189 lines
4.7 KiB
Go
189 lines
4.7 KiB
Go
//go:build darwin
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package rawfile
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import (
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"unsafe"
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"golang.org/x/sys/unix"
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)
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// SizeofIovec is the size of a unix.Iovec in bytes.
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const SizeofIovec = unsafe.Sizeof(unix.Iovec{})
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// MaxIovs is UIO_MAXIOV, the maximum number of iovecs that may be passed to a
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// host system call in a single array.
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const MaxIovs = 1024
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// IovecFromBytes returns a unix.Iovec representing bs.
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//
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// Preconditions: len(bs) > 0.
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func IovecFromBytes(bs []byte) unix.Iovec {
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iov := unix.Iovec{
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Base: &bs[0],
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}
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iov.SetLen(len(bs))
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return iov
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}
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func bytesFromIovec(iov unix.Iovec) []byte {
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return unsafe.Slice(iov.Base, iov.Len)
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}
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// AppendIovecFromBytes returns append(iovs, IovecFromBytes(bs)). If len(bs) ==
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// 0, AppendIovecFromBytes returns iovs without modification. If len(iovs) >=
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// max, AppendIovecFromBytes replaces the final iovec in iovs with one that
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// also includes the contents of bs. Note that this implies that
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// AppendIovecFromBytes is only usable when the returned iovec slice is used as
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// the source of a write.
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func AppendIovecFromBytes(iovs []unix.Iovec, bs []byte, max int) []unix.Iovec {
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if len(bs) == 0 {
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return iovs
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}
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if len(iovs) < max {
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return append(iovs, IovecFromBytes(bs))
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}
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iovs[len(iovs)-1] = IovecFromBytes(append(bytesFromIovec(iovs[len(iovs)-1]), bs...))
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return iovs
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}
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type MsgHdrX struct {
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Msg unix.Msghdr
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DataLen uint32
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}
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func NonBlockingSendMMsg(fd int, msgHdrs []MsgHdrX) (int, unix.Errno) {
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//nolint:staticcheck
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n, _, e := unix.RawSyscall6(unix.SYS_SENDMSG_X, uintptr(fd), uintptr(unsafe.Pointer(&msgHdrs[0])), uintptr(len(msgHdrs)), unix.MSG_DONTWAIT, 0, 0)
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return int(n), e
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}
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const SizeofMsgHdrX = unsafe.Sizeof(MsgHdrX{})
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// NonBlockingWriteIovec writes iovec to a file descriptor in a single unix.
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// It fails if partial data is written.
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func NonBlockingWriteIovec(fd int, iovec []unix.Iovec) unix.Errno {
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iovecLen := uintptr(len(iovec))
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//nolint:staticcheck
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_, _, e := unix.RawSyscall(unix.SYS_WRITEV, uintptr(fd), uintptr(unsafe.Pointer(&iovec[0])), iovecLen)
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return e
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}
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func BlockingReadvUntilStopped(efd int, fd int, iovecs []unix.Iovec) (int, unix.Errno) {
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for {
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//nolint:staticcheck
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n, _, e := unix.RawSyscall(unix.SYS_READV, uintptr(fd), uintptr(unsafe.Pointer(&iovecs[0])), uintptr(len(iovecs)))
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if e == 0 {
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return int(n), 0
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}
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if e != 0 && e != unix.EWOULDBLOCK {
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return 0, e
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}
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stopped, e := BlockingPollUntilStopped(efd, fd, unix.POLLIN)
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if stopped {
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return -1, e
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}
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if e != 0 && e != unix.EINTR {
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return 0, e
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}
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}
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}
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func BlockingRecvMMsgUntilStopped(efd int, fd int, msgHdrs []MsgHdrX) (int, unix.Errno) {
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for {
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//nolint:staticcheck
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n, _, e := unix.RawSyscall6(unix.SYS_RECVMSG_X, uintptr(fd), uintptr(unsafe.Pointer(&msgHdrs[0])), uintptr(len(msgHdrs)), unix.MSG_DONTWAIT, 0, 0)
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if e == 0 {
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return int(n), e
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}
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if e != 0 && e != unix.EWOULDBLOCK {
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return 0, e
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}
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stopped, e := BlockingPollUntilStopped(efd, fd, unix.POLLIN)
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if stopped {
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return -1, e
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}
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if e != 0 && e != unix.EINTR {
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return 0, e
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}
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}
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}
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func BlockingPollUntilStopped(efd int, fd int, events int16) (bool, unix.Errno) {
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// Create kqueue
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kq, err := unix.Kqueue()
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if err != nil {
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return false, unix.Errno(err.(unix.Errno))
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}
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defer unix.Close(kq)
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// Prepare kevents for registration
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var kevents []unix.Kevent_t
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// Always monitor efd for read events
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kevents = append(kevents, unix.Kevent_t{
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Ident: uint64(efd),
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Filter: unix.EVFILT_READ,
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Flags: unix.EV_ADD | unix.EV_ENABLE,
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})
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// Monitor fd based on requested events
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// Convert poll events to kqueue filters
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if events&unix.POLLIN != 0 {
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kevents = append(kevents, unix.Kevent_t{
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Ident: uint64(fd),
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Filter: unix.EVFILT_READ,
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Flags: unix.EV_ADD | unix.EV_ENABLE,
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})
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}
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if events&unix.POLLOUT != 0 {
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kevents = append(kevents, unix.Kevent_t{
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Ident: uint64(fd),
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Filter: unix.EVFILT_WRITE,
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Flags: unix.EV_ADD | unix.EV_ENABLE,
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})
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}
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// Register events
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_, err = unix.Kevent(kq, kevents, nil, nil)
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if err != nil {
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return false, unix.Errno(err.(unix.Errno))
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}
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// Wait for events (blocking)
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revents := make([]unix.Kevent_t, len(kevents))
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n, err := unix.Kevent(kq, nil, revents, nil)
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if err != nil {
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return false, unix.Errno(err.(unix.Errno))
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}
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// Check results
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var efdHasData bool
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var errno unix.Errno
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for i := range n {
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ev := &revents[i]
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if int(ev.Ident) == efd && ev.Filter == unix.EVFILT_READ {
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efdHasData = true
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}
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if int(ev.Ident) == fd {
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// Check for errors or EOF
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if ev.Flags&unix.EV_EOF != 0 {
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errno = unix.ECONNRESET
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} else if ev.Flags&unix.EV_ERROR != 0 {
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// Extract error from Data field
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if ev.Data != 0 {
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errno = unix.Errno(ev.Data)
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} else {
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errno = unix.ECONNRESET
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}
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}
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}
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}
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return efdHasData, errno
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}
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