mirror of
https://github.com/puma/puma.git
synced 2022-11-09 13:48:40 -05:00
357 lines
9.8 KiB
Ruby
357 lines
9.8 KiB
Ruby
require_relative "helper"
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require_relative "helpers/integration"
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class TestIntegrationCluster < TestIntegration
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parallelize_me!
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DARWIN = !!RUBY_PLATFORM[/darwin/]
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def setup
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skip NO_FORK_MSG unless HAS_FORK
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super
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end
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def teardown
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return if skipped?
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super
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end
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def test_pre_existing_unix
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skip UNIX_SKT_MSG unless UNIX_SKT_EXIST
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File.open(@bind_path, mode: 'wb') { |f| f.puts 'pre existing' }
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cli_server "-w #{WORKERS} -q test/rackup/sleep_step.ru", unix: :unix
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stop_server
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assert File.exist?(@bind_path)
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ensure
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if UNIX_SKT_EXIST
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File.unlink @bind_path if File.exist? @bind_path
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end
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end
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def test_siginfo_thread_print
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skip_unless_signal_exist? :INFO
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cli_server "-w #{WORKERS} -q test/rackup/hello.ru"
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worker_pids = get_worker_pids
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output = []
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t = Thread.new { output << @server.readlines }
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Process.kill :INFO, worker_pids.first
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Process.kill :INT , @pid
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t.join
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assert_match "Thread TID", output.join
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end
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def test_usr2_restart
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_, new_reply = restart_server_and_listen("-q -w #{WORKERS} test/rackup/hello.ru")
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assert_equal "Hello World", new_reply
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end
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# Next two tests, one tcp, one unix
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# Send requests 10 per second. Send 10, then :TERM server, then send another 30.
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# No more than 10 should throw Errno::ECONNRESET.
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def test_term_closes_listeners_tcp
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skip_unless_signal_exist? :TERM
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term_closes_listeners unix: false
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end
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def test_term_closes_listeners_unix
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skip_unless_signal_exist? :TERM
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term_closes_listeners unix: true
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end
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# Next two tests, one tcp, one unix
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# Send requests 1 per second. Send 1, then :USR1 server, then send another 24.
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# All should be responded to, and at least three workers should be used
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def test_usr1_all_respond_tcp
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skip_unless_signal_exist? :USR1
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usr1_all_respond unix: false
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end
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def test_usr1_all_respond_unix
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skip_unless_signal_exist? :USR1
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usr1_all_respond unix: true
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end
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def test_term_exit_code
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cli_server "-w #{WORKERS} test/rackup/hello.ru"
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_, status = stop_server
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assert_equal 15, status
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end
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def test_term_suppress
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cli_server "-w #{WORKERS} -C test/config/suppress_exception.rb test/rackup/hello.ru"
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_, status = stop_server
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assert_equal 0, status
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end
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def test_term_worker_clean_exit
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skip "Intermittent failure on Ruby 2.2" if RUBY_VERSION < '2.3'
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cli_server "-w #{WORKERS} test/rackup/hello.ru"
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# Get the PIDs of the child workers.
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worker_pids = get_worker_pids
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# Signal the workers to terminate, and wait for them to die.
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Process.kill :TERM, @pid
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Process.wait @pid
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zombies = bad_exit_pids worker_pids
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assert_empty zombies, "Process ids #{zombies} became zombies"
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end
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# mimicking stuck workers, test respawn with external TERM
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def test_stuck_external_term_spawn
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skip_unless_signal_exist? :TERM
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worker_respawn(0) do |phase0_worker_pids|
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last = phase0_worker_pids.last
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# test is tricky if only one worker is TERM'd, so kill all but
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# spread out, so all aren't killed at once
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phase0_worker_pids.each do |pid|
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Process.kill :TERM, pid
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sleep 4 unless pid == last
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end
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end
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end
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# mimicking stuck workers, test restart
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def test_stuck_phased_restart
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skip_unless_signal_exist? :USR1
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worker_respawn { |phase0_worker_pids| Process.kill :USR1, @pid }
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end
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private
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# Send requests 10 per second. Send 10, then :TERM server, then send another 30.
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# No more than 10 should throw Errno::ECONNRESET.
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def term_closes_listeners(unix: false)
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skip_unless_signal_exist? :TERM
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cli_server "-w #{WORKERS} -t 0:6 -q test/rackup/sleep_step.ru", unix: unix
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threads = []
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replies = []
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mutex = Mutex.new
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div = 10
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refused = thread_run_refused unix: unix
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41.times.each do |i|
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if i == 10
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threads << Thread.new do
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sleep i.to_f/div
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Process.kill :TERM, @pid
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mutex.synchronize { replies[i] = :term_sent }
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end
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else
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threads << Thread.new do
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thread_run_step replies, i.to_f/div, 1, i, mutex, refused, unix: unix
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end
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end
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end
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threads.each(&:join)
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failures = replies.count(:failure)
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successes = replies.count(:success)
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resets = replies.count(:reset)
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refused = replies.count(:refused)
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r_success = replies.rindex(:success)
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l_reset = replies.index(:reset)
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r_reset = replies.rindex(:reset)
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l_refused = replies.index(:refused)
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msg = "#{successes} successes, #{resets} resets, #{refused} refused, failures #{failures}"
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assert_equal 0, failures, msg
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assert_operator 9, :<=, successes, msg
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assert_operator 10, :>=, resets , msg
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assert_operator 20, :<=, refused , msg
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# Interleaved asserts
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# UNIX binders do not generate :reset items
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if l_reset
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assert_operator r_success, :<, l_reset , "Interleaved success and reset"
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assert_operator r_reset , :<, l_refused, "Interleaved reset and refused"
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else
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assert_operator r_success, :<, l_refused, "Interleaved success and refused"
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end
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ensure
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if passed?
