Use upstream's xchacha20poly1305
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										19
									
								
								cookie.go
									
									
									
									
									
								
							@ -8,7 +8,6 @@ package main
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import (
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	"crypto/hmac"
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	"crypto/rand"
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	"git.zx2c4.com/wireguard-go/xchacha20poly1305"
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	"golang.org/x/crypto/blake2s"
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	"golang.org/x/crypto/chacha20poly1305"
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	"sync"
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@ -163,13 +162,8 @@ func (st *CookieChecker) CreateReply(
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		return nil, err
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	}
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	xchacha20poly1305.Encrypt(
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		reply.Cookie[:0],
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		&reply.Nonce,
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		cookie[:],
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		msg[smac1:smac2],
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		&st.mac2.encryptionKey,
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	)
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	xchapoly, _ := chacha20poly1305.NewX(st.mac2.encryptionKey[:])
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	xchapoly.Seal(reply.Cookie[:0], reply.Nonce[:], cookie[:], msg[smac1:smac2])
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	st.mutex.RUnlock()
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@ -207,13 +201,8 @@ func (st *CookieGenerator) ConsumeReply(msg *MessageCookieReply) bool {
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	var cookie [blake2s.Size128]byte
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	_, err := xchacha20poly1305.Decrypt(
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		cookie[:0],
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		&msg.Nonce,
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		msg.Cookie[:],
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		st.mac2.lastMAC1[:],
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		&st.mac2.encryptionKey,
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	)
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	xchapoly, _ := chacha20poly1305.NewX(st.mac2.encryptionKey[:])
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	_, err := xchapoly.Open(cookie[:0], msg.Nonce[:], msg.Cookie[:], st.mac2.lastMAC1[:])
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	if err != nil {
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		return false
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@ -89,7 +89,7 @@ type MessageTransport struct {
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type MessageCookieReply struct {
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	Type     uint32
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	Receiver uint32
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	Nonce    [24]byte
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	Nonce    [chacha20poly1305.NonceSizeX]byte
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	Cookie   [blake2s.Size128 + poly1305.TagSize]byte
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}
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@ -1,171 +0,0 @@
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/* SPDX-License-Identifier: MIT
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 *
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 * Copyright (C) 2016 Andreas Auernhammer. All Rights Reserved.
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 * Copyright (C) 2017-2018 WireGuard LLC. All Rights Reserved.
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 */
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package xchacha20poly1305
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import (
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	"encoding/binary"
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	"golang.org/x/crypto/chacha20poly1305"
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)
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func hChaCha20(out *[32]byte, nonce []byte, key *[32]byte) {
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	v00 := uint32(0x61707865)
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	v01 := uint32(0x3320646e)
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	v02 := uint32(0x79622d32)
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	v03 := uint32(0x6b206574)
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	v04 := binary.LittleEndian.Uint32(key[0:])
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	v05 := binary.LittleEndian.Uint32(key[4:])
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	v06 := binary.LittleEndian.Uint32(key[8:])
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	v07 := binary.LittleEndian.Uint32(key[12:])
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	v08 := binary.LittleEndian.Uint32(key[16:])
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	v09 := binary.LittleEndian.Uint32(key[20:])
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	v10 := binary.LittleEndian.Uint32(key[24:])
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	v11 := binary.LittleEndian.Uint32(key[28:])
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	v12 := binary.LittleEndian.Uint32(nonce[0:])
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	v13 := binary.LittleEndian.Uint32(nonce[4:])
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	v14 := binary.LittleEndian.Uint32(nonce[8:])
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	v15 := binary.LittleEndian.Uint32(nonce[12:])
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	for i := 0; i < 20; i += 2 {
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		v00 += v04
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		v12 ^= v00
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		v12 = (v12 << 16) | (v12 >> 16)
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		v08 += v12
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		v04 ^= v08
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		v04 = (v04 << 12) | (v04 >> 20)
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		v00 += v04
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		v12 ^= v00
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		v12 = (v12 << 8) | (v12 >> 24)
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		v08 += v12
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		v04 ^= v08
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		v04 = (v04 << 7) | (v04 >> 25)
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		v01 += v05
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		v13 ^= v01
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		v13 = (v13 << 16) | (v13 >> 16)
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		v09 += v13
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		v05 ^= v09
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		v05 = (v05 << 12) | (v05 >> 20)
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		v01 += v05
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		v13 ^= v01
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		v13 = (v13 << 8) | (v13 >> 24)
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		v09 += v13
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		v05 ^= v09
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		v05 = (v05 << 7) | (v05 >> 25)
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		v02 += v06
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		v14 ^= v02
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		v14 = (v14 << 16) | (v14 >> 16)
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		v10 += v14
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		v06 ^= v10
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		v06 = (v06 << 12) | (v06 >> 20)
