720551d549
fopen to osgDB::fopen to facilitate support for wide character filenames using UT8 encoding.
154 lines
4.0 KiB
C++
154 lines
4.0 KiB
C++
/*
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Steffen Frey
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Fachpraktikum Graphik-Programmierung 2007
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Institut fuer Visualisierung und Interaktive Systeme
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Universitaet Stuttgart
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*/
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#include "Utility.h"
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#include <assert.h>
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#include <iostream>
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#include <stdio.h>
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#include <osg/Geometry>
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#include <osg/Geode>
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#include <osgDB/FileUtils>
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#include <osgDB/fstream>
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bool Utility::readFile(const char* fName, std::string& s)
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{
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std::string foundFile = osgDB::findDataFile(fName);
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if (foundFile.empty()) return false;
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osgDB::ifstream is;//(fName);
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is.open(foundFile.c_str());
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if (is.fail())
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{
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std::cerr << "Could not open " << fName << " for reading.\n";
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return false;
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}
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char ch = is.get();
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while (!is.eof())
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{
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s += ch;
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ch = is.get();
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}
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is.close();
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return true;
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}
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std::string Utility::toString(double d)
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{
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std::stringstream ostr;
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ostr << d;
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return ostr.str();
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}
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osg::Program* Utility::createProgram(std::string vs, std::string fs)
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{
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//setup shader
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std::string vertSource;
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if(!readFile((char*)vs.c_str(), vertSource))
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{
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printf("shader source not found\n");
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return false;
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}
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std::string fragSource;
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if(!readFile((char*)fs.c_str(), fragSource))
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{
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printf("shader source not found\n");
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return false;
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}
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osg::Program* program = new osg::Program;
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program->addShader( new osg::Shader( osg::Shader::VERTEX, vertSource.c_str() ) );
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program->addShader( new osg::Shader( osg::Shader::FRAGMENT, fragSource.c_str() ) );
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return program;
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}
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double Utility::getNoise(unsigned x, unsigned y, unsigned random)
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{
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int n = x + y * 57 + random * 131;
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n = (n<<13) ^ n;
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double noise = (1.0f - ( (n * (n * n * 15731 + 789221) +
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1376312589)&0x7fffffff)* 0.000000000931322574615478515625f);
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return noise;
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}
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double Utility::smoothNoise(unsigned width, unsigned height, unsigned x, unsigned y, unsigned char* noise)
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{
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assert(noise);
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if(x==0 || x > width -2
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|| y==0 || y > height -2)
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return noise[x + y*width];
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double corners = (noise[x-1 + (y-1) *width]
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+noise[x+1 + (y-1)*width]
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+noise[x-1 + (y+1) * width]
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+noise[x+1 + (y+1) * width]) / 16.0;
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double sides = (noise[x-1 + y*width]
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+noise[x+1 + y*width]
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+noise[x + (y-1)*width]
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+noise[x + (y+1)*width]) / 8.0;
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double center = noise[x + y*width] / 4.0;
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return corners + sides + center;
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}
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osg::Texture2D* Utility::newColorTexture2D(unsigned width, unsigned height, unsigned accuracy)
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{
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osg::Texture2D* texture2D = new osg::Texture2D;
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texture2D->setTextureSize(width, height);
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if(accuracy == 32)
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{
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texture2D->setInternalFormat(GL_RGBA32F_ARB);
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texture2D->setSourceFormat(GL_RGBA);
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}
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else if(accuracy == 8)
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{
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texture2D->setInternalFormat(GL_RGBA);
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}
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texture2D->setSourceType(GL_FLOAT);
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texture2D->setFilter(osg::Texture2D::MIN_FILTER,osg::Texture2D::LINEAR);
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texture2D->setFilter(osg::Texture2D::MAG_FILTER,osg::Texture2D::LINEAR);
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return texture2D;
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}
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osg::Geode* Utility::getCanvasQuad(unsigned width, unsigned height, double depth)
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{
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osg::Vec3Array* vertices = new osg::Vec3Array;
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osg::Vec2Array* texCoords = new osg::Vec2Array;
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vertices->push_back(osg::Vec3(0,0,depth));
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texCoords->push_back(osg::Vec2(0,0));
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vertices->push_back(osg::Vec3(width,0,depth));
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texCoords->push_back(osg::Vec2(1,0));
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vertices->push_back(osg::Vec3(0,height,depth));
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texCoords->push_back(osg::Vec2(0,1));
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vertices->push_back(osg::Vec3(width,height,depth));
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texCoords->push_back(osg::Vec2(1,1));
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osg::Geometry* quad = new osg::Geometry;
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quad->setVertexArray(vertices);
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quad->setTexCoordArray(1,texCoords);
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quad->addPrimitiveSet(new osg::DrawArrays(osg::PrimitiveSet::QUAD_STRIP,0,vertices->size()));
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osg::Vec4Array* colors = new osg::Vec4Array;
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colors->push_back(osg::Vec4(1.0f,1.0f,1.0f,1.0f));
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quad->setColorArray(colors);
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quad->setColorBinding(osg::Geometry::BIND_OVERALL);
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osg::Geode* geode = new osg::Geode();
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geode->addDrawable(quad);
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return geode;
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}
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