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# Source: https://github.com/python/pyperformance
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# License: MIT
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# Calculating some of the digits of π.
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# This benchmark stresses big integer arithmetic.
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# Adapted from code on: http://benchmarksgame.alioth.debian.org/
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def compose(a, b):
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aq, ar, as_, at = a
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bq, br, bs, bt = b
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return (aq * bq, aq * br + ar * bt, as_ * bq + at * bs, as_ * br + at * bt)
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def extract(z, j):
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q, r, s, t = z
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return (q * j + r) // (s * j + t)
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def gen_pi_digits(n):
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z = (1, 0, 0, 1)
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k = 1
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digs = []
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for _ in range(n):
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y = extract(z, 3)
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while y != extract(z, 4):
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z = compose(z, (k, 4 * k + 2, 0, 2 * k + 1))
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k += 1
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y = extract(z, 3)
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z = compose((10, -10 * y, 0, 1), z)
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digs.append(y)
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return digs
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###########################################################################
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# Benchmark interface
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bm_params = {
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(50, 25): (1, 35),
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(100, 100): (1, 65),
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(1000, 1000): (2, 250),
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(5000, 1000): (3, 350),
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}
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def bm_setup(params):
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state = None
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def run():
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nonlocal state
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nloop, ndig = params
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ndig = params[1]
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for _ in range(nloop):
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state = None # free previous result
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state = gen_pi_digits(ndig)
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def result():
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return params[0] * params[1], "".join(str(d) for d in state)
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return run, result
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