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		v02 += v06
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		v14 ^= v02
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		v14 = (v14 << 8) | (v14 >> 24)
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		v10 += v14
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		v06 ^= v10
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		v06 = (v06 << 7) | (v06 >> 25)
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		v03 += v07
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		v15 ^= v03
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		v15 = (v15 << 16) | (v15 >> 16)
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		v11 += v15
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		v07 ^= v11
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		v07 = (v07 << 12) | (v07 >> 20)
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		v03 += v07
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		v15 ^= v03
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		v15 = (v15 << 8) | (v15 >> 24)
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		v11 += v15
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		v07 ^= v11
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		v07 = (v07 << 7) | (v07 >> 25)
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		v00 += v05
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		v15 ^= v00
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		v15 = (v15 << 16) | (v15 >> 16)
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		v10 += v15
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		v05 ^= v10
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		v05 = (v05 << 12) | (v05 >> 20)
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		v00 += v05
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		v15 ^= v00
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		v15 = (v15 << 8) | (v15 >> 24)
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		v10 += v15
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		v05 ^= v10
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		v05 = (v05 << 7) | (v05 >> 25)
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		v01 += v06
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		v12 ^= v01
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		v12 = (v12 << 16) | (v12 >> 16)
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		v11 += v12
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		v06 ^= v11
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		v06 = (v06 << 12) | (v06 >> 20)
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		v01 += v06
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		v12 ^= v01
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		v12 = (v12 << 8) | (v12 >> 24)
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		v11 += v12
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		v06 ^= v11
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		v06 = (v06 << 7) | (v06 >> 25)
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		v02 += v07
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		v13 ^= v02
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		v13 = (v13 << 16) | (v13 >> 16)
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		v08 += v13
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		v07 ^= v08
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		v07 = (v07 << 12) | (v07 >> 20)
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		v02 += v07
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		v13 ^= v02
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		v13 = (v13 << 8) | (v13 >> 24)
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		v08 += v13
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		v07 ^= v08
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		v07 = (v07 << 7) | (v07 >> 25)
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		v03 += v04
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		v14 ^= v03
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		v14 = (v14 << 16) | (v14 >> 16)
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		v09 += v14
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		v04 ^= v09
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		v04 = (v04 << 12) | (v04 >> 20)
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		v03 += v04
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		v14 ^= v03
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		v14 = (v14 << 8) | (v14 >> 24)
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		v09 += v14
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		v04 ^= v09
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		v04 = (v04 << 7) | (v04 >> 25)
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	}
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	binary.LittleEndian.PutUint32(out[0:], v00)
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	binary.LittleEndian.PutUint32(out[4:], v01)
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	binary.LittleEndian.PutUint32(out[8:], v02)
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	binary.LittleEndian.PutUint32(out[12:], v03)
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	binary.LittleEndian.PutUint32(out[16:], v12)
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	binary.LittleEndian.PutUint32(out[20:], v13)
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	binary.LittleEndian.PutUint32(out[24:], v14)
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	binary.LittleEndian.PutUint32(out[28:], v15)
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}
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func Encrypt(
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	dst []byte,
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	nonceFull *[24]byte,
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	plaintext []byte,
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	additionalData []byte,
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	key *[chacha20poly1305.KeySize]byte,
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) []byte {
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	var nonce [chacha20poly1305.NonceSize]byte
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	var derivedKey [chacha20poly1305.KeySize]byte
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	hChaCha20(&derivedKey, nonceFull[:16], key)
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	aead, _ := chacha20poly1305.New(derivedKey[:])
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	copy(nonce[4:], nonceFull[16:])
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	return aead.Seal(dst, nonce[:], plaintext, additionalData)
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}
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func Decrypt(
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	dst []byte,
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	nonceFull *[24]byte,
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	plaintext []byte,
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	additionalData []byte,
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	key *[chacha20poly1305.KeySize]byte,
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) ([]byte, error) {
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	var nonce [chacha20poly1305.NonceSize]byte
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	var derivedKey [chacha20poly1305.KeySize]byte
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	hChaCha20(&derivedKey, nonceFull[:16], key)
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	aead, _ := chacha20poly1305.New(derivedKey[:])
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	copy(nonce[4:], nonceFull[16:])
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	return aead.Open(dst, nonce[:], plaintext, additionalData)
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}
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@ -1,101 +0,0 @@
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/* SPDX-License-Identifier: GPL-2.0
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 *
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 * Copyright (C) 2017-2018 WireGuard LLC. All Rights Reserved.
