Coverage Report

Created: 2026-09-13 07:54

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjpeg-turbo.3.0.x/turbojpeg.c
Line
Count
Source
1
/*
2
 * Copyright (C) 2009-2026 D. R. Commander.  All Rights Reserved.
3
 * Copyright (C) 2021 Alex Richardson.  All Rights Reserved.
4
 *
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions are met:
7
 *
8
 * - Redistributions of source code must retain the above copyright notice,
9
 *   this list of conditions and the following disclaimer.
10
 * - Redistributions in binary form must reproduce the above copyright notice,
11
 *   this list of conditions and the following disclaimer in the documentation
12
 *   and/or other materials provided with the distribution.
13
 * - Neither the name of the libjpeg-turbo Project nor the names of its
14
 *   contributors may be used to endorse or promote products derived from this
15
 *   software without specific prior written permission.
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS",
18
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20
 * ARE DISCLAIMED.  IN NO EVENT SHALL THE COPYRIGHT HOLDERS OR CONTRIBUTORS BE
21
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
27
 * POSSIBILITY OF SUCH DAMAGE.
28
 */
29
30
/* TurboJPEG/LJT:  this implements the TurboJPEG API using libjpeg or
31
   libjpeg-turbo */
32
33
#include <ctype.h>
34
#include <limits.h>
35
#if !defined(_MSC_VER) || _MSC_VER > 1600
36
#include <stdint.h>
37
#endif
38
#include "jinclude.h"
39
#define JPEG_INTERNALS
40
#include "jpeglib.h"
41
#include "jerror.h"
42
#include <setjmp.h>
43
#include <errno.h>
44
#include "turbojpeg.h"
45
#include "tjutil.h"
46
#include "transupp.h"
47
#include "jpegapicomp.h"
48
#include "cdjpeg.h"
49
50
extern void jpeg_mem_dest_tj(j_compress_ptr, unsigned char **, size_t *,
51
                             boolean);
52
extern void jpeg_mem_src_tj(j_decompress_ptr, const unsigned char *, size_t);
53
54
2.54M
#define PAD(v, p)  ((v + (p) - 1) & (~((p) - 1)))
55
326k
#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
456k
{
78
456k
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
79
80
456k
  (*cinfo->err->output_message) (cinfo);
81
456k
  longjmp(myerr->setjmp_buffer, 1);
82
456k
}
83
84
/* Based on output_message() in jerror.c */
85
86
static void my_output_message(j_common_ptr cinfo)
87
297k
{
88
297k
  (*cinfo->err->format_message) (cinfo, errStr);
89
297k
}
90
91
static void my_emit_message(j_common_ptr cinfo, int msg_level)
92
623M
{
93
623M
  my_error_ptr myerr = (my_error_ptr)cinfo->err;
94
95
623M
  myerr->emit_message(cinfo, msg_level);
96
623M
  if (msg_level < 0) {
97
458M
    myerr->warning = TRUE;
98
458M
    if (myerr->stopOnWarning) longjmp(myerr->setjmp_buffer, 1);
99
458M
  }
100
623M
}
101
102
103
/********************** Global structures, macros, etc. **********************/
104
105
enum { COMPRESS = 1, DECOMPRESS = 2 };
106
107
typedef struct _tjinstance {
108
  struct jpeg_compress_struct cinfo;
109
  struct jpeg_decompress_struct dinfo;
110
  struct my_error_mgr jerr;
111
  int init;
112
  char errStr[JMSG_LENGTH_MAX];
113
  boolean isInstanceError;
114
  /* Parameters */
115
  boolean bottomUp;
116
  boolean noRealloc;
117
  int quality;
118
  int subsamp;
119
  int jpegWidth;
120
  int jpegHeight;
121
  int precision;
122
  int colorspace;
123
  boolean fastUpsample;
124
  boolean fastDCT;
125
  boolean optimize;
126
  boolean progressive;
127
  int scanLimit;
128
  boolean arithmetic;
129
  boolean lossless;
130
  int losslessPSV;
131
  int losslessPt;
132
  int restartIntervalBlocks;
133
  int restartIntervalRows;
134
  int xDensity;
135
  int yDensity;
136
  int densityUnits;
137
  tjscalingfactor scalingFactor;
138
  tjregion croppingRegion;
139
  int maxMemory;
140
  int maxPixels;
141
} tjinstance;
142
143
static tjhandle _tjInitCompress(tjinstance *this);
144
static tjhandle _tjInitDecompress(tjinstance *this);
145
146
struct my_progress_mgr {
147
  struct jpeg_progress_mgr pub;
148
  tjinstance *this;
149
};
150
typedef struct my_progress_mgr *my_progress_ptr;
151
152
static void my_progress_monitor(j_common_ptr dinfo)
153
497M
{
154
497M
  my_error_ptr myerr = (my_error_ptr)dinfo->err;
155
497M
  my_progress_ptr myprog = (my_progress_ptr)dinfo->progress;
156
157
497M
  if (dinfo->is_decompressor) {
158
497M
    int scan_no = ((j_decompress_ptr)dinfo)->input_scan_number;
159
160
497M
    if (scan_no > myprog->this->scanLimit) {
161
2.04k
      SNPRINTF(myprog->this->errStr, JMSG_LENGTH_MAX,
162
2.04k
               "Progressive JPEG image has more than %d scans",
163
2.04k
               myprog->this->scanLimit);
164
2.04k
      SNPRINTF(errStr, JMSG_LENGTH_MAX,
165
2.04k
               "Progressive JPEG image has more than %d scans",
166
2.04k
               myprog->this->scanLimit);
167
2.04k
      myprog->this->isInstanceError = TRUE;
168
2.04k
      myerr->warning = FALSE;
169
2.04k
      longjmp(myerr->setjmp_buffer, 1);
170
2.04k
    }
171
497M
  }
172
497M
}
173
174
#if TRANSFORMS_SUPPORTED
175
176
static const JXFORM_CODE xformtypes[TJ_NUMXOP] = {
177
  JXFORM_NONE, JXFORM_FLIP_H, JXFORM_FLIP_V, JXFORM_TRANSPOSE,
178
  JXFORM_TRANSVERSE, JXFORM_ROT_90, JXFORM_ROT_180, JXFORM_ROT_270
179
};
180
181
#endif
182
183
#ifdef IDCT_SCALING_SUPPORTED
184
185
1.12M
#define NUMSF  16
186
static const tjscalingfactor sf[NUMSF] = {
187
  { 2, 1 },
188
  { 15, 8 },
189
  { 7, 4 },
190
  { 13, 8 },
191
  { 3, 2 },
192
  { 11, 8 },
193
  { 5, 4 },
194
  { 9, 8 },
195
  { 1, 1 },
196
  { 7, 8 },
197
  { 3, 4 },
198
  { 5, 8 },
199
  { 1, 2 },
200
  { 3, 8 },
201
  { 1, 4 },
202
  { 1, 8 }
203
};
204
205
#else
206
207
#define NUMSF  1
208
static const tjscalingfactor sf[NUMSF] = {
209
  { 1, 1 },
210
};
211
212
#endif
213
214
static J_COLOR_SPACE pf2cs[TJ_NUMPF] = {
215
  JCS_EXT_RGB, JCS_EXT_BGR, JCS_EXT_RGBX, JCS_EXT_BGRX, JCS_EXT_XBGR,
216
  JCS_EXT_XRGB, JCS_GRAYSCALE, JCS_EXT_RGBA, JCS_EXT_BGRA, JCS_EXT_ABGR,
217
  JCS_EXT_ARGB, JCS_CMYK
218
};
219
220
static int cs2pf[JPEG_NUMCS] = {
221
  TJPF_UNKNOWN, TJPF_GRAY,
222
#if RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 3
223
  TJPF_RGB,
224
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 3
225
  TJPF_BGR,
226
#elif RGB_RED == 0 && RGB_GREEN == 1 && RGB_BLUE == 2 && RGB_PIXELSIZE == 4
227
  TJPF_RGBX,
228
#elif RGB_RED == 2 && RGB_GREEN == 1 && RGB_BLUE == 0 && RGB_PIXELSIZE == 4
229
  TJPF_BGRX,
230
#elif RGB_RED == 3 && RGB_GREEN == 2 && RGB_BLUE == 1 && RGB_PIXELSIZE == 4
231
  TJPF_XBGR,
232
#elif RGB_RED == 1 && RGB_GREEN == 2 && RGB_BLUE == 3 && RGB_PIXELSIZE == 4
233
  TJPF_XRGB,
234
#endif
235
  TJPF_UNKNOWN, TJPF_CMYK, TJPF_UNKNOWN, TJPF_RGB, TJPF_RGBX, TJPF_BGR,
236
  TJPF_BGRX, TJPF_XBGR, TJPF_XRGB, TJPF_RGBA, TJPF_BGRA, TJPF_ABGR, TJPF_ARGB,
237
  TJPF_UNKNOWN
238
};
239
240
0
#define THROWG(m, rv) { \
241
18.4E
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
242
0
  retval = rv;  goto bailout; \
243
18.4E
}
244
#ifdef _MSC_VER
245
#define THROW_UNIX(m) { \
246
  char strerrorBuf[80] = { 0 }; \
247
  strerror_s(strerrorBuf, 80, errno); \
248
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
249
           strerrorBuf); \
250
  this->isInstanceError = TRUE; \
251
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
252
           strerrorBuf); \
253
  retval = -1;  goto bailout; \
254
}
255
#else
256
0
#define THROW_UNIX(m) { \
257
0
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
258
0
           strerror(errno)); \
259
0
  this->isInstanceError = TRUE; \
260
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): %s\n%s", FUNCTION_NAME, m, \
261
0
           strerror(errno)); \
262
0
  retval = -1;  goto bailout; \
263
0
}
264
#endif
265
0
#define THROW(m) { \
266
18.4E
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): %s", FUNCTION_NAME, m); \
267
18.4E
  this->isInstanceError = TRUE;  THROWG(m, -1) \
268
18.4E
}
269
9
#define THROWI(format, val1, val2) { \
270
9
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, \
271
9
           val1, val2); \
272
9
  this->isInstanceError = TRUE; \
273
9
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): " format, FUNCTION_NAME, val1, \
274
9
           val2); \
275
9
  retval = -1;  goto bailout; \
276
9
}
277
278
370k
#define CATCH_LIBJPEG(this) { \
279
370k
  if (setjmp(this->jerr.setjmp_buffer)) { \
280
70.4k
    /* If we get here, the JPEG code has signaled an error. */ \
281
70.4k
    retval = -1;  goto bailout; \
282
70.4k
  } \
283
370k
}
284
285
/* Catch a libjpeg error from the secondary TurboJPEG instance and copy the
286
   error message and state to the primary instance.  This is used by
287
   the packed-pixel image I/O functions. */
288
216k
#define CATCH_LIBJPEG2() { \
289
216k
  if (setjmp(this2->jerr.setjmp_buffer)) { \
290
55.3k
    memcpy(this->errStr, this2->errStr, JMSG_LENGTH_MAX); \
291
55.3k
    this->jerr.warning = this2->jerr.warning; \
292
55.3k
    this->isInstanceError = this2->isInstanceError; \
293
55.3k
    retval = -1;  goto bailout; \
294
55.3k
  } \
295
216k
}
296
297
#define GET_INSTANCE(handle) \
298
0
  tjinstance *this = (tjinstance *)handle; \
299
0
  j_compress_ptr cinfo = NULL; \
300
0
  j_decompress_ptr dinfo = NULL; \
301
0
  \
302
0
  if (!this) { \
303
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
304
0
    return -1; \
305
0
  } \
306
0
  cinfo = &this->cinfo;  dinfo = &this->dinfo; \
307
0
  this->jerr.warning = FALSE; \
308
0
  this->isInstanceError = FALSE;
309
310
#define GET_CINSTANCE(handle) \
311
88.0k
  tjinstance *this = (tjinstance *)handle; \
312
88.0k
  j_compress_ptr cinfo = NULL; \
313
88.0k
  \
314
88.0k
  if (!this) { \
315
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
316
0
    return -1; \
317
0
  } \
318
88.0k
  cinfo = &this->cinfo; \
319
88.0k
  this->jerr.warning = FALSE; \
320
88.0k
  this->isInstanceError = FALSE;
321
322
#define GET_DINSTANCE(handle) \
323
170k
  tjinstance *this = (tjinstance *)handle; \
324
170k
  j_decompress_ptr dinfo = NULL; \
325
170k
  \
326
170k
  if (!this) { \
327
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
328
0
    return -1; \
329
0
  } \
330
170k
  dinfo = &this->dinfo; \
331
170k
  this->jerr.warning = FALSE; \
332
170k
  this->isInstanceError = FALSE;
333
334
#define GET_TJINSTANCE(handle, errorReturn) \
335
1.23M
  tjinstance *this = (tjinstance *)handle; \
336
1.23M
  \
337
1.23M
  if (!this) { \
338
0
    SNPRINTF(errStr, JMSG_LENGTH_MAX, "%s(): Invalid handle", FUNCTION_NAME); \
339
0
    return errorReturn; \
340
0
  } \
341
1.23M
  this->jerr.warning = FALSE; \
342
1.23M
  this->isInstanceError = FALSE;
343
344
static int getPixelFormat(int pixelSize, int flags)
345
0
{
346
0
  if (pixelSize == 1) return TJPF_GRAY;
347
0
  if (pixelSize == 3) {
348
0
    if (flags & TJ_BGR) return TJPF_BGR;
349
0
    else return TJPF_RGB;
350
0
  }
351
0
  if (pixelSize == 4) {
352
0
    if (flags & TJ_ALPHAFIRST) {
353
0
      if (flags & TJ_BGR) return TJPF_XBGR;
354
0
      else return TJPF_XRGB;
355
0
    } else {
356
0
      if (flags & TJ_BGR) return TJPF_BGRX;
357
0
      else return TJPF_RGBX;
358
0
    }
359
0
  }
360
0
  return -1;
361
0
}
362
363
static void setCompDefaults(tjinstance *this, int pixelFormat, boolean yuv)
364
261k
{
365
261k
  int colorspace = yuv ? -1 : this->colorspace;
366
367
261k
  this->cinfo.in_color_space = pf2cs[pixelFormat];
368
261k
  this->cinfo.input_components = tjPixelSize[pixelFormat];
369
261k
  jpeg_set_defaults(&this->cinfo);
370
371
261k
  this->cinfo.restart_interval = this->restartIntervalBlocks;
372
261k
  this->cinfo.restart_in_rows = this->restartIntervalRows;
373
261k
  this->cinfo.X_density = (UINT16)this->xDensity;
374
261k
  this->cinfo.Y_density = (UINT16)this->yDensity;
375
261k
  this->cinfo.density_unit = (UINT8)this->densityUnits;
376
261k
  this->cinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
377
378
261k
  if (this->lossless && !yuv) {
379
85.8k
#ifdef C_LOSSLESS_SUPPORTED
380
85.8k
    jpeg_enable_lossless(&this->cinfo, this->losslessPSV, this->losslessPt);
381
85.8k
#endif
382
85.8k
    return;
383
85.8k
  }
384
385
175k
  jpeg_set_quality(&this->cinfo, this->quality, TRUE);
386
175k
  this->cinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
387
388
175k
  switch (colorspace) {
389
10.9k
  case TJCS_RGB:
390
10.9k
    jpeg_set_colorspace(&this->cinfo, JCS_RGB);  break;
391
19.2k
  case TJCS_YCbCr:
392
19.2k
    jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);  break;
393
14.8k
  case TJCS_GRAY:
394
14.8k
    jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);  break;
395
0
  case TJCS_CMYK:
396
0
    jpeg_set_colorspace(&this->cinfo, JCS_CMYK);  break;
397
10.6k
  case TJCS_YCCK:
398
10.6k
    jpeg_set_colorspace(&this->cinfo, JCS_YCCK);  break;
399
120k
  default:
400
120k
    if (this->subsamp == TJSAMP_GRAY)
401
39.6k
      jpeg_set_colorspace(&this->cinfo, JCS_GRAYSCALE);
402
80.3k
    else if (pixelFormat == TJPF_CMYK)
403
4.09k
      jpeg_set_colorspace(&this->cinfo, JCS_YCCK);
404
76.2k
    else
405
76.2k
      jpeg_set_colorspace(&this->cinfo, JCS_YCbCr);
406
175k
  }
407
408
175k
  if (this->cinfo.data_precision == 8)
409
126k
    this->cinfo.optimize_coding = this->optimize;
410
175k
#ifdef C_PROGRESSIVE_SUPPORTED
411
175k
  if (this->progressive) jpeg_simple_progression(&this->cinfo);
412
175k
#endif
413
175k
  this->cinfo.arith_code = this->arithmetic;
414
415
175k
  this->cinfo.comp_info[0].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
416
175k
  this->cinfo.comp_info[1].h_samp_factor = 1;
417
175k
  this->cinfo.comp_info[2].h_samp_factor = 1;
418
175k
  if (this->cinfo.num_components > 3)
419
14.7k
    this->cinfo.comp_info[3].h_samp_factor = tjMCUWidth[this->subsamp] / 8;
420
175k
  this->cinfo.comp_info[0].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
421
175k
  this->cinfo.comp_info[1].v_samp_factor = 1;
422
175k
  this->cinfo.comp_info[2].v_samp_factor = 1;
423
175k
  if (this->cinfo.num_components > 3)
424
14.7k
    this->cinfo.comp_info[3].v_samp_factor = tjMCUHeight[this->subsamp] / 8;
425
175k
}
426
427
428
static int getSubsamp(j_decompress_ptr dinfo)
429
262k
{
430
262k
  int retval = TJSAMP_UNKNOWN, i, k;
431
432
  /* The sampling factors actually have no meaning with grayscale JPEG files,
433
     and in fact it's possible to generate grayscale JPEGs with sampling
434
     factors > 1 (even though those sampling factors are ignored by the
435
     decompressor.)  Thus, we need to treat grayscale as a special case. */
436
262k
  if (dinfo->num_components == 1 && dinfo->jpeg_color_space == JCS_GRAYSCALE)
437
140k
