2026-08-02 12:48:33 -04:00
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extends SceneTree
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const MainScene = preload("res://main/main.tscn")
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const TEST_PORT: int = 17983
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const INITIAL_HOST_TIME: float = 19.75
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const UPDATED_HOST_TIME: float = 20.75
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const TIME_TOLERANCE_HOURS: float = 0.05
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func _initialize() -> void:
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call_deferred("_run")
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func _run() -> void:
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var arguments: PackedStringArray = OS.get_cmdline_user_args()
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if arguments.has("host"):
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await _run_host()
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return
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if arguments.has("client"):
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await _run_client()
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return
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push_error("World time multiplayer validation needs host or client mode.")
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quit(1)
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func _run_host() -> void:
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var main: Node = await _create_initialized_main()
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var session := main.get_node("%NetworkSession") as NetworkSession
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var world_time := main.get_node("%WorldTimeService") as WorldTimeService
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var world_weather := (
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main.get_node("%WorldWeatherService") as WorldWeatherService
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)
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assert(session.start_private_host(TEST_PORT))
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world_time.synchronize_time(INITIAL_HOST_TIME)
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2026-08-02 19:01:16 -04:00
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assert(is_equal_approx(
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world_time.get_persistent_time_hours(), INITIAL_HOST_TIME
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))
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2026-08-02 12:48:33 -04:00
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world_weather.apply_authoritative_snapshot(
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WorldWeatherService.Weather.RAINY, 300.0
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)
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2026-08-03 00:43:43 -04:00
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assert(
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world_weather.get_persistent_weather()
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== WorldWeatherService.Weather.RAINY
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)
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2026-08-02 12:48:33 -04:00
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assert(session.set_host_open(true))
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var remote_peer_id: int = 0
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var join_deadline: int = Time.get_ticks_msec() + 20000
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while Time.get_ticks_msec() < join_deadline and remote_peer_id == 0:
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await process_frame
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for peer_id: int in session.get_authenticated_peer_ids():
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if peer_id != session.get_local_peer_id():
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remote_peer_id = peer_id
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break
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assert(remote_peer_id > 1)
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assert(session.peer_supports_capability(
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remote_peer_id, NetworkProtocol.WORLD_TIME_CAPABILITY
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))
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assert(session.peer_supports_capability(
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remote_peer_id, NetworkProtocol.WORLD_WEATHER_CAPABILITY
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))
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assert(world_time.get_phase() == WorldTimeService.Phase.DUSK)
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await create_timer(1.0).timeout
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world_time.synchronize_time(UPDATED_HOST_TIME)
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2026-08-02 19:01:16 -04:00
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assert(is_equal_approx(
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world_time.get_persistent_time_hours(), UPDATED_HOST_TIME
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))
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2026-08-02 12:48:33 -04:00
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world_weather.apply_authoritative_snapshot(
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WorldWeatherService.Weather.FOGGY, 300.0
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)
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2026-08-03 00:43:43 -04:00
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assert(
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world_weather.get_persistent_weather()
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== WorldWeatherService.Weather.FOGGY
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)
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2026-08-02 12:48:33 -04:00
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var disconnect_deadline: int = Time.get_ticks_msec() + 12000
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while (
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Time.get_ticks_msec() < disconnect_deadline
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and session.is_authenticated_peer(remote_peer_id)
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):
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await process_frame
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assert(not session.is_authenticated_peer(remote_peer_id))
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print("World time multiplayer host validation: PASS")
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session.disconnect_session("")
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main.queue_free()
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2026-08-11 20:02:54 -04:00
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for _frame: int in 4:
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await process_frame
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await create_timer(0.1).timeout
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2026-08-02 12:48:33 -04:00
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quit()
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func _run_client() -> void:
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var main: Node = await _create_initialized_main()
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main.call(
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"_on_title_join_game_requested",
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"127.0.0.1:%d" % TEST_PORT,
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)
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var session := main.get_node("%NetworkSession") as NetworkSession
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var world_time := main.get_node("%WorldTimeService") as WorldTimeService
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var world_weather := (
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main.get_node("%WorldWeatherService") as WorldWeatherService
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)
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var join_deadline: int = Time.get_ticks_msec() + 20000
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while Time.get_ticks_msec() < join_deadline:
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await process_frame
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if session.state == NetworkSession.State.VERIFYING_SERVER_IDENTITY:
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main.call("_confirm_server_trust")
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if session.is_joined_client() and bool(main.get("_gameplay_started")):
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break
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assert(session.is_joined_client())
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assert(session.supports_server_capability(
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NetworkProtocol.WORLD_TIME_CAPABILITY
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))
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assert(session.supports_server_capability(
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NetworkProtocol.WORLD_WEATHER_CAPABILITY
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))
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2026-08-02 19:01:16 -04:00
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assert(world_time.restore_persistent_time_hours(15.25))
