// Made with Amplify Shader Editor v1.9.9.8
// Available at the Unity Asset Store - http://u3d.as/y3X 
Shader "Nicrom/LPW/ASE/Low Poly Vegetation"
{
	Properties
	{
		[HideInInspector] _EmissionColor("Emission Color", Color) = (1,1,1,1)
		_Color( "Color", Color ) = ( 1, 1, 1, 1 )
		[NoScaleOffset] _MainTex( "Main Tex", 2D ) = "white" {}
		[Space] _Metallic( "Metallic", Range( 0, 1 ) ) = 0
		_Smoothness( "Smoothness", Range( 0, 1 ) ) = 0
		[Header(Main Bending)][Space] _MBDefaultBending( "MB Default Bending", Float ) = 0
		[Space] _MBAmplitude( "MB Amplitude", Float ) = 1.5
		_MBAmplitudeOffset( "MB Amplitude Offset", Float ) = 2
		[Space] _MBFrequency( "MB Frequency", Float ) = 1.11
		_MBFrequencyOffset( "MB Frequency Offset", Float ) = 0
		[Space] _MBPhase( "MB Phase", Float ) = 1
		[Space] _MBWindDir( "MB Wind Dir", Range( 0, 360 ) ) = 0
		_MBWindDirOffset( "MB Wind Dir Offset", Range( 0, 180 ) ) = 20
		[Space] _MBMaxHeight( "MB Max Height", Float ) = 10
		[NoScaleOffset][Header(World Space Noise)][Space] _NoiseTexture( "Noise Texture", 2D ) = "bump" {}
		_NoiseTextureTilling( "Noise Tilling - Static (XY), Animated (ZW)", Vector ) = ( 1, 1, 1, 1 )
		_NoisePannerSpeed( "Noise Panner Speed", Vector ) = ( 0.05, 0.03, 0, 0 )


		//_TransmissionShadow( "Transmission Shadow", Range( 0, 1 ) ) = 0.5
		//_TransStrength( "Trans Strength", Range( 0, 50 ) ) = 1
		//_TransNormal( "Trans Normal Distortion", Range( 0, 1 ) ) = 0.5
		//_TransScattering( "Trans Scattering", Range( 1, 50 ) ) = 2
		//_TransDirect( "Trans Direct", Range( 0, 1 ) ) = 0.9
		//_TransAmbient( "Trans Ambient", Range( 0, 1 ) ) = 0.1
		//_TransShadow( "Trans Shadow", Range( 0, 1 ) ) = 0.5

		//_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

		//_InstancedTerrainNormals("Instanced Terrain Normals", Float) = 1.0

		[ToggleOff(_SPECULARHIGHLIGHTS_OFF)] _SpecularHighlights("Specular Highlights", Float) = 1.0
		[ToggleOff] _EnvironmentReflections("Environment Reflections", Float) = 1.0
		[HideInInspector][ToggleUI] _ReceiveShadows("Receive Shadows", Float) = 1.0

		[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) = "" {}

		//[HideInInspector][ToggleUI] _AddPrecomputedVelocity("Add Precomputed Velocity", Float) = 1

		//[HideInInspector] _XRMotionVectorsPass("_XRMotionVectorsPass", Float) = 1

		//[HideInInspector] _AlphaClip("__clip", Float) = 0.0
	}

	SubShader
	{
		LOD 0

		

		

		Tags { "RenderPipeline"="UniversalPipeline" "RenderType"="Opaque" "Queue"="Geometry" "UniversalMaterialType"="Lit" }

		Cull Back
		ZWrite On
		ZTest LEqual
		Offset 0 , 0
		AlphaToMask Off

		

		HLSLINCLUDE
		#pragma target 4.5
		#pragma prefer_hlslcc gles
		// ensure rendering platforms toggle list is visible

		#if ( SHADER_TARGET > 35 ) && defined( SHADER_API_GLES3 )
			#error For WebGL2/GLES3, please set your shader target to 3.5 via SubShader options. URP shaders in ASE use target 4.5 by default.
		#endif

		#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"="UniversalForward" }

			Blend One Zero, One Zero
			ZWrite On
			ZTest LEqual
			Offset 0 , 0
			ColorMask RGBA

			

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma shader_feature_local_fragment _RECEIVE_SHADOWS_OFF
			#pragma shader_feature_local_fragment _SPECULARHIGHLIGHTS_OFF
			#pragma shader_feature_local_fragment _ENVIRONMENTREFLECTIONS_OFF
			#pragma multi_compile_fragment _ _SCREEN_SPACE_OCCLUSION
			#pragma multi_compile_instancing
			#pragma instancing_options renderinglayer
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma multi_compile _ _MAIN_LIGHT_SHADOWS _MAIN_LIGHT_SHADOWS_CASCADE _MAIN_LIGHT_SHADOWS_SCREEN
			#pragma multi_compile _ _ADDITIONAL_LIGHTS_VERTEX _ADDITIONAL_LIGHTS
            #pragma multi_compile _ EVALUATE_SH_MIXED EVALUATE_SH_VERTEX
			#pragma multi_compile_fragment _ _ADDITIONAL_LIGHT_SHADOWS
			#pragma multi_compile_fragment _ _REFLECTION_PROBE_BLENDING
			#pragma multi_compile_fragment _ _REFLECTION_PROBE_BOX_PROJECTION
			#pragma multi_compile_fragment _ _REFLECTION_PROBE_ATLAS
			#pragma multi_compile_fragment _ _SHADOWS_SOFT _SHADOWS_SOFT_LOW _SHADOWS_SOFT_MEDIUM _SHADOWS_SOFT_HIGH
			#pragma multi_compile_fragment _ _SCREEN_SPACE_IRRADIANCE
			#pragma multi_compile_fragment _ _DBUFFER_MRT1 _DBUFFER_MRT2 _DBUFFER_MRT3
			#pragma multi_compile _ _LIGHT_LAYERS
			#pragma multi_compile_fragment _ _LIGHT_COOKIES
			#pragma multi_compile _ _CLUSTER_LIGHT_LOOP

			#pragma multi_compile _ LIGHTMAP_SHADOW_MIXING
			#pragma multi_compile _ SHADOWS_SHADOWMASK
			#pragma multi_compile _ DIRLIGHTMAP_COMBINED
			#pragma multi_compile _ LIGHTMAP_ON
			#pragma multi_compile_fragment _ LIGHTMAP_BICUBIC_SAMPLING
			#pragma multi_compile_fragment _ REFLECTION_PROBE_ROTATION
			#pragma multi_compile _ DYNAMICLIGHTMAP_ON
			#pragma multi_compile _ USE_LEGACY_LIGHTMAPS

			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_FORWARD

			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/RenderingLayers.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Fog.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ProbeVolumeVariants.hlsl"
			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Shadows.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"

			#if defined(LOD_FADE_CROSSFADE)
            #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
            #endif

			#if defined( UNITY_INSTANCING_ENABLED ) && defined( ASE_INSTANCED_TERRAIN ) && ( defined(_TERRAIN_INSTANCED_PERPIXEL_NORMAL) || defined(_INSTANCEDTERRAINNORMALS_PIXEL) )
				#define ENABLE_TERRAIN_PERPIXEL_NORMAL
			#endif

			#define ASE_NEEDS_VERT_POSITION
			#define ASE_NEEDS_TEXTURE_COORDINATES0


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					float4 texcoord1 : TEXCOORD1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					float4 texcoord2 : TEXCOORD2;
				#endif
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				half3 normalWS : TEXCOORD1;
				float4 tangentWS : TEXCOORD2; // holds terrainUV ifdef ENABLE_TERRAIN_PERPIXEL_NORMAL
				float4 lightmapUVOrVertexSH : TEXCOORD3;
				#if defined(ASE_FOG) || defined(_ADDITIONAL_LIGHTS_VERTEX)
					half4 fogFactorAndVertexLight : TEXCOORD4;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON)
					float2 dynamicLightmapUV : TEXCOORD5;
				#endif
				#if defined(USE_APV_PROBE_OCCLUSION)
					float4 probeOcclusion : TEXCOORD6;
				#endif
				float4 ase_texcoord7 : TEXCOORD7;
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;
			sampler2D _MainTex;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				
				output.ase_texcoord7.xy = input.texcoord.xy;
				
				//setting value to unused interpolator channels and avoid initialization warnings
				output.ase_texcoord7.zw = 0;

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif
				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );
				VertexNormalInputs normalInput = GetVertexNormalInputs( input.normalOS, input.tangentOS );

				OUTPUT_LIGHTMAP_UV(input.texcoord1, unity_LightmapST, output.lightmapUVOrVertexSH.xy);
				#if defined(DYNAMICLIGHTMAP_ON)
					output.dynamicLightmapUV.xy = input.texcoord2.xy * unity_DynamicLightmapST.xy + unity_DynamicLightmapST.zw;
				#endif
				OUTPUT_SH4(vertexInput.positionWS, normalInput.normalWS.xyz, GetWorldSpaceNormalizeViewDir(vertexInput.positionWS), output.lightmapUVOrVertexSH.xyz, output.probeOcclusion);

