Coverage Report

Created: 2026-03-12 08:02

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo.3.0.x/turbojpeg.c
Line
Count
Source
1
/*
2
 * Copyright (C) 2009-2025 D. R. Commander.  All Rights Reserved.
3
 * Copyright (C) 2021 Alex Richardson.  All Rights Reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions are met:
7
 *
8
 * - Redistributions of source code must retain the above copyright notice,
9
 *   this list of conditions and the following disclaimer.
10
 * - Redistributions in binary form must reproduce the above copyright notice,
11
 *   this list of conditions and the following disclaimer in the documentation
12
 *   and/or other materials provided with the distribution.
13
 * - Neither the name of the libjpeg-turbo Project nor the names of its
14
 *   contributors may be used to endorse or promote products derived from this
15
 *   software without specific prior written permission.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS",
18
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20
 * ARE DISCLAIMED.  IN NO EVENT SHALL THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE
21
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
27
 * POSSIBILITY OF SUCH DAMAGE.
28
 */
29
30
/* TurboJPEG/LJT:  this implements the TurboJPEG API using libjpeg or
31
   libjpeg-turbo */
32
33
#include <ctype.h>
34
#include <limits.h>
35
#if !defined(_MSC_VER) || _MSC_VER > 1600
36
#include <stdint.h>
37
#endif
38
#include "jinclude.h"
39
#define JPEG_INTERNALS
40
#include "jpeglib.h"
41
#include "jerror.h"
42
#include <setjmp.h>
43
#include <errno.h>
44
#include "turbojpeg.h"
45
#include "tjutil.h"
46
#include "transupp.h"
47
#include "jpegapicomp.h"
48
#include "cdjpeg.h"
49
50
extern void jpeg_mem_dest_tj(j_compress_ptr, unsigned char **, size_t *,
51
                             boolean);
52
extern void jpeg_mem_src_tj(j_decompress_ptr, const unsigned char *, size_t);
53
54
2.24M
#define PAD(v, p)  ((v + (p) - 1) & (~((p) - 1)))
55
301k
#define IS_POW2(x)  (((x) & (x - 1)) == 0)
56
57
58
/* Error handling (based on example in example.c) */
59
60
static THREAD_LOCAL char errStr[JMSG_LENGTH_MAX] = "No error";
61
62
struct my_error_mgr {
63
  struct jpeg_error_mgr pub;
64
  jmp_buf setjmp_buffer;
65
  void (*emit_message) (j_common_ptr, int);
66
  boolean warning, stopOnWarning;
67
};
68
typedef struct my_error_mgr *my_error_ptr;
69
70
#define JMESSAGE(code, string)  string,
71
static const char *turbojpeg_message_table[] = {
72
#include "cderror.h"
73
  NULL
74
};
75
76
static void my_error_exit(j_common_ptr cinfo)
77
270k
{
78
270k
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
79
80
270k
  (*cinfo->err->output_message) (cinfo);
81
270k
  longjmp(myerr->setjmp_buffer, 1);
82
270k
}
83
84
/* Based on output_message() in jerror.c */
85
86
static void my_output_message(j_common_ptr cinfo)
87
417k
{
88
417k
  (*cinfo->err->format_message) (cinfo, errStr);
89
417k
}
90
91
static void my_emit_message(j_common_ptr cinfo, int msg_level)
92
710M
{
93
710M
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
94
95
710M
  myerr->emit_message(cinfo, msg_level);
96
710M
  if (msg_level < 0) {
97
472M
    myerr->warning = TRUE;
98
472M
    if (myerr->stopOnWarning) longjmp(myerr->setjmp_buffer, 1);
99
472M
  }
100
710M
}
101
102
103
/********************** Global structures, macros, etc. **********************/
104
105
enum { COMPRESS = 1, DECOMPRESS = 2 };
106
107
typedef struct _tjinstance {
108
  struct jpeg_compress_struct cinfo;
109
  struct jpeg_decompress_struct dinfo;
110
  struct my_error_mgr jerr;
111
  int init;
112
  char errStr[JMSG_LENGTH_MAX];
113
  boolean isInstanceError;
114
  /* Parameters */
115
  boolean bottomUp;
116
  boolean noRealloc;
117
  int quality;
118
  int subsamp;
119
  int jpegWidth;
120
  int jpegHeight;
121
  int precision;
122
  int colorspace;
123
  boolean fastUpsample;
124
  boolean fastDCT;
125
  boolean optimize;
126
  boolean progressive;
127
  int scanLimit;
128
  boolean arithmetic;
129
  boolean lossless;
130
  int losslessPSV;
131
  int losslessPt;
132
  int restartIntervalBlocks;
133
  int restartIntervalRows;
134
  int xDensity;
135
  int yDensity;
136
  int densityUnits;
137
  tjscalingfactor scalingFactor;
138
  tjregion croppingRegion;
139
  int maxMemory;
140
  int maxPixels;
141
} tjinstance;
142
143
static tjhandle _tjInitCompress(tjinstance *this);
144
static tjhandle _tjInitDecompress(tjinstance *this);
145
146
struct my_progress_mgr {
147
  struct jpeg_progress_mgr pub;
148
  tjinstance *this;
149
};
150
typedef struct my_progress_mgr *my_progress_ptr;
151
152
static void my_progress_monitor(j_common_ptr dinfo)
153
1.11G
{
154
1.11G
  my_error_ptr myerr = (my_error_ptr)dinfo->err;
155
1.11G
  my_progress_ptr myprog = (my_progress_ptr)dinfo->progress;
156
157
1.11G
  if (dinfo->is_decompressor) {
158
1.11G
    int scan_no = ((j_decompress_ptr)dinfo)->input_scan_number;
159
160
1.11G
    if (scan_no > myprog->this->scanLimit) {
161
2.25k
      SNPRINTF(myprog->this->errStr, JMSG_LENGTH_MAX,
162
2.25k
               "Progressive JPEG image has more than %d scans",
163
2.25k
               myprog->this->scanLimit);
164
2.25k
      SNPRINTF(errStr, JMSG_LENGTH_MAX,
165
2.25k
               "Progressive JPEG image has more than %d scans",
166
2.25k
               myprog->this->scanLimit);
167
2.25k
      myprog->this->isInstanceError = TRUE;
168
2.25k
      myerr->warning = FALSE;
169
2.25k
      longjmp(myerr->setjmp_buffer, 1);
170
2.25k
    }
171
1.11G
  }
172
1.11G
}
173
174
static const JXFORM_CODE xformtypes[TJ_NUMXOP] = {
175
  JXFORM_NONE, JXFORM_FLIP_H, JXFORM_FLIP_V, JXFORM_TRANSPOSE,
176
  JXFORM_TRANSVERSE, JXFORM_ROT_90, JXFORM_ROT_180, JXFORM_ROT_270
177
};
178
179
1.10M
#define NUMSF  16
180
static const tjscalingfactor sf[NUMSF] = {
181
  { 2, 1 },
182
  { 15, 8 },
183
  { 7, 4 },
184
  { 13, 8 },
185
  { 3, 2 },
186
  { 11, 8 },
187
  { 5, 4 },
188
  { 9, 8 },
189
  { 1, 1 },
190
  { 7, 8 },
191
  { 3, 4 },
192
  { 5, 8 },
193
  { 1, 2 },
194
  { 3, 8 },
195
  { 1, 4 },
196
  { 1, 8 }
197
};
198
199
static J_COLOR_SPACE pf2cs[TJ_NUMPF] = {
200
  JCS_EXT_RGB, JCS_EXT_BGR, JCS_EXT_RGBX, JCS_EXT_BGRX, JCS_EXT_XBGR,
201
  JCS_EXT_XRGB, JCS_GRAYSCALE, JCS_EXT_RGBA, JCS_EXT_BGRA, JCS_EXT_ABGR,
202
  JCS_EXT_ARGB, JCS_CMYK
203
};
204
205
static int cs2pf[JPEG_NUMCS] = {
206
  TJPF_UNKNOWN, TJPF_GRAY,
207
#if RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 3
208
  TJPF_RGB,
209
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 3
210
  TJPF_BGR,
211
#elif RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 4
212
  TJPF_RGBX,
213
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 4
214
  TJPF_BGRX,
215
#elif RGB_RED == 3 && RGB_GREEN == 2 && RGB_BLUE == 1 && RGB_PIXELSIZE == 4
216
  TJPF_XBGR,
217
#elif RGB_RED == 1 && RGB_GREEN == 2 && RGB_BLUE == 3 && RGB_PIXELSIZE == 4
218
  TJPF_XRGB,
219
#endif
220
  TJPF_UNKNOWN, TJPF_CMYK, TJPF_UNKNOWN, TJPF_RGB, TJPF_RGBX, TJPF_BGR,
221
  TJPF_BGRX, TJPF_XBGR, TJPF_XRGB, TJPF_RGBA, TJPF_BGRA, TJPF_ABGR, TJPF_ARGB,
222
  TJPF_UNKNOWN
223
};
224
225
0
#define THROWG(m, rv) { \
226
18.4E
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
227
0
  retval = rv;  goto bailout; \
228
18.4E
}
229
#ifdef _MSC_VER
230
#define THROW_UNIX(m) { \
231
  char strerrorBuf[80] = { 0 }; \
232
  strerror_s(strerrorBuf, 80, errno); \
233
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
234
           strerrorBuf); \
235
  this->isInstanceError = TRUE; \
236
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
237
           strerrorBuf); \
238
  retval = -1;  goto bailout; \
239
}
240
#else
241
0
#define THROW_UNIX(m) { \
242
0
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
243
0
           strerror(errno)); \
244
0
  this->isInstanceError = TRUE; \
245
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
246
0
           strerror(errno)); \
247
0
  retval = -1;  goto bailout; \
248
0
}
249
#endif
250
0
#define THROW(m) { \
251
18.4E
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
252
18.4E
  this->isInstanceError = TRUE;  THROWG(m, -1) \
253
18.4E
}
254
9
#define THROWI(format, val1, val2) { \
255
9
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, \
256
9
           val1, val2); \
257
9
  this->isInstanceError = TRUE; \
258
9
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, val1, \
259
9
           val2); \
260
9
  retval = -1;  goto bailout; \
261
9
}
262
263
#define GET_INSTANCE(handle) \
264
0
  tjinstance *this = (tjinstance *)handle; \
265
0
  j_compress_ptr cinfo = NULL; \
266
0
  j_decompress_ptr dinfo = NULL; \
267
0
  \
268
0
  if (!this) { \
269
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
270
0
    return -1; \
271
0
  } \
272
0
  cinfo = &this->cinfo;  dinfo = &this->dinfo; \
273
0
  this->jerr.warning = FALSE; \
274
0
  this->isInstanceError = FALSE;
275
276
#define GET_CINSTANCE(handle) \
277
84.0k
  tjinstance *this = (tjinstance *)handle; \
278
84.0k
  j_compress_ptr cinfo = NULL; \
279
84.0k
  \
280
84.0k
  if (!this) { \
281
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
282
0
    return -1; \
283
0
  } \
284
84.0k
  cinfo = &this->cinfo; \
285
84.0k
  this->jerr.warning = FALSE; \
286
84.0k
  this->isInstanceError = FALSE;
287
288
#define GET_DINSTANCE(handle) \
289
177k
  tjinstance *this = (tjinstance *)handle; \
290
177k
  j_decompress_ptr dinfo = NULL; \
291
177k
  \
292
177k
  if (!this) { \
293
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
294
0
    return -1; \
295
0
  } \
296
177k
  dinfo = &this->dinfo; \
297
177k
  this->jerr.warning = FALSE; \
298
177k
  this->isInstanceError = FALSE;
299
300
#define GET_TJINSTANCE(handle, errorReturn) \
301
1.18M
  tjinstance *this = (tjinstance *)handle; \
302
1.18M
  \
303
1.18M
  if (!this) { \
304
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
305
0
    return errorReturn; \
306
0
  } \
307
1.18M
  this->jerr.warning = FALSE; \
308
1.18M
  this->isInstanceError = FALSE;
309
310
static int getPixelFormat(int pixelSize, int flags)
311
0
{
312
0
  if (pixelSize == 1) return TJPF_GRAY;
313
0
  if (pixelSize == 3) {
314
0
    if (flags & TJ_BGR) return TJPF_BGR;
315
0
    else return TJPF_RGB;
316
0
  }
317
0
  if (pixelSize == 4) {
318
0
    if (flags & TJ_ALPHAFIRST) {
319
0
      if (flags & TJ_BGR) return TJPF_XBGR;
320
0
      else return TJPF_XRGB;
321
0
    } else {
322
0
      if (flags & TJ_BGR) return TJPF_BGRX;
323
0
      else return TJPF_RGBX;
324
0
    }
325
0
  }
326
0
  return -1;
327
0
}
328
329
static void setCompDefaults(tjinstance *this, int pixelFormat, boolean yuv)
330
194k
{
331
194k
  int colorspace = yuv ? -1 : this->colorspace;
332
333
194k
  this->cinfo.in_color_space = pf2cs[pixelFormat];
334
194k
  this->cinfo.input_components = tjPixelSize[pixelFormat];
335
194k
  jpeg_set_defaults(&this->cinfo);
336
337
194k
  this->cinfo.restart_interval = this->restartIntervalBlocks;
338
194k
  this->cinfo.restart_in_rows = this->restartIntervalRows;
339
194k
  this->cinfo.X_density = (UINT16)this->xDensity;
340
194k
  this->cinfo.Y_density = (UINT16)this->yDensity;
341
194k
  this->cinfo.density_unit = (UINT8)this->densityUnits;
342
194k
  this->cinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
343
344
194k
  if (this->lossless && !yuv) {
345
48.6k
#ifdef C_LOSSLESS_SUPPORTED
346
48.6k
    jpeg_enable_lossless(&this->cinfo, this->losslessPSV, this->losslessPt);
347
48.6k
#endif
348
48.6k
    return;
349
48.6k
  }
350
351
145k
  jpeg_set_quality(&this->cinfo, this->quality, TRUE);
352
145k
  this->cinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
353
354
145k
  switch (colorspace) {
355
7.81k
  case TJCS_RGB:
356
7.81k
    jpeg_set_colorspace(&this->cinfo, JCS_RGB);  break;
357
23.3k
  case TJCS_YCbCr:
358
23.3k
    jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);  break;
359
15.6k
  case TJCS_GRAY:
360
15.6k
    jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);  break;
361
0
  case TJCS_CMYK:
362
0
    jpeg_set_colorspace(&this->cinfo, JCS_CMYK);  break;
363
7.70k
  case TJCS_YCCK:
364
7.70k
    jpeg_set_colorspace(&this->cinfo, JCS_YCCK);  break;
365
91.4k
  default:
366
91.4k
    if (this->subsamp == TJSAMP_GRAY)
367
28.1k
      jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);
368
63.2k
    else if (pixelFormat == TJPF_CMYK)
369
4.05k
      jpeg_set_colorspace(&this->cinfo, JCS_YCCK);
370
59.2k
    else
371
59.2k
      jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);
372
145k
  }
373
374
145k
  if (this->cinfo.data_precision == 8)
375
105k
    this->cinfo.optimize_coding = this->optimize;
376
145k
#ifdef C_PROGRESSIVE_SUPPORTED
377
145k
  if (this->progressive) jpeg_simple_progression(&this->cinfo);
378
145k
#endif
379
145k
  this->cinfo.arith_code = this->arithmetic;
380
381
145k
  this->cinfo.comp_info[0].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
382
145k
  this->cinfo.comp_info[1].h_samp_factor = 1;
383
145k
  this->cinfo.comp_info[2].h_samp_factor = 1;
384
145k
  if (this->cinfo.num_components > 3)
385
11.7k
    this->cinfo.comp_info[3].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
386
145k
  this->cinfo.comp_info[0].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
387
145k
  this->cinfo.comp_info[1].v_samp_factor = 1;
388
145k
  this->cinfo.comp_info[2].v_samp_factor = 1;
389
145k
  if (this->cinfo.num_components > 3)
390
11.7k
    this->cinfo.comp_info[3].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
391
145k
}
392
393
394
static int getSubsamp(j_decompress_ptr dinfo)
395
225k
{
396
225k
  int retval = TJSAMP_UNKNOWN, i, k;
397
398
  /* The sampling factors actually have no meaning with grayscale JPEG files,
399
     and in fact it's possible to generate grayscale JPEGs with sampling
