mirror of
https://github.com/bulletphysics/bullet3
synced 2024-12-13 21:30:09 +00:00
Clean global variables.
This commit is contained in:
parent
d48b03f23b
commit
5fe36ca200
@ -36,9 +36,6 @@ subject to the following restrictions:
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#include "../TinyRenderer/model.h"
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#include "../ThirdPartyLibs/stb_image/stb_image.h"
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extern int count;
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enum MyFileType
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{
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MY_FILE_STL=1,
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@ -723,17 +720,16 @@ void TinyRendererVisualShapeConverter::render(const float viewMat[16], const flo
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lightColor = m_data->m_lightColor;
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}
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count = 0;
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float lightDistance = 2.0;
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// printf("num m_swRenderInstances = %d\n", m_data->m_swRenderInstances.size());
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for (int i=0;i<m_data->m_swRenderInstances.size();i++)
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for (int n=0;n<m_data->m_swRenderInstances.size();n++)
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{
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TinyRendererObjectArray** visualArrayPtr = m_data->m_swRenderInstances.getAtIndex(i);
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TinyRendererObjectArray** visualArrayPtr = m_data->m_swRenderInstances.getAtIndex(n);
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if (0==visualArrayPtr)
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continue;//can this ever happen?
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TinyRendererObjectArray* visualArray = *visualArrayPtr;
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btHashPtr colObjHash = m_data->m_swRenderInstances.getKeyAtIndex(i);
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btHashPtr colObjHash = m_data->m_swRenderInstances.getKeyAtIndex(n);
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const btCollisionObject* colObj = (btCollisionObject*) colObjHash.getPointer();
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@ -756,25 +752,24 @@ void TinyRendererVisualShapeConverter::render(const float viewMat[16], const flo
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renderObj->m_projectionMatrix[i][j] = projMat[i+4*j];
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renderObj->m_modelMatrix[i][j] = modelMat[i+4*j];
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renderObj->m_viewMatrix[i][j] = viewMat[i+4*j];
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renderObj->m_localScaling = colObj->getCollisionShape()->getLocalScaling();
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renderObj->m_lightDirWorld = lightDirWorld;
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renderObj->m_lightColor = lightColor;
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}
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}
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renderObj->m_localScaling = colObj->getCollisionShape()->getLocalScaling();
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renderObj->m_lightDirWorld = lightDirWorld;
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renderObj->m_lightColor = lightColor;
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renderObj->m_lightDistance = lightDistance;
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TinyRenderer::renderObjectDepth(*renderObj);
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}
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}
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count = 0;
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for (int i=0;i<m_data->m_swRenderInstances.size();i++)
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for (int n=0;n<m_data->m_swRenderInstances.size();n++)
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{
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TinyRendererObjectArray** visualArrayPtr = m_data->m_swRenderInstances.getAtIndex(i);
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TinyRendererObjectArray** visualArrayPtr = m_data->m_swRenderInstances.getAtIndex(n);
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if (0==visualArrayPtr)
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continue;//can this ever happen?
