Changes to shadowpass
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@@ -46,12 +46,12 @@ float4 fragmentMain(in FragmentParameter params) : SV_Target
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{
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uint cascadeIndex = 0;
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for (uint c = 0; c < NUM_CASCADES - 1; ++c) {
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if (params.position_VS.z < pShadowMapping.cascadeSplits[c]) {
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if (params.position_VS.z > pShadowMapping.cascadeSplits[c]) {
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cascadeIndex = c + 1;
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}
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}
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float4 lightSpacePos = mul(pShadowMapping.lightSpaceMatrices[cascadeIndex][i], float4(params.position_WS, 1));
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lightSpacePos = mul(biasMat, lightSpacePos);
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lightSpacePos = float4(lightSpacePos.xy * 0.5 + 0.5, lightSpacePos.zw);
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float4 shadowCoord = lightSpacePos;
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int3 texDim;
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pShadowMapping.shadowMaps[cascadeIndex].GetDimensions(texDim.x, texDim.y, texDim.z);
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@@ -62,12 +62,12 @@ float4 fragmentMain(in FragmentParameter params) : SV_Target
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float shadowFactor = 0.0f;
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int count = 0;
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int range = 1;
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for (int x = -range; x <= range; ++x) {
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for (int y = -range; y <= range; ++y) {
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//for (int x = -range; x <= range; ++x) {
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// for (int y = -range; y <= range; ++y) {
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float shadow = 1.0f;
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if (shadowCoord.z > 0.0 && shadowCoord.z < 1.0)
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{
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float dist = pShadowMapping.shadowMaps[cascadeIndex].Sample(pShadowMapping.shadowSampler, float3(shadowCoord.xy + float2(dx * x, dy * y), i)).r;
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float dist = pShadowMapping.shadowMaps[cascadeIndex].Sample(pShadowMapping.shadowSampler, float3(shadowCoord.xy, i)).r;
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if (shadowCoord.w > 0 && dist < shadowCoord.z)
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{
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shadow = 0;
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@@ -75,8 +75,8 @@ float4 fragmentMain(in FragmentParameter params) : SV_Target
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}
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shadowFactor += shadow;
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count++;
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}
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}
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// }
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//}
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result = (shadowFactor / count) * pLightEnv.directionalLights[i].illuminate(lightingParams, brdf);
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}
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@@ -78,6 +78,7 @@ VertexShaderOutput vertexMain(
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float4 worldPos = float4(mul(cameraRotation, vertices[vertexIndex]), 1.0f);
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//clip(dot(worldPos, clipPlane));
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output.clipPos = mul(pViewParams.projectionMatrix, worldPos);
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output.clipPos.z = output.clipPos.w - 0.0001f; // Push to far plane
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output.texCoords = normalize(vertices[vertexIndex]);
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return output;
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}
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@@ -63,6 +63,10 @@ int main() {
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// .filePath = sourcePath / "import" / "models" / "main1_sponza" / "sponza.gltf",
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// .importPath = "sponza",
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//});
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AssetImporter::importMesh(MeshImportArgs{
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.filePath = sourcePath / "import" / "models" / "cube.fbx",
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.importPath = "",
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});
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AssetImporter::importMesh(MeshImportArgs{
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.filePath = sourcePath / "import" / "models" / "rttest.gltf",
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.importPath = "rttest",
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@@ -673,6 +673,10 @@ void BasePass::createRenderPass() {
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{
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.polygonMode = Gfx::SE_POLYGON_MODE_FILL,
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},
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.depthStencilState = {
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.depthTestEnable = true,
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.depthCompareOp = Gfx::SE_COMPARE_OP_GREATER,
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},
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.colorBlend =
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{
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.attachmentCount = 1,
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@@ -50,10 +50,10 @@ void ShadowPass::beginFrame(const Component::Camera& camera, const Component::Tr
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float nearClip = camera.nearPlane;
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float farClip = camera.farPlane;
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float clipRange = nearClip - farClip;
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float clipRange = farClip - nearClip;
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float minZ = farClip;
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float maxZ = nearClip;
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float minZ = nearClip;
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float maxZ = farClip;
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float range = maxZ - minZ;
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float ratio = maxZ / minZ;
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@@ -63,8 +63,8 @@ void ShadowPass::beginFrame(const Component::Camera& camera, const Component::Tr
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float log = minZ * std::pow(ratio, p);
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float uniform = minZ + range * p;
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float d = cascadeSplitLambda * (log - uniform) + uniform;
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cascadeSplits[i] = (d - farClip) / clipRange;
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splitDepths[i] = farClip + cascadeSplits[i] * clipRange;
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cascadeSplits[i] = (d - nearClip) / clipRange;
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splitDepths[i] = farClip - cascadeSplits[i] * clipRange;
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cascades[i].viewParams.clear();
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}
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cascadeSplitsBuffer->updateContents(0, sizeof(float) * NUM_CASCADES, splitDepths);
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@@ -111,7 +111,7 @@ void ShadowPass::beginFrame(const Component::Camera& camera, const Component::Tr
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Vector cameraPos = frustumCenter - lightDir * -minExtents.z;
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Matrix4 viewMatrix = glm::lookAt(cameraPos, frustumCenter, Vector(0, 1, 0));
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Matrix4 projectionMatrix =
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orthographicProjection(minExtents.x, maxExtents.x, minExtents.y, maxExtents.y, 0.0f, maxExtents.z - minExtents.z);
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orthographicProjection(minExtents.x, maxExtents.x, minExtents.y, maxExtents.y, maxExtents.z - minExtents.z, 0.0f);
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Matrix4 viewProjectionMatrix = projectionMatrix * viewMatrix;
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viewParams = {
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.viewMatrix = viewMatrix,
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@@ -619,7 +619,7 @@ void VertexData::loadMeshlets(MeshId id, const Array<Vector>& loadedPositions, c
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// todo: use meshopt for bb generation
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m.bounding = AABB();
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for (size_t j = 0; j < m.vertexIndices.size; ++j) {
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m.bounding.adjust(loadedPositions[vertexIndices[meshoptMeshlets[i].vertex_offset + j]]);
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m.bounding.adjust(loadedPositions[vertexIndices[meshoptMeshlets[i].vertex_offset + j + m.indicesOffset]]);
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}
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}
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registeredMeshes[id].meshData = MeshData{
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@@ -38,7 +38,6 @@ public:
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DescriptorSetHandle(PGraphics graphics, const std::string& name);
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virtual ~DescriptorSetHandle();
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constexpr VkDescriptorSet getHandle() const { return handle; }
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PGraphics graphics;
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VkDescriptorSet handle = VK_NULL_HANDLE;
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OBufferAllocation constantsBuffer;
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bool isUsed = false;
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