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J. Duke319a3b92007-12-01 00:00:00 +00001/*
2 * reserved comment block
3 * DO NOT REMOVE OR ALTER!
4 */
5/*
6 * jdmarker.c
7 *
8 * Copyright (C) 1991-1998, Thomas G. Lane.
9 * This file is part of the Independent JPEG Group's software.
10 * For conditions of distribution and use, see the accompanying README file.
11 *
12 * This file contains routines to decode JPEG datastream markers.
13 * Most of the complexity arises from our desire to support input
14 * suspension: if not all of the data for a marker is available,
15 * we must exit back to the application. On resumption, we reprocess
16 * the marker.
17 */
18
19#define JPEG_INTERNALS
20#include "jinclude.h"
21#include "jpeglib.h"
22
23
24typedef enum { /* JPEG marker codes */
25 M_SOF0 = 0xc0,
26 M_SOF1 = 0xc1,
27 M_SOF2 = 0xc2,
28 M_SOF3 = 0xc3,
29
30 M_SOF5 = 0xc5,
31 M_SOF6 = 0xc6,
32 M_SOF7 = 0xc7,
33
34 M_JPG = 0xc8,
35 M_SOF9 = 0xc9,
36 M_SOF10 = 0xca,
37 M_SOF11 = 0xcb,
38
39 M_SOF13 = 0xcd,
40 M_SOF14 = 0xce,
41 M_SOF15 = 0xcf,
42
43 M_DHT = 0xc4,
44
45 M_DAC = 0xcc,
46
47 M_RST0 = 0xd0,
48 M_RST1 = 0xd1,
49 M_RST2 = 0xd2,
50 M_RST3 = 0xd3,
51 M_RST4 = 0xd4,
52 M_RST5 = 0xd5,
53 M_RST6 = 0xd6,
54 M_RST7 = 0xd7,
55
56 M_SOI = 0xd8,
57 M_EOI = 0xd9,
58 M_SOS = 0xda,
59 M_DQT = 0xdb,
60 M_DNL = 0xdc,
61 M_DRI = 0xdd,
62 M_DHP = 0xde,
63 M_EXP = 0xdf,
64
65 M_APP0 = 0xe0,
66 M_APP1 = 0xe1,
67 M_APP2 = 0xe2,
68 M_APP3 = 0xe3,
69 M_APP4 = 0xe4,
70 M_APP5 = 0xe5,
71 M_APP6 = 0xe6,
72 M_APP7 = 0xe7,
73 M_APP8 = 0xe8,
74 M_APP9 = 0xe9,
75 M_APP10 = 0xea,
76 M_APP11 = 0xeb,
77 M_APP12 = 0xec,
78 M_APP13 = 0xed,
79 M_APP14 = 0xee,
80 M_APP15 = 0xef,
81
82 M_JPG0 = 0xf0,
83 M_JPG13 = 0xfd,
84 M_COM = 0xfe,
85
86 M_TEM = 0x01,
87
88 M_ERROR = 0x100
89} JPEG_MARKER;
90
91
92/* Private state */
93
94typedef struct {
95 struct jpeg_marker_reader pub; /* public fields */
96
97 /* Application-overridable marker processing methods */
98 jpeg_marker_parser_method process_COM;
99 jpeg_marker_parser_method process_APPn[16];
100
101 /* Limit on marker data length to save for each marker type */
102 unsigned int length_limit_COM;
103 unsigned int length_limit_APPn[16];
104
105 /* Status of COM/APPn marker saving */
106 jpeg_saved_marker_ptr cur_marker; /* NULL if not processing a marker */
107 unsigned int bytes_read; /* data bytes read so far in marker */
108 /* Note: cur_marker is not linked into marker_list until it's all read. */
109} my_marker_reader;
110
111typedef my_marker_reader * my_marker_ptr;
112
113
114/*
115 * Macros for fetching data from the data source module.
116 *
117 * At all times, cinfo->src->next_input_byte and ->bytes_in_buffer reflect
118 * the current restart point; we update them only when we have reached a
119 * suitable place to restart if a suspension occurs.
120 */
121
122/* Declare and initialize local copies of input pointer/count */
123#define INPUT_VARS(cinfo) \
124 struct jpeg_source_mgr * datasrc = (cinfo)->src; \
125 const JOCTET * next_input_byte = datasrc->next_input_byte; \
126 size_t bytes_in_buffer = datasrc->bytes_in_buffer
127
128/* Unload the local copies --- do this only at a restart boundary */
129#define INPUT_SYNC(cinfo) \
130 ( datasrc->next_input_byte = next_input_byte, \
131 datasrc->bytes_in_buffer = bytes_in_buffer )
132
133/* Reload the local copies --- used only in MAKE_BYTE_AVAIL */
134#define INPUT_RELOAD(cinfo) \
135 ( next_input_byte = datasrc->next_input_byte, \
136 bytes_in_buffer = datasrc->bytes_in_buffer )
137
138/* Internal macro for INPUT_BYTE and INPUT_2BYTES: make a byte available.
139 * Note we do *not* do INPUT_SYNC before calling fill_input_buffer,
140 * but we must reload the local copies after a successful fill.
141 */
142#define MAKE_BYTE_AVAIL(cinfo,action) \
143 if (bytes_in_buffer == 0) { \
144 if (! (*datasrc->fill_input_buffer) (cinfo)) \
145 { action; } \
146 INPUT_RELOAD(cinfo); \
147 }
148
149/* Read a byte into variable V.
150 * If must suspend, take the specified action (typically "return FALSE").
151 */
152#define INPUT_BYTE(cinfo,V,action) \
153 MAKESTMT( MAKE_BYTE_AVAIL(cinfo,action); \
154 bytes_in_buffer--; \
155 V = GETJOCTET(*next_input_byte++); )
156
157/* As above, but read two bytes interpreted as an unsigned 16-bit integer.
158 * V should be declared unsigned int or perhaps INT32.
159 */
160#define INPUT_2BYTES(cinfo,V,action) \
161 MAKESTMT( MAKE_BYTE_AVAIL(cinfo,action); \
162 bytes_in_buffer--; \
163 V = ((unsigned int) GETJOCTET(*next_input_byte++)) << 8; \
164 MAKE_BYTE_AVAIL(cinfo,action); \
165 bytes_in_buffer--; \
166 V += GETJOCTET(*next_input_byte++); )
167
168
169/*
170 * Routines to process JPEG markers.
171 *
172 * Entry condition: JPEG marker itself has been read and its code saved
173 * in cinfo->unread_marker; input restart point is just after the marker.
174 *
175 * Exit: if return TRUE, have read and processed any parameters, and have
176 * updated the restart point to point after the parameters.
177 * If return FALSE, was forced to suspend before reaching end of
178 * marker parameters; restart point has not been moved. Same routine
179 * will be called again after application supplies more input data.
