Coverage Report

Created: 2025-11-24 06:36

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo.dev/src/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
18.4k
#define PAD(v, p)  ((v + (p) - 1) & (~((p) - 1)))
55
0
#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
6.78k
{
78
6.78k
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
79
80
6.78k
  (*cinfo->err->output_message) (cinfo);
81
6.78k
  longjmp(myerr->setjmp_buffer, 1);
82
6.78k
}
83
84
/* Based on output_message() in jerror.c */
85
86
static void my_output_message(j_common_ptr cinfo)
87
6.78k
{
88
6.78k
  (*cinfo->err->format_message) (cinfo, errStr);
89
6.78k
}
90
91
static void my_emit_message(j_common_ptr cinfo, int msg_level)
92
9.24k
{
93
9.24k
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
94
95
9.24k
  myerr->emit_message(cinfo, msg_level);
96
9.24k
  if (msg_level < 0) {
97
0
    myerr->warning = TRUE;
98
0
    if (myerr->stopOnWarning) longjmp(myerr->setjmp_buffer, 1);
99
0
  }
100
9.24k
}
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
  int saveMarkers;
142
  unsigned char *iccBuf, *tempICCBuf;
143
  size_t iccSize, tempICCSize;
144
} tjinstance;
145
146
static tjhandle _tjInitCompress(tjinstance *this);
147
static tjhandle _tjInitDecompress(tjinstance *this);
148
149
struct my_progress_mgr {
150
  struct jpeg_progress_mgr pub;
151
  tjinstance *this;
152
};
153
typedef struct my_progress_mgr *my_progress_ptr;
154
155
static void my_progress_monitor(j_common_ptr dinfo)
156
0
{
157
0
  my_error_ptr myerr = (my_error_ptr)dinfo->err;
158
0
  my_progress_ptr myprog = (my_progress_ptr)dinfo->progress;
159
160
0
  if (dinfo->is_decompressor) {
161
0
    int scan_no = ((j_decompress_ptr)dinfo)->input_scan_number;
162
163
0
    if (scan_no > myprog->this->scanLimit) {
164
0
      SNPRINTF(myprog->this->errStr, JMSG_LENGTH_MAX,
165
0
               "Progressive JPEG image has more than %d scans",
166
0
               myprog->this->scanLimit);
167
0
      SNPRINTF(errStr, JMSG_LENGTH_MAX,
168
0
               "Progressive JPEG image has more than %d scans",
169
0
               myprog->this->scanLimit);
170
0
      myprog->this->isInstanceError = TRUE;
171
0
      myerr->warning = FALSE;
172
0
      longjmp(myerr->setjmp_buffer, 1);
173
0
    }
174
0
  }
175
0
}
176
177
static const JXFORM_CODE xformtypes[TJ_NUMXOP] = {
178
  JXFORM_NONE, JXFORM_FLIP_H, JXFORM_FLIP_V, JXFORM_TRANSPOSE,
179
  JXFORM_TRANSVERSE, JXFORM_ROT_90, JXFORM_ROT_180, JXFORM_ROT_270
180
};
181
182
0
#define NUMSF  16
183
static const tjscalingfactor sf[NUMSF] = {
184
  { 2, 1 },
185
  { 15, 8 },
186
  { 7, 4 },
187
  { 13, 8 },
188
  { 3, 2 },
189
  { 11, 8 },
190
  { 5, 4 },
191
  { 9, 8 },
192
  { 1, 1 },
193
  { 7, 8 },
194
  { 3, 4 },
195
  { 5, 8 },
196
  { 1, 2 },
197
  { 3, 8 },
198
  { 1, 4 },
199
  { 1, 8 }
200
};
201
202
static J_COLOR_SPACE pf2cs[TJ_NUMPF] = {
203
  JCS_EXT_RGB, JCS_EXT_BGR, JCS_EXT_RGBX, JCS_EXT_BGRX, JCS_EXT_XBGR,
204
  JCS_EXT_XRGB, JCS_GRAYSCALE, JCS_EXT_RGBA, JCS_EXT_BGRA, JCS_EXT_ABGR,
205
  JCS_EXT_ARGB, JCS_CMYK
206
};
207
208
static int cs2pf[JPEG_NUMCS] = {
209
  TJPF_UNKNOWN, TJPF_GRAY,
210
#if RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 3
211
  TJPF_RGB,
212
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 3
213
  TJPF_BGR,
214
#elif RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 4
215
  TJPF_RGBX,
216
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 4
217
  TJPF_BGRX,
218
#elif RGB_RED == 3 && RGB_GREEN == 2 && RGB_BLUE == 1 && RGB_PIXELSIZE == 4
219
  TJPF_XBGR,
220
#elif RGB_RED == 1 && RGB_GREEN == 2 && RGB_BLUE == 3 && RGB_PIXELSIZE == 4
221
  TJPF_XRGB,
222
#endif
223
  TJPF_UNKNOWN, TJPF_CMYK, TJPF_UNKNOWN, TJPF_RGB, TJPF_RGBX, TJPF_BGR,
224
  TJPF_BGRX, TJPF_XBGR, TJPF_XRGB, TJPF_RGBA, TJPF_BGRA, TJPF_ABGR, TJPF_ARGB,
225
  TJPF_UNKNOWN
226
};
227
228
0
#define THROWG(m, rv) { \
229
18.4E
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
230
0
  retval = rv;  goto bailout; \
231
18.4E
}
232
#ifdef _MSC_VER
233
#define THROW_UNIX(m) { \
234
  char strerrorBuf[80] = { 0 }; \
235
  strerror_s(strerrorBuf, 80, errno); \
236
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
237
           strerrorBuf); \
238
  this->isInstanceError = TRUE; \
239
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
240
           strerrorBuf); \
241
  retval = -1;  goto bailout; \
242
}
243
#else
244
0
#define THROW_UNIX(m) { \
245
0
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
246
0
           strerror(errno)); \
247
0
  this->isInstanceError = TRUE; \
248
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
249
0
           strerror(errno)); \
250
0
  retval = -1;  goto bailout; \
251
0
}
252
#endif
253
0
#define THROWRV(m, rv) { \
254
18.4E
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
255
18.4E
  this->isInstanceError = TRUE;  THROWG(m, rv) \
256
18.4E
}
257
18.4E
#define THROW(m)  THROWRV(m, -1)
258
0
#define THROWI(format, val1, val2) { \
259
0
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, \
260
0
           val1, val2); \
261
0
  this->isInstanceError = TRUE; \
262
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, val1, \
263
0
           val2); \
264
0
  retval = -1;  goto bailout; \
265
0
}
266
267
#define GET_INSTANCE(handle) \
268
0
  tjinstance *this = (tjinstance *)handle; \
269
0
  j_compress_ptr cinfo = NULL; \
270
0
  j_decompress_ptr dinfo = NULL; \
271
0
  \
272
0
  if (!this) { \
273
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
274
0
    return -1; \
275
0
  } \
276
0
  cinfo = &this->cinfo;  dinfo = &this->dinfo; \
277
0
  this->jerr.warning = FALSE; \
278
0
  this->isInstanceError = FALSE;
279
280
#define GET_CINSTANCE(handle) \
281
3.91k
  tjinstance *this = (tjinstance *)handle; \
282
3.91k
  j_compress_ptr cinfo = NULL; \
283
3.91k
  \
284
3.91k
  if (!this) { \
285
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
286
0
    return -1; \
287
0
  } \
288
3.91k
  cinfo = &this->cinfo; \
289
3.91k
  this->jerr.warning = FALSE; \
290
3.91k
  this->isInstanceError = FALSE;
291
292
#define GET_DINSTANCE(handle) \
293
0
  tjinstance *this = (tjinstance *)handle; \
294
0
  j_decompress_ptr dinfo = NULL; \
295
0
  \
296
0
  if (!this) { \
297
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
298
0
    return -1; \
299
0
  } \
300
0
  dinfo = &this->dinfo; \
301
0
  this->jerr.warning = FALSE; \
302
0
  this->isInstanceError = FALSE;
303
304
#define GET_TJINSTANCE(handle, errorReturn) \
305
76.5k
  tjinstance *this = (tjinstance *)handle; \
306
76.5k
  \
307
76.5k
  if (!this) { \
308
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
309
0
    return errorReturn; \
310
0
  } \
311
76.5k
  this->jerr.warning = FALSE; \
312
76.5k
  this->isInstanceError = FALSE;
313
314
static int getPixelFormat(int pixelSize, int flags)
315
0
{
316
0
  if (pixelSize == 1) return TJPF_GRAY;
317
0
  if (pixelSize == 3) {
318
0
    if (flags & TJ_BGR) return TJPF_BGR;
319
0
    else return TJPF_RGB;
320
0
  }
321
0
  if (pixelSize == 4) {
322
0
    if (flags & TJ_ALPHAFIRST) {
323
0
      if (flags & TJ_BGR) return TJPF_XBGR;
324
0
      else return TJPF_XRGB;
325
0
    } else {
326
0
      if (flags & TJ_BGR) return TJPF_BGRX;
327
0
      else return TJPF_RGBX;
328
0
    }
329
0
  }
330
0
  return -1;
331
0
}
332
333
static void setCompDefaults(tjinstance *this, int pixelFormat, boolean yuv)
334
3.91k
{
335
3.91k
  int colorspace = yuv ? -1 : this->colorspace;
336
337
3.91k
  this->cinfo.in_color_space = pf2cs[pixelFormat];
338
3.91k
  this->cinfo.input_components = tjPixelSize[pixelFormat];
339
3.91k
  jpeg_set_defaults(&this->cinfo);
340
341
3.91k
  this->cinfo.restart_interval = this->restartIntervalBlocks;
342
3.91k
  this->cinfo.restart_in_rows = this->restartIntervalRows;
343
3.91k
  this->cinfo.X_density = (UINT16)this->xDensity;
344
3.91k
  this->cinfo.Y_density = (UINT16)this->yDensity;
345
3.91k
  this->cinfo.density_unit = (UINT8)this->densityUnits;
346
3.91k
  this->cinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
347
348
3.91k
  if (this->lossless && !yuv) {
349
3.91k
#ifdef C_LOSSLESS_SUPPORTED
350
3.91k
    jpeg_enable_lossless(&this->cinfo, this->losslessPSV, this->losslessPt);
351
3.91k
#endif
352
3.91k
    return;
353
3.91k
  }
354
355
0
  jpeg_set_quality(&this->cinfo, this->quality, TRUE);
356
0
  this->cinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
357
358
0
  switch (colorspace) {
359
0
  case TJCS_RGB:
360
0
    jpeg_set_colorspace(&this->cinfo, JCS_RGB);  break;
361
0
  case TJCS_YCbCr:
362
0
    jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);  break;
363
0
  case TJCS_GRAY:
364
0
    jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);  break;
365
0
  case TJCS_CMYK:
366
0
    jpeg_set_colorspace(&this->cinfo, JCS_CMYK);  break;
367
0
  case TJCS_YCCK:
368
0
    jpeg_set_colorspace(&this->cinfo, JCS_YCCK);  break;
369
0
  default:
370
0
    if (this->subsamp == TJSAMP_GRAY)
371
0
      jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);
372
0
    else if (pixelFormat == TJPF_CMYK)
373
0
      jpeg_set_colorspace(&this->cinfo, JCS_YCCK);
374
0
    else
375
0
      jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);
376
0
  }
377
378
0
  if (this->cinfo.data_precision == 8)
379
0
    this->cinfo.optimize_coding = this->optimize;
380
0
#ifdef C_PROGRESSIVE_SUPPORTED
381
0
  if (this->progressive) jpeg_simple_progression(&this->cinfo);
382
0
#endif
383
0
  this->cinfo.arith_code = this->arithmetic;
384
385
0
  this->cinfo.comp_info[0].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
386
0
  this->cinfo.comp_info[1].h_samp_factor = 1;
387
0
  this->cinfo.comp_info[2].h_samp_factor = 1;
388
0
  if (this->cinfo.num_components > 3)
389
0
    this->cinfo.comp_info[3].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
390
0
  this->cinfo.comp_info[0].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
391
0
  this->cinfo.comp_info[1].v_samp_factor = 1;
392
0
  this->cinfo.comp_info[2].v_samp_factor = 1;
393
0
  if (this->cinfo.num_components > 3)
394
0
    this->cinfo.comp_info[3].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
395
0
}
396
397
398
static int getSubsamp(j_decompress_ptr dinfo)
399
0
{
400
0
  int retval = TJSAMP_UNKNOWN, i, k;
401
402
  /* The sampling factors actually have no meaning with grayscale JPEG files,
403
     and in fact it's possible to generate grayscale JPEGs with sampling
404
     factors > 1 (even though those sampling factors are ignored by the
405
     decompressor.)  Thus, we need to treat grayscale as a special case. */
406
0
  if (dinfo->num_components == 1 && dinfo->jpeg_color_space == JCS_GRAYSCALE)
407
0
    return TJSAMP_GRAY;
408
409
0
  for (i = 0; i < TJ_NUMSAMP; i++) {
410
0
    if (i == TJSAMP_GRAY) continue;
411
412
0
    if (dinfo->num_components == 3 ||
413
0
        ((dinfo->jpeg_color_space == JCS_YCCK ||
414
0
          dinfo->jpeg_color_space == JCS_CMYK) &&
415
0
         dinfo->num_components == 4)) {
416
0
      if (dinfo->comp_info[0].h_samp_factor == tjMCUWidth[i] / 8 &&
417
0
          dinfo->comp_info[0].v_samp_factor == tjMCUHeight[i] / 8) {
418
0
        int match = 0;
419
420
0
        for (k = 1; k < dinfo->num_components; k++) {
421
0
          int href = 1, vref = 1;
422
423
0
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
424
0
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
425
0
            href = tjMCUWidth[i] / 8;  vref = tjMCUHeight[i] / 8;
426
0
          }
427
0
          if (dinfo->comp_info[k].h_samp_factor == href &&
428
0
              dinfo->comp_info[k].v_samp_factor == vref)
429
0
            match++;
430
0
        }
431
0
        if (match == dinfo->num_components - 1) {
432
0
          retval = i;  break;
433
0
        }
434
0
      }
435
      /* Handle 4:2:2 and 4:4:0 images whose sampling factors are specified
436
         in non-standard ways. */
437
0
      if (dinfo->comp_info[0].h_samp_factor == 2 &&
438
0
          dinfo->comp_info[0].v_samp_factor == 2 &&
439
0
          (i == TJSAMP_422 || i == TJSAMP_440)) {
440
0
        int match = 0;
441
442
0
        for (k = 1; k < dinfo->num_components; k++) {
443
0
          int href = tjMCUHeight[i] / 8, vref = tjMCUWidth[i] / 8;
444
445
0
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
446
0
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
447
0
            href = vref = 2;
448
0
          }
449
0
          if (dinfo->comp_info[k].h_samp_factor == href &&
450
0
              dinfo->comp_info[k].v_samp_factor == vref)
451
0
            match++;
452
0
        }
453
0
        if (match == dinfo->num_components - 1) {
454
0
          retval = i;  break;
455
0
        }
456
0
      }
457
      /* Handle 4:4:4 images whose sampling factors are specified in
458
         non-standard ways. */
459
0
      if (dinfo->comp_info[0].h_samp_factor *
460
0
          dinfo->comp_info[0].v_samp_factor <=
461
0
          D_MAX_BLOCKS_IN_MCU / 3 && i == TJSAMP_444) {
462
0
        int match = 0;
463
0
        for (k = 1; k < dinfo->num_components; k++) {
464
0
          if (dinfo->comp_info[k].h_samp_factor ==
465
0
              dinfo->comp_info[0].h_samp_factor &&
466
0
              dinfo->comp_info[k].v_samp_factor ==
467
0
              dinfo->comp_info[0].v_samp_factor)
468
0
            match++;
469
0
          if (match == dinfo->num_components - 1) {
470
0
            retval = i;  break;
471
0
          }
472
0
        }
473
0
      }
474
0
    }
475
0
  }
476
0
  return retval;
477
0
}
478
479
480
static void setDecompParameters(tjinstance *this)
481
0
{
482
0
  this->subsamp = getSubsamp(&this->dinfo);
483
0
  this->jpegWidth = this->dinfo.image_width;
484
0
  this->jpegHeight = this->dinfo.image_height;
485
0
  this->precision = this->dinfo.data_precision;
486
0
  switch (this->dinfo.jpeg_color_space) {
487
0
  case JCS_GRAYSCALE:  this->colorspace = TJCS_GRAY;  break;
488
0
  case JCS_RGB:        this->colorspace = TJCS_RGB;  break;
489
0
  case JCS_YCbCr:      this->colorspace = TJCS_YCbCr;  break;
490
0
  case JCS_CMYK:       this->colorspace = TJCS_CMYK;  break;
491
0
  case JCS_YCCK:       this->colorspace = TJCS_YCCK;  break;
492
0
  default:             this->colorspace = -1;  break;
493
0
  }
494
0
  this->progressive = this->dinfo.progressive_mode;
495
0
  this->arithmetic = this->dinfo.arith_code;
496
0
  this->lossless = this->dinfo.master->lossless;
497
0
  this->losslessPSV = this->dinfo.Ss;
498
0
  this->losslessPt = this->dinfo.Al;
499
0
