Coverage Report

Created: 2026-09-14 06:50

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/gdal/frmts/gtiff/libtiff/tif_jpeg.c
Line
Count
Source
1
/*
2
 * Copyright (c) 1994-1997 Sam Leffler
3
 * Copyright (c) 1994-1997 Silicon Graphics, Inc.
4
 *
5
 * Permission to use, copy, modify, distribute, and sell this software and
6
 * its documentation for any purpose is hereby granted without fee, provided
7
 * that (i) the above copyright notices and this permission notice appear in
8
 * all copies of the software and related documentation, and (ii) the names of
9
 * Sam Leffler and Silicon Graphics may not be used in any advertising or
10
 * publicity relating to the software without the specific, prior written
11
 * permission of Sam Leffler and Silicon Graphics.
12
 *
13
 * THE SOFTWARE IS PROVIDED "AS-IS" AND WITHOUT WARRANTY OF ANY KIND,
14
 * EXPRESS, IMPLIED OR OTHERWISE, INCLUDING WITHOUT LIMITATION, ANY
15
 * WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
16
 *
17
 * IN NO EVENT SHALL SAM LEFFLER OR SILICON GRAPHICS BE LIABLE FOR
18
 * ANY SPECIAL, INCIDENTAL, INDIRECT OR CONSEQUENTIAL DAMAGES OF ANY KIND,
19
 * OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS,
20
 * WHETHER OR NOT ADVISED OF THE POSSIBILITY OF DAMAGE, AND ON ANY THEORY OF
21
 * LIABILITY, ARISING OUT OF OR IN CONNECTION WITH THE USE OR PERFORMANCE
22
 * OF THIS SOFTWARE.
23
 */
24
25
#include "tiffiop.h"
26
#include <stdlib.h>
27
28
#ifdef JPEG_SUPPORT
29
30
/*
31
 * TIFF Library
32
 *
33
 * JPEG Compression support per TIFF Technical Note #2
34
 * (*not* per the original TIFF 6.0 spec).
35
 *
36
 * This file is simply an interface to the libjpeg library written by
37
 * the Independent JPEG Group.  You need release 5 or later of the IJG
38
 * code, which you can find on the Internet at ftp.uu.net:/graphics/jpeg/.
39
 *
40
 * Contributed by Tom Lane <tgl@sss.pgh.pa.us>.
41
 */
42
#include <setjmp.h>
43
44
/* Settings that are independent of libjpeg ABI. Used when reinitializing the */
45
/* JPEGState from libjpegs 8 bit to libjpeg 12 bits, which have potentially */
46
/* different ABI */
47
typedef struct
48
{
49
    TIFFVGetMethod vgetparent;  /* super-class method */
50
    TIFFVSetMethod vsetparent;  /* super-class method */
51
    TIFFPrintMethod printdir;   /* super-class method */
52
    TIFFStripMethod defsparent; /* super-class method */
53
    TIFFTileMethod deftparent;  /* super-class method */
54
55
    /* pseudo-tag fields */
56
    void *jpegtables;           /* JPEGTables tag value, or NULL */
57
    uint32_t jpegtables_length; /* number of bytes in same */
58
    int jpegquality;            /* Compression quality level */
59
    int jpegcolormode;          /* Auto RGB<=>YCbCr convert? */
60
    int jpegtablesmode;         /* What to put in JPEGTables */
61
62
    int ycbcrsampling_fetched;
63
    int max_allowed_scan_number;
64
    int has_warned_about_progressive_mode;
65
} JPEGOtherSettings;
66
67
int TIFFFillStrip(TIFF *tif, uint32_t strip);
68
int TIFFFillTile(TIFF *tif, uint32_t tile);
69
int TIFFReInitJPEG_12(TIFF *tif, const JPEGOtherSettings *otherSettings,
70
                      int scheme, int is_encode);
71
int TIFFJPEGIsFullStripRequired_12(TIFF *tif);
72
73
#include "jerror.h"
74
#include "jpeglib.h"
75
76
/* Do optional compile-time version check */
77
#if defined(EXPECTED_JPEG_LIB_VERSION) && !defined(LIBJPEG_12_PATH)
78
#if EXPECTED_JPEG_LIB_VERSION != JPEG_LIB_VERSION
79
#error EXPECTED_JPEG_LIB_VERSION != JPEG_LIB_VERSION
80
#endif
81
#endif
82
83
/*
84
 * Do we want to do special processing suitable for when JSAMPLE is a
85
 * 16bit value?
86
 */
87
88
/* HAVE_JPEGTURBO_DUAL_MODE_8_12 is defined for libjpeg-turbo >= 3.0 which
89
 * adds a dual-mode 8/12 bit API in the same library.
90
 * (note: libjpeg-turbo 2.2 was actually released as 3.0)
91
 */
92
93
#if defined(HAVE_JPEGTURBO_DUAL_MODE_8_12)
94
#define JPEG_DUAL_MODE_8_12
95
/* Start by undefining BITS_IN_JSAMPLE which is always set to 8 in libjpeg-turbo
96
 * >= 3.0 Cf
97
 * https://github.com/libjpeg-turbo/libjpeg-turbo/commit/8b9bc4b9635a2a047fb23ebe70c9acd728d3f99b
98
 */
99
#undef BITS_IN_JSAMPLE
100
/* libjpeg-turbo >= 3.0 adds J12xxxx datatypes for the 12-bit mode. */
101
#if defined(FROM_TIF_JPEG_12)
102
#define BITS_IN_JSAMPLE 12
103
#define TIFF_JSAMPLE J12SAMPLE
104
#define TIFF_JSAMPARRAY J12SAMPARRAY
105
#define TIFF_JSAMPIMAGE J12SAMPIMAGE
106
#define TIFF_JSAMPROW J12SAMPROW
107
#else
108
#define BITS_IN_JSAMPLE 8
109
#define TIFF_JSAMPLE JSAMPLE
110
#define TIFF_JSAMPARRAY JSAMPARRAY
111
#define TIFF_JSAMPIMAGE JSAMPIMAGE
112
#define TIFF_JSAMPROW JSAMPROW
113
#endif
114
#else
115
0
#define TIFF_JSAMPLE JSAMPLE
116
0
#define TIFF_JSAMPARRAY JSAMPARRAY
117
#define TIFF_JSAMPIMAGE JSAMPIMAGE
118
0
#define TIFF_JSAMPROW JSAMPROW
119
#endif
120
121
#if defined(JPEG_LIB_MK1)
122
#define JPEG_LIB_MK1_OR_12BIT 1
123
#elif BITS_IN_JSAMPLE == 12
124
#define JPEG_LIB_MK1_OR_12BIT 1
125
#endif
126
127
/*
128
 * We are using width_in_blocks which is supposed to be private to
129
 * libjpeg. Unfortunately, the libjpeg delivered with Cygwin has
130
 * renamed this member to width_in_data_units.  Since the header has
131
 * also renamed a define, use that unique define name in order to
132
 * detect the problem header and adjust to suit.
133
 */
134
#if defined(D_MAX_DATA_UNITS_IN_MCU)
135
#define width_in_blocks width_in_data_units
136
#endif
137
138
/*
139
 * On some machines it may be worthwhile to use _setjmp or sigsetjmp
140
 * in place of plain setjmp.  These macros will make it easier.
141
 */
142
0
#define SETJMP(jbuf) setjmp(jbuf)
143
0
#define LONGJMP(jbuf, code) longjmp(jbuf, code)
144
#define JMP_BUF jmp_buf
145
146
typedef struct jpeg_destination_mgr tiff_jpeg_destination_mgr;
147
typedef struct jpeg_source_mgr tiff_jpeg_source_mgr;
148
typedef struct jpeg_error_mgr tiff_jpeg_error_mgr;
149
150
/*
151
 * State block for each open TIFF file using
152
 * libjpeg to do JPEG compression/decompression.
153
 *
154
 * libjpeg's visible state is either a jpeg_compress_struct
155
 * or jpeg_decompress_struct depending on which way we
156
 * are going.  comm can be used to refer to the fields
157
 * which are common to both.
158
 *
159
 * NB: cinfo is required to be the first member of JPEGState,
160
 *     so we can safely cast JPEGState* -> jpeg_xxx_struct*
161
 *     and vice versa!
162
 */
163
#ifdef _MSC_VER
164
#pragma warning(push)
165
#pragma warning(disable : 4324) /* structure padding due to alignment */
166
#endif
167
typedef struct
168
{
169
    union
170
    {
171
        struct jpeg_compress_struct c;
172
        struct jpeg_decompress_struct d;
173
        struct jpeg_common_struct comm;
174
    } cinfo; /* NB: must be first */
175
    int cinfo_initialized;
176
177
    tiff_jpeg_error_mgr err; /* libjpeg error manager */
178
    JMP_BUF exit_jmpbuf;     /* for catching libjpeg failures */
179
180
    struct jpeg_progress_mgr progress;
181
    /*
182
     * The following two members could be a union, but
183
     * they're small enough that it's not worth the effort.
184
     */
185
    tiff_jpeg_destination_mgr dest; /* data dest for compression */
186
    tiff_jpeg_source_mgr src;       /* data source for decompression */
187
                                    /* private state */
188
    TIFF *tif;                      /* back link needed by some code */
189
    uint16_t photometric;           /* copy of PhotometricInterpretation */
190
    uint16_t h_sampling;            /* luminance sampling factors */
191
    uint16_t v_sampling;
192
    tmsize_t bytesperline; /* decompressed bytes per scanline */
193
    uint32_t strile_width;
194
    uint32_t strile_height;
195
    /* pointers to intermediate buffers when processing downsampled data */
196
    TIFF_JSAMPARRAY ds_buffer[MAX_COMPONENTS];
197
    int scancount; /* number of "scanlines" accumulated */
198
    int samplesperclump;
199
200
    JPEGOtherSettings otherSettings;
201
202
    int encode_raw_error;
203
} JPEGState;
204
#ifdef _MSC_VER
205
#pragma warning(pop)
206
#endif
207
208
0
#define JState(tif) ((JPEGState *)(tif)->tif_data)
209
210
static int JPEGDecode(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s);
211
static int JPEGDecodeRaw(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s);
212
static int JPEGEncode(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s);
213
static int JPEGEncodeRaw(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s);
214
static int JPEGInitializeLibJPEG(TIFF *tif, int decode);
215
static int DecodeRowError(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s);
216
217
#define FIELD_JPEGTABLES (FIELD_CODEC + 0)
218
219
static const TIFFField jpegFields[] = {
220
    {TIFFTAG_JPEGTABLES, -3, -3, TIFF_UNDEFINED, 0, TIFF_SETGET_C32_UINT8,
221
     FIELD_JPEGTABLES, FALSE, TRUE, "JPEGTables", NULL},
222
    {TIFFTAG_JPEGQUALITY, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, FIELD_PSEUDO,
223
     TRUE, FALSE, "", NULL},
224
    {TIFFTAG_JPEGCOLORMODE, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, FIELD_PSEUDO,
225
     FALSE, FALSE, "", NULL},
226
    {TIFFTAG_JPEGTABLESMODE, 0, 0, TIFF_ANY, 0, TIFF_SETGET_INT, FIELD_PSEUDO,
227
     FALSE, FALSE, "", NULL}};
228
229
/*
230
 * libjpeg interface layer.
231
 *
232
 * We use setjmp/longjmp to return control to libtiff
233
 * when a fatal error is encountered within the JPEG
234
 * library.  We also direct libjpeg error and warning
235
 * messages through the appropriate libtiff handlers.
236
 */
237
238
/*
239
 * Error handling routines (these replace corresponding
240
 * IJG routines from jerror.c).  These are used for both
241
 * compression and decompression.
242
 */
243
static void TIFFjpeg_error_exit(j_common_ptr cinfo)
244
0
{
245
0
    JPEGState *sp = (JPEGState *)cinfo; /* NB: cinfo assumed first */
246
0
    char buffer[JMSG_LENGTH_MAX];
247
248
0
    (*cinfo->err->format_message)(cinfo, buffer);
249
0
    TIFFErrorExtR(sp->tif, "JPEGLib", "%s",
250
0
                  buffer);       /* display the error message */
251
0
    jpeg_abort(cinfo);           /* clean up libjpeg state */
252
0
    LONGJMP(sp->exit_jmpbuf, 1); /* return to libtiff caller */
253
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_error_exit
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_error_exit
254
255
/*
256
 * This routine is invoked only for warning messages,
257
 * since error_exit does its own thing and trace_level
258
 * is never set > 0.
259
 */
260
static void TIFFjpeg_output_message(j_common_ptr cinfo)
261
0
{
262
0
    char buffer[JMSG_LENGTH_MAX];
263
264
0
    (*cinfo->err->format_message)(cinfo, buffer);
265
0
    TIFFWarningExtR(((JPEGState *)cinfo)->tif, "JPEGLib", "%s", buffer);
266
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_output_message
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_output_message
267
268
/* Avoid the risk of denial-of-service on crafted JPEGs with an insane */
269
/* number of scans. */
270
/* See
271
 * http://www.libjpeg-turbo.org/pmwiki/uploads/About/TwoIssueswiththeJPEGStandard.pdf
272
 */
273
static void TIFFjpeg_progress_monitor(j_common_ptr cinfo)
274
0
{
275
0
    JPEGState *sp = (JPEGState *)cinfo; /* NB: cinfo assumed first */
276
0
    if (cinfo->is_decompressor)
277
0
    {
278
0
        const int scan_no = ((j_decompress_ptr)cinfo)->input_scan_number;
279
0
        if (scan_no >= sp->otherSettings.max_allowed_scan_number)
280
0
        {
281
0
            TIFFErrorExtR(
282
0
                ((JPEGState *)cinfo)->tif, "TIFFjpeg_progress_monitor",
283
0
                "Scan number %d exceeds maximum scans (%d). This limit "
284
0
                "can be raised through the "
285
0
                "LIBTIFF_JPEG_MAX_ALLOWED_SCAN_NUMBER "
286
0
                "environment variable.",
287
0
                scan_no, sp->otherSettings.max_allowed_scan_number);
288
289
0
            jpeg_abort(cinfo);           /* clean up libjpeg state */
290
0
            LONGJMP(sp->exit_jmpbuf, 1); /* return to libtiff caller */
291
0
        }
292
0
    }
293
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_progress_monitor
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_progress_monitor
294
295
/*
296
 * Interface routines.  This layer of routines exists
297
 * primarily to limit side-effects from using setjmp.
298
 * Also, normal/error returns are converted into return
299
 * values per libtiff practice.