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TinyRendererObjectArray* visualArray = *visualArrayPtr;
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btHashPtr colObjHash = m_data->m_swRenderInstances.getKeyAtIndex(i);
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btHashPtr colObjHash = m_data->m_swRenderInstances.getKeyAtIndex(n);
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const btCollisionObject* colObj = (btCollisionObject*) colObjHash.getPointer();
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@ -797,11 +792,12 @@ void TinyRendererVisualShapeConverter::render(const float viewMat[16], const flo
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renderObj->m_projectionMatrix[i][j] = projMat[i+4*j];
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renderObj->m_modelMatrix[i][j] = modelMat[i+4*j];
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renderObj->m_viewMatrix[i][j] = viewMat[i+4*j];
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renderObj->m_localScaling = colObj->getCollisionShape()->getLocalScaling();
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renderObj->m_lightDirWorld = lightDirWorld;
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renderObj->m_lightColor = lightColor;
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}
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}
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renderObj->m_localScaling = colObj->getCollisionShape()->getLocalScaling();
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renderObj->m_lightDirWorld = lightDirWorld;
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renderObj->m_lightColor = lightColor;
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renderObj->m_lightDistance = lightDistance;
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TinyRenderer::renderObjectShadow(*renderObj);
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}
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}
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@ -13,12 +13,6 @@
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#include "LinearMath/btAlignedObjectArray.h"
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#include "LinearMath/btVector3.h"
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Matrix viewportmat;
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float depth = 2.0;
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int indexmap[10000000];
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int count = 0;
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bool setindex = true;
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struct Shader : public IShader {
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Model* m_model;
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@ -28,7 +22,7 @@ struct Shader : public IShader {
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Matrix m_invModelMat;
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Matrix& m_modelView1;
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Matrix& m_projectionMatrix;
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Matrix& m_projectionMat;
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Vec3f m_localScaling;
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Vec4f m_colorRGBA;
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@ -37,12 +31,12 @@ struct Shader : public IShader {
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mat<3,3,float> varying_nrm; // normal per vertex to be interpolated by FS
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//mat<3,3,float> ndc_tri; // triangle in normalized device coordinates
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Shader(Model* model, Vec3f light_dir_local, Vec3f light_color, Matrix& modelView, Matrix& projectionMatrix, Matrix& modelMat, Vec3f localScaling, const Vec4f& colorRGBA)
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Shader(Model* model, Vec3f light_dir_local, Vec3f light_color, Matrix& modelView, Matrix& projectionMat, Matrix& modelMat, Vec3f localScaling, const Vec4f& colorRGBA)
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:m_model(model),
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m_light_dir_local(light_dir_local),
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m_light_color(light_color),
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m_modelView1(modelView),
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m_projectionMatrix(projectionMatrix),
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m_projectionMat(projectionMat),
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m_modelMat(modelMat),
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m_localScaling(localScaling),
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m_colorRGBA(colorRGBA)
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@ -63,7 +57,7 @@ struct Shader : public IShader {
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unScaledVert[1]*m_localScaling[1],
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unScaledVert[2]*m_localScaling[2]);
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Vec4f gl_Vertex = m_projectionMatrix*m_modelView1*embed<4>(scaledVert);
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Vec4f gl_Vertex = m_projectionMat*m_modelView1*embed<4>(scaledVert);
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varying_tri.set_col(nthvert, gl_Vertex);
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return gl_Vertex;
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}
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@ -104,21 +98,23 @@ struct DepthShader : public IShader {
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Matrix& m_modelMat;
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Matrix m_invModelMat;
