PTdecode/CImg-1.3.0/examples/curve_editor.cpp

Wed, 05 Aug 2009 15:00:54 +0100

author
Philip Pemberton <philpem@philpem.me.uk>
date
Wed, 05 Aug 2009 15:00:54 +0100
changeset 12
96e1df9bd27c
parent 5
1204ebf9340d
permissions
-rwxr-xr-x

small changes to hexdump code to stop a gcc warning on platforms where sizeof(int) != sizeof(int*) e.g. x86_64

philpem@5 1 /*
philpem@5 2 #
philpem@5 3 # File : curve_editor.cpp
philpem@5 4 # ( C++ source file )
philpem@5 5 #
philpem@5 6 # Description : A simple user interface to construct 2D spline curves.
philpem@5 7 # This file is a part of the CImg Library project.
philpem@5 8 # ( http://cimg.sourceforge.net )
philpem@5 9 #
philpem@5 10 # Copyright : David Tschumperle
philpem@5 11 # ( http://www.greyc.ensicaen.fr/~dtschump/ )
philpem@5 12 #
philpem@5 13 # License : CeCILL v2.0
philpem@5 14 # ( http://www.cecill.info/licences/Licence_CeCILL_V2-en.html )
philpem@5 15 #
philpem@5 16 # This software is governed by the CeCILL license under French law and
philpem@5 17 # abiding by the rules of distribution of free software. You can use,
philpem@5 18 # modify and/ or redistribute the software under the terms of the CeCILL
philpem@5 19 # license as circulated by CEA, CNRS and INRIA at the following URL
philpem@5 20 # "http://www.cecill.info".
philpem@5 21 #
philpem@5 22 # As a counterpart to the access to the source code and rights to copy,
philpem@5 23 # modify and redistribute granted by the license, users are provided only
philpem@5 24 # with a limited warranty and the software's author, the holder of the
philpem@5 25 # economic rights, and the successive licensors have only limited
philpem@5 26 # liability.
philpem@5 27 #
philpem@5 28 # In this respect, the user's attention is drawn to the risks associated
philpem@5 29 # with loading, using, modifying and/or developing or reproducing the
philpem@5 30 # software by the user in light of its specific status of free software,
philpem@5 31 # that may mean that it is complicated to manipulate, and that also
philpem@5 32 # therefore means that it is reserved for developers and experienced
philpem@5 33 # professionals having in-depth computer knowledge. Users are therefore
philpem@5 34 # encouraged to load and test the software's suitability as regards their
philpem@5 35 # requirements in conditions enabling the security of their systems and/or
philpem@5 36 # data to be ensured and, more generally, to use and operate it in the
philpem@5 37 # same conditions as regards security.
philpem@5 38 #
philpem@5 39 # The fact that you are presently reading this means that you have had
philpem@5 40 # knowledge of the CeCILL license and that you accept its terms.
philpem@5 41 #
philpem@5 42 */
philpem@5 43
philpem@5 44 #include "CImg.h"
philpem@5 45 using namespace cimg_library;
philpem@5 46
philpem@5 47 // The lines below are necessary when using a non-standard compiler as visualcpp6.