400
     factors > 1 (even though those sampling factors are ignored by the
401
     decompressor.)  Thus, we need to treat grayscale as a special case. */
402
225k
  if (dinfo->num_components == 1 && dinfo->jpeg_color_space == JCS_GRAYSCALE)
403
108k
    return TJSAMP_GRAY;
404
405
608k
  for (i = 0; i < TJ_NUMSAMP; i++) {
406
558k
    if (i == TJSAMP_GRAY) continue;
407
408
499k
    if (dinfo->num_components == 3 ||
409
35.2k
        ((dinfo->jpeg_color_space == JCS_YCCK ||
410
29.9k
          dinfo->jpeg_color_space == JCS_CMYK) &&
411
494k
         dinfo->num_components == 4)) {
412
494k
      if (dinfo->comp_info[0].h_samp_factor == tjMCUWidth[i] / 8 &&
413
214k
          dinfo->comp_info[0].v_samp_factor == tjMCUHeight[i] / 8) {
414
101k
        int match = 0;
415
416
309k
        for (k = 1; k < dinfo->num_components; k++) {
417
207k
          int href = 1, vref = 1;
418
419
207k
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
420
205k
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
421
5.54k
            href = tjMCUWidth[i] / 8;  vref = tjMCUHeight[i] / 8;
422
5.54k
          }
423
207k
          if (dinfo->comp_info[k].h_samp_factor == href &&
424
175k
              dinfo->comp_info[k].v_samp_factor == vref)
425
146k
            match++;
426
207k
        }
427
101k
        if (match == dinfo->num_components - 1) {
428
62.1k
          retval = i;  break;
429
62.1k
        }
430
101k
      }
431
      /* Handle 4:2:2 and 4:4:0 images whose sampling factors are specified
432
         in non-standard ways. */
433
432k
      if (dinfo->comp_info[0].h_samp_factor == 2 &&
434
265k
          dinfo->comp_info[0].v_samp_factor == 2 &&
435
137k
          (i == TJSAMP_422 || i == TJSAMP_440)) {
436
63.8k
        int match = 0;
437
438
192k
        for (k = 1; k < dinfo->num_components; k++) {
439
128k
          int href = tjMCUHeight[i] / 8, vref = tjMCUWidth[i] / 8;
440
441
128k
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
442
127k
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
443
767
            href = vref = 2;
444
767
          }
445
128k
          if (dinfo->comp_info[k].h_samp_factor == href &&
446
107k
              dinfo->comp_info[k].v_samp_factor == vref)
447
14.6k
            match++;
448
128k
        }
449
63.8k
        if (match == dinfo->num_components - 1) {
450
5.51k
          retval = i;  break;
451
5.51k
        }
452
63.8k
      }
453
      /* Handle 4:4:4 images whose sampling factors are specified in
454
         non-standard ways. */
455
427k
      if (dinfo->comp_info[0].h_samp_factor *
456
427k
          dinfo->comp_info[0].v_samp_factor <=
457
427k
          D_MAX_BLOCKS_IN_MCU / 3 && i == TJSAMP_444) {
458
38.1k
        int match = 0;
459
116k
        for (k = 1; k < dinfo->num_components; k++) {
460
80.4k
          if (dinfo->comp_info[k].h_samp_factor ==
461
80.4k
              dinfo->comp_info[0].h_samp_factor &&
462
21.7k
              dinfo->comp_info[k].v_samp_factor ==
463
21.7k
              dinfo->comp_info[0].v_samp_factor)
464
10.5k
            match++;
465
80.4k
          if (match == dinfo->num_components - 1) {
466
2.01k
            retval = i;  break;
467
2.01k
          }
468
80.4k
        }
469
38.1k
      }
470
427k
    }
471
499k
  }
472
116k
  return retval;
473
225k
}
474
475
476
static void setDecompParameters(tjinstance *this)
477
209k
{
478
209k
  this->subsamp = getSubsamp(&this->dinfo);
479
209k
  this->jpegWidth = this->dinfo.image_width;
480
209k
  this->jpegHeight = this->dinfo.image_height;
481
209k
  this->precision = this->dinfo.data_precision;
482
209k
  switch (this->dinfo.jpeg_color_space) {
483
98.7k
  case JCS_GRAYSCALE:  this->colorspace = TJCS_GRAY;  break;
484
50.2k
  case JCS_RGB:        this->colorspace = TJCS_RGB;  break;
485
55.4k
  case JCS_YCbCr:      this->colorspace = TJCS_YCbCr;  break;
486
3.71k
  case JCS_CMYK:       this->colorspace = TJCS_CMYK;  break;
487
913
  case JCS_YCCK:       this->colorspace = TJCS_YCCK;  break;
488
417
  default:             this->colorspace = -1;  break;
489
209k
  }
490
209k
  this->progressive = this->dinfo.progressive_mode;
491
209k
  this->arithmetic = this->dinfo.arith_code;
492
209k
  this->lossless = this->dinfo.master->lossless;
493
209k
  this->losslessPSV = this->dinfo.Ss;
494
209k
  this->losslessPt = this->dinfo.Al;
495
209k
  this->xDensity = this->dinfo.X_density;
496
209k
  this->yDensity = this->dinfo.Y_density;
497
209k
  this->densityUnits = this->dinfo.density_unit;
498
209k
}
499
500
501
static void processFlags(tjhandle handle, int flags, int operation)
502
0
{
503
0
  tjinstance *this = (tjinstance *)handle;
504
505
0
  this->bottomUp = !!(flags & TJFLAG_BOTTOMUP);
506
507
0
#ifndef NO_PUTENV
508
0
  if (flags & TJFLAG_FORCEMMX) PUTENV_S("JSIMD_FORCEMMX", "1");
509
0
  else if (flags & TJFLAG_FORCESSE) PUTENV_S("JSIMD_FORCESSE", "1");
510
0
  else if (flags & TJFLAG_FORCESSE2) PUTENV_S("JSIMD_FORCESSE2", "1");
511
0
#endif
512
513
0
  this->fastUpsample = !!(flags & TJFLAG_FASTUPSAMPLE);
514
0
  this->noRealloc = !!(flags & TJFLAG_NOREALLOC);
515
516
0
  if (operation == COMPRESS) {
517
0
    if (this->quality >= 96 || flags & TJFLAG_ACCURATEDCT)
518
0
      this->fastDCT = FALSE;
519
0
    else
520
0
      this->fastDCT = TRUE;
521
0
  } else
522
0
    this->fastDCT = !!(flags & TJFLAG_FASTDCT);
523
524
0
  this->jerr.stopOnWarning = !!(flags & TJFLAG_STOPONWARNING);
525
0
  this->progressive = !!(flags & TJFLAG_PROGRESSIVE);
526
527
0
  if (flags & TJFLAG_LIMITSCANS) this->scanLimit = 500;
528
0
}
529
530
531
/*************************** General API functions ***************************/
532
533
/* TurboJPEG 3+ */
534
DLLEXPORT tjhandle tj3Init(int initType)
535
423k
{
536
423k
  static const char FUNCTION_NAME[] = "tj3Init";
537
423k
  tjinstance *this = NULL;
538
423k
  tjhandle retval = NULL;
539
540
423k
  if (initType < 0 || initType >= TJ_NUMINIT)
541
423k
    THROWG("Invalid argument", NULL);
542
543
423k
  if ((this = (tjinstance *)malloc(sizeof(tjinstance))) == NULL)
544
423k
    THROWG("Memory allocation failure", NULL);
545
423k
  memset(this, 0, sizeof(tjinstance));
546
423k
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "No error");
547
548
423k
  this->quality = -1;
549
423k
  this->subsamp = TJSAMP_UNKNOWN;
550
423k
  this->jpegWidth = -1;
551
423k
  this->jpegHeight = -1;
552
423k
  this->precision = 8;
553
423k
  this->colorspace = -1;
554
423k
  this->losslessPSV = 1;
555
423k
  this->xDensity = 1;
556
423k
  this->yDensity = 1;
557
423k
  this->scalingFactor = TJUNSCALED;
558
559
423k
  switch (initType) {
560
378k
  case TJINIT_COMPRESS:  return _tjInitCompress(this);
561
39.4k
  case TJINIT_DECOMPRESS:  return _tjInitDecompress(this);
562
5.88k
  case TJINIT_TRANSFORM:
563
5.88k
    retval = _tjInitCompress(this);
564
5.88k
    if (!retval) return NULL;
565
5.88k
    retval = _tjInitDecompress(this);
566
5.88k
    return retval;
567
423k
  }
568
569
0
bailout:
570
0
  return retval;
571
423k
}
572
573
574
/* TurboJPEG 3+ */
575
DLLEXPORT void tj3Destroy(tjhandle handle)
576
423k
{
577
423k
  tjinstance *this = (tjinstance *)handle;
578
423k
  j_compress_ptr cinfo = NULL;
579
423k
  j_decompress_ptr dinfo = NULL;
580
581
423k
  if (!this) return;
582
583
423k
  cinfo = &this->cinfo;  dinfo = &this->dinfo;
584
423k
  this->jerr.warning = FALSE;
585
423k
  this->isInstanceError = FALSE;
586
587
423k
  if (setjmp(this->jerr.setjmp_buffer)) return;
588
423k
  if (this->init & COMPRESS) jpeg_destroy_compress(cinfo);
589
423k
  if (this->init & DECOMPRESS) jpeg_destroy_decompress(dinfo);
590
423k
  free(this);
591
423k
}
592
593
/* TurboJPEG 1.0+ */
594
DLLEXPORT int tjDestroy(tjhandle handle)
595
0
{
596
0
  static const char FUNCTION_NAME[] = "tjDestroy";
597
0
  int retval = 0;
598
599
0
  if (!handle) THROWG("Invalid handle", -1);
600
601
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "No error");
602
0
  tj3Destroy(handle);
603
0
  if (strcmp(errStr, "No error")) retval = -1;
604
605
0
bailout:
606
0
  return retval;
607
0
}
608
609
610
/* TurboJPEG 3+ */
611
DLLEXPORT char *tj3GetErrorStr(tjhandle handle)
612
138k
{
613
138k
  tjinstance *this = (tjinstance *)handle;
614
615
138k
  if (this && this->isInstanceError) {
616
2.88k
    this->isInstanceError = FALSE;
617
2.88k
    return this->errStr;
618
2.88k
  } else
619
135k
    return errStr;
620
138k
}
621
622
/* TurboJPEG 2.0+ */
623
DLLEXPORT char *tjGetErrorStr2(tjhandle handle)
624
0
{
625
0
  return tj3GetErrorStr(handle);
626
0
}
627
628
/* TurboJPEG 1.0+ */
629
DLLEXPORT char *tjGetErrorStr(void)
630
0
{
631
0
  return errStr;
632
0
}
633
634
635
/* TurboJPEG 3+ */
636
DLLEXPORT int tj3GetErrorCode(tjhandle handle)
637
0
{
638
0
  tjinstance *this = (tjinstance *)handle;
639
640
0
  if (this && this->jerr.warning) return TJERR_WARNING;
641
0
  else return TJERR_FATAL;
642
0
}
643
644
/* TurboJPEG 2.0+ */
645
DLLEXPORT int tjGetErrorCode(tjhandle handle)
646
0
{
647
0
  return tj3GetErrorCode(handle);
648
0
}
649
650
651
329k
#define SET_PARAM(field, minValue, maxValue) { \
652
329k
  if (value < minValue || (maxValue > 0 && value > maxValue)) \
653
329k
    THROW("Parameter value out of range"); \
654
329k
  this->field = value; \
655
329k
}
656
657
571k
#define SET_BOOL_PARAM(field) { \
658
571k
  if (value < 0 || value > 1) \
659
571k
    THROW("Parameter value out of range"); \
660
571k
  this->field = (boolean)value; \
661
571k
}
662
663
/* TurboJPEG 3+ */
664
DLLEXPORT int tj3Set(tjhandle handle, int param, int value)
665
901k
{
666
901k
  static const char FUNCTION_NAME[] = "tj3Set";
667
901k
  int retval = 0;
668
669
901k
  GET_TJINSTANCE(handle, -1);
670
671
901k
  switch (param) {
672
0
  case TJPARAM_STOPONWARNING:
673
0
    SET_BOOL_PARAM(jerr.stopOnWarning);
674
0
    break;
675
139k
  case TJPARAM_BOTTOMUP:
676
139k
    SET_BOOL_PARAM(bottomUp);
677
139k
    break;
678
107k
  case TJPARAM_NOREALLOC:
679
107k
    if (!(this->init & COMPRESS))
680
107k
      THROW("TJPARAM_NOREALLOC is not applicable to decompression instances.");
681
107k
    SET_BOOL_PARAM(noRealloc);
682
107k
    break;
683
39.1k
  case TJPARAM_QUALITY:
684
39.1k
    if (!(this->init & COMPRESS))
685
39.1k
      THROW("TJPARAM_QUALITY is not applicable to decompression instances.");
686
39.1k
    SET_PARAM(quality, 1, 100);
687
39.1k
    break;
688
39.1k
  case TJPARAM_SUBSAMP:
689
39.1k
    SET_PARAM(subsamp, 0, TJ_NUMSAMP - 1);
690
39.1k
    break;
691
0
  case TJPARAM_JPEGWIDTH:
692
0
    if (!(this->init & DECOMPRESS))
693
0
      THROW("TJPARAM_JPEGWIDTH is not applicable to compression instances.");
694
0
    THROW("TJPARAM_JPEGWIDTH is read-only in decompression instances.");
695
0
    break;
696
0
  case TJPARAM_JPEGHEIGHT:
697
0
    if (!(this->init & DECOMPRESS))
698
0
      THROW("TJPARAM_JPEGHEIGHT is not applicable to compression instances.");
699
0
    THROW("TJPARAM_JPEGHEIGHT is read-only in decompression instances.");
700
0
    break;
701
0
  case TJPARAM_PRECISION:
702
0
    if (!(this->init & DECOMPRESS))
703
0
      THROW("TJPARAM_PRECISION is not applicable to compression instances.");
704
0
    THROW("TJPARAM_PRECISION is read-only in decompression instances.");
705
0
    break;
706
0
  case TJPARAM_COLORSPACE:
707
0
    if (!(this->init & COMPRESS))
708
0
      THROW("TJPARAM_COLORSPACE is read-only in decompression instances.");
709
0
    SET_PARAM(colorspace, 0, TJ_NUMCS - 1);
710
0
    break;
711
31.4k
  case TJPARAM_FASTUPSAMPLE:
712
31.4k
    if (!(this->init & DECOMPRESS))
713
31.4k
      THROW("TJPARAM_FASTUPSAMPLE is not applicable to compression instances.");
714
31.4k
    SET_BOOL_PARAM(fastUpsample);
715
31.4k
    break;
716
94.5k
  case TJPARAM_FASTDCT:
717
94.5k
    SET_BOOL_PARAM(fastDCT);
718
94.5k
    break;
719
48.1k
  case TJPARAM_OPTIMIZE:
720
48.1k
    if (!(this->init & COMPRESS))
721
48.1k
      THROW("TJPARAM_OPTIMIZE is not applicable to decompression instances.");
722
48.1k
    SET_BOOL_PARAM(optimize);
723
48.1k
    break;
724
68.6k
  case TJPARAM_PROGRESSIVE:
725
68.6k
    if (!(this->init & COMPRESS))
726
68.6k
      THROW("TJPARAM_PROGRESSIVE is read-only in decompression instances.");
727
68.6k
    SET_BOOL_PARAM(progressive);
728
68.6k
    break;
729
10.1k
  case TJPARAM_SCANLIMIT:
730
10.1k
    if (!(this->init & DECOMPRESS))
731
10.1k
      THROW("TJPARAM_SCANLIMIT is not applicable to compression instances.");
732
10.1k
    SET_PARAM(scanLimit, 0, -1);
733
10.1k
    break;
734
68.6k
  case TJPARAM_ARITHMETIC:
735
68.6k
    if (!(this->init & COMPRESS))
736
68.6k
      THROW("TJPARAM_ARITHMETIC is read-only in decompression instances.");
737
68.6k
    SET_BOOL_PARAM(arithmetic);
738
68.6k
    break;
739
13.0k
  case TJPARAM_LOSSLESS:
740
13.0k
    if (!(this->init & COMPRESS))
741
13.0k
      THROW("TJPARAM_LOSSLESS is read-only in decompression instances.");
742
13.0k
    SET_BOOL_PARAM(lossless);
743
13.0k
    break;
744
13.0k
  case TJPARAM_LOSSLESSPSV:
745
13.0k
    if (!(this->init & COMPRESS))
746
13.0k
      THROW("TJPARAM_LOSSLESSPSV is read-only in decompression instances.");
747
13.0k
    SET_PARAM(losslessPSV, 1, 7);
748
13.0k
    break;
749
13.0k
  case TJPARAM_LOSSLESSPT:
750
13.0k
    if (!(this->init & COMPRESS))
751
13.0k
      THROW("TJPARAM_LOSSLESSPT is read-only in decompression instances.");
752
13.0k
    SET_PARAM(losslessPt, 0, 15);
753
13.0k
    break;
754
21.2k
  case TJPARAM_RESTARTBLOCKS:
755
21.2k
    if (!(this->init & COMPRESS))
756
21.2k
      THROW("TJPARAM_RESTARTBLOCKS is not applicable to decompression instances.");
757
21.2k
    SET_PARAM(restartIntervalBlocks, 0, 65535);
758
21.2k
    if (value != 0) this->restartIntervalRows = 0;
759
21.2k
