// Made with Amplify Shader Editor v1.9.1.5 // Available at the Unity Asset Store - http://u3d.as/y3X Shader "Distant Lands/Cozy/URP/Stylized Clouds (COZY Desktop)" { Properties { [HideInInspector] _AlphaCutoff("Alpha Cutoff ", Range(0, 1)) = 0.5 [HideInInspector] _EmissionColor("Emission Color", Color) = (1,1,1,1) //_TessPhongStrength( "Tess Phong Strength", Range( 0, 1 ) ) = 0.5 //_TessValue( "Tess Max Tessellation", Range( 1, 32 ) ) = 16 //_TessMin( "Tess Min Distance", Float ) = 10 //_TessMax( "Tess Max Distance", Float ) = 25 //_TessEdgeLength ( "Tess Edge length", Range( 2, 50 ) ) = 16 //_TessMaxDisp( "Tess Max Displacement", Float ) = 25 [HideInInspector] _QueueOffset("_QueueOffset", Float) = 0 [HideInInspector] _QueueControl("_QueueControl", Float) = -1 [HideInInspector][NoScaleOffset] unity_Lightmaps("unity_Lightmaps", 2DArray) = "" {} [HideInInspector][NoScaleOffset] unity_LightmapsInd("unity_LightmapsInd", 2DArray) = "" {} [HideInInspector][NoScaleOffset] unity_ShadowMasks("unity_ShadowMasks", 2DArray) = "" {} } SubShader { LOD 0 Tags { "RenderPipeline"="UniversalPipeline" "RenderType"="Transparent" "Queue"="Transparent" "UniversalMaterialType"="Unlit" } Cull Front AlphaToMask Off Stencil { Ref 221 Comp Always Pass Zero Fail Keep ZFail Keep } HLSLINCLUDE #pragma target 3.5 #pragma prefer_hlslcc gles // ensure rendering platforms toggle list is visible #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Common.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Filtering.hlsl" #ifndef ASE_TESS_FUNCS #define ASE_TESS_FUNCS float4 FixedTess( float tessValue ) { return tessValue; } float CalcDistanceTessFactor (float4 vertex, float minDist, float maxDist, float tess, float4x4 o2w, float3 cameraPos ) { float3 wpos = mul(o2w,vertex).xyz; float dist = distance (wpos, cameraPos); float f = clamp(1.0 - (dist - minDist) / (maxDist - minDist), 0.01, 1.0) * tess; return f; } float4 CalcTriEdgeTessFactors (float3 triVertexFactors) { float4 tess; tess.x = 0.5 * (triVertexFactors.y + triVertexFactors.z); tess.y = 0.5 * (triVertexFactors.x + triVertexFactors.z); tess.z = 0.5 * (triVertexFactors.x + triVertexFactors.y); tess.w = (triVertexFactors.x + triVertexFactors.y + triVertexFactors.z) / 3.0f; return tess; } float CalcEdgeTessFactor (float3 wpos0, float3 wpos1, float edgeLen, float3 cameraPos, float4 scParams ) { float dist = distance (0.5 * (wpos0+wpos1), cameraPos); float len = distance(wpos0, wpos1); float f = max(len * scParams.y / (edgeLen * dist), 1.0); return f; } float DistanceFromPlane (float3 pos, float4 plane) { float d = dot (float4(pos,1.0f), plane); return d; } bool WorldViewFrustumCull (float3 wpos0, float3 wpos1, float3 wpos2, float cullEps, float4 planes[6] ) { float4 planeTest; planeTest.x = (( DistanceFromPlane(wpos0, planes[0]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos1, planes[0]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos2, planes[0]) > -cullEps) ? 1.0f : 0.0f ); planeTest.y = (( DistanceFromPlane(wpos0, planes[1]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos1, planes[1]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos2, planes[1]) > -cullEps) ? 1.0f : 0.0f ); planeTest.z = (( DistanceFromPlane(wpos0, planes[2]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos1, planes[2]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos2, planes[2]) > -cullEps) ? 1.0f : 0.0f ); planeTest.w = (( DistanceFromPlane(wpos0, planes[3]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos1, planes[3]) > -cullEps) ? 1.0f : 0.0f ) + (( DistanceFromPlane(wpos2, planes[3]) > -cullEps) ? 1.0f : 0.0f ); return !all (planeTest); } float4 DistanceBasedTess( float4 v0, float4 v1, float4 v2, float tess, float minDist, float maxDist, float4x4 o2w, float3 cameraPos ) { float3 f; f.x = CalcDistanceTessFactor (v0,minDist,maxDist,tess,o2w,cameraPos); f.y = CalcDistanceTessFactor (v1,minDist,maxDist,tess,o2w,cameraPos); f.z = CalcDistanceTessFactor (v2,minDist,maxDist,tess,o2w,cameraPos); return CalcTriEdgeTessFactors (f); } float4 EdgeLengthBasedTess( float4 v0, float4 v1, float4 v2, float edgeLength, float4x4 o2w, float3 cameraPos, float4 scParams ) { float3 pos0 = mul(o2w,v0).xyz; float3 pos1 = mul(o2w,v1).xyz; float3 pos2 = mul(o2w,v2).xyz; float4 tess; tess.x = CalcEdgeTessFactor (pos1, pos2, edgeLength, cameraPos, scParams); tess.y = CalcEdgeTessFactor (pos2, pos0, edgeLength, cameraPos, scParams); tess.z = CalcEdgeTessFactor (pos0, pos1, edgeLength, cameraPos, scParams); tess.w = (tess.x + tess.y + tess.z) / 3.0f; return tess; } float4 EdgeLengthBasedTessCull( float4 v0, float4 v1, float4 v2, float edgeLength, float