Struct std::net::SocketAddrV6 1.0.0[−][src]
pub struct SocketAddrV6 { /* fields omitted */ }An IPv6 socket address.
IPv6 socket addresses consist of an IPv6 address, a 16-bit port number, as well
as fields containing the traffic class, the flow label, and a scope identifier
(see IETF RFC 2553, Section 3.3 for more details).
See SocketAddr for a type encompassing both IPv4 and IPv6 socket addresses.
The size of a SocketAddrV6 struct may vary depending on the target operating
system. Do not assume that this type has the same memory layout as the underlying
system representation.
Examples
use std::net::{Ipv6Addr, SocketAddrV6}; let socket = SocketAddrV6::new(Ipv6Addr::new(0x2001, 0xdb8, 0, 0, 0, 0, 0, 1), 8080, 0, 0); assert_eq!("[2001:db8::1]:8080".parse(), Ok(socket)); assert_eq!(socket.ip(), &Ipv6Addr::new(0x2001, 0xdb8, 0, 0, 0, 0, 0, 1)); assert_eq!(socket.port(), 8080);Run
Implementations
impl SocketAddrV6[src]
impl SocketAddrV6[src]pub fn new(
ip: Ipv6Addr,
port: u16,
flowinfo: u32,
scope_id: u32
) -> SocketAddrV6[src]
ip: Ipv6Addr,
port: u16,
flowinfo: u32,
scope_id: u32
) -> SocketAddrV6
Creates a new socket address from an IPv6 address, a 16-bit port number,
and the flowinfo and scope_id fields.
For more information on the meaning and layout of the flowinfo and scope_id
parameters, see IETF RFC 2553, Section 3.3.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 0);Run
pub fn ip(&self) -> &Ipv6Addr[src]
Returns the IP address associated with this socket address.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 0); assert_eq!(socket.ip(), &Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1));Run
pub fn set_ip(&mut self, new_ip: Ipv6Addr)1.9.0[src]
Changes the IP address associated with this socket address.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let mut socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 0); socket.set_ip(Ipv6Addr::new(76, 45, 0, 0, 0, 0, 0, 0)); assert_eq!(socket.ip(), &Ipv6Addr::new(76, 45, 0, 0, 0, 0, 0, 0));Run
pub fn port(&self) -> u16[src]
Returns the port number associated with this socket address.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 0); assert_eq!(socket.port(), 8080);Run
pub fn set_port(&mut self, new_port: u16)1.9.0[src]
Changes the port number associated with this socket address.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let mut socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 0); socket.set_port(4242); assert_eq!(socket.port(), 4242);Run
pub fn flowinfo(&self) -> u32[src]
Returns the flow information associated with this address.
This information corresponds to the sin6_flowinfo field in C’s netinet/in.h,
as specified in IETF RFC 2553, Section 3.3.
It combines information about the flow label and the traffic class as specified
in IETF RFC 2460, respectively Section 6 and Section 7.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 10, 0); assert_eq!(socket.flowinfo(), 10);Run
pub fn set_flowinfo(&mut self, new_flowinfo: u32)1.9.0[src]
Changes the flow information associated with this socket address.
See SocketAddrV6::flowinfo’s documentation for more details.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let mut socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 10, 0); socket.set_flowinfo(56); assert_eq!(socket.flowinfo(), 56);Run
pub fn scope_id(&self) -> u32[src]
Returns the scope ID associated with this address.
This information corresponds to the sin6_scope_id field in C’s netinet/in.h,
as specified in IETF RFC 2553, Section 3.3.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 78); assert_eq!(socket.scope_id(), 78);Run
pub fn set_scope_id(&mut self, new_scope_id: u32)1.9.0[src]
Changes the scope ID associated with this socket address.
See SocketAddrV6::scope_id’s documentation for more details.