180 *
181 * This approach to suspension assumes that all of a marker's parameters
182 * can fit into a single input bufferload. This should hold for "normal"
183 * markers. Some COM/APPn markers might have large parameter segments
184 * that might not fit. If we are simply dropping such a marker, we use
185 * skip_input_data to get past it, and thereby put the problem on the
186 * source manager's shoulders. If we are saving the marker's contents
187 * into memory, we use a slightly different convention: when forced to
188 * suspend, the marker processor updates the restart point to the end of
189 * what it's consumed (ie, the end of the buffer) before returning FALSE.
190 * On resumption, cinfo->unread_marker still contains the marker code,
191 * but the data source will point to the next chunk of marker data.
192 * The marker processor must retain internal state to deal with this.
193 *
194 * Note that we don't bother to avoid duplicate trace messages if a
195 * suspension occurs within marker parameters. Other side effects
196 * require more care.
197 */
198
199
200LOCAL(boolean)
201get_soi (j_decompress_ptr cinfo)
202/* Process an SOI marker */
203{
204 int i;
205
206 TRACEMS(cinfo, 1, JTRC_SOI);
207
208 if (cinfo->marker->saw_SOI)
209 ERREXIT(cinfo, JERR_SOI_DUPLICATE);
210
211 /* Reset all parameters that are defined to be reset by SOI */
212
213 for (i = 0; i < NUM_ARITH_TBLS; i++) {
214 cinfo->arith_dc_L[i] = 0;
215 cinfo->arith_dc_U[i] = 1;
216 cinfo->arith_ac_K[i] = 5;
217 }
218 cinfo->restart_interval = 0;
219
220 /* Set initial assumptions for colorspace etc */
221
222 cinfo->jpeg_color_space = JCS_UNKNOWN;
223 cinfo->CCIR601_sampling = FALSE; /* Assume non-CCIR sampling??? */
224
225 cinfo->saw_JFIF_marker = FALSE;
226 cinfo->JFIF_major_version = 1; /* set default JFIF APP0 values */
227 cinfo->JFIF_minor_version = 1;
228 cinfo->density_unit = 0;
229 cinfo->X_density = 1;
230 cinfo->Y_density = 1;
231 cinfo->saw_Adobe_marker = FALSE;
232 cinfo->Adobe_transform = 0;
233
234 cinfo->marker->saw_SOI = TRUE;
235
236 return TRUE;
237}
238
239
240LOCAL(boolean)
241get_sof (j_decompress_ptr cinfo, boolean is_prog, boolean is_arith)
242/* Process a SOFn marker */
243{
244 INT32 length;
245 int c, ci;
246 jpeg_component_info * compptr;
247 INPUT_VARS(cinfo);
248
249 cinfo->progressive_mode = is_prog;
250 cinfo->arith_code = is_arith;
251
252 INPUT_2BYTES(cinfo, length, return FALSE);
253
254 INPUT_BYTE(cinfo, cinfo->data_precision, return FALSE);
255 INPUT_2BYTES(cinfo, cinfo->image_height, return FALSE);
256 INPUT_2BYTES(cinfo, cinfo->image_width, return FALSE);
257 INPUT_BYTE(cinfo, cinfo->num_components, return FALSE);
258
259 length -= 8;
260
261 TRACEMS4(cinfo, 1, JTRC_SOF, cinfo->unread_marker,
262 (int) cinfo->image_width, (int) cinfo->image_height,
263 cinfo->num_components);
264
265 if (cinfo->marker->saw_SOF)
266 ERREXIT(cinfo, JERR_SOF_DUPLICATE);
267
268 /* We don't support files in which the image height is initially specified */
269 /* as 0 and is later redefined by DNL. As long as we have to check that, */
270 /* might as well have a general sanity check. */
271 if (cinfo->image_height <= 0 || cinfo->image_width <= 0
272 || cinfo->num_components <= 0)
273 ERREXIT(cinfo, JERR_EMPTY_IMAGE);
274
275 if (length != (cinfo->num_components * 3))
276 ERREXIT(cinfo, JERR_BAD_LENGTH);
277
278 if (cinfo->comp_info == NULL) { /* do only once, even if suspend */
279 cinfo->comp_info = (jpeg_component_info *) (*cinfo->mem->alloc_small)
280 ((j_common_ptr) cinfo, JPOOL_IMAGE,
281 cinfo->num_components * SIZEOF(jpeg_component_info));
282 MEMZERO(cinfo->comp_info,
283 cinfo->num_components * SIZEOF(jpeg_component_info));
284 }
285
286 for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
287 ci++, compptr++) {
288 compptr->component_index = ci;
289 INPUT_BYTE(cinfo, compptr->component_id, return FALSE);
290 INPUT_BYTE(cinfo, c, return FALSE);
291 compptr->h_samp_factor = (c >> 4) & 15;
292 compptr->v_samp_factor = (c ) & 15;
293 INPUT_BYTE(cinfo, compptr->quant_tbl_no, return FALSE);
294
295 TRACEMS4(cinfo, 1, JTRC_SOF_COMPONENT,
296 compptr->component_id, compptr->h_samp_factor,
297 compptr->v_samp_factor, compptr->quant_tbl_no);
298 }
299
300 cinfo->marker->saw_SOF = TRUE;
301
302 INPUT_SYNC(cinfo);
303 return TRUE;
304}
305
306
307LOCAL(boolean)
308get_sos (j_decompress_ptr cinfo)
309/* Process a SOS marker */
310{
311 INT32 length;
312 int i, ci, n, c, cc;
313 jpeg_component_info * compptr;
314 INPUT_VARS(cinfo);
315
316 if (! cinfo->marker->saw_SOF)
317 ERREXIT(cinfo, JERR_SOS_NO_SOF);
318
319 INPUT_2BYTES(cinfo, length, return FALSE);
320
321 INPUT_BYTE(cinfo, n, return FALSE); /* Number of components */
322
323 TRACEMS1(cinfo, 1, JTRC_SOS, n);
324
325 if (length != (n * 2 + 6) || n < 1 || n > MAX_COMPS_IN_SCAN)
326 ERREXIT(cinfo, JERR_BAD_LENGTH);
327
328 cinfo->comps_in_scan = n;
329
330 /* Collect the component-spec parameters */
331
332 for (i = 0; i < n; i++) {
333 INPUT_BYTE(cinfo, cc, return FALSE);
334 INPUT_BYTE(cinfo, c, return FALSE);
335
336 for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
337 ci++, compptr++) {
338 if (cc == compptr->component_id)
339 goto id_found;
340 }
341
342 ERREXIT1(cinfo, JERR_BAD_COMPONENT_ID, cc);
343
344 id_found:
345
346 cinfo->cur_comp_info[i] = compptr;
347 compptr->dc_tbl_no = (c >> 4) & 15;
348 compptr->ac_tbl_no = (c ) & 15;
349
350 TRACEMS3(cinfo, 1, JTRC_SOS_COMPONENT, cc,
351 compptr->dc_tbl_no, compptr->ac_tbl_no);
352 }
353
354 /* Collect the additional scan parameters Ss, Se, Ah/Al. */
