Blame view

main.cpp 12.2 KB
6bf618a1   David Mayerich   initial commit
1
  #include <iostream>
a4c3a0e0   Pavel Govyadinov   added the neccess...
2
  #include <sstream>
6bf618a1   David Mayerich   initial commit
3
4
5
6
7
  
  #include <GL/glut.h>
  
  #include <stim/visualization/camera.h>
  #include <stim/parser/arguments.h>
f8a38243   David Mayerich   made changes to s...
8
9
  #include <stim/visualization/obj.h>
  #include <stim/visualization/gl_spharmonics.h>
a4c3a0e0   Pavel Govyadinov   added the neccess...
10
  #include <stim/math/constants.h>
6bf618a1   David Mayerich   initial commit
11
12
13
  
  #define theta_scale		0.01
  #define phi_scale		0.01
f8a38243   David Mayerich   made changes to s...
14
  #define zoom_scale		0.1
6bf618a1   David Mayerich   initial commit
15
16
17
18
19
  
  //create a global camera that will specify the viewport
  stim::camera cam;
  int mx, my;			//mouse coordinates in the window space
  
f8a38243   David Mayerich   made changes to s...
20
  stim::gl_spharmonics<double> S;
6bf618a1   David Mayerich   initial commit
21
22
23
24
25
26
27
  
  float d = 1.5;		//initial distance between the camera and the sphere
  
  bool rotate_zoom = true;	//sets the current camera mode (rotation = true, zoom = false)
  
  stim::arglist args;			//class for processing command line arguments
  
f8a38243   David Mayerich   made changes to s...
28
  bool zaxis = false;			//render the z-axis (set via a command line flag)
6bf618a1   David Mayerich   initial commit
29
30
31
32
33
34
35
36
37
38
39
40
  
  bool init(){
  
  	//set the clear color to white
  	glClearColor(1.0f, 1.0f, 1.0f, 1.0f);
  
  	//initialize the camera
  	cam.setPosition(d, d, d);
  	cam.LookAt(0, 0, 0, 0, 1, 1);
  	cam.setFOV(40);
  
  	//initialize the texture map stuff	
6bf618a1   David Mayerich   initial commit
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
  	S.glInit(256);
  
  	return true;
  }
  
  //code that is run every time the user changes something
  void display(){
  	//clear the screen
  	glClear(GL_DEPTH_BUFFER_BIT | GL_COLOR_BUFFER_BIT);
  
  	//set the projection matrix
  	glMatrixMode(GL_PROJECTION);				//put the projection matrix on the stack
  	glLoadIdentity();							//set it to the identity matrix
  	gluPerspective(cam.getFOV(), 1, 0.001, 1000000);	//set up a perspective projection
  
  
  	//set the model view matrix
  	glMatrixMode(GL_MODELVIEW);					//load the model view matrix to the stack
  	glLoadIdentity();							//set it to the identity matrix
  
  	//get the camera parameters
f8a38243   David Mayerich   made changes to s...
62
63
64
  	stim::vec3<float> p = cam.getPosition();
  	stim::vec3<float> u = cam.getUp();
  	stim::vec3<float> d = cam.getDirection();
6bf618a1   David Mayerich   initial commit
65
66
67
68
69
70
71
  
  	//specify the camera parameters to OpenGL
  	gluLookAt(p[0], p[1], p[2], d[0], d[1], d[2], u[0], u[1], u[2]);
  
  	//draw the sphere
  	S.glRender();
  
f8a38243   David Mayerich   made changes to s...
72
73
74
75
76
77
78
79
80
81
82
83
  	//glClear(GL_DEPTH_BUFFER_BIT | GL_COLOR_BUFFER_BIT);
  
  	//draw the z-axis if requested
  	if(zaxis){
  		glDisable(GL_TEXTURE_2D);
  		glColor3f(0.0f, 1.0f, 0.0f);
  		glBegin(GL_LINES);
  			glVertex3f(0.0, 0.0, 0.0);
  			glVertex3f(0.0, 0.0, 100.0);
  		glEnd();
  	}
  
6bf618a1   David Mayerich   initial commit
84
85
86
87
88
89
90
91
92
  	//flush commands on the GPU
  	glutSwapBuffers();
  }
  
  void mouse_press(int button, int state, int x, int y){
  
  	//set the camera motion mode based on the mouse button pressed
  	if(button == GLUT_LEFT_BUTTON)
  		rotate_zoom = true;
f8a38243   David Mayerich   made changes to s...
93
  	else if(button == GLUT_RIGHT_BUTTON)
6bf618a1   David Mayerich   initial commit
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
  		rotate_zoom = false;
  