philpem@5 48 #ifdef cimg_use_visualcpp6
philpem@5 49 #define std
philpem@5 50 #endif
philpem@5 51 #ifdef min
philpem@5 52 #undef min
philpem@5 53 #undef max
philpem@5 54 #endif
philpem@5 55
philpem@5 56 //---------------
philpem@5 57 // Main procedure
philpem@5 58 //---------------
philpem@5 59 int main(int argc, char **argv) {
philpem@5 60
philpem@5 61 // Read command line parameters
philpem@5 62 //-----------------------------
philpem@5 63 cimg_usage("2D Spline Curve Editor");
philpem@5 64 const char *file_i = cimg_option("-i",(char*)0,"Input image");
philpem@5 65 const float contrast = cimg_option("-contrast",0.6f,"Image contrast");
philpem@5 66 const char *file_ip = cimg_option("-ip",(char*)0,"Input control points");
philpem@5 67 const char *file_oc = cimg_option("-oc",(char*)0,"Output curve points");
philpem@5 68 const char *file_op = cimg_option("-op",(char*)0,"Output control points");
philpem@5 69 const char *file_od = cimg_option("-od",(char*)0,"Output distance function");
philpem@5 70 bool interp = cimg_option("-poly",true,"Use polynomial interpolation");
philpem@5 71 bool closed = cimg_option("-closed",true,"Closed curve");
philpem@5 72 bool show_tangents = cimg_option("-tangents",false,"Show tangents");
philpem@5 73 bool show_points = cimg_option("-points",true,"Show control points");
philpem@5 74 bool show_outline = cimg_option("-outline",true,"Show polygon outline");
philpem@5 75 bool show_indices = cimg_option("-indices",true,"Show points indices");
philpem@5 76 bool show_coordinates = cimg_option("-coords",false,"Show points coordinates");
philpem@5 77 const float precision = cimg_option("-prec",0.05f,"Precision of curve discretization");
philpem@5 78
philpem@5 79 // Init image data
philpem@5 80 //-----------------
philpem@5 81 const unsigned char yellow[] = { 255,255,0 }, white[] = { 255,255,255 }, green[] = { 0,255,0 },
philpem@5 82 red[] = { 255,0,50 }, purple[] = { 255,100,255 }, black[] = { 0,0,0 };
philpem@5 83 CImg<unsigned char> img0, img, help_img;
philpem@5 84 if (file_i) {
philpem@5 85 std::fprintf(stderr,"\n - Load input image '%s' : ",cimg::basename(file_i));
philpem@5 86 img0 = CImg<>(file_i).normalize(0,255.0f*contrast);
philpem@5 87 std::fprintf(stderr,"Size = %dx%dx%dx%d \n",img0.dimx(),img0.dimy(),img0.dimz(),img0.dimv());
philpem@5 88 img0.resize(-100,-100,1,3);
philpem@5 89 }
philpem@5 90 else {
philpem@5 91 std::fprintf(stderr,"\n - No input image specified, use default 512x512 image.\n");
philpem@5 92 img0.assign(512,512,1,3,0).draw_grid(32,32,0,0,false,false,green,0.4f,0xCCCCCCCC,0xCCCCCCCC);
philpem@5 93 }
philpem@5 94
philpem@5 95 help_img.assign(270,160,1,3,0).
philpem@5 96 draw_text(5,5,
philpem@5 97 "------------------------------------------\n"
philpem@5 98 "2D Curve Editor\n"
philpem@5 99 "------------------------------------------\n"
philpem@5 100 "Left button : Create or move control point\n"
philpem@5 101 "Right button : Delete control point\n"
philpem@5 102 "Spacebar : Switch interpolation\n"
philpem@5 103 "Key 'C' : Switch open/closed mode\n"
philpem@5 104 "Key 'T' : Show/hide tangents\n"
philpem@5 105 "Key 'P' : Show/hide control points\n"
philpem@5 106 "Key 'O' : Show/hide polygon outline\n"
philpem@5 107 "Key 'N' : Show/hide points indices\n"
philpem@5 108 "Key 'X' : Show/hide points coordinates\n"
philpem@5 109 "Key 'H' : Show/hide this help\n"
philpem@5 110 "Key 'S' : Save control points\n"
philpem@5 111 "Key 'R' : Reset curve\n",
philpem@5 112 green);
philpem@5 113 CImgDisplay disp(img0,"2D Curve Editor",0);
philpem@5 114 CImgList<float> points, curve;
philpem@5 115 bool moving = false;
