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Auto merge of #132883 - LaihoE:vectorized_is_sorted, r=thomcc
vectorize slice::is_sorted Benchmarks using u32 slices: | len | New | Old | |--------|----------------------|----------------------| | 2 | 1.1997 ns | 889.23 ps | | 4 | 1.6479 ns | 1.5396 ns | | 8 | 2.5764 ns | 2.5633 ns | | 16 | 5.4750 ns | 4.7421 ns | | 32 | 11.344 ns | 8.4634 ns | | 64 | 12.105 ns | 18.104 ns | | 128 | 17.263 ns | 33.185 ns | | 256 | 29.465 ns | 60.928 ns | | 512 | 48.926 ns | 116.19 ns | | 1024 | 85.274 ns | 237.91 ns | | 2048 | 160.94 ns | 469.53 ns | | 4096 | 311.60 ns | 911.43 ns | | 8192 | 615.89 ns | 2.2316 µs | | 16384 | 1.2619 µs | 3.4871 µs | | 32768 | 2.5245 µs | 6.9947 µs | | 65536 | 5.2254 µs | 15.212 µs | Seems to be a bit slower on small N but much faster on large N. Godbolt: https://rust.godbolt.org/z/Txn5MdfKn
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@ -4097,7 +4097,23 @@ impl<T> [T] {
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where
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where
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T: PartialOrd,
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T: PartialOrd,
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{
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{
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self.is_sorted_by(|a, b| a <= b)
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// This odd number works the best. 32 + 1 extra due to overlapping chunk boundaries.
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const CHUNK_SIZE: usize = 33;
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if self.len() < CHUNK_SIZE {
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return self.windows(2).all(|w| w[0] <= w[1]);
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}
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let mut i = 0;
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// Check in chunks for autovectorization.
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while i < self.len() - CHUNK_SIZE {
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let chunk = &self[i..i + CHUNK_SIZE];
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if !chunk.windows(2).fold(true, |acc, w| acc & (w[0] <= w[1])) {
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return false;
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}
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// We need to ensure that chunk boundaries are also sorted.
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// Overlap the next chunk with the last element of our last chunk.
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i += CHUNK_SIZE - 1;
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}
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self[i..].windows(2).all(|w| w[0] <= w[1])
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}
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}
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/// Checks if the elements of this slice are sorted using the given comparator function.
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/// Checks if the elements of this slice are sorted using the given comparator function.
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