    break;
760
86.4k
  case TJPARAM_RESTARTROWS:
761
86.4k
    if (!(this->init & COMPRESS))
762
86.4k
      THROW("TJPARAM_RESTARTROWS is not applicable to decompression instances.");
763
86.4k
    SET_PARAM(restartIntervalRows, 0, 65535);
764
86.4k
    if (value != 0) this->restartIntervalBlocks = 0;
765
86.4k
    break;
766
0
  case TJPARAM_XDENSITY:
767
0
    if (!(this->init & COMPRESS))
768
0
      THROW("TJPARAM_XDENSITY is read-only in decompression instances.");
769
0
    SET_PARAM(xDensity, 1, 65535);
770
0
    break;
771
0
  case TJPARAM_YDENSITY:
772
0
    if (!(this->init & COMPRESS))
773
0
      THROW("TJPARAM_YDENSITY is read-only in decompression instances.");
774
0
    SET_PARAM(yDensity, 1, 65535);
775
0
    break;
776
0
  case TJPARAM_DENSITYUNITS:
777
0
    if (!(this->init & COMPRESS))
778
0
      THROW("TJPARAM_DENSITYUNITS is read-only in decompression instances.");
779
0
    SET_PARAM(densityUnits, 0, 2);
780
0
    break;
781
0
  case TJPARAM_MAXMEMORY:
782
0
    SET_PARAM(maxMemory, 0, (int)(min(LONG_MAX / 1048576L, (long)INT_MAX)));
783
0
    break;
784
107k
  case TJPARAM_MAXPIXELS:
785
107k
    SET_PARAM(maxPixels, 0, -1);
786
107k
    break;
787
0
  default:
788
0
    THROW("Invalid parameter");
789
901k
  }
790
791
901k
bailout:
792
901k
  return retval;
793
901k
}
794
795
796
/* TurboJPEG 3+ */
797
DLLEXPORT int tj3Get(tjhandle handle, int param)
798
114k
{
799
114k
  tjinstance *this = (tjinstance *)handle;
800
114k
  if (!this) return -1;
801
802
114k
  switch (param) {
803
0
  case TJPARAM_STOPONWARNING:
804
0
    return this->jerr.stopOnWarning;
805
0
  case TJPARAM_BOTTOMUP:
806
0
    return this->bottomUp;
807
40.7k
  case TJPARAM_NOREALLOC:
808
40.7k
    return this->noRealloc;
809
0
  case TJPARAM_QUALITY:
810
0
    return this->quality;
811
6.02k
  case TJPARAM_SUBSAMP:
812
6.02k
    return this->subsamp;
813
12.7k
  case TJPARAM_JPEGWIDTH:
814
12.7k
    return this->jpegWidth;
815
12.7k
  case TJPARAM_JPEGHEIGHT:
816
12.7k
    return this->jpegHeight;
817
6.77k
  case TJPARAM_PRECISION:
818
6.77k
    return this->precision;
819
0
  case TJPARAM_COLORSPACE:
820
0
    return this->colorspace;
821
0
  case TJPARAM_FASTUPSAMPLE:
822
0
    return this->fastUpsample;
823
0
  case TJPARAM_FASTDCT:
824
0
    return this->fastDCT;
825
0
  case TJPARAM_OPTIMIZE:
826
0
    return this->optimize;
827
0
  case TJPARAM_PROGRESSIVE:
828
0
    return this->progressive;
829
0
  case TJPARAM_SCANLIMIT:
830
0
    return this->scanLimit;
831
0
  case TJPARAM_ARITHMETIC:
832
0
    return this->arithmetic;
833
35.3k
  case TJPARAM_LOSSLESS:
834
35.3k
    return this->lossless;
835
0
  case TJPARAM_LOSSLESSPSV:
836
0
    return this->losslessPSV;
837
0
  case TJPARAM_LOSSLESSPT:
838
0
    return this->losslessPt;
839
0
  case TJPARAM_RESTARTBLOCKS:
840
0
    return this->restartIntervalBlocks;
841
0
  case TJPARAM_RESTARTROWS:
842
0
    return this->restartIntervalRows;
843
0
  case TJPARAM_XDENSITY:
844
0
    return this->xDensity;
845
0
  case TJPARAM_YDENSITY:
846
0
    return this->yDensity;
847
0
  case TJPARAM_DENSITYUNITS:
848
0
    return this->densityUnits;
849
0
  case TJPARAM_MAXMEMORY:
850
0
    return this->maxMemory;
851
0
  case TJPARAM_MAXPIXELS:
852
0
    return this->maxPixels;
853
114k
  }
854
855
0
  return -1;
856
114k
}
857
858
859
/* These are exposed mainly because Windows can't malloc() and free() across
860
   DLL boundaries except when the CRT DLL is used, and we don't use the CRT DLL
861
   with turbojpeg.dll for compatibility reasons.  However, these functions
862
   can potentially be used for other purposes by different implementations. */
863
864
/* TurboJPEG 3+ */
865
DLLEXPORT void *tj3Alloc(size_t bytes)
866
324k
{
867
324k
  return MALLOC(bytes);
868
324k
}
869
870
/* TurboJPEG 1.2+ */
871
DLLEXPORT unsigned char *tjAlloc(int bytes)
872
0
{
873
0
  return (unsigned char *)tj3Alloc((size_t)bytes);
874
0
}
875
876
877
/* TurboJPEG 3+ */
878
DLLEXPORT void tj3Free(void *buf)
879
673k
{
880
673k
  free(buf);
881
673k
}
882
883
/* TurboJPEG 1.2+ */
884
DLLEXPORT void tjFree(unsigned char *buf)
885
0
{
886
0
  tj3Free(buf);
887
0
}
888
889
890
/* TurboJPEG 3+ */
891
DLLEXPORT size_t tj3JPEGBufSize(int width, int height, int jpegSubsamp)
892
220k
{
893
220k
  static const char FUNCTION_NAME[] = "tj3JPEGBufSize";
894
220k
  unsigned long long retval = 0;
895
220k
  int mcuw, mcuh, chromasf;
896
897
220k
  if (width < 1 || height < 1 || jpegSubsamp < TJSAMP_UNKNOWN ||
898
220k
      jpegSubsamp >= TJ_NUMSAMP)
899
220k
    THROWG("Invalid argument", 0);
900
901
220k
  if (jpegSubsamp == TJSAMP_UNKNOWN)
902
12.7k
    jpegSubsamp = TJSAMP_444;
903
904
  /* This allows for rare corner cases in which a JPEG image can actually be
905
     larger than the uncompressed input (we wouldn't mention it if it hadn't
906
     happened before.) */
907
220k
  mcuw = tjMCUWidth[jpegSubsamp];
908
220k
  mcuh = tjMCUHeight[jpegSubsamp];
909
220k
  chromasf = jpegSubsamp == TJSAMP_GRAY ? 0 : 4 * 64 / (mcuw * mcuh);
910
220k
  retval = PAD(width, mcuw) * PAD(height, mcuh) * (2ULL + chromasf) + 2048ULL;
911
#if ULLONG_MAX > ULONG_MAX
912
  if (retval > (unsigned long long)((unsigned long)-1))
913
    THROWG("Image is too large", 0);
914
#endif
915
916
220k
bailout:
917
220k
  return (size_t)retval;
918
220k
}
919
920
/* TurboJPEG 1.2+ */
921
DLLEXPORT unsigned long tjBufSize(int width, int height, int jpegSubsamp)
922
0
{
923
0
  static const char FUNCTION_NAME[] = "tjBufSize";
924
0
  size_t retval;
925
926
0
  if (jpegSubsamp < 0)
927
0
    THROWG("Invalid argument", 0);
928
929
0
  retval = tj3JPEGBufSize(width, height, jpegSubsamp);
930
931
0
bailout:
932
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
933
0
}
934
935
/* TurboJPEG 1.0+ */
936
DLLEXPORT unsigned long TJBUFSIZE(int width, int height)
937
0
{
938
0
  static const char FUNCTION_NAME[] = "TJBUFSIZE";
939
0
  unsigned long long retval = 0;
940
941
0
  if (width < 1 || height < 1)
942
0
    THROWG("Invalid argument", (unsigned long)-1);
943
944
  /* This allows for rare corner cases in which a JPEG image can actually be
945
     larger than the uncompressed input (we wouldn't mention it if it hadn't
946
     happened before.) */
947
0
  retval = PAD(width, 16) * PAD(height, 16) * 6ULL + 2048ULL;
948
#if ULLONG_MAX > ULONG_MAX
949
  if (retval > (unsigned long long)((unsigned long)-1))
950
    THROWG("Image is too large", (unsigned long)-1);
951
#endif
952
953
0
bailout:
954
0
  return (unsigned long)retval;
955
0
}
956
957
958
/* TurboJPEG 3+ */
959
DLLEXPORT size_t tj3YUVBufSize(int width, int align, int height, int subsamp)
960
78.0k
{
961
78.0k
  static const char FUNCTION_NAME[] = "tj3YUVBufSize";
962
78.0k
  unsigned long long retval = 0;
963
78.0k
  int nc, i;
964
965
78.0k
  if (align < 1 || !IS_POW2(align) || subsamp < 0 || subsamp >= TJ_NUMSAMP)
966
77.4k
    THROWG("Invalid argument", 0);
967
968
77.4k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
969
244k
  for (i = 0; i < nc; i++) {
970
166k
    int pw = tj3YUVPlaneWidth(i, width, subsamp);
971
166k
    int stride = PAD(pw, align);
972
166k
    int ph = tj3YUVPlaneHeight(i, height, subsamp);
973
974
166k
    if (pw == 0 || ph == 0) return 0;
975
166k
    else retval += (unsigned long long)stride * ph;
976
166k
  }
977
#if ULLONG_MAX > ULONG_MAX
978
  if (retval > (unsigned long long)((unsigned long)-1))
979
    THROWG("Image is too large", 0);
980
#endif
981
982
78.0k
bailout:
983
78.0k
  return (size_t)retval;
984
77.4k
}
985
986
/* TurboJPEG 1.4+ */
987
DLLEXPORT unsigned long tjBufSizeYUV2(int width, int align, int height,
988
                                      int subsamp)
989
0
{
990
0
  size_t retval = tj3YUVBufSize(width, align, height, subsamp);
991
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
992
0
}
993
994
/* TurboJPEG 1.2+ */
995
DLLEXPORT unsigned long tjBufSizeYUV(int width, int height, int subsamp)
996
0
{
997
0
  return tjBufSizeYUV2(width, 4, height, subsamp);
998
0
}
999
1000
/* TurboJPEG 1.1+ */
1001
DLLEXPORT unsigned long TJBUFSIZEYUV(int width, int height, int subsamp)
1002
0
{
1003
0
  return tjBufSizeYUV(width, height, subsamp);
1004
0
}
1005
1006
1007
/* TurboJPEG 3+ */
1008
DLLEXPORT size_t tj3YUVPlaneSize(int componentID, int width, int stride,
1009
                                 int height, int subsamp)
1010
0
{
1011
0
  static const char FUNCTION_NAME[] = "tj3YUVPlaneSize";
1012
0
  unsigned long long retval = 0;
1013
0
  int pw, ph;
1014
1015
0
  if (width < 1 || height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1016
0
    THROWG("Invalid argument", 0);
1017
1018
0
  pw = tj3YUVPlaneWidth(componentID, width, subsamp);
1019
0
  ph = tj3YUVPlaneHeight(componentID, height, subsamp);
1020
0
  if (pw == 0 || ph == 0) return 0;
1021
1022
0
  if (stride == 0) stride = pw;
1023
0
  else stride = abs(stride);
1024
1025
0
  retval = (unsigned long long)stride * (ph - 1) + pw;
1026
#if ULLONG_MAX > ULONG_MAX
1027
  if (retval > (unsigned long long)((unsigned long)-1))
1028
    THROWG("Image is too large", 0);
1029
#endif
1030
1031
0
bailout:
1032
0
  return (size_t)retval;
1033
0
}
1034
1035
/* TurboJPEG 1.4+ */
1036
DLLEXPORT unsigned long tjPlaneSizeYUV(int componentID, int width, int stride,
1037
                                       int height, int subsamp)
1038
0
{
1039
0
  size_t retval = tj3YUVPlaneSize(componentID, width, stride, height, subsamp);
1040
0
  return (retval == 0) ? -1 : (unsigned long)retval;
1041
0
}
1042
1043
1044
/* TurboJPEG 3+ */
1045
DLLEXPORT int tj3YUVPlaneWidth(int componentID, int width, int subsamp)
1046
436k
{
1047
436k
  static const char FUNCTION_NAME[] = "tj3YUVPlaneWidth";
1048
436k
  unsigned long long pw, retval = 0;
1049
436k
  int nc;
1050
1051
436k
  if (width < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1052
436k
    THROWG("Invalid argument", 0);
1053
436k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1054
436k
  if (componentID < 0 || componentID >= nc)
1055
436k
    THROWG("Invalid argument", 0);
1056
1057
436k
  pw = PAD((unsigned long long)width, tjMCUWidth[subsamp] / 8);
1058
436k
  if (componentID == 0)
1059
234k
    retval = pw;
1060
202k
  else
1061
202k
    retval = pw * 8 / tjMCUWidth[subsamp];
1062
1063
436k
  if (retval > (unsigned long long)INT_MAX)
1064
436k
    THROWG("Width is too large", 0);
1065
1066
436k
bailout:
1067
436k
  return (int)retval;
1068
436k
}
1069
1070
/* TurboJPEG 1.4+ */
1071
DLLEXPORT int tjPlaneWidth(int componentID, int width, int subsamp)
1072
21.4k
{
1073
21.4k
  int retval = tj3YUVPlaneWidth(componentID, width, subsamp);
1074
21.4k
  return (retval == 0) ? -1 : retval;
1075
21.4k
}
1076
1077
1078
/* TurboJPEG 3+ */
1079
DLLEXPORT int tj3YUVPlaneHeight(int componentID, int height, int subsamp)
1080
436k
{
1081
436k
  static const char FUNCTION_NAME[] = "tj3YUVPlaneHeight";
1082
436k
  unsigned long long ph, retval = 0;
1083
436k
  int nc;
1084
1085
436k
  if (height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1086
436k
    THROWG("Invalid argument", 0);
1087
436k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1088
436k
  if (componentID < 0 || componentID >= nc)
1089
436k
    THROWG("Invalid argument", 0);
1090
1091
436k
  ph = PAD((unsigned long long)height, tjMCUHeight[subsamp] / 8);
1092
436k
  if (componentID == 0)
1093
234k
    retval = ph;
1094
202k
  else
1095
202k
    retval = ph * 8 / tjMCUHeight[subsamp];
1096
1097
436k
  if (retval > (unsigned long long)INT_MAX)
1098
436k
    THROWG("Height is too large", 0);
1099
1100
436k
bailout:
1101
436k
  return (int)retval;
1102
436k
}
1103
1104
/* TurboJPEG 1.4+ */
1105
DLLEXPORT int tjPlaneHeight(int componentID, int height, int subsamp)
1106
21.4k
{
1107
21.4k
  int retval = tj3YUVPlaneHeight(componentID, height, subsamp);
1108
21.4k
  return (retval == 0) ? -1 : retval;
1109
21.4k
}
1110
1111
1112
/******************************** Compressor *********************************/
1113
1114
static tjhandle _tjInitCompress(tjinstance *this)
1115
384k
{
1116
384k
  static unsigned char buffer[1];
1117
384k
  unsigned char *buf = buffer;
1118
384k
  size_t size = 1;
1119
1120
  /* This is also straight out of example.c */
1121
384k
  this->cinfo.err = jpeg_std_error(&this->jerr.pub);
1122
384k
  this->jerr.pub.error_exit = my_error_exit;
1123
384k
  this->jerr.pub.output_message = my_output_message;
1124
384k
  this->jerr.emit_message = this->jerr.pub.emit_message;
1125
384k
  this->jerr.pub.emit_message = my_emit_message;
1126
384k
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1127
384k
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1128
384k
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1129
1130
384k
  if (setjmp(this->jerr.setjmp_buffer)) {
1131
    /* If we get here, the JPEG code has signaled an error. */
1132
0
    free(this);
1133
0
    return NULL;
1134
0
  }
1135
1136
384k
  jpeg_create_compress(&this->cinfo);
1137
  /* Make an initial call so it will create the destination manager */
1138
384k
  jpeg_mem_dest_tj(&this->cinfo, &buf, &size, 0);
1139
1140
384k
  this->init |= COMPRESS;
1141
384k
  return (tjhandle)this;
1142
384k
}
1143
1144
/* TurboJPEG 1.0+ */
1145
DLLEXPORT tjhandle tjInitCompress(void)
1146
0
{
1147
0
  return tj3Init(TJINIT_COMPRESS);
1148
0
}
1149
1150
1151
/* tj3Compress*() is implemented in turbojpeg-mp.c */
1152
66.0k
#define BITS_IN_JSAMPLE  8
1153
#include "turbojpeg-mp.c"
1154
#undef BITS_IN_JSAMPLE
1155
45.1k
#define BITS_IN_JSAMPLE  12
1156
#include "turbojpeg-mp.c"
1157
#undef BITS_IN_JSAMPLE
1158
13.0k
#define BITS_IN_JSAMPLE  16
1159
#include "turbojpeg-mp.c"
1160
#undef BITS_IN_JSAMPLE
1161
1162
/* TurboJPEG 1.2+ */
1163
DLLEXPORT int tjCompress2(tjhandle handle, const unsigned char *srcBuf,
