x.im 0) (* 0 x.im)) into 0 4.893 * [backup-simplify]: Simplify (+ 0 0) into 0 4.893 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (pow x.im 2)))) into 0 4.893 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.893 * [taylor]: Taking taylor expansion of (log x.im) in x.im 4.893 * [taylor]: Taking taylor expansion of x.im in x.im 4.893 * [backup-simplify]: Simplify 0 into 0 4.893 * [backup-simplify]: Simplify 1 into 1 4.893 * [backup-simplify]: Simplify (log 1) into 0 4.893 * [backup-simplify]: Simplify (+ (* (- -1) (log x.im)) 0) into (log x.im) 4.893 * [backup-simplify]: Simplify (log x.im) into (log x.im) 4.894 * [taylor]: Taking taylor expansion of 0 in x.im 4.894 * [backup-simplify]: Simplify 0 into 0 4.894 * [backup-simplify]: Simplify 0 into 0 4.894 * [backup-simplify]: Simplify 0 into 0 4.894 * [backup-simplify]: Simplify (+ (* x.re 0) (+ (* 0 0) (* 0 x.re))) into 0 4.894 * [backup-simplify]: Simplify (+ (* x.im 0) (+ (* 0 0) (* 0 x.im))) into 0 4.895 * [backup-simplify]: Simplify (+ 0 0) into 0 4.895 * [backup-simplify]: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (+ (pow x.re 2) (pow x.im 2))))) into 0 4.896 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (sqrt (+ (pow x.re 2) (pow x.im 2))) 1)))) 2) into 0 4.897 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (* 0 (log (sqrt (+ (pow x.im 2) (pow x.re 2))))))) into 0 4.897 * [taylor]: Taking taylor expansion of 0 in x.re 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [taylor]: Taking taylor expansion of 0 in x.im 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.im 1)))) 1) into 0 4.897 * [taylor]: Taking taylor expansion of 0 in x.im 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [taylor]: Taking taylor expansion of 0 in x.im 4.897 * [backup-simplify]: Simplify 0 into 0 4.897 * [backup-simplify]: Simplify 0 into 0 4.898 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 4.898 * [backup-simplify]: Simplify 0 into 0 4.898 * [backup-simplify]: Simplify (* (log x.im) (* 1 (* 1 y.re))) into (* y.re (log x.im)) 4.898 * [backup-simplify]: Simplify (* (/ 1 y.re) (log (hypot (/ 1 x.re) (/ 1 x.im)))) into (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) 4.898 * [approximate]: Taking taylor expansion of (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) in (y.re x.re x.im) around 0 4.898 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) in x.im 4.898 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in x.im 4.899 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in x.im 4.899 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.899 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in x.im 4.899 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in x.im 4.899 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.im 4.899 * [taylor]: Taking taylor expansion of x.re in x.im 4.899 * [backup-simplify]: Simplify x.re into x.re 4.899 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.899 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.im 4.899 * [taylor]: Taking taylor expansion of x.re in x.im 4.899 * [backup-simplify]: Simplify x.re into x.re 4.899 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.899 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in x.im 4.899 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.im 4.899 * [taylor]: Taking taylor expansion of x.im in x.im 4.899 * [backup-simplify]: Simplify 0 into 0 4.899 * [backup-simplify]: Simplify 1 into 1 4.899 * [backup-simplify]: Simplify (/ 1 1) into 1 4.899 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.im 4.899 * [taylor]: Taking taylor expansion of x.im in x.im 4.899 * [backup-simplify]: Simplify 0 into 0 4.899 * [backup-simplify]: Simplify 1 into 1 4.899 * [backup-simplify]: Simplify (/ 1 1) into 1 4.900 * [backup-simplify]: Simplify (* 1 1) into 1 4.900 * [backup-simplify]: Simplify (+ 0 1) into 1 4.901 * [backup-simplify]: Simplify (sqrt 1) into 1 4.901 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.902 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.903 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.903 * [backup-simplify]: Simplify (+ 0 0) into 0 4.904 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.904 * [backup-simplify]: Simplify (log 1) into 0 4.904 * [taylor]: Taking taylor expansion of y.re in x.im 4.904 * [backup-simplify]: Simplify y.re into y.re 4.905 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.905 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.905 * [backup-simplify]: Simplify (/ (- (log x.im)) y.re) into (* -1 (/ (log x.im) y.re)) 4.905 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) in x.re 4.905 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in x.re 4.905 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in x.re 4.905 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.905 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in x.re 4.905 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in x.re 4.905 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.905 * [taylor]: Taking taylor expansion of x.re in x.re 4.905 * [backup-simplify]: Simplify 0 into 0 4.905 * [backup-simplify]: Simplify 1 into 1 4.906 * [backup-simplify]: Simplify (/ 1 1) into 1 4.906 * [taylor]: Taking taylor expansion of (/ 1 x.re) in x.re 4.906 * [taylor]: Taking taylor expansion of x.re in x.re 4.906 * [backup-simplify]: Simplify 0 into 0 4.906 * [backup-simplify]: Simplify 1 into 1 4.906 * [backup-simplify]: Simplify (/ 1 1) into 1 4.906 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in x.re 4.906 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.906 * [taylor]: Taking taylor expansion of x.im in x.re 4.906 * [backup-simplify]: Simplify x.im into x.im 4.906 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.906 * [taylor]: Taking taylor expansion of (/ 1 x.im) in x.re 4.906 * [taylor]: Taking taylor expansion of x.im in x.re 4.906 * [backup-simplify]: Simplify x.im into x.im 4.906 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.907 * [backup-simplify]: Simplify (* 1 1) into 1 4.907 * [backup-simplify]: Simplify (+ 1 0) into 1 4.908 * [backup-simplify]: Simplify (sqrt 1) into 1 4.908 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.909 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.910 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.910 * [backup-simplify]: Simplify (+ 0 0) into 0 4.911 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.911 * [backup-simplify]: Simplify (log 1) into 0 4.911 * [taylor]: Taking taylor expansion of y.re in x.re 4.911 * [backup-simplify]: Simplify y.re into y.re 4.911 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.912 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.912 * [backup-simplify]: Simplify (/ (- (log x.re)) y.re) into (* -1 (/ (log x.re) y.re)) 4.912 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) in y.re 4.912 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in y.re 4.912 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in y.re 4.912 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.912 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in y.re 4.912 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in y.re 4.912 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.912 * [taylor]: Taking taylor expansion of x.re in y.re 4.912 * [backup-simplify]: Simplify x.re into x.re 4.912 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.912 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.912 * [taylor]: Taking taylor expansion of x.re in y.re 4.912 * [backup-simplify]: Simplify x.re into x.re 4.912 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.913 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in y.re 4.913 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.913 * [taylor]: Taking taylor expansion of x.im in y.re 4.913 * [backup-simplify]: Simplify x.im into x.im 4.913 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.913 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.913 * [taylor]: Taking taylor expansion of x.im in y.re 4.913 * [backup-simplify]: Simplify x.im into x.im 4.913 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.913 * [backup-simplify]: Simplify (* (/ 1 x.re) (/ 1 x.re)) into (/ 1 (pow x.re 2)) 4.913 * [backup-simplify]: Simplify (* (/ 1 x.im) (/ 1 x.im)) into (/ 1 (pow x.im 2)) 4.913 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.913 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.913 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.914 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.914 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (* 0 (/ 1 x.re))) into 0 4.914 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.914 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.914 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (* 0 (/ 1 x.im))) into 0 4.914 * [backup-simplify]: Simplify (+ 0 0) into 0 4.915 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.915 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.915 * [taylor]: Taking taylor expansion of y.re in y.re 4.915 * [backup-simplify]: Simplify 0 into 0 4.915 * [backup-simplify]: Simplify 1 into 1 4.915 * [backup-simplify]: Simplify (/ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 1) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.915 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ 1 x.re) (/ 1 x.im))) y.re) in y.re 4.915 * [taylor]: Taking taylor expansion of (log (hypot (/ 1 x.re) (/ 1 x.im))) in y.re 4.915 * [taylor]: Taking taylor expansion of (hypot (/ 1 x.re) (/ 1 x.im)) in y.re 4.915 * [taylor]: Rewrote expression to (sqrt (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im)))) 4.915 * [taylor]: Taking taylor expansion of (+ (* (/ 1 x.re) (/ 1 x.re)) (* (/ 1 x.im) (/ 1 x.im))) in y.re 4.915 * [taylor]: Taking taylor expansion of (* (/ 1 x.re) (/ 1 x.re)) in y.re 4.915 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.915 * [taylor]: Taking taylor expansion of x.re in y.re 4.915 * [backup-simplify]: Simplify x.re into x.re 4.916 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.916 * [taylor]: Taking taylor expansion of (/ 1 x.re) in y.re 4.916 * [taylor]: Taking taylor expansion of x.re in y.re 4.916 * [backup-simplify]: Simplify x.re into x.re 4.916 * [backup-simplify]: Simplify (/ 1 x.re) into (/ 1 x.re) 4.916 * [taylor]: Taking taylor expansion of (* (/ 1 x.im) (/ 1 x.im)) in y.re 4.916 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.916 * [taylor]: Taking taylor expansion of x.im in y.re 4.916 * [backup-simplify]: Simplify x.im into x.im 4.916 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.916 * [taylor]: Taking taylor expansion of (/ 1 x.im) in y.re 4.916 * [taylor]: Taking taylor expansion of x.im in y.re 4.916 * [backup-simplify]: Simplify x.im into x.im 4.916 * [backup-simplify]: Simplify (/ 1 x.im) into (/ 1 x.im) 4.916 * [backup-simplify]: Simplify (* (/ 1 x.re) (/ 1 x.re)) into (/ 1 (pow x.re 2)) 4.916 * [backup-simplify]: Simplify (* (/ 1 x.im) (/ 1 x.im)) into (/ 1 (pow x.im 2)) 4.916 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 4.917 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 4.917 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.917 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)))) into 0 4.917 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (* 0 (/ 1 x.re))) into 0 4.917 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.917 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)))) into 0 4.917 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (* 0 (/ 1 x.im))) into 0 4.918 * [backup-simplify]: Simplify (+ 0 0) into 0 4.918 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.918 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.918 * [taylor]: Taking taylor expansion of y.re in y.re 4.918 * [backup-simplify]: Simplify 0 into 0 4.918 * [backup-simplify]: Simplify 1 into 1 4.918 * [backup-simplify]: Simplify (/ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 1) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 4.918 * [taylor]: Taking taylor expansion of (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) in x.re 4.918 * [taylor]: Taking taylor expansion of (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) in x.re 4.918 * [taylor]: Taking taylor expansion of (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) in x.re 4.919 * [taylor]: Taking taylor expansion of (/ 1 (pow x.im 2)) in x.re 4.919 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.re 4.919 * [taylor]: Taking taylor expansion of x.im in x.re 4.919 * [backup-simplify]: Simplify x.im into x.im 4.919 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 4.919 * [backup-simplify]: Simplify (/ 1 (pow x.im 2)) into (/ 1 (pow x.im 2)) 4.919 * [taylor]: Taking taylor expansion of (/ 1 (pow x.re 2)) in x.re 4.919 * [taylor]: Taking taylor expansion of (pow x.re 2) in x.re 4.919 * [taylor]: Taking taylor expansion of x.re in x.re 4.919 * [backup-simplify]: Simplify 0 into 0 4.919 * [backup-simplify]: Simplify 1 into 1 4.919 * [backup-simplify]: Simplify (* 1 1) into 1 4.920 * [backup-simplify]: Simplify (/ 1 1) into 1 4.920 * [backup-simplify]: Simplify (+ 0 1) into 1 4.920 * [backup-simplify]: Simplify (sqrt 1) into 1 4.921 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.922 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 4.922 * [backup-simplify]: Simplify (+ 0 0) into 0 4.923 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.923 * [backup-simplify]: Simplify (log 1) into 0 4.924 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 4.924 * [taylor]: Taking taylor expansion of (- (log x.re)) in x.im 4.924 * [taylor]: Taking taylor expansion of (log x.re) in x.im 4.924 * [taylor]: Taking taylor expansion of x.re in x.im 4.924 * [backup-simplify]: Simplify x.re into x.re 4.924 * [backup-simplify]: Simplify (log