Refactor MeshInstance
This commit is contained in:
@@ -1,47 +1,15 @@
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using Ghost.Core;
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using Ghost.Entities;
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using Ghost.Graphics.Core;
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using Misaki.HighPerformance.LowLevel.Collections;
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namespace Ghost.Engine.Components;
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public struct MeshPalette : ISharedComponent, IEquatable<MeshPalette>
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{
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public UnsafeArray<Handle<Mesh>> meshes;
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public UnsafeArray<Handle<Material>> materials;
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public bool Equals(MeshPalette other)
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{
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throw new NotImplementedException();
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}
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public override int GetHashCode()
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{
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throw new NotImplementedException();
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}
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public override bool Equals(object? obj)
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{
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return obj is MeshPalette palette && Equals(palette);
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}
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public static bool operator ==(MeshPalette left, MeshPalette right)
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{
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return left.Equals(right);
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}
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public static bool operator !=(MeshPalette left, MeshPalette right)
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{
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return !(left == right);
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}
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}
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public struct MeshInstance : IComponent
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{
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public int meshIndex;
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public int materialIndex;
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public Handle<Mesh> mesh;
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// NOTE: This will be the first material, we can access other materials by the bindless index of the first material + the local index stored in the meshlet.
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public Handle<Material> materialStart;
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public ShadowCastingMode shadowCastingMode;
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public RenderingLayerMask renderingLayerMask;
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public byte subMeshIndex;
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public bool staticShadowCaster;
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}
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@@ -3,7 +3,6 @@ using Ghost.Engine.Components;
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using Ghost.Entities;
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using Ghost.Graphics.Core;
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using Misaki.HighPerformance.LowLevel.Buffer;
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using Misaki.HighPerformance.LowLevel.Utilities;
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namespace Ghost.Engine.Systems;
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@@ -14,7 +13,6 @@ public class RenderExtractionSystem : ISystem
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public void Initialize(ref readonly SystemAPI systemAPI)
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{
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_queryID = new QueryBuilder()
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// TODO: We also need to filter by MeshPalette.
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.WithAll<MeshInstance, LocalToWorld>()
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.Build(systemAPI.World);
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}
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@@ -30,6 +28,7 @@ public class RenderExtractionSystem : ISystem
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var renderList = new RenderList(1, 64, Allocator.Temp);
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// TODO: We should extract the render record for each camera because different cameras may have different culling results.
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// TODO: This chould be done in parallel jobs.
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foreach (var chunk in query.GetChunkIterator())
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{
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var meshInstances = chunk.GetComponentData<MeshInstance>();
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@@ -47,7 +46,6 @@ public class RenderExtractionSystem : ISystem
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// mesh = meshInstance.meshIndex,
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// material = meshInstance.materialIndex,
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renderingLayerMask = meshInstance.renderingLayerMask,
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subMeshIndex = meshInstance.subMeshIndex,
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}, 0);
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}
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@@ -341,6 +341,23 @@ internal class D3D12ResourceDatabase : IResourceDatabase
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_descriptorAllocator.Release(new Identifier<SamplerDescriptor>(id.Value));
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}
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public Error Swap(Handle<GPUResource> handleA, Handle<GPUResource> handleB)
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{
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ref var recordA = ref _resources.GetElementReferenceAt(handleA.ID, handleA.Generation, out var existA);
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ref var recordB = ref _resources.GetElementReferenceAt(handleB.ID, handleB.Generation, out var existB);
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if (!existA || !existB)
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{
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return Error.NotFound;
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}
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var temp = recordA;
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recordA = recordB;
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recordB = temp;
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return Error.None;
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}
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public void BeginFrame(uint currentFrameFenceValue)
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{
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ObjectDisposedException.ThrowIf(_disposed, this);
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@@ -127,4 +127,12 @@ public interface IResourceDatabase : IDisposable
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/// </summary>
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/// <param name="id">The identifier of the sampler to release. Must reference a valid, existing sampler.</param>
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void ReleaseSampler(Identifier<Sampler> id);
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/// <summary>
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/// Swaps the resources associated with the two specified handles, effectively exchanging their identities and all associated data.
