mirror of
https://github.com/octoleo/syncthing.git
synced 2024-12-23 11:28:59 +00:00
585 lines
12 KiB
Go
585 lines
12 KiB
Go
// Copyright (C) 2014 Jakob Borg and other contributors. All rights reserved.
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// Use of this source code is governed by an MIT-style license that can be
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// found in the LICENSE file.
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package protocol
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import (
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"bufio"
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"compress/flate"
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"errors"
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"fmt"
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"io"
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"sync"
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"time"
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"github.com/calmh/syncthing/xdr"
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)
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const BlockSize = 128 * 1024
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const (
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messageTypeClusterConfig = 0
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messageTypeIndex = 1
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messageTypeRequest = 2
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messageTypeResponse = 3
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messageTypePing = 4
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messageTypePong = 5
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messageTypeIndexUpdate = 6
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)
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const (
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FlagDeleted uint32 = 1 << 12
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FlagInvalid = 1 << 13
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FlagDirectory = 1 << 14
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FlagNoPermBits = 1 << 15
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)
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const (
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FlagShareTrusted uint32 = 1 << 0
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FlagShareReadOnly = 1 << 1
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FlagShareBits = 0x000000ff
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)
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var (
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ErrClusterHash = fmt.Errorf("configuration error: mismatched cluster hash")
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ErrClosed = errors.New("connection closed")
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)
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type Model interface {
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// An index was received from the peer node
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Index(nodeID string, repo string, files []FileInfo)
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// An index update was received from the peer node
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IndexUpdate(nodeID string, repo string, files []FileInfo)
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// A request was made by the peer node
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Request(nodeID string, repo string, name string, offset int64, size int) ([]byte, error)
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// A cluster configuration message was received
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ClusterConfig(nodeID string, config ClusterConfigMessage)
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// The peer node closed the connection
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Close(nodeID string, err error)
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}
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type Connection interface {
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ID() string
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Index(repo string, files []FileInfo)
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Request(repo string, name string, offset int64, size int) ([]byte, error)
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ClusterConfig(config ClusterConfigMessage)
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Statistics() Statistics
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}
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type rawConnection struct {
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id string
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receiver Model
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reader io.ReadCloser
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cr *countingReader
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xr *xdr.Reader
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writer io.WriteCloser
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cw *countingWriter
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wb *bufio.Writer
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xw *xdr.Writer
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wmut sync.Mutex
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indexSent map[string]map[string][2]int64
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awaiting []chan asyncResult
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imut sync.Mutex
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nextID chan int
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outbox chan []encodable
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closed chan struct{}
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}
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type asyncResult struct {
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val []byte
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err error
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}
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const (
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pingTimeout = 30 * time.Second
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pingIdleTime = 60 * time.Second
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)
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func NewConnection(nodeID string, reader io.Reader, writer io.Writer, receiver Model) Connection {
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cr := &countingReader{Reader: reader}
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cw := &countingWriter{Writer: writer}
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flrd := flate.NewReader(cr)
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flwr, err := flate.NewWriter(cw, flate.BestSpeed)
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if err != nil {
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panic(err)
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}
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wb := bufio.NewWriter(flwr)
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c := rawConnection{
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id: nodeID,
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receiver: nativeModel{receiver},
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reader: flrd,
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cr: cr,
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xr: xdr.NewReader(flrd),
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writer: flwr,
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cw: cw,
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wb: wb,
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xw: xdr.NewWriter(wb),
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awaiting: make([]chan asyncResult, 0x1000),
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indexSent: make(map[string]map[string][2]int64),
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outbox: make(chan []encodable),
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nextID: make(chan int),
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closed: make(chan struct{}),
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}
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go c.indexSerializerLoop()
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go c.readerLoop()
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go c.writerLoop()
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go c.pingerLoop()
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go c.idGenerator()
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return wireFormatConnection{&c}
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}
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func (c *rawConnection) ID() string {
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return c.id
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}
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// Index writes the list of file information to the connected peer node
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func (c *rawConnection) Index(repo string, idx []FileInfo) {
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c.imut.Lock()
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var msgType int
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if c.indexSent[repo] == nil {
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// This is the first time we send an index.
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msgType = messageTypeIndex
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c.indexSent[repo] = make(map[string][2]int64)
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for _, f := range idx {
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c.indexSent[repo][f.Name] = [2]int64{f.Modified, int64(f.Version)}
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}
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} else {
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// We have sent one full index. Only send updates now.
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msgType = messageTypeIndexUpdate
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var diff []FileInfo
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for _, f := range idx {
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if vs, ok := c.indexSent[repo][f.Name]; !ok || f.Modified != vs[0] || int64(f.Version) != vs[1] {
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diff = append(diff, f)
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c.indexSent[repo][f.Name] = [2]int64{f.Modified, int64(f.Version)}
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}
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}
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idx = diff
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}
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if len(idx) > 0 {
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c.send(header{0, -1, msgType}, IndexMessage{repo, idx})
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}
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c.imut.Unlock()
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}
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// Request returns the bytes for the specified block after fetching them from the connected peer.
