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https://github.com/vlang/v.git
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148 lines
3.8 KiB
V
148 lines
3.8 KiB
V
module net
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import time
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// no_deadline should be given to functions when no deadline is wanted (i.e. all functions
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// return instantly)
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const no_deadline = time.Time{
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unix: 0
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}
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// no_timeout should be given to functions when no timeout is wanted (i.e. all functions
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// return instantly)
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pub const no_timeout = time.Duration(0)
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// infinite_timeout should be given to functions when an infinite_timeout is wanted (i.e. functions
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// only ever return with data)
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pub const infinite_timeout = time.infinite
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// ShutdownDirection is used by `net.shutdown`, for specifying the direction for which the
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// communication will be cut.
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pub enum ShutdownDirection {
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read
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write
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read_and_write
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}
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[params]
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pub struct ShutdownConfig {
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how ShutdownDirection = .read_and_write
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}
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// shutdown shutsdown a socket, given its file descriptor `handle`.
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// By default it shuts it down in both directions, both for reading
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// and for writing. You can change that using `net.shutdown(handle, how: .read)`
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// or `net.shutdown(handle, how: .write)`
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pub fn shutdown(handle int, config ShutdownConfig) int {
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$if windows {
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return C.shutdown(handle, int(config.how))
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} $else {
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return C.shutdown(handle, int(config.how))
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}
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}
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// close a socket, given its file descriptor `handle`.
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pub fn close(handle int) ! {
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$if windows {
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socket_error(C.closesocket(handle))!
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} $else {
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socket_error(C.close(handle))!
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}
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}
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// Select waits for an io operation (specified by parameter `test`) to be available
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fn @select(handle int, test Select, timeout time.Duration) !bool {
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set := C.fd_set{}
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C.FD_ZERO(&set)
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C.FD_SET(handle, &set)
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seconds := timeout / time.second
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microseconds := time.Duration(timeout - (seconds * time.second)).microseconds()
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mut tt := C.timeval{
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tv_sec: u64(seconds)
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tv_usec: u64(microseconds)
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}
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mut timeval_timeout := &tt
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// infinite timeout is signaled by passing null as the timeout to
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// select
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if timeout == net.infinite_timeout {
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timeval_timeout = &C.timeval(unsafe { nil })
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}
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match test {
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.read {
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socket_error(C.@select(handle + 1, &set, C.NULL, C.NULL, timeval_timeout))!
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}
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.write {
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socket_error(C.@select(handle + 1, C.NULL, &set, C.NULL, timeval_timeout))!
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}
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.except {
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socket_error(C.@select(handle + 1, C.NULL, C.NULL, &set, timeval_timeout))!
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}
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}
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return C.FD_ISSET(handle, &set)
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}
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[inline]
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fn select_deadline(handle int, test Select, deadline time.Time) !bool {
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// if we have a 0 deadline here then the timeout that was passed was infinite...
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infinite := deadline.unix_time() == 0
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for infinite || time.now() <= deadline {
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timeout := if infinite { net.infinite_timeout } else { deadline - time.now() }
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ready := @select(handle, test, timeout) or {
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if err.code() == 4 {
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// Spurious wakeup from signal, keep waiting
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continue
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}
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// NOT a spurious wakeup
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return err
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}
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return ready
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}
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// Deadline elapsed
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return false
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}
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// wait_for_common wraps the common wait code
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fn wait_for_common(handle int, deadline time.Time, timeout time.Duration, test Select) ! {
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// Convert timeouts to deadlines
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real_deadline := if timeout == net.infinite_timeout {
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time.unix(0)
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} else if timeout == 0 {
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// No timeout set, so assume deadline
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deadline
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} else if timeout < 0 {
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// TODO(emily): Do something nicer here :)
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panic('invalid negative timeout')
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} else {
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// timeout
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time.now().add(timeout)
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}
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ready := select_deadline(handle, test, real_deadline)!
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if ready {
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return
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}
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return err_timed_out
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}
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// wait_for_write waits for a write io operation to be available
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fn wait_for_write(handle int, deadline time.Time, timeout time.Duration) ! {
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return wait_for_common(handle, deadline, timeout, .write)
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}
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// wait_for_read waits for a read io operation to be available
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fn wait_for_read(handle int, deadline time.Time, timeout time.Duration) ! {
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return wait_for_common(handle, deadline, timeout, .read)
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}
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