Examples
use std::net::{SocketAddrV6, Ipv6Addr}; let mut socket = SocketAddrV6::new(Ipv6Addr::new(0, 0, 0, 0, 0, 0, 0, 1), 8080, 0, 78); socket.set_scope_id(42); assert_eq!(socket.scope_id(), 42);Run
Trait Implementations
impl Clone for SocketAddrV6[src]
impl Clone for SocketAddrV6[src]fn clone(&self) -> SocketAddrV6[src]
pub fn clone_from(&mut self, source: &Self)[src]
impl Copy for SocketAddrV6[src]
impl Copy for SocketAddrV6[src]impl Eq for SocketAddrV6[src]
impl Eq for SocketAddrV6[src]impl From<SocketAddrV6> for SocketAddr1.16.0[src]
impl From<SocketAddrV6> for SocketAddr1.16.0[src]fn from(sock6: SocketAddrV6) -> SocketAddr[src]
Converts a SocketAddrV6 into a SocketAddr::V6.
impl FromStr for SocketAddrV61.5.0[src]
impl FromStr for SocketAddrV61.5.0[src]type Err = AddrParseError
The associated error which can be returned from parsing.
fn from_str(s: &str) -> Result<SocketAddrV6, AddrParseError>[src]
impl Hash for SocketAddrV6[src]
impl Hash for SocketAddrV6[src]impl Ord for SocketAddrV61.45.0[src]
impl Ord for SocketAddrV61.45.0[src]impl PartialEq<SocketAddrV6> for SocketAddrV6[src]
impl PartialEq<SocketAddrV6> for SocketAddrV6[src]impl PartialOrd<SocketAddrV6> for SocketAddrV61.45.0[src]
impl PartialOrd<SocketAddrV6> for SocketAddrV61.45.0[src]impl ToSocketAddrs for SocketAddrV6[src]
impl ToSocketAddrs for SocketAddrV6[src]type Iter = IntoIter<SocketAddr>
Returned iterator over socket addresses which this type may correspond to. Read more
fn to_socket_addrs(&self) -> Result<IntoIter<SocketAddr>>[src]
Auto Trait Implementations
impl RefUnwindSafe for SocketAddrV6
impl RefUnwindSafe for SocketAddrV6impl Send for SocketAddrV6
impl Send for SocketAddrV6impl Sync for SocketAddrV6
impl Sync for SocketAddrV6impl Unpin for SocketAddrV6
impl Unpin for SocketAddrV6impl UnwindSafe for SocketAddrV6
impl UnwindSafe for SocketAddrV6Blanket Implementations
impl<T> Borrow<T> for T where
T: ?Sized, [src]
impl<T> Borrow<T> for T where
T: ?Sized, [src]pub fn borrow(&self) -> &TⓘNotable traits for &'_ mut I
impl<'_, I> Iterator for &'_ mut I where
I: Iterator + ?Sized, type Item = <I as Iterator>::Item;impl<'_, F> Future for &'_ mut F where
F: Future + Unpin + ?Sized, type Output = <F as Future>::Output;impl<R: Read + ?Sized> Read for &mut Rimpl<W: Write + ?Sized> Write for &mut W[src]
Notable traits for &'_ mut I
impl<'_, I> Iterator for &'_ mut I where
I: Iterator + ?Sized, type Item = <I as Iterator>::Item;impl<'_, F> Future for &'_ mut F where
F: Future + Unpin + ?Sized, type Output = <F as Future>::Output;impl<R: Read + ?Sized> Read for &mut Rimpl<W: Write + ?Sized> Write for &mut Wimpl<T> BorrowMut<T> for T where
T: ?Sized, [src]
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]pub fn borrow_mut(&mut self) -> &mut TⓘNotable traits for &'_ mut I
impl<'_, I> Iterator for &'_ mut I where
I: Iterator + ?Sized, type Item = <I as Iterator>::Item;impl<'_, F> Future for &'_ mut F where
F: Future + Unpin + ?Sized, type Output = <F as Future>::Output;impl<R: Read + ?Sized> Read for &mut Rimpl<W: Write + ?Sized> Write for &mut W[src]
Notable traits for &'_ mut I
impl<'_, I> Iterator for &'_ mut I where
I: Iterator + ?Sized, type Item = <I as Iterator>::Item;impl<'_, F> Future for &'_ mut F where
F: Future + Unpin + ?Sized, type Output = <F as Future>::Output;impl<R: Read + ?Sized> Read for &mut Rimpl<W: Write + ?Sized> Write for &mut W