				#if defined(ASE_FOG) || defined(_ADDITIONAL_LIGHTS_VERTEX)
					output.fogFactorAndVertexLight = 0;
					#if defined(ASE_FOG) && !defined(_FOG_FRAGMENT)
						output.fogFactorAndVertexLight.x = ComputeFogFactor(vertexInput.positionCS.z);
					#endif
					#ifdef _ADDITIONAL_LIGHTS_VERTEX
						half3 vertexLight = VertexLighting( vertexInput.positionWS, normalInput.normalWS );
						output.fogFactorAndVertexLight.yzw = vertexLight;
					#endif
				#endif

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				output.normalWS = normalInput.normalWS;
				output.tangentWS = float4( normalInput.tangentWS, ( input.tangentOS.w > 0.0 ? 1.0 : -1.0 ) * GetOddNegativeScale() );

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					output.tangentWS.zw = input.texcoord.xy;
					output.tangentWS.xy = input.texcoord.xy * unity_LightmapST.xy + unity_LightmapST.zw;
				#endif
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					float4 texcoord1 : TEXCOORD1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					float4 texcoord2 : TEXCOORD2;
				#endif
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				output.texcoord = input.texcoord;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					output.texcoord1 = input.texcoord1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					output.texcoord2 = input.texcoord2;
				#endif
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				output.texcoord = patch[0].texcoord * bary.x + patch[1].texcoord * bary.y + patch[2].texcoord * bary.z;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					output.texcoord1 = patch[0].texcoord1 * bary.x + patch[1].texcoord1 * bary.y + patch[2].texcoord1 * bary.z;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					output.texcoord2 = patch[0].texcoord2 * bary.x + patch[1].texcoord2 * bary.y + patch[2].texcoord2 * bary.z;
				#endif
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag ( PackedVaryings input
						#if defined( ASE_DEPTH_WRITE_ON )
						,out float outputDepth : ASE_SV_DEPTH
						#endif
						#ifdef _WRITE_RENDERING_LAYERS
						, out uint outRenderingLayers : SV_Target1
						#endif
						 ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX(input);

				#if defined( _SURFACE_TYPE_TRANSPARENT )
					const bool isTransparent = true;
				#else
					const bool isTransparent = false;
				#endif

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS)
					float4 shadowCoord = TransformWorldToShadowCoord( input.positionWS );
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				// @diogo: mikktspace compliant
				float renormFactor = 1.0 / max( FLT_MIN, length( input.normalWS ) );

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( PositionWS );
				float3 ViewDirWS = GetWorldSpaceNormalizeViewDir( PositionWS );
				float4 ShadowCoord = shadowCoord;
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;
				float4 ScreenPos = ComputeScreenPos( ClipPos );
				float3 TangentWS = input.tangentWS.xyz * renormFactor;
				float3 BitangentWS = cross( input.normalWS, input.tangentWS.xyz ) * input.tangentWS.w * renormFactor;
				float3 NormalWS = input.normalWS * renormFactor;

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					float2 sampleCoords = (input.tangentWS.zw / _TerrainHeightmapRecipSize.zw + 0.5f) * _TerrainHeightmapRecipSize.xy;
					NormalWS = TransformObjectToWorldNormal(normalize(SAMPLE_TEXTURE2D(_TerrainNormalmapTexture, sampler_TerrainNormalmapTexture, sampleCoords).rgb * 2 - 1));
					TangentWS = -cross(GetObjectToWorldMatrix()._13_23_33, NormalWS);
					BitangentWS = cross(NormalWS, -TangentWS);
				#endif

				float2 uv_MainTex1_g1 = input.ase_texcoord7.xy;
				float4 tex2DNode1_g1 = tex2D( _MainTex, uv_MainTex1_g1 );
				

				float3 BaseColor = ( tex2DNode1_g1 * _Color ).rgb;
				float3 Normal = float3(0, 0, 1);
				float3 Specular = 0.5;
				float Metallic = _Metallic;
				float Smoothness = _Smoothness;
				float Occlusion = 1;
				float3 Emission = 0;
				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
					float AlphaClipThresholdShadow = 0.5;
				#endif
				float3 BakedGI = 0;
				float3 RefractionColor = 1;
				float RefractionIndex = 1;
				float3 Transmission = 1;
				float3 Translucency = 1;

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#ifdef _CLEARCOAT
					float CoatMask = 0;
					float CoatSmoothness = 0;
				#endif

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_CHANGES_WORLD_POS)
					ShadowCoord = TransformWorldToShadowCoord( PositionWS );
				#endif

				InputData inputData = (InputData)0;
				inputData.positionWS = PositionWS;
				inputData.positionCS = input.positionCS;
				inputData.normalizedScreenSpaceUV = ScreenPosNorm.xy;
				inputData.viewDirectionWS = ViewDirWS;
				inputData.shadowCoord = ShadowCoord;

				#ifdef _NORMALMAP
						#if _NORMAL_DROPOFF_TS
							inputData.normalWS = TransformTangentToWorld(Normal, half3x3(TangentWS, BitangentWS, NormalWS));
						#elif _NORMAL_DROPOFF_OS
							inputData.normalWS = TransformObjectToWorldNormal(Normal);
						#elif _NORMAL_DROPOFF_WS
							inputData.normalWS = Normal;
						#endif
					inputData.normalWS = NormalizeNormalPerPixel(inputData.normalWS);
				#else
					inputData.normalWS = NormalWS;
				#endif

				#ifdef ASE_FOG
					inputData.fogCoord = InitializeInputDataFog(float4(inputData.positionWS, 1.0), input.fogFactorAndVertexLight.x);
				#endif
				#ifdef _ADDITIONAL_LIGHTS_VERTEX
					inputData.vertexLighting = input.fogFactorAndVertexLight.yzw;
				#endif

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					float3 SH = SampleSH(inputData.normalWS.xyz);
				#else
					float3 SH = input.lightmapUVOrVertexSH.xyz;
				#endif

				#if defined(_SCREEN_SPACE_IRRADIANCE)
					inputData.bakedGI = SAMPLE_GI(_ScreenSpaceIrradiance, input.positionCS.xy);
				#elif defined(DYNAMICLIGHTMAP_ON)
					inputData.bakedGI = SAMPLE_GI(input.lightmapUVOrVertexSH.xy, input.dynamicLightmapUV.xy, SH, inputData.normalWS);
					inputData.shadowMask = SAMPLE_SHADOWMASK(input.lightmapUVOrVertexSH.xy);
				#elif !defined(LIGHTMAP_ON) && (defined(PROBE_VOLUMES_L1) || defined(PROBE_VOLUMES_L2))
					inputData.bakedGI = SAMPLE_GI( SH, GetAbsolutePositionWS(inputData.positionWS),
						inputData.normalWS,
						inputData.viewDirectionWS,
						input.positionCS.xy,
						input.probeOcclusion,
						inputData.shadowMask );
				#else
					inputData.bakedGI = SAMPLE_GI(input.lightmapUVOrVertexSH.xy, SH, inputData.normalWS);
					inputData.shadowMask = SAMPLE_SHADOWMASK(input.lightmapUVOrVertexSH.xy);
				#endif

				#ifdef ASE_BAKEDGI
					inputData.bakedGI = BakedGI;
				#endif

				#if defined(DEBUG_DISPLAY)
					#if defined(DYNAMICLIGHTMAP_ON)
						inputData.dynamicLightmapUV = input.dynamicLightmapUV.xy;
					#endif
					#if defined(LIGHTMAP_ON)
						inputData.staticLightmapUV = input.lightmapUVOrVertexSH.xy;
					#else
						inputData.vertexSH = SH;
					#endif
					#if defined(USE_APV_PROBE_OCCLUSION)
						inputData.probeOcclusion = input.probeOcclusion;
					#endif
				#endif

				SurfaceData surfaceData;
				surfaceData.albedo              = BaseColor;
				surfaceData.metallic            = saturate(Metallic);
				surfaceData.specular            = Specular;
				surfaceData.smoothness          = saturate(Smoothness),
				surfaceData.occlusion           = Occlusion,
				surfaceData.emission            = Emission,
				surfaceData.alpha               = saturate(Alpha);
				surfaceData.normalTS            = Normal;
				surfaceData.clearCoatMask       = 0;
				surfaceData.clearCoatSmoothness = 1;

				#ifdef _CLEARCOAT
					surfaceData.clearCoatMask       = saturate(CoatMask);
					surfaceData.clearCoatSmoothness = saturate(CoatSmoothness);
				#endif

				#if defined(_DBUFFER)
					ApplyDecalToSurfaceData(input.positionCS, surfaceData, inputData);
				#endif

				#ifdef ASE_LIGHTING_SIMPLE
					half4 color = UniversalFragmentBlinnPhong( inputData, surfaceData);
				#else
					half4 color = UniversalFragmentPBR( inputData, surfaceData);
				#endif

				#ifdef ASE_TRANSMISSION
				{
					float shadow = _TransmissionShadow;

					#define SUM_LIGHT_TRANSMISSION(Light)\
						float3 atten = Light.color * Light.distanceAttenuation;\
						atten = lerp( atten, atten * Light.shadowAttenuation, shadow );\
						half3 transmission = max( 0, -dot( inputData.normalWS, Light.direction ) ) * atten * Transmission;\
						color.rgb += BaseColor * transmission;

					SUM_LIGHT_TRANSMISSION( GetMainLight( inputData.shadowCoord ) );

