180 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			180 lines
		
	
	
		
			4.3 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Package wire provides low level access to the Ethereum network and allows
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// you to broadcast data over the network.
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package wire
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import (
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	"bytes"
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	"fmt"
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	"net"
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	"time"
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	"github.com/ethereum/go-ethereum/ethutil"
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)
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// Connection interface describing the methods required to implement the wire protocol.
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type Conn interface {
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	Write(typ MsgType, v ...interface{}) error
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	Read() *Msg
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}
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// The magic token which should be the first 4 bytes of every message and can be used as separator between messages.
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var MagicToken = []byte{34, 64, 8, 145}
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type MsgType byte
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const (
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	// Values are given explicitly instead of by iota because these values are
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	// defined by the wire protocol spec; it is easier for humans to ensure
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	// correctness when values are explicit.
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	MsgHandshakeTy = 0x00
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	MsgDiscTy      = 0x01
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	MsgPingTy      = 0x02
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	MsgPongTy      = 0x03
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	MsgGetPeersTy  = 0x04
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	MsgPeersTy     = 0x05
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	MsgStatusTy = 0x10
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	//MsgGetTxsTy         = 0x11
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	MsgTxTy             = 0x12
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	MsgGetBlockHashesTy = 0x13
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	MsgBlockHashesTy    = 0x14
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	MsgGetBlocksTy      = 0x15
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	MsgBlockTy          = 0x16
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	MsgNewBlockTy       = 0x17
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)
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var msgTypeToString = map[MsgType]string{
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	MsgHandshakeTy: "Handshake",
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	MsgDiscTy:      "Disconnect",
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	MsgPingTy:      "Ping",
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	MsgPongTy:      "Pong",
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	MsgGetPeersTy:  "Get peers",
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	MsgStatusTy:    "Status",
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	MsgPeersTy:     "Peers",
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	MsgTxTy:        "Transactions",
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	MsgBlockTy:     "Blocks",
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	//MsgGetTxsTy:         "Get Txs",
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	MsgGetBlockHashesTy: "Get block hashes",
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	MsgBlockHashesTy:    "Block hashes",
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	MsgGetBlocksTy:      "Get blocks",
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}
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func (mt MsgType) String() string {
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	return msgTypeToString[mt]
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}
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type Msg struct {
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	Type MsgType // Specifies how the encoded data should be interpreted
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	//Data []byte
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	Data *ethutil.Value
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}
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func NewMessage(msgType MsgType, data interface{}) *Msg {
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	return &Msg{
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		Type: msgType,
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		Data: ethutil.NewValue(data),
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	}
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}
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type Messages []*Msg
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// The basic message reader waits for data on the given connection, decoding
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// and doing a few sanity checks such as if there's a data type and
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// unmarhals the given data
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func ReadMessages(conn net.Conn) (msgs []*Msg, err error) {
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	// The recovering function in case anything goes horribly wrong
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	defer func() {
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		if r := recover(); r != nil {
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			err = fmt.Errorf("wire.ReadMessage error: %v", r)
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		}
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	}()
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	var (
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		buff      []byte
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		messages  [][]byte
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		msgLength int
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	)
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	for {
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		// Give buffering some time
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		conn.SetReadDeadline(time.Now().Add(5 * time.Millisecond))
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		// Create a new temporarily buffer
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		b := make([]byte, 1440)
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		n, _ := conn.Read(b)
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		if err != nil && n == 0 {
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			if err.Error() != "EOF" {
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				fmt.Println("err now", err)
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				return nil, err
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			} else {
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				break
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			}
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		}
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		if n == 0 && len(buff) == 0 {
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			// If there's nothing on the wire wait for a bit
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			time.Sleep(200 * time.Millisecond)
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			continue
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		}
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		buff = append(buff, b[:n]...)
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		if msgLength == 0 {
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			// Check if the received 4 first bytes are the magic token
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			if bytes.Compare(MagicToken, buff[:4]) != 0 {
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				return nil, fmt.Errorf("MagicToken mismatch. Received %v", buff[:4])
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			}
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			// Read the length of the message
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			msgLength = int(ethutil.BytesToNumber(buff[4:8]))
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			// Remove the token and length
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			buff = buff[8:]
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		}
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		if len(buff) >= msgLength {
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			messages = append(messages, buff[:msgLength])
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			buff = buff[msgLength:]
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			msgLength = 0
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			if len(buff) == 0 {
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				break
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			}
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		}
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	}
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	for _, m := range messages {
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		decoder := ethutil.NewValueFromBytes(m)
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		// Type of message
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		t := decoder.Get(0).Uint()
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		// Actual data
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		d := decoder.SliceFrom(1)
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		msgs = append(msgs, &Msg{Type: MsgType(t), Data: d})
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	}
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	return
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}
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// The basic message writer takes care of writing data over the given
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// connection and does some basic error checking
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func WriteMessage(conn net.Conn, msg *Msg) error {
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	var pack []byte
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	// Encode the type and the (RLP encoded) data for sending over the wire
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	encoded := ethutil.NewValue(append([]interface{}{byte(msg.Type)}, msg.Data.Slice()...)).Encode()
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	payloadLength := ethutil.NumberToBytes(uint32(len(encoded)), 32)
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	// Write magic token and payload length (first 8 bytes)
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	pack = append(MagicToken, payloadLength...)
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	pack = append(pack, encoded...)
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	//fmt.Printf("payload %v (%v) %q\n", msg.Type, conn.RemoteAddr(), encoded)
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	// Write to the connection
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	_, err := conn.Write(pack)
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	if err != nil {
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		return err
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	}
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	return nil
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}
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