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RGB space is a 3-dimensional vector space, and each pixel, Pi, is defined by an ordered triple of red, green, and blue coordinates, (Ri, Gi, Bi).</p> 62 63 <p>Each primary color component (red, green, or blue) represents an intensity which varies linearly from 0 to a maximum value, Cmax, which corresponds to full saturation of that color. Color allocation is defined over a domain consisting of the cube in RGB space with opposite vertices at (0,0,0) and (Cmax, Cmax, Cmax). QUANTIZE requires Cmax = 255.</p> 64 65 <p>The algorithm maps this domain onto a tree in which each node represents a cube within that domain. In the following discussion these cubes are defined by the coordinate of two opposite vertices (vertex nearest the origin in RGB space and the vertex farthest from the origin).</p> 66 67 <p>The tree's root node represents the entire domain, (0,0,0) through (Cmax,Cmax,Cmax). Each lower level in the tree is generated by subdividing one node's cube into eight smaller cubes of equal size. This corresponds to bisecting the parent cube with planes passing through the midpoints of each edge.</p> 68 69 <p>The basic algorithm operates in three phases: Classification, Reduction, and Assignment. Classification builds a color description tree for the image. Reduction collapses the tree until the number it represents, at most, the number of colors desired in the output image. Assignment defines the output image's color map and sets each pixel's color by restorage_class in the reduced tree. Our goal is to minimize the numerical discrepancies between the original colors and quantized colors (quantization error).</p> 70 71 <p>Classification begins by initializing a color description tree of sufficient depth to represent each possible input color in a leaf. However, it is impractical to generate a fully-formed color description tree in the storage_class phase for realistic values of Cmax. If colors components in the input image are quantized to k-bit precision, so that Cmax= 2k-1, the tree would need k levels below the root node to allow representing each possible input color in a leaf. This becomes prohibitive because the tree's total number of nodes is 1 + sum(i=1, k, 8k).</p> 72 73 <p>A complete tree would require 19,173,961 nodes for k = 8, Cmax = 255.</p> 74 <dt>avoid building a fully populated tree, QUANTIZE</dt> 75 <p>(1) Initializes data structures for nodes only as they are needed; (2) Chooses a maximum depth for the tree as a function of the desired number of colors in the output image (currently log2(colormap size)).</p> 76 77 <p>For each pixel in the input image, storage_class scans downward from the root of the color description tree. At each level of the tree it identifies the single node which represents a cube in RGB space containing the pixel's color. It updates the following data for each such node:</p> 78 79 <pre class="text"> 80 n1: Number of pixels whose color is contained in the RGB cube which 81 this node represents; 82 </pre> 83 84 <p>n2: Number of pixels whose color is not represented in a node at lower depth in the tree; initially, n2 = 0 for all nodes except leaves of the tree.</p> 85 86 <p>Sr, Sg, Sb: Sums of the red, green, and blue component values for all pixels not classified at a lower depth. The combination of these sums and n2 will ultimately characterize the mean color of a set of pixels represented by this node.</p> 87 88 <p>E: the distance squared in RGB space between each pixel contained within a node and the nodes' center. This represents the quantization error for a node.</p> 89 90 <p>Reduction repeatedly prunes the tree until the number of nodes with n2 > 0 is less than or equal to the maximum number of colors allowed in the output image. On any given iteration over the tree, it selects those nodes whose E count is minimal for pruning and merges their color statistics upward. It uses a pruning threshold, Ep, to govern node selection as follows:</p> 91 92 <dd> 93 </dd> 94 95 <dd> Ep = 0 while number of nodes with (n2 > 0) > required maximum number of colors prune all nodes such that E <= Ep Set Ep to minimum E in remaining nodes </dd> 96 97 <dd> This has the effect of minimizing any quantization error when merging two nodes together. </dd> 98 99 <dd> When a node to be pruned has offspring, the pruning procedure invokes itself recursively