pub struct ConnMeta {
pub client_addr: [u8; 16],
pub nat_entry: (u16, u16),
pub assigned_pod: u32,
pub stream_states: Vec<StreamState>,
}Expand description
Connection metadata
Fields§
§client_addr: [u8; 16]Client address (IPv6)
nat_entry: (u16, u16)NAT entry (local_port, remote_port)
assigned_pod: u32Assigned pod ID
stream_states: Vec<StreamState>Stream states for multiplexing
Trait Implementations§
Source§impl Archive for ConnMeta
impl Archive for ConnMeta
Source§const COPY_OPTIMIZATION: CopyOptimization<Self>
const COPY_OPTIMIZATION: CopyOptimization<Self>
An optimization flag that allows the bytes of this type to be copied
directly to a writer instead of calling
serialize. Read moreSource§type Archived = ArchivedConnMeta
type Archived = ArchivedConnMeta
The archived representation of this type. Read more
Source§type Resolver = ConnMetaResolver
type Resolver = ConnMetaResolver
The resolver for this type. It must contain all the additional
information from serializing needed to make the archived type from
the normal type.
Source§impl<__D: Fallible + ?Sized> Deserialize<ConnMeta, __D> for Archived<ConnMeta>where
[u8; 16]: Archive,
<[u8; 16] as Archive>::Archived: Deserialize<[u8; 16], __D>,
(u16, u16): Archive,
<(u16, u16) as Archive>::Archived: Deserialize<(u16, u16), __D>,
u32: Archive,
<u32 as Archive>::Archived: Deserialize<u32, __D>,
Vec<StreamState>: Archive,
<Vec<StreamState> as Archive>::Archived: Deserialize<Vec<StreamState>, __D>,
impl<__D: Fallible + ?Sized> Deserialize<ConnMeta, __D> for Archived<ConnMeta>where
[u8; 16]: Archive,
<[u8; 16] as Archive>::Archived: Deserialize<[u8; 16], __D>,
(u16, u16): Archive,
<(u16, u16) as Archive>::Archived: Deserialize<(u16, u16), __D>,
u32: Archive,
<u32 as Archive>::Archived: Deserialize<u32, __D>,
Vec<StreamState>: Archive,
<Vec<StreamState> as Archive>::Archived: Deserialize<Vec<StreamState>, __D>,
Auto Trait Implementations§
impl Freeze for ConnMeta
impl RefUnwindSafe for ConnMeta
impl Send for ConnMeta
impl Sync for ConnMeta
impl Unpin for ConnMeta
impl UnwindSafe for ConnMeta
Blanket Implementations§
Source§impl<T> ArchivePointee for T
impl<T> ArchivePointee for T
Source§type ArchivedMetadata = ()
type ArchivedMetadata = ()
The archived version of the pointer metadata for this type.
Source§fn pointer_metadata(
_: &<T as ArchivePointee>::ArchivedMetadata,
) -> <T as Pointee>::Metadata
fn pointer_metadata( _: &<T as ArchivePointee>::ArchivedMetadata, ) -> <T as Pointee>::Metadata
Converts some archived metadata to the pointer metadata for itself.
Source§impl<T> ArchiveUnsized for Twhere
T: Archive,
impl<T> ArchiveUnsized for Twhere
T: Archive,
Source§type Archived = <T as Archive>::Archived
type Archived = <T as Archive>::Archived
The archived counterpart of this type. Unlike
Archive, it may be
unsized. Read moreSource§fn archived_metadata(
&self,
) -> <<T as ArchiveUnsized>::Archived as ArchivePointee>::ArchivedMetadata
fn archived_metadata( &self, ) -> <<T as ArchiveUnsized>::Archived as ArchivePointee>::ArchivedMetadata
Creates the archived version of the metadata for this value.
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Mutably borrows from an owned value. Read more
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T> LayoutRaw for T
impl<T> LayoutRaw for T
Source§fn layout_raw(_: <T as Pointee>::Metadata) -> Result<Layout, LayoutError>
fn layout_raw(_: <T as Pointee>::Metadata) -> Result<Layout, LayoutError>
Returns the layout of the type.
Source§impl<T, N1, N2> Niching<NichedOption<T, N1>> for N2
impl<T, N1, N2> Niching<NichedOption<T, N1>> for N2
Source§unsafe fn is_niched(niched: *const NichedOption<T, N1>) -> bool
unsafe fn is_niched(niched: *const NichedOption<T, N1>) -> bool
Returns whether the given value has been niched. Read more
Source§fn resolve_niched(out: Place<NichedOption<T, N1>>)
fn resolve_niched(out: Place<NichedOption<T, N1>>)
Writes data to
out indicating that a T is niched.