blob: e9bc5dfa6040034b4d8ddc9c864e43057aa23be0 [file] [log] [blame]
dirk86921722014-07-07 18:47:28 +00001/*
2%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
3% %
4% %
5% %
6% DDDD DDDD SSSSS %
7% D D D D SS %
8% D D D D SSS %
9% D D D D SS %
10% DDDD DDDD SSSSS %
11% %
12% %
13% Read/Write Microsoft Direct Draw Surface Image Format %
14% %
15% Software Design %
16% Bianca van Schaik %
17% March 2008 %
18% Dirk Lemstra %
19% September 2013 %
20% %
21% %
Cristy7ce65e72015-12-12 18:03:16 -050022% Copyright 1999-2016 ImageMagick Studio LLC, a non-profit organization %
dirk86921722014-07-07 18:47:28 +000023% dedicated to making software imaging solutions freely available. %
24% %
25% You may not use this file except in compliance with the License. You may %
26% obtain a copy of the License at %
27% %
28% http://www.imagemagick.org/script/license.php %
29% %
30% Unless required by applicable law or agreed to in writing, software %
31% distributed under the License is distributed on an "AS IS" BASIS, %
32% WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. %
33% See the License for the specific language governing permissions and %
34% limitations under the License. %
35% %
36%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
37%
38%
39*/
40
41/*
42 Include declarations.
43*/
44#include "MagickCore/studio.h"
dirk6398fb42014-09-08 18:19:39 +000045#include "MagickCore/attribute.h"
dirk86921722014-07-07 18:47:28 +000046#include "MagickCore/blob.h"
47#include "MagickCore/blob-private.h"
48#include "MagickCore/cache.h"
49#include "MagickCore/colorspace.h"
dirk6398fb42014-09-08 18:19:39 +000050#include "MagickCore/colorspace-private.h"
dirk86921722014-07-07 18:47:28 +000051#include "MagickCore/exception.h"
52#include "MagickCore/exception-private.h"
53#include "MagickCore/image.h"
54#include "MagickCore/image-private.h"
55#include "MagickCore/list.h"
56#include "MagickCore/log.h"
57#include "MagickCore/magick.h"
58#include "MagickCore/memory_.h"
59#include "MagickCore/monitor.h"
60#include "MagickCore/monitor-private.h"
dirk6398fb42014-09-08 18:19:39 +000061#include "MagickCore/option.h"
62#include "MagickCore/pixel-accessor.h"
dirk86921722014-07-07 18:47:28 +000063#include "MagickCore/profile.h"
dirk6398fb42014-09-08 18:19:39 +000064#include "MagickCore/quantum.h"
dirk86921722014-07-07 18:47:28 +000065#include "MagickCore/quantum-private.h"
dirk560a9102014-12-16 21:55:06 +000066#include "MagickCore/resource_.h"
dirk86921722014-07-07 18:47:28 +000067#include "MagickCore/static.h"
68#include "MagickCore/string_.h"
dirk6398fb42014-09-08 18:19:39 +000069#include "MagickCore/string-private.h"
dirk86921722014-07-07 18:47:28 +000070#include "MagickCore/module.h"
71#include "MagickCore/transform.h"
dirk86921722014-07-07 18:47:28 +000072
73/*
74 Definitions
75*/
76#define DDSD_CAPS 0x00000001
77#define DDSD_HEIGHT 0x00000002
78#define DDSD_WIDTH 0x00000004
79#define DDSD_PITCH 0x00000008
80#define DDSD_PIXELFORMAT 0x00001000
81#define DDSD_MIPMAPCOUNT 0x00020000
82#define DDSD_LINEARSIZE 0x00080000
83#define DDSD_DEPTH 0x00800000
84
85#define DDPF_ALPHAPIXELS 0x00000001
86#define DDPF_FOURCC 0x00000004
87#define DDPF_RGB 0x00000040
dirk6398fb42014-09-08 18:19:39 +000088#define DDPF_LUMINANCE 0x00020000
dirk86921722014-07-07 18:47:28 +000089
90#define FOURCC_DXT1 0x31545844
91#define FOURCC_DXT3 0x33545844
92#define FOURCC_DXT5 0x35545844
93
94#define DDSCAPS_COMPLEX 0x00000008
95#define DDSCAPS_TEXTURE 0x00001000
96#define DDSCAPS_MIPMAP 0x00400000
97
98#define DDSCAPS2_CUBEMAP 0x00000200
99#define DDSCAPS2_CUBEMAP_POSITIVEX 0x00000400
100#define DDSCAPS2_CUBEMAP_NEGATIVEX 0x00000800
101#define DDSCAPS2_CUBEMAP_POSITIVEY 0x00001000
102#define DDSCAPS2_CUBEMAP_NEGATIVEY 0x00002000
103#define DDSCAPS2_CUBEMAP_POSITIVEZ 0x00004000
104#define DDSCAPS2_CUBEMAP_NEGATIVEZ 0x00008000
105#define DDSCAPS2_VOLUME 0x00200000
106
107#ifndef SIZE_MAX
108#define SIZE_MAX ((size_t) -1)
109#endif
110
111/*
112 Structure declarations.
113*/
114typedef struct _DDSPixelFormat
115{
116 size_t
117 flags,
118 fourcc,
119 rgb_bitcount,
120 r_bitmask,
121 g_bitmask,
122 b_bitmask,
123 alpha_bitmask;
124} DDSPixelFormat;
125
126typedef struct _DDSInfo
127{
128 size_t
129 flags,
130 height,
131 width,
132 pitchOrLinearSize,
133 depth,
134 mipmapcount,
135 ddscaps1,
136 ddscaps2;
137
138 DDSPixelFormat
139 pixelformat;
140} DDSInfo;
141
142typedef struct _DDSColors
143{
144 unsigned char
145 r[4],
146 g[4],
147 b[4],
148 a[4];
149} DDSColors;
150
151typedef struct _DDSVector4
152{
153 float
154 x,
155 y,
156 z,
157 w;
158} DDSVector4;
159
160typedef struct _DDSVector3
161{
162 float
163 x,
164 y,
165 z;
166} DDSVector3;
167
168typedef struct _DDSSourceBlock
169{
170 unsigned char
171 start,
172 end,
173 error;
174} DDSSourceBlock;
175
176typedef struct _DDSSingleColourLookup
177{
178 DDSSourceBlock sources[2];
179} DDSSingleColourLookup;
180
181typedef MagickBooleanType
182 DDSDecoder(Image *, DDSInfo *, ExceptionInfo *);
183
184static const DDSSingleColourLookup DDSLookup_5_4[] =
185{
186 { { { 0, 0, 0 }, { 0, 0, 0 } } },
187 { { { 0, 0, 1 }, { 0, 1, 1 } } },
188 { { { 0, 0, 2 }, { 0, 1, 0 } } },
189 { { { 0, 0, 3 }, { 0, 1, 1 } } },
190 { { { 0, 0, 4 }, { 0, 2, 1 } } },
191 { { { 1, 0, 3 }, { 0, 2, 0 } } },
192 { { { 1, 0, 2 }, { 0, 2, 1 } } },
193 { { { 1, 0, 1 }, { 0, 3, 1 } } },
194 { { { 1, 0, 0 }, { 0, 3, 0 } } },
195 { { { 1, 0, 1 }, { 1, 2, 1 } } },
196 { { { 1, 0, 2 }, { 1, 2, 0 } } },
197 { { { 1, 0, 3 }, { 0, 4, 0 } } },
198 { { { 1, 0, 4 }, { 0, 5, 1 } } },
199 { { { 2, 0, 3 }, { 0, 5, 0 } } },
200 { { { 2, 0, 2 }, { 0, 5, 1 } } },
201 { { { 2, 0, 1 }, { 0, 6, 1 } } },
202 { { { 2, 0, 0 }, { 0, 6, 0 } } },
203 { { { 2, 0, 1 }, { 2, 3, 1 } } },
204 { { { 2, 0, 2 }, { 2, 3, 0 } } },
205 { { { 2, 0, 3 }, { 0, 7, 0 } } },
206 { { { 2, 0, 4 }, { 1, 6, 1 } } },
207 { { { 3, 0, 3 }, { 1, 6, 0 } } },
208 { { { 3, 0, 2 }, { 0, 8, 0 } } },
209 { { { 3, 0, 1 }, { 0, 9, 1 } } },
210 { { { 3, 0, 0 }, { 0, 9, 0 } } },
211 { { { 3, 0, 1 }, { 0, 9, 1 } } },
212 { { { 3, 0, 2 }, { 0, 10, 1 } } },
213 { { { 3, 0, 3 }, { 0, 10, 0 } } },
214 { { { 3, 0, 4 }, { 2, 7, 1 } } },
215 { { { 4, 0, 4 }, { 2, 7, 0 } } },
216 { { { 4, 0, 3 }, { 0, 11, 0 } } },
217 { { { 4, 0, 2 }, { 1, 10, 1 } } },
218 { { { 4, 0, 1 }, { 1, 10, 0 } } },
219 { { { 4, 0, 0 }, { 0, 12, 0 } } },
220 { { { 4, 0, 1 }, { 0, 13, 1 } } },
221 { { { 4, 0, 2 }, { 0, 13, 0 } } },
222 { { { 4, 0, 3 }, { 0, 13, 1 } } },
223 { { { 4, 0, 4 }, { 0, 14, 1 } } },
224 { { { 5, 0, 3 }, { 0, 14, 0 } } },
225 { { { 5, 0, 2 }, { 2, 11, 1 } } },
226 { { { 5, 0, 1 }, { 2, 11, 0 } } },
227 { { { 5, 0, 0 }, { 0, 15, 0 } } },
228 { { { 5, 0, 1 }, { 1, 14, 1 } } },
229 { { { 5, 0, 2 }, { 1, 14, 0 } } },
230 { { { 5, 0, 3 }, { 0, 16, 0 } } },
231 { { { 5, 0, 4 }, { 0, 17, 1 } } },
232 { { { 6, 0, 3 }, { 0, 17, 0 } } },
233 { { { 6, 0, 2 }, { 0, 17, 1 } } },
234 { { { 6, 0, 1 }, { 0, 18, 1 } } },
235 { { { 6, 0, 0 }, { 0, 18, 0 } } },
236 { { { 6, 0, 1 }, { 2, 15, 1 } } },
237 { { { 6, 0, 2 }, { 2, 15, 0 } } },
238 { { { 6, 0, 3 }, { 0, 19, 0 } } },
239 { { { 6, 0, 4 }, { 1, 18, 1 } } },
240 { { { 7, 0, 3 }, { 1, 18, 0 } } },
241 { { { 7, 0, 2 }, { 0, 20, 0 } } },
242 { { { 7, 0, 1 }, { 0, 21, 1 } } },
243 { { { 7, 0, 0 }, { 0, 21, 0 } } },
244 { { { 7, 0, 1 }, { 0, 21, 1 } } },
245 { { { 7, 0, 2 }, { 0, 22, 1 } } },
246 { { { 7, 0, 3 }, { 0, 22, 0 } } },
247 { { { 7, 0, 4 }, { 2, 19, 1 } } },
248 { { { 8, 0, 4 }, { 2, 19, 0 } } },
249 { { { 8, 0, 3 }, { 0, 23, 0 } } },
250 { { { 8, 0, 2 }, { 1, 22, 1 } } },
251 { { { 8, 0, 1 }, { 1, 22, 0 } } },
252 { { { 8, 0, 0 }, { 0, 24, 0 } } },
253 { { { 8, 0, 1 }, { 0, 25, 1 } } },
254 { { { 8, 0, 2 }, { 0, 25, 0 } } },
255 { { { 8, 0, 3 }, { 0, 25, 1 } } },
256 { { { 8, 0, 4 }, { 0, 26, 1 } } },
257 { { { 9, 0, 3 }, { 0, 26, 0 } } },
258 { { { 9, 0, 2 }, { 2, 23, 1 } } },
259 { { { 9, 0, 1 }, { 2, 23, 0 } } },
260 { { { 9, 0, 0 }, { 0, 27, 0 } } },
261 { { { 9, 0, 1 }, { 1, 26, 1 } } },
262 { { { 9, 0, 2 }, { 1, 26, 0 } } },
263 { { { 9, 0, 3 }, { 0, 28, 0 } } },
264 { { { 9, 0, 4 }, { 0, 29, 1 } } },
265 { { { 10, 0, 3 }, { 0, 29, 0 } } },
266 { { { 10, 0, 2 }, { 0, 29, 1 } } },
267 { { { 10, 0, 1 }, { 0, 30, 1 } } },
268 { { { 10, 0, 0 }, { 0, 30, 0 } } },
269 { { { 10, 0, 1 }, { 2, 27, 1 } } },
270 { { { 10, 0, 2 }, { 2, 27, 0 } } },
271 { { { 10, 0, 3 }, { 0, 31, 0 } } },
272 { { { 10, 0, 4 }, { 1, 30, 1 } } },
273 { { { 11, 0, 3 }, { 1, 30, 0 } } },
274 { { { 11, 0, 2 }, { 4, 24, 0 } } },
275 { { { 11, 0, 1 }, { 1, 31, 1 } } },
276 { { { 11, 0, 0 }, { 1, 31, 0 } } },
277 { { { 11, 0, 1 }, { 1, 31, 1 } } },
278 { { { 11, 0, 2 }, { 2, 30, 1 } } },
279 { { { 11, 0, 3 }, { 2, 30, 0 } } },
280 { { { 11, 0, 4 }, { 2, 31, 1 } } },
281 { { { 12, 0, 4 }, { 2, 31, 0 } } },
282 { { { 12, 0, 3 }, { 4, 27, 0 } } },
283 { { { 12, 0, 2 }, { 3, 30, 1 } } },
284 { { { 12, 0, 1 }, { 3, 30, 0 } } },
285 { { { 12, 0, 0 }, { 4, 28, 0 } } },
286 { { { 12, 0, 1 }, { 3, 31, 1 } } },
287 { { { 12, 0, 2 }, { 3, 31, 0 } } },
288 { { { 12, 0, 3 }, { 3, 31, 1 } } },
289 { { { 12, 0, 4 }, { 4, 30, 1 } } },
290 { { { 13, 0, 3 }, { 4, 30, 0 } } },
291 { { { 13, 0, 2 }, { 6, 27, 1 } } },
292 { { { 13, 0, 1 }, { 6, 27, 0 } } },
293 { { { 13, 0, 0 }, { 4, 31, 0 } } },
294 { { { 13, 0, 1 }, { 5, 30, 1 } } },
295 { { { 13, 0, 2 }, { 5, 30, 0 } } },
296 { { { 13, 0, 3 }, { 8, 24, 0 } } },
297 { { { 13, 0, 4 }, { 5, 31, 1 } } },
298 { { { 14, 0, 3 }, { 5, 31, 0 } } },
299 { { { 14, 0, 2 }, { 5, 31, 1 } } },
300 { { { 14, 0, 1 }, { 6, 30, 1 } } },
301 { { { 14, 0, 0 }, { 6, 30, 0 } } },
302 { { { 14, 0, 1 }, { 6, 31, 1 } } },
303 { { { 14, 0, 2 }, { 6, 31, 0 } } },
304 { { { 14, 0, 3 }, { 8, 27, 0 } } },
305 { { { 14, 0, 4 }, { 7, 30, 1 } } },
306 { { { 15, 0, 3 }, { 7, 30, 0 } } },
307 { { { 15, 0, 2 }, { 8, 28, 0 } } },
308 { { { 15, 0, 1 }, { 7, 31, 1 } } },
309 { { { 15, 0, 0 }, { 7, 31, 0 } } },
310 { { { 15, 0, 1 }, { 7, 31, 1 } } },
311 { { { 15, 0, 2 }, { 8, 30, 1 } } },
312 { { { 15, 0, 3 }, { 8, 30, 0 } } },
313 { { { 15, 0, 4 }, { 10, 27, 1 } } },
314 { { { 16, 0, 4 }, { 10, 27, 0 } } },
315 { { { 16, 0, 3 }, { 8, 31, 0 } } },
316 { { { 16, 0, 2 }, { 9, 30, 1 } } },
317 { { { 16, 0, 1 }, { 9, 30, 0 } } },
318 { { { 16, 0, 0 }, { 12, 24, 0 } } },