x.re) into (log x.re) 4.924 * [backup-simplify]: Simplify (- (log x.re)) into (- (log x.re)) 4.924 * [backup-simplify]: Simplify (- (log x.re)) into (- (log x.re)) 4.925 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 1)))) 1) into 0 4.926 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) (/ 0 1)))) into 0 4.926 * [taylor]: Taking taylor expansion of 0 in x.re 4.926 * [backup-simplify]: Simplify 0 into 0 4.926 * [taylor]: Taking taylor expansion of 0 in x.im 4.926 * [backup-simplify]: Simplify 0 into 0 4.926 * [backup-simplify]: Simplify 0 into 0 4.928 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 4.928 * [taylor]: Taking taylor expansion of 0 in x.im 4.928 * [backup-simplify]: Simplify 0 into 0 4.928 * [backup-simplify]: Simplify 0 into 0 4.928 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.re 1)))) 1) into 0 4.929 * [backup-simplify]: Simplify (- 0) into 0 4.929 * [backup-simplify]: Simplify 0 into 0 4.929 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)) (* 0 (/ 0 x.re)))) into 0 4.929 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.re) (/ 0 x.re)) (* 0 (/ 0 x.re)))) into 0 4.930 * [backup-simplify]: Simplify (+ (* (/ 1 x.re) 0) (+ (* 0 0) (* 0 (/ 1 x.re)))) into 0 4.930 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)) (* 0 (/ 0 x.im)))) into 0 4.930 * [backup-simplify]: Simplify (- (+ (* (/ 1 x.im) (/ 0 x.im)) (* 0 (/ 0 x.im)))) into 0 4.930 * [backup-simplify]: Simplify (+ (* (/ 1 x.im) 0) (+ (* 0 0) (* 0 (/ 1 x.im)))) into 0 4.931 * [backup-simplify]: Simplify (+ 0 0) into 0 4.932 * [backup-simplify]: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 4.933 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 1)))) 2) into 0 4.935 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.935 * [taylor]: Taking taylor expansion of 0 in x.re 4.935 * [backup-simplify]: Simplify 0 into 0 4.935 * [taylor]: Taking taylor expansion of 0 in x.im 4.935 * [backup-simplify]: Simplify 0 into 0 4.935 * [backup-simplify]: Simplify 0 into 0 4.935 * [taylor]: Taking taylor expansion of 0 in x.im 4.935 * [backup-simplify]: Simplify 0 into 0 4.935 * [backup-simplify]: Simplify 0 into 0 4.936 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.937 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.937 * [backup-simplify]: Simplify (+ (/ 1 (pow x.im 2)) 0) into (/ 1 (pow x.im 2)) 4.938 * [backup-simplify]: Simplify (/ (- (/ 1 (pow x.im 2)) (pow 0 2) (+)) (* 2 1)) into (/ 1/2 (pow x.im 2)) 4.940 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 (/ 1/2 (pow x.im 2))) 1)) (pow 1 1)))) 2) into (/ 1/2 (pow x.im 2)) 4.940 * [taylor]: Taking taylor expansion of (/ 1/2 (pow x.im 2)) in x.im 4.940 * [taylor]: Taking taylor expansion of 1/2 in x.im 4.940 * [backup-simplify]: Simplify 1/2 into 1/2 4.940 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.im 4.940 * [taylor]: Taking taylor expansion of x.im in x.im 4.940 * [backup-simplify]: Simplify 0 into 0 4.940 * [backup-simplify]: Simplify 1 into 1 4.941 * [backup-simplify]: Simplify (* 1 1) into 1 4.941 * [backup-simplify]: Simplify (/ 1/2 1) into 1/2 4.942 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 4.942 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 4.943 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1/2 (/ 0 1)))) into 0 4.944 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* 1/2 (/ 0 1)) (* 0 (/ 0 1)))) into 0 4.944 * [backup-simplify]: Simplify 0 into 0 4.944 * [backup-simplify]: Simplify (* (- (log (/ 1 x.re))) (* 1 (* 1 (/ 1 (/ 1 y.re))))) into (* -1 (* y.re (log (/ 1 x.re)))) 4.945 * [backup-simplify]: Simplify (* (/ 1 (- y.re)) (log (hypot (/ 1 (- x.re)) (/ 1 (- x.im))))) into (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) 4.945 * [approximate]: Taking taylor expansion of (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) in (y.re x.re x.im) around 0 4.945 * [taylor]: Taking taylor expansion of (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) in x.im 4.945 * [taylor]: Taking taylor expansion of -1 in x.im 4.945 * [backup-simplify]: Simplify -1 into -1 4.945 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re) in x.im 4.945 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in x.im 4.945 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in x.im 4.945 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.945 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in x.im 4.945 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in x.im 4.945 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.im 4.945 * [taylor]: Taking taylor expansion of -1 in x.im 4.945 * [backup-simplify]: Simplify -1 into -1 4.945 * [taylor]: Taking taylor expansion of x.re in x.im 4.945 * [backup-simplify]: Simplify x.re into x.re 4.945 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.945 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.im 4.945 * [taylor]: Taking taylor expansion of -1 in x.im 4.945 * [backup-simplify]: Simplify -1 into -1 4.945 * [taylor]: Taking taylor expansion of x.re in x.im 4.945 * [backup-simplify]: Simplify x.re into x.re 4.945 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 4.945 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in x.im 4.945 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.im 4.945 * [taylor]: Taking taylor expansion of -1 in x.im 4.945 * [backup-simplify]: Simplify -1 into -1 4.945 * [taylor]: Taking taylor expansion of x.im in x.im 4.945 * [backup-simplify]: Simplify 0 into 0 4.946 * [backup-simplify]: Simplify 1 into 1 4.946 * [backup-simplify]: Simplify (/ -1 1) into -1 4.946 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.im 4.946 * [taylor]: Taking taylor expansion of -1 in x.im 4.946 * [backup-simplify]: Simplify -1 into -1 4.946 * [taylor]: Taking taylor expansion of x.im in x.im 4.946 * [backup-simplify]: Simplify 0 into 0 4.946 * [backup-simplify]: Simplify 1 into 1 4.947 * [backup-simplify]: Simplify (/ -1 1) into -1 4.947 * [backup-simplify]: Simplify (* -1 -1) into 1 4.947 * [backup-simplify]: Simplify (+ 0 1) into 1 4.948 * [backup-simplify]: Simplify (sqrt 1) into 1 4.948 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.949 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 4.950 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 -1)) into 0 4.950 * [backup-simplify]: Simplify (+ 0 0) into 0 4.951 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 4.951 * [backup-simplify]: Simplify (log 1) into 0 4.951 * [taylor]: Taking taylor expansion of y.re in x.im 4.951 * [backup-simplify]: Simplify y.re into y.re 4.952 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.952 * [backup-simplify]: Simplify (+ (* (- 1) (log x.im)) 0) into (- (log x.im)) 4.952 * [backup-simplify]: Simplify (/ (- (log x.im)) y.re) into (* -1 (/ (log x.im) y.re)) 4.952 * [taylor]: Taking taylor expansion of (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) in x.re 4.952 * [taylor]: Taking taylor expansion of -1 in x.re 4.952 * [backup-simplify]: Simplify -1 into -1 4.952 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re) in x.re 4.952 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in x.re 4.953 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in x.re 4.953 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 4.953 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in x.re 4.953 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in x.re 4.953 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.953 * [taylor]: Taking taylor expansion of -1 in x.re 4.953 * [backup-simplify]: Simplify -1 into -1 4.953 * [taylor]: Taking taylor expansion of x.re in x.re 4.953 * [backup-simplify]: Simplify 0 into 0 4.953 * [backup-simplify]: Simplify 1 into 1 4.953 * [backup-simplify]: Simplify (/ -1 1) into -1 4.953 * [taylor]: Taking taylor expansion of (/ -1 x.re) in x.re 4.953 * [taylor]: Taking taylor expansion of -1 in x.re 4.953 * [backup-simplify]: Simplify -1 into -1 4.953 * [taylor]: Taking taylor expansion of x.re in x.re 4.953 * [backup-simplify]: Simplify 0 into 0 4.953 * [backup-simplify]: Simplify 1 into 1 4.954 * [backup-simplify]: Simplify (/ -1 1) into -1 4.954 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in x.re 4.954 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.954 * [taylor]: Taking taylor expansion of -1 in x.re 4.954 * [backup-simplify]: Simplify -1 into -1 4.954 * [taylor]: Taking taylor expansion of x.im in x.re 4.954 * [backup-simplify]: Simplify x.im into x.im 4.954 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.954 * [taylor]: Taking taylor expansion of (/ -1 x.im) in x.re 4.954 * [taylor]: Taking taylor expansion of -1 in x.re 4.954 * [backup-simplify]: Simplify -1 into -1 4.954 * [taylor]: Taking taylor expansion of x.im in x.re 4.954 * [backup-simplify]: Simplify x.im into x.im 4.954 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 4.955 * [backup-simplify]: Simplify (* -1 -1) into 1 4.955 * [backup-simplify]: Simplify (+ 1 0) into 1 5.380 * [backup-simplify]: Simplify (sqrt 1) into 1 5.381 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 5.382 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* -1 (/ 0 1)))) into 0 5.383 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 -1)) into 0 5.383 * [backup-simplify]: Simplify (+ 0 0) into 0 5.384 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 5.384 * [backup-simplify]: Simplify (log 1) into 0 5.384 * [taylor]: Taking taylor expansion of y.re in x.re 5.384 * [backup-simplify]: Simplify y.re into y.re 5.385 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 5.385 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 5.385 * [backup-simplify]: Simplify (/ (- (log x.re)) y.re) into (* -1 (/ (log x.re) y.re)) 5.385 * [taylor]: Taking taylor expansion of (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) in y.re 5.385 * [taylor]: Taking taylor expansion of -1 in y.re 5.385 * [backup-simplify]: Simplify -1 into -1 5.385 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re) in y.re 5.385 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in y.re 5.385 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in y.re 5.385 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 5.385 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in y.re 5.385 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in y.re 5.385 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 5.385 * [taylor]: Taking taylor expansion of -1 in y.re 5.385 * [backup-simplify]: Simplify -1 into -1 5.385 * [taylor]: Taking taylor expansion of x.re in y.re 5.386 * [backup-simplify]: Simplify x.re into x.re 5.386 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 5.386 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 5.386 * [taylor]: Taking taylor expansion of -1 in y.re 5.386 * [backup-simplify]: Simplify -1 into -1 5.386 * [taylor]: Taking taylor expansion of x.re in y.re 5.386 * [backup-simplify]: Simplify x.re into x.re 5.386 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 5.386 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in y.re 5.386 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 5.386 * [taylor]: Taking taylor expansion of -1 in y.re 5.386 * [backup-simplify]: Simplify -1 into -1 5.386 * [taylor]: Taking taylor expansion of x.im in y.re 5.386 * [backup-simplify]: Simplify x.im into x.im 5.386 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 5.386 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 5.386 * [taylor]: Taking taylor expansion of -1 in y.re 5.386 * [backup-simplify]: Simplify -1 into -1 5.386 * [taylor]: Taking taylor expansion of x.im in y.re 5.386 * [backup-simplify]: Simplify x.im into x.im 5.386 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 5.386 * [backup-simplify]: Simplify (* (/ -1 x.re) (/ -1 x.re)) into (/ 1 (pow x.re 2)) 5.386 * [backup-simplify]: Simplify (* (/ -1 x.im) (/ -1 x.im)) into (/ 1 (pow x.im 2)) 5.387 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 5.387 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 5.387 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 5.387 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 5.387 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (* 0 (/ -1 x.re))) into 0 5.387 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 5.387 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 5.388 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (* 0 (/ -1 x.im))) into 0 5.388 * [backup-simplify]: Simplify (+ 0 0) into 0 5.388 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 5.389 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 5.389 * [taylor]: Taking taylor expansion of y.re in y.re 5.389 * [backup-simplify]: Simplify 0 into 0 5.389 * [backup-simplify]: Simplify 1 into 1 5.389 * [backup-simplify]: Simplify (/ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 1) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 5.389 * [taylor]: Taking taylor expansion of (* -1 (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re)) in y.re 5.389 * [taylor]: Taking taylor expansion of -1 in y.re 5.389 * [backup-simplify]: Simplify -1 into -1 5.389 * [taylor]: Taking taylor expansion of (/ (log (hypot (/ -1 x.re) (/ -1 x.im))) y.re) in y.re 5.389 * [taylor]: Taking taylor expansion of (log (hypot (/ -1 x.re) (/ -1 x.im))) in y.re 5.389 * [taylor]: Taking taylor expansion of (hypot (/ -1 x.re) (/ -1 x.im)) in y.re 5.389 * [taylor]: Rewrote expression to (sqrt (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im)))) 5.389 * [taylor]: Taking taylor expansion of (+ (* (/ -1 x.re) (/ -1 x.re)) (* (/ -1 x.im) (/ -1 x.im))) in y.re 5.389 * [taylor]: Taking taylor expansion of (* (/ -1 x.re) (/ -1 x.re)) in y.re 5.389 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 5.389 * [taylor]: Taking taylor expansion of -1 in y.re 5.389 * [backup-simplify]: Simplify -1 into -1 5.389 * [taylor]: Taking taylor expansion