35.092 * [progress]: [Phase 1 of 3] Setting up. 0.002 * * * [progress]: [1/2] Preparing points 0.003 * * * * [points]: Sampling 256 additional inputs, on iter 0 have 0 / 256 0.003 * * * * [points]: Computing exacts on every 16 of 256 points to ramp up precision 0.029 * * * * [points]: Setting MPFR precision to 64 0.034 * * * * [points]: Setting MPFR precision to 320 0.039 * * * * [points]: Setting MPFR precision to 576 0.043 * * * * [points]: Setting MPFR precision to 832 0.047 * * * * [points]: Setting MPFR precision to 1088 0.052 * * * * [points]: Computing exacts on every 8 of 256 points to ramp up precision 0.169 * * * * [points]: Setting MPFR precision to 832 0.173 * * * * [points]: Setting MPFR precision to 1088 0.179 * * * * [points]: Computing exacts on every 4 of 256 points to ramp up precision 0.306 * * * * [points]: Setting MPFR precision to 832 0.314 * * * * [points]: Setting MPFR precision to 1088 0.328 * * * * [points]: Computing exacts on every 2 of 256 points to ramp up precision 0.419 * * * * [points]: Setting MPFR precision to 832 0.443 * * * * [points]: Setting MPFR precision to 1088 0.482 * * * * [points]: Computing exacts for 256 points 0.591 * * * * [points]: Setting MPFR precision to 832 0.644 * * * * [points]: Setting MPFR precision to 1088 0.695 * * * * [points]: Filtering points with unrepresentable outputs 0.696 * * * * [points]: Sampled 256 points with exact outputs 0.696 * * * [progress]: [2/2] Setting up program. 0.705 * [progress]: [Phase 2 of 3] Improving. 0.705 * * * * [progress]: [ 1 / 1 ] simplifiying candidate # 0.705 * [simplify]: Simplifying: (im (+.c (+.c (+.c (+.c (*.c (*.c (*.c (complex (/ (- 1) 2) (/ (sqrt 3) 2)) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (*.c (*.c (*.c (complex (- 2) 0) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (complex (/ (- 1) 2) (/ (sqrt 3) 2)))) (*.c (*.c (complex 5 0) (complex (/ (- 1) 2) (/ (sqrt 3) 2))) (complex (/ (- 1) 2) (/ (sqrt 3) 2)))) (*.c (complex 4 0) (complex (/ (- 1) 2) (/ (sqrt 3) 2)))) (complex 7 0))) 0.706 * * [simplify]: iteration 0: 31 enodes 0.752 * * [simplify]: iteration 1: 85 enodes 0.792 * * [simplify]: iteration 2: 302 enodes 0.987 * * [simplify]: iteration 3: 1235 enodes 1.417 * * [simplify]: iteration complete: 5000 enodes 1.417 * * [simplify]: Extracting #0: cost 1 inf + 0 1.417 * * [simplify]: Extracting #1: cost 2 inf + 0 1.418 * * [simplify]: Extracting #2: cost 54 inf + 0 1.421 * * [simplify]: Extracting #3: cost 1869 inf + 0 1.428 * * [simplify]: Extracting #4: cost 2599 inf + 90 1.437 * * [simplify]: Extracting #5: cost 2678 inf + 578 1.448 * * [simplify]: Extracting #6: cost 2734 inf + 1009 1.475 * * [simplify]: Extracting #7: cost 2663 inf + 9491 1.514 * * [simplify]: Extracting #8: cost 2362 inf + 78111 1.631 * * [simplify]: Extracting #9: cost 1582 inf + 463472 1.977 * * [simplify]: Extracting #10: cost 505 inf + 1165951 2.462 * * [simplify]: Extracting #11: cost 12 inf + 1522872 3.018 * * [simplify]: Extracting #12: cost 0 inf + 1532488 3.534 * [simplify]: Simplified to: (im (+.c (complex 5 (* (/ (sqrt 3) 2) 4)) (*.