mirror of https://gogs.blitter.com/RLabs/xs
reorg to separate core KEx and net layer from app
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5
Makefile
5
Makefile
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@ -1,6 +1,7 @@
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.PHONY: clean lib client server passwd
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.PHONY: info clean lib client server passwd
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SUBDIRS = hkexpasswd hkexsh hkexshd
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SUBDIRS = hkexnet herradurakex hkexpasswd hkexsh hkexshd
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LIBS = hkexnet herradurakex
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all: lib client server passwd
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@ -0,0 +1,17 @@
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.PHONY: info clean all lib
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all: lib
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clean:
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go clean .
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lib: info
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go install .
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ifneq ($(MSYSTEM),)
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info:
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@echo "building for Windows (MSYS)"
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else
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info:
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@echo "building for Linux"
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endif
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@ -15,7 +15,7 @@
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// distribution)
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//
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// golang implementation by Russ Magee (rmagee_at_gmail.com)
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package hkexsh
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package hkex
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/* Herradura - a Key exchange scheme in the style of Diffie-Hellman Key Exchange.
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Copyright (C) 2017 Omar Alejandro Herrera Reyna
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@ -52,7 +52,7 @@ type HerraduraKEx struct {
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randctx *rand.Rand
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a *big.Int
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b *big.Int
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d, PeerD *big.Int
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d, peerD *big.Int
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fa *big.Int
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}
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@ -148,22 +148,37 @@ func (h *HerraduraKEx) fscxRevolve(x, y *big.Int, passes int) (result *big.Int)
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// D returns the D (FSCX Revolved) value, input to generate FA
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// (the value for peer KEx)
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func (h *HerraduraKEx) D() *big.Int {
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func (h HerraduraKEx) D() *big.Int {
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return h.d
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}
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// FA returns the FA value, which must be sent to peer for KEx.
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func (h *HerraduraKEx) FA() {
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h.fa = h.fscxRevolve(h.PeerD, h.b, h.intSz-h.pubSz)
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// PeerD returns the peer D value
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func (h HerraduraKEx) PeerD() *big.Int {
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return h.peerD
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}
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// SetPeerD stores the received peer's D value (contents, not ptr)
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func (h *HerraduraKEx) SetPeerD(pd *big.Int) {
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*h.peerD = *pd
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}
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// ComputeFA computes the FA value, which must be sent to peer for KEx.
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func (h *HerraduraKEx) ComputeFA() {
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h.fa = h.fscxRevolve(h.peerD, h.b, h.intSz-h.pubSz)
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h.fa.Xor(h.fa, h.a)
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}
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// FA returns the computed FA value
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func (h HerraduraKEx) FA() *big.Int {
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return h.fa
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}
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// Output HerraduraKEx type value as a string. Implements Stringer interface.
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func (h *HerraduraKEx) String() string {
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return fmt.Sprintf("s:%d p:%d\na:%s\nb:%s\nd:->%s\n<-PeerD:%s\nfa:%s",
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return fmt.Sprintf("s:%d p:%d\na:%s\nb:%s\nd:->%s\n<-peerD:%s\nfa:%s",
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h.intSz, h.pubSz,
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h.a.Text(16), h.b.Text(16),
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h.d.Text(16),
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h.PeerD.Text(16),
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h.peerD.Text(16),
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h.fa.Text(16))
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}
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@ -0,0 +1,17 @@
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.PHONY: info clean lib
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all: lib
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clean:
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go clean .
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lib: info
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go install .
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ifneq ($(MSYSTEM),)
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info:
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@echo "Building for Windows (MSYS)"
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else
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info:
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@echo "Building for Linux"
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endif
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@ -1,4 +1,4 @@
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package hkexsh
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package hkexnet
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// Copyright (c) 2017-2018 Russell Magee
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// Licensed under the terms of the MIT license (see LICENSE.mit in this
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@ -7,7 +7,7 @@
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//
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// golang implementation by Russ Magee (rmagee_at_gmail.com)
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package hkexsh
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package hkexnet
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// Implementation of HKEx-wrapped versions of the golang standard
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// net package interfaces, allowing clients and servers to simply replace
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@ -30,6 +30,8 @@ import (
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"strings"
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"sync"
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"time"
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"blitter.com/go/hkexsh/herradurakex"
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)
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const (
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@ -59,7 +61,7 @@ type ChaffConfig struct {
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type Conn struct {
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m *sync.Mutex
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c net.Conn // which also implements io.Reader, io.Writer, ...