of x.re in y.re 5.389 * [backup-simplify]: Simplify x.re into x.re 5.389 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 5.389 * [taylor]: Taking taylor expansion of (/ -1 x.re) in y.re 5.389 * [taylor]: Taking taylor expansion of -1 in y.re 5.389 * [backup-simplify]: Simplify -1 into -1 5.389 * [taylor]: Taking taylor expansion of x.re in y.re 5.390 * [backup-simplify]: Simplify x.re into x.re 5.390 * [backup-simplify]: Simplify (/ -1 x.re) into (/ -1 x.re) 5.390 * [taylor]: Taking taylor expansion of (* (/ -1 x.im) (/ -1 x.im)) in y.re 5.390 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 5.390 * [taylor]: Taking taylor expansion of -1 in y.re 5.390 * [backup-simplify]: Simplify -1 into -1 5.390 * [taylor]: Taking taylor expansion of x.im in y.re 5.390 * [backup-simplify]: Simplify x.im into x.im 5.390 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 5.390 * [taylor]: Taking taylor expansion of (/ -1 x.im) in y.re 5.390 * [taylor]: Taking taylor expansion of -1 in y.re 5.390 * [backup-simplify]: Simplify -1 into -1 5.390 * [taylor]: Taking taylor expansion of x.im in y.re 5.390 * [backup-simplify]: Simplify x.im into x.im 5.390 * [backup-simplify]: Simplify (/ -1 x.im) into (/ -1 x.im) 5.390 * [backup-simplify]: Simplify (* (/ -1 x.re) (/ -1 x.re)) into (/ 1 (pow x.re 2)) 5.390 * [backup-simplify]: Simplify (* (/ -1 x.im) (/ -1 x.im)) into (/ 1 (pow x.im 2)) 5.390 * [backup-simplify]: Simplify (+ (/ 1 (pow x.re 2)) (/ 1 (pow x.im 2))) into (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) 5.391 * [backup-simplify]: Simplify (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) into (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 5.391 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 5.391 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)))) into 0 5.391 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (* 0 (/ -1 x.re))) into 0 5.391 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 5.391 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)))) into 0 5.391 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (* 0 (/ -1 x.im))) into 0 5.392 * [backup-simplify]: Simplify (+ 0 0) into 0 5.392 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 5.392 * [backup-simplify]: Simplify (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 5.392 * [taylor]: Taking taylor expansion of y.re in y.re 5.392 * [backup-simplify]: Simplify 0 into 0 5.392 * [backup-simplify]: Simplify 1 into 1 5.393 * [backup-simplify]: Simplify (/ (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 1) into (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) 5.393 * [backup-simplify]: Simplify (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) 5.393 * [taylor]: Taking taylor expansion of (* -1 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) in x.re 5.393 * [taylor]: Taking taylor expansion of -1 in x.re 5.393 * [backup-simplify]: Simplify -1 into -1 5.393 * [taylor]: Taking taylor expansion of (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) in x.re 5.393 * [taylor]: Taking taylor expansion of (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) in x.re 5.393 * [taylor]: Taking taylor expansion of (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))) in x.re 5.393 * [taylor]: Taking taylor expansion of (/ 1 (pow x.im 2)) in x.re 5.393 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.re 5.393 * [taylor]: Taking taylor expansion of x.im in x.re 5.393 * [backup-simplify]: Simplify x.im into x.im 5.393 * [backup-simplify]: Simplify (* x.im x.im) into (pow x.im 2) 5.393 * [backup-simplify]: Simplify (/ 1 (pow x.im 2)) into (/ 1 (pow x.im 2)) 5.393 * [taylor]: Taking taylor expansion of (/ 1 (pow x.re 2)) in x.re 5.393 * [taylor]: Taking taylor expansion of (pow x.re 2) in x.re 5.393 * [taylor]: Taking taylor expansion of x.re in x.re 5.394 * [backup-simplify]: Simplify 0 into 0 5.394 * [backup-simplify]: Simplify 1 into 1 5.394 * [backup-simplify]: Simplify (* 1 1) into 1 5.394 * [backup-simplify]: Simplify (/ 1 1) into 1 5.395 * [backup-simplify]: Simplify (+ 0 1) into 1 5.395 * [backup-simplify]: Simplify (sqrt 1) into 1 5.396 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 5.397 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 5.397 * [backup-simplify]: Simplify (+ 0 0) into 0 5.398 * [backup-simplify]: Simplify (/ 0 (* 2 (sqrt 1))) into 0 5.398 * [backup-simplify]: Simplify (log 1) into 0 5.399 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 5.399 * [backup-simplify]: Simplify (* -1 (- (log x.re))) into (log x.re) 5.399 * [taylor]: Taking taylor expansion of (log x.re) in x.im 5.399 * [taylor]: Taking taylor expansion of x.re in x.im 5.399 * [backup-simplify]: Simplify x.re into x.re 5.399 * [backup-simplify]: Simplify (log x.re) into (log x.re) 5.399 * [backup-simplify]: Simplify (log x.re) into (log x.re) 5.400 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 1)))) 1) into 0 5.401 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) (/ 0 1)))) into 0 5.402 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))))) into 0 5.402 * [taylor]: Taking taylor expansion of 0 in x.re 5.402 * [backup-simplify]: Simplify 0 into 0 5.402 * [taylor]: Taking taylor expansion of 0 in x.im 5.402 * [backup-simplify]: Simplify 0 into 0 5.402 * [backup-simplify]: Simplify 0 into 0 5.403 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow 1 1)))) 1) into 0 5.404 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 5.404 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (- (log x.re)))) into 0 5.404 * [taylor]: Taking taylor expansion of 0 in x.im 5.404 * [backup-simplify]: Simplify 0 into 0 5.404 * [backup-simplify]: Simplify 0 into 0 5.405 * [backup-simplify]: Simplify (/ (+ (* 1 (/ (* (pow (* 1 0) 1)) (pow x.re 1)))) 1) into 0 5.405 * [backup-simplify]: Simplify 0 into 0 5.405 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)) (* 0 (/ 0 x.re)))) into 0 5.406 * [backup-simplify]: Simplify (- (/ 0 x.re) (+ (* (/ -1 x.re) (/ 0 x.re)) (* 0 (/ 0 x.re)))) into 0 5.406 * [backup-simplify]: Simplify (+ (* (/ -1 x.re) 0) (+ (* 0 0) (* 0 (/ -1 x.re)))) into 0 5.406 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)) (* 0 (/ 0 x.im)))) into 0 5.406 * [backup-simplify]: Simplify (- (/ 0 x.im) (+ (* (/ -1 x.im) (/ 0 x.im)) (* 0 (/ 0 x.im)))) into 0 5.407 * [backup-simplify]: Simplify (+ (* (/ -1 x.im) 0) (+ (* 0 0) (* 0 (/ -1 x.im)))) into 0 5.407 * [backup-simplify]: Simplify (+ 0 0) into 0 5.408 * [backup-simplify]: Simplify (/ (- 0 (pow 0 2) (+)) (* 2 (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))) into 0 5.410 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 2))) (* 1 (/ (* 1 (pow (* 2 0) 1)) (pow (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))) 1)))) 2) into 0 5.412 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2))))) (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.413 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (log (sqrt (+ (/ 1 (pow x.im 2)) (/ 1 (pow x.re 2)))))))) into 0 5.413 * [taylor]: Taking taylor expansion of 0 in x.re 5.413 * [backup-simplify]: Simplify 0 into 0 5.413 * [taylor]: Taking taylor expansion of 0 in x.im 5.413 * [backup-simplify]: Simplify 0 into 0 5.413 * [backup-simplify]: Simplify 0 into 0 5.413 * [taylor]: Taking taylor expansion of 0 in x.im 5.413 * [backup-simplify]: Simplify 0 into 0 5.413 * [backup-simplify]: Simplify 0 into 0 5.414 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 5.415 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.415 * [backup-simplify]: Simplify (+ (/ 1 (pow x.im 2)) 0) into (/ 1 (pow x.im 2)) 5.417 * [backup-simplify]: Simplify (/ (- (/ 1 (pow x.im 2)) (pow 0 2) (+)) (* 2 1)) into (/ 1/2 (pow x.im 2)) 5.418 * [backup-simplify]: Simplify (/ (+ (* -1 (/ (* (pow (* 1 0) 2)) (pow 1 2))) (* 1 (/ (* 1 (pow (* 2 (/ 1/2 (pow x.im 2))) 1)) (pow 1 1)))) 2) into (/ 1/2 (pow x.im 2)) 5.419 * [backup-simplify]: Simplify (+ (* (- 1) (log x.re)) 0) into (- (log x.re)) 5.420 * [backup-simplify]: Simplify (+ (* -1 (/ 1/2 (pow x.im 2))) (+ (* 0 0) (* 0 (- (log x.re))))) into (- (* 1/2 (/ 1 (pow x.im 2)))) 5.420 * [taylor]: Taking taylor expansion of (- (* 1/2 (/ 1 (pow x.im 2)))) in x.im 5.420 * [taylor]: Taking taylor expansion of (* 1/2 (/ 1 (pow x.im 2))) in x.im 5.420 * [taylor]: Taking taylor expansion of 1/2 in x.im 5.420 * [backup-simplify]: Simplify 1/2 into 1/2 5.420 * [taylor]: Taking taylor expansion of (/ 1 (pow x.im 2)) in x.im 5.420 * [taylor]: Taking taylor expansion of (pow x.im 2) in x.im 5.420 * [taylor]: Taking taylor expansion of x.im in x.im 5.420 * [backup-simplify]: Simplify 0 into 0 5.420 * [backup-simplify]: Simplify 1 into 1 5.420 * [backup-simplify]: Simplify (* 1 1) into 1 5.421 * [backup-simplify]: Simplify (/ 1 1) into 1 5.422 * [backup-simplify]: Simplify (+ (* 1 0) (+ (* 0 0) (* 0 1))) into 0 5.422 * [backup-simplify]: Simplify (+ (* 1 0) (* 0 1)) into 0 5.423 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)))) into 0 5.424 * [backup-simplify]: Simplify (- (+ (* 1 (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.424 * [backup-simplify]: Simplify (+ (* 1/2 0) (+ (* 0 0) (* 0 1))) into 0 5.424 * [backup-simplify]: Simplify (- 0) into 0 5.425 * [backup-simplify]: Simplify 0 into 0 5.425 * [backup-simplify]: Simplify (* (log (/ 1 (- x.re))) (* 1 (* 1 (/ 1 (/ 1 (- y.re)))))) into (* -1 (* y.re (log (/ -1 x.re)))) 5.425 * * * * [progress]: [ 3 / 4 ] generating series at (2 1 1 3) 5.425 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 5.425 * [approximate]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in (x.im x.re y.re) around 0 5.425 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 5.425 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 5.425 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.425 * [taylor]: Taking taylor expansion of y.re in y.re 5.425 * [backup-simplify]: Simplify 0 into 0 5.425 * [backup-simplify]: Simplify 1 into 1 5.425 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 5.425 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 5.425 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.425 * [taylor]: Taking taylor expansion of y.re in x.re 5.425 * [backup-simplify]: Simplify y.re into y.re 5.425 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 5.425 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 5.425 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.425 * [taylor]: Taking taylor expansion of y.re in x.im 5.425 * [backup-simplify]: Simplify y.re into y.re 5.425 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.im 5.425 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 5.425 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.425 * [taylor]: Taking taylor expansion of y.re in x.im 5.425 * [backup-simplify]: Simplify y.re into y.re 5.425 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 5.425 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in x.re 5.425 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 5.425 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.425 * [taylor]: Taking taylor expansion of y.re in x.re 5.425 * [backup-simplify]: Simplify y.re into y.re 5.425 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.re) into (* (atan2 x.im x.re) y.re) 5.426 * [taylor]: Taking taylor expansion of (* (atan2 x.im x.re) y.re) in y.re 5.426 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.re 5.426 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.426 * [taylor]: Taking taylor expansion of y.re in y.re 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify 1 into 1 5.426 * [backup-simplify]: Simplify (* (atan2 x.im x.re) 0) into 0 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 5.426 * [taylor]: Taking taylor expansion of 0 in x.re 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [taylor]: Taking taylor expansion of 0 in y.re 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (* 0 y.re)) into 0 5.426 * [taylor]: Taking taylor expansion of 0 in y.re 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify 0 into 0 5.426 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 1) (* 0 0)) into (atan2 x.im x.re) 5.426 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.427 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 0) (* 0 y.re))) into 0 5.427 * [taylor]: Taking taylor expansion of 0 in x.re 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [taylor]: Taking taylor expansion of 0 in y.re 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [taylor]: Taking taylor expansion of 0 in y.re 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 0) (* 0 y.re))) into 0 5.427 * [taylor]: Taking taylor expansion of 0 in y.re 5.427 * [backup-simplify]: Simplify 0 into 0 5.427 * [backup-simplify]: Simplify 0 into 0 5.428 * [backup-simplify]: Simplify 0 into 0 5.428 * [backup-simplify]: Simplify 0 into 0 5.428 * [backup-simplify]: Simplify (+ (* (atan2 x.im x.re) 0) (+ (* 0 1) (* 0 0))) into 0 5.428 * [backup-simplify]: Simplify 0 into 0 5.428 * [backup-simplify]: Simplify (* (atan2 x.im x.re) (* y.re (* 1 1))) into (* (atan2 x.im x.re) y.re) 5.428 * [backup-simplify]: Simplify (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 1 y.re)) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 5.428 * [approximate]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in (x.im x.re y.re) around 0 5.428 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.re 5.429 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.re 5.429 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of y.re in y.re 5.429 * [backup-simplify]: Simplify 0 into 0 5.429 * [backup-simplify]: Simplify 1 into 1 5.429 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.re 5.429 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 5.429 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of y.re in x.re 5.429 * [backup-simplify]: Simplify y.re into