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))) 3.540 * * [progress]: iteration 1 / 4 3.540 * * * [progress]: picking best candidate 3.543 * * * * [pick]: Picked # 3.543 * * * [progress]: localizing error 3.646 * * * [progress]: generating rewritten candidates 3.646 * * * * [progress]: [ 1 / 2 ] rewriting at (2 1 2 2 1 1 2) 3.676 * * * * [progress]: [ 2 / 2 ] rewriting at (2 1 2 1 1 2) 3.704 * * * [progress]: generating series expansions 3.704 * * * * [progress]: [ 1 / 2 ] generating series at (2 1 2 2 1 1 2) 3.704 * * * * [progress]: [ 2 / 2 ] generating series at (2 1 2 1 1 2) 3.704 * * * [progress]: simplifying candidates 3.704 * * * * [progress]: [ 1 / 214 ] simplifiying candidate # 3.704 * * * * [progress]: [ 2 / 214 ] simplifiying candidate # 3.704 * * * * [progress]: [ 3 / 214 ] simplifiying candidate # 3.704 * * * * [progress]: [ 4 / 214 ] simplifiying candidate # 3.704 * * * * [progress]: [ 5 / 214 ] simplifiying candidate # 3.704 * * * * [progress]: [ 6 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 7 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 8 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 9 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 10 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 11 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 12 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 13 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 14 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 15 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 16 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 17 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 18 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 19 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 20 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 21 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 22 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 23 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 24 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 25 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 26 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 27 / 214 ] simplifiying candidate # 3.705 * * * * [progress]: [ 28 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 29 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 30 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 31 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 32 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 33 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 34 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 35 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 36 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 37 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 38 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 39 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 40 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 41 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 42 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 43 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 44 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 45 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 46 / 214 ] simplifiying candidate # 3.706 * * * * [progress]: [ 47 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 48 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 49 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 50 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 51 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 52 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 53 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 54 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 55 