    return TJSAMP_GRAY;
438
439
681k
  for (i = 0; i < TJ_NUMSAMP; i++) {
440
630k
    if (i == TJSAMP_GRAY) continue;
441
442
565k
    if (dinfo->num_components == 3 ||
443
58.5k
        ((dinfo->jpeg_color_space == JCS_YCCK ||
444
51.0k
          dinfo->jpeg_color_space == JCS_CMYK) &&
445
554k
         dinfo->num_components == 4)) {
446
554k
      if (dinfo->comp_info[0].h_samp_factor == tjMCUWidth[i] / 8 &&
447
237k
          dinfo->comp_info[0].v_samp_factor == tjMCUHeight[i] / 8) {
448
106k
        int match = 0;
449
450
327k
        for (k = 1; k < dinfo->num_components; k++) {
451
220k
          int href = 1, vref = 1;
452
453
220k
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
454
217k
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
455
7.26k
            href = tjMCUWidth[i] / 8;  vref = tjMCUHeight[i] / 8;
456
7.26k
          }
457
220k
          if (dinfo->comp_info[k].h_samp_factor == href &&
458
185k
              dinfo->comp_info[k].v_samp_factor == vref)
459
154k
            match++;
460
220k
        }
461
106k
        if (match == dinfo->num_components - 1) {
462
65.9k
          retval = i;  break;
463
65.9k
        }
464
106k
      }
465
      /* Handle 4:2:2 and 4:4:0 images whose sampling factors are specified
466
         in non-standard ways. */
467
488k
      if (dinfo->comp_info[0].h_samp_factor == 2 &&
468
272k
          dinfo->comp_info[0].v_samp_factor == 2 &&
469
147k
          (i == TJSAMP_422 || i == TJSAMP_440)) {
470
65.6k
        int match = 0;
471
472
199k
        for (k = 1; k < dinfo->num_components; k++) {
473
134k
          int href = tjMCUHeight[i] / 8, vref = tjMCUWidth[i] / 8;
474
475
134k
          if ((dinfo->jpeg_color_space == JCS_YCCK ||
476
132k
               dinfo->jpeg_color_space == JCS_CMYK) && k == 3) {
477
2.80k
            href = vref = 2;
478
2.80k
          }
479
134k
          if (dinfo->comp_info[k].h_samp_factor == href &&
480
110k
              dinfo->comp_info[k].v_samp_factor == vref)
481
13.6k
            match++;
482
134k
        }
483
65.6k
        if (match == dinfo->num_components - 1) {
484
4.87k
          retval = i;  break;
485
4.87k
        }
486
65.6k
      }
487
      /* Handle 4:4:4 images whose sampling factors are specified in
488
         non-standard ways. */
489
483k
      if (dinfo->comp_info[0].h_samp_factor *
490
483k
          dinfo->comp_info[0].v_samp_factor <=
491
483k
          D_MAX_BLOCKS_IN_MCU / 3 && i == TJSAMP_444) {
492
38.2k
        int match = 0;
493
117k
        for (k = 1; k < dinfo->num_components; k++) {
494
80.9k
          if (dinfo->comp_info[k].h_samp_factor ==
495
80.9k
              dinfo->comp_info[0].h_samp_factor &&
496
22.3k
              dinfo->comp_info[k].v_samp_factor ==
497
22.3k
              dinfo->comp_info[0].v_samp_factor)
498
7.10k
            match++;
499
80.9k
          if (match == dinfo->num_components - 1) {
500
1.46k
            retval = i;  break;
501
1.46k
          }
502
80.9k
        }
503
38.2k
      }
504
483k
    }
505
565k
  }
506
121k
  return retval;
507
262k
}
508
509
510
static void setDecompParameters(tjinstance *this)
511
227k
{
512
227k
  this->subsamp = getSubsamp(&this->dinfo);
513
227k
  this->jpegWidth = this->dinfo.image_width;
514
227k
  this->jpegHeight = this->dinfo.image_height;
515
227k
  this->precision = this->dinfo.data_precision;
516
227k
  switch (this->dinfo.jpeg_color_space) {
517
118k
  case JCS_GRAYSCALE:  this->colorspace = TJCS_GRAY;  break;
518
44.0k
  case JCS_RGB:        this->colorspace = TJCS_RGB;  break;
519
58.6k
  case JCS_YCbCr:      this->colorspace = TJCS_YCbCr;  break;
520
5.08k
  case JCS_CMYK:       this->colorspace = TJCS_CMYK;  break;
521
1.03k
  case JCS_YCCK:       this->colorspace = TJCS_YCCK;  break;
522
592
  default:             this->colorspace = -1;  break;
523
227k
  }
524
227k
  this->progressive = this->dinfo.progressive_mode;
525
227k
  this->arithmetic = this->dinfo.arith_code;
526
227k
  this->lossless = this->dinfo.master->lossless;
527
227k
  this->losslessPSV = this->dinfo.Ss;
528
227k
  this->losslessPt = this->dinfo.Al;
529
227k
  this->xDensity = this->dinfo.X_density;
530
227k
  this->yDensity = this->dinfo.Y_density;
531
227k
  this->densityUnits = this->dinfo.density_unit;
532
227k
}
533
534
535
static void processFlags(tjhandle handle, int flags, int operation)
536
0
{
537
0
  tjinstance *this = (tjinstance *)handle;
538
539
0
  this->bottomUp = !!(flags & TJFLAG_BOTTOMUP);
540
541
0
#ifndef NO_PUTENV
542
0
  if (flags & TJFLAG_FORCEMMX) PUTENV_S("JSIMD_FORCEMMX", "1");
543
0
  else if (flags & TJFLAG_FORCESSE) PUTENV_S("JSIMD_FORCESSE", "1");
544
0
  else if (flags & TJFLAG_FORCESSE2) PUTENV_S("JSIMD_FORCESSE2", "1");
545
0
#endif
546
547
0
  this->fastUpsample = !!(flags & TJFLAG_FASTUPSAMPLE);
548
0
  this->noRealloc = !!(flags & TJFLAG_NOREALLOC);
549
550
0
  if (operation == COMPRESS) {
551
0
    if (this->quality >= 96 || flags & TJFLAG_ACCURATEDCT)
552
0
      this->fastDCT = FALSE;
553
0
    else
554
0
      this->fastDCT = TRUE;
555
0
  } else
556
0
    this->fastDCT = !!(flags & TJFLAG_FASTDCT);
557
558
0
  this->jerr.stopOnWarning = !!(flags & TJFLAG_STOPONWARNING);
559
0
  this->progressive = !!(flags & TJFLAG_PROGRESSIVE);
560
561
0
  if (flags & TJFLAG_LIMITSCANS) this->scanLimit = 500;
562
0
}
563
564
565
/*************************** General API functions ***************************/
566
567
/* TurboJPEG 3+ */
568
DLLEXPORT tjhandle tj3Init(int initType)
569
291k
{
570
291k
  static const char FUNCTION_NAME[] = "tj3Init";
571
291k
  tjinstance *this = NULL;
572
291k
  tjhandle retval = NULL;
573
574
291k
  if (initType < 0 || initType >= TJ_NUMINIT)
575
291k
    THROWG("Invalid argument", NULL);
576
577
291k
  if ((this = (tjinstance *)malloc(sizeof(tjinstance))) == NULL)
578
291k
    THROWG("Memory allocation failure", NULL);
579
291k
  memset(this, 0, sizeof(tjinstance));
580
291k
  SNPRINTF(this->errStr, JMSG_LENGTH_MAX, "No error");
581
582
291k
  this->quality = -1;
583
291k
  this->subsamp = TJSAMP_UNKNOWN;
584
291k
  this->jpegWidth = -1;
585
291k
  this->jpegHeight = -1;
586
291k
  this->precision = 8;
587
291k
  this->colorspace = -1;
588
291k
  this->losslessPSV = 1;
589
291k
  this->xDensity = 1;
590
291k
  this->yDensity = 1;
591
291k
  this->scalingFactor = TJUNSCALED;
592
593
291k
  switch (initType) {
594
258k
  case TJINIT_COMPRESS:  return _tjInitCompress(this);
595
27.1k
  case TJINIT_DECOMPRESS:  return _tjInitDecompress(this);
596
6.13k
  case TJINIT_TRANSFORM:
597
6.13k
    retval = _tjInitCompress(this);
598
6.13k
    if (!retval) return NULL;
599
6.13k
    retval = _tjInitDecompress(this);
600
6.13k
    return retval;
601
291k
  }
602
603
0
bailout:
604
0
  return retval;
605
291k
}
606
607
608
/* TurboJPEG 3+ */
609
DLLEXPORT void tj3Destroy(tjhandle handle)
610
637k
{
611
637k
  tjinstance *this = (tjinstance *)handle;
612
637k
  j_compress_ptr cinfo = NULL;
613
637k
  j_decompress_ptr dinfo = NULL;
614
615
637k
  if (!this) return;
616
617
637k
  cinfo = &this->cinfo;  dinfo = &this->dinfo;
618
637k
  this->jerr.warning = FALSE;
619
637k
  this->isInstanceError = FALSE;
620
621
  /* NOTE: jpeg_destroy_*() can never throw a libjpeg error in libjpeg-turbo's
622
     implementation, so this is a belt-and-suspenders measure. */
623
637k
  if (setjmp(this->jerr.setjmp_buffer)) goto destroy_decompress;
624
637k
  if (this->init & COMPRESS) jpeg_destroy_compress(cinfo);
625
637k
destroy_decompress:
626
637k
  if (setjmp(this->jerr.setjmp_buffer)) goto bailout;
627
637k
  if (this->init & DECOMPRESS) jpeg_destroy_decompress(dinfo);
628
637k
bailout:
629
637k
  free(this);
630
637k
}
631
632
/* TurboJPEG 1.0+ */
633
DLLEXPORT int tjDestroy(tjhandle handle)
634
0
{
635
0
  static const char FUNCTION_NAME[] = "tjDestroy";
636
0
  int retval = 0;
637
638
0
  if (!handle) THROWG("Invalid handle", -1);
639
640
0
  SNPRINTF(errStr, JMSG_LENGTH_MAX, "No error");
641
0
  tj3Destroy(handle);
642
0
  if (strcmp(errStr, "No error")) retval = -1;
643
644
0
bailout:
645
0
  return retval;
646
0
}
647
648
649
/* TurboJPEG 3+ */
650
DLLEXPORT char *tj3GetErrorStr(tjhandle handle)
651
168k
{
652
168k
  tjinstance *this = (tjinstance *)handle;
653
654
168k
  if (this && this->isInstanceError) {
655
65.2k
    this->isInstanceError = FALSE;
656
65.2k
    return this->errStr;
657
65.2k
  } else
658
102k
    return errStr;
659
168k
}
660
661
/* TurboJPEG 2.0+ */
662
DLLEXPORT char *tjGetErrorStr2(tjhandle handle)
663
0
{
664
0
  return tj3GetErrorStr(handle);
665
0
}
666
667
/* TurboJPEG 1.0+ */
668
DLLEXPORT char *tjGetErrorStr(void)
669
0
{
670
0
  return errStr;
671
0
}
672
673
674
/* TurboJPEG 3+ */
675
DLLEXPORT int tj3GetErrorCode(tjhandle handle)
676
0
{
677
0
  tjinstance *this = (tjinstance *)handle;
678
679
0
  if (this && this->jerr.warning) return TJERR_WARNING;
680
0
  else return TJERR_FATAL;
681
0
}
682
683
/* TurboJPEG 2.0+ */
684
DLLEXPORT int tjGetErrorCode(tjhandle handle)
685
0
{
686
0
  return tj3GetErrorCode(handle);
687
0
}
688
689
690
360k
#define SET_PARAM(field, minValue, maxValue) { \
691
360k
  if (value < minValue || (maxValue > 0 && value > maxValue)) \
692
360k
    THROW("Parameter value out of range"); \
693
360k
  this->field = value; \
694
360k
}
695
696
577k
#define SET_BOOL_PARAM(field) { \
697
577k
  if (value < 0 || value > 1) \
698
577k
    THROW("Parameter value out of range"); \
699
577k
  this->field = (boolean)value; \
700
577k
}
701
702
/* TurboJPEG 3+ */
703
DLLEXPORT int tj3Set(tjhandle handle, int param, int value)
704
938k
{
705
938k
  static const char FUNCTION_NAME[] = "tj3Set";
706
938k
  int retval = 0;
707
708
938k
  GET_TJINSTANCE(handle, -1);
709
710
938k
  switch (param) {
711
0
  case TJPARAM_STOPONWARNING:
712
0
    SET_BOOL_PARAM(jerr.stopOnWarning);
713
0
    break;
714
141k
  case TJPARAM_BOTTOMUP:
715
141k
    SET_BOOL_PARAM(bottomUp);
716
141k
    break;
717
108k
  case TJPARAM_NOREALLOC:
718
108k
    if (!(this->init & COMPRESS))
719
108k
      THROW("TJPARAM_NOREALLOC is not applicable to decompression instances.");
720
108k
    SET_BOOL_PARAM(noRealloc);
721
108k
    break;
722
39.1k
  case TJPARAM_QUALITY:
723
39.1k
    if (!(this->init & COMPRESS))
724
39.1k
      THROW("TJPARAM_QUALITY is not applicable to decompression instances.");
725
39.1k
    SET_PARAM(quality, 1, 100);
726
39.1k
    break;
727
39.1k
  case TJPARAM_SUBSAMP:
728
39.1k
    SET_PARAM(subsamp, 0, TJ_NUMSAMP - 1);
729
39.1k
    break;
730
0
  case TJPARAM_JPEGWIDTH:
731
0
    if (!(this->init & DECOMPRESS))
732
0
      THROW("TJPARAM_JPEGWIDTH is not applicable to compression instances.");
733
0
    THROW("TJPARAM_JPEGWIDTH is read-only in decompression instances.");
734
0
    break;
735
0
  case TJPARAM_JPEGHEIGHT:
736
0
    if (!(this->init & DECOMPRESS))
737
0
      THROW("TJPARAM_JPEGHEIGHT is not applicable to compression instances.");
738
0
    THROW("TJPARAM_JPEGHEIGHT is read-only in decompression instances.");
739
0
    break;
740
0
  case TJPARAM_PRECISION:
741
0
    if (!(this->init & DECOMPRESS))
742
0
      THROW("TJPARAM_PRECISION is not applicable to compression instances.");
743
0
    THROW("TJPARAM_PRECISION is read-only in decompression instances.");
744
0
    break;
745
0
  case TJPARAM_COLORSPACE:
746
0
    if (!(this->init & COMPRESS))
747
0
      THROW("TJPARAM_COLORSPACE is read-only in decompression instances.");
748
0
    SET_PARAM(colorspace, 0, TJ_NUMCS - 1);
749
0
    break;
750
33.0k
  case TJPARAM_FASTUPSAMPLE:
751
33.0k
    if (!(this->init & DECOMPRESS))
752
33.0k
      THROW("TJPARAM_FASTUPSAMPLE is not applicable to compression instances.");
753
33.0k
    SET_BOOL_PARAM(fastUpsample);
754
33.0k
    break;
755
94.9k
  case TJPARAM_FASTDCT:
756
94.9k
    SET_BOOL_PARAM(fastDCT);
757
94.9k
    break;
758
47.8k
  case TJPARAM_OPTIMIZE:
759
47.8k
    if (!(this->init & COMPRESS))
760
47.8k
      THROW("TJPARAM_OPTIMIZE is not applicable to decompression instances.");
761
47.8k
    SET_BOOL_PARAM(optimize);
762
47.8k
    break;
763
68.5k
  case TJPARAM_PROGRESSIVE:
764
68.5k
    if (!(this->init & COMPRESS))
765
68.5k
      THROW("TJPARAM_PROGRESSIVE is read-only in decompression instances.");
766
68.5k
    SET_BOOL_PARAM(progressive);
767
68.5k
    break;
768
37.5k
  case TJPARAM_SCANLIMIT:
769
37.5k
    if (!(this->init & DECOMPRESS))
770
37.5k
      THROW("TJPARAM_SCANLIMIT is not applicable to compression instances.");
771
37.5k
    SET_PARAM(scanLimit, 0, -1);
772
37.5k
    break;
773
68.5k
  case TJPARAM_ARITHMETIC:
774
68.5k
    if (!(this->init & COMPRESS))
775
68.5k
      THROW("TJPARAM_ARITHMETIC is read-only in decompression instances.");
776
68.5k
    SET_BOOL_PARAM(arithmetic);
777
68.5k
    break;
778
13.6k
  case TJPARAM_LOSSLESS:
779
13.6k
    if (!(this->init & COMPRESS))
780
13.6k
      THROW("TJPARAM_LOSSLESS is read-only in decompression instances.");
781
13.6k
    SET_BOOL_PARAM(lossless);
782
13.6k
    break;
783
13.6k
  case TJPARAM_LOSSLESSPSV:
784
13.6k
    if (!(this->init & COMPRESS))
785
13.6k
      THROW("TJPARAM_LOSSLESSPSV is read-only in decompression instances.");
786
13.6k
    SET_PARAM(losslessPSV, 1, 7);
787
13.6k
    break;
788
13.6k
  case TJPARAM_LOSSLESSPT:
789
13.6k
    if (!(this->init & COMPRESS))
790
13.6k
      THROW("TJPARAM_LOSSLESSPT is read-only in decompression instances.");
791
13.6k
    SET_PARAM(losslessPt, 0, 15);
792
13.6k
    break;
793
20.8k
  case TJPARAM_RESTARTBLOCKS:
794
20.8k
    if (!(this->init & COMPRESS))
795
20.8k
      THROW("TJPARAM_RESTARTBLOCKS is not applicable to decompression instances.");
796
20.8k
    SET_PARAM(restartIntervalBlocks, 0, 65535);
797
20.8k
    if (value != 0) this->restartIntervalRows = 0;
798
20.8k
    break;
799
87.9k
  case TJPARAM_RESTARTROWS:
800
87.9k
    if (!(this->init & COMPRESS))
801
87.9k
      THROW("TJPARAM_RESTARTROWS is not applicable to decompression instances.");
802
87.9k
    SET_PARAM(restartIntervalRows, 0, 65535);
803
87.9k
    if (value != 0) this->restartIntervalBlocks = 0;
804
87.9k
    break;
805
0
  case TJPARAM_XDENSITY:
806
0
    if (!(this->init & COMPRESS))
807
0
      THROW("TJPARAM_XDENSITY is read-only in decompression instances.");
808
0
    SET_PARAM(xDensity, 1, 65535);
809
0
    break;
810
0
  case TJPARAM_YDENSITY:
811
0
    if (!(this->init & COMPRESS))
812
0
      THROW("TJPARAM_YDENSITY is read-only in decompression instances.");
813
0
    SET_PARAM(yDensity, 1, 65535);
814
0
    break;
815
0
  case TJPARAM_DENSITYUNITS:
816
0
    if (!(this->init & COMPRESS))
817
0
      THROW("TJPARAM_DENSITYUNITS is read-only in decompression instances.");