319 { { { 16, 0, 1 }, { 9, 31, 1 } } },
320 { { { 16, 0, 2 }, { 9, 31, 0 } } },
321 { { { 16, 0, 3 }, { 9, 31, 1 } } },
322 { { { 16, 0, 4 }, { 10, 30, 1 } } },
323 { { { 17, 0, 3 }, { 10, 30, 0 } } },
324 { { { 17, 0, 2 }, { 10, 31, 1 } } },
325 { { { 17, 0, 1 }, { 10, 31, 0 } } },
326 { { { 17, 0, 0 }, { 12, 27, 0 } } },
327 { { { 17, 0, 1 }, { 11, 30, 1 } } },
328 { { { 17, 0, 2 }, { 11, 30, 0 } } },
329 { { { 17, 0, 3 }, { 12, 28, 0 } } },
330 { { { 17, 0, 4 }, { 11, 31, 1 } } },
331 { { { 18, 0, 3 }, { 11, 31, 0 } } },
332 { { { 18, 0, 2 }, { 11, 31, 1 } } },
333 { { { 18, 0, 1 }, { 12, 30, 1 } } },
334 { { { 18, 0, 0 }, { 12, 30, 0 } } },
335 { { { 18, 0, 1 }, { 14, 27, 1 } } },
336 { { { 18, 0, 2 }, { 14, 27, 0 } } },
337 { { { 18, 0, 3 }, { 12, 31, 0 } } },
338 { { { 18, 0, 4 }, { 13, 30, 1 } } },
339 { { { 19, 0, 3 }, { 13, 30, 0 } } },
340 { { { 19, 0, 2 }, { 16, 24, 0 } } },
341 { { { 19, 0, 1 }, { 13, 31, 1 } } },
342 { { { 19, 0, 0 }, { 13, 31, 0 } } },
343 { { { 19, 0, 1 }, { 13, 31, 1 } } },
344 { { { 19, 0, 2 }, { 14, 30, 1 } } },
345 { { { 19, 0, 3 }, { 14, 30, 0 } } },
346 { { { 19, 0, 4 }, { 14, 31, 1 } } },
347 { { { 20, 0, 4 }, { 14, 31, 0 } } },
348 { { { 20, 0, 3 }, { 16, 27, 0 } } },
349 { { { 20, 0, 2 }, { 15, 30, 1 } } },
350 { { { 20, 0, 1 }, { 15, 30, 0 } } },
351 { { { 20, 0, 0 }, { 16, 28, 0 } } },
352 { { { 20, 0, 1 }, { 15, 31, 1 } } },
353 { { { 20, 0, 2 }, { 15, 31, 0 } } },
354 { { { 20, 0, 3 }, { 15, 31, 1 } } },
355 { { { 20, 0, 4 }, { 16, 30, 1 } } },
356 { { { 21, 0, 3 }, { 16, 30, 0 } } },
357 { { { 21, 0, 2 }, { 18, 27, 1 } } },
358 { { { 21, 0, 1 }, { 18, 27, 0 } } },
359 { { { 21, 0, 0 }, { 16, 31, 0 } } },
360 { { { 21, 0, 1 }, { 17, 30, 1 } } },
361 { { { 21, 0, 2 }, { 17, 30, 0 } } },
362 { { { 21, 0, 3 }, { 20, 24, 0 } } },
363 { { { 21, 0, 4 }, { 17, 31, 1 } } },
364 { { { 22, 0, 3 }, { 17, 31, 0 } } },
365 { { { 22, 0, 2 }, { 17, 31, 1 } } },
366 { { { 22, 0, 1 }, { 18, 30, 1 } } },
367 { { { 22, 0, 0 }, { 18, 30, 0 } } },
368 { { { 22, 0, 1 }, { 18, 31, 1 } } },
369 { { { 22, 0, 2 }, { 18, 31, 0 } } },
370 { { { 22, 0, 3 }, { 20, 27, 0 } } },
371 { { { 22, 0, 4 }, { 19, 30, 1 } } },
372 { { { 23, 0, 3 }, { 19, 30, 0 } } },
373 { { { 23, 0, 2 }, { 20, 28, 0 } } },
374 { { { 23, 0, 1 }, { 19, 31, 1 } } },
375 { { { 23, 0, 0 }, { 19, 31, 0 } } },
376 { { { 23, 0, 1 }, { 19, 31, 1 } } },
377 { { { 23, 0, 2 }, { 20, 30, 1 } } },
378 { { { 23, 0, 3 }, { 20, 30, 0 } } },
379 { { { 23, 0, 4 }, { 22, 27, 1 } } },
380 { { { 24, 0, 4 }, { 22, 27, 0 } } },
381 { { { 24, 0, 3 }, { 20, 31, 0 } } },
382 { { { 24, 0, 2 }, { 21, 30, 1 } } },
383 { { { 24, 0, 1 }, { 21, 30, 0 } } },
384 { { { 24, 0, 0 }, { 24, 24, 0 } } },
385 { { { 24, 0, 1 }, { 21, 31, 1 } } },
386 { { { 24, 0, 2 }, { 21, 31, 0 } } },
387 { { { 24, 0, 3 }, { 21, 31, 1 } } },
388 { { { 24, 0, 4 }, { 22, 30, 1 } } },
389 { { { 25, 0, 3 }, { 22, 30, 0 } } },
390 { { { 25, 0, 2 }, { 22, 31, 1 } } },
391 { { { 25, 0, 1 }, { 22, 31, 0 } } },
392 { { { 25, 0, 0 }, { 24, 27, 0 } } },
393 { { { 25, 0, 1 }, { 23, 30, 1 } } },
394 { { { 25, 0, 2 }, { 23, 30, 0 } } },
395 { { { 25, 0, 3 }, { 24, 28, 0 } } },
396 { { { 25, 0, 4 }, { 23, 31, 1 } } },
397 { { { 26, 0, 3 }, { 23, 31, 0 } } },
398 { { { 26, 0, 2 }, { 23, 31, 1 } } },
399 { { { 26, 0, 1 }, { 24, 30, 1 } } },
400 { { { 26, 0, 0 }, { 24, 30, 0 } } },
401 { { { 26, 0, 1 }, { 26, 27, 1 } } },
402 { { { 26, 0, 2 }, { 26, 27, 0 } } },
403 { { { 26, 0, 3 }, { 24, 31, 0 } } },
404 { { { 26, 0, 4 }, { 25, 30, 1 } } },
405 { { { 27, 0, 3 }, { 25, 30, 0 } } },
406 { { { 27, 0, 2 }, { 28, 24, 0 } } },
407 { { { 27, 0, 1 }, { 25, 31, 1 } } },
408 { { { 27, 0, 0 }, { 25, 31, 0 } } },
409 { { { 27, 0, 1 }, { 25, 31, 1 } } },
410 { { { 27, 0, 2 }, { 26, 30, 1 } } },
411 { { { 27, 0, 3 }, { 26, 30, 0 } } },
412 { { { 27, 0, 4 }, { 26, 31, 1 } } },
413 { { { 28, 0, 4 }, { 26, 31, 0 } } },
414 { { { 28, 0, 3 }, { 28, 27, 0 } } },
415 { { { 28, 0, 2 }, { 27, 30, 1 } } },
416 { { { 28, 0, 1 }, { 27, 30, 0 } } },
417 { { { 28, 0, 0 }, { 28, 28, 0 } } },
418 { { { 28, 0, 1 }, { 27, 31, 1 } } },
419 { { { 28, 0, 2 }, { 27, 31, 0 } } },
420 { { { 28, 0, 3 }, { 27, 31, 1 } } },
421 { { { 28, 0, 4 }, { 28, 30, 1 } } },
422 { { { 29, 0, 3 }, { 28, 30, 0 } } },
423 { { { 29, 0, 2 }, { 30, 27, 1 } } },
424 { { { 29, 0, 1 }, { 30, 27, 0 } } },
425 { { { 29, 0, 0 }, { 28, 31, 0 } } },
426 { { { 29, 0, 1 }, { 29, 30, 1 } } },
427 { { { 29, 0, 2 }, { 29, 30, 0 } } },
428 { { { 29, 0, 3 }, { 29, 30, 1 } } },
429 { { { 29, 0, 4 }, { 29, 31, 1 } } },
430 { { { 30, 0, 3 }, { 29, 31, 0 } } },
431 { { { 30, 0, 2 }, { 29, 31, 1 } } },
432 { { { 30, 0, 1 }, { 30, 30, 1 } } },
433 { { { 30, 0, 0 }, { 30, 30, 0 } } },
434 { { { 30, 0, 1 }, { 30, 31, 1 } } },
435 { { { 30, 0, 2 }, { 30, 31, 0 } } },
436 { { { 30, 0, 3 }, { 30, 31, 1 } } },
437 { { { 30, 0, 4 }, { 31, 30, 1 } } },
438 { { { 31, 0, 3 }, { 31, 30, 0 } } },
439 { { { 31, 0, 2 }, { 31, 30, 1 } } },
440 { { { 31, 0, 1 }, { 31, 31, 1 } } },
441 { { { 31, 0, 0 }, { 31, 31, 0 } } }
442};
443
444static const DDSSingleColourLookup DDSLookup_6_4[] =
445{
446 { { { 0, 0, 0 }, { 0, 0, 0 } } },
447 { { { 0, 0, 1 }, { 0, 1, 0 } } },
448 { { { 0, 0, 2 }, { 0, 2, 0 } } },
449 { { { 1, 0, 1 }, { 0, 3, 1 } } },
450 { { { 1, 0, 0 }, { 0, 3, 0 } } },
451 { { { 1, 0, 1 }, { 0, 4, 0 } } },
452 { { { 1, 0, 2 }, { 0, 5, 0 } } },
453 { { { 2, 0, 1 }, { 0, 6, 1 } } },
454 { { { 2, 0, 0 }, { 0, 6, 0 } } },
455 { { { 2, 0, 1 }, { 0, 7, 0 } } },
456 { { { 2, 0, 2 }, { 0, 8, 0 } } },
457 { { { 3, 0, 1 }, { 0, 9, 1 } } },
458 { { { 3, 0, 0 }, { 0, 9, 0 } } },
459 { { { 3, 0, 1 }, { 0, 10, 0 } } },
460 { { { 3, 0, 2 }, { 0, 11, 0 } } },
461 { { { 4, 0, 1 }, { 0, 12, 1 } } },
462 { { { 4, 0, 0 }, { 0, 12, 0 } } },
463 { { { 4, 0, 1 }, { 0, 13, 0 } } },
464 { { { 4, 0, 2 }, { 0, 14, 0 } } },
465 { { { 5, 0, 1 }, { 0, 15, 1 } } },
466 { { { 5, 0, 0 }, { 0, 15, 0 } } },
467 { { { 5, 0, 1 }, { 0, 16, 0 } } },
468 { { { 5, 0, 2 }, { 1, 15, 0 } } },
469 { { { 6, 0, 1 }, { 0, 17, 0 } } },
470 { { { 6, 0, 0 }, { 0, 18, 0 } } },
471 { { { 6, 0, 1 }, { 0, 19, 0 } } },
472 { { { 6, 0, 2 }, { 3, 14, 0 } } },
473 { { { 7, 0, 1 }, { 0, 20, 0 } } },
474 { { { 7, 0, 0 }, { 0, 21, 0 } } },
475 { { { 7, 0, 1 }, { 0, 22, 0 } } },
476 { { { 7, 0, 2 }, { 4, 15, 0 } } },
477 { { { 8, 0, 1 }, { 0, 23, 0 } } },
478 { { { 8, 0, 0 }, { 0, 24, 0 } } },
479 { { { 8, 0, 1 }, { 0, 25, 0 } } },
480 { { { 8, 0, 2 }, { 6, 14, 0 } } },
481 { { { 9, 0, 1 }, { 0, 26, 0 } } },
482 { { { 9, 0, 0 }, { 0, 27, 0 } } },
483 { { { 9, 0, 1 }, { 0, 28, 0 } } },
484 { { { 9, 0, 2 }, { 7, 15, 0 } } },
485 { { { 10, 0, 1 }, { 0, 29, 0 } } },
486 { { { 10, 0, 0 }, { 0, 30, 0 } } },
487 { { { 10, 0, 1 }, { 0, 31, 0 } } },
488 { { { 10, 0, 2 }, { 9, 14, 0 } } },
489 { { { 11, 0, 1 }, { 0, 32, 0 } } },
490 { { { 11, 0, 0 }, { 0, 33, 0 } } },
491 { { { 11, 0, 1 }, { 2, 30, 0 } } },
492 { { { 11, 0, 2 }, { 0, 34, 0 } } },
493 { { { 12, 0, 1 }, { 0, 35, 0 } } },
494 { { { 12, 0, 0 }, { 0, 36, 0 } } },
495 { { { 12, 0, 1 }, { 3, 31, 0 } } },
496 { { { 12, 0, 2 }, { 0, 37, 0 } } },
497 { { { 13, 0, 1 }, { 0, 38, 0 } } },
498 { { { 13, 0, 0 }, { 0, 39, 0 } } },
499 { { { 13, 0, 1 }, { 5, 30, 0 } } },
500 { { { 13, 0, 2 }, { 0, 40, 0 } } },
501 { { { 14, 0, 1 }, { 0, 41, 0 } } },
502 { { { 14, 0, 0 }, { 0, 42, 0 } } },
503 { { { 14, 0, 1 }, { 6, 31, 0 } } },
504 { { { 14, 0, 2 }, { 0, 43, 0 } } },
505 { { { 15, 0, 1 }, { 0, 44, 0 } } },
506 { { { 15, 0, 0 }, { 0, 45, 0 } } },
507 { { { 15, 0, 1 }, { 8, 30, 0 } } },
508 { { { 15, 0, 2 }, { 0, 46, 0 } } },
509 { { { 16, 0, 2 }, { 0, 47, 0 } } },
510 { { { 16, 0, 1 }, { 1, 46, 0 } } },
511 { { { 16, 0, 0 }, { 0, 48, 0 } } },
512 { { { 16, 0, 1 }, { 0, 49, 0 } } },
513 { { { 16, 0, 2 }, { 0, 50, 0 } } },
514 { { { 17, 0, 1 }, { 2, 47, 0 } } },
515 { { { 17, 0, 0 }, { 0, 51, 0 } } },
516 { { { 17, 0, 1 }, { 0, 52, 0 } } },
517 { { { 17, 0, 2 }, { 0, 53, 0 } } },
518 { { { 18, 0, 1 }, { 4, 46, 0 } } },
519 { { { 18, 0, 0 }, { 0, 54, 0 } } },
520 { { { 18, 0, 1 }, { 0, 55, 0 } } },
521 { { { 18, 0, 2 }, { 0, 56, 0 } } },
522 { { { 19, 0, 1 }, { 5, 47, 0 } } },
523 { { { 19, 0, 0 }, { 0, 57, 0 } } },
524 { { { 19, 0, 1 }, { 0, 58, 0 } } },
525 { { { 19, 0, 2 }, { 0, 59, 0 } } },
526 { { { 20, 0, 1 }, { 7, 46, 0 } } },
527 { { { 20, 0, 0 }, { 0, 60, 0 } } },
528 { { { 20, 0, 1 }, { 0, 61, 0 } } },
529 { { { 20, 0, 2 }, { 0, 62, 0 } } },
530 { { { 21, 0, 1 }, { 8, 47, 0 } } },
531 { { { 21, 0, 0 }, { 0, 63, 0 } } },
532 { { { 21, 0, 1 }, { 1, 62, 0 } } },
533 { { { 21, 0, 2 }, { 1, 63, 0 } } },
534 { { { 22, 0, 1 }, { 10, 46, 0 } } },
535 { { { 22, 0, 0 }, { 2, 62, 0 } } },
536 { { { 22, 0, 1 }, { 2, 63, 0 } } },
537 { { { 22, 0, 2 }, { 3, 62, 0 } } },
538 { { { 23, 0, 1 }, { 11, 47, 0 } } },
539 { { { 23, 0, 0 }, { 3, 63, 0 } } },
540 { { { 23, 0, 1 }, { 4, 62, 0 } } },
541 { { { 23, 0, 2 }, { 4, 63, 0 } } },
542 { { { 24, 0, 1 }, { 13, 46, 0 } } },
543 { { { 24, 0, 0 }, { 5, 62, 0 } } },
544 { { { 24, 0, 1 }, { 5, 63, 0 } } },
545 { { { 24, 0, 2 }, { 6, 62, 0 } } },
546 { { { 25, 0, 1 }, { 14, 47, 0 } } },
547 { { { 25, 0, 0 }, { 6, 63, 0 } } },
548 { { { 25, 0, 1 }, { 7, 62, 0 } } },
549 { { { 25, 0, 2 }, { 7, 63, 0 } } },
550 { { { 26, 0, 1 }, { 16, 45, 0 } } },
551 { { { 26, 0, 0 }, { 8, 62, 0 } } },
552 { { { 26, 0, 1 }, { 8, 63, 0 } } },
553 { { { 26, 0, 2 }, { 9, 62, 0 } } },
554 { { { 27, 0, 1 }, { 16, 48, 0 } } },
555 { { { 27, 0, 0 }, { 9, 63, 0 } } },
556 { { { 27, 0, 1 }, { 10, 62, 0 } } },
557 { { { 27, 0, 2 }, { 10, 63, 0 } } },
558 { { { 28, 0, 1 }, { 16, 51, 0 } } },
559 { { { 28, 0, 0 }, { 11, 62, 0 } } },
560 { { { 28, 0, 1 }, { 11, 63, 0 } } },
561 { { { 28, 0, 2 }, { 12, 62, 0 } } },
562 { { { 29, 0, 1 }, { 16, 54, 0 } } },
563 { { { 29, 0, 0 }, { 12, 63, 0 } } },
564 { { { 29, 0, 1 }, { 13, 62, 0 } } },
565 { { { 29, 0, 2 }, { 13, 63, 0 } } },
566 { { { 30, 0, 1 }, { 16, 57, 0 } } },
567 { { { 30, 0, 0 }, { 14, 62, 0 } } },
568 { { { 30, 0, 1 }, { 14, 63, 0 } } },
569 { { { 30, 0, 2 }, { 15, 62, 0 } } },
570 { { { 31, 0, 1 }, { 16, 60, 0 } } },
571 { { { 31, 0, 0 }, { 15, 63, 0 } } },
572 { { { 31, 0, 1 }, { 24, 46, 0 } } },
573 { { { 31, 0, 2 }, { 16, 62, 0 } } },
574 { { { 32, 0, 2 }, { 16, 63, 0 } } },
575 { { { 32, 0, 1 }, { 17, 62, 0 } } },