300
 */
301
0
#define CALLJPEG(sp, fail, op) (SETJMP((sp)->exit_jmpbuf) ? (fail) : (op))
302
0
#define CALLVJPEG(sp, op) CALLJPEG(sp, 0, ((op), 1))
303
304
static int TIFFjpeg_create_compress(JPEGState *sp)
305
0
{
306
    /* initialize JPEG error handling */
307
0
    sp->cinfo.c.err = jpeg_std_error(&sp->err);
308
0
    sp->err.error_exit = TIFFjpeg_error_exit;
309
0
    sp->err.output_message = TIFFjpeg_output_message;
310
311
    /* set client_data to avoid UMR warning from tools like Purify */
312
0
    sp->cinfo.c.client_data = NULL;
313
314
0
    return CALLVJPEG(sp, jpeg_create_compress(&sp->cinfo.c));
315
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_create_compress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_create_compress
316
317
static int TIFFjpeg_create_decompress(JPEGState *sp)
318
0
{
319
    /* initialize JPEG error handling */
320
0
    sp->cinfo.d.err = jpeg_std_error(&sp->err);
321
0
    sp->err.error_exit = TIFFjpeg_error_exit;
322
0
    sp->err.output_message = TIFFjpeg_output_message;
323
324
    /* set client_data to avoid UMR warning from tools like Purify */
325
0
    sp->cinfo.d.client_data = NULL;
326
327
0
    return CALLVJPEG(sp, jpeg_create_decompress(&sp->cinfo.d));
328
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_create_decompress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_create_decompress
329
330
static int TIFFjpeg_set_defaults(JPEGState *sp)
331
0
{
332
0
    return CALLVJPEG(sp, jpeg_set_defaults(&sp->cinfo.c));
333
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_set_defaults
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_set_defaults
334
335
static int TIFFjpeg_set_colorspace(JPEGState *sp, J_COLOR_SPACE colorspace)
336
0
{
337
0
    return CALLVJPEG(sp, jpeg_set_colorspace(&sp->cinfo.c, colorspace));
338
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_set_colorspace
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_set_colorspace
339
340
static int TIFFjpeg_set_quality(JPEGState *sp, int quality,
341
                                boolean force_baseline)
342
0
{
343
0
    return CALLVJPEG(sp,
344
0
                     jpeg_set_quality(&sp->cinfo.c, quality, force_baseline));
345
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_set_quality
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_set_quality
346
347
static int TIFFjpeg_suppress_tables(JPEGState *sp, boolean suppress)
348
0
{
349
0
    return CALLVJPEG(sp, jpeg_suppress_tables(&sp->cinfo.c, suppress));
350
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_suppress_tables
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_suppress_tables
351
352
static int TIFFjpeg_start_compress(JPEGState *sp, boolean write_all_tables)
353
0
{
354
0
    return CALLVJPEG(sp, jpeg_start_compress(&sp->cinfo.c, write_all_tables));
355
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_start_compress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_start_compress
356
357
static int TIFFjpeg_write_scanlines(JPEGState *sp, TIFF_JSAMPARRAY scanlines,
358
                                    int num_lines)
359
0
{
360
#if defined(HAVE_JPEGTURBO_DUAL_MODE_8_12) && BITS_IN_JSAMPLE == 12
361
    return CALLJPEG(sp, -1,
362
                    (int)jpeg12_write_scanlines(&sp->cinfo.c, scanlines,
363
                                                (JDIMENSION)num_lines));
364
#else
365
0
    return CALLJPEG(sp, -1,
366
0
                    (int)jpeg_write_scanlines(&sp->cinfo.c, scanlines,
367
0
                                              (JDIMENSION)num_lines));
368
0
#endif
369
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_write_scanlines
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_write_scanlines
370
371
static int TIFFjpeg_write_raw_data(JPEGState *sp, TIFF_JSAMPIMAGE data,
372
                                   int num_lines)
373
0
{
374
#if defined(HAVE_JPEGTURBO_DUAL_MODE_8_12) && BITS_IN_JSAMPLE == 12
375
    return CALLJPEG(
376
        sp, -1,
377
        (int)jpeg12_write_raw_data(&sp->cinfo.c, data, (JDIMENSION)num_lines));
378
#else
379
0
    return CALLJPEG(
380
0
        sp, -1,
381
0
        (int)jpeg_write_raw_data(&sp->cinfo.c, data, (JDIMENSION)num_lines));
382
0
#endif
383
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_write_raw_data
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_write_raw_data
384
385
static int TIFFjpeg_finish_compress(JPEGState *sp)
386
0
{
387
0
    return CALLVJPEG(sp, jpeg_finish_compress(&sp->cinfo.c));
388
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_finish_compress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_finish_compress
389
390
static int TIFFjpeg_write_tables(JPEGState *sp)
391
0
{
392
0
    return CALLVJPEG(sp, jpeg_write_tables(&sp->cinfo.c));
393
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_write_tables
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_write_tables
394
395
static int TIFFjpeg_read_header(JPEGState *sp, boolean require_image)
396
0
{
397
0
    return CALLJPEG(sp, -1, jpeg_read_header(&sp->cinfo.d, require_image));
398
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_read_header
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_read_header
399
400
static int TIFFjpeg_has_multiple_scans(JPEGState *sp)
401
0
{
402
0
    return CALLJPEG(sp, 0, jpeg_has_multiple_scans(&sp->cinfo.d));
403
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_has_multiple_scans
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_has_multiple_scans
404
405
static int TIFFjpeg_start_decompress(JPEGState *sp)
406
0
{
407
0
    const char *sz_max_allowed_scan_number;
408
    /* progress monitor */
409
0
    sp->cinfo.d.progress = &sp->progress;
410
0
    sp->progress.progress_monitor = TIFFjpeg_progress_monitor;
411
0
    sp->otherSettings.max_allowed_scan_number = 100;
412
0
    sz_max_allowed_scan_number = getenv("LIBTIFF_JPEG_MAX_ALLOWED_SCAN_NUMBER");
413
0
    if (sz_max_allowed_scan_number)
414
0
        sp->otherSettings.max_allowed_scan_number =
415
0
            atoi(sz_max_allowed_scan_number);
416
417
0
    return CALLVJPEG(sp, jpeg_start_decompress(&sp->cinfo.d));
418
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_start_decompress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_start_decompress
419
420
static int TIFFjpeg_read_scanlines(JPEGState *sp, TIFF_JSAMPARRAY scanlines,
421
                                   int max_lines)
422
0
{
423
#if defined(HAVE_JPEGTURBO_DUAL_MODE_8_12) && BITS_IN_JSAMPLE == 12
424
    return CALLJPEG(sp, -1,
425
                    (int)jpeg12_read_scanlines(&sp->cinfo.d, scanlines,
426
                                               (JDIMENSION)max_lines));
427
#else
428
0
    return CALLJPEG(sp, -1,
429
0
                    (int)jpeg_read_scanlines(&sp->cinfo.d, scanlines,
430
0
                                             (JDIMENSION)max_lines));
431
0
#endif
432
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_read_scanlines
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_read_scanlines
433
434
static int TIFFjpeg_read_raw_data(JPEGState *sp, TIFF_JSAMPIMAGE data,
435
                                  int max_lines)
436
0
{
437
#if defined(HAVE_JPEGTURBO_DUAL_MODE_8_12) && BITS_IN_JSAMPLE == 12
438
    return CALLJPEG(
439
        sp, -1,
440
        (int)jpeg12_read_raw_data(&sp->cinfo.d, data, (JDIMENSION)max_lines));
441
#else
442
0
    return CALLJPEG(
443
0
        sp, -1,
444
0
        (int)jpeg_read_raw_data(&sp->cinfo.d, data, (JDIMENSION)max_lines));
445
0
#endif
446
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_read_raw_data
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_read_raw_data
447
448
static tmsize_t JPEGRawBytesPerClumpLine(TIFF *tif, uint32_t width,
449
                                         uint16_t h_sampling,
450
                                         uint16_t v_sampling,
451
                                         int data_precision, const char *module)
452
0
{
453
0
    uint64_t clumps_per_line;
454
0
    uint64_t samples_per_clump;
455
0
    uint64_t samples_per_clumpline;
456
0
    uint64_t bits_per_clumpline;
457
0
    uint64_t bytes_per_clumpline;
458
459
0
    if (h_sampling == 0 || v_sampling == 0 || data_precision <= 0)
460
0
    {
461
0
        TIFFErrorExtR(tif, module, "Invalid JPEG sampling or precision");
462
0
        return 0;
463
0
    }
464
465
0
    clumps_per_line = TIFFhowmany_64(width, h_sampling);
466
0
    samples_per_clump = _TIFFAdd64(
467
0
        tif, _TIFFMultiply64(tif, h_sampling, v_sampling, module), 2, module);
468
0
    samples_per_clumpline =
469
0
        _TIFFMultiply64(tif, clumps_per_line, samples_per_clump, module);
470
0
    bits_per_clumpline = _TIFFMultiply64(tif, samples_per_clumpline,
471
0
                                         (uint64_t)data_precision, module);
472
0
    bytes_per_clumpline = TIFFhowmany8_64(bits_per_clumpline);
473
0
    return _TIFFCastUInt64ToSSize(tif, bytes_per_clumpline, module);
474
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGRawBytesPerClumpLine
Unexecuted instantiation: tif_jpeg_12.c:JPEGRawBytesPerClumpLine
475
476
/*
477
 * Read/write the packed 12-bit byte layout used by the existing JPEG
478
 * 12-bit pair-based conversion:
479
 *
480
 *   sample0: byte0[7:0] + byte1[7:4]
481
 *   sample1: byte1[3:0] + byte2[7:0]
482
 *
483
 * This is packed sample layout, not a host-endian typed load.  These helpers
484
 * preserve the previous byte layout and only make odd final samples explicit.
485
 * FillOrder bit reversal is not applied here.
486
 */
487
static TIFF_JSAMPLE JPEGReadPacked12Sample(const uint8_t *buf,
488
                                           tmsize_t sample_index)
489
0
{
490
0
    const uint8_t *p = buf + (sample_index / 2) * 3;
491
0
    if ((sample_index & 1) != 0)
492
0
        return (TIFF_JSAMPLE)(((p[1] & 0x0f) << 8) | p[2]);
493
0
    return (TIFF_JSAMPLE)((p[0] << 4) | ((p[1] & 0xf0) >> 4));
494
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGReadPacked12Sample
Unexecuted instantiation: tif_jpeg_12.c:JPEGReadPacked12Sample
495
496
static void TIFF_ATTRIBUTE((unused))
497
    JPEGWritePacked12Sample(uint8_t *buf, tmsize_t sample_index,
498
                            TIFF_JSAMPLE sample)
499
0
{
500
0
    uint16_t v = (uint16_t)sample & 0x0fff;
501
0
    uint8_t *p = buf + (sample_index / 2) * 3;
502
0
    if ((sample_index & 1) != 0)
503
0
    {
504
0
        p[1] = (uint8_t)((p[1] & 0xf0) | ((v >> 8) & 0x0f));
505
0
        p[2] = (uint8_t)(v & 0xff);
506
0
    }
507
0
    else
508
0
    {
509
0
        p[0] = (uint8_t)(v >> 4);
510
0
        p[1] = (uint8_t)((v & 0x0f) << 4);
511
0
    }
512
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGWritePacked12Sample
Unexecuted instantiation: tif_jpeg_12.c:JPEGWritePacked12Sample
513
514
static int TIFFjpeg_finish_decompress(JPEGState *sp)
515
0
{
516
0
    return CALLJPEG(sp, -1, (int)jpeg_finish_decompress(&sp->cinfo.d));
517
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_finish_decompress
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_finish_decompress
518
519
static int TIFFjpeg_abort(JPEGState *sp)
520
0
{
521
0
    return CALLVJPEG(sp, jpeg_abort(&sp->cinfo.comm));
522
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_abort
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_abort
523
524
static int TIFFjpeg_destroy(JPEGState *sp)
525
0
{
526
0
    return CALLVJPEG(sp, jpeg_destroy(&sp->cinfo.comm));
527
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_destroy
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_destroy
528
529
static JSAMPARRAY TIFFjpeg_alloc_sarray(JPEGState *sp, int pool_id,
530
                                        JDIMENSION samplesperrow,
531
                                        JDIMENSION numrows)
532
0
{
533
0
    return CALLJPEG(sp, (JSAMPARRAY)NULL,
534
0
                    (*sp->cinfo.comm.mem->alloc_sarray)(
535
0
                        &sp->cinfo.comm, pool_id, samplesperrow, numrows));
536
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_alloc_sarray
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_alloc_sarray
537
538
/*
539
 * JPEG library destination data manager.
540
 * These routines direct compressed data from libjpeg into the
541
 * libtiff output buffer.
542
 */
543
544
static void std_init_destination(j_compress_ptr cinfo)
545
0
{
546
0
    JPEGState *sp = (JPEGState *)cinfo;
547
0
    TIFF *tif = sp->tif;
548
549
0
    sp->dest.next_output_byte = (JOCTET *)tif->tif_rawdata;
550
0
    sp->dest.free_in_buffer = (size_t)tif->tif_rawdatasize;
551
0
}
Unexecuted instantiation: tif_jpeg.c:std_init_destination
Unexecuted instantiation: tif_jpeg_12.c:std_init_destination
552
553
static boolean std_empty_output_buffer(j_compress_ptr cinfo)
554
0
{
555
0
    JPEGState *sp = (JPEGState *)cinfo;
556
0
    TIFF *tif = sp->tif;
557
558
    /* the entire buffer has been filled */
559
0
    tif->tif_rawcc = tif->tif_rawdatasize;
560
561
#ifdef IPPJ_HUFF
562
    /*
563
     * The Intel IPP performance library does not necessarily fill up
564
     * the whole output buffer on each pass, so only dump out the parts
565
     * that have been filled.
566
     *   http://trac.osgeo.org/gdal/wiki/JpegIPP
567
     */
568
    if (sp->dest.free_in_buffer >= 0)
569
    {
570
        tif->tif_rawcc = tif->tif_rawdatasize - sp->dest.free_in_buffer;
571
    }
572
#endif
573
574
0
    if (!TIFFFlushData1(tif))
575
0
        return FALSE;
576
0
    sp->dest.next_output_byte = (JOCTET *)tif->tif_rawdata;
577
0
    sp->dest.free_in_buffer = (size_t)tif->tif_rawdatasize;
578
579
0
    return (TRUE);
580
0
}
Unexecuted instantiation: tif_jpeg.c:std_empty_output_buffer
Unexecuted instantiation: tif_jpeg_12.c:std_empty_output_buffer
581
582
static void std_term_destination(j_compress_ptr cinfo)
583
0
{
584
0
    JPEGState *sp = (JPEGState *)cinfo;
585
0
    TIFF *tif = sp->tif;
586
587
0
    tif->tif_rawcp = (uint8_t *)sp->dest.next_output_byte;
588
0
    tif->tif_rawcc = tif->tif_rawdatasize - (tmsize_t)sp->dest.free_in_buffer;
589
    /* NB: libtiff does the final buffer flush */
590
0
}
Unexecuted instantiation: tif_jpeg.c:std_term_destination
Unexecuted instantiation: tif_jpeg_12.c:std_term_destination
591
592
static void TIFFjpeg_data_dest(JPEGState *sp, TIFF *tif)
593
0
{
594
0
    (void)tif;
595
0
    sp->cinfo.c.dest = &sp->dest;
596
0
    sp->dest.init_destination = std_init_destination;
597
0
    sp->dest.empty_output_buffer = std_empty_output_buffer;
598
0
    sp->dest.term_destination = std_term_destination;
599
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_data_dest
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_data_dest
600
601
/*
602
 * Alternate destination manager for outputting to JPEGTables field.
603
 */
604
605
static void tables_init_destination(j_compress_ptr cinfo)
606
0
{
607
0
    JPEGState *sp = (JPEGState *)cinfo;
608
609
    /* while building, otherSettings.jpegtables_length is allocated buffer size
610
     */
611
0
    sp->dest.next_output_byte = (JOCTET *)sp->otherSettings.jpegtables;
612
0
    sp->dest.free_in_buffer = (size_t)sp->otherSettings.jpegtables_length;
613
0
}
Unexecuted instantiation: tif_jpeg.c:tables_init_destination
Unexecuted instantiation: tif_jpeg_12.c:tables_init_destination
614
615
static boolean tables_empty_output_buffer(j_compress_ptr cinfo)
616
0
{
617
0
    JPEGState *sp = (JPEGState *)cinfo;
618
0
    void *newbuf;
619
620
    /* the entire buffer has been filled; enlarge it by 1000 bytes */
621
0
    newbuf =
622
0
        _TIFFreallocExt(sp->tif, (void *)sp->otherSettings.jpegtables,
623
0
                        (tmsize_t)sp->otherSettings.jpegtables_length + 1000);
624
0
    if (newbuf == NULL)
625
0
        ERREXIT1(cinfo, JERR_OUT_OF_MEMORY, 100);
626
0
    sp->dest.next_output_byte =
627
0
        (JOCTET *)newbuf + sp->otherSettings.jpegtables_length;
628
0
    sp->dest.free_in_buffer = (size_t)1000;
629
0
    sp->otherSettings.jpegtables = newbuf;
630
0
    sp->otherSettings.jpegtables_length += 1000;
631
0
    return (TRUE);
632
0
}
Unexecuted instantiation: tif_jpeg.c:tables_empty_output_buffer
Unexecuted instantiation: tif_jpeg_12.c:tables_empty_output_buffer
633
634
static void tables_term_destination(j_compress_ptr cinfo)
635
0
{
636
0
    JPEGState *sp = (JPEGState *)cinfo;
637
638
    /* set tables length to number of bytes actually emitted */
639
0
    sp->otherSettings.jpegtables_length -= (uint32_t)sp->dest.free_in_buffer;
640
0
}
Unexecuted instantiation: tif_jpeg.c:tables_term_destination
Unexecuted instantiation: tif_jpeg_12.c:tables_term_destination
641
642
static int TIFFjpeg_tables_dest(JPEGState *sp, TIFF *tif)
643
0
{
644
0
    (void)tif;
645
    /*
646
     * Allocate a working buffer for building tables.
647
     * Initial size is 1000 bytes, which is usually adequate.
648
     */
649
0
    if (sp->otherSettings.jpegtables)
650
0
        _TIFFfreeExt(tif, sp->otherSettings.jpegtables);
651
0
    sp->otherSettings.jpegtables_length = 1000;
652
0
    sp->otherSettings.jpegtables = (void *)_TIFFmallocExt(
653
0
        tif, (tmsize_t)sp->otherSettings.jpegtables_length);
654
0
    if (sp->otherSettings.jpegtables == NULL)
655
0
    {
656
0
        sp->otherSettings.jpegtables_length = 0;
657
0
        TIFFErrorExtR(sp->tif, "TIFFjpeg_tables_dest",
658
0
                      "No space for JPEGTables");
659
0
        return (0);
660
0
    }
661
0
    sp->cinfo.c.dest = &sp->dest;
662
0
    sp->dest.init_destination = tables_init_destination;
663
0
    sp->dest.empty_output_buffer = tables_empty_output_buffer;
664
0
    sp->dest.term_destination = tables_term_destination;
665
0
    return (1);
666
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_tables_dest
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_tables_dest
667
668
/*
669
 * JPEG library source data manager.
670
 * These routines supply compressed data to libjpeg.
671
 */
672
673
static void std_init_source(j_decompress_ptr cinfo)
674
0
{
675
0
    JPEGState *sp = (JPEGState *)cinfo;
676
0
    TIFF *tif = sp->tif;
677
678
0
    sp->src.next_input_byte = (const JOCTET *)tif->tif_rawdata;
679
0
    sp->src.bytes_in_buffer = (size_t)tif->tif_rawcc;
680
0
}
Unexecuted instantiation: tif_jpeg.c:std_init_source
Unexecuted instantiation: tif_jpeg_12.c:std_init_source
681
682
static boolean std_fill_input_buffer(j_decompress_ptr cinfo)
683
0
{
684
0
    JPEGState *sp = (JPEGState *)cinfo;
685
0
    static const JOCTET dummy_EOI[2] = {0xFF, JPEG_EOI};
686
687
#ifdef IPPJ_HUFF
688
    /*
689
     * The Intel IPP performance library does not necessarily read the whole
690
     * input buffer in one pass, so it is possible to get here with data
691
     * yet to read.
692
     *
693
     * We just return without doing anything, until the entire buffer has
694
     * been read.
695
     * http://trac.osgeo.org/gdal/wiki/JpegIPP
696
     */
697
    if (sp->src.bytes_in_buffer > 0)
698
    {
699
        return (TRUE);
700
    }
701
#endif
702
703
    /*
704
     * Normally the whole strip/tile is read and so we don't need to do
705
     * a fill.  In the case of CHUNKY_STRIP_READ_SUPPORT we might not have
706
     * all the data, but the rawdata is refreshed between scanlines and
707
     * we push this into the io machinery in JPEGDecode().
708
     * http://trac.osgeo.org/gdal/ticket/3894
709
     */
710
711
0
    WARNMS(cinfo, JWRN_JPEG_EOF);
712
    /* insert a fake EOI marker */
713
0
    sp->src.next_input_byte = dummy_EOI;
714
0
    sp->src.bytes_in_buffer = 2;
715
0
    return (TRUE);
716
0
}
Unexecuted instantiation: tif_jpeg.c:std_fill_input_buffer
Unexecuted instantiation: tif_jpeg_12.c:std_fill_input_buffer
717
718
static void std_skip_input_data(j_decompress_ptr cinfo, long num_bytes)
719
0
{
720
0
    JPEGState *sp = (JPEGState *)cinfo;
721
722
0
    if (num_bytes > 0)
723
0
    {
724
0
        if ((size_t)num_bytes > sp->src.bytes_in_buffer)
725
0
        {
726
            /* oops, buffer overrun */
727
0
            (void)std_fill_input_buffer(cinfo);
728
0
        }
729
0
        else
730
0
        {
731
0
            sp->src.next_input_byte += (size_t)num_bytes;
732
0
            sp->src.bytes_in_buffer -= (size_t)num_bytes;
733
0
        }
734
0
    }
735
0
}
Unexecuted instantiation: tif_jpeg.c:std_skip_input_data
Unexecuted instantiation: tif_jpeg_12.c:std_skip_input_data
736
737
static void std_term_source(j_decompress_ptr cinfo)
738
0
{
739
    /* No work necessary here */
740
0
    (void)cinfo;
741
0
}
Unexecuted instantiation: tif_jpeg.c:std_term_source
Unexecuted instantiation: tif_jpeg_12.c:std_term_source
742
743
static void TIFFjpeg_data_src(JPEGState *sp)
744
0
{
745
0
    sp->cinfo.d.src = &sp->src;
746
0
    sp->src.init_source = std_init_source;
747
0
    sp->src.fill_input_buffer = std_fill_input_buffer;
748
0
    sp->src.skip_input_data = std_skip_input_data;
749
0
    sp->src.resync_to_restart = jpeg_resync_to_restart;
750
0
    sp->src.term_source = std_term_source;
751
0
    sp->src.bytes_in_buffer = 0; /* for safety */
752
0
    sp->src.next_input_byte = NULL;
753
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_data_src
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_data_src
754
755
/*
756
 * Alternate source manager for reading from JPEGTables.