818
0
    SET_PARAM(densityUnits, 0, 2);
819
0
    break;
820
0
  case TJPARAM_MAXMEMORY:
821
0
    SET_PARAM(maxMemory, 0, (int)(min(LONG_MAX / 1048576L, (long)INT_MAX)));
822
0
    break;
823
108k
  case TJPARAM_MAXPIXELS:
824
108k
    SET_PARAM(maxPixels, 0, -1);
825
108k
    break;
826
0
  default:
827
0
    THROW("Invalid parameter");
828
938k
  }
829
830
938k
bailout:
831
938k
  return retval;
832
938k
}
833
834
835
/* TurboJPEG 3+ */
836
DLLEXPORT int tj3Get(tjhandle handle, int param)
837
118k
{
838
118k
  tjinstance *this = (tjinstance *)handle;
839
118k
  if (!this) return -1;
840
841
118k
  switch (param) {
842
0
  case TJPARAM_STOPONWARNING:
843
0
    return this->jerr.stopOnWarning;
844
0
  case TJPARAM_BOTTOMUP:
845
0
    return this->bottomUp;
846
41.6k
  case TJPARAM_NOREALLOC:
847
41.6k
    return this->noRealloc;
848
0
  case TJPARAM_QUALITY:
849
0
    return this->quality;
850
6.09k
  case TJPARAM_SUBSAMP:
851
6.09k
    return this->subsamp;
852
13.1k
  case TJPARAM_JPEGWIDTH:
853
13.1k
    return this->jpegWidth;
854
13.1k
  case TJPARAM_JPEGHEIGHT:
855
13.1k
    return this->jpegHeight;
856
7.05k
  case TJPARAM_PRECISION:
857
7.05k
    return this->precision;
858
0
  case TJPARAM_COLORSPACE:
859
0
    return this->colorspace;
860
0
  case TJPARAM_FASTUPSAMPLE:
861
0
    return this->fastUpsample;
862
0
  case TJPARAM_FASTDCT:
863
0
    return this->fastDCT;
864
0
  case TJPARAM_OPTIMIZE:
865
0
    return this->optimize;
866
0
  case TJPARAM_PROGRESSIVE:
867
0
    return this->progressive;
868
0
  case TJPARAM_SCANLIMIT:
869
0
    return this->scanLimit;
870
0
  case TJPARAM_ARITHMETIC:
871
0
    return this->arithmetic;
872
37.5k
  case TJPARAM_LOSSLESS:
873
37.5k
    return this->lossless;
874
0
  case TJPARAM_LOSSLESSPSV:
875
0
    return this->losslessPSV;
876
0
  case TJPARAM_LOSSLESSPT:
877
0
    return this->losslessPt;
878
0
  case TJPARAM_RESTARTBLOCKS:
879
0
    return this->restartIntervalBlocks;
880
0
  case TJPARAM_RESTARTROWS:
881
0
    return this->restartIntervalRows;
882
0
  case TJPARAM_XDENSITY:
883
0
    return this->xDensity;
884
0
  case TJPARAM_YDENSITY:
885
0
    return this->yDensity;
886
0
  case TJPARAM_DENSITYUNITS:
887
0
    return this->densityUnits;
888
0
  case TJPARAM_MAXMEMORY:
889
0
    return this->maxMemory;
890
0
  case TJPARAM_MAXPIXELS:
891
0
    return this->maxPixels;
892
118k
  }
893
894
0
  return -1;
895
118k
}
896
897
898
/* These are exposed mainly because Windows can't malloc() and free() across
899
   DLL boundaries except when the CRT DLL is used, and we don't use the CRT DLL
900
   with turbojpeg.dll for compatibility reasons.  However, these functions
901
   can potentially be used for other purposes by different implementations. */
902
903
/* TurboJPEG 3+ */
904
DLLEXPORT void *tj3Alloc(size_t bytes)
905
410k
{
906
410k
  return MALLOC(bytes);
907
410k
}
908
909
/* TurboJPEG 1.2+ */
910
DLLEXPORT unsigned char *tjAlloc(int bytes)
911
0
{
912
0
  return (unsigned char *)tj3Alloc((size_t)bytes);
913
0
}
914
915
916
/* TurboJPEG 3+ */
917
DLLEXPORT void tj3Free(void *buf)
918
893k
{
919
893k
  free(buf);
920
893k
}
921
922
/* TurboJPEG 1.2+ */
923
DLLEXPORT void tjFree(unsigned char *buf)
924
0
{
925
0
  tj3Free(buf);
926
0
}
927
928
929
/* TurboJPEG 3+ */
930
DLLEXPORT size_t tj3JPEGBufSize(int width, int height, int jpegSubsamp)
931
299k
{
932
299k
  static const char FUNCTION_NAME[] = "tj3JPEGBufSize";
933
299k
  unsigned long long retval = 0;
934
299k
  int mcuw, mcuh, chromasf;
935
936
299k
  if (width < 1 || height < 1 || jpegSubsamp < TJSAMP_UNKNOWN ||
937
299k
      jpegSubsamp >= TJ_NUMSAMP)
938
299k
    THROWG("Invalid argument", 0);
939
940
299k
  if (jpegSubsamp == TJSAMP_UNKNOWN)
941
16.3k
    jpegSubsamp = TJSAMP_444;
942
943
  /* This allows for rare corner cases in which a JPEG image can actually be
944
     larger than the uncompressed input (we wouldn't mention it if it hadn't
945
     happened before.) */
946
299k
  mcuw = tjMCUWidth[jpegSubsamp];
947
299k
  mcuh = tjMCUHeight[jpegSubsamp];
948
299k
  chromasf = jpegSubsamp == TJSAMP_GRAY ? 0 : 4 * 64 / (mcuw * mcuh);
949
299k
  retval = (unsigned long long)PAD(width, mcuw) * PAD(height, mcuh) *
950
299k
           (2ULL + chromasf) + 2048ULL;
951
#if ULLONG_MAX > ULONG_MAX
952
  if (retval > (unsigned long long)((unsigned long)-1))
953
    THROWG("Image is too large", 0);
954
#endif
955
956
299k
bailout:
957
299k
  return (size_t)retval;
958
299k
}
959
960
/* TurboJPEG 1.2+ */
961
DLLEXPORT unsigned long tjBufSize(int width, int height, int jpegSubsamp)
962
0
{
963
0
  static const char FUNCTION_NAME[] = "tjBufSize";
964
0
  size_t retval;
965
966
0
  if (jpegSubsamp < 0)
967
0
    THROWG("Invalid argument", 0);
968
969
0
  retval = tj3JPEGBufSize(width, height, jpegSubsamp);
970
971
0
bailout:
972
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
973
0
}
974
975
/* TurboJPEG 1.0+ */
976
DLLEXPORT unsigned long TJBUFSIZE(int width, int height)
977
0
{
978
0
  static const char FUNCTION_NAME[] = "TJBUFSIZE";
979
0
  unsigned long long retval = 0;
980
981
0
  if (width < 1 || height < 1)
982
0
    THROWG("Invalid argument", (unsigned long)-1);
983
984
  /* This allows for rare corner cases in which a JPEG image can actually be
985
     larger than the uncompressed input (we wouldn't mention it if it hadn't
986
     happened before.) */
987
0
  retval = (unsigned long long)PAD(width, 16) * PAD(height, 16) * 6ULL +
988
0
           2048ULL;
989
#if ULLONG_MAX > ULONG_MAX
990
  if (retval > (unsigned long long)((unsigned long)-1))
991
    THROWG("Image is too large", (unsigned long)-1);
992
#endif
993
994
0
bailout:
995
0
  return (unsigned long)retval;
996
0
}
997
998
999
/* TurboJPEG 3+ */
1000
DLLEXPORT size_t tj3YUVBufSize(int width, int align, int height, int subsamp)
1001
83.9k
{
1002
83.9k
  static const char FUNCTION_NAME[] = "tj3YUVBufSize";
1003
83.9k
  unsigned long long retval = 0;
1004
83.9k
  int nc, i;
1005
1006
83.9k
  if (align < 1 || !IS_POW2(align) || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1007
82.8k
    THROWG("Invalid argument", 0);
1008
1009
82.8k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1010
1011
263k
  for (i = 0; i < nc; i++) {
1012
180k
    int pw = tj3YUVPlaneWidth(i, width, subsamp);
1013
180k
    unsigned long long stride = PAD((unsigned long long)pw, align);
1014
180k
    int ph = tj3YUVPlaneHeight(i, height, subsamp);
1015
1016
180k
    if (pw == 0 || ph == 0) return 0;
1017
180k
    else retval += stride * ph;
1018
180k
  }
1019
#if ULLONG_MAX > ULONG_MAX
1020
  if (retval > (unsigned long long)((unsigned long)-1))
1021
    THROWG("Image is too large", 0);
1022
#endif
1023
1024
83.9k
bailout:
1025
83.9k
  return (size_t)retval;
1026
82.8k
}
1027
1028
/* TurboJPEG 1.4+ */
1029
DLLEXPORT unsigned long tjBufSizeYUV2(int width, int align, int height,
1030
                                      int subsamp)
1031
0
{
1032
0
  size_t retval = tj3YUVBufSize(width, align, height, subsamp);
1033
0
  return (retval == 0) ? (unsigned long)-1 : (unsigned long)retval;
1034
0
}
1035
1036
/* TurboJPEG 1.2+ */
1037
DLLEXPORT unsigned long tjBufSizeYUV(int width, int height, int subsamp)
1038
0
{
1039
0
  return tjBufSizeYUV2(width, 4, height, subsamp);
1040
0
}
1041
1042
/* TurboJPEG 1.1+ */
1043
DLLEXPORT unsigned long TJBUFSIZEYUV(int width, int height, int subsamp)
1044
0
{
1045
0
  return tjBufSizeYUV(width, height, subsamp);
1046
0
}
1047
1048
1049
/* TurboJPEG 3+ */
1050
DLLEXPORT size_t tj3YUVPlaneSize(int componentID, int width, int stride,
1051
                                 int height, int subsamp)
1052
0
{
1053
0
  static const char FUNCTION_NAME[] = "tj3YUVPlaneSize";
1054
0
  unsigned long long retval = 0;
1055
0
  int pw, ph;
1056
1057
0
  if (width < 1 || height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1058
0
    THROWG("Invalid argument", 0);
1059
1060
0
  pw = tj3YUVPlaneWidth(componentID, width, subsamp);
1061
0
  ph = tj3YUVPlaneHeight(componentID, height, subsamp);
1062
0
  if (pw == 0 || ph == 0) return 0;
1063
1064
0
  if (stride == 0) stride = pw;
1065
0
  else stride = abs(stride);
1066
1067
0
  retval = (unsigned long long)stride * (ph - 1) + pw;
1068
#if ULLONG_MAX > ULONG_MAX
1069
  if (retval > (unsigned long long)((unsigned long)-1))
1070
    THROWG("Image is too large", 0);
1071
#endif
1072
1073
0
bailout:
1074
0
  return (size_t)retval;
1075
0
}
1076
1077
/* TurboJPEG 1.4+ */
1078
DLLEXPORT unsigned long tjPlaneSizeYUV(int componentID, int width, int stride,
1079
                                       int height, int subsamp)
1080
0
{
1081
0
  size_t retval = tj3YUVPlaneSize(componentID, width, stride, height, subsamp);
1082
0
  return (retval == 0) ? -1 : (unsigned long)retval;
1083
0
}
1084
1085
1086
/* TurboJPEG 3+ */
1087
DLLEXPORT int tj3YUVPlaneWidth(int componentID, int width, int subsamp)
1088
472k
{
1089
472k
  static const char FUNCTION_NAME[] = "tj3YUVPlaneWidth";
1090
472k
  unsigned long long pw, retval = 0;
1091
472k
  int nc;
1092
1093
472k
  if (width < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1094
472k
    THROWG("Invalid argument", 0);
1095
472k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1096
472k
  if (componentID < 0 || componentID >= nc)
1097
472k
    THROWG("Invalid argument", 0);
1098
1099
472k
  pw = PAD((unsigned long long)width, tjMCUWidth[subsamp] / 8);
1100
472k
  if (componentID == 0)
1101
250k
    retval = pw;
1102
221k
  else
1103
221k
    retval = pw * 8 / tjMCUWidth[subsamp];
1104
1105
472k
  if (retval > (unsigned long long)INT_MAX)
1106
472k
    THROWG("Width is too large", 0);
1107
1108
472k
bailout:
1109
472k
  return (int)retval;
1110
472k
}
1111
1112
/* TurboJPEG 1.4+ */
1113
DLLEXPORT int tjPlaneWidth(int componentID, int width, int subsamp)
1114
23.3k
{
1115
23.3k
  int retval = tj3YUVPlaneWidth(componentID, width, subsamp);
1116
23.3k
  return (retval == 0) ? -1 : retval;
1117
23.3k
}
1118
1119
1120
/* TurboJPEG 3+ */
1121
DLLEXPORT int tj3YUVPlaneHeight(int componentID, int height, int subsamp)
1122
472k
{
1123
472k
  static const char FUNCTION_NAME[] = "tj3YUVPlaneHeight";
1124
472k
  unsigned long long ph, retval = 0;
1125
472k
  int nc;
1126
1127
472k
  if (height < 1 || subsamp < 0 || subsamp >= TJ_NUMSAMP)
1128
472k
    THROWG("Invalid argument", 0);
1129
472k
  nc = (subsamp == TJSAMP_GRAY ? 1 : 3);
1130
472k
  if (componentID < 0 || componentID >= nc)
1131
472k
    THROWG("Invalid argument", 0);
1132
1133
472k
  ph = PAD((unsigned long long)height, tjMCUHeight[subsamp] / 8);
1134
472k
  if (componentID == 0)
1135
250k
    retval = ph;
1136
221k
  else
1137
221k
    retval = ph * 8 / tjMCUHeight[subsamp];
1138
1139
472k
  if (retval > (unsigned long long)INT_MAX)
1140
472k
    THROWG("Height is too large", 0);
1141
1142
472k
bailout:
1143
472k
  return (int)retval;
1144
472k
}
1145
1146
/* TurboJPEG 1.4+ */
1147
DLLEXPORT int tjPlaneHeight(int componentID, int height, int subsamp)
1148
23.3k
{
1149
23.3k
  int retval = tj3YUVPlaneHeight(componentID, height, subsamp);
1150
23.3k
  return (retval == 0) ? -1 : retval;
1151
23.3k
}
1152
1153
1154
/******************************** Compressor *********************************/
1155
1156
static tjhandle _tjInitCompress(tjinstance *this)
1157
596k
{
1158
596k
  static unsigned char buffer[1];
1159
596k
  unsigned char *buf = buffer;
1160
596k
  size_t size = 1;
1161
1162
  /* This is also straight out of example.c */
1163
596k
  this->cinfo.err = jpeg_std_error(&this->jerr.pub);
1164
596k
  this->jerr.pub.error_exit = my_error_exit;
1165
596k
  this->jerr.pub.output_message = my_output_message;
1166
596k
  this->jerr.emit_message = this->jerr.pub.emit_message;
1167
596k
  this->jerr.pub.emit_message = my_emit_message;
1168
596k
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1169
596k
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1170
596k
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1171
1172
596k
  if (setjmp(this->jerr.setjmp_buffer)) {
1173
    /* If we get here, the JPEG code has signaled an error. */
1174
0
    free(this);
1175
0
    return NULL;
1176
0
  }
1177
1178
596k
  jpeg_create_compress(&this->cinfo);
1179
  /* Make an initial call so it will create the destination manager */
1180
596k
  jpeg_mem_dest_tj(&this->cinfo, &buf, &size, 0);
1181
1182
596k
  this->init |= COMPRESS;
1183
596k
  return (tjhandle)this;
1184
596k
}
1185
1186
/* TurboJPEG 1.0+ */
1187
DLLEXPORT tjhandle tjInitCompress(void)
1188
0
{
1189
0
  return tj3Init(TJINIT_COMPRESS);
1190
0
}
1191
1192
1193
/* tj3Compress*() is implemented in turbojpeg-mp.c */
1194
65.9k
#define BITS_IN_JSAMPLE  8
1195
#include "turbojpeg-mp.c"
1196
#undef BITS_IN_JSAMPLE
1197
45.9k
#define BITS_IN_JSAMPLE  12
1198
#include "turbojpeg-mp.c"
1199
#undef BITS_IN_JSAMPLE
1200
14.2k
#define BITS_IN_JSAMPLE  16
1201
#include "turbojpeg-mp.c"
1202
#undef BITS_IN_JSAMPLE
1203
1204
/* TurboJPEG 1.2+ */
1205
DLLEXPORT int tjCompress2(tjhandle handle, const unsigned char *srcBuf,
1206
                          int width, int pitch, int height, int pixelFormat,
1207
                          unsigned char **jpegBuf, unsigned long *jpegSize,
1208
                          int jpegSubsamp, int jpegQual, int flags)
1209
0
{
1210
0
  static const char FUNCTION_NAME[] = "tjCompress2";
1211
0
  int retval = 0;
1212
0
  size_t size;
1213
1214
0
  GET_TJINSTANCE(handle, -1);
1215
1216
0
  if (jpegSize == NULL || jpegSubsamp < 0 || jpegSubsamp >= TJ_NUMSAMP ||
1217
0
      jpegQual < 0 || jpegQual > 100)
1218
0
    THROW("Invalid argument");
1219
1220
0
  this->quality = jpegQual;
1221
0
  this->subsamp = jpegSubsamp;
1222
0
  processFlags(handle, flags, COMPRESS);
1223
1224
0
  size = (size_t)(*jpegSize);
1225
0
  retval = tj3Compress8(handle, srcBuf, width, pitch, height, pixelFormat,
1226
0
                        jpegBuf, &size);
1227
0
  *jpegSize = (unsigned long)size;
1228
1229
0
bailout:
1230
0
  return retval;
1231
0
}
1232
1233
/* TurboJPEG 1.0+ */
1234
DLLEXPORT int tjCompress(tjhandle handle, unsigned char *srcBuf, int width,
1235
                         int pitch, int height, int pixelSize,
1236
                         unsigned char *jpegBuf, unsigned long *jpegSize,
1237
                         int jpegSubsamp, int jpegQual, int flags)
1238
0
{
1239
0
  int retval = 0;
1240
0
  unsigned long size = jpegSize ? *jpegSize : 0;
1241
1242
0
  if (flags & TJ_YUV) {
1243
0
    size = tjBufSizeYUV(width, height, jpegSubsamp);
1244
0
    retval = tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1245
0
