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