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Matrix& m_projectionMatrix;
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Matrix& m_projectionMat;
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Vec3f m_localScaling;
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Matrix& m_lightModelView;
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float m_lightDistance;
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mat<2,3,float> varying_uv; // triangle uv coordinates, written by the vertex shader, read by the fragment shader
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mat<4,3,float> varying_tri; // triangle coordinates (clip coordinates), written by VS, read by FS
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mat<3,3,float> varying_nrm; // normal per vertex to be interpolated by FS
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DepthShader(Model* model, Matrix& lightModelView, Matrix& projectionMatrix, Matrix& modelMat, Vec3f localScaling)
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DepthShader(Model* model, Matrix& lightModelView, Matrix& projectionMat, Matrix& modelMat, Vec3f localScaling, float lightDistance)
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:m_model(model),
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m_lightModelView(lightModelView),
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m_projectionMatrix(projectionMatrix),
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m_projectionMat(projectionMat),
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m_modelMat(modelMat),
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m_localScaling(localScaling)
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m_localScaling(localScaling),
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m_lightDistance(lightDistance)
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{
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m_invModelMat = m_modelMat.invert_transpose();
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}
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@ -130,14 +126,14 @@ struct DepthShader : public IShader {
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Vec3f scaledVert=Vec3f(unScaledVert[0]*m_localScaling[0],
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unScaledVert[1]*m_localScaling[1],
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unScaledVert[2]*m_localScaling[2]);
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Vec4f gl_Vertex = m_projectionMatrix*m_lightModelView*embed<4>(scaledVert);
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Vec4f gl_Vertex = m_projectionMat*m_lightModelView*embed<4>(scaledVert);
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varying_tri.set_col(nthvert, gl_Vertex);
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return gl_Vertex;
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}
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virtual bool fragment(Vec3f bar, TGAColor &color) {
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Vec4f p = varying_tri*bar;
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color = TGAColor(255, 255, 255)*(p[2]/depth);
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color = TGAColor(255, 255, 255)*(p[2]/m_lightDistance);
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return false;
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}
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};
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@ -151,10 +147,11 @@ struct ShadowShader : public IShader {
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Matrix m_invModelMat;
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Matrix& m_modelView1;
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Matrix& m_projectionMatrix;
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Matrix& m_projectionMat;
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Vec3f m_localScaling;
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Matrix& m_lightModelView;
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Vec4f m_colorRGBA;
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Matrix& m_viewportMat;
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b3AlignedObjectArray<float>& m_shadowBuffer;
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@ -168,14 +165,15 @@ struct ShadowShader : public IShader {
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mat<4,3,float> varying_tri_light_view;
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mat<3,3,float> varying_nrm; // normal per vertex to be interpolated by FS
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ShadowShader(Model* model, Vec3f light_dir_local, Vec3f light_color, Matrix& modelView, Matrix& lightModelView, Matrix& projectionMatrix, Matrix& modelMat, Vec3f localScaling, const Vec4f& colorRGBA, int width, int height, b3AlignedObjectArray<float>& shadowBuffer)
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ShadowShader(Model* model, Vec3f light_dir_local, Vec3f light_color, Matrix& modelView, Matrix& lightModelView, Matrix& projectionMat, Matrix& modelMat, Matrix& viewportMat, Vec3f localScaling, const Vec4f& colorRGBA, int width, int height, b3AlignedObjectArray<float>& shadowBuffer)
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:m_model(model),
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m_light_dir_local(light_dir_local),
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m_light_color(light_color),
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m_modelView1(modelView),
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m_lightModelView(lightModelView),
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m_projectionMatrix(projectionMatrix),
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m_projectionMat(projectionMat),