philpem@5 116 bool help = !file_i;
philpem@5 117
philpem@5 118 if (file_ip) {
philpem@5 119 std::fprintf(stderr," - Load input control points '%s' : ",cimg::basename(file_ip));
philpem@5 120 points = CImg<>(file_ip).transpose().get_split('x');
philpem@5 121 std::fprintf(stderr," %u points\n",points.size);
philpem@5 122 }
philpem@5 123
philpem@5 124 // Enter user loop
philpem@5 125 //-----------------
philpem@5 126 while (!disp.is_closed && !disp.is_keyESC && !disp.is_keyQ) {
philpem@5 127
philpem@5 128 // Handle mouse manipulation
philpem@5 129 //---------------------------
philpem@5 130 const float
philpem@5 131 x = disp.mouse_x*(float)img0.dimx()/disp.dimx(),
philpem@5 132 y = disp.mouse_y*(float)img0.dimy()/disp.dimy();
philpem@5 133 const unsigned int
philpem@5 134 button = disp.button;
philpem@5 135
philpem@5 136 if (points && button && x>=0 && y>=0) {
philpem@5 137
philpem@5 138 // Find nearest point and nearest segment
philpem@5 139 float dmin_pt = 1e10f, dmin_seg = dmin_pt;
philpem@5 140 unsigned int p_pt = 0, p_seg = 0;
philpem@5 141 cimglist_for(points,p) {
philpem@5 142 const unsigned int
philpem@5 143 pnext = closed?(p+1)%points.size:(p+1<points.size?p+1:p);
philpem@5 144 const float
philpem@5 145 xp = points(p,0),
philpem@5 146 yp = points(p,1),
philpem@5 147 xm = 0.5f*(xp + points(pnext,0)),
philpem@5 148 ym = 0.5f*(yp + points(pnext,1));
philpem@5 149 const float
philpem@5 150 d_pt = (xp-x)*(xp-x) + (yp-y)*(yp-y),
philpem@5 151 d_seg = (xm-x)*(xm-x) + (ym-y)*(ym-y);
philpem@5 152 if (d_pt<dmin_pt) { dmin_pt = d_pt; p_pt = p; }
philpem@5 153 if (d_seg<dmin_seg) { dmin_seg = d_seg; p_seg = p; }
philpem@5 154 }
philpem@5 155
philpem@5 156 // Handle button
philpem@5 157 if (button&1) {
philpem@5 158 if (dmin_pt<100 || moving) { points(p_pt,0) = x; points(p_pt,1) = y; }
philpem@5 159 else points.insert(CImg<>::vector(x,y),p_seg+1);
philpem@5 160 moving = true;
philpem@5 161 }
philpem@5 162 if (button&2 && dmin_pt<100) {
philpem@5 163 if (points.size>3) points.remove(p_pt);
philpem@5 164 else points.assign();
philpem@5 165 disp.button=0;
philpem@5 166 }
philpem@5 167 }
philpem@5 168 if (!button) moving = false;
philpem@5 169
philpem@5 170 if (disp.key) {
philpem@5 171 switch (disp.key) {
philpem@5 172 case cimg::keySPACE: interp = !interp; break;
philpem@5 173 case cimg::keyC: closed = !closed; break;
philpem@5 174 case cimg::keyT: show_tangents = !show_tangents; break;
philpem@5 175 case cimg::keyP: show_points = !show_points; break;
philpem@5 176 case cimg::keyO: show_outline = !show_outline; break;
philpem@5 177 case cimg::keyN: show_indices = !show_indices; break;
philpem@5 178 case cimg::keyX: show_coordinates = !show_coordinates; break;
philpem@5 179 case cimg::keyR: points.assign(); break;
philpem@5 180 case cimg::keyH: help = !help; break;
philpem@5 181 case cimg::keyS: {
philpem@5 182 const char *filename = file_op?file_op:"curve_points.dlm";
philpem@5 183 std::fprintf(stderr," - Save control points in '%s'\n",filename);
philpem@5 184 points.get_append('x').transpose().save(filename);
philpem@5 185 } break;
philpem@5 186 }
philpem@5 187 disp.key = 0;
philpem@5 188 }
philpem@5 189
philpem@5 190 // Init list of points if empty
philpem@5 191 //------------------------------
philpem@5 192 if (!points) {
philpem@5 193 const float
philpem@5 194 x0 = img0.dimx()/4.0f,
philpem@5 195 y0 = img0.dimy()/4.0f,
philpem@5 196 x1 = img0.dimx()-x0,
philpem@5 197 y1 = img0.dimy()-y0;
philpem@5 198 points.insert(CImg<>::vector(x0,y0)).
philpem@5 199 insert(CImg<>::vector(x1,y0)).
philpem@5 200 insert(CImg<>::vector(x1,y1)).
