mirror of
https://gitlab.com/pulsechaincom/go-pulse.git
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8f66ea3786
* eth/downloader: implement beacon sync * eth/downloader: fix a crash if the beacon chain is reduced in length * eth/downloader: fix beacon sync start/stop thrashing data race * eth/downloader: use a non-nil pivot even in degenerate sync requests * eth/downloader: don't touch internal state on beacon Head retrieval * eth/downloader: fix spelling mistakes * eth/downloader: fix some typos * eth: integrate legacy/beacon sync switchover and UX * eth: handle UX wise being stuck on post-merge TTD * core, eth: integrate the beacon client with the beacon sync * eth/catalyst: make some warning messages nicer * eth/downloader: remove Ethereum 1&2 notions in favor of merge * core/beacon, eth: clean up engine API returns a bit * eth/downloader: add skeleton extension tests * eth/catalyst: keep non-kiln spec, handle mining on ttd * eth/downloader: add beacon header retrieval tests * eth: fixed spelling, commented failing tests out * eth/downloader: review fixes * eth/downloader: drop peers failing to deliver beacon headers * core/rawdb: track beacon sync data in db inspect * eth: fix review concerns * internal/web3ext: nit Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>
313 lines
9.7 KiB
Go
313 lines
9.7 KiB
Go
// Copyright 2015 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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// Contains the active peer-set of the downloader, maintaining both failures
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// as well as reputation metrics to prioritize the block retrievals.
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package downloader
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import (
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"errors"
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"math/big"
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"sync"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/eth/protocols/eth"
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"github.com/ethereum/go-ethereum/event"
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"github.com/ethereum/go-ethereum/log"
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"github.com/ethereum/go-ethereum/p2p/msgrate"
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)
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const (
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maxLackingHashes = 4096 // Maximum number of entries allowed on the list or lacking items
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)
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var (
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errAlreadyRegistered = errors.New("peer is already registered")
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errNotRegistered = errors.New("peer is not registered")
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)
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// peerConnection represents an active peer from which hashes and blocks are retrieved.
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type peerConnection struct {
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id string // Unique identifier of the peer
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rates *msgrate.Tracker // Tracker to hone in on the number of items retrievable per second
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lacking map[common.Hash]struct{} // Set of hashes not to request (didn't have previously)
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peer Peer
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version uint // Eth protocol version number to switch strategies
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log log.Logger // Contextual logger to add extra infos to peer logs
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lock sync.RWMutex
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}
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// LightPeer encapsulates the methods required to synchronise with a remote light peer.
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type LightPeer interface {
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Head() (common.Hash, *big.Int)
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RequestHeadersByHash(common.Hash, int, int, bool, chan *eth.Response) (*eth.Request, error)
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RequestHeadersByNumber(uint64, int, int, bool, chan *eth.Response) (*eth.Request, error)
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}
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// Peer encapsulates the methods required to synchronise with a remote full peer.
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type Peer interface {
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LightPeer
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RequestBodies([]common.Hash, chan *eth.Response) (*eth.Request, error)
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RequestReceipts([]common.Hash, chan *eth.Response) (*eth.Request, error)
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}
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// lightPeerWrapper wraps a LightPeer struct, stubbing out the Peer-only methods.
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type lightPeerWrapper struct {
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peer LightPeer
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}
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func (w *lightPeerWrapper) Head() (common.Hash, *big.Int) { return w.peer.Head() }
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func (w *lightPeerWrapper) RequestHeadersByHash(h common.Hash, amount int, skip int, reverse bool, sink chan *eth.Response) (*eth.Request, error) {
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return w.peer.RequestHeadersByHash(h, amount, skip, reverse, sink)
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}
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func (w *lightPeerWrapper) RequestHeadersByNumber(i uint64, amount int, skip int, reverse bool, sink chan *eth.Response) (*eth.Request, error) {
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return w.peer.RequestHeadersByNumber(i, amount, skip, reverse, sink)
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}
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func (w *lightPeerWrapper) RequestBodies([]common.Hash, chan *eth.Response) (*eth.Request, error) {
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panic("RequestBodies not supported in light client mode sync")
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}
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func (w *lightPeerWrapper) RequestReceipts([]common.Hash, chan *eth.Response) (*eth.Request, error) {
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panic("RequestReceipts not supported in light client mode sync")
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}
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// newPeerConnection creates a new downloader peer.