maxDisplacement, float4x4 o2w, float3 cameraPos, float4 scParams, float4 planes[6] ) { float3 pos0 = mul(o2w,v0).xyz; float3 pos1 = mul(o2w,v1).xyz; float3 pos2 = mul(o2w,v2).xyz; float4 tess; if (WorldViewFrustumCull(pos0, pos1, pos2, maxDisplacement, planes)) { tess = 0.0f; } else { tess.x = CalcEdgeTessFactor (pos1, pos2, edgeLength, cameraPos, scParams); tess.y = CalcEdgeTessFactor (pos2, pos0, edgeLength, cameraPos, scParams); tess.z = CalcEdgeTessFactor (pos0, pos1, edgeLength, cameraPos, scParams); tess.w = (tess.x + tess.y + tess.z) / 3.0f; } return tess; } #endif //ASE_TESS_FUNCS ENDHLSL Pass { Name "Forward" Tags { "LightMode"="UniversalForwardOnly" } Blend SrcAlpha OneMinusSrcAlpha, One OneMinusSrcAlpha ZWrite Off ZTest LEqual Offset 0 , 0 ColorMask RGBA HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma multi_compile _ _DBUFFER_MRT1 _DBUFFER_MRT2 _DBUFFER_MRT3 #pragma multi_compile _ LIGHTMAP_ON #pragma multi_compile _ DIRLIGHTMAP_COMBINED #pragma shader_feature _ _SAMPLE_GI #pragma multi_compile _ DEBUG_DISPLAY #pragma vertex vert #pragma fragment frag #define SHADERPASS SHADERPASS_UNLIT #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Texture.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DBuffer.hlsl" #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Debug/Debugging3D.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Input.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/SurfaceData.hlsl" #define ASE_NEEDS_FRAG_WORLD_POSITION struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 worldPos : TEXCOORD0; #endif #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS) float4 shadowCoord : TEXCOORD1; #endif #ifdef ASE_FOG float fogFactor : TEXCOORD2; #endif float4 ase_texcoord3 : TEXCOORD3; float4 ase_texcoord4 : TEXCOORD4; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag ( VertexOutput IN ) : SV_Target { UNITY_SETUP_INSTANCE_ID( IN ); UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( IN ); #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 WorldPosition = IN.worldPos; #endif float4 ShadowCoords = float4( 0, 0, 0, 0 ); #if defined(ASE_NEEDS_FRAG_SHADOWCOORDS) #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) ShadowCoords = IN.shadowCoord; #elif defined(MAIN_LIGHT_CALCULATE_SHADOWS) ShadowCoords = TransformWorldToShadowCoord( WorldPosition ); #endif #endif float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 normalizeResult40_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord3.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord3.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord4; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); float3 BakedAlbedo = 0; float3 BakedEmission = 0; float3 Color = FinalCloudColor325_g72.xyz; float Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); float AlphaClipThreshold = Clipping208_g72; float AlphaClipThresholdShadow = 0.5; #ifdef _ALPHATEST_ON clip( Alpha - AlphaClipThreshold ); #endif #if defined(_DBUFFER) ApplyDecalToBaseColor(IN.clipPos, Color); #endif #if defined(_ALPHAPREMULTIPLY_ON) Color *= Alpha; #endif #ifdef LOD_FADE_CROSSFADE LODDitheringTransition( IN.clipPos.xyz, unity_LODFade.x ); #endif #ifdef ASE_FOG Color = MixFog( Color, IN.fogFactor ); #endif return half4( Color, Alpha ); } ENDHLSL } Pass { Name "ShadowCaster" Tags { "LightMode"="ShadowCaster" } ZWrite On ZTest LEqual AlphaToMask Off ColorMask 0 HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma vertex vert #pragma fragment frag #pragma multi_compile _ _CASTING_PUNCTUAL_LIGHT_SHADOW #define SHADERPASS SHADERPASS_SHADOWCASTER #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #define ASE_NEEDS_FRAG_WORLD_POSITION struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 worldPos : TEXCOORD0; #endif #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS) float4 shadowCoord : TEXCOORD1; #endif float4 ase_texcoord2 : TEXCOORD2; float4 ase_texcoord3 : TEXCOORD3; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { UNITY_SETUP_INSTANCE_ID( IN ); UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( IN ); #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 WorldPosition = IN.worldPos; #endif float4 ShadowCoords = float4( 0, 0, 0, 0 ); #if defined(ASE_NEEDS_FRAG_SHADOWCOORDS) #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) ShadowCoords = IN.shadowCoord; #elif defined(MAIN_LIGHT_CALCULATE_SHADOWS) ShadowCoords = TransformWorldToShadowCoord( WorldPosition ); #endif #endif float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 normalizeResult40_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord2.