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main.C
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/*
This file is part of Jenn.
Copyright 2001-2007 Fritz Obermeyer.
Jenn is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation; either version 2 of the License, or
(at your option) any later version.
Jenn is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Jenn; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "main.h"
#ifdef CYGWIN_HACKS
#define GLUT_STATIC
#endif
#if defined(__APPLE__) && defined(__MACH__)
#include <GLUT/glut.h>
#else
#include <GL/glut.h>
#endif
#include <cmath>
#include <cstdlib>
#include <cstdio> //for sprintf
#include <vector>
#include <utility>
#include <set>
#include "definitions.h"
#include "linalg.h"
#include "menus.h"
#define MAX_TIME_STEP 0.5f
//keyboard & mouse numbers
#define ENTERKEY 13
#define ESCKEY 27
#define SCROLL_UP 3
#define SCROLL_DOWN 4
//#define DOUBLE_CLICK
const Logging::Logger logger("main", Logging::INFO);
//[ motion ]---------------------
//pause control
void drift ();
void end_pause ()
{
if (not projector->paused) return;
projector->paused = false;
time_difference();
glutIdleFunc(drift);
}
void beg_pause (bool redraw)
{
if (projector->paused) return;
glutIdleFunc(NULL);
projector->paused = true;
time_difference();
if (redraw) projector->display(); //to draw a paused image
}
void toggle_pause () { if (projector->paused) end_pause(); else beg_pause(); }
//interaction
void display ();
void mouse (int button, int state, int X, int Y)
{
//simulate right/middle button using ctrl/alt
if (button == GLUT_LEFT_BUTTON) {
if (glutGetModifiers() & GLUT_ACTIVE_CTRL) {
button = GLUT_RIGHT_BUTTON;
} else if (glutGetModifiers() & GLUT_ACTIVE_ALT) {
button = GLUT_MIDDLE_BUTTON;
}
}
logger.debug() << "button " << button << " is in state " << state |0;
//panning
if (button == GLUT_LEFT_BUTTON) {
if (state == GLUT_DOWN && (glutGetModifiers() & GLUT_ACTIVE_SHIFT)) {
projector->start_pan(X, Y);
return;
}
if (state == GLUT_UP) projector->end_pan();
}
#ifdef __EMSCRIPTEN__
//scrolling controls zoom
if ((button == SCROLL_UP || button == SCROLL_DOWN) && state == GLUT_DOWN) {
projector->zoom(button == SCROLL_UP ? ZOOM_OUT : ZOOM_IN);
return;
}
#else
//scrolling controls zoom
if (button == SCROLL_UP) {
if (state == GLUT_UP) projector->zoom(ZOOM_IN);
update_title();
return;
} else if (button == SCROLL_DOWN) {
if (state == GLUT_UP) projector->zoom(ZOOM_OUT);
update_title();
return;
}
//check for menu operation
bool on_menu = Menus::Menu::mouse(button, state, X, Y);
if (on_menu and state == GLUT_DOWN) return;
#endif
//start dragging
bool first_down = (animator->drag_channels == 0);
if (first_down) {
//begin dragging
float x = projector->convert_x(X);
float y = projector->convert_y(Y);
animator->set_drag(x,y);
end_pause();
animator->reset_accel();
}
//update drag channels
if (state == GLUT_DOWN) animator->drag_channels |= 1 << button;
if (state == GLUT_UP) animator->drag_channels &= ~(1 << button);
//click on vertices
//static float last_time = elapsed_time() - 1.0; //for double-clicking
