Initial working project
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package main
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import (
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"context"
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"errors"
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"fmt"
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"net"
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"net/netip"
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"syscall"
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"time"
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"github.com/soypat/cyw43439"
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"github.com/soypat/lneto"
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"github.com/soypat/lneto/ethernet"
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"github.com/soypat/lneto/x/xnet"
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)
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const (
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pollTime = 5 * time.Millisecond
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protoTimeout = 5 * time.Second
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protoRetries = 3
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tcpBufsize = 2048
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tcpPacketQueueSize = 4
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tcpConnPoolSize = 5
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tcpEstablishedTimeout = 4 * time.Second
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tcpCloseTimeout = protoTimeout
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)
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var nanotime = func() int64 {
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return time.Now().UnixNano()
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}
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// CywAdapter bridges the cyw43439 driver to the lneto interface requirements.
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type CywAdapter struct {
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dev *cyw43439.Device
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rxBuf [1514]byte
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rxLen int
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hasPkt bool
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}
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func NewCywAdapter(dev *cyw43439.Device) *CywAdapter {
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adapter := &CywAdapter{dev: dev}
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dev.RecvEthHandle(func(pkt []byte) error {
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if !adapter.hasPkt && len(pkt) <= len(adapter.rxBuf) {
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copy(adapter.rxBuf[:], pkt)
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adapter.rxLen = len(pkt)
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adapter.hasPkt = true
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}
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return nil
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})
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return adapter
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}
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// In CywAdapter:
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func (a *CywAdapter) PollHardware() error {
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_, err := a.dev.TryPoll()
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return err
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}
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func (a *CywAdapter) SendEth(frame []byte) error {
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return a.dev.SendEth(frame)
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}
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func (a *CywAdapter) RecvEth(dst []byte) (int, error) {
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if !a.hasPkt {
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return 0, nil
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}
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n := copy(dst, a.rxBuf[:a.rxLen])
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a.hasPkt = false
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a.rxLen = 0
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return n, nil
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}
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func (a *CywAdapter) HardwareAddress6() ([6]byte, error) {
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return a.dev.HardwareAddr6()
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}
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func (a *CywAdapter) MaxFrameLength() (int, error) {
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return 1514, nil
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}
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type NetworkStack struct {
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adapter *CywAdapter
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stack *xnet.StackAsync
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gostack xnet.StackGo
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localIP netip.Addr
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}
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func InitNetwork(ssid, pass string) (*NetworkStack, error) {
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println("Initializing CYW43439 Wi-Fi hardware...")
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dev := cyw43439.NewPicoWDevice()
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cfg := cyw43439.DefaultWifiConfig()
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if err := dev.Init(cfg); err != nil {
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return nil, fmt.Errorf("device init failed: %w", err)
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}
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println("Associating with SSID:", ssid)
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if err := dev.JoinWPA2(ssid, pass); err != nil {
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return nil, fmt.Errorf("wifi association failed: %w", err)
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}
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println("Wi-Fi associated.")
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adapter := NewCywAdapter(dev)
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hwaddr, err := adapter.HardwareAddress6()
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if err != nil {
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return nil, fmt.Errorf("read MAC: %w", err)
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}
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framelen, err := adapter.MaxFrameLength()
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if err != nil {
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return nil, fmt.Errorf("max frame len: %w", err)
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}
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stack := &xnet.StackAsync{}
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err = stack.Reset(xnet.StackConfig{
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Hostname: "pico2w-bme280",
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RandSeed: time.Now().UnixNano(),
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MaxActiveTCPPorts: 2,
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MTU: uint16(framelen - ethernet.MaxOverheadSize),
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HardwareAddress: hwaddr,
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})
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if err != nil {
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return nil, fmt.Errorf("stack config reset: %w", err)
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}
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// Start background frame pump
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ctx := context.Background()
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go stackLoop(ctx, stack, adapter)
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println("Acquiring IP via DHCP...")
