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com.unity.netcode.gameobjects/Runtime/NetworkVariable/Collections/NetworkList.cs
Unity Technologies a813ba0dd6 com.unity.netcode.gameobjects@2.0.0-pre.3
The format is based on [Keep a Changelog](https://keepachangelog.com/en/1.0.0/) and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html).

Additional documentation and release notes are available at [Multiplayer Documentation](https://docs-multiplayer.unity3d.com).

## [2.0.0-pre.3] - 2024-07-23

### Added
- Added: `UnityTransport.GetNetworkDriver` and `UnityTransport.GetLocalEndpoint` methods to expose the driver and local endpoint being used. (#2978)

### Fixed

- Fixed issue where deferred despawn was causing GC allocations when converting an `IEnumerable` to a list. (#2983)
- Fixed issue where the realtime network stats monitor was not able to display RPC traffic in release builds due to those stats being only available in development builds or the editor. (#2979)
- Fixed issue where `NetworkManager.ScenesLoaded` was not being updated if `PostSynchronizationSceneUnloading` was set and any loaded scenes not used during synchronization were unloaded. (#2971)
- Fixed issue where `Rigidbody2d` under Unity 6000.0.11f1 has breaking changes where `velocity` is now `linearVelocity` and `isKinematic` is replaced by `bodyType`. (#2971)
- Fixed issue where `NetworkSpawnManager.InstantiateAndSpawn` and `NetworkObject.InstantiateAndSpawn` were not honoring the ownerClientId parameter when using a client-server network topology. (#2968)
- Fixed issue where internal delta serialization could not have a byte serializer defined when serializing deltas for other types. Added `[GenerateSerializationForType(typeof(byte))]` to both the `NetworkVariable` and `AnticipatedNetworkVariable` classes to assure a byte serializer is defined.(#2962)
- Fixed issue when scene management was disabled and the session owner would still try to synchronize a late joining client. (#2962)
- Fixed issue when using a distributed authority network topology where it would allow a session owner to spawn a `NetworkObject` prior to being approved. Now, an error message is logged and the `NetworkObject` will not be spawned prior to the client being approved.  (#2962)
- Fixed issue where attempting to spawn during `NetworkBehaviour.OnInSceneObjectsSpawned` and `NetworkBehaviour.OnNetworkSessionSynchronized` notifications would throw a collection modified exception.  (#2962)

### Changed

- Changed logic where clients can now set the `NetworkSceneManager` client synchronization mode when using a distributed authority network topology. (#2985)
2024-07-23 00:00:00 +00:00