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 56 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 57 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 58 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 59 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 60 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 61 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 62 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 63 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 64 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 65 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 66 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 67 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 68 / 214 ] simplifiying candidate # 3.707 * * * * [progress]: [ 69 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 70 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 71 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 72 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 73 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 74 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 75 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 76 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 77 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 78 / 214 ] simplifiying candidate # 3.708 * * * * [progress]: [ 79 / 214 ] 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[progress]: [ 95 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 96 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 97 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 98 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 99 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 100 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 101 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 102 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 103 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 104 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 105 / 214 ] simplifiying candidate #real (real->posit16 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))))> 3.709 * * * * [progress]: [ 106 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 107 / 214 ] simplifiying candidate # 3.709 * * * * [progress]: [ 108 / 214 ] simplifiying 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3.713 * * * * [progress]: [ 201 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 202 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 203 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 204 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 205 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 206 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 207 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 208 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 209 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 210 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 211 / 214 ] simplifiying candidate #real (real->posit16 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))))) (- (/ (sqrt 3) 2))) (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))))> 3.714 * * * * [progress]: [ 212 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 213 / 214 ] simplifiying candidate # 3.714 * * * * [progress]: [ 214 / 214 ] simplifiying candidate # 3.716 * [simplify]: Simplifying: (+ 1 1) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (+ 