					#if defined(_ADDITIONAL_LIGHTS)
						uint meshRenderingLayers = GetMeshRenderingLayer();
						uint pixelLightCount = GetAdditionalLightsCount();
						#if USE_CLUSTER_LIGHT_LOOP
							[loop] for (uint lightIndex = 0; lightIndex < min(URP_FP_DIRECTIONAL_LIGHTS_COUNT, MAX_VISIBLE_LIGHTS); lightIndex++)
							{
								CLUSTER_LIGHT_LOOP_SUBTRACTIVE_LIGHT_CHECK

								Light light = GetAdditionalLight(lightIndex, inputData.positionWS, inputData.shadowMask);
								#ifdef _LIGHT_LAYERS
								if (IsMatchingLightLayer(light.layerMask, meshRenderingLayers))
								#endif
								{
									SUM_LIGHT_TRANSMISSION( light );
								}
							}
						#endif
						LIGHT_LOOP_BEGIN( pixelLightCount )
							Light light = GetAdditionalLight(lightIndex, inputData.positionWS, inputData.shadowMask);
							#ifdef _LIGHT_LAYERS
							if (IsMatchingLightLayer(light.layerMask, meshRenderingLayers))
							#endif
							{
								SUM_LIGHT_TRANSMISSION( light );
							}
						LIGHT_LOOP_END
					#endif
				}
				#endif

				#ifdef ASE_TRANSLUCENCY
				{
					float shadow = _TransShadow;
					float normal = _TransNormal;
					float scattering = _TransScattering;
					float direct = _TransDirect;
					float ambient = _TransAmbient;
					float strength = _TransStrength;

					#define SUM_LIGHT_TRANSLUCENCY(Light)\
						float3 atten = Light.color * Light.distanceAttenuation;\
						atten = lerp( atten, atten * Light.shadowAttenuation, shadow );\
						half3 lightDir = Light.direction + inputData.normalWS * normal;\
						half VdotL = pow( saturate( dot( inputData.viewDirectionWS, -lightDir ) ), scattering );\
						half3 translucency = atten * ( VdotL * direct + inputData.bakedGI * ambient ) * Translucency;\
						color.rgb += BaseColor * translucency * strength;

					SUM_LIGHT_TRANSLUCENCY( GetMainLight( inputData.shadowCoord ) );

					#if defined(_ADDITIONAL_LIGHTS)
						uint meshRenderingLayers = GetMeshRenderingLayer();
						uint pixelLightCount = GetAdditionalLightsCount();
						#if USE_CLUSTER_LIGHT_LOOP
							[loop] for (uint lightIndex = 0; lightIndex < min(URP_FP_DIRECTIONAL_LIGHTS_COUNT, MAX_VISIBLE_LIGHTS); lightIndex++)
							{
								CLUSTER_LIGHT_LOOP_SUBTRACTIVE_LIGHT_CHECK

								Light light = GetAdditionalLight(lightIndex, inputData.positionWS, inputData.shadowMask);
								#ifdef _LIGHT_LAYERS
								if (IsMatchingLightLayer(light.layerMask, meshRenderingLayers))
								#endif
								{
									SUM_LIGHT_TRANSLUCENCY( light );
								}
							}
						#endif
						LIGHT_LOOP_BEGIN( pixelLightCount )
							Light light = GetAdditionalLight(lightIndex, inputData.positionWS, inputData.shadowMask);
							#ifdef _LIGHT_LAYERS
							if (IsMatchingLightLayer(light.layerMask, meshRenderingLayers))
							#endif
							{
								SUM_LIGHT_TRANSLUCENCY( light );
							}
						LIGHT_LOOP_END
					#endif
				}
				#endif

				#ifdef ASE_REFRACTION
					float4 projScreenPos = ScreenPos / ScreenPos.w;
					float3 refractionOffset = ( RefractionIndex - 1.0 ) * mul( UNITY_MATRIX_V, float4( NormalWS,0 ) ).xyz * ( 1.0 - dot( NormalWS, ViewDirWS ) );
					projScreenPos.xy += refractionOffset.xy;
					float3 refraction = SHADERGRAPH_SAMPLE_SCENE_COLOR( projScreenPos.xy ) * RefractionColor;
					color.rgb = lerp( refraction, color.rgb, color.a );
					color.a = 1;
				#endif

				#ifdef ASE_FINAL_COLOR_ALPHA_MULTIPLY
					color.rgb *= color.a;
				#endif

				#ifdef ASE_FOG
					#ifdef TERRAIN_SPLAT_ADDPASS
						color.rgb = MixFogColor(color.rgb, half3(0,0,0), inputData.fogCoord);
					#else
						color.rgb = MixFog(color.rgb, inputData.fogCoord);
					#endif
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				#ifdef _WRITE_RENDERING_LAYERS
					outRenderingLayers = EncodeMeshRenderingLayer();
				#endif

				#if defined( ASE_OPAQUE_KEEP_ALPHA )
					return half4( color.rgb, color.a );
				#else
					return half4( color.rgb, OutputAlpha( color.a, isTransparent ) );
				#endif
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "ShadowCaster"
			Tags { "LightMode"="ShadowCaster" }

			ZWrite On
			ZTest LEqual
			AlphaToMask Off
			ColorMask 0

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma multi_compile_instancing
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma multi_compile_vertex _ _CASTING_PUNCTUAL_LIGHT_SHADOW

			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_SHADOWCASTER

			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#if defined(LOD_FADE_CROSSFADE)
            #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
            #endif

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 _LightDirection;
			float3 _LightPosition;

			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input )
			{
				PackedVaryings output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO( output );

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );
				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				float3 positionWS = TransformObjectToWorld( input.positionOS.xyz );
				float3 normalWS = TransformObjectToWorldDir(input.normalOS);

				#if _CASTING_PUNCTUAL_LIGHT_SHADOW
					float3 lightDirectionWS = normalize(_LightPosition - positionWS);
				#else
					float3 lightDirectionWS = _LightDirection;
				#endif

				float4 positionCS = TransformWorldToHClip(ApplyShadowBias(positionWS, normalWS, lightDirectionWS));

				//code for UNITY_REVERSED_Z is moved into Shadows.hlsl from 6000.0.22 and or higher
				positionCS = ApplyShadowClamping(positionCS);

				output.positionCS = positionCS;
				output.positionWS = positionWS;
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag(	PackedVaryings input
						#if defined( ASE_DEPTH_WRITE_ON )
						,out float outputDepth : ASE_SV_DEPTH
						#endif
						 ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID( input );
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS)
					float4 shadowCoord = TransformWorldToShadowCoord(input.positionWS);
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( input.positionWS );
				float4 ShadowCoord = shadowCoord;
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;
				float4 ScreenPos = ComputeScreenPos( ClipPos );

				

				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
					float AlphaClipThresholdShadow = 0.5;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#if defined( _ALPHATEST_ON )
					#if defined( _ALPHATEST_SHADOW_ON )
						AlphaDiscard( Alpha, AlphaClipThresholdShadow );
					#else
						AlphaDiscard( Alpha, AlphaClipThreshold );
					#endif
				#endif

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				return 0;
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "DepthOnly"
			Tags { "LightMode"="DepthOnly" }

			ZWrite On
			ColorMask R
			AlphaToMask Off

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma multi_compile_instancing
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_DEPTHONLY

			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#if defined(LOD_FADE_CROSSFADE)
            #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
            #endif

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag(	PackedVaryings input
						#if defined( ASE_DEPTH_WRITE_ON )
						,out float outputDepth : ASE_SV_DEPTH
						#endif
						 ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS)
					float4 shadowCoord = TransformWorldToShadowCoord(input.positionWS);
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( input.positionWS );
				float4 ShadowCoord = shadowCoord;
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;
				float4 ScreenPos = ComputeScreenPos( ClipPos );

				

				float Alpha = 1;
				float AlphaClipThreshold = _Cutoff;

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				return 0;
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "Meta"
			Tags { "LightMode"="Meta" }

			Cull Off

			HLSLPROGRAM
			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300

			#pragma shader_feature EDITOR_VISUALIZATION

			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_META

			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/MetaInput.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#define ASE_NEEDS_VERT_POSITION
			#define ASE_NEEDS_TEXTURE_COORDINATES0


			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				float4 texcoord1 : TEXCOORD1;
				float4 texcoord2 : TEXCOORD2;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				#ifdef EDITOR_VISUALIZATION
					float4 VizUV : TEXCOORD1;
					float4 LightCoord : TEXCOORD2;
				#endif
				float4 ase_texcoord3 : TEXCOORD3;
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;
			sampler2D _MainTex;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				
				output.ase_texcoord3.xy = input.texcoord.xy;
				
				//setting value to unused interpolator channels and avoid initialization warnings
				output.ase_texcoord3.zw = 0;