576 { { { 32, 0, 0 }, { 25, 47, 0 } } },
577 { { { 32, 0, 1 }, { 17, 63, 0 } } },
578 { { { 32, 0, 2 }, { 18, 62, 0 } } },
579 { { { 33, 0, 1 }, { 18, 63, 0 } } },
580 { { { 33, 0, 0 }, { 27, 46, 0 } } },
581 { { { 33, 0, 1 }, { 19, 62, 0 } } },
582 { { { 33, 0, 2 }, { 19, 63, 0 } } },
583 { { { 34, 0, 1 }, { 20, 62, 0 } } },
584 { { { 34, 0, 0 }, { 28, 47, 0 } } },
585 { { { 34, 0, 1 }, { 20, 63, 0 } } },
586 { { { 34, 0, 2 }, { 21, 62, 0 } } },
587 { { { 35, 0, 1 }, { 21, 63, 0 } } },
588 { { { 35, 0, 0 }, { 30, 46, 0 } } },
589 { { { 35, 0, 1 }, { 22, 62, 0 } } },
590 { { { 35, 0, 2 }, { 22, 63, 0 } } },
591 { { { 36, 0, 1 }, { 23, 62, 0 } } },
592 { { { 36, 0, 0 }, { 31, 47, 0 } } },
593 { { { 36, 0, 1 }, { 23, 63, 0 } } },
594 { { { 36, 0, 2 }, { 24, 62, 0 } } },
595 { { { 37, 0, 1 }, { 24, 63, 0 } } },
596 { { { 37, 0, 0 }, { 32, 47, 0 } } },
597 { { { 37, 0, 1 }, { 25, 62, 0 } } },
598 { { { 37, 0, 2 }, { 25, 63, 0 } } },
599 { { { 38, 0, 1 }, { 26, 62, 0 } } },
600 { { { 38, 0, 0 }, { 32, 50, 0 } } },
601 { { { 38, 0, 1 }, { 26, 63, 0 } } },
602 { { { 38, 0, 2 }, { 27, 62, 0 } } },
603 { { { 39, 0, 1 }, { 27, 63, 0 } } },
604 { { { 39, 0, 0 }, { 32, 53, 0 } } },
605 { { { 39, 0, 1 }, { 28, 62, 0 } } },
606 { { { 39, 0, 2 }, { 28, 63, 0 } } },
607 { { { 40, 0, 1 }, { 29, 62, 0 } } },
608 { { { 40, 0, 0 }, { 32, 56, 0 } } },
609 { { { 40, 0, 1 }, { 29, 63, 0 } } },
610 { { { 40, 0, 2 }, { 30, 62, 0 } } },
611 { { { 41, 0, 1 }, { 30, 63, 0 } } },
612 { { { 41, 0, 0 }, { 32, 59, 0 } } },
613 { { { 41, 0, 1 }, { 31, 62, 0 } } },
614 { { { 41, 0, 2 }, { 31, 63, 0 } } },
615 { { { 42, 0, 1 }, { 32, 61, 0 } } },
616 { { { 42, 0, 0 }, { 32, 62, 0 } } },
617 { { { 42, 0, 1 }, { 32, 63, 0 } } },
618 { { { 42, 0, 2 }, { 41, 46, 0 } } },
619 { { { 43, 0, 1 }, { 33, 62, 0 } } },
620 { { { 43, 0, 0 }, { 33, 63, 0 } } },
621 { { { 43, 0, 1 }, { 34, 62, 0 } } },
622 { { { 43, 0, 2 }, { 42, 47, 0 } } },
623 { { { 44, 0, 1 }, { 34, 63, 0 } } },
624 { { { 44, 0, 0 }, { 35, 62, 0 } } },
625 { { { 44, 0, 1 }, { 35, 63, 0 } } },
626 { { { 44, 0, 2 }, { 44, 46, 0 } } },
627 { { { 45, 0, 1 }, { 36, 62, 0 } } },
628 { { { 45, 0, 0 }, { 36, 63, 0 } } },
629 { { { 45, 0, 1 }, { 37, 62, 0 } } },
630 { { { 45, 0, 2 }, { 45, 47, 0 } } },
631 { { { 46, 0, 1 }, { 37, 63, 0 } } },
632 { { { 46, 0, 0 }, { 38, 62, 0 } } },
633 { { { 46, 0, 1 }, { 38, 63, 0 } } },
634 { { { 46, 0, 2 }, { 47, 46, 0 } } },
635 { { { 47, 0, 1 }, { 39, 62, 0 } } },
636 { { { 47, 0, 0 }, { 39, 63, 0 } } },
637 { { { 47, 0, 1 }, { 40, 62, 0 } } },
638 { { { 47, 0, 2 }, { 48, 46, 0 } } },
639 { { { 48, 0, 2 }, { 40, 63, 0 } } },
640 { { { 48, 0, 1 }, { 41, 62, 0 } } },
641 { { { 48, 0, 0 }, { 41, 63, 0 } } },
642 { { { 48, 0, 1 }, { 48, 49, 0 } } },
643 { { { 48, 0, 2 }, { 42, 62, 0 } } },
644 { { { 49, 0, 1 }, { 42, 63, 0 } } },
645 { { { 49, 0, 0 }, { 43, 62, 0 } } },
646 { { { 49, 0, 1 }, { 48, 52, 0 } } },
647 { { { 49, 0, 2 }, { 43, 63, 0 } } },
648 { { { 50, 0, 1 }, { 44, 62, 0 } } },
649 { { { 50, 0, 0 }, { 44, 63, 0 } } },
650 { { { 50, 0, 1 }, { 48, 55, 0 } } },
651 { { { 50, 0, 2 }, { 45, 62, 0 } } },
652 { { { 51, 0, 1 }, { 45, 63, 0 } } },
653 { { { 51, 0, 0 }, { 46, 62, 0 } } },
654 { { { 51, 0, 1 }, { 48, 58, 0 } } },
655 { { { 51, 0, 2 }, { 46, 63, 0 } } },
656 { { { 52, 0, 1 }, { 47, 62, 0 } } },
657 { { { 52, 0, 0 }, { 47, 63, 0 } } },
658 { { { 52, 0, 1 }, { 48, 61, 0 } } },
659 { { { 52, 0, 2 }, { 48, 62, 0 } } },
660 { { { 53, 0, 1 }, { 56, 47, 0 } } },
661 { { { 53, 0, 0 }, { 48, 63, 0 } } },
662 { { { 53, 0, 1 }, { 49, 62, 0 } } },
663 { { { 53, 0, 2 }, { 49, 63, 0 } } },
664 { { { 54, 0, 1 }, { 58, 46, 0 } } },
665 { { { 54, 0, 0 }, { 50, 62, 0 } } },
666 { { { 54, 0, 1 }, { 50, 63, 0 } } },
667 { { { 54, 0, 2 }, { 51, 62, 0 } } },
668 { { { 55, 0, 1 }, { 59, 47, 0 } } },
669 { { { 55, 0, 0 }, { 51, 63, 0 } } },
670 { { { 55, 0, 1 }, { 52, 62, 0 } } },
671 { { { 55, 0, 2 }, { 52, 63, 0 } } },
672 { { { 56, 0, 1 }, { 61, 46, 0 } } },
673 { { { 56, 0, 0 }, { 53, 62, 0 } } },
674 { { { 56, 0, 1 }, { 53, 63, 0 } } },
675 { { { 56, 0, 2 }, { 54, 62, 0 } } },
676 { { { 57, 0, 1 }, { 62, 47, 0 } } },
677 { { { 57, 0, 0 }, { 54, 63, 0 } } },
678 { { { 57, 0, 1 }, { 55, 62, 0 } } },
679 { { { 57, 0, 2 }, { 55, 63, 0 } } },
680 { { { 58, 0, 1 }, { 56, 62, 1 } } },
681 { { { 58, 0, 0 }, { 56, 62, 0 } } },
682 { { { 58, 0, 1 }, { 56, 63, 0 } } },
683 { { { 58, 0, 2 }, { 57, 62, 0 } } },
684 { { { 59, 0, 1 }, { 57, 63, 1 } } },
685 { { { 59, 0, 0 }, { 57, 63, 0 } } },
686 { { { 59, 0, 1 }, { 58, 62, 0 } } },
687 { { { 59, 0, 2 }, { 58, 63, 0 } } },
688 { { { 60, 0, 1 }, { 59, 62, 1 } } },
689 { { { 60, 0, 0 }, { 59, 62, 0 } } },
690 { { { 60, 0, 1 }, { 59, 63, 0 } } },
691 { { { 60, 0, 2 }, { 60, 62, 0 } } },
692 { { { 61, 0, 1 }, { 60, 63, 1 } } },
693 { { { 61, 0, 0 }, { 60, 63, 0 } } },
694 { { { 61, 0, 1 }, { 61, 62, 0 } } },
695 { { { 61, 0, 2 }, { 61, 63, 0 } } },
696 { { { 62, 0, 1 }, { 62, 62, 1 } } },
697 { { { 62, 0, 0 }, { 62, 62, 0 } } },
698 { { { 62, 0, 1 }, { 62, 63, 0 } } },
699 { { { 62, 0, 2 }, { 63, 62, 0 } } },
700 { { { 63, 0, 1 }, { 63, 63, 1 } } },
701 { { { 63, 0, 0 }, { 63, 63, 0 } } }
702};
703
704static const DDSSingleColourLookup*
705 DDS_LOOKUP[] =
706{
707 DDSLookup_5_4,
708 DDSLookup_6_4,
709 DDSLookup_5_4
710};
711
712/*
713 Macros
714*/
715#define C565_r(x) (((x) & 0xF800) >> 11)
716#define C565_g(x) (((x) & 0x07E0) >> 5)
717#define C565_b(x) ((x) & 0x001F)
718
719#define C565_red(x) ( (C565_r(x) << 3 | C565_r(x) >> 2))
720#define C565_green(x) ( (C565_g(x) << 2 | C565_g(x) >> 4))
721#define C565_blue(x) ( (C565_b(x) << 3 | C565_b(x) >> 2))
722
723#define DIV2(x) ((x) > 1 ? ((x) >> 1) : 1)
724
725#define FixRange(min, max, steps) \
726if (min > max) \
727 min = max; \
728if (max - min < steps) \
dirkee6b4cb2014-12-29 21:00:08 +0000729 max = MagickMin(min + steps, 255); \
dirk86921722014-07-07 18:47:28 +0000730if (max - min < steps) \
dirkee6b4cb2014-12-29 21:00:08 +0000731 min = MagickMax(min - steps, 0)
dirk86921722014-07-07 18:47:28 +0000732
733#define Dot(left, right) (left.x*right.x) + (left.y*right.y) + (left.z*right.z)
734
735#define VectorInit(vector, value) vector.x = vector.y = vector.z = vector.w \
736 = value
737#define VectorInit3(vector, value) vector.x = vector.y = vector.z = value
738
739#define IsBitMask(mask, r, g, b, a) (mask.r_bitmask == r && mask.g_bitmask == \
740 g && mask.b_bitmask == b && mask.alpha_bitmask == a)
741
742/*
743 Forward declarations
744*/
dirkee6b4cb2014-12-29 21:00:08 +0000745/*
746 Forward declarations
747*/
dirk86921722014-07-07 18:47:28 +0000748static MagickBooleanType
dirkee6b4cb2014-12-29 21:00:08 +0000749 ConstructOrdering(const size_t,const DDSVector4 *,const DDSVector3,
750 DDSVector4 *, DDSVector4 *, unsigned char *, size_t),
751 ReadDDSInfo(Image *,DDSInfo *),
752 ReadDXT1(Image *,DDSInfo *,ExceptionInfo *),
753 ReadDXT3(Image *,DDSInfo *,ExceptionInfo *),
754 ReadDXT5(Image *,DDSInfo *,ExceptionInfo *),
755 ReadUncompressedRGB(Image *,DDSInfo *,ExceptionInfo *),
756 ReadUncompressedRGBA(Image *,DDSInfo *,ExceptionInfo *),
757 SkipDXTMipmaps(Image *,DDSInfo *,int,ExceptionInfo *),
758 SkipRGBMipmaps(Image *,DDSInfo *,int,ExceptionInfo *),
759 WriteDDSImage(const ImageInfo *,Image *,ExceptionInfo *),
760 WriteMipmaps(Image *,const size_t,const size_t,const size_t,
761 const MagickBooleanType,const MagickBooleanType,ExceptionInfo *);
dirk86921722014-07-07 18:47:28 +0000762
763static void
dirkee6b4cb2014-12-29 21:00:08 +0000764 RemapIndices(const ssize_t *,const unsigned char *,unsigned char *),
765 WriteDDSInfo(Image *,const size_t,const size_t,const size_t),
766 WriteFourCC(Image *,const size_t,const MagickBooleanType,
767 const MagickBooleanType,ExceptionInfo *),
768 WriteImageData(Image *,const size_t,const size_t,const MagickBooleanType,
769 const MagickBooleanType,ExceptionInfo *),
770 WriteIndices(Image *,const DDSVector3,const DDSVector3,unsigned char *),
771 WriteSingleColorFit(Image *,const DDSVector4 *,const ssize_t *),
772 WriteUncompressed(Image *,ExceptionInfo *);
dirk86921722014-07-07 18:47:28 +0000773
774static inline void VectorAdd(const DDSVector4 left, const DDSVector4 right,
775 DDSVector4 *destination)
776{
777 destination->x = left.x + right.x;
778 destination->y = left.y + right.y;
779 destination->z = left.z + right.z;
780 destination->w = left.w + right.w;
781}
782
783static inline void VectorClamp(DDSVector4 *value)
784{
dirkee6b4cb2014-12-29 21:00:08 +0000785 value->x = MagickMin(1.0f,MagickMax(0.0f,value->x));
786 value->y = MagickMin(1.0f,MagickMax(0.0f,value->y));
787 value->z = MagickMin(1.0f,MagickMax(0.0f,value->z));
788 value->w = MagickMin(1.0f,MagickMax(0.0f,value->w));
dirk86921722014-07-07 18:47:28 +0000789}
790
791static inline void VectorClamp3(DDSVector3 *value)
792{
dirkee6b4cb2014-12-29 21:00:08 +0000793 value->x = MagickMin(1.0f,MagickMax(0.0f,value->x));
794 value->y = MagickMin(1.0f,MagickMax(0.0f,value->y));
795 value->z = MagickMin(1.0f,MagickMax(0.0f,value->z));
dirk86921722014-07-07 18:47:28 +0000796}
797
798static inline void VectorCopy43(const DDSVector4 source,
799 DDSVector3 *destination)
800{
801 destination->x = source.x;
802 destination->y = source.y;
803 destination->z = source.z;
804}
805
806static inline void VectorCopy44(const DDSVector4 source,
807 DDSVector4 *destination)
808{
809 destination->x = source.x;
810 destination->y = source.y;
811 destination->z = source.z;
812 destination->w = source.w;
813}
814
815static inline void VectorNegativeMultiplySubtract(const DDSVector4 a,
816 const DDSVector4 b, const DDSVector4 c, DDSVector4 *destination)
817{
818 destination->x = c.x - (a.x * b.x);
819 destination->y = c.y - (a.y * b.y);
820 destination->z = c.z - (a.z * b.z);
821 destination->w = c.w - (a.w * b.w);
822}
823
824static inline void VectorMultiply(const DDSVector4 left,
825 const DDSVector4 right, DDSVector4 *destination)
826{
827 destination->x = left.x * right.x;
828 destination->y = left.y * right.y;
829 destination->z = left.z * right.z;
830 destination->w = left.w * right.w;
831}
832
833static inline void VectorMultiply3(const DDSVector3 left,
834 const DDSVector3 right, DDSVector3 *destination)
835{
836 destination->x = left.x * right.x;
837 destination->y = left.y * right.y;