y.re 5.429 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 5.429 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.im 5.429 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 5.429 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of y.re in x.im 5.429 * [backup-simplify]: Simplify y.re into y.re 5.429 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 5.429 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.im 5.429 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 5.429 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of y.re in x.im 5.429 * [backup-simplify]: Simplify y.re into y.re 5.429 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 5.429 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in x.re 5.429 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 5.429 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.429 * [taylor]: Taking taylor expansion of y.re in x.re 5.429 * [backup-simplify]: Simplify y.re into y.re 5.429 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) 5.430 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) in y.re 5.430 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.re 5.430 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.430 * [taylor]: Taking taylor expansion of y.re in y.re 5.430 * [backup-simplify]: Simplify 0 into 0 5.430 * [backup-simplify]: Simplify 1 into 1 5.430 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.430 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.430 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)))) into 0 5.430 * [taylor]: Taking taylor expansion of 0 in x.re 5.430 * [backup-simplify]: Simplify 0 into 0 5.430 * [taylor]: Taking taylor expansion of 0 in y.re 5.430 * [backup-simplify]: Simplify 0 into 0 5.430 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)))) into 0 5.430 * [taylor]: Taking taylor expansion of 0 in y.re 5.430 * [backup-simplify]: Simplify 0 into 0 5.431 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 0 1)))) into 0 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.431 * [taylor]: Taking taylor expansion of 0 in x.re 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [taylor]: Taking taylor expansion of 0 in y.re 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [taylor]: Taking taylor expansion of 0 in y.re 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.431 * [taylor]: Taking taylor expansion of 0 in y.re 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [backup-simplify]: Simplify 0 into 0 5.431 * [backup-simplify]: Simplify 0 into 0 5.432 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.432 * [backup-simplify]: Simplify 0 into 0 5.433 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.433 * [taylor]: Taking taylor expansion of 0 in x.re 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [taylor]: Taking taylor expansion of 0 in y.re 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [taylor]: Taking taylor expansion of 0 in y.re 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [taylor]: Taking taylor expansion of 0 in y.re 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.433 * [taylor]: Taking taylor expansion of 0 in y.re 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [backup-simplify]: Simplify 0 into 0 5.433 * [backup-simplify]: Simplify (* (atan2 (/ 1 (/ 1 x.im)) (/ 1 (/ 1 x.re))) (* (/ 1 (/ 1 y.re)) (* 1 1))) into (* (atan2 x.im x.re) y.re) 5.434 * [backup-simplify]: Simplify (* (atan2 (/ 1 (- x.im)) (/ 1 (- x.re))) (/ 1 (- y.re))) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 5.434 * [approximate]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in (x.im x.re y.re) around 0 5.434 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.re 5.434 * [taylor]: Taking taylor expansion of -1 in y.re 5.434 * [backup-simplify]: Simplify -1 into -1 5.434 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.re 5.434 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.re 5.434 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.434 * [taylor]: Taking taylor expansion of y.re in y.re 5.434 * [backup-simplify]: Simplify 0 into 0 5.434 * [backup-simplify]: Simplify 1 into 1 5.434 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.434 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.re 5.434 * [taylor]: Taking taylor expansion of -1 in x.re 5.434 * [backup-simplify]: Simplify -1 into -1 5.434 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.re 5.434 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 5.434 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.434 * [taylor]: Taking taylor expansion of y.re in x.re 5.434 * [backup-simplify]: Simplify y.re into y.re 5.434 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 5.434 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.im 5.434 * [taylor]: Taking taylor expansion of -1 in x.im 5.434 * [backup-simplify]: Simplify -1 into -1 5.434 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.im 5.434 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 5.434 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.434 * [taylor]: Taking taylor expansion of y.re in x.im 5.434 * [backup-simplify]: Simplify y.re into y.re 5.434 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 5.434 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.im 5.434 * [taylor]: Taking taylor expansion of -1 in x.im 5.434 * [backup-simplify]: Simplify -1 into -1 5.434 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.im 5.434 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 5.435 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.435 * [taylor]: Taking taylor expansion of y.re in x.im 5.435 * [backup-simplify]: Simplify y.re into y.re 5.435 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 5.435 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 5.435 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in x.re 5.435 * [taylor]: Taking taylor expansion of -1 in x.re 5.435 * [backup-simplify]: Simplify -1 into -1 5.435 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in x.re 5.435 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 5.435 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.435 * [taylor]: Taking taylor expansion of y.re in x.re 5.435 * [backup-simplify]: Simplify y.re into y.re 5.435 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) 5.435 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) 5.435 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)) in y.re 5.435 * [taylor]: Taking taylor expansion of -1 in y.re 5.435 * [backup-simplify]: Simplify -1 into -1 5.435 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) in y.re 5.435 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.re 5.435 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.435 * [taylor]: Taking taylor expansion of y.re in y.re 5.435 * [backup-simplify]: Simplify 0 into 0 5.435 * [backup-simplify]: Simplify 1 into 1 5.435 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.435 * [backup-simplify]: Simplify (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) into (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) 5.435 * [backup-simplify]: Simplify (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) into (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) 5.436 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)))) into 0 5.436 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into 0 5.436 * [taylor]: Taking taylor expansion of 0 in x.re 5.436 * [backup-simplify]: Simplify 0 into 0 5.436 * [taylor]: Taking taylor expansion of 0 in y.re 5.436 * [backup-simplify]: Simplify 0 into 0 5.436 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)))) into 0 5.437 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))) into 0 5.437 * [taylor]: Taking taylor expansion of 0 in y.re 5.437 * [backup-simplify]: Simplify 0 into 0 5.437 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ -1 x.im) (/ -1 x.re)) (/ 0 1)))) into 0 5.438 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (atan2 (/ -1 x.im) (/ -1 x.re)))) into 0 5.438 * [backup-simplify]: Simplify 0 into 0 5.438 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.439 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) into 0 5.439 * [taylor]: Taking taylor expansion of 0 in x.re 5.439 * [backup-simplify]: Simplify 0 into 0 5.439 * [taylor]: Taking taylor expansion of 0 in y.re 5.439 * [backup-simplify]: Simplify 0 into 0 5.439 * [taylor]: Taking taylor expansion of 0 in y.re 5.439 * [backup-simplify]: Simplify 0 into 0 5.439 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.440 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re)))) into 0 5.440 * [taylor]: Taking taylor expansion of 0 in y.re 5.440 * [backup-simplify]: Simplify 0 into 0 5.440 * [backup-simplify]: Simplify 0 into 0 5.440 * [backup-simplify]: Simplify 0 into 0 5.441 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ -1 x.im) (/ -1 x.re)) (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.441 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (atan2 (/ -1 x.im) (/ -1 x.re))))) into 0 5.441 * [backup-simplify]: Simplify 0 into 0 5.442 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.443 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))))) into 0 5.443 * [taylor]: Taking taylor expansion of 0 in x.re 5.443 * [backup-simplify]: Simplify 0 into 0 5.443 * [taylor]: Taking taylor expansion of 0 in y.re 5.443 * [backup-simplify]: Simplify 0 into 0 5.443 * [taylor]: Taking taylor expansion of 0 in y.re 5.443 * [backup-simplify]: Simplify 0 into 0 5.443 * [taylor]: Taking taylor expansion of 0 in y.re 5.443 * [backup-simplify]: Simplify 0 into 0 5.443 * [backup-simplify]: Simplify (- (/ 0 y.re) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re) (/ 0 y.re)) (* 0 (/ 0 y.re)) (* 0 (/ 0 y.re)))) into 0 5.444 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.re))))) into 0 5.444 * [taylor]: Taking taylor expansion of 0 in y.re 5.444 * [backup-simplify]: Simplify 0 into 0 5.444 * [backup-simplify]: Simplify 0 into 0 5.444 * [backup-simplify]: Simplify 0 into 0 5.444 * [backup-simplify]: Simplify (* (* -1 (atan2 (/ -1 (/ 1 (- x.im))) (/ -1 (/ 1 (- x.re))))) (* (/ 1 (/ 1 (- y.re))) (* 1 1))) into (* (atan2 x.im x.re) y.re) 5.444 * * * * [progress]: [ 4 / 4 ] generating series at (2 2 1 1) 5.445 * [backup-simplify]: Simplify (* (atan2 x.im x.re) y.im) into (* y.im (atan2 x.im x.re)) 5.445 * [approximate]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in (x.im x.re y.im) around 0 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in y.im 5.445 * [taylor]: Taking taylor expansion of y.im in y.im 5.445 * [backup-simplify]: Simplify 0 into 0 5.445 * [backup-simplify]: Simplify 1 into 1 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.im 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in x.re 5.445 * [taylor]: Taking taylor expansion of y.im in x.re 5.445 * [backup-simplify]: Simplify y.im into y.im 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in x.im 5.445 * [taylor]: Taking taylor expansion of y.im in x.im 5.445 * [backup-simplify]: Simplify y.im into y.im 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in x.im 5.445 * [taylor]: Taking taylor expansion of y.im in x.im 5.445 * [backup-simplify]: Simplify y.im into y.im 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.im 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [backup-simplify]: Simplify (* y.im (atan2 x.im x.re)) into (* y.im (atan2 x.im x.re)) 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in x.re 5.445 * [taylor]: Taking taylor expansion of y.im in x.re 5.445 * [backup-simplify]: Simplify y.im into y.im 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in x.re 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [backup-simplify]: Simplify (* y.im (atan2 x.im x.re)) into (* y.im (atan2 x.im x.re)) 5.445 * [taylor]: Taking taylor expansion of (* y.im (atan2 x.im x.re)) in y.im 5.445 * [taylor]: Taking taylor expansion of y.im in y.im 5.445 * [backup-simplify]: Simplify 0 into 0 5.445 * [backup-simplify]: Simplify 1 into 1 5.445 * [taylor]: Taking taylor expansion of (atan2 x.im x.re) in y.im 5.445 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.445 * [backup-simplify]: Simplify (* 0 (atan2 x.im x.re)) into 0 5.445 * [backup-simplify]: Simplify 0 into 0 5.445 * [backup-simplify]: Simplify (+ (* y.im 0) (* 0 (atan2 x.im x.re))) into 0 5.445 * [taylor]: Taking taylor expansion of 0 in x.re 5.445 * [backup-simplify]: Simplify 0 into 0 5.445 * [taylor]: Taking taylor expansion of 0 in y.im 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [backup-simplify]: Simplify (+ (* y.im 0) (* 0 (atan2 x.im x.re))) into 0 5.446 * [taylor]: Taking taylor expansion of 0 in y.im 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [backup-simplify]: Simplify (+ (* 0 0) (* 1 (atan2 x.im x.re))) into (atan2 x.im x.re) 5.446 * [backup-simplify]: Simplify (atan2 x.im x.re) into (atan2 x.im x.re) 5.446 * [backup-simplify]: Simplify (+ (* y.im 0) (+ (* 0 0) (* 0 (atan2 x.im x.re)))) into 0 5.446 * [taylor]: Taking taylor expansion of 0 in x.re 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [taylor]: Taking taylor expansion of 0 in y.im 5.446 * [backup-simplify]: Simplify 0 into 0 5.446 * [backup-simplify]: Simplify 0 into 0 5.447 * [taylor]: Taking taylor expansion of 0 in y.im 5.447 * [backup-simplify]: Simplify 0 into 0 5.447 * [backup-simplify]: Simplify 0 into 0 5.447 * [backup-simplify]: Simplify (+ (* y.im 0) (+ (* 0 0) (* 0 (atan2 x.im x.re)))) into 0 5.447 * [taylor]: Taking taylor expansion of 0 in y.im 5.447 * [backup-simplify]: Simplify 0 into 0 5.447 * [backup-simplify]: Simplify 0 into 0 5.447 * [backup-simplify]: Simplify 0 into 0 5.447 * [backup-simplify]: Simplify 0 into 0 5.448 * [backup-simplify]: Simplify (+ (* 0 0) (+ (* 1 0) (* 0 (atan2 x.im x.re)))) into 0 5.448 * [backup-simplify]: Simplify 0 into 0 5.448 * [backup-simplify]: Simplify (* (atan2 x.im x.re) (* y.im (* 1 1))) into (* y.im (atan2 x.im x.re)) 5.448 * [backup-simplify]: Simplify (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 1 y.im)) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) 5.448 * [approximate]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in (x.im x.re y.im) around 0 5.448 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in y.im 5.448 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.im 5.448 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.448 * [taylor]: Taking taylor expansion of y.im in y.im 5.448 * [backup-simplify]: Simplify 0 into 0 5.448 * [backup-simplify]: Simplify 1 into 1 5.448 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.448 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in x.re 5.448 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 5.448 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.448 * [taylor]: Taking taylor expansion of y.im in x.re 5.448 * [backup-simplify]: Simplify y.im into y.im 5.448 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) 5.448 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in x.im 5.448 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 5.449 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [taylor]: Taking taylor expansion of y.im in x.im 5.449 * [backup-simplify]: Simplify y.im into y.im 5.449 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) 5.449 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in x.im 5.449 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.im 5.449 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [taylor]: Taking taylor expansion of y.im in x.im 5.449 * [backup-simplify]: Simplify y.im into y.im 5.449 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) 5.449 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in x.re 5.449 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in x.re 5.449 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [taylor]: Taking taylor expansion of y.im in x.re 5.449 * [backup-simplify]: Simplify y.im into y.im 5.449 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) into (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) 5.449 * [taylor]: Taking taylor expansion of (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) in y.im 5.449 * [taylor]: Taking taylor expansion of (atan2 (/ 1 x.im) (/ 1 x.re)) in y.im 5.449 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [taylor]: Taking taylor expansion of y.im in y.im 5.449 * [backup-simplify]: Simplify 0 into 0 5.449 * [backup-simplify]: Simplify 1 into 1 5.449 * [backup-simplify]: Simplify (/ (atan2 (/ 1 x.im) (/ 1 x.re)) 1) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [backup-simplify]: Simplify (atan2 (/ 1 x.im) (/ 1 x.re)) into (atan2 (/ 1 x.im) (/ 1 x.re)) 5.449 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)))) into 0 5.449 * [taylor]: Taking taylor expansion of 0 in x.re 5.450 * [backup-simplify]: Simplify 0 into 0 5.450 * [taylor]: Taking taylor expansion of 0 in y.im 5.450 * [backup-simplify]: Simplify 0 into 0 5.450 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)))) into 0 5.450 * [taylor]: Taking taylor expansion of 0 in y.im 5.450 * [backup-simplify]: Simplify 0 into 0 5.450 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 0 1)))) into 0 5.450 * [backup-simplify]: Simplify 0 into 0 5.451 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.451 * [taylor]: Taking taylor expansion of 0 in x.re 5.451 * [backup-simplify]: Simplify 0 into 0 5.451 * [taylor]: Taking taylor expansion of 0 in y.im 5.451 * [backup-simplify]: Simplify 0 into 0 5.451 * [taylor]: Taking taylor expansion of 0 in y.im 5.451 * [backup-simplify]: Simplify 0 into 0 5.451 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.451 * [taylor]: Taking taylor expansion of 0 in y.im 5.451 * [backup-simplify]: Simplify 0 into 0 5.451 * [backup-simplify]: Simplify 0 into 0 5.451 * [backup-simplify]: Simplify 0 into 0 5.452 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ 1 x.im) (/ 1 x.re)) (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.452 * [backup-simplify]: Simplify 0 into 0 5.452 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.453 * [taylor]: Taking taylor expansion of 0 in x.re 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [taylor]: Taking taylor expansion of 0 in y.im 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [taylor]: Taking taylor expansion of 0 in y.im 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [taylor]: Taking taylor expansion of 0 in y.im 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ 1 x.im) (/ 1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.453 * [taylor]: Taking taylor expansion of 0 in y.im 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [backup-simplify]: Simplify 0 into 0 5.453 * [backup-simplify]: Simplify 0 into 0 5.454 * [backup-simplify]: Simplify (* (atan2 (/ 1 (/ 1 x.im)) (/ 1 (/ 1 x.re))) (* (/ 1 (/ 1 y.im)) (* 1 1))) into (* y.im (atan2 x.im x.re)) 5.454 * [backup-simplify]: Simplify (* (atan2 (/ 1 (- x.im)) (/ 1 (- x.re))) (/ 1 (- y.im))) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) 5.454 * [approximate]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in (x.im x.re y.im) around 0 5.454 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in y.im 5.454 * [taylor]: Taking taylor expansion of -1 in y.im 5.454 * [backup-simplify]: Simplify -1 into -1 5.454 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in y.im 5.454 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.im 5.454 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.454 * [taylor]: Taking taylor expansion of y.im in y.im 5.454 * [backup-simplify]: Simplify 0 into 0 5.454 * [backup-simplify]: Simplify 1 into 1 5.454 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.454 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in x.re 5.454 * [taylor]: Taking taylor expansion of -1 in x.re 5.454 * [backup-simplify]: Simplify -1 into -1 5.454 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in x.re 5.454 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 5.454 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.454 * [taylor]: Taking taylor expansion of y.im in x.re 5.454 * [backup-simplify]: Simplify y.im into y.im 5.455 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) 5.455 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in x.im 5.455 * [taylor]: Taking taylor expansion of -1 in x.im 5.455 * [backup-simplify]: Simplify -1 into -1 5.455 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in x.im 5.455 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 5.455 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.455 * [taylor]: Taking taylor expansion of y.im in x.im 5.455 * [backup-simplify]: Simplify y.im into y.im 5.455 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) 5.455 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in x.im 5.455 * [taylor]: Taking taylor expansion of -1 in x.im 5.455 * [backup-simplify]: Simplify -1 into -1 5.455 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in x.im 5.455 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.im 5.455 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.455 * [taylor]: Taking taylor expansion of y.im in x.im 5.455 * [backup-simplify]: Simplify y.im into y.im 5.455 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) 5.455 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) 5.456 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in x.re 5.456 * [taylor]: Taking taylor expansion of -1 in x.re 5.456 * [backup-simplify]: Simplify -1 into -1 5.456 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in x.re 5.456 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in x.re 5.456 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.456 * [taylor]: Taking taylor expansion of y.im in x.re 5.456 * [backup-simplify]: Simplify y.im into y.im 5.456 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) into (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) 5.456 * [backup-simplify]: Simplify (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) into (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) 5.456 * [taylor]: Taking taylor expansion of (* -1 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)) in y.im 5.456 * [taylor]: Taking taylor expansion of -1 in y.im 5.456 * [backup-simplify]: Simplify -1 into -1 5.456 * [taylor]: Taking taylor expansion of (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) in y.im 5.456 * [taylor]: Taking taylor expansion of (atan2 (/ -1 x.im) (/ -1 x.re)) in y.im 5.456 * [backup-simplify]: Simplify (atan2 (/ -1 x.im) (/ -1 x.re)) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.456 * [taylor]: Taking taylor expansion of y.im in y.im 5.456 * [backup-simplify]: Simplify 0 into 0 5.456 * [backup-simplify]: Simplify 1 into 1 5.456 * [backup-simplify]: Simplify (/ (atan2 (/ -1 x.im) (/ -1 x.re)) 1) into (atan2 (/ -1 x.im) (/ -1 x.re)) 5.456 * [backup-simplify]: Simplify (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) into (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) 5.457 * [backup-simplify]: Simplify (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) into (* -1 (atan2 (/ -1 x.im) (/ -1 x.re))) 5.457 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)))) into 0 5.458 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im))) into 0 5.458 * [taylor]: Taking taylor expansion of 0 in x.re 5.458 * [backup-simplify]: Simplify 0 into 0 5.458 * [taylor]: Taking taylor expansion of 0 in y.im 5.458 * [backup-simplify]: Simplify 0 into 0 5.458 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)))) into 0 5.458 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im))) into 0 5.458 * [taylor]: Taking taylor expansion of 0 in y.im 5.458 * [backup-simplify]: Simplify 0 into 0 5.460 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ -1 x.im) (/ -1 x.re)) (/ 0 1)))) into 0 5.460 * [backup-simplify]: Simplify (+ (* -1 0) (* 0 (atan2 (/ -1 x.im) (/ -1 x.re)))) into 0 5.460 * [backup-simplify]: Simplify 0 into 0 5.460 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.461 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)))) into 0 5.461 * [taylor]: Taking taylor expansion of 0 in x.re 5.461 * [backup-simplify]: Simplify 0 into 0 5.461 * [taylor]: Taking taylor expansion of 0 in y.im 5.461 * [backup-simplify]: Simplify 0 into 0 5.461 * [taylor]: Taking taylor expansion of 0 in y.im 5.462 * [backup-simplify]: Simplify 0 into 0 5.462 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.463 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im)))) into 0 5.463 * [taylor]: Taking taylor expansion of 0 in y.im 5.463 * [backup-simplify]: Simplify 0 into 0 5.463 * [backup-simplify]: Simplify 0 into 0 5.463 * [backup-simplify]: Simplify 0 into 0 5.464 * [backup-simplify]: Simplify (- (/ 0 1) (+ (* (atan2 (/ -1 x.im) (/ -1 x.re)) (/ 0 1)) (* 0 (/ 0 1)))) into 0 5.465 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (* 0 (atan2 (/ -1 x.im) (/ -1 x.re))))) into 0 5.465 * [backup-simplify]: Simplify 0 into 0 5.466 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.467 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im))))) into 0 5.467 * [taylor]: Taking taylor expansion of 0 in x.re 5.467 * [backup-simplify]: Simplify 0 into 0 5.467 * [taylor]: Taking taylor expansion of 0 in y.im 5.467 * [backup-simplify]: Simplify 0 into 0 5.467 * [taylor]: Taking taylor expansion of 0 in y.im 5.467 * [backup-simplify]: Simplify 0 into 0 5.467 * [taylor]: Taking taylor expansion of 0 in y.im 5.467 * [backup-simplify]: Simplify 0 into 0 5.467 * [backup-simplify]: Simplify (- (/ 0 y.im) (+ (* (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im) (/ 0 y.im)) (* 0 (/ 0 y.im)) (* 0 (/ 0 y.im)))) into 0 5.469 * [backup-simplify]: Simplify (+ (* -1 0) (+ (* 0 0) (+ (* 0 0) (* 0 (/ (atan2 (/ -1 x.im) (/ -1 x.re)) y.im))))) into 0 5.469 * [taylor]: Taking taylor expansion of 0 in y.im 5.469 * [backup-simplify]: Simplify 0 into 0 5.469 * [backup-simplify]: Simplify 0 into 0 5.469 * [backup-simplify]: Simplify 0 into 0 5.469 * [backup-simplify]: Simplify (* (* -1 (atan2 (/ -1 (/ 1 (- x.im))) (/ -1 (/ 1 (- x.re))))) (* (/ 1 (/ 1 (- y.im))) (* 1 1))) into (* y.im (atan2 x.im x.re)) 5.469 * * * [progress]: simplifying candidates 5.469 * * * * [progress]: [ 1 / 93 ] simplifiying candidate # 5.470 * * * * [progress]: [ 2 / 93 ] simplifiying candidate # 5.470 * * * * [progress]: [ 3 / 93 ] simplifiying candidate # 5.470 * [simplify]: Simplifying (* (cos (* y.im (log (hypot x.re x.im)))) (cos (* (atan2 x.im x.re) y.re))) 5.470 * * [simplify]: iters left: 6 (12 enodes) 5.475 * * [simplify]: iters left: 5 (39 enodes) 5.484 * * [simplify]: Extracting #0: cost 1 inf + 0 5.484 * * [simplify]: Extracting #1: cost 4 inf + 0 5.484 * * [simplify]: Extracting #2: cost 8 inf + 0 5.484 * * [simplify]: Extracting #3: cost 14 inf + 0 5.484 * * [simplify]: Extracting #4: cost 17 inf + 2 5.484 * * [simplify]: Extracting #5: cost 11 inf + 711 5.484 * * [simplify]: Extracting #6: cost 5 inf + 1676 5.485 * * [simplify]: Extracting #7: cost 1 inf + 2809 5.486 * * [simplify]: Extracting #8: cost 0 inf + 3318 5.486 * [simplify]: Simplified to (* (cos (* (atan2 x.im x.re) y.re)) (cos (* (log (hypot x.re x.im)) y.im))) 5.486 * [simplify]: Simplified (2 1 1) to (λ (x.re x.im y.re y.im) (/ (- (* (cos (* (atan2 x.im x.re) y.re)) (cos (* (log (hypot x.re x.im)) y.im))) (* (sin (* y.im (log (hypot x.re x.im)))) (sin (* (atan2 x.im x.re) y.re)))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 5.486 * * * * [progress]: [ 4 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 5 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 6 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 7 