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 */
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package xchacha20poly1305
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import (
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	"encoding/hex"
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	"testing"
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)
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type XChaCha20Test struct {
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	Nonce string
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	Key   string
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	PT    string
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	CT    string
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}
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func TestXChaCha20(t *testing.T) {
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	tests := []XChaCha20Test{
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		{
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			Nonce: "000000000000000000000000000000000000000000000000",
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			Key:   "0000000000000000000000000000000000000000000000000000000000000000",
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			PT:    "00000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000",
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			CT:    "789e9689e5208d7fd9e1f3c5b5341f48ef18a13e418998addadd97a3693a987f8e82ecd5c1433bfed1af49750c0f1ff29c4174a05b119aa3a9e8333812e0c0feb1299c5949d895ee01dbf50f8395dd84",
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		},
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		{
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			Nonce: "0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f",
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			Key:   "0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f",
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			PT:    "0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f",
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			CT:    "e1a046aa7f71e2af8b80b6408b2fd8d3a350278cde79c94d9efaa475e1339b3dd490127b",
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		},
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		{
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			Nonce: "d9a8213e8a697508805c2c171ad54487ead9e3e02d82d5bc",
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			Key:   "979196dbd78526f2f584f7534db3f5824d8ccfa858ca7e09bdd3656ecd36033c",
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			PT:    "43cc6d624e451bbed952c3e071dc6c03392ce11eb14316a94b2fdc98b22fedea",
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			CT:    "53c1e8bef2dbb8f2505ec010a7afe21d5a8e6dd8f987e4ea1a2ed5dfbc844ea400db34496fd2153526c6e87c36694200",
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		},
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	}
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	for _, test := range tests {
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		nonce, err := hex.DecodeString(test.Nonce)
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		if err != nil {
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			panic(err)
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		}
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		key, err := hex.DecodeString(test.Key)
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		if err != nil {
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			panic(err)
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		}
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		pt, err := hex.DecodeString(test.PT)
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		if err != nil {
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			panic(err)
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		}
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		func() {
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			var nonceArray [24]byte
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			var keyArray [32]byte
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			copy(nonceArray[:], nonce)
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			copy(keyArray[:], key)
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			// test encryption
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			ct := Encrypt(
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				nil,
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				&nonceArray,
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				pt,
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				nil,
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				&keyArray,
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			)
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			ctHex := hex.EncodeToString(ct)
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			if ctHex != test.CT {
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				t.Fatal("encryption failed, expected:", test.CT, "got", ctHex)
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			}
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			// test decryption
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			ptp, err := Decrypt(
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				nil,
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				&nonceArray,
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				ct,
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				nil,
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				&keyArray,
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			)
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			if err != nil {
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				t.Fatal(err)
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			}
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			ptHex := hex.EncodeToString(ptp)
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			if ptHex != test.PT {
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				t.Fatal("decryption failed, expected:", test.PT, "got", ptHex)
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			}
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		}()
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	}
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}
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