//static int last_button = 0; //for double-clicking
if (state == GLUT_DOWN) {
int selected = projector->select(X, Y);
if (selected < 0) return;
#ifdef DOUBLE_CLICK
float time = elapsed_time();
bool double_click = (button == last_button) and (time-last_time < 0.5);
if (double_click) {
#endif
switch (button) {
case GLUT_LEFT_BUTTON: drawing->play(selected, 1); break;
case GLUT_RIGHT_BUTTON: drawing->play(selected, 2); break;
case GLUT_MIDDLE_BUTTON: drawing->play(selected, 0); break;
}
#ifdef DOUBLE_CLICK
last_button = 0;
last_time = time - 1.0;
} else {
last_button = button;
last_time = time;
}
#endif
}
}
void mouse_motion (int X, int Y)
{
bool panning = projector->pan(X, Y);
if (panning) return;
float x = projector->convert_x(X);
float y = projector->convert_y(Y);
animator->rot_drag(x, y);
}
void spaceball_button (int button, int state)
{
enum {
BUT_1 = 1, BUT_2, BUT_3, BUT_4, BUT_5, BUT_6, BUT_7, BUT_8,
BUT_STAR, BUT_LEFT, BUT_RIGHT
};
switch (state) {
case GLUT_DOWN:
logger.info() << "pressed spaceball button " << button |0;
break;
case GLUT_UP:
logger.info() << "released spaceball button " << button |0;
break;
}
}
void spaceball_motion (int X, int Y, int Z)
{
const float scale = 1.0 / 1000.0;
float x = scale * X;
float y = scale * Y;
float z = scale * Z;
animator->set_trans_force(x,y,z);
}
void spaceball_rotate (int X, int Y, int Z)
{
const float scale = 1.0 / 1800.0;
float x = scale * X;
float y = scale * Y;
float z = scale * Z;
animator->set_rot_force(x,y,z);
}
void drift ()
{
float dt = min(time_difference(), MAX_TIME_STEP);
if (dt) animator->drift(dt);
glutPostRedisplay();
}
void keyboard (unsigned char key, int w_x, int w_y)
{
switch (key) {
case ESCKEY: exit(0); break;
//XXX: these need to be updated
case 'k': Menus::keyboard_help(); break;
case 'h': //help
case '?': //help
case '/': Menus::main_help(); break;
case 'd': drawing->toggle_grid(); break;
case 'v': drawing->toggle_verts(); break;
case 'e': drawing->toggle_edges(); break;
case 'f': drawing->toggle_faces(); break;
case 'l': drawing->toggle_fancy(); break;
case 'L': drawing->toggle_curved(); break;
case 'H': drawing->toggle_hazy(); break;
case 'w': projector->toggle_wireframe(); break;
case 'K': projector->toggle_contrast(); break;
case 'r': projector->toggle_reversed(); break;
case 'b': projector->toggle_blur(); break;
case '1': projector->set_stereo(false); break;
case '2': projector->set_stereo(true); break;
case 'q': projector->toggle_quality(); break;
case 'a': projector->scale_aperture(1/M_SQRT2); break;
case 'A': projector->scale_aperture(M_SQRT2); break;
case 'n': projector->move_nearer(); break;
case 'N': projector->move_farther(); break;
case 'X': projector->reset(); break;
case 'm': animator->shift_channels(); break;
case ' ': animator->toggle_stopped(); break;
case 'c': animator->toggle_centered(); break;
case 'C': animator->set_center(); break;
case 'x': animator->reset();
projector->pan_center(); break;
case 'P': projector->pan_center(); break;
case 's': animator->slow_down(); break;
case 'S': animator->speed_up(); break;
case 'D': animator->toggle_drifting(); break;