355 INPUT_BYTE(cinfo, c, return FALSE);
356 cinfo->Ss = c;
357 INPUT_BYTE(cinfo, c, return FALSE);
358 cinfo->Se = c;
359 INPUT_BYTE(cinfo, c, return FALSE);
360 cinfo->Ah = (c >> 4) & 15;
361 cinfo->Al = (c ) & 15;
362
363 TRACEMS4(cinfo, 1, JTRC_SOS_PARAMS, cinfo->Ss, cinfo->Se,
364 cinfo->Ah, cinfo->Al);
365
366 /* Prepare to scan data & restart markers */
367 cinfo->marker->next_restart_num = 0;
368
369 /* Count another SOS marker */
370 cinfo->input_scan_number++;
371
372 INPUT_SYNC(cinfo);
373 return TRUE;
374}
375
376
377#ifdef D_ARITH_CODING_SUPPORTED
378
379LOCAL(boolean)
380get_dac (j_decompress_ptr cinfo)
381/* Process a DAC marker */
382{
383 INT32 length;
384 int index, val;
385 INPUT_VARS(cinfo);
386
387 INPUT_2BYTES(cinfo, length, return FALSE);
388 length -= 2;
389
390 while (length > 0) {
391 INPUT_BYTE(cinfo, index, return FALSE);
392 INPUT_BYTE(cinfo, val, return FALSE);
393
394 length -= 2;
395
396 TRACEMS2(cinfo, 1, JTRC_DAC, index, val);
397
398 if (index < 0 || index >= (2*NUM_ARITH_TBLS))
399 ERREXIT1(cinfo, JERR_DAC_INDEX, index);
400
401 if (index >= NUM_ARITH_TBLS) { /* define AC table */
402 cinfo->arith_ac_K[index-NUM_ARITH_TBLS] = (UINT8) val;
403 } else { /* define DC table */
404 cinfo->arith_dc_L[index] = (UINT8) (val & 0x0F);
405 cinfo->arith_dc_U[index] = (UINT8) (val >> 4);
406 if (cinfo->arith_dc_L[index] > cinfo->arith_dc_U[index])
407 ERREXIT1(cinfo, JERR_DAC_VALUE, val);
408 }
409 }
410
411 if (length != 0)
412 ERREXIT(cinfo, JERR_BAD_LENGTH);
413
414 INPUT_SYNC(cinfo);
415 return TRUE;
416}
417
418#else /* ! D_ARITH_CODING_SUPPORTED */
419
420#define get_dac(cinfo) skip_variable(cinfo)
421
422#endif /* D_ARITH_CODING_SUPPORTED */
423
424
425LOCAL(boolean)
426get_dht (j_decompress_ptr cinfo)
427/* Process a DHT marker */
428{
429 INT32 length;
430 UINT8 bits[17];
431 UINT8 huffval[256];
432 int i, index, count;
433 JHUFF_TBL **htblptr;
434 INPUT_VARS(cinfo);
435
436 INPUT_2BYTES(cinfo, length, return FALSE);
437 length -= 2;
438
439 while (length > 16) {
440 INPUT_BYTE(cinfo, index, return FALSE);
441
442 TRACEMS1(cinfo, 1, JTRC_DHT, index);
443
444 bits[0] = 0;
445 count = 0;
446 for (i = 1; i <= 16; i++) {
447 INPUT_BYTE(cinfo, bits[i], return FALSE);
448 count += bits[i];
449 }
450
451 length -= 1 + 16;
452
453 TRACEMS8(cinfo, 2, JTRC_HUFFBITS,
454 bits[1], bits[2], bits[3], bits[4],
455 bits[5], bits[6], bits[7], bits[8]);
456 TRACEMS8(cinfo, 2, JTRC_HUFFBITS,
457 bits[9], bits[10], bits[11], bits[12],
458 bits[13], bits[14], bits[15], bits[16]);
459
460 /* Here we just do minimal validation of the counts to avoid walking
461 * off the end of our table space. jdhuff.c will check more carefully.
462 */
463 if (count > 256 || ((INT32) count) > length)
464 ERREXIT(cinfo, JERR_BAD_HUFF_TABLE);
465
466 for (i = 0; i < count; i++)
467 INPUT_BYTE(cinfo, huffval[i], return FALSE);
468
469 length -= count;
470
471 if (index & 0x10) { /* AC table definition */
472 index -= 0x10;
473 htblptr = &cinfo->ac_huff_tbl_ptrs[index];
474 } else { /* DC table definition */
475 htblptr = &cinfo->dc_huff_tbl_ptrs[index];
476 }
477
478 if (index < 0 || index >= NUM_HUFF_TBLS)
479 ERREXIT1(cinfo, JERR_DHT_INDEX, index);
480
481 if (*htblptr == NULL)
482 *htblptr = jpeg_alloc_huff_table((j_common_ptr) cinfo);
483
484 MEMCOPY((*htblptr)->bits, bits, SIZEOF((*htblptr)->bits));
485 MEMCOPY((*htblptr)->huffval, huffval, SIZEOF((*htblptr)->huffval));
486 }
487
488 if (length != 0)
489 ERREXIT(cinfo, JERR_BAD_LENGTH);
490
491 INPUT_SYNC(cinfo);
492 return TRUE;
493}
494
495
496LOCAL(boolean)
497get_dqt (j_decompress_ptr cinfo)
498/* Process a DQT marker */
499{
500 INT32 length;
501 int n, i, prec;
502 unsigned int tmp;
503 JQUANT_TBL *quant_ptr;
504 INPUT_VARS(cinfo);
505
506 INPUT_2BYTES(cinfo, length, return FALSE);
507 length -= 2;
508
509 while (length > 0) {
510 INPUT_BYTE(cinfo, n, return FALSE);
511 prec = n >> 4;
512 n &= 0x0F;
513
514 TRACEMS2(cinfo, 1, JTRC_DQT, n, prec);
515
516 if (n >= NUM_QUANT_TBLS)
517 ERREXIT1(cinfo, JERR_DQT_INDEX, n);
518
519 if (cinfo->quant_tbl_ptrs[n] == NULL)
520 cinfo->quant_tbl_ptrs[n] = jpeg_alloc_quant_table((j_common_ptr) cinfo);
521 quant_ptr = cinfo->quant_tbl_ptrs[n];
522
523 for (i = 0; i < DCTSIZE2; i++) {
524 if (prec)
525 INPUT_2BYTES(cinfo, tmp, return FALSE);
526 else
527 INPUT_BYTE(cinfo, tmp, return FALSE);
528 /* We convert the zigzag-order table to natural array order. */
529 quant_ptr->quantval[jpeg_natural_order[i]] = (UINT16) tmp;
530 }
531
532 if (cinfo->err->trace_level >= 2) {
533 for (i = 0; i < DCTSIZE2; i += 8) {
534 TRACEMS8(cinfo, 2, JTRC_QUANTVALS,
535 quant_ptr->quantval[i], quant_ptr->quantval[i+1],
536 quant_ptr->quantval[i+2], quant_ptr->quantval[i+3],
537 quant_ptr->quantval[i+4], quant_ptr->quantval[i+5],
538 quant_ptr->quantval[i+6], quant_ptr->quantval[i+7]);
539 }
540 }
541
542 length -= DCTSIZE2+1;
543 if (prec) length -= DCTSIZE2;
544 }
545
546 if (length != 0)
547 ERREXIT(cinfo, JERR_BAD_LENGTH);
548
549 INPUT_SYNC(cinfo);
550 return TRUE;
551}
552
553
554LOCAL(boolean)
555get_dri (j_decompress_ptr cinfo)
556/* Process a DRI marker */
557{
558 INT32 length;
559 unsigned int tmp;
560 INPUT_VARS(cinfo);
561
562 INPUT_2BYTES(cinfo, length, return FALSE);
563
564 if (length != 4)
565 ERREXIT(cinfo, JERR_BAD_LENGTH);
566
567 INPUT_2BYTES(cinfo, tmp, return FALSE);
568
569 TRACEMS1(cinfo, 1, JTRC_DRI, tmp);
570
571 cinfo->restart_interval = tmp;
572
573 INPUT_SYNC(cinfo);
574 return TRUE;
575}
576
577
578/*
579 * Routines for processing APPn and COM markers.
