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227 行
9.0 KiB
227 行
9.0 KiB
using System.Collections;
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using NUnit.Framework;
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using UnityEngine;
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using UnityEngine.Assertions.Comparers;
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using UnityEngine.TestTools;
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using Unity.Netcode.TestHelpers.Runtime;
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namespace Unity.Netcode.RuntimeTests
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{
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/// <summary>
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/// Runtime tests to test the network time system with the Unity player loop.
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/// </summary>
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public class NetworkTimeSystemTests
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{
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private MonoBehaviourTest<PlayerLoopFixedTimeTestComponent> m_PlayerLoopFixedTimeTestComponent; // cache for teardown
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private MonoBehaviourTest<PlayerLoopTimeTestComponent> m_PlayerLoopTimeTestComponent; // cache for teardown
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private float m_OriginalTimeScale = 1.0f;
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[SetUp]
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public void Setup()
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{
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m_OriginalTimeScale = Time.timeScale;
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// Create, instantiate, and host
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Assert.IsTrue(NetworkManagerHelper.StartNetworkManager(out _));
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}
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/// <summary>
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/// Tests whether time is accessible and has correct values inside Update/FixedUpdate.
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/// This test applies only when <see cref="Time.timeScale"> is 1.
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/// </summary>
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/// <returns></returns>
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[UnityTest]
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public IEnumerator PlayerLoopFixedTimeTest()
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{
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m_PlayerLoopFixedTimeTestComponent = new MonoBehaviourTest<PlayerLoopFixedTimeTestComponent>();
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yield return m_PlayerLoopFixedTimeTestComponent;
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}
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/// <summary>
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/// Tests whether time is accessible and has correct values inside Update, for multiples <see cref="Time.timeScale"/> values.
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/// </summary>
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/// <returns></returns>
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[UnityTest]
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public IEnumerator PlayerLoopTimeTest_WithDifferentTimeScale([Values(0.0f, 0.1f, 0.5f, 1.0f, 2.0f, 5.0f)] float timeScale)
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{
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Time.timeScale = timeScale;
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m_PlayerLoopTimeTestComponent = new MonoBehaviourTest<PlayerLoopTimeTestComponent>();
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yield return m_PlayerLoopTimeTestComponent;
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}
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/// <summary>
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/// Tests whether the time system invokes the correct amount of ticks over a period of time.
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/// Note we cannot test against Time.Time directly because of floating point precision. Our time is more precise leading to different results.
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/// </summary>
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/// <returns></returns>
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[UnityTest]
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public IEnumerator CorrectAmountTicksTest()
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{
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NetworkTickSystem tickSystem = NetworkManager.Singleton.NetworkTickSystem;
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float delta = tickSystem.LocalTime.FixedDeltaTime;
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int previous_localTickCalculated = 0;
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int previous_serverTickCalculated = 0;
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while (tickSystem.LocalTime.Time < 3f)
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{
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yield return null;
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var tickCalculated = tickSystem.LocalTime.Time / delta;
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previous_localTickCalculated = (int)tickCalculated;
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// This check is needed due to double division imprecision of large numbers
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if ((tickCalculated - previous_localTickCalculated) >= 0.999999999999)
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{
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previous_localTickCalculated++;
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}
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tickCalculated = NetworkManager.Singleton.ServerTime.Time / delta;
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previous_serverTickCalculated = (int)tickCalculated;
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// This check is needed due to double division imprecision of large numbers
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if ((tickCalculated - previous_serverTickCalculated) >= 0.999999999999)
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{
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previous_serverTickCalculated++;
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}
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Assert.AreEqual(previous_localTickCalculated, NetworkManager.Singleton.LocalTime.Tick, $"Calculated local tick {previous_localTickCalculated} does not match local tick {NetworkManager.Singleton.LocalTime.Tick}!");
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Assert.AreEqual(previous_serverTickCalculated, NetworkManager.Singleton.ServerTime.Tick, $"Calculated server tick {previous_serverTickCalculated} does not match server tick {NetworkManager.Singleton.ServerTime.Tick}!");
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Assert.AreEqual((float)NetworkManager.Singleton.LocalTime.Time, (float)NetworkManager.Singleton.ServerTime.Time, $"Local time {(float)NetworkManager.Singleton.LocalTime.Time} is not approximately server time {(float)NetworkManager.Singleton.ServerTime.Time}!", FloatComparer.s_ComparerWithDefaultTolerance);
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}
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}
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[TearDown]
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public void TearDown()
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{
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// Stop, shutdown, and destroy
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NetworkManagerHelper.ShutdownNetworkManager();
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Time.timeScale = m_OriginalTimeScale;
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if (m_PlayerLoopFixedTimeTestComponent != null)
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{