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m_modelMat(modelMat),
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m_viewportMat(viewportMat),
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m_localScaling(localScaling),
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m_colorRGBA(colorRGBA),
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m_width(width),
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@ -192,28 +190,24 @@ struct ShadowShader : public IShader {
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Vec3f scaledVert=Vec3f(unScaledVert[0]*m_localScaling[0],
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unScaledVert[1]*m_localScaling[1],
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unScaledVert[2]*m_localScaling[2]);
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Vec4f gl_Vertex = m_projectionMatrix*m_modelView1*embed<4>(scaledVert);
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Vec4f gl_Vertex = m_projectionMat*m_modelView1*embed<4>(scaledVert);
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varying_tri.set_col(nthvert, gl_Vertex);
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Vec4f gl_VertexLightView = m_projectionMatrix*m_lightModelView*embed<4>(scaledVert);
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Vec4f gl_VertexLightView = m_projectionMat*m_lightModelView*embed<4>(scaledVert);
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varying_tri_light_view.set_col(nthvert, gl_VertexLightView);
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return gl_Vertex;
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}
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virtual bool fragment(Vec3f bar, TGAColor &color) {
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Vec4f p = viewportmat*(varying_tri_light_view*bar);
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Vec4f p = m_viewportMat*(varying_tri_light_view*bar);
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float depth = p[2];
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p = p/p[3];
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int index_x = b3Min(m_width-1, int(p[0]));
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index_x = b3Max(0, index_x);
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int index_y = b3Min(m_height-1, int(p[1]));
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index_y = b3Max(0, index_y);
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int index_x = b3Max(0, b3Min(m_width-1, int(p[0])));
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int index_y = b3Max(0, b3Min(m_height-1, int(p[1])));
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int idx = index_x + index_y*m_width; // index in the shadowbuffer array
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//int idx = indexmap[count];
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float shadow = 0.8+0.2*(m_shadowBuffer[idx]<-depth+0.2); // magic coeff to avoid z-fighting
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//printf("count: %d, idx: %d\n", count, idx);
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//printf("shadowbuffer: %f, depth: %f\n", m_shadowBuffer[idx], -depth+0.43);
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Vec3f bn = (varying_nrm*bar).normalize();
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Vec2f uv = varying_uv*bar;
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@ -414,86 +408,7 @@ TinyRenderObjectData::~TinyRenderObjectData()
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void TinyRenderer::renderObject(TinyRenderObjectData& renderData)
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{
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int width = renderData.m_rgbColorBuffer.get_width();
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int height = renderData.m_rgbColorBuffer.get_height();
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Vec3f light_dir_local = Vec3f(renderData.m_lightDirWorld[0],renderData.m_lightDirWorld[1],renderData.m_lightDirWorld[2]);
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Vec3f light_color = Vec3f(renderData.m_lightColor[0],renderData.m_lightColor[1],renderData.m_lightColor[2]);
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Model* model = renderData.m_model;
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if (0==model)
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return;
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renderData.m_viewportMatrix = viewport(0,0,width, height);
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b3AlignedObjectArray<float>& zbuffer = renderData.m_depthBuffer;
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b3AlignedObjectArray<float>& shadowbuffer = renderData.m_shadowBuffer;
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int* segmentationMaskBufferPtr = (renderData.m_segmentationMaskBufferPtr && renderData.m_segmentationMaskBufferPtr->size())?&renderData.m_segmentationMaskBufferPtr->at(0):0;
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TGAImage tempFrame(width, height, TGAImage::RGB);
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TGAImage& frame = renderData.m_rgbColorBuffer;
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{
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Matrix lightViewMatrix = lookat(light_dir_local*depth, Vec3f(0.0,0.0,0.0), Vec3f(0.0,0.0,1.0));
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Matrix lightModelViewMatrix = lightViewMatrix*renderData.m_modelMatrix;
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Matrix lightViewProjectionMatrix = renderData.m_projectionMatrix;
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Matrix modelViewMatrix = renderData.m_viewMatrix*renderData.m_modelMatrix;
