0.001 * [progress]: [Phase 1 of 3] Setting up. 0.001 * * * [progress]: [1/2] Preparing points 0.002 * * * * [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 0.004 * * * * [points]: Setting MPFR precision to 64 0.005 * * * * [points]: Setting MPFR precision to 320 0.006 * * * * [points]: Computing exacts on every 8 of 256 points to ramp up precision 0.007 * * * * [points]: Setting MPFR precision to 64 0.008 * * * * [points]: Setting MPFR precision to 320 0.010 * * * * [points]: Computing exacts on every 4 of 256 points to ramp up precision 0.011 * * * * [points]: Setting MPFR precision to 64 0.013 * * * * [points]: Setting MPFR precision to 320 0.016 * * * * [points]: Computing exacts on every 2 of 256 points to ramp up precision 0.017 * * * * [points]: Setting MPFR precision to 64 0.022 * * * * [points]: Setting MPFR precision to 320 0.027 * * * * [points]: Computing exacts for 256 points 0.028 * * * * [points]: Setting MPFR precision to 64 0.043 * * * * [points]: Setting MPFR precision to 320 0.058 * * * * [points]: Filtering points with unrepresentable outputs 0.059 * * * * [points]: Sampled 256 points with exact outputs 0.059 * * * [progress]: [2/2] Setting up program. 0.063 * [progress]: [Phase 2 of 3] Improving. 0.063 * * * * [progress]: [ 1 / 1 ] simplifiying candidate # 0.063 * [simplify]: Simplifying (+.p16 (*.p16 x.re y.im) (*.p16 x.im y.re)) 0.064 * * [simplify]: iters left: 2 (7 enodes) 0.065 * * [simplify]: iters left: 1 (18 enodes) 0.067 * * [simplify]: Extracting #0: cost 1 inf + 0 0.067 * * [simplify]: Extracting #1: cost 3 inf + 0 0.067 * * [simplify]: Extracting #2: cost 7 inf + 0 0.067 * * [simplify]: Extracting #3: cost 2 inf + 326 0.067 * * [simplify]: Extracting #4: cost 0 inf + 1332 0.067 * [simplify]: Simplified to (+.p16 (*.p16 y.re x.im) (*.p16 y.im x.re)) 0.067 * [simplify]: Simplified (2) to (λ (x.re x.im y.re y.im) (+.p16 (*.p16 y.re x.im) (*.p16 y.im x.re))) 0.072 * * [progress]: iteration 1 / 4 0.072 * * * [progress]: picking best candidate 0.090 * * * * [pick]: Picked # 0.090 * * * [progress]: localizing error 0.150 * * * [progress]: generating rewritten candidates 0.150 * * * * [progress]: [ 1 / 1 ] rewriting at (2) 0.153 * * * [progress]: generating series expansions 0.153 * * * * [progress]: [ 1 / 1 ] generating series at (2) 0.153 * * * [progress]: simplifying candidates 0.153 * * * * [progress]: [ 1 / 2 ] simplifiying candidate # 0.153 * * * * [progress]: [ 2 / 2 ] simplifiying candidate # 0.154 * [simplify]: Simplifying (+.p16 (*.p16 x.re y.im) (*.p16 x.im y.re)) 0.154 * * [simplify]: iters left: 2 (7 enodes) 0.155 * * [simplify]: iters left: 1 (18 enodes) 0.157 * * [simplify]: Extracting #0: cost 1 inf + 0 0.158 * * [simplify]: Extracting #1: cost 3 inf + 0 0.158 * * [simplify]: Extracting #2: cost 7 inf + 0 0.158 * * [simplify]: Extracting #3: cost 2 inf + 326 0.158 * * [simplify]: Extracting #4: cost 0 inf + 1332 0.158 * [simplify]: Simplified to (+.p16 (*.p16 y.re x.im) (*.p16 y.im x.re)) 0.158 * [simplify]: Simplified (2) to (λ (x.re x.im y.re y.im) (+.p16 (*.p16 y.re x.im) (*.p16 y.im x.re))) 0.158 * * * [progress]: adding candidates to table 0.172 * [progress]: [Phase 3 of 3] Extracting. 0.176 * [simplify]: Simplifying (+.p16 (*.p16 x.re y.im) (*.p16 x.im y.re)) 0.176 * * [simplify]: iters left: 2 (7 enodes) 0.176 * * [simplify]: Extracting #0: cost 1 inf + 0 0.176 * * [simplify]: Extracting #1: cost 3 inf + 0 0.176 * * [simplify]: Extracting #2: cost 7 inf + 0 0.176 * * [simplify]: Extracting #3: cost 2 inf + 326 0.176 * * [simplify]: Extracting #4: cost 0 inf + 1332 0.176 * [simplify]: Simplified to (+.p16 (*.p16 x.re y.im) (*.p16 x.im y.re)) 0.176 * * * * [points]: Sampling 8000 additional inputs, on iter 0 have 0 / 8000 0.249 * * * * [points]: Computing exacts on every 500 of 8000 points to ramp up precision 0.250 * * * * [points]: Setting MPFR precision to 64 0.251 * * * * [points]: Setting MPFR precision to 320 0.252 * * * * [points]: Computing exacts on every 250 of 8000 points to ramp up precision 0.252 * * * * [points]: Setting MPFR precision to 64 0.254 * * * * [points]: Setting MPFR precision to 320 0.256 * * * * [points]: Computing exacts on every 125 of 8000 points to ramp up precision 0.257 * * * * [points]: Setting MPFR precision to 64 0.261 * * * * [points]: Setting MPFR precision to 320 0.264 * * * * [points]: Computing exacts on every 62 of 8000 points to ramp up precision 0.265 * * * * [points]: Setting MPFR precision to 64 0.272 * * * * [points]: Setting MPFR precision to 320 0.279 * * * * [points]: Computing exacts on every 31 of 8000 points to ramp up precision 0.280 * * * * [points]: Setting MPFR precision to 64 0.295 * * * * [points]: Setting MPFR precision to 320 0.309 * * * * [points]: Computing exacts on every 15 of 8000 points to ramp up precision 0.310 * * * * [points]: Setting MPFR precision to 64 0.354 * * * * [points]: Setting MPFR precision to 320 0.437 * * * * [points]: Computing exacts on every 7 of 8000 points to ramp up precision 0.439 * * * * [points]: Setting MPFR precision to 64 0.500 * * * * [points]: Setting MPFR precision to 320 0.592 * * * * [points]: Computing exacts on every 3 of 8000 points to ramp up precision 0.593 * * * * [points]: Setting MPFR precision to 64 0.762 * * * * [points]: Setting MPFR precision to 320 0.971 * * * * [points]: Computing exacts for 8000 points 0.972 * * * * [points]: Setting MPFR precision to 64 1.704 * * * * [points]: Setting MPFR precision to 320 2.796 * * * * [points]: Filtering points with unrepresentable outputs 2.835 * * * * [points]: Sampled 8000 points with exact outputs 3.328 * [regime-testing]: Baseline error score: 64.0 3.332 * [regime-testing]: Oracle error score: 64.0 3.332 * [regime-testing]: End program error score: 0.2919529298561804