forked from jshiffer/matterbridge
239 lines
5.9 KiB
Go
239 lines
5.9 KiB
Go
package sftp
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import (
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"context"
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"encoding"
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"io"
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"path"
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"path/filepath"
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"strconv"
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"sync"
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"syscall"
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"github.com/pkg/errors"
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)
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var maxTxPacket uint32 = 1 << 15
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// Handlers contains the 4 SFTP server request handlers.
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type Handlers struct {
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FileGet FileReader
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FilePut FileWriter
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FileCmd FileCmder
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FileList FileLister
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}
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// RequestServer abstracts the sftp protocol with an http request-like protocol
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type RequestServer struct {
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*serverConn
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Handlers Handlers
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pktMgr *packetManager
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openRequests map[string]*Request
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openRequestLock sync.RWMutex
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handleCount int
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}
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// NewRequestServer creates/allocates/returns new RequestServer.
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// Normally there there will be one server per user-session.
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func NewRequestServer(rwc io.ReadWriteCloser, h Handlers) *RequestServer {
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svrConn := &serverConn{
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conn: conn{
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Reader: rwc,
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WriteCloser: rwc,
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},
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}
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return &RequestServer{
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serverConn: svrConn,
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Handlers: h,
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pktMgr: newPktMgr(svrConn),
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openRequests: make(map[string]*Request),
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}
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}
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// New Open packet/Request
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func (rs *RequestServer) nextRequest(r *Request) string {
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rs.openRequestLock.Lock()
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defer rs.openRequestLock.Unlock()
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rs.handleCount++
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handle := strconv.Itoa(rs.handleCount)
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rs.openRequests[handle] = r
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return handle
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}
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// Returns Request from openRequests, bool is false if it is missing
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// If the method is different, save/return a new Request w/ that Method.
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//
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// The Requests in openRequests work essentially as open file descriptors that
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// you can do different things with. What you are doing with it are denoted by
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// the first packet of that type (read/write/etc). We create a new Request when
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// it changes to set the request.Method attribute in a thread safe way.
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func (rs *RequestServer) getRequest(handle, method string) (*Request, bool) {
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rs.openRequestLock.RLock()
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r, ok := rs.openRequests[handle]
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rs.openRequestLock.RUnlock()
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if !ok || r.Method == method {
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return r, ok
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}
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// if we make it here we need to replace the request
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rs.openRequestLock.Lock()
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defer rs.openRequestLock.Unlock()
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r, ok = rs.openRequests[handle]
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if !ok || r.Method == method { // re-check needed b/c lock race
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return r, ok
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}
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r = r.copy()
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r.Method = method
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rs.openRequests[handle] = r
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return r, ok
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}
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func (rs *RequestServer) closeRequest(handle string) error {
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rs.openRequestLock.Lock()
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defer rs.openRequestLock.Unlock()
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if r, ok := rs.openRequests[handle]; ok {
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delete(rs.openRequests, handle)
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return r.close()
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}
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return syscall.EBADF
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}
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// Close the read/write/closer to trigger exiting the main server loop
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func (rs *RequestServer) Close() error { return rs.conn.Close() }
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// Serve requests for user session
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func (rs *RequestServer) Serve() error {
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ctx, cancel := context.WithCancel(context.Background())
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defer cancel()
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var wg sync.WaitGroup
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runWorker := func(ch requestChan) {
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wg.Add(1)
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go func() {
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defer wg.Done()
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if err := rs.packetWorker(ctx, ch); err != nil {
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rs.conn.Close() // shuts down recvPacket
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}
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}()
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}
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pktChan := rs.pktMgr.workerChan(runWorker)
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var err error
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var pkt requestPacket
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var pktType uint8
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var pktBytes []byte
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for {
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pktType, pktBytes, err = rs.recvPacket()
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if err != nil {
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break
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}
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pkt, err = makePacket(rxPacket{fxp(pktType), pktBytes})
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if err != nil {
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debug("makePacket err: %v", err)
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rs.conn.Close() // shuts down recvPacket
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break
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}
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pktChan <- pkt
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}
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close(pktChan) // shuts down sftpServerWorkers
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wg.Wait() // wait for all workers to exit
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// make sure all open requests are properly closed
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// (eg. possible on dropped connections, client crashes, etc.)
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for handle, req := range rs.openRequests {
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delete(rs.openRequests, handle)
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req.close()
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}
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return err
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}
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func (rs *RequestServer) packetWorker(
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ctx context.Context, pktChan chan requestPacket,
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) error {
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for pkt := range pktChan {
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var rpkt responsePacket
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switch pkt := pkt.(type) {
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case *sshFxInitPacket:
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rpkt = sshFxVersionPacket{sftpProtocolVersion, nil}
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case *sshFxpClosePacket:
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handle := pkt.getHandle()
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rpkt = statusFromError(pkt, rs.closeRequest(handle))
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case *sshFxpRealpathPacket:
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rpkt = cleanPacketPath(pkt)
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case *sshFxpOpendirPacket:
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request := requestFromPacket(ctx, pkt)
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handle := rs.nextRequest(request)
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rpkt = sshFxpHandlePacket{pkt.id(), handle}
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case *sshFxpOpenPacket:
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request := requestFromPacket(ctx, pkt)
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handle := rs.nextRequest(request)
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rpkt = sshFxpHandlePacket{pkt.id(), handle}
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if pkt.hasPflags(ssh_FXF_CREAT) {
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if p := request.call(rs.Handlers, pkt); !isOk(p) {
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rpkt = p // if error in write, return it
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}
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}
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case hasHandle:
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handle := pkt.getHandle()
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request, ok := rs.getRequest(handle, requestMethod(pkt))
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if !ok {
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rpkt = statusFromError(pkt, syscall.EBADF)
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} else {
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rpkt = request.call(rs.Handlers, pkt)
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}
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case hasPath:
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request := requestFromPacket(ctx, pkt)
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rpkt = request.call(rs.Handlers, pkt)
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request.close()
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default:
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return errors.Errorf("unexpected packet type %T", pkt)
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}
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err := rs.sendPacket(rpkt)
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if err != nil {
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return err
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}
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}
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return nil
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}
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// True is responsePacket is an OK status packet
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func isOk(rpkt responsePacket) bool {
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p, ok := rpkt.(sshFxpStatusPacket)
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return ok && p.StatusError.Code == ssh_FX_OK
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}
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// clean and return name packet for file
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func cleanPacketPath(pkt *sshFxpRealpathPacket) responsePacket {
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path := cleanPath(pkt.getPath())
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return &sshFxpNamePacket{
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ID: pkt.id(),
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NameAttrs: []sshFxpNameAttr{{
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Name: path,
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LongName: path,
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Attrs: emptyFileStat,
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}},
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}
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}
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// Makes sure we have a clean POSIX (/) absolute path to work with
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func cleanPath(p string) string {
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p = filepath.ToSlash(p)
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if !filepath.IsAbs(p) {
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p = "/" + p
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}
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return path.Clean(p)
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}
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// Wrap underlying connection methods to use packetManager
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func (rs *RequestServer) sendPacket(m encoding.BinaryMarshaler) error {
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if pkt, ok := m.(responsePacket); ok {
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rs.pktMgr.readyPacket(pkt)
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} else {
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return errors.Errorf("unexpected packet type %T", m)
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}
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return nil
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}
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