580 * These are either saved in memory or discarded, per application request.
581 * APP0 and APP14 are specially checked to see if they are
582 * JFIF and Adobe markers, respectively.
583 */
584
585#define APP0_DATA_LEN 14 /* Length of interesting data in APP0 */
586#define APP14_DATA_LEN 12 /* Length of interesting data in APP14 */
587#define APPN_DATA_LEN 14 /* Must be the largest of the above!! */
588
589
590LOCAL(void)
591examine_app0 (j_decompress_ptr cinfo, JOCTET FAR * data,
592 unsigned int datalen, INT32 remaining)
593/* Examine first few bytes from an APP0.
594 * Take appropriate action if it is a JFIF marker.
595 * datalen is # of bytes at data[], remaining is length of rest of marker data.
596 */
597{
598 INT32 totallen = (INT32) datalen + remaining;
599
600 if (datalen >= APP0_DATA_LEN &&
601 GETJOCTET(data[0]) == 0x4A &&
602 GETJOCTET(data[1]) == 0x46 &&
603 GETJOCTET(data[2]) == 0x49 &&
604 GETJOCTET(data[3]) == 0x46 &&
605 GETJOCTET(data[4]) == 0) {
606 /* Found JFIF APP0 marker: save info */
607 cinfo->saw_JFIF_marker = TRUE;
608 cinfo->JFIF_major_version = GETJOCTET(data[5]);
609 cinfo->JFIF_minor_version = GETJOCTET(data[6]);
610 cinfo->density_unit = GETJOCTET(data[7]);
611 cinfo->X_density = (GETJOCTET(data[8]) << 8) + GETJOCTET(data[9]);
612 cinfo->Y_density = (GETJOCTET(data[10]) << 8) + GETJOCTET(data[11]);
613 /* Check version.
614 * Major version must be 1, anything else signals an incompatible change.
615 * (We used to treat this as an error, but now it's a nonfatal warning,
616 * because some bozo at Hijaak couldn't read the spec.)
617 * Minor version should be 0..2, but process anyway if newer.
618 */
619 if (cinfo->JFIF_major_version != 1)
620 WARNMS2(cinfo, JWRN_JFIF_MAJOR,
621 cinfo->JFIF_major_version, cinfo->JFIF_minor_version);
622 /* Generate trace messages */
623 TRACEMS5(cinfo, 1, JTRC_JFIF,
624 cinfo->JFIF_major_version, cinfo->JFIF_minor_version,
625 cinfo->X_density, cinfo->Y_density, cinfo->density_unit);
626 /* Validate thumbnail dimensions and issue appropriate messages */
627 if (GETJOCTET(data[12]) | GETJOCTET(data[13]))
628 TRACEMS2(cinfo, 1, JTRC_JFIF_THUMBNAIL,
629 GETJOCTET(data[12]), GETJOCTET(data[13]));
630 totallen -= APP0_DATA_LEN;
631 if (totallen !=
632 ((INT32)GETJOCTET(data[12]) * (INT32)GETJOCTET(data[13]) * (INT32) 3))
633 TRACEMS1(cinfo, 1, JTRC_JFIF_BADTHUMBNAILSIZE, (int) totallen);
634 } else if (datalen >= 6 &&
635 GETJOCTET(data[0]) == 0x4A &&
636 GETJOCTET(data[1]) == 0x46 &&
637 GETJOCTET(data[2]) == 0x58 &&
638 GETJOCTET(data[3]) == 0x58 &&
639 GETJOCTET(data[4]) == 0) {
640 /* Found JFIF "JFXX" extension APP0 marker */
641 /* The library doesn't actually do anything with these,
642 * but we try to produce a helpful trace message.
643 */
644 switch (GETJOCTET(data[5])) {
645 case 0x10:
646 TRACEMS1(cinfo, 1, JTRC_THUMB_JPEG, (int) totallen);
647 break;
648 case 0x11:
649 TRACEMS1(cinfo, 1, JTRC_THUMB_PALETTE, (int) totallen);
650 break;
651 case 0x13:
652 TRACEMS1(cinfo, 1, JTRC_THUMB_RGB, (int) totallen);
653 break;
654 default:
655 TRACEMS2(cinfo, 1, JTRC_JFIF_EXTENSION,
656 GETJOCTET(data[5]), (int) totallen);
657 break;
658 }
659 } else {
660 /* Start of APP0 does not match "JFIF" or "JFXX", or too short */
661 TRACEMS1(cinfo, 1, JTRC_APP0, (int) totallen);
662
663 /*
664 * In this case we have seen the APP0 marker but the remaining
665 * APP0 section may be corrupt. Regardless, we will set the
666 * saw_JFIF_marker flag as it is important for making the
667 * correct choice of JPEG color space later (we will assume
668 * YCbCr in this case). The version and density fields will
669 * contain default values, which should be sufficient for our needs.
670 */
671 cinfo->saw_JFIF_marker = TRUE;
672 }
673}
674
675
676LOCAL(void)
677examine_app14 (j_decompress_ptr cinfo, JOCTET FAR * data,
678 unsigned int datalen, INT32 remaining)
679/* Examine first few bytes from an APP14.
680 * Take appropriate action if it is an Adobe marker.
681 * datalen is # of bytes at data[], remaining is length of rest of marker data.