838 destination->z = left.z * right.z;
839}
840
841static inline void VectorMultiplyAdd(const DDSVector4 a, const DDSVector4 b,
842 const DDSVector4 c, DDSVector4 *destination)
843{
844 destination->x = (a.x * b.x) + c.x;
845 destination->y = (a.y * b.y) + c.y;
846 destination->z = (a.z * b.z) + c.z;
847 destination->w = (a.w * b.w) + c.w;
848}
849
850static inline void VectorMultiplyAdd3(const DDSVector3 a, const DDSVector3 b,
851 const DDSVector3 c, DDSVector3 *destination)
852{
853 destination->x = (a.x * b.x) + c.x;
854 destination->y = (a.y * b.y) + c.y;
855 destination->z = (a.z * b.z) + c.z;
856}
857
858static inline void VectorReciprocal(const DDSVector4 value,
859 DDSVector4 *destination)
860{
861 destination->x = 1.0f / value.x;
862 destination->y = 1.0f / value.y;
863 destination->z = 1.0f / value.z;
864 destination->w = 1.0f / value.w;
865}
866
867static inline void VectorSubtract(const DDSVector4 left,
868 const DDSVector4 right, DDSVector4 *destination)
869{
870 destination->x = left.x - right.x;
871 destination->y = left.y - right.y;
872 destination->z = left.z - right.z;
873 destination->w = left.w - right.w;
874}
875
876static inline void VectorSubtract3(const DDSVector3 left,
877 const DDSVector3 right, DDSVector3 *destination)
878{
879 destination->x = left.x - right.x;
880 destination->y = left.y - right.y;
881 destination->z = left.z - right.z;
882}
883
884static inline void VectorTruncate(DDSVector4 *value)
885{
886 value->x = value->x > 0.0f ? floor(value->x) : ceil(value->x);
887 value->y = value->y > 0.0f ? floor(value->y) : ceil(value->y);
888 value->z = value->z > 0.0f ? floor(value->z) : ceil(value->z);
889 value->w = value->w > 0.0f ? floor(value->w) : ceil(value->w);
890}
891
892static inline void VectorTruncate3(DDSVector3 *value)
893{
894 value->x = value->x > 0.0f ? floor(value->x) : ceil(value->x);
895 value->y = value->y > 0.0f ? floor(value->y) : ceil(value->y);
896 value->z = value->z > 0.0f ? floor(value->z) : ceil(value->z);
897}
898
899static void CalculateColors(unsigned short c0, unsigned short c1,
900 DDSColors *c, MagickBooleanType ignoreAlpha)
901{
902 c->a[0] = c->a[1] = c->a[2] = c->a[3] = 0;
903
904 c->r[0] = (unsigned char) C565_red(c0);
905 c->g[0] = (unsigned char) C565_green(c0);
906 c->b[0] = (unsigned char) C565_blue(c0);
907
908 c->r[1] = (unsigned char) C565_red(c1);
909 c->g[1] = (unsigned char) C565_green(c1);
910 c->b[1] = (unsigned char) C565_blue(c1);
911
912 if (ignoreAlpha != MagickFalse || c0 > c1)
913 {
914 c->r[2] = (unsigned char) ((2 * c->r[0] + c->r[1]) / 3);
915 c->g[2] = (unsigned char) ((2 * c->g[0] + c->g[1]) / 3);
916 c->b[2] = (unsigned char) ((2 * c->b[0] + c->b[1]) / 3);
917
918 c->r[3] = (unsigned char) ((c->r[0] + 2 * c->r[1]) / 3);
919 c->g[3] = (unsigned char) ((c->g[0] + 2 * c->g[1]) / 3);
920 c->b[3] = (unsigned char) ((c->b[0] + 2 * c->b[1]) / 3);
921 }
922 else
923 {
924 c->r[2] = (unsigned char) ((c->r[0] + c->r[1]) / 2);
925 c->g[2] = (unsigned char) ((c->g[0] + c->g[1]) / 2);
926 c->b[2] = (unsigned char) ((c->b[0] + c->b[1]) / 2);
927
928 c->r[3] = c->g[3] = c->b[3] = 0;
929 c->a[3] = 255;
930 }
931}
932
933static size_t CompressAlpha(const size_t min, const size_t max,
934 const size_t steps, const ssize_t *alphas, unsigned char* indices)
935{
936 unsigned char
937 codes[8];
938
939 register ssize_t
940 i;
941
942 size_t
943 error,
944 index,
945 j,
946 least,
947 value;
948
949 codes[0] = (unsigned char) min;
950 codes[1] = (unsigned char) max;
951 codes[6] = 0;
952 codes[7] = 255;
953
954 for (i=1; i < (ssize_t) steps; i++)
955 codes[i+1] = (unsigned char) (((steps-i)*min + i*max) / steps);
956
957 error = 0;
958 for (i=0; i<16; i++)
959 {
960 if (alphas[i] == -1)
961 {
962 indices[i] = 0;
963 continue;
964 }
965
966 value = alphas[i];
967 least = SIZE_MAX;
968 index = 0;
969 for (j=0; j<8; j++)
970 {
971 size_t
972 dist;
973
974 dist = value - (size_t)codes[j];
975 dist *= dist;
976
977 if (dist < least)
978 {
979 least = dist;
980 index = j;
981 }
982 }
983
984 indices[i] = (unsigned char)index;
985 error += least;
986 }
987
988 return error;
989}
990
991static void CompressClusterFit(const size_t count,
992 const DDSVector4 *points, const ssize_t *map, const DDSVector3 principle,
993 const DDSVector4 metric, DDSVector3 *start, DDSVector3* end,
994 unsigned char *indices)
995{
996 DDSVector3
997 axis;
998
999 DDSVector4
1000 grid,
1001 gridrcp,
1002 half,
1003 onethird_onethird2,
dirk86921722014-07-07 18:47:28 +00001004 pointsWeights[16],
1005 two,
1006 twonineths,
1007 twothirds_twothirds2,
1008 xSumwSum;
1009
1010 float
1011 bestError = 1e+37f;
1012
1013 size_t
1014 bestIteration = 0,
1015 besti = 0,
1016 bestj = 0,
1017 bestk = 0,
dirk560a9102014-12-16 21:55:06 +00001018 iterationIndex;
1019
1020 ssize_t
1021 i;
dirk86921722014-07-07 18:47:28 +00001022
1023 unsigned char
1024 *o,
1025 order[128],
1026 unordered[16];
1027
1028 VectorInit(half,0.5f);
1029 VectorInit(two,2.0f);
1030
1031 VectorInit(onethird_onethird2,1.0f/3.0f);
1032 onethird_onethird2.w = 1.0f/9.0f;
1033 VectorInit(twothirds_twothirds2,2.0f/3.0f);
1034 twothirds_twothirds2.w = 4.0f/9.0f;
1035 VectorInit(twonineths,2.0f/9.0f);
1036
1037 grid.x = 31.0f;
1038 grid.y = 63.0f;
1039 grid.z = 31.0f;
1040 grid.w = 0.0f;
1041
1042 gridrcp.x = 1.0f/31.0f;
1043 gridrcp.y = 1.0f/63.0f;
1044 gridrcp.z = 1.0f/31.0f;
1045 gridrcp.w = 0.0f;
1046
1047 xSumwSum.x = 0.0f;
1048 xSumwSum.y = 0.0f;
1049 xSumwSum.z = 0.0f;
1050 xSumwSum.w = 0.0f;
1051
1052 ConstructOrdering(count,points,principle,pointsWeights,&xSumwSum,order,0);
1053
1054 for (iterationIndex = 0;;)
1055 {
dirk560a9102014-12-16 21:55:06 +00001056#if defined(MAGICKCORE_OPENMP_SUPPORT)
1057 #pragma omp parallel for schedule(dynamic,1) \
1058 num_threads(GetMagickResourceLimit(ThreadResource))
1059#endif
1060 for (i=0; i < (ssize_t) count; i++)
dirk86921722014-07-07 18:47:28 +00001061 {
dirk560a9102014-12-16 21:55:06 +00001062 DDSVector4
1063 part0,
1064 part1,
1065 part2;
1066
1067 size_t
1068 ii,
1069 j,
1070 k,
1071 kmin;
1072
1073 VectorInit(part0,0.0f);
1074 for(ii=0; ii < (size_t) i; ii++)
1075 VectorAdd(pointsWeights[ii],part0,&part0);
1076
dirk86921722014-07-07 18:47:28 +00001077 VectorInit(part1,0.0f);
dirk560a9102014-12-16 21:55:06 +00001078 for (j=(size_t) i;;)
dirk86921722014-07-07 18:47:28 +00001079 {
1080 if (j == 0)
1081 {
1082 VectorCopy44(pointsWeights[0],&part2);
1083 kmin = 1;
1084 }
1085 else
1086 {
1087 VectorInit(part2,0.0f);
1088 kmin = j;
1089 }
1090
1091 for (k=kmin;;)
1092 {
1093 DDSVector4
1094 a,
1095 alpha2_sum,
1096 alphax_sum,
1097 alphabeta_sum,
1098 b,
1099 beta2_sum,
1100 betax_sum,
1101 e1,
1102 e2,
dirk560a9102014-12-16 21:55:06 +00001103 factor,
1104 part3;
dirk86921722014-07-07 18:47:28 +00001105
1106 float
1107 error;
1108
1109 VectorSubtract(xSumwSum,part2,&part3);
1110 VectorSubtract(part3,part1,&part3);
1111 VectorSubtract(part3,part0,&part3);
1112
1113 VectorMultiplyAdd(part1,twothirds_twothirds2,part0,&alphax_sum);
1114 VectorMultiplyAdd(part2,onethird_onethird2,alphax_sum,&alphax_sum);
1115 VectorInit(alpha2_sum,alphax_sum.w);
1116
1117 VectorMultiplyAdd(part2,twothirds_twothirds2,part3,&betax_sum);
1118 VectorMultiplyAdd(part1,onethird_onethird2,betax_sum,&betax_sum);
1119 VectorInit(beta2_sum,betax_sum.w);
1120
1121 VectorAdd(part1,part2,&alphabeta_sum);
1122 VectorInit(alphabeta_sum,alphabeta_sum.w);
1123 VectorMultiply(twonineths,alphabeta_sum,&alphabeta_sum);
1124
1125 VectorMultiply(alpha2_sum,beta2_sum,&factor);
1126 VectorNegativeMultiplySubtract(alphabeta_sum,alphabeta_sum,factor,
1127 &factor);
1128 VectorReciprocal(factor,&factor);
1129
1130 VectorMultiply(alphax_sum,beta2_sum,&a);
1131 VectorNegativeMultiplySubtract(betax_sum,alphabeta_sum,a,&a);
1132 VectorMultiply(a,factor,&a);
1133
1134 VectorMultiply(betax_sum,alpha2_sum,&b);
1135 VectorNegativeMultiplySubtract(alphax_sum,alphabeta_sum,b,&b);
1136 VectorMultiply(b,factor,&b);
1137
1138 VectorClamp(&a);
1139 VectorMultiplyAdd(grid,a,half,&a);
1140 VectorTruncate(&a);
1141 VectorMultiply(a,gridrcp,&a);
1142
1143 VectorClamp(&b);
1144 VectorMultiplyAdd(grid,b,half,&b);
1145 VectorTruncate(&b);
1146 VectorMultiply(b,gridrcp,&b);
1147
1148 VectorMultiply(b,b,&e1);
1149 VectorMultiply(e1,beta2_sum,&e1);
1150 VectorMultiply(a,a,&e2);
1151 VectorMultiplyAdd(e2,alpha2_sum,e1,&e1);
1152
1153 VectorMultiply(a,b,&e2);
1154 VectorMultiply(e2,alphabeta_sum,&e2);
1155 VectorNegativeMultiplySubtract(a,alphax_sum,e2,&e2);
1156 VectorNegativeMultiplySubtract(b,betax_sum,e2,&e2);
1157 VectorMultiplyAdd(two,e2,e1,&e2);
1158 VectorMultiply(e2,metric,&e2);
1159
1160 error = e2.x + e2.y + e2.z;
1161
1162 if (error < bestError)
dirk560a9102014-12-16 21:55:06 +00001163 {
1164#if defined(MAGICKCORE_OPENMP_SUPPORT)
1165 #pragma omp critical (DDS_CompressClusterFit)
1166#endif
1167 {
1168 if (error < bestError)
1169 {
1170 VectorCopy43(a,start);
1171 VectorCopy43(b,end);
1172 bestError = error;
1173 besti = i;
1174 bestj = j;
1175 bestk = k;
1176 bestIteration = iterationIndex;
1177 }
1178 }
1179 }
dirk86921722014-07-07 18:47:28 +00001180
1181 if (k == count)
1182 break;
1183
1184 VectorAdd(pointsWeights[k],part2,&part2);
1185 k++;
1186 }
1187
1188 if (j == count)
1189 break;
1190
1191 VectorAdd(pointsWeights[j],part1,&part1);
1192 j++;
1193 }
dirk86921722014-07-07 18:47:28 +00001194 }
1195
1196 if (bestIteration != iterationIndex)
1197 break;
1198
1199 iterationIndex++;
1200 if (iterationIndex == 8)
1201 break;
1202
1203 VectorSubtract3(*end,*start,&axis);
1204 if (ConstructOrdering(count,points,axis,pointsWeights,&xSumwSum,order,
1205 iterationIndex) == MagickFalse)
1206 break;
1207 }
1208
1209 o = order + (16*bestIteration);
1210
cristy385d8662014-12-22 19:49:01 +00001211 for (i=0; i < (ssize_t) besti; i++)
dirk86921722014-07-07 18:47:28 +00001212 unordered[o[i]] = 0;
cristy385d8662014-12-22 19:49:01 +00001213 for (i=besti; i < (ssize_t) bestj; i++)
dirk86921722014-07-07 18:47:28 +00001214 unordered[o[i]] = 2;
cristy385d8662014-12-22 19:49:01 +00001215 for (i=bestj; i < (ssize_t) bestk; i++)
dirk86921722014-07-07 18:47:28 +00001216 unordered[o[i]] = 3;
cristy385d8662014-12-22 19:49:01 +00001217 for (i=bestk; i < (ssize_t) count; i++)
dirk86921722014-07-07 18:47:28 +00001218 unordered[o[i]] = 1;