  this->xDensity = this->dinfo.X_density;
500
0
  this->yDensity = this->dinfo.Y_density;
501
0
  this->densityUnits = this->dinfo.density_unit;
502
0
}
503
504
505
static void processFlags(tjhandle handle, int flags, int operation)
506
0
{
507
0
  tjinstance *this = (tjinstance *)handle;
508
509
0
  this->bottomUp = !!(flags & TJFLAG_BOTTOMUP);
510
511
0
#ifndef NO_PUTENV
512
0
  if (flags & TJFLAG_FORCEMMX) PUTENV_S("JSIMD_FORCEMMX", "1");
513
0
  else if (flags & TJFLAG_FORCESSE) PUTENV_S("JSIMD_FORCESSE", "1");
514
0
  else if (flags & TJFLAG_FORCESSE2) PUTENV_S("JSIMD_FORCESSE2", "1");
515
0
#endif
516
517
0
  this->fastUpsample = !!(flags & TJFLAG_FASTUPSAMPLE);
518
0
  this->noRealloc = !!(flags & TJFLAG_NOREALLOC);
519
520
0
  if (operation == COMPRESS) {
521
0
    if (this->quality >= 96 || flags & TJFLAG_ACCURATEDCT)
522
0
      this->fastDCT = FALSE;
523
0
    else
524
0
      this->fastDCT = TRUE;
525
0
  } else
526
0
    this->fastDCT = !!(flags & TJFLAG_FASTDCT);
527
528
0
  this->jerr.stopOnWarning = !!(flags & TJFLAG_STOPONWARNING);
529
0
  this->progressive = !!(flags & TJFLAG_PROGRESSIVE);
530
531
0
  if (flags & TJFLAG_LIMITSCANS) this->scanLimit = 500;
532
0
}
533
534
535
/*************************** General API functions ***************************/
536
537
/* TurboJPEG 3.0+ */
538
DLLEXPORT tjhandle tj3Init(int initType)
539
12.3k
{
540
12.3k
  static const char FUNCTION_NAME[] = "tj3Init";
541
12.3k
  tjinstance *this = NULL;
542
12.3k
  tjhandle retval = NULL;
543
544
12.3k
  if (initType < 0 || initType >= TJ_NUMINIT)
545
12.3k
    THROWG("Invalid argument", NULL);
546
547
12.3k
  if ((this = (tjinstance *)malloc(sizeof(tjinstance))) == NULL)
548
12.3k
    THROWG("Memory allocation failure", NULL);
549
12.3k
  memset(this, 0, sizeof(tjinstance));
550
12.3k
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "No error");
551
552
12.3k
  this->quality = -1;
553
12.3k
  this->subsamp = TJSAMP_UNKNOWN;
554
12.3k
  this->jpegWidth = -1;
555
12.3k
  this->jpegHeight = -1;
556
12.3k
  this->precision = 8;
557
12.3k
  this->colorspace = -1;
558
12.3k
  this->losslessPSV = 1;
559
12.3k
  this->xDensity = 1;
560
12.3k
  this->yDensity = 1;
561
12.3k
  this->scalingFactor = TJUNSCALED;
562
12.3k
  this->saveMarkers = 2;
563
564
12.3k
  switch (initType) {
565
12.3k
  case TJINIT_COMPRESS:  return _tjInitCompress(this);
566
0
  case TJINIT_DECOMPRESS:  return _tjInitDecompress(this);
567
0
  case TJINIT_TRANSFORM:
568
0
    retval = _tjInitCompress(this);
569
0
    if (!retval) return NULL;
570
0
    retval = _tjInitDecompress(this);
571
0
    return retval;
572
12.3k
  }
573
574
0
bailout:
575
0
  return retval;
576
12.3k
}
577
578
579
/* TurboJPEG 3.0+ */
580
DLLEXPORT void tj3Destroy(tjhandle handle)
581
12.3k
{
582
12.3k
  tjinstance *this = (tjinstance *)handle;
583
12.3k
  j_compress_ptr cinfo = NULL;
584
12.3k
  j_decompress_ptr dinfo = NULL;
585
586
12.3k
  if (!this) return;
587
588
12.3k
  cinfo = &this->cinfo;  dinfo = &this->dinfo;
589
12.3k
  this->jerr.warning = FALSE;
590
12.3k
  this->isInstanceError = FALSE;
591
592
12.3k
  if (setjmp(this->jerr.setjmp_buffer)) return;
593
12.3k
  if (this->init & COMPRESS) jpeg_destroy_compress(cinfo);
594
12.3k
  if (this->init & DECOMPRESS) jpeg_destroy_decompress(dinfo);
595
12.3k
  free(this->iccBuf);
596
12.3k
  free(this->tempICCBuf);
597
12.3k
  free(this);
598
12.3k
}
599
600
/* TurboJPEG 1.0+ */
601
DLLEXPORT int tjDestroy(tjhandle handle)
602
0
{
603
0
  static const char FUNCTION_NAME[] = "tjDestroy";
604
0
  int retval = 0;
605
606
0
  if (!handle) THROWG("Invalid handle", -1);
607
608
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "No error");
609
0
  tj3Destroy(handle);
610
0
  if (strcmp(errStr, "No error")) retval = -1;
611
612
0
bailout:
613
0
  return retval;
614
0
}
615
616
617
/* TurboJPEG 3.0+ */
618
DLLEXPORT char *tj3GetErrorStr(tjhandle handle)
619
0
{
620
0
  tjinstance *this = (tjinstance *)handle;
621
622
0
  if (this && this->isInstanceError) {
623
0
    this->isInstanceError = FALSE;
624
0
    return this->errStr;
625
0
  } else
626
0
    return errStr;
627
0
}
628
629
/* TurboJPEG 2.0+ */
630
DLLEXPORT char *tjGetErrorStr2(tjhandle handle)
631
0
{
632
0
  return tj3GetErrorStr(handle);
633
0
}
634
635
/* TurboJPEG 1.0+ */
636
DLLEXPORT char *tjGetErrorStr(void)
637
0
{
638
0
  return errStr;
639
0
}
640
641
642
/* TurboJPEG 3.0+ */
643
DLLEXPORT int tj3GetErrorCode(tjhandle handle)
644
0
{
645
0
  tjinstance *this = (tjinstance *)handle;
646
647
0
  if (this && this->jerr.warning) return TJERR_WARNING;
648
0
  else return TJERR_FATAL;
649
0
}
650
651
/* TurboJPEG 2.0+ */
652
DLLEXPORT int tjGetErrorCode(tjhandle handle)
653
0
{
654
0
  return tj3GetErrorCode(handle);
655
0
}
656
657
658
40.2k
#define SET_PARAM(field, minValue, maxValue) { \
659
40.2k
  if (value < minValue || (maxValue > 0 && value > maxValue)) \
660
40.2k
    THROW("Parameter value out of range"); \
661
40.2k
  this->field = value; \
662
40.2k
}
663
664
25.5k
#define SET_BOOL_PARAM(field) { \
665
25.5k
  if (value < 0 || value > 1) \
666
25.5k
    THROW("Parameter value out of range"); \
667
25.5k
  this->field = (boolean)value; \
668
25.5k
}
669
670
/* TurboJPEG 3.0+ */
671
DLLEXPORT int tj3Set(tjhandle handle, int param, int value)
672
65.7k
{
673
65.7k
  static const char FUNCTION_NAME[] = "tj3Set";
674
65.7k
  int retval = 0;
675
676
65.7k
  GET_TJINSTANCE(handle, -1);
677
678
65.7k
  switch (param) {
679
0
  case TJPARAM_STOPONWARNING:
680
0
    SET_BOOL_PARAM(jerr.stopOnWarning);
681
0
    break;
682
10.7k
  case TJPARAM_BOTTOMUP:
683
10.7k
    SET_BOOL_PARAM(bottomUp);
684
10.7k
    break;
685
10.7k
  case TJPARAM_NOREALLOC:
686
10.7k
    if (!(this->init & COMPRESS))
687
10.7k
      THROW("TJPARAM_NOREALLOC is not applicable to decompression instances.");
688
10.7k
    SET_BOOL_PARAM(noRealloc);
689
10.7k
    break;
690
0
  case TJPARAM_QUALITY:
691
0
    if (!(this->init & COMPRESS))
692
0
      THROW("TJPARAM_QUALITY is not applicable to decompression instances.");
693
0
    SET_PARAM(quality, 1, 100);
694
0
    break;
695
0
  case TJPARAM_SUBSAMP:
696
0
    SET_PARAM(subsamp, 0, TJ_NUMSAMP - 1);
697
0
    break;
698
0
  case TJPARAM_JPEGWIDTH:
699
0
    if (!(this->init & DECOMPRESS))
700
0
      THROW("TJPARAM_JPEGWIDTH is not applicable to compression instances.");
701
0
    THROW("TJPARAM_JPEGWIDTH is read-only in decompression instances.");
702
0
    break;
703
0
  case TJPARAM_JPEGHEIGHT:
704
0
    if (!(this->init & DECOMPRESS))
705
0
      THROW("TJPARAM_JPEGHEIGHT is not applicable to compression instances.");
706
0
    THROW("TJPARAM_JPEGHEIGHT is read-only in decompression instances.");
707
0
    break;
708
10.7k
  case TJPARAM_PRECISION:
709
10.7k
    SET_PARAM(precision, 2, 16);
710
10.7k
    break;
711
0
  case TJPARAM_COLORSPACE:
712
0
    if (!(this->init & COMPRESS))
713
0
      THROW("TJPARAM_COLORSPACE is read-only in decompression instances.");
714
0
    SET_PARAM(colorspace, 0, TJ_NUMCS - 1);
715
0
    break;
716
0
  case TJPARAM_FASTUPSAMPLE:
717
0
    if (!(this->init & DECOMPRESS))
718
0
      THROW("TJPARAM_FASTUPSAMPLE is not applicable to compression instances.");
719
0
    SET_BOOL_PARAM(fastUpsample);
720
0
    break;
721
0
  case TJPARAM_FASTDCT:
722
0
    SET_BOOL_PARAM(fastDCT);
723
0
    break;
724
0
  case TJPARAM_OPTIMIZE:
725
0
    if (!(this->init & COMPRESS))
726
0
      THROW("TJPARAM_OPTIMIZE is not applicable to decompression instances.");
727
0
    SET_BOOL_PARAM(optimize);
728
0
    break;
729
0
  case TJPARAM_PROGRESSIVE:
730
0
    if (!(this->init & COMPRESS))
731
0
      THROW("TJPARAM_PROGRESSIVE is read-only in decompression instances.");
732
0
    SET_BOOL_PARAM(progressive);
733
0
    break;
734
0
  case TJPARAM_SCANLIMIT:
735
0
    if (!(this->init & DECOMPRESS))
736
0
      THROW("TJPARAM_SCANLIMIT is not applicable to compression instances.");
737
0
    SET_PARAM(scanLimit, 0, -1);
738
0
    break;
739
0
  case TJPARAM_ARITHMETIC:
740
0
    if (!(this->init & COMPRESS))
741
0
      THROW("TJPARAM_ARITHMETIC is read-only in decompression instances.");
742
0
    SET_BOOL_PARAM(arithmetic);
743
0
    break;
744
3.91k
  case TJPARAM_LOSSLESS:
745
3.91k
    if (!(this->init & COMPRESS))
746
3.91k
      THROW("TJPARAM_LOSSLESS is read-only in decompression instances.");
747
3.91k
    SET_BOOL_PARAM(lossless);
748
3.91k
    break;
749
3.91k
  case TJPARAM_LOSSLESSPSV:
750
3.91k
    if (!(this->init & COMPRESS))
751
3.91k
      THROW("TJPARAM_LOSSLESSPSV is read-only in decompression instances.");
752
3.91k
    SET_PARAM(losslessPSV, 1, 7);
753
3.91k
    break;
754
3.91k
  case TJPARAM_LOSSLESSPT:
755
3.91k
    if (!(this->init & COMPRESS))
756
3.91k
      THROW("TJPARAM_LOSSLESSPT is read-only in decompression instances.");
757
3.91k
    SET_PARAM(losslessPt, 0, 15);
758
3.91k
    break;
759
0
  case TJPARAM_RESTARTBLOCKS:
760
0
    if (!(this->init & COMPRESS))
761
0
      THROW("TJPARAM_RESTARTBLOCKS is not applicable to decompression instances.");
762
0
    SET_PARAM(restartIntervalBlocks, 0, 65535);
763
0
    if (value != 0) this->restartIntervalRows = 0;
764
0
    break;
765
10.7k
  case TJPARAM_RESTARTROWS:
766
10.7k
    if (!(this->init & COMPRESS))
767
10.7k
      THROW("TJPARAM_RESTARTROWS is not applicable to decompression instances.");
768
10.7k
    SET_PARAM(restartIntervalRows, 0, 65535);
769
10.7k
    if (value != 0) this->restartIntervalBlocks = 0;
770
10.7k
    break;
771
0
  case TJPARAM_XDENSITY:
772
0
    if (!(this->init & COMPRESS))
773
0
      THROW("TJPARAM_XDENSITY is read-only in decompression instances.");
774
0
    SET_PARAM(xDensity, 1, 65535);
775
0
    break;
776
0
  case TJPARAM_YDENSITY:
777
0
    if (!(this->init & COMPRESS))
778
0
      THROW("TJPARAM_YDENSITY is read-only in decompression instances.");
779
0
    SET_PARAM(yDensity, 1, 65535);
780
0
    break;
781
0
  case TJPARAM_DENSITYUNITS:
782
0
    if (!(this->init & COMPRESS))
783
0
      THROW("TJPARAM_DENSITYUNITS is read-only in decompression instances.");
784
0
    SET_PARAM(densityUnits, 0, 2);
785
0
    break;
786
0
  case TJPARAM_MAXMEMORY:
787
0
    SET_PARAM(maxMemory, 0, (int)(min(LONG_MAX / 1048576L, (long)INT_MAX)));
788
0
    break;
789
10.7k
  case TJPARAM_MAXPIXELS:
790
10.7k
    SET_PARAM(maxPixels, 0, -1);
791
10.7k
    break;
792
0
  case TJPARAM_SAVEMARKERS:
793
0
    if (!(this->init & DECOMPRESS))
794
0
      THROW("TJPARAM_SAVEMARKERS is not applicable to compression instances.");
795
0
    SET_PARAM(saveMarkers, 0, 4);
796
0
    break;
797
0
  default:
798
0
    THROW("Invalid parameter");
799
65.7k
  }
800
801
65.7k
bailout:
802
65.7k
  return retval;
803
65.7k
}
804
805
806
/* TurboJPEG 3.0+ */
807
DLLEXPORT int tj3Get(tjhandle handle, int param)
808
3.91k
{
809
3.91k
  tjinstance *this = (tjinstance *)handle;
810
3.91k
  if (!this) return -1;
811
812
3.91k
  switch (param) {
813
0
  case TJPARAM_STOPONWARNING:
814
0
    return this->jerr.stopOnWarning;
815
0
  case TJPARAM_BOTTOMUP:
816
0
    return this->bottomUp;
817
3.91k
  case TJPARAM_NOREALLOC:
818
3.91k
    return this->noRealloc;
819
0
  case TJPARAM_QUALITY:
820
0
    return this->quality;
821
0
  case TJPARAM_SUBSAMP:
822
0
    return this->subsamp;
823
0
  case TJPARAM_JPEGWIDTH:
824
0
    return this->jpegWidth;
825
0
  case TJPARAM_JPEGHEIGHT:
826
0
    return this->jpegHeight;
827
0
  case TJPARAM_PRECISION:
828
0
    return this->precision;
829
0
  case TJPARAM_COLORSPACE:
830
0
    return this->colorspace;
831
0
  case TJPARAM_FASTUPSAMPLE:
832
0
    return this->fastUpsample;
833
0
  case TJPARAM_FASTDCT:
834
0
    return this->fastDCT;
835
0
  case TJPARAM_OPTIMIZE:
836
0
    return this->optimize;
837
0
  case TJPARAM_PROGRESSIVE:
838
0
    return this->progressive;
839
0
  case TJPARAM_SCANLIMIT:
840
0
    return this->scanLimit;
841
0
  case TJPARAM_ARITHMETIC:
842
0
    return this->arithmetic;
843
0
  case TJPARAM_LOSSLESS:
844
0
    return this->lossless;
845
0
  case TJPARAM_LOSSLESSPSV:
846
0
    return this->losslessPSV;
847
0
  case TJPARAM_LOSSLESSPT:
848
0
    return this->losslessPt;
849
0
  case TJPARAM_RESTARTBLOCKS:
850
0
    return this->restartIntervalBlocks;
851
0
  case TJPARAM_RESTARTROWS:
852
0
    return this->restartIntervalRows;
853
0
  case TJPARAM_XDENSITY:
854
0
    return this->xDensity;
855
0
  case TJPARAM_YDENSITY:
856
0
    return this->yDensity;
857
0
  case TJPARAM_DENSITYUNITS:
858
0
    return this->densityUnits;
859
0
  case TJPARAM_MAXMEMORY:
860
0
    return this->maxMemory;
861
0
  case TJPARAM_MAXPIXELS:
862
0
    return this->maxPixels;
863
0
  case TJPARAM_SAVEMARKERS:
864
0
    return this->saveMarkers;
865
3.91k
  }
866
867
0
  return -1;
868
3.91k
}
869
870
871
/* These are exposed mainly because Windows can't malloc() and free() across
872
   DLL boundaries except when the CRT DLL is used, and we don't use the CRT DLL
873
   with turbojpeg.dll for compatibility reasons.  However, these functions
874
   can potentially be used for other purposes by different implementations. */
875
876
/* TurboJPEG 3.0+ */
877
DLLEXPORT void *tj3Alloc(size_t bytes)
878
3.34k
{
879
3.34k
  return MALLOC(bytes);
880
3.34k
}
881
882
/* TurboJPEG 1.2+ */
883
DLLEXPORT unsigned char *tjAlloc(int bytes)
884
0
{
885
0
  return (unsigned char *)tj3Alloc((size_t)bytes);
886
0
}
887
888
889
/* TurboJPEG 3.0+ */
890
DLLEXPORT void tj3Free(void *buf)
891
5.45k
{
892
5.45k
  free(buf);
893
5.45k
}
894
895
/* TurboJPEG 1.2+ */
896
DLLEXPORT void tjFree(unsigned char *buf)
897
0
{
898
0
  tj3Free(buf);
899
0
}
900
901
902
/* TurboJPEG 3.0+ */
903
DLLEXPORT size_t tj3JPEGBufSize(int width, int height, int jpegSubsamp)
904
3.91k
{
905
3.91k
  static const char FUNCTION_NAME[] = "tj3JPEGBufSize";
906
3.91k
  unsigned long long retval = 0;
907
3.91k
  int mcuw, mcuh, chromasf;
908
909
3.91k
  if (width < 1 || height < 1 || jpegSubsamp < TJSAMP_UNKNOWN ||
910
3.91k
      jpegSubsamp >= TJ_NUMSAMP)
911
3.91k
    THROWG("Invalid argument", 0);
912
913
3.91k
  if (jpegSubsamp == TJSAMP_UNKNOWN)
914
0
    jpegSubsamp = TJSAMP_444;
915
916
  /* This allows for rare corner cases in which a JPEG image can actually be
917
     larger than the uncompressed input (we wouldn't mention it if it hadn't
918
     happened before.) */
919
3.91k
  mcuw = tjMCUWidth[jpegSubsamp];
920
3.91k
  mcuh = tjMCUHeight[jpegSubsamp];
921
3.91k
  chromasf = jpegSubsamp == TJSAMP_GRAY ? 0 : 4 * 64 / (mcuw * mcuh);
922
3.91k
  retval = PAD(width, mcuw) * PAD(height, mcuh) * (2ULL + chromasf) + 2048ULL;
