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runtime: specialize memhash32 and memhash64
AMD64 with AES support disabled: name old time/op new time/op delta MapPopulate/1 78.0ns ± 1% 75.5ns ± 1% -3.17% (p=0.000 n=10+9) MapPopulate/10 764ns ± 2% 673ns ± 2% -11.91% (p=0.000 n=10+10) MapPopulate/100 9.52µs ± 1% 8.54µs ± 1% -10.37% (p=0.000 n=8+10) MapPopulate/1000 116µs ± 2% 103µs ± 1% -10.40% (p=0.000 n=10+8) MapPopulate/10000 1.01ms ± 1% 0.90ms ± 1% -10.70% (p=0.000 n=10+10) MapPopulate/100000 9.81ms ± 1% 8.67ms ± 2% -11.54% (p=0.000 n=10+10) 386 with AES support disabled: name old time/op new time/op delta MapPopulate/1 95.3ns ± 1% 90.6ns ± 1% -4.95% (p=0.000 n=10+9) MapPopulate/10 983ns ± 2% 912ns ± 1% -7.18% (p=0.000 n=10+10) MapPopulate/100 11.9µs ± 2% 11.2µs ± 1% -6.01% (p=0.000 n=10+10) MapPopulate/1000 140µs ± 1% 131µs ± 1% -6.19% (p=0.000 n=10+10) MapPopulate/10000 1.26ms ± 2% 1.18ms ± 1% -5.93% (p=0.000 n=9+10) MapPopulate/100000 12.1ms ± 2% 11.4ms ± 1% -5.48% (p=0.000 n=10+10) Fixes #21539 Change-Id: Ice128c947c9a6a294800d6a5250d82045eb70b55 Reviewed-on: https://go-review.googlesource.com/59352 Run-TryBot: Martin Möhrmann <moehrmann@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Keith Randall <khr@golang.org>
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@ -47,18 +47,15 @@ type typeAlg struct {
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func memhash0(p unsafe.Pointer, h uintptr) uintptr {
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return h
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}
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func memhash8(p unsafe.Pointer, h uintptr) uintptr {
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return memhash(p, h, 1)
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}
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func memhash16(p unsafe.Pointer, h uintptr) uintptr {
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return memhash(p, h, 2)
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}
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func memhash32(p unsafe.Pointer, h uintptr) uintptr {
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return memhash(p, h, 4)
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}
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func memhash64(p unsafe.Pointer, h uintptr) uintptr {
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return memhash(p, h, 8)
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}
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func memhash128(p unsafe.Pointer, h uintptr) uintptr {
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return memhash(p, h, 16)
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}
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@ -152,12 +152,19 @@ func RunSchedLocalQueueEmptyTest(iters int) {
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}
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}
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var StringHash = stringHash
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var BytesHash = bytesHash
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var Int32Hash = int32Hash
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var Int64Hash = int64Hash
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var EfaceHash = efaceHash
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var IfaceHash = ifaceHash
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var (
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StringHash = stringHash
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BytesHash = bytesHash
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Int32Hash = int32Hash
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Int64Hash = int64Hash
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MemHash = memhash
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MemHash32 = memhash32
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MemHash64 = memhash64
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EfaceHash = efaceHash
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IfaceHash = ifaceHash
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)
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var UseAeshash = &useAeshash
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func MemclrBytes(b []byte) {
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s := (*slice)(unsafe.Pointer(&b))
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@ -81,6 +81,32 @@ tail:
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return uintptr(h)
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}
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func memhash32(p unsafe.Pointer, seed uintptr) uintptr {
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h := uint32(seed + 4*hashkey[0])
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h ^= readUnaligned32(p)
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h = rotl_15(h*m1) * m2
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h ^= h >> 17
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h *= m3
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h ^= h >> 13
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h *= m4
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h ^= h >> 16
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return uintptr(h)
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}
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func memhash64(p unsafe.Pointer, seed uintptr) uintptr {
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h := uint32(seed + 8*hashkey[0])
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h ^= readUnaligned32(p)
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h = rotl_15(h*m1) * m2
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h ^= readUnaligned32(add(p, 4))
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h = rotl_15(h*m1) * m2
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h ^= h >> 17
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h *= m3
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h ^= h >> 13
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h *= m4
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h ^= h >> 16
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return uintptr(h)
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}
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// Note: in order to get the compiler to issue rotl instructions, we
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// need to constant fold the shift amount by hand.
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// TODO: convince the compiler to issue rotl instructions after inlining.
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@ -81,6 +81,28 @@ tail:
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return uintptr(h)
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}
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func memhash32(p unsafe.Pointer, seed uintptr) uintptr {
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h := uint64(seed + 4*hashkey[0])
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v := uint64(readUnaligned32(p))
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h ^= v
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h ^= v << 32
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h = rotl_31(h*m1) * m2
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h ^= h >> 29
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h *= m3
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h ^= h >> 32
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return uintptr(h)
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}
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func memhash64(p unsafe.Pointer, seed uintptr) uintptr {
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h := uint64(seed + 8*hashkey[0])
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h ^= readUnaligned64(p)
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h = rotl_31(h*m1) * m2
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h ^= h >> 29
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h *= m3
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h ^= h >> 32
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return uintptr(h)
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}
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// Note: in order to get the compiler to issue rotl instructions, we
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// need to constant fold the shift amount by hand.
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// TODO: convince the compiler to issue rotl instructions after inlining.
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@ -14,6 +14,40 @@ import (
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"unsafe"
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)
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func TestMemHash32Equality(t *testing.T) {
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if *UseAeshash {
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t.Skip("skipping since AES hash implementation is used")
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}
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var b [4]byte
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r := rand.New(rand.NewSource(1234))
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seed := uintptr(r.Uint64())
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for i := 0; i < 100; i++ {
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randBytes(r, b[:])
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got := MemHash32(unsafe.Pointer(&b), seed)
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want := MemHash(unsafe.Pointer(&b), seed, 4)
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if got != want {
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t.Errorf("MemHash32(%x, %v) = %v; want %v", b, seed, got, want)
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}
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}
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}
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func TestMemHash64Equality(t *testing.T) {
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if *UseAeshash {
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t.Skip("skipping since AES hash implementation is used")
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}
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var b [8]byte
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r := rand.New(rand.NewSource(1234))
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seed := uintptr(r.Uint64())
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for i := 0; i < 100; i++ {
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randBytes(r, b[:])
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got := MemHash64(unsafe.Pointer(&b), seed)
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want := MemHash(unsafe.Pointer(&b), seed, 8)
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if got != want {
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t.Errorf("MemHash64(%x, %v) = %v; want %v", b, seed, got, want)
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}
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}
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}
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// Smhasher is a torture test for hash functions.
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// https://code.google.com/p/smhasher/
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// This code is a port of some of the Smhasher tests to Go.
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