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func newPeerConnection(id string, version uint, peer Peer, logger log.Logger) *peerConnection {
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return &peerConnection{
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id: id,
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lacking: make(map[common.Hash]struct{}),
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peer: peer,
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version: version,
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log: logger,
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}
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}
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// Reset clears the internal state of a peer entity.
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func (p *peerConnection) Reset() {
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p.lock.Lock()
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defer p.lock.Unlock()
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p.lacking = make(map[common.Hash]struct{})
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}
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// UpdateHeaderRate updates the peer's estimated header retrieval throughput with
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// the current measurement.
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func (p *peerConnection) UpdateHeaderRate(delivered int, elapsed time.Duration) {
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p.rates.Update(eth.BlockHeadersMsg, elapsed, delivered)
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}
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// UpdateBodyRate updates the peer's estimated body retrieval throughput with the
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// current measurement.
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func (p *peerConnection) UpdateBodyRate(delivered int, elapsed time.Duration) {
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p.rates.Update(eth.BlockBodiesMsg, elapsed, delivered)
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}
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// UpdateReceiptRate updates the peer's estimated receipt retrieval throughput
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// with the current measurement.
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func (p *peerConnection) UpdateReceiptRate(delivered int, elapsed time.Duration) {
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p.rates.Update(eth.ReceiptsMsg, elapsed, delivered)
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}
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// HeaderCapacity retrieves the peer's header download allowance based on its
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// previously discovered throughput.
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func (p *peerConnection) HeaderCapacity(targetRTT time.Duration) int {
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cap := p.rates.Capacity(eth.BlockHeadersMsg, targetRTT)
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if cap > MaxHeaderFetch {
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cap = MaxHeaderFetch
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}
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return cap
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}
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// BodyCapacity retrieves the peer's body download allowance based on its
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// previously discovered throughput.
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func (p *peerConnection) BodyCapacity(targetRTT time.Duration) int {
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cap := p.rates.Capacity(eth.BlockBodiesMsg, targetRTT)
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if cap > MaxBlockFetch {
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cap = MaxBlockFetch
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}
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return cap
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}
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// ReceiptCapacity retrieves the peers receipt download allowance based on its
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// previously discovered throughput.
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func (p *peerConnection) ReceiptCapacity(targetRTT time.Duration) int {
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cap := p.rates.Capacity(eth.ReceiptsMsg, targetRTT)
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if cap > MaxReceiptFetch {
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cap = MaxReceiptFetch
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}
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return cap
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}
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// MarkLacking appends a new entity to the set of items (blocks, receipts, states)
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// that a peer is known not to have (i.e. have been requested before). If the
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// set reaches its maximum allowed capacity, items are randomly dropped off.
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func (p *peerConnection) MarkLacking(hash common.Hash) {
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p.lock.Lock()
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defer p.lock.Unlock()
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for len(p.lacking) >= maxLackingHashes {
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for drop := range p.lacking {
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delete(p.lacking, drop)
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break
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}
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}
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p.lacking[hash] = struct{}{}
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}
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// Lacks retrieves whether the hash of a blockchain item is on the peers lacking
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// list (i.e. whether we know that the peer does not have it).
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func (p *peerConnection) Lacks(hash common.Hash) bool {
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p.lock.RLock()
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defer p.lock.RUnlock()
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_, ok := p.lacking[hash]
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return ok
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}
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// peeringEvent is sent on the peer event feed when a remote peer connects or
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// disconnects.