1219
1220 RemapIndices(map,unordered,indices);
1221}
1222
1223static void CompressRangeFit(const size_t count,
1224 const DDSVector4* points, const ssize_t *map, const DDSVector3 principle,
1225 const DDSVector4 metric, DDSVector3 *start, DDSVector3 *end,
1226 unsigned char *indices)
1227{
1228 float
1229 d,
1230 bestDist,
1231 max,
1232 min,
1233 val;
1234
1235 DDSVector3
1236 codes[4],
1237 grid,
1238 gridrcp,
1239 half,
1240 dist;
1241
1242 register ssize_t
1243 i;
1244
1245 size_t
1246 bestj,
1247 j;
1248
1249 unsigned char
1250 closest[16];
1251
1252 VectorInit3(half,0.5f);
1253
1254 grid.x = 31.0f;
1255 grid.y = 63.0f;
1256 grid.z = 31.0f;
1257
1258 gridrcp.x = 1.0f/31.0f;
1259 gridrcp.y = 1.0f/63.0f;
1260 gridrcp.z = 1.0f/31.0f;
1261
1262 if (count > 0)
1263 {
1264 VectorCopy43(points[0],start);
1265 VectorCopy43(points[0],end);
1266
1267 min = max = Dot(points[0],principle);
1268 for (i=1; i < (ssize_t) count; i++)
1269 {
1270 val = Dot(points[i],principle);
1271 if (val < min)
1272 {
1273 VectorCopy43(points[i],start);
1274 min = val;
1275 }
1276 else if (val > max)
1277 {
1278 VectorCopy43(points[i],end);
1279 max = val;
1280 }
1281 }
1282 }
1283
1284 VectorClamp3(start);
1285 VectorMultiplyAdd3(grid,*start,half,start);
1286 VectorTruncate3(start);
1287 VectorMultiply3(*start,gridrcp,start);
1288
1289 VectorClamp3(end);
1290 VectorMultiplyAdd3(grid,*end,half,end);
1291 VectorTruncate3(end);
1292 VectorMultiply3(*end,gridrcp,end);
1293
1294 codes[0] = *start;
1295 codes[1] = *end;
1296 codes[2].x = (start->x * (2.0f/3.0f)) + (end->x * (1.0f/3.0f));
1297 codes[2].y = (start->y * (2.0f/3.0f)) + (end->y * (1.0f/3.0f));
1298 codes[2].z = (start->z * (2.0f/3.0f)) + (end->z * (1.0f/3.0f));
1299 codes[3].x = (start->x * (1.0f/3.0f)) + (end->x * (2.0f/3.0f));
1300 codes[3].y = (start->y * (1.0f/3.0f)) + (end->y * (2.0f/3.0f));
1301 codes[3].z = (start->z * (1.0f/3.0f)) + (end->z * (2.0f/3.0f));
1302
1303 for (i=0; i < (ssize_t) count; i++)
1304 {
1305 bestDist = 1e+37f;
1306 bestj = 0;
1307 for (j=0; j < 4; j++)
1308 {
1309 dist.x = (points[i].x - codes[j].x) * metric.x;
1310 dist.y = (points[i].y - codes[j].y) * metric.y;
1311 dist.z = (points[i].z - codes[j].z) * metric.z;
1312
1313 d = Dot(dist,dist);
1314 if (d < bestDist)
1315 {
1316 bestDist = d;
1317 bestj = j;
1318 }
1319 }
1320
1321 closest[i] = (unsigned char) bestj;
1322 }
1323
1324 RemapIndices(map, closest, indices);
1325}
1326
1327static void ComputeEndPoints(const DDSSingleColourLookup *lookup[],
1328 const unsigned char *color, DDSVector3 *start, DDSVector3 *end,
1329 unsigned char *index)
1330{
1331 register ssize_t
1332 i;
1333
1334 size_t
1335 c,
1336 maxError = SIZE_MAX;
1337
1338 for (i=0; i < 2; i++)
1339 {
1340 const DDSSourceBlock*
1341 sources[3];
1342
1343 size_t
1344 error = 0;
1345
1346 for (c=0; c < 3; c++)
1347 {
1348 sources[c] = &lookup[c][color[c]].sources[i];
1349 error += ((size_t) sources[c]->error) * ((size_t) sources[c]->error);
1350 }
1351
1352 if (error > maxError)
1353 continue;
1354
1355 start->x = (float) sources[0]->start / 31.0f;
1356 start->y = (float) sources[1]->start / 63.0f;
1357 start->z = (float) sources[2]->start / 31.0f;
1358
1359 end->x = (float) sources[0]->end / 31.0f;
1360 end->y = (float) sources[1]->end / 63.0f;
1361 end->z = (float) sources[2]->end / 31.0f;
1362
1363 *index = (unsigned char) (2*i);
1364 maxError = error;
1365 }
1366}
1367
1368static void ComputePrincipleComponent(const float *covariance,
1369 DDSVector3 *principle)
1370{
1371 DDSVector4
1372 row0,
1373 row1,
1374 row2,
1375 v;
1376
1377 register ssize_t
1378 i;
1379
1380 row0.x = covariance[0];
1381 row0.y = covariance[1];
1382 row0.z = covariance[2];
1383 row0.w = 0.0f;
1384
1385 row1.x = covariance[1];
1386 row1.y = covariance[3];
1387 row1.z = covariance[4];
1388 row1.w = 0.0f;
1389
1390 row2.x = covariance[2];
1391 row2.y = covariance[4];
1392 row2.z = covariance[5];
1393 row2.w = 0.0f;
1394
1395 VectorInit(v,1.0f);
1396
1397 for (i=0; i < 8; i++)
1398 {
1399 DDSVector4
1400 w;
1401
1402 float
1403 a;
1404
1405 w.x = row0.x * v.x;
1406 w.y = row0.y * v.x;
1407 w.z = row0.z * v.x;
1408 w.w = row0.w * v.x;
1409
1410 w.x = (row1.x * v.y) + w.x;
1411 w.y = (row1.y * v.y) + w.y;
1412 w.z = (row1.z * v.y) + w.z;
1413 w.w = (row1.w * v.y) + w.w;
1414
1415 w.x = (row2.x * v.z) + w.x;
1416 w.y = (row2.y * v.z) + w.y;
1417 w.z = (row2.z * v.z) + w.z;
1418 w.w = (row2.w * v.z) + w.w;
1419
dirkee6b4cb2014-12-29 21:00:08 +00001420 a = 1.0f / MagickMax(w.x,MagickMax(w.y,w.z));
dirk86921722014-07-07 18:47:28 +00001421
1422 v.x = w.x * a;
1423 v.y = w.y * a;
1424 v.z = w.z * a;
1425 v.w = w.w * a;
1426 }
1427
1428 VectorCopy43(v,principle);
1429}
1430
1431static void ComputeWeightedCovariance(const size_t count,
1432 const DDSVector4 *points, float *covariance)
1433{
1434 DDSVector3
1435 centroid;
1436
1437 float
1438 total;
1439
1440 size_t
1441 i;
1442
1443 total = 0.0f;
1444 VectorInit3(centroid,0.0f);
1445
1446 for (i=0; i < count; i++)
1447 {
1448 total += points[i].w;
1449 centroid.x += (points[i].x * points[i].w);
1450 centroid.y += (points[i].y * points[i].w);
1451 centroid.z += (points[i].z * points[i].w);
1452 }
1453
1454 if( total > 1.192092896e-07F)
1455 {
1456 centroid.x /= total;
1457 centroid.y /= total;
1458 centroid.z /= total;
1459 }
1460
1461 for (i=0; i < 6; i++)
1462 covariance[i] = 0.0f;
1463
1464 for (i = 0; i < count; i++)
1465 {
1466 DDSVector3
1467 a,
1468 b;
1469
1470 a.x = points[i].x - centroid.x;
1471 a.y = points[i].y - centroid.y;
1472 a.z = points[i].z - centroid.z;
1473
1474 b.x = points[i].w * a.x;
1475 b.y = points[i].w * a.y;
1476 b.z = points[i].w * a.z;
1477
1478 covariance[0] += a.x*b.x;
1479 covariance[1] += a.x*b.y;
1480 covariance[2] += a.x*b.z;
1481 covariance[3] += a.y*b.y;
1482 covariance[4] += a.y*b.z;
1483 covariance[5] += a.z*b.z;
1484 }
1485}
1486
1487static MagickBooleanType ConstructOrdering(const size_t count,
1488 const DDSVector4 *points, const DDSVector3 axis, DDSVector4 *pointsWeights,
1489 DDSVector4 *xSumwSum, unsigned char *order, size_t iteration)
1490{
1491 float
1492 dps[16],
1493 f;
1494
1495 register ssize_t
1496 i;
1497
1498 size_t
1499 j;
1500
1501 unsigned char
1502 c,
1503 *o,
1504 *p;
1505
1506 o = order + (16*iteration);
1507
1508 for (i=0; i < (ssize_t) count; i++)
1509 {
1510 dps[i] = Dot(points[i],axis);
1511 o[i] = (unsigned char)i;
1512 }
1513
1514 for (i=0; i < (ssize_t) count; i++)
1515 {
1516 for (j=i; j > 0 && dps[j] < dps[j - 1]; j--)
1517 {
1518 f = dps[j];
1519 dps[j] = dps[j - 1];
1520 dps[j - 1] = f;
1521
1522 c = o[j];
1523 o[j] = o[j - 1];
1524 o[j - 1] = c;
1525 }
1526 }
1527
1528 for (i=0; i < (ssize_t) iteration; i++)
1529 {
1530 MagickBooleanType
1531 same;
1532
1533 p = order + (16*i);
1534 same = MagickTrue;
1535
1536 for (j=0; j < count; j++)
1537 {
1538 if (o[j] != p[j])
1539 {
1540 same = MagickFalse;
1541 break;
1542 }
1543 }
1544
1545 if (same != MagickFalse)
1546 return MagickFalse;
1547 }
1548
1549 xSumwSum->x = 0;
1550 xSumwSum->y = 0;
1551 xSumwSum->z = 0;
1552 xSumwSum->w = 0;
1553
1554 for (i=0; i < (ssize_t) count; i++)
1555 {
1556 DDSVector4
1557 v;
1558
1559 j = (size_t) o[i];
1560
1561 v.x = points[j].w * points[j].x;
1562 v.y = points[j].w * points[j].y;
1563 v.z = points[j].w * points[j].z;
1564 v.w = points[j].w * 1.0f;
1565
1566 VectorCopy44(v,&pointsWeights[i]);
1567 VectorAdd(*xSumwSum,v,xSumwSum);
1568 }
1569
1570 return MagickTrue;
1571}
1572
1573/*
1574%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1575% %
1576% %
1577% %
1578% I s D D S %
1579% %
1580% %
1581% %
1582%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1583%
1584% IsDDS() returns MagickTrue if the image format type, identified by the
1585% magick string, is DDS.
1586%
1587% The format of the IsDDS method is:
1588%
1589% MagickBooleanType IsDDS(const unsigned char *magick,const size_t length)
1590%
1591% A description of each parameter follows:
1592%
1593% o magick: compare image format pattern against these bytes.
1594%
1595% o length: Specifies the length of the magick string.
1596%
1597*/
1598static MagickBooleanType IsDDS(const unsigned char *magick, const size_t length)
1599{
1600 if (length < 4)
1601 return(MagickFalse);
1602 if (LocaleNCompare((char *) magick,"DDS ", 4) == 0)
1603 return(MagickTrue);
1604 return(MagickFalse);
1605}
1606/*
1607%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1608% %
1609% %
1610% %
1611% R e a d D D S I m a g e %
1612% %
1613% %
1614% %
1615%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
1616%
1617% ReadDDSImage() reads a DirectDraw Surface image file and returns it. It
1618% allocates the memory necessary for the new Image structure and returns a
1619% pointer to the new image.
1620%
1621% The format of the ReadDDSImage method is:
1622%
1623% Image *ReadDDSImage(const ImageInfo *image_info,ExceptionInfo *exception)
1624%
1625% A description of each parameter follows:
1626%
1627% o image_info: The image info.
1628%
1629% o exception: return any errors or warnings in this structure.
1630%
1631*/
1632
1633static Image *ReadDDSImage(const ImageInfo *image_info,ExceptionInfo *exception)
1634{
1635 Image
1636 *image;
1637
1638 MagickBooleanType
1639 status,
1640 cubemap = MagickFalse,
1641 volume = MagickFalse;
1642
1643 CompressionType
1644 compression;
1645
1646 DDSInfo
1647 dds_info;
1648
1649 DDSDecoder
1650 *decoder;
1651
1652 PixelTrait
1653 alpha_trait;
1654
1655 size_t
1656 n,
1657 num_images;
1658
1659 /*
1660 Open image file.
1661 */
1662 assert(image_info != (const ImageInfo *) NULL);
cristye1c94d92015-06-28 12:16:33 +00001663 assert(image_info->signature == MagickCoreSignature);
dirk86921722014-07-07 18:47:28 +00001664 if (image_info->debug != MagickFalse)
1665 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",
1666 image_info->filename);
1667 assert(exception != (ExceptionInfo *) NULL);
cristye1c94d92015-06-28 12:16:33 +00001668 assert(exception->signature == MagickCoreSignature);
dirk86921722014-07-07 18:47:28 +00001669 image=AcquireImage(image_info,exception);
1670 status=OpenBlob(image_info,image,ReadBinaryBlobMode,exception);
1671 if (status == MagickFalse)
1672 {
1673 image=DestroyImageList(image);
1674 return((Image *) NULL);
