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authorRaymond Hettinger <rhettinger@users.noreply.github.com>2023-09-09 22:50:04 (GMT)
committerGitHub <noreply@github.com>2023-09-09 22:50:04 (GMT)
commitd3ed9921cdd8ac291fbfe3adf42f7730d3a14dbc (patch)
tree7abe0c058bca15aa8eab8374b4117b5356918127
parent75cd86599bad05cb372aed9fccc3ff884cd38b70 (diff)
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Improve the sieve() recipe in the itertools docs (gh-109199)
Lazier sieve
-rw-r--r--Doc/library/itertools.rst11
1 files changed, 7 insertions, 4 deletions
diff --git a/Doc/library/itertools.rst b/Doc/library/itertools.rst
index 4224371..3cfc260 100644
--- a/Doc/library/itertools.rst
+++ b/Doc/library/itertools.rst
@@ -1030,13 +1030,16 @@ The following recipes have a more mathematical flavor:
def sieve(n):
"Primes less than n."
# sieve(30) --> 2 3 5 7 11 13 17 19 23 29
+ if n > 2:
+ yield 2
+ start = 3
data = bytearray((0, 1)) * (n // 2)
- data[:3] = 0, 0, 0
limit = math.isqrt(n) + 1
- for p in compress(range(limit), data):
+ for p in iter_index(data, 1, start, limit):
+ yield from iter_index(data, 1, start, p*p)
data[p*p : n : p+p] = bytes(len(range(p*p, n, p+p)))
- data[2] = 1
- return iter_index(data, 1) if n > 2 else iter([])
+ start = p*p
+ yield from iter_index(data, 1, start)
def factor(n):
"Prime factors of n."