case 'y': animator->toggle_flying(); break;
case 't': projector->toggle_trail(); break;
case 'T': projector->toggle_trailing(); break;
case 'i': animator->invert(); break;
case 'p': toggle_pause(); break;
case 'F': toggle_fullscreen(); break;
case 'z': projector->zoom(ZOOM_IN); update_title(); break;
case 'Z': projector->zoom(ZOOM_OUT); update_title(); break;
case '=': //same as '+'
case '+': drawing->set_tube_rad(drawing->get_tube_rad()*1.2f); break;
case '-': drawing->set_tube_rad(drawing->get_tube_rad()/1.2f); break;
case 'g': drawing->export_stl(); break;
case 'G': drawing->export_graph(); break;
}
}
void special_keys (int key, int, int)
{
if (glutGetModifiers() & GLUT_ACTIVE_CTRL) {
switch (key) {
case GLUT_KEY_LEFT: projector->pan_left (); break;
case GLUT_KEY_RIGHT: projector->pan_right(); break;
case GLUT_KEY_UP: projector->pan_up (); break;
case GLUT_KEY_DOWN: projector->pan_down (); break;
}
return;
}
if (glutGetModifiers() & GLUT_ACTIVE_SHIFT) {
switch (key) {
case GLUT_KEY_LEFT: projector->pan_left (0.0625f); break;
case GLUT_KEY_RIGHT: projector->pan_right(0.0625f); break;
case GLUT_KEY_UP: projector->pan_up (0.0625f); break;
case GLUT_KEY_DOWN: projector->pan_down (0.0625f); break;
//polytope selectors
case GLUT_KEY_F1: Polytope::select(522323134); break;
case GLUT_KEY_F2: Polytope::select(522323124); break;
case GLUT_KEY_F3: Polytope::select(522323034); break;
case GLUT_KEY_F4: Polytope::select(522323024); break;
case GLUT_KEY_F5: Polytope::select(522323023); break;
case GLUT_KEY_F6: Polytope::select(522323014); break;
case GLUT_KEY_F7: Polytope::select(522323013); break;
case GLUT_KEY_F8: Polytope::select(522323012); break;
case GLUT_KEY_F9: Polytope::select(522323004); break;
case GLUT_KEY_F10: Polytope::select(522323003); break;
case GLUT_KEY_F11: Polytope::select(522323002); break;
case GLUT_KEY_F12: Polytope::select(522323001); break;
}
update_title();
return;
}
switch (key) {
case GLUT_KEY_LEFT: drawing->back(); break;
case GLUT_KEY_RIGHT: drawing->forward(); break;
case GLUT_KEY_DOWN: projector->zoom(ZOOM_OUT); break;
case GLUT_KEY_UP: projector->zoom(ZOOM_IN); break;
//polytope selectors
case GLUT_KEY_F1: Polytope::select(Polytope::the_5_cell); break;
case GLUT_KEY_F2: Polytope::select(Polytope::the_8_cell); break;
case GLUT_KEY_F3: Polytope::select(Polytope::the_16_cell); break;
case GLUT_KEY_F4: Polytope::select(Polytope::the_24_cell); break;
case GLUT_KEY_F5: Polytope::select(Polytope::the_120_cell); break;
case GLUT_KEY_F6: Polytope::select(Polytope::the_600_cell); break;
case GLUT_KEY_F7: Polytope::select(Polytope::graph_torus); break;
case GLUT_KEY_F8: Polytope::select(Polytope::graph_333); break;
case GLUT_KEY_F9: Polytope::select(Polytope::graph_Y); break;
case GLUT_KEY_F10: Polytope::select(Polytope::graph_334); break;
case GLUT_KEY_F11: Polytope::select(Polytope::graph_343); break;
case GLUT_KEY_F12: Polytope::select(Polytope::graph_335); break;
}
update_title();
}
//displaying
void finish_buffer ()
{
Menus::Menu::display();
glutSwapBuffers();
}
void update_title ()
{
#ifndef __EMSCRIPTEN__
