@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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JavaScript
import{S as e}from"./index-Bw2N6w1y.esm.min.js";import"./sceneUboDeclaration-Bfi1TSBE.esm.min.js";import"./meshUboDeclaration-B530jCEj.esm.min.js";const r="pbrUboDeclaration";e.IncludesShadersStoreWGSL[r]||(e.IncludesShadersStoreWGSL[r]="uniform vAlbedoInfos: vec2f;uniform vBaseWeightInfos: vec2f;uniform vBaseDiffuseRoughnessInfos: vec2f;uniform vAmbientInfos: vec4f;uniform vOpacityInfos: vec2f;uniform vEmissiveInfos: vec2f;uniform vLightmapInfos: vec2f;uniform vReflectivityInfos: vec3f;uniform vMicroSurfaceSamplerInfos: vec2f;uniform vReflectionInfos: vec2f;uniform vReflectionFilteringInfo: vec2f;uniform vReflectionPosition: vec3f;uniform vReflectionSize: vec3f;uniform vBumpInfos: vec3f;uniform albedoMatrix: mat4x4f;uniform baseWeightMatrix: mat4x4f;uniform baseDiffuseRoughnessMatrix: mat4x4f;uniform ambientMatrix: mat4x4f;uniform opacityMatrix: mat4x4f;uniform emissiveMatrix: mat4x4f;uniform lightmapMatrix: mat4x4f;uniform reflectivityMatrix: mat4x4f;uniform microSurfaceSamplerMatrix: mat4x4f;uniform bumpMatrix: mat4x4f;uniform vTangentSpaceParams: vec2f;uniform reflectionMatrix: mat4x4f;uniform vReflectionColor: vec3f;uniform vAlbedoColor: vec4f;uniform baseWeight: f32;uniform baseDiffuseRoughness: f32;uniform vLightingIntensity: vec4f;uniform vReflectionMicrosurfaceInfos: vec3f;uniform vReflectionDominantDirection: vec3f;uniform pointSize: f32;uniform vReflectivityColor: vec4f;uniform vEmissiveColor: vec3f;uniform vAmbientColor: vec3f;uniform vDebugMode: vec2f;uniform vMetallicReflectanceFactors: vec4f;uniform vMetallicReflectanceInfos: vec2f;uniform metallicReflectanceMatrix: mat4x4f;uniform vReflectanceInfos: vec2f;uniform reflectanceMatrix: mat4x4f;uniform 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;uniform 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;uniform cameraInfo: vec4f;\n#define ADDITIONAL_UBO_DECLARATION\n#include<sceneUboDeclaration>\n#include<meshUboDeclaration>\n");const f="harmonicsFunctions";e.IncludesShadersStoreWGSL[f]||(e.IncludesShadersStoreWGSL[f]="#ifdef USESPHERICALFROMREFLECTIONMAP\n#ifdef SPHERICAL_HARMONICS\nfn computeEnvironmentIrradiance(normal: vec3f)->vec3f {return uniforms.vSphericalL00\n+ uniforms.vSphericalL1_1*(normal.y)\n+ uniforms.vSphericalL10*(normal.z)\n+ uniforms.vSphericalL11*(normal.x)\n+ uniforms.vSphericalL2_2*(normal.y*normal.x)\n+ uniforms.vSphericalL2_1*(normal.y*normal.z)\n+ uniforms.vSphericalL20*((3.0*normal.z*normal.z)-1.0)\n+ uniforms.vSphericalL21*(normal.z*normal.x)\n+ uniforms.vSphericalL22*(normal.x*normal.x-(normal.y*normal.y));}\n#else\nfn computeEnvironmentIrradiance(normal: vec3f)->vec3f {var Nx: f32=normal.x;var Ny: f32=normal.y;var Nz: f32=normal.z;var C1: vec3f=uniforms.vSphericalZZ.rgb;var Cx: vec3f=uniforms.vSphericalX.rgb;var Cy: vec3f=uniforms.vSphericalY.rgb;var Cz: vec3f=uniforms.vSphericalZ.rgb;var Cxx_zz: vec3f=uniforms.vSphericalXX_ZZ.rgb;var Cyy_zz: vec3f=uniforms.vSphericalYY_ZZ.rgb;var Cxy: vec3f=uniforms.vSphericalXY.rgb;var Cyz: vec3f=uniforms.vSphericalYZ.rgb;var Czx: vec3f=uniforms.vSphericalZX.rgb;var a1: vec3f=Cyy_zz*Ny+Cy;var a2: vec3f=Cyz*Nz+a1;var b1: vec3f=Czx*Nz+Cx;var b2: vec3f=Cxy*Ny+b1;var b3: vec3f=Cxx_zz*Nx+b2;var t1: vec3f=Cz *Nz+C1;var t2: vec3f=a2 *Ny+t1;var t3: vec3f=b3 *Nx+t2;return t3;}\n#endif\n#endif\n");
//# sourceMappingURL=harmonicsFunctions-DbvFPyiO.esm.min.js.map