1164
                          int width, int pitch, int height, int pixelFormat,
1165
                          unsigned char **jpegBuf, unsigned long *jpegSize,
1166
                          int jpegSubsamp, int jpegQual, int flags)
1167
0
{
1168
0
  static const char FUNCTION_NAME[] = "tjCompress2";
1169
0
  int retval = 0;
1170
0
  size_t size;
1171
1172
0
  GET_TJINSTANCE(handle, -1);
1173
1174
0
  if (jpegSize == NULL || jpegSubsamp < 0 || jpegSubsamp >= TJ_NUMSAMP ||
1175
0
      jpegQual < 0 || jpegQual > 100)
1176
0
    THROW("Invalid argument");
1177
1178
0
  this->quality = jpegQual;
1179
0
  this->subsamp = jpegSubsamp;
1180
0
  processFlags(handle, flags, COMPRESS);
1181
1182
0
  size = (size_t)(*jpegSize);
1183
0
  retval = tj3Compress8(handle, srcBuf, width, pitch, height, pixelFormat,
1184
0
                        jpegBuf, &size);
1185
0
  *jpegSize = (unsigned long)size;
1186
1187
0
bailout:
1188
0
  return retval;
1189
0
}
1190
1191
/* TurboJPEG 1.0+ */
1192
DLLEXPORT int tjCompress(tjhandle handle, unsigned char *srcBuf, int width,
1193
                         int pitch, int height, int pixelSize,
1194
                         unsigned char *jpegBuf, unsigned long *jpegSize,
1195
                         int jpegSubsamp, int jpegQual, int flags)
1196
0
{
1197
0
  int retval = 0;
1198
0
  unsigned long size = jpegSize ? *jpegSize : 0;
1199
1200
0
  if (flags & TJ_YUV) {
1201
0
    size = tjBufSizeYUV(width, height, jpegSubsamp);
1202
0
    retval = tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1203
0
                          getPixelFormat(pixelSize, flags), jpegBuf,
1204
0
                          jpegSubsamp, flags);
1205
0
  } else {
1206
0
    retval = tjCompress2(handle, srcBuf, width, pitch, height,
1207
0
                         getPixelFormat(pixelSize, flags), &jpegBuf, &size,
1208
0
                         jpegSubsamp, jpegQual, flags | TJFLAG_NOREALLOC);
1209
0
  }
1210
0
  *jpegSize = size;
1211
0
  return retval;
1212
0
}
1213
1214
1215
/* TurboJPEG 3+ */
1216
DLLEXPORT int tj3CompressFromYUVPlanes8(tjhandle handle,
1217
                                        const unsigned char * const *srcPlanes,
1218
                                        int width, const int *strides,
1219
                                        int height, unsigned char **jpegBuf,
1220
                                        size_t *jpegSize)
1221
11.3k
{
1222
11.3k
  static const char FUNCTION_NAME[] = "tj3CompressFromYUVPlanes8";
1223
11.3k
  int i, row, retval = 0;
1224
11.3k
  boolean alloc = TRUE;
1225
11.3k
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
1226
11.3k
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
1227
11.3k
  JSAMPLE *_tmpbuf = NULL, *ptr;
1228
11.3k
  JSAMPROW *inbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
1229
1230
11.3k
  GET_CINSTANCE(handle)
1231
1232
125k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1233
113k
    tmpbuf[i] = NULL;  inbuf[i] = NULL;
1234
113k
  }
1235
1236
11.3k
  if ((this->init & COMPRESS) == 0)
1237
11.3k
    THROW("Instance has not been initialized for compression");
1238
1239
11.3k
  if (!srcPlanes || !srcPlanes[0] || width <= 0 || height <= 0 ||
1240
11.3k
      jpegBuf == NULL || jpegSize == NULL)
1241
11.3k
    THROW("Invalid argument");
1242
11.3k
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
1243
11.3k
    THROW("Invalid argument");
1244
1245
11.3k
  if (this->quality == -1)
1246
11.3k
    THROW("TJPARAM_QUALITY must be specified");
1247
11.3k
  if (this->subsamp == TJSAMP_UNKNOWN)
1248
11.3k
    THROW("TJPARAM_SUBSAMP must be specified");
1249
1250
11.3k
  if (setjmp(this->jerr.setjmp_buffer)) {
1251
    /* If we get here, the JPEG code has signaled an error. */
1252
0
    retval = -1;  goto bailout;
1253
0
  }
1254
1255
11.3k
  cinfo->image_width = width;
1256
11.3k
  cinfo->image_height = height;
1257
11.3k
  cinfo->data_precision = 8;
1258
1259
11.3k
  if (this->noRealloc) {
1260
11.3k
    alloc = FALSE;  *jpegSize = tj3JPEGBufSize(width, height, this->subsamp);
1261
11.3k
  }
1262
11.3k
  jpeg_mem_dest_tj(cinfo, jpegBuf, jpegSize, alloc);
1263
11.3k
  setCompDefaults(this, TJPF_RGB, TRUE);
1264
11.3k
  cinfo->raw_data_in = TRUE;
1265
1266
11.3k
  jpeg_start_compress(cinfo, TRUE);
1267
38.3k
  for (i = 0; i < cinfo->num_components; i++) {
1268
26.9k
    jpeg_component_info *compptr = &cinfo->comp_info[i];
1269
26.9k
    int ih;
1270
1271
26.9k
    iw[i] = compptr->width_in_blocks * DCTSIZE;
1272
26.9k
    ih = compptr->height_in_blocks * DCTSIZE;
1273
26.9k
    pw[i] = PAD(cinfo->image_width, cinfo->max_h_samp_factor) *
1274
26.9k
            compptr->h_samp_factor / cinfo->max_h_samp_factor;
1275
26.9k
    ph[i] = PAD(cinfo->image_height, cinfo->max_v_samp_factor) *
1276
26.9k
            compptr->v_samp_factor / cinfo->max_v_samp_factor;
1277
26.9k
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
1278
26.9k
    th[i] = compptr->v_samp_factor * DCTSIZE;
1279
26.9k
    tmpbufsize += iw[i] * th[i];
1280
26.9k
    if ((inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
1281
26.9k
      THROW("Memory allocation failure");
1282
26.9k
    ptr = (JSAMPLE *)srcPlanes[i];
1283
80.7M
    for (row = 0; row < ph[i]; row++) {
1284
80.7M
      inbuf[i][row] = ptr;
1285
80.7M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1286
80.7M
    }
1287
26.9k
  }
1288
11.3k
  if (usetmpbuf) {
1289
11.3k
    if ((_tmpbuf = (JSAMPLE *)malloc(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
1290
11.3k
      THROW("Memory allocation failure");
1291
11.3k
    ptr = _tmpbuf;
1292
38.1k
    for (i = 0; i < cinfo->num_components; i++) {
1293
26.8k
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
1294
26.8k
        THROW("Memory allocation failure");
1295
257k
      for (row = 0; row < th[i]; row++) {
1296
230k
        tmpbuf[i][row] = ptr;
1297
230k
        ptr += iw[i];
1298
230k
      }
1299
26.8k
    }
1300
11.3k
  }
1301
1302
11.3k
  if (setjmp(this->jerr.setjmp_buffer)) {
1303
    /* If we get here, the JPEG code has signaled an error. */
1304
0
    retval = -1;  goto bailout;
1305
0
  }
1306
1307
4.27M
  for (row = 0; row < (int)cinfo->image_height;
1308
4.26M
       row += cinfo->max_v_samp_factor * DCTSIZE) {
1309
4.26M
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
1310
4.26M
    int crow[MAX_COMPONENTS];
1311
1312
13.9M
    for (i = 0; i < cinfo->num_components; i++) {
1313
9.72M
      jpeg_component_info *compptr = &cinfo->comp_info[i];
1314
1315
9.72M
      crow[i] = row * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1316
9.72M
      if (usetmpbuf) {
1317
9.72M
        int j, k;
1318
1319
90.4M
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
1320
80.7M
          memcpy(tmpbuf[i][j], inbuf[i][crow[i] + j], pw[i]);
1321
          /* Duplicate last sample in row to fill out MCU */
1322
613M
          for (k = pw[i]; k < iw[i]; k++)
1323
532M
            tmpbuf[i][j][k] = tmpbuf[i][j][pw[i] - 1];
1324
80.7M
        }
1325
        /* Duplicate last row to fill out MCU */
1326
9.86M
        for (j = ph[i] - crow[i]; j < th[i]; j++)
1327
144k
          memcpy(tmpbuf[i][j], tmpbuf[i][ph[i] - crow[i] - 1], iw[i]);
1328
9.72M
        yuvptr[i] = tmpbuf[i];
1329
9.72M
      } else
1330
366
        yuvptr[i] = &inbuf[i][crow[i]];
1331
9.72M
    }
1332
4.26M
    jpeg_write_raw_data(cinfo, yuvptr, cinfo->max_v_samp_factor * DCTSIZE);
1333
4.26M
  }
1334
11.3k
  jpeg_finish_compress(cinfo);
1335
1336
11.3k
bailout:
1337
11.3k
  if (cinfo->global_state > CSTATE_START && alloc)
1338
0
    (*cinfo->dest->term_destination) (cinfo);
1339
11.3k
  if (cinfo->global_state > CSTATE_START || retval == -1)
1340
0
    jpeg_abort_compress(cinfo);
1341
125k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1342
113k
    free(tmpbuf[i]);
1343
113k
    free(inbuf[i]);
1344
113k
  }
1345
11.3k
  free(_tmpbuf);
1346
11.3k
  if (this->jerr.warning) retval = -1;
1347
11.3k
  return retval;
1348
11.3k
}
1349
1350
/* TurboJPEG 1.4+ */
1351
DLLEXPORT int tjCompressFromYUVPlanes(tjhandle handle,
1352
                                      const unsigned char **srcPlanes,
1353
                                      int width, const int *strides,
1354
                                      int height, int subsamp,
1355
                                      unsigned char **jpegBuf,
1356
                                      unsigned long *jpegSize, int jpegQual,
1357
                                      int flags)
1358
0
{
1359
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUVPlanes";
1360
0
  int retval = 0;
1361
0
  size_t size;
1362
1363
0
  GET_TJINSTANCE(handle, -1);
1364
1365
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP || jpegSize == NULL ||
1366
0
      jpegQual < 0 || jpegQual > 100)
1367
0
    THROW("Invalid argument");
1368
1369
0
  this->quality = jpegQual;
1370
0
  this->subsamp = subsamp;
1371
0
  processFlags(handle, flags, COMPRESS);
1372
1373
0
  size = (size_t)(*jpegSize);
1374
0
  retval = tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1375
0
                                     jpegBuf, &size);
1376
0
  *jpegSize = (unsigned long)size;
1377
1378
0
bailout:
1379
0
  return retval;
1380
0
}
1381
1382
1383
/* TurboJPEG 3+ */
1384
DLLEXPORT int tj3CompressFromYUV8(tjhandle handle,
1385
                                  const unsigned char *srcBuf, int width,
1386
                                  int align, int height,
1387
                                  unsigned char **jpegBuf, size_t *jpegSize)
1388
31.7k
{
1389
31.7k
  static const char FUNCTION_NAME[] = "tj3CompressFromYUV8";
1390
31.7k
  const unsigned char *srcPlanes[3];
1391
31.7k
  int pw0, ph0, strides[3], retval = -1;
1392
1393
31.7k
  GET_TJINSTANCE(handle, -1);
1394
1395
31.7k
  if (srcBuf == NULL || width <= 0 || align < 1 || !IS_POW2(align) ||
1396
31.7k
      height <= 0)
1397
31.7k
    THROW("Invalid argument");
1398
1399
31.7k
  if (this->subsamp == TJSAMP_UNKNOWN)
1400
31.7k
    THROW("TJPARAM_SUBSAMP must be specified");
1401
1402
31.7k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1403
31.7k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1404
31.7k
  srcPlanes[0] = srcBuf;
1405
31.7k
  strides[0] = PAD(pw0, align);
1406
31.7k
  if (this->subsamp == TJSAMP_GRAY) {
1407
10.3k
    strides[1] = strides[2] = 0;
1408
10.3k
    srcPlanes[1] = srcPlanes[2] = NULL;
1409
21.4k
  } else {
1410
21.4k
    int pw1 = tjPlaneWidth(1, width, this->subsamp);
1411
21.4k
    int ph1 = tjPlaneHeight(1, height, this->subsamp);
1412
1413
21.4k
    strides[1] = strides[2] = PAD(pw1, align);
1414
21.4k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1415
21.4k
        (unsigned long long)INT_MAX ||
1416
21.4k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1417
21.4k
        (unsigned long long)INT_MAX)
1418
21.4k
      THROW("Image or row alignment is too large");
1419
21.4k
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
1420
21.4k
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
1421
21.4k
  }
1422
1423
31.7k
  return tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1424
31.7k
                                   jpegBuf, jpegSize);
1425
1426
0
bailout:
1427
0
  return retval;
1428
31.7k
}
1429
1430
/* TurboJPEG 1.4+ */
1431
DLLEXPORT int tjCompressFromYUV(tjhandle handle, const unsigned char *srcBuf,
1432
                                int width, int align, int height, int subsamp,
1433
                                unsigned char **jpegBuf,
1434
                                unsigned long *jpegSize, int jpegQual,
1435
                                int flags)
1436
0
{
1437
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUV";
1438
0
  int retval = -1;
1439
0
  size_t size;
1440
1441
0
  GET_TJINSTANCE(handle, -1);
1442
1443
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1444
0
    THROW("Invalid argument");
1445
1446
0
  this->quality = jpegQual;
1447
0
  this->subsamp = subsamp;
1448
0
  processFlags(handle, flags, COMPRESS);
1449
1450
0
  size = (size_t)(*jpegSize);
1451
0
  retval = tj3CompressFromYUV8(handle, srcBuf, width, align, height, jpegBuf,
1452
0
                               &size);
1453
0
  *jpegSize = (unsigned long)size;
1454
1455
0
bailout:
1456
0
  return retval;
1457
0
}
1458
1459
1460
/* TurboJPEG 3+ */
1461
DLLEXPORT int tj3EncodeYUVPlanes8(tjhandle handle, const unsigned char *srcBuf,
1462
                                  int width, int pitch, int height,
1463
                                  int pixelFormat, unsigned char **dstPlanes,
1464
                                  int *strides)
1465
31.9k
{
1466
31.9k
  static const char FUNCTION_NAME[] = "tj3EncodeYUVPlanes8";
1467
31.9k
  JSAMPROW *row_pointer = NULL;
1468
31.9k
  JSAMPLE *_tmpbuf[MAX_COMPONENTS], *_tmpbuf2[MAX_COMPONENTS];
1469
31.9k
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *tmpbuf2[MAX_COMPONENTS];
1470
31.9k
  JSAMPROW *outbuf[MAX_COMPONENTS];
1471
31.9k
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
1472
31.9k
  JSAMPLE *ptr;
1473
31.9k
  jpeg_component_info *compptr;
1474
1475
31.9k
  GET_CINSTANCE(handle)
1476
1477
351k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1478
319k
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;
1479
319k
    tmpbuf2[i] = NULL;  _tmpbuf2[i] = NULL;  outbuf[i] = NULL;
1480
319k
  }
1481
1482
31.9k
  if ((this->init & COMPRESS) == 0)
1483
31.9k
    THROW("Instance has not been initialized for compression");
1484
1485
31.9k
  if (srcBuf == NULL || width <= 0 || pitch < 0 || height <= 0 ||
1486
31.9k
      pixelFormat < 0 || pixelFormat >= TJ_NUMPF || !dstPlanes ||
1487
31.9k
      !dstPlanes[0])
1488
31.9k
    THROW("Invalid argument");
1489
31.9k
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