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type peeringEvent struct {
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peer *peerConnection
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join bool
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}
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// peerSet represents the collection of active peer participating in the chain
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// download procedure.
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type peerSet struct {
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peers map[string]*peerConnection
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rates *msgrate.Trackers // Set of rate trackers to give the sync a common beat
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events event.Feed // Feed to publish peer lifecycle events on
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lock sync.RWMutex
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}
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// newPeerSet creates a new peer set top track the active download sources.
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func newPeerSet() *peerSet {
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return &peerSet{
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peers: make(map[string]*peerConnection),
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rates: msgrate.NewTrackers(log.New("proto", "eth")),
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}
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}
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// SubscribeEvents subscribes to peer arrival and departure events.
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func (ps *peerSet) SubscribeEvents(ch chan<- *peeringEvent) event.Subscription {
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return ps.events.Subscribe(ch)
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}
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// Reset iterates over the current peer set, and resets each of the known peers
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// to prepare for a next batch of block retrieval.
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func (ps *peerSet) Reset() {
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ps.lock.RLock()
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defer ps.lock.RUnlock()
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for _, peer := range ps.peers {
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peer.Reset()
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}
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}
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// Register injects a new peer into the working set, or returns an error if the
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// peer is already known.
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//
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// The method also sets the starting throughput values of the new peer to the
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// average of all existing peers, to give it a realistic chance of being used
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// for data retrievals.
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func (ps *peerSet) Register(p *peerConnection) error {
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// Register the new peer with some meaningful defaults
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ps.lock.Lock()
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if _, ok := ps.peers[p.id]; ok {
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ps.lock.Unlock()
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return errAlreadyRegistered
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}
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p.rates = msgrate.NewTracker(ps.rates.MeanCapacities(), ps.rates.MedianRoundTrip())
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if err := ps.rates.Track(p.id, p.rates); err != nil {
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return err
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}
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ps.peers[p.id] = p
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ps.lock.Unlock()
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ps.events.Send(&peeringEvent{peer: p, join: true})
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return nil
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}
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// Unregister removes a remote peer from the active set, disabling any further
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// actions to/from that particular entity.
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func (ps *peerSet) Unregister(id string) error {
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ps.lock.Lock()
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p, ok := ps.peers[id]
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if !ok {
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ps.lock.Unlock()
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return errNotRegistered
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}
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delete(ps.peers, id)
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ps.rates.Untrack(id)
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ps.lock.Unlock()
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ps.events.Send(&peeringEvent{peer: p, join: false})
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return nil
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}
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// Peer retrieves the registered peer with the given id.
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func (ps *peerSet) Peer(id string) *peerConnection {
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ps.lock.RLock()
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defer ps.lock.RUnlock()
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return ps.peers[id]
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}
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// Len returns if the current number of peers in the set.
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func (ps *peerSet) Len() int {
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ps.lock.RLock()
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defer ps.lock.RUnlock()
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return len(ps.peers)
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}
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// AllPeers retrieves a flat list of all the peers within the set.
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func (ps *peerSet) AllPeers() []*peerConnection {
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ps.lock.RLock()
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defer ps.lock.RUnlock()
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list := make([]*peerConnection, 0, len(ps.peers))
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for _, p := range ps.peers {
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list = append(list, p)
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}
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return list
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}
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// peerCapacitySort implements sort.Interface.
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// It sorts peer connections by capacity (descending).
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type peerCapacitySort struct {
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peers []*peerConnection
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caps []int
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}
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func (ps *peerCapacitySort) Len() int {
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return len(ps.peers)
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}
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func (ps *peerCapacitySort) Less(i, j int) bool {
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return ps.caps[i] > ps.caps[j]
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}
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func (ps *peerCapacitySort) Swap(i, j int) {
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ps.peers[i], ps.peers[j] = ps.peers[j], ps.peers[i]
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ps.caps[i], ps.caps[j] = ps.caps[j], ps.caps[i]
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}
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