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				#ifdef EDITOR_VISUALIZATION
					float2 VizUV = 0;
					float4 LightCoord = 0;
					UnityEditorVizData(input.positionOS.xyz, input.texcoord.xy, input.texcoord1.xy, input.texcoord2.xy, VizUV, LightCoord);
					output.VizUV = float4(VizUV, 0, 0);
					output.LightCoord = LightCoord;
				#endif

				output.positionCS = MetaVertexPosition( input.positionOS, input.texcoord1.xy, input.texcoord1.xy, unity_LightmapST, unity_DynamicLightmapST );
				output.positionWS = TransformObjectToWorld( input.positionOS.xyz );
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				float4 texcoord1 : TEXCOORD1;
				float4 texcoord2 : TEXCOORD2;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				output.texcoord = input.texcoord;
				output.texcoord1 = input.texcoord1;
				output.texcoord2 = input.texcoord2;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				output.texcoord = patch[0].texcoord * bary.x + patch[1].texcoord * bary.y + patch[2].texcoord * bary.z;
				output.texcoord1 = patch[0].texcoord1 * bary.x + patch[1].texcoord1 * bary.y + patch[2].texcoord1 * bary.z;
				output.texcoord2 = patch[0].texcoord2 * bary.x + patch[1].texcoord2 * bary.y + patch[2].texcoord2 * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag(PackedVaryings input  ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS)
					float4 shadowCoord = TransformWorldToShadowCoord(input.positionWS);
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( input.positionWS );
				float4 ShadowCoord = shadowCoord;

				float2 uv_MainTex1_g1 = input.ase_texcoord3.xy;
				float4 tex2DNode1_g1 = tex2D( _MainTex, uv_MainTex1_g1 );
				

				float3 BaseColor = ( tex2DNode1_g1 * _Color ).rgb;
				float3 Emission = 0;
				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
				#endif

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				MetaInput metaInput = (MetaInput)0;
				metaInput.Albedo = BaseColor;
				metaInput.Emission = Emission;
				#ifdef EDITOR_VISUALIZATION
					metaInput.VizUV = input.VizUV.xy;
					metaInput.LightCoord = input.LightCoord;
				#endif

				return UnityMetaFragment(metaInput);
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "Universal2D"
			Tags { "LightMode"="Universal2D" }

			Blend One Zero, One Zero
			ZWrite On
			ZTest LEqual
			Offset 0 , 0
			ColorMask RGBA

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_2D

			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#define ASE_NEEDS_VERT_POSITION
			#define ASE_NEEDS_TEXTURE_COORDINATES0


			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 ase_texcoord : TEXCOORD0;
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				float4 ase_texcoord1 : TEXCOORD1;
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;
			sampler2D _MainTex;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID( input );
				UNITY_TRANSFER_INSTANCE_ID( input, output );
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO( output );

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				
				output.ase_texcoord1.xy = input.ase_texcoord.xy;
				
				//setting value to unused interpolator channels and avoid initialization warnings
				output.ase_texcoord1.zw = 0;

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 ase_texcoord : TEXCOORD0;

				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				output.ase_texcoord = input.ase_texcoord;
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				output.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] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag(PackedVaryings input  ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID( input );
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS)
					float4 shadowCoord = TransformWorldToShadowCoord(input.positionWS);
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( input.positionWS );
				float4 ShadowCoord = shadowCoord;

				float2 uv_MainTex1_g1 = input.ase_texcoord1.xy;
				float4 tex2DNode1_g1 = tex2D( _MainTex, uv_MainTex1_g1 );
				

				float3 BaseColor = ( tex2DNode1_g1 * _Color ).rgb;
				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
				#endif

				half4 color = half4(BaseColor, Alpha );

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				return color;
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "DepthNormals"
			Tags { "LightMode"="DepthNormals" }

			ZWrite On
			Blend One Zero
			ZTest LEqual
			ZWrite On

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma multi_compile_instancing
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_DEPTHNORMALSONLY
			//#define SHADERPASS SHADERPASS_DEPTHNORMALS

			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/RenderingLayers.hlsl"
			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#if defined(LOD_FADE_CROSSFADE)
            #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
            #endif

			#if defined( UNITY_INSTANCING_ENABLED ) && defined( ASE_INSTANCED_TERRAIN ) && ( defined(_TERRAIN_INSTANCED_PERPIXEL_NORMAL) || defined(_INSTANCEDTERRAINNORMALS_PIXEL) )
				#define ENABLE_TERRAIN_PERPIXEL_NORMAL
			#endif

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				half4 texcoord : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				half3 normalWS : TEXCOORD1;
				float4 tangentWS : TEXCOORD2; // holds terrainUV ifdef ENABLE_TERRAIN_PERPIXEL_NORMAL
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				
				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );
				VertexNormalInputs normalInput = GetVertexNormalInputs( input.normalOS, input.tangentOS );

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				output.normalWS = normalInput.normalWS;
				output.tangentWS = float4( normalInput.tangentWS, ( input.tangentOS.w > 0.0 ? 1.0 : -1.0 ) * GetOddNegativeScale() );

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					output.tangentWS.zw = input.texcoord.xy;
					output.tangentWS.xy = input.texcoord.xy * unity_LightmapST.xy + unity_LightmapST.zw;
				#endif
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				output.texcoord = input.texcoord;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				output.texcoord = patch[0].texcoord * bary.x + patch[1].texcoord * bary.y + patch[2].texcoord * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			void frag(	PackedVaryings input
						, out half4 outNormalWS : SV_Target0
						#if defined( ASE_DEPTH_WRITE_ON )
						,out float outputDepth : ASE_SV_DEPTH
						#endif
						#ifdef _WRITE_RENDERING_LAYERS
						, out uint outRenderingLayers : SV_Target1
						#endif
						 )
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_NEEDS_FRAG_SHADOWCOORDS)
					float4 shadowCoord = TransformWorldToShadowCoord(input.positionWS);
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				// @diogo: mikktspace compliant
				float renormFactor = 1.0 / max( FLT_MIN, length( input.normalWS ) );

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( input.positionWS );
				float4 ShadowCoord = shadowCoord;
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;
				float4 ScreenPos = ComputeScreenPos( ClipPos );
				float3 TangentWS = input.tangentWS.xyz * renormFactor;
				float3 BitangentWS = cross( input.normalWS, input.tangentWS.xyz ) * input.tangentWS.w * renormFactor;
				float3 NormalWS = input.normalWS * renormFactor;

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					float2 sampleCoords = (input.tangentWS.zw / _TerrainHeightmapRecipSize.zw + 0.5f) * _TerrainHeightmapRecipSize.xy;
					NormalWS = TransformObjectToWorldNormal(normalize(SAMPLE_TEXTURE2D(_TerrainNormalmapTexture, sampler_TerrainNormalmapTexture, sampleCoords).rgb * 2 - 1));
					TangentWS = -cross(GetObjectToWorldMatrix()._13_23_33, NormalWS);
					BitangentWS = cross(NormalWS, -TangentWS);
				#endif

				

				float3 Normal = float3(0, 0, 1);
				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				#if defined(_GBUFFER_NORMALS_OCT)
					float2 octNormalWS = PackNormalOctQuadEncode(NormalWS);
					float2 remappedOctNormalWS = saturate(octNormalWS * 0.5 + 0.5);
					half3 packedNormalWS = PackFloat2To888(remappedOctNormalWS);
					outNormalWS = half4(packedNormalWS, 0.0);
				#else
					#if defined(_NORMALMAP)
						#if _NORMAL_DROPOFF_TS
							float3 normalWS = TransformTangentToWorld(Normal, half3x3(TangentWS, BitangentWS, NormalWS));
						#elif _NORMAL_DROPOFF_OS
							float3 normalWS = TransformObjectToWorldNormal(Normal);
						#elif _NORMAL_DROPOFF_WS
							float3 normalWS = Normal;
						#endif
					#else
						float3 normalWS = NormalWS;
					#endif
					outNormalWS = half4(NormalizeNormalPerPixel(normalWS), 0.0);
				#endif

				#ifdef _WRITE_RENDERING_LAYERS
					outRenderingLayers = EncodeMeshRenderingLayer();
				#endif
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "GBuffer"
			Tags { "LightMode"="UniversalGBuffer" }

			Blend One Zero, One Zero
			ZWrite On
			ZTest LEqual
			Offset 0 , 0
			ColorMask RGBA
			

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma shader_feature_local_fragment _RECEIVE_SHADOWS_OFF
			#pragma shader_feature_local_fragment _SPECULARHIGHLIGHTS_OFF
			#pragma shader_feature_local_fragment _ENVIRONMENTREFLECTIONS_OFF
			#pragma multi_compile_instancing
			#pragma instancing_options renderinglayer
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			// Deferred Rendering Path does not support the OpenGL-based graphics API:
			// Desktop OpenGL, OpenGL ES 3.0, WebGL 2.0.
			#pragma exclude_renderers glcore gles3 

			#pragma multi_compile _ _MAIN_LIGHT_SHADOWS _MAIN_LIGHT_SHADOWS_CASCADE _MAIN_LIGHT_SHADOWS_SCREEN
			#pragma multi_compile _ EVALUATE_SH_MIXED EVALUATE_SH_VERTEX
			#pragma multi_compile_fragment _ _REFLECTION_PROBE_BLENDING
			#pragma multi_compile_fragment _ _REFLECTION_PROBE_BOX_PROJECTION
			#pragma multi_compile_fragment _ _SHADOWS_SOFT _SHADOWS_SOFT_LOW _SHADOWS_SOFT_MEDIUM _SHADOWS_SOFT_HIGH
			#pragma multi_compile_fragment _ _SCREEN_SPACE_IRRADIANCE
			#pragma multi_compile_fragment _ _DBUFFER_MRT1 _DBUFFER_MRT2 _DBUFFER_MRT3
			#pragma multi_compile_fragment _ _GBUFFER_NORMALS_OCT
			#pragma multi_compile_fragment _ _RENDER_PASS_ENABLED
			#pragma multi_compile _ _CLUSTER_LIGHT_LOOP

