mirror of
https://mirror.ghproxy.com/https://github.com/dexyfex/CodeWalker
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147 lines
4.4 KiB
C#
147 lines
4.4 KiB
C#
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using System;
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using System.Collections.Generic;
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using System.Linq;
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using System.Text;
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using System.Threading.Tasks;
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using CodeWalker.GameFiles;
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using SharpDX;
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using SharpDX.Direct3D11;
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using System.IO;
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using SharpDX.DXGI;
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using Device = SharpDX.Direct3D11.Device;
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using Buffer = SharpDX.Direct3D11.Buffer;
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using MapFlags = SharpDX.Direct3D11.MapFlags;
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using CodeWalker.World;
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namespace CodeWalker.Rendering
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{
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public struct DistantLightsShaderVSSceneVars
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{
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public Matrix ViewProj;
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public Matrix ViewInv;
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public Vector3 CamPos;
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public float Pad0;
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}
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public class DistantLightsShader : Shader
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{
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bool disposed = false;
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VertexShader lightsvs;
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PixelShader lightsps;
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InputLayout layout;
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SamplerState texsampler;
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UnitQuad quad;
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GpuVarsBuffer<DistantLightsShaderVSSceneVars> VSSceneVars;
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public DistantLightsShader(Device device)
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{
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byte[] vsbytes = File.ReadAllBytes("Shaders\\DistantLightsVS.cso");
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byte[] psbytes = File.ReadAllBytes("Shaders\\DistantLightsPS.cso");
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lightsvs = new VertexShader(device, vsbytes);
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lightsps = new PixelShader(device, psbytes);
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layout = new InputLayout(device, vsbytes, new[]
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{
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new InputElement("POSITION", 0, Format.R32G32B32A32_Float, 0, 0),
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new InputElement("TEXCOORD", 0, Format.R32G32_Float, 16, 0),
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});
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texsampler = new SamplerState(device, new SamplerStateDescription()
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{
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AddressU = TextureAddressMode.Clamp,
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AddressV = TextureAddressMode.Clamp,
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AddressW = TextureAddressMode.Clamp,
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BorderColor = Color.Transparent,
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ComparisonFunction = Comparison.Always,
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Filter = Filter.MinMagMipLinear,
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MaximumAnisotropy = 1,
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MaximumLod = float.MaxValue,
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MinimumLod = 0,
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MipLodBias = 0,
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});
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quad = new UnitQuad(device);
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VSSceneVars = new GpuVarsBuffer<DistantLightsShaderVSSceneVars>(device);
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}
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public override void SetShader(DeviceContext context)
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{
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context.VertexShader.Set(lightsvs);
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context.PixelShader.Set(lightsps);
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SetInputLayout(context, VertexType.PT);
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}
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public override bool SetInputLayout(DeviceContext context, VertexType type)
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{
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context.InputAssembler.InputLayout = layout;
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return true;
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}
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public override void SetSceneVars(DeviceContext context, Camera camera, Shadowmap shadowmap, ShaderGlobalLights lights)
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{
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VSSceneVars.Vars.ViewProj = Matrix.Transpose(camera.ViewProjMatrix);
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VSSceneVars.Vars.ViewInv = Matrix.Transpose(camera.ViewInvMatrix);
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VSSceneVars.Vars.CamPos = camera.Position;
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VSSceneVars.Update(context);
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VSSceneVars.SetVSCBuffer(context, 0);
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}
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public override void SetEntityVars(DeviceContext context, ref RenderableInst rend)
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{
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}
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public override void SetModelVars(DeviceContext context, RenderableModel model)
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{
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}
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public override void SetGeomVars(DeviceContext context, RenderableGeometry geom)
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{
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}
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public override void UnbindResources(DeviceContext context)
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{
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context.VertexShader.SetConstantBuffer(0, null);
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context.VertexShader.SetShaderResource(0, null);
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context.PixelShader.SetShaderResource(0, null);
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context.PixelShader.SetSampler(0, null);
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}
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public void RenderBatch(DeviceContext context, RenderableDistantLODLights lights)
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{
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context.VertexShader.SetShaderResource(0, lights.InstanceBuffer.SRV);
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context.PixelShader.SetShaderResource(0, lights.Texture.ShaderResourceView);
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context.PixelShader.SetSampler(0, texsampler);
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quad.DrawInstanced(context, lights.InstanceCount);
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}
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public void Dispose()
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{
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if (disposed) return;
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VSSceneVars.Dispose();
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quad.Dispose();
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texsampler.Dispose();
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layout.Dispose();
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//VSSceneVars.Dispose();
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lightsps.Dispose();
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lightsvs.Dispose();
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disposed = true;
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}
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}
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}
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