  	//if the mouse is pressed
  	if(state == GLUT_DOWN){
  		//set the current mouse position
  		mx = x;		my = y;
  	}
  }
  
  void mouse_drag(int x, int y){
  
  	//if the camera is in rotation mode, rotate
  	if(rotate_zoom == true){
  		float theta = theta_scale * (mx - x);
  		float phi = -phi_scale * (my - y);
  
  		//if the mouse is dragged
  		cam.OrbitFocus(theta, phi);
  	}
  	//otherwize zoom
  	else{
f8a38243   David Mayerich   made changes to s...
115
  		cam.Push(zoom_scale*(my - y));
6bf618a1   David Mayerich   initial commit
116
117
118
119
120
121
122
123
  	}
  
  	//update the mouse position
  	mx = x;		my = y;
  
  	glutPostRedisplay();
  }
  
a4c3a0e0   Pavel Govyadinov   added the neccess...
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
  float uniformRandom()
  {
  	return (  (float)(rand()))/(  (float)(RAND_MAX)); 
  }
  
  std::vector<stim::vec3 <float> >
  sample_sphere(int num_samples, float radius = 1.0)
  {
  
  	float solidAngle = 2*stim::PI;	///Solid angle to sample over
  	float PHI[2], Z[2], range;	///Range of angles in cylinderical coordinates
  	PHI[0] = solidAngle/2;		///project the solid angle into spherical coords
  	PHI[1] = asin(0);		///
  	Z[0] = cos(PHI[0]);		///project the z into spherical coordinates
  	Z[1] = cos(PHI[1]);		///
  	range = Z[0] - Z[1];		///the range of all possible z values.
  
  	float z, theta, phi;		/// temporary individual
  
  	std::vector<stim::vec3<float> > samples;
  
  	//srand(time(NULL));			///set random seed
  	srand(100);			///set random seed
  
  	for(int i = 0; i < num_samples; i++)
  	{
  		z = uniformRandom()*range + Z[1];
  		theta = uniformRandom()*stim::TAU;
  		phi = acos(z);
  		stim::vec3<float> sph(1, theta, phi);
  		stim::vec3<float> cart = sph.sph2cart();
  		sph[0] *= radius;
  		samples.push_back(cart);
  	}
  	samples.push_back(stim::vec3<float>(0.,0.,1.));
  	samples.push_back(stim::vec3<float>(0.,1.0,0.));
  	samples.push_back(stim::vec3<float>(0.,-1.,0.));
  
  
  	std::stringstream name;
        for(int i = 0; i < num_samples; i++)
             name << samples[i].str() << std::endl;
             name << samples[num_samples].str() << std::endl;
             name << samples[num_samples+1].str() << std::endl;
             name << samples[num_samples+2].str() << std::endl;
  	
      
        std::ofstream outFile;
        outFile.open("New_Pos_Vectors.txt");
        outFile << name.str().c_str();
  
  	return samples;
  }
  
6bf618a1   David Mayerich   initial commit
178
179
180
  void process_arguments(int argc, char* argv[]){
  
  	args.add("help", "prints this help");
f8a38243   David Mayerich   made changes to s...
181
182
183
184
185
186
  	args.add("rand", "generates a random set of SH coefficients", "", "[N min max]");
  	args.add("sparse", "generates a function based on a set of sparse basis functions", "", "[l0 m0 c0 l1 m1 c1 l2 m2 c2 ...]");
  	args.add("basis", "displays the specified SH basis function", "", "n, or [l m]");
  	args.add("obj", "approximates a geometric object given as a Wavefront OBJ file", "", "filename");
  	args.add("out", "filename for outputting spherical harmonics coefficients", "", "filename");
  	args.add("zaxis", "render the z-axis as a green line");
a4c3a0e0   Pavel Govyadinov   added the neccess...
187
  	args.add("pdf", "outputs the PDF if an OBJ files is given");
6bf618a1   David Mayerich   initial commit
188
189
190
191
  
  	//process the command line arguments
  	args.parse(argc, argv);
  
f8a38243   David Mayerich   made changes to s...
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
  	//set the z-axis flag
  	if(args["zaxis"].is_set())
  		zaxis = true;
  
  	//if arguments are specified, push them as coefficients
  	if(args.nargs() > 0){
  		//push all of the arguments to the spherical harmonics class as coefficients
  		for(unsigned int a = 0; a < args.nargs(); a++)
  			S.push(atof(args.arg(a).c_str()));
  	}
  
  	//if the user wants to use a random set of SH coefficients
  	else if(args["rand"].is_set()){
  
  		//return an error if the user specifies both fixed and random coefficients
  		if(args.nargs() != 0){
  			std::cout<<"Error: both fixed and random coefficients are specified"<<std::endl;
  			exit(1);
  		}
  