1 1) (+ (- (log (sqrt 3)) (log 2)) (- (log (sqrt 3)) (log 2))) (+ (- (log (sqrt 3)) (log 2)) (log (/ (sqrt 3) 2))) (+ (log (/ (sqrt 3) 2)) (- (log (sqrt 3)) (log 2))) (+ (log (/ (sqrt 3) 2)) (log (/ (sqrt 3) 2))) (log (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (exp (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (* (/ (* (* (sqrt 3) (sqrt 3)) (sqrt 3)) (* (* 2 2) 2)) (/ (* (* (sqrt 3) (sqrt 3)) (sqrt 3)) (* (* 2 2) 2))) (* (/ (* (* (sqrt 3) (sqrt 3)) (sqrt 3)) (* (* 2 2) 2)) (* (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (/ (sqrt 3) 2))) (* (* (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (/ (* (* (sqrt 3) (sqrt 3)) (sqrt 3)) (* (* 2 2) 2))) (* (* (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (* (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (/ (sqrt 3) 2))) (* (cbrt (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (cbrt (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)))) (cbrt (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (* (* (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (sqrt (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (sqrt (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (* (sqrt 3) (sqrt 3)) (* 2 2) (* (* (cbrt (/ (sqrt 3) 2)) (cbrt (/ (sqrt 3) 2))) (* (cbrt (/ (sqrt 3) 2)) (cbrt (/ (sqrt 3) 2)))) (* (cbrt (/ (sqrt 3) 2)) (cbrt (/ (sqrt 3) 2))) (* (sqrt (/ (sqrt 3) 2)) (sqrt (/ (sqrt 3) 2))) (* (sqrt (/ (sqrt 3) 2)) (sqrt (/ (sqrt 3) 2))) (* (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) (* (cbrt 2) (cbrt 2))) (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) (* (cbrt 2) (cbrt 2)))) (* (/ (cbrt (sqrt 3)) (cbrt 2)) (/ (cbrt (sqrt 3)) (cbrt 2))) (* (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) (sqrt 2)) (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) (sqrt 2))) (* (/ (cbrt (sqrt 3)) (sqrt 2)) (/ (cbrt (sqrt 3)) (sqrt 2))) (* (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) 1) (/ (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) 1)) (* (/ (cbrt (sqrt 3)) 2) (/ (cbrt (sqrt 3)) 2)) (* (/ (sqrt (* (cbrt 3) (cbrt 3))) (* (cbrt 2) (cbrt 2))) (/ (sqrt (* (cbrt 3) (cbrt 3))) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt (cbrt 3)) (cbrt 2)) (/ (sqrt (cbrt 3)) (cbrt 2))) (* (/ (sqrt (* (cbrt 3) (cbrt 3))) (sqrt 2)) (/ (sqrt (* (cbrt 3) (cbrt 3))) (sqrt 2))) (* (/ (sqrt (cbrt 3)) (sqrt 2)) (/ (sqrt (cbrt 3)) (sqrt 2))) (* (/ (sqrt (* (cbrt 3) (cbrt 3))) 1) (/ (sqrt (* (cbrt 3) (cbrt 3))) 1)) (* (/ (sqrt (cbrt 3)) 2) (/ (sqrt (cbrt 3)) 2)) (* (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2))) (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt (sqrt 3)) (cbrt 2)) (/ (sqrt (sqrt 3)) (cbrt 2))) (* (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2))) (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt (sqrt 3)) (cbrt 2)) (/ (sqrt (sqrt 3)) (cbrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) 1) (/ (sqrt (sqrt 3)) 1)) (* (/ (sqrt (sqrt 3)) 2) (/ (sqrt (sqrt 3)) 2)) (* (/ (sqrt (sqrt 3)) 1) (/ (sqrt (sqrt 3)) 1)) (* (/ (sqrt (sqrt 3)) 2) (/ (sqrt (sqrt 3)) 2)) (* (/ (sqrt 1) (* (cbrt 2) (cbrt 2))) (/ (sqrt 1) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt 3) (cbrt 2)) (/ (sqrt 3) (cbrt 2))) (* (/ (sqrt 1) (sqrt 2)) (/ (sqrt 1) (sqrt 2))) (* (/ (sqrt 3) (sqrt 2)) (/ (sqrt 3) (sqrt 2))) (* (/ (sqrt 1) 1) (/ (sqrt 1) 1)) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2))) (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt (sqrt 3)) (cbrt 2)) (/ (sqrt (sqrt 3)) (cbrt 2))) (* (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2))) (/ (sqrt (sqrt 3)) (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt (sqrt 3)) (cbrt 2)) (/ (sqrt (sqrt 3)) (cbrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) 1) (/ (sqrt (sqrt 3)) 1)) (* (/ (sqrt (sqrt 3)) 2) (/ (sqrt (sqrt 3)) 2)) (* (/ (sqrt (sqrt 3)) 1) (/ (sqrt (sqrt 3)) 1)) (* (/ (sqrt (sqrt 3)) 2) (/ (sqrt (sqrt 3)) 2)) (* (/ 1 (* (cbrt 2) (cbrt 2))) (/ 1 (* (cbrt 2) (cbrt 2)))) (* (/ (sqrt 3) (cbrt 2)) (/ (sqrt 3) (cbrt 2))) (* (/ 1 (sqrt 2)) (/ 1 (sqrt 2))) (* (/ (sqrt 3) (sqrt 2)) (/ (sqrt 3) (sqrt 2))) (* (/ 1 1) (/ 1 1)) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* 1 1) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* (sqrt 3) (sqrt 3)) (* (/ 1 2) (/ 1 2)) (* (sqrt (/ (sqrt 3) 2)) (sqrt (/ (sqrt 3) 2))) (* (sqrt (/ (sqrt 3) 2)) (sqrt (/ (sqrt 3) 2))) (* (sqrt (/ (sqrt 3) 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (sqrt (/ (sqrt 3) 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (sqrt (/ (sqrt 3) 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (sqrt (/ (sqrt 3) 2)) (/ (sqrt (sqrt 3)) (sqrt 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (sqrt (/ (sqrt 3) 2))) (* (/ (sqrt (sqrt 3)) (sqrt 2)) (sqrt (/ (sqrt 3) 2))) (* (/ (sqrt 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(/ (sqrt 3) 2)) (* (/ (sqrt 3) (cbrt 2)) (/ (sqrt 3) 2)) (* (/ (sqrt 3) (sqrt 2)) (/ (sqrt 3) 2)) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* (/ (sqrt 3) 2) (/ (sqrt 3) 2)) (* (/ 1 2) (/ (sqrt 3) 2)) (* (/ (sqrt 3) 2) (sqrt 3)) (* (sqrt 3) (/ (sqrt 3) 2)) (real->posit16 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (im (+.c (complex 5 (* (/ (sqrt 3) 2) 4)) (*.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))) (im (+.c (complex 5 (* (/ (sqrt 3) 2) 4)) (*.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))) 3.722 * * [simplify]: iteration 0: 157 enodes 3.817 * * [simplify]: iteration 1: 528 enodes 4.049 * * [simplify]: iteration 2: 1755 enodes 5.054 * * [simplify]: iteration complete: 5000 enodes 5.054 * * [simplify]: Extracting #0: cost 63 inf + 0 5.056 * * [simplify]: Extracting #1: cost 794 inf + 47 5.063 * * [simplify]: Extracting #2: cost 1274 inf + 26186 5.102 * * [simplify]: Extracting #3: cost 542 inf + 208478 5.165 * * [simplify]: Extracting #4: cost 133 inf + 320384 5.235 * * [simplify]: Extracting #5: cost 192 inf + 336458 5.344 * * [simplify]: Extracting #6: cost 89 inf + 353548 5.417 * * [simplify]: Extracting #7: cost 51 inf + 363752 5.487 * * [simplify]: Extracting #8: cost 7 inf + 382171 5.563 * * [simplify]: Extracting #9: cost 0 inf + 385181 5.671 * [simplify]: Simplified to: 2 (/ 3/2 2) 2 (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (sqrt (exp 3/2)) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (cbrt (/ 3/2 2)) (cbrt (/ 3/2 2))) (cbrt (/ 3/2 2)) (* (* 3/8 3/8) 3) (sqrt (/ 3/2 2)) (sqrt (/ 3/2 2)) 3 4 (* (cbrt (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (* (cbrt (/ (sqrt 3) 2)) (cbrt (/ (sqrt 3) 2))) (/ (sqrt 3) 2) (/ (sqrt 3) 2) (* (* (/ (cbrt 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2)) (/ 3/2 2) (/ (* (sqrt 3) (/ (sqrt (sqrt 3)) (cbrt 2))) 2) (/ (/ (* (sqrt (sqrt 3)) (sqrt 3)) (sqrt 2)) 2) (* (* 1/4 (sqrt 3)) (sqrt (sqrt 3))) (/ 3/2 (cbrt 2)) (/ 3/2 (sqrt 2)) (/ 3/2 2) (/ 3/2 2) (* 1/4 (sqrt 3)) 3/2 3/2 (real->posit16 (/ 3/2 2)) 2 (/ 3/2 2) 2 (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (log (/ 3/2 2)) (sqrt (exp 3/2)) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (* 3/8 3/8) 3) (* (cbrt (/ 3/2 2)) (cbrt (/ 3/2 2))) (cbrt (/ 3/2 2)) (* (* 3/8 3/8) 3) (sqrt (/ 3/2 2)) (sqrt (/ 3/2 2)) 3 4 (* (cbrt (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (* (cbrt (/ (sqrt 3) 2)) (cbrt (/ (sqrt 3) 2))) (/ (sqrt 3) 2) (/ (sqrt 3) 2) (* (* (/ (cbrt (sqrt 3)) (cbrt 2)) (/ (cbrt (sqrt 3)) (cbrt 2))) (* (/ (cbrt (sqrt 3)) (cbrt 2)) (/ (cbrt (sqrt 3)) (cbrt 2)))) (* (/ (cbrt (sqrt 3)) (cbrt 2)) (/ (cbrt (sqrt 3)) (cbrt 2))) (* (* (/ (cbrt (sqrt 3)) (sqrt 2)) (cbrt (sqrt 3))) (* (/ (cbrt (sqrt 3)) (sqrt 2)) (cbrt (sqrt 3)))) (* (/ (cbrt (sqrt 3)) (sqrt 2)) (/ (cbrt (sqrt 3)) (sqrt 2))) (* (* (cbrt (sqrt 3)) (cbrt (sqrt 3))) (* (cbrt (sqrt 3)) (cbrt (sqrt 3)))) (* (/ (cbrt (sqrt 3)) 2) (/ (cbrt (sqrt 3)) 2)) (/ (* (/ (cbrt 3) (cbrt 2)) (/ (cbrt 3) (cbrt 2))) (* (cbrt 2) (cbrt 2))) (/ (/ (cbrt 3) (cbrt 2)) (cbrt 2)) (* (/ (fabs (cbrt 3)) (sqrt 2)) (/ (fabs (cbrt 3)) (sqrt 2))) (/ (/ (cbrt 3) (sqrt 2)) (sqrt 2)) (* (cbrt 3) (cbrt 3)) (/ (/ (cbrt 3) 2) 2) (/ (/ (sqrt 3) (* (cbrt 2) (cbrt 2))) (* (cbrt 2) (cbrt 2))) (/ (sqrt 3) (* (cbrt 2) (cbrt 2))) (/ (/ (sqrt 3) (* (cbrt 2) (cbrt 2))) (* (cbrt 2) (cbrt 2))) (/ (sqrt 3) (* (cbrt 2) (cbrt 2))) (/ (/ (sqrt 3) (sqrt 2)) (sqrt 2)) (/ (/ (sqrt 3) (sqrt 2)) (sqrt 2)) (/ (/ (sqrt 3) (sqrt 2)) (sqrt 2)) (/ (/ (sqrt 3) (sqrt 2)) (sqrt 2)) (sqrt 3) (* 1/4 (sqrt 3)) (sqrt 3) (* 1/4 (sqrt 3)) (/ (/ 1 (* (cbrt 2) (cbrt 2))) (* (cbrt 2) (cbrt 2))) (/ (/ 3 (cbrt 2)) (cbrt 2)) (/ (/ 1 (sqrt 2)) (sqrt 2)) (/ (/ 3 (sqrt 2)) (sqrt 2)) 1 (/ 3/2 2) (/ (/ (sqrt 3) (* (cbrt 2) (cbrt 2))) (* (cbrt 2) (cbrt 2))) (/ (sqrt 3) 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(sqrt 3)) (sqrt 2)) 2) (* (/ (sqrt (sqrt 3)) 2) (sqrt 3)) (/ (/ (sqrt 3) 2) (* (cbrt 2) (cbrt 2))) (/ (/ (sqrt 3) 2) (sqrt 2)) (/ (sqrt 3) 2) (/ (sqrt 3) 2) 3/2 (* (cbrt (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (* (sqrt (/ (sqrt 3) 2)) (/ (sqrt 3) 2)) (/ (/ (* (sqrt 3) (cbrt (sqrt 3))) (cbrt 2)) 2) (/ (* (/ (sqrt 3) 2) (cbrt (sqrt 3))) (sqrt 2)) (* (/ (/ (sqrt 3) 2) 2) (cbrt (sqrt 3))) (* (/ (sqrt 3) 2) (/ (sqrt (cbrt 3)) (cbrt 2))) (/ (/ (sqrt (cbrt 3)) (sqrt 2)) (/ 2 (sqrt 3))) (* (/ (sqrt (cbrt 3)) 2) (/ (sqrt 3) 2)) (/ (* (sqrt 3) (/ (sqrt (sqrt 3)) (cbrt 2))) 2) (/ (/ (* (sqrt (sqrt 3)) (sqrt 3)) (sqrt 2)) 2) (* (* 1/4 (sqrt 3)) (sqrt (sqrt 3))) (/ 3/2 (cbrt 2)) (/ 3/2 (sqrt 2)) (/ 3/2 2) (/ (* (sqrt 3) (/ (sqrt (sqrt 3)) (cbrt 2))) 2) (/ (/ (* (sqrt (sqrt 3)) (sqrt 3)) (sqrt 2)) 2) (* (* 1/4 (sqrt 3)) (sqrt (sqrt 3))) (/ 3/2 (cbrt 2)) (/ 3/2 (sqrt 2)) (/ 3/2 2) (/ 3/2 2) (* 1/4 (sqrt 3)) 3/2 3/2 (real->posit16 (/ 3/2 2)) (im (complex (+ (- (* (+ 6 (- 1/4 (/ 3/2 2))) (- 1/4 (/ 3/2 2))) (* (+ (- (/ (sqrt 3) 2)) (* (/ (sqrt 3) 1/2) -1/2)) (- (/ (sqrt 3) 2)))) 5) (+ (+ (* (+ 6 (- 1/4 (/ 3/2 2))) (- (/ (sqrt 3) 2))) (* (+ (- (/ (sqrt 3) 2)) (* (/ (sqrt 3) 1/2) -1/2)) (- 1/4 (/ 3/2 2)))) (/ (sqrt 3) 1/2)))) (im (complex (+ (- (* (+ 6 (- 1/4 (/ 3/2 2))) (- 1/4 (/ 3/2 2))) (* (+ (- (/ (sqrt 3) 2)) (* (/ (sqrt 3) 1/2) -1/2)) (- (/ (sqrt 3) 2)))) 5) (+ (+ (* (+ 6 (- 1/4 (/ 3/2 2))) (- (/ (sqrt 3) 2))) (* (+ (- (/ (sqrt 3) 2)) (* (/ (sqrt 3) 1/2) -1/2)) (- 1/4 (/ 3/2 2)))) (/ (sqrt 3) 1/2)))) 5.719 * * * [progress]: adding candidates to table 6.683 * [progress]: [Phase 3 of 3] Extracting. 