757
 * We can share all the code except for the init routine.
758
 */
759
760
static void tables_init_source(j_decompress_ptr cinfo)
761
0
{
762
0
    JPEGState *sp = (JPEGState *)cinfo;
763
764
0
    sp->src.next_input_byte = (const JOCTET *)sp->otherSettings.jpegtables;
765
0
    sp->src.bytes_in_buffer = (size_t)sp->otherSettings.jpegtables_length;
766
0
}
Unexecuted instantiation: tif_jpeg.c:tables_init_source
Unexecuted instantiation: tif_jpeg_12.c:tables_init_source
767
768
static void TIFFjpeg_tables_src(JPEGState *sp)
769
0
{
770
0
    TIFFjpeg_data_src(sp);
771
0
    sp->src.init_source = tables_init_source;
772
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFjpeg_tables_src
Unexecuted instantiation: tif_jpeg_12.c:TIFFjpeg_tables_src
773
774
/*
775
 * Allocate downsampled-data buffers needed for downsampled I/O.
776
 * We use values computed in jpeg_start_compress or jpeg_start_decompress.
777
 * We use libjpeg's allocator so that buffers will be released automatically
778
 * when done with strip/tile.
779
 * This is also a handy place to compute samplesperclump, bytesperline.
780
 */
781
static int alloc_downsampled_buffers(TIFF *tif, jpeg_component_info *comp_info,
782
                                     int num_components)
783
0
{
784
0
    JPEGState *sp = JState(tif);
785
0
    int ci;
786
0
    jpeg_component_info *compptr;
787
0
    TIFF_JSAMPARRAY buf;
788
0
    int samples_per_clump = 0;
789
790
0
    for (ci = 0, compptr = comp_info; ci < num_components; ci++, compptr++)
791
0
    {
792
0
        samples_per_clump += compptr->h_samp_factor * compptr->v_samp_factor;
793
0
        buf = (TIFF_JSAMPARRAY)TIFFjpeg_alloc_sarray(
794
0
            sp, JPOOL_IMAGE, compptr->width_in_blocks * DCTSIZE,
795
0
            (JDIMENSION)(compptr->v_samp_factor * DCTSIZE));
796
0
        if (buf == NULL)
797
0
            return (0);
798
0
        sp->ds_buffer[ci] = buf;
799
0
    }
800
0
    sp->samplesperclump = samples_per_clump;
801
0
    return (1);
802
0
}
Unexecuted instantiation: tif_jpeg.c:alloc_downsampled_buffers
Unexecuted instantiation: tif_jpeg_12.c:alloc_downsampled_buffers
803
804
/*
805
 * JPEG Decoding.
806
 */
807
808
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
809
810
0
#define JPEG_MARKER_SOF0 0xC0
811
0
#define JPEG_MARKER_SOF1 0xC1
812
0
#define JPEG_MARKER_SOF2 0xC2
813
0
#define JPEG_MARKER_SOF9 0xC9
814
0
#define JPEG_MARKER_SOF10 0xCA
815
0
#define JPEG_MARKER_DHT 0xC4
816
0
#define JPEG_MARKER_SOI 0xD8
817
0
#define JPEG_MARKER_SOS 0xDA
818
0
#define JPEG_MARKER_DQT 0xDB
819
0
#define JPEG_MARKER_DRI 0xDD
820
0
#define JPEG_MARKER_APP0 0xE0
821
0
#define JPEG_MARKER_COM 0xFE
822
struct JPEGFixupTagsSubsamplingData
823
{
824
    TIFF *tif;
825
    void *buffer;
826
    uint32_t buffersize;
827
    uint8_t *buffercurrentbyte;
828
    uint32_t bufferbytesleft;
829
    uint64_t fileoffset;
830
    uint64_t filebytesleft;
831
    uint8_t filepositioned;
832
};
833
static void JPEGFixupTagsSubsampling(TIFF *tif);
834
static int
835
JPEGFixupTagsSubsamplingSec(struct JPEGFixupTagsSubsamplingData *data);
836
static int
837
JPEGFixupTagsSubsamplingReadByte(struct JPEGFixupTagsSubsamplingData *data,
838
                                 uint8_t *result);
839
static int
840
JPEGFixupTagsSubsamplingReadWord(struct JPEGFixupTagsSubsamplingData *data,
841
                                 uint16_t *result);
842
static void
843
JPEGFixupTagsSubsamplingSkip(struct JPEGFixupTagsSubsamplingData *data,
844
                             uint16_t skiplength);
845
846
#endif
847
848
static int JPEGFixupTags(TIFF *tif)
849
0
{
850
0
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
851
0
    JPEGState *sp = JState(tif);
852
0
    if ((tif->tif_dir.td_photometric == PHOTOMETRIC_YCBCR) &&
853
0
        (tif->tif_dir.td_planarconfig == PLANARCONFIG_CONTIG) &&
854
0
        (tif->tif_dir.td_samplesperpixel == 3) &&
855
0
        !sp->otherSettings.ycbcrsampling_fetched)
856
0
        JPEGFixupTagsSubsampling(tif);
857
0
#endif
858
859
0
    return (1);
860
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTags
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTags
861
862
#ifdef CHECK_JPEG_YCBCR_SUBSAMPLING
863
864
static void JPEGFixupTagsSubsampling(TIFF *tif)
865
0
{
866
    /*
867
     * Some JPEG-in-TIFF produces do not emit the YCBCRSUBSAMPLING values in
868
     * the TIFF tags, but still use non-default (2,2) values within the jpeg
869
     * data stream itself.  In order for TIFF applications to work properly
870
     * - for instance to get the strip buffer size right - it is imperative
871
     * that the subsampling be available before we start reading the image
872
     * data normally.  This function will attempt to analyze the first strip in
873
     * order to get the sampling values from the jpeg data stream.
874
     *
875
     * Note that JPEGPreDeocode() will produce a fairly loud warning when the
876
     * discovered sampling does not match the default sampling (2,2) or whatever
877
     * was actually in the tiff tags.
878
     *
879
     * See the bug in bugzilla for details:
880
     *
881
     * http://bugzilla.remotesensing.org/show_bug.cgi?id=168
882
     *
883
     * Frank Warmerdam, July 2002
884
     * Joris Van Damme, May 2007
885
     */
886
0
    static const char module[] = "JPEGFixupTagsSubsampling";
887
0
    struct JPEGFixupTagsSubsamplingData m;
888
0
    uint64_t fileoffset = TIFFGetStrileOffset(tif, 0);
889
890
0
    if (fileoffset == 0)
891
0
    {
892
        /* Do not even try to check if the first strip/tile does not
893
           yet exist, as occurs when GDAL has created a new NULL file
894
           for instance. */
895
0
        return;
896
0
    }
897
898
0
    m.tif = tif;
899
0
    m.buffersize = 2048;
900
0
    m.buffer = _TIFFmallocExt(tif, m.buffersize);
901
0
    if (m.buffer == NULL)
902
0
    {
903
0
        TIFFWarningExtR(tif, module,
904
0
                        "Unable to allocate memory for auto-correcting of "
905
0
                        "subsampling values; auto-correcting skipped");
906
0
        return;
907
0
    }
908
0
    m.buffercurrentbyte = NULL;
909
0
    m.bufferbytesleft = 0;
910
0
    m.fileoffset = fileoffset;
911
0
    m.filepositioned = 0;
912
0
    m.filebytesleft = TIFFGetStrileByteCount(tif, 0);
913
0
    if (!JPEGFixupTagsSubsamplingSec(&m))
914
0
        TIFFWarningExtR(
915
0
            tif, module,
916
0
            "Unable to auto-correct subsampling values, likely corrupt JPEG "
917
0
            "compressed data in first strip/tile; auto-correcting skipped");
918
0
    _TIFFfreeExt(tif, m.buffer);
919
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTagsSubsampling
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTagsSubsampling
920
921
static int
922
JPEGFixupTagsSubsamplingSec(struct JPEGFixupTagsSubsamplingData *data)
923
0
{
924
0
    static const char module[] = "JPEGFixupTagsSubsamplingSec";
925
0
    uint8_t m;
926
0
    while (1)
927
0
    {
928
0
        while (1)
929
0
        {
930
0
            if (!JPEGFixupTagsSubsamplingReadByte(data, &m))
931
0
                return (0);
932
0
            if (m == 255)
933
0
                break;
934
0
        }
935
0
        while (1)
936
0
        {
937
0
            if (!JPEGFixupTagsSubsamplingReadByte(data, &m))
938
0
                return (0);
939
0
            if (m != 255)
940
0
                break;
941
0
        }
942
0
        switch (m)
943
0
        {
944
0
            case JPEG_MARKER_SOI:
945
                /* this type of marker has no data and should be skipped */
946
0
                break;
947
0
            case JPEG_MARKER_COM:
948
0
            case JPEG_MARKER_APP0:
949
0
            case JPEG_MARKER_APP0 + 1:
950
0
            case JPEG_MARKER_APP0 + 2:
951
0
            case JPEG_MARKER_APP0 + 3:
952
0
            case JPEG_MARKER_APP0 + 4:
953
0
            case JPEG_MARKER_APP0 + 5:
954
0
            case JPEG_MARKER_APP0 + 6:
955
0
            case JPEG_MARKER_APP0 + 7:
956
0
            case JPEG_MARKER_APP0 + 8:
957
0
            case JPEG_MARKER_APP0 + 9:
958
0
            case JPEG_MARKER_APP0 + 10:
959
0
            case JPEG_MARKER_APP0 + 11:
960
0
            case JPEG_MARKER_APP0 + 12:
961
0
            case JPEG_MARKER_APP0 + 13:
962
0
            case JPEG_MARKER_APP0 + 14:
963
0
            case JPEG_MARKER_APP0 + 15:
964
0
            case JPEG_MARKER_DQT:
965
0
            case JPEG_MARKER_SOS:
966
0
            case JPEG_MARKER_DHT:
967
0
            case JPEG_MARKER_DRI:
968
                /* this type of marker has data, but it has no use to us and
969
                 * should be skipped */
970
0
                {
971
0
                    uint16_t n;
972
0
                    if (!JPEGFixupTagsSubsamplingReadWord(data, &n))
973
0
                        return (0);
974
0
                    if (n < 2)
975
0
                        return (0);
976
0
                    n = (uint16_t)(n - 2);
977
0
                    if (n > 0)
978
0
                        JPEGFixupTagsSubsamplingSkip(data, n);
979
0
                }
980
0
                break;
981
0
            case JPEG_MARKER_SOF0:  /* Baseline sequential Huffman */
982
0
            case JPEG_MARKER_SOF1:  /* Extended sequential Huffman */
983
0
            case JPEG_MARKER_SOF2:  /* Progressive Huffman: normally not allowed
984
                                       by  TechNote, but that doesn't hurt
985
                                       supporting it */
986
0
            case JPEG_MARKER_SOF9:  /* Extended sequential arithmetic */
987
0
            case JPEG_MARKER_SOF10: /* Progressive arithmetic: normally not
988
                                       allowed by TechNote, but that doesn't
989
                                       hurt supporting it */
990
                /* this marker contains the subsampling factors we're scanning
991
                 * for */
992
0
                {
993
0
                    uint16_t n;
994
0
                    uint16_t o;
995
0
                    uint8_t p;
996
0
                    uint8_t ph, pv;
997
0
                    if (!JPEGFixupTagsSubsamplingReadWord(data, &n))
998
0
                        return (0);
999
0
                    if (n != 8 + data->tif->tif_dir.td_samplesperpixel * 3)
1000
0
                        return (0);
1001
0
                    JPEGFixupTagsSubsamplingSkip(data, 7);
1002
0
                    if (!JPEGFixupTagsSubsamplingReadByte(data, &p))
1003
0
                        return (0);
1004
0
                    ph = (p >> 4);
1005
0
                    pv = (p & 15);
1006
0
                    JPEGFixupTagsSubsamplingSkip(data, 1);
1007
0
                    for (o = 1; o < data->tif->tif_dir.td_samplesperpixel; o++)
1008
0
                    {
1009
0
                        JPEGFixupTagsSubsamplingSkip(data, 1);
1010
0
                        if (!JPEGFixupTagsSubsamplingReadByte(data, &p))
1011
0
                            return (0);
1012
0
                        if (p != 0x11)
1013
0
                        {
1014
0
                            TIFFWarningExtR(data->tif, module,
1015
0
                                            "Subsampling values inside JPEG "
1016
0
                                            "compressed data "
1017
0
                                            "have no TIFF equivalent, "
1018
0
                                            "auto-correction of TIFF "
1019
0
                                            "subsampling values failed");
1020
0
                            return (1);
1021
0
                        }
1022
0
                        JPEGFixupTagsSubsamplingSkip(data, 1);
1023
0
                    }
1024
0
                    if (((ph != 1) && (ph != 2) && (ph != 4)) ||
1025
0
                        ((pv != 1) && (pv != 2) && (pv != 4)))
1026
0
                    {
1027
0
                        TIFFWarningExtR(data->tif, module,
1028
0
                                        "Subsampling values inside JPEG "
1029
0
                                        "compressed data have no TIFF "
1030
0
                                        "equivalent, auto-correction of TIFF "
1031
0
                                        "subsampling values failed");
1032
0
                        return (1);
1033
0
                    }
1034
0
                    if ((ph != data->tif->tif_dir.td_ycbcrsubsampling[0]) ||
1035
0
                        (pv != data->tif->tif_dir.td_ycbcrsubsampling[1]))
1036
0
                    {
1037
0
                        TIFFWarningExtR(
1038
0
                            data->tif, module,
1039
0
                            "Auto-corrected former TIFF subsampling values "
1040
0
                            "[%" PRIu16 ",%" PRIu16
1041
0
                            "] to match subsampling values inside JPEG "
1042
0
                            "compressed data [%" PRIu8 ",%" PRIu8 "]",
1043
0
                            data->tif->tif_dir.td_ycbcrsubsampling[0],
1044
0
                            data->tif->tif_dir.td_ycbcrsubsampling[1], ph, pv);
1045
0
                        data->tif->tif_dir.td_ycbcrsubsampling[0] = ph;
1046
0
                        data->tif->tif_dir.td_ycbcrsubsampling[1] = pv;
1047
0
                    }
1048
0
                }
1049
0
                return (1);
1050
0
            default:
1051
0
                return (0);
1052
0
        }
1053
0
    }
1054
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTagsSubsamplingSec
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTagsSubsamplingSec
1055
1056
static int
1057
JPEGFixupTagsSubsamplingReadByte(struct JPEGFixupTagsSubsamplingData *data,
1058
                                 uint8_t *result)
1059
0
{
1060
0
    if (data->bufferbytesleft == 0)
1061
0
    {
1062
0
        uint32_t m;
1063
0
        if (data->filebytesleft == 0)
1064
0
            return (0);
1065
0
        if (!data->filepositioned)
1066
0
        {
1067
0
            if (TIFFSeekFile(data->tif, data->fileoffset, SEEK_SET) ==
1068
0
                (toff_t)-1)
1069
0
            {
1070
0
                return 0;
1071
0
            }
1072
0
            data->filepositioned = 1;
1073
0
        }
1074
0
        m = data->buffersize;
1075
0
        if ((uint64_t)m > data->filebytesleft)
1076
0
            m = (uint32_t)data->filebytesleft;
1077
0
        assert(m < 0x80000000UL);
1078
0
        if (TIFFReadFile(data->tif, data->buffer, (tmsize_t)m) != (tmsize_t)m)
1079
0
            return (0);
1080
0
        data->buffercurrentbyte = (uint8_t *)data->buffer;
1081
0
        data->bufferbytesleft = m;
1082
0
        data->fileoffset += m;
1083
0
        data->filebytesleft -= m;
1084
0
    }
1085
0
    *result = *data->buffercurrentbyte;
1086
0
    data->buffercurrentbyte++;
1087
0
    data->bufferbytesleft--;
1088
0
    return (1);
1089
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTagsSubsamplingReadByte
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTagsSubsamplingReadByte
1090
1091
static int
1092
JPEGFixupTagsSubsamplingReadWord(struct JPEGFixupTagsSubsamplingData *data,
1093
                                 uint16_t *result)
1094
0
{
1095
0
    uint8_t ma;
1096
0
    uint8_t mb;
1097
0
    if (!JPEGFixupTagsSubsamplingReadByte(data, &ma))
1098
0
        return (0);
1099
0
    if (!JPEGFixupTagsSubsamplingReadByte(data, &mb))
1100
0
        return (0);
1101
0
    *result = (uint16_t)((ma << 8) | mb);
1102
0
    return (1);
1103
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTagsSubsamplingReadWord
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTagsSubsamplingReadWord
1104
1105
static void
1106
JPEGFixupTagsSubsamplingSkip(struct JPEGFixupTagsSubsamplingData *data,
1107
                             uint16_t skiplength)
1108
0
{
1109
0
    if ((uint32_t)skiplength <= data->bufferbytesleft)
1110
0
    {
1111
0
        data->buffercurrentbyte += skiplength;
1112
0
        data->bufferbytesleft -= skiplength;
1113
0
    }
1114
0
    else
1115
0
    {
1116
0
        uint16_t m;
1117
0
        m = (uint16_t)(skiplength - data->bufferbytesleft);
1118
0
        if (m <= data->filebytesleft)
1119
0
        {
1120
0
            data->bufferbytesleft = 0;
1121
0
            data->fileoffset += m;
1122
0
            data->filebytesleft -= m;
1123
0
            data->filepositioned = 0;
1124
0
        }
1125
0
        else
1126
0
        {
1127
0
            data->bufferbytesleft = 0;
1128
0
            data->filebytesleft = 0;
1129
0
        }
1130
0
    }
1131
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGFixupTagsSubsamplingSkip
Unexecuted instantiation: tif_jpeg_12.c:JPEGFixupTagsSubsamplingSkip
1132
1133
#endif
1134
1135
static int JPEGSetupDecode(TIFF *tif)
1136
0
{
1137
0
    JPEGState *sp = JState(tif);
1138
0
    TIFFDirectory *td = &tif->tif_dir;
1139
1140
#if defined(JPEG_DUAL_MODE_8_12) && !defined(FROM_TIF_JPEG_12)
1141
0
    if (tif->tif_dir.td_bitspersample == 12)
1142
0
    {
1143
        /* We pass a pointer to a copy of otherSettings, since */
1144
        /* TIFFReInitJPEG_12() will clear sp */
1145
0
        JPEGOtherSettings savedOtherSettings = sp->otherSettings;
1146
0
        return TIFFReInitJPEG_12(tif, &savedOtherSettings, COMPRESSION_JPEG, 0);
1147
0
    }
1148
0
#endif
1149
1150
0
    JPEGInitializeLibJPEG(tif, TRUE);
1151
1152
0
    assert(sp != NULL);
1153
0
    assert(sp->cinfo.comm.is_decompressor);
1154
1155
    /* Read JPEGTables if it is present */
1156
0
    if (TIFFFieldSet(tif, FIELD_JPEGTABLES))
1157
0
    {
1158
0
        TIFFjpeg_tables_src(sp);
1159
0
        if (TIFFjpeg_read_header(sp, FALSE) != JPEG_HEADER_TABLES_ONLY)
1160
0
        {
1161
0
            TIFFErrorExtR(tif, "JPEGSetupDecode", "Bogus JPEGTables field");
1162
0
            return (0);
1163
0
        }
1164
0
    }
1165
1166
    /* Grab parameters that are same for all strips/tiles */
1167
0
    sp->photometric = td->td_photometric;
1168
0
    switch (sp->photometric)
1169
0
    {
1170
0
        case PHOTOMETRIC_YCBCR:
1171
0
            sp->h_sampling = td->td_ycbcrsubsampling[0];
1172
0
            sp->v_sampling = td->td_ycbcrsubsampling[1];
1173
0
            break;
1174
0
        default:
1175
            /* TIFF 6.0 forbids subsampling of all other color spaces */
1176
0
            sp->h_sampling = 1;
1177
0
            sp->v_sampling = 1;
1178
0
            break;
1179
0
    }
1180
1181
    /* Set up for reading normal data */
1182
0
    TIFFjpeg_data_src(sp);
1183
0
    tif->tif_postdecode = _TIFFNoPostDecode; /* override byte swapping */
1184
0
    return (1);
1185
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGSetupDecode
Unexecuted instantiation: tif_jpeg_12.c:JPEGSetupDecode
1186
1187
/* Returns 1 if the full strip should be read, even when doing scanline per */
1188
/* scanline decoding. This happens when the JPEG stream uses multiple scans. */
1189
/* Currently only called in CHUNKY_STRIP_READ_SUPPORT mode through */
1190
/* scanline interface. */
1191
/* Only reads tif->tif_dir.td_bitspersample, tif->tif_rawdata and */
1192
/* tif->tif_rawcc members. */
1193
/* Can be called independently of the usual setup/predecode/decode states */
1194
int TIFFJPEGIsFullStripRequired(TIFF *tif)
1195
0
{
1196
0
    int ret;
1197
0
    JPEGState state;
1198
1199
#if defined(JPEG_DUAL_MODE_8_12) && !defined(FROM_TIF_JPEG_12)
1200
0
    if (tif->tif_dir.td_bitspersample == 12)
1201
0
        return TIFFJPEGIsFullStripRequired_12(tif);
1202
0
#endif
1203
1204
0
    memset(&state, 0, sizeof(JPEGState));
1205
0
    state.tif = tif;
1206
1207
0
    TIFFjpeg_create_decompress(&state);
1208
1209
0
    TIFFjpeg_data_src(&state);
1210
1211
0
    if (TIFFjpeg_read_header(&state, TRUE) != JPEG_HEADER_OK)
1212
0
    {
1213
0
        TIFFjpeg_destroy(&state);
1214
0
        return (0);
1215
0
    }
1216
0
    ret = TIFFjpeg_has_multiple_scans(&state);
1217
1218
0
    TIFFjpeg_destroy(&state);
1219
1220
0
    return ret;
1221
0
}
Unexecuted instantiation: gdal_TIFFJPEGIsFullStripRequired
Unexecuted instantiation: gdal_TIFFJPEGIsFullStripRequired_12
1222
1223
static int JPEGComputeStrileWidthHeightBytesPerLine(TIFF *tif, uint16_t s)
1224
0
{
1225
0
    JPEGState *sp = JState(tif);
1226
0
    TIFFDirectory *td = &tif->tif_dir;
1227
1228
    /*
1229
     * Check image parameters and set decompression parameters.