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func (c *rawConnection) Request(repo string, name string, offset int64, size int) ([]byte, error) {
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var id int
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select {
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case id = <-c.nextID:
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case <-c.closed:
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return nil, ErrClosed
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}
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c.imut.Lock()
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if ch := c.awaiting[id]; ch != nil {
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panic("id taken")
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}
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rc := make(chan asyncResult)
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c.awaiting[id] = rc
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c.imut.Unlock()
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ok := c.send(header{0, id, messageTypeRequest},
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RequestMessage{repo, name, uint64(offset), uint32(size)})
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if !ok {
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return nil, ErrClosed
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}
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res, ok := <-rc
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if !ok {
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return nil, ErrClosed
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}
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return res.val, res.err
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}
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// ClusterConfig send the cluster configuration message to the peer and returns any error
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func (c *rawConnection) ClusterConfig(config ClusterConfigMessage) {
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c.send(header{0, -1, messageTypeClusterConfig}, config)
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}
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func (c *rawConnection) ping() bool {
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var id int
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select {
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case id = <-c.nextID:
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case <-c.closed:
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return false
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}
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rc := make(chan asyncResult, 1)
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c.imut.Lock()
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c.awaiting[id] = rc
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c.imut.Unlock()
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ok := c.send(header{0, id, messageTypePing})
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if !ok {
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return false
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}
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res, ok := <-rc
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return ok && res.err == nil
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}
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func (c *rawConnection) readerLoop() (err error) {
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defer func() {
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c.close(err)
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}()
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for {
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select {
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case <-c.closed:
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return ErrClosed
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default:
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}
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var hdr header
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hdr.decodeXDR(c.xr)
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if err := c.xr.Error(); err != nil {
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return err
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}
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if hdr.version != 0 {
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return fmt.Errorf("protocol error: %s: unknown message version %#x", c.id, hdr.version)
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}
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switch hdr.msgType {
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case messageTypeIndex:
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if err := c.handleIndex(); err != nil {
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return err
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}
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case messageTypeIndexUpdate:
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if err := c.handleIndexUpdate(); err != nil {
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return err
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}
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case messageTypeRequest:
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if err := c.handleRequest(hdr); err != nil {
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return err
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}
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case messageTypeResponse:
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if err := c.handleResponse(hdr); err != nil {
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return err
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}
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case messageTypePing:
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c.send(header{0, hdr.msgID, messageTypePong})
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case messageTypePong:
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c.handlePong(hdr)
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case messageTypeClusterConfig:
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if err := c.handleClusterConfig(); err != nil {
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return err
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}
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default:
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return fmt.Errorf("protocol error: %s: unknown message type %#x", c.id, hdr.msgType)
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}
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}
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}
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type incomingIndex struct {
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update bool
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id string
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repo string
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files []FileInfo
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}
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var incomingIndexes = make(chan incomingIndex, 100) // should be enough for anyone, right?
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func (c *rawConnection) indexSerializerLoop() {
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// We must avoid blocking the reader loop when processing large indexes.
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// There is otherwise a potential deadlock where both sides has the model
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// locked because it's sending a large index update and can't receive the
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// large index update from the other side. But we must also ensure to
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// process the indexes in the order they are received, hence the separate
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// routine and buffered channel.
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for ii := range incomingIndexes {
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if ii.update {
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c.receiver.IndexUpdate(ii.id, ii.repo, ii.files)
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} else {
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c.receiver.Index(ii.id, ii.repo, ii.files)
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}
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}
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}
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func (c *rawConnection) handleIndex() error {
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var im IndexMessage
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im.decodeXDR(c.xr)
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if err := c.xr.Error(); err != nil {
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return err
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} else {
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// We run this (and the corresponding one for update, below)
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// in a separate goroutine to avoid blocking the read loop.
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// There is otherwise a potential deadlock where both sides
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// has the model locked because it's sending a large index
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// update and can't receive the large index update from the
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// other side.
