@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 t}from"./index-Bw2N6w1y.esm.min.js";const e="lightVxUboDeclaration";t.IncludesShadersStoreWGSL[e]||(t.IncludesShadersStoreWGSL[e]="#ifdef LIGHT{X}\nstruct Light{X}\n{vLightData: vec4f,\nvLightDiffuse: vec4f,\nvLightSpecular: vec4f,\n#ifdef SPOTLIGHT{X}\nvLightDirection: vec4f,\nvLightFalloff: vec4f,\n#elif defined(POINTLIGHT{X})\nvLightFalloff: vec4f,\n#elif defined(HEMILIGHT{X})\nvLightGround: vec3f,\n#endif\n#if defined(AREALIGHT{X})\nvLightWidth: vec4f,\nvLightHeight: vec4f,\n#endif\nshadowsInfo: vec4f,\ndepthValues: vec2f} ;var<uniform> light{X} : Light{X};\n#ifdef SHADOW{X}\n#ifdef SHADOWCSM{X}\nuniform lightMatrix{X}: array<mat4x4f,SHADOWCSMNUM_CASCADES{X}>;varying vPositionFromLight{X}_0: vec4f;varying vDepthMetric{X}_0: f32;varying vPositionFromLight{X}_1: vec4f;varying vDepthMetric{X}_1: f32;varying vPositionFromLight{X}_2: vec4f;varying vDepthMetric{X}_2: f32;varying vPositionFromLight{X}_3: vec4f;varying vDepthMetric{X}_3: f32;varying vPositionFromCamera{X}: vec4f;\n#elif defined(SHADOWCUBE{X})\n#else\nvarying vPositionFromLight{X}: vec4f;varying vDepthMetric{X}: f32;uniform lightMatrix{X}: mat4x4f;\n#endif\n#endif\n#endif\n");const i="shadowsVertex";t.IncludesShadersStoreWGSL[i]||(t.IncludesShadersStoreWGSL[i]="#ifdef SHADOWS\n#if defined(SHADOWCSM{X})\nvertexOutputs.vPositionFromCamera{X}=scene.view*worldPos;\n#if SHADOWCSMNUM_CASCADES{X}>0\nvertexOutputs.vPositionFromLight{X}_0=uniforms.lightMatrix{X}[0]*worldPos;\n#ifdef USE_REVERSE_DEPTHBUFFER\nvertexOutputs.vDepthMetric{X}_0=(-vertexOutputs.vPositionFromLight{X}_0.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#else\nvertexOutputs.vDepthMetric{X}_0= (vertexOutputs.vPositionFromLight{X}_0.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#endif\n#endif\n#if SHADOWCSMNUM_CASCADES{X}>1\nvertexOutputs.vPositionFromLight{X}_1=uniforms.lightMatrix{X}[1]*worldPos;\n#ifdef USE_REVERSE_DEPTHBUFFER\nvertexOutputs.vDepthMetric{X}_1=(-vertexOutputs.vPositionFromLight{X}_1.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#else\nvertexOutputs.vDepthMetric{X}_1= (vertexOutputs.vPositionFromLight{X}_1.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#endif\n#endif \n#if SHADOWCSMNUM_CASCADES{X}>2\nvertexOutputs.vPositionFromLight{X}_2=uniforms.lightMatrix{X}[2]*worldPos;\n#ifdef USE_REVERSE_DEPTHBUFFER\nvertexOutputs.vDepthMetric{X}_2=(-vertexOutputs.vPositionFromLight{X}_2.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#else\nvertexOutputs.vDepthMetric{X}_2= (vertexOutputs.vPositionFromLight{X}_2.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#endif\n#endif \n#if SHADOWCSMNUM_CASCADES{X}>3\nvertexOutputs.vPositionFromLight{X}_3=uniforms.lightMatrix{X}[3]*worldPos;\n#ifdef USE_REVERSE_DEPTHBUFFER\nvertexOutputs.vDepthMetric{X}_3=(-vertexOutputs.vPositionFromLight{X}_3.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#else\nvertexOutputs.vDepthMetric{X}_3= (vertexOutputs.vPositionFromLight{X}_3.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#endif\n#endif \n#elif defined(SHADOW{X}) && !defined(SHADOWCUBE{X})\nvertexOutputs.vPositionFromLight{X}=uniforms.lightMatrix{X}*worldPos;\n#ifdef USE_REVERSE_DEPTHBUFFER\nvertexOutputs.vDepthMetric{X}=(-vertexOutputs.vPositionFromLight{X}.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#else\nvertexOutputs.vDepthMetric{X}=(vertexOutputs.vPositionFromLight{X}.z+light{X}.depthValues.x)/light{X}.depthValues.y;\n#endif\n#endif\n#endif\n");
//# sourceMappingURL=shadowsVertex-BdIfZ6ea.esm.min.js.map