2018-11-20 17:51:25 -05:00
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package quic
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import (
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"bytes"
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2018-11-23 11:04:53 -05:00
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"errors"
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2018-11-20 17:51:25 -05:00
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"fmt"
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"net"
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"sync"
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"time"
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"github.com/lucas-clemente/quic-go/internal/protocol"
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"github.com/lucas-clemente/quic-go/internal/utils"
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"github.com/lucas-clemente/quic-go/internal/wire"
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)
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2018-11-23 11:04:53 -05:00
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type packetHandlerEntry struct {
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handler packetHandler
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resetToken *[16]byte
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}
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2018-11-20 17:51:25 -05:00
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// The packetHandlerMap stores packetHandlers, identified by connection ID.
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// It is used:
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// * by the server to store sessions
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// * when multiplexing outgoing connections to store clients
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type packetHandlerMap struct {
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mutex sync.RWMutex
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conn net.PacketConn
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connIDLen int
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handlers map[string] /* string(ConnectionID)*/ packetHandlerEntry
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resetTokens map[[16]byte] /* stateless reset token */ packetHandler
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server unknownPacketHandler
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closed bool
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deleteRetiredSessionsAfter time.Duration
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logger utils.Logger
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}
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var _ packetHandlerManager = &packetHandlerMap{}
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func newPacketHandlerMap(conn net.PacketConn, connIDLen int, logger utils.Logger) packetHandlerManager {
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m := &packetHandlerMap{
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conn: conn,
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connIDLen: connIDLen,
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handlers: make(map[string]packetHandlerEntry),
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resetTokens: make(map[[16]byte]packetHandler),
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deleteRetiredSessionsAfter: protocol.RetiredConnectionIDDeleteTimeout,
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logger: logger,
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}
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go m.listen()
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return m
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}
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func (h *packetHandlerMap) Add(id protocol.ConnectionID, handler packetHandler) {
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h.mutex.Lock()
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h.handlers[string(id)] = packetHandlerEntry{handler: handler}
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h.mutex.Unlock()
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}
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func (h *packetHandlerMap) AddWithResetToken(id protocol.ConnectionID, handler packetHandler, token [16]byte) {
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h.mutex.Lock()
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h.handlers[string(id)] = packetHandlerEntry{handler: handler, resetToken: &token}
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h.resetTokens[token] = handler
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h.mutex.Unlock()
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}
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func (h *packetHandlerMap) Remove(id protocol.ConnectionID) {
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h.removeByConnectionIDAsString(string(id))
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}
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func (h *packetHandlerMap) removeByConnectionIDAsString(id string) {
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h.mutex.Lock()
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if handlerEntry, ok := h.handlers[id]; ok {
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if token := handlerEntry.resetToken; token != nil {
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delete(h.resetTokens, *token)
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}
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delete(h.handlers, id)
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}
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h.mutex.Unlock()
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}
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func (h *packetHandlerMap) Retire(id protocol.ConnectionID) {
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h.retireByConnectionIDAsString(string(id))
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}
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func (h *packetHandlerMap) retireByConnectionIDAsString(id string) {
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time.AfterFunc(h.deleteRetiredSessionsAfter, func() {
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h.removeByConnectionIDAsString(id)
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})
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}
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func (h *packetHandlerMap) SetServer(s unknownPacketHandler) {
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h.mutex.Lock()
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h.server = s
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h.mutex.Unlock()
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}
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func (h *packetHandlerMap) CloseServer() {
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h.mutex.Lock()
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h.server = nil
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var wg sync.WaitGroup
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for id, handlerEntry := range h.handlers {
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handler := handlerEntry.handler
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if handler.GetPerspective() == protocol.PerspectiveServer {
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wg.Add(1)
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go func(id string, handler packetHandler) {
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// session.Close() blocks until the CONNECTION_CLOSE has been sent and the run-loop has stopped
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_ = handler.Close()
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h.retireByConnectionIDAsString(id)
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wg.Done()
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}(id, handler)
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}
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}
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h.mutex.Unlock()
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wg.Wait()