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/// </summary>
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/// <param name="handleA">The first handle whose associated resource is to be swapped.</param>
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/// <param name="handleB">The second handle whose associated resource is to be swapped.</param>
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/// <returns>An Error indicating the success or failure of the swap operation.</returns>
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Error Swap(Handle<GPUResource> handleA, Handle<GPUResource> handleB);
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}
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@@ -8,10 +8,9 @@ namespace Ghost.Graphics.Core;
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public record struct RenderRecord
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{
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public float4x4 localToWorld;
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public Handle<Material> material;
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public Handle<Mesh> mesh;
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public Handle<Material> materialOffset;
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public RenderingLayerMask renderingLayerMask;
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public byte subMeshIndex;
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}
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public struct RenderList : IDisposable
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@@ -20,7 +20,10 @@ internal sealed class SwapChainRecord
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while (true)
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{
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int current = Volatile.Read(ref _refCount);
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if (current == 0) return false; // It's dead, let it go.
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if (current == 0)
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{
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return false; // It's dead, let it go.
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}
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if (Interlocked.CompareExchange(ref _refCount, current + 1, current) == current)
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{
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@@ -66,7 +69,10 @@ internal class SwapChainManager
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if (record != null)
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{
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if (record.TryAddRef()) return record.SwapChain;
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if (record.TryAddRef())
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{
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return record.SwapChain;
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}
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Thread.Yield();
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continue;
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@@ -1,4 +1,4 @@
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# Ghost.Nvtt – Usage Guide
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# Ghost.Nvtt - Usage Guide
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`Ghost.Nvtt` is a managed C# wrapper over the NVIDIA Texture Tools 3 (nvtt) native library.
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All wrapper classes are in the `Ghost.Nvtt` namespace. Add a single `using Ghost.Nvtt;` and you have access to every wrapper class and every enum.
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@@ -99,7 +99,7 @@ set.LoadDDS("texture_array.dds");
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Console.WriteLine($"{set.FaceCount} faces, {set.MipmapCount} mips, " +
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$"{set.Width}x{set.Height}");
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// Access the raw pointer for face 0, mip 0 (borrowed – do not dispose)
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// Access the raw pointer for face 0, mip 0 (borrowed - do not dispose)
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var surfacePtr = set.GetSurfacePtr(faceId: 0, mipId: 0);
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```
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@@ -203,10 +203,10 @@ diff.Save("diff.png");
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| Returns | Ownership |
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|---------|-----------|
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| `new NvttSurface(...)` constructor overload accepting a raw pointer | **Takes** ownership – dispose when done |
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| `new NvttSurface(...)` constructor overload accepting a raw pointer | **Takes** ownership - dispose when done |
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| `NvttSurface.Clone()` | Caller owns result |
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| `NvttSurface.CreateSubImage()`, `CreateToksvigMap()` | Caller owns result |
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| `NvttCubeSurface.Unfold()`, `IrradianceFilter()`, `CosinePowerFilter()`, `FastResample()` | Caller owns result |
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| `NvttGlobal.Diff()`, `Histogram()`, `HistogramRange()` | Caller owns result |
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| `NvttCubeSurface.FacePtr()`, `NvttSurfaceSet.GetSurfacePtr()` | **Borrowed** – do NOT dispose |
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| `NvttContext.GetTimingContextPtr()` | **Borrowed** – do NOT dispose |
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| `NvttCubeSurface.FacePtr()`, `NvttSurfaceSet.GetSurfacePtr()` | **Borrowed** - do NOT dispose |
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| `NvttContext.GetTimingContextPtr()` | **Borrowed** - do NOT dispose |
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@@ -8,7 +8,7 @@ public sealed unsafe class NvttBatchListHandle : IDisposable
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{
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private NvttBatchList* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttBatchList* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -62,7 +62,7 @@ public sealed unsafe class NvttBatchListHandle : IDisposable
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/// <summary>
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/// Returns the raw pointers for item <paramref name="index"/>.