682 */
683{
684 unsigned int version, flags0, flags1, transform;
685
686 if (datalen >= APP14_DATA_LEN &&
687 GETJOCTET(data[0]) == 0x41 &&
688 GETJOCTET(data[1]) == 0x64 &&
689 GETJOCTET(data[2]) == 0x6F &&
690 GETJOCTET(data[3]) == 0x62 &&
691 GETJOCTET(data[4]) == 0x65) {
692 /* Found Adobe APP14 marker */
693 version = (GETJOCTET(data[5]) << 8) + GETJOCTET(data[6]);
694 flags0 = (GETJOCTET(data[7]) << 8) + GETJOCTET(data[8]);
695 flags1 = (GETJOCTET(data[9]) << 8) + GETJOCTET(data[10]);
696 transform = GETJOCTET(data[11]);
697 TRACEMS4(cinfo, 1, JTRC_ADOBE, version, flags0, flags1, transform);
698 cinfo->saw_Adobe_marker = TRUE;
699 cinfo->Adobe_transform = (UINT8) transform;
700 } else {
701 /* Start of APP14 does not match "Adobe", or too short */
702 TRACEMS1(cinfo, 1, JTRC_APP14, (int) (datalen + remaining));
703 }
704}
705
706
707METHODDEF(boolean)
708get_interesting_appn (j_decompress_ptr cinfo)
709/* Process an APP0 or APP14 marker without saving it */
710{
711 INT32 length;
712 JOCTET b[APPN_DATA_LEN];
713 unsigned int i, numtoread;
714 INPUT_VARS(cinfo);
715
716 INPUT_2BYTES(cinfo, length, return FALSE);
717 length -= 2;
718
719 /* get the interesting part of the marker data */
720 if (length >= APPN_DATA_LEN)
721 numtoread = APPN_DATA_LEN;
722 else if (length > 0)
723 numtoread = (unsigned int) length;
724 else
725 numtoread = 0;
726 for (i = 0; i < numtoread; i++)
727 INPUT_BYTE(cinfo, b[i], return FALSE);
728 length -= numtoread;
729
730 /* process it */
731 switch (cinfo->unread_marker) {
732 case M_APP0:
733 examine_app0(cinfo, (JOCTET FAR *) b, numtoread, length);
734 break;
735 case M_APP14:
736 examine_app14(cinfo, (JOCTET FAR *) b, numtoread, length);
737 break;
738 default:
739 /* can't get here unless jpeg_save_markers chooses wrong processor */
740 ERREXIT1(cinfo, JERR_UNKNOWN_MARKER, cinfo->unread_marker);
741 break;
742 }
743
744 /* skip any remaining data -- could be lots */
745 INPUT_SYNC(cinfo);
746 if (length > 0)
747 (*cinfo->src->skip_input_data) (cinfo, (long) length);
748
749 return TRUE;
750}
751
752
753#ifdef SAVE_MARKERS_SUPPORTED
754
755METHODDEF(boolean)
756save_marker (j_decompress_ptr cinfo)
757/* Save an APPn or COM marker into the marker list */
758{
759 my_marker_ptr marker = (my_marker_ptr) cinfo->marker;
760 jpeg_saved_marker_ptr cur_marker = marker->cur_marker;
761 unsigned int bytes_read, data_length;
762 JOCTET FAR * data;
763 INT32 length = 0;
764 INPUT_VARS(cinfo);
765
766 if (cur_marker == NULL) {
767 /* begin reading a marker */
768 INPUT_2BYTES(cinfo, length, return FALSE);
769 length -= 2;
770 if (length >= 0) { /* watch out for bogus length word */
771 /* figure out how much we want to save */
772 unsigned int limit;
773 if (cinfo->unread_marker == (int) M_COM)
774 limit = marker->length_limit_COM;
775 else
776 limit = marker->length_limit_APPn[cinfo->unread_marker - (int) M_APP0];
777 if ((unsigned int) length < limit)
778 limit = (unsigned int) length;
779 /* allocate and initialize the marker item */
780 cur_marker = (jpeg_saved_marker_ptr)
781 (*cinfo->mem->alloc_large) ((j_common_ptr) cinfo, JPOOL_IMAGE,
782 SIZEOF(struct jpeg_marker_struct) + limit);
783 cur_marker->next = NULL;
784 cur_marker->marker = (UINT8) cinfo->unread_marker;
785 cur_marker->original_length = (unsigned int) length;
786 cur_marker->data_length = limit;
787 /* data area is just beyond the jpeg_marker_struct */
788 data = cur_marker->data = (JOCTET FAR *) (cur_marker + 1);
789 marker->cur_marker = cur_marker;
790 marker->bytes_read = 0;
791 bytes_read = 0;
792 data_length = limit;
793 } else {
794 /* deal with bogus length word */
795 bytes_read = data_length = 0;
796 data = NULL;
797 }
798 } else {
799 /* resume reading a marker */
800 bytes_read = marker->bytes_read;
801 data_length = cur_marker->data_length;
802 data = cur_marker->data + bytes_read;
803 }
804
805 while (bytes_read < data_length) {
806 INPUT_SYNC(cinfo); /* move the restart point to here */
807 marker->bytes_read = bytes_read;
808 /* If there's not at least one byte in buffer, suspend */
809 MAKE_BYTE_AVAIL(cinfo, return FALSE);
810 /* Copy bytes with reasonable rapidity */
811 while (bytes_read < data_length && bytes_in_buffer > 0) {
812 *data++ = *next_input_byte++;
813 bytes_in_buffer--;
814 bytes_read++;
815 }
816 }
817
818 /* Done reading what we want to read */
819 if (cur_marker != NULL) { /* will be NULL if bogus length word */
820 /* Add new marker to end of list */
821 if (cinfo->marker_list == NULL) {
822 cinfo->marker_list = cur_marker;
823 } else {
824 jpeg_saved_marker_ptr prev = cinfo->marker_list;
825 while (prev->next != NULL)
826 prev = prev->next;
827 prev->next = cur_marker;
828 }
829 /* Reset pointer & calc remaining data length */
830 data = cur_marker->data;
831 length = cur_marker->original_length - data_length;
832 }
833 /* Reset to initial state for next marker */
834 marker->cur_marker = NULL;
835
836 /* Process the marker if interesting; else just make a generic trace msg */
837 switch (cinfo->unread_marker) {
838 case M_APP0:
839 examine_app0(cinfo, data, data_length, length);
840 break;
841 case M_APP14:
842 examine_app14(cinfo, data, data_length, length);
843 break;
844 default:
845 TRACEMS2(cinfo, 1, JTRC_MISC_MARKER, cinfo->unread_marker,
846 (int) (data_length + length));
847 break;
848 }
849
850 /* skip any remaining data -- could be lots */
851 INPUT_SYNC(cinfo); /* do before skip_input_data */
852 if (length > 0)
853 (*cinfo->src->skip_input_data) (cinfo, (long) length);
854
855 return TRUE;
856}
857
858#endif /* SAVE_MARKERS_SUPPORTED */
859
860
861METHODDEF(boolean)
862skip_variable (j_decompress_ptr cinfo)
863/* Skip over an unknown or uninteresting variable-length marker */
864{
865 INT32 length;
866 INPUT_VARS(cinfo);
867
868 INPUT_2BYTES(cinfo, length, return FALSE);
869 length -= 2;
870
871 TRACEMS2(cinfo, 1, JTRC_MISC_MARKER, cinfo->unread_marker, (int) length);
872
873 INPUT_SYNC(cinfo); /* do before skip_input_data */
874 if (length > 0)
875 (*cinfo->src->skip_input_data) (cinfo, (long) length);
876
877 return TRUE;
878}
879
880
881/*
882 * Find the next JPEG marker, save it in cinfo->unread_marker.