1490
31.9k
    THROW("Invalid argument");
1491
1492
31.9k
  if (this->subsamp == TJSAMP_UNKNOWN)
1493
31.9k
    THROW("TJPARAM_SUBSAMP must be specified");
1494
31.9k
  if (pixelFormat == TJPF_CMYK)
1495
31.9k
    THROW("Cannot generate YUV images from packed-pixel CMYK images");
1496
1497
31.9k
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
1498
1499
31.9k
  if (setjmp(this->jerr.setjmp_buffer)) {
1500
    /* If we get here, the JPEG code has signaled an error. */
1501
175
    retval = -1;  goto bailout;
1502
175
  }
1503
1504
31.7k
  cinfo->image_width = width;
1505
31.7k
  cinfo->image_height = height;
1506
31.7k
  cinfo->data_precision = 8;
1507
1508
31.7k
  setCompDefaults(this, pixelFormat, TRUE);
1509
1510
  /* Execute only the parts of jpeg_start_compress() that we need.  If we
1511
     were to call the whole jpeg_start_compress() function, then it would try
1512
     to write the file headers, which could overflow the output buffer if the
1513
     YUV image were very small. */
1514
31.7k
  if (cinfo->global_state != CSTATE_START)
1515
31.7k
    THROW("libjpeg API is in the wrong state");
1516
31.7k
  (*cinfo->err->reset_error_mgr) ((j_common_ptr)cinfo);
1517
31.7k
  jinit_c_master_control(cinfo, FALSE);
1518
31.7k
  jinit_color_converter(cinfo);
1519
31.7k
  jinit_downsampler(cinfo);
1520
31.7k
  (*cinfo->cconvert->start_pass) (cinfo);
1521
1522
31.7k
  pw0 = PAD(width, cinfo->max_h_samp_factor);
1523
31.7k
  ph0 = PAD(height, cinfo->max_v_samp_factor);
1524
1525
31.7k
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
1526
31.7k
    THROW("Memory allocation failure");
1527
118M
  for (i = 0; i < height; i++) {
1528
117M
    if (this->bottomUp)
1529
19.4M
      row_pointer[i] = (JSAMPROW)&srcBuf[(height - i - 1) * (size_t)pitch];
1530
98.5M
    else
1531
98.5M
      row_pointer[i] = (JSAMPROW)&srcBuf[i * (size_t)pitch];
1532
117M
  }
1533
31.7k
  if (height < ph0)
1534
5.85k
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
1535
1536
106k
  for (i = 0; i < cinfo->num_components; i++) {
1537
74.6k
    compptr = &cinfo->comp_info[i];
1538
74.6k
    _tmpbuf[i] = (JSAMPLE *)MALLOC(
1539
74.6k
      PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1540
74.6k
          compptr->h_samp_factor, 32) *
1541
74.6k
      cinfo->max_v_samp_factor + 32);
1542
74.6k
    if (!_tmpbuf[i])
1543
74.6k
      THROW("Memory allocation failure");
1544
74.6k
    tmpbuf[i] =
1545
74.6k
      (JSAMPROW *)malloc(sizeof(JSAMPROW) * cinfo->max_v_samp_factor);
1546
74.6k
    if (!tmpbuf[i])
1547
74.6k
      THROW("Memory allocation failure");
1548
165k
    for (row = 0; row < cinfo->max_v_samp_factor; row++) {
1549
90.7k
      unsigned char *_tmpbuf_aligned =
1550
90.7k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
1551
1552
90.7k
      tmpbuf[i][row] = &_tmpbuf_aligned[
1553
90.7k
        PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1554
90.7k
            compptr->h_samp_factor, 32) * row];
1555
90.7k
    }
1556
74.6k
    _tmpbuf2[i] =
1557
74.6k
      (JSAMPLE *)MALLOC(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
1558
74.6k
                        compptr->v_samp_factor + 32);
1559
74.6k
    if (!_tmpbuf2[i])
1560
74.6k
      THROW("Memory allocation failure");
1561
74.6k
    tmpbuf2[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
1562
74.6k
    if (!tmpbuf2[i])
1563
74.6k
      THROW("Memory allocation failure");
1564
154k
    for (row = 0; row < compptr->v_samp_factor; row++) {
1565
80.0k
      unsigned char *_tmpbuf2_aligned =
1566
80.0k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf2[i], 32);
1567
1568
80.0k
      tmpbuf2[i][row] =
1569
80.0k
        &_tmpbuf2_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
1570
80.0k
    }
1571
74.6k
    pw[i] = pw0 * compptr->h_samp_factor / cinfo->max_h_samp_factor;
1572
74.6k
    ph[i] = ph0 * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1573
74.6k
    outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
1574
74.6k
    if (!outbuf[i])
1575
74.6k
      THROW("Memory allocation failure");
1576
74.6k
    ptr = dstPlanes[i];
1577
256M
    for (row = 0; row < ph[i]; row++) {
1578
256M
      outbuf[i][row] = ptr;
1579
256M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1580
256M
    }
1581
74.6k
  }
1582
1583
31.7k
  if (setjmp(this->jerr.setjmp_buffer)) {
1584
    /* If we get here, the JPEG code has signaled an error. */
1585
0
    retval = -1;  goto bailout;
1586
0
  }
1587
1588
108M
  for (row = 0; row < ph0; row += cinfo->max_v_samp_factor) {
1589
108M
    (*cinfo->cconvert->color_convert) (cinfo, &row_pointer[row], tmpbuf, 0,
1590
108M
                                       cinfo->max_v_samp_factor);
1591
108M
    (cinfo->downsample->downsample) (cinfo, tmpbuf, 0, tmpbuf2, 0);
1592
354M
    for (i = 0, compptr = cinfo->comp_info; i < cinfo->num_components;
1593
246M
         i++, compptr++)
1594
246M
      jcopy_sample_rows(tmpbuf2[i], 0, outbuf[i],
1595
246M
        row * compptr->v_samp_factor / cinfo->max_v_samp_factor,
1596
246M
        compptr->v_samp_factor, pw[i]);
1597
108M
  }
1598
31.7k
  cinfo->next_scanline += height;
1599
31.7k
  jpeg_abort_compress(cinfo);
1600
1601
31.9k
bailout:
1602
31.9k
  if (cinfo->global_state > CSTATE_START) jpeg_abort_compress(cinfo);
1603
31.9k
  free(row_pointer);
1604
351k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1605
319k
    free(tmpbuf[i]);
1606
319k
    free(_tmpbuf[i]);
1607
319k
    free(tmpbuf2[i]);
1608
319k
    free(_tmpbuf2[i]);
1609
319k
    free(outbuf[i]);
1610
319k
  }
1611
31.9k
  if (this->jerr.warning) retval = -1;
1612
31.9k
  return retval;
1613
31.7k
}
1614
1615
/* TurboJPEG 1.4+ */
1616
DLLEXPORT int tjEncodeYUVPlanes(tjhandle handle, const unsigned char *srcBuf,
1617
                                int width, int pitch, int height,
1618
                                int pixelFormat, unsigned char **dstPlanes,
1619
                                int *strides, int subsamp, int flags)
1620
0
{
1621
0
  static const char FUNCTION_NAME[] = "tjEncodeYUVPlanes";
1622
0
  int retval = 0;
1623
1624
0
  GET_TJINSTANCE(handle, -1);
1625
1626
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1627
0
    THROW("Invalid argument");
1628
1629
0
  this->subsamp = subsamp;
1630
0
  processFlags(handle, flags, COMPRESS);
1631
1632
0
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1633
0
                             dstPlanes, strides);
1634
1635
0
bailout:
1636
0
  return retval;
1637
0
}
1638
1639
1640
/* TurboJPEG 3+ */
1641
DLLEXPORT int tj3EncodeYUV8(tjhandle handle, const unsigned char *srcBuf,
1642
                            int width, int pitch, int height, int pixelFormat,
1643
                            unsigned char *dstBuf, int align)
1644
31.9k
{
1645
31.9k
  static const char FUNCTION_NAME[] = "tj3EncodeYUV8";
1646
31.9k
  unsigned char *dstPlanes[3];
1647
31.9k
  int pw0, ph0, strides[3], retval = -1;
1648
1649
31.9k
  GET_TJINSTANCE(handle, -1);
1650
1651
31.9k
  if (width <= 0 || height <= 0 || dstBuf == NULL || align < 1 ||
1652
31.9k
      !IS_POW2(align))
1653
31.9k
    THROW("Invalid argument");
1654
1655
31.9k
  if (this->subsamp == TJSAMP_UNKNOWN)
1656
31.9k
    THROW("TJPARAM_SUBSAMP must be specified");
1657
1658
31.9k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1659
31.9k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1660
31.9k
  dstPlanes[0] = dstBuf;
1661
31.9k
  strides[0] = PAD(pw0, align);
1662
31.9k
  if (this->subsamp == TJSAMP_GRAY) {
1663
10.3k
    strides[1] = strides[2] = 0;
1664
10.3k
    dstPlanes[1] = dstPlanes[2] = NULL;
1665
21.5k
  } else {
1666
21.5k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
1667
21.5k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
1668
1669
21.5k
    strides[1] = strides[2] = PAD(pw1, align);
1670
21.5k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1671
21.5k
        (unsigned long long)INT_MAX ||
1672
21.5k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1673
21.5k
        (unsigned long long)INT_MAX)
1674
21.5k
      THROW("Image or row alignment is too large");
1675
21.5k
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
1676
21.5k
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
1677
21.5k
  }
1678
1679
31.9k
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1680
31.9k
                             dstPlanes, strides);
1681
1682
0
bailout:
1683
0
  return retval;
1684
31.9k
}
1685
1686
/* TurboJPEG 1.4+ */
1687
DLLEXPORT int tjEncodeYUV3(tjhandle handle, const unsigned char *srcBuf,
1688
                           int width, int pitch, int height, int pixelFormat,
1689
                           unsigned char *dstBuf, int align, int subsamp,
1690
                           int flags)
1691
0
{
1692
0
  static const char FUNCTION_NAME[] = "tjEncodeYUV3";
1693
0
  int retval = 0;
1694
1695
0
  GET_TJINSTANCE(handle, -1);
1696
1697
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1698
0
    THROW("Invalid argument");
1699
1700
0
  this->subsamp = subsamp;
1701
0
  processFlags(handle, flags, COMPRESS);
1702
1703
0
  return tj3EncodeYUV8(handle, srcBuf, width, pitch, height, pixelFormat,
1704
0
                       dstBuf, align);
1705
1706
0
bailout:
1707
0
  return retval;
1708
0
}
1709
1710
/* TurboJPEG 1.2+ */
1711
DLLEXPORT int tjEncodeYUV2(tjhandle handle, unsigned char *srcBuf, int width,
1712
                           int pitch, int height, int pixelFormat,
1713
                           unsigned char *dstBuf, int subsamp, int flags)
1714
0
{
1715
0
  return tjEncodeYUV3(handle, srcBuf, width, pitch, height, pixelFormat,
1716
0
                      dstBuf, 4, subsamp, flags);
1717
0
}
1718
1719
/* TurboJPEG 1.1+ */
1720
DLLEXPORT int tjEncodeYUV(tjhandle handle, unsigned char *srcBuf, int width,
1721
                          int pitch, int height, int pixelSize,
1722
                          unsigned char *dstBuf, int subsamp, int flags)
1723
0
{
1724
0
  return tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1725
0
                      getPixelFormat(pixelSize, flags), dstBuf, subsamp,
1726
0
                      flags);
1727
0
}
1728
1729
1730
/******************************* Decompressor ********************************/
1731
1732
static tjhandle _tjInitDecompress(tjinstance *this)
1733
45.3k
{
1734
45.3k
  static unsigned char buffer[1];
1735
1736
  /* This is also straight out of example.c */
1737
45.3k
  this->dinfo.err = jpeg_std_error(&this->jerr.pub);
1738
45.3k
  this->jerr.pub.error_exit = my_error_exit;
1739
45.3k
  this->jerr.pub.output_message = my_output_message;
1740
45.3k
  this->jerr.emit_message = this->jerr.pub.emit_message;
1741
45.3k
  this->jerr.pub.emit_message = my_emit_message;
1742
45.3k
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1743
45.3k
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1744
45.3k
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1745
1746
45.3k
  if (setjmp(this->jerr.setjmp_buffer)) {
1747
    /* If we get here, the JPEG code has signaled an error. */
1748
0
    free(this);
1749
0
    return NULL;
1750
0
  }
1751
1752
45.3k
  jpeg_create_decompress(&this->dinfo);
1753
  /* Make an initial call so it will create the source manager */
1754
45.3k
  jpeg_mem_src_tj(&this->dinfo, buffer, 1);
1755
1756
45.3k
  this->init |= DECOMPRESS;
1757
45.3k
  return (tjhandle)this;
1758
45.3k
}
1759
1760
/* TurboJPEG 1.0+ */
1761
DLLEXPORT tjhandle tjInitDecompress(void)
1762
0
{
1763
0
  return tj3Init(TJINIT_DECOMPRESS);
1764
0
}
1765
1766
1767
/* TurboJPEG 3+ */
1768
DLLEXPORT int tj3DecompressHeader(tjhandle handle,
1769
                                  const unsigned char *jpegBuf,
1770
                                  size_t jpegSize)
1771
12.7k
{
1772
12.7k
  static const char FUNCTION_NAME[] = "tj3DecompressHeader";
1773
12.7k
  int retval = 0;
1774
1775
12.7k
  GET_DINSTANCE(handle);
1776
12.7k
  if ((this->init & DECOMPRESS) == 0)
1777
12.7k
    THROW("Instance has not been initialized for decompression");
1778
1779
12.7k
  if (jpegBuf == NULL || jpegSize <= 0)
1780
12.7k
    THROW("Invalid argument");
1781
1782
12.7k
  if (setjmp(this->jerr.setjmp_buffer)) {
1783
    /* If we get here, the JPEG code has signaled an error. */
1784
1.30k
    return -1;
1785
1.30k
  }
1786
1787
11.4k
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
1788
1789
  /* jpeg_read_header() calls jpeg_abort() and returns JPEG_HEADER_TABLES_ONLY
1790
     if the datastream is a tables-only datastream.  Since we aren't using a
1791
     suspending data source, the only other value it can return is
1792
     JPEG_HEADER_OK. */
1793
11.4k
  if (jpeg_read_header(dinfo, FALSE) == JPEG_HEADER_TABLES_ONLY)
1794
1.19k
    return 0;
1795
1796
10.3k
  setDecompParameters(this);
1797
1798
10.3k
  jpeg_abort_decompress(dinfo);
1799
1800
10.3k
  if (this->colorspace < 0)
1801
10.2k
    THROW("Could not determine colorspace of JPEG image");
1802
10.2k
  if (this->jpegWidth < 1 || this->jpegHeight < 1)
1803
10.2k
    THROW("Invalid data returned in header");
1804
1805
10.3k
bailout:
1806
10.3k
  if (this->jerr.warning) retval = -1;
1807
10.3k
  return retval;
1808
10.2k
}
1809
1810
/* TurboJPEG 1.4+ */
1811
DLLEXPORT int tjDecompressHeader3(tjhandle handle,
1812
                                  const unsigned char *jpegBuf,
1813
                                  unsigned long jpegSize, int *width,
1814
                                  int *height, int *jpegSubsamp,
1815
                                  int *jpegColorspace)
1816
0
{
1817
0
  static const char FUNCTION_NAME[] = "tjDecompressHeader3";
1818
0
  int retval = 0;
1819
1820
0
  GET_TJINSTANCE(handle, -1);
1821
1822
0
  if (width == NULL || height == NULL || jpegSubsamp == NULL ||
1823
0