in order to prune the tree from the leaves upward. n2, Sr, Sg, and Sb in a node being pruned are always added to the corresponding data in that node's parent. This retains the pruned node's color characteristics for later averaging. </dd> 100 101 <dd> For each node, n2 pixels exist for which that node represents the smallest volume in RGB space containing those pixel's colors. When n2 > 0 the node will uniquely define a color in the output image. At the beginning of reduction, n2 = 0 for all nodes except a the leaves of the tree which represent colors present in the input image. </dd> 102 103 <dd> The other pixel count, n1, indicates the total number of colors within the cubic volume which the node represents. This includes n1 - n2 pixels whose colors should be defined by nodes at a lower level in the tree. </dd> 104 105 <dd> Assignment generates the output image from the pruned tree. The output </dd> 106 <dl class="dl-horizontal"> 107 <dt>parts</dt> 108 <dd>(1) A color map, which is an array of color descriptions (RGB triples) for each color present in the output image; (2) A pixel array, which represents each pixel as an index into the color map array. </dd> 109 110 <dd> First, the assignment phase makes one pass over the pruned color description tree to establish the image's color map. For each node with n2 > 0, it divides Sr, Sg, and Sb by n2 . This produces the mean color of all pixels that classify no lower than this node. Each of these colors becomes an entry in the color map. </dd> 111 112 <dd> Finally, the assignment phase reclassifies each pixel in the pruned tree to identify the deepest node containing the pixel's color. The pixel's value in the pixel array becomes the index of this node's mean color in the color map. </dd> 113 114 <dd> This method is based on a similar algorithm written by Paul Raveling. </dd> 115 116 <dd> </dd> 117 </dl> 118 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="AcquireQuantizeInfo">AcquireQuantizeInfo</a></h2> 119 120 <p>AcquireQuantizeInfo() allocates the QuantizeInfo structure.</p> 121 122 <p>The format of the AcquireQuantizeInfo method is:</p> 123 124 <pre class="text"> 125 QuantizeInfo *AcquireQuantizeInfo(const ImageInfo *image_info) 126 </pre> 127 128 <p>A description of each parameter follows:</p> 129 130 <dd> 131 </dd> 132 133 <dd> </dd> 134 <dl class="dl-horizontal"> 135 <dt>image_info</dt> 136 <dd>the image info. </dd> 137 138 <dd> </dd> 139 </dl> 140 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="CloneQuantizeInfo">CloneQuantizeInfo</a></h2> 141 142 <p>CloneQuantizeInfo() makes a duplicate of the given quantize info structure, or if quantize info is NULL, a new one.</p> 143 144 <p>The format of the CloneQuantizeInfo method is:</p> 145 146 <pre class="text"> 147 QuantizeInfo *CloneQuantizeInfo(const QuantizeInfo *quantize_info) 148 </pre> 149 150 <p>A description of each parameter follows:</p> 151 152 <dd> 153 </dd> 154 155 <dd> </dd> 156 <dl class="dl-horizontal"> 157 <dt>clone_info</dt> 158 <dd>Method CloneQuantizeInfo returns a duplicate of the given quantize info, or if image info is NULL a new one. </dd> 159 160 <dd> </dd> 161 <dt>quantize_info</dt> 162 <dd>a structure of type info. </dd> 163 164 <dd> </dd> 165 </dl> 166 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="CompressImageColormap">CompressImageColormap</a></h2> 167 168 <p>CompressImageColormap() compresses an image colormap by removing any duplicate or unused color entries.</p> 169 170 <p>The format of the CompressImageColormap method is:</p> 171 172 <pre class="text"> 173 MagickBooleanType CompressImageColormap(Image *image, 174 ExceptionInfo *exception) 175 </pre> 176 177 <p>A description of each parameter follows:</p> 178 179 <dd> 180 </dd> 181 182 <dd> </dd> 183 <dl class="dl-horizontal"> 184 <dt>image</dt> 185 <dd>the image. </dd> 186 187 <dd> </dd> 188 <dt>exception</dt> 189 <dd>return any errors or warnings in this structure. </dd> 190 191 <dd> </dd> 192 </dl> 193 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="DestroyQuantizeInfo">DestroyQuantizeInfo</a></h2> 194 195 <p>DestroyQuantizeInfo() deallocates memory associated with an QuantizeInfo structure.