1675 }
1676
1677 /*
1678 Initialize image structure.
1679 */
1680 if (ReadDDSInfo(image, &dds_info) != MagickTrue) {
1681 ThrowReaderException(CorruptImageError,"ImproperImageHeader");
1682 }
1683
1684 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP)
1685 cubemap = MagickTrue;
1686
1687 if (dds_info.ddscaps2 & DDSCAPS2_VOLUME && dds_info.depth > 0)
1688 volume = MagickTrue;
1689
1690 (void) SeekBlob(image, 128, SEEK_SET);
1691
1692 /*
1693 Determine pixel format
1694 */
1695 if (dds_info.pixelformat.flags & DDPF_RGB)
1696 {
1697 compression = NoCompression;
1698 if (dds_info.pixelformat.flags & DDPF_ALPHAPIXELS)
1699 {
1700 alpha_trait = BlendPixelTrait;
1701 decoder = ReadUncompressedRGBA;
1702 }
1703 else
1704 {
1705 alpha_trait = UndefinedPixelTrait;
1706 decoder = ReadUncompressedRGB;
1707 }
1708 }
dirk6398fb42014-09-08 18:19:39 +00001709 else if (dds_info.pixelformat.flags & DDPF_LUMINANCE)
1710 {
1711 compression = NoCompression;
1712 if (dds_info.pixelformat.flags & DDPF_ALPHAPIXELS)
1713 {
1714 /* Not sure how to handle this */
1715 ThrowReaderException(CorruptImageError, "ImageTypeNotSupported");
1716 }
1717 else
1718 {
1719 alpha_trait = UndefinedPixelTrait;
1720 decoder = ReadUncompressedRGB;
1721 }
1722 }
dirk86921722014-07-07 18:47:28 +00001723 else if (dds_info.pixelformat.flags & DDPF_FOURCC)
1724 {
1725 switch (dds_info.pixelformat.fourcc)
1726 {
1727 case FOURCC_DXT1:
1728 {
1729 alpha_trait = UndefinedPixelTrait;
1730 compression = DXT1Compression;
1731 decoder = ReadDXT1;
1732 break;
1733 }
dirk86921722014-07-07 18:47:28 +00001734 case FOURCC_DXT3:
1735 {
1736 alpha_trait = BlendPixelTrait;
1737 compression = DXT3Compression;
1738 decoder = ReadDXT3;
1739 break;
1740 }
dirk86921722014-07-07 18:47:28 +00001741 case FOURCC_DXT5:
1742 {
1743 alpha_trait = BlendPixelTrait;
1744 compression = DXT5Compression;
1745 decoder = ReadDXT5;
1746 break;
1747 }
dirk86921722014-07-07 18:47:28 +00001748 default:
1749 {
1750 /* Unknown FOURCC */
1751 ThrowReaderException(CorruptImageError, "ImageTypeNotSupported");
1752 }
1753 }
1754 }
1755 else
1756 {
1757 /* Neither compressed nor uncompressed... thus unsupported */
1758 ThrowReaderException(CorruptImageError, "ImageTypeNotSupported");
1759 }
1760
1761 num_images = 1;
1762 if (cubemap)
1763 {
1764 /*
1765 Determine number of faces defined in the cubemap
1766 */
1767 num_images = 0;
1768 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_POSITIVEX) num_images++;
1769 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_NEGATIVEX) num_images++;
1770 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_POSITIVEY) num_images++;
1771 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_NEGATIVEY) num_images++;
1772 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_POSITIVEZ) num_images++;
1773 if (dds_info.ddscaps2 & DDSCAPS2_CUBEMAP_NEGATIVEZ) num_images++;
1774 }
1775
1776 if (volume)
1777 num_images = dds_info.depth;
1778
1779 for (n = 0; n < num_images; n++)
1780 {
1781 if (n != 0)
1782 {
1783 /* Start a new image */
1784 AcquireNextImage(image_info,image,exception);
1785 if (GetNextImageInList(image) == (Image *) NULL)
1786 return(DestroyImageList(image));
1787 image=SyncNextImageInList(image);
1788 }
1789
1790 image->alpha_trait=alpha_trait;
1791 image->compression = compression;
1792 image->columns = dds_info.width;
1793 image->rows = dds_info.height;
1794 image->storage_class = DirectClass;
1795 image->endian = LSBEndian;
1796 image->depth = 8;
1797 if (image_info->ping != MagickFalse)
1798 {
1799 (void) CloseBlob(image);
1800 return(GetFirstImageInList(image));
1801 }
cristyacabb842014-12-14 23:36:33 +00001802 status=SetImageExtent(image,image->columns,image->rows,exception);
1803 if (status == MagickFalse)
1804 return(DestroyImageList(image));
dirk86921722014-07-07 18:47:28 +00001805 if ((decoder)(image, &dds_info, exception) != MagickTrue)
1806 {
1807 (void) CloseBlob(image);
1808 return(GetFirstImageInList(image));
1809 }
1810 }
dirk86921722014-07-07 18:47:28 +00001811 (void) CloseBlob(image);
1812 return(GetFirstImageInList(image));
1813}
1814
1815static MagickBooleanType ReadDDSInfo(Image *image, DDSInfo *dds_info)
1816{
1817 size_t
1818 hdr_size,
1819 required;
1820
1821 /* Seek to start of header */
1822 (void) SeekBlob(image, 4, SEEK_SET);
1823
1824 /* Check header field */
1825 hdr_size = ReadBlobLSBLong(image);
1826 if (hdr_size != 124)
1827 return MagickFalse;
1828
1829 /* Fill in DDS info struct */
1830 dds_info->flags = ReadBlobLSBLong(image);
1831
1832 /* Check required flags */
1833 required=(size_t) (DDSD_WIDTH | DDSD_HEIGHT | DDSD_PIXELFORMAT);
1834 if ((dds_info->flags & required) != required)
1835 return MagickFalse;
1836
1837 dds_info->height = ReadBlobLSBLong(image);
1838 dds_info->width = ReadBlobLSBLong(image);
1839 dds_info->pitchOrLinearSize = ReadBlobLSBLong(image);
1840 dds_info->depth = ReadBlobLSBLong(image);
1841 dds_info->mipmapcount = ReadBlobLSBLong(image);
1842
1843 (void) SeekBlob(image, 44, SEEK_CUR); /* reserved region of 11 DWORDs */
1844
1845 /* Read pixel format structure */
1846 hdr_size = ReadBlobLSBLong(image);
1847 if (hdr_size != 32)
1848 return MagickFalse;
1849
1850 dds_info->pixelformat.flags = ReadBlobLSBLong(image);
1851 dds_info->pixelformat.fourcc = ReadBlobLSBLong(image);
1852 dds_info->pixelformat.rgb_bitcount = ReadBlobLSBLong(image);
1853 dds_info->pixelformat.r_bitmask = ReadBlobLSBLong(image);
1854 dds_info->pixelformat.g_bitmask = ReadBlobLSBLong(image);
1855 dds_info->pixelformat.b_bitmask = ReadBlobLSBLong(image);
1856 dds_info->pixelformat.alpha_bitmask = ReadBlobLSBLong(image);
1857
1858 dds_info->ddscaps1 = ReadBlobLSBLong(image);
1859 dds_info->ddscaps2 = ReadBlobLSBLong(image);
1860 (void) SeekBlob(image, 12, SEEK_CUR); /* 3 reserved DWORDs */
1861
1862 return MagickTrue;
1863}
1864
1865static MagickBooleanType ReadDXT1(Image *image, DDSInfo *dds_info,
1866 ExceptionInfo *exception)
1867{
1868 DDSColors
1869 colors;
1870
1871 register Quantum
1872 *q;
1873
1874 register ssize_t
1875 i,
1876 x;
1877
1878 size_t
1879 bits;
1880
1881 ssize_t
1882 j,
1883 y;
1884
1885 unsigned char
1886 code;
1887
1888 unsigned short
1889 c0,
1890 c1;
1891
1892 for (y = 0; y < (ssize_t) dds_info->height; y += 4)
1893 {
1894 for (x = 0; x < (ssize_t) dds_info->width; x += 4)
1895 {
1896 /* Get 4x4 patch of pixels to write on */
dirkee6b4cb2014-12-29 21:00:08 +00001897 q = QueueAuthenticPixels(image, x, y, MagickMin(4, dds_info->width - x),
1898 MagickMin(4, dds_info->height - y),exception);
dirk86921722014-07-07 18:47:28 +00001899
1900 if (q == (Quantum *) NULL)
1901 return MagickFalse;
1902
1903 /* Read 8 bytes of data from the image */
1904 c0 = ReadBlobLSBShort(image);
1905 c1 = ReadBlobLSBShort(image);
1906 bits = ReadBlobLSBLong(image);
1907
1908 CalculateColors(c0, c1, &colors, MagickFalse);
1909
1910 /* Write the pixels */
1911 for (j = 0; j < 4; j++)
1912 {
1913 for (i = 0; i < 4; i++)
1914 {
1915 if ((x + i) < (ssize_t) dds_info->width &&
1916 (y + j) < (ssize_t) dds_info->height)
1917 {
1918 code = (unsigned char) ((bits >> ((j*4+i)*2)) & 0x3);
1919 SetPixelRed(image,ScaleCharToQuantum(colors.r[code]),q);
1920 SetPixelGreen(image,ScaleCharToQuantum(colors.g[code]),q);
1921 SetPixelBlue(image,ScaleCharToQuantum(colors.b[code]),q);
1922 SetPixelAlpha(image,ScaleCharToQuantum(colors.a[code]),q);
cristy17f11b02014-12-20 19:37:04 +00001923 if (colors.a[code] && (image->alpha_trait == UndefinedPixelTrait))
dirk86921722014-07-07 18:47:28 +00001924 image->alpha_trait=BlendPixelTrait; /* Correct matte */
1925 q+=GetPixelChannels(image);
1926 }
1927 }
1928 }
1929
1930 if (SyncAuthenticPixels(image,exception) == MagickFalse)
1931 return MagickFalse;
1932 }
1933 }
1934
dirkee6b4cb2014-12-29 21:00:08 +00001935 return(SkipDXTMipmaps(image,dds_info,8,exception));
dirk86921722014-07-07 18:47:28 +00001936}
1937
1938static MagickBooleanType ReadDXT3(Image *image, DDSInfo *dds_info,
1939 ExceptionInfo *exception)
1940{
1941 DDSColors
1942 colors;
1943
1944 register Quantum
1945 *q;
1946
1947 register ssize_t
1948 i,
1949 x;
1950
1951 unsigned char
1952 alpha;
1953
1954 size_t
1955 a0,
1956 a1,
1957 bits,
1958 code;
1959
1960 ssize_t
1961 j,
1962 y;
1963
1964 unsigned short
1965 c0,
1966 c1;
1967
1968 for (y = 0; y < (ssize_t) dds_info->height; y += 4)
1969 {
1970 for (x = 0; x < (ssize_t) dds_info->width; x += 4)
1971 {
1972 /* Get 4x4 patch of pixels to write on */
dirkee6b4cb2014-12-29 21:00:08 +00001973 q = QueueAuthenticPixels(image, x, y, MagickMin(4, dds_info->width - x),
1974 MagickMin(4, dds_info->height - y),exception);
dirk86921722014-07-07 18:47:28 +00001975
1976 if (q == (Quantum *) NULL)
1977 return MagickFalse;
1978
1979 /* Read alpha values (8 bytes) */
1980 a0 = ReadBlobLSBLong(image);
1981 a1 = ReadBlobLSBLong(image);
1982
1983 /* Read 8 bytes of data from the image */
1984 c0 = ReadBlobLSBShort(image);
1985 c1 = ReadBlobLSBShort(image);
1986 bits = ReadBlobLSBLong(image);
1987
1988 CalculateColors(c0, c1, &colors, MagickTrue);
1989
1990 /* Write the pixels */
1991 for (j = 0; j < 4; j++)
1992 {
1993 for (i = 0; i < 4; i++)
1994 {
1995 if ((x + i) < (ssize_t) dds_info->width && (y + j) < (ssize_t) dds_info->height)
1996 {
1997 code = (bits >> ((4*j+i)*2)) & 0x3;
1998 SetPixelRed(image,ScaleCharToQuantum(colors.r[code]),q);
1999 SetPixelGreen(image,ScaleCharToQuantum(colors.g[code]),q);
2000 SetPixelBlue(image,ScaleCharToQuantum(colors.b[code]),q);
2001 /*
2002 Extract alpha value: multiply 0..15 by 17 to get range 0..255
2003 */
2004 if (j < 2)
2005 alpha = 17U * (unsigned char) ((a0 >> (4*(4*j+i))) & 0xf);
2006 else
2007 alpha = 17U * (unsigned char) ((a1 >> (4*(4*(j-2)+i))) & 0xf);
2008 SetPixelAlpha(image,ScaleCharToQuantum((unsigned char) alpha),q);
2009 q+=GetPixelChannels(image);
2010 }
2011 }
2012 }
2013
2014 if (SyncAuthenticPixels(image,exception) == MagickFalse)
2015 return MagickFalse;
2016 }
2017 }
2018
dirkee6b4cb2014-12-29 21:00:08 +00002019 return(SkipDXTMipmaps(image,dds_info,16,exception));
dirk86921722014-07-07 18:47:28 +00002020}
2021
2022static MagickBooleanType ReadDXT5(Image *image, DDSInfo *dds_info,
2023 ExceptionInfo *exception)
2024{
2025 DDSColors
2026 colors;
2027
2028 MagickSizeType
2029 alpha_bits;
2030
2031 register Quantum
2032 *q;
2033
2034 register ssize_t
2035 i,
2036 x;
2037
2038 unsigned char
2039 a0,
2040 a1;
2041
2042 size_t
2043 alpha,
2044 bits,
2045 code,
2046 alpha_code;
2047
2048 ssize_t
2049 j,
2050 y;
2051
2052 unsigned short
2053 c0,
2054 c1;
2055
2056 for (y = 0; y < (ssize_t) dds_info->height; y += 4)
2057 {
2058 for (x = 0; x < (ssize_t) dds_info->width; x += 4)
2059 {
2060 /* Get 4x4 patch of pixels to write on */
dirkee6b4cb2014-12-29 21:00:08 +00002061 q = QueueAuthenticPixels(image, x, y, MagickMin(4, dds_info->width - x),
2062 MagickMin(4, dds_info->height - y),exception);
dirk86921722014-07-07 18:47:28 +00002063
2064 if (q == (Quantum *) NULL)
2065 return MagickFalse;
2066
2067 /* Read alpha values (8 bytes) */
2068 a0 = (unsigned char) ReadBlobByte(image);
2069 a1 = (unsigned char) ReadBlobByte(image);
2070
2071 alpha_bits = (MagickSizeType)ReadBlobLSBLong(image);
2072 alpha_bits = alpha_bits | ((MagickSizeType)ReadBlobLSBShort(image) << 32);
2073
2074 /* Read 8 bytes of data from the image */
2075 c0 = ReadBlobLSBShort(image);
2076 c1 = ReadBlobLSBShort(image);
2077 bits = ReadBlobLSBLong(image);
2078
2079 CalculateColors(c0, c1, &colors, MagickTrue);
2080
2081 /* Write the pixels */
2082 for (j = 0; j < 4; j++)
2083 {
2084 for (i = 0; i < 4; i++)
2085 {
2086 if ((x + i) < (ssize_t) dds_info->width &&
2087 (y + j) < (ssize_t) dds_info->height)
2088 {
2089 code = (bits >> ((4*j+i)*2)) & 0x3;
2090 SetPixelRed(image,ScaleCharToQuantum(colors.r[code]),q);
2091 SetPixelGreen(image,ScaleCharToQuantum(colors.g[code]),q);
2092 SetPixelBlue(image,ScaleCharToQuantum(colors.b[code]),q);
2093 /* Extract alpha value */
2094 alpha_code = (size_t) (alpha_bits >> (3*(4*j+i))) & 0x7;
2095 if (alpha_code == 0)
2096 alpha = a0;
2097 else if (alpha_code == 1)
2098 alpha = a1;
2099 else if (a0 > a1)
2100 alpha = ((8-alpha_code) * a0 + (alpha_code-1) * a1) / 7;
2101 else if (alpha_code == 6)
2102 alpha = 0;
2103 else if (alpha_code == 7)
2104 alpha = 255;
2105 else
2106 alpha = (((6-alpha_code) * a0 + (alpha_code-1) * a1) / 5);
2107 SetPixelAlpha(image,ScaleCharToQuantum((unsigned char) alpha),q);
2108 q+=GetPixelChannels(image);
2109 }
2110 }
2111 }
2112
2113 if (SyncAuthenticPixels(image,exception) == MagickFalse)
2114 return MagickFalse;
2115 }
2116 }
2117
dirkee6b4cb2014-12-29 21:00:08 +00002118 return(SkipDXTMipmaps(image,dds_info,16,exception));
dirk86921722014-07-07 18:47:28 +00002119}
2120
2121static MagickBooleanType ReadUncompressedRGB(Image *image, DDSInfo *dds_info,
2122 ExceptionInfo *exception)
2123{
2124 register Quantum
2125 *q;
2126
2127 ssize_t
2128 x, y;
2129
2130 unsigned short
2131 color;
2132
dirk6398fb42014-09-08 18:19:39 +00002133 if (dds_info->pixelformat.rgb_bitcount == 8)
2134 (void) SetImageType(image,GrayscaleType,exception);
2135 else if (dds_info->pixelformat.rgb_bitcount == 16 && !IsBitMask(
dirk86921722014-07-07 18:47:28 +00002136 dds_info->pixelformat,0xf800,0x07e0,0x001f,0x0000))
2137 ThrowBinaryException(CorruptImageError,"ImageTypeNotSupported",
2138 image->filename);
2139
2140 for (y = 0; y < (ssize_t) dds_info->height; y++)
2141 {
2142 q = QueueAuthenticPixels(image, 0, y, dds_info->width, 1,exception);
2143
2144 if (q == (Quantum *) NULL)
2145 return MagickFalse;
2146
2147 for (x = 0; x < (ssize_t) dds_info->width; x++)
2148 {
dirk6398fb42014-09-08 18:19:39 +00002149 if (dds_info->pixelformat.rgb_bitcount == 8)
2150 SetPixelGray(image,ScaleCharToQuantum(ReadBlobByte(image)),q);
2151 else if (dds_info->pixelformat.rgb_bitcount == 16)
dirk86921722014-07-07 18:47:28 +00002152 {
2153 color=ReadBlobShort(image);
2154 SetPixelRed(image,ScaleCharToQuantum((unsigned char)
2155 (((color >> 11)/31.0)*255)),q);
2156 SetPixelGreen(image,ScaleCharToQuantum((unsigned char)
2157 ((((unsigned short)(color << 5) >> 10)/63.0)*255)),q);
2158 SetPixelBlue(image,ScaleCharToQuantum((unsigned char)
2159 ((((unsigned short)(color << 11) >> 11)/31.0)*255)),q);
2160 }
2161 else
2162 {
2163 SetPixelBlue(image,ScaleCharToQuantum((unsigned char)
2164 ReadBlobByte(image)),q);
2165 SetPixelGreen(image,ScaleCharToQuantum((unsigned char)
2166 ReadBlobByte(image)),q);
2167 SetPixelRed(image,ScaleCharToQuantum((unsigned char)
2168 ReadBlobByte(image)),q);
2169 if (dds_info->pixelformat.rgb_bitcount == 32)
2170 (void) ReadBlobByte(image);
2171 }
2172 q+=GetPixelChannels(image);
2173 }
2174
2175 if (SyncAuthenticPixels(image,exception) == MagickFalse)
2176 return MagickFalse;
2177 }
2178
dirkee6b4cb2014-12-29 21:00:08 +00002179 return(SkipRGBMipmaps(image,dds_info,3,exception));
dirk86921722014-07-07 18:47:28 +00002180}
2181
2182static MagickBooleanType ReadUncompressedRGBA(Image *image, DDSInfo *dds_info,
2183 ExceptionInfo *exception)
2184{
2185 register Quantum
2186 *q;
2187
2188 ssize_t
2189 alphaBits,
2190 x,
2191 y;
2192
2193 unsigned short
2194 color;
2195
2196 alphaBits=0;
2197 if (dds_info->pixelformat.rgb_bitcount == 16)
2198 {
2199 if (IsBitMask(dds_info->pixelformat,0x7c00,0x03e0,0x001f,0x8000))
2200 alphaBits=1;
dirk6398fb42014-09-08 18:19:39 +00002201 else if (IsBitMask(dds_info->pixelformat,0x00ff,0x00ff,0x00ff,0xff00))
2202 {
2203 alphaBits=2;
cristydef23e52015-01-22 11:52:01 +00002204 (void) SetImageType(image,GrayscaleAlphaType,exception);
dirk6398fb42014-09-08 18:19:39 +00002205 }
dirk86921722014-07-07 18:47:28 +00002206 else if (IsBitMask(dds_info->pixelformat,0x0f00,0x00f0,0x000f,0xf000))
2207 alphaBits=4;
2208 else
2209 ThrowBinaryException(CorruptImageError,"ImageTypeNotSupported",
2210 image->filename);
2211 }
2212
2213 for (y = 0; y < (ssize_t) dds_info->height; y++)
2214 {
2215 q = QueueAuthenticPixels(image, 0, y, dds_info->width, 1,exception);
2216
2217 if (q == (Quantum *) NULL)
2218 return MagickFalse;
2219
2220 for (x = 0; x < (ssize_t) dds_info->width; x++)
2221 {
2222 if (dds_info->pixelformat.rgb_bitcount == 16)
2223 {
2224 color=ReadBlobShort(image);
2225 if (alphaBits == 1)
2226 {
2227 SetPixelAlpha(image,(color & (1 << 15)) ? QuantumRange : 0,q);
2228 SetPixelRed(image,ScaleCharToQuantum((unsigned char)
2229 ((((unsigned short)(color << 1) >> 11)/31.0)*255)),q);
2230 SetPixelGreen(image,ScaleCharToQuantum((unsigned char)
2231 ((((unsigned short)(color << 6) >> 11)/31.0)*255)),q);
2232 SetPixelBlue(image,ScaleCharToQuantum((unsigned char)
2233 ((((unsigned short)(color << 11) >> 11)/31.0)*255)),q);
2234 }
dirk6398fb42014-09-08 18:19:39 +00002235 else if (alphaBits == 2)
2236 {
2237 SetPixelAlpha(image,ScaleCharToQuantum((unsigned char)
2238 (color >> 8)),q);
2239 SetPixelGray(image,ScaleCharToQuantum((unsigned char)color),q);
2240 }
dirk86921722014-07-07 18:47:28 +00002241 else
2242 {
2243 SetPixelAlpha(image,ScaleCharToQuantum((unsigned char)
2244 (((color >> 12)/15.0)*255)),q);
2245 SetPixelRed(image,ScaleCharToQuantum((unsigned char)
2246 ((((unsigned short)(color << 4) >> 12)/15.0)*255)),q);
2247 SetPixelGreen(image,ScaleCharToQuantum((unsigned char)
2248 ((((unsigned short)(color << 8) >> 12)/15.0)*255)),q);
2249 SetPixelBlue(image,ScaleCharToQuantum((unsigned char)
2250 ((((unsigned short)(color << 12) >> 12)/15.0)*255)),q);
2251 }
2252 }
2253 else
2254 {
2255 SetPixelBlue(image,ScaleCharToQuantum((unsigned char)
2256 ReadBlobByte(image)),q);
2257 SetPixelGreen(image,ScaleCharToQuantum((unsigned char)
2258 ReadBlobByte(image)),q);
2259 SetPixelRed(image,ScaleCharToQuantum((unsigned char)
2260 ReadBlobByte(image)),q);
2261 SetPixelAlpha(image,ScaleCharToQuantum((unsigned char)
2262 ReadBlobByte(image)),q);
2263 }
2264 q+=GetPixelChannels(image);
2265 }
2266
2267 if (SyncAuthenticPixels(image,exception) == MagickFalse)
2268 return MagickFalse;
2269 }
2270
dirkee6b4cb2014-12-29 21:00:08 +00002271 return(SkipRGBMipmaps(image,dds_info,4,exception));
dirk86921722014-07-07 18:47:28 +00002272}
2273
2274/*
2275%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2276% %
2277% %
2278% %
2279% R e g i s t e r D D S I m a g e %
2280% %
2281% %
2282% %
2283%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2284%
2285% RegisterDDSImage() adds attributes for the DDS image format to
2286% the list of supported formats. The attributes include the image format
2287% tag, a method to read and/or write the format, whether the format
2288% supports the saving of more than one frame to the same file or blob,
2289% whether the format supports native in-memory I/O, and a brief
2290% description of the format.
