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https://codeberg.org/forgejo/forgejo.git
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0d8478cff8
- In Go 1.21 the crypto/sha256 [got a massive improvement](https://go.dev/doc/go1.21#crypto/sha256) by utilizing the SHA instructions for AMD64 CPUs, which sha256-simd already was doing. The performance is now on par and I think it's preferable to use the standard library rather than a package when possible. ``` cpu: AMD Ryzen 5 3600X 6-Core Processor │ simd.txt │ go.txt │ │ sec/op │ sec/op vs base │ Hash/8Bytes-12 63.25n ± 1% 73.38n ± 1% +16.02% (p=0.002 n=6) Hash/64Bytes-12 98.73n ± 1% 105.30n ± 1% +6.65% (p=0.002 n=6) Hash/1K-12 567.2n ± 1% 572.8n ± 1% +0.99% (p=0.002 n=6) Hash/8K-12 4.062µ ± 1% 4.062µ ± 1% ~ (p=0.396 n=6) Hash/1M-12 512.1µ ± 0% 510.6µ ± 1% ~ (p=0.485 n=6) Hash/5M-12 2.556m ± 1% 2.564m ± 0% ~ (p=0.093 n=6) Hash/10M-12 5.112m ± 0% 5.127m ± 0% ~ (p=0.093 n=6) geomean 13.82µ 14.27µ +3.28% │ simd.txt │ go.txt │ │ B/s │ B/s vs base │ Hash/8Bytes-12 120.6Mi ± 1% 104.0Mi ± 1% -13.81% (p=0.002 n=6) Hash/64Bytes-12 618.2Mi ± 1% 579.8Mi ± 1% -6.22% (p=0.002 n=6) Hash/1K-12 1.682Gi ± 1% 1.665Gi ± 1% -0.98% (p=0.002 n=6) Hash/8K-12 1.878Gi ± 1% 1.878Gi ± 1% ~ (p=0.310 n=6) Hash/1M-12 1.907Gi ± 0% 1.913Gi ± 1% ~ (p=0.485 n=6) Hash/5M-12 1.911Gi ± 1% 1.904Gi ± 0% ~ (p=0.093 n=6) Hash/10M-12 1.910Gi ± 0% 1.905Gi ± 0% ~ (p=0.093 n=6) geomean 1.066Gi 1.032Gi -3.18% ``` (cherry picked from commitabd94ff5b5
) (cherry picked from commit15e81637ab
) Conflicts: go.mod https://codeberg.org/forgejo/forgejo/pulls/1581 (cherry picked from commit 5caea2d75aeac78fb306f58a3cf7809d5b70c7f2) (cherry picked from commit08da542cce
) (cherry picked from commitd71a8cc9fb
) (cherry picked from commit63c9fc2bee
) (cherry picked from commite1db85d48a
) (cherry picked from commit5e86a5d2d1
)
67 lines
1.6 KiB
Go
67 lines
1.6 KiB
Go
// Copyright 2023 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package hash
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import (
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"crypto/sha256"
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"encoding/hex"
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"strings"
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"code.gitea.io/gitea/modules/log"
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"golang.org/x/crypto/pbkdf2"
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)
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func init() {
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MustRegister("pbkdf2", NewPBKDF2Hasher)
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}
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// PBKDF2Hasher implements PasswordHasher
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// and uses the PBKDF2 key derivation function.
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type PBKDF2Hasher struct {
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iter, keyLen int
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}
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// HashWithSaltBytes a provided password and salt
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func (hasher *PBKDF2Hasher) HashWithSaltBytes(password string, salt []byte) string {
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if hasher == nil {
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return ""
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}
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return hex.EncodeToString(pbkdf2.Key([]byte(password), salt, hasher.iter, hasher.keyLen, sha256.New))
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}
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// NewPBKDF2Hasher is a factory method to create an PBKDF2Hasher
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// config should be either empty or of the form:
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// "<iter>$<keyLen>", where <x> is the string representation
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// of an integer
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func NewPBKDF2Hasher(config string) *PBKDF2Hasher {
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// This default configuration uses the following parameters:
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// iter=10000, keyLen=50.
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// This matches the original configuration for `pbkdf2` prior to storing parameters
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// in the database.
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// THESE VALUES MUST NOT BE CHANGED OR BACKWARDS COMPATIBILITY WILL BREAK
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hasher := &PBKDF2Hasher{
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iter: 10_000,
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keyLen: 50,
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}
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if config == "" {
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return hasher
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}
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vals := strings.SplitN(config, "$", 2)
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if len(vals) != 2 {
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log.Error("invalid pbkdf2 hash spec %s", config)
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return nil
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}
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var err error
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hasher.iter, err = parseIntParam(vals[0], "iter", "pbkdf2", config, nil)
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hasher.keyLen, err = parseIntParam(vals[1], "keyLen", "pbkdf2", config, err)
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if err != nil {
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return nil
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}
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return hasher
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}
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