923
#if ULLONG_MAX > ULONG_MAX
924
  if (retval > (unsigned long long)((unsigned long)-1))
925
    THROWG("Image is too large", 0);
926
#endif
927
928
3.91k
bailout:
929
3.91k
  return (size_t)retval;
930
3.91k
}
931
932
/* TurboJPEG 1.2+ */
933
DLLEXPORT unsigned long tjBufSize(int width, int height, int jpegSubsamp)
934
0
{
935
0
  static const char FUNCTION_NAME[] = "tjBufSize";
936
0
  size_t retval;
937
938
0
  if (jpegSubsamp < 0)
939
0
    THROWG("Invalid argument", 0);
940
941
0
  retval = tj3JPEGBufSize(width, height, jpegSubsamp);
942
943
0
bailout:
944
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
945
0
}
946
947
/* TurboJPEG 1.0+ */
948
DLLEXPORT unsigned long TJBUFSIZE(int width, int height)
949
0
{
950
0
  static const char FUNCTION_NAME[] = "TJBUFSIZE";
951
0
  unsigned long long retval = 0;
952
953
0
  if (width < 1 || height < 1)
954
0
    THROWG("Invalid argument", (unsigned long)-1);
955
956
  /* This allows for rare corner cases in which a JPEG image can actually be
957
     larger than the uncompressed input (we wouldn't mention it if it hadn't
958
     happened before.) */
959
0
  retval = PAD(width, 16) * PAD(height, 16) * 6ULL + 2048ULL;
960
#if ULLONG_MAX > ULONG_MAX
961
  if (retval > (unsigned long long)((unsigned long)-1))
962
    THROWG("Image is too large", (unsigned long)-1);
963
#endif
964
965
0
bailout:
966
0
  return (unsigned long)retval;
967
0
}
968
969
970
/* TurboJPEG 3.0+ */
971
DLLEXPORT size_t tj3YUVBufSize(int width, int align, int height, int subsamp)
972
0
{
973
0
  static const char FUNCTION_NAME[] = "tj3YUVBufSize";
974
0
  unsigned long long retval = 0;
975
0
  int nc, i;
976
977
0
  if (align < 1 || !IS_POW2(align) || subsamp < 0 || subsamp >= TJ_NUMSAMP)
978
0
    THROWG("Invalid argument", 0);
979
980
0
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
981
0
  for (i = 0; i < nc; i++) {
982
0
    int pw = tj3YUVPlaneWidth(i, width, subsamp);
983
0
    int stride = PAD(pw, align);
984
0
    int ph = tj3YUVPlaneHeight(i, height, subsamp);
985
986
0
    if (pw == 0 || ph == 0) return 0;
987
0
    else retval += (unsigned long long)stride * ph;
988
0
  }
989
#if ULLONG_MAX > ULONG_MAX
990
  if (retval > (unsigned long long)((unsigned long)-1))
991
    THROWG("Image is too large", 0);
992
#endif
993
994
0
bailout:
995
0
  return (size_t)retval;
996
0
}
997
998
/* TurboJPEG 1.4+ */
999
DLLEXPORT unsigned long tjBufSizeYUV2(int width, int align, int height,
1000
                                      int subsamp)
1001
0
{
1002
0
  size_t retval = tj3YUVBufSize(width, align, height, subsamp);
1003
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
1004
0
}
1005
1006
/* TurboJPEG 1.2+ */
1007
DLLEXPORT unsigned long tjBufSizeYUV(int width, int height, int subsamp)
1008
0
{
1009
0
  return tjBufSizeYUV2(width, 4, height, subsamp);
1010
0
}
1011
1012
/* TurboJPEG 1.1+ */
1013
DLLEXPORT unsigned long TJBUFSIZEYUV(int width, int height, int subsamp)
1014
0
{
1015
0
  return tjBufSizeYUV(width, height, subsamp);
1016
0
}
1017
1018
1019
/* TurboJPEG 3.0+ */
1020
DLLEXPORT size_t tj3YUVPlaneSize(int componentID, int width, int stride,
1021
                                 int height, int subsamp)
1022
0
{
1023
0
  static const char FUNCTION_NAME[] = "tj3YUVPlaneSize";
1024
0
  unsigned long long retval = 0;
1025
0
  int pw, ph;
1026
1027
0
  if (width < 1 || height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1028
0
    THROWG("Invalid argument", 0);
1029
1030
0
  pw = tj3YUVPlaneWidth(componentID, width, subsamp);
1031
0
  ph = tj3YUVPlaneHeight(componentID, height, subsamp);
1032
0
  if (pw == 0 || ph == 0) return 0;
1033
1034
0
  if (stride == 0) stride = pw;
1035
0
  else stride = abs(stride);
1036
1037
0
  retval = (unsigned long long)stride * (ph - 1) + pw;
1038
#if ULLONG_MAX > ULONG_MAX
1039
  if (retval > (unsigned long long)((unsigned long)-1))
1040
    THROWG("Image is too large", 0);
1041
#endif
1042
1043
0
bailout:
1044
0
  return (size_t)retval;
1045
0
}
1046
1047
/* TurboJPEG 1.4+ */
1048
DLLEXPORT unsigned long tjPlaneSizeYUV(int componentID, int width, int stride,
1049
                                       int height, int subsamp)
1050
0
{
1051
0
  size_t retval = tj3YUVPlaneSize(componentID, width, stride, height, subsamp);
1052
0
  return (retval == 0) ? -1 : (unsigned long)retval;
1053
0
}
1054
1055
1056
/* TurboJPEG 3.0+ */
1057
DLLEXPORT int tj3YUVPlaneWidth(int componentID, int width, int subsamp)
1058
0
{
1059
0
  static const char FUNCTION_NAME[] = "tj3YUVPlaneWidth";
1060
0
  unsigned long long pw, retval = 0;
1061
0
  int nc;
1062
1063
0
  if (width < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1064
0
    THROWG("Invalid argument", 0);
1065
0
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1066
0
  if (componentID < 0 || componentID >= nc)
1067
0
    THROWG("Invalid argument", 0);
1068
1069
0
  pw = PAD((unsigned long long)width, tjMCUWidth[subsamp] / 8);
1070
0
  if (componentID == 0)
1071
0
    retval = pw;
1072
0
  else
1073
0
    retval = pw * 8 / tjMCUWidth[subsamp];
1074
1075
0
  if (retval > (unsigned long long)INT_MAX)
1076
0
    THROWG("Width is too large", 0);
1077
1078
0
bailout:
1079
0
  return (int)retval;
1080
0
}
1081
1082
/* TurboJPEG 1.4+ */
1083
DLLEXPORT int tjPlaneWidth(int componentID, int width, int subsamp)
1084
0
{
1085
0
  int retval = tj3YUVPlaneWidth(componentID, width, subsamp);
1086
0
  return (retval == 0) ? -1 : retval;
1087
0
}
1088
1089
1090
/* TurboJPEG 3.0+ */
1091
DLLEXPORT int tj3YUVPlaneHeight(int componentID, int height, int subsamp)
1092
0
{
1093
0
  static const char FUNCTION_NAME[] = "tj3YUVPlaneHeight";
1094
0
  unsigned long long ph, retval = 0;
1095
0
  int nc;
1096
1097
0
  if (height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1098
0
    THROWG("Invalid argument", 0);
1099
0
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1100
0
  if (componentID < 0 || componentID >= nc)
1101
0
    THROWG("Invalid argument", 0);
1102
1103
0
  ph = PAD((unsigned long long)height, tjMCUHeight[subsamp] / 8);
1104
0
  if (componentID == 0)
1105
0
    retval = ph;
1106
0
  else
1107
0
    retval = ph * 8 / tjMCUHeight[subsamp];
1108
1109
0
  if (retval > (unsigned long long)INT_MAX)
1110
0
    THROWG("Height is too large", 0);
1111
1112
0
bailout:
1113
0
  return (int)retval;
1114
0
}
1115
1116
/* TurboJPEG 1.4+ */
1117
DLLEXPORT int tjPlaneHeight(int componentID, int height, int subsamp)
1118
0
{
1119
0
  int retval = tj3YUVPlaneHeight(componentID, height, subsamp);
1120
0
  return (retval == 0) ? -1 : retval;
1121
0
}
1122
1123
1124
/******************************** Compressor *********************************/
1125
1126
static tjhandle _tjInitCompress(tjinstance *this)
1127
12.3k
{
1128
12.3k
  static unsigned char buffer[1];
1129
12.3k
  unsigned char *buf = buffer;
1130
12.3k
  size_t size = 1;
1131
1132
  /* This is also straight out of example.c */
1133
12.3k
  this->cinfo.err = jpeg_std_error(&this->jerr.pub);
1134
12.3k
  this->jerr.pub.error_exit = my_error_exit;
1135
12.3k
  this->jerr.pub.output_message = my_output_message;
1136
12.3k
  this->jerr.emit_message = this->jerr.pub.emit_message;
1137
12.3k
  this->jerr.pub.emit_message = my_emit_message;
1138
12.3k
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1139
12.3k
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1140
12.3k
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1141
1142
12.3k
  if (setjmp(this->jerr.setjmp_buffer)) {
1143
    /* If we get here, the JPEG code has signaled an error. */
1144
0
    free(this);
1145
0
    return NULL;
1146
0
  }
1147
1148
12.3k
  jpeg_create_compress(&this->cinfo);
1149
  /* Make an initial call so it will create the destination manager */
1150
12.3k
  jpeg_mem_dest_tj(&this->cinfo, &buf, &size, 0);
1151
1152
12.3k
  this->init |= COMPRESS;
1153
12.3k
  return (tjhandle)this;
1154
12.3k
}
1155
1156
/* TurboJPEG 1.0+ */
1157
DLLEXPORT tjhandle tjInitCompress(void)
1158
0
{
1159
0
  return tj3Init(TJINIT_COMPRESS);
1160
0
}
1161
1162
1163
/* TurboJPEG 3.1+ */
1164
DLLEXPORT int tj3SetICCProfile(tjhandle handle, unsigned char *iccBuf,
1165
                               size_t iccSize)
1166
0
{
1167
0
  static const char FUNCTION_NAME[] = "tj3SetICCProfile";
1168
0
  int retval = 0;
1169
1170
0
  GET_TJINSTANCE(handle, -1)
1171
0
  if ((this->init & COMPRESS) == 0)
1172
0
    THROW("Instance has not been initialized for compression");
1173
1174
0
  if (iccBuf == this->iccBuf && iccSize == this->iccSize)
1175
0
    return 0;
1176
1177
0
  free(this->iccBuf);
1178
0
  this->iccBuf = NULL;
1179
0
  this->iccSize = 0;
1180
0
  if (iccBuf && iccSize) {
1181
0
    if ((this->iccBuf = (unsigned char *)malloc(iccSize)) == NULL)
1182
0
      THROW("Memory allocation failure");
1183
0
    memcpy(this->iccBuf, iccBuf, iccSize);
1184
0
    this->iccSize = iccSize;
1185
0
  }
1186
1187
0
bailout:
1188
0
  return retval;
1189
0
}
1190
1191
1192
/* tj3Compress*() is implemented in turbojpeg-mp.c */
1193
0
#define BITS_IN_JSAMPLE  8
1194
#include "turbojpeg-mp.c"
1195
#undef BITS_IN_JSAMPLE
1196
41.8k
#define BITS_IN_JSAMPLE  12
1197
#include "turbojpeg-mp.c"
1198
#undef BITS_IN_JSAMPLE
1199
0
#define BITS_IN_JSAMPLE  16
1200
#include "turbojpeg-mp.c"
1201
#undef BITS_IN_JSAMPLE
1202
1203
/* TurboJPEG 1.2+ */
1204
DLLEXPORT int tjCompress2(tjhandle handle, const unsigned char *srcBuf,
1205
                          int width, int pitch, int height, int pixelFormat,
1206
                          unsigned char **jpegBuf, unsigned long *jpegSize,
1207
                          int jpegSubsamp, int jpegQual, int flags)
1208
0
{
1209
0
  static const char FUNCTION_NAME[] = "tjCompress2";
1210
0
  int retval = 0;
1211
0
  size_t size;
1212
1213
0
  GET_TJINSTANCE(handle, -1);
1214
1215
0
  if (jpegSize == NULL || jpegSubsamp < 0 || jpegSubsamp >= TJ_NUMSAMP ||
1216
0
      jpegQual < 0 || jpegQual > 100)
1217
0
    THROW("Invalid argument");
1218
1219
0
  this->quality = jpegQual;
1220
0
  this->subsamp = jpegSubsamp;
1221
0
  processFlags(handle, flags, COMPRESS);
1222
1223
0
  size = (size_t)(*jpegSize);
1224
0
  if (this->noRealloc)
1225
0
    size = tj3JPEGBufSize(width, height, this->subsamp);
1226
0
  retval = tj3Compress8(handle, srcBuf, width, pitch, height, pixelFormat,
1227
0
                        jpegBuf, &size);
1228
0
  *jpegSize = (unsigned long)size;
1229
1230
0
bailout:
1231
0
  return retval;
1232
0
}
1233
1234
/* TurboJPEG 1.0+ */
1235
DLLEXPORT int tjCompress(tjhandle handle, unsigned char *srcBuf, int width,
1236
                         int pitch, int height, int pixelSize,
1237
                         unsigned char *jpegBuf, unsigned long *jpegSize,
1238
                         int jpegSubsamp, int jpegQual, int flags)
1239
0
{
1240
0
  int retval = 0;
1241
0
  unsigned long size = jpegSize ? *jpegSize : 0;
1242
1243
0
  if (flags & TJ_YUV) {
1244
0
    size = tjBufSizeYUV(width, height, jpegSubsamp);
1245
0
    retval = tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1246
0
                          getPixelFormat(pixelSize, flags), jpegBuf,
1247
0
                          jpegSubsamp, flags);
1248
0
  } else {
1249
0
    retval = tjCompress2(handle, srcBuf, width, pitch, height,
1250
0
                         getPixelFormat(pixelSize, flags), &jpegBuf, &size,
1251
0
                         jpegSubsamp, jpegQual, flags | TJFLAG_NOREALLOC);
1252
0
  }
1253
0
  *jpegSize = size;
1254
0
  return retval;
1255
0
}
1256
1257
1258
/* TurboJPEG 3.0+ */
1259
DLLEXPORT int tj3CompressFromYUVPlanes8(tjhandle handle,
1260
                                        const unsigned char * const *srcPlanes,
1261
                                        int width, const int *strides,
1262
                                        int height, unsigned char **jpegBuf,
1263
                                        size_t *jpegSize)
1264
0
{
1265
0
  static const char FUNCTION_NAME[] = "tj3CompressFromYUVPlanes8";
1266
0
  int i, row, retval = 0;
1267
0
  boolean alloc = TRUE;
1268
0
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
1269
0
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
1270
0
  JSAMPLE *_tmpbuf = NULL, *ptr;
1271
0
  JSAMPROW *inbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
1272
1273
0
  GET_CINSTANCE(handle)
1274
1275
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
1276
0
    tmpbuf[i] = NULL;  inbuf[i] = NULL;
1277
0
  }
1278
1279
0
  if ((this->init & COMPRESS) == 0)
1280
0
    THROW("Instance has not been initialized for compression");
1281
1282
0
  if (!srcPlanes || !srcPlanes[0] || width <= 0 || height <= 0 ||
1283
0
      jpegBuf == NULL || jpegSize == NULL)
1284
0
    THROW("Invalid argument");
1285
0
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
1286
0
    THROW("Invalid argument");
1287
1288
0
  if (this->quality == -1)
1289
0
    THROW("TJPARAM_QUALITY must be specified");
1290
0
  if (this->subsamp == TJSAMP_UNKNOWN)
1291
0
    THROW("TJPARAM_SUBSAMP must be specified");
1292
1293
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1294
    /* If we get here, the JPEG code has signaled an error. */
1295
0
    retval = -1;  goto bailout;
1296
0
  }
1297
1298
0
  cinfo->image_width = width;
1299
0
  cinfo->image_height = height;
1300
0
  cinfo->data_precision = 8;
1301
1302
0
  if (this->noRealloc) alloc = FALSE;
1303
0
  jpeg_mem_dest_tj(cinfo, jpegBuf, jpegSize, alloc);
1304
0
  setCompDefaults(this, TJPF_RGB, TRUE);
1305
0
  cinfo->raw_data_in = TRUE;
1306
1307
0
  jpeg_start_compress(cinfo, TRUE);
1308
0
  if (this->iccBuf != NULL && this->iccSize != 0)
1309
0
    jpeg_write_icc_profile(cinfo, this->iccBuf, (unsigned int)this->iccSize);
1310
0
  for (i = 0; i < cinfo->num_components; i++) {
1311
0
    jpeg_component_info *compptr = &cinfo->comp_info[i];
1312
0
    int ih;
1313
1314
0
    iw[i] = compptr->width_in_blocks * DCTSIZE;
1315
0
    ih = compptr->height_in_blocks * DCTSIZE;
1316
0
    pw[i] = PAD(cinfo->image_width, cinfo->max_h_samp_factor) *
1317
0
            compptr->h_samp_factor / cinfo->max_h_samp_factor;
1318
0
    ph[i] = PAD(cinfo->image_height, cinfo->max_v_samp_factor) *
1319
0
            compptr->v_samp_factor / cinfo->max_v_samp_factor;
1320
0
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
1321
0
    th[i] = compptr->v_samp_factor * DCTSIZE;
1322
0
    tmpbufsize += iw[i] * th[i];
1323
0
    if ((inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
1324
0
      THROW("Memory allocation failure");
1325
0