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viewportmat = renderData.m_viewportMatrix;
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Vec3f localScaling(renderData.m_localScaling[0],renderData.m_localScaling[1],renderData.m_localScaling[2]);
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DepthShader shader(model, lightModelViewMatrix, lightViewProjectionMatrix,renderData.m_modelMatrix, localScaling);
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setindex = true;
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count = 0;
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for (int i=0; i<model->nfaces(); i++)
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{
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for (int j=0; j<3; j++) {
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shader.vertex(i, j);
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}
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triangle(shader.varying_tri, shader, tempFrame, &shadowbuffer[0], segmentationMaskBufferPtr, renderData.m_viewportMatrix, renderData.m_objectIndex);
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count++;
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}
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for (int k = 0; k < 76800; ++k)
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{
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if (shadowbuffer[k] > -1e30f+0.00001)
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{
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//printf("[%d]: %f\n", k, shadowbuffer[k]);
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}
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}
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ShadowShader shadowShader(model, light_dir_local, light_color, modelViewMatrix, lightModelViewMatrix, renderData.m_projectionMatrix,renderData.m_modelMatrix, localScaling, model->getColorRGBA(), width, height, shadowbuffer);
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setindex = false;
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count = 0;
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for (int i=0; i<model->nfaces(); i++)
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{
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for (int j=0; j<3; j++) {
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shadowShader.vertex(i, j);
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}
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triangle(shadowShader.varying_tri, shadowShader, frame, &zbuffer[0], segmentationMaskBufferPtr, renderData.m_viewportMatrix, renderData.m_objectIndex);
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count++;
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}
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/*
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Shader shader(model, light_dir_local, light_color, modelViewMatrix, renderData.m_projectionMatrix,renderData.m_modelMatrix, localScaling, model->getColorRGBA());
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//printf("Render %d triangles.\n",model->nfaces());
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for (int i=0; i<model->nfaces(); i++)
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{
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for (int j=0; j<3; j++) {
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shader.vertex(i, j);
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}
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triangle(shader.varying_tri, shader, frame, &zbuffer[0], segmentationMaskBufferPtr, renderData.m_viewportMatrix, renderData.m_objectIndex);
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}
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*/
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}
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}
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void TinyRenderer::renderObjectDepth(TinyRenderObjectData& renderData)
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@ -503,6 +418,7 @@ void TinyRenderer::renderObjectDepth(TinyRenderObjectData& renderData)
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Vec3f light_dir_local = Vec3f(renderData.m_lightDirWorld[0],renderData.m_lightDirWorld[1],renderData.m_lightDirWorld[2]);
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Vec3f light_color = Vec3f(renderData.m_lightColor[0],renderData.m_lightColor[1],renderData.m_lightColor[2]);
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float light_distance = renderData.m_lightDistance;
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Model* model = renderData.m_model;
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if (0==model)
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return;
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@ -517,17 +433,14 @@ void TinyRenderer::renderObjectDepth(TinyRenderObjectData& renderData)
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TGAImage& frame = renderData.m_rgbColorBuffer;
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{
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Matrix lightViewMatrix = lookat(light_dir_local*depth, Vec3f(0.0,0.0,0.0), Vec3f(0.0,0.0,1.0));
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Matrix lightViewMatrix = lookat(light_dir_local*light_distance, Vec3f(0.0,0.0,0.0), Vec3f(0.0,0.0,1.0));
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Matrix lightModelViewMatrix = lightViewMatrix*renderData.m_modelMatrix;
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Matrix lightViewProjectionMatrix = renderData.m_projectionMatrix;
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Matrix modelViewMatrix = renderData.m_viewMatrix*renderData.m_modelMatrix;