2291%
2292% The format of the RegisterDDSImage method is:
2293%
2294% RegisterDDSImage(void)
2295%
2296*/
2297ModuleExport size_t RegisterDDSImage(void)
2298{
2299 MagickInfo
2300 *entry;
2301
dirk06b627a2015-04-06 18:59:17 +00002302 entry = AcquireMagickInfo("DDS","DDS","Microsoft DirectDraw Surface");
dirk86921722014-07-07 18:47:28 +00002303 entry->decoder = (DecodeImageHandler *) ReadDDSImage;
2304 entry->encoder = (EncodeImageHandler *) WriteDDSImage;
2305 entry->magick = (IsImageFormatHandler *) IsDDS;
dirk08e9a112015-02-22 01:51:41 +00002306 entry->flags|=CoderSeekableStreamFlag;
dirk86921722014-07-07 18:47:28 +00002307 (void) RegisterMagickInfo(entry);
dirk06b627a2015-04-06 18:59:17 +00002308 entry = AcquireMagickInfo("DDS","DXT1","Microsoft DirectDraw Surface");
dirk86921722014-07-07 18:47:28 +00002309 entry->decoder = (DecodeImageHandler *) ReadDDSImage;
2310 entry->encoder = (EncodeImageHandler *) WriteDDSImage;
2311 entry->magick = (IsImageFormatHandler *) IsDDS;
dirk08e9a112015-02-22 01:51:41 +00002312 entry->flags|=CoderSeekableStreamFlag;
dirk86921722014-07-07 18:47:28 +00002313 (void) RegisterMagickInfo(entry);
dirk06b627a2015-04-06 18:59:17 +00002314 entry = AcquireMagickInfo("DDS","DXT5","Microsoft DirectDraw Surface");
dirk86921722014-07-07 18:47:28 +00002315 entry->decoder = (DecodeImageHandler *) ReadDDSImage;
2316 entry->encoder = (EncodeImageHandler *) WriteDDSImage;
2317 entry->magick = (IsImageFormatHandler *) IsDDS;
dirk08e9a112015-02-22 01:51:41 +00002318 entry->flags|=CoderSeekableStreamFlag;
dirk86921722014-07-07 18:47:28 +00002319 (void) RegisterMagickInfo(entry);
2320 return(MagickImageCoderSignature);
2321}
2322
2323static void RemapIndices(const ssize_t *map, const unsigned char *source,
2324 unsigned char *target)
2325{
2326 register ssize_t
2327 i;
2328
2329 for (i = 0; i < 16; i++)
2330 {
2331 if (map[i] == -1)
2332 target[i] = 3;
2333 else
2334 target[i] = source[map[i]];
2335 }
2336}
2337
2338/*
2339 Skip the mipmap images for compressed (DXTn) dds files
2340*/
dirkee6b4cb2014-12-29 21:00:08 +00002341static MagickBooleanType SkipDXTMipmaps(Image *image,DDSInfo *dds_info,
2342 int texel_size,ExceptionInfo *exception)
dirk86921722014-07-07 18:47:28 +00002343{
2344 MagickOffsetType
2345 offset;
2346
2347 register ssize_t
2348 i;
2349
2350 size_t
2351 h,
2352 w;
2353
2354 /*
2355 Only skip mipmaps for textures and cube maps
2356 */
dirk8e2b7d02014-12-29 22:23:28 +00002357 if (EOFBlob(image) != MagickFalse)
2358 {
2359 ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile",
2360 image->filename);
2361 return(MagickFalse);
2362 }
dirk86921722014-07-07 18:47:28 +00002363 if (dds_info->ddscaps1 & DDSCAPS_MIPMAP
2364 && (dds_info->ddscaps1 & DDSCAPS_TEXTURE
2365 || dds_info->ddscaps2 & DDSCAPS2_CUBEMAP))
2366 {
2367 w = DIV2(dds_info->width);
2368 h = DIV2(dds_info->height);
2369
2370 /*
2371 Mipmapcount includes the main image, so start from one
2372 */
2373 for (i = 1; (i < (ssize_t) dds_info->mipmapcount) && w && h; i++)
2374 {
2375 offset = (MagickOffsetType) ((w + 3) / 4) * ((h + 3) / 4) * texel_size;
cristycc2a4d22015-01-11 19:17:25 +00002376 if (SeekBlob(image, offset, SEEK_CUR) < 0)
2377 break;
dirk86921722014-07-07 18:47:28 +00002378 w = DIV2(w);
2379 h = DIV2(h);
2380 }
2381 }
dirkee6b4cb2014-12-29 21:00:08 +00002382 return(MagickTrue);
dirk86921722014-07-07 18:47:28 +00002383}
2384
2385/*
2386 Skip the mipmap images for uncompressed (RGB or RGBA) dds files
2387*/
dirkee6b4cb2014-12-29 21:00:08 +00002388static MagickBooleanType SkipRGBMipmaps(Image *image,DDSInfo *dds_info,
2389 int pixel_size,ExceptionInfo *exception)
dirk86921722014-07-07 18:47:28 +00002390{
2391 MagickOffsetType
2392 offset;
2393
2394 register ssize_t
2395 i;
2396
2397 size_t
2398 h,
2399 w;
2400
2401 /*
2402 Only skip mipmaps for textures and cube maps
2403 */
dirk8e2b7d02014-12-29 22:23:28 +00002404 if (EOFBlob(image) != MagickFalse)
2405 {
2406 ThrowFileException(exception,CorruptImageError,"UnexpectedEndOfFile",
2407 image->filename);
2408 return(MagickFalse);
2409 }
dirk86921722014-07-07 18:47:28 +00002410 if (dds_info->ddscaps1 & DDSCAPS_MIPMAP
2411 && (dds_info->ddscaps1 & DDSCAPS_TEXTURE
2412 || dds_info->ddscaps2 & DDSCAPS2_CUBEMAP))
2413 {
2414 w = DIV2(dds_info->width);
2415 h = DIV2(dds_info->height);
2416
2417 /*
2418 Mipmapcount includes the main image, so start from one
2419 */
2420 for (i=1; (i < (ssize_t) dds_info->mipmapcount) && w && h; i++)
2421 {
2422 offset = (MagickOffsetType) w * h * pixel_size;
cristycc2a4d22015-01-11 19:17:25 +00002423 if (SeekBlob(image, offset, SEEK_CUR) < 0)
2424 break;
dirk86921722014-07-07 18:47:28 +00002425 w = DIV2(w);
2426 h = DIV2(h);
2427 }
2428 }
dirkee6b4cb2014-12-29 21:00:08 +00002429 return(MagickTrue);
dirk86921722014-07-07 18:47:28 +00002430}
2431
2432/*
2433%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2434% %
2435% %
2436% %
2437% U n r e g i s t e r D D S I m a g e %
2438% %
2439% %
2440% %
2441%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2442%
2443% UnregisterDDSImage() removes format registrations made by the
2444% DDS module from the list of supported formats.
2445%
2446% The format of the UnregisterDDSImage method is:
2447%
2448% UnregisterDDSImage(void)
2449%
2450*/
2451ModuleExport void UnregisterDDSImage(void)
2452{
2453 (void) UnregisterMagickInfo("DDS");
2454 (void) UnregisterMagickInfo("DXT1");
2455 (void) UnregisterMagickInfo("DXT5");
2456}
2457
2458static void WriteAlphas(Image *image, const ssize_t *alphas, size_t min5,
2459 size_t max5, size_t min7, size_t max7)
2460{
2461 register ssize_t
2462 i;
2463
2464 size_t
2465 err5,
2466 err7,
2467 j;
2468
2469 unsigned char
2470 indices5[16],
2471 indices7[16];
2472
2473 FixRange(min5,max5,5);
2474 err5 = CompressAlpha(min5,max5,5,alphas,indices5);
2475
2476 FixRange(min7,max7,7);
2477 err7 = CompressAlpha(min7,max7,7,alphas,indices7);
2478
2479 if (err7 < err5)
2480 {
2481 for (i=0; i < 16; i++)
2482 {
2483 unsigned char
2484 index;
2485
2486 index = indices7[i];
2487 if( index == 0 )
2488 indices5[i] = 1;
2489 else if (index == 1)
2490 indices5[i] = 0;
2491 else
2492 indices5[i] = 9 - index;
2493 }
2494
2495 min5 = max7;
2496 max5 = min7;
2497 }
2498
2499 (void) WriteBlobByte(image,(unsigned char) min5);
2500 (void) WriteBlobByte(image,(unsigned char) max5);
2501
2502 for(i=0; i < 2; i++)
2503 {
2504 size_t
2505 value = 0;
2506
2507 for (j=0; j < 8; j++)
2508 {
2509 size_t index = (size_t) indices5[j + i*8];
2510 value |= ( index << 3*j );
2511 }
2512
2513 for (j=0; j < 3; j++)
2514 {
2515 size_t byte = (value >> 8*j) & 0xff;
2516 (void) WriteBlobByte(image,(unsigned char) byte);
2517 }
2518 }
2519}
2520
2521static void WriteCompressed(Image *image, const size_t count,
2522 DDSVector4 *points, const ssize_t *map, const MagickBooleanType clusterFit)
2523{
2524 float
2525 covariance[16];
2526
2527 DDSVector3
2528 end,
2529 principle,
2530 start;
2531
2532 DDSVector4
2533 metric;
2534
2535 unsigned char
2536 indices[16];
2537
2538 VectorInit(metric,1.0f);
2539 VectorInit3(start,0.0f);
2540 VectorInit3(end,0.0f);
2541
2542 ComputeWeightedCovariance(count,points,covariance);
2543 ComputePrincipleComponent(covariance,&principle);
2544
cristy771c8842015-01-09 12:13:22 +00002545 if ((clusterFit == MagickFalse) || (count == 0))
dirk86921722014-07-07 18:47:28 +00002546 CompressRangeFit(count,points,map,principle,metric,&start,&end,indices);
2547 else
2548 CompressClusterFit(count,points,map,principle,metric,&start,&end,indices);
2549
2550 WriteIndices(image,start,end,indices);
2551}
2552
2553/*
2554%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2555% %
2556% %
2557% %
2558% W r i t e D D S I m a g e %
2559% %
2560% %
2561% %
2562%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
2563%
2564% WriteDDSImage() writes a DirectDraw Surface image file in the DXT5 format.
2565%
2566% The format of the WriteBMPImage method is:
2567%
2568% MagickBooleanType WriteDDSImage(const ImageInfo *image_info,Image *image)
2569%
2570% A description of each parameter follows.
2571%
2572% o image_info: the image info.
2573%
2574% o image: The image.