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}
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func (h *packetHandlerMap) close(e error) error {
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h.mutex.Lock()
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if h.closed {
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h.mutex.Unlock()
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return nil
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}
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h.closed = true
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var wg sync.WaitGroup
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for _, handlerEntry := range h.handlers {
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wg.Add(1)
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go func(handlerEntry packetHandlerEntry) {
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handlerEntry.handler.destroy(e)
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wg.Done()
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}(handlerEntry)
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}
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if h.server != nil {
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h.server.closeWithError(e)
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}
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h.mutex.Unlock()
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wg.Wait()
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return nil
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}
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func (h *packetHandlerMap) listen() {
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for {
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data := *getPacketBuffer()
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data = data[:protocol.MaxReceivePacketSize]
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// The packet size should not exceed protocol.MaxReceivePacketSize bytes
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// If it does, we only read a truncated packet, which will then end up undecryptable
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n, addr, err := h.conn.ReadFrom(data)
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if err != nil {
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h.close(err)
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return
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}
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data = data[:n]
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if err := h.handlePacket(addr, data); err != nil {
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h.logger.Debugf("error handling packet from %s: %s", addr, err)
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}
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}
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}
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func (h *packetHandlerMap) handlePacket(addr net.Addr, data []byte) error {
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rcvTime := time.Now()
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r := bytes.NewReader(data)
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iHdr, err := wire.ParseInvariantHeader(r, h.connIDLen)
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// drop the packet if we can't parse the header
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if err != nil {
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return fmt.Errorf("error parsing invariant header: %s", err)
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}
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h.mutex.RLock()
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handlerEntry, handlerFound := h.handlers[string(iHdr.DestConnectionID)]
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server := h.server
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var sentBy protocol.Perspective
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var version protocol.VersionNumber
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var handlePacket func(*receivedPacket)
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if handlerFound { // existing session
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handler := handlerEntry.handler
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sentBy = handler.GetPerspective().Opposite()
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version = handler.GetVersion()
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handlePacket = handler.handlePacket
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} else { // no session found
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// this might be a stateless reset
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if !iHdr.IsLongHeader {
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if len(data) >= protocol.MinStatelessResetSize {
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var token [16]byte
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copy(token[:], data[len(data)-16:])
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if sess, ok := h.resetTokens[token]; ok {
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h.mutex.RUnlock()
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sess.destroy(errors.New("received a stateless reset"))
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return nil
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}
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}
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// TODO(#943): send a stateless reset
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return fmt.Errorf("received a short header packet with an unexpected connection ID %s", iHdr.DestConnectionID)
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}
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if server == nil { // no server set
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h.mutex.RUnlock()
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return fmt.Errorf("received a packet with an unexpected connection ID %s", iHdr.DestConnectionID)
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}
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handlePacket = server.handlePacket
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sentBy = protocol.PerspectiveClient
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version = iHdr.Version
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}
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h.mutex.RUnlock()
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hdr, err := iHdr.Parse(r, sentBy, version)
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if err != nil {
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return fmt.Errorf("error parsing header: %s", err)
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}
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hdr.Raw = data[:len(data)-r.Len()]
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packetData := data[len(data)-r.Len():]
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if hdr.IsLongHeader {
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if protocol.ByteCount(len(packetData)) < hdr.PayloadLen {
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return fmt.Errorf("packet payload (%d bytes) is smaller than the expected payload length (%d bytes)", len(packetData), hdr.PayloadLen)
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}
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packetData = packetData[:int(hdr.PayloadLen)]
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// TODO(#1312): implement parsing of compound packets
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}
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handlePacket(&receivedPacket{
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remoteAddr: addr,
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header: hdr,
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data: packetData,
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rcvTime: rcvTime,
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})
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return nil
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}
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