mirror of
https://github.com/moby/moby.git
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![Sebastiaan van Stijn](/assets/img/avatar_default.png)
This patch updates all dependencies to match what is used in moby/moby. Making the dependencies match what is used in that repository makes sure we test with the same version as libnetwork is later built with in moby. This also gets rid of some temporary forks that were needed during the migration of Sirupsen/logrus to sirupsen/logrus. Signed-off-by: Sebastiaan van Stijn <github@gone.nl>
404 lines
11 KiB
Go
404 lines
11 KiB
Go
// +build windows
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package winio
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import (
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"errors"
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"io"
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"net"
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"os"
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"syscall"
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"time"
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"unsafe"
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)
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//sys connectNamedPipe(pipe syscall.Handle, o *syscall.Overlapped) (err error) = ConnectNamedPipe
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//sys createNamedPipe(name string, flags uint32, pipeMode uint32, maxInstances uint32, outSize uint32, inSize uint32, defaultTimeout uint32, sa *syscall.SecurityAttributes) (handle syscall.Handle, err error) [failretval==syscall.InvalidHandle] = CreateNamedPipeW
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//sys createFile(name string, access uint32, mode uint32, sa *syscall.SecurityAttributes, createmode uint32, attrs uint32, templatefile syscall.Handle) (handle syscall.Handle, err error) [failretval==syscall.InvalidHandle] = CreateFileW
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//sys waitNamedPipe(name string, timeout uint32) (err error) = WaitNamedPipeW
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//sys getNamedPipeInfo(pipe syscall.Handle, flags *uint32, outSize *uint32, inSize *uint32, maxInstances *uint32) (err error) = GetNamedPipeInfo
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//sys getNamedPipeHandleState(pipe syscall.Handle, state *uint32, curInstances *uint32, maxCollectionCount *uint32, collectDataTimeout *uint32, userName *uint16, maxUserNameSize uint32) (err error) = GetNamedPipeHandleStateW
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//sys localAlloc(uFlags uint32, length uint32) (ptr uintptr) = LocalAlloc
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const (
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cERROR_PIPE_BUSY = syscall.Errno(231)
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cERROR_PIPE_CONNECTED = syscall.Errno(535)
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cERROR_SEM_TIMEOUT = syscall.Errno(121)
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cPIPE_ACCESS_DUPLEX = 0x3
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cFILE_FLAG_FIRST_PIPE_INSTANCE = 0x80000
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cSECURITY_SQOS_PRESENT = 0x100000
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cSECURITY_ANONYMOUS = 0
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cPIPE_REJECT_REMOTE_CLIENTS = 0x8
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cPIPE_UNLIMITED_INSTANCES = 255
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cNMPWAIT_USE_DEFAULT_WAIT = 0
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cNMPWAIT_NOWAIT = 1
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cPIPE_TYPE_MESSAGE = 4
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cPIPE_READMODE_MESSAGE = 2
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)
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var (
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// ErrPipeListenerClosed is returned for pipe operations on listeners that have been closed.
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// This error should match net.errClosing since docker takes a dependency on its text.
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ErrPipeListenerClosed = errors.New("use of closed network connection")
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errPipeWriteClosed = errors.New("pipe has been closed for write")
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)
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type win32Pipe struct {
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*win32File
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path string
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}
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type win32MessageBytePipe struct {
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win32Pipe
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writeClosed bool
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readEOF bool
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}
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type pipeAddress string
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func (f *win32Pipe) LocalAddr() net.Addr {
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return pipeAddress(f.path)
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}
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func (f *win32Pipe) RemoteAddr() net.Addr {
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return pipeAddress(f.path)
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}
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func (f *win32Pipe) SetDeadline(t time.Time) error {
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f.SetReadDeadline(t)
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f.SetWriteDeadline(t)
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return nil
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}
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// CloseWrite closes the write side of a message pipe in byte mode.
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func (f *win32MessageBytePipe) CloseWrite() error {
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if f.writeClosed {
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return errPipeWriteClosed
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}
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err := f.win32File.Flush()
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if err != nil {
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return err
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}
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_, err = f.win32File.Write(nil)
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if err != nil {
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return err
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}
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f.writeClosed = true
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return nil
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}
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// Write writes bytes to a message pipe in byte mode. Zero-byte writes are ignored, since
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// they are used to implement CloseWrite().
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func (f *win32MessageBytePipe) Write(b []byte) (int, error) {
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if f.writeClosed {
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return 0, errPipeWriteClosed
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}
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if len(b) == 0 {
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return 0, nil
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}
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return f.win32File.Write(b)
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}
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// Read reads bytes from a message pipe in byte mode. A read of a zero-byte message on a message
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// mode pipe will return io.EOF, as will all subsequent reads.
