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[/] [openrisc/] [trunk/] [gnu-dev/] [or1k-gcc/] [libgo/] [go/] [crypto/] [hmac/] [hmac.go] - Blame information for rev 801

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1 747 jeremybenn
// Copyright 2009 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 hmac implements the Keyed-Hash Message Authentication Code (HMAC) as
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// defined in U.S. Federal Information Processing Standards Publication 198.
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// An HMAC is a cryptographic hash that uses a key to sign a message.
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// The receiver verifies the hash by recomputing it using the same key.
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package hmac
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import (
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        "hash"
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)
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// FIPS 198:
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// http://csrc.nist.gov/publications/fips/fips198/fips-198a.pdf
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// key is zero padded to the block size of the hash function
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// ipad = 0x36 byte repeated for key length
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// opad = 0x5c byte repeated for key length
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// hmac = H([key ^ opad] H([key ^ ipad] text))
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type hmac struct {
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        size         int
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        blocksize    int
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        key, tmp     []byte
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        outer, inner hash.Hash
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}
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func (h *hmac) tmpPad(xor byte) {
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        for i, k := range h.key {
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                h.tmp[i] = xor ^ k
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        }
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        for i := len(h.key); i < h.blocksize; i++ {
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                h.tmp[i] = xor
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        }
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}
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func (h *hmac) Sum(in []byte) []byte {
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        origLen := len(in)
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        in = h.inner.Sum(in)
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        h.tmpPad(0x5c)
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        copy(h.tmp[h.blocksize:], in[origLen:])
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        h.outer.Reset()
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        h.outer.Write(h.tmp)
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        return h.outer.Sum(in[:origLen])
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}
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func (h *hmac) Write(p []byte) (n int, err error) {
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        return h.inner.Write(p)
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}
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func (h *hmac) Size() int { return h.size }
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func (h *hmac) BlockSize() int { return h.blocksize }
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func (h *hmac) Reset() {
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        h.inner.Reset()
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        h.tmpPad(0x36)
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        h.inner.Write(h.tmp[0:h.blocksize])
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}
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// New returns a new HMAC hash using the given hash.Hash type and key.
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func New(h func() hash.Hash, key []byte) hash.Hash {
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        hm := new(hmac)
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        hm.outer = h()
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        hm.inner = h()
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        hm.size = hm.inner.Size()
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        hm.blocksize = hm.inner.BlockSize()
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        hm.tmp = make([]byte, hm.blocksize+hm.size)
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        if len(key) > hm.blocksize {
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                // If key is too big, hash it.
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                hm.outer.Write(key)
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                key = hm.outer.Sum(nil)
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        }
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        hm.key = make([]byte, len(key))
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        copy(hm.key, key)
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        hm.Reset()
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        return hm
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}

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