Software /
code /
prosody
File
util/queue.lua @ 13575:750ff9f579e2
mod_c2s, mod_s2s: Support for queuing callbacks to run in session thread
This allows certain session-specific code that needs to run in the async
context, but is itself triggered outside of that context (e.g. timers), to
be queued.
An example of this is the session destruction code of mod_smacks, when the
hibernation timeout is reached.
author | Matthew Wild <mwild1@gmail.com> |
---|---|
date | Thu, 21 Nov 2024 17:02:07 +0000 |
parent | 12975:d10957394a3c |
line wrap: on
line source
-- Prosody IM -- Copyright (C) 2008-2015 Matthew Wild -- Copyright (C) 2008-2015 Waqas Hussain -- -- This project is MIT/X11 licensed. Please see the -- COPYING file in the source package for more information. -- -- Small ringbuffer library (i.e. an efficient FIFO queue with a size limit) -- (because unbounded dynamically-growing queues are a bad thing...) local have_utable, utable = pcall(require, "prosody.util.table"); -- For pre-allocation of table local function new(size, allow_wrapping) -- Head is next insert, tail is next read local head, tail = 1, 1; local items = 0; -- Number of stored items local t = have_utable and utable.create(size, 0) or {}; -- Table to hold items --luacheck: ignore 212/self return { _items = t; size = size; count = function (self) return items; end; push = function (self, item) if items >= size then if allow_wrapping then tail = (tail%size)+1; -- Advance to next oldest item items = items - 1; else return nil, "queue full"; end end t[head] = item; items = items + 1; head = (head%size)+1; return true; end; pop = function (self) if items == 0 then return nil; end local item; item, t[tail] = t[tail], 0; tail = (tail%size)+1; items = items - 1; return item; end; peek = function (self) if items == 0 then return nil; end return t[tail]; end; replace = function (self, data) if items == 0 then return self:push(data); end t[tail] = data; return true; end; items = function (self) return function (_, pos) if pos >= items then return nil; end local read_pos = tail + pos; if read_pos > self.size then read_pos = (read_pos%size); end return pos+1, t[read_pos]; end, self, 0; end; consume = function (self) return self.pop, self; end; }; end return { new = new; };