			#pragma multi_compile _ LIGHTMAP_SHADOW_MIXING
			#pragma multi_compile _ _MIXED_LIGHTING_SUBTRACTIVE
			#pragma multi_compile _ SHADOWS_SHADOWMASK
			#pragma multi_compile _ DIRLIGHTMAP_COMBINED
			#pragma multi_compile _ USE_LEGACY_LIGHTMAPS
			#pragma multi_compile _ LIGHTMAP_ON
			#pragma multi_compile_fragment _ LIGHTMAP_BICUBIC_SAMPLING
			#pragma multi_compile_fragment _ REFLECTION_PROBE_ROTATION
			#pragma multi_compile _ DYNAMICLIGHTMAP_ON

			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SHADERPASS SHADERPASS_GBUFFER

			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/RenderingLayers.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ProbeVolumeVariants.hlsl"
			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/Shadows.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"

			#if defined(LOD_FADE_CROSSFADE)
            #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
            #endif

			#if defined( UNITY_INSTANCING_ENABLED ) && defined( ASE_INSTANCED_TERRAIN ) && ( defined(_TERRAIN_INSTANCED_PERPIXEL_NORMAL) || defined(_INSTANCEDTERRAINNORMALS_PIXEL) )
				#define ENABLE_TERRAIN_PERPIXEL_NORMAL
			#endif

			#define ASE_NEEDS_VERT_POSITION
			#define ASE_NEEDS_TEXTURE_COORDINATES0


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					float4 texcoord1 : TEXCOORD1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					float4 texcoord2 : TEXCOORD2;
				#endif
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				half3 normalWS : TEXCOORD1;
				float4 tangentWS : TEXCOORD2; // holds terrainUV ifdef ENABLE_TERRAIN_PERPIXEL_NORMAL
				float4 lightmapUVOrVertexSH : TEXCOORD3;
				#if defined(ASE_FOG) || defined(_ADDITIONAL_LIGHTS_VERTEX)
					half4 fogFactorAndVertexLight : TEXCOORD4;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON)
					float2 dynamicLightmapUV : TEXCOORD5;
				#endif
				#if defined(USE_APV_PROBE_OCCLUSION)
					float4 probeOcclusion : TEXCOORD6;
				#endif
				float4 ase_texcoord7 : TEXCOORD7;
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;
			sampler2D _MainTex;


			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/GBufferOutput.hlsl"

			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				
				output.ase_texcoord7.xy = input.texcoord.xy;
				
				//setting value to unused interpolator channels and avoid initialization warnings
				output.ase_texcoord7.zw = 0;
				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;
				input.tangentOS = input.tangentOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );
				VertexNormalInputs normalInput = GetVertexNormalInputs( input.normalOS, input.tangentOS );

				OUTPUT_LIGHTMAP_UV(input.texcoord1, unity_LightmapST, output.lightmapUVOrVertexSH.xy);
				#if defined(DYNAMICLIGHTMAP_ON)
					output.dynamicLightmapUV.xy = input.texcoord2.xy * unity_DynamicLightmapST.xy + unity_DynamicLightmapST.zw;
				#endif
				OUTPUT_SH4(vertexInput.positionWS, normalInput.normalWS.xyz, GetWorldSpaceNormalizeViewDir(vertexInput.positionWS), output.lightmapUVOrVertexSH.xyz, output.probeOcclusion);

				#if defined(ASE_FOG) || defined(_ADDITIONAL_LIGHTS_VERTEX)
					output.fogFactorAndVertexLight = 0;
					#if defined(ASE_FOG) && !defined(_FOG_FRAGMENT)
						// @diogo: no fog applied in GBuffer
					#endif
					#ifdef _ADDITIONAL_LIGHTS_VERTEX
						half3 vertexLight = VertexLighting( vertexInput.positionWS, normalInput.normalWS );
						output.fogFactorAndVertexLight.yzw = vertexLight;
					#endif
				#endif

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				output.normalWS = normalInput.normalWS;
				output.tangentWS = float4( normalInput.tangentWS, ( input.tangentOS.w > 0.0 ? 1.0 : -1.0 ) * GetOddNegativeScale() );

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					output.tangentWS.zw = input.texcoord.xy;
					output.tangentWS.xy = input.texcoord.xy * unity_LightmapST.xy + unity_LightmapST.zw;
				#endif
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				float4 texcoord : TEXCOORD0;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					float4 texcoord1 : TEXCOORD1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					float4 texcoord2 : TEXCOORD2;
				#endif
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				output.texcoord = input.texcoord;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					output.texcoord1 = input.texcoord1;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					output.texcoord2 = input.texcoord2;
				#endif
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				output.texcoord = patch[0].texcoord * bary.x + patch[1].texcoord * bary.y + patch[2].texcoord * bary.z;
				#if defined(LIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES1)
					output.texcoord1 = patch[0].texcoord1 * bary.x + patch[1].texcoord1 * bary.y + patch[2].texcoord1 * bary.z;
				#endif
				#if defined(DYNAMICLIGHTMAP_ON) || defined(ASE_NEEDS_TEXTURE_COORDINATES2)
					output.texcoord2 = patch[0].texcoord2 * bary.x + patch[1].texcoord2 * bary.y + patch[2].texcoord2 * bary.z;
				#endif
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			GBufferFragOutput frag ( PackedVaryings input
								#if defined( ASE_DEPTH_WRITE_ON )
								,out float outputDepth : ASE_SV_DEPTH
								#endif
								 )
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX(input);

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS)
					float4 shadowCoord = TransformWorldToShadowCoord( input.positionWS );
				#else
					float4 shadowCoord = float4(0, 0, 0, 0);
				#endif

				// @diogo: mikktspace compliant
				float renormFactor = 1.0 / max( FLT_MIN, length( input.normalWS ) );

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( PositionWS );
				float3 ViewDirWS = GetWorldSpaceNormalizeViewDir( PositionWS );
				float4 ShadowCoord = shadowCoord;
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;
				float4 ScreenPos = ComputeScreenPos( ClipPos );
				float3 TangentWS = input.tangentWS.xyz * renormFactor;
				float3 BitangentWS = cross( input.normalWS, input.tangentWS.xyz ) * input.tangentWS.w * renormFactor;
				float3 NormalWS = input.normalWS * renormFactor;

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					float2 sampleCoords = (input.tangentWS.zw / _TerrainHeightmapRecipSize.zw + 0.5f) * _TerrainHeightmapRecipSize.xy;
					NormalWS = TransformObjectToWorldNormal(normalize(SAMPLE_TEXTURE2D(_TerrainNormalmapTexture, sampler_TerrainNormalmapTexture, sampleCoords).rgb * 2 - 1));
					TangentWS = -cross(GetObjectToWorldMatrix()._13_23_33, NormalWS);
					BitangentWS = cross(NormalWS, -TangentWS);
				#endif

				float2 uv_MainTex1_g1 = input.ase_texcoord7.xy;
				float4 tex2DNode1_g1 = tex2D( _MainTex, uv_MainTex1_g1 );
				

				float3 BaseColor = ( tex2DNode1_g1 * _Color ).rgb;
				float3 Normal = float3(0, 0, 1);
				float3 Specular = 0.5;
				float Metallic = _Metallic;
				float Smoothness = _Smoothness;
				float Occlusion = 1;
				float3 Emission = 0;
				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
					float AlphaClipThresholdShadow = 0.5;
				#endif
				float3 BakedGI = 0;
				float3 RefractionColor = 1;
				float RefractionIndex = 1;
				float3 Transmission = 1;
				float3 Translucency = 1;

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#if defined( _ALPHATEST_ON )
					AlphaDiscard( Alpha, AlphaClipThreshold );
				#endif

				#if defined(MAIN_LIGHT_CALCULATE_SHADOWS) && defined(ASE_CHANGES_WORLD_POS)
					ShadowCoord = TransformWorldToShadowCoord( PositionWS );
				#endif

				InputData inputData = (InputData)0;
				inputData.positionWS = PositionWS;
				inputData.positionCS = input.positionCS;
				inputData.normalizedScreenSpaceUV = ScreenPosNorm.xy;
				inputData.shadowCoord = ShadowCoord;

				#ifdef _NORMALMAP
					#if _NORMAL_DROPOFF_TS
						inputData.normalWS = TransformTangentToWorld(Normal, half3x3( TangentWS, BitangentWS, NormalWS ));
					#elif _NORMAL_DROPOFF_OS
						inputData.normalWS = TransformObjectToWorldNormal(Normal);
					#elif _NORMAL_DROPOFF_WS
						inputData.normalWS = Normal;
					#endif
				#else
					inputData.normalWS = NormalWS;
				#endif

				inputData.normalWS = NormalizeNormalPerPixel(inputData.normalWS);
				inputData.viewDirectionWS = SafeNormalize( ViewDirWS );

				#ifdef ASE_FOG
					// @diogo: no fog applied in GBuffer
				#endif
				#ifdef _ADDITIONAL_LIGHTS_VERTEX
					inputData.vertexLighting = input.fogFactorAndVertexLight.yzw;
				#endif

				#if defined( ENABLE_TERRAIN_PERPIXEL_NORMAL )
					float3 SH = SampleSH(inputData.normalWS.xyz);
				#else
					float3 SH = input.lightmapUVOrVertexSH.xyz;
				#endif