      jpegColorspace == NULL)
1824
0
    THROW("Invalid argument");
1825
1826
0
  retval = tj3DecompressHeader(handle, jpegBuf, jpegSize);
1827
1828
0
  *width = tj3Get(handle, TJPARAM_JPEGWIDTH);
1829
0
  *height = tj3Get(handle, TJPARAM_JPEGHEIGHT);
1830
0
  *jpegSubsamp = tj3Get(handle, TJPARAM_SUBSAMP);
1831
0
  if (*jpegSubsamp == TJSAMP_UNKNOWN)
1832
0
    THROW("Could not determine subsampling level of JPEG image");
1833
0
  *jpegColorspace = tj3Get(handle, TJPARAM_COLORSPACE);
1834
1835
0
bailout:
1836
0
  return retval;
1837
0
}
1838
1839
/* TurboJPEG 1.1+ */
1840
DLLEXPORT int tjDecompressHeader2(tjhandle handle, unsigned char *jpegBuf,
1841
                                  unsigned long jpegSize, int *width,
1842
                                  int *height, int *jpegSubsamp)
1843
0
{
1844
0
  int jpegColorspace;
1845
1846
0
  return tjDecompressHeader3(handle, jpegBuf, jpegSize, width, height,
1847
0
                             jpegSubsamp, &jpegColorspace);
1848
0
}
1849
1850
/* TurboJPEG 1.0+ */
1851
DLLEXPORT int tjDecompressHeader(tjhandle handle, unsigned char *jpegBuf,
1852
                                 unsigned long jpegSize, int *width,
1853
                                 int *height)
1854
0
{
1855
0
  int jpegSubsamp;
1856
1857
0
  return tjDecompressHeader2(handle, jpegBuf, jpegSize, width, height,
1858
0
                             &jpegSubsamp);
1859
0
}
1860
1861
1862
/* TurboJPEG 3+ */
1863
DLLEXPORT tjscalingfactor *tj3GetScalingFactors(int *numScalingFactors)
1864
0
{
1865
0
  static const char FUNCTION_NAME[] = "tj3GetScalingFactors";
1866
0
  tjscalingfactor *retval = (tjscalingfactor *)sf;
1867
1868
0
  if (numScalingFactors == NULL)
1869
0
    THROWG("Invalid argument", NULL);
1870
1871
0
  *numScalingFactors = NUMSF;
1872
1873
0
bailout:
1874
0
  return retval;
1875
0
}
1876
1877
/* TurboJPEG 1.2+ */
1878
DLLEXPORT tjscalingfactor *tjGetScalingFactors(int *numScalingFactors)
1879
0
{
1880
0
  return tj3GetScalingFactors(numScalingFactors);
1881
0
}
1882
1883
1884
/* TurboJPEG 3+ */
1885
DLLEXPORT int tj3SetScalingFactor(tjhandle handle,
1886
                                  tjscalingfactor scalingFactor)
1887
93.9k
{
1888
93.9k
  static const char FUNCTION_NAME[] = "tj3SetScalingFactor";
1889
93.9k
  int i, retval = 0;
1890
1891
93.9k
  GET_TJINSTANCE(handle, -1);
1892
93.9k
  if ((this->init & DECOMPRESS) == 0)
1893
93.9k
    THROW("Instance has not been initialized for decompression");
1894
1895
1.01M
  for (i = 0; i < NUMSF; i++) {
1896
1.01M
    if (scalingFactor.num == sf[i].num && scalingFactor.denom == sf[i].denom)
1897
93.9k
      break;
1898
1.01M
  }
1899
93.9k
  if (i >= NUMSF)
1900
93.9k
    THROW("Unsupported scaling factor");
1901
1902
93.9k
  this->scalingFactor = scalingFactor;
1903
1904
93.9k
bailout:
1905
93.9k
  return retval;
1906
93.9k
}
1907
1908
1909
/* TurboJPEG 3+ */
1910
DLLEXPORT int tj3SetCroppingRegion(tjhandle handle, tjregion croppingRegion)
1911
16.2k
{
1912
16.2k
  static const char FUNCTION_NAME[] = "tj3SetCroppingRegion";
1913
16.2k
  int retval = 0, scaledWidth, scaledHeight;
1914
1915
16.2k
  GET_TJINSTANCE(handle, -1);
1916
16.2k
  if ((this->init & DECOMPRESS) == 0)
1917
16.2k
    THROW("Instance has not been initialized for decompression");
1918
1919
16.2k
  if (croppingRegion.x == 0 && croppingRegion.y == 0 &&
1920
15.3k
      croppingRegion.w == 0 && croppingRegion.h == 0) {
1921
15.3k
    this->croppingRegion = croppingRegion;
1922
15.3k
    return 0;
1923
15.3k
  }
1924
1925
941
  if (croppingRegion.x < 0 || croppingRegion.y < 0 || croppingRegion.w < 0 ||
1926
941
      croppingRegion.h < 0)
1927
941
    THROW("Invalid cropping region");
1928
941
  if (this->jpegWidth < 0 || this->jpegHeight < 0)
1929
941
    THROW("JPEG header has not yet been read");
1930
941
  if (this->precision == 16 || this->lossless)
1931
939
    THROW("Cannot partially decompress lossless JPEG images");
1932
939
  if (this->subsamp == TJSAMP_UNKNOWN)
1933
844
    THROW("Could not determine subsampling level of JPEG image");
1934
1935
844
  scaledWidth = TJSCALED(this->jpegWidth, this->scalingFactor);
1936
844
  scaledHeight = TJSCALED(this->jpegHeight, this->scalingFactor);
1937
1938
844
  if (croppingRegion.x %
1939
844
      TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor) != 0)
1940
0
    THROWI("The left boundary of the cropping region (%d) is not\n"
1941
844
           "divisible by the scaled iMCU width (%d)",
1942
844
           croppingRegion.x,
1943
844
           TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor));
1944
844
  if (croppingRegion.w == 0)
1945
0
    croppingRegion.w = scaledWidth - croppingRegion.x;
1946
844
  if (croppingRegion.h == 0)
1947
0
    croppingRegion.h = scaledHeight - croppingRegion.y;
1948
844
  if (croppingRegion.w <= 0 || croppingRegion.h <= 0 ||
1949
844
      croppingRegion.x + croppingRegion.w > scaledWidth ||
1950
844
      croppingRegion.y + croppingRegion.h > scaledHeight)
1951
844
    THROW("The cropping region exceeds the scaled image dimensions");
1952
1953
844
  this->croppingRegion = croppingRegion;
1954
1955
941
bailout:
1956
941
  return retval;
1957
844
}
1958
1959
1960
/* tj3Decompress*() is implemented in turbojpeg-mp.c */
1961
1962
/* TurboJPEG 1.2+ */
1963
DLLEXPORT int tjDecompress2(tjhandle handle, const unsigned char *jpegBuf,
1964
                            unsigned long jpegSize, unsigned char *dstBuf,
1965
                            int width, int pitch, int height, int pixelFormat,
1966
                            int flags)
1967
0
{
1968
0
  static const char FUNCTION_NAME[] = "tjDecompress2";
1969
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
1970
1971
0
  GET_DINSTANCE(handle);
1972
0
  if ((this->init & DECOMPRESS) == 0)
1973
0
    THROW("Instance has not been initialized for decompression");
1974
1975
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
1976
0
    THROW("Invalid argument");
1977
1978
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1979
    /* If we get here, the JPEG code has signaled an error. */
1980
0
    retval = -1;  goto bailout;
1981
0
  }
1982
1983
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
1984
0
  jpeg_read_header(dinfo, TRUE);
1985
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
1986
0
  if (width == 0) width = jpegwidth;
1987
0
  if (height == 0) height = jpegheight;
1988
0
  for (i = 0; i < NUMSF; i++) {
1989
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
1990
0
    scaledh = TJSCALED(jpegheight, sf[i]);
1991
0
    if (scaledw <= width && scaledh <= height)
1992
0
      break;
1993
0
  }
1994
0
  if (i >= NUMSF)
1995
0
    THROW("Could not scale down to desired image dimensions");
1996
0
  if (dinfo->master->lossless && ((JDIMENSION)scaledw != dinfo->image_width ||
1997
0
                                  (JDIMENSION)scaledh != dinfo->image_height))
1998
0
    THROW("Cannot use decompression scaling with lossless JPEG images");
1999
2000
0
  processFlags(handle, flags, DECOMPRESS);
2001
2002
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2003
0
    return -1;
2004
0
  if (tj3SetCroppingRegion(handle, TJUNCROPPED) == -1)
2005
0
    return -1;
2006
0
  return tj3Decompress8(handle, jpegBuf, jpegSize, dstBuf, pitch, pixelFormat);
2007
2008
0
bailout:
2009
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2010
0
  if (this->jerr.warning) retval = -1;
2011
0
  return retval;
2012
0
}
2013
2014
/* TurboJPEG 1.0+ */
2015
DLLEXPORT int tjDecompress(tjhandle handle, unsigned char *jpegBuf,
2016
                           unsigned long jpegSize, unsigned char *dstBuf,
2017
                           int width, int pitch, int height, int pixelSize,
2018
                           int flags)
2019
0
{
2020
0
  if (flags & TJ_YUV)
2021
0
    return tjDecompressToYUV(handle, jpegBuf, jpegSize, dstBuf, flags);
2022
0
  else
2023
0
    return tjDecompress2(handle, jpegBuf, jpegSize, dstBuf, width, pitch,
2024
0
                         height, getPixelFormat(pixelSize, flags), flags);
2025
0
}
2026
2027
2028
/* TurboJPEG 3+ */
2029
DLLEXPORT int tj3DecompressToYUVPlanes8(tjhandle handle,
2030
                                        const unsigned char *jpegBuf,
2031
                                        size_t jpegSize,
2032
                                        unsigned char **dstPlanes,
2033
                                        int *strides)
2034
45.5k
{
2035
45.5k
  static const char FUNCTION_NAME[] = "tj3DecompressToYUVPlanes8";
2036
45.5k
  int i, row, retval = 0;
2037
45.5k
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
2038
45.5k
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
2039
45.5k
  JSAMPLE *_tmpbuf = NULL, *ptr;
2040
45.5k
  JSAMPROW *outbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
2041
45.5k
  int dctsize;
2042
45.5k
  struct my_progress_mgr progress;
2043
2044
45.5k
  GET_DINSTANCE(handle);
2045
2046
500k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2047
455k
    tmpbuf[i] = NULL;  outbuf[i] = NULL;
2048
455k
  }
2049
2050
45.5k
  if ((this->init & DECOMPRESS) == 0)
2051
45.5k
    THROW("Instance has not been initialized for decompression");
2052
2053
45.5k
  if (jpegBuf == NULL || jpegSize <= 0 || !dstPlanes || !dstPlanes[0])
2054
45.5k
    THROW("Invalid argument");
2055
2056
45.5k
  if (this->scanLimit) {
2057
45.5k
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2058
45.5k
    progress.pub.progress_monitor = my_progress_monitor;
2059
45.5k
    progress.this = this;
2060
45.5k
    dinfo->progress = &progress.pub;
2061
45.5k
  } else
2062
0
    dinfo->progress = NULL;
2063
2064
45.5k
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2065
2066
45.5k
  if (setjmp(this->jerr.setjmp_buffer)) {
2067
    /* If we get here, the JPEG code has signaled an error. */
2068
0
    retval = -1;  goto bailout;
2069
0
  }
2070
2071
45.5k
  if (dinfo->global_state <= DSTATE_INHEADER) {
2072
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2073
0
    jpeg_read_header(dinfo, TRUE);
2074
0
  }
2075
45.5k
  setDecompParameters(this);
2076
45.5k
  if (this->maxPixels &&
2077
0
      (unsigned long long)this->jpegWidth * this->jpegHeight >
2078
0
      (unsigned long long)this->maxPixels)
2079
45.5k
    THROW("Image is too large");
2080
45.5k
  if (this->subsamp == TJSAMP_UNKNOWN)
2081
45.5k
    THROW("Could not determine subsampling level of JPEG image");
2082
2083
45.5k
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
2084
45.5k
    THROW("Invalid argument");
2085
2086
45.5k
  if (dinfo->num_components > 3)
2087
45.4k
    THROW("JPEG image must have 3 or fewer components");
2088
2089
45.4k
  dinfo->scale_num = this->scalingFactor.num;
2090
45.4k
  dinfo->scale_denom = this->scalingFactor.denom;
2091
45.4k
  jpeg_calc_output_dimensions(dinfo);
2092
2093
45.4k
  dctsize = DCTSIZE * this->scalingFactor.num / this->scalingFactor.denom;
2094
2095
136k
  for (i = 0; i < dinfo->num_components; i++) {
2096
91.3k
    jpeg_component_info *compptr = &dinfo->comp_info[i];
2097
91.3k
    int ih;
2098
2099
91.3k
    iw[i] = compptr->width_in_blocks * dctsize;
2100
91.3k
    ih = compptr->height_in_blocks * dctsize;
2101
91.3k
    pw[i] = tj3YUVPlaneWidth(i, dinfo->output_width, this->subsamp);
2102
91.3k
    ph[i] = tj3YUVPlaneHeight(i, dinfo->output_height, this->subsamp);
2103
91.3k
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
2104
91.3k
    th[i] = compptr->v_samp_factor * dctsize;
2105
91.3k
    tmpbufsize += iw[i] * th[i];
2106
91.3k
    if ((outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
2107
91.3k
      THROW("Memory allocation failure");
2108
91.3k
    ptr = dstPlanes[i];
2109
524M
    for (row = 0; row < ph[i]; row++) {
2110
524M
      outbuf[i][row] = ptr;
2111
524M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2112
524M
    }
2113
91.3k
  }
2114
45.4k
  if (usetmpbuf) {
2115
38.6k
    if ((_tmpbuf = (JSAMPLE *)MALLOC(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
2116
38.6k
      THROW("Memory allocation failure");
2117
38.6k
    ptr = _tmpbuf;
2118
119k
    for (i = 0; i < dinfo->num_components; i++) {
2119
80.4k
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
2120
80.4k
        THROW("Memory allocation failure");
2121
938k
      for (row = 0; row < th[i]; row++) {
2122
857k
        tmpbuf[i][row] = ptr;
2123
857k
        ptr += iw[i];
2124
857k
      }
2125
80.4k
    }
2126
38.6k
  }
2127
2128
45.4k
  if (setjmp(this->jerr.setjmp_buffer)) {
2129
    /* If we get here, the JPEG code has signaled an error. */
2130
29.5k
    retval = -1;  goto bailout;
2131
29.5k
  }
2132
2133
15.8k
  dinfo->do_fancy_upsampling = !this->fastUpsample;
2134
15.8k
  dinfo->dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
2135
15.8k
  dinfo->raw_data_out = TRUE;
2136
2137
15.8k
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2138
2139
15.8k
  jpeg_start_decompress(dinfo);
2140
7.08M
  for (row = 0; row < (int)dinfo->output_height;
2141
7.06M
       row += dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size) {
2142
7.06M
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
2143
7.06M
    int crow[MAX_COMPONENTS];
2144
2145
18.3M
    for (i = 0; i < dinfo->num_components; i++) {
2146
11.2M
      jpeg_component_info *compptr = &dinfo->comp_info[i];
2147
2148
11.2M
      if (this->subsamp == TJSAMP_420) {
2149
        /* When 4:2:0 subsampling is used with IDCT scaling, libjpeg will try
2150
           to be clever and use the IDCT to perform upsampling on the U and V
2151
           planes.  For instance, if the output image is to be scaled by 1/2
2152
           relative to the JPEG image, then the scaling factor and upsampling
2153
           effectively cancel each other, so a normal 8x8 IDCT can be used.
