mirror of
https://github.com/nspcc-dev/neo-go.git
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857ced8230
Consensus payload's hash now depends on the network node is operating in.
232 lines
5.7 KiB
Go
232 lines
5.7 KiB
Go
package network
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import (
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"errors"
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"fmt"
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"github.com/nspcc-dev/neo-go/pkg/config/netmode"
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"github.com/nspcc-dev/neo-go/pkg/consensus"
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"github.com/nspcc-dev/neo-go/pkg/core/block"
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"github.com/nspcc-dev/neo-go/pkg/core/transaction"
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"github.com/nspcc-dev/neo-go/pkg/io"
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"github.com/nspcc-dev/neo-go/pkg/network/payload"
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)
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//go:generate stringer -type=CommandType
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// CompressionMinSize is the lower bound to apply compression.
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const CompressionMinSize = 1024
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// Message is the complete message send between nodes.
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type Message struct {
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// Flags that represents whether a message is compressed.
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// 0 for None, 1 for Compressed.
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Flags MessageFlag
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// Command is byte command code.
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Command CommandType
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// Payload send with the message.
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Payload payload.Payload
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// Compressed message payload.
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compressedPayload []byte
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// Network this message comes from, it has to be set upon Message
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// creation for correct decoding.
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Network netmode.Magic
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}
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// MessageFlag represents compression level of message payload
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type MessageFlag byte
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// Possible message flags
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const (
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Compressed MessageFlag = 1 << iota
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None MessageFlag = 0
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)
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// CommandType represents the type of a message command.
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type CommandType byte
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// Valid protocol commands used to send between nodes.
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const (
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// handshaking
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CMDVersion CommandType = 0x00
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CMDVerack CommandType = 0x01
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// connectivity
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CMDGetAddr CommandType = 0x10
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CMDAddr CommandType = 0x11
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CMDPing CommandType = 0x18
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CMDPong CommandType = 0x19
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// synchronization
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CMDGetHeaders CommandType = 0x20
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CMDHeaders CommandType = 0x21
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CMDGetBlocks CommandType = 0x24
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CMDMempool CommandType = 0x25
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CMDInv CommandType = 0x27
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CMDGetData CommandType = 0x28
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CMDGetBlockData CommandType = 0x29
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CMDUnknown CommandType = 0x2a
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CMDTX = CommandType(payload.TXType)
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CMDBlock = CommandType(payload.BlockType)
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CMDConsensus = CommandType(payload.ConsensusType)
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CMDReject CommandType = 0x2f
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// SPV protocol
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CMDFilterLoad CommandType = 0x30
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CMDFilterAdd CommandType = 0x31
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CMDFilterClear CommandType = 0x32
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CMDMerkleBlock CommandType = 0x38
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// others
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CMDAlert CommandType = 0x40
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)
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// NewMessage returns a new message with the given payload. It's intended to be
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// used for messages to be sent, thus it doesn't care much about the Network.
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func NewMessage(cmd CommandType, p payload.Payload) *Message {
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return &Message{
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Command: cmd,
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Payload: p,
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Flags: None,
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}
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}
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// Decode decodes a Message from the given reader.
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func (m *Message) Decode(br *io.BinReader) error {
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m.Flags = MessageFlag(br.ReadB())
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m.Command = CommandType(br.ReadB())
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l := br.ReadVarUint()
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// check the length first in order not to allocate memory
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// for an empty compressed payload
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if l == 0 {
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switch m.Command {
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case CMDFilterClear, CMDGetAddr, CMDMempool, CMDVerack:
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m.Payload = payload.NewNullPayload()
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default:
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return errors.New("unexpected empty payload")
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}
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return nil
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}
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if l > payload.MaxSize {
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return errors.New("invalid payload size")
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}
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m.compressedPayload = make([]byte, l)
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br.ReadBytes(m.compressedPayload)
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if br.Err != nil {
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return br.Err
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}
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return m.decodePayload()
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}
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func (m *Message) decodePayload() error {
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buf := m.compressedPayload
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// try decompression
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if m.Flags&Compressed != 0 {
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d, err := decompress(m.compressedPayload)
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if err != nil {
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return err
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}
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buf = d
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}
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r := io.NewBinReaderFromBuf(buf)
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var p payload.Payload
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switch m.Command {
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case CMDVersion:
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p = &payload.Version{}
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case CMDInv, CMDGetData:
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p = &payload.Inventory{}
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case CMDAddr:
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p = &payload.AddressList{}
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case CMDBlock:
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p = block.New(m.Network)
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case CMDConsensus:
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p = consensus.NewPayload(m.Network)
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case CMDGetBlocks:
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fallthrough
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case CMDGetHeaders:
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p = &payload.GetBlocks{}
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case CMDGetBlockData:
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p = &payload.GetBlockData{}
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case CMDHeaders:
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p = &payload.Headers{Network: m.Network}
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case CMDTX:
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p = &transaction.Transaction{Network: m.Network}
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case CMDMerkleBlock:
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p = &payload.MerkleBlock{}
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case CMDPing, CMDPong:
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p = &payload.Ping{}
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default:
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return fmt.Errorf("can't decode command %s", m.Command.String())
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}
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p.DecodeBinary(r)
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if r.Err == nil || r.Err == payload.ErrTooManyHeaders {
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m.Payload = p
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}
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return r.Err
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}
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// Encode encodes a Message to any given BinWriter.
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func (m *Message) Encode(br *io.BinWriter) error {
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if err := m.tryCompressPayload(); err != nil {
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return err
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}
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br.WriteB(byte(m.Flags))
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br.WriteB(byte(m.Command))
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if m.compressedPayload != nil {
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br.WriteVarBytes(m.compressedPayload)
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} else {
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br.WriteB(0)
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}
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return br.Err
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}
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// Bytes serializes a Message into the new allocated buffer and returns it.
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func (m *Message) Bytes() ([]byte, error) {
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w := io.NewBufBinWriter()
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if err := m.Encode(w.BinWriter); err != nil {
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return nil, err
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}
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if w.Err != nil {
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return nil, w.Err
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}
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return w.Bytes(), nil
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}
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// tryCompressPayload sets message's compressed payload to serialized
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// payload and compresses it in case if its size exceeds CompressionMinSize
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func (m *Message) tryCompressPayload() error {
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if m.Payload == nil {
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return nil
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}
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buf := io.NewBufBinWriter()
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m.Payload.EncodeBinary(buf.BinWriter)
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if buf.Err != nil {
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return buf.Err
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}
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compressedPayload := buf.Bytes()
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if m.Flags&Compressed == 0 {
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switch m.Payload.(type) {
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case *payload.Headers, *payload.MerkleBlock, *payload.NullPayload:
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break
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default:
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size := len(compressedPayload)
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// try compression
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if size > CompressionMinSize {
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c, err := compress(compressedPayload)
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if err == nil {
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compressedPayload = c
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m.Flags |= Compressed
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} else {
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return err
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}
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}
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}
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}
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m.compressedPayload = compressedPayload
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return nil
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}
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