				#if defined(_SCREEN_SPACE_IRRADIANCE)
					inputData.bakedGI = SAMPLE_GI(_ScreenSpaceIrradiance, input.positionCS.xy);
				#elif defined(DYNAMICLIGHTMAP_ON)
					inputData.bakedGI = SAMPLE_GI(input.lightmapUVOrVertexSH.xy, input.dynamicLightmapUV.xy, SH, inputData.normalWS);
					inputData.shadowMask = SAMPLE_SHADOWMASK(input.lightmapUVOrVertexSH.xy);
				#elif !defined(LIGHTMAP_ON) && (defined(PROBE_VOLUMES_L1) || defined(PROBE_VOLUMES_L2))
					inputData.bakedGI = SAMPLE_GI(SH,
						GetAbsolutePositionWS(inputData.positionWS),
						inputData.normalWS,
						inputData.viewDirectionWS,
						input.positionCS.xy,
						input.probeOcclusion,
						inputData.shadowMask);
				#else
					inputData.bakedGI = SAMPLE_GI(input.lightmapUVOrVertexSH.xy, SH, inputData.normalWS);
					inputData.shadowMask = SAMPLE_SHADOWMASK(input.lightmapUVOrVertexSH.xy);
				#endif

				#ifdef ASE_BAKEDGI
					inputData.bakedGI = BakedGI;
				#endif

				#if defined(DEBUG_DISPLAY)
					#if defined(DYNAMICLIGHTMAP_ON)
						inputData.dynamicLightmapUV = input.dynamicLightmapUV.xy;
						#endif
					#if defined(LIGHTMAP_ON)
						inputData.staticLightmapUV = input.lightmapUVOrVertexSH.xy;
					#else
						inputData.vertexSH = SH;
					#endif
					#if defined(USE_APV_PROBE_OCCLUSION)
						inputData.probeOcclusion = input.probeOcclusion;
					#endif
				#endif

				#ifdef _DBUFFER
					ApplyDecal(input.positionCS,
						BaseColor,
						Specular,
						inputData.normalWS,
						Metallic,
						Occlusion,
						Smoothness);
				#endif

				BRDFData brdfData;
				InitializeBRDFData(BaseColor, Metallic, Specular, Smoothness, Alpha, brdfData);

				Light mainLight = GetMainLight(inputData.shadowCoord, inputData.positionWS, inputData.shadowMask);
				half4 color;
				MixRealtimeAndBakedGI(mainLight, inputData.normalWS, inputData.bakedGI, inputData.shadowMask);

				color.rgb = GlobalIllumination(brdfData, (BRDFData)0, 0,
                              inputData.bakedGI, Occlusion, inputData.positionWS,
                              inputData.normalWS, inputData.viewDirectionWS, inputData.normalizedScreenSpaceUV);

				color.a = Alpha;

				#ifdef ASE_FINAL_COLOR_ALPHA_MULTIPLY
					color.rgb *= color.a;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				return PackGBuffersBRDFData(brdfData, inputData, Smoothness, Emission + color.rgb, Occlusion);
			}

			ENDHLSL
		}

		
		Pass
		{
			
			Name "SceneSelectionPass"
			Tags { "LightMode"="SceneSelectionPass" }

			Cull Off
			AlphaToMask Off

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

			#define SCENESELECTIONPASS 1

			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			struct SurfaceDescription
			{
				float Alpha;
				float AlphaClipThreshold;
			};

			PackedVaryings VertexFunction(Attributes input  )
			{
				PackedVaryings output;
				ZERO_INITIALIZE(PackedVaryings, output);

				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag( PackedVaryings input
				#if defined( ASE_DEPTH_WRITE_ON )
				,out float outputDepth : ASE_SV_DEPTH
				#endif
				 ) : SV_Target
			{
				SurfaceDescription surfaceDescription = (SurfaceDescription)0;

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( PositionWS );
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;

				

				surfaceDescription.Alpha = 1;
				#if defined( _ALPHATEST_ON )
					surfaceDescription.AlphaClipThreshold = _Cutoff;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#ifdef _ALPHATEST_ON
					clip(surfaceDescription.Alpha - surfaceDescription.AlphaClipThreshold);
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				return half4( _ObjectId, _PassValue, 1.0, 1.0 );
			}

			ENDHLSL
		}

		
		Pass
		{
			
			Name "ScenePickingPass"
			Tags { "LightMode"="Picking" }

			AlphaToMask Off

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

		    #define SCENEPICKINGPASS 1

			#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.universal/ShaderLibrary/Input.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
			#include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				ASE_SV_POSITION_QUALIFIERS float4 positionCS : SV_POSITION;
				float3 positionWS : TEXCOORD0;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			struct SurfaceDescription
			{
				float Alpha;
				float AlphaClipThreshold;
			};

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output;
				ZERO_INITIALIZE(PackedVaryings, output);

				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				input.normalOS = input.normalOS;

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );

				output.positionCS = vertexInput.positionCS;
				output.positionWS = vertexInput.positionWS;
				return output;
			}

			#if defined(ASE_TESSELLATION)
			struct VertexControl
			{
				float4 positionOS : INTERNALTESSPOS;
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct TessellationFactors
			{
				float edge[3] : SV_TessFactor;
				float inside : SV_InsideTessFactor;
			};

			VertexControl vert ( Attributes input )
			{
				VertexControl output;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				output.positionOS = input.positionOS;
				output.normalOS = input.normalOS;
				output.tangentOS = input.tangentOS;
				
				return output;
			}

			TessellationFactors TessellationFunction (InputPatch<VertexControl,3> input)
			{
				TessellationFactors output;
				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(input[0].positionOS, input[1].positionOS, input[2].positionOS, tessValue, tessMin, tessMax, GetObjectToWorldMatrix(), _WorldSpaceCameraPos );
				#elif defined(ASE_LENGTH_TESSELLATION)
				tf = EdgeLengthBasedTess(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams );
				#elif defined(ASE_LENGTH_CULL_TESSELLATION)
				tf = EdgeLengthBasedTessCull(input[0].positionOS, input[1].positionOS, input[2].positionOS, edgeLength, tessMaxDisp, GetObjectToWorldMatrix(), _WorldSpaceCameraPos, _ScreenParams, unity_CameraWorldClipPlanes );
				#endif
				output.edge[0] = tf.x; output.edge[1] = tf.y; output.edge[2] = tf.z; output.inside = tf.w;
				return output;
			}

			[domain("tri")]
			[partitioning("fractional_odd")]
			[outputtopology("triangle_cw")]
			[patchconstantfunc("TessellationFunction")]
			[outputcontrolpoints(3)]
			VertexControl HullFunction(InputPatch<VertexControl, 3> patch, uint id : SV_OutputControlPointID)
			{
				return patch[id];
			}

			[domain("tri")]
			PackedVaryings DomainFunction(TessellationFactors factors, OutputPatch<VertexControl, 3> patch, float3 bary : SV_DomainLocation)
			{
				Attributes output = (Attributes) 0;
				output.positionOS = patch[0].positionOS * bary.x + patch[1].positionOS * bary.y + patch[2].positionOS * bary.z;
				output.normalOS = patch[0].normalOS * bary.x + patch[1].normalOS * bary.y + patch[2].normalOS * bary.z;
				output.tangentOS = patch[0].tangentOS * bary.x + patch[1].tangentOS * bary.y + patch[2].tangentOS * bary.z;
				
				#if defined(ASE_PHONG_TESSELLATION)
				float3 pp[3];
				for (int i = 0; i < 3; ++i)
					pp[i] = output.positionOS.xyz - patch[i].normalOS * (dot(output.positionOS.xyz, patch[i].normalOS) - dot(patch[i].positionOS.xyz, patch[i].normalOS));
				float phongStrength = _TessPhongStrength;
				output.positionOS.xyz = phongStrength * (pp[0]*bary.x + pp[1]*bary.y + pp[2]*bary.z) + (1.0f-phongStrength) * output.positionOS.xyz;
				#endif
				UNITY_TRANSFER_INSTANCE_ID(patch[0], output);
				return VertexFunction(output);
			}
			#else
			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}
			#endif

			half4 frag( PackedVaryings input
				#if defined( ASE_DEPTH_WRITE_ON )
				,out float outputDepth : ASE_SV_DEPTH
				#endif
				 ) : SV_Target
			{
				SurfaceDescription surfaceDescription = (SurfaceDescription)0;

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( PositionWS );
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;

				

				surfaceDescription.Alpha = 1;
				#if defined( _ALPHATEST_ON )
					surfaceDescription.AlphaClipThreshold = _Cutoff;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#ifdef _ALPHATEST_ON
					clip(surfaceDescription.Alpha - surfaceDescription.AlphaClipThreshold);
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				return unity_SelectionID;
			}
			ENDHLSL
		}

		
		Pass
		{
			
			Name "MotionVectors"
			Tags { "LightMode"="MotionVectors" }

			ColorMask RG

			HLSLPROGRAM

			#define ASE_GEOMETRY
			#define _NORMAL_DROPOFF_TS 1
			#pragma multi_compile _ LOD_FADE_CROSSFADE
			#define ASE_FOG 1
			#pragma multi_compile_fragment _ DEBUG_DISPLAY
			#define ASE_VERSION 19908
			#define ASE_SRP_VERSION 170300


			#pragma vertex vert
			#pragma fragment frag

			#if defined( _SPECULAR_SETUP ) && defined( ASE_LIGHTING_SIMPLE )
				#if defined( _SPECULARHIGHLIGHTS_OFF )
					#undef _SPECULAR_COLOR
				#else
					#define _SPECULAR_COLOR
				#endif
			#endif

