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@babylonjs/viewer

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The Babylon Viewer aims to simplify a specific but common Babylon.js use case: loading, viewing, and interacting with a 3D model.

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import{S as e}from"./index-BPURObVq.esm.min.js";import{b as n}from"./bonesDeclaration-pKMlb38S.esm.min.js";import{b as i,i as r}from"./instancesVertex-BGTenKaI.esm.min.js";import{m as t,a as f}from"./morphTargetsVertexDeclaration-SD9ejhFW.esm.min.js";import{i as s}from"./instancesDeclaration-DL-jEUgP.esm.min.js";import{s as o}from"./sceneUboDeclaration-BlOB2RUY.esm.min.js";import{c as v,a}from"./clipPlaneVertex-BjhGhRRh.esm.min.js";import{h as d}from"./harmonicsFunctions-CJ0pWIzK.esm.min.js";import{m as u,a as c}from"./morphTargetsVertex-4PRqtL-y.esm.min.js";import{b as m}from"./bonesVertex-nfOTyhwL.esm.min.js";import{b as l}from"./bakedVertexAnimation-p4-Xji_j.esm.min.js";import{b as p}from"./bumpVertex-Bt5H-gyM.esm.min.js";const x="geometryVertexShader",U="#include<bonesDeclaration>\n#include<bakedVertexAnimationDeclaration>\n#include<morphTargetsVertexGlobalDeclaration>\n#include<morphTargetsVertexDeclaration>[0..maxSimultaneousMorphTargets]\n#include<instancesDeclaration>\n#include<sceneUboDeclaration>\n#include<clipPlaneVertexDeclaration>\n#ifdef IRRADIANCE\n#ifdef REFLECTION\nuniform reflectionMatrix: mat4x4f;uniform vReflectionInfos: vec2f;uniform vReflectionColor: vec3f;\n#ifdef USESPHERICALFROMREFLECTIONMAP\nvarying vEnvironmentIrradiance: vec3f;\n#ifdef SPHERICAL_HARMONICS\nuniform vSphericalL00: vec3f;uniform vSphericalL1_1: vec3f;uniform vSphericalL10: vec3f;uniform vSphericalL11: vec3f;uniform vSphericalL2_2: vec3f;uniform vSphericalL2_1: vec3f;uniform vSphericalL20: vec3f;uniform vSphericalL21: vec3f;uniform vSphericalL22: vec3f;\n#else\nuniform vSphericalX: vec3f;uniform vSphericalY: vec3f;uniform vSphericalZ: vec3f;uniform vSphericalXX_ZZ: vec3f;uniform vSphericalYY_ZZ: vec3f;uniform vSphericalZZ: vec3f;uniform vSphericalXY: vec3f;uniform vSphericalYZ: vec3f;uniform vSphericalZX: vec3f;\n#endif\n#include<harmonicsFunctions>\n#endif\n#endif\n#endif\nattribute position : vec3<f32>;\n#ifdef HAS_NORMAL_ATTRIBUTE\nattribute normal: vec3f;\n#endif\n#ifdef NEED_UV\nvarying vUV: vec2f;\n#ifdef ALPHATEST\nuniform diffuseMatrix: mat4x4f;\n#endif\n#ifdef BUMP\nuniform bumpMatrix: mat4x4f;varying vBumpUV: vec2f;\n#endif\n#ifdef REFLECTIVITY\nuniform reflectivityMatrix: mat4x4f;uniform albedoMatrix: mat4x4f;varying vReflectivityUV: vec2f;varying vAlbedoUV: vec2f;\n#endif\n#ifdef METALLIC_TEXTURE\nvarying vMetallicUV: vec2f;uniform metallicMatrix: mat4x4f;\n#endif\n#ifdef ROUGHNESS_TEXTURE\nvarying vRoughnessUV: vec2f;uniform roughnessMatrix: mat4x4f;\n#endif\n#ifdef SUBSURFACE_WEIGHT\nvarying vSubsurfaceWeightUV: vec2f;uniform subsurfaceWeightMatrix: mat4x4f;\n#endif\n#ifdef TRANSMISSION_WEIGHT\nvarying vTransmissionWeightUV: vec2f;uniform transmissionWeightMatrix: mat4x4f;\n#endif\n#ifdef UV1\nattribute uv: vec2f;\n#endif\n#ifdef UV2\nattribute uv2: vec2f;\n#endif\n#endif\n#ifdef BUMP\nvarying vWorldView0: vec4f;varying vWorldView1: vec4f;varying vWorldView2: vec4f;varying vWorldView3: vec4f;\n#endif\n#ifdef BUMP\nvarying vNormalW: vec3f;\n#else\nvarying