883 * Returns FALSE if had to suspend before reaching a marker;
884 * in that case cinfo->unread_marker is unchanged.
885 *
886 * Note that the result might not be a valid marker code,
887 * but it will never be 0 or FF.
888 */
889
890LOCAL(boolean)
891next_marker (j_decompress_ptr cinfo)
892{
893 int c;
894 INPUT_VARS(cinfo);
895
896 for (;;) {
897 INPUT_BYTE(cinfo, c, return FALSE);
898 /* Skip any non-FF bytes.
899 * This may look a bit inefficient, but it will not occur in a valid file.
900 * We sync after each discarded byte so that a suspending data source
901 * can discard the byte from its buffer.
902 */
903 while (c != 0xFF) {
904 cinfo->marker->discarded_bytes++;
905 INPUT_SYNC(cinfo);
906 INPUT_BYTE(cinfo, c, return FALSE);
907 }
908 /* This loop swallows any duplicate FF bytes. Extra FFs are legal as
909 * pad bytes, so don't count them in discarded_bytes. We assume there
910 * will not be so many consecutive FF bytes as to overflow a suspending
911 * data source's input buffer.
912 */
913 do {
914 INPUT_BYTE(cinfo, c, return FALSE);
915 } while (c == 0xFF);
916 if (c != 0)
917 break; /* found a valid marker, exit loop */
918 /* Reach here if we found a stuffed-zero data sequence (FF/00).
919 * Discard it and loop back to try again.
920 */
921 cinfo->marker->discarded_bytes += 2;
922 INPUT_SYNC(cinfo);
923 }
924
925 if (cinfo->marker->discarded_bytes != 0) {
926 WARNMS2(cinfo, JWRN_EXTRANEOUS_DATA, cinfo->marker->discarded_bytes, c);
927 cinfo->marker->discarded_bytes = 0;
928 }
929
930 cinfo->unread_marker = c;
931
932 INPUT_SYNC(cinfo);
933 return TRUE;
934}
935
936
937LOCAL(boolean)
938first_marker (j_decompress_ptr cinfo)
939/* Like next_marker, but used to obtain the initial SOI marker. */
940/* For this marker, we do not allow preceding garbage or fill; otherwise,
941 * we might well scan an entire input file before realizing it ain't JPEG.
942 * If an application wants to process non-JFIF files, it must seek to the
943 * SOI before calling the JPEG library.
944 */
945{
946 int c, c2;
947 INPUT_VARS(cinfo);
948
949 INPUT_BYTE(cinfo, c, return FALSE);
950 INPUT_BYTE(cinfo, c2, return FALSE);
951 if (c != 0xFF || c2 != (int) M_SOI)
952 ERREXIT2(cinfo, JERR_NO_SOI, c, c2);
953
954 cinfo->unread_marker = c2;
955
956 INPUT_SYNC(cinfo);
957 return TRUE;
958}
959
960
961/*
962 * Read markers until SOS or EOI.
963 *
964 * Returns same codes as are defined for jpeg_consume_input:
965 * JPEG_SUSPENDED, JPEG_REACHED_SOS, or JPEG_REACHED_EOI.
966 */
967
968METHODDEF(int)
969read_markers (j_decompress_ptr cinfo)
970{
971 /* Outer loop repeats once for each marker. */
972 for (;;) {
973 /* Collect the marker proper, unless we already did. */
974 /* NB: first_marker() enforces the requirement that SOI appear first. */
975 if (cinfo->unread_marker == 0) {
976 if (! cinfo->marker->saw_SOI) {
977 if (! first_marker(cinfo))
978 return JPEG_SUSPENDED;
979 } else {
980 if (! next_marker(cinfo))
981 return JPEG_SUSPENDED;
982 }
983 }
984 /* At this point cinfo->unread_marker contains the marker code and the
985 * input point is just past the marker proper, but before any parameters.
986 * A suspension will cause us to return with this state still true.
987 */
988 switch (cinfo->unread_marker) {
989 case M_SOI:
990 if (! get_soi(cinfo))
991 return JPEG_SUSPENDED;
992 break;
993
994 case M_SOF0: /* Baseline */
995 case M_SOF1: /* Extended sequential, Huffman */
996 if (! get_sof(cinfo, FALSE, FALSE))
997 return JPEG_SUSPENDED;
998 break;
999
1000 case M_SOF2: /* Progressive, Huffman */
1001 if (! get_sof(cinfo, TRUE, FALSE))
1002 return JPEG_SUSPENDED;
1003 break;
1004
1005 case M_SOF9: /* Extended sequential, arithmetic */
1006 if (! get_sof(cinfo, FALSE, TRUE))
1007 return JPEG_SUSPENDED;
1008 break;
1009
1010 case M_SOF10: /* Progressive, arithmetic */
1011 if (! get_sof(cinfo, TRUE, TRUE))
1012 return JPEG_SUSPENDED;
1013 break;
1014
1015 /* Currently unsupported SOFn types */
1016 case M_SOF3: /* Lossless, Huffman */
1017 case M_SOF5: /* Differential sequential, Huffman */
1018 case M_SOF6: /* Differential progressive, Huffman */
1019 case M_SOF7: /* Differential lossless, Huffman */
1020 case M_JPG: /* Reserved for JPEG extensions */
1021 case M_SOF11: /* Lossless, arithmetic */
1022 case M_SOF13: /* Differential sequential, arithmetic */
1023 case M_SOF14: /* Differential progressive, arithmetic */
1024 case M_SOF15: /* Differential lossless, arithmetic */
1025 ERREXIT1(cinfo, JERR_SOF_UNSUPPORTED, cinfo->unread_marker);
1026 break;
1027
1028 case M_SOS:
1029 if (! get_sos(cinfo))
1030 return JPEG_SUSPENDED;
1031 cinfo->unread_marker = 0; /* processed the marker */
1032 return JPEG_REACHED_SOS;
1033
1034 case M_EOI:
1035 TRACEMS(cinfo, 1, JTRC_EOI);
1036 cinfo->unread_marker = 0; /* processed the marker */
1037 return JPEG_REACHED_EOI;
1038
1039 case M_DAC:
1040 if (! get_dac(cinfo))
1041 return JPEG_SUSPENDED;
1042 break;
1043
1044 case M_DHT:
1045 if (! get_dht(cinfo))
1046 return JPEG_SUSPENDED;
1047 break;
1048
1049 case M_DQT:
1050 if (! get_dqt(cinfo))
1051 return JPEG_SUSPENDED;
1052 break;
1053
1054 case M_DRI:
1055 if (! get_dri(cinfo))
1056 return JPEG_SUSPENDED;
1057 break;
1058
1059 case M_APP0:
1060 case M_APP1:
1061 case M_APP2:
1062 case M_APP3:
1063 case M_APP4:
1064 case M_APP5:
1065 case M_APP6:
1066 case M_APP7:
1067 case M_APP8:
1068 case M_APP9:
1069 case M_APP10:
1070 case M_APP11:
1071 case M_APP12:
1072 case M_APP13:
1073 case M_APP14:
1074 case M_APP15:
1075 if (! (*((my_marker_ptr) cinfo->marker)->process_APPn[
1076 cinfo->unread_marker - (int) M_APP0]) (cinfo))
1077 return JPEG_SUSPENDED;
1078 break;
1079
1080 case M_COM:
1081 if (! (*((my_marker_ptr) cinfo->marker)->process_COM) (cinfo))
1082 return JPEG_SUSPENDED;
1083 break;
1084
1085 case M_RST0: /* these are all parameterless */
1086 case M_RST1:
1087 case M_RST2:
1088 case M_RST3:
1089 case M_RST4:
1090 case M_RST5:
1091 case M_RST6:
1092 case M_RST7:
1093 case M_TEM:
1094 TRACEMS1(cinfo, 1, JTRC_PARMLESS_MARKER, cinfo->unread_marker);
1095 break;
1096
1097 case M_DNL: /* Ignore DNL ... perhaps the wrong thing */
1098 if (! skip_variable(cinfo))
1099 return JPEG_SUSPENDED;
1100 break;
1101
1102 default: /* must be DHP, EXP, JPGn, or RESn */
1103 /* For now, we treat the reserved markers as fatal errors since they are
1104 * likely to be used to signal incompatible JPEG Part 3 extensions.