1230
     */
1231
0
    if (isTiled(tif))
1232
0
    {
1233
0
        sp->strile_width = td->td_tilewidth;
1234
0
        sp->strile_height = td->td_tilelength;
1235
0
        sp->bytesperline = TIFFTileRowSize(tif);
1236
0
    }
1237
0
    else
1238
0
    {
1239
0
        sp->strile_width = td->td_imagewidth;
1240
0
        sp->strile_height = td->td_imagelength - tif->tif_dir.td_row;
1241
0
        if (sp->strile_height > td->td_rowsperstrip)
1242
0
            sp->strile_height = td->td_rowsperstrip;
1243
0
        sp->bytesperline = TIFFScanlineSize(tif);
1244
0
    }
1245
0
    if (td->td_planarconfig == PLANARCONFIG_SEPARATE && s > 0)
1246
0
    {
1247
        /*
1248
         * For PC 2, scale down the expected strip/tile size
1249
         * to match a downsampled component
1250
         */
1251
0
        if (sp->h_sampling == 0 || sp->v_sampling == 0)
1252
0
        {
1253
0
            TIFFErrorExtR(tif, "JPEGComputeStrileWidthHeightBytesPerLine",
1254
0
                          "JPEG horizontal or vertical sampling is zero");
1255
0
            return (0);
1256
0
        }
1257
0
        sp->strile_width = TIFFhowmany_32(sp->strile_width, sp->h_sampling);
1258
0
        sp->strile_height = TIFFhowmany_32(sp->strile_height, sp->v_sampling);
1259
0
    }
1260
1261
0
    return 1;
1262
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGComputeStrileWidthHeightBytesPerLine
Unexecuted instantiation: tif_jpeg_12.c:JPEGComputeStrileWidthHeightBytesPerLine
1263
1264
/*
1265
 * Set up for decoding a strip or tile.
1266
 */
1267
/*ARGSUSED*/ static int JPEGPreDecode(TIFF *tif, uint16_t s)
1268
0
{
1269
0
    JPEGState *sp = JState(tif);
1270
0
    TIFFDirectory *td = &tif->tif_dir;
1271
0
    static const char module[] = "JPEGPreDecode";
1272
0
    int downsampled_output;
1273
0
    int ci;
1274
1275
0
    assert(sp != NULL);
1276
1277
0
    if (sp->cinfo.comm.is_decompressor == 0)
1278
0
    {
1279
0
        tif->tif_setupdecode(tif);
1280
0
    }
1281
1282
0
    assert(sp->cinfo.comm.is_decompressor);
1283
    /*
1284
     * Reset decoder state from any previous strip/tile,
1285
     * in case application didn't read the whole strip.
1286
     */
1287
0
    if (!TIFFjpeg_abort(sp))
1288
0
        return (0);
1289
    /*
1290
     * Read the header for this strip/tile.
1291
     */
1292
1293
0
    if (TIFFjpeg_read_header(sp, TRUE) != JPEG_HEADER_OK)
1294
0
        return (0);
1295
1296
0
    tif->tif_rawcp = (uint8_t *)sp->src.next_input_byte;
1297
0
    tif->tif_rawcc = (tmsize_t)sp->src.bytes_in_buffer;
1298
1299
0
    if (!JPEGComputeStrileWidthHeightBytesPerLine(tif, s))
1300
0
        return 0;
1301
1302
0
    if (sp->cinfo.d.image_width < sp->strile_width ||
1303
0
        sp->cinfo.d.image_height < sp->strile_height)
1304
0
    {
1305
0
        TIFFWarningExtR(tif, module,
1306
0
                        "Improper JPEG strip/tile size, "
1307
0
                        "expected %" PRIu32 "x%" PRIu32 ", got %ux%u",
1308
0
                        sp->strile_width, sp->strile_height,
1309
0
                        sp->cinfo.d.image_width, sp->cinfo.d.image_height);
1310
0
    }
1311
0
    if (sp->cinfo.d.image_width == sp->strile_width &&
1312
0
        sp->cinfo.d.image_height > sp->strile_height &&
1313
0
        tif->tif_dir.td_row + sp->strile_height == td->td_imagelength &&
1314
0
        !isTiled(tif))
1315
0
    {
1316
        /* Some files have a last strip, that should be truncated, */
1317
        /* but their JPEG codestream has still the maximum strip */
1318
        /* height. Warn about this as this is non compliant, but */
1319
        /* we can safely recover from that. */
1320
0
        TIFFWarningExtR(tif, module,
1321
0
                        "JPEG strip size exceeds expected dimensions,"
1322
0
                        " expected %" PRIu32 "x%" PRIu32 ", got %ux%u",
1323
0
                        sp->strile_width, sp->strile_height,
1324
0
                        sp->cinfo.d.image_width, sp->cinfo.d.image_height);
1325
0
    }
1326
0
    else if (sp->cinfo.d.image_width > sp->strile_width ||
1327
0
             sp->cinfo.d.image_height > sp->strile_height)
1328
0
    {
1329
        /*
1330
         * This case could be dangerous, if the strip or tile size has
1331
         * been reported as less than the amount of data jpeg will
1332
         * return, some potential security issues arise. Catch this
1333
         * case and error out.
1334
         */
1335
0
        TIFFErrorExtR(tif, module,
1336
0
                      "JPEG strip/tile size exceeds expected dimensions,"
1337
0
                      " expected %" PRIu32 "x%" PRIu32 ", got %ux%u",
1338
0
                      sp->strile_width, sp->strile_height,
1339
0
                      sp->cinfo.d.image_width, sp->cinfo.d.image_height);
1340
0
        return (0);
1341
0
    }
1342
0
    if (sp->cinfo.d.num_components !=
1343
0
        (td->td_planarconfig == PLANARCONFIG_CONTIG ? td->td_samplesperpixel
1344
0
                                                    : 1))
1345
0
    {
1346
0
        TIFFErrorExtR(tif, module, "Improper JPEG component count");
1347
0
        return (0);
1348
0
    }
1349
#ifdef JPEG_LIB_MK1
1350
    if (12 != td->td_bitspersample && 8 != td->td_bitspersample)
1351
    {
1352
        TIFFErrorExtR(tif, module, "Improper JPEG data precision");
1353
        return (0);
1354
    }
1355
    sp->cinfo.d.data_precision = td->td_bitspersample;
1356
    sp->cinfo.d.bits_in_jsample = td->td_bitspersample;
1357
#else
1358
0
    if (td->td_bitspersample != BITS_IN_JSAMPLE ||
1359
0
        sp->cinfo.d.data_precision != td->td_bitspersample)
1360
0
    {
1361
0
        TIFFErrorExtR(tif, module, "Improper JPEG data precision");
1362
0
        return (0);
1363
0
    }
1364
0
#endif
1365
1366
0
    if (sp->cinfo.d.progressive_mode &&
1367
0
        !sp->otherSettings.has_warned_about_progressive_mode)
1368
0
    {
1369
0
        TIFFWarningExtR(tif, module,
1370
0
                        "The JPEG strip/tile is encoded with progressive mode, "
1371
0
                        "which is normally not legal for JPEG-in-TIFF.\n"
1372
0
                        "libtiff should be able to decode it, but it might "
1373
0
                        "cause compatibility issues with other readers");
1374
0
        sp->otherSettings.has_warned_about_progressive_mode = TRUE;
1375
0
    }
1376
1377
    /* In some cases, libjpeg needs to allocate a lot of memory */
1378
    /* http://www.libjpeg-turbo.org/pmwiki/uploads/About/TwoIssueswiththeJPEGStandard.pdf
1379
     */
1380
0
    if (TIFFjpeg_has_multiple_scans(sp))
1381
0
    {
1382
        /* In this case libjpeg will need to allocate memory or backing */
1383
        /* store for all coefficients */
1384
        /* See call to jinit_d_coef_controller() from master_selection() */
1385
        /* in libjpeg */
1386
1387
        /* 1 MB for regular libjpeg usage */
1388
0
        toff_t nRequiredMemory = 1024 * 1024;
1389
1390
0
        for (ci = 0; ci < sp->cinfo.d.num_components; ci++)
1391
0
        {
1392
0
            const jpeg_component_info *compptr = &(sp->cinfo.d.comp_info[ci]);
1393
0
            if (compptr->h_samp_factor > 0 && compptr->v_samp_factor > 0)
1394
0
            {
1395
0
                nRequiredMemory +=
1396
0
                    (toff_t)((JDIMENSION)(((int)compptr->width_in_blocks +
1397
0
                                           compptr->h_samp_factor - 1) /
1398
0
                                          compptr->h_samp_factor)) *
1399
0
                    (JDIMENSION)(((int)compptr->height_in_blocks +
1400
0
                                  compptr->v_samp_factor - 1) /
1401
0
                                 compptr->v_samp_factor) *
1402
0
                    sizeof(JBLOCK);
1403
0
            }
1404
0
        }
1405
1406
0
        if (sp->cinfo.d.mem->max_memory_to_use > 0 &&
1407
0
            nRequiredMemory > (toff_t)(sp->cinfo.d.mem->max_memory_to_use) &&
1408
0
            getenv("LIBTIFF_ALLOW_LARGE_LIBJPEG_MEM_ALLOC") == NULL)
1409
0
        {
1410
0
            TIFFErrorExtR(
1411
0
                tif, module,
1412
0
                "Reading this image would require libjpeg to allocate "
1413
0
                "at least %" PRIu64 " bytes. "
1414
0
                "This is disabled since above the %ld threshold. "
1415
0
                "You may override this restriction by defining the "
1416
0
                "LIBTIFF_ALLOW_LARGE_LIBJPEG_MEM_ALLOC environment variable, "
1417
0
                "or setting the JPEGMEM environment variable to a value "
1418
0
                "greater "
1419
0
                "or equal to '%" PRIu64 "M'",
1420
0
                nRequiredMemory, sp->cinfo.d.mem->max_memory_to_use,
1421
0
                (nRequiredMemory + 1000000u - 1u) / 1000000u);
1422
0
            return 0;
1423
0
        }
1424
0
    }
1425
1426
0
    if (td->td_planarconfig == PLANARCONFIG_CONTIG)
1427
0
    {
1428
        /* Component 0 should have expected sampling factors */
1429
0
        if (sp->cinfo.d.comp_info[0].h_samp_factor != sp->h_sampling ||
1430
0
            sp->cinfo.d.comp_info[0].v_samp_factor != sp->v_sampling)
1431
0
        {
1432
0
            TIFFErrorExtR(tif, module,
1433
0
                          "Improper JPEG sampling factors %d,%d\n"
1434
0
                          "Apparently should be %" PRIu16 ",%" PRIu16 ".",
1435
0
                          sp->cinfo.d.comp_info[0].h_samp_factor,
1436
0
                          sp->cinfo.d.comp_info[0].v_samp_factor,
1437
0
                          sp->h_sampling, sp->v_sampling);
1438
0
            return (0);
1439
0
        }
1440
        /* Rest should have sampling factors 1,1 */
1441
0
        for (ci = 1; ci < sp->cinfo.d.num_components; ci++)
1442
0
        {
1443
0
            if (sp->cinfo.d.comp_info[ci].h_samp_factor != 1 ||
1444
0
                sp->cinfo.d.comp_info[ci].v_samp_factor != 1)
1445
0
            {
1446
0
                TIFFErrorExtR(tif, module, "Improper JPEG sampling factors");
1447
0
                return (0);
1448
0
            }
1449
0
        }
1450
0
    }
1451
0
    else
1452
0
    {
1453
        /* PC 2's single component should have sampling factors 1,1 */
1454
0
        if (sp->cinfo.d.comp_info[0].h_samp_factor != 1 ||
1455
0
            sp->cinfo.d.comp_info[0].v_samp_factor != 1)
1456
0
        {
1457
0
            TIFFErrorExtR(tif, module, "Improper JPEG sampling factors");
1458
0
            return (0);
1459
0
        }
1460
0
    }
1461
0
    downsampled_output = FALSE;
1462
0
    if (td->td_planarconfig == PLANARCONFIG_CONTIG &&
1463
0
        sp->photometric == PHOTOMETRIC_YCBCR &&
1464
0
        sp->otherSettings.jpegcolormode == JPEGCOLORMODE_RGB)
1465
0
    {
1466
        /* Convert YCbCr to RGB */
1467
0
        sp->cinfo.d.jpeg_color_space = JCS_YCbCr;
1468
0
        sp->cinfo.d.out_color_space = JCS_RGB;
1469
0
    }
1470
0
    else
1471
0
    {
1472
        /* Suppress colorspace handling */
1473
0
        sp->cinfo.d.jpeg_color_space = JCS_UNKNOWN;
1474
0
        sp->cinfo.d.out_color_space = JCS_UNKNOWN;
1475
0
        if (td->td_planarconfig == PLANARCONFIG_CONTIG &&
1476
0
            (sp->h_sampling != 1 || sp->v_sampling != 1))
1477
0
            downsampled_output = TRUE;
1478
        /* XXX what about up-sampling? */
1479
0
    }
1480
0
    if (downsampled_output)
1481
0
    {
1482
        /* Need to use raw-data interface to libjpeg */
1483
0
        sp->cinfo.d.raw_data_out = TRUE;
1484
#if JPEG_LIB_VERSION >= 70
1485
0
        sp->cinfo.d.do_fancy_upsampling = FALSE;
1486
#endif /* JPEG_LIB_VERSION >= 70 */
1487
0
        tif->tif_decoderow = DecodeRowError;
1488
0
        tif->tif_decodestrip = JPEGDecodeRaw;
1489
0
        tif->tif_decodetile = JPEGDecodeRaw;
1490
0
    }
1491
0
    else
1492
0
    {
1493
        /* Use normal interface to libjpeg */
1494
0
        sp->cinfo.d.raw_data_out = FALSE;
1495
0
        tif->tif_decoderow = JPEGDecode;
1496
0
        tif->tif_decodestrip = JPEGDecode;
1497
0
        tif->tif_decodetile = JPEGDecode;
1498
0
    }
1499
    /* Start JPEG decompressor */
1500
0
    if (!TIFFjpeg_start_decompress(sp))
1501
0
        return (0);
1502
    /* Allocate downsampled-data buffers if needed */
1503
0
    if (downsampled_output)
1504
0
    {
1505
0
        if (!alloc_downsampled_buffers(tif, sp->cinfo.d.comp_info,
1506
0
                                       sp->cinfo.d.num_components))
1507
0
            return (0);
1508
0
        sp->scancount = DCTSIZE; /* mark buffer empty */
1509
0
    }
1510
0
    return (1);
1511
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGPreDecode
Unexecuted instantiation: tif_jpeg_12.c:JPEGPreDecode
1512
1513
/*
1514
 * Decode a chunk of pixels.
1515
 * "Standard" case: returned data is not downsampled.