  		//seed the random number generator
  		srand(time(NULL));
  
  		unsigned int N = args["rand"].as_int(0);		//get the number of random coefficients
  		double Cmin = args["rand"].as_float(1);			//get the minimum and maximum coefficient values
  		double Cmax = args["rand"].as_float(2);
  
  		//generate the coefficients
  		for(unsigned int c = 0; c < N; c++){
  
  			double norm = (double) rand() / RAND_MAX;		//calculate a random number in the range [0, 1]
  			double scaled = norm * (Cmax - Cmin) + Cmin;	//scale the random number to [Cmin, Cmax]
  			S.push(scaled);									//push the value as a coefficient
  		}
  	}
  	else if(args["sparse"].is_set()){
  
  		//calculate the number of sparse coefficients
  		unsigned int nC = args["sparse"].nargs() / 3;
  
  		std::vector<unsigned int> C;	//vector of 1D coefficients
  		unsigned int Cmax = 0;			//maximum coefficient provided
  
  		std::vector<double> V;			//vector of 1D coefficient values
  
  		unsigned int c;
  		int l, m;
  		double v;
  		//for each provided coefficient
  		for(unsigned int i = 0; i < nC; i++){
  
  			//load data for a single coefficient from the command line
  			l = args["sparse"].as_int( i * 3 + 0 );
  			m = args["sparse"].as_int( i * 3 + 1 );
  			v = args["sparse"].as_float( i * 3 + 2 );
  
  			//calculate the 1D coefficient
  			c = pow(l + 1, 2) - (l - m) - 1;
  
  			//update the maximum coefficient index
  			if(c > Cmax) Cmax = c;
6bf618a1   David Mayerich   initial commit
253
  
f8a38243   David Mayerich   made changes to s...
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
  			//insert the coefficient and value into vectors
  			C.push_back(c);
  			V.push_back(v);			
  		}
  
  		//set the size of the SH coefficient array
  		S.resize(Cmax + 1);
  		
  		//insert each coefficient
  		for(unsigned int i = 0; i < nC; i++){
  			S.setc(C[i], V[i]);
  		}
  
  	}
  	else if(args["obj"].is_set()){
  
  		std::string filename = args["obj"].as_string(0);
  		unsigned int l = args["obj"].as_int(1);
a4c3a0e0   Pavel Govyadinov   added the neccess...
272
273
274
275
  		int p = args["obj"].as_int(2);
  		std::cout << p << std::endl;
  		std::vector<stim::vec3<float> > sphere = sample_sphere(p);
  		p = p+3;
f8a38243   David Mayerich   made changes to s...
276
277
278
279
280
281
  
  		//create an obj object
  		stim::obj<double> object(filename);
  
  		//get the centroid of the object
  		stim::vec<double> c = object.centroid();
a4c3a0e0   Pavel Govyadinov   added the neccess...
282
  		c[0] = 0; c[1] = 0; c[2] = 0;
f8a38243   David Mayerich   made changes to s...
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
  
  		//get the number of vertices in the model
  		unsigned int nV = object.numV();
  
  		//for each vertex in the model, create an MC sample
  		std::vector< stim::vec<double> > spherical;
  		stim::vec<float> sample;
  		stim::vec<float> centered;
  		for(unsigned int i = 0; i < nV; i++){
  
  			sample = object.getV(i);			//get a vertex in cartesian coordinates
  			centered = sample - c;
  			spherical.push_back(centered.cart2sph());
  		}
  
  		//generate the spherical PDF
  		stim::spharmonics<double> P;
  		P.pdf(spherical, l, l);
a4c3a0e0   Pavel Govyadinov   added the neccess...
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
  		std::vector<float> weights;		///array of weights
  		if(args["pdf"].is_set())
  		{
  //			S.pdf(spherical, l, l);
  			for(int i = 0; i < p; i++)	///for each point on the sphere.
  			{
  				float val = 0;		///value starts with 0
  				for(int j = 0; j < nV; j++)		///for each point on surface
  				{
  					stim::vec3<float> star(object.getV(j)[0] - c[0],
  						object.getV(j)[1] - c[1], 
  						object.getV(j)[2] - c[2]);		///center each point on the model 
  //					val += abs(star.dot(sphere[i])); 		///sum the dot product of the centered point and the sphere.
  					if(star.dot(sphere[i]) > 0)
  						val += pow(star.dot(sphere[i]),8); 		///sum the dot product of the centered point and the sphere.
  				}
  				weights.push_back(val);
  			}
  			