            #define SHADERPASS SHADERPASS_MOTION_VECTORS

            #include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/DOTS.hlsl"
			#include_with_pragmas "Packages/com.unity.render-pipelines.universal/ShaderLibrary/RenderingLayers.hlsl"
		    #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.universal/ShaderLibrary/Input.hlsl"
		    #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/TextureStack.hlsl"
            #include_with_pragmas "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRenderingKeywords.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/FoveatedRendering.hlsl"
            #include "Packages/com.unity.render-pipelines.core/ShaderLibrary/DebugMipmapStreamingMacros.hlsl"
		    #include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/ShaderGraphFunctions.hlsl"
		    #include "Packages/com.unity.render-pipelines.universal/Editor/ShaderGraph/Includes/ShaderPass.hlsl"

			#if defined(LOD_FADE_CROSSFADE)
				#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/LODCrossFade.hlsl"
			#endif

			#include "Packages/com.unity.render-pipelines.universal/ShaderLibrary/MotionVectorsCommon.hlsl"

			#define ASE_NEEDS_VERT_POSITION


			#if defined(ASE_EARLY_Z_DEPTH_OPTIMIZE) && (SHADER_TARGET >= 45)
				#define ASE_SV_DEPTH SV_DepthLessEqual
				#define ASE_SV_POSITION_QUALIFIERS linear noperspective centroid
			#else
				#define ASE_SV_DEPTH SV_Depth
				#define ASE_SV_POSITION_QUALIFIERS
			#endif

			struct Attributes
			{
				float4 positionOS : POSITION;
				float3 positionOld : TEXCOORD4;
				#if _ADD_PRECOMPUTED_VELOCITY
					float3 alembicMotionVector : TEXCOORD5;
				#endif
				half3 normalOS : NORMAL;
				half4 tangentOS : TANGENT;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
			};

			struct PackedVaryings
			{
				float4 positionCS : SV_POSITION;
				float4 positionCSNoJitter : TEXCOORD0;
				float4 previousPositionCSNoJitter : TEXCOORD1;
				float3 positionWS : TEXCOORD2;
				
				UNITY_VERTEX_INPUT_INSTANCE_ID
				UNITY_VERTEX_OUTPUT_STEREO
			};

			CBUFFER_START(UnityPerMaterial)
			float4 _NoiseTextureTilling;
			float4 _Color;
			float2 _NoisePannerSpeed;
			float _MBWindDir;
			float _MBWindDirOffset;
			float _MBAmplitude;
			float _MBAmplitudeOffset;
			float _MBFrequency;
			float _MBFrequencyOffset;
			float _MBPhase;
			float _MBDefaultBending;
			float _MBMaxHeight;
			float _Metallic;
			float _Smoothness;
			float _AlphaClip;
			float _Cutoff;
			#ifdef ASE_TRANSMISSION
				float _TransmissionShadow;
			#endif
			#ifdef ASE_TRANSLUCENCY
				float _TransStrength;
				float _TransNormal;
				float _TransScattering;
				float _TransDirect;
				float _TransAmbient;
				float _TransShadow;
			#endif
			#ifdef ASE_TESSELLATION
				float _TessPhongStrength;
				float _TessValue;
				float _TessMin;
				float _TessMax;
				float _TessEdgeLength;
				float _TessMaxDisp;
			#endif
			CBUFFER_END

			#ifdef SCENEPICKINGPASS
				float4 _SelectionID;
			#endif

			#ifdef SCENESELECTIONPASS
				int _ObjectId;
				int _PassValue;
			#endif

			sampler2D _NoiseTexture;


			float3 RotateAroundAxis( float3 center, float3 original, float3 u, float angle )
			{
				original -= center;
				float C = cos( angle );
				float S = sin( angle );
				float t = 1 - C;
				float m00 = t * u.x * u.x + C;
				float m01 = t * u.x * u.y - S * u.z;
				float m02 = t * u.x * u.z + S * u.y;
				float m10 = t * u.x * u.y + S * u.z;
				float m11 = t * u.y * u.y + C;
				float m12 = t * u.y * u.z - S * u.x;
				float m20 = t * u.x * u.z - S * u.y;
				float m21 = t * u.y * u.z + S * u.x;
				float m22 = t * u.z * u.z + C;
				float3x3 finalMatrix = float3x3( m00, m01, m02, m10, m11, m12, m20, m21, m22 );
				return mul( finalMatrix, original ) + center;
			}
			

			PackedVaryings VertexFunction( Attributes input  )
			{
				PackedVaryings output = (PackedVaryings)0;
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_TRANSFER_INSTANCE_ID(input, output);
				UNITY_INITIALIZE_VERTEX_OUTPUT_STEREO(output);

				float MB_WindDirection40_g2 = _MBWindDir;
				float MB_WindDirectionOffset35_g2 = _MBWindDirOffset;
				float3 objToWorld2_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float2 appendResult4_g2 = (float2(objToWorld2_g2.x , objToWorld2_g2.z));
				float2 WorldSpaceUVs6_g2 = appendResult4_g2;
				float2 AnimatedNoiseTilling7_g2 = (_NoiseTextureTilling).zw;
				float2 panner11_g2 = ( 0.1 * _Time.y * _NoisePannerSpeed + float2( 0,0 ));
				float4 AnimatedWorldNoise18_g2 = tex2Dlod( _NoiseTexture, float4( ( ( WorldSpaceUVs6_g2 * AnimatedNoiseTilling7_g2 ) + panner11_g2 ), 0, 0.0) );
				float temp_output_65_0_g2 = radians( ( ( MB_WindDirection40_g2 + ( MB_WindDirectionOffset35_g2 *  (-1.0 + ( (AnimatedWorldNoise18_g2).r - 0.0 ) * ( 1.0 - -1.0 ) / ( 1.0 - 0.0 ) ) ) ) * -1.0 ) );
				float3 appendResult80_g2 = (float3(cos( temp_output_65_0_g2 ) , 0.0 , sin( temp_output_65_0_g2 )));
				float3 worldToObj84_g2 = mul( GetWorldToObjectMatrix(), float4( appendResult80_g2, 1 ) ).xyz;
				float3 worldToObj81_g2 = mul( GetWorldToObjectMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float3 normalizeResult88_g2 = normalize( ( worldToObj84_g2 - worldToObj81_g2 ) );
				float3 MB_RotationAxis91_g2 = normalizeResult88_g2;
				float MB_Amplitude59_g2 = _MBAmplitude;
				float MB_AmplitudeOffset51_g2 = _MBAmplitudeOffset;
				float2 StaticNoileTilling17_g2 = (_NoiseTextureTilling).xy;
				float4 StaticWorldNoise42_g2 = tex2Dlod( _NoiseTexture, float4( ( WorldSpaceUVs6_g2 * StaticNoileTilling17_g2 ), 0, 0.0) );
				float3 objToWorld46_g2 = mul( GetObjectToWorldMatrix(), float4( float3( 0,0,0 ), 1 ) ).xyz;
				float MB_Frequency33_g2 = _MBFrequency;
				float MB_FrequencyOffset27_g2 = _MBFrequencyOffset;
				float MB_Phase50_g2 = _MBPhase;
				float MB_DefaultBending75_g2 = _MBDefaultBending;
				float MB_MaxHeight73_g2 = _MBMaxHeight;
				float MB_RotationAngle92_g2 = radians( ( ( ( ( MB_Amplitude59_g2 + ( MB_AmplitudeOffset51_g2 * (StaticWorldNoise42_g2).r ) ) * sin( ( ( ( objToWorld46_g2.x + objToWorld46_g2.z ) + ( ( _TimeParameters.x ) * ( MB_Frequency33_g2 + ( MB_FrequencyOffset27_g2 * (StaticWorldNoise42_g2).r ) ) ) ) * MB_Phase50_g2 ) ) ) + MB_DefaultBending75_g2 ) * ( input.positionOS.xyz.y / MB_MaxHeight73_g2 ) ) );
				float3 appendResult95_g2 = (float3(0.0 , input.positionOS.xyz.y , 0.0));
				float3 rotatedValue98_g2 = RotateAroundAxis( appendResult95_g2, input.positionOS.xyz, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				float3 rotatedValue102_g2 = RotateAroundAxis( float3( 0,0,0 ), rotatedValue98_g2, MB_RotationAxis91_g2, MB_RotationAngle92_g2 );
				

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					float3 defaultVertexValue = input.positionOS.xyz;
				#else
					float3 defaultVertexValue = float3(0, 0, 0);
				#endif

				float3 vertexValue = ( ( rotatedValue102_g2 - input.positionOS.xyz ) * step( 0.01 , input.positionOS.xyz.y ) );

				#ifdef ASE_ABSOLUTE_VERTEX_POS
					input.positionOS.xyz = vertexValue;
				#else
					input.positionOS.xyz += vertexValue;
				#endif

				VertexPositionInputs vertexInput = GetVertexPositionInputs( input.positionOS.xyz );

				#if defined(APPLICATION_SPACE_WARP_MOTION)
					output.positionCSNoJitter = mul(_NonJitteredViewProjMatrix, mul(UNITY_MATRIX_M, input.positionOS));
					output.positionCS = output.positionCSNoJitter;
				#else
					output.positionCS = vertexInput.positionCS;
					output.positionCSNoJitter = mul(_NonJitteredViewProjMatrix, mul(UNITY_MATRIX_M, input.positionOS));
				#endif

				float4 prevPos = ( unity_MotionVectorsParams.x == 1 ) ? float4( input.positionOld, 1 ) : input.positionOS;