650 lines
23 KiB
C#

using System;
using System.Collections.Generic;
using Unity.Collections;
namespace Unity.Netcode
{
/// <summary>
/// Event based NetworkVariable container for syncing Lists
/// </summary>
/// <typeparam name="T">The type for the list</typeparam>
[GenerateSerializationForGenericParameter(0)]
public class NetworkList<T> : NetworkVariableBase where T : unmanaged, IEquatable<T>
{
private NativeList<T> m_List = new NativeList<T>(64, Allocator.Persistent);
private NativeList<NetworkListEvent<T>> m_DirtyEvents = new NativeList<NetworkListEvent<T>>(64, Allocator.Persistent);
/// <summary>
/// Delegate type for list changed event
/// </summary>
/// <param name="changeEvent">Struct containing information about the change event</param>
public delegate void OnListChangedDelegate(NetworkListEvent<T> changeEvent);
/// <summary>
/// The callback to be invoked when the list gets changed
/// </summary>
public event OnListChangedDelegate OnListChanged;
internal override NetworkVariableType Type => NetworkVariableType.NetworkList;
/// <summary>
/// Constructor method for <see cref="NetworkList"/>
/// </summary>
public NetworkList() { }
/// <inheritdoc/>
/// <param name="values"></param>
/// <param name="readPerm"></param>
/// <param name="writePerm"></param>
public NetworkList(IEnumerable<T> values = default,
NetworkVariableReadPermission readPerm = DefaultReadPerm,
NetworkVariableWritePermission writePerm = DefaultWritePerm)
: base(readPerm, writePerm)
{
// allow null IEnumerable<T> to mean "no values"
if (values != null)
{
foreach (var value in values)
{
m_List.Add(value);
}
}
}
/// <inheritdoc />
public override void ResetDirty()
{
base.ResetDirty();
if (m_DirtyEvents.Length > 0)
{
m_DirtyEvents.Clear();
}
}
/// <inheritdoc />
public override bool IsDirty()
{
// we call the base class to allow the SetDirty() mechanism to work
return base.IsDirty() || m_DirtyEvents.Length > 0;
}
internal void MarkNetworkObjectDirty()
{
MarkNetworkBehaviourDirty();
}
/// <inheritdoc />
public override void WriteDelta(FastBufferWriter writer)
{
if (base.IsDirty())
{
writer.WriteValueSafe((ushort)1);
writer.WriteValueSafe(NetworkListEvent<T>.EventType.Full);
WriteField(writer);
return;
}
writer.WriteValueSafe((ushort)m_DirtyEvents.Length);
for (int i = 0; i < m_DirtyEvents.Length; i++)
{
var element = m_DirtyEvents.ElementAt(i);
writer.WriteValueSafe(element.Type);
switch (element.Type)
{
case NetworkListEvent<T>.EventType.Add:
{
NetworkVariableSerialization<T>.Serializer.Write(writer, ref element.Value);
}
break;
case NetworkListEvent<T>.EventType.Insert:
{
BytePacker.WriteValueBitPacked(writer, element.Index);
NetworkVariableSerialization<T>.Serializer.Write(writer, ref element.Value);
}
break;
case NetworkListEvent<T>.EventType.Remove:
{
NetworkVariableSerialization<T>.Serializer.Write(writer, ref element.Value);
}
break;
case NetworkListEvent<T>.EventType.RemoveAt:
{
BytePacker.WriteValueBitPacked(writer, element.Index);
}
break;
case NetworkListEvent<T>.EventType.Value:
{
BytePacker.WriteValueBitPacked(writer, element.Index);
NetworkVariableSerialization<T>.Serializer.Write(writer, ref element.Value);
}
break;
case NetworkListEvent<T>.EventType.Clear:
{
//Nothing has to be written
}
break;
}
}
}
/// <inheritdoc />
public override void WriteField(FastBufferWriter writer)
{
if (m_NetworkManager.DistributedAuthorityMode)
{
writer.WriteValueSafe(NetworkVariableSerialization<T>.Serializer.Type);
if (NetworkVariableSerialization<T>.Serializer.Type == NetworkVariableType.Unmanaged)
{
// Write the size of the unmanaged serialized type as it has a fixed size. This allows the CMB runtime to correctly read the unmanged type.
var placeholder = new T();
var startPos = writer.Position;
NetworkVariableSerialization<T>.Serializer.Write(writer, ref placeholder);
var size = writer.Position - startPos;
writer.Seek(startPos);
BytePacker.WriteValueBitPacked(writer, size);
}
}
writer.WriteValueSafe((ushort)m_List.Length);
for (int i = 0; i < m_List.Length; i++)
{
NetworkVariableSerialization<T>.Serializer.Write(writer, ref m_List.ElementAt(i));
}
}
/// <inheritdoc />
public override void ReadField(FastBufferReader reader)
{
m_List.Clear();
if (m_NetworkManager.DistributedAuthorityMode)
{
SerializationTools.ReadType(reader, NetworkVariableSerialization<T>.Serializer);
// Collection item type is used by the DA server, drop value here.
if (NetworkVariableSerialization<T>.Serializer.Type == NetworkVariableType.Unmanaged)
{
ByteUnpacker.ReadValueBitPacked(reader, out int _);
}
}
reader.ReadValueSafe(out ushort count);
for (int i = 0; i < count; i++)
{
var value = new T();
NetworkVariableSerialization<T>.Serializer.Read(reader, ref value);
m_List.Add(value);
}
}
/// <inheritdoc />
public override void ReadDelta(FastBufferReader reader, bool keepDirtyDelta)
{
reader.ReadValueSafe(out ushort deltaCount);
for (int i = 0; i < deltaCount; i++)
{
reader.ReadValueSafe(out NetworkListEvent<T>.EventType eventType);
switch (eventType)
{
case NetworkListEvent<T>.EventType.Add:
{
var value = new T();
NetworkVariableSerialization<T>.Serializer.Read(reader, ref value);
m_List.Add(value);
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
Index = m_List.Length - 1,
Value = m_List[m_List.Length - 1]
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType,
Index = m_List.Length - 1,
Value = m_List[m_List.Length - 1]
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.Insert:
{
ByteUnpacker.ReadValueBitPacked(reader, out int index);
var value = new T();
NetworkVariableSerialization<T>.Serializer.Read(reader, ref value);
if (index < m_List.Length)
{
m_List.InsertRangeWithBeginEnd(index, index + 1);
m_List[index] = value;
}
else
{
m_List.Add(value);
}
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
Index = index,
Value = m_List[index]
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType,
Index = index,