vNormalV: vec3f;\n#endif\nvarying vViewPos: vec4f;\n#if defined(POSITION) || defined(BUMP) || defined(IRRADIANCE)\nvarying vPositionW: vec3f;\n#endif\n#if defined(VELOCITY) || defined(VELOCITY_LINEAR)\nuniform previousViewProjection: mat4x4f;varying vCurrentPosition: vec4f;varying vPreviousPosition: vec4f;\n#endif\n#define CUSTOM_VERTEX_DEFINITIONS\n@vertex\nfn main(input : VertexInputs)->FragmentInputs {var positionUpdated: vec3f=vertexInputs.position;\n#ifdef HAS_NORMAL_ATTRIBUTE\nvar normalUpdated: vec3f=vertexInputs.normal;\n#else\nvar normalUpdated: vec3f=vec3f(0.0,0.0,0.0);\n#endif\n#ifdef UV1\nvar uvUpdated: vec2f=vertexInputs.uv;\n#endif\n#ifdef UV2\nvar uv2Updated: vec2f=vertexInputs.uv2;\n#endif\n#include<morphTargetsVertexGlobal>\n#include<morphTargetsVertex>[0..maxSimultaneousMorphTargets]\n#include<instancesVertex>\n#if (defined(VELOCITY) || defined(VELOCITY_LINEAR)) && !defined(BONES_VELOCITY_ENABLED)\nvCurrentPosition=scene.viewProjection*finalWorld*vec4f(positionUpdated,1.0);vPreviousPosition=uniforms.previousViewProjection*finalPreviousWorld* vec4f(positionUpdated,1.0);\n#endif\n#include<bonesVertex>\n#include<bakedVertexAnimation>\nvar worldPos: vec4f= vec4f(finalWorld* vec4f(positionUpdated,1.0));\n#ifdef BUMP\nlet vWorldView=scene.view*finalWorld;vertexOutputs.vWorldView0=vWorldView[0];vertexOutputs.vWorldView1=vWorldView[1];vertexOutputs.vWorldView2=vWorldView[2];vertexOutputs.vWorldView3=vWorldView[3];let normalWorld: mat3x3f= mat3x3f(finalWorld[0].xyz,finalWorld[1].xyz,finalWorld[2].xyz);vertexOutputs.vNormalW=normalize(normalWorld*normalUpdated);\n#else\n#ifdef NORMAL_WORLDSPACE\nvertexOutputs.vNormalV=normalize((finalWorld* vec4f(normalUpdated,0.0)).xyz);\n#else\nvertexOutputs.vNormalV=normalize(((scene.view*finalWorld)* vec4f(normalUpdated,0.0)).xyz);\n#endif\n#endif\nvertexOutputs.vViewPos=scene.view*worldPos;\n#if (defined(VELOCITY) || defined(VELOCITY_LINEAR)) && defined(BONES_VELOCITY_ENABLED)\nvertexOutputs.vCurrentPosition=scene.viewProjection*finalWorld* vec4f(positionUpdated,1.0);\n#if NUM_BONE_INFLUENCERS>0\nvar previousInfluence: mat4x4f;previousInfluence=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndices[0])]*vertexInputs.matricesWeights[0];\n#if NUM_BONE_INFLUENCERS>1\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndices[1])]*vertexInputs.matricesWeights[1];\n#endif\n#if NUM_BONE_INFLUENCERS>2\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndices[2])]*vertexInputs.matricesWeights[2];\n#endif\n#if NUM_BONE_INFLUENCERS>3\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndices[3])]*vertexInputs.matricesWeights[3];\n#endif\n#if NUM_BONE_INFLUENCERS>4\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndicesExtra[0])]*vertexInputs.matricesWeightsExtra[0];\n#endif\n#if NUM_BONE_INFLUENCERS>5\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndicesExtra[1])]*vertexInputs.matricesWeightsExtra[1];\n#endif\n#if NUM_BONE_INFLUENCERS>6\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndicesExtra[2])]*vertexInputs.matricesWeightsExtra[2];\n#endif\n#if NUM_BONE_INFLUENCERS>7\npreviousInfluence+=uniforms.mPreviousBones[ i32(vertexInputs.matricesIndicesExtra[3])]*vertexInputs.matricesWeightsExtra[3];\n#endif\nvertexOutputs.vPreviousPosition=uniforms.previousViewProjection*finalPreviousWorld*previousInfluence* vec4f(positionUpdated,1.0);\n#else\nvertexOutputs.vPreviousPosition=uniforms.previousViewProjection*finalPreviousWorld* vec4f(positionUpdated,1.0);\n#endif\n#endif\n#if