1516
 */
1517
#if !defined(JPEG_LIB_MK1_OR_12BIT)
1518
static int JPEGDecode(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s)
1519
0
{
1520
0
    JPEGState *sp = JState(tif);
1521
0
    tmsize_t nrows;
1522
0
    (void)s;
1523
1524
    /*
1525
    ** Update available information, buffer may have been refilled
1526
    ** between decode requests
1527
    */
1528
0
    sp->src.next_input_byte = (const JOCTET *)tif->tif_rawcp;
1529
0
    sp->src.bytes_in_buffer = (size_t)tif->tif_rawcc;
1530
1531
0
    if (sp->bytesperline == 0)
1532
0
    {
1533
0
        memset(buf, 0, (size_t)cc);
1534
0
        return 0;
1535
0
    }
1536
1537
0
    nrows = cc / sp->bytesperline;
1538
0
    if (cc % sp->bytesperline)
1539
0
        TIFFWarningExtR(tif, tif->tif_name, "fractional scanline not read");
1540
1541
0
    if (nrows > (tmsize_t)sp->cinfo.d.image_height)
1542
0
    {
1543
        /* Initialize the output buffer if the JPEG image is smaller than the
1544
         * strile height. */
1545
0
        memset(buf, 0, (size_t)cc);
1546
0
        nrows = sp->cinfo.d.image_height;
1547
0
    }
1548
0
    else if (sp->strile_width > sp->cinfo.d.image_width)
1549
0
    {
1550
        /* Initialize the output buffer if the JPEG image is smaller than the
1551
         * strile width. */
1552
0
        memset(buf, 0, (size_t)cc);
1553
0
    }
1554
1555
    /* data is expected to be read in multiples of a scanline */
1556
0
    if (nrows)
1557
0
    {
1558
0
        do
1559
0
        {
1560
            /*
1561
             * In the libjpeg6b-9a 8bit case.  We read directly into
1562
             * the TIFF buffer.
1563
             */
1564
0
            JSAMPROW bufptr = (JSAMPROW)buf;
1565
1566
0
            if (TIFFjpeg_read_scanlines(sp, &bufptr, 1) != 1)
1567
0
            {
1568
0
                memset(buf, 0, (size_t)cc);
1569
0
                return (0);
1570
0
            }
1571
1572
0
            ++tif->tif_dir.td_row;
1573
0
            buf += sp->bytesperline;
1574
0
            cc -= sp->bytesperline;
1575
0
        } while (--nrows > 0);
1576
0
    }
1577
1578
    /* Update information on consumed data */
1579
0
    tif->tif_rawcp = (uint8_t *)sp->src.next_input_byte;
1580
0
    tif->tif_rawcc = (tmsize_t)sp->src.bytes_in_buffer;
1581
1582
    /* Close down the decompressor if we've finished the strip or tile. */
1583
0
    return sp->cinfo.d.output_scanline < sp->cinfo.d.output_height ||
1584
0
           TIFFjpeg_finish_decompress(sp);
1585
0
}
1586
#endif /* !defined(JPEG_LIB_MK1_OR_12BIT) */
1587
1588
#if defined(JPEG_LIB_MK1_OR_12BIT)
1589
/*ARGSUSED*/ static int JPEGDecode(TIFF *tif, uint8_t *buf, tmsize_t cc,
1590
                                   uint16_t s)
1591
0
{
1592
0
    JPEGState *sp = JState(tif);
1593
0
    tmsize_t nrows;
1594
0
    (void)s;
1595
1596
    /*
1597
    ** Update available information, buffer may have been refilled
1598
    ** between decode requests
1599
    */
1600
0
    sp->src.next_input_byte = (const JOCTET *)tif->tif_rawcp;
1601
0
    sp->src.bytes_in_buffer = (size_t)tif->tif_rawcc;
1602
1603
0
    if (sp->bytesperline == 0)
1604
0
    {
1605
0
        memset(buf, 0, (size_t)cc);
1606
0
        return 0;
1607
0
    }
1608
1609
0
    nrows = cc / sp->bytesperline;
1610
0
    if (cc % sp->bytesperline)
1611
0
        TIFFWarningExtR(tif, tif->tif_name, "fractional scanline not read");
1612
1613
0
    if (nrows > (tmsize_t)sp->cinfo.d.image_height)
1614
0
    {
1615
        /* Initialize the output buffer if the JPEG image is smaller than the
1616
         * strile height. */
1617
0
        memset(buf, 0, (size_t)cc);
1618
0
        nrows = sp->cinfo.d.image_height;
1619
0
    }
1620
0
    else if (sp->strile_width > sp->cinfo.d.image_width)
1621
0
    {
1622
        /* Initialize the output buffer if the JPEG image is smaller than the
1623
         * strile width. */
1624
0
        memset(buf, 0, (size_t)cc);
1625
0
    }
1626
1627
    /* data is expected to be read in multiples of a scanline */
1628
0
    if (nrows)
1629
0
    {
1630
0
        TIFF_JSAMPROW line_work_buf = NULL;
1631
1632
        /*
1633
         * For 6B, only use temporary buffer for 12 bit imagery.
1634
         * For Mk1 always use it.
1635
         */
1636
0
        if (sp->cinfo.d.data_precision == 12)
1637
0
        {
1638
0
            line_work_buf = (TIFF_JSAMPROW)_TIFFmallocExt(
1639
0
                tif, (tmsize_t)((size_t)sizeof(short) *
1640
0
                                (size_t)sp->cinfo.d.output_width *
1641
0
                                (size_t)sp->cinfo.d.num_components));
1642
0
        }
1643
1644
0
        do
1645
0
        {
1646
0
            if (line_work_buf != NULL)
1647
0
            {
1648
                /*
1649
                 * In the MK1 case, we always read into a 16bit
1650
                 * buffer, and then pack down to 12bit or 8bit.
1651
                 * In 6B case we only read into 16 bit buffer
1652
                 * for 12bit data, which we need to repack.
1653
                 */
1654
0
                if (TIFFjpeg_read_scanlines(sp, &line_work_buf, 1) != 1)
1655
0
                {
1656
0
                    memset(buf, 0, (size_t)cc);
1657
0
                    _TIFFfreeExt(tif, line_work_buf);
1658
0
                    return (0);
1659
0
                }
1660
1661
0
                if (sp->cinfo.d.data_precision == 12)
1662
0
                {
1663
0
                    tmsize_t value_count =
1664
0
                        (tmsize_t)((JDIMENSION)sp->cinfo.d.output_width *
1665
0
                                   (JDIMENSION)sp->cinfo.d.num_components);
1666
0
                    tmsize_t iPair;
1667
1668
0
                    for (iPair = 0; iPair < value_count / 2; iPair++)
1669
0
                    {
1670
0
                        unsigned char *out_ptr =
1671
0
                            ((unsigned char *)buf) + iPair * 3;
1672
0
                        TIFF_JSAMPLE *in_ptr = line_work_buf + iPair * 2;
1673
1674
0
                        out_ptr[0] = (unsigned char)((in_ptr[0] & 0xff0) >> 4);
1675
0
                        out_ptr[1] =
1676
0
                            (unsigned char)(((in_ptr[0] & 0xf) << 4) |
1677
0
                                            ((in_ptr[1] & 0xf00) >> 8));
1678
0
                        out_ptr[2] = (unsigned char)(((in_ptr[1] & 0xff) >> 0));
1679
0
                    }
1680
0
                    if ((value_count & 1) != 0)
1681
0
                        JPEGWritePacked12Sample((uint8_t *)buf, value_count - 1,
1682
0
                                                line_work_buf[value_count - 1]);
1683
0
                }
1684
0
                else if (sp->cinfo.d.data_precision == 8)
1685
0
                {
1686
0
                    int value_count =
1687
0
                        (int)((JDIMENSION)sp->cinfo.d.output_width *
1688
0
                              (JDIMENSION)sp->cinfo.d.num_components);
1689
0
                    int iValue;
1690
1691
0
                    for (iValue = 0; iValue < value_count; iValue++)
1692
0
                    {
1693
0
                        ((unsigned char *)buf)[iValue] =
1694
0
                            (unsigned char)(line_work_buf[iValue] & 0xff);
1695
0
                    }
1696
0
                }
1697
0
            }
1698
1699
0
            ++tif->tif_dir.td_row;
1700
0
            buf += sp->bytesperline;
1701
0
            cc -= sp->bytesperline;
1702
0
        } while (--nrows > 0);
1703
1704
0
        if (line_work_buf != NULL)
1705
0
            _TIFFfreeExt(tif, line_work_buf);
1706
0
    }
1707
1708
    /* Update information on consumed data */
1709
0
    tif->tif_rawcp = (uint8_t *)sp->src.next_input_byte;
1710
0
    tif->tif_rawcc = (tmsize_t)sp->src.bytes_in_buffer;
1711
1712
    /* Close down the decompressor if we've finished the strip or tile. */
1713
0
    return sp->cinfo.d.output_scanline < sp->cinfo.d.output_height ||
1714
0
           TIFFjpeg_finish_decompress(sp);
1715
0
}
1716
#endif /* defined(JPEG_LIB_MK1_OR_12BIT) */
1717
1718
/*ARGSUSED*/ static int DecodeRowError(TIFF *tif, uint8_t *buf, tmsize_t cc,
1719
                                       uint16_t s)
1720
1721
0
{
1722
0
    (void)buf;
1723
0
    (void)cc;
1724
0
    (void)s;
1725
1726
0
    TIFFErrorExtR(
1727
0
        tif, "TIFFReadScanline",
1728
0
        "scanline oriented access is not supported for downsampled JPEG "
1729
0
        "compressed images, consider enabling TIFFTAG_JPEGCOLORMODE as "
1730
0
        "JPEGCOLORMODE_RGB.");
1731
0
    return 0;
1732
0
}
Unexecuted instantiation: tif_jpeg.c:DecodeRowError
Unexecuted instantiation: tif_jpeg_12.c:DecodeRowError
1733
1734
/*
1735
 * Decode a chunk of pixels.
1736
 * Returned data is downsampled per sampling factors.
1737
 */
1738
/*ARGSUSED*/ static int JPEGDecodeRaw(TIFF *tif, uint8_t *buf, tmsize_t cc,
1739
                                      uint16_t s)
1740
0
{
1741
0
    JPEGState *sp = JState(tif);
1742
0
    tmsize_t nrows;
1743
0
    TIFFDirectory *td = &tif->tif_dir;
1744
0
    (void)s;
1745
1746
0
    nrows = sp->cinfo.d.image_height;
1747
    /* For last strip, limit number of rows to its truncated height */
1748
    /* even if the codestream height is larger (which is not compliant, */
1749
    /* but that we tolerate) */
1750
0
    if ((uint32_t)nrows > td->td_imagelength - tif->tif_dir.td_row &&
1751
0
        !isTiled(tif))
1752
0
        nrows = td->td_imagelength - tif->tif_dir.td_row;
1753
1754
    /* The downsampled-data decode loop below only writes up to the JPEG
1755
     * codestream dimensions (and, due to the clump stride, may not cover the
1756
     * full caller buffer even for compliant files). Zero the whole buffer so
1757
     * no uninitialised heap is ever returned, mirroring the guard JPEGDecode
1758
     * received in 65759931ab6e (#826). */
1759
0
    memset(buf, 0, (size_t)cc);
1760
1761
#if defined(JPEG_LIB_MK1_OR_12BIT)
1762
    unsigned short *tmpbuf = NULL;
1763
#endif
1764
1765
    /* data is expected to be read in multiples of a scanline */
1766
0
    if (nrows != 0)
1767
0
    {
1768
1769
        /* Cb,Cr both have sampling factors 1, so this is correct */
1770
0
        JDIMENSION clumps_per_line = sp->cinfo.d.comp_info[1].downsampled_width;
1771
0
        int samples_per_clump = sp->samplesperclump;
1772
0
        tmsize_t samplesperclumpline;
1773
0
        tmsize_t bytesperclumpline;
1774
0
        uint64_t samplesperclumpline64;
1775
1776
        /* The loop below writes tmpbuf in raw clump layout: each clump holds
1777
         * samples_per_clump samples and there are clumps_per_line clumps.
1778
         * Thus the required number of elements is their product, rather than
1779
         * output_width * num_components.  The two expressions happen to be
1780
         * equal for some subsampling configurations (for example 2x2), but
1781
         * are not equivalent in general. */
1782
0
        samplesperclumpline64 =
1783
0
            _TIFFMultiply64(tif, (uint64_t)clumps_per_line,
1784
0
                            (uint64_t)samples_per_clump, "JPEGDecodeRaw");
1785
0
        samplesperclumpline =
1786
0
            _TIFFCastUInt64ToSSize(tif, samplesperclumpline64, "JPEGDecodeRaw");
1787
0
        bytesperclumpline = JPEGRawBytesPerClumpLine(
1788
0
            tif, sp->strile_width, sp->h_sampling, sp->v_sampling,
1789
0
            sp->cinfo.d.data_precision, "JPEGDecodeRaw");
1790
0
        if (samplesperclumpline == 0 || bytesperclumpline == 0)
1791
0
            return 0;
1792
1793
#if defined(JPEG_LIB_MK1_OR_12BIT)
1794
0
        tmpbuf = (unsigned short *)_TIFFCheckMalloc(
1795
0
            tif, samplesperclumpline, sizeof(unsigned short), "JPEGDecodeRaw");
1796
0
        if (tmpbuf == NULL)
1797
0
        {
1798
0
            TIFFErrorExtR(tif, "JPEGDecodeRaw", "Out of memory");
1799
0
            return 0;
1800
0
        }
1801
0
#endif
1802
1803
0
        do
1804
0
        {
1805
0
            jpeg_component_info *compptr;
1806
0
            int ci, clumpoffset;
1807
1808
0
            if (cc < bytesperclumpline)
1809
0
            {
1810
0
                TIFFErrorExtR(
1811
0
                    tif, "JPEGDecodeRaw",
1812
0
                    "application buffer not large enough for all data.");
1813
0
                goto error;
1814
0
            }
1815
1816
            /* Reload downsampled-data buffer if needed */
1817
0
            if (sp->scancount >= DCTSIZE)
1818
0
            {
1819
0
                int n = sp->cinfo.d.max_v_samp_factor * DCTSIZE;
1820
0
                if (TIFFjpeg_read_raw_data(sp, sp->ds_buffer, n) != n)
1821
0
                    goto error;
1822
0
                sp->scancount = 0;
1823
0
            }
1824
            /*
1825
             * Fastest way to unseparate data is to make one pass
1826
             * over the scanline for each row of each component.
1827
             */
1828
0
            clumpoffset = 0; /* first sample in clump */
1829
0
            for (ci = 0, compptr = sp->cinfo.d.comp_info;
1830
0
                 ci < sp->cinfo.d.num_components; ci++, compptr++)
1831
0
            {
1832
0
                int hsamp = compptr->h_samp_factor;
1833
0
                int vsamp = compptr->v_samp_factor;
1834
0
                int ypos;
1835
1836
0
                for (ypos = 0; ypos < vsamp; ypos++)
1837
0
                {
1838
0
                    TIFF_JSAMPLE *inptr =
1839
0
                        sp->ds_buffer[ci][sp->scancount * vsamp + ypos];
1840
0
                    JDIMENSION nclump;
1841
#if defined(JPEG_LIB_MK1_OR_12BIT)
1842
0
                    TIFF_JSAMPLE *outptr = (TIFF_JSAMPLE *)tmpbuf + clumpoffset;
1843
#else
1844
                    uint8_t *outptr = buf + clumpoffset;
1845
0
                    if (cc < (tmsize_t)(clumpoffset +
1846
0
                                        (tmsize_t)samples_per_clump *
1847
0
                                            (clumps_per_line - 1) +
1848
0
                                        hsamp))
1849
0
                    {
1850
0
                        TIFFErrorExtR(
1851
0
                            tif, "JPEGDecodeRaw",
1852
0
                            "application buffer not large enough for all data, "
1853
0
                            "possible subsampling issue");
1854
0
                        goto error;
1855
0
                    }
1856
0
#endif
1857
1858
0
                    if (hsamp == 1)
1859
0
                    {
1860
                        /* fast path for at least Cb and Cr */
1861
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
1862
0
                        {
1863
0
                            outptr[0] = (uint8_t)*inptr++;
1864
0
                            outptr += samples_per_clump;
1865
0
                        }
1866
0
                    }
1867
0
                    else
1868
0
                    {
1869
0
                        int xpos;
1870
1871
                        /* general case */
1872
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
1873
0
                        {
1874
0
                            for (xpos = 0; xpos < hsamp; xpos++)
1875
0
                                outptr[xpos] = (uint8_t)*inptr++;
1876
0
                            outptr += samples_per_clump;
1877
0
                        }
1878
0
                    }
1879
0
                    clumpoffset += hsamp;
1880
0
                }
1881
0
            }
1882
1883
#if defined(JPEG_LIB_MK1_OR_12BIT)
1884
            {
1885
0
                if (sp->cinfo.d.data_precision == 8)
1886
0
                {
1887
0
                    tmsize_t i = 0;
1888
0
                    tmsize_t len = samplesperclumpline;
1889
0
                    for (i = 0; i < len; i++)
1890
0
                    {
1891
0
                        ((unsigned char *)buf)[i] =
1892
0
                            (unsigned char)(tmpbuf[i] & 0xff);
1893
0
                    }
1894
0
                }
1895
0
                else
1896
0
                { /* 12-bit */
1897
0
                    tmsize_t iPair;
1898
0
                    for (iPair = 0; iPair < samplesperclumpline / 2; iPair++)
1899
0
                    {
1900
0
                        unsigned char *out_ptr =
1901
0
                            ((unsigned char *)buf) + iPair * 3;
1902
0
                        TIFF_JSAMPLE *in_ptr =
1903
0
                            (TIFF_JSAMPLE *)(tmpbuf + iPair * 2);
1904
1905
0
                        out_ptr[0] = (unsigned char)((in_ptr[0] & 0xff0) >> 4);
1906
0
                        out_ptr[1] =
1907
0
                            (unsigned char)(((in_ptr[0] & 0xf) << 4) |
1908
0
                                            ((in_ptr[1] & 0xf00) >> 8));
1909
0
                        out_ptr[2] = (unsigned char)(((in_ptr[1] & 0xff) >> 0));
1910
0
                    }
1911
0
                    if ((samplesperclumpline & 1) != 0)
1912
0
                        JPEGWritePacked12Sample(
1913
0
                            (uint8_t *)buf, samplesperclumpline - 1,
1914
0
                            (TIFF_JSAMPLE)tmpbuf[samplesperclumpline - 1]);
1915
0
                }
1916
            }
1917
#endif
1918
1919
0
            sp->scancount++;
1920
0
            tif->tif_dir.td_row += sp->v_sampling;
1921
1922
0
            buf += bytesperclumpline;
1923
0
            cc -= bytesperclumpline;
1924
1925
0
            nrows -= sp->v_sampling;
1926
0
        } while (nrows > 0);
1927
1928
#if defined(JPEG_LIB_MK1_OR_12BIT)
1929
0
        _TIFFfreeExt(tif, tmpbuf);
1930
0
#endif
1931
0
    }
1932
1933
    /* Close down the decompressor if done. */
1934
0
    return sp->cinfo.d.output_scanline < sp->cinfo.d.output_height ||
1935
0
           TIFFjpeg_finish_decompress(sp);
1936
1937
0
error:
1938
#if defined(JPEG_LIB_MK1_OR_12BIT)
1939
0
    _TIFFfreeExt(tif, tmpbuf);
1940
#endif
1941
0
    return 0;
1942
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGDecodeRaw
Unexecuted instantiation: tif_jpeg_12.c:JPEGDecodeRaw
1943
1944
/*
1945
 * JPEG Encoding.