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h *HerraduraKEx
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h *hkex.HerraduraKEx
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cipheropts uint32 // post-KEx cipher/hmac options
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opts uint32 // post-KEx protocol options (caller-defined)
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WinCh chan WinSize
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@ -166,12 +168,12 @@ func Dial(protocol string, ipport string, extensions ...string) (hc *Conn, err e
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return nil, err
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}
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// Init hkexnet.Conn hc over net.Conn c
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hc = &Conn{m: &sync.Mutex{}, c: c, closeStat: new(uint8), h: New(0, 0), dBuf: new(bytes.Buffer)}
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hc = &Conn{m: &sync.Mutex{}, c: c, closeStat: new(uint8), h: hkex.New(0, 0), dBuf: new(bytes.Buffer)}
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hc.applyConnExtensions(extensions...)
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// Send hkexnet.Conn parameters to remote side
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// d is value for Herradura key exchange
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fmt.Fprintf(c, "0x%s\n%08x:%08x\n", hc.h.d.Text(16),
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fmt.Fprintf(c, "0x%s\n%08x:%08x\n", hc.h.D().Text(16),
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hc.cipheropts, hc.opts)
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d := big.NewInt(0)
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@ -179,20 +181,21 @@ func Dial(protocol string, ipport string, extensions ...string) (hc *Conn, err e
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if err != nil {
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return nil, err
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}
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// Read peer D over net.Conn (c)
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_, err = fmt.Fscanf(c, "%08x:%08x\n",
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&hc.cipheropts, &hc.opts)
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if err != nil {
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return nil, err
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}
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hc.h.PeerD = d
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log.Printf("** D:%s\n", hc.h.d.Text(16))
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log.Printf("**(c)** peerD:%s\n", hc.h.PeerD.Text(16))
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hc.h.FA()
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log.Printf("**(c)** FA:%s\n", hc.h.fa)
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hc.h.SetPeerD(d)
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log.Printf("** local D:%s\n", hc.h.D().Text(16))
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log.Printf("**(c)** peer D:%s\n", hc.h.PeerD().Text(16))
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hc.h.ComputeFA()
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log.Printf("**(c)** FA:%s\n", hc.h.FA())
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hc.r, hc.rm, err = hc.getStream(hc.h.fa)
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hc.w, hc.wm, err = hc.getStream(hc.h.fa)
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hc.r, hc.rm, err = hc.getStream(hc.h.FA())
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hc.w, hc.wm, err = hc.getStream(hc.h.FA())
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*hc.closeStat = 99 // open or prematurely-closed status
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return
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@ -304,7 +307,7 @@ func (hl HKExListener) Accept() (hc Conn, err error) {
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}
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log.Println("[Accepted]")
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hc = Conn{m: &sync.Mutex{}, c: c, h: New(0, 0), closeStat: new(uint8), WinCh: make(chan WinSize, 1),
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hc = Conn{m: &sync.Mutex{}, c: c, h: hkex.New(0, 0), closeStat: new(uint8), WinCh: make(chan WinSize, 1),
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dBuf: new(bytes.Buffer)}
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// Read in hkexnet.Conn parameters over raw Conn c
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@ -321,17 +324,18 @@ func (hl HKExListener) Accept() (hc Conn, err error) {
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if err != nil {
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return hc, err
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}
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hc.h.PeerD = d
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log.Printf("** D:%s\n", hc.h.d.Text(16))
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log.Printf("**(s)** peerD:%s\n", hc.h.PeerD.Text(16))
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hc.h.SetPeerD(d)
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log.Printf("** D:%s\n", hc.h.D().Text(16))
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log.Printf("**(s)** peerD:%s\n", hc.h.PeerD().Text(16))
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hc.h.FA()
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log.Printf("**(s)** FA:%s\n", hc.h.fa)
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log.Printf("**(s)** FA:%s\n", hc.h.FA())
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fmt.Fprintf(c, "0x%s\n%08x:%08x\n", hc.h.d.Text(16),
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// Send D and cipheropts/conn_opts to peer
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fmt.Fprintf(c, "0x%s\n%08x:%08x\n", hc.h.D().Text(16),
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hc.cipheropts, hc.opts)
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hc.r, hc.rm, err = hc.getStream(hc.h.fa)
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hc.w, hc.wm, err = hc.getStream(hc.h.fa)
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hc.r, hc.rm, err = hc.getStream(hc.h.FA())
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hc.w, hc.wm, err = hc.getStream(hc.h.FA())
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return
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}
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