defined(POSITION) || defined(BUMP) || defined(IRRADIANCE)\nvertexOutputs.vPositionW=worldPos.xyz/worldPos.w;\n#endif\nvertexOutputs.position=scene.viewProjection*finalWorld* vec4f(positionUpdated,1.0);\n#include<clipPlaneVertex>\n#ifdef NEED_UV\n#ifdef UV1\n#if defined(ALPHATEST) && defined(ALPHATEST_UV1)\nvertexOutputs.vUV=(uniforms.diffuseMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#else\nvertexOutputs.vUV=uvUpdated;\n#endif\n#ifdef BUMP_UV1\nvertexOutputs.vBumpUV=(uniforms.bumpMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#ifdef REFLECTIVITY_UV1\nvertexOutputs.vReflectivityUV=(uniforms.reflectivityMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#else\n#ifdef METALLIC_UV1\nvertexOutputs.vMetallicUV=(uniforms.metallicMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#ifdef ROUGHNESS_UV1\nvertexOutputs.vRoughnessUV=(uniforms.roughnessMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#endif\n#ifdef ALBEDO_UV1\nvertexOutputs.vAlbedoUV=(uniforms.albedoMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#ifdef SUBSURFACE_WEIGHT_UV1\nvertexOutputs.vSubsurfaceWeightUV=(uniforms.subsurfaceWeightMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#ifdef TRANSMISSION_WEIGHT_UV1\nvertexOutputs.vTransmissionWeightUV=(uniforms.transmissionWeightMatrix* vec4f(uvUpdated,1.0,0.0)).xy;\n#endif\n#endif\n#ifdef UV2\n#if defined(ALPHATEST) && defined(ALPHATEST_UV2)\nvertexOutputs.vUV=(uniforms.diffuseMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#else\nvertexOutputs.vUV=uv2Updated;\n#endif\n#ifdef BUMP_UV2\nvertexOutputs.vBumpUV=(uniforms.bumpMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#ifdef REFLECTIVITY_UV2\nvertexOutputs.vReflectivityUV=(uniforms.reflectivityMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#else\n#ifdef METALLIC_UV2\nvertexOutputs.vMetallicUV=(uniforms.metallicMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#ifdef ROUGHNESS_UV2\nvertexOutputs.vRoughnessUV=(uniforms.roughnessMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#endif\n#ifdef ALBEDO_UV2\nvertexOutputs.vAlbedoUV=(uniforms.albedoMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#ifdef SUBSURFACE_WEIGHT_UV2\nvertexOutputs.vSubsurfaceWeightUV=(uniforms.subsurfaceWeightMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#ifdef TRANSMISSION_WEIGHT_UV2\nvertexOutputs.vTransmissionWeightUV=(uniforms.transmissionWeightMatrix* vec4f(uv2Updated,1.0,0.0)).xy;\n#endif\n#endif\n#endif\n#include<bumpVertex>\n#ifdef IRRADIANCE\n#ifdef REFLECTION\n#ifdef USESPHERICALFROMREFLECTIONMAP\nvar reflectionVector: vec3f=(uniforms.reflectionMatrix*vec4f(normalUpdated,0.0)).xyz;\n#ifdef REFLECTIONMAP_OPPOSITEZ\nreflectionVector.z*=-1.0f;\n#endif\nvertexOutputs.vEnvironmentIrradiance=computeEnvironmentIrradiance(reflectionVector)*uniforms.vReflectionInfos.x;\n#endif\n#endif\n#endif\n}\n";e.ShadersStoreWGSL[x]||(e.ShadersStoreWGSL[x]=U);const E=[n,i,t,f,s,o,v,d,u,c,r,m,l,a,p];for(const n of E)e.IncludesShadersStoreWGSL[n.name]||(e.IncludesShadersStoreWGSL[n.name]=n.shader);const I={name:x,shader:U};export{I as geometryVertexShaderWGSL}; //# sourceMappingURL=geometry.vertex-lGW8SxEw.esm.min.js.map