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func (f *win32MessageBytePipe) Read(b []byte) (int, error) {
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if f.readEOF {
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return 0, io.EOF
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}
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n, err := f.win32File.Read(b)
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if err == io.EOF {
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// If this was the result of a zero-byte read, then
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// it is possible that the read was due to a zero-size
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// message. Since we are simulating CloseWrite with a
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// zero-byte message, ensure that all future Read() calls
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// also return EOF.
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f.readEOF = true
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}
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return n, err
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}
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func (s pipeAddress) Network() string {
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return "pipe"
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}
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func (s pipeAddress) String() string {
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return string(s)
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}
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// DialPipe connects to a named pipe by path, timing out if the connection
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// takes longer than the specified duration. If timeout is nil, then the timeout
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// is the default timeout established by the pipe server.
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func DialPipe(path string, timeout *time.Duration) (net.Conn, error) {
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var absTimeout time.Time
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if timeout != nil {
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absTimeout = time.Now().Add(*timeout)
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}
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var err error
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var h syscall.Handle
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for {
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h, err = createFile(path, syscall.GENERIC_READ|syscall.GENERIC_WRITE, 0, nil, syscall.OPEN_EXISTING, syscall.FILE_FLAG_OVERLAPPED|cSECURITY_SQOS_PRESENT|cSECURITY_ANONYMOUS, 0)
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if err != cERROR_PIPE_BUSY {
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break
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}
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now := time.Now()
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var ms uint32
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if absTimeout.IsZero() {
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ms = cNMPWAIT_USE_DEFAULT_WAIT
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} else if now.After(absTimeout) {
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ms = cNMPWAIT_NOWAIT
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} else {
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ms = uint32(absTimeout.Sub(now).Nanoseconds() / 1000 / 1000)
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}
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err = waitNamedPipe(path, ms)
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if err != nil {
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if err == cERROR_SEM_TIMEOUT {
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return nil, ErrTimeout
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}
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break
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}
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}
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if err != nil {
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return nil, &os.PathError{Op: "open", Path: path, Err: err}
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}
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var flags uint32
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err = getNamedPipeInfo(h, &flags, nil, nil, nil)
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if err != nil {
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return nil, err
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}
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var state uint32
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err = getNamedPipeHandleState(h, &state, nil, nil, nil, nil, 0)
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if err != nil {
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return nil, err
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}
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if state&cPIPE_READMODE_MESSAGE != 0 {
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return nil, &os.PathError{Op: "open", Path: path, Err: errors.New("message readmode pipes not supported")}
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}
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f, err := makeWin32File(h)
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if err != nil {
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syscall.Close(h)
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return nil, err
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}
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// If the pipe is in message mode, return a message byte pipe, which
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// supports CloseWrite().
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if flags&cPIPE_TYPE_MESSAGE != 0 {
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return &win32MessageBytePipe{
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win32Pipe: win32Pipe{win32File: f, path: path},
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}, nil
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}
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return &win32Pipe{win32File: f, path: path}, nil
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}
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type acceptResponse struct {
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f *win32File
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err error
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}
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type win32PipeListener struct {
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firstHandle syscall.Handle
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path string
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securityDescriptor []byte
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config PipeConfig
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acceptCh chan (chan acceptResponse)
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closeCh chan int
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doneCh chan int
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}
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func makeServerPipeHandle(path string, securityDescriptor []byte, c *PipeConfig, first bool) (syscall.Handle, error) {
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var flags uint32 = cPIPE_ACCESS_DUPLEX | syscall.FILE_FLAG_OVERLAPPED
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if first {
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flags |= cFILE_FLAG_FIRST_PIPE_INSTANCE
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}
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var mode uint32 = cPIPE_REJECT_REMOTE_CLIENTS
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if c.MessageMode {
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mode |= cPIPE_TYPE_MESSAGE
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}
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sa := &syscall.SecurityAttributes{}
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sa.Length = uint32(unsafe.Sizeof(*sa))
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if securityDescriptor != nil {
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len := uint32(len(securityDescriptor))
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sa.SecurityDescriptor = localAlloc(0, len)
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defer localFree(sa.SecurityDescriptor)
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copy((*[0xffff]byte)(unsafe.Pointer(sa.SecurityDescriptor))[:], securityDescriptor)
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}
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h, err := createNamedPipe(path, flags, mode, cPIPE_UNLIMITED_INSTANCES, uint32(c.OutputBufferSize), uint32(c.InputBufferSize), 0, sa)
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if err != nil {
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return 0, &os.PathError{Op: "open", Path: path, Err: err}
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}
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return h, nil
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}
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func (l *win32PipeListener) makeServerPipe() (*win32File, error) {
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h, err := makeServerPipeHandle(l.path, l.securityDescriptor, &l.config, false)
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if err != nil {
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return nil, err
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}
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f, err := makeWin32File(h)
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if err != nil {
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syscall.Close(h)
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return nil, err
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}
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return f, nil
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}
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func (l *win32PipeListener) listenerRoutine() {
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closed := false
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for !closed {
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select {
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case <-l.closeCh:
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closed = true
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case responseCh := <-l.acceptCh:
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p, err := l.makeServerPipe()
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if err == nil {
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// Wait for the client to connect.