                          getPixelFormat(pixelSize, flags), jpegBuf,
1246
0
                          jpegSubsamp, flags);
1247
0
  } else {
1248
0
    retval = tjCompress2(handle, srcBuf, width, pitch, height,
1249
0
                         getPixelFormat(pixelSize, flags), &jpegBuf, &size,
1250
0
                         jpegSubsamp, jpegQual, flags | TJFLAG_NOREALLOC);
1251
0
  }
1252
0
  *jpegSize = size;
1253
0
  return retval;
1254
0
}
1255
1256
1257
/* TurboJPEG 3+ */
1258
DLLEXPORT int tj3CompressFromYUVPlanes8(tjhandle handle,
1259
                                        const unsigned char * const *srcPlanes,
1260
                                        int width, const int *strides,
1261
                                        int height, unsigned char **jpegBuf,
1262
                                        size_t *jpegSize)
1263
11.1k
{
1264
11.1k
  static const char FUNCTION_NAME[] = "tj3CompressFromYUVPlanes8";
1265
11.1k
  int i, row, retval = 0;
1266
11.1k
  boolean alloc = TRUE;
1267
11.1k
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
1268
11.1k
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
1269
11.1k
  JSAMPLE *_tmpbuf = NULL, *ptr;
1270
11.1k
  JSAMPROW *inbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
1271
1272
11.1k
  GET_CINSTANCE(handle)
1273
1274
123k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1275
111k
    tmpbuf[i] = NULL;  inbuf[i] = NULL;
1276
111k
  }
1277
1278
11.1k
  if ((this->init & COMPRESS) == 0)
1279
11.1k
    THROW("Instance has not been initialized for compression");
1280
1281
11.1k
  if (!srcPlanes || !srcPlanes[0] || width <= 0 || height <= 0 ||
1282
11.1k
      jpegBuf == NULL || jpegSize == NULL)
1283
11.1k
    THROW("Invalid argument");
1284
11.1k
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
1285
11.1k
    THROW("Invalid argument");
1286
1287
11.1k
  if (this->quality == -1)
1288
11.1k
    THROW("TJPARAM_QUALITY must be specified");
1289
11.1k
  if (this->subsamp == TJSAMP_UNKNOWN)
1290
11.1k
    THROW("TJPARAM_SUBSAMP must be specified");
1291
1292
11.1k
  CATCH_LIBJPEG(this);
1293
1294
11.1k
  cinfo->image_width = width;
1295
11.1k
  cinfo->image_height = height;
1296
11.1k
  cinfo->data_precision = 8;
1297
1298
11.1k
  if (this->noRealloc) {
1299
11.1k
    alloc = FALSE;  *jpegSize = tj3JPEGBufSize(width, height, this->subsamp);
1300
11.1k
  }
1301
11.1k
  jpeg_mem_dest_tj(cinfo, jpegBuf, jpegSize, alloc);
1302
11.1k
  setCompDefaults(this, TJPF_RGB, TRUE);
1303
11.1k
  cinfo->raw_data_in = TRUE;
1304
1305
11.1k
  jpeg_start_compress(cinfo, TRUE);
1306
37.6k
  for (i = 0; i < cinfo->num_components; i++) {
1307
26.4k
    jpeg_component_info *compptr = &cinfo->comp_info[i];
1308
26.4k
    int ih;
1309
1310
26.4k
    iw[i] = compptr->width_in_blocks * DCTSIZE;
1311
26.4k
    ih = compptr->height_in_blocks * DCTSIZE;
1312
26.4k
    pw[i] = PAD(cinfo->image_width, cinfo->max_h_samp_factor) *
1313
26.4k
            compptr->h_samp_factor / cinfo->max_h_samp_factor;
1314
26.4k
    if (strides && strides[i] != 0 && strides[i] < pw[i])
1315
26.4k
      THROW("Invalid argument");
1316
26.4k
    ph[i] = PAD(cinfo->image_height, cinfo->max_v_samp_factor) *
1317
26.4k
            compptr->v_samp_factor / cinfo->max_v_samp_factor;
1318
26.4k
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
1319
26.4k
    th[i] = compptr->v_samp_factor * DCTSIZE;
1320
26.4k
    tmpbufsize += iw[i] * th[i];
1321
26.4k
    if ((inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
1322
26.4k
      THROW("Memory allocation failure");
1323
26.4k
    ptr = (JSAMPLE *)srcPlanes[i];
1324
73.0M
    for (row = 0; row < ph[i]; row++) {
1325
73.0M
      inbuf[i][row] = ptr;
1326
73.0M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1327
73.0M
    }
1328
26.4k
  }
1329
11.1k
  if (usetmpbuf) {
1330
11.1k
    if ((_tmpbuf = (JSAMPLE *)malloc(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
1331
11.1k
      THROW("Memory allocation failure");
1332
11.1k
    ptr = _tmpbuf;
1333
37.4k
    for (i = 0; i < cinfo->num_components; i++) {
1334
26.3k
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
1335
26.3k
        THROW("Memory allocation failure");
1336
252k
      for (row = 0; row < th[i]; row++) {
1337
226k
        tmpbuf[i][row] = ptr;
1338
226k
        ptr += iw[i];
1339
226k
      }
1340
26.3k
    }
1341
11.1k
  }
1342
1343
11.1k
  CATCH_LIBJPEG(this);
1344
1345
3.87M
  for (row = 0; row < (int)cinfo->image_height;
1346
3.86M
       row += cinfo->max_v_samp_factor * DCTSIZE) {
1347
3.86M
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
1348
3.86M
    int crow[MAX_COMPONENTS];
1349
1350
12.6M
    for (i = 0; i < cinfo->num_components; i++) {
1351
8.79M
      jpeg_component_info *compptr = &cinfo->comp_info[i];
1352
1353
8.79M
      crow[i] = row * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1354
8.79M
      if (usetmpbuf) {
1355
8.79M
        int j, k;
1356
1357
81.8M
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
1358
73.0M
          memcpy(tmpbuf[i][j], inbuf[i][crow[i] + j], pw[i]);
1359
          /* Duplicate last sample in row to fill out MCU */
1360
555M
          for (k = pw[i]; k < iw[i]; k++)
1361
482M
            tmpbuf[i][j][k] = tmpbuf[i][j][pw[i] - 1];
1362
73.0M
        }
1363
        /* Duplicate last row to fill out MCU */
1364
8.93M
        for (j = ph[i] - crow[i]; j < th[i]; j++)
1365
145k
          memcpy(tmpbuf[i][j], tmpbuf[i][ph[i] - crow[i] - 1], iw[i]);
1366
8.79M
        yuvptr[i] = tmpbuf[i];
1367
8.79M
      } else
1368
356
        yuvptr[i] = &inbuf[i][crow[i]];
1369
8.79M
    }
1370
3.86M
    jpeg_write_raw_data(cinfo, yuvptr, cinfo->max_v_samp_factor * DCTSIZE);
1371
3.86M
  }
1372
11.1k
  jpeg_finish_compress(cinfo);
1373
1374
11.1k
bailout:
1375
11.1k
  if (cinfo->global_state > CSTATE_START && alloc)
1376
0
    (*cinfo->dest->term_destination) (cinfo);
1377
11.1k
  if (cinfo->global_state > CSTATE_START || retval == -1)
1378
0
    jpeg_abort_compress(cinfo);
1379
123k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1380
111k
    free(tmpbuf[i]);
1381
111k
    free(inbuf[i]);
1382
111k
  }
1383
11.1k
  free(_tmpbuf);
1384
11.1k
  if (this->jerr.warning) retval = -1;
1385
11.1k
  return retval;
1386
11.1k
}
1387
1388
/* TurboJPEG 1.4+ */
1389
DLLEXPORT int tjCompressFromYUVPlanes(tjhandle handle,
1390
                                      const unsigned char **srcPlanes,
1391
                                      int width, const int *strides,
1392
                                      int height, int subsamp,
1393
                                      unsigned char **jpegBuf,
1394
                                      unsigned long *jpegSize, int jpegQual,
1395
                                      int flags)
1396
0
{
1397
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUVPlanes";
1398
0
  int retval = 0;
1399
0
  size_t size;
1400
1401
0
  GET_TJINSTANCE(handle, -1);
1402
1403
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP || jpegSize == NULL ||
1404
0
      jpegQual < 0 || jpegQual > 100)
1405
0
    THROW("Invalid argument");
1406
1407
0
  this->quality = jpegQual;
1408
0
  this->subsamp = subsamp;
1409
0
  processFlags(handle, flags, COMPRESS);
1410
1411
0
  size = (size_t)(*jpegSize);
1412
0
  retval = tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1413
0
                                     jpegBuf, &size);
1414
0
  *jpegSize = (unsigned long)size;
1415
1416
0
bailout:
1417
0
  return retval;
1418
0
}
1419
1420
1421
/* TurboJPEG 3+ */
1422
DLLEXPORT int tj3CompressFromYUV8(tjhandle handle,
1423
                                  const unsigned char *srcBuf, int width,
1424
                                  int align, int height,
1425
                                  unsigned char **jpegBuf, size_t *jpegSize)
1426
35.1k
{
1427
35.1k
  static const char FUNCTION_NAME[] = "tj3CompressFromYUV8";
1428
35.1k
  const unsigned char *srcPlanes[3];
1429
35.1k
  int pw0, ph0, strides[3], retval = -1;
1430
1431
35.1k
  GET_TJINSTANCE(handle, -1);
1432
1433
35.1k
  if (srcBuf == NULL || width <= 0 || align < 1 || !IS_POW2(align) ||
1434
35.1k
      height <= 0)
1435
35.1k
    THROW("Invalid argument");
1436
1437
35.1k
  if (this->subsamp == TJSAMP_UNKNOWN)
1438
35.1k
    THROW("TJPARAM_SUBSAMP must be specified");
1439
1440
35.1k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1441
35.1k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1442
35.1k
  srcPlanes[0] = srcBuf;
1443
35.1k
  strides[0] = (int)PAD((unsigned long long)pw0, align);
1444
35.1k
  if (this->subsamp == TJSAMP_GRAY) {
1445
11.8k
    strides[1] = strides[2] = 0;
1446
11.8k
    srcPlanes[1] = srcPlanes[2] = NULL;
1447
23.3k
  } else {
1448
23.3k
    int pw1 = tjPlaneWidth(1, width, this->subsamp);
1449
23.3k
    int ph1 = tjPlaneHeight(1, height, this->subsamp);
1450
1451
23.3k
    strides[1] = strides[2] = (int)PAD((unsigned long long)pw1, align);
1452
23.3k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1453
23.3k
        (unsigned long long)INT_MAX ||
1454
23.3k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1455
23.3k
        (unsigned long long)INT_MAX)
1456
23.3k
      THROW("Image or row alignment is too large");
1457
23.3k
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
1458
23.3k
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
1459
23.3k
  }
1460
1461
35.1k
  return tj3CompressFromYUVPlanes8(handle, srcPlanes, width, strides, height,
1462
35.1k
                                   jpegBuf, jpegSize);
1463
1464
0
bailout:
1465
0
  return retval;
1466
35.1k
}
1467
1468
/* TurboJPEG 1.4+ */
1469
DLLEXPORT int tjCompressFromYUV(tjhandle handle, const unsigned char *srcBuf,
1470
                                int width, int align, int height, int subsamp,
1471
                                unsigned char **jpegBuf,
1472
                                unsigned long *jpegSize, int jpegQual,
1473
                                int flags)
1474
0
{
1475
0
  static const char FUNCTION_NAME[] = "tjCompressFromYUV";
1476
0
  int retval = -1;
1477
0
  size_t size;
1478
1479
0
  GET_TJINSTANCE(handle, -1);
1480
1481
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1482
0
    THROW("Invalid argument");
1483
1484
0
  this->quality = jpegQual;
1485
0
  this->subsamp = subsamp;
1486
0
  processFlags(handle, flags, COMPRESS);
1487
1488
0
  size = (size_t)(*jpegSize);
1489
0
  retval = tj3CompressFromYUV8(handle, srcBuf, width, align, height, jpegBuf,
1490
0
                               &size);
1491
0
  *jpegSize = (unsigned long)size;
1492
1493
0
bailout:
1494
0
  return retval;
1495
0
}
1496
1497
1498
/* TurboJPEG 3+ */
1499
DLLEXPORT int tj3EncodeYUVPlanes8(tjhandle handle, const unsigned char *srcBuf,
1500
                                  int width, int pitch, int height,
1501
                                  int pixelFormat, unsigned char **dstPlanes,
1502
                                  int *strides)
1503
35.1k
{
1504
35.1k
  static const char FUNCTION_NAME[] = "tj3EncodeYUVPlanes8";
1505
35.1k
  JSAMPROW *row_pointer = NULL;
1506
35.1k
  JSAMPLE *_tmpbuf[MAX_COMPONENTS], *_tmpbuf2[MAX_COMPONENTS];
1507
35.1k
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *tmpbuf2[MAX_COMPONENTS];
1508
35.1k
  JSAMPROW *outbuf[MAX_COMPONENTS];
1509
35.1k
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
1510
35.1k
  JSAMPLE *ptr;
1511
35.1k
  jpeg_component_info *compptr;
1512
1513
35.1k
  GET_CINSTANCE(handle)
1514
1515
387k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1516
351k
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;
1517
351k
    tmpbuf2[i] = NULL;  _tmpbuf2[i] = NULL;  outbuf[i] = NULL;
1518
351k
  }
1519
1520
35.1k
  if ((this->init & COMPRESS) == 0)
1521
35.1k
    THROW("Instance has not been initialized for compression");
1522
1523
35.1k
  if (srcBuf == NULL || width <= 0 || pitch < 0 || height <= 0 ||
1524
35.1k
      pixelFormat < 0 || pixelFormat >= TJ_NUMPF || !dstPlanes ||
1525
35.1k
      !dstPlanes[0])
1526
35.1k
    THROW("Invalid argument");
1527
35.1k
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
1528
35.1k
    THROW("Invalid argument");
1529
1530
35.1k
  if (this->subsamp == TJSAMP_UNKNOWN)
1531
35.1k
    THROW("TJPARAM_SUBSAMP must be specified");
1532
35.1k
  if (pixelFormat == TJPF_CMYK)
1533
35.1k
    THROW("Cannot generate YUV images from packed-pixel CMYK images");
1534
1535
35.1k
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
1536
0
  else if (pitch < width * tjPixelSize[pixelFormat])
1537
35.1k
    THROW("Invalid argument");
1538
1539
35.1k
  CATCH_LIBJPEG(this);
1540
1541
35.1k
  cinfo->image_width = width;
1542
35.1k
  cinfo->image_height = height;
1543
35.1k
  cinfo->data_precision = 8;
1544
1545
35.1k
  setCompDefaults(this, pixelFormat, TRUE);
1546
1547
  /* Execute only the parts of jpeg_start_compress() that we need.  If we
1548
     were to call the whole jpeg_start_compress() function, then it would try
1549
     to write the file headers, which could overflow the output buffer if the
1550
     YUV image were very small. */
1551
35.1k
  if (cinfo->global_state != CSTATE_START)
1552
35.1k
    THROW("libjpeg API is in the wrong state");
1553
35.1k
  (*cinfo->err->reset_error_mgr) ((j_common_ptr)cinfo);
1554
35.1k
  jinit_c_master_control(cinfo, FALSE);
1555
35.1k
  jinit_color_converter(cinfo);
1556
35.1k
  jinit_downsampler(cinfo);
1557
35.1k
  (*cinfo->cconvert->start_pass) (cinfo);
1558
1559
35.1k
  pw0 = PAD(width, cinfo->max_h_samp_factor);
1560
35.1k
  ph0 = PAD(height, cinfo->max_v_samp_factor);
1561
1562
35.1k
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
1563
35.1k
    THROW("Memory allocation failure");
1564
97.5M
  for (i = 0; i < height; i++) {
1565
97.5M
    if (this->bottomUp)
1566
15.8M
      row_pointer[i] = (JSAMPROW)&srcBuf[(height - i - 1) * (size_t)pitch];
1567
81.6M
    else
1568
81.6M
      row_pointer[i] = (JSAMPROW)&srcBuf[i * (size_t)pitch];
1569
97.5M
  }
1570
35.1k
  if (height < ph0)
1571
6.32k
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
1572
1573
117k
  for (i = 0; i < cinfo->num_components; i++) {
1574
81.8k
    compptr = &cinfo->comp_info[i];
1575
81.8k
    _tmpbuf[i] = (JSAMPLE *)MALLOC(
1576
81.8k
      PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1577
81.8k
          compptr->h_samp_factor, 32) *
1578
81.8k
      cinfo->max_v_samp_factor + 32);
1579
81.8k
    if (!_tmpbuf[i])
1580
81.8k
      THROW("Memory allocation failure");
1581
81.8k
    tmpbuf[i] =
1582
81.8k
      (JSAMPROW *)malloc(sizeof(JSAMPROW) * cinfo->max_v_samp_factor);
1583
81.8k
    if (!tmpbuf[i])
1584
81.8k
      THROW("Memory allocation failure");
1585