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incomingIndexes <- incomingIndex{false, c.id, im.Repository, im.Files}
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}
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return nil
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}
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func (c *rawConnection) handleIndexUpdate() error {
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var im IndexMessage
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im.decodeXDR(c.xr)
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if err := c.xr.Error(); err != nil {
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return err
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} else {
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incomingIndexes <- incomingIndex{true, c.id, im.Repository, im.Files}
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}
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return nil
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}
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func (c *rawConnection) handleRequest(hdr header) error {
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var req RequestMessage
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req.decodeXDR(c.xr)
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if err := c.xr.Error(); err != nil {
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return err
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}
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go c.processRequest(hdr.msgID, req)
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return nil
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}
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func (c *rawConnection) handleResponse(hdr header) error {
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data := c.xr.ReadBytesMax(256 * 1024) // Sufficiently larger than max expected block size
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if err := c.xr.Error(); err != nil {
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return err
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}
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go func(hdr header, err error) {
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c.imut.Lock()
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rc := c.awaiting[hdr.msgID]
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c.awaiting[hdr.msgID] = nil
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c.imut.Unlock()
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if rc != nil {
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rc <- asyncResult{data, err}
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close(rc)
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}
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}(hdr, c.xr.Error())
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return nil
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}
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func (c *rawConnection) handlePong(hdr header) {
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c.imut.Lock()
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if rc := c.awaiting[hdr.msgID]; rc != nil {
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go func() {
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rc <- asyncResult{}
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close(rc)
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}()
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c.awaiting[hdr.msgID] = nil
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}
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c.imut.Unlock()
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}
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func (c *rawConnection) handleClusterConfig() error {
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var cm ClusterConfigMessage
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cm.decodeXDR(c.xr)
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if err := c.xr.Error(); err != nil {
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return err
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} else {
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go c.receiver.ClusterConfig(c.id, cm)
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}
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return nil
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}
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type encodable interface {
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encodeXDR(*xdr.Writer) (int, error)
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}
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type encodableBytes []byte
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func (e encodableBytes) encodeXDR(xw *xdr.Writer) (int, error) {
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return xw.WriteBytes(e)
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}
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func (c *rawConnection) send(h header, es ...encodable) bool {
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if h.msgID < 0 {
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select {
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case id := <-c.nextID:
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h.msgID = id
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case <-c.closed:
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return false
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}
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}
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msg := append([]encodable{h}, es...)
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select {
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case c.outbox <- msg:
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return true
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case <-c.closed:
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return false
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}
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}
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func (c *rawConnection) writerLoop() {
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var err error
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for es := range c.outbox {
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c.wmut.Lock()
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for _, e := range es {
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e.encodeXDR(c.xw)
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}
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if err = c.flush(); err != nil {
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c.wmut.Unlock()
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c.close(err)
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return
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}
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c.wmut.Unlock()
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}
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}
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type flusher interface {
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Flush() error
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}
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func (c *rawConnection) flush() error {
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if err := c.xw.Error(); err != nil {
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return err
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}
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if err := c.wb.Flush(); err != nil {
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return err
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}
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if f, ok := c.writer.(flusher); ok {
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return f.Flush()
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}
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return nil
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}
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func (c *rawConnection) close(err error) {
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c.imut.Lock()
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c.wmut.Lock()
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defer c.imut.Unlock()
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defer c.wmut.Unlock()
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select {
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case <-c.closed:
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return
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default:
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close(c.closed)
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for i, ch := range c.awaiting {
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if ch != nil {
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close(ch)
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c.awaiting[i] = nil
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}
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}
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c.writer.Close()
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c.reader.Close()
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go c.receiver.Close(c.id, err)
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}
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}
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func (c *rawConnection) idGenerator() {
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nextID := 0
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for {
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nextID = (nextID + 1) & 0xfff
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select {
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case c.nextID <- nextID:
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case <-c.closed:
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return
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}
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}
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}
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func (c *rawConnection) pingerLoop() {
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var rc = make(chan bool, 1)
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ticker := time.Tick(pingIdleTime / 2)
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for {
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select {
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case <-ticker:
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if d := time.Since(c.xr.LastRead()); d < pingIdleTime {
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if debug {
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l.Debugln(c.id, "ping skipped after rd", d)
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}
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continue
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}
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if d := time.Since(c.xw.LastWrite()); d < pingIdleTime {
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if debug {
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l.Debugln(c.id, "ping skipped after wr", d)
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}
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continue
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}
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go func() {
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if debug {
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l.Debugln(c.id, "ping ->")
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}
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rc <- c.ping()
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}()
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select {
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case ok := <-rc:
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if debug {
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l.Debugln(c.id, "<- pong")
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}
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if !ok {
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c.close(fmt.Errorf("ping failure"))
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}
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case <-time.After(pingTimeout):
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c.close(fmt.Errorf("ping timeout"))
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case <-c.closed:
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return
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}
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case <-c.closed:
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return
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}
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}
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}
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func (c *rawConnection) processRequest(msgID int, req RequestMessage) {
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data, _ := c.receiver.Request(c.id, req.Repository, req.Name, int64(req.Offset), int(req.Size))
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c.send(header{0, msgID, messageTypeResponse},
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encodableBytes(data))
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}
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type Statistics struct {
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At time.Time
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InBytesTotal uint64
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OutBytesTotal uint64
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}
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func (c *rawConnection) Statistics() Statistics {
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return Statistics{
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At: time.Now(),
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InBytesTotal: c.cr.Tot(),
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OutBytesTotal: c.cw.Tot(),
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}
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}
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func IsDeleted(bits uint32) bool {
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return bits&FlagDeleted != 0
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}
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func IsInvalid(bits uint32) bool {
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return bits&FlagInvalid != 0
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}
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func IsDirectory(bits uint32) bool {
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return bits&FlagDirectory != 0
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}
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func HasPermissionBits(bits uint32) bool {
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return bits&FlagNoPermBits == 0
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}
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