2018-06-20 07:06:27 -05:00
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// Copyright 2018 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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// +build !nopssprotocol
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package pss
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import (
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"bytes"
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"fmt"
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"sync"
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"time"
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"github.com/ethereum/go-ethereum/p2p"
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"github.com/ethereum/go-ethereum/p2p/protocols"
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"github.com/ethereum/go-ethereum/rlp"
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"github.com/ethereum/go-ethereum/swarm/log"
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)
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const (
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IsActiveProtocol = true
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)
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// Convenience wrapper for devp2p protocol messages for transport over pss
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type ProtocolMsg struct {
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Code uint64
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Size uint32
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Payload []byte
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ReceivedAt time.Time
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}
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// Creates a ProtocolMsg
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func NewProtocolMsg(code uint64, msg interface{}) ([]byte, error) {
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rlpdata, err := rlp.EncodeToBytes(msg)
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if err != nil {
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return nil, err
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}
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// TODO verify that nested structs cannot be used in rlp
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smsg := &ProtocolMsg{
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Code: code,
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Size: uint32(len(rlpdata)),
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Payload: rlpdata,
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}
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return rlp.EncodeToBytes(smsg)
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}
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// Protocol options to be passed to a new Protocol instance
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//
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// The parameters specify which encryption schemes to allow
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type ProtocolParams struct {
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Asymmetric bool
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Symmetric bool
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}
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// PssReadWriter bridges pss send/receive with devp2p protocol send/receive
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//
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// Implements p2p.MsgReadWriter
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type PssReadWriter struct {
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*Pss
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LastActive time.Time
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rw chan p2p.Msg
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spec *protocols.Spec
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topic *Topic
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sendFunc func(string, Topic, []byte) error
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key string
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closed bool
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}
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// Implements p2p.MsgReader
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func (prw *PssReadWriter) ReadMsg() (p2p.Msg, error) {
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msg := <-prw.rw
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log.Trace(fmt.Sprintf("pssrw readmsg: %v", msg))
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return msg, nil
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}
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// Implements p2p.MsgWriter
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func (prw *PssReadWriter) WriteMsg(msg p2p.Msg) error {
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log.Trace("pssrw writemsg", "msg", msg)
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if prw.closed {
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return fmt.Errorf("connection closed")
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}
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rlpdata := make([]byte, msg.Size)
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msg.Payload.Read(rlpdata)
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pmsg, err := rlp.EncodeToBytes(ProtocolMsg{
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Code: msg.Code,
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Size: msg.Size,
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Payload: rlpdata,
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})
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if err != nil {
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return err
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}
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return prw.sendFunc(prw.key, *prw.topic, pmsg)
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}
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// Injects a p2p.Msg into the MsgReadWriter, so that it appears on the associated p2p.MsgReader
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func (prw *PssReadWriter) injectMsg(msg p2p.Msg) error {
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log.Trace(fmt.Sprintf("pssrw injectmsg: %v", msg))
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prw.rw <- msg
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return nil
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}
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// Convenience object for emulation devp2p over pss
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type Protocol struct {
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*Pss
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proto *p2p.Protocol
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topic *Topic
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spec *protocols.Spec
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pubKeyRWPool map[string]p2p.MsgReadWriter
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symKeyRWPool map[string]p2p.MsgReadWriter
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Asymmetric bool
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Symmetric bool
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RWPoolMu sync.Mutex
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}
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// Activates devp2p emulation over a specific pss topic
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//
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// One or both encryption schemes must be specified. If
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// only one is specified, the protocol will not be valid
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// for the other, and will make the message handler
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// return errors
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func RegisterProtocol(ps *Pss, topic *Topic, spec *protocols.Spec, targetprotocol *p2p.Protocol, options *ProtocolParams) (*Protocol, error) {
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if !options.Asymmetric && !options.Symmetric {
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return nil, fmt.Errorf("specify at least one of asymmetric or symmetric messaging mode")
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}
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pp := &Protocol{
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Pss: ps,
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proto: targetprotocol,
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topic: topic,
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spec: spec,
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pubKeyRWPool: make(map[string]p2p.MsgReadWriter),
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symKeyRWPool: make(map[string]p2p.MsgReadWriter),
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Asymmetric: options.Asymmetric,
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Symmetric: options.Symmetric,
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}
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return pp, nil
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}
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// Generic handler for incoming messages over devp2p emulation
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//
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// To be passed to pss.Register()
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//
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// Will run the protocol on a new incoming peer, provided that
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// the encryption key of the message has a match in the internal
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// pss keypool
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//
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// Fails if protocol is not valid for the message encryption scheme,
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// if adding a new peer fails, or if the message is not a serialized
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// p2p.Msg (which it always will be if it is sent from this object).