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rstack := stack.StackRetrying(stackBackoff)
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results, err := rstack.DoDHCPv4([4]byte{}, protoTimeout, protoRetries)
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if err != nil {
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return nil, fmt.Errorf("DHCP failed: %w", err)
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}
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err = stack.AssimilateDHCPResults(results)
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if err != nil {
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return nil, fmt.Errorf("assimilate DHCP failed: %w", err)
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}
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println("Resolving router MAC...")
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gateway, err := rstack.DoResolveHardwareAddress6(results.Router, protoTimeout, protoRetries)
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if err != nil {
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return nil, fmt.Errorf("resolving router MAC failed: %w", err)
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}
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stack.SetGatewayHardwareAddr(gateway)
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localIP := netip.AddrFrom4(results.AssignedAddr4)
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println("DHCP lease assigned! IP:", localIP.String())
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gostack := stack.StackBlocking(stackBackoff).StackGo(xnet.StackGoConfig{
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ListenerPoolConfig: xnet.TCPPoolConfig{
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PoolSize: tcpConnPoolSize,
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QueueSize: tcpPacketQueueSize,
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TxBufSize: tcpBufsize,
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RxBufSize: tcpBufsize,
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NanoTime: nanotime,
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EstablishedTimeout: tcpEstablishedTimeout,
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ClosingTimeout: tcpCloseTimeout,
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NewBackoff: func() lneto.BackoffStrategy { return tcpBackoff },
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},
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})
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return &NetworkStack{
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adapter: adapter,
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stack: stack,
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gostack: gostack,
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localIP: localIP,
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}, nil
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}
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func (ns *NetworkStack) DialTCP(ctx context.Context, hostIP string, port uint16) (net.Conn, error) {
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rIP, err := netip.ParseAddr(hostIP)
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if err != nil {
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return nil, fmt.Errorf("invalid host IPv4: %w", err)
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}
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laddr := net.TCPAddrFromAddrPort(netip.AddrPortFrom(ns.localIP, 0))
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raddr := net.TCPAddrFromAddrPort(netip.AddrPortFrom(rIP, port))
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const sockstream = 0x1
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c, err := ns.gostack.Socket(ctx, "tcp", syscall.AF_INET, sockstream, laddr, raddr)
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if err != nil {
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return nil, fmt.Errorf("socket dial: %w", err)
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}
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conn, ok := c.(net.Conn)
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if !ok {
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return nil, errors.New("socket did not return a stream connection")
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}
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return conn, nil
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}
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func stackLoop(ctx context.Context, stack *xnet.StackAsync, adapter *CywAdapter) {
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frameLength, _ := adapter.MaxFrameLength()
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buf := make([]byte, frameLength)
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for ctx.Err() == nil {
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// 1. Pump the CYW43439 hardware over SPI to trigger RecvEthHandle
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_ = adapter.PollHardware()
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// 2. Ingress: read from adapter into lneto
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nread, err := adapter.RecvEth(buf[:])
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if err != nil {
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println("recv err:", err.Error())
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} else if nread > 0 {
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err = stack.IngressEthernet(buf[:nread])
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if err != nil && err != lneto.ErrPacketDrop {
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println("ingress err:", err.Error())
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}
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}
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// 3. Egress: send out any frames generated by lneto
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nwrite, err := stack.EgressEthernet(buf[:])
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if err != nil {
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println("egress err:", err.Error())
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} else if nwrite > 0 {
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if err := adapter.SendEth(buf[:nwrite]); err != nil {
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println("send eth err:", err.Error())
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}
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}
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if nwrite == 0 && nread == 0 {
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time.Sleep(pollTime)
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}
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}
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}
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func stackBackoff(consecutiveBackoffs uint) time.Duration {
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if consecutiveBackoffs < 10 {
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return time.Millisecond
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}
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return 10 * time.Millisecond
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}
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func tcpBackoff(consecutiveBackoffs uint) time.Duration {
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const (
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minWait = uint32(time.Microsecond)
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maxWait = 5 * uint32(time.Millisecond)
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maxShift = 22
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)
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shifted := minWait << min(consecutiveBackoffs, maxShift)
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wait := min(shifted, maxWait)
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return time.Duration(wait)
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}
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