20.907 * [progress]: [Phase 1 of 3] Setting up. 0.001 * * * [progress]: [1/2] Preparing points 0.001 * * * * [points]: Sampling 256 additional inputs, on iter 0 have 0 / 256 0.001 * * * * [points]: Computing exacts on every 16 of 256 points to ramp up precision 0.013 * * * * [points]: Setting MPFR precision to 64 0.016 * * * * [points]: Setting MPFR precision to 320 0.018 * * * * [points]: Setting MPFR precision to 576 0.020 * * * * [points]: Setting MPFR precision to 832 0.022 * * * * [points]: Setting MPFR precision to 1088 0.025 * * * * [points]: Computing exacts on every 8 of 256 points to ramp up precision 0.115 * * * * [points]: Setting MPFR precision to 832 0.119 * * * * [points]: Setting MPFR precision to 1088 0.123 * * * * [points]: Computing exacts on every 4 of 256 points to ramp up precision 0.209 * * * * [points]: Setting MPFR precision to 832 0.216 * * * * [points]: Setting MPFR precision to 1088 0.223 * * * * [points]: Computing exacts on every 2 of 256 points to ramp up precision 0.315 * * * * [points]: Setting MPFR precision to 832 0.328 * * * * [points]: Setting MPFR precision to 1088 0.341 * * * * [points]: Computing exacts for 256 points 0.432 * * * * [points]: Setting MPFR precision to 832 0.470 * * * * [points]: Setting MPFR precision to 1088 0.534 * * * * [points]: Filtering points with unrepresentable outputs 0.534 * * * * [points]: Sampled 256 points with exact outputs 0.534 * * * [progress]: [2/2] Setting up program. 0.539 * [progress]: [Phase 2 of 3] Improving. 0.540 * [simplify]: Simplifying: (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) 0.540 * [simplify]: Sending expressions to egg_math: (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h4) h2) (/ (sqrt h3) h2)) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (*.c (*.c (*.c (complex (- h2) h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (*.c (*.c (complex h6 h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (*.c (complex h5 h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (complex h1 h0))) 0.566 * * [progress]: iteration 1 / 4 0.566 * * * [progress]: picking best candidate 0.571 * * * * [pick]: Picked # 0.571 * * * [progress]: localizing error 0.673 * * * [progress]: generating rewritten candidates 0.673 * * * * [progress]: [ 1 / 4 ] rewriting at (2 1 1 1 1 1 1 1) 0.675 * * * * [progress]: [ 2 / 4 ] rewriting at (2 1 1 1) 0.683 * * * * [progress]: [ 3 / 4 ] rewriting at (2 1 1 1 1 2 1) 0.686 * * * * [progress]: [ 4 / 4 ] rewriting at (2 1 1 1 2 1) 0.688 * * * [progress]: generating series expansions 0.688 * * * * [progress]: [ 1 / 4 ] generating series at (2 1 1 1 1 1 1 1) 0.688 * * * * [progress]: [ 2 / 4 ] generating series at (2 1 1 1) 0.688 * * * * [progress]: [ 3 / 4 ] generating series at (2 1 1 1 1 2 1) 0.688 * * * * [progress]: [ 4 / 4 ] generating series at (2 1 1 1 2 1) 0.688 * * * [progress]: simplifying candidates 0.689 * [simplify]: Simplifying: (- (* (/ (- 1.0) 2.0) (/ (- 1.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (sqrt 3.0) 2.0))) (+ (* (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (- 1.0) 2.0))) (+ (+ (- (* (- (* (- (* (/ (- 1.0) 2.0) (/ (- 1.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (- (* (/ (- 1.0) 2.0) (/ (- 1.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (- (* (- (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0)))) (- (* (- (* 5.0 (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* 5.0 (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0)))) (+ (+ (+ (* (- (* (- (* (/ (- 1.0) 2.0) (/ (- 1.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (- (* (/ (- 1.0) 2.0) (/ (- 1.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (* (/ (sqrt 3.0) 2.0) (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (+ (* (- (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0)))) (+ (* (- (* 5.0 (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* 5.0 (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0)))) (+.c (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (- (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (- 1.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (sqrt 3.0) 2.0))) (+ (* (- (* (- 2.0) (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (/ (sqrt 3.0) 2.0)) (* (+ (* (- 2.0) (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (/ (- 1.0) 2.0))) (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (- (* 5.0 (/ (- 1.0) 2.0)) (* 0.0 (/ (sqrt 3.0) 2.0))) (+ (* 5.0 (/ (sqrt 3.0) 2.0)) (* 0.0 (/ (- 1.0) 2.0))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) 0.689 * [simplify]: Sending expressions to egg_math: (- (* (/ (- h2) h0) (/ (- h2) h0)) (* (/ (sqrt h1) h0) (/ (sqrt h1) h0))) (+ (* (/ (- h2) h0) (/ (sqrt h1) h0)) (* (/ (sqrt h1) h0) (/ (- h2) h0))) (+ (+ (- (* (- (* (- (* (/ (- h2) h0) (/ (- h2) h0)) (* (/ (sqrt h1) h0) (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (/ (- h2) h0) (/ (sqrt h1) h0)) (* (/ (sqrt h1) h0) (/ (- h2) h0))) (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (- (* (/ (- h2) h0) (/ (- h2) h0)) (* (/ (sqrt h1) h0) (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (/ (- h2) h0) (/ (sqrt h1) h0)) (* (/ (sqrt h1) h0) (/ (- h2) h0))) (/ (- h2) h0))) (/ (sqrt h1) h0))) (- (* (- (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (- h2) h0))) (/ (sqrt h1) h0)))) (- (* (- (* h4 (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* h4 (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (sqrt h1) h0)))) (+ (+ (+ (* (- (* (- (* (/ (- h2) h0) (/ (- h2) h0)) (* (/ (sqrt h1) h0) (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (/ (- h2) h0) (/ (sqrt h1) h0)) (* (/ (sqrt h1) h0) (/ (- h2) h0))) (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (- (* (/ (- h2) h0) (/ (- h2) h0)) (* (/ (sqrt h1) h0) (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (/ (- h2) h0) (/ (sqrt h1) h0)) (* (/ (sqrt h1) h0) (/ (- h2) h0))) (/ (- h2) h0))) (/ (- h2) h0))) (+ (* (- (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (- h2) h0))) (/ (- h2) h0)))) (+ (* (- (* h4 (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* h4 (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (- h2) h0)))) (+.c (*.c (*.c (*.c (complex (- h0) h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (*.c (*.c (complex h4 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (- (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (- h2) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (sqrt h1) h0))) (+ (* (- (* (- h0) (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (/ (sqrt h1) h0)) (* (+ (* (- h0) (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (/ (- h2) h0))) (*.c (complex (/ (- h2) h0) (/ (sqrt h1) h0)) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (- (* h4 (/ (- h2) h0)) (* h3 (/ (sqrt h1) h0))) (+ (* h4 (/ (sqrt h1) h0)) (* h3 (/ (- h2) h0))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h2) h0) (/ (sqrt h1) h0)) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (*.c (*.c (*.c (complex (- h0) h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (*.c (complex h4 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (complex h6 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (complex h5 h3))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h2) h0) (/ (sqrt h1) h0)) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (*.c (*.c (*.c (complex (- h0) h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (*.c (complex h4 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (complex h6 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (complex h5 h3))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h2) h0) (/ (sqrt h1) h0)) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (*.c (*.c (*.c (complex (- h0) h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (*.c (complex h4 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (complex h6 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (complex h5 h3))) (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h2) h0) (/ (sqrt h1) h0)) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (*.c (*.c (*.c (complex (- h0) h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (*.c (complex h4 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0))) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (*.c (complex h6 h3) (complex (/ (- h2) h0) (/ (sqrt h1) h0)))) (complex h5 h3))) 0.791 * * * [progress]: adding candidates to table 0.870 * [progress]: [Phase 3 of 3] Extracting. 0.875 * [simplify]: Simplifying: (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (*.c (*.c (*.c (complex (- 2.0) 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (*.c (complex 5.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0))) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (*.c (complex 4.0 0.0) (complex (/ (- 1.0) 2.0) (/ (sqrt 3.0) 2.0)))) (complex 7.0 0.0))) 0.875 * [simplify]: Sending expressions to egg_math: (re (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- h4) h2) (/ (sqrt h3) h2)) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (*.c (*.c (*.c (complex (- h2) h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (*.c (*.c (complex h6 h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2))) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (*.c (complex h5 h0) (complex (/ (- h4) h2) (/ (sqrt h3) h2)))) (complex h1 h0))) 0.876 * * * * [points]: Sampling 8000 additional inputs, on iter 0 have 0 / 8000 1.184 * * * * [points]: Computing exacts on every 500 of 8000 points to ramp up precision 1.268 * * * * [points]: Setting MPFR precision to 832 1.271 * * * * [points]: Setting MPFR precision to 1088 1.273 * * * * [points]: Computing exacts on every 250 of 8000 points to ramp up precision 1.359 * * * * [points]: Setting MPFR precision to 832 1.364 * * * * [points]: Setting MPFR precision to 1088 1.369 * * * * [points]: Computing exacts on every 125 of 8000 points to ramp up precision 1.457 * * * * [points]: Setting MPFR precision to 832 1.467 * * * * [points]: Setting MPFR precision to 1088 1.476 * * * * [points]: Computing exacts on every 62 of 8000 points to ramp up precision 1.566 * * * * [points]: Setting MPFR precision to 832 1.585 * * * * [points]: Setting MPFR precision to 1088 1.606 * * * * [points]: Computing exacts on every 31 of 8000 points to ramp up precision 1.706 * * * * [points]: Setting MPFR precision to 832 1.753 * * * * [points]: Setting MPFR precision to 1088 1.789 * * * * [points]: Computing exacts on every 15 of 8000 points to ramp up precision 1.903 * * * * [points]: Setting MPFR precision to 832 1.985 * * * * [points]: Setting MPFR precision to 1088 2.102 * * * * [points]: Computing exacts on every 7 of 8000 points to ramp up precision 2.214 * * * * [points]: Setting MPFR precision to 832 2.408 * * * * [points]: Setting MPFR precision to 1088 2.638 * * * * [points]: Computing exacts on every 3 of 8000 points to ramp up precision 3.045 * * * * [points]: Setting MPFR precision to 832 3.464 * * * * [points]: Setting MPFR precision to 1088 3.919 * * * * [points]: Computing exacts for 8000 points 4.324 * * * * [points]: Setting MPFR precision to 832 6.396 * * * * [points]: Setting MPFR precision to 1088 8.849 * * * * [points]: Filtering points with unrepresentable outputs 8.857 * * * * [points]: Sampled 8000 points with exact outputs 8.990 * [regime-testing]: Baseline error score: 61.926295994780965 8.992 * [regime-testing]: Oracle error score: 61.926295994780965 8.993 * [regime-testing]: End program error score: 61.926295994780965