parent
c590cc02f4
commit
8c5c248e79
7 changed files with 100 additions and 46 deletions
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@ -3,6 +3,8 @@ package network
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import (
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"sync"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/network/capability"
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)
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const (
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@ -18,12 +20,18 @@ type Discoverer interface {
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PoolCount() int
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RequestRemote(int)
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RegisterBadAddr(string)
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RegisterGoodAddr(string)
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RegisterGoodAddr(string, capability.Capabilities)
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RegisterConnectedAddr(string)
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UnregisterConnectedAddr(string)
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UnconnectedPeers() []string
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BadPeers() []string
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GoodPeers() []string
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GoodPeers() []AddressWithCapabilities
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}
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// AddressWithCapabilities represents node address with its capabilities
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type AddressWithCapabilities struct {
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Address string
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Capabilities capability.Capabilities
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}
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// DefaultDiscovery default implementation of the Discoverer interface.
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@ -34,7 +42,7 @@ type DefaultDiscovery struct {
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dialTimeout time.Duration
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badAddrs map[string]bool
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connectedAddrs map[string]bool
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goodAddrs map[string]bool
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goodAddrs map[string]capability.Capabilities
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unconnectedAddrs map[string]int
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isDead bool
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requestCh chan int
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@ -48,7 +56,7 @@ func NewDefaultDiscovery(dt time.Duration, ts Transporter) *DefaultDiscovery {
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dialTimeout: dt,
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badAddrs: make(map[string]bool),
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connectedAddrs: make(map[string]bool),
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goodAddrs: make(map[string]bool),
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goodAddrs: make(map[string]capability.Capabilities),
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unconnectedAddrs: make(map[string]int),
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requestCh: make(chan int),
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pool: make(chan string, maxPoolSize),
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@ -135,11 +143,14 @@ func (d *DefaultDiscovery) BadPeers() []string {
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// GoodPeers returns all addresses of known good peers (that at least once
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// succeeded handshaking with us).
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func (d *DefaultDiscovery) GoodPeers() []string {
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func (d *DefaultDiscovery) GoodPeers() []AddressWithCapabilities {
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d.lock.RLock()
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addrs := make([]string, 0, len(d.goodAddrs))
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for addr := range d.goodAddrs {
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addrs = append(addrs, addr)
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addrs := make([]AddressWithCapabilities, 0, len(d.goodAddrs))
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for addr, cap := range d.goodAddrs {
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addrs = append(addrs, AddressWithCapabilities{
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Address: addr,
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Capabilities: cap,
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})
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}
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d.lock.RUnlock()
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return addrs
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@ -147,9 +158,9 @@ func (d *DefaultDiscovery) GoodPeers() []string {
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// RegisterGoodAddr registers good known connected address that passed
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// handshake successfully.
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func (d *DefaultDiscovery) RegisterGoodAddr(s string) {
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func (d *DefaultDiscovery) RegisterGoodAddr(s string, c capability.Capabilities) {
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d.lock.Lock()
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d.goodAddrs[s] = true
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d.goodAddrs[s] = c
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d.lock.Unlock()
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}
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@ -7,6 +7,7 @@ import (
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"testing"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/network/capability"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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@ -79,9 +80,24 @@ func TestDefaultDiscoverer(t *testing.T) {
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// Registered good addresses should end up in appropriate set.