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viewportmat = renderData.m_viewportMatrix;
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Vec3f localScaling(renderData.m_localScaling[0],renderData.m_localScaling[1],renderData.m_localScaling[2]);
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DepthShader shader(model, lightModelViewMatrix, lightViewProjectionMatrix,renderData.m_modelMatrix, localScaling);
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setindex = true;
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DepthShader shader(model, lightModelViewMatrix, lightViewProjectionMatrix,renderData.m_modelMatrix, localScaling, light_distance);
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for (int i=0; i<model->nfaces(); i++)
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{
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@ -535,17 +448,7 @@ void TinyRenderer::renderObjectDepth(TinyRenderObjectData& renderData)
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shader.vertex(i, j);
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}
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triangle(shader.varying_tri, shader, tempFrame, &shadowbuffer[0], segmentationMaskBufferPtr, renderData.m_viewportMatrix, renderData.m_objectIndex);
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count++;
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}
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for (int k = 0; k < 76800; ++k)
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{
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if (shadowbuffer[k] > -1e30f+0.00001)
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{
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//printf("[%d]: %f\n", k, shadowbuffer[k]);
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}
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}
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}
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}
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@ -557,6 +460,7 @@ void TinyRenderer::renderObjectShadow(TinyRenderObjectData& renderData)
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Vec3f light_dir_local = Vec3f(renderData.m_lightDirWorld[0],renderData.m_lightDirWorld[1],renderData.m_lightDirWorld[2]);
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Vec3f light_color = Vec3f(renderData.m_lightColor[0],renderData.m_lightColor[1],renderData.m_lightColor[2]);
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float light_distance = renderData.m_lightDistance;
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Model* model = renderData.m_model;
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if (0==model)
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return;
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@ -571,16 +475,13 @@ void TinyRenderer::renderObjectShadow(TinyRenderObjectData& renderData)
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||||
TGAImage& frame = renderData.m_rgbColorBuffer;
|
||||
|
||||
{
|
||||
Matrix lightViewMatrix = lookat(light_dir_local*depth, Vec3f(0.0,0.0,0.0), Vec3f(0.0,0.0,1.0));
|
||||
Matrix lightViewMatrix = lookat(light_dir_local*light_distance, Vec3f(0.0,0.0,0.0), Vec3f(0.0,0.0,1.0));
|
||||
Matrix lightModelViewMatrix = lightViewMatrix*renderData.m_modelMatrix;
|
||||
Matrix lightViewProjectionMatrix = renderData.m_projectionMatrix;
|
||||
Matrix modelViewMatrix = renderData.m_viewMatrix*renderData.m_modelMatrix;
|
||||
viewportmat = renderData.m_viewportMatrix;
|
||||
Vec3f localScaling(renderData.m_localScaling[0],renderData.m_localScaling[1],renderData.m_localScaling[2]);
|
||||
|
||||
ShadowShader shadowShader(model, light_dir_local, light_color, modelViewMatrix, lightModelViewMatrix, renderData.m_projectionMatrix,renderData.m_modelMatrix, localScaling, model->getColorRGBA(), width, height, shadowbuffer);
|
||||
|
||||
setindex = false;
|
||||
ShadowShader shadowShader(model, light_dir_local, light_color, modelViewMatrix, lightModelViewMatrix, renderData.m_projectionMatrix,renderData.m_modelMatrix, renderData.m_viewportMatrix, localScaling, model->getColorRGBA(), width, height, shadowbuffer);
|
||||
|
||||
for (int i=0; i<model->nfaces(); i++)
|
||||
{
|
||||
@ -588,8 +489,6 @@ void TinyRenderer::renderObjectShadow(TinyRenderObjectData& renderData)
|
||||
shadowShader.vertex(i, j);
|
||||
}
|
||||
triangle(shadowShader.varying_tri, shadowShader, frame, &zbuffer[0], segmentationMaskBufferPtr, renderData.m_viewportMatrix, renderData.m_objectIndex);
|
||||
printf("count: %d\n", count);
|
||||
count++;
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -19,6 +19,7 @@ struct TinyRenderObjectData
|
||||
btVector3 m_localScaling;
|
||||
btVector3 m_lightDirWorld;
|
||||
btVector3 m_lightColor;
|
||||
float m_lightDistance;
|
||||
|
||||
//Model (vertices, indices, textures, shader)
|
||||
Matrix m_modelMatrix;
|
||||
|
@ -4,10 +4,6 @@
|
||||
#include "our_gl.h"
|
||||
#include "Bullet3Common/b3MinMax.h"
|
||||
|
||||
extern int indexmap[10000000];
|
||||
extern int count;
|
||||
extern bool setindex;
|
||||
|
||||
IShader::~IShader() {}
|
||||
|
||||
Matrix viewport(int x, int y, int w, int h)
|
||||
@ -144,10 +140,6 @@ void triangle(mat<4,3,float> &clipc, IShader &shader, TGAImage &image, float *zb
|
||||
Vec3f bc_clip = Vec3f(bc_screen.x/pts[0][3], bc_screen.y/pts[1][3], bc_screen.z/pts[2][3]);
|
||||
bc_clip = bc_clip/(bc_clip.x+bc_clip.y+bc_clip.z);
|
||||
float frag_depth = -1*(clipc[2]*bc_clip);
|
||||
if (setindex)
|
||||
{
|
||||
indexmap[count] = P.x+P.y*image.get_width();
|
||||
}
|
||||
if (bc_screen.x<0 || bc_screen.y<0 || bc_screen.z<0 ||
|
||||
zbuffer[P.x+P.y*image.get_width()]>frag_depth)
|
||||
continue;
|
||||
|
Loading…
Reference in New Issue
Block a user