Struct mbpr::OwnedRequest
[−]
[src]
pub struct OwnedRequest { pub key: Vec<u8>, pub extra: Vec<u8>, pub body: Vec<u8>, // some fields omitted }
Clones Buffers
This behaves identical to Request other then the fact
that the internal body
/key
/extra
fields are owned
vectors NOT borrowed slices.
This makes life a lot easier when working with the borrow checker, and concurrent programming.
Fields
key: Vec<u8>
extra: Vec<u8>
body: Vec<u8>
Methods
impl OwnedRequest
[src]
fn parse(x: &[u8]) -> ParseResult<Self>
Reads a full packet and COPIES it's buffers into its own. Allocation is lazy. Fields that are not used are not allocated. Fields are not allocated WHILE parsing, only when complete.
fn new(opcode: OpCode,
vbucket: u16,
opaque: u32,
cas: u64,
extra: Vec<u8>,
key: Vec<u8>,
body: Vec<u8>)
-> Self
vbucket: u16,
opaque: u32,
cas: u64,
extra: Vec<u8>,
key: Vec<u8>,
body: Vec<u8>)
-> Self
This interface does ABSOLUTELY NO verfication of the packet it is expected if you are calling this method you understand the memcached protocol and you are going to use this to generate a valid packet.
The goal of this interface is to be fast. Encoding a packet with this interface + Encode trait involves very few branches
Memcached only allows Keys that are ASCII and non-white space this interface does not do ANY assertions of this. Please be aware.
fn rebuild(&mut self,
opcode: OpCode,
vbucket: u16,
opaque: u32,
cas: u64,
extra: Vec<u8>,
key: Vec<u8>,
body: Vec<u8>)
opcode: OpCode,
vbucket: u16,
opaque: u32,
cas: u64,
extra: Vec<u8>,
key: Vec<u8>,
body: Vec<u8>)
Over write an existing request
This is provided to allow for easier interfacing with SLAB's. The semantics of this method are identical to the above. The primary difference is this doesn't push ~100 bytes to the stack.
This interface does ABSOLUTELY NO verfication of the packet it is expected if you are calling this method you understand the memcached protocol and you are going to use this to generate a valid packet.
The goal of this interface is to be fast. Encoding a packet with this interface + Encode trait involves very few branches
Memcached only allows Keys that are ASCII and non-white space this interface does not do ANY assertions of this. Please be aware.
fn encode_self(&self) -> Encoder
Allocates a new buffer and encodes this packets contents into it.
this method works out to a handful of memcp
primatives and is
fairly quick as their is no bounds checking (buffer length is
asserted on construction).
fn encode_into_buffer(&self, x: Vec<u8>) -> Encoder
If you are using a slab to avoid making too many allocations
this method will check check the Vec<u8>
it is passed
only reserving additional capacity if necessary. If the Vec<u8>
has enough capacity no action is taken.
fn get_opcode(&self) -> OpCode
fn get_opaque(&self) -> u32
fn get_cas(&self) -> u64
fn get_vbucket_id(&self) -> u16
fn has_extra(&self) -> bool
fn get_extra<'a>(&'a self) -> Option<&'a [u8]>
fn has_key(&self) -> bool
fn get_key<'a>(&'a self) -> Option<&'a [u8]>
fn get_key_str<'a>(&'a self) -> Option<&'a str>
The standard states the key should be an ASCII compatible string so this method preforms that conversion without checking for correctness.
This isnt a problem as the key will be hash/stored as a byte buffer anyways.
This really only opens the door to non standard things.
fn has_body(&self) -> bool
fn get_body<'a>(&'a self) -> Option<&'a [u8]>
Trait Implementations
impl Clone for OwnedRequest
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fn clone(&self) -> OwnedRequest
Returns a copy of the value. Read more
fn clone_from(&mut self, source: &Self)
1.0.0
Performs copy-assignment from source
. Read more
impl PacketVal for OwnedRequest
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fn get_keylen(&self) -> usize
Get size of Packet's Key Field
fn get_bodylen(&self) -> usize
Get size of Packet's Body Field (Raw Data)
fn get_extralen(&self) -> usize
Get size of Packet's Extra Field (Flags, Arguments, Etc. command specific)
fn total_len(&self) -> usize
The total length of the packet