static char title_string[256];
sprintf(title_string, "Jenn. %.1f%%", 100.0 / animator->vis_rad);
glutSetWindowTitle(title_string);
#endif
}
void display () { projector->display(); }
void reshape (int w, int h)
{
Menus::Menu::reshape(w, h);
projector->reshape(w, h);
}
//[ glut manager class ]----------
class GlutManager
{
static int main_window;
public:
GlutManager (int *argc, char **argv,
int init_width=800, int init_height=600,
bool show_start_msg=true);
static void init_callbacks ();
static void toggle_fullscreen ();
};
typedef GlutManager GM;
int GM::main_window;
GM *gl_manager = NULL;
GlutManager::GlutManager (int *argc, char **argv,
int init_width, int init_height,
bool show_start_msg)
{
//define main window
glutInit(argc,argv);
//set display mode
#ifdef __EMSCRIPTEN__
glutInitDisplayMode( GLUT_DOUBLE | GLUT_RGBA | GLUT_DEPTH
| GLUT_MULTISAMPLE );
#else
glutInitDisplayMode( GLUT_DOUBLE | GLUT_RGBA | GLUT_DEPTH
| GLUT_ACCUM | GLUT_MULTISAMPLE );
if (not glutGet(GLUT_DISPLAY_MODE_POSSIBLE)) {
logger.warning()
<< "bad display mode: some features may be unavailable" |0;
glutInitDisplayMode( GLUT_DOUBLE | GLUT_RGBA | GLUT_DEPTH );
}
#endif
//set window size
glutInitWindowSize(init_width, init_height);
projector->init_size(init_width, init_height);
glutInitWindowPosition(50,50);
main_window = glutCreateWindow(argv[0]);
update_title();
//glutGameModeString("1600x1200:16");
glutGameModeString("");
//startup
init_callbacks();
if (show_start_msg) Menus::start_menu();
glutMainLoop();
}
void GlutManager::init_callbacks ()
{
//set callbacks
glutDisplayFunc(display);
glutReshapeFunc(reshape);
glutMouseFunc(mouse);
glutKeyboardFunc(keyboard);
glutSpecialFunc(special_keys);
glutMotionFunc(mouse_motion);
glutSpaceballButtonFunc(spaceball_button);
glutSpaceballMotionFunc(spaceball_motion);
glutSpaceballRotateFunc(spaceball_rotate);
glutIdleFunc(drift);
//set parameters
glClearColor(COLOR_BG,0.0);
glClearAccum(0,0,0,1);
glShadeModel(GL_FLAT);
glEnable(GL_LINE_SMOOTH);
glHint(GL_LINE_SMOOTH_HINT, GL_FASTEST);
//glHint(GL_LINE_SMOOTH_HINT, GL_NICEST);
//glEnable(GL_POLYGON_SMOOTH);
//glHint(GL_POLYGON_SMOOTH_HINT, GL_NICEST);
//glHint(GL_FOG_HINT, GL_DONT_CARE);
#ifndef CYGWIN_HACKS
glHint(GL_MULTISAMPLE_FILTER_HINT_NV, GL_NICEST);
#endif
glEnable(GL_BLEND);
glBlendFunc(GL_SRC_ALPHA,GL_ONE_MINUS_SRC_ALPHA);
glAccum(GL_MULT, 0.0f);
//glDisable(GL_DITHER);
drawing->update();
Menus::RootMenu::open();
}
void GlutManager::toggle_fullscreen ()
{
#ifdef __EMSCRIPTEN__
glutFullScreen();
#else
// this does not seem to work:
//if (not glutGameModeGet(GLUT_GAME_MODE_POSSIBLE)) {
// logger.info() << "fullscreen not available" |0;
// return;
//}
if (not glutGameModeGet(GLUT_GAME_MODE_ACTIVE)) {
glutEnterGameMode();
init_callbacks();
int w = glutGameModeGet(GLUT_GAME_MODE_WIDTH);
int h = glutGameModeGet(GLUT_GAME_MODE_HEIGHT);
reshape(w,h);
// this does not seem to work
//int d = glutGameModeGet(GLUT_GAME_MODE_PIXEL_DEPTH);
//logger.info() << "pixel depth = " << d |0;
} else {
glutLeaveGameMode();
init_callbacks();
}
//this doesn't guarantee full-screen images.
