global unique id
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## Mongodb ObjectId
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* 4-byte value representing the seconds since the Unix epoch,
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* 3-byte machine identifier,
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* 2-byte process id, and
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* 3-byte counter, starting with a random value.
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## Flake Id
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* 64bits Timestamp
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* 48bits WorkerId
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* 16bits Sequence
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## emqttd Id
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* 64bits Timestamp: erlang:now(), erlang:system_time
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* 48bits (node+pid): Node + Pid -> Integer
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* 16bits Sequence: PktId
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%%%-----------------------------------------------------------------------------
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%%% Copyright (c) 2012-2015 eMQTT.IO, All Rights Reserved.
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%%%
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%%% Permission is hereby granted, free of charge, to any person obtaining a copy
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%%% of this software and associated documentation files (the "Software"), to deal
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%%% in the Software without restriction, including without limitation the rights
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%%% to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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%%% copies of the Software, and to permit persons to whom the Software is
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%%% furnished to do so, subject to the following conditions:
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%%%
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%%% The above copyright notice and this permission notice shall be included in all
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%%% copies or substantial portions of the Software.
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%%%
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%%% THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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%%% IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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%%% FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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%%% AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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%%% LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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%%% OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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%%% SOFTWARE.
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%%%-----------------------------------------------------------------------------
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%%% @doc
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%%%
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%%% Generate global unique id for mqtt message.
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%%%
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%%% --------------------------------------------------------
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%%% | Timestamp | NodeID + PID | Sequence |
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%%% |<------- 64bits ------->|<--- 48bits --->|<- 16bits ->|
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%%% --------------------------------------------------------
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%%%
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%%% 1. Timestamp: erlang:system_time if Erlang >= R18, otherwise os:timestamp
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%%% 2. NodeId: encode node() to 2 bytes integer
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%%% 3. Pid: encode pid to 4 bytes integer
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%%% 4. Sequence: 2 bytes sequence no per pid
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%%%
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%%% @end
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%%%-----------------------------------------------------------------------------
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-module(emqttd_guid).
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-export([gen/0]).
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-define(MAX_SEQ, 16#FFFF).
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-type guid() :: <<_:128>>.
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-spec gen() -> guid().
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gen() ->
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Guid = case get(guid) of
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undefined -> new();
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{_Ts, NPid, Seq} -> next(NPid, Seq)
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end,
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put(guid, Guid), enc(Guid).
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new() ->
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{ts(), npid(), 0}.
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next(NPid, Seq) when Seq >= ?MAX_SEQ ->
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{ts(), NPid, 0};
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next(NPid, Seq) ->
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{ts(), NPid, Seq + 1}.
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enc({Ts, NPid, Seq}) ->
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<<Ts:64, NPid:48, Seq:16>>.
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ts() ->
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case erlang:function_exported(erlang, system_time, 1) of
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true -> %% R18
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erlang:system_time(micro_seconds);
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false ->
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{MegaSeconds, Seconds, MicroSeconds} = erlang:now(),
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(MegaSeconds * 1000000 + Seconds) * 1000000 + MicroSeconds
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end.
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%% code copied from https://github.com/okeuday/uuid.git.
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npid() ->
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<<NodeD01, NodeD02, NodeD03, NodeD04, NodeD05,
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NodeD06, NodeD07, NodeD08, NodeD09, NodeD10,
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NodeD11, NodeD12, NodeD13, NodeD14, NodeD15,
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NodeD16, NodeD17, NodeD18, NodeD19, NodeD20>> =
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crypto:hash(sha, erlang:list_to_binary(erlang:atom_to_list(node()))),
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% later, when the pid format changes, handle the different format
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ExternalTermFormatVersion = 131,
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PidExtType = 103,
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<<ExternalTermFormatVersion:8,
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PidExtType:8,
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PidBin/binary>> = erlang:term_to_binary(self()),
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% 72 bits for the Erlang pid
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<<PidID1:8, PidID2:8, PidID3:8, PidID4:8, % ID (Node specific, 15 bits)
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PidSR1:8, PidSR2:8, PidSR3:8, PidSR4:8, % Serial (extra uniqueness)
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PidCR1:8 % Node Creation Count
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>> = binary:part(PidBin, erlang:byte_size(PidBin), -9),
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% reduce the 160 bit NodeData checksum to 16 bits
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NodeByte1 = ((((((((NodeD01 bxor NodeD02)
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bxor NodeD03)
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bxor NodeD04)
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bxor NodeD05)
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bxor NodeD06)
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bxor NodeD07)
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bxor NodeD08)
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bxor NodeD09)
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bxor NodeD10,
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NodeByte2 = (((((((((NodeD11 bxor NodeD12)
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bxor NodeD13)
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bxor NodeD14)
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bxor NodeD15)
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bxor NodeD16)
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bxor NodeD17)
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bxor NodeD18)
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bxor NodeD19)
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bxor NodeD20)
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bxor PidCR1,
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% reduce the Erlang pid to 32 bits
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PidByte1 = PidID1 bxor PidSR4,
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PidByte2 = PidID2 bxor PidSR3,
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PidByte3 = PidID3 bxor PidSR2,
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PidByte4 = PidID4 bxor PidSR1,
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<<NPid:48>> = <<NodeByte1:8, NodeByte2:8,
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PidByte1:8, PidByte2:8,
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PidByte3:8, PidByte4:8>>,
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NPid.
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