1946
 */
1947
1948
static void unsuppress_quant_table(JPEGState *sp, int tblno)
1949
0
{
1950
0
    JQUANT_TBL *qtbl;
1951
1952
0
    if ((qtbl = sp->cinfo.c.quant_tbl_ptrs[tblno]) != NULL)
1953
0
        qtbl->sent_table = FALSE;
1954
0
}
Unexecuted instantiation: tif_jpeg.c:unsuppress_quant_table
Unexecuted instantiation: tif_jpeg_12.c:unsuppress_quant_table
1955
1956
static void suppress_quant_table(JPEGState *sp, int tblno)
1957
0
{
1958
0
    JQUANT_TBL *qtbl;
1959
1960
0
    if ((qtbl = sp->cinfo.c.quant_tbl_ptrs[tblno]) != NULL)
1961
0
        qtbl->sent_table = TRUE;
1962
0
}
Unexecuted instantiation: tif_jpeg.c:suppress_quant_table
Unexecuted instantiation: tif_jpeg_12.c:suppress_quant_table
1963
1964
static void unsuppress_huff_table(JPEGState *sp, int tblno)
1965
0
{
1966
0
    JHUFF_TBL *htbl;
1967
1968
0
    if ((htbl = sp->cinfo.c.dc_huff_tbl_ptrs[tblno]) != NULL)
1969
0
        htbl->sent_table = FALSE;
1970
0
    if ((htbl = sp->cinfo.c.ac_huff_tbl_ptrs[tblno]) != NULL)
1971
0
        htbl->sent_table = FALSE;
1972
0
}
Unexecuted instantiation: tif_jpeg.c:unsuppress_huff_table
Unexecuted instantiation: tif_jpeg_12.c:unsuppress_huff_table
1973
1974
static void suppress_huff_table(JPEGState *sp, int tblno)
1975
0
{
1976
0
    JHUFF_TBL *htbl;
1977
1978
0
    if ((htbl = sp->cinfo.c.dc_huff_tbl_ptrs[tblno]) != NULL)
1979
0
        htbl->sent_table = TRUE;
1980
0
    if ((htbl = sp->cinfo.c.ac_huff_tbl_ptrs[tblno]) != NULL)
1981
0
        htbl->sent_table = TRUE;
1982
0
}
Unexecuted instantiation: tif_jpeg.c:suppress_huff_table
Unexecuted instantiation: tif_jpeg_12.c:suppress_huff_table
1983
1984
static int prepare_JPEGTables(TIFF *tif)
1985
0
{
1986
0
    JPEGState *sp = JState(tif);
1987
1988
    /* Initialize quant tables for current quality setting */
1989
0
    if (!TIFFjpeg_set_quality(sp, sp->otherSettings.jpegquality, FALSE))
1990
0
        return (0);
1991
    /* Mark only the tables we want for output */
1992
    /* NB: chrominance tables are currently used only with YCbCr */
1993
0
    if (!TIFFjpeg_suppress_tables(sp, TRUE))
1994
0
        return (0);
1995
0
    if (sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_QUANT)
1996
0
    {
1997
0
        unsuppress_quant_table(sp, 0);
1998
0
        if (sp->photometric == PHOTOMETRIC_YCBCR)
1999
0
            unsuppress_quant_table(sp, 1);
2000
0
    }
2001
0
    if (sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_HUFF)
2002
0
    {
2003
0
        unsuppress_huff_table(sp, 0);
2004
0
        if (sp->photometric == PHOTOMETRIC_YCBCR)
2005
0
            unsuppress_huff_table(sp, 1);
2006
0
    }
2007
    /* Direct libjpeg output into otherSettings.jpegtables */
2008
0
    if (!TIFFjpeg_tables_dest(sp, tif))
2009
0
        return (0);
2010
    /* Emit tables-only datastream */
2011
0
    if (!TIFFjpeg_write_tables(sp))
2012
0
        return (0);
2013
2014
0
    return (1);
2015
0
}
Unexecuted instantiation: tif_jpeg.c:prepare_JPEGTables
Unexecuted instantiation: tif_jpeg_12.c:prepare_JPEGTables
2016
2017
#if defined(JPEG_LIB_VERSION_MAJOR) &&                                         \
2018
    (JPEG_LIB_VERSION_MAJOR > 9 ||                                             \
2019
     (JPEG_LIB_VERSION_MAJOR == 9 && JPEG_LIB_VERSION_MINOR >= 4))
2020
/* This is a modified version of std_huff_tables() from jcparam.c
2021
 * in libjpeg-9d because it no longer initializes default Huffman
2022
 * tables in jpeg_set_defaults(). */
2023
static void TIFF_std_huff_tables(j_compress_ptr cinfo)
2024
{
2025
2026
    if (cinfo->dc_huff_tbl_ptrs[0] == NULL)
2027
    {
2028
        (void)jpeg_std_huff_table((j_common_ptr)cinfo, TRUE, 0);
2029
    }
2030
    if (cinfo->ac_huff_tbl_ptrs[0] == NULL)
2031
    {
2032
        (void)jpeg_std_huff_table((j_common_ptr)cinfo, FALSE, 0);
2033
    }
2034
    if (cinfo->dc_huff_tbl_ptrs[1] == NULL)
2035
    {
2036
        (void)jpeg_std_huff_table((j_common_ptr)cinfo, TRUE, 1);
2037
    }
2038
    if (cinfo->ac_huff_tbl_ptrs[1] == NULL)
2039
    {
2040
        (void)jpeg_std_huff_table((j_common_ptr)cinfo, FALSE, 1);
2041
    }
2042
}
2043
#endif
2044
2045
static int JPEGSetupEncode(TIFF *tif)
2046
0
{
2047
0
    JPEGState *sp = JState(tif);
2048
0
    TIFFDirectory *td = &tif->tif_dir;
2049
0
    static const char module[] = "JPEGSetupEncode";
2050
2051
#if defined(JPEG_DUAL_MODE_8_12) && !defined(FROM_TIF_JPEG_12)
2052
0
    if (tif->tif_dir.td_bitspersample == 12)
2053
0
    {
2054
        /* We pass a pointer to a copy of otherSettings, since */
2055
        /* TIFFReInitJPEG_12() will clear sp */
2056
0
        JPEGOtherSettings savedOtherSettings = sp->otherSettings;
2057
0
        return TIFFReInitJPEG_12(tif, &savedOtherSettings, COMPRESSION_JPEG, 1);
2058
0
    }
2059
0
#endif
2060
2061
0
    JPEGInitializeLibJPEG(tif, FALSE);
2062
2063
0
    assert(sp != NULL);
2064
0
    assert(!sp->cinfo.comm.is_decompressor);
2065
2066
0
    sp->photometric = td->td_photometric;
2067
2068
    /*
2069
     * Initialize all JPEG parameters to default values.
2070
     * Note that jpeg_set_defaults needs legal values for
2071
     * in_color_space and input_components.
2072
     */
2073
0
    if (td->td_planarconfig == PLANARCONFIG_CONTIG)
2074
0
    {
2075
0
        sp->cinfo.c.input_components = td->td_samplesperpixel;
2076
0
        if (sp->photometric == PHOTOMETRIC_YCBCR)
2077
0
        {
2078
0
            if (sp->otherSettings.jpegcolormode == JPEGCOLORMODE_RGB)
2079
0
            {
2080
0
                sp->cinfo.c.in_color_space = JCS_RGB;
2081
0
            }
2082
0
            else
2083
0
            {
2084
0
                sp->cinfo.c.in_color_space = JCS_YCbCr;
2085
0
            }
2086
0
        }
2087
0
        else
2088
0
        {
2089
0
            if ((td->td_photometric == PHOTOMETRIC_MINISWHITE ||
2090
0
                 td->td_photometric == PHOTOMETRIC_MINISBLACK) &&
2091
0
                td->td_samplesperpixel == 1)
2092
0
                sp->cinfo.c.in_color_space = JCS_GRAYSCALE;
2093
0
            else if (td->td_photometric == PHOTOMETRIC_RGB &&
2094
0
                     td->td_samplesperpixel == 3)
2095
0
                sp->cinfo.c.in_color_space = JCS_RGB;
2096
0
            else if (td->td_photometric == PHOTOMETRIC_SEPARATED &&
2097
0
                     td->td_samplesperpixel == 4)
2098
0
                sp->cinfo.c.in_color_space = JCS_CMYK;
2099
0
            else
2100
0
                sp->cinfo.c.in_color_space = JCS_UNKNOWN;
2101
0
        }
2102
0
    }
2103
0
    else
2104
0
    {
2105
0
        sp->cinfo.c.input_components = 1;
2106
0
        sp->cinfo.c.in_color_space = JCS_UNKNOWN;
2107
0
    }
2108
0
    if (!TIFFjpeg_set_defaults(sp))
2109
0
        return (0);
2110
2111
    /* mozjpeg by default enables progressive JPEG, which is illegal in
2112
     * JPEG-in-TIFF */
2113
    /* So explicitly disable it. */
2114
0
    if (sp->cinfo.c.num_scans != 0 &&
2115
0
        (sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_HUFF) != 0)
2116
0
    {
2117
        /* it has been found that mozjpeg could create corrupt strips/tiles */
2118
        /* in non optimize_coding mode. */
2119
0
        TIFFWarningExtR(
2120
0
            tif, module,
2121
0
            "mozjpeg library likely detected. Disable emission of "
2122
0
            "Huffman tables in JpegTables tag, and use optimize_coding "
2123
0
            "to avoid potential issues");
2124
0
        sp->otherSettings.jpegtablesmode &= ~JPEGTABLESMODE_HUFF;
2125
0
    }
2126
0
    sp->cinfo.c.num_scans = 0;
2127
0
    sp->cinfo.c.scan_info = NULL;
2128
2129
    /* Set per-file parameters */
2130
0
    switch (sp->photometric)
2131
0
    {
2132
0
        case PHOTOMETRIC_YCBCR:
2133
0
            sp->h_sampling = td->td_ycbcrsubsampling[0];
2134
0
            sp->v_sampling = td->td_ycbcrsubsampling[1];
2135
0
            if (sp->h_sampling == 0 || sp->v_sampling == 0)
2136
0
            {
2137
0
                TIFFErrorExtR(tif, module,
2138
0
                              "Invalig horizontal/vertical sampling value");
2139
0
                return (0);
2140
0
            }
2141
0
            if (td->td_bitspersample > 16)
2142
0
            {
2143
0
                TIFFErrorExtR(tif, module,
2144
0
                              "BitsPerSample %" PRIu16 " not allowed for JPEG",
2145
0
                              td->td_bitspersample);
2146
0
                return (0);
2147
0
            }
2148
2149
            /*
2150
             * A ReferenceBlackWhite field *must* be present since the
2151
             * default value is inappropriate for YCbCr.  Fill in the
2152
             * proper value if application didn't set it.
2153
             */
2154
0
            {
2155
0
                float *ref;
2156
0
                if (!TIFFGetField(tif, TIFFTAG_REFERENCEBLACKWHITE, &ref))
2157
0
                {
2158
0
                    float refbw[6];
2159
0
                    uint32_t top = 1U << td->td_bitspersample;
2160
0
                    refbw[0] = 0;
2161
0
                    refbw[1] = (float)(top - 1);
2162
0
                    refbw[2] = (float)(top >> 1);
2163
0
                    refbw[3] = refbw[1];
2164
0
                    refbw[4] = refbw[2];
2165
0
                    refbw[5] = refbw[1];
2166
0
                    TIFFSetField(tif, TIFFTAG_REFERENCEBLACKWHITE, refbw);
2167
0
                }
2168
0
            }
2169
0
            break;
2170
0
        case PHOTOMETRIC_PALETTE: /* disallowed by Tech Note */
2171
0
        case PHOTOMETRIC_MASK:
2172
0
            TIFFErrorExtR(tif, module,
2173
0
                          "PhotometricInterpretation %" PRIu16
2174
0
                          " not allowed for JPEG",
2175
0
                          sp->photometric);
2176
0
            return (0);
2177
0
        default:
2178
            /* TIFF 6.0 forbids subsampling of all other color spaces */
2179
0
            sp->h_sampling = 1;
2180
0
            sp->v_sampling = 1;
2181
0
            break;
2182
0
    }
2183
2184
        /* Verify miscellaneous parameters */
2185
2186
        /*
2187
         * This would need work if libtiff ever supports different
2188
         * depths for different components, or if libjpeg ever supports
2189
         * run-time selection of depth.  Neither is imminent.
2190
         */
2191
#ifdef JPEG_LIB_MK1
2192
    /* BITS_IN_JSAMPLE now permits 8 and 12 --- dgilbert */
2193
    if (td->td_bitspersample != 8 && td->td_bitspersample != 12)
2194
#else
2195
0
    if (td->td_bitspersample != BITS_IN_JSAMPLE)
2196
0
#endif
2197
0
    {
2198
0
        TIFFErrorExtR(tif, module,
2199
0
                      "BitsPerSample %" PRIu16 " not allowed for JPEG",
2200
0
                      td->td_bitspersample);
2201
0
        return (0);
2202
0
    }
2203
0
    sp->cinfo.c.data_precision = td->td_bitspersample;
2204
#ifdef JPEG_LIB_MK1
2205
    sp->cinfo.c.bits_in_jsample = td->td_bitspersample;
2206
#endif
2207
0
    if (isTiled(tif))
2208
0
    {
2209
0
        if ((td->td_tilelength % ((uint32_t)sp->v_sampling * DCTSIZE)) != 0)
2210
0
        {
2211
0
            TIFFErrorExtR(tif, module,
2212
0
                          "JPEG tile height must be multiple of %" PRIu32,
2213
0
                          (uint32_t)sp->v_sampling * DCTSIZE);
2214
0
            return (0);
2215
0
        }
2216
0
        if ((td->td_tilewidth % ((uint32_t)sp->h_sampling * DCTSIZE)) != 0)
2217
0
        {
2218
0
            TIFFErrorExtR(tif, module,
2219
0
                          "JPEG tile width must be multiple of %" PRIu32,
2220
0
                          (uint32_t)sp->h_sampling * DCTSIZE);
2221
0
            return (0);
2222
0
        }
2223
0
    }
2224
0
    else
2225
0
    {
2226
0
        if (td->td_rowsperstrip < td->td_imagelength &&
2227
0
            (td->td_rowsperstrip % ((uint32_t)sp->v_sampling * DCTSIZE)) != 0)
2228
0
        {
2229
0
            TIFFErrorExtR(tif, module,
2230
0
                          "RowsPerStrip must be multiple of %" PRIu32
2231
0
                          " for JPEG",
2232
0
                          (uint32_t)sp->v_sampling * DCTSIZE);
2233
0
            return (0);
2234
0
        }
2235
0
    }
2236
2237
    /* Create a JPEGTables field if appropriate */
2238
0
    if (sp->otherSettings.jpegtablesmode &
2239
0
        (JPEGTABLESMODE_QUANT | JPEGTABLESMODE_HUFF))
2240
0
    {
2241
0
        if (sp->otherSettings.jpegtables == NULL ||
2242
0
            memcmp(sp->otherSettings.jpegtables, "\0\0\0\0\0\0\0\0\0", 8) == 0)
2243
0
        {
2244
#if defined(JPEG_LIB_VERSION_MAJOR) &&                                         \
2245
    (JPEG_LIB_VERSION_MAJOR > 9 ||                                             \
2246
     (JPEG_LIB_VERSION_MAJOR == 9 && JPEG_LIB_VERSION_MINOR >= 4))
2247
            if ((sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_HUFF) != 0 &&
2248
                (sp->cinfo.c.dc_huff_tbl_ptrs[0] == NULL ||
2249
                 sp->cinfo.c.dc_huff_tbl_ptrs[1] == NULL ||
2250
                 sp->cinfo.c.ac_huff_tbl_ptrs[0] == NULL ||
2251
                 sp->cinfo.c.ac_huff_tbl_ptrs[1] == NULL))
2252
            {
2253
                /* libjpeg-9d no longer initializes default Huffman tables in */
2254
                /* jpeg_set_defaults() */
2255
                TIFF_std_huff_tables(&sp->cinfo.c);
2256
            }
2257
#endif
2258
2259
0
            if (!prepare_JPEGTables(tif))
2260
0
                return (0);
2261
            /* Mark the field present */
2262
            /* Can't use TIFFSetField since BEENWRITING is already set! */
2263
0
            tif->tif_flags |= TIFF_DIRTYDIRECT;
2264
0
            TIFFSetFieldBit(tif, FIELD_JPEGTABLES);
2265
0
        }
2266
0
    }
2267
0
    else
2268
0
    {
2269
        /* We do not support application-supplied JPEGTables, */
2270
        /* so mark the field not present */
2271
0
        TIFFClrFieldBit(tif, FIELD_JPEGTABLES);
2272
0
    }
2273
2274
    /* Direct libjpeg output to libtiff's output buffer */
2275
0
    TIFFjpeg_data_dest(sp, tif);
2276
2277
0
    return (1);
2278
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGSetupEncode
Unexecuted instantiation: tif_jpeg_12.c:JPEGSetupEncode
2279
2280
/*
2281
 * Set encoding state at the start of a strip or tile.
