shapes demo: now only draw necessary size info, and calling that info by
the right name. git-svn-id: https://svn.code.sf.net/p/freeglut/code/trunk@1409 7f0cb862-5218-0410-a997-914c9d46530a
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@ -422,6 +422,17 @@ static GLboolean animateXRot = GL_FALSE;
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static GLboolean useShader = GL_FALSE;
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static GLboolean useShader = GL_FALSE;
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static GLboolean visNormals = GL_FALSE;
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static GLboolean visNormals = GL_FALSE;
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/*
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* Enum to tell drawSizeInfo what to draw for each object
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*/
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#define GEO_NO_SIZE 0
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#define GEO_SIZE 1
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#define GEO_SCALE 2
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#define GEO_INNER_OUTER_RAD 4
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#define GEO_RAD 8
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#define GEO_BASE_HEIGHT 16
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#define GEO_RAD_HEIGHT 32
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/*
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/*
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* These one-liners draw particular objects, fetching appropriate
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* These one-liners draw particular objects, fetching appropriate
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* information from the above globals. They are just thin wrappers
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* information from the above globals. They are just thin wrappers
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@ -527,24 +538,25 @@ typedef struct
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const char * const name;
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const char * const name;
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void (*solid) (void);
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void (*solid) (void);
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void (*wire) (void);
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void (*wire) (void);
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int drawSizeInfoFlag;
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} entry;
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} entry;
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#define ENTRY(e) {#e, drawSolid##e, drawWire##e}
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#define ENTRY(e,f) {#e, drawSolid##e, drawWire##e,f}
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static const entry table [] =
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static const entry table [] =
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{
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{
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ENTRY (Tetrahedron),
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ENTRY (Tetrahedron,GEO_NO_SIZE),
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ENTRY (Cube),
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ENTRY (Cube,GEO_SIZE),
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ENTRY (Octahedron),
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ENTRY (Octahedron,GEO_NO_SIZE),
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ENTRY (Dodecahedron),
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ENTRY (Dodecahedron,GEO_NO_SIZE),
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ENTRY (RhombicDodecahedron),
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ENTRY (RhombicDodecahedron,GEO_NO_SIZE),
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ENTRY (Icosahedron),
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ENTRY (Icosahedron,GEO_NO_SIZE),
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ENTRY (SierpinskiSponge),
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ENTRY (SierpinskiSponge,GEO_SCALE),
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ENTRY (Teapot),
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ENTRY (Teapot,GEO_SIZE),
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ENTRY (Torus),
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ENTRY (Torus,GEO_INNER_OUTER_RAD),
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ENTRY (Sphere),
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ENTRY (Sphere,GEO_RAD),
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ENTRY (Cone),
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ENTRY (Cone,GEO_BASE_HEIGHT),
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ENTRY (Cylinder),
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ENTRY (Cylinder,GEO_RAD_HEIGHT),
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ENTRY (Cuboctahedron) /* This one doesn't work when in shader mode and is then skipped */
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ENTRY (Cuboctahedron,GEO_SIZE) /* This one doesn't work when in shader mode and is then skipped */
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};
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};
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#undef ENTRY
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#undef ENTRY
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@ -594,8 +606,61 @@ static void shapesPrintf (int row, int col, const char *fmt, ...)
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glPopMatrix();
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glPopMatrix();
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}
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}
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/* GLUT callback Handlers */
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/* Print info about the about the current shape and render state on the screen */
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static void DrawSizeInfo(int *row)
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{
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switch (table [function_index].drawSizeInfoFlag)
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{
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case GEO_NO_SIZE:
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break;
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case GEO_SIZE:
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shapesPrintf ((*row)++, 1, "Size Up Down : %f", orad);
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break;
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case GEO_SCALE:
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shapesPrintf ((*row)++, 1, "Scale Up Down : %f", orad);
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break;
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case GEO_INNER_OUTER_RAD:
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shapesPrintf ((*row)++, 1, "Inner radius Left Right: %f", irad);
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shapesPrintf ((*row)++, 1, "Outer radius Up Down : %f", orad);
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break;
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case GEO_RAD:
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shapesPrintf ((*row)++, 1, "Radius Up Down : %f", orad);
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break;
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case GEO_BASE_HEIGHT:
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shapesPrintf ((*row)++, 1, "Base Left Right: %f", irad);
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shapesPrintf ((*row)++, 1, "Height Up Down : %f", orad);
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break;
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case GEO_RAD_HEIGHT:
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shapesPrintf ((*row)++, 1, "Radius Left Right: %f", irad);
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shapesPrintf ((*row)++, 1, "Height Up Down : %f", orad);
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break;
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}
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}
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static void drawInfo()
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{
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int row = 1;
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shapesPrintf (row++, 1, "Shape PgUp PgDn: %s", table [function_index].name);
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shapesPrintf (row++, 1, "Slices +-: %d Stacks <>: %d", slices, stacks);
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shapesPrintf (row++, 1, "nSides +-: %d nRings <>: %d", slices, stacks);
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shapesPrintf (row++, 1, "Depth (): %d", depth);
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DrawSizeInfo(&row);
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if (persProject)
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shapesPrintf (row++, 1, "Perspective projection (p)");
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else
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shapesPrintf (row++, 1, "Orthographic projection (p)");
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if (useShader)
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shapesPrintf (row++, 1, "Using shader (s)");
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else
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shapesPrintf (row++, 1, "Using fixed function pipeline (s)");
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if (animateXRot)
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shapesPrintf (row++, 1, "2D rotation (r)");
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else
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shapesPrintf (row++, 1, "1D rotation (r)");
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shapesPrintf (row++, 1, "visualizing normals: %i (n)",visNormals);
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}
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/* GLUT callback Handlers */
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static void
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static void
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resize(int width, int height)
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resize(int width, int height)
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{
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{
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@ -695,30 +760,12 @@ static void display(void)
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glColor3d(0.1,0.1,0.4);
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glColor3d(0.1,0.1,0.4);
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}
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}
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if( show_info ) {
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if( show_info )
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shapesPrintf (1, 1, "Shape PgUp PgDn: %s", table [function_index].name);
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/* print info to screen */
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shapesPrintf (2, 1, "Slices +-: %d Stacks <>: %d", slices, stacks);
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drawInfo();
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shapesPrintf (3, 1, "nSides +-: %d nRings <>: %d", slices, stacks);
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shapesPrintf (4, 1, "Depth (): %d", depth);
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shapesPrintf (5, 1, "Outer radius Up Down : %f", orad);
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shapesPrintf (6, 1, "Inner radius Left Right: %f", irad);
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if (persProject)
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shapesPrintf (7, 1, "Perspective projection (p)");
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else
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else
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shapesPrintf (7, 1, "Orthographic projection (p)");
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if (useShader)
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shapesPrintf (8, 1, "Using shader (s)");
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else
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shapesPrintf (8, 1, "Using fixed function pipeline (s)");
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if (animateXRot)
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shapesPrintf (9, 1, "2D rotation (r)");
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else
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shapesPrintf (9, 1, "1D rotation (r)");
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shapesPrintf (10, 1, "visualizing normals: %i (n)",visNormals);
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} else {
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/* print to command line instead */
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/* print to command line instead */
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printf ( "Shape %d slides %d stacks %d\n", function_index, slices, stacks ) ;
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printf ( "Shape %d slides %d stacks %d\n", function_index, slices, stacks ) ;
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}
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glutSwapBuffers();
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glutSwapBuffers();
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}
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}
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