    ptr = (JSAMPLE *)srcPlanes[i];
1326
0
    for (row = 0; row < ph[i]; row++) {
1327
0
      inbuf[i][row] = ptr;
1328
0
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1329
0
    }
1330
0
  }
1331
0
  if (usetmpbuf) {
1332
0
    if ((_tmpbuf = (JSAMPLE *)malloc(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
1333
0
      THROW("Memory allocation failure");
1334
0
    ptr = _tmpbuf;
1335
0
    for (i = 0; i < cinfo->num_components; i++) {
1336
0
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
1337
0
        THROW("Memory allocation failure");
1338
0
      for (row = 0; row < th[i]; row++) {
1339
0
        tmpbuf[i][row] = ptr;
1340
0
        ptr += iw[i];
1341
0
      }
1342
0
    }
1343
0
  }
1344
1345
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1346
    /* If we get here, the JPEG code has signaled an error. */
1347
0
    retval = -1;  goto bailout;
1348
0
  }
1349
1350
0
  for (row = 0; row < (int)cinfo->image_height;
1351
0
       row += cinfo->max_v_samp_factor * DCTSIZE) {
1352
0
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
1353
0
    int crow[MAX_COMPONENTS];
1354
1355
0
    for (i = 0; i < cinfo->num_components; i++) {
1356
0
      jpeg_component_info *compptr = &cinfo->comp_info[i];
1357
1358
0
      crow[i] = row * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1359
0
      if (usetmpbuf) {
1360
0
        int j, k;
1361
1362
0
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
1363
0
          memcpy(tmpbuf[i][j], inbuf[i][crow[i] + j], pw[i]);
1364
          /* Duplicate last sample in row to fill out MCU */
1365
0
          for (k = pw[i]; k < iw[i]; k++)
1366
0
            tmpbuf[i][j][k] = tmpbuf[i][j][pw[i] - 1];
1367
0
        }
1368
        /* Duplicate last row to fill out MCU */
1369
0
        for (j = ph[i] - crow[i]; j < th[i]; j++)
1370
0
          memcpy(tmpbuf[i][j], tmpbuf[i][ph[i] - crow[i] - 1], iw[i]);
1371
0
        yuvptr[i] = tmpbuf[i];
1372
0
      } else
1373
0
        yuvptr[i] = &inbuf[i][crow[i]];
1374
0
    }
1375
0
    jpeg_write_raw_data(cinfo, yuvptr, cinfo->max_v_samp_factor * DCTSIZE);
1376
0
  }
1377
0
  jpeg_finish_compress(cinfo);
1378
1379
0
bailout:
1380
0
  if (cinfo->global_state > CSTATE_START && alloc)
1381
0
    (*cinfo->dest->term_destination) (cinfo);
1382
0
  if (cinfo->global_state > CSTATE_START || retval == -1)
1383
0
    jpeg_abort_compress(cinfo);
1384
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
1385
0
    free(tmpbuf[i]);
1386
0
    free(inbuf[i]);
1387
0
  }
1388
0
  free(_tmpbuf);
1389
0
  if (this->jerr.warning) retval = -1;
1390
0
  return retval;
1391
0
}
1392
1393
/* TurboJPEG 1.4+ */
1394
DLLEXPORT int tjCompressFromYUVPlanes(tjhandle handle,
1395
                                      const unsigned char **srcPlanes,
1396
                                      int width, const int *strides,
1397
                                      int height, int subsamp,
1398
                                      unsigned char **jpegBuf,
1399
                                      unsigned long *jpegSize, int jpegQual,
1400
                                      int flags)
1401
0
{
1402
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUVPlanes";
1403
0
  int retval = 0;
1404
0
  size_t size;
1405
1406
0
  GET_TJINSTANCE(handle, -1);
1407
1408
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP || jpegSize == NULL ||
1409
0
      jpegQual < 0 || jpegQual > 100)
1410
0
    THROW("Invalid argument");
1411
1412
0
  this->quality = jpegQual;
1413
0
  this->subsamp = subsamp;
1414
0
  processFlags(handle, flags, COMPRESS);
1415
1416
0
  size = (size_t)(*jpegSize);
1417
0
  if (this->noRealloc)
1418
0
    size = tj3JPEGBufSize(width, height, this->subsamp);
1419
0
  retval = tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1420
0
                                     jpegBuf, &size);
1421
0
  *jpegSize = (unsigned long)size;
1422
1423
0
bailout:
1424
0
  return retval;
1425
0
}
1426
1427
1428
/* TurboJPEG 3.0+ */
1429
DLLEXPORT int tj3CompressFromYUV8(tjhandle handle,
1430
                                  const unsigned char *srcBuf, int width,
1431
                                  int align, int height,
1432
                                  unsigned char **jpegBuf, size_t *jpegSize)
1433
0
{
1434
0
  static const char FUNCTION_NAME[] = "tj3CompressFromYUV8";
1435
0
  const unsigned char *srcPlanes[3];
1436
0
  int pw0, ph0, strides[3], retval = -1;
1437
1438
0
  GET_TJINSTANCE(handle, -1);
1439
1440
0
  if (srcBuf == NULL || width <= 0 || align < 1 || !IS_POW2(align) ||
1441
0
      height <= 0)
1442
0
    THROW("Invalid argument");
1443
1444
0
  if (this->subsamp == TJSAMP_UNKNOWN)
1445
0
    THROW("TJPARAM_SUBSAMP must be specified");
1446
1447
0
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1448
0
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1449
0
  srcPlanes[0] = srcBuf;
1450
0
  strides[0] = PAD(pw0, align);
1451
0
  if (this->subsamp == TJSAMP_GRAY) {
1452
0
    strides[1] = strides[2] = 0;
1453
0
    srcPlanes[1] = srcPlanes[2] = NULL;
1454
0
  } else {
1455
0
    int pw1 = tjPlaneWidth(1, width, this->subsamp);
1456
0
    int ph1 = tjPlaneHeight(1, height, this->subsamp);
1457
1458
0
    strides[1] = strides[2] = PAD(pw1, align);
1459
0
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1460
0
        (unsigned long long)INT_MAX ||
1461
0
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1462
0
        (unsigned long long)INT_MAX)
1463
0
      THROW("Image or row alignment is too large");
1464
0
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
1465
0
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
1466
0
  }
1467
1468
0
  return tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1469
0
                                   jpegBuf, jpegSize);
1470
1471
0
bailout:
1472
0
  return retval;
1473
0
}
1474
1475
/* TurboJPEG 1.4+ */
1476
DLLEXPORT int tjCompressFromYUV(tjhandle handle, const unsigned char *srcBuf,
1477
                                int width, int align, int height, int subsamp,
1478
                                unsigned char **jpegBuf,
1479
                                unsigned long *jpegSize, int jpegQual,
1480
                                int flags)
1481
0
{
1482
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUV";
1483
0
  int retval = -1;
1484
0
  size_t size;
1485
1486
0
  GET_TJINSTANCE(handle, -1);
1487
1488
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1489
0
    THROW("Invalid argument");
1490
1491
0
  this->quality = jpegQual;
1492
0
  this->subsamp = subsamp;
1493
0
  processFlags(handle, flags, COMPRESS);
1494
1495
0
  size = (size_t)(*jpegSize);
1496
0
  if (this->noRealloc)
1497
0
    size = tj3JPEGBufSize(width, height, this->subsamp);
1498
0
  retval = tj3CompressFromYUV8(handle, srcBuf, width, align, height, jpegBuf,
1499
0
                               &size);
1500
0
  *jpegSize = (unsigned long)size;
1501
1502
0
bailout:
1503
0
  return retval;
1504
0
}
1505
1506
1507
/* TurboJPEG 3.0+ */
1508
DLLEXPORT int tj3EncodeYUVPlanes8(tjhandle handle, const unsigned char *srcBuf,
1509
                                  int width, int pitch, int height,
1510
                                  int pixelFormat, unsigned char **dstPlanes,
1511
                                  int *strides)
1512
0
{
1513
0
  static const char FUNCTION_NAME[] = "tj3EncodeYUVPlanes8";
1514
0
  JSAMPROW *row_pointer = NULL;
1515
0
  JSAMPLE *_tmpbuf[MAX_COMPONENTS], *_tmpbuf2[MAX_COMPONENTS];
1516
0
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *tmpbuf2[MAX_COMPONENTS];
1517
0
  JSAMPROW *outbuf[MAX_COMPONENTS];
1518
0
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
1519
0
  JSAMPLE *ptr;
1520
0
  jpeg_component_info *compptr;
1521
1522
0
  GET_CINSTANCE(handle)
1523
1524
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
1525
0
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;
1526
0
    tmpbuf2[i] = NULL;  _tmpbuf2[i] = NULL;  outbuf[i] = NULL;
1527
0
  }
1528
1529
0
  if ((this->init & COMPRESS) == 0)
1530
0
    THROW("Instance has not been initialized for compression");
1531
1532
0
  if (srcBuf == NULL || width <= 0 || pitch < 0 || height <= 0 ||
1533
0
      pixelFormat < 0 || pixelFormat >= TJ_NUMPF || !dstPlanes ||
1534
0
      !dstPlanes[0])
1535
0
    THROW("Invalid argument");
1536
0
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
1537
0
    THROW("Invalid argument");
1538
1539
0
  if (this->subsamp == TJSAMP_UNKNOWN)
1540
0
    THROW("TJPARAM_SUBSAMP must be specified");
1541
0
  if (pixelFormat == TJPF_CMYK)
1542
0
    THROW("Cannot generate YUV images from packed-pixel CMYK images");
1543
1544
0
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
1545
1546
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1547
    /* If we get here, the JPEG code has signaled an error. */
1548
0
    retval = -1;  goto bailout;
1549
0
  }
1550
1551
0
  cinfo->image_width = width;
1552
0
  cinfo->image_height = height;
1553
0
  cinfo->data_precision = 8;
1554
1555
0
  setCompDefaults(this, pixelFormat, TRUE);
1556
1557
  /* Execute only the parts of jpeg_start_compress() that we need.  If we
1558
     were to call the whole jpeg_start_compress() function, then it would try
1559
     to write the file headers, which could overflow the output buffer if the
1560
     YUV image were very small. */
1561
0
  if (cinfo->global_state != CSTATE_START)
1562
0
    THROW("libjpeg API is in the wrong state");
1563
0
  (*cinfo->err->reset_error_mgr) ((j_common_ptr)cinfo);
1564
0
  jinit_c_master_control(cinfo, FALSE);
1565
0
  jinit_color_converter(cinfo);
1566
0
  jinit_downsampler(cinfo);
1567
0
  (*cinfo->cconvert->start_pass) (cinfo);
1568
1569
0
  pw0 = PAD(width, cinfo->max_h_samp_factor);
1570
0
  ph0 = PAD(height, cinfo->max_v_samp_factor);
1571
1572
0
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
1573
0
    THROW("Memory allocation failure");
1574
0
  for (i = 0; i < height; i++) {
1575
0
    if (this->bottomUp)
1576
0
      row_pointer[i] = (JSAMPROW)&srcBuf[(height - i - 1) * (size_t)pitch];
1577
0
    else
1578
0
      row_pointer[i] = (JSAMPROW)&srcBuf[i * (size_t)pitch];
1579
0
  }
1580
0
  if (height < ph0)
1581
0
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
1582
1583
0
  for (i = 0; i < cinfo->num_components; i++) {
1584
0
    compptr = &cinfo->comp_info[i];
1585
0
    _tmpbuf[i] = (JSAMPLE *)MALLOC(
1586
0
      PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1587
0
          compptr->h_samp_factor, 32) *
1588
0
      cinfo->max_v_samp_factor + 32);
1589
0
    if (!_tmpbuf[i])
1590
0
      THROW("Memory allocation failure");
1591
0
    tmpbuf[i] =
1592
0
      (JSAMPROW *)malloc(sizeof(JSAMPROW) * cinfo->max_v_samp_factor);
1593
0
    if (!tmpbuf[i])
1594
0
      THROW("Memory allocation failure");
1595
0
    for (row = 0; row < cinfo->max_v_samp_factor; row++) {
1596
0
      unsigned char *_tmpbuf_aligned =
1597
0
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
1598
1599
0
      tmpbuf[i][row] = &_tmpbuf_aligned[
1600
0
        PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1601
0
            compptr->h_samp_factor, 32) * row];
1602
0
    }
1603
0
    _tmpbuf2[i] =
1604
0
      (JSAMPLE *)MALLOC(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
1605
0
                        compptr->v_samp_factor + 32);
1606
0
    if (!_tmpbuf2[i])
1607
0
      THROW("Memory allocation failure");
1608
0
    tmpbuf2[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
1609
0
    if (!tmpbuf2[i])
1610
0
      THROW("Memory allocation failure");
1611
0
    for (row = 0; row < compptr->v_samp_factor; row++) {
1612
0
      unsigned char *_tmpbuf2_aligned =
1613
0
        (unsigned char *)PAD((JUINTPTR)_tmpbuf2[i], 32);
1614
1615
0
      tmpbuf2[i][row] =
1616
0
        &_tmpbuf2_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
1617
0
    }
1618
0
    pw[i] = pw0 * compptr->h_samp_factor / cinfo->max_h_samp_factor;
1619
0
    ph[i] = ph0 * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1620
0
    outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
1621
0
    if (!outbuf[i])
1622
0
      THROW("Memory allocation failure");
1623
0
    ptr = dstPlanes[i];
1624
0
    for (row = 0; row < ph[i]; row++) {
1625
0
      outbuf[i][row] = ptr;
1626
0
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1627
0
    }
1628
0
  }
1629
1630
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1631
    /* If we get here, the JPEG code has signaled an error. */
1632
0
    retval = -1;  goto bailout;
1633
0
  }
1634
1635
0
  for (row = 0; row < ph0; row += cinfo->max_v_samp_factor) {
1636
0
    (*cinfo->cconvert->color_convert) (cinfo, &row_pointer[row], tmpbuf, 0,
1637
0
                                       cinfo->max_v_samp_factor);
1638
0
    (cinfo->downsample->downsample) (cinfo, tmpbuf, 0, tmpbuf2, 0);
1639
0
    for (i = 0, compptr = cinfo->comp_info; i < cinfo->num_components;
1640
0
         i++, compptr++)
1641
0
      jcopy_sample_rows(tmpbuf2[i], 0, outbuf[i],
1642
0
        row * compptr->v_samp_factor / cinfo->max_v_samp_factor,
1643
0
        compptr->v_samp_factor, pw[i]);
1644
0
  }
1645
0
  cinfo->next_scanline += height;
1646
0
  jpeg_abort_compress(cinfo);
1647
1648
0
bailout:
1649
0
  if (cinfo->global_state > CSTATE_START) jpeg_abort_compress(cinfo);
1650
0
  free(row_pointer);
1651
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
1652
0
    free(tmpbuf[i]);
1653
0
    free(_tmpbuf[i]);
1654
0
    free(tmpbuf2[i]);
1655
0
    free(_tmpbuf2[i]);
1656
0
    free(outbuf[i]);
1657
0
  }
1658
0
  if (this->jerr.warning) retval = -1;
1659
0
  return retval;
1660
0
}
1661
1662
/* TurboJPEG 1.4+ */
1663
DLLEXPORT int tjEncodeYUVPlanes(tjhandle handle, const unsigned char *srcBuf,
1664
                                int width, int pitch, int height,
1665
                                int pixelFormat, unsigned char **dstPlanes,
1666
                                int *strides, int subsamp, int flags)
1667
0
{
1668
0
  static const char FUNCTION_NAME[] = "tjEncodeYUVPlanes";
1669
0
  int retval = 0;
1670
1671
0
  GET_TJINSTANCE(handle, -1);
1672
1673
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1674
0
    THROW("Invalid argument");
1675
1676
0
  this->subsamp = subsamp;
1677
0
  processFlags(handle, flags, COMPRESS);
1678
1679
0
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1680
0
                             dstPlanes, strides);
1681
1682
0
bailout:
1683
0
  return retval;
1684
0
}
1685
1686
1687
/* TurboJPEG 3.0+ */
