mirror of
https://github.com/mperham/sidekiq.git
synced 2022-11-09 13:52:34 -05:00
280 lines
7.7 KiB
Ruby
280 lines
7.7 KiB
Ruby
# frozen_string_literal: true
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require "sidekiq/util"
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require "sidekiq/fetch"
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require "sidekiq/job_logger"
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require "sidekiq/job_retry"
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module Sidekiq
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##
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# The Processor is a standalone thread which:
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#
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# 1. fetches a job from Redis
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# 2. executes the job
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# a. instantiate the Worker
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# b. run the middleware chain
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# c. call #perform
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#
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# A Processor can exit due to shutdown (processor_stopped)
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# or due to an error during job execution (processor_died)
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#
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# If an error occurs in the job execution, the
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# Processor calls the Manager to create a new one
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# to replace itself and exits.
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#
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class Processor
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include Util
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attr_reader :thread
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attr_reader :job
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def initialize(mgr)
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@mgr = mgr
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@down = false
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@done = false
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@job = nil
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@thread = nil
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@strategy = (mgr.options[:fetch] || Sidekiq::BasicFetch).new(mgr.options)
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@reloader = Sidekiq.options[:reloader]
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@job_logger = (mgr.options[:job_logger] || Sidekiq::JobLogger).new
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@retrier = Sidekiq::JobRetry.new
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end
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def terminate(wait = false)
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@done = true
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return unless @thread
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@thread.value if wait
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end
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def kill(wait = false)
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@done = true
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return unless @thread
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# unlike the other actors, terminate does not wait
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# for the thread to finish because we don't know how
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# long the job will take to finish. Instead we
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# provide a `kill` method to call after the shutdown
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# timeout passes.
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@thread.raise ::Sidekiq::Shutdown
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@thread.value if wait
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end
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def start
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@thread ||= safe_thread("processor", &method(:run))
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end
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private unless $TESTING
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def run
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process_one until @done
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@mgr.processor_stopped(self)
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rescue Sidekiq::Shutdown
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@mgr.processor_stopped(self)
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rescue Exception => ex
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@mgr.processor_died(self, ex)
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end
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def process_one
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@job = fetch
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process(@job) if @job
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@job = nil
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end
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def get_one
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work = @strategy.retrieve_work
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if @down
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logger.info { "Redis is online, #{::Process.clock_gettime(::Process::CLOCK_MONOTONIC) - @down} sec downtime" }
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@down = nil
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end
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work
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rescue Sidekiq::Shutdown
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rescue => ex
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handle_fetch_exception(ex)
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end
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def fetch
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j = get_one
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if j && @done
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j.requeue
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nil
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else
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j
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end
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end
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def handle_fetch_exception(ex)
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unless @down
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@down = ::Process.clock_gettime(::Process::CLOCK_MONOTONIC)
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logger.error("Error fetching job: #{ex}")
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handle_exception(ex)
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end
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sleep(1)
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nil
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end
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def dispatch(job_hash, queue, jobstr)
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# since middleware can mutate the job hash
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# we need to clone it to report the original
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# job structure to the Web UI
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# or to push back to redis when retrying.
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# To avoid costly and, most of the time, useless cloning here,
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# we pass original String of JSON to respected methods
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# to re-parse it there if we need access to the original, untouched job
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@job_logger.prepare(job_hash) do
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@retrier.global(jobstr, queue) do
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@job_logger.call(job_hash, queue) do
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stats(jobstr, queue) do
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# Rails 5 requires a Reloader to wrap code execution. In order to
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# constantize the worker and instantiate an instance, we have to call
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# the Reloader. It handles code loading, db connection management, etc.
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# Effectively this block denotes a "unit of work" to Rails.
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@reloader.call do
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klass = constantize(job_hash["class"])
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worker = klass.new
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worker.jid = job_hash["jid"]
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@retrier.local(worker, jobstr, queue) do
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yield worker
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end
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end
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end
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end
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end
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end
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end
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def process(work)
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jobstr = work.job
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queue = work.queue_name
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# Treat malformed JSON as a special case: job goes straight to the morgue.
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job_hash = nil
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begin
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job_hash = Sidekiq.load_json(jobstr)
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rescue => ex
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handle_exception(ex, {context: "Invalid JSON for job", jobstr: jobstr})
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# we can't notify because the job isn't a valid hash payload.
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DeadSet.new.kill(jobstr, notify_failure: false)
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return work.acknowledge
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end
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ack = false
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begin
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dispatch(job_hash, queue, jobstr) do |worker|
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Sidekiq.server_middleware.invoke(worker, job_hash, queue) do
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execute_job(worker, job_hash["args"])
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end
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end
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ack = true
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rescue Sidekiq::Shutdown
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# Had to force kill this job because it didn't finish
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# within the timeout. Don't acknowledge the work since
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# we didn't properly finish it.
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rescue Sidekiq::JobRetry::Handled => h
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# this is the common case: job raised error and Sidekiq::JobRetry::Handled
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# signals that we created a retry successfully. We can acknowlege the job.
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ack = true
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e = h.cause || h
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handle_exception(e, {context: "Job raised exception", job: job_hash, jobstr: jobstr})
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raise e
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rescue Exception => ex
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# Unexpected error! This is very bad and indicates an exception that got past
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# the retry subsystem (e.g. network partition). We won't acknowledge the job
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# so it can be rescued when using Sidekiq Pro.
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handle_exception(ex, {context: "Internal exception!", job: job_hash, jobstr: jobstr})
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raise ex
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ensure
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if ack
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# We don't want a shutdown signal to interrupt job acknowledgment.
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Thread.handle_interrupt(Sidekiq::Shutdown => :never) do
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work.acknowledge
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end
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end
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end
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end
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def execute_job(worker, cloned_args)
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worker.perform(*cloned_args)
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end
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# Ruby doesn't provide atomic counters out of the box so we'll
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# implement something simple ourselves.
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# https://bugs.ruby-lang.org/issues/14706
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class Counter
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def initialize
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@value = 0
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@lock = Mutex.new
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end
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def incr(amount = 1)
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@lock.synchronize { @value += amount }
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end
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def reset
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@lock.synchronize {
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val = @value
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@value = 0
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val
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}
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end
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end
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# jruby's Hash implementation is not threadsafe, so we wrap it in a mutex here
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class SharedWorkerState
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def initialize
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@worker_state = {}
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@lock = Mutex.new
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end
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def set(tid, hash)
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@lock.synchronize { @worker_state[tid] = hash }
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end
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def delete(tid)
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@lock.synchronize { @worker_state.delete(tid) }
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end
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def dup
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@lock.synchronize { @worker_state.dup }
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end
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def size
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@lock.synchronize { @worker_state.size }
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end
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def clear
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@lock.synchronize { @worker_state.clear }
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end
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end
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PROCESSED = Counter.new
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FAILURE = Counter.new
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WORKER_STATE = SharedWorkerState.new
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def stats(jobstr, queue)
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WORKER_STATE.set(tid, {queue: queue, payload: jobstr, run_at: Time.now.to_i})
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begin
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yield
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rescue Exception
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FAILURE.incr
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raise
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ensure
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WORKER_STATE.delete(tid)
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PROCESSED.incr
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end
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end
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def constantize(str)
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return Object.const_get(str) unless str.include?("::")
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names = str.split("::")
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names.shift if names.empty? || names.first.empty?
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names.inject(Object) do |constant, name|
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# the false flag limits search for name to under the constant namespace
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# which mimics Rails' behaviour
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constant.const_get(name, false)
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end
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end
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end
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end
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