				#if _ADD_PRECOMPUTED_VELOCITY
					prevPos = prevPos - float4(input.alembicMotionVector, 0);
				#endif

				output.previousPositionCSNoJitter = mul( _PrevViewProjMatrix, mul( UNITY_PREV_MATRIX_M, prevPos ) );

				output.positionWS = vertexInput.positionWS;

				// removed in ObjectMotionVectors.hlsl found in unity 6000.0.23 and higher
				//ApplyMotionVectorZBias( output.positionCS );
				return output;
			}

			PackedVaryings vert ( Attributes input )
			{
				return VertexFunction( input );
			}

			half4 frag(	PackedVaryings input
				#if defined( ASE_DEPTH_WRITE_ON )
				,out float outputDepth : ASE_SV_DEPTH
				#endif
				 ) : SV_Target
			{
				UNITY_SETUP_INSTANCE_ID(input);
				UNITY_SETUP_STEREO_EYE_INDEX_POST_VERTEX( input );

				float3 PositionWS = input.positionWS;
				float3 PositionRWS = GetCameraRelativePositionWS( PositionWS );
				float4 ScreenPosNorm = float4( GetNormalizedScreenSpaceUV( input.positionCS ), input.positionCS.zw );
				float4 ClipPos = ComputeClipSpacePosition( ScreenPosNorm.xy, input.positionCS.z ) * input.positionCS.w;

				

				float Alpha = 1;
				#if defined( _ALPHATEST_ON )
					float AlphaClipThreshold = _Cutoff;
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					input.positionCS.z = input.positionCS.z;
				#endif

				#ifdef _ALPHATEST_ON
					clip(Alpha - AlphaClipThreshold);
				#endif

				#if defined(ASE_CHANGES_WORLD_POS)
					float3 positionOS = mul( GetWorldToObjectMatrix(),  float4( PositionWS, 1.0 ) ).xyz;
					float3 previousPositionWS = mul( GetPrevObjectToWorldMatrix(),  float4( positionOS, 1.0 ) ).xyz;
					input.positionCSNoJitter = mul( _NonJitteredViewProjMatrix, float4( PositionWS, 1.0 ) );
					input.previousPositionCSNoJitter = mul( _PrevViewProjMatrix, float4( previousPositionWS, 1.0 ) );
				#endif

				#if defined(LOD_FADE_CROSSFADE)
					LODFadeCrossFade( input.positionCS );
				#endif

				#if defined( ASE_DEPTH_WRITE_ON )
					outputDepth = input.positionCS.z;
				#endif

				#if defined(APPLICATION_SPACE_WARP_MOTION)
					return float4( CalcAswNdcMotionVectorFromCsPositions( input.positionCSNoJitter, input.previousPositionCSNoJitter ), 1 );
				#else
					return float4( CalcNdcMotionVectorFromCsPositions( input.positionCSNoJitter, input.previousPositionCSNoJitter ), 0, 0 );
				#endif
			}
			ENDHLSL
		}

	
	}
	
	CustomEditor "Nicrom.LPVegetation_MaterialInspector"
	FallBack "Hidden/Shader Graph/FallbackError"
	
	Fallback Off
}

/*ASEBEGIN
Version=19908
Node;AmplifyShaderEditor.FunctionNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;1;-352,0;Inherit;False;LPW - Vegetation - Main;0;;1;c10505b4e6adf42409a0d65b86d42d4e;0;0;4;COLOR;7;FLOAT;10;FLOAT;11;FLOAT;0
Node;AmplifyShaderEditor.FunctionNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;2;-352,192;Inherit;False;LPW - Vegetation - Wind;5;;2;c1bd97fdc47c03a4d97ca42aeb626543;0;0;1;FLOAT3;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;3;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;ExtraPrePass;0;0;ExtraPrePass;6;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;True;1;1;False;;0;False;;0;1;False;;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;True;True;True;True;0;False;;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;0;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;4;32,0;Float;False;True;-1;3;Nicrom.LPVegetation_MaterialInspector;0;15;Nicrom/LPW/ASE/Low Poly Vegetation;94348b07e5e8bab40bd6c8a1e3df54cd;True;Forward;0;1;Forward;21;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;True;1;1;False;;0;False;;1;1;False;;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;True;True;True;True;0;False;;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;1;LightMode=UniversalForward;False;False;0;;0;0;Standard;51;Category;0;0;  Instanced Terrain Normals;1;0;Lighting Model;0;0;Workflow;1;0;Surface;0;0;  Keep Alpha;0;0;  Refraction Model;0;0;  Blend;0;0;Two Sided;1;0;Alpha Clipping;0;0;  Use Shadow Threshold;0;0;Fragment Normal Space;0;0;Forward Only;0;0;Transmission;0;0;  Transmission Shadow;0.5,False,;0;Translucency;0;0;  Translucency Strength;1,False,;0;  Normal Distortion;0.5,False,;0;  Scattering;2,False,;0;  Direct;0.9,False,;0;  Ambient;0.1,False,;0;  Shadow;0.5,False,;0;Cast Shadows;1;0;Receive Shadows;2;0;Specular Highlights;2;0;Environment Reflections;2;0;Receive SSAO;1;0;Motion Vectors;1;0;  Add Precomputed Velocity;0;0;  XR Motion Vectors;0;0;GPU Instancing;1;0;LOD CrossFade;1;0;Built-in Fog;1;0;_FinalColorxAlpha;0;0;Meta Pass;1;0;Override Baked GI;0;0;Extra Pre Pass;0;0;Tessellation;0;0;  Phong;0;0;  Strength;0.5,False,;0;  Type;0;0;  Tess;16,False,;0;  Min;10,False,;0;  Max;25,False,;0;  Edge Length;16,False,;0;  Max Displacement;25,False,;0;Write Depth;0;0;  Early Z;0;0;Vertex Position;1;0;Debug Display;1;0;Clear Coat;0;0;0;12;False;True;True;True;True;True;True;True;True;True;True;False;False;;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;5;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;ShadowCaster;0;2;ShadowCaster;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;False;False;True;False;False;False;False;0;False;;False;False;False;False;False;False;False;False;False;True;1;False;;True;3;False;;False;False;True;1;LightMode=ShadowCaster;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;6;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;DepthOnly;0;3;DepthOnly;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;False;False;True;True;False;False;False;0;False;;False;False;False;False;False;False;False;False;False;True;1;False;;False;False;False;True;1;LightMode=DepthOnly;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;7;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;Meta;0;4;Meta;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;2;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;1;LightMode=Meta;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;8;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;Universal2D;0;5;Universal2D;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;True;1;1;False;;0;False;;1;1;False;;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;True;True;True;True;0;False;;False;False;False;False;False;False;False;False;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;1;LightMode=Universal2D;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;9;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;DepthNormals;0;6;DepthNormals;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;True;1;1;False;;0;False;;0;1;False;;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;1;False;;True;3;False;;False;False;True;1;LightMode=DepthNormals;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;10;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;GBuffer;0;7;GBuffer;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;True;1;1;False;;0;False;;1;1;False;;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;True;True;True;True;0;False;;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;1;LightMode=UniversalGBuffer;False;True;12;d3d11;gles;metal;vulkan;xboxone;xboxseries;playstation;ps4;ps5;switch;switch2;webgpu;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;11;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;SceneSelectionPass;0;8;SceneSelectionPass;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;2;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;1;LightMode=SceneSelectionPass;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;12;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;ScenePickingPass;0;9;ScenePickingPass;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;1;LightMode=Picking;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;13;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;MotionVectors;0;10;MotionVectors;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;True;True;False;False;0;False;;False;False;False;False;False;False;False;False;False;False;False;False;False;True;1;LightMode=MotionVectors;False;False;0;;0;0;Standard;0;False;0
Node;AmplifyShaderEditor.TemplateMultiPassMasterNode, AmplifyShaderEditor, Version=0.0.0.0, Culture=neutral, PublicKeyToken=null;14;32,0;Float;False;False;-1;3;UnityEditor.ShaderGraphLitGUI;0;1;New Amplify Shader;94348b07e5e8bab40bd6c8a1e3df54cd;True;XRMotionVectors;0;11;XRMotionVectors;0;False;False;False;False;False;False;False;False;False;False;False;False;True;0;False;;False;True;0;False;;False;False;False;False;False;False;False;False;False;True;False;0;False;;255;False;;255;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;True;1;False;;True;3;False;;True;True;0;False;;0;False;;False;True;4;RenderPipeline=UniversalPipeline;RenderType=Opaque=RenderType;Queue=Geometry=Queue=0;UniversalMaterialType=Lit;True;5;True;14;all;0;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;False;True;True;True;True;True;0;False;;False;False;False;False;False;False;False;True;True;1;False;;255;False;;1;False;;7;False;;3;False;;0;False;;0;False;;0;False;;0;False;;0;False;;0;False;;False;False;False;False;False;True;1;LightMode=XRMotionVectors;False;False;0;;0;0;Standard;0;False;0
WireConnection;4;0;1;7
WireConnection;4;3;1;10
WireConnection;4;4;1;11
WireConnection;4;8;2;0
ASEEND*/
//CHKSM=AE1BDE2F82CC839EC561084E7581D8B5505D1C61