1688
DLLEXPORT int tj3EncodeYUV8(tjhandle handle, const unsigned char *srcBuf,
1689
                            int width, int pitch, int height, int pixelFormat,
1690
                            unsigned char *dstBuf, int align)
1691
0
{
1692
0
  static const char FUNCTION_NAME[] = "tj3EncodeYUV8";
1693
0
  unsigned char *dstPlanes[3];
1694
0
  int pw0, ph0, strides[3], retval = -1;
1695
1696
0
  GET_TJINSTANCE(handle, -1);
1697
1698
0
  if (width <= 0 || height <= 0 || dstBuf == NULL || align < 1 ||
1699
0
      !IS_POW2(align))
1700
0
    THROW("Invalid argument");
1701
1702
0
  if (this->subsamp == TJSAMP_UNKNOWN)
1703
0
    THROW("TJPARAM_SUBSAMP must be specified");
1704
1705
0
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1706
0
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1707
0
  dstPlanes[0] = dstBuf;
1708
0
  strides[0] = PAD(pw0, align);
1709
0
  if (this->subsamp == TJSAMP_GRAY) {
1710
0
    strides[1] = strides[2] = 0;
1711
0
    dstPlanes[1] = dstPlanes[2] = NULL;
1712
0
  } else {
1713
0
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
1714
0
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
1715
1716
0
    strides[1] = strides[2] = PAD(pw1, align);
1717
0
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1718
0
        (unsigned long long)INT_MAX ||
1719
0
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1720
0
        (unsigned long long)INT_MAX)
1721
0
      THROW("Image or row alignment is too large");
1722
0
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
1723
0
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
1724
0
  }
1725
1726
0
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1727
0
                             dstPlanes, strides);
1728
1729
0
bailout:
1730
0
  return retval;
1731
0
}
1732
1733
/* TurboJPEG 1.4+ */
1734
DLLEXPORT int tjEncodeYUV3(tjhandle handle, const unsigned char *srcBuf,
1735
                           int width, int pitch, int height, int pixelFormat,
1736
                           unsigned char *dstBuf, int align, int subsamp,
1737
                           int flags)
1738
0
{
1739
0
  static const char FUNCTION_NAME[] = "tjEncodeYUV3";
1740
0
  int retval = 0;
1741
1742
0
  GET_TJINSTANCE(handle, -1);
1743
1744
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1745
0
    THROW("Invalid argument");
1746
1747
0
  this->subsamp = subsamp;
1748
0
  processFlags(handle, flags, COMPRESS);
1749
1750
0
  return tj3EncodeYUV8(handle, srcBuf, width, pitch, height, pixelFormat,
1751
0
                       dstBuf, align);
1752
1753
0
bailout:
1754
0
  return retval;
1755
0
}
1756
1757
/* TurboJPEG 1.2+ */
1758
DLLEXPORT int tjEncodeYUV2(tjhandle handle, unsigned char *srcBuf, int width,
1759
                           int pitch, int height, int pixelFormat,
1760
                           unsigned char *dstBuf, int subsamp, int flags)
1761
0
{
1762
0
  return tjEncodeYUV3(handle, srcBuf, width, pitch, height, pixelFormat,
1763
0
                      dstBuf, 4, subsamp, flags);
1764
0
}
1765
1766
/* TurboJPEG 1.1+ */
1767
DLLEXPORT int tjEncodeYUV(tjhandle handle, unsigned char *srcBuf, int width,
1768
                          int pitch, int height, int pixelSize,
1769
                          unsigned char *dstBuf, int subsamp, int flags)
1770
0
{
1771
0
  return tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1772
0
                      getPixelFormat(pixelSize, flags), dstBuf, subsamp,
1773
0
                      flags);
1774
0
}
1775
1776
1777
/******************************* Decompressor ********************************/
1778
1779
static tjhandle _tjInitDecompress(tjinstance *this)
1780
0
{
1781
0
  static unsigned char buffer[1];
1782
1783
  /* This is also straight out of example.c */
1784
0
  this->dinfo.err = jpeg_std_error(&this->jerr.pub);
1785
0
  this->jerr.pub.error_exit = my_error_exit;
1786
0
  this->jerr.pub.output_message = my_output_message;
1787
0
  this->jerr.emit_message = this->jerr.pub.emit_message;
1788
0
  this->jerr.pub.emit_message = my_emit_message;
1789
0
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1790
0
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1791
0
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1792
1793
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1794
    /* If we get here, the JPEG code has signaled an error. */
1795
0
    free(this);
1796
0
    return NULL;
1797
0
  }
1798
1799
0
  jpeg_create_decompress(&this->dinfo);
1800
  /* Make an initial call so it will create the source manager */
1801
0
  jpeg_mem_src_tj(&this->dinfo, buffer, 1);
1802
1803
0
  this->init |= DECOMPRESS;
1804
0
  return (tjhandle)this;
1805
0
}
1806
1807
/* TurboJPEG 1.0+ */
1808
DLLEXPORT tjhandle tjInitDecompress(void)
1809
0
{
1810
0
  return tj3Init(TJINIT_DECOMPRESS);
1811
0
}
1812
1813
1814
/* TurboJPEG 3.0+ */
1815
DLLEXPORT int tj3DecompressHeader(tjhandle handle,
1816
                                  const unsigned char *jpegBuf,
1817
                                  size_t jpegSize)
1818
0
{
1819
0
  static const char FUNCTION_NAME[] = "tj3DecompressHeader";
1820
0
  int retval = 0;
1821
0
  unsigned char *iccPtr = NULL;
1822
0
  unsigned int iccLen = 0;
1823
1824
0
  GET_DINSTANCE(handle);
1825
0
  if ((this->init & DECOMPRESS) == 0)
1826
0
    THROW("Instance has not been initialized for decompression");
1827
1828
0
  if (jpegBuf == NULL || jpegSize <= 0)
1829
0
    THROW("Invalid argument");
1830
1831
0
  if (setjmp(this->jerr.setjmp_buffer)) {
1832
    /* If we get here, the JPEG code has signaled an error. */
1833
0
    return -1;
1834
0
  }
1835
1836
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
1837
1838
  /* Extract ICC profile if TJPARAM_SAVEMARKERS is 2 or 4.  (We could
1839
     eventually reuse this mechanism to save other markers, if needed.)
1840
     Because ICC profiles can be large, we extract them by default but allow
1841
     the user to override that behavior. */
1842
0
  if (this->saveMarkers == 2 || this->saveMarkers == 4)
1843
0
    jpeg_save_markers(dinfo, JPEG_APP0 + 2, 0xFFFF);
1844
  /* jpeg_read_header() calls jpeg_abort() and returns JPEG_HEADER_TABLES_ONLY
1845
     if the datastream is a tables-only datastream.  Since we aren't using a
1846
     suspending data source, the only other value it can return is
1847
     JPEG_HEADER_OK. */
1848
0
  if (jpeg_read_header(dinfo, FALSE) == JPEG_HEADER_TABLES_ONLY)
1849
0
    return 0;
1850
1851
0
  setDecompParameters(this);
1852
1853
0
  if (this->saveMarkers == 2 || this->saveMarkers == 4) {
1854
0
    if (jpeg_read_icc_profile(dinfo, &iccPtr, &iccLen)) {
1855
0
      free(this->tempICCBuf);
1856
0
      this->tempICCBuf = iccPtr;
1857
0
      this->tempICCSize = (size_t)iccLen;
1858
0
    }
1859
0
  }
1860
1861
0
  jpeg_abort_decompress(dinfo);
1862
1863
0
  if (this->colorspace < 0)
1864
0
    THROW("Could not determine colorspace of JPEG image");
1865
0
  if (this->jpegWidth < 1 || this->jpegHeight < 1)
1866
0
    THROW("Invalid data returned in header");
1867
1868
0
bailout:
1869
0
  if (this->jerr.warning) retval = -1;
1870
0
  return retval;
1871
0
}
1872
1873
/* TurboJPEG 1.4+ */
1874
DLLEXPORT int tjDecompressHeader3(tjhandle handle,
1875
                                  const unsigned char *jpegBuf,
1876
                                  unsigned long jpegSize, int *width,
1877
                                  int *height, int *jpegSubsamp,
1878
                                  int *jpegColorspace)
1879
0
{
1880
0
  static const char FUNCTION_NAME[] = "tjDecompressHeader3";
1881
0
  int retval = 0;
1882
1883
0
  GET_TJINSTANCE(handle, -1);
1884
1885
0
  if (width == NULL || height == NULL || jpegSubsamp == NULL ||
1886
0
      jpegColorspace == NULL)
1887
0
    THROW("Invalid argument");
1888
1889
0
  retval = tj3DecompressHeader(handle, jpegBuf, jpegSize);
1890
1891
0
  *width = tj3Get(handle, TJPARAM_JPEGWIDTH);
1892
0
  *height = tj3Get(handle, TJPARAM_JPEGHEIGHT);
1893
0
  *jpegSubsamp = tj3Get(handle, TJPARAM_SUBSAMP);
1894
0
  if (*jpegSubsamp == TJSAMP_UNKNOWN)
1895
0
    THROW("Could not determine subsampling level of JPEG image");
1896
0
  *jpegColorspace = tj3Get(handle, TJPARAM_COLORSPACE);
1897
1898
0
bailout:
1899
0
  return retval;
1900
0
}
1901
1902
/* TurboJPEG 1.1+ */
1903
DLLEXPORT int tjDecompressHeader2(tjhandle handle, unsigned char *jpegBuf,
1904
                                  unsigned long jpegSize, int *width,
1905
                                  int *height, int *jpegSubsamp)
1906
0
{
1907
0
  int jpegColorspace;
1908
1909
0
  return tjDecompressHeader3(handle, jpegBuf, jpegSize, width, height,
1910
0
                             jpegSubsamp, &jpegColorspace);
1911
0
}
1912
1913
/* TurboJPEG 1.0+ */
1914
DLLEXPORT int tjDecompressHeader(tjhandle handle, unsigned char *jpegBuf,
1915
                                 unsigned long jpegSize, int *width,
1916
                                 int *height)
1917
0
{
1918
0
  int jpegSubsamp;
1919
1920
0
  return tjDecompressHeader2(handle, jpegBuf, jpegSize, width, height,
1921
0
                             &jpegSubsamp);
1922
0
}
1923
1924
1925
/* TurboJPEG 3.1+ */
1926
DLLEXPORT int tj3GetICCProfile(tjhandle handle, unsigned char **iccBuf,
1927
                               size_t *iccSize)
1928
0
{
1929
0
  static const char FUNCTION_NAME[] = "tj3GetICCProfile";
1930
0
  int retval = 0;
1931
1932
0
  GET_TJINSTANCE(handle, -1);
1933
0
  if ((this->init & DECOMPRESS) == 0)
1934
0
    THROW("Instance has not been initialized for decompression");
1935
1936
0
  if (iccSize == NULL)
1937
0
    THROW("Invalid argument");
1938
1939
0
  if (!this->tempICCBuf || !this->tempICCSize) {
1940
0
    if (iccBuf) *iccBuf = NULL;
1941
0
    *iccSize = 0;
1942
0
    this->jerr.warning = TRUE;
1943
0
    THROW("No ICC profile data has been extracted");
1944
0
  }
1945
1946
0
  *iccSize = this->tempICCSize;
1947
0
  if (iccBuf == NULL)
1948
0
    return 0;
1949
0
  *iccBuf = this->tempICCBuf;
1950
0
  this->tempICCBuf = NULL;
1951
0
  this->tempICCSize = 0;
1952
1953
0
bailout:
1954
0
  return retval;
1955
0
}
1956
1957
1958
/* TurboJPEG 3.0+ */
1959
DLLEXPORT tjscalingfactor *tj3GetScalingFactors(int *numScalingFactors)
1960
0
{
1961
0
  static const char FUNCTION_NAME[] = "tj3GetScalingFactors";
1962
0
  tjscalingfactor *retval = (tjscalingfactor *)sf;
1963
1964
0
  if (numScalingFactors == NULL)
1965
0
    THROWG("Invalid argument", NULL);
1966
1967
0
  *numScalingFactors = NUMSF;
1968
1969
0
bailout:
1970
0
  return retval;
1971
0
}
1972
1973
/* TurboJPEG 1.2+ */
1974
DLLEXPORT tjscalingfactor *tjGetScalingFactors(int *numScalingFactors)
1975
0
{
1976
0
  return tj3GetScalingFactors(numScalingFactors);
1977
0
}
1978
1979
1980
/* TurboJPEG 3.0+ */
1981
DLLEXPORT int tj3SetScalingFactor(tjhandle handle,
1982
                                  tjscalingfactor scalingFactor)
1983
0
{
1984
0
  static const char FUNCTION_NAME[] = "tj3SetScalingFactor";
1985
0
  int i, retval = 0;
1986
1987
0
  GET_TJINSTANCE(handle, -1);
1988
0
  if ((this->init & DECOMPRESS) == 0)
1989
0
    THROW("Instance has not been initialized for decompression");
1990
1991
0
  for (i = 0; i < NUMSF; i++) {
1992
0
    if (scalingFactor.num == sf[i].num && scalingFactor.denom == sf[i].denom)
1993
0
      break;
1994
0
  }
1995
0
  if (i >= NUMSF)
1996
0
    THROW("Unsupported scaling factor");
1997
1998
0
  this->scalingFactor = scalingFactor;
1999
2000
0
bailout:
2001
0
  return retval;
2002
0
}
2003
2004
2005
/* TurboJPEG 3.0+ */
2006
DLLEXPORT int tj3SetCroppingRegion(tjhandle handle, tjregion croppingRegion)
2007
0
{
2008
0
  static const char FUNCTION_NAME[] = "tj3SetCroppingRegion";
2009
0
  int retval = 0, scaledWidth, scaledHeight;
2010
2011
0
  GET_TJINSTANCE(handle, -1);
2012
0
  if ((this->init & DECOMPRESS) == 0)
2013
0
    THROW("Instance has not been initialized for decompression");
2014
2015
0
  if (croppingRegion.x == 0 && croppingRegion.y == 0 &&
2016
0
      croppingRegion.w == 0 && croppingRegion.h == 0) {
2017
0
    this->croppingRegion = croppingRegion;
2018
0
    return 0;
2019
0
  }
2020
2021
0
  if (croppingRegion.x < 0 || croppingRegion.y < 0 || croppingRegion.w < 0 ||
2022
0
      croppingRegion.h < 0)
2023
0
    THROW("Invalid cropping region");
2024
0
  if (this->jpegWidth < 0 || this->jpegHeight < 0)
2025
0
    THROW("JPEG header has not yet been read");
2026
0
  if ((this->precision != 8 && this->precision != 12) || this->lossless)
2027
0
    THROW("Cannot partially decompress lossless JPEG images");
2028
0
  if (this->subsamp == TJSAMP_UNKNOWN)
2029
0
    THROW("Could not determine subsampling level of JPEG image");
2030
2031
0
  scaledWidth = TJSCALED(this->jpegWidth, this->scalingFactor);
2032
0
  scaledHeight = TJSCALED(this->jpegHeight, this->scalingFactor);
2033
2034
0
  if (croppingRegion.x %
2035
0
      TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor) != 0)
2036
0
    THROWI("The left boundary of the cropping region (%d) is not\n"
2037
0
           "divisible by the scaled iMCU width (%d)",
2038
0
           croppingRegion.x,
2039
0
           TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor));
2040
0
  if (croppingRegion.w == 0)
2041
0
    croppingRegion.w = scaledWidth - croppingRegion.x;
2042
0
  if (croppingRegion.h == 0)
2043
0
    croppingRegion.h = scaledHeight - croppingRegion.y;
2044
0
  if (croppingRegion.w <= 0 || croppingRegion.h <= 0 ||
2045
0
      croppingRegion.x + croppingRegion.w > scaledWidth ||
2046
0
      croppingRegion.y + croppingRegion.h > scaledHeight)
2047
0
    THROW("The cropping region exceeds the scaled image dimensions");
2048
2049
0
  this->croppingRegion = croppingRegion;
2050
2051
0
bailout:
2052
0
  return retval;
2053
0
}
2054
2055
2056
/* tj3Decompress*() is implemented in turbojpeg-mp.c */
2057
2058
/* TurboJPEG 1.2+ */
2059
DLLEXPORT int tjDecompress2(tjhandle handle, const unsigned char *jpegBuf,
2060
                            unsigned long jpegSize, unsigned char *dstBuf,
2061
                            int width, int pitch, int height, int pixelFormat,
2062
                            int flags)
2063
0
{
2064
0
  static const char FUNCTION_NAME[] = "tjDecompress2";
2065
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2066
2067
0
  GET_DINSTANCE(handle);
2068
0
  if ((this->init & DECOMPRESS) == 0)
2069
0
    THROW("Instance has not been initialized for decompression");
2070
2071
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2072
0
    THROW("Invalid argument");
