status-go/vendor/github.com/ethereum/go-ethereum/les/txrelay.go

185 lines
4.4 KiB
Go
Raw Normal View History

2016-11-25 05:50:30 +00:00
// Copyright 2016 The go-ethereum Authors
2016-06-20 14:47:10 +00:00
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
2016-11-25 05:50:30 +00:00
2016-06-20 14:47:10 +00:00
package les
import (
"context"
2016-06-20 14:47:10 +00:00
"sync"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
2019-06-09 07:24:20 +00:00
"github.com/ethereum/go-ethereum/rlp"
2016-06-20 14:47:10 +00:00
)
type ltrInfo struct {
tx *types.Transaction
sentTo map[*peer]struct{}
}
type lesTxRelay struct {
2016-06-20 14:47:10 +00:00
txSent map[common.Hash]*ltrInfo
txPending map[common.Hash]struct{}
ps *peerSet
peerList []*peer
peerStartPos int
lock sync.RWMutex
stop chan struct{}
retriever *retrieveManager
2016-06-20 14:47:10 +00:00
}
func newLesTxRelay(ps *peerSet, retriever *retrieveManager) *lesTxRelay {
r := &lesTxRelay{
2016-06-20 14:47:10 +00:00
txSent: make(map[common.Hash]*ltrInfo),
txPending: make(map[common.Hash]struct{}),
ps: ps,
retriever: retriever,
stop: make(chan struct{}),
2016-06-20 14:47:10 +00:00
}
ps.notify(r)
return r
2016-06-20 14:47:10 +00:00
}
func (self *lesTxRelay) Stop() {
close(self.stop)
}
func (self *lesTxRelay) registerPeer(p *peer) {
2016-06-20 14:47:10 +00:00
self.lock.Lock()
defer self.lock.Unlock()
self.peerList = self.ps.AllPeers()
}
func (self *lesTxRelay) unregisterPeer(p *peer) {
2016-06-20 14:47:10 +00:00
self.lock.Lock()
defer self.lock.Unlock()
self.peerList = self.ps.AllPeers()
}
// send sends a list of transactions to at most a given number of peers at
// once, never resending any particular transaction to the same peer twice
func (self *lesTxRelay) send(txs types.Transactions, count int) {
2016-06-20 14:47:10 +00:00
sendTo := make(map[*peer]types.Transactions)
self.peerStartPos++ // rotate the starting position of the peer list
if self.peerStartPos >= len(self.peerList) {
self.peerStartPos = 0
}
for _, tx := range txs {
hash := tx.Hash()
ltr, ok := self.txSent[hash]
if !ok {
ltr = &ltrInfo{
tx: tx,
sentTo: make(map[*peer]struct{}),
}
self.txSent[hash] = ltr
self.txPending[hash] = struct{}{}
}
if len(self.peerList) > 0 {
cnt := count
pos := self.peerStartPos
for {
peer := self.peerList[pos]
if _, ok := ltr.sentTo[peer]; !ok {
sendTo[peer] = append(sendTo[peer], tx)
ltr.sentTo[peer] = struct{}{}
cnt--
}
if cnt == 0 {
break // sent it to the desired number of peers
}
pos++
if pos == len(self.peerList) {
pos = 0
}
if pos == self.peerStartPos {
break // tried all available peers
}
}
}
}
2016-11-25 05:50:30 +00:00
for p, list := range sendTo {
pp := p
ll := list
2019-06-09 07:24:20 +00:00
enc, _ := rlp.EncodeToBytes(ll)
reqID := genReqID()
rq := &distReq{
getCost: func(dp distPeer) uint64 {
peer := dp.(*peer)
2019-06-09 07:24:20 +00:00
return peer.GetTxRelayCost(len(ll), len(enc))
},
canSend: func(dp distPeer) bool {
return !dp.(*peer).onlyAnnounce && dp.(*peer) == pp
},
request: func(dp distPeer) func() {
peer := dp.(*peer)
2019-06-09 07:24:20 +00:00
cost := peer.GetTxRelayCost(len(ll), len(enc))
peer.fcServer.QueuedRequest(reqID, cost)
2019-06-09 07:24:20 +00:00
return func() { peer.SendTxs(reqID, cost, enc) }
},
}
go self.retriever.retrieve(context.Background(), reqID, rq, func(p distPeer, msg *Msg) error { return nil }, self.stop)
2016-06-20 14:47:10 +00:00
}
}
func (self *lesTxRelay) Send(txs types.Transactions) {
2016-06-20 14:47:10 +00:00
self.lock.Lock()
defer self.lock.Unlock()
self.send(txs, 3)
}
func (self *lesTxRelay) NewHead(head common.Hash, mined []common.Hash, rollback []common.Hash) {
2016-06-20 14:47:10 +00:00
self.lock.Lock()
defer self.lock.Unlock()
for _, hash := range mined {
delete(self.txPending, hash)
}
for _, hash := range rollback {
self.txPending[hash] = struct{}{}
}
if len(self.txPending) > 0 {
txs := make(types.Transactions, len(self.txPending))
i := 0
2017-02-23 00:22:43 +00:00
for hash := range self.txPending {
2016-06-20 14:47:10 +00:00
txs[i] = self.txSent[hash].tx
i++
}
self.send(txs, 1)
}
}
func (self *lesTxRelay) Discard(hashes []common.Hash) {
2016-06-20 14:47:10 +00:00
self.lock.Lock()
defer self.lock.Unlock()
for _, hash := range hashes {
delete(self.txSent, hash)
delete(self.txPending, hash)
}
}