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord3; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); float Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); float AlphaClipThreshold = Clipping208_g72; float AlphaClipThresholdShadow = 0.5; #ifdef _ALPHATEST_ON #ifdef _ALPHATEST_SHADOW_ON clip(Alpha - AlphaClipThresholdShadow); #else clip(Alpha - AlphaClipThreshold); #endif #endif #ifdef LOD_FADE_CROSSFADE LODDitheringTransition( IN.clipPos.xyz, unity_LODFade.x ); #endif return 0; } ENDHLSL } Pass { Name "DepthOnly" Tags { "LightMode"="DepthOnly" } ZWrite On ColorMask 0 AlphaToMask Off HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma vertex vert #pragma fragment frag #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #define ASE_NEEDS_FRAG_WORLD_POSITION struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 worldPos : TEXCOORD0; #endif #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS) float4 shadowCoord : TEXCOORD1; #endif float4 ase_texcoord2 : TEXCOORD2; float4 ase_texcoord3 : TEXCOORD3; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { UNITY_SETUP_INSTANCE_ID(IN); UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( IN ); #if defined(ASE_NEEDS_FRAG_WORLD_POSITION) float3 WorldPosition = IN.worldPos; #endif float4 ShadowCoords = float4( 0, 0, 0, 0 ); #if defined(ASE_NEEDS_FRAG_SHADOWCOORDS) #if defined(REQUIRES_VERTEX_SHADOW_COORD_INTERPOLATOR) ShadowCoords = IN.shadowCoord; #elif defined(MAIN_LIGHT_CALCULATE_SHADOWS) ShadowCoords = TransformWorldToShadowCoord( WorldPosition ); #endif #endif float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 normalizeResult40_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord2.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( WorldPosition - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord2.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord3; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); float Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); float AlphaClipThreshold = Clipping208_g72; #ifdef _ALPHATEST_ON clip(Alpha - AlphaClipThreshold); #endif #ifdef LOD_FADE_CROSSFADE LODDitheringTransition( IN.clipPos.xyz, unity_LODFade.x ); #endif return 0; } ENDHLSL } Pass { Name "SceneSelectionPass" Tags { "LightMode"="SceneSelectionPass" } Cull Off HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma vertex vert #pragma fragment frag #define ATTRIBUTES_NEED_NORMAL #define ATTRIBUTES_NEED_TANGENT #define SHADERPASS SHADERPASS_DEPTHONLY #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Texture.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl" struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; float4 ase_texcoord : TEXCOORD0; float4 ase_texcoord1 : TEXCOORD1; float4 ase_texcoord2 : TEXCOORD2; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { SurfaceDescription surfaceDescription = (SurfaceDescription)0; float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 ase_worldPos = IN.ase_texcoord1.xyz; float3 normalizeResult40_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord2; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); surfaceDescription.Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); surfaceDescription.AlphaClipThreshold = Clipping208_g72; #if _ALPHATEST_ON float alphaClipThreshold = 0.01f; #if ALPHA_CLIP_THRESHOLD alphaClipThreshold = surfaceDescription.AlphaClipThreshold; #endif clip(surfaceDescription.Alpha - alphaClipThreshold); #endif half4 outColor = half4(_ObjectId, _PassValue, 1.0, 1.0); return outColor; } ENDHLSL } Pass { Name "ScenePickingPass" Tags { "LightMode"="Picking" } HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma vertex vert #pragma fragment frag #define ATTRIBUTES_NEED_NORMAL #define ATTRIBUTES_NEED_TANGENT #define SHADERPASS SHADERPASS_DEPTHONLY #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Texture.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl" struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; float4 ase_texcoord : TEXCOORD0; float4 ase_texcoord1 : TEXCOORD1; float4 ase_texcoord2 : TEXCOORD2; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { SurfaceDescription surfaceDescription = (SurfaceDescription)0; float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 ase_worldPos = IN.ase_texcoord1.xyz; float3 normalizeResult40_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord2; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); surfaceDescription.Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); surfaceDescription.AlphaClipThreshold = Clipping208_g72; #if _ALPHATEST_ON float alphaClipThreshold = 0.01f; #if ALPHA_CLIP_THRESHOLD alphaClipThreshold = surfaceDescription.AlphaClipThreshold; #endif clip(surfaceDescription.Alpha - alphaClipThreshold); #endif half4 outColor = 0; outColor = _SelectionID; return outColor; } ENDHLSL } Pass { Name "DepthNormals" Tags { "LightMode"="DepthNormalsOnly" } ZTest LEqual ZWrite On HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma vertex vert #pragma fragment frag #define ATTRIBUTES_NEED_NORMAL #define ATTRIBUTES_NEED_TANGENT #define VARYINGS_NEED_NORMAL_WS #define SHADERPASS SHADERPASS_DEPTHNORMALSONLY #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Texture.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl" struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; float3 normalWS : TEXCOORD0; float4 ase_texcoord1 : TEXCOORD1; float4 ase_texcoord2 : TEXCOORD2; float4 ase_texcoord3 : TEXCOORD3; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { SurfaceDescription surfaceDescription = (SurfaceDescription)0; float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 ase_worldPos = IN.ase_texcoord2.xyz; float3 normalizeResult40_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord1.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord3; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); surfaceDescription.Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); surfaceDescription.AlphaClipThreshold = Clipping208_g72; #if _ALPHATEST_ON clip(surfaceDescription.Alpha - surfaceDescription.AlphaClipThreshold); #endif #ifdef LOD_FADE_CROSSFADE LODDitheringTransition( IN.clipPos.xyz, unity_LODFade.x ); #endif float3 normalWS = IN.normalWS; return half4(NormalizeNormalPerPixel(normalWS), 0.0); } ENDHLSL } Pass { Name "DepthNormalsOnly" Tags { "LightMode"="DepthNormalsOnly" } ZTest LEqual ZWrite On HLSLPROGRAM #pragma multi_compile_instancing #define _SURFACE_TYPE_TRANSPARENT 1 #define _ALPHATEST_ON 1 #define ASE_SRP_VERSION 120108 #pragma exclude_renderers glcore gles gles3 #pragma vertex vert #pragma fragment frag #define ATTRIBUTES_NEED_NORMAL #define ATTRIBUTES_NEED_TANGENT #define ATTRIBUTES_NEED_TEXCOORD1 #define VARYINGS_NEED_NORMAL_WS #define VARYINGS_NEED_TANGENT_WS #define SHADERPASS SHADERPASS_DEPTHNORMALSONLY #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Color.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/Texture.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Core.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Lighting.hlsl" #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl" #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl" #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl" struct VertexInput { float4 vertex : POSITION; float3 ase_normal : NORMAL; float4 ase_texcoord : TEXCOORD0; UNITY_VERTEX_INPUT_INSTANCE_ID }; struct VertexOutput { float4 clipPos : SV_POSITION; float3 normalWS : TEXCOORD0; float4 ase_texcoord1 : TEXCOORD1; float4 ase_texcoord2 : TEXCOORD2; float4 ase_texcoord3 : TEXCOORD3; UNITY_VERTEX_INPUT_INSTANCE_ID UNITY_VERTEX_OUTPUT_STEREO }; CBUFFER_START(UnityPerMaterial) #ifdef ASE_TESSELLATION float _TessPhongStrength; float _TessValue; float _TessMin; float _TessMax; float _TessEdgeLength; float _TessMaxDisp; #endif CBUFFER_END float4 CZY_CloudColor; float CZY_FilterSaturation; float CZY_FilterValue; float4 CZY_FilterColor; float4 CZY_CloudFilterColor; float4 CZY_CloudHighlightColor; float4 CZY_SunFilterColor; float CZY_WindSpeed; float CZY_MainCloudScale; float CZY_CumulusCoverageMultiplier; float3 CZY_SunDirection; half CZY_SunFlareFalloff; float3 CZY_MoonDirection; half CZY_CloudMoonFalloff; float4 CZY_CloudMoonColor; float CZY_DetailScale; float CZY_DetailAmount; float CZY_BorderHeight; float CZY_BorderVariation; float CZY_BorderEffect; float3 CZY_StormDirection; float CZY_NimbusHeight; float CZY_NimbusMultiplier; float CZY_NimbusVariation; sampler2D CZY_ChemtrailsTexture; float CZY_ChemtrailsMoveSpeed; float CZY_ChemtrailsMultiplier; sampler2D CZY_CirrusTexture; float CZY_CirrusMoveSpeed; float CZY_CirrusMultiplier; float CZY_ClippingThreshold; float4 CZY_AltoCloudColor; sampler2D CZY_AltocumulusTexture; float2 CZY_AltocumulusWindSpeed; float CZY_AltocumulusScale; float CZY_AltocumulusMultiplier; sampler2D CZY_CirrostratusTexture; float CZY_CirrostratusMoveSpeed; float CZY_CirrostratusMultiplier; float _UnderwaterRenderingEnabled; float _FullySubmerged; sampler2D _UnderwaterMask; float3 HSVToRGB( float3 c ) { float4 K = float4( 1.0, 2.0 / 3.0, 1.0 / 3.0, 3.0 ); float3 p = abs( frac( c.xxx + K.xyz ) * 6.0 - K.www ); return c.z * lerp( K.xxx, saturate( p - K.xxx ), c.y ); } float3 RGBToHSV(float3 c) { float4 K = float4(0.0, -1.0 / 3.0, 2.0 / 3.0, -1.0); float4 p = lerp( float4( c.bg, K.wz ), float4( c.gb, K.xy ), step( c.b, c.g ) ); float4 