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 8 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 9 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 10 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 11 / 93 ] simplifiying candidate #real (real->posit16 (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im)))))))> 5.487 * * * * [progress]: [ 12 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 13 / 93 ] simplifiying candidate # 5.487 * * * * [progress]: [ 14 / 93 ] simplifiying candidate # 5.487 * [simplify]: Simplifying (* y.re (log (hypot x.re x.im))) 5.487 * * [simplify]: iters left: 4 (6 enodes) 5.490 * * [simplify]: iters left: 3 (19 enodes) 5.494 * * [simplify]: Extracting #0: cost 1 inf + 0 5.494 * * [simplify]: Extracting #1: cost 4 inf + 0 5.494 * * [simplify]: Extracting #2: cost 5 inf + 1 5.494 * * [simplify]: Extracting #3: cost 8 inf + 1 5.495 * * [simplify]: Extracting #4: cost 0 inf + 707 5.495 * [simplify]: Simplified to (* (log (hypot x.re x.im)) y.re) 5.495 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (pow (* (log (hypot x.re x.im)) y.re) 1))))) 5.495 * * * * [progress]: [ 15 / 93 ] simplifiying candidate # 5.495 * * * * [progress]: [ 16 / 93 ] simplifiying candidate # 5.495 * [simplify]: Simplifying (+ (log y.re) (log (log (hypot x.re x.im)))) 5.496 * * [simplify]: iters left: 5 (8 enodes) 5.498 * * [simplify]: iters left: 4 (25 enodes) 5.504 * * [simplify]: Extracting #0: cost 1 inf + 0 5.504 * * [simplify]: Extracting #1: cost 4 inf + 0 5.504 * * [simplify]: Extracting #2: cost 8 inf + 0 5.504 * * [simplify]: Extracting #3: cost 9 inf + 1 5.504 * * [simplify]: Extracting #4: cost 10 inf + 143 5.505 * * [simplify]: Extracting #5: cost 8 inf + 145 5.505 * * [simplify]: Extracting #6: cost 5 inf + 386 5.505 * * [simplify]: Extracting #7: cost 1 inf + 1215 5.505 * * [simplify]: Extracting #8: cost 0 inf + 1523 5.506 * [simplify]: Simplified to (+ (log y.re) (log (log (hypot x.re x.im)))) 5.506 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (exp (+ (log y.re) (log (log (hypot x.re x.im))))))))) 5.506 * * * * [progress]: [ 17 / 93 ] simplifiying candidate # 5.506 * * * * [progress]: [ 18 / 93 ] simplifiying candidate # 5.506 * * * * [progress]: [ 19 / 93 ] simplifiying candidate # 5.506 * [simplify]: Simplifying (* (* (* y.re y.re) y.re) (* (* (log (hypot x.re x.im)) (log (hypot x.re x.im))) (log (hypot x.re x.im)))) 5.506 * * [simplify]: iters left: 6 (10 enodes) 5.510 * * [simplify]: iters left: 5 (37 enodes) 5.519 * * [simplify]: iters left: 4 (66 enodes) 5.532 * * [simplify]: iters left: 3 (120 enodes) 5.570 * * [simplify]: iters left: 2 (195 enodes) 5.630 * * [simplify]: iters left: 1 (352 enodes) 5.736 * * [simplify]: Extracting #0: cost 1 inf + 0 5.736 * * [simplify]: Extracting #1: cost 50 inf + 0 5.737 * * [simplify]: Extracting #2: cost 147 inf + 43 5.738 * * [simplify]: Extracting #3: cost 151 inf + 1135 5.739 * * [simplify]: Extracting #4: cost 137 inf + 4014 5.743 * * [simplify]: Extracting #5: cost 67 inf + 32298 5.753 * * [simplify]: Extracting #6: cost 3 inf + 69813 5.762 * * [simplify]: Extracting #7: cost 0 inf + 71622 5.777 * [simplify]: Simplified to (* (* (* y.re (log (hypot x.re x.im))) (* y.re (log (hypot x.re x.im)))) (* y.re (log (hypot x.re x.im)))) 5.777 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (cbrt (* (* (* y.re (log (hypot x.re x.im))) (* y.re (log (hypot x.re x.im)))) (* y.re (log (hypot x.re x.im))))))))) 5.777 * * * * [progress]: [ 20 / 93 ] simplifiying candidate # 5.777 * * * * [progress]: [ 21 / 93 ] simplifiying candidate # 5.777 * * * * [progress]: [ 22 / 93 ] simplifiying candidate # 5.778 * * * * [progress]: [ 23 / 93 ] simplifiying candidate # 5.778 * * * * [progress]: [ 24 / 93 ] simplifiying candidate # 5.778 * [simplify]: Simplifying (* (sqrt y.re) (sqrt (log (hypot x.re x.im)))) 5.778 * * [simplify]: iters left: 5 (8 enodes) 5.781 * * [simplify]: iters left: 4 (25 enodes) 5.787 * * [simplify]: Extracting #0: cost 1 inf + 0 5.787 * * [simplify]: Extracting #1: cost 4 inf + 0 5.787 * * [simplify]: Extracting #2: cost 8 inf + 0 5.787 * * [simplify]: Extracting #3: cost 9 inf + 1 5.787 * * [simplify]: Extracting #4: cost 10 inf + 83 5.787 * * [simplify]: Extracting #5: cost 8 inf + 85 5.787 * * [simplify]: Extracting #6: cost 5 inf + 326 5.788 * * [simplify]: Extracting #7: cost 1 inf + 1035 5.788 * * [simplify]: Extracting #8: cost 0 inf + 1283 5.788 * [simplify]: Simplified to (* (sqrt (log (hypot x.re x.im))) (sqrt y.re)) 5.788 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* (sqrt (log (hypot x.re x.im))) (sqrt y.re)) (* (sqrt y.re) (sqrt (log (hypot x.re x.im))))))))) 5.789 * [simplify]: Simplifying (* (sqrt y.re) (sqrt (log (hypot x.re x.im)))) 5.789 * * [simplify]: iters left: 5 (8 enodes) 5.792 * * [simplify]: iters left: 4 (25 enodes) 5.797 * * [simplify]: Extracting #0: cost 1 inf + 0 5.797 * * [simplify]: Extracting #1: cost 4 inf + 0 5.797 * * [simplify]: Extracting #2: cost 8 inf + 0 5.797 * * [simplify]: Extracting #3: cost 9 inf + 1 5.797 * * [simplify]: Extracting #4: cost 10 inf + 83 5.797 * * [simplify]: Extracting #5: cost 8 inf + 85 5.797 * * [simplify]: Extracting #6: cost 5 inf + 326 5.797 * * [simplify]: Extracting #7: cost 1 inf + 1035 5.797 * * [simplify]: Extracting #8: cost 0 inf + 1283 5.798 * [simplify]: Simplified to (* (sqrt (log (hypot x.re x.im))) (sqrt y.re)) 5.798 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* (sqrt y.re) (sqrt (log (hypot x.re x.im)))) (* (sqrt (log (hypot x.re x.im))) (sqrt y.re))))))) 5.798 * * * * [progress]: [ 25 / 93 ] simplifiying candidate # 5.798 * [simplify]: Simplifying (* y.re (log (cbrt (hypot x.re x.im)))) 5.798 * * [simplify]: iters left: 5 (7 enodes) 5.799 * * [simplify]: iters left: 4 (22 enodes) 5.802 * * [simplify]: Extracting #0: cost 1 inf + 0 5.802 * * [simplify]: Extracting #1: cost 4 inf + 0 5.802 * * [simplify]: Extracting #2: cost 5 inf + 1 5.803 * * [simplify]: Extracting #3: cost 7 inf + 1 5.803 * * [simplify]: Extracting #4: cost 10 inf + 1 5.803 * * [simplify]: Extracting #5: cost 8 inf + 3 5.803 * * [simplify]: Extracting #6: cost 1 inf + 1053 5.803 * * [simplify]: Extracting #7: cost 0 inf + 1301 5.803 * [simplify]: Simplified to (* (log (cbrt (hypot x.re x.im))) y.re) 5.803 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* y.re (log (* (cbrt (hypot x.re x.im)) (cbrt (hypot x.re x.im))))) (* (log (cbrt (hypot x.re x.im))) y.re)))))) 5.803 * * * * [progress]: [ 26 / 93 ] simplifiying candidate # 5.803 * [simplify]: Simplifying (* y.re (log (sqrt (hypot x.re x.im)))) 5.803 * * [simplify]: iters left: 5 (7 enodes) 5.805 * * [simplify]: iters left: 4 (22 enodes) 5.808 * * [simplify]: Extracting #0: cost 1 inf + 0 5.808 * * [simplify]: Extracting #1: cost 4 inf + 0 5.808 * * [simplify]: Extracting #2: cost 5 inf + 1 5.808 * * [simplify]: Extracting #3: cost 7 inf + 1 5.808 * * [simplify]: Extracting #4: cost 10 inf + 1 5.808 * * [simplify]: Extracting #5: cost 8 inf + 3 5.808 * * [simplify]: Extracting #6: cost 1 inf + 853 5.808 * * [simplify]: Extracting #7: cost 0 inf + 1061 5.809 * [simplify]: Simplified to (* (log (sqrt (hypot x.re x.im))) y.re) 5.809 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* y.re (log (sqrt (hypot x.re x.im)))) (* (log (sqrt (hypot x.re x.im))) y.re)))))) 5.809 * * * * [progress]: [ 27 / 93 ] simplifiying candidate # 5.809 * [simplify]: Simplifying (* y.re (log (hypot x.re x.im))) 5.809 * * [simplify]: iters left: 4 (6 enodes) 5.810 * * [simplify]: iters left: 3 (19 enodes) 5.813 * * [simplify]: Extracting #0: cost 1 inf + 0 5.813 * * [simplify]: Extracting #1: cost 4 inf + 0 5.813 * * [simplify]: Extracting #2: cost 5 inf + 1 5.813 * * [simplify]: Extracting #3: cost 8 inf + 1 5.813 * * [simplify]: Extracting #4: cost 0 inf + 707 5.813 * [simplify]: Simplified to (* (log (hypot x.re x.im)) y.re) 5.813 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* y.re (log 1)) (* (log (hypot x.re x.im)) y.re)))))) 5.813 * * * * [progress]: [ 28 / 93 ] simplifiying candidate # 5.814 * [simplify]: Simplifying (* (log (cbrt (hypot x.re x.im))) y.re) 5.814 * * [simplify]: iters left: 5 (7 enodes) 5.815 * * [simplify]: iters left: 4 (22 enodes) 5.818 * * [simplify]: Extracting #0: cost 1 inf + 0 5.818 * * [simplify]: Extracting #1: cost 4 inf + 0 5.818 * * [simplify]: Extracting #2: cost 5 inf + 1 5.818 * * [simplify]: Extracting #3: cost 7 inf + 1 5.818 * * [simplify]: Extracting #4: cost 10 inf + 1 5.818 * * [simplify]: Extracting #5: cost 8 inf + 3 5.818 * * [simplify]: Extracting #6: cost 1 inf + 1053 5.818 * * [simplify]: Extracting #7: cost 0 inf + 1301 5.819 * [simplify]: Simplified to (* (log (cbrt (hypot x.re x.im))) y.re) 5.819 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* (log (* (cbrt (hypot x.re x.im)) (cbrt (hypot x.re x.im)))) y.re) (* (log (cbrt (hypot x.re x.im))) y.re)))))) 5.819 * * * * [progress]: [ 29 / 93 ] simplifiying candidate # 5.819 * [simplify]: Simplifying (* (log (sqrt (hypot x.re x.im))) y.re) 5.819 * * [simplify]: iters left: 5 (7 enodes) 5.822 * * [simplify]: iters left: 4 (22 enodes) 5.828 * * [simplify]: Extracting #0: cost 1 inf + 0 5.828 * * [simplify]: Extracting #1: cost 4 inf + 0 5.828 * * [simplify]: Extracting #2: cost 5 inf + 1 5.828 * * [simplify]: Extracting #3: cost 7 inf + 1 5.828 * * [simplify]: Extracting #4: cost 10 inf + 1 5.828 * * [simplify]: Extracting #5: cost 8 inf + 3 5.829 * * [simplify]: Extracting #6: cost 1 inf + 853 5.829 * * [simplify]: Extracting #7: cost 0 inf + 1061 5.829 * [simplify]: Simplified to (* (log (sqrt (hypot x.re x.im))) y.re) 5.829 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* (log (sqrt (hypot x.re x.im))) y.re) (* (log (sqrt (hypot x.re x.im))) y.re)))))) 5.830 * * * * [progress]: [ 30 / 93 ] simplifiying candidate # 5.830 * [simplify]: Simplifying (* (log (hypot x.re x.im)) y.re) 5.830 * * [simplify]: iters left: 4 (6 enodes) 5.832 * * [simplify]: iters left: 3 (19 enodes) 5.837 * * [simplify]: Extracting #0: cost 1 inf + 0 5.837 * * [simplify]: Extracting #1: cost 4 inf + 0 5.837 * * [simplify]: Extracting #2: cost 5 inf + 1 5.838 * * [simplify]: Extracting #3: cost 8 inf + 1 5.838 * * [simplify]: Extracting #4: cost 6 inf + 3 5.838 * * [simplify]: Extracting #5: cost 0 inf + 707 5.838 * [simplify]: Simplified to (* (log (hypot x.re x.im)) y.re) 5.838 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (+ (* (log 1) y.re) (* (log (hypot x.re x.im)) y.re)))))) 5.838 * * * * [progress]: [ 31 / 93 ] simplifiying candidate # 5.839 * [simplify]: Simplifying (log (hypot x.re x.im)) 5.839 * * [simplify]: iters left: 2 (4 enodes) 5.840 * * [simplify]: iters left: 1 (12 enodes) 5.844 * * [simplify]: Extracting #0: cost 1 inf + 0 5.844 * * [simplify]: Extracting #1: cost 3 inf + 0 5.844 * * [simplify]: Extracting #2: cost 6 inf + 0 5.844 * * [simplify]: Extracting #3: cost 4 inf + 2 5.844 * * [simplify]: Extracting #4: cost 0 inf + 370 5.844 * [simplify]: Simplified to (log (hypot x.re x.im)) 5.844 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* y.re 1) (log (hypot x.re x.im))))))) 5.844 * * * * [progress]: [ 32 / 93 ] simplifiying candidate # 5.844 * [simplify]: Simplifying (cbrt (log (hypot x.re x.im))) 5.844 * * [simplify]: iters left: 3 (5 enodes) 5.846 * * [simplify]: iters left: 2 (15 enodes) 5.850 * * [simplify]: Extracting #0: cost 1 inf + 0 5.850 * * [simplify]: Extracting #1: cost 3 inf + 0 5.850 * * [simplify]: Extracting #2: cost 5 inf + 0 5.850 * * [simplify]: Extracting #3: cost 8 inf + 0 5.850 * * [simplify]: Extracting #4: cost 6 inf + 2 5.851 * * [simplify]: Extracting #5: cost 0 inf + 784 5.851 * [simplify]: Simplified to (cbrt (log (hypot x.re x.im))) 5.851 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* y.re (* (cbrt (log (hypot x.re x.im))) (cbrt (log (hypot x.re x.im))))) (cbrt (log (hypot x.re x.im)))))))) 5.851 * * * * [progress]: [ 33 / 93 ] simplifiying candidate # 5.851 * [simplify]: Simplifying (sqrt (log (hypot x.re x.im))) 5.851 * * [simplify]: iters left: 3 (5 enodes) 5.853 * * [simplify]: iters left: 2 (15 enodes) 5.857 * * [simplify]: Extracting #0: cost 1 inf + 0 5.857 * * [simplify]: Extracting #1: cost 3 inf + 0 5.857 * * [simplify]: Extracting #2: cost 5 inf + 0 5.857 * * [simplify]: Extracting #3: cost 8 inf + 0 5.857 * * [simplify]: Extracting #4: cost 6 inf + 2 5.858 * * [simplify]: Extracting #5: cost 0 inf + 704 5.858 * [simplify]: Simplified to (sqrt (log (hypot x.re x.im))) 5.858 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* y.re (sqrt (log (hypot x.re x.im)))) (sqrt (log (hypot x.re x.im)))))))) 5.858 * * * * [progress]: [ 34 / 93 ] simplifiying candidate # 5.858 * [simplify]: Simplifying (log (hypot x.re x.im)) 5.858 * * [simplify]: iters left: 2 (4 enodes) 5.860 * * [simplify]: iters left: 1 (12 enodes) 5.863 * * [simplify]: Extracting #0: cost 1 inf + 0 5.863 * * [simplify]: Extracting #1: cost 3 inf + 0 5.863 * * [simplify]: Extracting #2: cost 6 inf + 0 5.863 * * [simplify]: Extracting #3: cost 4 inf + 2 5.863 * * [simplify]: Extracting #4: cost 0 inf + 370 5.864 * [simplify]: Simplified to (log (hypot x.re x.im)) 5.864 * [simplify]: Simplified (2 2 1 2 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* y.re 1) (log (hypot x.re x.im))))))) 5.864 * * * * [progress]: [ 35 / 93 ] simplifiying candidate # 5.864 * [simplify]: Simplifying (* (cbrt y.re) (cbrt y.re)) 5.864 * * [simplify]: iters left: 3 (3 enodes) 5.865 * * [simplify]: iters left: 2 (9 enodes) 5.868 * * [simplify]: Extracting #0: cost 1 inf + 0 5.868 * * [simplify]: Extracting #1: cost 3 inf + 0 5.868 * * [simplify]: Extracting #2: cost 5 inf + 0 5.868 * * [simplify]: Extracting #3: cost 4 inf + 1 5.868 * * [simplify]: Extracting #4: cost 0 inf + 405 5.868 * [simplify]: Simplified to (* (cbrt y.re) (cbrt y.re)) 5.868 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (* (cbrt y.re) (cbrt