2073
2074
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2075
    /* If we get here, the JPEG code has signaled an error. */
2076
0
    retval = -1;  goto bailout;
2077
0
  }
2078
2079
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2080
0
  jpeg_read_header(dinfo, TRUE);
2081
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2082
0
  if (width == 0) width = jpegwidth;
2083
0
  if (height == 0) height = jpegheight;
2084
0
  for (i = 0; i < NUMSF; i++) {
2085
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2086
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2087
0
    if (scaledw <= width && scaledh <= height)
2088
0
      break;
2089
0
  }
2090
0
  if (i >= NUMSF)
2091
0
    THROW("Could not scale down to desired image dimensions");
2092
2093
0
  processFlags(handle, flags, DECOMPRESS);
2094
2095
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2096
0
    return -1;
2097
0
  if (tj3SetCroppingRegion(handle, TJUNCROPPED) == -1)
2098
0
    return -1;
2099
0
  return tj3Decompress8(handle, jpegBuf, jpegSize, dstBuf, pitch, pixelFormat);
2100
2101
0
bailout:
2102
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2103
0
  if (this->jerr.warning) retval = -1;
2104
0
  return retval;
2105
0
}
2106
2107
/* TurboJPEG 1.0+ */
2108
DLLEXPORT int tjDecompress(tjhandle handle, unsigned char *jpegBuf,
2109
                           unsigned long jpegSize, unsigned char *dstBuf,
2110
                           int width, int pitch, int height, int pixelSize,
2111
                           int flags)
2112
0
{
2113
0
  if (flags & TJ_YUV)
2114
0
    return tjDecompressToYUV(handle, jpegBuf, jpegSize, dstBuf, flags);
2115
0
  else
2116
0
    return tjDecompress2(handle, jpegBuf, jpegSize, dstBuf, width, pitch,
2117
0
                         height, getPixelFormat(pixelSize, flags), flags);
2118
0
}
2119
2120
2121
/* TurboJPEG 3.0+ */
2122
DLLEXPORT int tj3DecompressToYUVPlanes8(tjhandle handle,
2123
                                        const unsigned char *jpegBuf,
2124
                                        size_t jpegSize,
2125
                                        unsigned char **dstPlanes,
2126
                                        int *strides)
2127
0
{
2128
0
  static const char FUNCTION_NAME[] = "tj3DecompressToYUVPlanes8";
2129
0
  int i, row, retval = 0;
2130
0
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
2131
0
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
2132
0
  JSAMPLE *_tmpbuf = NULL, *ptr;
2133
0
  JSAMPROW *outbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
2134
0
  int dctsize;
2135
0
  struct my_progress_mgr progress;
2136
2137
0
  GET_DINSTANCE(handle);
2138
2139
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
2140
0
    tmpbuf[i] = NULL;  outbuf[i] = NULL;
2141
0
  }
2142
2143
0
  if ((this->init & DECOMPRESS) == 0)
2144
0
    THROW("Instance has not been initialized for decompression");
2145
2146
0
  if (jpegBuf == NULL || jpegSize <= 0 || !dstPlanes || !dstPlanes[0])
2147
0
    THROW("Invalid argument");
2148
2149
0
  if (this->scanLimit) {
2150
0
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2151
0
    progress.pub.progress_monitor = my_progress_monitor;
2152
0
    progress.this = this;
2153
0
    dinfo->progress = &progress.pub;
2154
0
  } else
2155
0
    dinfo->progress = NULL;
2156
2157
0
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2158
2159
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2160
    /* If we get here, the JPEG code has signaled an error. */
2161
0
    retval = -1;  goto bailout;
2162
0
  }
2163
2164
0
  if (dinfo->global_state <= DSTATE_INHEADER) {
2165
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2166
0
    jpeg_read_header(dinfo, TRUE);
2167
0
  }
2168
0
  setDecompParameters(this);
2169
0
  if (this->maxPixels &&
2170
0
      (unsigned long long)this->jpegWidth * this->jpegHeight >
2171
0
      (unsigned long long)this->maxPixels)
2172
0
    THROW("Image is too large");
2173
0
  if (this->subsamp == TJSAMP_UNKNOWN)
2174
0
    THROW("Could not determine subsampling level of JPEG image");
2175
2176
0
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
2177
0
    THROW("Invalid argument");
2178
2179
0
  if (dinfo->num_components > 3)
2180
0
    THROW("JPEG image must have 3 or fewer components");
2181
2182
0
  dinfo->scale_num = this->scalingFactor.num;
2183
0
  dinfo->scale_denom = this->scalingFactor.denom;
2184
0
  jpeg_calc_output_dimensions(dinfo);
2185
2186
0
  dctsize = DCTSIZE * this->scalingFactor.num / this->scalingFactor.denom;
2187
2188
0
  for (i = 0; i < dinfo->num_components; i++) {
2189
0
    jpeg_component_info *compptr = &dinfo->comp_info[i];
2190
0
    int ih;
2191
2192
0
    iw[i] = compptr->width_in_blocks * dctsize;
2193
0
    ih = compptr->height_in_blocks * dctsize;
2194
0
    pw[i] = tj3YUVPlaneWidth(i, dinfo->output_width, this->subsamp);
2195
0
    ph[i] = tj3YUVPlaneHeight(i, dinfo->output_height, this->subsamp);
2196
0
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
2197
0
    th[i] = compptr->v_samp_factor * dctsize;
2198
0
    tmpbufsize += iw[i] * th[i];
2199
0
    if ((outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
2200
0
      THROW("Memory allocation failure");
2201
0
    ptr = dstPlanes[i];
2202
0
    for (row = 0; row < ph[i]; row++) {
2203
0
      outbuf[i][row] = ptr;
2204
0
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2205
0
    }
2206
0
  }
2207
0
  if (usetmpbuf) {
2208
0
    if ((_tmpbuf = (JSAMPLE *)MALLOC(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
2209
0
      THROW("Memory allocation failure");
2210
0
    ptr = _tmpbuf;
2211
0
    for (i = 0; i < dinfo->num_components; i++) {
2212
0
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
2213
0
        THROW("Memory allocation failure");
2214
0
      for (row = 0; row < th[i]; row++) {
2215
0
        tmpbuf[i][row] = ptr;
2216
0
        ptr += iw[i];
2217
0
      }
2218
0
    }
2219
0
  }
2220
2221
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2222
    /* If we get here, the JPEG code has signaled an error. */
2223
0
    retval = -1;  goto bailout;
2224
0
  }
2225
2226
0
  dinfo->do_fancy_upsampling = !this->fastUpsample;
2227
0
  dinfo->dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
2228
0
  dinfo->raw_data_out = TRUE;
2229
2230
0
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2231
2232
0
  jpeg_start_decompress(dinfo);
2233
0
  for (row = 0; row < (int)dinfo->output_height;
2234
0
       row += dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size) {
2235
0
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
2236
0
    int crow[MAX_COMPONENTS];
2237
2238
0
    for (i = 0; i < dinfo->num_components; i++) {
2239
0
      jpeg_component_info *compptr = &dinfo->comp_info[i];
2240
2241
0
      if (this->subsamp == TJSAMP_420) {
2242
        /* When 4:2:0 subsampling is used with IDCT scaling, libjpeg will try
2243
           to be clever and use the IDCT to perform upsampling on the U and V
2244
           planes.  For instance, if the output image is to be scaled by 1/2
2245
           relative to the JPEG image, then the scaling factor and upsampling
2246
           effectively cancel each other, so a normal 8x8 IDCT can be used.
2247
           However, this is not desirable when using the decompress-to-YUV
2248
           functionality in TurboJPEG, since we want to output the U and V
2249
           planes in their subsampled form.  Thus, we have to override some
2250
           internal libjpeg parameters to force it to use the "scaled" IDCT
2251
           functions on the U and V planes. */
2252
0
        compptr->_DCT_scaled_size = dctsize;
2253
0
        compptr->MCU_sample_width = tjMCUWidth[this->subsamp] *
2254
0
          this->scalingFactor.num / this->scalingFactor.denom *
2255
0
          compptr->v_samp_factor / dinfo->max_v_samp_factor;
2256
0
        dinfo->idct->inverse_DCT[i] = dinfo->idct->inverse_DCT[0];
2257
0
      }
2258
0
      crow[i] = row * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2259
0
      if (usetmpbuf) yuvptr[i] = tmpbuf[i];
2260
0
      else yuvptr[i] = &outbuf[i][crow[i]];
2261
0
    }
2262
0
    jpeg_read_raw_data(dinfo, yuvptr,
2263
0
                       dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size);
2264
0
    if (usetmpbuf) {
2265
0
      int j;
2266
2267
0
      for (i = 0; i < dinfo->num_components; i++) {
2268
0
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
2269
0
          memcpy(outbuf[i][crow[i] + j], tmpbuf[i][j], pw[i]);
2270
0
        }
2271
0
      }
2272
0
    }
2273
0
  }
2274
0
  jpeg_finish_decompress(dinfo);
2275
2276
0
bailout:
2277
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2278
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
2279
0
    free(tmpbuf[i]);
2280
0
    free(outbuf[i]);
2281
0
  }
2282
0
  free(_tmpbuf);
2283
0
  if (this->jerr.warning) retval = -1;
2284
0
  return retval;
2285
0
}
2286
2287
/* TurboJPEG 1.4+ */
2288
DLLEXPORT int tjDecompressToYUVPlanes(tjhandle handle,
2289
                                      const unsigned char *jpegBuf,
2290
                                      unsigned long jpegSize,
2291
                                      unsigned char **dstPlanes, int width,
2292
                                      int *strides, int height, int flags)
2293
0
{
2294
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUVPlanes";
2295
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2296
2297
0
  GET_DINSTANCE(handle);
2298
0
  if ((this->init & DECOMPRESS) == 0)
2299
0
    THROW("Instance has not been initialized for decompression");
2300
2301
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2302
0
    THROW("Invalid argument");
2303
2304
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2305
    /* If we get here, the JPEG code has signaled an error. */
2306
0
    retval = -1;  goto bailout;
2307
0
  }
2308
2309
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2310
0
  jpeg_read_header(dinfo, TRUE);
2311
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2312
0
  if (width == 0) width = jpegwidth;
2313
0
  if (height == 0) height = jpegheight;
2314
0
  for (i = 0; i < NUMSF; i++) {
2315
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2316
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2317
0
    if (scaledw <= width && scaledh <= height)
2318
0
      break;
2319
0
  }
2320
0
  if (i >= NUMSF)
2321
0
    THROW("Could not scale down to desired image dimensions");
2322
2323
0
  processFlags(handle, flags, DECOMPRESS);
2324
2325
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2326
0
    return -1;
2327
0
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2328
0
                                   strides);
2329
2330
0
bailout:
2331
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2332
0
  if (this->jerr.warning) retval = -1;
2333
0
  return retval;
2334
0
}
2335
2336
2337
/* TurboJPEG 3.0+ */
2338
DLLEXPORT int tj3DecompressToYUV8(tjhandle handle,
2339
                                  const unsigned char *jpegBuf,
2340
                                  size_t jpegSize,
2341
                                  unsigned char *dstBuf, int align)
2342
0
{
2343
0
  static const char FUNCTION_NAME[] = "tj3DecompressToYUV8";
2344
0
  unsigned char *dstPlanes[3];
2345
0
  int pw0, ph0, strides[3], retval = -1;
2346
0
  int width, height;
2347
2348
0
  GET_DINSTANCE(handle);
2349
2350
0
  if (jpegBuf == NULL || jpegSize <= 0 || dstBuf == NULL || align < 1 ||
2351
0
      !IS_POW2(align))
2352
0
    THROW("Invalid argument");
2353
2354
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2355
    /* If we get here, the JPEG code has signaled an error. */
2356
0
    retval = -1;  goto bailout;
2357
0
  }
2358
2359
0
  if (dinfo->global_state <= DSTATE_INHEADER) {
2360
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2361
0
    jpeg_read_header(dinfo, TRUE);
2362
0
  }
2363
0
  setDecompParameters(this);
2364
0
  if (this->subsamp == TJSAMP_UNKNOWN)
2365
0
    THROW("Could not determine subsampling level of JPEG image");
2366
2367
0
  width = TJSCALED(dinfo->image_width, this->scalingFactor);
2368
0
  height = TJSCALED(dinfo->image_height, this->scalingFactor);
2369
2370
0
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2371
0
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2372
0
  dstPlanes[0] = dstBuf;
2373
0
  strides[0] = PAD(pw0, align);
2374
0
  if (this->subsamp == TJSAMP_GRAY) {
2375
0
    strides[1] = strides[2] = 0;
2376
0
    dstPlanes[1] = dstPlanes[2] = NULL;
2377
0
  } else {
2378
0
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2379
0
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2380
2381
0
    strides[1] = strides[2] = PAD(pw1, align);
2382
0
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2383
0
        (unsigned long long)INT_MAX ||
2384
0
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2385
0
        (unsigned long long)INT_MAX)
2386
0
      THROW("Image or row alignment is too large");
2387
0
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
2388
0
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
2389
0
  }
2390
2391
0
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2392
0
                                   strides);
2393
2394
0
bailout:
2395
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2396
0
  if (this->jerr.warning) retval = -1;
2397
0
  return retval;
2398
0
}
2399
2400
/* TurboJPEG 1.4+ */
2401
DLLEXPORT int tjDecompressToYUV2(tjhandle handle, const unsigned char *jpegBuf,
2402
                                 unsigned long jpegSize, unsigned char *dstBuf,
2403
                                 int width, int align, int height, int flags)
2404
0
{
2405
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUV2";
2406
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2407
2408
0
  GET_DINSTANCE(handle);
2409
0
  if ((this->init & DECOMPRESS) == 0)
2410
0
    THROW("Instance has not been initialized for decompression");
2411
2412
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2413
0
    THROW("Invalid argument");
2414
2415
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2416
    /* If we get here, the JPEG code has signaled an error. */
2417
0
    retval = -1;  goto bailout;
2418
0
  }
2419
2420
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2421
0
  jpeg_read_header(dinfo, TRUE);
2422
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2423
0
  if (width == 0) width = jpegwidth;
2424
0
  if (height == 0) height = jpegheight;