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$debugging_info << "#{full_name}\n #{msg}\n"
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else
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$debugging_info << "#{full_name}\n #{msg}\n#{replies.inspect}\n"
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end
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end
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# Send requests 1 per second. Send 1, then :USR1 server, then send another 24.
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# All should be responded to, and at least three workers should be used
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def usr1_all_respond(unix: false)
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cli_server "-w #{WORKERS} -t 0:5 -q test/rackup/sleep_pid.ru", unix: unix
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threads = []
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replies = []
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mutex = Mutex.new
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s = connect "sleep1", unix: unix
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replies << read_body(s)
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Process.kill :USR1, @pid
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refused = thread_run_refused unix: unix
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24.times do |delay|
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threads << Thread.new do
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thread_run_pid replies, delay, 1, mutex, refused, unix: unix
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end
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end
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threads.each(&:join)
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responses = replies.count { |r| r[/\ASlept 1/] }
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resets = replies.count { |r| r == :reset }
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refused = replies.count { |r| r == :refused }
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# get pids from replies, generate uniq array
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qty_pids = replies.map { |body| body[/\d+\z/] }.uniq.compact.length
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msg = "#{responses} responses, #{qty_pids} uniq pids"
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assert_equal 25, responses, msg
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assert_operator qty_pids, :>, 2, msg
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msg = "#{responses} responses, #{resets} resets, #{refused} refused"
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refute_includes replies, :refused, msg
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refute_includes replies, :reset , msg
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ensure
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unless passed?
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$debugging_info << "#{full_name}\n #{msg}\n#{replies.inspect}\n"
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end
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end
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def worker_respawn(phase = 1, size = WORKERS)
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threads = []
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cli_server "-w #{WORKERS} -t 1:1 -C test/config/worker_shutdown_timeout_2.rb test/rackup/sleep_pid.ru"
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# make sure two workers have booted
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phase0_worker_pids = get_worker_pids
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[35, 40].each do |sleep_time|
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threads << Thread.new do
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begin
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connect "sleep#{sleep_time}"
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# stuck connections will raise IOError or Errno::ECONNRESET
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# when shutdown
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rescue IOError, Errno::ECONNRESET
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end
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end
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end
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@start_time = Time.now.to_f
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# below should 'cancel' the phase 0 workers, either via phased_restart or
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# externally TERM'ing them
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yield phase0_worker_pids
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# wait for new workers to boot
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phase1_worker_pids = get_worker_pids phase
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# should be empty if all phase 0 workers cleanly exited
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phase0_exited = bad_exit_pids phase0_worker_pids
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# Since 35 is the shorter of the two requests, server should restart
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# and cancel both requests
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assert_operator (Time.now.to_f - @start_time).round(2), :<, 35
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msg = "phase0_worker_pids #{phase0_worker_pids.inspect} phase1_worker_pids #{phase1_worker_pids.inspect} phase0_exited #{phase0_exited.inspect}"
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assert_equal WORKERS, phase0_worker_pids.length, msg
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assert_equal WORKERS, phase1_worker_pids.length, msg
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assert_empty phase0_worker_pids & phase1_worker_pids, "#{msg}\nBoth workers should be replaced with new"
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assert_empty phase0_exited, msg
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threads.each { |th| Thread.kill th }
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end
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# Returns an array of pids still in the process table, so it should
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# be empty for a clean exit.
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# Process.kill should raise the Errno::ESRCH exception, indicating the
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# process is dead and has been reaped.
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def bad_exit_pids(pids)
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pids.map do |pid|
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begin
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pid if Process.kill 0, pid
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rescue Errno::ESRCH
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nil
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end
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end.compact
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end
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# used with thread_run to define correct 'refused' errors
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def thread_run_refused(unix: false)
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if unix
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DARWIN ? [Errno::ENOENT, IOError] : [Errno::ENOENT]
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else
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DARWIN ? [Errno::ECONNREFUSED, Errno::EPIPE, EOFError] :
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[Errno::ECONNREFUSED]
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end
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end
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# used in loop to create several 'requests'
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def thread_run_pid(replies, delay, sleep_time, mutex, refused, unix: false)
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begin
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sleep delay
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s = connect "sleep#{sleep_time}", unix: unix
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body = read_body(s)
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mutex.synchronize { replies << body }
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rescue Errno::ECONNRESET
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# connection was accepted but then closed
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# client would see an empty response
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mutex.synchronize { replies << :reset }
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rescue *refused
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mutex.synchronize { replies << :refused }
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end
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end
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# used in loop to create several 'requests'
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def thread_run_step(replies, delay, sleep_time, step, mutex, refused, unix: false)
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begin
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sleep delay
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s = connect "sleep#{sleep_time}-#{step}", unix: unix
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body = read_body(s)
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if body[/\ASlept /]
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mutex.synchronize { replies[step] = :success }
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else
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mutex.synchronize { replies[step] = :failure }
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end
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rescue Errno::ECONNRESET
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# connection was accepted but then closed
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# client would see an empty response
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mutex.synchronize { replies[step] = :reset }
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rescue *refused
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mutex.synchronize { replies[step] = :refused }
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end
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end
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end
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