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/// The pointers are borrowed – do NOT dispose them.
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/// The pointers are borrowed - do NOT dispose them.
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/// </summary>
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public void GetItem(uint index,
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out NvttSurface* surface, out int face, out int mipmap,
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@@ -1,14 +1,14 @@
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namespace Ghost.Nvtt;
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/// <summary>
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/// Controls how a surface is compressed – format, quality, pixel layout and
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/// Controls how a surface is compressed - format, quality, pixel layout and
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/// optional quantization settings.
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/// </summary>
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public sealed unsafe class NvttCompressionOptionsHandle : IDisposable
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{
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private NvttCompressionOptions* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttCompressionOptions* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -8,7 +8,7 @@ public sealed unsafe class NvttContextHandle : IDisposable
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{
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private NvttContext* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttContext* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -63,7 +63,7 @@ public sealed unsafe class NvttContextHandle : IDisposable
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/// <summary>
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/// Returns the timing context owned by this nvtt context.
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/// The pointer is borrowed – do NOT dispose it separately.
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/// The pointer is borrowed - do NOT dispose it separately.
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/// Returns <c>null</c> if timing was never enabled.
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/// </summary>
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public NvttTimingContext* GetTimingContextPtr()
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@@ -10,7 +10,7 @@ public sealed unsafe class NvttCubeSurfaceHandle : IDisposable
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{
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private NvttCubeSurface* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttCubeSurface* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -102,7 +102,7 @@ public sealed unsafe class NvttCubeSurfaceHandle : IDisposable
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/// <summary>
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/// Returns the raw <see cref="NvttSurface"/> pointer for the given face
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/// (0–5). The pointer is owned by this cube surface – do NOT dispose it.
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/// (0–5). The pointer is owned by this cube surface - do NOT dispose it.
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/// </summary>
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public NvttSurface* FacePtr(int face)
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{
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@@ -14,7 +14,7 @@ public sealed unsafe class NvttOutputOptionsHandle : IDisposable
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{
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private NvttOutputOptions* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttOutputOptions* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -31,7 +31,7 @@ public sealed unsafe class NvttOutputOptionsHandle : IDisposable
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[UnmanagedFunctionPointer(CallingConvention.Cdecl)]
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private delegate void ErrorDelegate(Ghost.Nvtt.Native.NvttError error);
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// Pinned delegate instances – must stay alive as long as native code may call them.
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// Pinned delegate instances - must stay alive as long as native code may call them.
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private BeginImageDelegate? _beginImageDelegate;
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private OutputDataDelegate? _outputDataDelegate;
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private ErrorDelegate? _errorDelegate;
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@@ -11,7 +11,7 @@ public sealed unsafe class NvttSurfaceHandle : IDisposable
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{
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private NvttSurface* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttSurface* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -8,7 +8,7 @@ public sealed unsafe class NvttSurfaceSetHandle : IDisposable
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{
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private NvttSurfaceSet* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttSurfaceSet* Ptr => _ptr;
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// -------------------------------------------------------------------------
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@@ -72,7 +72,7 @@ public sealed unsafe class NvttSurfaceSetHandle : IDisposable
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/// <summary>
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/// Returns the raw <see cref="NvttSurface"/> pointer for the given face
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/// and mip level. The pointer is owned by this surface set – do NOT dispose
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/// and mip level. The pointer is owned by this surface set - do NOT dispose
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/// it.
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/// </summary>
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public NvttSurface* GetSurfacePtr(int faceId, int mipId, bool expectSigned = false)
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@@ -10,7 +10,7 @@ public sealed unsafe class NvttTimingContextHandle : IDisposable
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{
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private NvttTimingContext* _ptr;
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/// <summary>Raw pointer – use only when calling the native API directly.</summary>
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/// <summary>Raw pointer - use only when calling the native API directly.</summary>
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public NvttTimingContext* Ptr => _ptr;
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// -------------------------------------------------------------------------
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