Implement IpV{4,6}Addr structs with native Rust encoding
This commit is contained in:
@@ -12,7 +12,7 @@ use crate::option;
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use crate::slice;
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use crate::sys::net::netc as c;
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use crate::sys_common::net::LookupHost;
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use crate::sys_common::{AsInner, FromInner, IntoInner};
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use crate::sys_common::{FromInner, IntoInner};
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use crate::vec;
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/// An internet socket address, either IPv4 or IPv6.
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@@ -528,17 +528,14 @@ impl SocketAddrV6 {
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impl FromInner<c::sockaddr_in> for SocketAddrV4 {
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fn from_inner(addr: c::sockaddr_in) -> SocketAddrV4 {
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SocketAddrV4 {
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ip: unsafe { *(&addr.sin_addr as *const c::in_addr as *const Ipv4Addr) },
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port: ntohs(addr.sin_port),
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}
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SocketAddrV4 { ip: Ipv4Addr::from_inner(addr.sin_addr), port: ntohs(addr.sin_port) }
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}
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}
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impl FromInner<c::sockaddr_in6> for SocketAddrV6 {
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fn from_inner(addr: c::sockaddr_in6) -> SocketAddrV6 {
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SocketAddrV6 {
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ip: unsafe { *(&addr.sin6_addr as *const c::in6_addr as *const Ipv6Addr) },
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ip: Ipv6Addr::from_inner(addr.sin6_addr),
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port: ntohs(addr.sin6_port),
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flowinfo: addr.sin6_flowinfo,
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scope_id: addr.sin6_scope_id,
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@@ -562,7 +559,7 @@ impl IntoInner<c::sockaddr_in6> for SocketAddrV6 {
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c::sockaddr_in6 {
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sin6_family: c::AF_INET6 as c::sa_family_t,
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sin6_port: htons(self.port),
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sin6_addr: *self.ip.as_inner(),
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sin6_addr: self.ip.into_inner(),
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sin6_flowinfo: self.flowinfo,
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sin6_scope_id: self.scope_id,
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..unsafe { mem::zeroed() }
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@@ -4,11 +4,10 @@ mod tests;
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use crate::cmp::Ordering;
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use crate::fmt::{self, Write as FmtWrite};
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use crate::hash;
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use crate::io::Write as IoWrite;
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use crate::mem::transmute;
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use crate::sys::net::netc as c;
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use crate::sys_common::{AsInner, FromInner, IntoInner};
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use crate::sys_common::{FromInner, IntoInner};
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/// An IP address, either IPv4 or IPv6.
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///
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@@ -77,10 +76,10 @@ pub enum IpAddr {
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/// assert!("0000000.0.0.0".parse::<Ipv4Addr>().is_err()); // first octet is a zero in octal
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/// assert!("0xcb.0x0.0x71.0x00".parse::<Ipv4Addr>().is_err()); // all octets are in hex
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/// ```
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#[derive(Copy)]
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#[derive(Copy, Clone, PartialEq, Eq, Hash)]
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#[stable(feature = "rust1", since = "1.0.0")]
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pub struct Ipv4Addr {
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inner: c::in_addr,
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octets: [u8; 4],
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}
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/// An IPv6 address.
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@@ -162,10 +161,10 @@ pub struct Ipv4Addr {
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/// assert_eq!("::1".parse(), Ok(localhost));
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/// assert_eq!(localhost.is_loopback(), true);
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/// ```
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#[derive(Copy)]
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#[derive(Copy, Clone, PartialEq, Eq, Hash)]
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#[stable(feature = "rust1", since = "1.0.0")]
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pub struct Ipv6Addr {
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inner: c::in6_addr,
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octets: [u8; 16],
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}
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/// Scope of an [IPv6 multicast address] as defined in [IETF RFC 7346 section 2].
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@@ -461,9 +460,7 @@ impl Ipv4Addr {
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#[must_use]
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#[inline]
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pub const fn new(a: u8, b: u8, c: u8, d: u8) -> Ipv4Addr {
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// `s_addr` is stored as BE on all machine and the array is in BE order.
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// So the native endian conversion method is used so that it's never swapped.
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Ipv4Addr { inner: c::in_addr { s_addr: u32::from_ne_bytes([a, b, c, d]) } }
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Ipv4Addr { octets: [a, b, c, d] }
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}
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/// An IPv4 address with the address pointing to localhost: `127.0.0.1`
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@@ -523,8 +520,7 @@ impl Ipv4Addr {
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#[must_use]
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#[inline]
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pub const fn octets(&self) -> [u8; 4] {
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// This returns the order we want because s_addr is stored in big-endian.
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self.inner.s_addr.to_ne_bytes()
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self.octets
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}
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/// Returns [`true`] for the special 'unspecified' address (`0.0.0.0`).
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@@ -547,7 +543,7 @@ impl Ipv4Addr {
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#[must_use]
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#[inline]
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pub const fn is_unspecified(&self) -> bool {
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self.inner.s_addr == 0
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u32::from_be_bytes(self.octets) == 0
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}
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/// Returns [`true`] if this is a loopback address (`127.0.0.0/8`).