q = lerp( float4( p.xyw, c.r ), float4( c.r, p.yzx ), step( p.x, c.r ) ); float d = q.x - min( q.w, q.y ); float e = 1.0e-10; return float3( abs(q.z + (q.w - q.y) / (6.0 * d + e)), d / (q.x + e), q.x); } float3 mod2D289( float3 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float2 mod2D289( float2 x ) { return x - floor( x * ( 1.0 / 289.0 ) ) * 289.0; } float3 permute( float3 x ) { return mod2D289( ( ( x * 34.0 ) + 1.0 ) * x ); } float snoise( float2 v ) { const float4 C = float4( 0.211324865405187, 0.366025403784439, -0.577350269189626, 0.024390243902439 ); float2 i = floor( v + dot( v, C.yy ) ); float2 x0 = v - i + dot( i, C.xx ); float2 i1; i1 = ( x0.x > x0.y ) ? float2( 1.0, 0.0 ) : float2( 0.0, 1.0 ); float4 x12 = x0.xyxy + C.xxzz; x12.xy -= i1; i = mod2D289( i ); float3 p = permute( permute( i.y + float3( 0.0, i1.y, 1.0 ) ) + i.x + float3( 0.0, i1.x, 1.0 ) ); float3 m = max( 0.5 - float3( dot( x0, x0 ), dot( x12.xy, x12.xy ), dot( x12.zw, x12.zw ) ), 0.0 ); m = m * m; m = m * m; float3 x = 2.0 * frac( p * C.www ) - 1.0; float3 h = abs( x ) - 0.5; float3 ox = floor( x + 0.5 ); float3 a0 = x - ox; m *= 1.79284291400159 - 0.85373472095314 * ( a0 * a0 + h * h ); float3 g; g.x = a0.x * x0.x + h.x * x0.y; g.yz = a0.yz * x12.xz + h.yz * x12.yw; return 130.0 * dot( m, g ); } float2 voronoihash81_g72( float2 p ) { p = float2( dot( p, float2( 127.1, 311.7 ) ), dot( p, float2( 269.5, 183.3 ) ) ); return frac( sin( p ) *43758.5453); } float voronoi81_g72( float2 v, float time, inout float2 id, inout float2 mr, float smoothness, inout float2 smoothId ) { float2 n = floor( v ); float2 f = frac( v ); float F1 = 8.0; float F2 = 8.0; float2 mg = 0; for ( int j = -1; j <= 1; j++ ) { for ( int i = -1; i <= 1; i++ ) { float2 g = float2( i, j ); float2 o = voronoihash81_g72( n + g ); o = ( sin( time + o * 6.2831 ) * 0.5 + 0.5 ); float2 r = f - g - o; float d = 0.5 * dot( r, r ); if( d v) { TessellationFactors o; float4 tf = 1; float tessValue = _TessValue; float tessMin = _TessMin; float tessMax = _TessMax; float edgeLength = _TessEdgeLength; float tessMaxDisp = _TessMaxDisp; #if defined(ASE_FIXED_TESSELLATION) tf = FixedTess( tessValue ); #elif defined(ASE_DISTANCE_TESSELLATION) tf = DistanceBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos ); #elif defined(ASE_LENGTH_TESSELLATION) tf = EdgeLengthBasedTess(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams ); #elif defined(ASE_LENGTH_CULL_TESSELLATION) tf = EdgeLengthBasedTessCull(v[0].vertex, v[1].vertex, v[2].vertex, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes ); #endif o.edge[0] = tf.x; o.edge[1] = tf.y; o.edge[2] = tf.z; o.inside = tf.w; return o; } [domain("tri")] [partitioning("fractional_odd")] [outputtopology("triangle_cw")] [patchconstantfunc("TessellationFunction")] [outputcontrolpoints(3)] VertexControl HullFunction(InputPatch patch, uint id : SV_OutputControlPointID) { return patch[id]; } [domain("tri")] VertexOutput DomainFunction(TessellationFactors factors, OutputPatch patch, float3 bary : SV_DomainLocation) { VertexInput o = (VertexInput) 0; o.vertex = patch[0].vertex * bary.x + patch[1].vertex * bary.y + patch[2].vertex * bary.z; o.ase_normal = patch[0].ase_normal * bary.x + patch[1].ase_normal * bary.y + patch[2].ase_normal * bary.z; o.ase_texcoord = patch[0].ase_texcoord * bary.x + patch[1].ase_texcoord * bary.y + patch[2].ase_texcoord * bary.z; #if defined(ASE_PHONG_TESSELLATION) float3 pp[3]; for (int i = 0; i < 3; ++i) pp[i] = o.vertex.xyz - patch[i].ase_normal * (dot(o.vertex.xyz, patch[i].ase_normal) - dot(patch[i].vertex.xyz, patch[i].ase_normal)); float phongStrength = _TessPhongStrength; o.vertex.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * o.vertex.xyz; #endif UNITY_TRANSFER_INSTANCE_ID(patch[0], o); return VertexFunction(o); } #else VertexOutput vert ( VertexInput v ) { return VertexFunction( v ); } #endif half4 frag(VertexOutput IN ) : SV_TARGET { SurfaceDescription surfaceDescription = (SurfaceDescription)0; float3 hsvTorgb2_g74 = RGBToHSV( CZY_CloudColor.rgb ); float3 hsvTorgb3_g74 = HSVToRGB( float3(hsvTorgb2_g74.x,saturate( ( hsvTorgb2_g74.y + CZY_FilterSaturation ) ),( hsvTorgb2_g74.z + CZY_FilterValue )) ); float4 temp_output_10_0_g74 = ( float4( hsvTorgb3_g74 , 0.0 ) * CZY_FilterColor ); float4 CloudColor41_g72 = ( temp_output_10_0_g74 * CZY_CloudFilterColor ); float3 hsvTorgb2_g73 = RGBToHSV( CZY_CloudHighlightColor.rgb ); float3 hsvTorgb3_g73 = HSVToRGB( float3(hsvTorgb2_g73.x,saturate( ( hsvTorgb2_g73.y + CZY_FilterSaturation ) ),( hsvTorgb2_g73.z + CZY_FilterValue )) ); float4 temp_output_10_0_g73 = ( float4( hsvTorgb3_g73 , 0.0 ) * CZY_FilterColor ); float4 CloudHighlightColor55_g72 = ( temp_output_10_0_g73 * CZY_SunFilterColor ); float2 texCoord31_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 Pos33_g72 = texCoord31_g72; float mulTime29_g72 = _TimeParameters.x * ( 0.001 * CZY_WindSpeed ); float TIme30_g72 = mulTime29_g72; float simplePerlin2D409_g72 = snoise( ( Pos33_g72 + ( TIme30_g72 * float2( 0.2,-0.4 ) ) )*( 100.0 / CZY_MainCloudScale ) ); simplePerlin2D409_g72 = simplePerlin2D409_g72*0.5 + 0.5; float SimpleCloudDensity153_g72 = simplePerlin2D409_g72; float time81_g72 = 0.0; float2 voronoiSmoothId81_g72 = 0; float2 temp_output_94_0_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ); float2 coords81_g72 = temp_output_94_0_g72 * ( 140.0 / CZY_MainCloudScale ); float2 id81_g72 = 0; float2 uv81_g72 = 0; float voroi81_g72 = voronoi81_g72( coords81_g72, time81_g72, id81_g72, uv81_g72, 0, voronoiSmoothId81_g72 ); float time88_g72 = 0.0; float2 voronoiSmoothId88_g72 = 0; float2 coords88_g72 = temp_output_94_0_g72 * ( 500.0 / CZY_MainCloudScale ); float2 id88_g72 = 0; float2 uv88_g72 = 0; float voroi88_g72 = voronoi88_g72( coords88_g72, time88_g72, id88_g72, uv88_g72, 0, voronoiSmoothId88_g72 ); float2 appendResult95_g72 = (float2(voroi81_g72 , voroi88_g72)); float2 VoroDetails109_g72 = appendResult95_g72; float CumulusCoverage34_g72 = CZY_CumulusCoverageMultiplier; float ComplexCloudDensity141_g72 = (0.0 + (min( SimpleCloudDensity153_g72 , ( 1.0 - VoroDetails109_g72.x ) ) - ( 1.0 - CumulusCoverage34_g72 )) * (1.0 - 0.0) / (1.0 - ( 1.0 - CumulusCoverage34_g72 ))); float4 lerpResult315_g72 = lerp( CloudHighlightColor55_g72 , CloudColor41_g72 , saturate( (2.0 + (ComplexCloudDensity141_g72 - 0.0) * (0.7 - 2.0) / (1.0 - 0.0)) )); float3 ase_worldPos = IN.ase_texcoord2.xyz; float3 normalizeResult40_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult42_g72 = dot( normalizeResult40_g72 , CZY_SunDirection ); float temp_output_49_0_g72 = abs( (dotResult42_g72*0.5 + 0.5) ); half LightMask56_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float time200_g72 = 0.0; float2 voronoiSmoothId200_g72 = 0; float mulTime163_g72 = _TimeParameters.x * 0.003; float2 coords200_g72 = (Pos33_g72*1.0 + ( float2( 1,-2 ) * mulTime163_g72 )) * 10.0; float2 id200_g72 = 0; float2 uv200_g72 = 0; float voroi200_g72 = voronoi200_g72( coords200_g72, time200_g72, id200_g72, uv200_g72, 0, voronoiSmoothId200_g72 ); float time232_g72 = ( 10.0 * mulTime163_g72 ); float2 voronoiSmoothId232_g72 = 0; float2 coords232_g72 = IN.ase_texcoord1.xy * 10.0; float2 id232_g72 = 0; float2 uv232_g72 = 0; float voroi232_g72 = voronoi232_g72( coords232_g72, time232_g72, id232_g72, uv232_g72, 0, voronoiSmoothId232_g72 ); float AltoCumulusPlacement376_g72 = saturate( ( ( ( 1.0 - 0.0 ) - (1.0 + (voroi200_g72 - 0.0) * (-0.5 - 1.0) / (1.0 - 0.0)) ) - voroi232_g72 ) ); float CloudThicknessDetails286_g72 = ( VoroDetails109_g72.y * saturate( ( AltoCumulusPlacement376_g72 - 0.8 ) ) ); float3 normalizeResult43_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float dotResult46_g72 = dot( normalizeResult43_g72 , CZY_MoonDirection ); half MoonlightMask57_g72 = saturate( pow( abs( (dotResult46_g72*0.5 + 0.5) ) , CZY_CloudMoonFalloff ) ); float3 hsvTorgb2_g75 = RGBToHSV( CZY_CloudMoonColor.rgb ); float3 hsvTorgb3_g75 = HSVToRGB( float3(hsvTorgb2_g75.x,saturate( ( hsvTorgb2_g75.y + CZY_FilterSaturation ) ),( hsvTorgb2_g75.z + CZY_FilterValue )) ); float4 temp_output_10_0_g75 = ( float4( hsvTorgb3_g75 , 0.0 ) * CZY_FilterColor ); float4 MoonlightColor60_g72 = ( temp_output_10_0_g75 * CZY_CloudFilterColor ); float4 lerpResult338_g72 = lerp( ( lerpResult315_g72 + ( LightMask56_g72 * CloudHighlightColor55_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) + ( MoonlightMask57_g72 * MoonlightColor60_g72 * ( 1.0 - CloudThicknessDetails286_g72 ) ) ) , ( CloudColor41_g72 * float4( 0.5660378,0.5660378,0.5660378,0 ) ) , CloudThicknessDetails286_g72); float time84_g72 = 0.0; float2 voronoiSmoothId84_g72 = 0; float2 coords84_g72 = ( Pos33_g72 + ( TIme30_g72 * float2( 0.3,0.2 ) ) ) * ( 100.0 / CZY_DetailScale ); float2 id84_g72 = 0; float2 uv84_g72 = 0; float fade84_g72 = 0.5; float voroi84_g72 = 0; float rest84_g72 = 0; for( int it84_g72 = 0; it84_g72 <3; it84_g72++ ){ voroi84_g72 += fade84_g72 * voronoi84_g72( coords84_g72, time84_g72, id84_g72, uv84_g72, 0,voronoiSmoothId84_g72 ); rest84_g72 += fade84_g72; coords84_g72 *= 2; fade84_g72 *= 0.5; }//Voronoi84_g72 voroi84_g72 /= rest84_g72; float temp_output_173_0_g72 = ( (0.0 + (( 1.0 - voroi84_g72 ) - 0.3) * (0.5 - 0.0) / (1.0 - 0.3)) * 0.1 * CZY_DetailAmount ); float DetailedClouds252_g72 = saturate( ( ComplexCloudDensity141_g72 + temp_output_173_0_g72 ) ); float CloudDetail179_g72 = temp_output_173_0_g72; float2 texCoord79_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_161_0_g72 = ( texCoord79_g72 - float2( 0.5,0.5 ) ); float dotResult212_g72 = dot( temp_output_161_0_g72 , temp_output_161_0_g72 ); float BorderHeight154_g72 = ( 1.0 - CZY_BorderHeight ); float temp_output_151_0_g72 = ( -2.0 * ( 1.0 - CZY_BorderVariation ) ); float clampResult247_g72 = clamp( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( BorderHeight154_g72 * temp_output_151_0_g72 ) + (dotResult212_g72 - 0.0) * (( temp_output_151_0_g72 * -4.0 ) - ( BorderHeight154_g72 * temp_output_151_0_g72 )) / (0.5 - 0.0)) ) ) * 10.0 * CZY_BorderEffect ) , -1.0 , 1.0 ); float BorderLightTransport278_g72 = clampResult247_g72; float3 normalizeResult116_g72 = normalize( ( ase_worldPos - _WorldSpaceCameraPos ) ); float3 normalizeResult146_g72 = normalize( CZY_StormDirection ); float dotResult150_g72 = dot( normalizeResult116_g72 , normalizeResult146_g72 ); float2 texCoord98_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_124_0_g72 = ( texCoord98_g72 - float2( 0.5,0.5 ) ); float dotResult125_g72 = dot( temp_output_124_0_g72 , temp_output_124_0_g72 ); float temp_output_140_0_g72 = ( -2.0 * ( 1.0 - ( CZY_NimbusVariation * 0.9 ) ) ); float NimbusLightTransport269_g72 = saturate( ( ( ( CloudDetail179_g72 + SimpleCloudDensity153_g72 ) * saturate( (( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 ) + (( dotResult150_g72 + ( CZY_NimbusHeight * 4.0 * dotResult125_g72 ) ) - 0.5) * (( temp_output_140_0_g72 * -4.0 ) - ( ( 1.0 - CZY_NimbusMultiplier ) * temp_output_140_0_g72 )) / (7.0 - 0.5)) ) ) * 10.0 ) ); float mulTime104_g72 = _TimeParameters.x * 0.01; float simplePerlin2D143_g72 = snoise( (Pos33_g72*1.0 + mulTime104_g72)*2.0 ); float mulTime93_g72 = _TimeParameters.x * CZY_ChemtrailsMoveSpeed; float cos97_g72 = cos( ( mulTime93_g72 * 0.01 ) ); float sin97_g72 = sin( ( mulTime93_g72 * 0.01 ) ); float2 rotator97_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos97_g72 , -sin97_g72 , sin97_g72 , cos97_g72 )) + float2( 0.5,0.5 ); float cos131_g72 = cos( ( mulTime93_g72 * -0.02 ) ); float sin131_g72 = sin( ( mulTime93_g72 * -0.02 ) ); float2 rotator131_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos131_g72 , -sin131_g72 , sin131_g72 , cos131_g72 )) + float2( 0.5,0.5 ); float mulTime107_g72 = _TimeParameters.x * 0.01; float simplePerlin2D147_g72 = snoise( (Pos33_g72*1.0 + mulTime107_g72)*4.0 ); float4 ChemtrailsPattern210_g72 = ( ( saturate( simplePerlin2D143_g72 ) * tex2D( CZY_ChemtrailsTexture, (rotator97_g72*0.5 + 0.0) ) ) + ( tex2D( CZY_ChemtrailsTexture, rotator131_g72 ) * saturate( simplePerlin2D147_g72 ) ) ); float2 texCoord139_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_162_0_g72 = ( texCoord139_g72 - float2( 0.5,0.5 ) ); float dotResult207_g72 = dot( temp_output_162_0_g72 , temp_output_162_0_g72 ); float ChemtrailsFinal248_g72 = ( ( ChemtrailsPattern210_g72 * saturate( (0.4 + (dotResult207_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - ( CZY_ChemtrailsMultiplier * 0.5 ) ) ? 1.0 : 0.0 ); float mulTime80_g72 = _TimeParameters.x * 0.01; float simplePerlin2D126_g72 = snoise( (Pos33_g72*1.0 + mulTime80_g72)*2.0 ); float mulTime75_g72 = _TimeParameters.x * CZY_CirrusMoveSpeed; float cos101_g72 = cos( ( mulTime75_g72 * 0.01 ) ); float sin101_g72 = sin( ( mulTime75_g72 * 0.01 ) ); float2 rotator101_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos101_g72 , -sin101_g72 , sin101_g72 , cos101_g72 )) + float2( 0.5,0.5 ); float cos112_g72 = cos( ( mulTime75_g72 * -0.02 ) ); float sin112_g72 = sin( ( mulTime75_g72 * -0.02 ) ); float2 rotator112_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos112_g72 , -sin112_g72 , sin112_g72 , cos112_g72 )) + float2( 0.5,0.5 ); float mulTime135_g72 = _TimeParameters.x * 0.01; float simplePerlin2D122_g72 = snoise( (Pos33_g72*1.0 + mulTime135_g72) ); simplePerlin2D122_g72 = simplePerlin2D122_g72*0.5 + 0.5; float4 CirrusPattern137_g72 = ( ( saturate( simplePerlin2D126_g72 ) * tex2D( CZY_CirrusTexture, (rotator101_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrusTexture, (rotator112_g72*1.0 + 0.0) ) * saturate( simplePerlin2D122_g72 ) ) ); float2 texCoord134_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_164_0_g72 = ( texCoord134_g72 - float2( 0.5,0.5 ) ); float dotResult157_g72 = dot( temp_output_164_0_g72 , temp_output_164_0_g72 ); float4 temp_output_217_0_g72 = ( CirrusPattern137_g72 * saturate( (0.0 + (dotResult157_g72 - 0.0) * (2.0 - 0.0) / (0.2 - 0.0)) ) ); float Clipping208_g72 = CZY_ClippingThreshold; float CirrusAlpha250_g72 = ( ( temp_output_217_0_g72 * ( CZY_CirrusMultiplier * 10.0 ) ).r > Clipping208_g72 ? 