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for _, addr := range set1 {
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d.RegisterGoodAddr(addr)
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d.RegisterGoodAddr(addr, capability.Capabilities{
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{
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Type: capability.FullNode,
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Data: &capability.Node{StartHeight: 123},
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},
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})
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}
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gAddrWithCap := d.GoodPeers()
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gAddrs := make([]string, len(gAddrWithCap))
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for i, addr := range gAddrWithCap {
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require.Equal(t, capability.Capabilities{
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{
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Type: capability.FullNode,
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Data: &capability.Node{StartHeight: 123},
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},
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}, addr.Capabilities)
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gAddrs[i] = addr.Address
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}
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gAddrs := d.GoodPeers()
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sort.Strings(gAddrs)
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assert.Equal(t, 0, d.PoolCount())
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assert.Equal(t, 0, len(d.UnconnectedPeers()))
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@ -14,6 +14,7 @@ import (
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"github.com/nspcc-dev/neo-go/pkg/core/transaction"
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"github.com/nspcc-dev/neo-go/pkg/crypto/keys"
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"github.com/nspcc-dev/neo-go/pkg/io"
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"github.com/nspcc-dev/neo-go/pkg/network/capability"
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"github.com/nspcc-dev/neo-go/pkg/network/payload"
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"github.com/nspcc-dev/neo-go/pkg/util"
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"github.com/nspcc-dev/neo-go/pkg/vm"
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@ -151,17 +152,17 @@ func (chain testChain) VerifyTx(*transaction.Transaction, *block.Block) error {
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type testDiscovery struct{}
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func (d testDiscovery) BackFill(addrs ...string) {}
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func (d testDiscovery) Close() {}
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func (d testDiscovery) PoolCount() int { return 0 }
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func (d testDiscovery) RegisterBadAddr(string) {}
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func (d testDiscovery) RegisterGoodAddr(string) {}
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func (d testDiscovery) RegisterConnectedAddr(string) {}
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func (d testDiscovery) UnregisterConnectedAddr(string) {}
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func (d testDiscovery) UnconnectedPeers() []string { return []string{} }
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func (d testDiscovery) RequestRemote(n int) {}
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func (d testDiscovery) BadPeers() []string { return []string{} }
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func (d testDiscovery) GoodPeers() []string { return []string{} }
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func (d testDiscovery) BackFill(addrs ...string) {}
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func (d testDiscovery) Close() {}
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func (d testDiscovery) PoolCount() int { return 0 }
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func (d testDiscovery) RegisterBadAddr(string) {}
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func (d testDiscovery) RegisterGoodAddr(string, capability.Capabilities) {}
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func (d testDiscovery) RegisterConnectedAddr(string) {}
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func (d testDiscovery) UnregisterConnectedAddr(string) {}
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func (d testDiscovery) UnconnectedPeers() []string { return []string{} }
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func (d testDiscovery) RequestRemote(n int) {}
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func (d testDiscovery) BadPeers() []string { return []string{} }
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func (d testDiscovery) GoodPeers() []AddressWithCapabilities { return []AddressWithCapabilities{} }
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var defaultMessageHandler = func(t *testing.T, msg *Message) {}
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@ -1,27 +1,27 @@
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package payload
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import (
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"errors"
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"net"
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"strconv"
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"time"
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"github.com/nspcc-dev/neo-go/pkg/io"
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"github.com/nspcc-dev/neo-go/pkg/network/capability"
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)
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// AddressAndTime payload.
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type AddressAndTime struct {
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Timestamp uint32
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Services uint64
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IP [16]byte
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Port uint16
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Timestamp uint32
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IP [16]byte
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Capabilities capability.Capabilities
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}
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// NewAddressAndTime creates a new AddressAndTime object.
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func NewAddressAndTime(e *net.TCPAddr, t time.Time) *AddressAndTime {
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func NewAddressAndTime(e *net.TCPAddr, t time.Time, c capability.Capabilities) *AddressAndTime {
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aat := AddressAndTime{
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Timestamp: uint32(t.UTC().Unix()),
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Services: 1,
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Port: uint16(e.Port),
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Timestamp: uint32(t.UTC().Unix()),
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Capabilities: c,
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}
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copy(aat.IP[:], e.IP)
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return &aat
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@ -30,26 +30,34 @@ func NewAddressAndTime(e *net.TCPAddr, t time.Time) *AddressAndTime {
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// DecodeBinary implements Serializable interface.
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func (p *AddressAndTime) DecodeBinary(br *io.BinReader) {
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p.Timestamp = br.ReadU32LE()
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p.Services = br.ReadU64LE()
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br.ReadBytes(p.IP[:])
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p.Port = br.ReadU16BE()
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p.Capabilities.DecodeBinary(br)
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}
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// EncodeBinary implements Serializable interface.
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func (p *AddressAndTime) EncodeBinary(bw *io.BinWriter) {
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bw.WriteU32LE(p.Timestamp)
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bw.WriteU64LE(p.Services)
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bw.WriteBytes(p.IP[:])
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bw.WriteU16BE(p.Port)
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p.Capabilities.EncodeBinary(bw)
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}
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// IPPortString makes a string from IP and port specified.
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func (p *AddressAndTime) IPPortString() string {
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// GetTCPAddress makes a string from IP and port specified in TCPCapability.
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// It returns an error if there's no such capability.