philpem@5 201 insert(CImg<>::vector(x0,y1));
philpem@5 202 }
philpem@5 203
philpem@5 204 // Estimate curve tangents
philpem@5 205 //-------------------------
philpem@5 206 CImg<> tangents(points.size,2);
philpem@5 207 { cimglist_for(points,p) {
philpem@5 208 const unsigned int
philpem@5 209 p0 = closed?(p+points.size-1)%points.size:(p?p-1:0),
philpem@5 210 p1 = closed?(p+1)%points.size:(p+1<points.size?p+1:p);
philpem@5 211 const float
philpem@5 212 x = points(p,0),
philpem@5 213 y = points(p,1),
philpem@5 214 x0 = points(p0,0),
philpem@5 215 y0 = points(p0,1),
philpem@5 216 x1 = points(p1,0),
philpem@5 217 y1 = points(p1,1),
philpem@5 218 u0 = x-x0,
philpem@5 219 v0 = y-y0,
philpem@5 220 n0 = 1e-8f + (float)std::sqrt(u0*u0+v0*v0),
philpem@5 221 u1 = x1-x,
philpem@5 222 v1 = y1-y,
philpem@5 223 n1 = 1e-8f + (float)std::sqrt(u1*u1+v1*v1),
philpem@5 224 u = u0/n0 + u1/n1,
philpem@5 225 v = v0/n0 + v1/n1,
philpem@5 226 n = 1e-8f + (float)std::sqrt(u*u+v*v),
philpem@5 227 fact = 0.5f*(n0+n1);
philpem@5 228 tangents(p,0) = fact*u/n;
philpem@5 229 tangents(p,1) = fact*v/n;
philpem@5 230 }}
philpem@5 231
philpem@5 232 // Estimate 3th-order polynomial interpolation
philpem@5 233 //---------------------------------------------
philpem@5 234 curve.assign();
philpem@5 235 const unsigned int pmax = points.size-(closed?0:1);
philpem@5 236 for (unsigned int p0=0; p0<pmax; p0++) {
philpem@5 237 const unsigned int
philpem@5 238 p1 = closed?(p0+1)%points.size:(p0+1<points.size?p0+1:p0);
philpem@5 239 const float
philpem@5 240 x0 = points(p0,0),
philpem@5 241 y0 = points(p0,1),
philpem@5 242 x1 = points(p1,0),
philpem@5 243 y1 = points(p1,1);
philpem@5 244 float ax=0, bx=0, cx=0, dx=0, ay=0, by=0, cy=0, dy=0;
philpem@5 245 if (interp) {
philpem@5 246 const float
philpem@5 247 u0 = tangents(p0,0),
philpem@5 248 v0 = tangents(p0,1),
philpem@5 249 u1 = tangents(p1,0),
philpem@5 250 v1 = tangents(p1,1);
philpem@5 251 ax = 2*(x0-x1)+u0+u1;
philpem@5 252 bx = 3*(x1-x0)-2*u0-u1;
philpem@5 253 cx = u0;
philpem@5 254 dx = x0;
philpem@5 255 ay = 2*(y0-y1)+v0+v1;
philpem@5 256 by = 3*(y1-y0)-2*v0-v1;
philpem@5 257 cy = v0;
philpem@5 258 dy = y0;
philpem@5 259 } else {
philpem@5 260 ax = ay = bx = by = 0;
philpem@5 261 dx = x0;
philpem@5 262 dy = y0;
philpem@5 263 cx = (x1-x0);
philpem@5 264 cy = (y1-y0);
philpem@5 265 }
philpem@5 266 const float tmax = 1+precision;
philpem@5 267 for (float t=0; t<tmax; t+=precision) {
philpem@5 268 const float
philpem@5 269 xt = ax*t*t*t + bx*t*t + cx*t + dx,
philpem@5 270 yt = ay*t*t*t + by*t*t + cy*t + dy;
philpem@5 271 curve.insert(CImg<>::vector(xt,yt));
philpem@5 272 }
philpem@5 273 }
philpem@5 274
philpem@5 275 // Draw curve and display image
philpem@5 276 //-------------------------------
philpem@5 277 const float
philpem@5 278 factx = (float)disp.dimx()/img0.dimx(),
philpem@5 279 facty = (float)disp.dimy()/img0.dimy();
philpem@5 280 img = img0.get_resize(disp.dimx(),disp.dimy());