//glutFullScreen();
#endif
}
void toggle_fullscreen () { GM::toggle_fullscreen(); }
//[ main ]--------------------------------------------------
const char* const help_message =
"Usage: jenn [options]\n\
Starts Jenn3d [with specified model]\n\
Options:\n\
- Do not print startup message\n\
-c c12 c13 c14 c23 c24 c34 Give Coxeter matrix by upper triangle\n\
-g [generators] Subgroup generators, e.g. 2 3 4\n\
-v [generators] Vertex stabilizing generators, e.g. 1 2\n\
-e edge [more edges] Define an edge, e.g. 132322214\n\
-f face [more faces] Define a face, e.g. 34\n\
-w w1 w2 w3 w4 Define the vertex weights, e.g. 3 2 2 1\n\
-s width height Set initial window size\n\
-h, --help Display this message\n\
see notes.text for complete examples of command-line arguments\n";
int main(int argc,char **argv)
{
Logging::title("Jenn. Copyright 2001-2007 Fritz Obermeyer.");
#ifndef CYGWIN_HACKS
srand48(time_seed());
#endif
//default polytope: 24-cell
typedef Polytope::Word Word;
Polytope::WordList gens, v_cogens, e_gens, f_gens;
int coxeter[6] = {3,2,2,4,2,3};
for (int i=0; i<4; ++i) {
gens.push_back(Word(1,i));
}
v_cogens.push_back(Word(1,1));
v_cogens.push_back(Word(1,2));
v_cogens.push_back(Word(1,3));
for (int i=0; i<4; ++i) {
e_gens.push_back(Word(1,i));
for (int j=i+1; j<4; ++j) {
Word word(1,i);
word.push_back(j);
f_gens.push_back(word);
}
}
Vect weights = const_vect(1);
//default window settings
int width = 800, height = 600;
//read command-line options
if (argc > 1) {
v_cogens.clear(); //these are always cleared
//skip command name
int i=1;
//parse generators & e_gens
Polytope::WordList* words = &v_cogens;
std::string _c("-c"), _g("-g"), _v("-v"), _e("-e"), _f("-f"), _w("-w");
std::string _("-"), _s("-s"), _h("-h"), __help("--help");
for (; i<argc; ++i) {
const char* arg = argv[i];
//ignore empty argument
if (arg == _) continue;
//set init window size
if (arg == _s) {
Assert (i+2 < argc, "too few size params (2 req'd)");
width = atoi(argv[i+1]);
height = atoi(argv[i+2]);
i += 2;
continue;
}
//print help message
if (arg == _h or arg == __help) {
std::cout << help_message;
return 0;
}
//read coxeter matrix
if (arg == _c) {
Assert (i+6 < argc, "too few Coxeter matrix entries (6 req'd)");
for (int j=0; j<6; ++j) {
coxeter[j] = atoi(argv[i+j+1]);
}
i += 6;
continue;
}
//start reading subgroup generators
if (arg == _g) {
gens.clear();
e_gens.clear();
f_gens.clear();
words = &gens;
continue;
}
//start reading vertex stabilizer subgroup generators
if (arg == _v) {
words = &v_cogens;
continue;
}
//start reading edge generators
if (arg == _e) {
e_gens.clear();
words = &e_gens;
continue;
}
//start reading face generators
if (arg == _f) {
f_gens.clear();
words = &f_gens;
continue;
}
//read vector of weights (can occur in between other args)
if (arg == _w) {
Assert (i+4 < argc, "too few weights (4 required)");
for (int j=0; j<4; ++j) {
weights[j] = atof(argv[i+1+j]);
}
i += 4;
continue;
}
//otherwise read an element of a word
words->push_back(Polytope::str2word(arg));
}
}
//create drawing
Polytope::view(coxeter, gens, v_cogens, e_gens, f_gens, weights);
logger.debug() << "starting animator" |0;
animator = new Animation::Animate();
projector = new Projection::Projector();
gl_manager = new GlutManager(&argc, argv, width, height, argc<=1);
delete gl_manager;
return 0;
}