1.0 : 0.0 ); float SimpleRadiance268_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + NimbusLightTransport269_g72 + ChemtrailsFinal248_g72 + CirrusAlpha250_g72 ) ); float4 lerpResult342_g72 = lerp( CloudColor41_g72 , lerpResult338_g72 , ( 1.0 - SimpleRadiance268_g72 )); float CloudLight52_g72 = saturate( pow( temp_output_49_0_g72 , CZY_SunFlareFalloff ) ); float4 lerpResult316_g72 = lerp( float4( 0,0,0,0 ) , CloudHighlightColor55_g72 , ( saturate( ( AltoCumulusPlacement376_g72 - 1.0 ) ) * CloudDetail179_g72 * CloudLight52_g72 )); float4 SunThroughClouds399_g72 = ( lerpResult316_g72 * 1.3 ); float3 hsvTorgb2_g76 = RGBToHSV( CZY_AltoCloudColor.rgb ); float3 hsvTorgb3_g76 = HSVToRGB( float3(hsvTorgb2_g76.x,saturate( ( hsvTorgb2_g76.y + CZY_FilterSaturation ) ),( hsvTorgb2_g76.z + CZY_FilterValue )) ); float4 temp_output_10_0_g76 = ( float4( hsvTorgb3_g76 , 0.0 ) * CZY_FilterColor ); float4 CirrusCustomLightColor350_g72 = ( CloudColor41_g72 * ( temp_output_10_0_g76 * CZY_CloudFilterColor ) ); float temp_output_391_0_g72 = ( AltoCumulusPlacement376_g72 * (0.0 + (tex2D( CZY_AltocumulusTexture, ((Pos33_g72*1.0 + ( CZY_AltocumulusWindSpeed * TIme30_g72 ))*( 1.0 / CZY_AltocumulusScale ) + 0.0) ).r - 0.0) * (1.0 - 0.0) / (0.2 - 0.0)) * CZY_AltocumulusMultiplier ); float AltoCumulusLightTransport393_g72 = temp_output_391_0_g72; float ACCustomLightsClipping387_g72 = ( AltoCumulusLightTransport393_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float mulTime193_g72 = _TimeParameters.x * 0.01; float simplePerlin2D224_g72 = snoise( (Pos33_g72*1.0 + mulTime193_g72)*2.0 ); float mulTime178_g72 = _TimeParameters.x * CZY_CirrostratusMoveSpeed; float cos138_g72 = cos( ( mulTime178_g72 * 0.01 ) ); float sin138_g72 = sin( ( mulTime178_g72 * 0.01 ) ); float2 rotator138_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos138_g72 , -sin138_g72 , sin138_g72 , cos138_g72 )) + float2( 0.5,0.5 ); float cos198_g72 = cos( ( mulTime178_g72 * -0.02 ) ); float sin198_g72 = sin( ( mulTime178_g72 * -0.02 ) ); float2 rotator198_g72 = mul( Pos33_g72 - float2( 0.5,0.5 ) , float2x2( cos198_g72 , -sin198_g72 , sin198_g72 , cos198_g72 )) + float2( 0.5,0.5 ); float mulTime184_g72 = _TimeParameters.x * 0.01; float simplePerlin2D216_g72 = snoise( (Pos33_g72*10.0 + mulTime184_g72)*4.0 ); float4 CirrostratPattern261_g72 = ( ( saturate( simplePerlin2D224_g72 ) * tex2D( CZY_CirrostratusTexture, (rotator138_g72*1.5 + 0.75) ) ) + ( tex2D( CZY_CirrostratusTexture, (rotator198_g72*1.5 + 0.75) ) * saturate( simplePerlin2D216_g72 ) ) ); float2 texCoord234_g72 = IN.ase_texcoord1.xy * float2( 1,1 ) + float2( 0,0 ); float2 temp_output_243_0_g72 = ( texCoord234_g72 - float2( 0.5,0.5 ) ); float dotResult238_g72 = dot( temp_output_243_0_g72 , temp_output_243_0_g72 ); float clampResult264_g72 = clamp( ( CZY_CirrostratusMultiplier * 0.5 ) , 0.0 , 0.98 ); float CirrostratLightTransport281_g72 = ( ( CirrostratPattern261_g72 * saturate( (0.4 + (dotResult238_g72 - 0.0) * (2.0 - 0.4) / (0.1 - 0.0)) ) ).r > ( 1.0 - clampResult264_g72 ) ? 1.0 : 0.0 ); float CSCustomLightsClipping309_g72 = ( CirrostratLightTransport281_g72 * ( SimpleRadiance268_g72 > Clipping208_g72 ? 0.0 : 1.0 ) ); float CustomRadiance340_g72 = saturate( ( ACCustomLightsClipping387_g72 + CSCustomLightsClipping309_g72 ) ); float4 lerpResult331_g72 = lerp( ( lerpResult342_g72 + SunThroughClouds399_g72 ) , CirrusCustomLightColor350_g72 , CustomRadiance340_g72); float FinalAlpha375_g72 = saturate( ( DetailedClouds252_g72 + BorderLightTransport278_g72 + AltoCumulusLightTransport393_g72 + ChemtrailsFinal248_g72 + CirrostratLightTransport281_g72 + CirrusAlpha250_g72 + NimbusLightTransport269_g72 ) ); float4 appendResult420_g72 = (float4((lerpResult331_g72).rgb , FinalAlpha375_g72)); float4 FinalCloudColor325_g72 = appendResult420_g72; bool enabled20_g77 =(bool)_UnderwaterRenderingEnabled; bool submerged20_g77 =(bool)_FullySubmerged; float4 screenPos = IN.ase_texcoord3; float4 ase_screenPosNorm = screenPos / screenPos.w; ase_screenPosNorm.z = ( UNITY_NEAR_CLIP_VALUE >= 0 ) ? ase_screenPosNorm.z : ase_screenPosNorm.z * 0.5 + 0.5; float textureSample20_g77 = tex2Dlod( _UnderwaterMask, float4( ase_screenPosNorm.xy, 0, 0.0) ).r; float localHLSL20_g77 = HLSL20_g77( enabled20_g77 , submerged20_g77 , textureSample20_g77 ); surfaceDescription.Alpha = ( ( (FinalCloudColor325_g72).w * ( 1.0 - localHLSL20_g77 ) ) > Clipping208_g72 ? 1.0 : 0.0 ); surfaceDescription.AlphaClipThreshold = Clipping208_g72; #if _ALPHATEST_ON clip(surfaceDescription.Alpha 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