mirror of https://github.com/python/cpython.git
Itertools sieve() recipe (GH-96813) (GH-96814)
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@ -314,7 +314,7 @@ loops that truncate the stream.
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def count(start=0, step=1):
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# count(10) --> 10 11 12 13 14 ...
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# count(2.5, 0.5) -> 2.5 3.0 3.5 ...
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# count(2.5, 0.5) --> 2.5 3.0 3.5 ...
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n = start
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while True:
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yield n
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@ -739,7 +739,7 @@ which incur interpreter overhead.
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def prepend(value, iterator):
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"Prepend a single value in front of an iterator"
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# prepend(1, [2, 3, 4]) -> 1 2 3 4
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# prepend(1, [2, 3, 4]) --> 1 2 3 4
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return chain([value], iterator)
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def tabulate(function, start=0):
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@ -812,6 +812,16 @@ which incur interpreter overhead.
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for k in range(len(roots) + 1)
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]
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def sieve(n):
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"Primes less than n"
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# sieve(30) --> 2 3 5 7 11 13 17 19 23 29
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data = bytearray([1]) * n
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data[:2] = 0, 0
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limit = math.isqrt(n) + 1
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for p in compress(count(), islice(data, limit)):
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data[p+p : n : p] = bytearray(len(range(p+p, n, p)))
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return compress(count(), data)
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def flatten(list_of_lists):
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"Flatten one level of nesting"
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return chain.from_iterable(list_of_lists)
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@ -842,12 +852,12 @@ which incur interpreter overhead.
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def triplewise(iterable):
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"Return overlapping triplets from an iterable"
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# triplewise('ABCDEFG') -> ABC BCD CDE DEF EFG
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# triplewise('ABCDEFG') --> ABC BCD CDE DEF EFG
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for (a, _), (b, c) in pairwise(pairwise(iterable)):
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yield a, b, c
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def sliding_window(iterable, n):
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# sliding_window('ABCDEFG', 4) -> ABCD BCDE CDEF DEFG
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# sliding_window('ABCDEFG', 4) --> ABCD BCDE CDEF DEFG
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it = iter(iterable)
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window = collections.deque(islice(it, n), maxlen=n)
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if len(window) == n:
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@ -1079,6 +1089,7 @@ which incur interpreter overhead.
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>>> import operator
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>>> import collections
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>>> import math
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>>> import random
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>>> take(10, count())
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[0, 1, 2, 3, 4, 5, 6, 7, 8, 9]
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@ -1128,7 +1139,6 @@ which incur interpreter overhead.
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>>> list(repeatfunc(pow, 5, 2, 3))
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[8, 8, 8, 8, 8]
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>>> import random
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>>> take(5, map(int, repeatfunc(random.random)))
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[0, 0, 0, 0, 0]
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@ -1156,10 +1166,22 @@ which incur interpreter overhead.
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>>> all(factored(x) == expanded(x) for x in range(-10, 11))
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True
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>>> list(sieve(30))
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[2, 3, 5, 7, 11, 13, 17, 19, 23, 29]
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>>> len(list(sieve(100)))
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25
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>>> len(list(sieve(1_000)))
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168
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>>> len(list(sieve(10_000)))
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1229
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>>> len(list(sieve(100_000)))
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9592
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>>> len(list(sieve(1_000_000)))
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78498
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>>> list(flatten([('a', 'b'), (), ('c', 'd', 'e'), ('f',), ('g', 'h', 'i')]))
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['a', 'b', 'c', 'd', 'e', 'f', 'g', 'h', 'i']
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>>> import random
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>>> random.seed(85753098575309)
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>>> list(repeatfunc(random.random, 3))
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[0.16370491282496968, 0.45889608687313455, 0.3747076837820118]
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