Value = m_List[index]
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.Remove:
{
var value = new T();
NetworkVariableSerialization<T>.Serializer.Read(reader, ref value);
int index = m_List.IndexOf(value);
if (index == -1)
{
break;
}
m_List.RemoveAt(index);
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
Index = index,
Value = value
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType,
Index = index,
Value = value
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.RemoveAt:
{
ByteUnpacker.ReadValueBitPacked(reader, out int index);
T value = m_List[index];
m_List.RemoveAt(index);
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
Index = index,
Value = value
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType,
Index = index,
Value = value
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.Value:
{
ByteUnpacker.ReadValueBitPacked(reader, out int index);
var value = new T();
NetworkVariableSerialization<T>.Serializer.Read(reader, ref value);
if (index >= m_List.Length)
{
throw new Exception("Shouldn't be here, index is higher than list length");
}
var previousValue = m_List[index];
m_List[index] = value;
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
Index = index,
Value = value,
PreviousValue = previousValue
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType,
Index = index,
Value = value,
PreviousValue = previousValue
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.Clear:
{
//Read nothing
m_List.Clear();
if (OnListChanged != null)
{
OnListChanged(new NetworkListEvent<T>
{
Type = eventType,
});
}
if (keepDirtyDelta)
{
m_DirtyEvents.Add(new NetworkListEvent<T>()
{
Type = eventType
});
MarkNetworkObjectDirty();
}
}
break;
case NetworkListEvent<T>.EventType.Full:
{
ReadField(reader);
ResetDirty();
}
break;
}
}
}
/// <inheritdoc />
public IEnumerator<T> GetEnumerator()
{
return m_List.GetEnumerator();
}
/// <inheritdoc />
public void Add(T item)
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
m_List.Add(item);
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.Add,
Value = item,
Index = m_List.Length - 1
};
HandleAddListEvent(listEvent);
}
/// <inheritdoc />
public void Clear()
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
m_List.Clear();
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.Clear
};
HandleAddListEvent(listEvent);
}
/// <inheritdoc />
public bool Contains(T item)
{
int index = m_List.IndexOf(item);
return index != -1;
}
/// <inheritdoc />
public bool Remove(T item)
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
int index = m_List.IndexOf(item);
if (index == -1)
{
return false;
}
m_List.RemoveAt(index);
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.Remove,
Value = item
};
HandleAddListEvent(listEvent);
return true;
}
/// <inheritdoc />
public int Count => m_List.Length;
/// <inheritdoc />
public int IndexOf(T item)
{
return m_List.IndexOf(item);
}
/// <inheritdoc />
public void Insert(int index, T item)
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
if (index < m_List.Length)
{
m_List.InsertRangeWithBeginEnd(index, index + 1);
m_List[index] = item;
}
else
{
m_List.Add(item);
}
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.Insert,
Index = index,
Value = item
};
HandleAddListEvent(listEvent);
}
/// <inheritdoc />
public void RemoveAt(int index)
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
var value = m_List[index];
m_List.RemoveAt(index);
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.RemoveAt,
Index = index,
Value = value
};
HandleAddListEvent(listEvent);
}
/// <inheritdoc />
public T this[int index]
{
get => m_List[index];
set
{
// check write permissions
if (!CanClientWrite(m_NetworkManager.LocalClientId))
{
throw new InvalidOperationException("Client is not allowed to write to this NetworkList");
}
var previousValue = m_List[index];
m_List[index] = value;
var listEvent = new NetworkListEvent<T>()
{
Type = NetworkListEvent<T>.EventType.Value,
Index = index,
Value = value,
PreviousValue = previousValue
};
HandleAddListEvent(listEvent);
}
}
private void HandleAddListEvent(NetworkListEvent<T> listEvent)
{
m_DirtyEvents.Add(listEvent);
MarkNetworkObjectDirty();
OnListChanged?.Invoke(listEvent);
}
/// <summary>
/// This is actually unused left-over from a previous interface
/// </summary>
public int LastModifiedTick
{
get
{
// todo: implement proper network tick for NetworkList
return NetworkTickSystem.NoTick;
}
}
/// <summary>
/// Overridden <see cref="IDisposable"/> implementation.
/// CAUTION: If you derive from this class and override the <see cref="Dispose"/> method,
/// you **must** always invoke the base.Dispose() method!
/// </summary>
public override void Dispose()
{
m_List.Dispose();
m_DirtyEvents.Dispose();
base.Dispose();
}
}
/// <summary>
/// Struct containing event information about changes to a NetworkList.
/// </summary>
/// <typeparam name="T">The type for the list that the event is about</typeparam>
public struct NetworkListEvent<T>
{
/// <summary>
/// Enum representing the different operations available for triggering an event.
/// </summary>
public enum EventType : byte
{
/// <summary>
/// Add
/// </summary>
Add,
/// <summary>
/// Insert
/// </summary>
Insert,
/// <summary>
/// Remove
/// </summary>
Remove,
/// <summary>
/// Remove at
/// </summary>
RemoveAt,
/// <summary>
/// Value changed
/// </summary>
Value,
/// <summary>
/// Clear
/// </summary>
Clear,
/// <summary>
/// Full list refresh
/// </summary>
Full
}
/// <summary>
/// Enum representing the operation made to the list.
/// </summary>
public EventType Type;
/// <summary>
/// The value changed, added or removed if available.
/// </summary>
public T Value;
/// <summary>
/// The previous value when "Value" has changed, if available.
/// </summary>
public T PreviousValue;
/// <summary>
/// the index changed, added or removed if available
/// </summary>
public int Index;
}
}