</p> 196 197 <p>The format of the DestroyQuantizeInfo method is:</p> 198 199 <pre class="text"> 200 QuantizeInfo *DestroyQuantizeInfo(QuantizeInfo *quantize_info) 201 </pre> 202 203 <p>A description of each parameter follows:</p> 204 205 <dd> 206 </dd> 207 208 <dd> </dd> 209 <dl class="dl-horizontal"> 210 <dt>quantize_info</dt> 211 <dd>Specifies a pointer to an QuantizeInfo structure. </dd> 212 213 <dd> </dd> 214 </dl> 215 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="GetImageQuantizeError">GetImageQuantizeError</a></h2> 216 217 <p>GetImageQuantizeError() measures the difference between the original and quantized images. This difference is the total quantization error. The error is computed by summing over all pixels in an image the distance squared in RGB space between each reference pixel value and its quantized value. These values are computed:</p> 218 219 <pre class="text"> 220 o mean_error_per_pixel: This value is the mean error for any single 221 pixel in the image. 222 </pre> 223 224 <dt>normalized_mean_square_error</dt> 225 <p>This value is the normalized mean quantization error for any single pixel in the image. This distance measure is normalized to a range between 0 and 1. It is independent of the range of red, green, and blue values in the image.</p> 226 227 <dt>normalized_maximum_square_error</dt> 228 <p>Thsi value is the normalized maximum quantization error for any single pixel in the image. This distance measure is normalized to a range between 0 and 1. It is independent of the range of red, green, and blue values in your image.</p> 229 230 <p>The format of the GetImageQuantizeError method is:</p> 231 232 <pre class="text"> 233 MagickBooleanType GetImageQuantizeError(Image *image, 234 ExceptionInfo *exception) 235 </pre> 236 237 <p>A description of each parameter follows.</p> 238 239 <dt>image</dt> 240 <p>the image.</p> 241 242 <dt>exception</dt> 243 <p>return any errors or warnings in this structure.</p> 244 245 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="GetQuantizeInfo">GetQuantizeInfo</a></h2> 246 247 <p>GetQuantizeInfo() initializes the QuantizeInfo structure.</p> 248 249 <p>The format of the GetQuantizeInfo method is:</p> 250 251 <pre class="text"> 252 GetQuantizeInfo(QuantizeInfo *quantize_info) 253 </pre> 254 255 <p>A description of each parameter follows:</p> 256 257 <dd> 258 </dd> 259 260 <dd> </dd> 261 <dl class="dl-horizontal"> 262 <dt>quantize_info</dt> 263 <dd>Specifies a pointer to a QuantizeInfo structure. </dd> 264 265 <dd> </dd> 266 </dl> 267 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="PosterizeImage">PosterizeImage</a></h2> 268 269 <p>PosterizeImage() reduces the image to a limited number of colors for a "poster" effect.</p> 270 271 <p>The format of the PosterizeImage method is:</p> 272 273 <pre class="text"> 274 MagickBooleanType PosterizeImage(Image *image,const size_t levels, 275 const DitherMethod dither_method,ExceptionInfo *exception) 276 </pre> 277 278 <p>A description of each parameter follows:</p> 279 280 <dd> 281 </dd> 282 283 <dd> </dd> 284 <dl class="dl-horizontal"> 285 <dt>image</dt> 286 <dd>Specifies a pointer to an Image structure. </dd> 287 288 <dd> </dd> 289 <dt>levels</dt> 290 <dd>Number of color levels allowed in each channel. Very low values (2, 3, or 4) have the most visible effect. </dd> 291 292 <dd> </dd> 293 <dt>dither_method</dt> 294 <dd>choose from UndefinedDitherMethod, NoDitherMethod, RiemersmaDitherMethod, FloydSteinbergDitherMethod. </dd> 295 296 <dd> </dd> 297 <dt>exception</dt> 298 <dd>return any errors or warnings in this structure. </dd> 299 300 <dd> </dd> 301 </dl> 302 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="QuantizeImage">QuantizeImage</a></h2> 303 304 <p>QuantizeImage() analyzes the colors within a reference image and chooses a fixed number of colors to represent the image. The goal of the algorithm is to minimize the color difference between the input and output image while minimizing the processing time.</p> 305 306 <p>The format of the QuantizeImage method is:</p> 307 308 <pre class="text"> 309 MagickBooleanType QuantizeImage(const QuantizeInfo *quantize_info, 310 Image *image,ExceptionInfo *exception) 311 </pre> 312 313 <p>A description of each parameter follows:</p> 314 315 <dd> 316 </dd> 317 318 <dd> </dd> 319 <dl class="dl-horizontal"> 320 <dt>quantize_info</dt> 321 <dd>Specifies a pointer to an QuantizeInfo structure. </dd> 322 323 <dd> </dd> 324 <dt>image</dt> 325 <dd>the image. </dd> 326 327 <dd> </dd> 328 <dt>exception</dt> 329 <dd>return any errors or warnings in this structure. </dd> 330 331 <dd> </dd> 332 </dl> 333 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="QuantizeImages">QuantizeImages</a></h2> 334 335 <p>QuantizeImages() analyzes the colors within a set of reference images and chooses a fixed number of colors to represent the set. The goal of the algorithm is to minimize the color difference between the input and output images while minimizing the processing time.