1105 * Once the JPEG 3 version-number marker is well defined, this code
1106 * ought to change!
1107 * [To be behaviorally compatible with other popular image display
1108 * applications, we are now treating these unknown markers as warnings,
1109 * rather than errors. This allows processing to continue, although
1110 * any portions of the image after the bad marker may be corrupted
1111 * and/or rendered gray. See 4511441.]
1112 */
1113 WARNMS1(cinfo, JERR_UNKNOWN_MARKER, cinfo->unread_marker);
1114 break;
1115 }
1116 /* Successfully processed marker, so reset state variable */
1117 cinfo->unread_marker = 0;
1118 } /* end loop */
1119}
1120
1121
1122/*
1123 * Read a restart marker, which is expected to appear next in the datastream;
1124 * if the marker is not there, take appropriate recovery action.
1125 * Returns FALSE if suspension is required.
1126 *
1127 * This is called by the entropy decoder after it has read an appropriate
1128 * number of MCUs. cinfo->unread_marker may be nonzero if the entropy decoder
1129 * has already read a marker from the data source. Under normal conditions
1130 * cinfo->unread_marker will be reset to 0 before returning; if not reset,
1131 * it holds a marker which the decoder will be unable to read past.
1132 */
1133
1134METHODDEF(boolean)
1135read_restart_marker (j_decompress_ptr cinfo)
1136{
1137 /* Obtain a marker unless we already did. */
1138 /* Note that next_marker will complain if it skips any data. */
1139 if (cinfo->unread_marker == 0) {
1140 if (! next_marker(cinfo))
1141 return FALSE;
1142 }
1143
1144 if (cinfo->unread_marker ==
1145 ((int) M_RST0 + cinfo->marker->next_restart_num)) {
1146 /* Normal case --- swallow the marker and let entropy decoder continue */
1147 TRACEMS1(cinfo, 3, JTRC_RST, cinfo->marker->next_restart_num);
1148 cinfo->unread_marker = 0;
1149 } else {
1150 /* Uh-oh, the restart markers have been messed up. */
1151 /* Let the data source manager determine how to resync. */
1152 if (! (*cinfo->src->resync_to_restart) (cinfo,
1153 cinfo->marker->next_restart_num))
1154 return FALSE;
1155 }
1156
1157 /* Update next-restart state */
1158 cinfo->marker->next_restart_num = (cinfo->marker->next_restart_num + 1) & 7;
1159
1160 return TRUE;
1161}
1162
1163
1164/*
1165 * This is the default resync_to_restart method for data source managers
1166 * to use if they don't have any better approach. Some data source managers
1167 * may be able to back up, or may have additional knowledge about the data
1168 * which permits a more intelligent recovery strategy; such managers would
1169 * presumably supply their own resync method.
1170 *
1171 * read_restart_marker calls resync_to_restart if it finds a marker other than
1172 * the restart marker it was expecting. (This code is *not* used unless
1173 * a nonzero restart interval has been declared.) cinfo->unread_marker is
1174 * the marker code actually found (might be anything, except 0 or FF).
1175 * The desired restart marker number (0..7) is passed as a parameter.
1176 * This routine is supposed to apply whatever error recovery strategy seems
1177 * appropriate in order to position the input stream to the next data segment.
1178 * Note that cinfo->unread_marker is treated as a marker appearing before
1179 * the current data-source input point; usually it should be reset to zero
1180 * before returning.
1181 * Returns FALSE if suspension is required.
1182 *
1183 * This implementation is substantially constrained by wanting to treat the
1184 * input as a data stream; this means we can't back up. Therefore, we have
1185 * only the following actions to work with:
1186 * 1. Simply discard the marker and let the entropy decoder resume at next
1187 * byte of file.
1188 * 2. Read forward until we find another marker, discarding intervening
1189 * data. (In theory we could look ahead within the current bufferload,
1190 * without having to discard data if we don't find the desired marker.
1191 * This idea is not implemented here, in part because it makes behavior
1192 * dependent on buffer size and chance buffer-boundary positions.)
1193 * 3. Leave the marker unread (by failing to zero cinfo->unread_marker).
1194 * This will cause the entropy decoder to process an empty data segment,
1195 * inserting dummy zeroes, and then we will reprocess the marker.
1196 *
1197 * #2 is appropriate if we think the desired marker lies ahead, while #3 is
1198 * appropriate if the found marker is a future restart marker (indicating
1199 * that we have missed the desired restart marker, probably because it got
1200 * corrupted).
1201 * We apply #2 or #3 if the found marker is a restart marker no more than
1202 * two counts behind or ahead of the expected one. We also apply #2 if the
1203 * found marker is not a legal JPEG marker code (it's certainly bogus data).
1204 * If the found marker is a restart marker more than 2 counts away, we do #1
1205 * (too much risk that the marker is erroneous; with luck we will be able to
1206 * resync at some future point).
1207 * For any valid non-restart JPEG marker, we apply #3. This keeps us from
1208 * overrunning the end of a scan. An implementation limited to single-scan
1209 * files might find it better to apply #2 for markers other than EOI, since
1210 * any other marker would have to be bogus data in that case.