2282
 */
2283
static int JPEGPreEncode(TIFF *tif, uint16_t s)
2284
0
{
2285
0
    JPEGState *sp = JState(tif);
2286
0
    TIFFDirectory *td = &tif->tif_dir;
2287
0
    static const char module[] = "JPEGPreEncode";
2288
0
    int downsampled_input;
2289
2290
0
    assert(sp != NULL);
2291
2292
0
    if (sp->cinfo.comm.is_decompressor == 1)
2293
0
    {
2294
0
        tif->tif_setupencode(tif);
2295
0
    }
2296
2297
0
    assert(!sp->cinfo.comm.is_decompressor);
2298
2299
0
    if (!JPEGComputeStrileWidthHeightBytesPerLine(tif, s))
2300
0
        return 0;
2301
2302
0
    if (sp->strile_width > (uint32_t)JPEG_MAX_DIMENSION ||
2303
0
        sp->strile_height > (uint32_t)JPEG_MAX_DIMENSION)
2304
0
    {
2305
0
        TIFFErrorExtR(tif, module,
2306
0
                      "Strip/tile too large for JPEG. Maximum dimension is %d",
2307
0
                      (int)JPEG_MAX_DIMENSION);
2308
0
        return (0);
2309
0
    }
2310
0
    sp->cinfo.c.image_width = sp->strile_width;
2311
0
    sp->cinfo.c.image_height = sp->strile_height;
2312
0
    downsampled_input = FALSE;
2313
0
    if (td->td_planarconfig == PLANARCONFIG_CONTIG)
2314
0
    {
2315
0
        sp->cinfo.c.input_components = td->td_samplesperpixel;
2316
0
        if (sp->photometric == PHOTOMETRIC_YCBCR)
2317
0
        {
2318
0
            if (sp->otherSettings.jpegcolormode != JPEGCOLORMODE_RGB)
2319
0
            {
2320
0
                if (sp->h_sampling != 1 || sp->v_sampling != 1)
2321
0
                    downsampled_input = TRUE;
2322
0
            }
2323
0
            if (!TIFFjpeg_set_colorspace(sp, JCS_YCbCr))
2324
0
                return (0);
2325
            /*
2326
             * Set Y sampling factors;
2327
             * we assume jpeg_set_colorspace() set the rest to 1
2328
             */
2329
0
            sp->cinfo.c.comp_info[0].h_samp_factor = sp->h_sampling;
2330
0
            sp->cinfo.c.comp_info[0].v_samp_factor = sp->v_sampling;
2331
0
        }
2332
0
        else
2333
0
        {
2334
0
            if (!TIFFjpeg_set_colorspace(sp, sp->cinfo.c.in_color_space))
2335
0
                return (0);
2336
            /* jpeg_set_colorspace set all sampling factors to 1 */
2337
0
        }
2338
0
    }
2339
0
    else
2340
0
    {
2341
0
        if (!TIFFjpeg_set_colorspace(sp, JCS_UNKNOWN))
2342
0
            return (0);
2343
0
        sp->cinfo.c.comp_info[0].component_id = s;
2344
        /* jpeg_set_colorspace() set sampling factors to 1 */
2345
0
        if (sp->photometric == PHOTOMETRIC_YCBCR && s > 0)
2346
0
        {
2347
0
            sp->cinfo.c.comp_info[0].quant_tbl_no = 1;
2348
0
            sp->cinfo.c.comp_info[0].dc_tbl_no = 1;
2349
0
            sp->cinfo.c.comp_info[0].ac_tbl_no = 1;
2350
0
        }
2351
0
    }
2352
    /* ensure libjpeg won't write any extraneous markers */
2353
0
    sp->cinfo.c.write_JFIF_header = FALSE;
2354
0
    sp->cinfo.c.write_Adobe_marker = FALSE;
2355
    /* set up table handling correctly */
2356
    /* calling TIFFjpeg_set_quality() causes quantization tables to be flagged
2357
     */
2358
    /* as being to be emitted, which we don't want in the JPEGTABLESMODE_QUANT
2359
     */
2360
    /* mode, so we must manually suppress them. However TIFFjpeg_set_quality()
2361
     */
2362
    /* should really be called when dealing with files with directories with */
2363
    /* mixed qualities. see http://trac.osgeo.org/gdal/ticket/3539 */
2364
0
    if (!TIFFjpeg_set_quality(sp, sp->otherSettings.jpegquality, FALSE))
2365
0
        return (0);
2366
0
    if (sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_QUANT)
2367
0
    {
2368
0
        suppress_quant_table(sp, 0);
2369
0
        suppress_quant_table(sp, 1);
2370
0
    }
2371
0
    else
2372
0
    {
2373
0
        unsuppress_quant_table(sp, 0);
2374
0
        unsuppress_quant_table(sp, 1);
2375
0
    }
2376
0
    if (sp->otherSettings.jpegtablesmode & JPEGTABLESMODE_HUFF)
2377
0
    {
2378
        /* Explicit suppression is only needed if we did not go through the */
2379
        /* prepare_JPEGTables() code path, which may be the case if updating */
2380
        /* an existing file */
2381
0
        suppress_huff_table(sp, 0);
2382
0
        suppress_huff_table(sp, 1);
2383
2384
        /* We want to keep optimize_coding = TRUE for 12-bit JPEG */
2385
        /* See lengthy explanation at
2386
         * https://gitlab.com/libtiff/libtiff/-/work_items/773#note_3009836854
2387
         */
2388
0
        if (sp->cinfo.c.data_precision == 8)
2389
0
            sp->cinfo.c.optimize_coding = FALSE;
2390
0
    }
2391
0
    else
2392
0
        sp->cinfo.c.optimize_coding = TRUE;
2393
0
    if (downsampled_input)
2394
0
    {
2395
        /* Need to use raw-data interface to libjpeg */
2396
0
        sp->cinfo.c.raw_data_in = TRUE;
2397
0
        tif->tif_encoderow = JPEGEncodeRaw;
2398
0
        tif->tif_encodestrip = JPEGEncodeRaw;
2399
0
        tif->tif_encodetile = JPEGEncodeRaw;
2400
0
    }
2401
0
    else
2402
0
    {
2403
        /* Use normal interface to libjpeg */
2404
0
        sp->cinfo.c.raw_data_in = FALSE;
2405
0
        tif->tif_encoderow = JPEGEncode;
2406
0
        tif->tif_encodestrip = JPEGEncode;
2407
0
        tif->tif_encodetile = JPEGEncode;
2408
0
    }
2409
    /* Start JPEG compressor */
2410
0
    if (!TIFFjpeg_start_compress(sp, FALSE))
2411
0
        return (0);
2412
    /* Allocate downsampled-data buffers if needed */
2413
0
    if (downsampled_input)
2414
0
    {
2415
0
        if (!alloc_downsampled_buffers(tif, sp->cinfo.c.comp_info,
2416
0
                                       sp->cinfo.c.num_components))
2417
0
            return (0);
2418
0
    }
2419
0
    sp->scancount = 0;
2420
0
    sp->encode_raw_error = FALSE;
2421
2422
0
    return (1);
2423
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGPreEncode
Unexecuted instantiation: tif_jpeg_12.c:JPEGPreEncode
2424
2425
/*
2426
 * Encode a chunk of pixels.
2427
 * "Standard" case: incoming data is not downsampled.
2428
 */
2429
static int JPEGEncode(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s)
2430
0
{
2431
0
    JPEGState *sp = JState(tif);
2432
0
    tmsize_t nrows;
2433
0
    TIFF_JSAMPROW bufptr[1];
2434
0
    short *line16 = NULL;
2435
0
    int line16_count = 0;
2436
2437
0
    (void)s;
2438
0
    assert(sp != NULL);
2439
    /* data is expected to be supplied in multiples of a scanline */
2440
0
    nrows = cc / sp->bytesperline;
2441
0
    if (cc % sp->bytesperline)
2442
0
        TIFFWarningExtR(tif, tif->tif_name, "fractional scanline discarded");
2443
2444
    /* The last strip will be limited to image size */
2445
0
    if (!isTiled(tif) &&
2446
0
        tif->tif_dir.td_row + nrows > tif->tif_dir.td_imagelength)
2447
0
        nrows = tif->tif_dir.td_imagelength - tif->tif_dir.td_row;
2448
2449
0
    if (sp->cinfo.c.data_precision == 12)
2450
0
    {
2451
0
        line16_count = (int)((sp->bytesperline * 2) / 3);
2452
0
        line16 = (short *)_TIFFmallocExt(
2453
0
            tif, (tmsize_t)(sizeof(short) * (size_t)line16_count));
2454
0
        if (!line16)
2455
0
        {
2456
0
            TIFFErrorExtR(tif, "JPEGEncode", "Failed to allocate memory");
2457
2458
0
            return 0;
2459
0
        }
2460
0
    }
2461
2462
0
    while (nrows-- > 0)
2463
0
    {
2464
2465
0
        if (sp->cinfo.c.data_precision == 12)
2466
0
        {
2467
2468
0
            int value_pairs = line16_count / 2;
2469
0
            int iPair;
2470
2471
0
            bufptr[0] = (TIFF_JSAMPROW)line16;
2472
2473
0
            for (iPair = 0; iPair < value_pairs; iPair++)
2474
0
            {
2475
0
                unsigned char *in_ptr = ((unsigned char *)buf) + iPair * 3;
2476
0
                TIFF_JSAMPLE *out_ptr = (TIFF_JSAMPLE *)(line16 + iPair * 2);
2477
2478
0
                out_ptr[0] = (TIFF_JSAMPLE)((in_ptr[0] << 4) |
2479
0
                                            ((in_ptr[1] & 0xf0) >> 4));
2480
0
                out_ptr[1] =
2481
0
                    (TIFF_JSAMPLE)(((in_ptr[1] & 0x0f) << 8) | in_ptr[2]);
2482
0
            }
2483
0
            if ((line16_count & 1) != 0)
2484
0
            {
2485
0
                line16[line16_count - 1] = (short)JPEGReadPacked12Sample(
2486
0
                    (const uint8_t *)buf, line16_count - 1);
2487
0
            }
2488
0
        }
2489
0
        else
2490
0
        {
2491
0
            bufptr[0] = (TIFF_JSAMPROW)buf;
2492
0
        }
2493
0
        if (TIFFjpeg_write_scanlines(sp, bufptr, 1) != 1)
2494
0
            return (0);
2495
0
        if (nrows > 0)
2496
0
            tif->tif_dir.td_row++;
2497
0
        buf += sp->bytesperline;
2498
0
    }
2499
2500
0
    if (sp->cinfo.c.data_precision == 12)
2501
0
    {
2502
0
        _TIFFfreeExt(tif, line16);
2503
0
    }
2504
2505
0
    return (1);
2506
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGEncode
Unexecuted instantiation: tif_jpeg_12.c:JPEGEncode
2507
2508
/*
2509
 * Encode a chunk of pixels.
2510
 * Incoming data is expected to be downsampled per sampling factors.
2511
 */
2512
static int JPEGEncodeRaw(TIFF *tif, uint8_t *buf, tmsize_t cc, uint16_t s)
2513
0
{
2514
0
    JPEGState *sp = JState(tif);
2515
0
    TIFF_JSAMPLE *outptr;
2516
0
    tmsize_t nrows;
2517
0
    JDIMENSION clumps_per_line, nclump;
2518
0
    int clumpoffset, ci, xpos, ypos;
2519
0
    jpeg_component_info *compptr;
2520
0
    int samples_per_clump = sp->samplesperclump;
2521
0
    tmsize_t bytesperclumpline;
2522
2523
0
    (void)s;
2524
0
    assert(sp != NULL);
2525
2526
0
    if (sp->encode_raw_error)
2527
0
    {
2528
0
        TIFFErrorExtR(tif, tif->tif_name, "JPEGEncodeRaw() already failed");
2529
0
        return 0;
2530
0
    }
2531
2532
    /* data is expected to be supplied in multiples of a clumpline */
2533
    /* a clumpline is equivalent to v_sampling desubsampled scanlines */
2534
    /* TODO: the following calculation of bytesperclumpline, should substitute
2535
     * calculation of sp->bytesperline, except that it is per v_sampling lines
2536
     */
2537
0
    bytesperclumpline = JPEGRawBytesPerClumpLine(
2538
0
        tif, sp->cinfo.c.image_width, sp->h_sampling, sp->v_sampling,
2539
0
        sp->cinfo.c.data_precision, "JPEGEncodeRaw");
2540
0
    if (bytesperclumpline == 0)
2541
0
        return 0;
2542
2543
0
    nrows = (cc / bytesperclumpline) * sp->v_sampling;
2544
0
    if (cc % bytesperclumpline)
2545
0
        TIFFWarningExtR(tif, tif->tif_name, "fractional scanline discarded");
2546
2547
    /* Cb,Cr both have sampling factors 1, so this is correct */
2548
0
    clumps_per_line = sp->cinfo.c.comp_info[1].downsampled_width;
2549
2550
0
    while (nrows > 0)
2551
0
    {
2552
        /*
2553
         * Fastest way to separate the data is to make one pass
2554
         * over the scanline for each row of each component.
2555
         */
2556
0
        clumpoffset = 0; /* first sample in clump */
2557
0
        for (ci = 0, compptr = sp->cinfo.c.comp_info;
2558
0
             ci < sp->cinfo.c.num_components; ci++, compptr++)
2559
0
        {
2560
0
            int hsamp = compptr->h_samp_factor;
2561
0
            int vsamp = compptr->v_samp_factor;
2562
0
            int padding =
2563
0
                (int)(compptr->width_in_blocks * DCTSIZE -
2564
0
                      (JDIMENSION)clumps_per_line * (JDIMENSION)hsamp);
2565
0
            for (ypos = 0; ypos < vsamp; ypos++)
2566
0
            {
2567
0
                outptr = sp->ds_buffer[ci][sp->scancount * vsamp + ypos];
2568
0
                if (sp->cinfo.c.data_precision == 12)
2569
0
                {
2570
0
                    tmsize_t sample_index = clumpoffset;
2571
0
                    if (hsamp == 1)
2572
0
                    {
2573
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
2574
0
                        {
2575
0
                            *outptr++ =
2576
0
                                JPEGReadPacked12Sample(buf, sample_index);
2577
0
                            sample_index += samples_per_clump;
2578
0
                        }
2579
0
                    }
2580
0
                    else
2581
0
                    {
2582
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
2583
0
                        {
2584
0
                            for (xpos = 0; xpos < hsamp; xpos++)
2585
0
                                *outptr++ = JPEGReadPacked12Sample(
2586
0
                                    buf, sample_index + xpos);
2587
0
                            sample_index += samples_per_clump;
2588
0
                        }
2589
0
                    }
2590
0
                }
2591
0
                else
2592
0
                {
2593
0
                    const uint8_t *inptr8 = buf + clumpoffset;
2594
0
                    if (hsamp == 1)
2595
0
                    {
2596
                        /* fast path for at least Cb and Cr */
2597
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
2598
0
                        {
2599
0
                            *outptr++ = (TIFF_JSAMPLE)inptr8[0];
2600
0
                            inptr8 += samples_per_clump;
2601
0
                        }
2602
0
                    }
2603
0
                    else
2604
0
                    {
2605
                        /* general case */
2606
0
                        for (nclump = clumps_per_line; nclump-- > 0;)
2607
0
                        {
2608
0
                            for (xpos = 0; xpos < hsamp; xpos++)
2609
0
                                *outptr++ = (TIFF_JSAMPLE)inptr8[xpos];
2610
0
                            inptr8 += samples_per_clump;
2611
0
                        }
2612
0
                    }
2613
0
                }
2614
                /* pad each scanline as needed */
2615
0
                for (xpos = 0; xpos < padding; xpos++)
2616
0
                {
2617
0
                    *outptr = outptr[-1];
2618
0
                    outptr++;
2619
0
                }
2620
0
                clumpoffset += hsamp;
2621
0
            }
2622
0
        }
2623
0
        sp->scancount++;
2624
0
        if (sp->scancount >= DCTSIZE)
2625
0
        {
2626
0
            int n = sp->cinfo.c.max_v_samp_factor * DCTSIZE;
2627
0
            if (TIFFjpeg_write_raw_data(sp, sp->ds_buffer, n) != n)
2628
0
            {
2629
0
                sp->encode_raw_error = TRUE;
2630
0
                return (0);
2631
0
            }
2632
0
            sp->scancount = 0;
2633
0
        }
2634
0
        tif->tif_dir.td_row += sp->v_sampling;
2635
0
        buf += bytesperclumpline;
2636
0
        nrows -= sp->v_sampling;
2637
0
    }
2638
0
    return (1);
2639
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGEncodeRaw
Unexecuted instantiation: tif_jpeg_12.c:JPEGEncodeRaw
2640
2641
/*
2642
 * Finish up at the end of a strip or tile.
2643
 */
2644
static int JPEGPostEncode(TIFF *tif)
2645
0
{
2646
0
    JPEGState *sp = JState(tif);
2647
2648
0
    if (sp->scancount > 0)
2649
0
    {
2650
        /*
2651
         * Need to emit a partial bufferload of downsampled data.
2652
         * Pad the data vertically.
2653
         */
2654
0
        int ci, ypos, n;
2655
0
        jpeg_component_info *compptr;
2656
2657
0
        for (ci = 0, compptr = sp->cinfo.c.comp_info;
2658
0
             ci < sp->cinfo.c.num_components; ci++, compptr++)
2659
0
        {
2660
0
            int vsamp = compptr->v_samp_factor;
2661
0
            tmsize_t row_width =
2662
0
                compptr->width_in_blocks * DCTSIZE * sizeof(JSAMPLE);
2663
0
            for (ypos = sp->scancount * vsamp; ypos < DCTSIZE * vsamp; ypos++)
2664
0
            {
2665
0
                _TIFFmemcpy((void *)sp->ds_buffer[ci][ypos],
2666
0
                            (void *)sp->ds_buffer[ci][ypos - 1], row_width);
2667
0
            }
2668
0
        }
2669
0
        n = sp->cinfo.c.max_v_samp_factor * DCTSIZE;
2670
0
        if (TIFFjpeg_write_raw_data(sp, sp->ds_buffer, n) != n)
2671
0
            return (0);
2672
0
    }
2673
2674
0
    return (TIFFjpeg_finish_compress(JState(tif)));
2675
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGPostEncode
Unexecuted instantiation: tif_jpeg_12.c:JPEGPostEncode
2676
2677
static void JPEGCleanup(TIFF *tif)
2678
0
{
2679
0
    JPEGState *sp = JState(tif);
2680
2681
0
    assert(sp != 0);
2682
2683
0
    tif->tif_tagmethods.vgetfield = sp->otherSettings.vgetparent;
2684
0
    tif->tif_tagmethods.vsetfield = sp->otherSettings.vsetparent;
2685
0
    tif->tif_tagmethods.printdir = sp->otherSettings.printdir;
2686
0
    if (sp->cinfo_initialized)
2687
0
        TIFFjpeg_destroy(sp);         /* release libjpeg resources */
2688
0
    if (sp->otherSettings.jpegtables) /* tag value */
2689
0
        _TIFFfreeExt(tif, sp->otherSettings.jpegtables);
2690
0
    _TIFFfreeExt(tif, tif->tif_data); /* release local state */
2691
0
    tif->tif_data = NULL;
2692
2693
0
    _TIFFSetDefaultCompressionState(tif);
2694
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGCleanup
Unexecuted instantiation: tif_jpeg_12.c:JPEGCleanup
2695
2696
static void JPEGResetUpsampled(TIFF *tif)
2697
0
{
2698
0
    JPEGState *sp = JState(tif);
2699
0
    TIFFDirectory *td = &tif->tif_dir;
2700
2701
    /*
2702
     * Mark whether returned data is up-sampled or not so TIFFStripSize
2703
     * and TIFFTileSize return values that reflect the true amount of
2704
     * data.
2705
     */
2706
0
    tif->tif_flags &= ~TIFF_UPSAMPLED;
2707
0
    if (td->td_planarconfig == PLANARCONFIG_CONTIG)
2708
0
    {
2709
0
        if (td->td_photometric == PHOTOMETRIC_YCBCR &&
2710
0
            sp->otherSettings.jpegcolormode == JPEGCOLORMODE_RGB)
2711
0
        {
2712
0
            tif->tif_flags |= TIFF_UPSAMPLED;
2713
0
        }
2714
0
        else
2715
0
        {
2716
#ifdef notdef
2717
            if (td->td_ycbcrsubsampling[0] != 1 ||
2718
                td->td_ycbcrsubsampling[1] != 1)
2719
                ; /* XXX what about up-sampling? */
2720
#endif
2721
0
        }
2722
0
    }
2723
2724
    /*
2725
     * Must recalculate cached tile size in case sampling state changed.