</p> 336 337 <p>The format of the QuantizeImages method is:</p> 338 339 <pre class="text"> 340 MagickBooleanType QuantizeImages(const QuantizeInfo *quantize_info, 341 Image *images,ExceptionInfo *exception) 342 </pre> 343 344 <p>A description of each parameter follows:</p> 345 346 <dd> 347 </dd> 348 349 <dd> </dd> 350 <dl class="dl-horizontal"> 351 <dt>quantize_info</dt> 352 <dd>Specifies a pointer to an QuantizeInfo structure. </dd> 353 354 <dd> </dd> 355 <dt>images</dt> 356 <dd>Specifies a pointer to a list of Image structures. </dd> 357 358 <dd> </dd> 359 <dt>exception</dt> 360 <dd>return any errors or warnings in this structure. </dd> 361 362 <dd> </dd> 363 </dl> 364 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="RemapImage">RemapImage</a></h2> 365 366 <p>RemapImage() replaces the colors of an image with the closest of the colors from the reference image.</p> 367 368 <p>The format of the RemapImage method is:</p> 369 370 <pre class="text"> 371 MagickBooleanType RemapImage(const QuantizeInfo *quantize_info, 372 Image *image,const Image *remap_image,ExceptionInfo *exception) 373 </pre> 374 375 <p>A description of each parameter follows:</p> 376 377 <dd> 378 </dd> 379 380 <dd> </dd> 381 <dl class="dl-horizontal"> 382 <dt>quantize_info</dt> 383 <dd>Specifies a pointer to an QuantizeInfo structure. </dd> 384 385 <dd> </dd> 386 <dt>image</dt> 387 <dd>the image. </dd> 388 389 <dd> </dd> 390 <dt>remap_image</dt> 391 <dd>the reference image. </dd> 392 393 <dd> </dd> 394 <dt>exception</dt> 395 <dd>return any errors or warnings in this structure. </dd> 396 397 <dd> </dd> 398 </dl> 399 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="RemapImages">RemapImages</a></h2> 400 401 <p>RemapImages() replaces the colors of a sequence of images with the closest color from a reference image.</p> 402 403 <p>The format of the RemapImage method is:</p> 404 405 <pre class="text"> 406 MagickBooleanType RemapImages(const QuantizeInfo *quantize_info, 407 Image *images,Image *remap_image,ExceptionInfo *exception) 408 </pre> 409 410 <p>A description of each parameter follows:</p> 411 412 <dd> 413 </dd> 414 415 <dd> </dd> 416 <dl class="dl-horizontal"> 417 <dt>quantize_info</dt> 418 <dd>Specifies a pointer to an QuantizeInfo structure. </dd> 419 420 <dd> </dd> 421 <dt>images</dt> 422 <dd>the image sequence. </dd> 423 424 <dd> </dd> 425 <dt>remap_image</dt> 426 <dd>the reference image. </dd> 427 428 <dd> </dd> 429 <dt>exception</dt> 430 <dd>return any errors or warnings in this structure. </dd> 431 432 <dd> </dd> 433 </dl> 434 <h2><a href="http://nextgen.imagemagick.org/api/MagickCore/quantize_8c.html" id="SetGrayscaleImage">SetGrayscaleImage</a></h2> 435 436 <p>SetGrayscaleImage() converts an image to a PseudoClass grayscale image.</p> 437 438 <p>The format of the SetGrayscaleImage method is:</p> 439 440 <pre class="text"> 441 MagickBooleanType SetGrayscaleImage(Image *image, 442 ExceptionInfo *exception) 443 </pre> 444 445 <p>A description of each parameter follows:</p> 446 447 <dd> 448 </dd> 449 450 <dd> </dd> 451 <dl class="dl-horizontal"> 452 <dt>image</dt> 453 <dd>The image. </dd> 454 455 <dd> </dd> 456 <dt>exception</dt> 457 <dd>return any errors or warnings in this structure. </dd> 458 459 <dd> </dd> 460 </dl> 461 </div> 462 <footer class="magick-footer"> 463 <p><a href="../script/support.php">Donate</a> 464 <a href="../script/sitemap.php">Sitemap</a> 465 <a href="../script/links.php">Related</a> 466 <a href="../script/architecture.php">Architecture</a> 467 </p> 468 <p><a href="quantize.php#">Back to top</a> 469 <a href="http://pgp.mit.edu:11371/pks/lookup?op=get&search=0x89AB63D48277377A">Public Key</a> 470 <a href="../script/contact.php">Contact Us</a></p> 471 <p><small> 1999-2016 ImageMagick Studio LLC</small></p> 472 </footer> 473 </div><!-- /.container --> 474 475 <script src="https://ajax.googleapis.com/ajax/libs/jquery/1.11.3/jquery.min.js"></script> 476 <script src="http://nextgen.imagemagick.org/js/magick.php"></script> 477 </div> 478 </body> 479 </html> 480