mirror of https://github.com/ceph/ceph
215 lines
3.9 KiB
ReStructuredText
215 lines
3.9 KiB
ReStructuredText
==================
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Network Encoding
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==================
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This describes the encoding used to serialize data. It doesn't cover specific
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objects/messages but focuses on the base types.
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The types are not self documenting in any way. They can not be decoded unless
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you know what they are.
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Conventions
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===========
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Integers
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--------
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The integer types used will be named ``{signed}{size}{endian}``. For example
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``u16le`` is an unsigned 16 bit integer encoded in little endian byte order
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while ``s64be`` is a signed 64 bit integer in big endian. Additionally ``u8``
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and ``s8`` will represent signed and unsigned bytes respectively. Signed
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integers use two's complement encoding.
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Complex Types
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-------------
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This document will use a c-like syntax for describing structures. The
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structure represents the data that will go over the wire. There will be no
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padding between the elements and the elements will be sent in the order they
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appear. For example::
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struct foo {
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u8 tag;
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u32le data;
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}
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When encoding the values ``0x05`` and ``0x12345678`` respectively will appear on
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the wire as ``05 78 56 34 12``.
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Variable Arrays
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---------------
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Unlike c, length arrays can be used anywhere in structures and will be inline in
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the protocol. Furthermore the length may be described using an earlier item in
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the structure.
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::
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struct blob {
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u32le size;
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u8 data[size];
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u32le checksum;
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}
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This structure is encoded as a 32 bit size, followed by ``size`` data bytes,
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then a 32 bit checksum.
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Primitive Aliases
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-----------------
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These types are just aliases for primitive types.
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::
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// From /src/include/types.h
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typedef u32le epoch_t;
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typedef u32le ceph_seq_t;
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typedef u64le ceph_tid_t;
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typedef u64le version_t;
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Structures
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==========
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These are the way structures are encoded. Note that these structures don't
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actually exist in the source but are the way that different types are encoded.
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Optional
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--------
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Optionals are represented as a presence byte, followed by the item if it exists.
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::
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struct ceph_optional<T> {
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u8 present;
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T element[present? 1 : 0]; // Only if present is non-zero.
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}
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Optionals are used to encode ``boost::optional``.
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Pair
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----
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Pairs are simply the first item followed by the second.
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::
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struct ceph_pair<A,B> {
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A a;
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B b;
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}
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Pairs are used to encode ``std::pair``.
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Triple
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------
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Triples are simply the tree elements one after another.
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::
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struct ceph_triple<A,B,C> {
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A a;
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B b;
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C c;
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}
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Triples are used to encode ``ceph::triple``.
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List
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----
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Lists are represented as an element count followed by that many elements.
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::
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struct ceph_list<T> {
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u32le length;
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T elements[length];
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}
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.. note::
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The size of the elements in the list are not necessarily uniform.
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Lists are used to encode ``std::list``, ``std::vector``, ``std::deque``,
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``std::set`` and ``ceph::unordered_set``.
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Blob
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----
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A Blob is simply a list of bytes.
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::
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struct ceph_string {
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ceph_list<u8>;
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}
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// AKA
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struct ceph_string {
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u32le size;
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u8 data[size];
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}
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Blobs are used to encode ``std::string``, ``const char *`` and ``bufferlist``.
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.. note::
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The content of a Blob is arbitrary binary data.
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Map
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---
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Maps are a list of pairs.
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::
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struct ceph_map<K,V> {
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ceph_list<ceph_pair<K,V>>;
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}
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// AKA
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struct ceph_map<K,V> {
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u32le length;
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ceph_pair<K,V> entries[length];
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}
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Maps are used to encode ``std::map``, ``std::multimap`` and
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``ceph::unordered_map``.
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Complex Types
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=============
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These aren't hard to find in the source but the common ones are listed here for
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convenience.
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utime_t
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-------
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::
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// From /src/include/utime.h
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struct utime_t {
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u32le tv_sec; // Seconds since epoch.
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u32le tv_nsec; // Nanoseconds since the last second.
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}
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ceph_entity_name
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----------------
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::
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// From /src/include/msgr.h
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struct ceph_entity_name {
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u8 type; // CEPH_ENTITY_TYPE_*
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u64le num;
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}
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// CEPH_ENTITY_TYPE_* defined in /src/include/msgr.h
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.. vi: textwidth=80 noexpandtab
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