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kc3-lang/ftgl/test/demo.cpp

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  • Author : Ben Boeckel
    Date : 2015-02-18 15:28:10
    Hash : dde5c75a
    Message : windows: use the proper preprocessor define

  • test/demo.cpp
  • #include <iostream>
    #include <stdlib.h> // exit()
    
    #if defined HAVE_GL_GLUT_H
    #   include <GL/glut.h>
    #elif defined HAVE_GLUT_GLUT_H
    #   include <GLUT/glut.h>
    #else
    #   error GLUT headers not present
    #endif
    
    #include "FTGL/ftgl.h"
    
    //#include "mmgr.h"
    
    static FTFont* fonts[5];
    static int width;
    static int height;
    
    
    // YOU'LL PROBABLY WANT TO CHANGE THESE
    #ifdef __linux__
    #   define DEFAULT_FONT "/usr/share/fonts/truetype/arial.ttf"
    #endif
    #ifdef __APPLE_CC__
    #   define DEFAULT_FONT "/usr/X11R6/lib/X11/fonts/TTF/Vera.ttf"
    #endif
    #ifdef _WIN32
    #   define DEFAULT_FONT "C:\\WINNT\\Fonts\\arial.ttf"
    #endif
    
    
    void
    my_init(const char* font_filename)
    {
        glClearColor(0.0, 0.0, 0.0, 0.0);
        glPolygonMode(GL_FRONT_AND_BACK, GL_FILL);
    
        fonts[0] = new FTOutlineFont(font_filename);
        fonts[1] = new FTPolygonFont(font_filename);
        fonts[2] = new FTTextureFont(font_filename);
        fonts[3] = new FTBitmapFont(font_filename);
        fonts[4] = new FTPixmapFont(font_filename);
        for (int i=0; i< 5; i++)
        {
            if (fonts[i]->Error())
            {
                std::cerr << "ERROR: Unable to open file " << font_filename << std::endl;
            }
            else
            {
                std::cout << "Reading font " << i << " from " << font_filename << std::endl;
    
                int point_size = 48;
                if (!fonts[i]->FaceSize(point_size))
                {
                    std::cerr << "ERROR: Unable to set font face size " << point_size << std::endl;
                }
            }
        }
    }
    
    static void
    do_ortho()
    {
        int w;
        int h;
        GLdouble size;
        GLdouble aspect;
    
        w = width;
        h = height;
        aspect = (GLdouble)w / (GLdouble)h;
    
        // Use the whole window.
        glViewport(0, 0, w, h);
    
        // We are going to do some 2-D orthographic drawing.
        glMatrixMode(GL_PROJECTION);
        glLoadIdentity();
        size = (GLdouble)((w >= h) ? w : h) / 2.0;
        if (w <= h) {
            aspect = (GLdouble)h/(GLdouble)w;
            glOrtho(-size, size, -size*aspect, size*aspect,
                    -100000.0, 100000.0);
        }
        else {
            aspect = (GLdouble)w/(GLdouble)h;
            glOrtho(-size*aspect, size*aspect, -size, size,
                    -100000.0, 100000.0);
        }
    
        // Make the world and window coordinates coincide so that 1.0 in
        // model space equals one pixel in window space.
        glScaled(aspect, aspect, 1.0);
    
        // Now determine where to draw things.
        glMatrixMode(GL_MODELVIEW);
        glLoadIdentity();
    }
    
    
    void
    my_reshape(int w, int h)
    {
        width = w;
        height = h;
    
        do_ortho();
    }
    
    void
    my_handle_key(unsigned char key, int x, int y)
    {
        switch (key) {
            case 'q':   // Esc or 'q' Quits the program.
            case 27:
            {
                for (int i=0; i<5; i++) {
                    if (fonts[i]) {
                        delete fonts[i];
                        fonts[i] = 0;
                    }
                }
                exit(1);
            }
                break;
            default:
                break;
        }
    }
    
    void
    draw_scene()
    {
        /* Set up some strings with the characters to draw. */
        unsigned int count = 0;
        char string[8][256];
        int i;
        for (i=1; i < 32; i++) { /* Skip zero - it's the null terminator! */
            string[0][count] = i;
            count++;
        }
    
