// Transforms struct ModelData { float4x4 model; }; [[vk::binding(0, 0)]] StructuredBuffer model : register(t1); // Vertex struct Vertex { float3 position; float uv_x; float3 normal; float uv_y; float3 tangent; float3 bitangent; }; [[vk::binding(0, 1)]] StructuredBuffer vertexBuffer : register(t2); // Samplers [[vk::binding(0, 2)]] SamplerState mySampler : register(s0); // Materials struct Material { bool hasAlbedo; float3 albedo; bool hasNormal; bool hasMetalness; bool hasRoughness; bool hasAO; float metalnessValue; float roughnessValue; float aoValue; int albedoTextureId; int normalTextureId; int metalnessTextureId; int roughnessTextureId; int aoTextureId; }; [[vk::binding(0, 3)]] StructuredBuffer material; // Textures [[vk::binding(0, 4)]] Texture2D textures[]; // Lights struct Light { float3 position; int type; float4 color; float3 direction; float outerConeAngle; float innerConeAngle; bool castShadow; int shadowMapTextureId[4]; int transformId[4]; }; [[vk::binding(0, 5)]] StructuredBuffer lights; // Cameras struct CameraView { float4x4 View; float4x4 Projection; float4x4 ViewProjection; float4x4 InverseView; float4x4 InverseProjection; float3 Position; float Near; float Far; }; [[vk::binding(0, 6)]] StructuredBuffer cameras; struct PSInput { float4 Position : SV_Position; float2 UV : TEXCOORD0; }; struct PSOutput { float4 oColor0 : SV_TARGET; }; struct TonemapPushConstant { float Exposure; float Gamma; int SourceTextureID; }; [[vk::push_constant]] TonemapPushConstant pushConstants; float3 PBRNeutralToneMapping(float3 color) { const float startCompression = 0.8 - 0.04; const float desaturation = 0.15; float x = min(color.r, min(color.g, color.b)); float offset = x < 0.08 ? x - 6.25 * x * x : 0.04; color -= offset; float peak = max(color.r, max(color.g, color.b)); if (peak < startCompression) return color; const float d = 1. - startCompression; float newPeak = 1. - d * d / (peak + d - startCompression); color *= newPeak / peak; float g = 1. - 1. / (desaturation * (peak - newPeak) + 1.); return lerp(color, newPeak * float3(1, 1, 1), g); } PSOutput main(PSInput input) { PSOutput output; float3 color = textures[pushConstants.SourceTextureID].Sample(mySampler, input.UV).rgb; float3 mapped = float3(1.0, 1.0, 1.0) - exp(-color * pushConstants.Exposure); color = pow(mapped, float3(pushConstants.Gamma, pushConstants.Gamma, pushConstants.Gamma)); output.oColor0 = float4(color, 1); return output; }