philpem@5 281 if (help) img.draw_image(help_img,0.6f);
philpem@5 282 if (interp && show_outline) {
philpem@5 283 CImg<> npoints = points.get_append('x');
philpem@5 284 npoints.get_shared_line(0)*=factx;
philpem@5 285 npoints.get_shared_line(1)*=facty;
philpem@5 286 img.draw_polygon(npoints,red,0.4f);
philpem@5 287 if (closed) img.draw_polygon(npoints,yellow,0.8f,0x11111111);
philpem@5 288 else img.draw_line(npoints,yellow,0.8f,0x11111111);
philpem@5 289 }
philpem@5 290 CImg<> ncurve = curve.get_append('x');
philpem@5 291 ncurve.get_shared_line(0)*=factx;
philpem@5 292 ncurve.get_shared_line(1)*=facty;
philpem@5 293 if (closed) img.draw_polygon(ncurve,white,1.0f,~0U);
philpem@5 294 else img.draw_line(ncurve,white);
philpem@5 295
philpem@5 296 if (show_points) cimglist_for(points,p) {
philpem@5 297 const float
philpem@5 298 x = points(p,0)*factx,
philpem@5 299 y = points(p,1)*facty;
philpem@5 300 if (show_tangents) {
philpem@5 301 const float
philpem@5 302 u = tangents(p,0),
philpem@5 303 v = tangents(p,1),
philpem@5 304 n = 1e-8f + (float)std::sqrt(u*u+v*v),
philpem@5 305 nu = u/n,
philpem@5 306 nv = v/n;
philpem@5 307 img.draw_arrow((int)(x-15*nu),(int)(y-15*nv),(int)(x+15*nu),(int)(y+15*nv),green);
philpem@5 308 }
philpem@5 309 if (show_indices) img.draw_text((int)x,(int)(y-16),"%d",purple,black,1,6,p);
philpem@5 310 if (show_coordinates) img.draw_text((int)(x-24),(int)(y+8),"(%d,%d)",yellow,black,0.5f,6,(int)points(p,0),(int)points(p,1));
philpem@5 311 img.draw_circle((int)x,(int)y,3,red,0.7f);
philpem@5 312 }
philpem@5 313
philpem@5 314 img.display(disp);
philpem@5 315 disp.wait();
philpem@5 316
philpem@5 317 if (disp.is_resized) disp.resize(false);
philpem@5 318 }
philpem@5 319
philpem@5 320 // Save output result and exit
philpem@5 321 //-----------------------------
philpem@5 322 if (file_op) {
philpem@5 323 std::fprintf(stderr," - Save control points in '%s'\n",cimg::basename(file_op));
philpem@5 324 points.get_append('x').transpose().save(file_op);
philpem@5 325 }
philpem@5 326 if (file_oc) {
philpem@5 327 std::fprintf(stderr," - Save curve points in '%s'\n",cimg::basename(file_oc));
philpem@5 328 curve.get_append('x').transpose().save(file_oc);
philpem@5 329 }
philpem@5 330 if (file_od) {
philpem@5 331 std::fprintf(stderr," - Computing distance function, please wait...."); std::fflush(stderr);
philpem@5 332 CImg<> ncurve = (closed?(+curve).insert(curve[0]):curve).get_append('x');
philpem@5 333 const float zero = 0.0f, one = 1.0f;
philpem@5 334 CImg<> distance =
philpem@5 335 CImg<>(img0.dimx(),img0.dimy(),1,1,-1.0f).draw_line(ncurve,&zero).draw_fill(0,0,&one).
philpem@5 336 distance_hamilton(200);
philpem@5 337 std::fprintf(stderr,"\n - Save distance function in '%s'\n",cimg::basename(file_od));
philpem@5 338 distance.save(file_od);
philpem@5 339 }
philpem@5 340
philpem@5 341 std::fprintf(stderr," - Exit.\n");
philpem@5 342 std::exit(0);
philpem@5 343 return 0;
philpem@5 344 }