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2026-08-03 00:43:43 -04:00
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assert(world_weather.restore_persistent_state(
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WorldWeatherService.Weather.CLOUDY,
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222.0,
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))
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2026-08-02 12:48:33 -04:00
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var initial_deadline: int = Time.get_ticks_msec() + 8000
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while (
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Time.get_ticks_msec() < initial_deadline
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and _wrapped_time_difference(
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world_time.get_time_hours(), INITIAL_HOST_TIME
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) > TIME_TOLERANCE_HOURS
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):
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await process_frame
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assert(_wrapped_time_difference(
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world_time.get_time_hours(), INITIAL_HOST_TIME
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) <= TIME_TOLERANCE_HOURS)
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assert(world_time.get_phase() == WorldTimeService.Phase.DUSK)
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var weather_deadline: int = Time.get_ticks_msec() + 8000
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while (
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Time.get_ticks_msec() < weather_deadline
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and not world_weather.is_raining()
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):
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await process_frame
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assert(world_weather.is_raining())
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var game_ui := main.get_node("%GameUI") as CanvasLayer
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var chat_ui := game_ui.get_node("%ChatUI") as Control
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var clock_panel := chat_ui.get_node("WorldClockPanel") as PanelContainer
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var clock_label := clock_panel.get_node("WorldClockLabel") as Label
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var weather_icon := chat_ui.get_node("WorldWeatherIcon") as WeatherIcon
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var chat_panel := chat_ui.get_node("ChatPanel") as PanelContainer
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assert(clock_panel.visible)
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assert(clock_label.text == world_time.get_clock_text())
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assert(clock_label.text.ends_with(" pm"))
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assert(weather_icon.visible)
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assert(weather_icon.get_weather() == WorldWeatherService.Weather.RAINY)
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2026-08-02 13:31:10 -04:00
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assert(is_equal_approx(clock_panel.position.y, 10.0))
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assert(is_equal_approx(weather_icon.position.y, 10.0))
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2026-08-02 12:48:33 -04:00
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assert(clock_panel.position.y + clock_panel.size.y < chat_panel.position.y)
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var update_deadline: int = Time.get_ticks_msec() + 10000
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while (
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Time.get_ticks_msec() < update_deadline
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and _wrapped_time_difference(
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world_time.get_time_hours(), UPDATED_HOST_TIME
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) > TIME_TOLERANCE_HOURS
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):
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await process_frame
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assert(_wrapped_time_difference(
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world_time.get_time_hours(), UPDATED_HOST_TIME
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) <= TIME_TOLERANCE_HOURS)
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assert(world_time.get_phase() == WorldTimeService.Phase.NIGHT)
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2026-08-02 19:01:16 -04:00
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assert(is_equal_approx(world_time.get_persistent_time_hours(), 15.25))
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2026-08-02 12:48:33 -04:00
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assert(clock_label.text == world_time.get_clock_text())
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var fog_deadline: int = Time.get_ticks_msec() + 8000
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while (
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Time.get_ticks_msec() < fog_deadline
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and not world_weather.is_foggy()
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):
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await process_frame
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assert(world_weather.is_foggy())
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assert(weather_icon.get_weather() == WorldWeatherService.Weather.FOGGY)
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2026-08-03 00:43:43 -04:00
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assert(
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world_weather.get_persistent_weather()
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== WorldWeatherService.Weather.CLOUDY
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)
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assert(is_equal_approx(
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world_weather.get_persistent_seconds_remaining(),
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222.0,
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))
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2026-08-02 12:48:33 -04:00
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chat_ui.call("set_dock_right", true)
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await process_frame
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assert(clock_panel.position.x > 1000.0)
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assert(weather_icon.position.x < clock_panel.position.x)
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2026-08-02 13:31:10 -04:00
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assert(is_equal_approx(clock_panel.position.y, 10.0))
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2026-08-02 12:48:33 -04:00
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chat_ui.call("set_dock_right", false)
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await process_frame
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assert(clock_panel.position.x < 20.0)
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assert(weather_icon.position.x > clock_panel.position.x)
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2026-08-02 13:31:10 -04:00
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assert(is_equal_approx(clock_panel.position.y, 10.0))
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2026-08-02 12:48:33 -04:00
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print("World time multiplayer client validation: PASS")
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session.disconnect_session("")
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main.queue_free()
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2026-08-11 20:02:54 -04:00
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for _frame: int in 4:
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await process_frame
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await create_timer(0.1).timeout
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2026-08-02 12:48:33 -04:00
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quit()
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func _create_initialized_main() -> Node:
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root.size = Vector2i(1280, 720)
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var main := MainScene.instantiate()
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root.add_child(main)
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for _frame: int in 4:
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await process_frame
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if not bool(main.get("_application_initialized")):
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main.call("_activate_selected_data_path", "", true)
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for _frame: int in 8:
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await process_frame
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assert(bool(main.get("_application_initialized")))
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return main
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func _wrapped_time_difference(left: float, right: float) -> float:
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var direct: float = absf(left - right)
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return minf(direct, WorldTimeService.HOURS_PER_DAY - direct)
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