2154
           However, this is not desirable when using the decompress-to-YUV
2155
           functionality in TurboJPEG, since we want to output the U and V
2156
           planes in their subsampled form.  Thus, we have to override some
2157
           internal libjpeg parameters to force it to use the "scaled" IDCT
2158
           functions on the U and V planes. */
2159
2.51M
        compptr->_DCT_scaled_size = dctsize;
2160
2.51M
        compptr->MCU_sample_width = tjMCUWidth[this->subsamp] *
2161
2.51M
          this->scalingFactor.num / this->scalingFactor.denom *
2162
2.51M
          compptr->v_samp_factor / dinfo->max_v_samp_factor;
2163
2.51M
        dinfo->idct->inverse_DCT[i] = dinfo->idct->inverse_DCT[0];
2164
2.51M
      }
2165
11.2M
      crow[i] = row * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2166
11.2M
      if (usetmpbuf) yuvptr[i] = tmpbuf[i];
2167
1.49M
      else yuvptr[i] = &outbuf[i][crow[i]];
2168
11.2M
    }
2169
7.06M
    jpeg_read_raw_data(dinfo, yuvptr,
2170
7.06M
                       dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size);
2171
7.06M
    if (usetmpbuf) {
2172
5.98M
      int j;
2173
2174
15.7M
      for (i = 0; i < dinfo->num_components; i++) {
2175
100M
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
2176
90.6M
          memcpy(outbuf[i][crow[i] + j], tmpbuf[i][j], pw[i]);
2177
90.6M
        }
2178
9.75M
      }
2179
5.98M
    }
2180
7.06M
  }
2181
15.8k
  jpeg_finish_decompress(dinfo);
2182
2183
45.5k
bailout:
2184
45.5k
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2185
500k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2186
455k
    free(tmpbuf[i]);
2187
455k
    free(outbuf[i]);
2188
455k
  }
2189
45.5k
  free(_tmpbuf);
2190
45.5k
  if (this->jerr.warning) retval = -1;
2191
45.5k
  return retval;
2192
15.8k
}
2193
2194
/* TurboJPEG 1.4+ */
2195
DLLEXPORT int tjDecompressToYUVPlanes(tjhandle handle,
2196
                                      const unsigned char *jpegBuf,
2197
                                      unsigned long jpegSize,
2198
                                      unsigned char **dstPlanes, int width,
2199
                                      int *strides, int height, int flags)
2200
0
{
2201
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUVPlanes";
2202
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2203
2204
0
  GET_DINSTANCE(handle);
2205
0
  if ((this->init & DECOMPRESS) == 0)
2206
0
    THROW("Instance has not been initialized for decompression");
2207
2208
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2209
0
    THROW("Invalid argument");
2210
2211
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2212
    /* If we get here, the JPEG code has signaled an error. */
2213
0
    retval = -1;  goto bailout;
2214
0
  }
2215
2216
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2217
0
  jpeg_read_header(dinfo, TRUE);
2218
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2219
0
  if (width == 0) width = jpegwidth;
2220
0
  if (height == 0) height = jpegheight;
2221
0
  for (i = 0; i < NUMSF; i++) {
2222
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2223
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2224
0
    if (scaledw <= width && scaledh <= height)
2225
0
      break;
2226
0
  }
2227
0
  if (i >= NUMSF)
2228
0
    THROW("Could not scale down to desired image dimensions");
2229
2230
0
  processFlags(handle, flags, DECOMPRESS);
2231
2232
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2233
0
    return -1;
2234
0
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2235
0
                                   strides);
2236
2237
0
bailout:
2238
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2239
0
  if (this->jerr.warning) retval = -1;
2240
0
  return retval;
2241
0
}
2242
2243
2244
/* TurboJPEG 3+ */
2245
DLLEXPORT int tj3DecompressToYUV8(tjhandle handle,
2246
                                  const unsigned char *jpegBuf,
2247
                                  size_t jpegSize,
2248
                                  unsigned char *dstBuf, int align)
2249
46.0k
{
2250
46.0k
  static const char FUNCTION_NAME[] = "tj3DecompressToYUV8";
2251
46.0k
  unsigned char *dstPlanes[3];
2252
46.0k
  int pw0, ph0, strides[3], retval = -1;
2253
46.0k
  int width, height;
2254
2255
46.0k
  GET_DINSTANCE(handle);
2256
2257
46.0k
  if (jpegBuf == NULL || jpegSize <= 0 || dstBuf == NULL || align < 1 ||
2258
46.0k
      !IS_POW2(align))
2259
46.0k
    THROW("Invalid argument");
2260
2261
46.0k
  if (setjmp(this->jerr.setjmp_buffer)) {
2262
    /* If we get here, the JPEG code has signaled an error. */
2263
0
    retval = -1;  goto bailout;
2264
0
  }
2265
2266
46.0k
  if (dinfo->global_state <= DSTATE_INHEADER) {
2267
46.0k
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2268
46.0k
    jpeg_read_header(dinfo, TRUE);
2269
46.0k
  }
2270
46.0k
  setDecompParameters(this);
2271
46.0k
  if (this->subsamp == TJSAMP_UNKNOWN)
2272
45.5k
    THROW("Could not determine subsampling level of JPEG image");
2273
2274
45.5k
  width = TJSCALED(dinfo->image_width, this->scalingFactor);
2275
45.5k
  height = TJSCALED(dinfo->image_height, this->scalingFactor);
2276
2277
45.5k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2278
45.5k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2279
45.5k
  dstPlanes[0] = dstBuf;
2280
45.5k
  strides[0] = PAD(pw0, align);
2281
45.5k
  if (this->subsamp == TJSAMP_GRAY) {
2282
22.4k
    strides[1] = strides[2] = 0;
2283
22.4k
    dstPlanes[1] = dstPlanes[2] = NULL;
2284
23.0k
  } else {
2285
23.0k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2286
23.0k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2287
2288
23.0k
    strides[1] = strides[2] = PAD(pw1, align);
2289
23.0k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2290
23.0k
        (unsigned long long)INT_MAX ||
2291
23.0k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2292
23.0k
        (unsigned long long)INT_MAX)
2293
23.0k
      THROW("Image or row alignment is too large");
2294
23.0k
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
2295
23.0k
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
2296
23.0k
  }
2297
2298
45.5k
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2299
45.5k
                                   strides);
2300
2301
522
bailout:
2302
522
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2303
522
  if (this->jerr.warning) retval = -1;
2304
522
  return retval;
2305
45.5k
}
2306
2307
/* TurboJPEG 1.4+ */
2308
DLLEXPORT int tjDecompressToYUV2(tjhandle handle, const unsigned char *jpegBuf,
2309
                                 unsigned long jpegSize, unsigned char *dstBuf,
2310
                                 int width, int align, int height, int flags)
2311
0
{
2312
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUV2";
2313
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2314
2315
0
  GET_DINSTANCE(handle);
2316
0
  if ((this->init & DECOMPRESS) == 0)
2317
0
    THROW("Instance has not been initialized for decompression");
2318
2319
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2320
0
    THROW("Invalid argument");
2321
2322
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2323
    /* If we get here, the JPEG code has signaled an error. */
2324
0
    retval = -1;  goto bailout;
2325
0
  }
2326
2327
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2328
0
  jpeg_read_header(dinfo, TRUE);
2329
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2330
0
  if (width == 0) width = jpegwidth;
2331
0
  if (height == 0) height = jpegheight;
2332
0
  for (i = 0; i < NUMSF; i++) {
2333
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2334
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2335
0
    if (scaledw <= width && scaledh <= height)
2336
0
      break;
2337
0
  }
2338
0
  if (i >= NUMSF)
2339
0
    THROW("Could not scale down to desired image dimensions");
2340
2341
0
  width = scaledw;  height = scaledh;
2342
2343
0
  processFlags(handle, flags, DECOMPRESS);
2344
2345
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2346
0
    return -1;
2347
0
  return tj3DecompressToYUV8(handle, jpegBuf, (size_t)jpegSize, dstBuf, align);
2348
2349
0
bailout:
2350
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2351
0
  if (this->jerr.warning) retval = -1;
2352
0
  return retval;
2353
0
}
2354
2355
/* TurboJPEG 1.1+ */
2356
DLLEXPORT int tjDecompressToYUV(tjhandle handle, unsigned char *jpegBuf,
2357
                                unsigned long jpegSize, unsigned char *dstBuf,
2358
                                int flags)
2359
0
{
2360
0
  return tjDecompressToYUV2(handle, jpegBuf, jpegSize, dstBuf, 0, 4, 0, flags);
2361
0
}
2362
2363
2364
static void setDecodeDefaults(tjinstance *this, int pixelFormat)
2365
2.12k
{
2366
2.12k
  int i;
2367
2368
2.12k
  this->dinfo.scale_num = this->dinfo.scale_denom = 1;
2369
2370
2.12k
  if (this->subsamp == TJSAMP_GRAY) {
2371
856
    this->dinfo.num_components = this->dinfo.comps_in_scan = 1;
2372
856
    this->dinfo.jpeg_color_space = JCS_GRAYSCALE;
2373
1.26k
  } else {
2374
1.26k
    this->dinfo.num_components = this->dinfo.comps_in_scan = 3;
2375
1.26k
    this->dinfo.jpeg_color_space = JCS_YCbCr;
2376
1.26k
  }
2377
2378
2.12k
  this->dinfo.comp_info = (jpeg_component_info *)
2379
2.12k
    (*this->dinfo.mem->alloc_small) ((j_common_ptr)&this->dinfo, JPOOL_IMAGE,
2380
2.12k
                                     this->dinfo.num_components *
2381
2.12k
                                     sizeof(jpeg_component_info));
2382
2383
6.78k
  for (i = 0; i < this->dinfo.num_components; i++) {
2384
4.66k
    jpeg_component_info *compptr = &this->dinfo.comp_info[i];
2385
2386
4.66k
    compptr->h_samp_factor = (i == 0) ? tjMCUWidth[this->subsamp] / 8 : 1;
2387
4.66k
    compptr->v_samp_factor = (i == 0) ? tjMCUHeight[this->subsamp] / 8 : 1;
2388
4.66k
    compptr->component_index = i;
2389
4.66k
    compptr->component_id = i + 1;
2390
4.66k
    compptr->quant_tbl_no = compptr->dc_tbl_no =
2391
4.66k
      compptr->ac_tbl_no = (i == 0) ? 0 : 1;
2392
4.66k
    this->dinfo.cur_comp_info[i] = compptr;
2393
4.66k
  }
2394
2.12k
  this->dinfo.data_precision = 8;
2395
6.37k
  for (i = 0; i < 2; i++) {
2396
4.24k
    if (this->dinfo.quant_tbl_ptrs[i] == NULL)
2397
633
      this->dinfo.quant_tbl_ptrs[i] =
2398
633
        jpeg_alloc_quant_table((j_common_ptr)&this->dinfo);
2399
4.24k
  }
2400
2401
2.12k
  this->dinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2402
2.12k
}
2403
2404
2405
static int my_read_markers(j_decompress_ptr dinfo)
2406
2.12k
{
2407
2.12k
  return JPEG_REACHED_SOS;
2408
2.12k
}
2409
2410
static void my_reset_marker_reader(j_decompress_ptr dinfo)
2411
2.12k
{
2412
2.12k
}
2413
2414
/* TurboJPEG 3+ */
2415
DLLEXPORT int tj3DecodeYUVPlanes8(tjhandle handle,
2416
                                  const unsigned char * const *srcPlanes,
2417
                                  const int *strides, unsigned char *dstBuf,
2418
                                  int width, int pitch, int height,
2419
                                  int pixelFormat)
2420
2.12k
{
2421
2.12k
  static const char FUNCTION_NAME[] = "tj3DecodeYUVPlanes8";
2422
2.12k
  JSAMPROW *row_pointer = NULL;
2423
2.12k
  JSAMPLE *_tmpbuf[MAX_COMPONENTS];
2424
2.12k
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *inbuf[MAX_COMPONENTS];
2425
2.12k
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
2426
2.12k
  JSAMPLE *ptr;
2427
2.12k
  jpeg_component_info *compptr;
2428
2.12k
  int (*old_read_markers) (j_decompress_ptr);
2429
2.12k
  void (*old_reset_marker_reader) (j_decompress_ptr);
2430
2431
2.12k
  GET_DINSTANCE(handle);
2432
2433
23.3k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2434
21.2k
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;  inbuf[i] = NULL;
2435
21.2k
  }
2436
2437
2.12k
  if ((this->init & DECOMPRESS) == 0)
2438
2.12k
    THROW("Instance has not been initialized for decompression");
2439
2440
2.12k
  if (!srcPlanes || !srcPlanes[0] || dstBuf == NULL || width <= 0 ||
2441
2.12k
      pitch < 0 || height <= 0 || pixelFormat < 0 || pixelFormat >= TJ_NUMPF)
2442
2.12k
    THROW("Invalid argument");
2443
2.12k
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
2444
2.12k
    THROW("Invalid argument");
2445
2446
2.12k
  if (setjmp(this->jerr.setjmp_buffer)) {
2447
    /* If we get here, the JPEG code has signaled an error. */
2448
38
    retval = -1;  goto bailout;
2449
38
  }
2450
2451
2.08k
  if (this->subsamp == TJSAMP_UNKNOWN)
2452
2.08k
    THROW("TJPARAM_SUBSAMP must be specified");
2453
2.08k
  if (pixelFormat == TJPF_CMYK)
2454
2.08k
    THROW("Cannot decode YUV images into packed-pixel CMYK images.");
2455
2456
2.12k
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
2457
2.08k
  dinfo->image_width = width;
2458
2.08k
  dinfo->image_height = height;
2459
2460
2.08k
  dinfo->progressive_mode = dinfo->inputctl->has_multiple_scans = FALSE;
2461
2.08k
  dinfo->Ss = dinfo->Ah = dinfo->Al = 0;
2462
2.08k
  dinfo->Se = DCTSIZE2 - 1;
2463
2.08k
  setDecodeDefaults(this, pixelFormat);
2464
2.08k
  old_read_markers = dinfo->marker->read_markers;
2465
2.08k
  dinfo->marker->read_markers = my_read_markers;
2466
2.08k
  old_reset_marker_reader = dinfo->marker->reset_marker_reader;
2467
2.08k
  dinfo->marker->reset_marker_reader = my_reset_marker_reader;
2468
2.08k
  jpeg_read_header(dinfo, TRUE);
2469
2.08k
  dinfo->marker->read_markers = old_read_markers;
2470
2.08k
  dinfo->marker->reset_marker_reader = old_reset_marker_reader;
2471
2472
2.08k
  this->dinfo.out_color_space = pf2cs[pixelFormat];
2473
2.08k
  this->dinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
2474
2.08k
  dinfo->do_fancy_upsampling = FALSE;
2475
2.08k
  dinfo->Se = DCTSIZE2 - 1;
2476
2.08k
  jinit_master_decompress(dinfo);
2477
2.08k
  (*dinfo->upsample->start_pass) (dinfo);
2478
2479
2.08k
  pw0 = PAD(width, dinfo->max_h_samp_factor);
2480
2.08k
  ph0 = PAD(height, dinfo->max_v_samp_factor);
2481
2482
2.08k
  if (pitch == 0) pitch = dinfo->output_width * tjPixelSize[pixelFormat];
2483
2484
2.08k
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
2485
2.08k
    THROW("Memory allocation failure");
2486
11.7M
  for (i = 0; i < height; i++) {
2487
11.7M
    if (this->bottomUp)
2488
4.12M
      row_pointer[i] = &dstBuf[(height - i - 1) * (size_t)pitch];
2489
7.62M
    else
2490
7.62M
      row_pointer[i] = &dstBuf[i * (size_t)pitch];
2491
11.7M
  }
2492
2.08k
  if (height < ph0)
2493
900
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
2494
2495
6.63k
  for (i = 0; i < dinfo->num_components; i++) {
2496
4.55k
    compptr = &dinfo->comp_info[i];
2497
4.55k
    _tmpbuf[i] =
2498
4.55k
      (JSAMPLE *)malloc(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
2499
4.55k
                        compptr->v_samp_factor + 32);
2500
4.55k
    if (!_tmpbuf[i])
2501
4.55k
      THROW("Memory allocation failure");
2502
4.55k
    tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
2503
4.55k
    if (!tmpbuf[i])
2504
4.55k
      THROW("Memory allocation failure");
2505
9.97k
    for (row = 0; row < compptr->v_samp_factor; row++) {
2506
5.42k
      unsigned char *_tmpbuf_aligned =
2507
5.42k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
2508
2509
5.42k
      tmpbuf[i][row] =
2510
5.42k
        &_tmpbuf_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
2511
5.42k
    }
2512
4.55k
    pw[i] = pw0 * compptr->h_samp_factor / dinfo->max_h_samp_factor;
2513
4.55k
    ph[i] = ph0 * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2514
4.55k
    inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
2515
4.55k
    if (!inbuf[i])
2516
4.55k
      THROW("Memory allocation failure");
2517
4.55k
    ptr = (JSAMPLE *)srcPlanes[i];
2518
21.3M
    for (row = 0; row < ph[i]; row++) {
2519
21.3M
      inbuf[i][row] = ptr;
2520
21.3M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2521
21.3M
    }
2522
4.55k
  }
2523
2524
2.08k
  if (setjmp(this->jerr.setjmp_buffer)) {
2525
    /* If we get here, the JPEG code has signaled an error. */
2526
0
    retval = -1;  goto bailout;
2527
0
  }
2528
2529
10.2M
  for (row = 0; row < ph0; row += dinfo->max_v_samp_factor) {
2530
10.2M
    JDIMENSION inrow = 0, outrow = 0;
2531
2532
30.0M
    for (i = 0, compptr = dinfo->comp_info; i < dinfo->num_components;
2533
19.8M
         i++, compptr++)
2534
19.8M
      jcopy_sample_rows(inbuf[i],
2535
19.8M
        row * compptr->v_samp_factor / dinfo->max_v_samp_factor, tmpbuf[i], 0,
2536
19.8M
        compptr->v_samp_factor, pw[i]);
2537
10.2M
    (dinfo->upsample->upsample) (dinfo, tmpbuf, &inrow,