        string[0][count] = '\0';
    
        count = 0;
        for (i=32; i < 64; i++) {
            string[1][count] = i;
            count++;
        }
        string[1][count] = '\0';
    
        count = 0;
       for (i=64; i < 96; i++) {
          string[2][count] = i;
          count++;
       }
       string[2][count] = '\0';
    
       count = 0;
       for (i=96; i < 128; i++) {
          string[3][count] = i;
          count++;
       }
       string[3][count] = '\0';
    
       count = 0;
       for (i=128; i < 160; i++) {
          string[4][count] = i;
          count++;
       }
       string[4][count] = '\0';
    
       count = 0;
       for (i=160; i < 192; i++) {
          string[5][count] = i;
          count++;
       }
       string[5][count] = '\0';
    
       count = 0;
       for (i=192; i < 224; i++) {
          string[6][count] = i;
          count++;
       }
       string[6][count] = '\0';
    
       count = 0;
       for (i=224; i < 256; i++) {
          string[7][count] = i;
          count++;
       }
       string[7][count] = '\0';
    
    
       glColor3f(1.0, 1.0, 1.0);
    
       for (int font = 0; font < 5; font++) {
           GLfloat x = -250.0;
           GLfloat y;
           GLfloat yild = 20.0;
           for (int j=0; j<4; j++) {
               y = 275.0-font*120.0-j*yild;
               if (font >= 3) {
                   glRasterPos2f(x, y);
                   fonts[font]->Render(string[j]);
               }
               else {
                   if (font == 2) {
                       glEnable(GL_TEXTURE_2D);
                       glEnable(GL_BLEND);
                       glBlendFunc(GL_SRC_ALPHA, GL_ONE_MINUS_SRC_ALPHA);
                   }
                   glPushMatrix(); {
                       glTranslatef(x, y, 0.0);
                       fonts[font]->Render(string[j]);
                   } glPopMatrix();
                   if (font == 2) {
                       glDisable(GL_TEXTURE_2D);
                       glDisable(GL_BLEND);
                   }
               }
           }
       }
    }
    
    
    void
    my_display(void)
    {
        glClear(GL_COLOR_BUFFER_BIT);
    
        draw_scene();
    
        glutSwapBuffers();
    }
    
    
    void
    my_idle()
    {
        glutPostRedisplay();
    }
    
    int
    file_exists(const char * fontFilePath)
    {
        FILE * fp = fopen(fontFilePath, "r");
    
        if (fp == NULL)
        {
            // That fopen failed does _not_ definitely mean the file isn't there
            // but for now this is ok
            return 0;
        }
        fclose(fp);
        return 1;
    }
    
    void
    usage(const char * program)
    {
        std::cerr << "Usage: " << program << " <fontFilePath.ttf>\n" << std::endl;
    }
    
    int
    main(int argc, char **argv)
    {
        char * fontFilePath;
    
        glutInitWindowSize(600, 600);
        glutInit(&argc, argv);
        glutInitDisplayMode(GLUT_RGB|GLUT_DOUBLE);
    
        glutCreateWindow("FTGL demo");
    
        if (argc >= 2)
        {
            if (!file_exists(argv[ 1 ]))
            {
                usage(argv[ 0 ]);
                std::cerr << "Couldn't open file '" << argv[ 1 ] << "'" << std::endl;
                exit(-1);
            }
            fontFilePath = argv[ 1 ];
        }
        else
        {
            // try a default font
            fontFilePath = DEFAULT_FONT;
    
            if (!file_exists(fontFilePath))
            {
                usage(argv[ 0 ]);
                std::cerr << "Couldn't open default file '" << fontFilePath << "'" << std::endl;
                exit(-1);
            }
        }
    
        my_init(fontFilePath);
    
        glutDisplayFunc(my_display);
        glutReshapeFunc(my_reshape);
        glutIdleFunc(my_idle);
        glutKeyboardFunc(my_handle_key);
    
        glutMainLoop();
    
        for(int x = 0; x < 5; ++x)
        {
            delete fonts[x];
        }
    
        return 0;
    }