2726
     * Should we really be doing this now if image size isn't set?
2727
     */
2728
0
    if (tif->tif_dir.td_tilesize > 0)
2729
0
        tif->tif_dir.td_tilesize =
2730
0
            isTiled(tif) ? TIFFTileSize(tif) : (tmsize_t)(-1);
2731
0
    if (tif->tif_dir.td_scanlinesize > 0)
2732
0
        tif->tif_dir.td_scanlinesize = TIFFScanlineSize(tif);
2733
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGResetUpsampled
Unexecuted instantiation: tif_jpeg_12.c:JPEGResetUpsampled
2734
2735
static int JPEGVSetField(TIFF *tif, uint32_t tag, va_list ap)
2736
0
{
2737
0
    JPEGState *sp = JState(tif);
2738
0
    const TIFFField *fip;
2739
0
    uint32_t v32;
2740
2741
0
    assert(sp != NULL);
2742
2743
0
    switch (tag)
2744
0
    {
2745
0
        case TIFFTAG_JPEGTABLES:
2746
0
            v32 = (uint32_t)va_arg(ap, uint32_t);
2747
0
            if (v32 == 0)
2748
0
            {
2749
                /* XXX */
2750
0
                return (0);
2751
0
            }
2752
0
            _TIFFsetByteArrayExt(tif, &sp->otherSettings.jpegtables,
2753
0
                                 va_arg(ap, void *), v32);
2754
0
            sp->otherSettings.jpegtables_length = v32;
2755
0
            TIFFSetFieldBit(tif, FIELD_JPEGTABLES);
2756
0
            break;
2757
0
        case TIFFTAG_JPEGQUALITY:
2758
0
            sp->otherSettings.jpegquality = (int)va_arg(ap, int);
2759
0
            return (1); /* pseudo tag */
2760
0
        case TIFFTAG_JPEGCOLORMODE:
2761
0
            sp->otherSettings.jpegcolormode = (int)va_arg(ap, int);
2762
0
            JPEGResetUpsampled(tif);
2763
0
            return (1); /* pseudo tag */
2764
0
        case TIFFTAG_PHOTOMETRIC:
2765
0
        {
2766
0
            int ret_value = (*sp->otherSettings.vsetparent)(tif, tag, ap);
2767
0
            JPEGResetUpsampled(tif);
2768
0
            return ret_value;
2769
0
        }
2770
0
        case TIFFTAG_JPEGTABLESMODE:
2771
0
            sp->otherSettings.jpegtablesmode = (int)va_arg(ap, int);
2772
0
            return (1); /* pseudo tag */
2773
0
        case TIFFTAG_YCBCRSUBSAMPLING:
2774
            /* mark the fact that we have a real ycbcrsubsampling! */
2775
0
            sp->otherSettings.ycbcrsampling_fetched = 1;
2776
            /* should we be recomputing upsampling info here? */
2777
0
            return (*sp->otherSettings.vsetparent)(tif, tag, ap);
2778
0
        default:
2779
0
            return (*sp->otherSettings.vsetparent)(tif, tag, ap);
2780
0
    }
2781
2782
0
    if ((fip = TIFFFieldWithTag(tif, tag)) != NULL)
2783
0
    {
2784
0
        TIFFSetFieldBit(tif, fip->field_bit);
2785
0
    }
2786
0
    else
2787
0
    {
2788
0
        return (0);
2789
0
    }
2790
2791
0
    tif->tif_flags |= TIFF_DIRTYDIRECT;
2792
0
    return (1);
2793
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGVSetField
Unexecuted instantiation: tif_jpeg_12.c:JPEGVSetField
2794
2795
static int JPEGVGetField(TIFF *tif, uint32_t tag, va_list ap)
2796
0
{
2797
0
    JPEGState *sp = JState(tif);
2798
2799
0
    assert(sp != NULL);
2800
2801
0
    switch (tag)
2802
0
    {
2803
0
        case TIFFTAG_JPEGTABLES:
2804
0
            *va_arg(ap, uint32_t *) = sp->otherSettings.jpegtables_length;
2805
0
            *va_arg(ap, const void **) = sp->otherSettings.jpegtables;
2806
0
            break;
2807
0
        case TIFFTAG_JPEGQUALITY:
2808
0
            *va_arg(ap, int *) = sp->otherSettings.jpegquality;
2809
0
            break;
2810
0
        case TIFFTAG_JPEGCOLORMODE:
2811
0
            *va_arg(ap, int *) = sp->otherSettings.jpegcolormode;
2812
0
            break;
2813
0
        case TIFFTAG_JPEGTABLESMODE:
2814
0
            *va_arg(ap, int *) = sp->otherSettings.jpegtablesmode;
2815
0
            break;
2816
0
        default:
2817
0
            return (*sp->otherSettings.vgetparent)(tif, tag, ap);
2818
0
    }
2819
0
    return (1);
2820
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGVGetField
Unexecuted instantiation: tif_jpeg_12.c:JPEGVGetField
2821
2822
static void JPEGPrintDir(TIFF *tif, FILE *fd, long flags)
2823
0
{
2824
0
    JPEGState *sp = JState(tif);
2825
2826
0
    assert(sp != NULL);
2827
0
    (void)flags;
2828
2829
0
    if (sp != NULL)
2830
0
    {
2831
0
        if (TIFFFieldSet(tif, FIELD_JPEGTABLES))
2832
0
            fprintf(fd, "  JPEG Tables: (%" PRIu32 " bytes)\n",
2833
0
                    sp->otherSettings.jpegtables_length);
2834
0
        if (sp->otherSettings.printdir)
2835
0
            (*sp->otherSettings.printdir)(tif, fd, flags);
2836
0
    }
2837
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGPrintDir
Unexecuted instantiation: tif_jpeg_12.c:JPEGPrintDir
2838
2839
static uint32_t JPEGDefaultStripSize(TIFF *tif, uint32_t s)
2840
0
{
2841
0
    JPEGState *sp = JState(tif);
2842
0
    TIFFDirectory *td = &tif->tif_dir;
2843
2844
0
    s = (*sp->otherSettings.defsparent)(tif, s);
2845
0
    if (s < td->td_imagelength)
2846
0
        s = TIFFroundup_32(s, td->td_ycbcrsubsampling[1] * DCTSIZE);
2847
0
    return (s);
2848
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGDefaultStripSize
Unexecuted instantiation: tif_jpeg_12.c:JPEGDefaultStripSize
2849
2850
static void JPEGDefaultTileSize(TIFF *tif, uint32_t *tw, uint32_t *th)
2851
0
{
2852
0
    JPEGState *sp = JState(tif);
2853
0
    TIFFDirectory *td = &tif->tif_dir;
2854
2855
0
    (*sp->otherSettings.deftparent)(tif, tw, th);
2856
0
    *tw = TIFFroundup_32(*tw, td->td_ycbcrsubsampling[0] * DCTSIZE);
2857
0
    *th = TIFFroundup_32(*th, td->td_ycbcrsubsampling[1] * DCTSIZE);
2858
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGDefaultTileSize
Unexecuted instantiation: tif_jpeg_12.c:JPEGDefaultTileSize
2859
2860
/*
2861
 * The JPEG library initialized used to be done in TIFFInitJPEG(), but
2862
 * now that we allow a TIFF file to be opened in update mode it is necessary
2863
 * to have some way of deciding whether compression or decompression is
2864
 * desired other than looking at tif->tif_mode.  We accomplish this by
2865
 * examining {TILE/STRIP}BYTECOUNTS to see if there is a non-zero entry.
2866
 * If so, we assume decompression is desired.
2867
 *
2868
 * This is tricky, because TIFFInitJPEG() is called while the directory is
2869
 * being read, and generally speaking the BYTECOUNTS tag won't have been read
2870
 * at that point.  So we try to defer jpeg library initialization till we
2871
 * do have that tag ... basically any access that might require the compressor
2872
 * or decompressor that occurs after the reading of the directory.
2873
 *
2874
 * In an ideal world compressors or decompressors would be setup
2875
 * at the point where a single tile or strip was accessed (for read or write)
2876
 * so that stuff like update of missing tiles, or replacement of tiles could
2877
 * be done. However, we aren't trying to crack that nut just yet ...
2878
 *
2879
 * NFW, Feb 3rd, 2003.
2880
 */
2881
2882
static int JPEGInitializeLibJPEG(TIFF *tif, int decompress)
2883
0
{
2884
0
    JPEGState *sp = JState(tif);
2885
2886
0
    if (sp->cinfo_initialized)
2887
0
    {
2888
0
        if (!decompress && sp->cinfo.comm.is_decompressor)
2889
0
            TIFFjpeg_destroy(sp);
2890
0
        else if (decompress && !sp->cinfo.comm.is_decompressor)
2891
0
            TIFFjpeg_destroy(sp);
2892
0
        else
2893
0
            return 1;
2894
2895
0
        sp->cinfo_initialized = 0;
2896
0
    }
2897
2898
    /*
2899
     * Initialize libjpeg.
2900
     */
2901
0
    if (decompress)
2902
0
    {
2903
0
        if (!TIFFjpeg_create_decompress(sp))
2904
0
            return (0);
2905
0
    }
2906
0
    else
2907
0
    {
2908
0
        if (!TIFFjpeg_create_compress(sp))
2909
0
            return (0);
2910
0
#ifndef TIFF_JPEG_MAX_MEMORY_TO_USE
2911
0
#define TIFF_JPEG_MAX_MEMORY_TO_USE (10 * 1024 * 1024)
2912
0
#endif
2913
        /* libjpeg turbo 1.5.2 honours max_memory_to_use, but has no backing */
2914
        /* store implementation, so better not set max_memory_to_use ourselves.
2915
         */
2916
        /* See https://github.com/libjpeg-turbo/libjpeg-turbo/issues/162 */
2917
0
        if (sp->cinfo.c.mem->max_memory_to_use > 0)
2918
0
        {
2919
            /* This is to address bug related in ticket GDAL #1795. */
2920
0
            if (getenv("JPEGMEM") == NULL)
2921
0
            {
2922
                /* Increase the max memory usable. This helps when creating
2923
                 * files */
2924
                /* with "big" tile, without using libjpeg temporary files. */
2925
                /* For example a 512x512 tile with 3 bands */
2926
                /* requires 1.5 MB which is above libjpeg 1MB default */
2927
0
                if (sp->cinfo.c.mem->max_memory_to_use <
2928
0
                    TIFF_JPEG_MAX_MEMORY_TO_USE)
2929
0
                    sp->cinfo.c.mem->max_memory_to_use =
2930
0
                        TIFF_JPEG_MAX_MEMORY_TO_USE;
2931
0
            }
2932
0
        }
2933
0
    }
2934
2935
0
    sp->cinfo_initialized = TRUE;
2936
2937
0
    return 1;
2938
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGInitializeLibJPEG
Unexecuted instantiation: tif_jpeg_12.c:JPEGInitializeLibJPEG
2939
2940
static uint64_t JPEGGetMaxCompressionRatio(TIFF *tif)
2941
0
{
2942
    /* See README_for_libtiff_developpers.md for raw data used to estimate
2943
     * the maximum compression rate. */
2944
2945
0
    const JPEGState *sp = JState(tif);
2946
0
    if ((tif->tif_dir.td_photometric == PHOTOMETRIC_YCBCR) &&
2947
0
        (tif->tif_dir.td_planarconfig == PLANARCONFIG_CONTIG) &&
2948
0
        (tif->tif_dir.td_samplesperpixel == 3))
2949
0
    {
2950
0
        if (sp->h_sampling == 2 && sp->v_sampling == 2)
2951
0
        {
2952
0
            if (tif->tif_dir.td_bitspersample == 12)
2953
0
                return 768;
2954
0
            else
2955
0
                return 512;
2956
0
        }
2957
2958
0
        return 0; /* unknown */
2959
0
    }
2960
2961
0
    if (tif->tif_dir.td_bitspersample == 12)
2962
0
        return 384;
2963
0
    else
2964
0
        return 256;
2965
0
}
Unexecuted instantiation: tif_jpeg.c:JPEGGetMaxCompressionRatio
Unexecuted instantiation: tif_jpeg_12.c:JPEGGetMaxCompressionRatio
2966
2967
/* Common to tif_jpeg.c and tif_jpeg_12.c */
2968
static void TIFFInitJPEGCommon(TIFF *tif)
2969
0
{
2970
0
    JPEGState *sp;
2971
2972
0
    sp = JState(tif);
2973
0
    sp->tif = tif; /* back link */
2974
2975
    /* Default values for codec-specific fields */
2976
0
    sp->otherSettings.jpegtables = NULL;
2977
0
    sp->otherSettings.jpegtables_length = 0;
2978
0
    sp->otherSettings.jpegquality = 75; /* Default IJG quality */
2979
0
    sp->otherSettings.jpegcolormode = JPEGCOLORMODE_RAW;
2980
0
    sp->otherSettings.jpegtablesmode =
2981
0
        JPEGTABLESMODE_QUANT | JPEGTABLESMODE_HUFF;
2982
0
    sp->otherSettings.ycbcrsampling_fetched = 0;
2983
2984
0
    tif->tif_tagmethods.vgetfield = JPEGVGetField; /* hook for codec tags */
2985
0
    tif->tif_tagmethods.vsetfield = JPEGVSetField; /* hook for codec tags */
2986
0
    tif->tif_tagmethods.printdir = JPEGPrintDir;   /* hook for codec tags */
2987
2988
    /*
2989
     * Install codec methods.
2990
     */
2991
0
    tif->tif_fixuptags = JPEGFixupTags;
2992
0
    tif->tif_setupdecode = JPEGSetupDecode;
2993
0
    tif->tif_predecode = JPEGPreDecode;
2994
0
    tif->tif_decoderow = JPEGDecode;
2995
0
    tif->tif_decodestrip = JPEGDecode;
2996
0
    tif->tif_decodetile = JPEGDecode;
2997
0
    tif->tif_setupencode = JPEGSetupEncode;
2998
0
    tif->tif_preencode = JPEGPreEncode;
2999
0
    tif->tif_postencode = JPEGPostEncode;
3000
0
    tif->tif_encoderow = JPEGEncode;
3001
0
    tif->tif_encodestrip = JPEGEncode;
3002
0
    tif->tif_encodetile = JPEGEncode;
3003
0
    tif->tif_getmaxcompressionratio = JPEGGetMaxCompressionRatio;
3004
0
    tif->tif_cleanup = JPEGCleanup;
3005
3006
0
    tif->tif_defstripsize = JPEGDefaultStripSize;
3007
0
    tif->tif_deftilesize = JPEGDefaultTileSize;
3008
0
    tif->tif_flags |= TIFF_NOBITREV; /* no bit reversal, please */
3009
0
    sp->cinfo_initialized = FALSE;
3010
0
}
Unexecuted instantiation: tif_jpeg.c:TIFFInitJPEGCommon
Unexecuted instantiation: tif_jpeg_12.c:TIFFInitJPEGCommon
3011
3012
int TIFFInitJPEG(TIFF *tif, int scheme)
3013
0
{
3014
0
    JPEGState *sp;
3015
3016
0
    (void)scheme;
3017
0
    assert(scheme == COMPRESSION_JPEG);
3018
3019
    /*
3020
     * Merge codec-specific tag information.
3021
     */
3022
0
    if (!_TIFFMergeFields(tif, jpegFields, TIFFArrayCount(jpegFields)))
3023
0
    {
3024
0
        TIFFErrorExtR(tif, "TIFFInitJPEG",
3025
0
                      "Merging JPEG codec-specific tags failed");
3026
0
        return 0;
3027
0
    }
3028
3029
    /*
3030
     * Allocate state block so tag methods have storage to record values.
3031
     */
3032
0
    tif->tif_data = (uint8_t *)_TIFFmallocExt(tif, sizeof(JPEGState));
3033
3034
0
    if (tif->tif_data == NULL)
3035
0
    {
3036
0
        TIFFErrorExtR(tif, "TIFFInitJPEG", "No space for JPEG state block");
3037
0
        return 0;
3038
0
    }
3039
0
    _TIFFmemset(tif->tif_data, 0, sizeof(JPEGState));
3040
3041
0
    sp = JState(tif);
3042
    /*
3043
     * Override parent get/set field methods.
3044
     */
3045
0
    sp->otherSettings.vgetparent = tif->tif_tagmethods.vgetfield;
3046
0
    sp->otherSettings.vsetparent = tif->tif_tagmethods.vsetfield;
3047
0
    sp->otherSettings.printdir = tif->tif_tagmethods.printdir;
3048
3049
0
    sp->otherSettings.defsparent = tif->tif_defstripsize;
3050
0
    sp->otherSettings.deftparent = tif->tif_deftilesize;
3051
3052
0
    TIFFInitJPEGCommon(tif);
3053
3054
    /*
3055
    ** Create a JPEGTables field if no directory has yet been created.
3056
    ** We do this just to ensure that sufficient space is reserved for
3057
    ** the JPEGTables field.  It will be properly created the right
3058
    ** size later.
3059
    */
3060
0
    if (tif->tif_diroff == 0)
3061
0
    {
3062
0
#define SIZE_OF_JPEGTABLES 2000
3063
        /*
3064
        The following line assumes incorrectly that all JPEG-in-TIFF files will
3065
        have a JPEGTABLES tag generated and causes null-filled JPEGTABLES tags
3066
        to be written when the JPEG data is placed with TIFFWriteRawStrip.  The
3067
        field bit should be set, anyway, later when actual JPEGTABLES header is
3068
        generated, so removing it here hopefully is harmless.
3069
        TIFFSetFieldBit(tif, FIELD_JPEGTABLES);
3070
        */
3071
0
        sp->otherSettings.jpegtables_length = SIZE_OF_JPEGTABLES;
3072
0
        sp->otherSettings.jpegtables =
3073
0
            (void *)_TIFFmallocExt(tif, sp->otherSettings.jpegtables_length);
3074
0
        if (sp->otherSettings.jpegtables)
3075
0
        {
3076
0
            _TIFFmemset(sp->otherSettings.jpegtables, 0, SIZE_OF_JPEGTABLES);
3077
0
        }
3078
0
        else
3079
0
        {
3080
0
            TIFFErrorExtR(tif, "TIFFInitJPEG",
3081
0
                          "Failed to allocate memory for JPEG tables");
3082
0
            return 0;
3083
0
        }
3084
0
#undef SIZE_OF_JPEGTABLES
3085
0
    }
3086
0
    return 1;
3087
0
}
Unexecuted instantiation: gdal_TIFFInitJPEG
Unexecuted instantiation: gdal_TIFFInitJPEG_12
3088
#endif /* JPEG_SUPPORT */