* [misc]progress: [Phase 1 of 3] Setting up. * * * [misc]progress: [1/2] Preparing points * * * [misc]progress: [2/2] Setting up program. * [enter]simplify: Simplifying (* 0.5 (sqrt (* 2.0 (+ (sqrt (+ (* re re) (* im im))) re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (25 enodes) * * [misc]simplify: iters left: 4 (32 enodes) * * [misc]simplify: iters left: 3 (34 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * [misc]progress: [Phase 2 of 3] Improving. * * [misc]progress: iteration 1 / 3 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 3 ] generating series at (2 2) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * * * * [misc]progress: [ 2 / 3 ] generating series at (2 2 1) * [misc]approximate: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * * * * [misc]progress: [ 3 / 3 ] generating series at (2) * [misc]approximate: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) into (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) into (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) into (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) into (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * [misc]approximate: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * [misc]approximate: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))) in re * [misc]taylor: Taking taylor expansion of 0.5 in re * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * [misc]taylor: Taking taylor expansion of (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) in im * [misc]taylor: Taking taylor expansion of 0.5 in im * [misc]backup-simplify: Simplify 0.5 into 0.5 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (* 0 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (+ (* 0.5 0) (+ (* 0 0) (+ (* 0 0) (* 0 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) into (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 3 ] rewriting at (2 2) * * * * [misc]progress: [ 2 / 3 ] rewriting at (2 2 1) * * * * [misc]progress: [ 3 / 3 ] rewriting at (2) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 2 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 3 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 4 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 5 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 6 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 7 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 6 (9 enodes) * * [misc]simplify: iters left: 5 (11 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 8 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 9 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 10 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 11 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 12 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 13 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 14 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 15 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 16 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 17 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * * [misc]simplify: iters left: 3 (13 enodes) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 18 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (sqrt 1) * [exit]simplify: Simplified to (sqrt 1) * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 19 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 20 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 21 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 22 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 23 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 24 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* (hypot re im) 2.0) * * [misc]simplify: iters left: 3 (5 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * * * * [misc]progress: [ 25 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 26 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 27 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 28 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 29 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (12 enodes) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 30 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 31 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 32 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 33 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 34 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 35 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (log (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * * [misc]simplify: iters left: 4 (16 enodes) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 36 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 37 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 38 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (38 enodes) * * [misc]simplify: iters left: 2 (63 enodes) * * [misc]simplify: iters left: 1 (78 enodes) * [exit]simplify: Simplified to (* (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0))) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0))) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 39 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (10 enodes) * * [misc]simplify: iters left: 5 (12 enodes) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 40 / 43 ] simplifiying candidate # * * * * [misc]progress: [ 41 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 (sqrt 1)) * * [misc]simplify: iters left: 3 (4 enodes) * * [misc]simplify: iters left: 2 (7 enodes) * [exit]simplify: Simplified to (* (sqrt 1) 0.5) * [exit]simplify: Simplified to (* (sqrt 1) 0.5) * * * * [misc]progress: [ 42 / 43 ] simplifiying candidate # * [enter]simplify: Simplifying (* 0.5 1) * * [misc]simplify: iters left: 2 (3 enodes) * * [misc]simplify: iters left: 1 (5 enodes) * [exit]simplify: Simplified to 0.5 * [exit]simplify: Simplified to 0.5 * * * * [misc]progress: [ 43 / 43 ] simplifiying candidate # * * * [misc]progress: adding candidates to table * * [misc]progress: iteration 2 / 3 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 4 ] generating series at (2 1 1 2) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * * * * [misc]progress: [ 2 / 4 ] generating series at (2 1 1 2 1) * [misc]approximate: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * * * * [misc]progress: [ 3 / 4 ] generating series at (2) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * * * [misc]progress: [ 4 / 4 ] generating series at (2 1) * [misc]approximate: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * [misc]approximate: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) * [misc]approximate: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) in re * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * [misc]taylor: Taking taylor expansion of (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) in im * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 