2425
0
  for (i = 0; i < NUMSF; i++) {
2426
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2427
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2428
0
    if (scaledw <= width && scaledh <= height)
2429
0
      break;
2430
0
  }
2431
0
  if (i >= NUMSF)
2432
0
    THROW("Could not scale down to desired image dimensions");
2433
2434
0
  width = scaledw;  height = scaledh;
2435
2436
0
  processFlags(handle, flags, DECOMPRESS);
2437
2438
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2439
0
    return -1;
2440
0
  return tj3DecompressToYUV8(handle, jpegBuf, (size_t)jpegSize, dstBuf, align);
2441
2442
0
bailout:
2443
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2444
0
  if (this->jerr.warning) retval = -1;
2445
0
  return retval;
2446
0
}
2447
2448
/* TurboJPEG 1.1+ */
2449
DLLEXPORT int tjDecompressToYUV(tjhandle handle, unsigned char *jpegBuf,
2450
                                unsigned long jpegSize, unsigned char *dstBuf,
2451
                                int flags)
2452
0
{
2453
0
  return tjDecompressToYUV2(handle, jpegBuf, jpegSize, dstBuf, 0, 4, 0, flags);
2454
0
}
2455
2456
2457
static void setDecodeDefaults(tjinstance *this, int pixelFormat)
2458
0
{
2459
0
  int i;
2460
2461
0
  this->dinfo.scale_num = this->dinfo.scale_denom = 1;
2462
2463
0
  if (this->subsamp == TJSAMP_GRAY) {
2464
0
    this->dinfo.num_components = this->dinfo.comps_in_scan = 1;
2465
0
    this->dinfo.jpeg_color_space = JCS_GRAYSCALE;
2466
0
  } else {
2467
0
    this->dinfo.num_components = this->dinfo.comps_in_scan = 3;
2468
0
    this->dinfo.jpeg_color_space = JCS_YCbCr;
2469
0
  }
2470
2471
0
  this->dinfo.comp_info = (jpeg_component_info *)
2472
0
    (*this->dinfo.mem->alloc_small) ((j_common_ptr)&this->dinfo, JPOOL_IMAGE,
2473
0
                                     this->dinfo.num_components *
2474
0
                                     sizeof(jpeg_component_info));
2475
2476
0
  for (i = 0; i < this->dinfo.num_components; i++) {
2477
0
    jpeg_component_info *compptr = &this->dinfo.comp_info[i];
2478
2479
0
    compptr->h_samp_factor = (i == 0) ? tjMCUWidth[this->subsamp] / 8 : 1;
2480
0
    compptr->v_samp_factor = (i == 0) ? tjMCUHeight[this->subsamp] / 8 : 1;
2481
0
    compptr->component_index = i;
2482
0
    compptr->component_id = i + 1;
2483
0
    compptr->quant_tbl_no = compptr->dc_tbl_no =
2484
0
      compptr->ac_tbl_no = (i == 0) ? 0 : 1;
2485
0
    this->dinfo.cur_comp_info[i] = compptr;
2486
0
  }
2487
0
  this->dinfo.data_precision = 8;
2488
0
  for (i = 0; i < 2; i++) {
2489
0
    if (this->dinfo.quant_tbl_ptrs[i] == NULL)
2490
0
      this->dinfo.quant_tbl_ptrs[i] =
2491
0
        jpeg_alloc_quant_table((j_common_ptr)&this->dinfo);
2492
0
  }
2493
2494
0
  this->dinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2495
0
}
2496
2497
2498
static int my_read_markers(j_decompress_ptr dinfo)
2499
0
{
2500
0
  return JPEG_REACHED_SOS;
2501
0
}
2502
2503
static void my_reset_marker_reader(j_decompress_ptr dinfo)
2504
0
{
2505
0
}
2506
2507
/* TurboJPEG 3.0+ */
2508
DLLEXPORT int tj3DecodeYUVPlanes8(tjhandle handle,
2509
                                  const unsigned char * const *srcPlanes,
2510
                                  const int *strides, unsigned char *dstBuf,
2511
                                  int width, int pitch, int height,
2512
                                  int pixelFormat)
2513
0
{
2514
0
  static const char FUNCTION_NAME[] = "tj3DecodeYUVPlanes8";
2515
0
  JSAMPROW *row_pointer = NULL;
2516
0
  JSAMPLE *_tmpbuf[MAX_COMPONENTS];
2517
0
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *inbuf[MAX_COMPONENTS];
2518
0
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
2519
0
  JSAMPLE *ptr;
2520
0
  jpeg_component_info *compptr;
2521
0
  int (*old_read_markers) (j_decompress_ptr);
2522
0
  void (*old_reset_marker_reader) (j_decompress_ptr);
2523
2524
0
  GET_DINSTANCE(handle);
2525
2526
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
2527
0
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;  inbuf[i] = NULL;
2528
0
  }
2529
2530
0
  if ((this->init & DECOMPRESS) == 0)
2531
0
    THROW("Instance has not been initialized for decompression");
2532
2533
0
  if (!srcPlanes || !srcPlanes[0] || dstBuf == NULL || width <= 0 ||
2534
0
      pitch < 0 || height <= 0 || pixelFormat < 0 || pixelFormat >= TJ_NUMPF)
2535
0
    THROW("Invalid argument");
2536
0
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
2537
0
    THROW("Invalid argument");
2538
2539
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2540
    /* If we get here, the JPEG code has signaled an error. */
2541
0
    retval = -1;  goto bailout;
2542
0
  }
2543
2544
0
  if (this->subsamp == TJSAMP_UNKNOWN)
2545
0
    THROW("TJPARAM_SUBSAMP must be specified");
2546
0
  if (pixelFormat == TJPF_CMYK)
2547
0
    THROW("Cannot decode YUV images into packed-pixel CMYK images.");
2548
2549
0
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
2550
0
  dinfo->image_width = width;
2551
0
  dinfo->image_height = height;
2552
2553
0
  dinfo->progressive_mode = dinfo->inputctl->has_multiple_scans = FALSE;
2554
0
  dinfo->Ss = dinfo->Ah = dinfo->Al = 0;
2555
0
  dinfo->Se = DCTSIZE2 - 1;
2556
0
  setDecodeDefaults(this, pixelFormat);
2557
0
  old_read_markers = dinfo->marker->read_markers;
2558
0
  dinfo->marker->read_markers = my_read_markers;
2559
0
  old_reset_marker_reader = dinfo->marker->reset_marker_reader;
2560
0
  dinfo->marker->reset_marker_reader = my_reset_marker_reader;
2561
0
  jpeg_read_header(dinfo, TRUE);
2562
0
  dinfo->marker->read_markers = old_read_markers;
2563
0
  dinfo->marker->reset_marker_reader = old_reset_marker_reader;
2564
2565
0
  this->dinfo.out_color_space = pf2cs[pixelFormat];
2566
0
  this->dinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
2567
0
  dinfo->do_fancy_upsampling = FALSE;
2568
0
  dinfo->Se = DCTSIZE2 - 1;
2569
0
  jinit_master_decompress(dinfo);
2570
0
  (*dinfo->upsample->start_pass) (dinfo);
2571
2572
0
  pw0 = PAD(width, dinfo->max_h_samp_factor);
2573
0
  ph0 = PAD(height, dinfo->max_v_samp_factor);
2574
2575
0
  if (pitch == 0) pitch = dinfo->output_width * tjPixelSize[pixelFormat];
2576
2577
0
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
2578
0
    THROW("Memory allocation failure");
2579
0
  for (i = 0; i < height; i++) {
2580
0
    if (this->bottomUp)
2581
0
      row_pointer[i] = &dstBuf[(height - i - 1) * (size_t)pitch];
2582
0
    else
2583
0
      row_pointer[i] = &dstBuf[i * (size_t)pitch];
2584
0
  }
2585
0
  if (height < ph0)
2586
0
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
2587
2588
0
  for (i = 0; i < dinfo->num_components; i++) {
2589
0
    compptr = &dinfo->comp_info[i];
2590
0
    _tmpbuf[i] =
2591
0
      (JSAMPLE *)malloc(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
2592
0
                        compptr->v_samp_factor + 32);
2593
0
    if (!_tmpbuf[i])
2594
0
      THROW("Memory allocation failure");
2595
0
    tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
2596
0
    if (!tmpbuf[i])
2597
0
      THROW("Memory allocation failure");
2598
0
    for (row = 0; row < compptr->v_samp_factor; row++) {
2599
0
      unsigned char *_tmpbuf_aligned =
2600
0
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
2601
2602
0
      tmpbuf[i][row] =
2603
0
        &_tmpbuf_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
2604
0
    }
2605
0
    pw[i] = pw0 * compptr->h_samp_factor / dinfo->max_h_samp_factor;
2606
0
    ph[i] = ph0 * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2607
0
    inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
2608
0
    if (!inbuf[i])
2609
0
      THROW("Memory allocation failure");
2610
0
    ptr = (JSAMPLE *)srcPlanes[i];
2611
0
    for (row = 0; row < ph[i]; row++) {
2612
0
      inbuf[i][row] = ptr;
2613
0
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2614
0
    }
2615
0
  }
2616
2617
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2618
    /* If we get here, the JPEG code has signaled an error. */
2619
0
    retval = -1;  goto bailout;
2620
0
  }
2621
2622
0
  for (row = 0; row < ph0; row += dinfo->max_v_samp_factor) {
2623
0
    JDIMENSION inrow = 0, outrow = 0;
2624
2625
0
    for (i = 0, compptr = dinfo->comp_info; i < dinfo->num_components;
2626
0
         i++, compptr++)
2627
0
      jcopy_sample_rows(inbuf[i],
2628
0
        row * compptr->v_samp_factor / dinfo->max_v_samp_factor, tmpbuf[i], 0,
2629
0
        compptr->v_samp_factor, pw[i]);
2630
0
    (dinfo->upsample->upsample) (dinfo, tmpbuf, &inrow,
2631
0
                                 dinfo->max_v_samp_factor, &row_pointer[row],
2632
0
                                 &outrow, dinfo->max_v_samp_factor);
2633
0
  }
2634
0
  jpeg_abort_decompress(dinfo);
2635
2636
0
bailout:
2637
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2638
0
  free(row_pointer);
2639
0
  for (i = 0; i < MAX_COMPONENTS; i++) {
2640
0
    free(tmpbuf[i]);
2641
0
    free(_tmpbuf[i]);
2642
0
    free(inbuf[i]);
2643
0
  }
2644
0
  if (this->jerr.warning) retval = -1;
2645
0
  return retval;
2646
0
}
2647
2648
/* TurboJPEG 1.4+ */
2649
DLLEXPORT int tjDecodeYUVPlanes(tjhandle handle,
2650
                                const unsigned char **srcPlanes,
2651
                                const int *strides, int subsamp,
2652
                                unsigned char *dstBuf, int width, int pitch,
2653
                                int height, int pixelFormat, int flags)
2654
0
{
2655
0
  static const char FUNCTION_NAME[] = "tjDecodeYUVPlanes";
2656
0
  int retval = 0;
2657
2658
0
  GET_TJINSTANCE(handle, -1);
2659
2660
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2661
0
    THROW("Invalid argument");
2662
2663
0
  this->subsamp = subsamp;
2664
0
  processFlags(handle, flags, DECOMPRESS);
2665
2666
0
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2667
0
                             height, pixelFormat);
2668
2669
0
bailout:
2670
0
  return retval;
2671
0
}
2672
2673
2674
/* TurboJPEG 3.0+ */
2675
DLLEXPORT int tj3DecodeYUV8(tjhandle handle, const unsigned char *srcBuf,
2676
                            int align, unsigned char *dstBuf, int width,
2677
                            int pitch, int height, int pixelFormat)
2678
0
{
2679
0
  static const char FUNCTION_NAME[] = "tj3DecodeYUV8";
2680
0
  const unsigned char *srcPlanes[3];
2681
0
  int pw0, ph0, strides[3], retval = -1;
2682
2683
0
  GET_TJINSTANCE(handle, -1);
2684
2685
0
  if (srcBuf == NULL || align < 1 || !IS_POW2(align) || width <= 0 ||
2686
0
      height <= 0)
2687
0
    THROW("Invalid argument");
2688
2689
0
  if (this->subsamp == TJSAMP_UNKNOWN)
2690
0
    THROW("TJPARAM_SUBSAMP must be specified");
2691
2692
0
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2693
0
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2694
0
  srcPlanes[0] = srcBuf;
2695
0
  strides[0] = PAD(pw0, align);
2696
0
  if (this->subsamp == TJSAMP_GRAY) {
2697
0
    strides[1] = strides[2] = 0;
2698
0
    srcPlanes[1] = srcPlanes[2] = NULL;
2699
0
  } else {
2700
0
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2701
0
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2702
2703
0
    strides[1] = strides[2] = PAD(pw1, align);
2704
0
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2705
0
        (unsigned long long)INT_MAX ||
2706
0
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2707
0
        (unsigned long long)INT_MAX)
2708
0
      THROW("Image or row alignment is too large");
2709
0
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
2710
0
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
2711
0
  }
2712
2713
0
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2714
0
                             height, pixelFormat);
2715
2716
0
bailout:
2717
0
  return retval;
2718
0
}
2719
2720
/* TurboJPEG 1.4+ */
2721
DLLEXPORT int tjDecodeYUV(tjhandle handle, const unsigned char *srcBuf,
2722
                          int align, int subsamp, unsigned char *dstBuf,
2723
                          int width, int pitch, int height, int pixelFormat,
2724
                          int flags)
2725
0
{
2726
0
  static const char FUNCTION_NAME[] = "tjDecodeYUV";
2727
0
  int retval = -1;
2728
2729
0
  GET_TJINSTANCE(handle, -1);
2730
2731
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2732
0
    THROW("Invalid argument");
2733
2734
0
  this->subsamp = subsamp;
2735
0
  processFlags(handle, flags, DECOMPRESS);
2736
2737
0
  return tj3DecodeYUV8(handle, srcBuf, align, dstBuf, width, pitch, height,
2738
0
                       pixelFormat);
2739
2740
0
bailout:
2741
0
  return retval;
2742
0
}
2743
2744
2745
/******************************** Transformer ********************************/
2746
2747
/* TurboJPEG 1.2+ */
2748
DLLEXPORT tjhandle tjInitTransform(void)
2749
0
{
2750
0
  return tj3Init(TJINIT_TRANSFORM);
2751
0
}
2752
2753
2754
static int getDstSubsamp(int srcSubsamp, const tjtransform *transform)
2755
0
{
2756
0
  int dstSubsamp;
2757
2758
0
  if (!transform)
2759
0
    return srcSubsamp;
2760
2761
0
  dstSubsamp = (transform->options & TJXOPT_GRAY) ? TJSAMP_GRAY : srcSubsamp;
2762
2763
0
  if (transform->op == TJXOP_TRANSPOSE || transform->op == TJXOP_TRANSVERSE ||
2764
0
      transform->op == TJXOP_ROT90 || transform->op == TJXOP_ROT270) {
2765
0
    if (dstSubsamp == TJSAMP_422) dstSubsamp = TJSAMP_440;
2766
0
    else if (dstSubsamp == TJSAMP_440) dstSubsamp = TJSAMP_422;
2767
0
    else if (dstSubsamp == TJSAMP_411) dstSubsamp = TJSAMP_441;
2768
0
    else if (dstSubsamp == TJSAMP_441) dstSubsamp = TJSAMP_411;
2769
0
  }
2770
2771
0
  return dstSubsamp;
2772
0
}
2773
2774
static int getTransformedSpecs(tjhandle handle, int *width, int *height,
2775
                               int *subsamp, const tjtransform *transform,
2776
                               const char *FUNCTION_NAME)
2777
0
{
2778
0
  int retval = 0, dstWidth, dstHeight, dstSubsamp;
2779
2780
0
  GET_TJINSTANCE(handle, -1);
2781
0
  if ((this->init & COMPRESS) == 0 || (this->init & DECOMPRESS) == 0)
2782
0
    THROW("Instance has not been initialized for transformation");
2783
2784
0
  if (!width || !height || !subsamp || !transform || *width < 1 ||
2785
0
      *height < 1 || *subsamp < TJSAMP_UNKNOWN || *subsamp >= TJ_NUMSAMP)
2786
0
    THROW("Invalid argument");
2787
2788
0
  dstWidth = *width;  dstHeight = *height;
2789
0
  if (transform->op == TJXOP_TRANSPOSE || transform->op == TJXOP_TRANSVERSE ||
2790
0
      transform->op == TJXOP_ROT90 || transform->op == TJXOP_ROT270) {