2575%
2576*/
2577static MagickBooleanType WriteDDSImage(const ImageInfo *image_info,
2578 Image *image, ExceptionInfo *exception)
2579{
2580 const char
2581 *option;
2582
2583 size_t
2584 compression,
2585 columns,
2586 maxMipmaps,
2587 mipmaps,
2588 pixelFormat,
2589 rows;
2590
2591 MagickBooleanType
2592 clusterFit,
2593 status,
2594 weightByAlpha;
2595
2596 assert(image_info != (const ImageInfo *) NULL);
cristye1c94d92015-06-28 12:16:33 +00002597 assert(image_info->signature == MagickCoreSignature);
dirk86921722014-07-07 18:47:28 +00002598 assert(image != (Image *) NULL);
cristye1c94d92015-06-28 12:16:33 +00002599 assert(image->signature == MagickCoreSignature);
dirk86921722014-07-07 18:47:28 +00002600 if (image->debug != MagickFalse)
2601 (void) LogMagickEvent(TraceEvent,GetMagickModule(),"%s",image->filename);
2602 status=OpenBlob(image_info,image,WriteBinaryBlobMode,exception);
2603 if (status == MagickFalse)
2604 return(status);
2605 (void) TransformImageColorspace(image,sRGBColorspace,exception);
2606 pixelFormat=DDPF_FOURCC;
2607 compression=FOURCC_DXT5;
2608
cristy17f11b02014-12-20 19:37:04 +00002609 if (image->alpha_trait == UndefinedPixelTrait)
dirk86921722014-07-07 18:47:28 +00002610 compression=FOURCC_DXT1;
2611
2612 if (LocaleCompare(image_info->magick,"dxt1") == 0)
2613 compression=FOURCC_DXT1;
2614
2615 option=GetImageOption(image_info,"dds:compression");
2616 if (option != (char *) NULL)
2617 {
2618 if (LocaleCompare(option,"dxt1") == 0)
2619 compression=FOURCC_DXT1;
2620 if (LocaleCompare(option,"none") == 0)
2621 pixelFormat=DDPF_RGB;
2622 }
2623
2624 clusterFit=MagickFalse;
2625 weightByAlpha=MagickFalse;
2626
2627 if (pixelFormat == DDPF_FOURCC)
2628 {
2629 option=GetImageOption(image_info,"dds:cluster-fit");
dirkcf97f612015-02-14 16:36:16 +00002630 if (IsStringTrue(option) != MagickFalse)
dirk86921722014-07-07 18:47:28 +00002631 {
2632 clusterFit=MagickTrue;
2633 if (compression != FOURCC_DXT1)
2634 {
2635 option=GetImageOption(image_info,"dds:weight-by-alpha");
dirkcf97f612015-02-14 16:36:16 +00002636 if (IsStringTrue(option) != MagickFalse)
dirk86921722014-07-07 18:47:28 +00002637 weightByAlpha=MagickTrue;
2638 }
2639 }
2640 }
2641
2642 maxMipmaps=SIZE_MAX;
2643 mipmaps=0;
2644 if ((image->columns & (image->columns - 1)) == 0 &&
2645 (image->rows & (image->rows - 1)) == 0)
2646 {
2647 option=GetImageOption(image_info,"dds:mipmaps");
2648 if (option != (char *) NULL)
2649 maxMipmaps=StringToUnsignedLong(option);
2650
2651 if (maxMipmaps != 0)
2652 {
2653 columns=image->columns;
2654 rows=image->rows;
2655 while (columns != 1 && rows != 1 && mipmaps != maxMipmaps)
2656 {
2657 columns=DIV2(columns);
2658 rows=DIV2(rows);
2659 mipmaps++;
2660 }
2661 }
2662 }
2663
2664 WriteDDSInfo(image,pixelFormat,compression,mipmaps);
2665
2666 WriteImageData(image,pixelFormat,compression,clusterFit,weightByAlpha,
2667 exception);
2668
2669 if (mipmaps > 0 && WriteMipmaps(image,pixelFormat,compression,mipmaps,
2670 clusterFit,weightByAlpha,exception) == MagickFalse)
2671 return(MagickFalse);
2672
2673 (void) CloseBlob(image);
2674 return(MagickTrue);
2675}
2676
2677static void WriteDDSInfo(Image *image, const size_t pixelFormat,
2678 const size_t compression, const size_t mipmaps)
2679{
2680 char
cristy151b66d2015-04-15 10:50:31 +00002681 software[MagickPathExtent];
dirk86921722014-07-07 18:47:28 +00002682
2683 register ssize_t
2684 i;
2685
2686 unsigned int
2687 format,
2688 caps,
2689 flags;
2690
2691 flags=(unsigned int) (DDSD_CAPS | DDSD_WIDTH | DDSD_HEIGHT |
2692 DDSD_PIXELFORMAT | DDSD_LINEARSIZE);
2693 caps=(unsigned int) DDSCAPS_TEXTURE;
2694 format=(unsigned int) pixelFormat;
2695
2696 if (mipmaps > 0)
2697 {
2698 flags=flags | (unsigned int) DDSD_MIPMAPCOUNT;
2699 caps=caps | (unsigned int) (DDSCAPS_MIPMAP | DDSCAPS_COMPLEX);
2700 }
2701
cristy17f11b02014-12-20 19:37:04 +00002702 if (format != DDPF_FOURCC && image->alpha_trait != UndefinedPixelTrait)
dirk86921722014-07-07 18:47:28 +00002703 format=format | DDPF_ALPHAPIXELS;
2704
2705 (void) WriteBlob(image,4,(unsigned char *) "DDS ");
2706 (void) WriteBlobLSBLong(image,124);
2707 (void) WriteBlobLSBLong(image,flags);
dirka4368492014-12-17 07:32:49 +00002708 (void) WriteBlobLSBLong(image,(unsigned int) image->rows);
2709 (void) WriteBlobLSBLong(image,(unsigned int) image->columns);
dirk86921722014-07-07 18:47:28 +00002710
Dan Skorupski7cd5b952016-01-17 20:37:31 -06002711 if (pixelFormat == DDPF_FOURCC)
2712 {
2713 if (compression == FOURCC_DXT1)
2714 (void) WriteBlobLSBLong(image,
2715 (unsigned int) (MagickMax(1,(image->columns+3)/4) * 8));
2716 else
2717 (void) WriteBlobLSBLong(image,
2718 (unsigned int) (MagickMax(1,(image->columns+3)/4) * 16));
2719 }
dirk86921722014-07-07 18:47:28 +00002720 else
Dan Skorupski7cd5b952016-01-17 20:37:31 -06002721 {
2722 if (image->alpha_trait != UndefinedPixelTrait)
2723 (void) WriteBlobLSBLong(image,(unsigned int) (image->columns * 32));
2724 else
2725 (void) WriteBlobLSBLong(image,(unsigned int) (image->columns * 24));
2726 }
dirk86921722014-07-07 18:47:28 +00002727
2728 (void) WriteBlobLSBLong(image,0x00);
2729 (void) WriteBlobLSBLong(image,(unsigned int) mipmaps+1);
2730 (void) ResetMagickMemory(software,0,sizeof(software));
cristy151b66d2015-04-15 10:50:31 +00002731 (void) CopyMagickString(software,"IMAGEMAGICK",MagickPathExtent);
dirk86921722014-07-07 18:47:28 +00002732 (void) WriteBlob(image,44,(unsigned char *) software);
2733
2734 (void) WriteBlobLSBLong(image,32);
2735 (void) WriteBlobLSBLong(image,format);
2736
2737 if (pixelFormat == DDPF_FOURCC)
2738 {
2739 (void) WriteBlobLSBLong(image,(unsigned int) compression);
2740 for(i=0;i < 5;i++) // bitcount / masks
2741 (void) WriteBlobLSBLong(image,0x00);
2742 }
2743 else
2744 {
2745 (void) WriteBlobLSBLong(image,0x00);
cristy17f11b02014-12-20 19:37:04 +00002746 if (image->alpha_trait != UndefinedPixelTrait)
dirk86921722014-07-07 18:47:28 +00002747 {
2748 (void) WriteBlobLSBLong(image,32);
2749 (void) WriteBlobLSBLong(image,0xff0000);
2750 (void) WriteBlobLSBLong(image,0xff00);
2751 (void) WriteBlobLSBLong(image,0xff);
2752 (void) WriteBlobLSBLong(image,0xff000000);
2753 }
2754 else
2755 {
2756 (void) WriteBlobLSBLong(image,24);
Dan Skorupski7cd5b952016-01-17 20:37:31 -06002757 (void) WriteBlobLSBLong(image,0xff0000);
2758 (void) WriteBlobLSBLong(image,0xff00);
dirk86921722014-07-07 18:47:28 +00002759 (void) WriteBlobLSBLong(image,0xff);
2760 (void) WriteBlobLSBLong(image,0x00);
dirk86921722014-07-07 18:47:28 +00002761 }
2762 }
2763
2764 (void) WriteBlobLSBLong(image,caps);
2765 for(i=0;i < 4;i++) // ddscaps2 + reserved region
2766 (void) WriteBlobLSBLong(image,0x00);
2767}
2768
2769static void WriteFourCC(Image *image, const size_t compression,
2770 const MagickBooleanType clusterFit, const MagickBooleanType weightByAlpha,
2771 ExceptionInfo *exception)
2772{
2773 register ssize_t
2774 x;
2775
2776 ssize_t
2777 i,
2778 y,
2779 bx,
2780 by;
2781
2782 register const Quantum
2783 *p;
2784
2785 for (y=0; y < (ssize_t) image->rows; y+=4)
2786 {
2787 for (x=0; x < (ssize_t) image->columns; x+=4)
2788 {
2789 MagickBooleanType
2790 match;
2791
2792 DDSVector4
2793 point,
2794 points[16];
2795
2796 size_t
2797 count = 0,
2798 max5 = 0,
2799 max7 = 0,
2800 min5 = 255,
2801 min7 = 255,
2802 columns = 4,
2803 rows = 4;
2804
2805 ssize_t
2806 alphas[16],
2807 map[16];
2808
2809 unsigned char
2810 alpha;
2811
2812 if (x + columns >= image->columns)
2813 columns = image->columns - x;
2814
2815 if (y + rows >= image->rows)
2816 rows = image->rows - y;
2817
2818 p=GetVirtualPixels(image,x,y,columns,rows,exception);
2819 if (p == (const Quantum *) NULL)
2820 break;
2821
2822 for (i=0; i<16; i++)
2823 {
2824 map[i] = -1;
2825 alphas[i] = -1;
2826 }
2827
2828 for (by=0; by < (ssize_t) rows; by++)
2829 {
2830 for (bx=0; bx < (ssize_t) columns; bx++)
2831 {
2832 if (compression == FOURCC_DXT5)
2833 alpha = ScaleQuantumToChar(GetPixelAlpha(image,p));
2834 else
2835 alpha = 255;
2836
2837 alphas[4*by + bx] = (size_t)alpha;
2838
2839 point.x = (float)ScaleQuantumToChar(GetPixelRed(image,p)) / 255.0f;
2840 point.y = (float)ScaleQuantumToChar(GetPixelGreen(image,p)) / 255.0f;
2841 point.z = (float)ScaleQuantumToChar(GetPixelBlue(image,p)) / 255.0f;
2842 point.w = weightByAlpha ? (float)(alpha + 1) / 256.0f : 1.0f;
2843 p+=GetPixelChannels(image);
2844
2845 match = MagickFalse;
2846 for (i=0; i < (ssize_t) count; i++)
2847 {
2848 if ((points[i].x == point.x) &&
2849 (points[i].y == point.y) &&
2850 (points[i].z == point.z) &&
2851 (alpha >= 128 || compression == FOURCC_DXT5))
2852 {
2853 points[i].w += point.w;
2854 map[4*by + bx] = i;
2855 match = MagickTrue;
2856 break;
2857 }
2858 }
2859
2860 if (match != MagickFalse)
2861 continue;
2862
2863 points[count].x = point.x;
2864 points[count].y = point.y;
2865 points[count].z = point.z;
2866 points[count].w = point.w;
2867 map[4*by + bx] = count;
2868 count++;
2869
2870 if (compression == FOURCC_DXT5)
2871 {
2872 if (alpha < min7)
2873 min7 = alpha;
2874 if (alpha > max7)
2875 max7 = alpha;
2876 if (alpha != 0 && alpha < min5)
2877 min5 = alpha;
2878 if (alpha != 255 && alpha > max5)
2879 max5 = alpha;
2880 }
2881 }
2882 }
2883
2884 for (i=0; i < (ssize_t) count; i++)
2885 points[i].w = sqrt(points[i].w);
2886
2887 if (compression == FOURCC_DXT5)
2888 WriteAlphas(image,alphas,min5,max5,min7,max7);
2889
2890 if (count == 1)
2891 WriteSingleColorFit(image,points,map);
2892 else
2893 WriteCompressed(image,count,points,map,clusterFit);
2894 }
2895 }
2896}
2897
2898static void WriteImageData(Image *image, const size_t pixelFormat,
2899 const size_t compression,const MagickBooleanType clusterFit,
2900 const MagickBooleanType weightByAlpha, ExceptionInfo *exception)
2901{
2902 if (pixelFormat == DDPF_FOURCC)
2903 WriteFourCC(image,compression,clusterFit,weightByAlpha,exception);
2904 else
2905 WriteUncompressed(image,exception);
2906}
2907
2908static inline size_t ClampToLimit(const float value, const size_t limit)
2909{
2910 size_t
2911 result = (int) (value + 0.5f);
2912
2913 if (result < 0.0f)
2914 return(0);
2915 if (result > limit)
2916 return(limit);
2917 return result;
2918}
2919
2920static inline size_t ColorTo565(const DDSVector3 point)
2921{
2922 size_t r = ClampToLimit(31.0f*point.x,31);
2923 size_t g = ClampToLimit(63.0f*point.y,63);
2924 size_t b = ClampToLimit(31.0f*point.z,31);
2925
2926 return (r << 11) | (g << 5) | b;
2927}
2928
2929static void WriteIndices(Image *image, const DDSVector3 start,
2930 const DDSVector3 end, unsigned char *indices)
2931{
2932 register ssize_t
2933 i;
2934
2935 size_t
2936 a,
2937 b;
2938
2939 unsigned char
2940 remapped[16];
2941
2942 const unsigned char
2943 *ind;
2944
2945 a = ColorTo565(start);
2946 b = ColorTo565(end);
2947
2948 for (i=0; i<16; i++)
2949 {
2950 if( a < b )
2951 remapped[i] = (indices[i] ^ 0x1) & 0x3;
2952 else if( a == b )
2953 remapped[i] = 0;
2954 else
2955 remapped[i] = indices[i];
2956 }
2957
2958 if( a < b )
2959 Swap(a,b);
2960
2961 (void) WriteBlobByte(image,(unsigned char) (a & 0xff));
2962 (void) WriteBlobByte(image,(unsigned char) (a >> 8));
2963 (void) WriteBlobByte(image,(unsigned char) (b & 0xff));
2964 (void) WriteBlobByte(image,(unsigned char) (b >> 8));
2965
2966 for (i=0; i<4; i++)
2967 {
2968 ind = remapped + 4*i;
2969 (void) WriteBlobByte(image,ind[0] | (ind[1] << 2) | (ind[2] << 4) |
2970 (ind[3] << 6));
2971 }
2972}
2973
2974static MagickBooleanType WriteMipmaps(Image *image, const size_t pixelFormat,
2975 const size_t compression, const size_t mipmaps,
2976 const MagickBooleanType clusterFit, const MagickBooleanType weightByAlpha,
2977 ExceptionInfo *exception)
2978{
2979 Image*
2980 resize_image;
2981
2982 register ssize_t
2983 i;
2984
2985 size_t
2986 columns,
2987 rows;
2988
2989 columns = image->columns;
2990 rows = image->rows;
2991
2992 for (i=0; i< (ssize_t) mipmaps; i++)
2993 {
2994 resize_image = ResizeImage(image,columns/2,rows/2,TriangleFilter,
2995 exception);
2996
2997 if (resize_image == (Image *) NULL)
2998 return(MagickFalse);
2999
3000 DestroyBlob(resize_image);
3001 resize_image->blob=ReferenceBlob(image->blob);
3002
3003 WriteImageData(resize_image,pixelFormat,compression,weightByAlpha,
3004 clusterFit,exception);
3005
3006 resize_image=DestroyImage(resize_image);
3007
3008 columns = DIV2(columns);
3009 rows = DIV2(rows);
3010 }
3011
3012 return(MagickTrue);
3013}
3014
3015static void WriteSingleColorFit(Image *image, const DDSVector4 *points,
3016 const ssize_t *map)
3017{
3018 DDSVector3
3019 start,
3020 end;
3021
3022 register ssize_t
3023 i;
3024
3025 unsigned char
3026 color[3],
3027 index,
3028 indexes[16],
3029 indices[16];
3030
3031 color[0] = (unsigned char) ClampToLimit(255.0f*points->x,255);
3032 color[1] = (unsigned char) ClampToLimit(255.0f*points->y,255);
3033 color[2] = (unsigned char) ClampToLimit(255.0f*points->z,255);
3034
3035 index=0;
3036 ComputeEndPoints(DDS_LOOKUP,color,&start,&end,&index);
3037
3038 for (i=0; i< 16; i++)
3039 indexes[i]=index;
3040 RemapIndices(map,indexes,indices);
3041 WriteIndices(image,start,end,indices);
3042}
3043
3044static void WriteUncompressed(Image *image, ExceptionInfo *exception)
3045{
3046 register const Quantum
3047 *p;
3048
3049 register ssize_t
3050 x;
3051
3052 ssize_t
3053 y;
3054
3055 for (y=0; y < (ssize_t) image->rows; y++)
3056 {
3057 p=GetVirtualPixels(image,0,y,image->columns,1,exception);
3058 if (p == (const Quantum *) NULL)
3059 break;
3060
3061 for (x=0; x < (ssize_t) image->columns; x++)
3062 {
3063 (void) WriteBlobByte(image,ScaleQuantumToChar(GetPixelBlue(image,p)));
3064 (void) WriteBlobByte(image,ScaleQuantumToChar(GetPixelGreen(image,p)));
3065 (void) WriteBlobByte(image,ScaleQuantumToChar(GetPixelRed(image,p)));
cristy17f11b02014-12-20 19:37:04 +00003066 if (image->alpha_trait != UndefinedPixelTrait)
dirk86921722014-07-07 18:47:28 +00003067 (void) WriteBlobByte(image,ScaleQuantumToChar(GetPixelAlpha(image,p)));
3068 p+=GetPixelChannels(image);
3069 }
3070 }
3071}