feat: gitea client
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128
vendor/golang.org/x/crypto/sha3/hashes.go
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128
vendor/golang.org/x/crypto/sha3/hashes.go
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// Copyright 2014 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package sha3
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// This file provides functions for creating instances of the SHA-3
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// and SHAKE hash functions, as well as utility functions for hashing
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// bytes.
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import (
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"crypto"
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"hash"
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)
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// New224 creates a new SHA3-224 hash.
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// Its generic security strength is 224 bits against preimage attacks,
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// and 112 bits against collision attacks.
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func New224() hash.Hash {
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return new224()
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}
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// New256 creates a new SHA3-256 hash.
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// Its generic security strength is 256 bits against preimage attacks,
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// and 128 bits against collision attacks.
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func New256() hash.Hash {
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return new256()
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}
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// New384 creates a new SHA3-384 hash.
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// Its generic security strength is 384 bits against preimage attacks,
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// and 192 bits against collision attacks.
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func New384() hash.Hash {
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return new384()
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}
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// New512 creates a new SHA3-512 hash.
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// Its generic security strength is 512 bits against preimage attacks,
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// and 256 bits against collision attacks.
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func New512() hash.Hash {
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return new512()
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}
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func init() {
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crypto.RegisterHash(crypto.SHA3_224, New224)
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crypto.RegisterHash(crypto.SHA3_256, New256)
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crypto.RegisterHash(crypto.SHA3_384, New384)
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crypto.RegisterHash(crypto.SHA3_512, New512)
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}
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const (
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dsbyteSHA3 = 0b00000110
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dsbyteKeccak = 0b00000001
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dsbyteShake = 0b00011111
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dsbyteCShake = 0b00000100
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// rateK[c] is the rate in bytes for Keccak[c] where c is the capacity in
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// bits. Given the sponge size is 1600 bits, the rate is 1600 - c bits.
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rateK256 = (1600 - 256) / 8
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rateK448 = (1600 - 448) / 8
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rateK512 = (1600 - 512) / 8
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rateK768 = (1600 - 768) / 8
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rateK1024 = (1600 - 1024) / 8
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)
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func new224Generic() *state {
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return &state{rate: rateK448, outputLen: 28, dsbyte: dsbyteSHA3}
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}
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func new256Generic() *state {
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return &state{rate: rateK512, outputLen: 32, dsbyte: dsbyteSHA3}
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}
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func new384Generic() *state {
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return &state{rate: rateK768, outputLen: 48, dsbyte: dsbyteSHA3}
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}
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func new512Generic() *state {
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return &state{rate: rateK1024, outputLen: 64, dsbyte: dsbyteSHA3}
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}
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// NewLegacyKeccak256 creates a new Keccak-256 hash.
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//
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// Only use this function if you require compatibility with an existing cryptosystem
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// that uses non-standard padding. All other users should use New256 instead.
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func NewLegacyKeccak256() hash.Hash {
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return &state{rate: rateK512, outputLen: 32, dsbyte: dsbyteKeccak}
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}
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// NewLegacyKeccak512 creates a new Keccak-512 hash.
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//
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// Only use this function if you require compatibility with an existing cryptosystem
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// that uses non-standard padding. All other users should use New512 instead.
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func NewLegacyKeccak512() hash.Hash {
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return &state{rate: rateK1024, outputLen: 64, dsbyte: dsbyteKeccak}
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}
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// Sum224 returns the SHA3-224 digest of the data.
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func Sum224(data []byte) (digest [28]byte) {
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h := New224()
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h.Write(data)
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h.Sum(digest[:0])
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return
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}
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// Sum256 returns the SHA3-256 digest of the data.
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func Sum256(data []byte) (digest [32]byte) {
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h := New256()
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h.Write(data)
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h.Sum(digest[:0])
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return
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}
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// Sum384 returns the SHA3-384 digest of the data.
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func Sum384(data []byte) (digest [48]byte) {
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h := New384()
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h.Write(data)
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h.Sum(digest[:0])
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return
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}
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// Sum512 returns the SHA3-512 digest of the data.
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func Sum512(data []byte) (digest [64]byte) {
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h := New512()
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h.Write(data)
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h.Sum(digest[:0])
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return
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}
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