1211 */
1212
1213GLOBAL(boolean)
1214jpeg_resync_to_restart (j_decompress_ptr cinfo, int desired)
1215{
1216 int marker = cinfo->unread_marker;
1217 int action = 1;
1218
1219 /* Always put up a warning. */
1220 WARNMS2(cinfo, JWRN_MUST_RESYNC, marker, desired);
1221
1222 /* Outer loop handles repeated decision after scanning forward. */
1223 for (;;) {
1224 if (marker < (int) M_SOF0)
1225 action = 2; /* invalid marker */
1226 else if (marker < (int) M_RST0 || marker > (int) M_RST7)
1227 action = 3; /* valid non-restart marker */
1228 else {
1229 if (marker == ((int) M_RST0 + ((desired+1) & 7)) ||
1230 marker == ((int) M_RST0 + ((desired+2) & 7)))
1231 action = 3; /* one of the next two expected restarts */
1232 else if (marker == ((int) M_RST0 + ((desired-1) & 7)) ||
1233 marker == ((int) M_RST0 + ((desired-2) & 7)))
1234 action = 2; /* a prior restart, so advance */
1235 else
1236 action = 1; /* desired restart or too far away */
1237 }
1238 TRACEMS2(cinfo, 4, JTRC_RECOVERY_ACTION, marker, action);
1239 switch (action) {
1240 case 1:
1241 /* Discard marker and let entropy decoder resume processing. */
1242 cinfo->unread_marker = 0;
1243 return TRUE;
1244 case 2:
1245 /* Scan to the next marker, and repeat the decision loop. */
1246 if (! next_marker(cinfo))
1247 return FALSE;
1248 marker = cinfo->unread_marker;
1249 break;
1250 case 3:
1251 /* Return without advancing past this marker. */
1252 /* Entropy decoder will be forced to process an empty segment. */
1253 return TRUE;
1254 }
1255 } /* end loop */
1256}
1257
1258
1259/*
1260 * Reset marker processing state to begin a fresh datastream.
1261 */
1262
1263METHODDEF(void)
1264reset_marker_reader (j_decompress_ptr cinfo)
1265{
1266 my_marker_ptr marker = (my_marker_ptr) cinfo->marker;
1267
1268 cinfo->comp_info = NULL; /* until allocated by get_sof */
1269 cinfo->input_scan_number = 0; /* no SOS seen yet */
1270 cinfo->unread_marker = 0; /* no pending marker */
1271 marker->pub.saw_SOI = FALSE; /* set internal state too */
1272 marker->pub.saw_SOF = FALSE;
1273 marker->pub.discarded_bytes = 0;
1274 marker->cur_marker = NULL;
1275}
1276
1277
1278/*
1279 * Initialize the marker reader module.
1280 * This is called only once, when the decompression object is created.
1281 */
1282
1283GLOBAL(void)
1284jinit_marker_reader (j_decompress_ptr cinfo)
1285{
1286 my_marker_ptr marker;
1287 int i;
1288
1289 /* Create subobject in permanent pool */
1290 marker = (my_marker_ptr)
1291 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_PERMANENT,
1292 SIZEOF(my_marker_reader));
1293 cinfo->marker = (struct jpeg_marker_reader *) marker;
1294 /* Initialize public method pointers */
1295 marker->pub.reset_marker_reader = reset_marker_reader;
1296 marker->pub.read_markers = read_markers;
1297 marker->pub.read_restart_marker = read_restart_marker;
1298 /* Initialize COM/APPn processing.
1299 * By default, we examine and then discard APP0 and APP14.
1300 * We also may need to save APP1 to detect the case of EXIF images (see 4881314).
1301 * COM and all other APPn are simply discarded.
1302 */
1303 marker->process_COM = skip_variable;
1304 marker->length_limit_COM = 0;
1305 for (i = 0; i < 16; i++) {
1306 marker->process_APPn[i] = skip_variable;
1307 marker->length_limit_APPn[i] = 0;
1308 }
1309 marker->process_APPn[0] = get_interesting_appn;
1310 marker->process_APPn[1] = save_marker;
1311 marker->process_APPn[14] = get_interesting_appn;
1312 /* Reset marker processing state */
1313 reset_marker_reader(cinfo);
1314}
1315
1316
1317/*
1318 * Control saving of COM and APPn markers into marker_list.
1319 */
1320
1321#ifdef SAVE_MARKERS_SUPPORTED
1322
1323GLOBAL(void)
1324jpeg_save_markers (j_decompress_ptr cinfo, int marker_code,
1325 unsigned int length_limit)
1326{
1327 my_marker_ptr marker = (my_marker_ptr) cinfo->marker;
1328 long maxlength;
1329 jpeg_marker_parser_method processor;
1330
1331 /* Length limit mustn't be larger than what we can allocate
1332 * (should only be a concern in a 16-bit environment).
1333 */
1334 maxlength = cinfo->mem->max_alloc_chunk - SIZEOF(struct jpeg_marker_struct);
1335 if (((long) length_limit) > maxlength)
1336 length_limit = (unsigned int) maxlength;
1337
1338 /* Choose processor routine to use.
1339 * APP0/APP14 have special requirements.
1340 */
1341 if (length_limit) {
1342 processor = save_marker;
1343 /* If saving APP0/APP14, save at least enough for our internal use. */
1344 if (marker_code == (int) M_APP0 && length_limit < APP0_DATA_LEN)
1345 length_limit = APP0_DATA_LEN;
1346 else if (marker_code == (int) M_APP14 && length_limit < APP14_DATA_LEN)
1347 length_limit = APP14_DATA_LEN;
1348 } else {
1349 processor = skip_variable;
1350 /* If discarding APP0/APP14, use our regular on-the-fly processor. */
1351 if (marker_code == (int) M_APP0 || marker_code == (int) M_APP14)
1352 processor = get_interesting_appn;
1353 }
1354
1355 if (marker_code == (int) M_COM) {
1356 marker->process_COM = processor;
1357 marker->length_limit_COM = length_limit;
1358 } else if (marker_code >= (int) M_APP0 && marker_code <= (int) M_APP15) {
1359 marker->process_APPn[marker_code - (int) M_APP0] = processor;
1360 marker->length_limit_APPn[marker_code - (int) M_APP0] = length_limit;
1361 } else
1362 ERREXIT1(cinfo, JERR_UNKNOWN_MARKER, marker_code);
1363}
1364
1365#endif /* SAVE_MARKERS_SUPPORTED */
1366
1367
1368/*
1369 * Install a special processing method for COM or APPn markers.
1370 */
1371
1372GLOBAL(void)
1373jpeg_set_marker_processor (j_decompress_ptr cinfo, int marker_code,
1374 jpeg_marker_parser_method routine)
1375{
1376 my_marker_ptr marker = (my_marker_ptr) cinfo->marker;
1377
1378 if (marker_code == (int) M_COM)
1379 marker->process_COM = routine;
1380 else if (marker_code >= (int) M_APP0 && marker_code <= (int) M_APP15)
1381 marker->process_APPn[marker_code - (int) M_APP0] = routine;
1382 else
1383 ERREXIT1(cinfo, JERR_UNKNOWN_MARKER, marker_code);
1384}