6.687 * [simplify]: Simplifying: (im (+.c (complex 5 (* (/ (sqrt 3) 2) 4)) (*.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (- (/ (sqrt 3) 2))) (complex 6 (* -1/2 (/ (sqrt 3) 1/2))))))) 6.690 * * [simplify]: iteration 0: 23 enodes 6.692 * * [simplify]: iteration 1: 30 enodes 6.693 * * [simplify]: iteration complete: 30 enodes 6.693 * * [simplify]: Extracting #0: cost 1 inf + 0 6.693 * * [simplify]: Extracting #1: cost 2 inf + 0 6.693 * * [simplify]: Extracting #2: cost 4 inf + 0 6.693 * * [simplify]: Extracting #3: cost 8 inf + 0 6.693 * * [simplify]: Extracting #4: cost 12 inf + 1 6.693 * * [simplify]: Extracting #5: cost 18 inf + 2 6.693 * * [simplify]: Extracting #6: cost 18 inf + 5 6.693 * * [simplify]: Extracting #7: cost 17 inf + 7 6.693 * * [simplify]: Extracting #8: cost 10 inf + 538 6.693 * * [simplify]: Extracting #9: cost 5 inf + 1314 6.694 * * [simplify]: Extracting #10: cost 4 inf + 1438 6.694 * * [simplify]: Extracting #11: cost 2 inf + 2570 6.695 * * [simplify]: Extracting #12: cost 1 inf + 3418 6.695 * * [simplify]: Extracting #13: cost 0 inf + 4266 6.696 * [simplify]: Simplified to: (im (+.c (complex 5 (* (/ (sqrt 3) 2) 4)) (*.c (+.c (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (/ (- (sqrt 3)) 2)) (complex 6 (* -1/2 (/ (sqrt 3) 1/2)))) (complex (- 1/4 (* (/ (sqrt 3) 2) (/ (sqrt 3) 2))) (/ (- (sqrt 3)) 2))))) 6.696 * * * * [points]: Sampling 8000 additional inputs, on iter 0 have 0 / 8000 6.703 * * * * [points]: Computing exacts on every 500 of 8000 points to ramp up precision 6.852 * * * * [points]: Setting MPFR precision to 832 6.857 * * * * [points]: Setting MPFR precision to 1088 6.859 * * * * [points]: Computing exacts on every 250 of 8000 points to ramp up precision 6.964 * * * * [points]: Setting MPFR precision to 832 6.969 * * * * [points]: Setting MPFR precision to 1088 6.975 * * * * [points]: Computing exacts on every 125 of 8000 points to ramp up precision 7.117 * * * * [points]: Setting MPFR precision to 832 7.137 * * * * [points]: Setting MPFR precision to 1088 7.159 * * * * [points]: Computing exacts on every 62 of 8000 points to ramp up precision 7.296 * * * * [points]: Setting MPFR precision to 832 7.337 * * * * [points]: Setting MPFR precision to 1088 7.394 * * * * [points]: Computing exacts on every 31 of 8000 points to ramp up precision 7.527 * * * * [points]: Setting MPFR precision to 832 7.575 * * * * [points]: Setting MPFR precision to 1088 7.685 * * * * [points]: Computing exacts on every 15 of 8000 points to ramp up precision 7.788 * * * * [points]: Setting MPFR precision to 832 7.962 * * * * [points]: Setting MPFR precision to 1088 8.187 * * * * [points]: Computing exacts on every 7 of 8000 points to ramp up precision 8.622 * * * * [points]: Setting MPFR precision to 832 8.923 * * * * [points]: Setting MPFR precision to 1088 9.302 * * * * [points]: Computing exacts on every 3 of 8000 points to ramp up precision 9.470 * * * * [points]: Setting MPFR precision to 832 10.269 * * * * [points]: Setting MPFR precision to 1088 11.498 * * * * [points]: Computing exacts for 8000 points 11.625 * * * * [points]: Setting MPFR precision to 832 15.034 * * * * [points]: Setting MPFR precision to 1088 18.777 * * * * [points]: Filtering points with unrepresentable outputs 18.782 * * * * [points]: Sampled 8000 points with exact outputs 19.038 * [regime-testing]: Baseline error score: 0 19.042 * [regime-testing]: Oracle error score: 0 19.043 * [regime-testing]: End program error score: 0