4 ] rewriting at (2 1 1 2) * * * * [misc]progress: [ 2 / 4 ] rewriting at (2 1 1 2 1) * * * * [misc]progress: [ 3 / 4 ] rewriting at (2) * * * * [misc]progress: [ 4 / 4 ] rewriting at (2 1) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 2 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 3 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * [misc]simplify: iters left: 6 (15 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 4 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 5 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 6 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * [misc]simplify: iters left: 6 (15 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 7 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 8 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 9 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * [misc]simplify: iters left: 6 (15 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 10 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 11 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 12 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * [misc]simplify: iters left: 6 (15 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 13 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 14 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 15 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 16 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 17 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 18 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 19 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 20 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * * [misc]simplify: iters left: 3 (13 enodes) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 21 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (sqrt 1) * [exit]simplify: Simplified to (sqrt 1) * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 22 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 23 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 24 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 25 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 26 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 27 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (* (hypot re im) 2.0) * * [misc]simplify: iters left: 3 (5 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * * * * [misc]progress: [ 28 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 29 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 30 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 31 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 32 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (12 enodes) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 33 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 34 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 35 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 36 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 37 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 38 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 39 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 40 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 41 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 42 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (29 enodes) * * [misc]simplify: iters left: 3 (46 enodes) * * [misc]simplify: iters left: 2 (50 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 43 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 44 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 45 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (+ 1 (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * [exit]simplify: Simplified to (fma 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) 1) * [exit]simplify: Simplified to (fma 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) 1) * * * * [misc]progress: [ 46 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 47 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (log1p (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (log1p (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 48 / 54 ] simplifiying candidate # * * * * [misc]progress: [ 49 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (log (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (log (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (log (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 50 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 51 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (cbrt (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (cbrt (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 52 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * * [misc]simplify: iters left: 4 (17 enodes) * [exit]simplify: Simplified to (cube (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (cube (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 53 / 54 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (sqrt (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (sqrt (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 54 / 54 ] simplifiying candidate # * * * [misc]progress: adding candidates to table * * [misc]progress: iteration 3 / 3 * * * [misc]progress: picking best candidate * * * * [misc]pick: Picked # * * * [misc]progress: localizing error * * * [misc]progress: generating series expansions * * * * [misc]progress: [ 1 / 4 ] generating series at (2) * [misc]approximate: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) in im * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) in im * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) in im * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) in re * [misc]backup-simplify: Simplify (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * * * [misc]progress: [ 2 / 4 ] generating series at (2 1 1 1 1 2) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) into (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re)))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) into (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))) * [misc]approximate: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re))))) in re * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) in im * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]backup-simplify: Simplify (/ 0 (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (sqr 0) (+)) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (/ (- 0 (+ (* 2 (* 0 0)))) (* 2 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))))) into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) into (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) * * * * [misc]progress: [ 3 / 4 ] generating series at (2 1 1 1 1 2 1) * [misc]approximate: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in re * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot re im) 2.0 (* 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot re im) 2.0 (* 2.0 re)) into (fma (hypot re im) 2.0 (* 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) into (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)) * [misc]approximate: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in im * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) in re * [misc]backup-simplify: Simplify (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) in im * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) into (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)) * * * * [misc]progress: [ 4 / 4 ] generating series at (2 1 1) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (* 2.0 (/ 1 re))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * [misc]approximate: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in (re im) around 0 * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) in re * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 (- re)) (/ 1 (- im))) 2.0 (* 2.0 (/ 1 (- re)))))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) in im * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]taylor: Taking taylor expansion of 0 in im * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify 0 into 0 * [misc]backup-simplify: Simplify (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) into (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * * [misc]progress: generating rewritten candidates * * * * [misc]progress: [ 1 / 4 ] rewriting at (2) * * * * [misc]progress: [ 2 / 4 ] rewriting at (2 1 1 1 1 2) * * * * [misc]progress: [ 3 / 4 ] rewriting at (2 1 1 1 1 2 1) * * * * [misc]progress: [ 4 / 4 ] rewriting at (2 1 1) * * * [misc]progress: simplifying candidates * * * * [misc]progress: [ 1 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 2 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 3 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))) * * [misc]simplify: iters left: 6 (15 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 4 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (64 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 5 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (21 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (43 enodes) * * [misc]simplify: iters left: 2 (47 enodes) * * [misc]simplify: iters left: 1 (68 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 6 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))))) * * [misc]simplify: iters left: 6 (17 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (30 enodes) * * [misc]simplify: iters left: 3 (42 enodes) * * [misc]simplify: iters left: 2 (46 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 7 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (64 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 8 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (21 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (43 enodes) * * [misc]simplify: iters left: 2 (47 enodes) * * [misc]simplify: iters left: 1 (68 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 9 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))))) * * [misc]simplify: iters left: 6 (17 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (30 enodes) * * [misc]simplify: iters left: 3 (42 enodes) * * [misc]simplify: iters left: 2 (46 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 10 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (64 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 11 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))))))) * * [misc]simplify: iters left: 6 (16 enodes) * * [misc]simplify: iters left: 5 (21 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (43 enodes) * * [misc]simplify: iters left: 2 (47 enodes) * * [misc]simplify: iters left: 1 (68 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * * * [misc]progress: [ 12 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re)))))))) * * [misc]simplify: iters left: 6 (17 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (30 enodes) * * [misc]simplify: iters left: 3 (42 enodes) * * [misc]simplify: iters left: 2 (46 enodes) * * [misc]simplify: iters left: 1 (49 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot (/ -1 re) (/ -1 im)) 2.0 (/ -2.0 re))) 0.5) * * * * [misc]progress: [ 13 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (50 enodes) * * [misc]simplify: iters left: 2 (54 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 14 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (50 enodes) * * [misc]simplify: iters left: 2 (54 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 15 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 16 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 17 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (35 enodes) * * [misc]simplify: iters left: 3 (52 enodes) * * [misc]simplify: iters left: 2 (76 enodes) * * [misc]simplify: iters left: 1 (112 enodes) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 18 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (35 enodes) * * [misc]simplify: iters left: 3 (52 enodes) * * [misc]simplify: iters left: 2 (76 enodes) * * [misc]simplify: iters left: 1 (112 enodes) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 19 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cube 1)) * * [misc]simplify: iters left: 2 (3 enodes) * * [misc]simplify: iters left: 1 (7 enodes) * [exit]simplify: Simplified to 1 * [exit]simplify: Simplified to 1 * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (64 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 20 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [enter]simplify: Simplifying (cbrt (* (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (24 enodes) * * [misc]simplify: iters left: 3 (32 enodes) * * [misc]simplify: iters left: 2 (35 enodes) * [exit]simplify: Simplified to (cbrt (* (fma (hypot re im) 2.0 (* re 2.0)) (sqr 0.5))) * [exit]simplify: Simplified to (cbrt (* (fma (hypot re im) 2.0 (* re 2.0)) (sqr 0.5))) * * * * [misc]progress: [ 21 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (cbrt 1) * [exit]simplify: Simplified to (cbrt 1) * [enter]simplify: Simplifying (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))))) * * [misc]simplify: iters left: 6 (13 enodes) * * [misc]simplify: iters left: 5 (17 enodes) * * [misc]simplify: iters left: 4 (27 enodes) * * [misc]simplify: iters left: 3 (39 enodes) * * [misc]simplify: iters left: 2 (43 enodes) * * [misc]simplify: iters left: 1 (64 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5) * * * * [misc]progress: [ 22 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (50 enodes) * * [misc]simplify: iters left: 2 (54 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 23 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (20 enodes) * * [misc]simplify: iters left: 4 (28 enodes) * * [misc]simplify: iters left: 3 (38 