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func (p *AddressAndTime) GetTCPAddress() (string, error) {
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var netip = make(net.IP, 16)
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copy(netip, p.IP[:])
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port := strconv.Itoa(int(p.Port))
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return netip.String() + ":" + port
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port := -1
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for _, cap := range p.Capabilities {
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if cap.Type == capability.TCPServer {
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port = int(cap.Data.(*capability.Server).Port)
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break
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}
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}
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if port == -1 {
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return "", errors.New("no TCP capability found")
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}
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return net.JoinHostPort(netip.String(), strconv.Itoa(port)), nil
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}
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// AddressList is a list with AddrAndTime.
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@ -7,6 +7,7 @@ import (
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"time"
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"github.com/nspcc-dev/neo-go/pkg/internal/testserdes"
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"github.com/nspcc-dev/neo-go/pkg/network/capability"
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"github.com/stretchr/testify/assert"
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)
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@ -14,14 +15,23 @@ func TestEncodeDecodeAddress(t *testing.T) {
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var (
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e, _ = net.ResolveTCPAddr("tcp", "127.0.0.1:2000")
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ts = time.Now()
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addr = NewAddressAndTime(e, ts)
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addr = NewAddressAndTime(e, ts, capability.Capabilities{
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{
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Type: capability.TCPServer,
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Data: &capability.Server{Port: uint16(e.Port)},
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},
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})
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)
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assert.Equal(t, ts.UTC().Unix(), int64(addr.Timestamp))
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aatip := make(net.IP, 16)
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copy(aatip, addr.IP[:])
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assert.Equal(t, e.IP, aatip)
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assert.Equal(t, e.Port, int(addr.Port))
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assert.Equal(t, 1, len(addr.Capabilities))
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assert.Equal(t, capability.Capability{
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Type: capability.TCPServer,
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Data: &capability.Server{Port: uint16(e.Port)},
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}, addr.Capabilities[0])
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testserdes.EncodeDecodeBinary(t, addr, new(AddressAndTime))
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}
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@ -31,7 +41,12 @@ func TestEncodeDecodeAddressList(t *testing.T) {
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addrList := NewAddressList(int(lenList))
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for i := 0; i < int(lenList); i++ {
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e, _ := net.ResolveTCPAddr("tcp", fmt.Sprintf("127.0.0.1:200%d", i))
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addrList.Addrs[i] = NewAddressAndTime(e, time.Now())
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addrList.Addrs[i] = NewAddressAndTime(e, time.Now(), capability.Capabilities{
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{
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Type: capability.TCPServer,
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Data: &capability.Server{Port: 123},
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},
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})
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}
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testserdes.EncodeDecodeBinary(t, addrList, new(AddressList))
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@ -642,7 +642,10 @@ func (s *Server) handleTxCmd(tx *transaction.Transaction) error {
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// handleAddrCmd will process received addresses.
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func (s *Server) handleAddrCmd(p Peer, addrs *payload.AddressList) error {
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for _, a := range addrs.Addrs {
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s.discovery.BackFill(a.IPPortString())
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addr, err := a.GetTCPAddress()
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if err != nil {
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s.discovery.BackFill(addr)
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}
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}
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return nil
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}
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@ -657,8 +660,8 @@ func (s *Server) handleGetAddrCmd(p Peer) error {
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ts := time.Now()
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for i, addr := range addrs {
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// we know it's a good address, so it can't fail
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netaddr, _ := net.ResolveTCPAddr("tcp", addr)
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alist.Addrs[i] = payload.NewAddressAndTime(netaddr, ts)
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netaddr, _ := net.ResolveTCPAddr("tcp", addr.Address)
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alist.Addrs[i] = payload.NewAddressAndTime(netaddr, ts, addr.Capabilities)
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}
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return p.EnqueueP2PMessage(NewMessage(CMDAddr, alist))
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}
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@ -234,7 +234,7 @@ func (p *TCPPeer) StartProtocol() {
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zap.Uint32("startHeight", p.lastBlockIndex),
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zap.Uint32("id", p.Version().Nonce))
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p.server.discovery.RegisterGoodAddr(p.PeerAddr().String())
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p.server.discovery.RegisterGoodAddr(p.PeerAddr().String(), p.version.Capabilities)
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if p.server.chain.HeaderHeight() < p.LastBlockIndex() {
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err = p.server.requestHeaders(p)
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if err != nil {
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