  			S.mcBegin(l,l);
  			for(int i = 0; i < p; i++)
  			{
  				if(sphere[i] == stim::vec3<float>(0., 0., 1.))
  				{
  					std::cout << i  << sphere[i] << " " << weights[i] << std::endl;
  				}
  				if(sphere[i] == stim::vec3<float>(0., 1., 0.))
  				{
  					std::cout << i << sphere[i] << " " << weights[i] << std::endl;
  				}
  				if(sphere[i] == stim::vec3<float>(0., -1., 0.))
  				{
  					std::cout << i <<  sphere[i] << " " << weights[i] << std::endl;
  				}
  				stim::vec3<float> sph = sphere[i].cart2sph();
  				S.mcSample(sph[1], sph[2], weights[i]);
  			}
  			S.mcEnd();
f8a38243   David Mayerich   made changes to s...
339
  
f8a38243   David Mayerich   made changes to s...
340
  		}
a4c3a0e0   Pavel Govyadinov   added the neccess...
341
342
343
344
345
346
347
348
349
350
351
352
353
  		else{ 
  			//begin Monte-Carlo sampling, using the model vertices as samples
  			S.mcBegin(l, l);
  			double theta, phi, fx, px;
  			for(unsigned int i = 0; i < nV; i++){
  				theta = spherical[i][1];
  				phi = spherical[i][2];
  				fx = spherical[i][0];
  				px = P(theta, phi);
  				S.mcSample(theta, phi, fx / px);
  			}
  			S.mcEnd();
  		}
f8a38243   David Mayerich   made changes to s...
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
  	}
  
  	//if the user specifies an SH basis function
  	else if(args["basis"].is_set()){
  
  		unsigned int n;
  
  		//if the user specifies one index for the basis function
  		if(args["basis"].nargs() == 1)
  			n = args["basis"].as_int(0);
  		else if(args["basis"].nargs() == 2){
  			int l = args["basis"].as_int(0);		//2D indexing (l, m)
  			int m = args["basis"].as_int(1);
  
  			n = pow(l+1, 2) - (l - m) - 1;			//calculate the 1D index
  		}
  
  		//add zeros for the first (n-1) coefficients
  		for(unsigned int c = 0; c < n; c++)
  			S.push(0);
  
  		//add the n'th coefficient
  		S.push(1);
  	}
  
  	//output the spherical harmonics coefficients if requested
  	if(args["out"].is_set()){
  		
  		if(args["out"].nargs() == 0)
  			std::cout<<S.str()<<std::endl;
  		else{
  
  			//open the output file
  			std::ofstream outfile;
  			outfile.open(args["out"].as_string(0).c_str());
  
  			outfile<<S.str();
  
  			outfile.close();
  		}
  	}
  
  
  	
  	
6bf618a1   David Mayerich   initial commit
399
400
401
402
403
  
  	//if the user asks for help, give it and exit
  	if(args["help"].is_set()){
  		std::cout<<"usage: shview c0 c1 c2 c3 ... --option [A B C]"<<std::endl;
  		std::cout<<"examples:"<<std::endl;
f8a38243   David Mayerich   made changes to s...
404
405
406
407
408
409
410
  		std::cout<<"   generate a spherical function with 4 coefficients (l=0 to 2)"<<std::endl;
  		std::cout<<"          shview 1.3 0.2 2.3 1.34"<<std::endl;
  		std::cout<<"   display a spherical function representing the spherical harmonic l = 3, m = -2"<<std::endl;
  		std::cout<<"          shview --basis 3 -2"<<std::endl;
  
  
  
6bf618a1   David Mayerich   initial commit
411
412
413
414
415
416
417
  		std::cout<<args.str();
  		exit(0);
  	}
  }
  
  int main(int argc, char *argv[]){
  
f8a38243   David Mayerich   made changes to s...
418
419
420
421
  #ifdef _WIN32
  	args.set_ansi(false);
  #endif
  
6bf618a1   David Mayerich   initial commit
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
  	//initialize GLUT
  	glutInit(&argc, argv);
  
  	//process arguments
  	process_arguments(argc, argv);
  
  	//set the size of the GLUT window
  	glutInitWindowSize(500, 500);
  
  	glutInitDisplayMode(GLUT_DEPTH | GLUT_RGBA | GLUT_DOUBLE);
  
  	//create the GLUT window (and an OpenGL context)
  	glutCreateWindow("Spherical Harmonic Viewport");
  
  	//set the display function (which will be called repeatedly by glutMainLoop)
  	glutDisplayFunc(display);
  
  	//set the mouse press function (called when a mouse button is pressed)
  	glutMouseFunc(mouse_press);
  	//set the mouse motion function (which will be called any time the mouse is dragged)
  	glutMotionFunc(mouse_drag);
  
  	//run the initialization function
  	if(!init())
  		return 1;	//return an error if it fails
  
  
  	//enter the main loop
  	glutMainLoop();
  
  	//return 0 if everything is awesome
  	return 0;
  
  
  
  }