181k
    for (row = 0; row < cinfo->max_v_samp_factor; row++) {
1586
99.3k
      unsigned char *_tmpbuf_aligned =
1587
99.3k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
1588
1589
99.3k
      tmpbuf[i][row] = &_tmpbuf_aligned[
1590
99.3k
        PAD((compptr->width_in_blocks * cinfo->max_h_samp_factor * DCTSIZE) /
1591
99.3k
            compptr->h_samp_factor, 32) * row];
1592
99.3k
    }
1593
81.8k
    _tmpbuf2[i] =
1594
81.8k
      (JSAMPLE *)MALLOC(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
1595
81.8k
                        compptr->v_samp_factor + 32);
1596
81.8k
    if (!_tmpbuf2[i])
1597
81.8k
      THROW("Memory allocation failure");
1598
81.8k
    tmpbuf2[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
1599
81.8k
    if (!tmpbuf2[i])
1600
81.8k
      THROW("Memory allocation failure");
1601
169k
    for (row = 0; row < compptr->v_samp_factor; row++) {
1602
87.6k
      unsigned char *_tmpbuf2_aligned =
1603
87.6k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf2[i], 32);
1604
1605
87.6k
      tmpbuf2[i][row] =
1606
87.6k
        &_tmpbuf2_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
1607
87.6k
    }
1608
81.8k
    pw[i] = pw0 * compptr->h_samp_factor / cinfo->max_h_samp_factor;
1609
81.8k
    if (strides && strides[i] != 0 && strides[i] < pw[i])
1610
81.8k
      THROW("Invalid argument");
1611
81.8k
    ph[i] = ph0 * compptr->v_samp_factor / cinfo->max_v_samp_factor;
1612
81.8k
    outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
1613
81.8k
    if (!outbuf[i])
1614
81.8k
      THROW("Memory allocation failure");
1615
81.8k
    ptr = dstPlanes[i];
1616
212M
    for (row = 0; row < ph[i]; row++) {
1617
211M
      outbuf[i][row] = ptr;
1618
211M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
1619
211M
    }
1620
81.8k
  }
1621
1622
35.1k
  CATCH_LIBJPEG(this);
1623
1624
89.4M
  for (row = 0; row < ph0; row += cinfo->max_v_samp_factor) {
1625
89.3M
    (*cinfo->cconvert->color_convert) (cinfo, &row_pointer[row], tmpbuf, 0,
1626
89.3M
                                       cinfo->max_v_samp_factor);
1627
89.3M
    (cinfo->downsample->downsample) (cinfo, tmpbuf, 0, tmpbuf2, 0);
1628
293M
    for (i = 0, compptr = cinfo->comp_info; i < cinfo->num_components;
1629
203M
         i++, compptr++)
1630
203M
      jcopy_sample_rows(tmpbuf2[i], 0, outbuf[i],
1631
203M
        row * compptr->v_samp_factor / cinfo->max_v_samp_factor,
1632
203M
        compptr->v_samp_factor, pw[i]);
1633
89.3M
  }
1634
35.1k
  cinfo->next_scanline += height;
1635
35.1k
  jpeg_abort_compress(cinfo);
1636
1637
35.1k
bailout:
1638
35.1k
  if (cinfo->global_state > CSTATE_START) jpeg_abort_compress(cinfo);
1639
35.1k
  free(row_pointer);
1640
387k
  for (i = 0; i < MAX_COMPONENTS; i++) {
1641
351k
    free(tmpbuf[i]);
1642
351k
    free(_tmpbuf[i]);
1643
351k
    free(tmpbuf2[i]);
1644
351k
    free(_tmpbuf2[i]);
1645
351k
    free(outbuf[i]);
1646
351k
  }
1647
35.1k
  if (this->jerr.warning) retval = -1;
1648
35.1k
  return retval;
1649
35.1k
}
1650
1651
/* TurboJPEG 1.4+ */
1652
DLLEXPORT int tjEncodeYUVPlanes(tjhandle handle, const unsigned char *srcBuf,
1653
                                int width, int pitch, int height,
1654
                                int pixelFormat, unsigned char **dstPlanes,
1655
                                int *strides, int subsamp, int flags)
1656
0
{
1657
0
  static const char FUNCTION_NAME[] = "tjEncodeYUVPlanes";
1658
0
  int retval = 0;
1659
1660
0
  GET_TJINSTANCE(handle, -1);
1661
1662
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1663
0
    THROW("Invalid argument");
1664
1665
0
  this->subsamp = subsamp;
1666
0
  processFlags(handle, flags, COMPRESS);
1667
1668
0
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1669
0
                             dstPlanes, strides);
1670
1671
0
bailout:
1672
0
  return retval;
1673
0
}
1674
1675
1676
/* TurboJPEG 3+ */
1677
DLLEXPORT int tj3EncodeYUV8(tjhandle handle, const unsigned char *srcBuf,
1678
                            int width, int pitch, int height, int pixelFormat,
1679
                            unsigned char *dstBuf, int align)
1680
35.1k
{
1681
35.1k
  static const char FUNCTION_NAME[] = "tj3EncodeYUV8";
1682
35.1k
  unsigned char *dstPlanes[3];
1683
35.1k
  int pw0, ph0, strides[3], retval = -1;
1684
1685
35.1k
  GET_TJINSTANCE(handle, -1);
1686
1687
35.1k
  if (width <= 0 || height <= 0 || dstBuf == NULL || align < 1 ||
1688
35.1k
      !IS_POW2(align))
1689
35.1k
    THROW("Invalid argument");
1690
1691
35.1k
  if (this->subsamp == TJSAMP_UNKNOWN)
1692
35.1k
    THROW("TJPARAM_SUBSAMP must be specified");
1693
1694
35.1k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
1695
35.1k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
1696
35.1k
  dstPlanes[0] = dstBuf;
1697
35.1k
  strides[0] = (int)PAD((unsigned long long)pw0, align);
1698
35.1k
  if (this->subsamp == TJSAMP_GRAY) {
1699
11.8k
    strides[1] = strides[2] = 0;
1700
11.8k
    dstPlanes[1] = dstPlanes[2] = NULL;
1701
23.3k
  } else {
1702
23.3k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
1703
23.3k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
1704
1705
23.3k
    strides[1] = strides[2] = (int)PAD((unsigned long long)pw1, align);
1706
23.3k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
1707
23.3k
        (unsigned long long)INT_MAX ||
1708
23.3k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
1709
23.3k
        (unsigned long long)INT_MAX)
1710
23.3k
      THROW("Image or row alignment is too large");
1711
23.3k
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
1712
23.3k
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
1713
23.3k
  }
1714
1715
35.1k
  return tj3EncodeYUVPlanes8(handle, srcBuf, width, pitch, height, pixelFormat,
1716
35.1k
                             dstPlanes, strides);
1717
1718
0
bailout:
1719
0
  return retval;
1720
35.1k
}
1721
1722
/* TurboJPEG 1.4+ */
1723
DLLEXPORT int tjEncodeYUV3(tjhandle handle, const unsigned char *srcBuf,
1724
                           int width, int pitch, int height, int pixelFormat,
1725
                           unsigned char *dstBuf, int align, int subsamp,
1726
                           int flags)
1727
0
{
1728
0
  static const char FUNCTION_NAME[] = "tjEncodeYUV3";
1729
0
  int retval = 0;
1730
1731
0
  GET_TJINSTANCE(handle, -1);
1732
1733
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
1734
0
    THROW("Invalid argument");
1735
1736
0
  this->subsamp = subsamp;
1737
0
  processFlags(handle, flags, COMPRESS);
1738
1739
0
  return tj3EncodeYUV8(handle, srcBuf, width, pitch, height, pixelFormat,
1740
0
                       dstBuf, align);
1741
1742
0
bailout:
1743
0
  return retval;
1744
0
}
1745
1746
/* TurboJPEG 1.2+ */
1747
DLLEXPORT int tjEncodeYUV2(tjhandle handle, unsigned char *srcBuf, int width,
1748
                           int pitch, int height, int pixelFormat,
1749
                           unsigned char *dstBuf, int subsamp, int flags)
1750
0
{
1751
0
  return tjEncodeYUV3(handle, srcBuf, width, pitch, height, pixelFormat,
1752
0
                      dstBuf, 4, subsamp, flags);
1753
0
}
1754
1755
/* TurboJPEG 1.1+ */
1756
DLLEXPORT int tjEncodeYUV(tjhandle handle, unsigned char *srcBuf, int width,
1757
                          int pitch, int height, int pixelSize,
1758
                          unsigned char *dstBuf, int subsamp, int flags)
1759
0
{
1760
0
  return tjEncodeYUV2(handle, srcBuf, width, pitch, height,
1761
0
                      getPixelFormat(pixelSize, flags), dstBuf, subsamp,
1762
0
                      flags);
1763
0
}
1764
1765
1766
/******************************* Decompressor ********************************/
1767
1768
static tjhandle _tjInitDecompress(tjinstance *this)
1769
52.9k
{
1770
52.9k
  static unsigned char buffer[1];
1771
1772
  /* This is also straight out of example.c */
1773
52.9k
  this->dinfo.err = jpeg_std_error(&this->jerr.pub);
1774
52.9k
  this->jerr.pub.error_exit = my_error_exit;
1775
52.9k
  this->jerr.pub.output_message = my_output_message;
1776
52.9k
  this->jerr.emit_message = this->jerr.pub.emit_message;
1777
52.9k
  this->jerr.pub.emit_message = my_emit_message;
1778
52.9k
  this->jerr.pub.addon_message_table = turbojpeg_message_table;
1779
52.9k
  this->jerr.pub.first_addon_message = JMSG_FIRSTADDONCODE;
1780
52.9k
  this->jerr.pub.last_addon_message = JMSG_LASTADDONCODE;
1781
1782
52.9k
  if (setjmp(this->jerr.setjmp_buffer)) {
1783
    /* If we get here, the JPEG code has signaled an error. */
1784
0
    free(this);
1785
0
    return NULL;
1786
0
  }
1787
1788
52.9k
  jpeg_create_decompress(&this->dinfo);
1789
  /* Make an initial call so it will create the source manager */
1790
52.9k
  jpeg_mem_src_tj(&this->dinfo, buffer, 1);
1791
1792
52.9k
  this->init |= DECOMPRESS;
1793
52.9k
  return (tjhandle)this;
1794
52.9k
}
1795
1796
/* TurboJPEG 1.0+ */
1797
DLLEXPORT tjhandle tjInitDecompress(void)
1798
0
{
1799
0
  return tj3Init(TJINIT_DECOMPRESS);
1800
0
}
1801
1802
1803
/* TurboJPEG 3+ */
1804
DLLEXPORT int tj3DecompressHeader(tjhandle handle,
1805
                                  const unsigned char *jpegBuf,
1806
                                  size_t jpegSize)
1807
13.1k
{
1808
13.1k
  static const char FUNCTION_NAME[] = "tj3DecompressHeader";
1809
13.1k
  int retval = 0;
1810
1811
13.1k
  GET_DINSTANCE(handle);
1812
13.1k
  if ((this->init & DECOMPRESS) == 0)
1813
13.1k
    THROW("Instance has not been initialized for decompression");
1814
1815
13.1k
  if (jpegBuf == NULL || jpegSize <= 0)
1816
13.1k
    THROW("Invalid argument");
1817
1818
13.1k
  CATCH_LIBJPEG(this);
1819
1820
11.8k
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
1821
1822
  /* jpeg_read_header() calls jpeg_abort() and returns JPEG_HEADER_TABLES_ONLY
1823
     if the datastream is a tables-only datastream.  Since we aren't using a
1824
     suspending data source, the only other value it can return is
1825
     JPEG_HEADER_OK. */
1826
11.8k
  if (jpeg_read_header(dinfo, FALSE) == JPEG_HEADER_TABLES_ONLY)
1827
1.07k
    return 0;
1828
1829
10.8k
  setDecompParameters(this);
1830
1831
10.8k
  jpeg_abort_decompress(dinfo);
1832
1833
10.8k
  if (this->colorspace < 0)
1834
10.7k
    THROW("Could not determine colorspace of JPEG image");
1835
10.7k
  if (this->jpegWidth < 1 || this->jpegHeight < 1)
1836
10.7k
    THROW("Invalid data returned in header");
1837
1838
12.0k
bailout:
1839
12.0k
  if (this->jerr.warning) retval = -1;
1840
12.0k
  return retval;
1841
10.7k
}
1842
1843
/* TurboJPEG 1.4+ */
1844
DLLEXPORT int tjDecompressHeader3(tjhandle handle,
1845
                                  const unsigned char *jpegBuf,
1846
                                  unsigned long jpegSize, int *width,
1847
                                  int *height, int *jpegSubsamp,
1848
                                  int *jpegColorspace)
1849
0
{
1850
0
  static const char FUNCTION_NAME[] = "tjDecompressHeader3";
1851
0
  int retval = 0;
1852
1853
0
  GET_TJINSTANCE(handle, -1);
1854
1855
0
  if (width == NULL || height == NULL || jpegSubsamp == NULL ||
1856
0
      jpegColorspace == NULL)
1857
0
    THROW("Invalid argument");
1858
1859
0
  retval = tj3DecompressHeader(handle, jpegBuf, jpegSize);
1860
1861
0
  *width = tj3Get(handle, TJPARAM_JPEGWIDTH);
1862
0
  *height = tj3Get(handle, TJPARAM_JPEGHEIGHT);
1863
0
  *jpegSubsamp = tj3Get(handle, TJPARAM_SUBSAMP);
1864
0
  if (*jpegSubsamp == TJSAMP_UNKNOWN)
1865
0
    THROW("Could not determine subsampling level of JPEG image");
1866
0
  *jpegColorspace = tj3Get(handle, TJPARAM_COLORSPACE);
1867
1868
0
bailout:
1869
0
  return retval;
1870
0
}
1871
1872
/* TurboJPEG 1.1+ */
1873
DLLEXPORT int tjDecompressHeader2(tjhandle handle, unsigned char *jpegBuf,
1874
                                  unsigned long jpegSize, int *width,
1875
                                  int *height, int *jpegSubsamp)
1876
0
{
1877
0
  int jpegColorspace;
1878
1879
0
  return tjDecompressHeader3(handle, jpegBuf, jpegSize, width, height,
1880
0
                             jpegSubsamp, &jpegColorspace);
1881
0
}
1882
1883
/* TurboJPEG 1.0+ */
1884
DLLEXPORT int tjDecompressHeader(tjhandle handle, unsigned char *jpegBuf,
1885
                                 unsigned long jpegSize, int *width,
1886
                                 int *height)
1887
0
{
1888
0
  int jpegSubsamp;
1889
1890
0
  return tjDecompressHeader2(handle, jpegBuf, jpegSize, width, height,
1891
0
                             &jpegSubsamp);
1892
0
}
1893
1894
1895
/* TurboJPEG 3+ */
1896
DLLEXPORT tjscalingfactor *tj3GetScalingFactors(int *numScalingFactors)
1897
0
{
1898
0
  static const char FUNCTION_NAME[] = "tj3GetScalingFactors";
1899
0
  tjscalingfactor *retval = (tjscalingfactor *)sf;
1900
1901
0
  if (numScalingFactors == NULL)
1902
0
    THROWG("Invalid argument", NULL);
1903
1904
0
  *numScalingFactors = NUMSF;
1905
1906
0
bailout:
1907
0
  return retval;
1908
0
}
1909
1910
/* TurboJPEG 1.2+ */
1911
DLLEXPORT tjscalingfactor *tjGetScalingFactors(int *numScalingFactors)
1912
0
{
1913
0
  return tj3GetScalingFactors(numScalingFactors);
1914
0
}
1915
1916
1917
/* TurboJPEG 3+ */
1918
DLLEXPORT int tj3SetScalingFactor(tjhandle handle,
1919
                                  tjscalingfactor scalingFactor)
1920
95.2k
{
1921
95.2k
  static const char FUNCTION_NAME[] = "tj3SetScalingFactor";
1922
95.2k
  int i, retval = 0;
1923
1924
95.2k
  GET_TJINSTANCE(handle, -1);
1925
95.2k
  if ((this->init & DECOMPRESS) == 0)
1926
95.2k
    THROW("Instance has not been initialized for decompression");
1927
1928
1.02M
  for (i = 0; i < NUMSF; i++) {
1929
1.02M
    if (scalingFactor.num == sf[i].num && scalingFactor.denom == sf[i].denom)
1930
95.2k
      break;
1931
1.02M
  }
1932
95.2k
  if (i >= NUMSF)
1933
95.2k
    THROW("Unsupported scaling factor");
1934
1935
95.2k
  this->scalingFactor = scalingFactor;
1936
1937
95.2k
bailout:
1938
95.2k
  return retval;
1939
95.2k
}
1940
1941
1942
/* TurboJPEG 3+ */
1943
DLLEXPORT int tj3SetCroppingRegion(tjhandle handle, tjregion croppingRegion)
1944
16.3k
{
1945
16.3k
  static const char FUNCTION_NAME[] = "tj3SetCroppingRegion";
1946
16.3k
  int retval = 0, scaledWidth, scaledHeight;
1947
1948
16.3k
  GET_TJINSTANCE(handle, -1);
1949
16.3k
  if ((this->init & DECOMPRESS) == 0)
1950
16.3k
    THROW("Instance has not been initialized for decompression");
1951
1952
16.3k
  if (croppingRegion.x == 0 && croppingRegion.y == 0 &&
1953
15.3k
      croppingRegion.w == 0 && croppingRegion.h == 0) {
1954
15.3k
    this->croppingRegion = croppingRegion;
1955
15.3k
    return 0;
1956
15.3k
  }