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func (p *Protocol) Handle(msg []byte, peer *p2p.Peer, asymmetric bool, keyid string) error {
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var vrw *PssReadWriter
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if p.Asymmetric != asymmetric && p.Symmetric == !asymmetric {
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return fmt.Errorf("invalid protocol encryption")
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} else if (!p.isActiveSymKey(keyid, *p.topic) && !asymmetric) ||
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(!p.isActiveAsymKey(keyid, *p.topic) && asymmetric) {
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rw, err := p.AddPeer(peer, *p.topic, asymmetric, keyid)
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if err != nil {
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return err
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2018-07-09 07:11:49 -05:00
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} else if rw == nil {
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return fmt.Errorf("handle called on nil MsgReadWriter for new key " + keyid)
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2018-06-20 07:06:27 -05:00
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}
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vrw = rw.(*PssReadWriter)
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}
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pmsg, err := ToP2pMsg(msg)
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if err != nil {
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return fmt.Errorf("could not decode pssmsg")
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}
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if asymmetric {
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2018-07-09 07:11:49 -05:00
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if p.pubKeyRWPool[keyid] == nil {
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return fmt.Errorf("handle called on nil MsgReadWriter for key " + keyid)
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}
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2018-06-20 07:06:27 -05:00
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vrw = p.pubKeyRWPool[keyid].(*PssReadWriter)
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} else {
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2018-07-09 07:11:49 -05:00
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if p.symKeyRWPool[keyid] == nil {
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return fmt.Errorf("handle called on nil MsgReadWriter for key " + keyid)
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}
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2018-06-20 07:06:27 -05:00
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vrw = p.symKeyRWPool[keyid].(*PssReadWriter)
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}
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vrw.injectMsg(pmsg)
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return nil
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}
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// check if (peer) symmetric key is currently registered with this topic
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func (p *Protocol) isActiveSymKey(key string, topic Topic) bool {
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return p.symKeyRWPool[key] != nil
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}
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// check if (peer) asymmetric key is currently registered with this topic
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func (p *Protocol) isActiveAsymKey(key string, topic Topic) bool {
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return p.pubKeyRWPool[key] != nil
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}
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// Creates a serialized (non-buffered) version of a p2p.Msg, used in the specialized internal p2p.MsgReadwriter implementations
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func ToP2pMsg(msg []byte) (p2p.Msg, error) {
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payload := &ProtocolMsg{}
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if err := rlp.DecodeBytes(msg, payload); err != nil {
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return p2p.Msg{}, fmt.Errorf("pss protocol handler unable to decode payload as p2p message: %v", err)
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}
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return p2p.Msg{
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Code: payload.Code,
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Size: uint32(len(payload.Payload)),
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ReceivedAt: time.Now(),
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Payload: bytes.NewBuffer(payload.Payload),
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}, nil
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}
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// Runs an emulated pss Protocol on the specified peer,
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// linked to a specific topic
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// `key` and `asymmetric` specifies what encryption key
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// to link the peer to.
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// The key must exist in the pss store prior to adding the peer.
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func (p *Protocol) AddPeer(peer *p2p.Peer, topic Topic, asymmetric bool, key string) (p2p.MsgReadWriter, error) {
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rw := &PssReadWriter{
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Pss: p.Pss,
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rw: make(chan p2p.Msg),
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spec: p.spec,
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topic: p.topic,
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key: key,
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}
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if asymmetric {
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rw.sendFunc = p.Pss.SendAsym
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} else {
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rw.sendFunc = p.Pss.SendSym
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}
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if asymmetric {
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p.Pss.pubKeyPoolMu.Lock()
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if _, ok := p.Pss.pubKeyPool[key]; !ok {
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return nil, fmt.Errorf("asym key does not exist: %s", key)
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}
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p.Pss.pubKeyPoolMu.Unlock()
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p.RWPoolMu.Lock()
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p.pubKeyRWPool[key] = rw
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p.RWPoolMu.Unlock()
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} else {
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p.Pss.symKeyPoolMu.Lock()
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if _, ok := p.Pss.symKeyPool[key]; !ok {
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return nil, fmt.Errorf("symkey does not exist: %s", key)
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}
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p.Pss.symKeyPoolMu.Unlock()
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p.RWPoolMu.Lock()
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p.symKeyRWPool[key] = rw
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p.RWPoolMu.Unlock()
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}
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go func() {
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err := p.proto.Run(peer, rw)
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log.Warn(fmt.Sprintf("pss vprotocol quit on %v topic %v: %v", peer, topic, err))
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}()
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return rw, nil
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}
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func (p *Protocol) RemovePeer(asymmetric bool, key string) {
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log.Debug("closing pss peer", "asym", asymmetric, "key", key)
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p.RWPoolMu.Lock()
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defer p.RWPoolMu.Unlock()
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if asymmetric {
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rw := p.pubKeyRWPool[key].(*PssReadWriter)
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rw.closed = true
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delete(p.pubKeyRWPool, key)
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} else {
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rw := p.symKeyRWPool[key].(*PssReadWriter)
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rw.closed = true
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delete(p.symKeyRWPool, key)
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}
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}
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// Uniform translation of protocol specifiers to topic
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func ProtocolTopic(spec *protocols.Spec) Topic {
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return BytesToTopic([]byte(fmt.Sprintf("%s:%d", spec.Name, spec.Version)))
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}
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