/* rotate-es.c 1.1 */ /* Copyright 1992, 1993 O'Reilly and Associates, Inc. Permission to use, copy, and modify this program is hereby granted, as long as this copyright notice appears in each copy of the program source code. */ #include "book_utils.h" #include "esdb.h" static Display *dpy; static Window window; static PEXRenderer renderer; /* The triangle's coordinates. */ static PEXCoord2D points[] = {{.4,.5},{.6,.5},{.5,.9}}; static void redraw( angle ) double angle; { PEXColor color; PEXMatrix3x3 xform; esEscapeSwapBuffer swap_data; static PEXCoord2D center = {0.5, 0.5}; static PEXVector2D shift = {0,0}, scale = {1,1}; /* Redraw into the off-screen buffer. */ PEXBeginRendering( dpy, window, renderer ); { /* Build the transform for the new angle. */ PEXBuildTransform2D( ¢er, &shift, angle, &scale, xform ); PEXSetLocalTransform2D( dpy, renderer, PEXOCRender, PEXReplace, xform ); /* Create the primitive. */ PEXSetInteriorStyle( dpy, renderer, PEXOCRender, PEXInteriorStyleSolid ); SET_COLOR( 1, 0, 0, color ); /* red */ PEXSetSurfaceColor( dpy, renderer, PEXOCRender, PEXColorTypeRGB, &color ); PEXFillArea2D( dpy, renderer, PEXOCRender, PEXShapeConvex, True, 3, points ); } PEXEndRendering( dpy, renderer, True ); /* Display the buffer. */ swap_data.drawable = window; PEXEscape( dpy, ES_ESCAPE_SWAPBUFFER, sizeof(swap_data), (char *)&swap_data ); XFlush( dpy ); } #define WIN_GEOM "500x500+50+50" main( argc, argv ) int argc; char *argv[]; { XEvent event; XVisualInfo vis_info; XColor bkgd_color; XStandardColormap cmap_info; PEXColorApproxEntry capx_info; PEXRendererAttributes rattrs; PEXExtensionInfo *pexinfo; int done = 0; double angle = 0; esEscapeDblBuffer db_data; unsigned long mask; /* Open a display and initialize PEX. */ dpy = ora_init_pex( argv, &pexinfo ); if ( !dpy ) exit(1); /* Determine the best visual to use. */ ora_find_best_visual( dpy, &vis_info ); /* Get a standard colormap for the visual. */ if ( !ora_get_standard_colormap( dpy, &vis_info, &cmap_info ) ) { fprintf ( stderr, "Cannot find a standard colormap\n" ); exit(1); } ora_set_stdcmap_approx( &vis_info, &cmap_info, &capx_info ); /* Create the window, giving it a gray background. */ bkgd_color.red = bkgd_color.green = bkgd_color.blue = 0x5555; bkgd_color.flags = DoRed | DoGreen | DoBlue; window = ora_create_window( dpy, &vis_info, &cmap_info, WIN_GEOM, &bkgd_color ); /* Set up the PEX renderer. */ if ( IMMED_MODE_SPT( pexinfo ) ) { renderer = ora_setup_renderer( dpy, window, &capx_info, &rattrs ); } else { fprintf( stderr, "No immediate mode.\n" ); exit(1); } /* See if the E&S double-buffer escape is available. */ if ( !ora_enum_type_supported( dpy, window, PEXETEscape, ES_ESCAPE_ET_DBLBUFFER ) ) { fprintf( stderr, "E&S double-buffer escape not available.\n" ); exit(1); } /* Invoke the escape to turn double buffering on. */ db_data.drawable = window; db_data.bufferMode = ES_RENDERER_DBLBUFFER; PEXEscape( dpy, ES_ESCAPE_DBLBUFFER, sizeof(db_data), (char *)&db_data ); /* Set the renderer's background color and clear-image flag. */ rattrs.clear_image = True; rattrs.background_color.type = PEXColorTypeRGB; rattrs.background_color.value.rgb.red = (float)5555/65535;; rattrs.background_color.value.rgb.green = (float)5555/65535;; rattrs.background_color.value.rgb.blue = (float)5555/65535;; mask = PEXRAClearImage | PEXRABackgroundColor; PEXChangeRenderer( dpy, renderer, mask, &rattrs ); /* Read and respond to X events. */ XSelectInput( dpy, window, ExposureMask | ButtonPressMask ); while ( !done ) { XNextEvent( dpy, &event ); switch ( event.type ) { case Expose: /* Flush remaining Expose events, then redraw. */ while ( XCheckTypedWindowEvent( dpy, window, Expose, &event ) ) ; /* empty statement */ redraw( angle ); break; case ButtonPress: switch( event.xbutton.button ) { case Button1: /* Rotate. */ for ( angle = 2*M_PI - M_PI/60; angle > 0; angle -= M_PI/60 ) { redraw( angle ); } /* Reset to initial position. */ redraw( angle = 0 ); break; default: done = 1; break; } break; } } XCloseDisplay( dpy ); return 0; }