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ch := make(chan error)
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go func(p *win32File) {
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ch <- connectPipe(p)
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}(p)
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select {
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case err = <-ch:
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if err != nil {
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p.Close()
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p = nil
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}
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case <-l.closeCh:
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// Abort the connect request by closing the handle.
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p.Close()
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p = nil
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err = <-ch
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if err == nil || err == ErrFileClosed {
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err = ErrPipeListenerClosed
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}
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closed = true
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}
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}
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responseCh <- acceptResponse{p, err}
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}
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}
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syscall.Close(l.firstHandle)
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l.firstHandle = 0
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// Notify Close() and Accept() callers that the handle has been closed.
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close(l.doneCh)
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}
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// PipeConfig contain configuration for the pipe listener.
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type PipeConfig struct {
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// SecurityDescriptor contains a Windows security descriptor in SDDL format.
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SecurityDescriptor string
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// MessageMode determines whether the pipe is in byte or message mode. In either
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// case the pipe is read in byte mode by default. The only practical difference in
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// this implementation is that CloseWrite() is only supported for message mode pipes;
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// CloseWrite() is implemented as a zero-byte write, but zero-byte writes are only
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// transferred to the reader (and returned as io.EOF in this implementation)
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// when the pipe is in message mode.
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MessageMode bool
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// InputBufferSize specifies the size the input buffer, in bytes.
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InputBufferSize int32
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// OutputBufferSize specifies the size the input buffer, in bytes.
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OutputBufferSize int32
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}
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// ListenPipe creates a listener on a Windows named pipe path, e.g. \\.\pipe\mypipe.
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// The pipe must not already exist.
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func ListenPipe(path string, c *PipeConfig) (net.Listener, error) {
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var (
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sd []byte
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err error
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)
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if c == nil {
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c = &PipeConfig{}
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}
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if c.SecurityDescriptor != "" {
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sd, err = SddlToSecurityDescriptor(c.SecurityDescriptor)
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if err != nil {
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return nil, err
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}
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}
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h, err := makeServerPipeHandle(path, sd, c, true)
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if err != nil {
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return nil, err
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}
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// Immediately open and then close a client handle so that the named pipe is
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// created but not currently accepting connections.
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h2, err := createFile(path, 0, 0, nil, syscall.OPEN_EXISTING, cSECURITY_SQOS_PRESENT|cSECURITY_ANONYMOUS, 0)
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if err != nil {
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syscall.Close(h)
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return nil, err
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}
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syscall.Close(h2)
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l := &win32PipeListener{
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firstHandle: h,
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path: path,
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securityDescriptor: sd,
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config: *c,
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acceptCh: make(chan (chan acceptResponse)),
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closeCh: make(chan int),
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doneCh: make(chan int),
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}
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go l.listenerRoutine()
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return l, nil
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}
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func connectPipe(p *win32File) error {
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c, err := p.prepareIo()
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if err != nil {
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return err
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}
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defer p.wg.Done()
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err = connectNamedPipe(p.handle, &c.o)
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_, err = p.asyncIo(c, nil, 0, err)
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if err != nil && err != cERROR_PIPE_CONNECTED {
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return err
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}
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return nil
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}
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func (l *win32PipeListener) Accept() (net.Conn, error) {
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ch := make(chan acceptResponse)
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select {
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case l.acceptCh <- ch:
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response := <-ch
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err := response.err
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if err != nil {
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return nil, err
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}
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if l.config.MessageMode {
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return &win32MessageBytePipe{
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win32Pipe: win32Pipe{win32File: response.f, path: l.path},
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}, nil
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}
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return &win32Pipe{win32File: response.f, path: l.path}, nil
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case <-l.doneCh:
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return nil, ErrPipeListenerClosed
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}
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}
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func (l *win32PipeListener) Close() error {
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select {
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case l.closeCh <- 1:
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<-l.doneCh
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case <-l.doneCh:
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}
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return nil
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}
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func (l *win32PipeListener) Addr() net.Addr {
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return pipeAddress(l.path)
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}
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