enodes) * * [misc]simplify: iters left: 2 (44 enodes) * * [misc]simplify: iters left: 1 (52 enodes) * [exit]simplify: Simplified to (* (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0))) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0))) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 24 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (cbrt (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))))) * * [misc]simplify: iters left: 6 (14 enodes) * * [misc]simplify: iters left: 5 (18 enodes) * * [misc]simplify: iters left: 4 (31 enodes) * * [misc]simplify: iters left: 3 (50 enodes) * * [misc]simplify: iters left: 2 (54 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 25 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 26 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (expm1 (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 27 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log1p (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 28 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 29 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 30 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (log (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 31 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (exp (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 32 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (cbrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 33 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (11 enodes) * * [misc]simplify: iters left: 3 (13 enodes) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (fma (hypot re im) 2.0 (* re 2.0)) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 34 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt 1) * * [misc]simplify: iters left: 1 (2 enodes) * [exit]simplify: Simplified to (sqrt 1) * [exit]simplify: Simplified to (sqrt 1) * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 35 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))) * * [misc]simplify: iters left: 5 (8 enodes) * * [misc]simplify: iters left: 4 (9 enodes) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (sqrt (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 36 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 37 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 38 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (expm1 (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 39 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log1p (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 40 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (* (hypot re im) 2.0) * * [misc]simplify: iters left: 3 (5 enodes) * * [misc]simplify: iters left: 2 (6 enodes) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * [exit]simplify: Simplified to (* (hypot re im) 2.0) * * * * [misc]progress: [ 41 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 42 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (log (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 43 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (exp (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 44 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cbrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 45 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (10 enodes) * * [misc]simplify: iters left: 2 (12 enodes) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (cube (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 46 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * * * * [misc]progress: [ 47 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 48 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re)))))) * * [misc]simplify: iters left: 6 (11 enodes) * * [misc]simplify: iters left: 5 (13 enodes) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * [exit]simplify: Simplified to (exp (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5))) * * * * [misc]progress: [ 49 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (expm1 (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (expm1 (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 50 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log1p (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log1p (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 51 / 57 ] simplifiying candidate # * * * * [misc]progress: [ 52 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (log (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (log (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 53 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (exp (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * * [misc]simplify: iters left: 4 (18 enodes) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (pow (exp 0.5) (sqrt (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 54 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cbrt (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (cbrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 55 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (29 enodes) * * [misc]simplify: iters left: 3 (46 enodes) * * [misc]simplify: iters left: 2 (50 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * * * * [misc]progress: [ 56 / 57 ] simplifiying candidate # * [enter]simplify: Simplifying (sqrt (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (14 enodes) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * [exit]simplify: Simplified to (sqrt (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) 0.5)) * * * * [misc]progress: [ 57 / 57 ] simplifiying candidate # * * * [misc]progress: adding candidates to table * [misc]progress: [Phase 3 of 3] Extracting. * * [misc]regime-changes: Finding splitpoints for: (# # #) * [misc]regimes: Found splitpoints: (#s(sp 0 im +inf.0)) , with alts (#) * [enter]simplify: Simplifying (sqrt (fma (hypot re im) 2.0 (* 2.0 re))) * * [misc]simplify: iters left: 4 (7 enodes) * * [misc]simplify: iters left: 3 (8 enodes) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [exit]simplify: Simplified to (sqrt (fma (hypot re im) 2.0 (* re 2.0))) * [enter]simplify: Simplifying (cube (expm1 (log1p (* 0.5 (sqrt (fma (hypot re im) 2.0 (* 2.0 re))))))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (16 enodes) * * [misc]simplify: iters left: 4 (29 enodes) * * [misc]simplify: iters left: 3 (46 enodes) * * [misc]simplify: iters left: 2 (50 enodes) * * [misc]simplify: iters left: 1 (69 enodes) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * [exit]simplify: Simplified to (* (sqrt (fma (hypot re im) 2.0 (* re 2.0))) (* (cube 0.5) (fma (hypot re im) 2.0 (* re 2.0)))) * [enter]simplify: Simplifying (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re)))) * * [misc]simplify: iters left: 6 (12 enodes) * * [misc]simplify: iters left: 5 (15 enodes) * [exit]simplify: Simplified to (* 0.5 (sqrt (fma (hypot (/ 1 re) (/ 1 im)) 2.0 (/ 2.0 re))))