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@@ -910,9 +906,7 @@ impl Ipv4Addr {
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#[inline]
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pub const fn to_ipv6_compatible(&self) -> Ipv6Addr {
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let [a, b, c, d] = self.octets();
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Ipv6Addr {
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inner: c::in6_addr { s6_addr: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, a, b, c, d] },
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}
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Ipv6Addr { octets: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, a, b, c, d] }
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}
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/// Converts this address to an [IPv4-mapped] [`IPv6` address].
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@@ -937,9 +931,7 @@ impl Ipv4Addr {
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#[inline]
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pub const fn to_ipv6_mapped(&self) -> Ipv6Addr {
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let [a, b, c, d] = self.octets();
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Ipv6Addr {
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inner: c::in6_addr { s6_addr: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0xFF, 0xFF, a, b, c, d] },
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}
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Ipv6Addr { octets: [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0xFF, 0xFF, a, b, c, d] }
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}
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}
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@@ -1034,22 +1026,6 @@ impl fmt::Debug for Ipv4Addr {
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl Clone for Ipv4Addr {
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#[inline]
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fn clone(&self) -> Ipv4Addr {
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*self
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl PartialEq for Ipv4Addr {
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#[inline]
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fn eq(&self, other: &Ipv4Addr) -> bool {
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self.inner.s_addr == other.inner.s_addr
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}
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}
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#[stable(feature = "ip_cmp", since = "1.16.0")]
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impl PartialEq<Ipv4Addr> for IpAddr {
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#[inline]
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@@ -1072,21 +1048,6 @@ impl PartialEq<IpAddr> for Ipv4Addr {
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl Eq for Ipv4Addr {}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl hash::Hash for Ipv4Addr {
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#[inline]
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fn hash<H: hash::Hasher>(&self, s: &mut H) {
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// NOTE:
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// * hash in big endian order
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// * in netbsd, `in_addr` has `repr(packed)`, we need to
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// copy `s_addr` to avoid unsafe borrowing
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{ self.inner.s_addr }.hash(s)
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl PartialOrd for Ipv4Addr {
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#[inline]
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@@ -1121,15 +1082,21 @@ impl PartialOrd<IpAddr> for Ipv4Addr {
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impl Ord for Ipv4Addr {
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#[inline]
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fn cmp(&self, other: &Ipv4Addr) -> Ordering {
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// Compare as native endian
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u32::from_be(self.inner.s_addr).cmp(&u32::from_be(other.inner.s_addr))
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self.octets.cmp(&other.octets)
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}
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}
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impl IntoInner<c::in_addr> for Ipv4Addr {
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#[inline]
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fn into_inner(self) -> c::in_addr {
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self.inner
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// `s_addr` is stored as BE on all machines and the array is in BE order.
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// So the native endian conversion method is used so that it's never swapped.
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c::in_addr { s_addr: u32::from_ne_bytes(self.octets) }
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}
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}
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impl FromInner<c::in_addr> for Ipv4Addr {
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fn from_inner(addr: c::in_addr) -> Ipv4Addr {
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Ipv4Addr { octets: addr.s_addr.to_ne_bytes() }
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}
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}
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@@ -1147,8 +1114,7 @@ impl From<Ipv4Addr> for u32 {
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/// ```
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#[inline]
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fn from(ip: Ipv4Addr) -> u32 {
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let ip = ip.octets();
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u32::from_be_bytes(ip)
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u32::from_be_bytes(ip.octets)
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}
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}
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@@ -1166,7 +1132,7 @@ impl From<u32> for Ipv4Addr {
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/// ```
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#[inline]
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fn from(ip: u32) -> Ipv4Addr {
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Ipv4Addr::from(ip.to_be_bytes())
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Ipv4Addr { octets: ip.to_be_bytes() }
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}
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}
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@@ -1184,7 +1150,7 @@ impl From<[u8; 4]> for Ipv4Addr {
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/// ```
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#[inline]
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fn from(octets: [u8; 4]) -> Ipv4Addr {
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Ipv4Addr::new(octets[0], octets[1], octets[2], octets[3])
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Ipv4Addr { octets }
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}
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}
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@@ -1234,13 +1200,9 @@ impl Ipv6Addr {
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h.to_be(),
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];
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Ipv6Addr {
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inner: c::in6_addr {
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// All elements in `addr16` are big endian.
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// SAFETY: `[u16; 8]` is always safe to transmute to `[u8; 16]`.
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// rustc_allow_const_fn_unstable: the transmute could be written as stable const
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// code, but that leads to worse code generation (#75085)
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s6_addr: unsafe { transmute::<_, [u8; 16]>(addr16) },
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},
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// All elements in `addr16` are big endian.
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// SAFETY: `[u16; 8]` is always safe to transmute to `[u8; 16]`.
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octets: unsafe { transmute::<_, [u8; 16]>(addr16) },
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}
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}
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@@ -1285,11 +1247,9 @@ impl Ipv6Addr {
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#[must_use]
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#[inline]
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pub const fn segments(&self) -> [u16; 8] {
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// All elements in `s6_addr` must be big endian.