2791
0
    dstWidth = *height;  dstHeight = *width;
2792
0
  }
2793
0
  dstSubsamp = getDstSubsamp(*subsamp, transform);
2794
2795
0
  if (transform->options & TJXOPT_CROP) {
2796
0
    int croppedWidth, croppedHeight;
2797
2798
0
    if (transform->r.x < 0 || transform->r.y < 0 || transform->r.w < 0 ||
2799
0
        transform->r.h < 0)
2800
0
      THROW("Invalid cropping region");
2801
0
    if (dstSubsamp == TJSAMP_UNKNOWN)
2802
0
      THROW("Could not determine subsampling level of JPEG image");
2803
0
    if ((transform->r.x % tjMCUWidth[dstSubsamp]) != 0 ||
2804
0
        (transform->r.y % tjMCUHeight[dstSubsamp]) != 0)
2805
0
      THROWI("To crop this JPEG image, x must be a multiple of %d\n"
2806
0
             "and y must be a multiple of %d.", tjMCUWidth[dstSubsamp],
2807
0
             tjMCUHeight[dstSubsamp]);
2808
0
    if (transform->r.x >= dstWidth || transform->r.y >= dstHeight)
2809
0
      THROW("The cropping region exceeds the destination image dimensions");
2810
0
    croppedWidth = transform->r.w == 0 ? dstWidth - transform->r.x :
2811
0
                                         transform->r.w;
2812
0
    croppedHeight = transform->r.h == 0 ? dstHeight - transform->r.y :
2813
0
                                          transform->r.h;
2814
0
    if (transform->r.x + croppedWidth > dstWidth ||
2815
0
        transform->r.y + croppedHeight > dstHeight)
2816
0
      THROW("The cropping region exceeds the destination image dimensions");
2817
0
    dstWidth = croppedWidth;  dstHeight = croppedHeight;
2818
0
  }
2819
2820
0
  *width = dstWidth;  *height = dstHeight;  *subsamp = dstSubsamp;
2821
2822
0
bailout:
2823
0
  return retval;
2824
0
}
2825
2826
2827
/* TurboJPEG 3.1+ */
2828
DLLEXPORT size_t tj3TransformBufSize(tjhandle handle,
2829
                                     const tjtransform *transform)
2830
0
{
2831
0
  static const char FUNCTION_NAME[] = "tj3TransformBufSize";
2832
0
  size_t retval = 0;
2833
0
  int dstWidth, dstHeight, dstSubsamp;
2834
2835
0
  GET_TJINSTANCE(handle, 0);
2836
0
  if ((this->init & COMPRESS) == 0 || (this->init & DECOMPRESS) == 0)
2837
0
    THROWRV("Instance has not been initialized for transformation", 0);
2838
2839
0
  if (transform == NULL)
2840
0
    THROWRV("Invalid argument", 0)
2841
2842
0
  if (this->jpegWidth < 0 || this->jpegHeight < 0)
2843
0
    THROWRV("JPEG header has not yet been read", 0);
2844
2845
0
  dstWidth = this->jpegWidth;
2846
0
  dstHeight = this->jpegHeight;
2847
0
  dstSubsamp = this->subsamp;
2848
0
  if (getTransformedSpecs(handle, &dstWidth, &dstHeight, &dstSubsamp,
2849
0
                          transform, FUNCTION_NAME) == -1) {
2850
0
    retval = 0;
2851
0
    goto bailout;
2852
0
  }
2853
2854
0
  retval = tj3JPEGBufSize(dstWidth, dstHeight, dstSubsamp);
2855
0
  if ((this->saveMarkers == 2 || this->saveMarkers == 4) &&
2856
0
      !(transform->options & TJXOPT_COPYNONE))
2857
0
    retval += this->tempICCSize;
2858
0
  else
2859
0
    retval += this->iccSize;
2860
2861
0
bailout:
2862
0
  return retval;
2863
0
}
2864
2865
2866
/* TurboJPEG 3.0+ */
2867
DLLEXPORT int tj3Transform(tjhandle handle, const unsigned char *jpegBuf,
2868
                           size_t jpegSize, int n, unsigned char **dstBufs,
2869
                           size_t *dstSizes, const tjtransform *t)
2870
0
{
2871
0
  static const char FUNCTION_NAME[] = "tj3Transform";
2872
0
  jpeg_transform_info *xinfo = NULL;
2873
0
  jvirt_barray_ptr *srccoefs, *dstcoefs;
2874
0
  int retval = 0, i, saveMarkers = 0, srcSubsamp;
2875
0
  boolean alloc = TRUE;
2876
0
  struct my_progress_mgr progress;
2877
2878
0
  GET_INSTANCE(handle);
2879
0
  if ((this->init & COMPRESS) == 0 || (this->init & DECOMPRESS) == 0)
2880
0
    THROW("Instance has not been initialized for transformation");
2881
2882
0
  if (jpegBuf == NULL || jpegSize <= 0 || n < 1 || dstBufs == NULL ||
2883
0
      dstSizes == NULL || t == NULL)
2884
0
    THROW("Invalid argument");
2885
2886
0
  if (this->scanLimit) {
2887
0
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2888
0
    progress.pub.progress_monitor = my_progress_monitor;
2889
0
    progress.this = this;
2890
0
    dinfo->progress = &progress.pub;
2891
0
  } else
2892
0
    dinfo->progress = NULL;
2893
2894
0
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2895
2896
0
  if ((xinfo =
2897
0
       (jpeg_transform_info *)malloc(sizeof(jpeg_transform_info) * n)) == NULL)
2898
0
    THROW("Memory allocation failure");
2899
0
  memset(xinfo, 0, sizeof(jpeg_transform_info) * n);
2900
2901
0
  if (setjmp(this->jerr.setjmp_buffer)) {
2902
    /* If we get here, the JPEG code has signaled an error. */
2903
0
    retval = -1;  goto bailout;
2904
0
  }
2905
2906
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2907
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2908
2909
0
  for (i = 0; i < n; i++) {
2910
0
    if (t[i].op < 0 || t[i].op >= TJ_NUMXOP)
2911
0
      THROW("Invalid transform operation");
2912
0
    xinfo[i].transform = xformtypes[t[i].op];
2913
0
    xinfo[i].perfect = (t[i].options & TJXOPT_PERFECT) ? 1 : 0;
2914
0
    xinfo[i].trim = (t[i].options & TJXOPT_TRIM) ? 1 : 0;
2915
0
    xinfo[i].force_grayscale = (t[i].options & TJXOPT_GRAY) ? 1 : 0;
2916
0
    xinfo[i].crop = (t[i].options & TJXOPT_CROP) ? 1 : 0;
2917
0
    if (n != 1 && t[i].op == TJXOP_HFLIP) xinfo[i].slow_hflip = 1;
2918
0
    else xinfo[i].slow_hflip = 0;
2919
2920
0
    if (xinfo[i].crop) {
2921
0
      if (t[i].r.x < 0 || t[i].r.y < 0 || t[i].r.w < 0 || t[i].r.h < 0)
2922
0
        THROW("Invalid cropping region");
2923
0
      xinfo[i].crop_xoffset = t[i].r.x;  xinfo[i].crop_xoffset_set = JCROP_POS;
2924
0
      xinfo[i].crop_yoffset = t[i].r.y;  xinfo[i].crop_yoffset_set = JCROP_POS;
2925
0
      if (t[i].r.w != 0) {
2926
0
        xinfo[i].crop_width = t[i].r.w;  xinfo[i].crop_width_set = JCROP_POS;
2927
0
      } else
2928
0
        xinfo[i].crop_width = JCROP_UNSET;
2929
0
      if (t[i].r.h != 0) {
2930
0
        xinfo[i].crop_height = t[i].r.h;  xinfo[i].crop_height_set = JCROP_POS;
2931
0
      } else
2932
0
        xinfo[i].crop_height = JCROP_UNSET;
2933
0
    }
2934
0
    if (!(t[i].options & TJXOPT_COPYNONE)) saveMarkers = 1;
2935
0
  }
2936
2937
0
  jcopy_markers_setup(dinfo, saveMarkers ?
2938
0
                             (JCOPY_OPTION)this->saveMarkers : JCOPYOPT_NONE);
2939
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2940
0
    jpeg_read_header(dinfo, TRUE);
2941
0
  if (this->maxPixels &&
2942
0
      (unsigned long long)dinfo->image_width * dinfo->image_height >
2943
0
      (unsigned long long)this->maxPixels)
2944
0
    THROW("Image is too large");
2945
0
  srcSubsamp = getSubsamp(&this->dinfo);
2946
2947
0
  for (i = 0; i < n; i++) {
2948
0
    if (!jtransform_request_workspace(dinfo, &xinfo[i]))
2949
0
      THROW("Transform is not perfect");
2950
2951
0
    if (xinfo[i].crop) {
2952
0
      int dstSubsamp = getDstSubsamp(srcSubsamp, &t[i]);
2953
2954
0
      if (dstSubsamp == TJSAMP_UNKNOWN)
2955
0
        THROW("Could not determine subsampling level of destination image");
2956
0
      if ((t[i].r.x % tjMCUWidth[dstSubsamp]) != 0 ||
2957
0
          (t[i].r.y % tjMCUHeight[dstSubsamp]) != 0)
2958
0
        THROWI("To crop this JPEG image, x must be a multiple of %d\n"
2959
0
               "and y must be a multiple of %d.", tjMCUWidth[dstSubsamp],
2960
0
               tjMCUHeight[dstSubsamp]);
2961
0
    }
2962
0
  }
2963
2964
0
  srccoefs = jpeg_read_coefficients(dinfo);
2965
2966
0
  for (i = 0; i < n; i++) {
2967
0
    if (this->noRealloc) alloc = FALSE;
2968
0
    if (!(t[i].options & TJXOPT_NOOUTPUT))
2969
0
      jpeg_mem_dest_tj(cinfo, &dstBufs[i], &dstSizes[i], alloc);
2970
0
    jpeg_copy_critical_parameters(dinfo, cinfo);
2971
0
    dstcoefs = jtransform_adjust_parameters(dinfo, cinfo, srccoefs, &xinfo[i]);
2972
0
    if (this->optimize || t[i].options & TJXOPT_OPTIMIZE)
2973
0
      cinfo->optimize_coding = TRUE;
2974
0
#ifdef C_PROGRESSIVE_SUPPORTED
2975
0
    if (this->progressive || t[i].options & TJXOPT_PROGRESSIVE)
2976
0
      jpeg_simple_progression(cinfo);
2977
0
#endif
2978
0
    if (this->arithmetic || t[i].options & TJXOPT_ARITHMETIC) {
2979
0
      cinfo->arith_code = TRUE;
2980
0
      cinfo->optimize_coding = FALSE;
2981
0
    }
2982
0
    cinfo->restart_interval = this->restartIntervalBlocks;
2983
0
    cinfo->restart_in_rows = this->restartIntervalRows;
2984
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) {
2985
0
      jpeg_write_coefficients(cinfo, dstcoefs);
2986
0
      jcopy_markers_execute(dinfo, cinfo, t[i].options & TJXOPT_COPYNONE ?
2987
0
                                          JCOPYOPT_NONE :
2988
0
                                          (JCOPY_OPTION)this->saveMarkers);
2989
0
      if (this->iccBuf != NULL && this->iccSize != 0)
2990
0
        jpeg_write_icc_profile(cinfo, this->iccBuf,
2991
0
                               (unsigned int)this->iccSize);
2992
0
    } else
2993
0
      jinit_c_master_control(cinfo, TRUE);
2994
0
    jtransform_execute_transformation(dinfo, cinfo, srccoefs, &xinfo[i]);
2995
0
    if (t[i].customFilter) {
2996
0
      int ci, y;
2997
0
      JDIMENSION by;
2998
2999
0
      for (ci = 0; ci < cinfo->num_components; ci++) {
3000
0
        jpeg_component_info *compptr = &cinfo->comp_info[ci];
3001
0
        tjregion arrayRegion = { 0, 0, 0, 0 };
3002
0
        tjregion planeRegion = { 0, 0, 0, 0 };
3003
3004
0
        arrayRegion.w = compptr->width_in_blocks * DCTSIZE;
3005
0
        arrayRegion.h = DCTSIZE;
3006
0
        planeRegion.w = compptr->width_in_blocks * DCTSIZE;
3007
0
        planeRegion.h = compptr->height_in_blocks * DCTSIZE;
3008
3009
0
        for (by = 0; by < compptr->height_in_blocks;
3010
0
             by += compptr->v_samp_factor) {
3011
0
          JBLOCKARRAY barray = (dinfo->mem->access_virt_barray)
3012
0
            ((j_common_ptr)dinfo, dstcoefs[ci], by, compptr->v_samp_factor,
3013
0
             TRUE);
3014
3015
0
          for (y = 0; y < compptr->v_samp_factor; y++) {
3016
0
            if (t[i].customFilter(barray[y][0], arrayRegion, planeRegion, ci,
3017
0
                                  i, (tjtransform *)&t[i]) == -1)
3018
0
              THROW("Error in custom filter");
3019
0
            arrayRegion.y += DCTSIZE;
3020
0
          }
3021
0
        }
3022
0
      }
3023
0
    }
3024
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) jpeg_finish_compress(cinfo);
3025
0
  }
3026
3027
0
  jpeg_finish_decompress(dinfo);
3028
3029
0
bailout:
3030
0
  if (cinfo->global_state > CSTATE_START) {
3031
0
    if (alloc) (*cinfo->dest->term_destination) (cinfo);
3032
0
    jpeg_abort_compress(cinfo);
3033
0
  }
3034
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
3035
0
  free(xinfo);
3036
0
  if (this->jerr.warning) retval = -1;
3037
0
  return retval;
3038
0
}
3039
3040
/* TurboJPEG 1.2+ */
3041
DLLEXPORT int tjTransform(tjhandle handle, const unsigned char *jpegBuf,
3042
                          unsigned long jpegSize, int n,
3043
                          unsigned char **dstBufs, unsigned long *dstSizes,
3044
                          tjtransform *t, int flags)
3045
0
{
3046
0
  static const char FUNCTION_NAME[] = "tjTransform";
3047
0
  int i, retval = 0, srcSubsamp = -1;
3048
0
  size_t *sizes = NULL;
3049
3050
0
  GET_DINSTANCE(handle);
3051
0
  if ((this->init & DECOMPRESS) == 0)
3052
0
    THROW("Instance has not been initialized for decompression");
3053
3054
0
  if (n < 1 || dstSizes == NULL)
3055
0
    THROW("Invalid argument");
3056
3057
0
  if (setjmp(this->jerr.setjmp_buffer)) {
3058
    /* If we get here, the JPEG code has signaled an error. */
3059
0
    retval = -1;  goto bailout;
3060
0
  }
3061
3062
0
  processFlags(handle, flags, COMPRESS);
3063
3064
0
  if (this->noRealloc) {
3065
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
3066
0
    jpeg_read_header(dinfo, TRUE);
3067
0
    srcSubsamp = getSubsamp(dinfo);
3068
0
  }
3069
3070
0
  if ((sizes = (size_t *)malloc(n * sizeof(size_t))) == NULL)
3071
0
    THROW("Memory allocation failure");
3072
0
  for (i = 0; i < n; i++) {
3073
0
    sizes[i] = (size_t)dstSizes[i];
3074
0
    if (this->noRealloc) {
3075
0
      int dstWidth = dinfo->image_width, dstHeight = dinfo->image_height;
3076
0
      int dstSubsamp = srcSubsamp;
3077
3078
0
      if (getTransformedSpecs(handle, &dstWidth, &dstHeight, &dstSubsamp,
3079
0
                              &t[i], FUNCTION_NAME) == -1) {
3080
0
        retval = -1;
3081
0
        goto bailout;
3082
0
      }
3083
0
      sizes[i] = tj3JPEGBufSize(dstWidth, dstHeight, dstSubsamp);
3084
0
    }
3085
0
  }
3086
0
  retval = tj3Transform(handle, jpegBuf, (size_t)jpegSize, n, dstBufs, sizes,
3087
0
                        t);
3088
0
  for (i = 0; i < n; i++)
3089
0
    dstSizes[i] = (unsigned long)sizes[i];
3090
3091
0
bailout:
3092
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
3093
0
  if (this->jerr.warning) retval = -1;
3094
0
  free(sizes);
3095
0
  return retval;
3096
0
}
3097
3098
3099
/*************************** Packed-Pixel Image I/O **************************/
3100
3101
/* tj3LoadImage*() is implemented in turbojpeg-mp.c */
3102
3103
/* TurboJPEG 2.0+ */
3104
DLLEXPORT unsigned char *tjLoadImage(const char *filename, int *width,
3105
                                     int align, int *height,
3106
                                     int *pixelFormat, int flags)
3107
0
{
3108
0
  tjhandle handle = NULL;
3109
0
  unsigned char *dstBuf = NULL;
3110
3111
0
  if ((handle = tj3Init(TJINIT_COMPRESS)) == NULL) return NULL;
3112
3113
0
  processFlags(handle, flags, COMPRESS);
3114
3115
0
  dstBuf = tj3LoadImage8(handle, filename, width, align, height, pixelFormat);
3116
3117
0
  tj3Destroy(handle);
3118
0
  return dstBuf;
3119
0
}
3120
3121
3122
/* tj3SaveImage*() is implemented in turbojpeg-mp.c */
3123
3124
/* TurboJPEG 2.0+ */
3125
DLLEXPORT int tjSaveImage(const char *filename, unsigned char *buffer,
3126
                          int width, int pitch, int height, int pixelFormat,
3127
                          int flags)
3128
0
{
3129
0
  tjhandle handle = NULL;
3130
0
  int retval = -1;
3131
3132
0
  if ((handle = tj3Init(TJINIT_DECOMPRESS)) == NULL) return -1;
3133
3134
0
  processFlags(handle, flags, DECOMPRESS);
3135
3136
0
  retval = tj3SaveImage8(handle, filename, buffer, width, pitch, height,
3137
0
                         pixelFormat);
3138
3139
0
  tj3Destroy(handle);
3140
0
  return retval;
3141
0
}