1957
1958
1.01k
  if (croppingRegion.x < 0 || croppingRegion.y < 0 || croppingRegion.w < 0 ||
1959
1.01k
      croppingRegion.h < 0)
1960
1.01k
    THROW("Invalid cropping region");
1961
1.01k
  if (this->jpegWidth < 0 || this->jpegHeight < 0)
1962
1.01k
    THROW("JPEG header has not yet been read");
1963
1.01k
  if (this->precision == 16 || this->lossless)
1964
1.00k
    THROW("Cannot partially decompress lossless JPEG images");
1965
1.00k
  if (this->subsamp == TJSAMP_UNKNOWN)
1966
898
    THROW("Could not determine subsampling level of JPEG image");
1967
1968
898
  scaledWidth = TJSCALED(this->jpegWidth, this->scalingFactor);
1969
898
  scaledHeight = TJSCALED(this->jpegHeight, this->scalingFactor);
1970
1971
898
  if (croppingRegion.x %
1972
898
      TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor) != 0)
1973
0
    THROWI("The left boundary of the cropping region (%d) is not\n"
1974
898
           "divisible by the scaled iMCU width (%d)",
1975
898
           croppingRegion.x,
1976
898
           TJSCALED(tjMCUWidth[this->subsamp], this->scalingFactor));
1977
898
  if (croppingRegion.w == 0)
1978
0
    croppingRegion.w = scaledWidth - croppingRegion.x;
1979
898
  if (croppingRegion.h == 0)
1980
0
    croppingRegion.h = scaledHeight - croppingRegion.y;
1981
898
  if (croppingRegion.w <= 0 || croppingRegion.h <= 0 ||
1982
898
      croppingRegion.x + croppingRegion.w > scaledWidth ||
1983
898
      croppingRegion.y + croppingRegion.h > scaledHeight)
1984
898
    THROW("The cropping region exceeds the scaled image dimensions");
1985
1986
898
  this->croppingRegion = croppingRegion;
1987
1988
1.01k
bailout:
1989
1.01k
  return retval;
1990
898
}
1991
1992
1993
/* tj3Decompress*() is implemented in turbojpeg-mp.c */
1994
1995
/* TurboJPEG 1.2+ */
1996
DLLEXPORT int tjDecompress2(tjhandle handle, const unsigned char *jpegBuf,
1997
                            unsigned long jpegSize, unsigned char *dstBuf,
1998
                            int width, int pitch, int height, int pixelFormat,
1999
                            int flags)
2000
0
{
2001
0
  static const char FUNCTION_NAME[] = "tjDecompress2";
2002
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2003
2004
0
  GET_DINSTANCE(handle);
2005
0
  if ((this->init & DECOMPRESS) == 0)
2006
0
    THROW("Instance has not been initialized for decompression");
2007
2008
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2009
0
    THROW("Invalid argument");
2010
2011
0
  CATCH_LIBJPEG(this);
2012
2013
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2014
0
  jpeg_read_header(dinfo, TRUE);
2015
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2016
0
  if (width == 0) width = jpegwidth;
2017
0
  if (height == 0) height = jpegheight;
2018
0
  for (i = 0; i < NUMSF; i++) {
2019
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2020
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2021
0
    if (scaledw <= width && scaledh <= height)
2022
0
      break;
2023
0
  }
2024
0
  if (i >= NUMSF)
2025
0
    THROW("Could not scale down to desired image dimensions");
2026
0
  if (dinfo->master->lossless && ((JDIMENSION)scaledw != dinfo->image_width ||
2027
0
                                  (JDIMENSION)scaledh != dinfo->image_height))
2028
0
    THROW("Cannot use decompression scaling with lossless JPEG images");
2029
2030
0
  processFlags(handle, flags, DECOMPRESS);
2031
2032
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2033
0
    return -1;
2034
0
  if (tj3SetCroppingRegion(handle, TJUNCROPPED) == -1)
2035
0
    return -1;
2036
0
  return tj3Decompress8(handle, jpegBuf, jpegSize, dstBuf, pitch, pixelFormat);
2037
2038
0
bailout:
2039
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2040
0
  if (this->jerr.warning) retval = -1;
2041
0
  return retval;
2042
0
}
2043
2044
/* TurboJPEG 1.0+ */
2045
DLLEXPORT int tjDecompress(tjhandle handle, unsigned char *jpegBuf,
2046
                           unsigned long jpegSize, unsigned char *dstBuf,
2047
                           int width, int pitch, int height, int pixelSize,
2048
                           int flags)
2049
0
{
2050
0
  if (flags & TJ_YUV)
2051
0
    return tjDecompressToYUV(handle, jpegBuf, jpegSize, dstBuf, flags);
2052
0
  else
2053
0
    return tjDecompress2(handle, jpegBuf, jpegSize, dstBuf, width, pitch,
2054
0
                         height, getPixelFormat(pixelSize, flags), flags);
2055
0
}
2056
2057
2058
/* TurboJPEG 3+ */
2059
DLLEXPORT int tj3DecompressToYUVPlanes8(tjhandle handle,
2060
                                        const unsigned char *jpegBuf,
2061
                                        size_t jpegSize,
2062
                                        unsigned char **dstPlanes,
2063
                                        int *strides)
2064
31.1k
{
2065
31.1k
  static const char FUNCTION_NAME[] = "tj3DecompressToYUVPlanes8";
2066
31.1k
  int i, row, retval = 0;
2067
31.1k
  int pw[MAX_COMPONENTS], ph[MAX_COMPONENTS], iw[MAX_COMPONENTS],
2068
31.1k
    tmpbufsize = 0, usetmpbuf = 0, th[MAX_COMPONENTS];
2069
31.1k
  JSAMPLE *_tmpbuf = NULL, *ptr;
2070
31.1k
  JSAMPROW *outbuf[MAX_COMPONENTS], *tmpbuf[MAX_COMPONENTS];
2071
31.1k
  int dctsize;
2072
31.1k
  struct my_progress_mgr progress;
2073
2074
31.1k
  GET_DINSTANCE(handle);
2075
2076
342k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2077
311k
    tmpbuf[i] = NULL;  outbuf[i] = NULL;
2078
311k
  }
2079
2080
31.1k
  if ((this->init & DECOMPRESS) == 0)
2081
31.1k
    THROW("Instance has not been initialized for decompression");
2082
2083
31.1k
  if (jpegBuf == NULL || jpegSize <= 0 || !dstPlanes || !dstPlanes[0])
2084
31.1k
    THROW("Invalid argument");
2085
2086
31.1k
  if (this->scanLimit) {
2087
31.1k
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2088
31.1k
    progress.pub.progress_monitor = my_progress_monitor;
2089
31.1k
    progress.this = this;
2090
31.1k
    dinfo->progress = &progress.pub;
2091
31.1k
  } else
2092
0
    dinfo->progress = NULL;
2093
2094
31.1k
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2095
2096
31.1k
  CATCH_LIBJPEG(this);
2097
2098
31.1k
  if (dinfo->global_state <= DSTATE_INHEADER) {
2099
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2100
0
    jpeg_read_header(dinfo, TRUE);
2101
0
  }
2102
31.1k
  setDecompParameters(this);
2103
31.1k
  if (this->maxPixels &&
2104
0
      (unsigned long long)this->jpegWidth * this->jpegHeight >
2105
0
      (unsigned long long)this->maxPixels)
2106
31.1k
    THROW("Image is too large");
2107
31.1k
  if (this->subsamp == TJSAMP_UNKNOWN)
2108
31.1k
    THROW("Could not determine subsampling level of JPEG image");
2109
2110
31.1k
  if (this->subsamp != TJSAMP_GRAY && (!dstPlanes[1] || !dstPlanes[2]))
2111
31.1k
    THROW("Invalid argument");
2112
2113
31.1k
  if (dinfo->num_components > 3)
2114
31.0k
    THROW("JPEG image must have 3 or fewer components");
2115
2116
31.0k
  dinfo->scale_num = this->scalingFactor.num;
2117
31.0k
  dinfo->scale_denom = this->scalingFactor.denom;
2118
31.0k
  jpeg_calc_output_dimensions(dinfo);
2119
2120
31.0k
  dctsize = DCTSIZE * this->scalingFactor.num / this->scalingFactor.denom;
2121
2122
98.2k
  for (i = 0; i < dinfo->num_components; i++) {
2123
67.2k
    jpeg_component_info *compptr = &dinfo->comp_info[i];
2124
67.2k
    int ih;
2125
2126
67.2k
    iw[i] = compptr->width_in_blocks * dctsize;
2127
67.2k
    ih = compptr->height_in_blocks * dctsize;
2128
67.2k
    pw[i] = tj3YUVPlaneWidth(i, dinfo->output_width, this->subsamp);
2129
67.2k
    if (strides && strides[i] != 0 && strides[i] < pw[i])
2130
67.2k
      THROW("Invalid argument");
2131
67.2k
    ph[i] = tj3YUVPlaneHeight(i, dinfo->output_height, this->subsamp);
2132
67.2k
    if (iw[i] != pw[i] || ih != ph[i]) usetmpbuf = 1;
2133
67.2k
    th[i] = compptr->v_samp_factor * dctsize;
2134
67.2k
    tmpbufsize += iw[i] * th[i];
2135
67.2k
    if ((outbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i])) == NULL)
2136
67.2k
      THROW("Memory allocation failure");
2137
67.2k
    ptr = dstPlanes[i];
2138
390M
    for (row = 0; row < ph[i]; row++) {
2139
389M
      outbuf[i][row] = ptr;
2140
389M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2141
389M
    }
2142
67.2k
  }
2143
31.0k
  if (usetmpbuf) {
2144
27.7k
    if ((_tmpbuf = (JSAMPLE *)MALLOC(sizeof(JSAMPLE) * tmpbufsize)) == NULL)
2145
27.7k
      THROW("Memory allocation failure");
2146
27.7k
    ptr = _tmpbuf;
2147
88.8k
    for (i = 0; i < dinfo->num_components; i++) {
2148
61.0k
      if ((tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * th[i])) == NULL)
2149
61.0k
        THROW("Memory allocation failure");
2150
739k
      for (row = 0; row < th[i]; row++) {
2151
678k
        tmpbuf[i][row] = ptr;
2152
678k
        ptr += iw[i];
2153
678k
      }
2154
61.0k
    }
2155
27.7k
  }
2156
2157
31.0k
  CATCH_LIBJPEG(this);
2158
2159
10.9k
  dinfo->do_fancy_upsampling = !this->fastUpsample;
2160
  /* Referring to the comment below, this function will never use the "fast"
2161
     IDCT algorithm with decompression scaling, so if the scaling factor is not
2162
     1/1, we need to explicitly set dinfo->dct_method = JDCT_ISLOW so that the
2163
     "slow" IDCT tables will be assigned to all components.  Otherwise, when
2164
     libjpeg tries to be clever, it will assign the "fast" IDCT tables to the
2165
     chrominance components, and those tables don't work properly with the
2166
     scaled IDCT algorithms. */
2167
10.9k
  dinfo->dct_method =
2168
22.0k
    (dctsize == DCTSIZE && this->fastDCT) ? JDCT_FASTEST : JDCT_ISLOW;
2169
10.9k
  dinfo->raw_data_out = TRUE;
2170
2171
10.9k
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2172
2173
10.9k
  jpeg_start_decompress(dinfo);
2174
4.51M
  for (row = 0; row < (int)dinfo->output_height;
2175
4.50M
       row += dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size) {
2176
4.50M
    JSAMPARRAY yuvptr[MAX_COMPONENTS];
2177
4.50M
    int crow[MAX_COMPONENTS];
2178
2179
12.2M
    for (i = 0; i < dinfo->num_components; i++) {
2180
7.74M
      jpeg_component_info *compptr = &dinfo->comp_info[i];
2181
2182
7.74M
      if (this->subsamp == TJSAMP_420) {
2183
        /* When 4:2:0 subsampling is used with IDCT scaling, libjpeg will try
2184
           to be clever and use the IDCT to perform upsampling on the U and V
2185
           planes.  For instance, if the output image is to be scaled by 1/2
2186
           relative to the JPEG image, then the scaling factor and upsampling
2187
           effectively cancel each other, so a normal 8x8 IDCT can be used.
2188
           However, this is not desirable when using the decompress-to-YUV
2189
           functionality in TurboJPEG, since we want to output the U and V
2190
           planes in their subsampled form.  Thus, we have to override some
2191
           internal libjpeg parameters to force it to use the "scaled" IDCT
2192
           functions on the U and V planes. */
2193
947k
        compptr->_DCT_scaled_size = dctsize;
2194
947k
        compptr->MCU_sample_width = tjMCUWidth[this->subsamp] *
2195
947k
          this->scalingFactor.num / this->scalingFactor.denom *
2196
947k
          compptr->h_samp_factor / dinfo->max_h_samp_factor;
2197
947k
        dinfo->idct->inverse_DCT[i] = dinfo->idct->inverse_DCT[0];
2198
947k
      }
2199
7.74M
      crow[i] = row * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2200
7.74M
      if (usetmpbuf) yuvptr[i] = tmpbuf[i];
2201
905k
      else yuvptr[i] = &outbuf[i][crow[i]];
2202
7.74M
    }
2203
4.50M
    jpeg_read_raw_data(dinfo, yuvptr,
2204
4.50M
                       dinfo->max_v_samp_factor * dinfo->_min_DCT_scaled_size);
2205
4.50M
    if (usetmpbuf) {
2206
3.86M
      int j;
2207
2208
10.6M
      for (i = 0; i < dinfo->num_components; i++) {
2209
69.7M
        for (j = 0; j < MIN(th[i], ph[i] - crow[i]); j++) {
2210
62.9M
          memcpy(outbuf[i][crow[i] + j], tmpbuf[i][j], pw[i]);
2211
62.9M
        }
2212
6.82M
      }
2213
3.86M
    }
2214
4.50M
  }
2215
10.9k
  jpeg_finish_decompress(dinfo);
2216
2217
31.1k
bailout:
2218
31.1k
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2219
342k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2220
311k
    free(tmpbuf[i]);
2221
311k
    free(outbuf[i]);
2222
311k
  }
2223
31.1k
  free(_tmpbuf);
2224
31.1k
  if (this->jerr.warning) retval = -1;
2225
31.1k
  return retval;
2226
10.9k
}
2227
2228
/* TurboJPEG 1.4+ */
2229
DLLEXPORT int tjDecompressToYUVPlanes(tjhandle handle,
2230
                                      const unsigned char *jpegBuf,
2231
                                      unsigned long jpegSize,
2232
                                      unsigned char **dstPlanes, int width,
2233
                                      int *strides, int height, int flags)
2234
0
{
2235
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUVPlanes";
2236
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2237
2238
0
  GET_DINSTANCE(handle);
2239
0
  if ((this->init & DECOMPRESS) == 0)
2240
0
    THROW("Instance has not been initialized for decompression");
2241
2242
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2243
0
    THROW("Invalid argument");
2244
2245
0
  CATCH_LIBJPEG(this);
2246
2247
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2248
0
  jpeg_read_header(dinfo, TRUE);
2249
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2250
0
  if (width == 0) width = jpegwidth;
2251
0
  if (height == 0) height = jpegheight;
2252
0
  for (i = 0; i < NUMSF; i++) {
2253
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2254
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2255
0
    if (scaledw <= width && scaledh <= height)
2256
0
      break;
2257
0
  }
2258
0
  if (i >= NUMSF)
2259
0
    THROW("Could not scale down to desired image dimensions");
2260
2261
0
  processFlags(handle, flags, DECOMPRESS);
2262
2263
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2264
0
    return -1;
2265
0
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2266
0
                                   strides);
2267
2268
0
bailout:
2269
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2270
0
  if (this->jerr.warning) retval = -1;
2271
0
  return retval;
2272
0
}
2273
2274
2275
/* TurboJPEG 3+ */
2276
DLLEXPORT int tj3DecompressToYUV8(tjhandle handle,
2277
                                  const unsigned char *jpegBuf,
2278
                                  size_t jpegSize,
2279
                                  unsigned char *dstBuf, int align)
2280
48.7k
{
2281
48.7k
  static const char FUNCTION_NAME[] = "tj3DecompressToYUV8";
2282
48.7k
  unsigned char *dstPlanes[3];
2283
48.7k