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Object.DestroyImmediate(m_PlayerLoopFixedTimeTestComponent.gameObject);
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m_PlayerLoopFixedTimeTestComponent = null;
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}
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if (m_PlayerLoopTimeTestComponent != null)
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{
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Object.DestroyImmediate(m_PlayerLoopTimeTestComponent.gameObject);
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m_PlayerLoopTimeTestComponent = null;
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}
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}
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}
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public class PlayerLoopFixedTimeTestComponent : MonoBehaviour, IMonoBehaviourTest
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{
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public const int Passes = 100;
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private int m_UpdatePasses = 0;
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private int m_LastFixedUpdateTick = 0;
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private int m_TickOffset = -1;
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private NetworkTime m_LocalTimePreviousUpdate;
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private NetworkTime m_ServerTimePreviousUpdate;
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private NetworkTime m_LocalTimePreviousFixedUpdate;
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private void Start()
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{
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// Run fixed update at same rate as network tick
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Time.fixedDeltaTime = NetworkManager.Singleton.LocalTime.FixedDeltaTime;
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// Uncap fixed time else we might skip fixed updates
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Time.maximumDeltaTime = float.MaxValue;
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}
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private void Update()
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{
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// This must run first else it wont run if there is an exception
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m_UpdatePasses++;
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NetworkTime localTime = NetworkManager.Singleton.LocalTime;
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NetworkTime serverTime = NetworkManager.Singleton.ServerTime;
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// time should have advanced on the host/server
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Assert.Less(m_LocalTimePreviousUpdate.Time, localTime.Time);
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Assert.Less(m_ServerTimePreviousUpdate.Time, serverTime.Time);
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// time should be further then last fixed step in update
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Assert.Less(m_LocalTimePreviousFixedUpdate.FixedTime, localTime.Time);
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// we should be in same or further tick then fixed update
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Assert.LessOrEqual(m_LocalTimePreviousFixedUpdate.Tick, localTime.Tick);
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// fixed update should result in same amounts of tick as network time
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if (m_TickOffset == -1)
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{
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m_TickOffset = serverTime.Tick - m_LastFixedUpdateTick;
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}
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else
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{
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// offset of 1 is ok, this happens due to different tick duration offsets
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Assert.LessOrEqual(Mathf.Abs(serverTime.Tick - m_TickOffset - m_LastFixedUpdateTick), 1);
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}
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m_LocalTimePreviousUpdate = localTime;
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m_ServerTimePreviousUpdate = serverTime;
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}
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private void FixedUpdate()
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{
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m_LocalTimePreviousFixedUpdate = NetworkManager.Singleton.LocalTime;
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Assert.AreEqual(Time.fixedDeltaTime, m_LocalTimePreviousFixedUpdate.FixedDeltaTime);
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Assert.AreEqual((float)NetworkManager.Singleton.LocalTime.Time, (float)NetworkManager.Singleton.ServerTime.Time, null, FloatComparer.s_ComparerWithDefaultTolerance);
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m_LastFixedUpdateTick++;
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}
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public bool IsTestFinished => m_UpdatePasses >= Passes;
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}
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public class PlayerLoopTimeTestComponent : MonoBehaviour, IMonoBehaviourTest
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{
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public const int Passes = 100;
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private int m_UpdatePasses = 0;
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private NetworkTime m_LocalTimePreviousUpdate;
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private NetworkTime m_ServerTimePreviousUpdate;
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private NetworkTime m_LocalTimePreviousFixedUpdate;
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private void Update()
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{
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// This must run first else it wont run if there is an exception
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m_UpdatePasses++;
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NetworkTime localTime = NetworkManager.Singleton.LocalTime;
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NetworkTime serverTime = NetworkManager.Singleton.ServerTime;
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// time should have advanced on the host/server
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Assert.Less(m_LocalTimePreviousUpdate.Time, localTime.Time);
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Assert.Less(m_ServerTimePreviousUpdate.Time, serverTime.Time);
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// time should be further then last fixed step in update
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Assert.Less(m_LocalTimePreviousFixedUpdate.FixedTime, localTime.Time);
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// we should be in same or further tick then fixed update
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Assert.LessOrEqual(m_LocalTimePreviousFixedUpdate.Tick, localTime.Tick);
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m_LocalTimePreviousUpdate = localTime;
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m_ServerTimePreviousUpdate = serverTime;
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}
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private void FixedUpdate()
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{
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m_LocalTimePreviousFixedUpdate = NetworkManager.Singleton.LocalTime;
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}
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public bool IsTestFinished => m_UpdatePasses >= Passes;
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}
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}
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