y.re)) (* (cbrt y.re) (log (hypot x.re x.im)))))))) 5.869 * * * * [progress]: [ 36 / 93 ] simplifiying candidate # 5.869 * [simplify]: Simplifying (sqrt y.re) 5.869 * * [simplify]: iters left: 1 (2 enodes) 5.870 * * [simplify]: Extracting #0: cost 1 inf + 0 5.870 * * [simplify]: Extracting #1: cost 3 inf + 0 5.870 * * [simplify]: Extracting #2: cost 2 inf + 1 5.870 * * [simplify]: Extracting #3: cost 0 inf + 83 5.870 * [simplify]: Simplified to (sqrt y.re) 5.870 * [simplify]: Simplified (2 2 1 2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (sqrt y.re) (* (sqrt y.re) (log (hypot x.re x.im)))))))) 5.870 * * * * [progress]: [ 37 / 93 ] simplifiying candidate # 5.870 * * * * [progress]: [ 38 / 93 ] simplifiying candidate #real (real->posit16 (* y.re (log (hypot x.re x.im)))))))))> 5.870 * * * * [progress]: [ 39 / 93 ] simplifiying candidate # 5.870 * * * * [progress]: [ 40 / 93 ] simplifiying candidate # 5.870 * * * * [progress]: [ 41 / 93 ] simplifiying candidate # 5.870 * * * * [progress]: [ 42 / 93 ] simplifiying candidate # 5.871 * [simplify]: Simplifying (* (atan2 x.im x.re) y.re) 5.871 * * [simplify]: iters left: 3 (5 enodes) 5.873 * * [simplify]: iters left: 2 (16 enodes) 5.877 * * [simplify]: Extracting #0: cost 1 inf + 0 5.877 * * [simplify]: Extracting #1: cost 4 inf + 0 5.877 * * [simplify]: Extracting #2: cost 6 inf + 1 5.877 * * [simplify]: Extracting #3: cost 4 inf + 3 5.877 * * [simplify]: Extracting #4: cost 0 inf + 653 5.877 * [simplify]: Simplified to (* (atan2 x.im x.re) y.re) 5.877 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (pow (* (atan2 x.im x.re) y.re) 1))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 5.878 * * * * [progress]: [ 43 / 93 ] simplifiying candidate # 5.878 * * * * [progress]: [ 44 / 93 ] simplifiying candidate # 5.878 * [simplify]: Simplifying (+ (log (atan2 x.im x.re)) (log y.re)) 5.878 * * [simplify]: iters left: 4 (7 enodes) 5.881 * * [simplify]: iters left: 3 (22 enodes) 5.887 * * [simplify]: Extracting #0: cost 1 inf + 0 5.887 * * [simplify]: Extracting #1: cost 4 inf + 0 5.887 * * [simplify]: Extracting #2: cost 8 inf + 0 5.887 * * [simplify]: Extracting #3: cost 8 inf + 143 5.887 * * [simplify]: Extracting #4: cost 6 inf + 145 5.887 * * [simplify]: Extracting #5: cost 1 inf + 1176 5.887 * * [simplify]: Extracting #6: cost 0 inf + 1499 5.888 * [simplify]: Simplified to (+ (log (atan2 x.im x.re)) (log y.re)) 5.888 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (exp (+ (log (atan2 x.im x.re)) (log y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 5.888 * * * * [progress]: [ 45 / 93 ] simplifiying candidate # 5.888 * * * * [progress]: [ 46 / 93 ] simplifiying candidate # 5.888 * * * * [progress]: [ 47 / 93 ] simplifiying candidate # 5.888 * [simplify]: Simplifying (* (* (* (atan2 x.im x.re) (atan2 x.im x.re)) (atan2 x.im x.re)) (* (* y.re y.re) y.re)) 5.889 * * [simplify]: iters left: 6 (9 enodes) 5.894 * * [simplify]: iters left: 5 (34 enodes) 5.899 * * [simplify]: iters left: 4 (63 enodes) 5.911 * * [simplify]: iters left: 3 (121 enodes) 5.935 * * [simplify]: iters left: 2 (194 enodes) 5.992 * * [simplify]: iters left: 1 (354 enodes) 6.108 * * [simplify]: Extracting #0: cost 1 inf + 0 6.108 * * [simplify]: Extracting #1: cost 49 inf + 0 6.109 * * [simplify]: Extracting #2: cost 148 inf + 124 6.111 * * [simplify]: Extracting #3: cost 141 inf + 3257 6.116 * * [simplify]: Extracting #4: cost 98 inf + 20048 6.132 * * [simplify]: Extracting #5: cost 18 inf + 65359 6.145 * * [simplify]: Extracting #6: cost 0 inf + 76122 6.158 * [simplify]: Simplified to (* (* (* (atan2 x.im x.re) y.re) (* (atan2 x.im x.re) y.re)) (* (atan2 x.im x.re) y.re)) 6.158 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (cbrt (* (* (* (atan2 x.im x.re) y.re) (* (atan2 x.im x.re) y.re)) (* (atan2 x.im x.re) y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.159 * * * * [progress]: [ 48 / 93 ] simplifiying candidate # 6.159 * * * * [progress]: [ 49 / 93 ] simplifiying candidate # 6.159 * * * * [progress]: [ 50 / 93 ] simplifiying candidate # 6.159 * * * * [progress]: [ 51 / 93 ] simplifiying candidate # 6.159 * * * * [progress]: [ 52 / 93 ] simplifiying candidate # 6.159 * [simplify]: Simplifying (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) 6.159 * * [simplify]: iters left: 4 (7 enodes) 6.162 * * [simplify]: iters left: 3 (22 enodes) 6.168 * * [simplify]: Extracting #0: cost 1 inf + 0 6.168 * * [simplify]: Extracting #1: cost 4 inf + 0 6.168 * * [simplify]: Extracting #2: cost 8 inf + 0 6.169 * * [simplify]: Extracting #3: cost 8 inf + 83 6.169 * * [simplify]: Extracting #4: cost 6 inf + 85 6.169 * * [simplify]: Extracting #5: cost 1 inf + 996 6.169 * * [simplify]: Extracting #6: cost 0 inf + 1259 6.169 * [simplify]: Simplified to (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) 6.169 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) (* (sqrt (atan2 x.im x.re)) (sqrt y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.170 * [simplify]: Simplifying (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) 6.170 * * [simplify]: iters left: 4 (7 enodes) 6.173 * * [simplify]: iters left: 3 (22 enodes) 6.178 * * [simplify]: Extracting #0: cost 1 inf + 0 6.178 * * [simplify]: Extracting #1: cost 4 inf + 0 6.179 * * [simplify]: Extracting #2: cost 8 inf + 0 6.179 * * [simplify]: Extracting #3: cost 8 inf + 83 6.179 * * [simplify]: Extracting #4: cost 6 inf + 85 6.179 * * [simplify]: Extracting #5: cost 1 inf + 996 6.179 * * [simplify]: Extracting #6: cost 0 inf + 1259 6.180 * [simplify]: Simplified to (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) 6.180 * [simplify]: Simplified (2 1 1 3 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (* (sqrt (atan2 x.im x.re)) (sqrt y.re)) (* (sqrt (atan2 x.im x.re)) (sqrt y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.180 * * * * [progress]: [ 53 / 93 ] simplifiying candidate # 6.180 * [simplify]: Simplifying (cbrt y.re) 6.180 * * [simplify]: iters left: 1 (2 enodes) 6.181 * * [simplify]: Extracting #0: cost 1 inf + 0 6.181 * * [simplify]: Extracting #1: cost 3 inf + 0 6.181 * * [simplify]: Extracting #2: cost 2 inf + 1 6.181 * * [simplify]: Extracting #3: cost 0 inf + 163 6.181 * [simplify]: Simplified to (cbrt y.re) 6.181 * [simplify]: Simplified (2 1 1 3 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (* (atan2 x.im x.re) (* (cbrt y.re) (cbrt y.re))) (cbrt y.re)))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.181 * * * * [progress]: [ 54 / 93 ] simplifiying candidate # 6.182 * [simplify]: Simplifying (sqrt y.re) 6.182 * * [simplify]: iters left: 1 (2 enodes) 6.183 * * [simplify]: Extracting #0: cost 1 inf + 0 6.183 * * [simplify]: Extracting #1: cost 3 inf + 0 6.183 * * [simplify]: Extracting #2: cost 2 inf + 1 6.183 * * [simplify]: Extracting #3: cost 0 inf + 83 6.183 * [simplify]: Simplified to (sqrt y.re) 6.183 * [simplify]: Simplified (2 1 1 3 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (* (atan2 x.im x.re) (sqrt y.re)) (sqrt y.re)))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.183 * * * * [progress]: [ 55 / 93 ] simplifiying candidate # 6.183 * * * * [progress]: [ 56 / 93 ] simplifiying candidate # 6.183 * [simplify]: Simplifying (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) 6.184 * * [simplify]: iters left: 4 (5 enodes) 6.186 * * [simplify]: iters left: 3 (15 enodes) 6.190 * * [simplify]: Extracting #0: cost 1 inf + 0 6.190 * * [simplify]: Extracting #1: cost 3 inf + 0 6.190 * * [simplify]: Extracting #2: cost 5 inf + 0 6.190 * * [simplify]: Extracting #3: cost 8 inf + 0 6.190 * * [simplify]: Extracting #4: cost 6 inf + 2 6.190 * * [simplify]: Extracting #5: cost 0 inf + 1254 6.190 * [simplify]: Simplified to (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) 6.190 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) (* (cbrt (atan2 x.im x.re)) y.re)))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.190 * * * * [progress]: [ 57 / 93 ] simplifiying candidate # 6.191 * [simplify]: Simplifying (sqrt (atan2 x.im x.re)) 6.191 * * [simplify]: iters left: 2 (4 enodes) 6.192 * * [simplify]: iters left: 1 (12 enodes) 6.195 * * [simplify]: Extracting #0: cost 1 inf + 0 6.195 * * [simplify]: Extracting #1: cost 3 inf + 0 6.195 * * [simplify]: Extracting #2: cost 6 inf + 0 6.195 * * [simplify]: Extracting #3: cost 4 inf + 2 6.196 * * [simplify]: Extracting #4: cost 0 inf + 650 6.196 * [simplify]: Simplified to (sqrt (atan2 x.im x.re)) 6.196 * [simplify]: Simplified (2 1 1 3 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (sqrt (atan2 x.im x.re)) (* (sqrt (atan2 x.im x.re)) y.re)))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.196 * * * * [progress]: [ 58 / 93 ] simplifiying candidate # 6.196 * * * * [progress]: [ 59 / 93 ] simplifiying candidate #real (real->posit16 (* (atan2 x.im x.re) y.re))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im)))))))> 6.196 * * * * [progress]: [ 60 / 93 ] simplifiying candidate # 6.196 * * * * [progress]: [ 61 / 93 ] simplifiying candidate # 6.196 * * * * [progress]: [ 62 / 93 ] simplifiying candidate # 6.196 * * * * [progress]: [ 63 / 93 ] simplifiying candidate # 6.197 * [simplify]: Simplifying (* (atan2 x.im x.re) y.im) 6.197 * * [simplify]: iters left: 3 (5 enodes) 6.199 * * [simplify]: iters left: 2 (16 enodes) 6.203 * * [simplify]: Extracting #0: cost 1 inf + 0 6.203 * * [simplify]: Extracting #1: cost 4 inf + 0 6.203 * * [simplify]: Extracting #2: cost 6 inf + 1 6.203 * * [simplify]: Extracting #3: cost 4 inf + 3 6.203 * * [simplify]: Extracting #4: cost 0 inf + 653 6.203 * [simplify]: Simplified to (* (atan2 x.im x.re) y.im) 6.203 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (pow (* (atan2 x.im x.re) y.im) 1) (* y.re (log (hypot x.re x.im))))))) 6.203 * * * * [progress]: [ 64 / 93 ] simplifiying candidate # 6.203 * * * * [progress]: [ 65 / 93 ] simplifiying candidate # 6.204 * [simplify]: Simplifying (+ (log (atan2 x.im x.re)) (log y.im)) 6.204 * * [simplify]: iters left: 4 (7 enodes) 6.207 * * [simplify]: iters left: 3 (22 enodes) 6.213 * * [simplify]: Extracting #0: cost 1 inf + 0 6.213 * * [simplify]: Extracting #1: cost 4 inf + 0 6.213 * * [simplify]: Extracting #2: cost 8 inf + 0 6.213 * * [simplify]: Extracting #3: cost 8 inf + 143 6.213 * * [simplify]: Extracting #4: cost 6 inf + 145 6.213 * * [simplify]: Extracting #5: cost 1 inf + 1176 6.213 * * [simplify]: Extracting #6: cost 0 inf + 1499 6.214 * [simplify]: Simplified to (+ (log (atan2 x.im x.re)) (log y.im)) 6.214 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (exp (+ (log (atan2 x.im x.re)) (log y.im))) (* y.re (log (hypot x.re x.im))))))) 6.214 * * * * [progress]: [ 66 / 93 ] simplifiying candidate # 6.214 * * * * [progress]: [ 67 / 93 ] simplifiying candidate # 6.214 * * * * [progress]: [ 68 / 93 ] simplifiying candidate # 6.214 * [simplify]: Simplifying (* (* (* (atan2 x.im x.re) (atan2 x.im x.re)) (atan2 x.im x.re)) (* (* y.im y.im) y.im)) 6.215 * * [simplify]: iters left: 6 (9 enodes) 6.219 * * [simplify]: iters left: 5 (34 enodes) 6.227 * * [simplify]: iters left: 4 (63 enodes) 6.241 * * [simplify]: iters left: 3 (121 enodes) 6.266 * * [simplify]: iters left: 2 (194 enodes) 6.326 * * [simplify]: iters left: 1 (354 enodes) 6.509 * * [simplify]: Extracting #0: cost 1 inf + 0 6.509 * * [simplify]: Extracting #1: cost 49 inf + 0 6.510 * * [simplify]: Extracting #2: cost 148 inf + 124 6.512 * * [simplify]: Extracting #3: cost 141 inf + 3257 6.517 * * [simplify]: Extracting #4: cost 98 inf + 20048 6.528 * * [simplify]: Extracting #5: cost 18 inf + 65359 6.541 * * [simplify]: Extracting #6: cost 0 inf + 76122 6.555 * [simplify]: Simplified to (* (* (* (atan2 x.im x.re) y.im) (* (atan2 x.im x.re) y.im)) (* (atan2 x.im x.re) y.im)) 6.555 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (cbrt (* (* (* (atan2 x.im x.re) y.im) (* (atan2 x.im x.re) y.im)) (* (atan2 x.im x.re) y.im))) (* y.re (log (hypot x.re x.im))))))) 6.555 * * * * [progress]: [ 69 / 93 ] simplifiying candidate # 6.556 * * * * [progress]: [ 70 / 93 ] simplifiying candidate # 6.556 * * * * [progress]: [ 71 / 93 ] simplifiying candidate # 6.556 * * * * [progress]: [ 72 / 93 ] simplifiying candidate # 6.556 * * * * [progress]: [ 73 / 93 ] simplifiying candidate # 6.556 * [simplify]: Simplifying (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) 6.556 * * [simplify]: iters left: 4 (7 enodes) 6.559 * * [simplify]: iters left: 3 (22 enodes) 6.565 * * [simplify]: Extracting #0: cost 1 inf + 0 6.565 * * [simplify]: Extracting #1: cost 4 inf + 0 6.565 * * [simplify]: Extracting #2: cost 8 inf + 0 6.565 * * [simplify]: Extracting #3: cost 8 inf + 83 6.565 * * [simplify]: Extracting #4: cost 6 inf + 85 6.565 * * [simplify]: Extracting #5: cost 1 inf + 996 6.565 * * [simplify]: Extracting #6: cost 0 inf + 1259 6.566 * [simplify]: Simplified to (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) 6.566 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) (* (sqrt (atan2 x.im x.re)) (sqrt y.im))) (* y.re (log (hypot x.re x.im))))))) 6.566 * [simplify]: Simplifying (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) 6.566 * * [simplify]: iters left: 4 (7 enodes) 6.569 * * [simplify]: iters left: 3 (22 enodes) 6.578 * * [simplify]: Extracting #0: cost 1 inf + 0 6.578 * * [simplify]: Extracting #1: cost 4 inf + 0 6.578 * * [simplify]: Extracting #2: cost 8 inf + 0 6.578 * * [simplify]: Extracting #3: cost 8 inf + 83 6.578 * * [simplify]: Extracting #4: cost 6 inf + 85 6.578 * * [simplify]: Extracting #5: cost 1 inf + 996 6.579 * * [simplify]: Extracting #6: cost 0 inf + 1259 6.579 * [simplify]: Simplified to (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) 6.579 * [simplify]: Simplified (2 2 1 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (* (sqrt (atan2 x.im x.re)) (sqrt y.im)) (* (sqrt (atan2 x.im x.re)) (sqrt y.im))) (* y.re (log (hypot x.re x.im))))))) 