  int pw0, ph0, strides[3], retval = -1;
2284
48.7k
  int width, height;
2285
2286
48.7k
  GET_DINSTANCE(handle);
2287
2288
48.7k
  if (jpegBuf == NULL || jpegSize <= 0 || dstBuf == NULL || align < 1 ||
2289
48.7k
      !IS_POW2(align))
2290
48.7k
    THROW("Invalid argument");
2291
2292
48.7k
  CATCH_LIBJPEG(this);
2293
2294
48.7k
  if (dinfo->global_state <= DSTATE_INHEADER) {
2295
48.7k
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2296
48.7k
    jpeg_read_header(dinfo, TRUE);
2297
48.7k
  }
2298
48.7k
  setDecompParameters(this);
2299
48.7k
  if (this->subsamp == TJSAMP_UNKNOWN)
2300
47.6k
    THROW("Could not determine subsampling level of JPEG image");
2301
2302
47.6k
  width = TJSCALED(dinfo->image_width, this->scalingFactor);
2303
47.6k
  height = TJSCALED(dinfo->image_height, this->scalingFactor);
2304
2305
47.6k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2306
47.6k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2307
47.6k
  dstPlanes[0] = dstBuf;
2308
47.6k
  strides[0] = PAD(pw0, align);
2309
47.6k
  if (this->subsamp == TJSAMP_GRAY) {
2310
22.2k
    strides[1] = strides[2] = 0;
2311
22.2k
    dstPlanes[1] = dstPlanes[2] = NULL;
2312
25.4k
  } else {
2313
25.4k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2314
25.4k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2315
2316
25.4k
    strides[1] = strides[2] = PAD(pw1, align);
2317
25.4k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2318
25.4k
        (unsigned long long)INT_MAX ||
2319
25.4k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2320
25.4k
        (unsigned long long)INT_MAX)
2321
25.4k
      THROW("Image or row alignment is too large");
2322
25.4k
    dstPlanes[1] = dstPlanes[0] + strides[0] * ph0;
2323
25.4k
    dstPlanes[2] = dstPlanes[1] + strides[1] * ph1;
2324
25.4k
  }
2325
2326
47.6k
  return tj3DecompressToYUVPlanes8(handle, jpegBuf, jpegSize, dstPlanes,
2327
47.6k
                                   strides);
2328
2329
1.10k
bailout:
2330
1.10k
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2331
1.10k
  if (this->jerr.warning) retval = -1;
2332
1.10k
  return retval;
2333
47.6k
}
2334
2335
/* TurboJPEG 1.4+ */
2336
DLLEXPORT int tjDecompressToYUV2(tjhandle handle, const unsigned char *jpegBuf,
2337
                                 unsigned long jpegSize, unsigned char *dstBuf,
2338
                                 int width, int align, int height, int flags)
2339
0
{
2340
0
  static const char FUNCTION_NAME[] = "tjDecompressToYUV2";
2341
0
  int i, retval = 0, jpegwidth, jpegheight, scaledw, scaledh;
2342
2343
0
  GET_DINSTANCE(handle);
2344
0
  if ((this->init & DECOMPRESS) == 0)
2345
0
    THROW("Instance has not been initialized for decompression");
2346
2347
0
  if (jpegBuf == NULL || jpegSize <= 0 || width < 0 || height < 0)
2348
0
    THROW("Invalid argument");
2349
2350
0
  CATCH_LIBJPEG(this);
2351
2352
0
  jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2353
0
  jpeg_read_header(dinfo, TRUE);
2354
0
  jpegwidth = dinfo->image_width;  jpegheight = dinfo->image_height;
2355
0
  if (width == 0) width = jpegwidth;
2356
0
  if (height == 0) height = jpegheight;
2357
0
  for (i = 0; i < NUMSF; i++) {
2358
0
    scaledw = TJSCALED(jpegwidth, sf[i]);
2359
0
    scaledh = TJSCALED(jpegheight, sf[i]);
2360
0
    if (scaledw <= width && scaledh <= height)
2361
0
      break;
2362
0
  }
2363
0
  if (i >= NUMSF)
2364
0
    THROW("Could not scale down to desired image dimensions");
2365
2366
0
  width = scaledw;  height = scaledh;
2367
2368
0
  processFlags(handle, flags, DECOMPRESS);
2369
2370
0
  if (tj3SetScalingFactor(handle, sf[i]) == -1)
2371
0
    return -1;
2372
0
  return tj3DecompressToYUV8(handle, jpegBuf, (size_t)jpegSize, dstBuf, align);
2373
2374
0
bailout:
2375
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2376
0
  if (this->jerr.warning) retval = -1;
2377
0
  return retval;
2378
0
}
2379
2380
/* TurboJPEG 1.1+ */
2381
DLLEXPORT int tjDecompressToYUV(tjhandle handle, unsigned char *jpegBuf,
2382
                                unsigned long jpegSize, unsigned char *dstBuf,
2383
                                int flags)
2384
0
{
2385
0
  return tjDecompressToYUV2(handle, jpegBuf, jpegSize, dstBuf, 0, 4, 0, flags);
2386
0
}
2387
2388
2389
static void setDecodeDefaults(tjinstance *this, int pixelFormat)
2390
1.92k
{
2391
1.92k
  int i;
2392
2393
1.92k
  this->dinfo.scale_num = this->dinfo.scale_denom = 1;
2394
2395
1.92k
  if (this->subsamp == TJSAMP_GRAY) {
2396
635
    this->dinfo.num_components = this->dinfo.comps_in_scan = 1;
2397
635
    this->dinfo.jpeg_color_space = JCS_GRAYSCALE;
2398
1.29k
  } else {
2399
1.29k
    this->dinfo.num_components = this->dinfo.comps_in_scan = 3;
2400
1.29k
    this->dinfo.jpeg_color_space = JCS_YCbCr;
2401
1.29k
  }
2402
2403
1.92k
  this->dinfo.comp_info = (jpeg_component_info *)
2404
1.92k
    (*this->dinfo.mem->alloc_small) ((j_common_ptr)&this->dinfo, JPOOL_IMAGE,
2405
1.92k
                                     this->dinfo.num_components *
2406
1.92k
                                     sizeof(jpeg_component_info));
2407
2408
6.44k
  for (i = 0; i < this->dinfo.num_components; i++) {
2409
4.51k
    jpeg_component_info *compptr = &this->dinfo.comp_info[i];
2410
2411
4.51k
    compptr->h_samp_factor = (i == 0) ? tjMCUWidth[this->subsamp] / 8 : 1;
2412
4.51k
    compptr->v_samp_factor = (i == 0) ? tjMCUHeight[this->subsamp] / 8 : 1;
2413
4.51k
    compptr->component_index = i;
2414
4.51k
    compptr->component_id = i + 1;
2415
4.51k
    compptr->quant_tbl_no = compptr->dc_tbl_no =
2416
4.51k
      compptr->ac_tbl_no = (i == 0) ? 0 : 1;
2417
4.51k
    this->dinfo.cur_comp_info[i] = compptr;
2418
4.51k
  }
2419
1.92k
  this->dinfo.data_precision = 8;
2420
5.78k
  for (i = 0; i < 2; i++) {
2421
3.85k
    if (this->dinfo.quant_tbl_ptrs[i] == NULL)
2422
558
      this->dinfo.quant_tbl_ptrs[i] =
2423
558
        jpeg_alloc_quant_table((j_common_ptr)&this->dinfo);
2424
3.85k
  }
2425
2426
1.92k
  this->dinfo.mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2427
1.92k
}
2428
2429
2430
static int my_read_markers(j_decompress_ptr dinfo)
2431
1.92k
{
2432
1.92k
  return JPEG_REACHED_SOS;
2433
1.92k
}
2434
2435
static void my_reset_marker_reader(j_decompress_ptr dinfo)
2436
1.92k
{
2437
1.92k
}
2438
2439
/* TurboJPEG 3+ */
2440
DLLEXPORT int tj3DecodeYUVPlanes8(tjhandle handle,
2441
                                  const unsigned char * const *srcPlanes,
2442
                                  const int *strides, unsigned char *dstBuf,
2443
                                  int width, int pitch, int height,
2444
                                  int pixelFormat)
2445
1.92k
{
2446
1.92k
  static const char FUNCTION_NAME[] = "tj3DecodeYUVPlanes8";
2447
1.92k
  JSAMPROW *row_pointer = NULL;
2448
1.92k
  JSAMPLE *_tmpbuf[MAX_COMPONENTS];
2449
1.92k
  JSAMPROW *tmpbuf[MAX_COMPONENTS], *inbuf[MAX_COMPONENTS];
2450
1.92k
  int i, retval = 0, row, pw0, ph0, pw[MAX_COMPONENTS], ph[MAX_COMPONENTS];
2451
1.92k
  JSAMPLE *ptr;
2452
1.92k
  jpeg_component_info *compptr;
2453
1.92k
  int (*old_read_markers) (j_decompress_ptr) = NULL;
2454
1.92k
  void (*old_reset_marker_reader) (j_decompress_ptr) = NULL;
2455
2456
1.92k
  GET_DINSTANCE(handle);
2457
2458
21.2k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2459
19.2k
    tmpbuf[i] = NULL;  _tmpbuf[i] = NULL;  inbuf[i] = NULL;
2460
19.2k
  }
2461
2462
1.92k
  if ((this->init & DECOMPRESS) == 0)
2463
1.92k
    THROW("Instance has not been initialized for decompression");
2464
2465
1.92k
  if (!srcPlanes || !srcPlanes[0] || dstBuf == NULL || width <= 0 ||
2466
1.92k
      pitch < 0 || height <= 0 || pixelFormat < 0 || pixelFormat >= TJ_NUMPF)
2467
1.92k
    THROW("Invalid argument");
2468
1.92k
  if (this->subsamp != TJSAMP_GRAY && (!srcPlanes[1] || !srcPlanes[2]))
2469
1.92k
    THROW("Invalid argument");
2470
2471
1.92k
  if (this->subsamp == TJSAMP_UNKNOWN)
2472
1.92k
    THROW("TJPARAM_SUBSAMP must be specified");
2473
1.92k
  if (pixelFormat == TJPF_CMYK)
2474
1.92k
    THROW("Cannot decode YUV images into packed-pixel CMYK images.");
2475
2476
1.92k
  if (pitch == 0) pitch = width * tjPixelSize[pixelFormat];
2477
0
  else if (pitch < width * tjPixelSize[pixelFormat])
2478
1.92k
    THROW("Invalid argument");
2479
1.92k
  dinfo->image_width = width;
2480
1.92k
  dinfo->image_height = height;
2481
2482
1.92k
  dinfo->progressive_mode = dinfo->inputctl->has_multiple_scans = FALSE;
2483
1.92k
  dinfo->Ss = dinfo->Ah = dinfo->Al = 0;
2484
1.92k
  dinfo->Se = DCTSIZE2 - 1;
2485
1.92k
  setDecodeDefaults(this, pixelFormat);
2486
1.92k
  old_read_markers = dinfo->marker->read_markers;
2487
1.92k
  dinfo->marker->read_markers = my_read_markers;
2488
1.92k
  old_reset_marker_reader = dinfo->marker->reset_marker_reader;
2489
1.92k
  dinfo->marker->reset_marker_reader = my_reset_marker_reader;
2490
1.92k
  CATCH_LIBJPEG(this);
2491
1.89k
  jpeg_read_header(dinfo, TRUE);
2492
1.89k
  dinfo->marker->read_markers = old_read_markers;
2493
1.89k
  dinfo->marker->reset_marker_reader = old_reset_marker_reader;
2494
2495
1.89k
  this->dinfo.out_color_space = pf2cs[pixelFormat];
2496
1.89k
  this->dinfo.dct_method = this->fastDCT ? JDCT_FASTEST : JDCT_ISLOW;
2497
1.89k
  dinfo->do_fancy_upsampling = FALSE;
2498
1.89k
  dinfo->Se = DCTSIZE2 - 1;
2499
1.89k
  jinit_master_decompress(dinfo);
2500
1.89k
  (*dinfo->upsample->start_pass) (dinfo);
2501
2502
1.89k
  pw0 = PAD(width, dinfo->max_h_samp_factor);
2503
1.89k
  ph0 = PAD(height, dinfo->max_v_samp_factor);
2504
2505
1.89k
  if (pitch == 0) pitch = dinfo->output_width * tjPixelSize[pixelFormat];
2506
2507
1.89k
  if ((row_pointer = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph0)) == NULL)
2508
1.89k
    THROW("Memory allocation failure");
2509
12.5M
  for (i = 0; i < height; i++) {
2510
12.5M
    if (this->bottomUp)
2511
4.33M
      row_pointer[i] = &dstBuf[(height - i - 1) * (size_t)pitch];
2512
8.23M
    else
2513
8.23M
      row_pointer[i] = &dstBuf[i * (size_t)pitch];
2514
12.5M
  }
2515
1.89k
  if (height < ph0)
2516
1.05k
    for (i = height; i < ph0; i++) row_pointer[i] = row_pointer[height - 1];
2517
2518
6.32k
  for (i = 0; i < dinfo->num_components; i++) {
2519
4.42k
    compptr = &dinfo->comp_info[i];
2520
4.42k
    _tmpbuf[i] =
2521
4.42k
      (JSAMPLE *)malloc(PAD(compptr->width_in_blocks * DCTSIZE, 32) *
2522
4.42k
                        compptr->v_samp_factor + 32);
2523
4.42k
    if (!_tmpbuf[i])
2524
4.42k
      THROW("Memory allocation failure");
2525
4.42k
    tmpbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * compptr->v_samp_factor);
2526
4.42k
    if (!tmpbuf[i])
2527
4.42k
      THROW("Memory allocation failure");
2528
9.91k
    for (row = 0; row < compptr->v_samp_factor; row++) {
2529
5.49k
      unsigned char *_tmpbuf_aligned =
2530
5.49k
        (unsigned char *)PAD((JUINTPTR)_tmpbuf[i], 32);
2531
2532
5.49k
      tmpbuf[i][row] =
2533
5.49k
        &_tmpbuf_aligned[PAD(compptr->width_in_blocks * DCTSIZE, 32) * row];
2534
5.49k
    }
2535
4.42k
    pw[i] = pw0 * compptr->h_samp_factor / dinfo->max_h_samp_factor;
2536
4.42k
    if (strides && strides[i] != 0 && strides[i] < pw[i])
2537
4.42k
      THROW("Invalid argument");
2538
4.42k
    ph[i] = ph0 * compptr->v_samp_factor / dinfo->max_v_samp_factor;
2539
4.42k
    inbuf[i] = (JSAMPROW *)malloc(sizeof(JSAMPROW) * ph[i]);
2540
4.42k
    if (!inbuf[i])
2541
4.42k
      THROW("Memory allocation failure");
2542
4.42k
    ptr = (JSAMPLE *)srcPlanes[i];
2543
23.5M
    for (row = 0; row < ph[i]; row++) {
2544
23.5M
      inbuf[i][row] = ptr;
2545
23.5M
      ptr += (strides && strides[i] != 0) ? strides[i] : pw[i];
2546
23.5M
    }
2547
4.42k
  }
2548
2549
1.89k
  CATCH_LIBJPEG(this);
2550
2551
10.6M
  for (row = 0; row < ph0; row += dinfo->max_v_samp_factor) {
2552
10.6M
    JDIMENSION inrow = 0, outrow = 0;
2553
2554
32.4M
    for (i = 0, compptr = dinfo->comp_info; i < dinfo->num_components;
2555
21.7M
         i++, compptr++)
2556
21.7M
      jcopy_sample_rows(inbuf[i],
2557
21.7M
        row * compptr->v_samp_factor / dinfo->max_v_samp_factor, tmpbuf[i], 0,
2558
21.7M
        compptr->v_samp_factor, pw[i]);
2559
10.6M
    (dinfo->upsample->upsample) (dinfo, tmpbuf, &inrow,
2560
10.6M
                                 dinfo->max_v_samp_factor, &row_pointer[row],
2561
10.6M
                                 &outrow, dinfo->max_v_samp_factor);
2562
10.6M
  }
2563
1.89k
  jpeg_abort_decompress(dinfo);
2564
2565
1.92k
bailout:
2566
1.92k
  if (old_read_markers)
2567
1.92k
    dinfo->marker->read_markers = old_read_markers;
2568
1.92k
  if (old_reset_marker_reader)
2569
1.92k
    dinfo->marker->reset_marker_reader = old_reset_marker_reader;
2570
1.92k
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2571
1.92k
  free(row_pointer);
2572
21.2k
  for (i = 0; i < MAX_COMPONENTS; i++) {
2573
19.2k
    free(tmpbuf[i]);
2574
19.2k
    free(_tmpbuf[i]);
2575
19.2k
    free(inbuf[i]);
2576
19.2k
  }
2577
1.92k
  if (this->jerr.warning) retval = -1;
2578
1.92k
  return retval;
2579
1.89k
}
2580
2581
/* TurboJPEG 1.4+ */
2582
DLLEXPORT int tjDecodeYUVPlanes(tjhandle handle,
2583
                                const unsigned char **srcPlanes,
2584
                                const int *strides, int subsamp,
2585
                                unsigned char *dstBuf, int width, int pitch,
2586
                                int height, int pixelFormat, int flags)
2587
0
{
2588
0
  static const char FUNCTION_NAME[] = "tjDecodeYUVPlanes";
2589
0
  int retval = 0;
2590
2591
0
  GET_TJINSTANCE(handle, -1);
2592
2593
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2594
0
    THROW("Invalid argument");
2595
2596
0
  this->subsamp = subsamp;
2597
0
  processFlags(handle, flags, DECOMPRESS);
2598
2599
0
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2600
0
                             height, pixelFormat);
2601
2602
0
bailout:
2603
0
  return retval;
2604
0
}
2605
2606
2607
/* TurboJPEG 3+ */
2608
DLLEXPORT int tj3DecodeYUV8(tjhandle handle, const unsigned char *srcBuf,
2609
                            int align, unsigned char *dstBuf, int width,
2610
                            int pitch, int height, int pixelFormat)
2611
1.92k
{
2612
1.92k
  static const char FUNCTION_NAME[] = "tj3DecodeYUV8";
2613
1.92k
  const unsigned char *srcPlanes[3];
2614
1.92k
  int pw0, ph0, strides[3], retval = -1;
2615
2616
1.92k
  GET_TJINSTANCE(handle, -1);
2617
2618
1.92k
  if (srcBuf == NULL || align < 1 || !IS_POW2(align) || width <= 0 ||
2619
1.92k
      height <= 0)
2620
1.92k
    THROW("Invalid argument");
2621
2622