2538
10.2M
                                 dinfo->max_v_samp_factor, &row_pointer[row],
2539
10.2M
                                 &outrow, dinfo->max_v_samp_factor);
2540
10.2M
  }
2541
2.08k
  jpeg_abort_decompress(dinfo);
2542
2543
2.12k
bailout:
2544
2.12k
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2545
2.12k
  free(row_pointer);
2546
23.3k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2547
21.2k
    free(tmpbuf[i]);
2548
21.2k
    free(_tmpbuf[i]);
2549
21.2k
    free(inbuf[i]);
2550
21.2k
  }
2551
2.12k
  if (this->jerr.warning) retval = -1;
2552
2.12k
  return retval;
2553
2.08k
}
2554
2555
/* TurboJPEG 1.4+ */
2556
DLLEXPORT int tjDecodeYUVPlanes(tjhandle handle,
2557
                                const unsigned char **srcPlanes,
2558
                                const int *strides, int subsamp,
2559
                                unsigned char *dstBuf, int width, int pitch,
2560
                                int height, int pixelFormat, int flags)
2561
0
{
2562
0
  static const char FUNCTION_NAME[] = "tjDecodeYUVPlanes";
2563
0
  int retval = 0;
2564
2565
0
  GET_TJINSTANCE(handle, -1);
2566
2567
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2568
0
    THROW("Invalid argument");
2569
2570
0
  this->subsamp = subsamp;
2571
0
  processFlags(handle, flags, DECOMPRESS);
2572
2573
0
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2574
0
                             height, pixelFormat);
2575
2576
0
bailout:
2577
0
  return retval;
2578
0
}
2579
2580
2581
/* TurboJPEG 3+ */
2582
DLLEXPORT int tj3DecodeYUV8(tjhandle handle, const unsigned char *srcBuf,
2583
                            int align, unsigned char *dstBuf, int width,
2584
                            int pitch, int height, int pixelFormat)
2585
2.12k
{
2586
2.12k
  static const char FUNCTION_NAME[] = "tj3DecodeYUV8";
2587
2.12k
  const unsigned char *srcPlanes[3];
2588
2.12k
  int pw0, ph0, strides[3], retval = -1;
2589
2590
2.12k
  GET_TJINSTANCE(handle, -1);
2591
2592
2.12k
  if (srcBuf == NULL || align < 1 || !IS_POW2(align) || width <= 0 ||
2593
2.12k
      height <= 0)
2594
2.12k
    THROW("Invalid argument");
2595
2596
2.12k
  if (this->subsamp == TJSAMP_UNKNOWN)
2597
2.12k
    THROW("TJPARAM_SUBSAMP must be specified");
2598
2599
2.12k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2600
2.12k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2601
2.12k
  srcPlanes[0] = srcBuf;
2602
2.12k
  strides[0] = PAD(pw0, align);
2603
2.12k
  if (this->subsamp == TJSAMP_GRAY) {
2604
856
    strides[1] = strides[2] = 0;
2605
856
    srcPlanes[1] = srcPlanes[2] = NULL;
2606
1.26k
  } else {
2607
1.26k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2608
1.26k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2609
2610
1.26k
    strides[1] = strides[2] = PAD(pw1, align);
2611
1.26k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2612
1.26k
        (unsigned long long)INT_MAX ||
2613
1.26k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2614
1.26k
        (unsigned long long)INT_MAX)
2615
1.26k
      THROW("Image or row alignment is too large");
2616
1.26k
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
2617
1.26k
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
2618
1.26k
  }
2619
2620
2.12k
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2621
2.12k
                             height, pixelFormat);
2622
2623
0
bailout:
2624
0
  return retval;
2625
2.12k
}
2626
2627
/* TurboJPEG 1.4+ */
2628
DLLEXPORT int tjDecodeYUV(tjhandle handle, const unsigned char *srcBuf,
2629
                          int align, int subsamp, unsigned char *dstBuf,
2630
                          int width, int pitch, int height, int pixelFormat,
2631
                          int flags)
2632
0
{
2633
0
  static const char FUNCTION_NAME[] = "tjDecodeYUV";
2634
0
  int retval = -1;
2635
2636
0
  GET_TJINSTANCE(handle, -1);
2637
2638
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2639
0
    THROW("Invalid argument");
2640
2641
0
  this->subsamp = subsamp;
2642
0
  processFlags(handle, flags, DECOMPRESS);
2643
2644
0
  return tj3DecodeYUV8(handle, srcBuf, align, dstBuf, width, pitch, height,
2645
0
                       pixelFormat);
2646
2647
0
bailout:
2648
0
  return retval;
2649
0
}
2650
2651
2652
/******************************** Transformer ********************************/
2653
2654
/* TurboJPEG 1.2+ */
2655
DLLEXPORT tjhandle tjInitTransform(void)
2656
0
{
2657
0
  return tj3Init(TJINIT_TRANSFORM);
2658
0
}
2659
2660
2661
/* TurboJPEG 3+ */
2662
DLLEXPORT int tj3Transform(tjhandle handle, const unsigned char *jpegBuf,
2663
                           size_t jpegSize, int n, unsigned char **dstBufs,
2664
                           size_t *dstSizes, const tjtransform *t)
2665
0
{
2666
0
  static const char FUNCTION_NAME[] = "tj3Transform";
2667
0
  jpeg_transform_info *xinfo = NULL;
2668
0
  jvirt_barray_ptr *srccoefs, *dstcoefs;
2669
0
  int retval = 0, i, saveMarkers = 0, srcSubsamp;
2670
0
  boolean alloc = TRUE;
2671
0
  struct my_progress_mgr progress;
2672
2673
0
  GET_INSTANCE(handle);
2674
0
  if ((this->init & COMPRESS) == 0 || (this->init & DECOMPRESS) == 0)
2675
0
    THROW("Instance has not been initialized for transformation");
2676
2677
0
  if (jpegBuf == NULL || jpegSize <= 0 || n < 1 || dstBufs == NULL ||
2678
0
      dstSizes == NULL || t == NULL)
2679
0
    THROW("Invalid argument");
2680
2681
0
  if (this->scanLimit) {
2682
0
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2683
0
    progress.pub.progress_monitor = my_progress_monitor;
2684
0
    progress.this = this;
2685
0
    dinfo->progress = &progress.pub;
2686
0
  } else
2687
0
    dinfo->progress = NULL;
2688
2689
0
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2690
2691
0
  if ((xinfo =
2692
0
       (jpeg_transform_info *)malloc(sizeof(jpeg_transform_info) * n)) == NULL)
2693
0
    THROW("Memory allocation failure");
2694
0
  memset(xinfo, 0, sizeof(jpeg_transform_info) * n);
2695
2696
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2697
    /* If we get here, the JPEG code has signaled an error. */
2698
0
    retval = -1;  goto bailout;
2699
0
  }
2700
2701
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2702
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2703
2704
0
  for (i = 0; i < n; i++) {
2705
0
    if (t[i].op < 0 || t[i].op >= TJ_NUMXOP)
2706
0
      THROW("Invalid transform operation");
2707
0
    xinfo[i].transform = xformtypes[t[i].op];
2708
0
    xinfo[i].perfect = (t[i].options & TJXOPT_PERFECT) ? 1 : 0;
2709
0
    xinfo[i].trim = (t[i].options & TJXOPT_TRIM) ? 1 : 0;
2710
0
    xinfo[i].force_grayscale = (t[i].options & TJXOPT_GRAY) ? 1 : 0;
2711
0
    xinfo[i].crop = (t[i].options & TJXOPT_CROP) ? 1 : 0;
2712
0
    if (n != 1 && t[i].op == TJXOP_HFLIP) xinfo[i].slow_hflip = 1;
2713
0
    else xinfo[i].slow_hflip = 0;
2714
2715
0
    if (xinfo[i].crop) {
2716
0
      if (t[i].r.x < 0 || t[i].r.y < 0 || t[i].r.w < 0 || t[i].r.h < 0)
2717
0
        THROW("Invalid cropping region");
2718
0
      xinfo[i].crop_xoffset = t[i].r.x;  xinfo[i].crop_xoffset_set = JCROP_POS;
2719
0
      xinfo[i].crop_yoffset = t[i].r.y;  xinfo[i].crop_yoffset_set = JCROP_POS;
2720
0
      if (t[i].r.w != 0) {
2721
0
        xinfo[i].crop_width = t[i].r.w;  xinfo[i].crop_width_set = JCROP_POS;
2722
0
      } else
2723
0
        xinfo[i].crop_width = JCROP_UNSET;
2724
0
      if (t[i].r.h != 0) {
2725
0
        xinfo[i].crop_height = t[i].r.h;  xinfo[i].crop_height_set = JCROP_POS;
2726
0
      } else
2727
0
        xinfo[i].crop_height = JCROP_UNSET;
2728
0
    }
2729
0
    if (!(t[i].options & TJXOPT_COPYNONE)) saveMarkers = 1;
2730
0
  }
2731
2732
0
  jcopy_markers_setup(dinfo, saveMarkers ? JCOPYOPT_ALL : JCOPYOPT_NONE);
2733
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2734
0
    jpeg_read_header(dinfo, TRUE);
2735
0
  if (this->maxPixels &&
2736
0
      (unsigned long long)dinfo->image_width * dinfo->image_height >
2737
0
      (unsigned long long)this->maxPixels)
2738
0
    THROW("Image is too large");
2739
0
  srcSubsamp = getSubsamp(&this->dinfo);
2740
2741
0
  for (i = 0; i < n; i++) {
2742
0
    if (!jtransform_request_workspace(dinfo, &xinfo[i]))
2743
0
      THROW("Transform is not perfect");
2744
2745
0
    if (xinfo[i].crop) {
2746
0
      int dstSubsamp = (t[i].options & TJXOPT_GRAY) ? TJSAMP_GRAY : srcSubsamp;
2747
2748
0
      if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2749
0
          t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2750
0
        if (dstSubsamp == TJSAMP_422) dstSubsamp = TJSAMP_440;
2751
0
        else if (dstSubsamp == TJSAMP_440) dstSubsamp = TJSAMP_422;
2752
0
        else if (dstSubsamp == TJSAMP_411) dstSubsamp = TJSAMP_441;
2753
0
        else if (dstSubsamp == TJSAMP_441) dstSubsamp = TJSAMP_411;
2754
0
      }
2755
0
      if (dstSubsamp == TJSAMP_UNKNOWN)
2756
0
        THROW("Could not determine subsampling level of destination image");
2757
0
      if ((t[i].r.x % tjMCUWidth[dstSubsamp]) != 0 ||
2758
0
          (t[i].r.y % tjMCUHeight[dstSubsamp]) != 0)
2759
0
        THROWI("To crop this JPEG image, x must be a multiple of %d\n"
2760
0
               "and y must be a multiple of %d.", tjMCUWidth[dstSubsamp],
2761
0
               tjMCUHeight[dstSubsamp]);
2762
0
    }
2763
0
  }
2764
2765
0
  srccoefs = jpeg_read_coefficients(dinfo);
2766
2767
0
  for (i = 0; i < n; i++) {
2768
0
    JDIMENSION dstWidth = dinfo->image_width, dstHeight = dinfo->image_height;
2769
2770
0
    if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2771
0
        t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2772
0
      dstWidth = dinfo->image_height;  dstHeight = dinfo->image_width;
2773
0
    }
2774
2775
0
    if (xinfo[i].crop) {
2776
0
      if ((JDIMENSION)t[i].r.x >= dstWidth ||
2777
0
          t[i].r.x + xinfo[i].crop_width > dstWidth ||
2778
0
          (JDIMENSION)t[i].r.y >= dstHeight ||
2779
0
          t[i].r.y + xinfo[i].crop_height > dstHeight)
2780
0
        THROW("The cropping region exceeds the destination image dimensions");
2781
0
      dstWidth = xinfo[i].crop_width;  dstHeight = xinfo[i].crop_height;
2782
0
    }
2783
0
    if (this->noRealloc) {
2784
0
      int dstSubsamp = (t[i].options & TJXOPT_GRAY) ? TJSAMP_GRAY : srcSubsamp;
2785
2786
0
      if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2787
0
          t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2788
0
        if (dstSubsamp == TJSAMP_422) dstSubsamp = TJSAMP_440;
2789
0
        else if (dstSubsamp == TJSAMP_440) dstSubsamp = TJSAMP_422;
2790
0
        else if (dstSubsamp == TJSAMP_411) dstSubsamp = TJSAMP_441;
2791
0
        else if (dstSubsamp == TJSAMP_441) dstSubsamp = TJSAMP_411;
2792
0
      }
2793
0
      if (dstSubsamp == TJSAMP_UNKNOWN)
2794
0
        THROW("Could not determine subsampling level of destination image");
2795
0
      alloc = FALSE;
2796
0
      dstSizes[i] = tj3JPEGBufSize(dstWidth, dstHeight, dstSubsamp);
2797
0
    }
2798
0
    if (!(t[i].options & TJXOPT_NOOUTPUT))
2799
0
      jpeg_mem_dest_tj(cinfo, &dstBufs[i], &dstSizes[i], alloc);
2800
0
    jpeg_copy_critical_parameters(dinfo, cinfo);
2801
0
    dstcoefs = jtransform_adjust_parameters(dinfo, cinfo, srccoefs, &xinfo[i]);
2802
0
    if (this->optimize || t[i].options & TJXOPT_OPTIMIZE)
2803
0
      cinfo->optimize_coding = TRUE;
2804
0
#ifdef C_PROGRESSIVE_SUPPORTED
2805
0
    if (this->progressive || t[i].options & TJXOPT_PROGRESSIVE)
2806
0
      jpeg_simple_progression(cinfo);
2807
0
#endif
2808
0
    if (this->arithmetic || t[i].options & TJXOPT_ARITHMETIC) {
2809
0
      cinfo->arith_code = TRUE;
2810
0
      cinfo->optimize_coding = FALSE;
2811
0
    }
2812
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) {
2813
0
      jpeg_write_coefficients(cinfo, dstcoefs);
2814
0
      jcopy_markers_execute(dinfo, cinfo, t[i].options & TJXOPT_COPYNONE ?
2815
0
                                          JCOPYOPT_NONE : JCOPYOPT_ALL);
2816
0
    } else
2817
0
      jinit_c_master_control(cinfo, TRUE);
2818
0
    jtransform_execute_transformation(dinfo, cinfo, srccoefs, &xinfo[i]);
2819
0
    if (t[i].customFilter) {
2820
0
      int ci, y;
2821
0
      JDIMENSION by;
2822
2823
0
      for (ci = 0; ci < cinfo->num_components; ci++) {
2824
0
        jpeg_component_info *compptr = &cinfo->comp_info[ci];
2825
0
        tjregion arrayRegion = { 0, 0, 0, 0 };
2826
0
        tjregion planeRegion = { 0, 0, 0, 0 };
2827
2828
0
        arrayRegion.w = compptr->width_in_blocks * DCTSIZE;
2829
0
        arrayRegion.h = DCTSIZE;
2830
0
        planeRegion.w = compptr->width_in_blocks * DCTSIZE;
2831
0
        planeRegion.h = compptr->height_in_blocks * DCTSIZE;
2832
2833
0
        for (by = 0; by < compptr->height_in_blocks;
2834
0
             by += compptr->v_samp_factor) {
2835
0
          JBLOCKARRAY barray = (dinfo->mem->access_virt_barray)
2836
0
            ((j_common_ptr)dinfo, dstcoefs[ci], by, compptr->v_samp_factor,
2837
0
             TRUE);
2838
2839
0
          for (y = 0; y < compptr->v_samp_factor; y++) {
2840
0
            if (t[i].customFilter(barray[y][0], arrayRegion, planeRegion, ci,
2841
0
                                  i, (tjtransform *)&t[i]) == -1)
2842
0
              THROW("Error in custom filter");
2843
0
            arrayRegion.y += DCTSIZE;
2844
0
          }
2845
0
        }
2846
0
      }
2847
0
    }
2848
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) jpeg_finish_compress(cinfo);
2849
0
  }
2850
2851
0
  jpeg_finish_decompress(dinfo);
2852
2853
0
bailout:
2854
0
  if (cinfo->global_state > CSTATE_START) {
2855
0
    if (alloc) (*cinfo->dest->term_destination) (cinfo);
2856
0
    jpeg_abort_compress(cinfo);
2857
0
  }
2858
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2859
0
  free(xinfo);
2860
0
  if (this->jerr.warning) retval = -1;
2861
0
  return retval;
2862
0
}
2863
2864
/* TurboJPEG 1.2+ */
2865
DLLEXPORT int tjTransform(tjhandle handle, const unsigned char *jpegBuf,
2866
                          unsigned long jpegSize, int n,
2867
                          unsigned char **dstBufs, unsigned long *dstSizes,
2868
                          tjtransform *t, int flags)
2869
0
{
2870
0
  static const char FUNCTION_NAME[] = "tjTransform";
2871
0
  int i, retval = 0;
2872
0
  size_t *sizes = NULL;
2873
2874
0
  GET_TJINSTANCE(handle, -1);
2875
0
  if ((this->init & DECOMPRESS) == 0)
2876
0
    THROW("Instance has not been initialized for decompression");
2877
2878
0
  if (n < 1 || dstSizes == NULL)
2879
0
    THROW("Invalid argument");
2880
2881
0
  processFlags(handle, flags, COMPRESS);
2882
2883
0
  if ((sizes = (size_t *)malloc(n * sizeof(size_t))) == NULL)
2884
0
    THROW("Memory allocation failure");
2885
0
  for (i = 0; i < n; i++)
2886
0
    sizes[i] = (size_t)dstSizes[i];
2887
0
  retval = tj3Transform(handle, jpegBuf, (size_t)jpegSize, n, dstBufs, sizes,
2888
0
                        t);
2889
0
  for (i = 0; i < n; i++)
2890
0
    dstSizes[i] = (unsigned long)sizes[i];
2891
2892
0
bailout:
2893
0
  free(sizes);
2894
0
  return retval;
2895
0
}
2896
2897
2898
/*************************** Packed-Pixel Image I/O **************************/
2899
2900
/* tj3LoadImage*() is implemented in turbojpeg-mp.c */
2901
2902
/* TurboJPEG 2.0+ */
2903
DLLEXPORT unsigned char *tjLoadImage(const char *filename, int *width,
2904
                                     int align, int *height,
2905
                                     int *pixelFormat, int flags)
2906
0
{
2907
0
  tjhandle handle = NULL;
2908
0
  unsigned char *dstBuf = NULL;
2909
2910
0
  if ((handle = tj3Init(TJINIT_COMPRESS)) == NULL) return NULL;
2911
2912
0
  processFlags(handle, flags, COMPRESS);
2913
2914
0
  dstBuf = tj3LoadImage8(handle, filename, width, align, height, pixelFormat);
2915
2916
0
  tj3Destroy(handle);
2917
0
  return dstBuf;
2918
0
}
2919
2920
2921
/* tj3SaveImage*() is implemented in turbojpeg-mp.c */
2922
2923
/* TurboJPEG 2.0+ */
2924
DLLEXPORT int tjSaveImage(const char *filename, unsigned char *buffer,
2925
                          int width, int pitch, int height, int pixelFormat,
2926
                          int flags)
2927
0
{
2928
0
  tjhandle handle = NULL;
2929
0
  int retval = -1;
2930
2931
0
  if ((handle = tj3Init(TJINIT_DECOMPRESS)) == NULL) return -1;
2932
2933
0
  processFlags(handle, flags, DECOMPRESS);
2934
2935
0
  retval = tj3SaveImage8(handle, filename, buffer, width, pitch, height,
2936
0
                         pixelFormat);
2937
2938
0
  tj3Destroy(handle);
2939
0
  return retval;
2940
0
}