6.579 * * * * [progress]: [ 74 / 93 ] simplifiying candidate # 6.580 * [simplify]: Simplifying (cbrt y.im) 6.580 * * [simplify]: iters left: 1 (2 enodes) 6.581 * * [simplify]: Extracting #0: cost 1 inf + 0 6.581 * * [simplify]: Extracting #1: cost 3 inf + 0 6.581 * * [simplify]: Extracting #2: cost 2 inf + 1 6.581 * * [simplify]: Extracting #3: cost 0 inf + 163 6.581 * [simplify]: Simplified to (cbrt y.im) 6.581 * [simplify]: Simplified (2 2 1 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (* (atan2 x.im x.re) (* (cbrt y.im) (cbrt y.im))) (cbrt y.im)) (* y.re (log (hypot x.re x.im))))))) 6.581 * * * * [progress]: [ 75 / 93 ] simplifiying candidate # 6.581 * [simplify]: Simplifying (sqrt y.im) 6.581 * * [simplify]: iters left: 1 (2 enodes) 6.582 * * [simplify]: Extracting #0: cost 1 inf + 0 6.582 * * [simplify]: Extracting #1: cost 3 inf + 0 6.582 * * [simplify]: Extracting #2: cost 2 inf + 1 6.582 * * [simplify]: Extracting #3: cost 0 inf + 83 6.582 * [simplify]: Simplified to (sqrt y.im) 6.582 * [simplify]: Simplified (2 2 1 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (* (atan2 x.im x.re) (sqrt y.im)) (sqrt y.im)) (* y.re (log (hypot x.re x.im))))))) 6.583 * * * * [progress]: [ 76 / 93 ] simplifiying candidate # 6.583 * * * * [progress]: [ 77 / 93 ] simplifiying candidate # 6.583 * [simplify]: Simplifying (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) 6.583 * * [simplify]: iters left: 4 (5 enodes) 6.585 * * [simplify]: iters left: 3 (15 enodes) 6.589 * * [simplify]: Extracting #0: cost 1 inf + 0 6.589 * * [simplify]: Extracting #1: cost 3 inf + 0 6.589 * * [simplify]: Extracting #2: cost 5 inf + 0 6.589 * * [simplify]: Extracting #3: cost 8 inf + 0 6.589 * * [simplify]: Extracting #4: cost 6 inf + 2 6.589 * * [simplify]: Extracting #5: cost 0 inf + 1254 6.590 * [simplify]: Simplified to (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) 6.590 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (* (cbrt (atan2 x.im x.re)) (cbrt (atan2 x.im x.re))) (* (cbrt (atan2 x.im x.re)) y.im)) (* y.re (log (hypot x.re x.im))))))) 6.590 * * * * [progress]: [ 78 / 93 ] simplifiying candidate # 6.590 * [simplify]: Simplifying (sqrt (atan2 x.im x.re)) 6.590 * * [simplify]: iters left: 2 (4 enodes) 6.592 * * [simplify]: iters left: 1 (12 enodes) 6.595 * * [simplify]: Extracting #0: cost 1 inf + 0 6.595 * * [simplify]: Extracting #1: cost 3 inf + 0 6.595 * * [simplify]: Extracting #2: cost 6 inf + 0 6.595 * * [simplify]: Extracting #3: cost 4 inf + 2 6.595 * * [simplify]: Extracting #4: cost 0 inf + 650 6.595 * [simplify]: Simplified to (sqrt (atan2 x.im x.re)) 6.595 * [simplify]: Simplified (2 2 1 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (sqrt (atan2 x.im x.re)) (* (sqrt (atan2 x.im x.re)) y.im)) (* y.re (log (hypot x.re x.im))))))) 6.596 * * * * [progress]: [ 79 / 93 ] simplifiying candidate # 6.596 * * * * [progress]: [ 80 / 93 ] simplifiying candidate #real (real->posit16 (* (atan2 x.im x.re) y.im))) (* y.re (log (hypot x.re x.im)))))))> 6.596 * * * * [progress]: [ 81 / 93 ] simplifiying candidate # 6.596 * * * * [progress]: [ 82 / 93 ] simplifiying candidate # 6.596 * [simplify]: Simplifying (- 1 (+ (* y.im (* (atan2 x.im x.re) (* y.re (log x.im)))) (* 1/2 (* (pow y.im 2) (pow (log x.im) 2))))) 6.597 * * [simplify]: iters left: 6 (18 enodes) 6.607 * * [simplify]: iters left: 5 (80 enodes) 6.634 * * [simplify]: iters left: 4 (154 enodes) 6.688 * * [simplify]: iters left: 3 (346 enodes) 6.864 * * [simplify]: Extracting #0: cost 1 inf + 0 6.864 * * [simplify]: Extracting #1: cost 53 inf + 0 6.866 * * [simplify]: Extracting #2: cost 174 inf + 46 6.869 * * [simplify]: Extracting #3: cost 164 inf + 4641 6.881 * * [simplify]: Extracting #4: cost 55 inf + 30632 6.898 * * [simplify]: Extracting #5: cost 0 inf + 43878 6.908 * * [simplify]: Extracting #6: cost 0 inf + 43558 6.922 * * [simplify]: Extracting #7: cost 0 inf + 43518 6.932 * * [simplify]: Extracting #8: cost 0 inf + 43468 6.952 * [simplify]: Simplified to (- 1 (fma (* (log x.im) y.im) (* (atan2 x.im x.re) y.re) (* 1/2 (* (* (log x.im) y.im) (* (log x.im) y.im))))) 6.952 * [simplify]: Simplified (2 1) to (λ (x.re x.im y.re y.im) (/ (- 1 (fma (* (log x.im) y.im) (* (atan2 x.im x.re) y.re) (* 1/2 (* (* (log x.im) y.im) (* (log x.im) y.im))))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 6.952 * * * * [progress]: [ 83 / 93 ] simplifiying candidate # 6.953 * [simplify]: Simplifying (cos (- (* (atan2 x.im x.re) y.re) (* y.im (log (/ 1 x.re))))) 6.953 * * [simplify]: iters left: 6 (12 enodes) 6.959 * * [simplify]: iters left: 5 (47 enodes) 6.972 * * [simplify]: iters left: 4 (65 enodes) 6.991 * * [simplify]: iters left: 3 (73 enodes) 7.008 * * [simplify]: iters left: 2 (75 enodes) 7.026 * * [simplify]: Extracting #0: cost 1 inf + 0 7.026 * * [simplify]: Extracting #1: cost 3 inf + 0 7.026 * * [simplify]: Extracting #2: cost 13 inf + 0 7.026 * * [simplify]: Extracting #3: cost 22 inf + 2 7.026 * * [simplify]: Extracting #4: cost 20 inf + 46 7.027 * * [simplify]: Extracting #5: cost 8 inf + 1266 7.027 * * [simplify]: Extracting #6: cost 1 inf + 2701 7.028 * * [simplify]: Extracting #7: cost 0 inf + 3070 7.029 * [simplify]: Simplified to (cos (fma (atan2 x.im x.re) y.re (* (log x.re) y.im))) 7.029 * [simplify]: Simplified (2 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma (atan2 x.im x.re) y.re (* (log x.re) y.im))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.029 * * * * [progress]: [ 84 / 93 ] simplifiying candidate # 7.030 * [simplify]: Simplifying (cos (- (* (atan2 x.im x.re) y.re) (* y.im (log (/ -1 x.re))))) 7.030 * * [simplify]: iters left: 6 (12 enodes) 7.036 * * [simplify]: iters left: 5 (44 enodes) 7.051 * * [simplify]: iters left: 4 (60 enodes) 7.068 * * [simplify]: iters left: 3 (86 enodes) 7.096 * * [simplify]: iters left: 2 (138 enodes) 7.135 * * [simplify]: iters left: 1 (173 enodes) 7.193 * * [simplify]: Extracting #0: cost 1 inf + 0 7.193 * * [simplify]: Extracting #1: cost 3 inf + 0 7.193 * * [simplify]: Extracting #2: cost 26 inf + 0 7.194 * * [simplify]: Extracting #3: cost 45 inf + 43 7.194 * * [simplify]: Extracting #4: cost 39 inf + 462 7.195 * * [simplify]: Extracting #5: cost 21 inf + 2871 7.197 * * [simplify]: Extracting #6: cost 4 inf + 7057 7.198 * * [simplify]: Extracting #7: cost 0 inf + 7887 7.200 * [simplify]: Simplified to (cos (- (* (atan2 x.im x.re) y.re) (* (log (/ -1 x.re)) y.im))) 7.200 * [simplify]: Simplified (2 1) to (λ (x.re x.im y.re y.im) (/ (cos (- (* (atan2 x.im x.re) y.re) (* (log (/ -1 x.re)) y.im))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.200 * * * * [progress]: [ 85 / 93 ] simplifiying candidate # 7.200 * [simplify]: Simplifying (* y.re (log x.im)) 7.200 * * [simplify]: iters left: 3 (4 enodes) 7.201 * * [simplify]: iters left: 2 (13 enodes) 7.203 * * [simplify]: Extracting #0: cost 1 inf + 0 7.203 * * [simplify]: Extracting #1: cost 4 inf + 0 7.203 * * [simplify]: Extracting #2: cost 5 inf + 1 7.203 * * [simplify]: Extracting #3: cost 4 inf + 2 7.203 * * [simplify]: Extracting #4: cost 0 inf + 368 7.203 * [simplify]: Simplified to (* y.re (log x.im)) 7.203 * [simplify]: Simplified (2 2 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log x.im)))))) 7.203 * * * * [progress]: [ 86 / 93 ] simplifiying candidate # 7.204 * [simplify]: Simplifying (* -1 (* y.re (log (/ 1 x.re)))) 7.204 * * [simplify]: iters left: 6 (8 enodes) 7.207 * * [simplify]: iters left: 5 (35 enodes) 7.213 * * [simplify]: iters left: 4 (58 enodes) 7.222 * * [simplify]: iters left: 3 (70 enodes) 7.243 * * [simplify]: iters left: 2 (88 enodes) 7.268 * * [simplify]: iters left: 1 (116 enodes) 7.289 * * [simplify]: Extracting #0: cost 1 inf + 0 7.289 * * [simplify]: Extracting #1: cost 11 inf + 0 7.290 * * [simplify]: Extracting #2: cost 16 inf + 44 7.290 * * [simplify]: Extracting #3: cost 10 inf + 364 7.290 * * [simplify]: Extracting #4: cost 2 inf + 1088 7.290 * * [simplify]: Extracting #5: cost 0 inf + 1311 7.291 * [simplify]: Simplified to (* y.re (log x.re)) 7.291 * [simplify]: Simplified (2 2 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log x.re)))))) 7.291 * * * * [progress]: [ 87 / 93 ] simplifiying candidate # 7.292 * [simplify]: Simplifying (* -1 (* y.re (log (/ -1 x.re)))) 7.292 * * [simplify]: iters left: 6 (7 enodes) 7.296 * * [simplify]: iters left: 5 (29 enodes) 7.306 * * [simplify]: iters left: 4 (48 enodes) 7.322 * * [simplify]: iters left: 3 (77 enodes) 7.352 * * [simplify]: iters left: 2 (146 enodes) 7.387 * * [simplify]: iters left: 1 (182 enodes) 7.424 * * [simplify]: Extracting #0: cost 1 inf + 0 7.425 * * [simplify]: Extracting #1: cost 16 inf + 0 7.425 * * [simplify]: Extracting #2: cost 28 inf + 43 7.425 * * [simplify]: Extracting #3: cost 15 inf + 1385 7.427 * * [simplify]: Extracting #4: cost 0 inf + 3174 7.429 * [simplify]: Simplified to (* (- y.re) (log (/ -1 x.re))) 7.429 * [simplify]: Simplified (2 2 1 2) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* (- y.re) (log (/ -1 x.re))))))) 7.429 * * * * [progress]: [ 88 / 93 ] simplifiying candidate # 7.430 * [simplify]: Simplifying (* (atan2 x.im x.re) y.re) 7.430 * * [simplify]: iters left: 3 (5 enodes) 7.432 * * [simplify]: iters left: 2 (16 enodes) 7.436 * * [simplify]: Extracting #0: cost 1 inf + 0 7.436 * * [simplify]: Extracting #1: cost 4 inf + 0 7.436 * * [simplify]: Extracting #2: cost 6 inf + 1 7.436 * * [simplify]: Extracting #3: cost 4 inf + 3 7.436 * * [simplify]: Extracting #4: cost 0 inf + 653 7.436 * [simplify]: Simplified to (* (atan2 x.im x.re) y.re) 7.437 * [simplify]: Simplified (2 1 1 3) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.437 * * * * [progress]: [ 89 / 93 ] simplifiying candidate # 7.437 * [simplify]: Simplifying (* (atan2 x.im x.re) y.re) 7.437 * * [simplify]: iters left: 3 (5 enodes) 7.439 * * [simplify]: iters left: 2 (16 enodes) 7.441 * * [simplify]: Extracting #0: cost 1 inf + 0 7.441 * * [simplify]: Extracting #1: cost 4 inf + 0 7.441 * * [simplify]: Extracting #2: cost 6 inf + 1 7.441 * * [simplify]: Extracting #3: cost 4 inf + 3 7.441 * * [simplify]: Extracting #4: cost 0 inf + 653 7.442 * [simplify]: Simplified to (* (atan2 x.im x.re) y.re) 7.442 * [simplify]: Simplified (2 1 1 3) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.442 * * * * [progress]: [ 90 / 93 ] simplifiying candidate # 7.442 * [simplify]: Simplifying (* (atan2 x.im x.re) y.re) 7.442 * * [simplify]: iters left: 3 (5 enodes) 7.443 * * [simplify]: iters left: 2 (16 enodes) 7.445 * * [simplify]: Extracting #0: cost 1 inf + 0 7.445 * * [simplify]: Extracting #1: cost 4 inf + 0 7.445 * * [simplify]: Extracting #2: cost 6 inf + 1 7.445 * * [simplify]: Extracting #3: cost 4 inf + 3 7.445 * * [simplify]: Extracting #4: cost 0 inf + 653 7.445 * [simplify]: Simplified to (* (atan2 x.im x.re) y.re) 7.445 * [simplify]: Simplified (2 1 1 3) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.445 * * * * [progress]: [ 91 / 93 ] simplifiying candidate # 7.445 * [simplify]: Simplifying (* y.im (atan2 x.im x.re)) 7.445 * * [simplify]: iters left: 3 (5 enodes) 7.446 * * [simplify]: iters left: 2 (16 enodes) 7.448 * * [simplify]: Extracting #0: cost 1 inf + 0 7.448 * * [simplify]: Extracting #1: cost 4 inf + 0 7.449 * * [simplify]: Extracting #2: cost 6 inf + 1 7.449 * * [simplify]: Extracting #3: cost 0 inf + 653 7.449 * [simplify]: Simplified to (* (atan2 x.im x.re) y.im) 7.449 * [simplify]: Simplified (2 2 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.449 * * * * [progress]: [ 92 / 93 ] simplifiying candidate # 7.449 * [simplify]: Simplifying (* y.im (atan2 x.im x.re)) 7.449 * * [simplify]: iters left: 3 (5 enodes) 7.450 * * [simplify]: iters left: 2 (16 enodes) 7.452 * * [simplify]: Extracting #0: cost 1 inf + 0 7.452 * * [simplify]: Extracting #1: cost 4 inf + 0 7.452 * * [simplify]: Extracting #2: cost 6 inf + 1 7.452 * * [simplify]: Extracting #3: cost 0 inf + 653 7.452 * [simplify]: Simplified to (* (atan2 x.im x.re) y.im) 7.453 * [simplify]: Simplified (2 2 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.453 * * * * [progress]: [ 93 / 93 ] simplifiying candidate # 7.453 * [simplify]: Simplifying (* y.im (atan2 x.im x.re)) 7.453 * * [simplify]: iters left: 3 (5 enodes) 7.454 * * [simplify]: iters left: 2 (16 enodes) 7.456 * * [simplify]: Extracting #0: cost 1 inf + 0 7.456 * * [simplify]: Extracting #1: cost 4 inf + 0 7.456 * * [simplify]: Extracting #2: cost 6 inf + 1 7.456 * * [simplify]: Extracting #3: cost 0 inf + 653 7.456 * [simplify]: Simplified to (* (atan2 x.im x.re) y.im) 7.456 * [simplify]: Simplified (2 2 1 1) to (λ (x.re x.im y.re y.im) (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im))))))) 7.456 * * * [progress]: adding candidates to table 8.840 * [progress]: [Phase 3 of 3] Extracting. 8.849 * [simplify]: Simplifying (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im)))))) 8.849 * * [simplify]: iters left: 6 (15 enodes) 8.850 * * [simplify]: iters left: 5 (18 enodes) 8.851 * * [simplify]: Extracting #0: cost 1 inf + 0 8.851 * * [simplify]: Extracting #1: cost 3 inf + 0 8.851 * * [simplify]: Extracting #2: cost 5 inf + 0 8.851 * * [simplify]: Extracting #3: cost 10 inf + 0 8.851 * * [simplify]: Extracting #4: cost 12 inf + 1 8.851 * * [simplify]: Extracting #5: cost 13 inf + 2 8.852 * * [simplify]: Extracting #6: cost 8 inf + 386 8.852 * * [simplify]: Extracting #7: cost 3 inf + 1652 8.852 * * [simplify]: Extracting #8: cost 1 inf + 2500 8.853 * * [simplify]: Extracting #9: cost 0 inf + 3154 8.853 * [simplify]: Simplified to (/ (cos (fma y.im (log (hypot x.re x.im)) (* (atan2 x.im x.re) y.re))) (exp (- (* (atan2 x.im x.re) y.im) (* y.re (log (hypot x.re x.im)))))) 136.098 * [regime-testing]: Baseline error score: 0.05538165850970999 136.103 * [regime-testing]: Oracle error score: 0.05538165850970999 136.103 * [regime-testing]: End program error score: 0.05538165850970999