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// All elements in `self.octets` must be big endian.
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// SAFETY: `[u8; 16]` is always safe to transmute to `[u16; 8]`.
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// rustc_allow_const_fn_unstable: the transmute could be written as stable const code, but
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// that leads to worse code generation (#75085)
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let [a, b, c, d, e, f, g, h] = unsafe { transmute::<_, [u16; 8]>(self.inner.s6_addr) };
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let [a, b, c, d, e, f, g, h] = unsafe { transmute::<_, [u16; 8]>(self.octets) };
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// We want native endian u16
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[
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u16::from_be(a),
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@@ -1748,7 +1708,7 @@ impl Ipv6Addr {
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#[must_use]
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#[inline]
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pub const fn octets(&self) -> [u8; 16] {
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self.inner.s6_addr
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self.octets
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}
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}
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@@ -1856,22 +1816,6 @@ impl fmt::Debug for Ipv6Addr {
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl Clone for Ipv6Addr {
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#[inline]
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fn clone(&self) -> Ipv6Addr {
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*self
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl PartialEq for Ipv6Addr {
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#[inline]
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fn eq(&self, other: &Ipv6Addr) -> bool {
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self.inner.s6_addr == other.inner.s6_addr
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}
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}
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#[stable(feature = "ip_cmp", since = "1.16.0")]
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impl PartialEq<IpAddr> for Ipv6Addr {
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#[inline]
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@@ -1894,17 +1838,6 @@ impl PartialEq<Ipv6Addr> for IpAddr {
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl Eq for Ipv6Addr {}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl hash::Hash for Ipv6Addr {
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#[inline]
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fn hash<H: hash::Hasher>(&self, s: &mut H) {
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self.inner.s6_addr.hash(s)
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}
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}
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#[stable(feature = "rust1", since = "1.0.0")]
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impl PartialOrd for Ipv6Addr {
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#[inline]
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@@ -1943,16 +1876,15 @@ impl Ord for Ipv6Addr {
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}
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}
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impl AsInner<c::in6_addr> for Ipv6Addr {
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#[inline]
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fn as_inner(&self) -> &c::in6_addr {
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&self.inner
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impl IntoInner<c::in6_addr> for Ipv6Addr {
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fn into_inner(self) -> c::in6_addr {
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c::in6_addr { s6_addr: self.octets }
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}
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}
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impl FromInner<c::in6_addr> for Ipv6Addr {
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#[inline]
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fn from_inner(addr: c::in6_addr) -> Ipv6Addr {
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Ipv6Addr { inner: addr }
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Ipv6Addr { octets: addr.s6_addr }
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}
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}
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@@ -1973,8 +1905,7 @@ impl From<Ipv6Addr> for u128 {
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/// ```
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#[inline]
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fn from(ip: Ipv6Addr) -> u128 {
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let ip = ip.octets();
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u128::from_be_bytes(ip)
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u128::from_be_bytes(ip.octets)
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}
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}
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#[stable(feature = "i128", since = "1.26.0")]
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@@ -2025,8 +1956,7 @@ impl From<[u8; 16]> for Ipv6Addr {
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/// ```
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#[inline]
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fn from(octets: [u8; 16]) -> Ipv6Addr {
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let inner = c::in6_addr { s6_addr: octets };
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Ipv6Addr::from_inner(inner)
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Ipv6Addr { octets }
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}
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}
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@@ -10,7 +10,7 @@ use crate::net::{Ipv4Addr, Ipv6Addr, Shutdown, SocketAddr};
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use crate::ptr;
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use crate::sys::net::netc as c;
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use crate::sys::net::{cvt, cvt_gai, cvt_r, init, wrlen_t, Socket};
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use crate::sys_common::{AsInner, FromInner, IntoInner};
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use crate::sys_common::{FromInner, IntoInner};
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use crate::time::Duration;
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use libc::{c_int, c_void};
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@@ -621,7 +621,7 @@ impl UdpSocket {
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pub fn join_multicast_v6(&self, multiaddr: &Ipv6Addr, interface: u32) -> io::Result<()> {
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let mreq = c::ipv6_mreq {
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ipv6mr_multiaddr: *multiaddr.as_inner(),
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ipv6mr_multiaddr: multiaddr.into_inner(),
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ipv6mr_interface: to_ipv6mr_interface(interface),
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};
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setsockopt(&self.inner, c::IPPROTO_IPV6, IPV6_ADD_MEMBERSHIP, mreq)
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@@ -637,7 +637,7 @@ impl UdpSocket {
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pub fn leave_multicast_v6(&self, multiaddr: &Ipv6Addr, interface: u32) -> io::Result<()> {
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let mreq = c::ipv6_mreq {
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ipv6mr_multiaddr: *multiaddr.as_inner(),
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ipv6mr_multiaddr: multiaddr.into_inner(),
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ipv6mr_interface: to_ipv6mr_interface(interface),
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};
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setsockopt(&self.inner, c::IPPROTO_IPV6, IPV6_DROP_MEMBERSHIP, mreq)
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