1.92k
  if (this->subsamp == TJSAMP_UNKNOWN)
2623
1.92k
    THROW("TJPARAM_SUBSAMP must be specified");
2624
2625
1.92k
  pw0 = tj3YUVPlaneWidth(0, width, this->subsamp);
2626
1.92k
  ph0 = tj3YUVPlaneHeight(0, height, this->subsamp);
2627
1.92k
  srcPlanes[0] = srcBuf;
2628
1.92k
  strides[0] = (int)PAD((unsigned long long)pw0, align);
2629
1.92k
  if (this->subsamp == TJSAMP_GRAY) {
2630
635
    strides[1] = strides[2] = 0;
2631
635
    srcPlanes[1] = srcPlanes[2] = NULL;
2632
1.29k
  } else {
2633
1.29k
    int pw1 = tj3YUVPlaneWidth(1, width, this->subsamp);
2634
1.29k
    int ph1 = tj3YUVPlaneHeight(1, height, this->subsamp);
2635
2636
1.29k
    strides[1] = strides[2] = (int)PAD((unsigned long long)pw1, align);
2637
1.29k
    if ((unsigned long long)strides[0] * (unsigned long long)ph0 >
2638
1.29k
        (unsigned long long)INT_MAX ||
2639
1.29k
        (unsigned long long)strides[1] * (unsigned long long)ph1 >
2640
1.29k
        (unsigned long long)INT_MAX)
2641
1.29k
      THROW("Image or row alignment is too large");
2642
1.29k
    srcPlanes[1] = srcPlanes[0] + strides[0] * ph0;
2643
1.29k
    srcPlanes[2] = srcPlanes[1] + strides[1] * ph1;
2644
1.29k
  }
2645
2646
1.92k
  return tj3DecodeYUVPlanes8(handle, srcPlanes, strides, dstBuf, width, pitch,
2647
1.92k
                             height, pixelFormat);
2648
2649
0
bailout:
2650
0
  return retval;
2651
1.92k
}
2652
2653
/* TurboJPEG 1.4+ */
2654
DLLEXPORT int tjDecodeYUV(tjhandle handle, const unsigned char *srcBuf,
2655
                          int align, int subsamp, unsigned char *dstBuf,
2656
                          int width, int pitch, int height, int pixelFormat,
2657
                          int flags)
2658
0
{
2659
0
  static const char FUNCTION_NAME[] = "tjDecodeYUV";
2660
0
  int retval = -1;
2661
2662
0
  GET_TJINSTANCE(handle, -1);
2663
2664
0
  if (subsamp < 0 || subsamp >= TJ_NUMSAMP)
2665
0
    THROW("Invalid argument");
2666
2667
0
  this->subsamp = subsamp;
2668
0
  processFlags(handle, flags, DECOMPRESS);
2669
2670
0
  return tj3DecodeYUV8(handle, srcBuf, align, dstBuf, width, pitch, height,
2671
0
                       pixelFormat);
2672
2673
0
bailout:
2674
0
  return retval;
2675
0
}
2676
2677
2678
/******************************** Transformer ********************************/
2679
2680
/* TurboJPEG 1.2+ */
2681
DLLEXPORT tjhandle tjInitTransform(void)
2682
0
{
2683
0
  return tj3Init(TJINIT_TRANSFORM);
2684
0
}
2685
2686
2687
/* TurboJPEG 3+ */
2688
DLLEXPORT int tj3Transform(tjhandle handle, const unsigned char *jpegBuf,
2689
                           size_t jpegSize, int n, unsigned char **dstBufs,
2690
                           size_t *dstSizes, const tjtransform *t)
2691
0
{
2692
0
  static const char FUNCTION_NAME[] = "tj3Transform";
2693
0
  int retval = 0;
2694
2695
0
#if TRANSFORMS_SUPPORTED
2696
2697
0
  jpeg_transform_info *xinfo = NULL;
2698
0
  jvirt_barray_ptr *srccoefs, *dstcoefs;
2699
0
  int i, saveMarkers = 0, srcSubsamp;
2700
0
  boolean alloc = TRUE;
2701
0
  struct my_progress_mgr progress;
2702
2703
0
  GET_INSTANCE(handle);
2704
0
  if ((this->init & COMPRESS) == 0 || (this->init & DECOMPRESS) == 0)
2705
0
    THROW("Instance has not been initialized for transformation");
2706
2707
0
  if (jpegBuf == NULL || jpegSize <= 0 || n < 1 || dstBufs == NULL ||
2708
0
      dstSizes == NULL || t == NULL)
2709
0
    THROW("Invalid argument");
2710
2711
0
  if (this->scanLimit) {
2712
0
    memset(&progress, 0, sizeof(struct my_progress_mgr));
2713
0
    progress.pub.progress_monitor = my_progress_monitor;
2714
0
    progress.this = this;
2715
0
    dinfo->progress = &progress.pub;
2716
0
  } else
2717
0
    dinfo->progress = NULL;
2718
2719
0
  dinfo->mem->max_memory_to_use = (long)this->maxMemory * 1048576L;
2720
2721
0
  if ((xinfo =
2722
0
       (jpeg_transform_info *)malloc(sizeof(jpeg_transform_info) * n)) == NULL)
2723
0
    THROW("Memory allocation failure");
2724
0
  memset(xinfo, 0, sizeof(jpeg_transform_info) * n);
2725
2726
0
  CATCH_LIBJPEG(this);
2727
2728
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2729
0
    jpeg_mem_src_tj(dinfo, jpegBuf, jpegSize);
2730
2731
0
  for (i = 0; i < n; i++) {
2732
0
    if (t[i].op < 0 || t[i].op >= TJ_NUMXOP)
2733
0
      THROW("Invalid transform operation");
2734
0
    xinfo[i].transform = xformtypes[t[i].op];
2735
0
    xinfo[i].perfect = (t[i].options & TJXOPT_PERFECT) ? 1 : 0;
2736
0
    xinfo[i].trim = (t[i].options & TJXOPT_TRIM) ? 1 : 0;
2737
0
    xinfo[i].force_grayscale = (t[i].options & TJXOPT_GRAY) ? 1 : 0;
2738
0
    xinfo[i].crop = (t[i].options & TJXOPT_CROP) ? 1 : 0;
2739
0
    if (n != 1 && t[i].op == TJXOP_HFLIP) xinfo[i].slow_hflip = 1;
2740
0
    else xinfo[i].slow_hflip = 0;
2741
2742
0
    if (xinfo[i].crop) {
2743
0
      if (t[i].r.x < 0 || t[i].r.y < 0 || t[i].r.w < 0 || t[i].r.h < 0)
2744
0
        THROW("Invalid cropping region");
2745
0
      xinfo[i].crop_xoffset = t[i].r.x;  xinfo[i].crop_xoffset_set = JCROP_POS;
2746
0
      xinfo[i].crop_yoffset = t[i].r.y;  xinfo[i].crop_yoffset_set = JCROP_POS;
2747
0
      if (t[i].r.w != 0) {
2748
0
        xinfo[i].crop_width = t[i].r.w;  xinfo[i].crop_width_set = JCROP_POS;
2749
0
      } else
2750
0
        xinfo[i].crop_width = JCROP_UNSET;
2751
0
      if (t[i].r.h != 0) {
2752
0
        xinfo[i].crop_height = t[i].r.h;  xinfo[i].crop_height_set = JCROP_POS;
2753
0
      } else
2754
0
        xinfo[i].crop_height = JCROP_UNSET;
2755
0
    }
2756
0
    if (!(t[i].options & TJXOPT_COPYNONE)) saveMarkers = 1;
2757
0
  }
2758
2759
0
  jcopy_markers_setup(dinfo, saveMarkers ? JCOPYOPT_ALL : JCOPYOPT_NONE);
2760
0
  if (dinfo->global_state <= DSTATE_INHEADER)
2761
0
    jpeg_read_header(dinfo, TRUE);
2762
0
  if (this->maxPixels &&
2763
0
      (unsigned long long)dinfo->image_width * dinfo->image_height >
2764
0
      (unsigned long long)this->maxPixels)
2765
0
    THROW("Image is too large");
2766
0
  srcSubsamp = getSubsamp(&this->dinfo);
2767
2768
0
  for (i = 0; i < n; i++) {
2769
0
    if (!jtransform_request_workspace(dinfo, &xinfo[i]))
2770
0
      THROW("Transform is not perfect");
2771
2772
0
    if (xinfo[i].crop) {
2773
0
      int dstSubsamp = (t[i].options & TJXOPT_GRAY) ? TJSAMP_GRAY : srcSubsamp;
2774
2775
0
      if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2776
0
          t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2777
0
        if (dstSubsamp == TJSAMP_422) dstSubsamp = TJSAMP_440;
2778
0
        else if (dstSubsamp == TJSAMP_440) dstSubsamp = TJSAMP_422;
2779
0
        else if (dstSubsamp == TJSAMP_411) dstSubsamp = TJSAMP_441;
2780
0
        else if (dstSubsamp == TJSAMP_441) dstSubsamp = TJSAMP_411;
2781
0
      }
2782
0
      if (dstSubsamp == TJSAMP_UNKNOWN)
2783
0
        THROW("Could not determine subsampling level of destination image");
2784
0
      if ((t[i].r.x % tjMCUWidth[dstSubsamp]) != 0 ||
2785
0
          (t[i].r.y % tjMCUHeight[dstSubsamp]) != 0)
2786
0
        THROWI("To crop this JPEG image, x must be a multiple of %d\n"
2787
0
               "and y must be a multiple of %d.", tjMCUWidth[dstSubsamp],
2788
0
               tjMCUHeight[dstSubsamp]);
2789
0
    }
2790
0
  }
2791
2792
0
  srccoefs = jpeg_read_coefficients(dinfo);
2793
2794
0
  for (i = 0; i < n; i++) {
2795
0
    JDIMENSION dstWidth = dinfo->image_width, dstHeight = dinfo->image_height;
2796
2797
0
    if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2798
0
        t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2799
0
      dstWidth = dinfo->image_height;  dstHeight = dinfo->image_width;
2800
0
    }
2801
2802
0
    if (xinfo[i].crop) {
2803
0
      if ((JDIMENSION)t[i].r.x >= dstWidth ||
2804
0
          t[i].r.x + xinfo[i].crop_width > dstWidth ||
2805
0
          (JDIMENSION)t[i].r.y >= dstHeight ||
2806
0
          t[i].r.y + xinfo[i].crop_height > dstHeight)
2807
0
        THROW("The cropping region exceeds the destination image dimensions");
2808
0
      dstWidth = xinfo[i].crop_width;  dstHeight = xinfo[i].crop_height;
2809
0
    }
2810
0
    if (this->noRealloc) {
2811
0
      int dstSubsamp = (t[i].options & TJXOPT_GRAY) ? TJSAMP_GRAY : srcSubsamp;
2812
2813
0
      if (t[i].op == TJXOP_TRANSPOSE || t[i].op == TJXOP_TRANSVERSE ||
2814
0
          t[i].op == TJXOP_ROT90 || t[i].op == TJXOP_ROT270) {
2815
0
        if (dstSubsamp == TJSAMP_422) dstSubsamp = TJSAMP_440;
2816
0
        else if (dstSubsamp == TJSAMP_440) dstSubsamp = TJSAMP_422;
2817
0
        else if (dstSubsamp == TJSAMP_411) dstSubsamp = TJSAMP_441;
2818
0
        else if (dstSubsamp == TJSAMP_441) dstSubsamp = TJSAMP_411;
2819
0
      }
2820
0
      if (dstSubsamp == TJSAMP_UNKNOWN)
2821
0
        THROW("Could not determine subsampling level of destination image");
2822
0
      alloc = FALSE;
2823
0
      dstSizes[i] = tj3JPEGBufSize(dstWidth, dstHeight, dstSubsamp);
2824
0
    }
2825
0
    if (!(t[i].options & TJXOPT_NOOUTPUT))
2826
0
      jpeg_mem_dest_tj(cinfo, &dstBufs[i], &dstSizes[i], alloc);
2827
0
    jpeg_copy_critical_parameters(dinfo, cinfo);
2828
0
    dstcoefs = jtransform_adjust_parameters(dinfo, cinfo, srccoefs, &xinfo[i]);
2829
0
    if (this->optimize || t[i].options & TJXOPT_OPTIMIZE)
2830
0
      cinfo->optimize_coding = TRUE;
2831
0
#ifdef C_PROGRESSIVE_SUPPORTED
2832
0
    if (this->progressive || t[i].options & TJXOPT_PROGRESSIVE)
2833
0
      jpeg_simple_progression(cinfo);
2834
0
#endif
2835
0
    if (this->arithmetic || t[i].options & TJXOPT_ARITHMETIC) {
2836
0
      cinfo->arith_code = TRUE;
2837
0
      cinfo->optimize_coding = FALSE;
2838
0
    }
2839
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) {
2840
0
      jpeg_write_coefficients(cinfo, dstcoefs);
2841
0
      jcopy_markers_execute(dinfo, cinfo, t[i].options & TJXOPT_COPYNONE ?
2842
0
                                          JCOPYOPT_NONE : JCOPYOPT_ALL);
2843
0
    } else
2844
0
      jinit_c_master_control(cinfo, TRUE);
2845
0
    jtransform_execute_transformation(dinfo, cinfo, srccoefs, &xinfo[i]);
2846
0
    if (t[i].customFilter) {
2847
0
      int ci, y;
2848
0
      JDIMENSION by;
2849
2850
0
      for (ci = 0; ci < cinfo->num_components; ci++) {
2851
0
        jpeg_component_info *compptr = &cinfo->comp_info[ci];
2852
0
        tjregion arrayRegion = { 0, 0, 0, 0 };
2853
0
        tjregion planeRegion = { 0, 0, 0, 0 };
2854
2855
0
        arrayRegion.w = compptr->width_in_blocks * DCTSIZE;
2856
0
        arrayRegion.h = DCTSIZE;
2857
0
        planeRegion.w = compptr->width_in_blocks * DCTSIZE;
2858
0
        planeRegion.h = compptr->height_in_blocks * DCTSIZE;
2859
2860
0
        for (by = 0; by < compptr->height_in_blocks;
2861
0
             by += compptr->v_samp_factor) {
2862
0
          JBLOCKARRAY barray = (dinfo->mem->access_virt_barray)
2863
0
            ((j_common_ptr)dinfo, dstcoefs[ci], by, compptr->v_samp_factor,
2864
0
             TRUE);
2865
2866
0
          for (y = 0; y < compptr->v_samp_factor; y++) {
2867
0
            if (t[i].customFilter(barray[y][0], arrayRegion, planeRegion, ci,
2868
0
                                  i, (tjtransform *)&t[i]) == -1)
2869
0
              THROW("Error in custom filter");
2870
0
            arrayRegion.y += DCTSIZE;
2871
0
          }
2872
0
        }
2873
0
      }
2874
0
    }
2875
0
    if (!(t[i].options & TJXOPT_NOOUTPUT)) jpeg_finish_compress(cinfo);
2876
0
  }
2877
2878
0
  jpeg_finish_decompress(dinfo);
2879
2880
0
bailout:
2881
0
  if (cinfo->global_state > CSTATE_START) {
2882
0
    if (alloc) (*cinfo->dest->term_destination) (cinfo);
2883
0
    jpeg_abort_compress(cinfo);
2884
0
  }
2885
0
  if (dinfo->global_state > DSTATE_START) jpeg_abort_decompress(dinfo);
2886
0
  free(xinfo);
2887
0
  if (this->jerr.warning) retval = -1;
2888
0
  return retval;
2889
2890
#else /* TRANSFORMS_SUPPORTED */
2891
2892
  GET_TJINSTANCE(handle, -1)
2893
  THROW("Lossless transformations were disabled at build time")
2894
bailout:
2895
  return retval;
2896
2897
#endif
2898
0
}
2899
2900
/* TurboJPEG 1.2+ */
2901
DLLEXPORT int tjTransform(tjhandle handle, const unsigned char *jpegBuf,
2902
                          unsigned long jpegSize, int n,
2903
                          unsigned char **dstBufs, unsigned long *dstSizes,
2904
                          tjtransform *t, int flags)
2905
0
{
2906
0
  static const char FUNCTION_NAME[] = "tjTransform";
2907
0
  int i, retval = 0;
2908
0
  size_t *sizes = NULL;
2909
2910
0
  GET_TJINSTANCE(handle, -1);
2911
0
  if ((this->init & DECOMPRESS) == 0)
2912
0
    THROW("Instance has not been initialized for decompression");
2913
2914
0
  if (n < 1 || dstSizes == NULL)
2915
0
    THROW("Invalid argument");
2916
2917
0
  if ((sizes = (size_t *)malloc(n * sizeof(size_t))) == NULL)
2918
0
    THROW("Memory allocation failure");
2919
0
  for (i = 0; i < n; i++)
2920
0
    sizes[i] = (size_t)dstSizes[i];
2921
0
  retval = tj3Transform(handle, jpegBuf, (size_t)jpegSize, n, dstBufs, sizes,
2922
0
                        t);
2923
0
  for (i = 0; i < n; i++)
2924
0
    dstSizes[i] = (unsigned long)sizes[i];
2925
2926
0
bailout:
2927
0
  free(sizes);
2928
0
  return retval;
2929
0
}
2930
2931
2932
/*************************** Packed-Pixel Image I/O **************************/
2933
2934
/* tj3LoadImage*() is implemented in turbojpeg-mp.c */
2935
2936
/* TurboJPEG 2.0+ */
2937
DLLEXPORT unsigned char *tjLoadImage(const char *filename, int *width,
2938
                                     int align, int *height,
2939
                                     int *pixelFormat, int flags)
2940
0
{
2941
0
  tjhandle handle = NULL;
2942
0
  unsigned char *dstBuf = NULL;
2943
2944
0
  if ((handle = tj3Init(TJINIT_COMPRESS)) == NULL) return NULL;
2945
2946
0
  processFlags(handle, flags, COMPRESS);
2947
2948
0
  dstBuf = tj3LoadImage8(handle, filename, width, align, height, pixelFormat);
2949
2950
0
  tj3Destroy(handle);
2951
0
  return dstBuf;
2952
0
}
2953
2954
2955
/* tj3SaveImage*() is implemented in turbojpeg-mp.c */
2956
2957
/* TurboJPEG 2.0+ */
2958
DLLEXPORT int tjSaveImage(const char *filename, unsigned char *buffer,
2959
                          int width, int pitch, int height, int pixelFormat,
2960
                          int flags)
2961
0
{
2962
0
  tjhandle handle = NULL;
2963
0
  int retval = -1;
2964
2965
0
  if ((handle = tj3Init(TJINIT_DECOMPRESS)) == NULL) return -1;
2966
2967
0
  processFlags(handle, flags, DECOMPRESS);
2968
2969
0
  retval = tj3SaveImage8(handle, filename, buffer, width, pitch, height,
2970
0
                         pixelFormat);
2971
2972
0
  tj3Destroy(handle);
2973
0
  return retval;
2974
0
}