1 /*
2
3 Copyright (c) 2002-2003, Marcin 'Shard' Konicki
4 All rights reserved.
5
6 Redistribution and use in source and binary forms, with or without
7 modification, are permitted provided that the following conditions are met:
8
9 * Redistributions of source code must retain the above copyright notice,
10 this list of conditions and the following disclaimer.
11 * Redistributions in binary form must reproduce the above copyright notice,
12 this list of conditions and the following disclaimer in the documentation and/or
13 other materials provided with the distribution.
14 * Name "Marcin Konicki", "Shard" or any combination of them,
15 must not be used to endorse or promote products derived from this
16 software without specific prior written permission from Marcin Konicki.
17
18 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
19 ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
20 THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS
22 BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY,
23 OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
24 PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
25 OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
26 WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
27 OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE,
28 EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29
30 */
31
32
33 #include "JPEGTranslator.h"
34
35 #include <syslog.h>
36
37 #include <Alignment.h>
38 #include <Catalog.h>
39 #include <LayoutBuilder.h>
40 #include <TabView.h>
41 #include <TextView.h>
42
43 #include "be_jerror.h"
44 #include "exif_parser.h"
45 #include "TranslatorWindow.h"
46
47
48 #undef B_TRANSLATION_CONTEXT
49 #define B_TRANSLATION_CONTEXT "JPEGTranslator"
50
51 #define MARKER_EXIF 0xe1
52
53 // Set these accordingly
54 #define JPEG_ACRONYM "JPEG"
55 #define JPEG_FORMAT 'JPEG'
56 #define JPEG_MIME_STRING "image/jpeg"
57 #define JPEG_DESCRIPTION "JPEG image"
58
59 // The translation kit's native file type
60 #define B_TRANSLATOR_BITMAP_MIME_STRING "image/x-be-bitmap"
61 #define B_TRANSLATOR_BITMAP_DESCRIPTION "Be Bitmap Format (JPEGTranslator)"
62
63
64 static const int32 sTranslatorVersion = B_TRANSLATION_MAKE_VERSION(1, 2, 0);
65
66 static const char* sTranslatorName = B_TRANSLATE("JPEG images");
67 static const char* sTranslatorInfo = B_TRANSLATE("©2002-2003, Marcin Konicki\n"
68 "©2005-2007, Haiku\n"
69 "\n"
70 "Based on IJG library © 1994-2009, Thomas G. Lane, Guido Vollbeding.\n"
71 "\thttp://www.ijg.org/files/\n"
72 "\n"
73 "with \"lossless\" encoding support patch by Ken Murchison\n"
74 "\thttp://www.oceana.com/ftp/ljpeg/\n"
75 "\n"
76 "With some colorspace conversion routines by Magnus Hellman\n"
77 "\thttp://www.bebits.com/app/802\n");
78
79 // Define the formats we know how to read
80 static const translation_format sInputFormats[] = {
81 { JPEG_FORMAT, B_TRANSLATOR_BITMAP, 0.5, 0.5,
82 JPEG_MIME_STRING, JPEG_DESCRIPTION },
83 { B_TRANSLATOR_BITMAP, B_TRANSLATOR_BITMAP, 0.5, 0.5,
84 B_TRANSLATOR_BITMAP_MIME_STRING, B_TRANSLATOR_BITMAP_DESCRIPTION }
85 };
86
87 // Define the formats we know how to write
88 static const translation_format sOutputFormats[] = {
89 { JPEG_FORMAT, B_TRANSLATOR_BITMAP, 0.5, 0.5,
90 JPEG_MIME_STRING, JPEG_DESCRIPTION },
91 { B_TRANSLATOR_BITMAP, B_TRANSLATOR_BITMAP, 0.5, 0.5,
92 B_TRANSLATOR_BITMAP_MIME_STRING, B_TRANSLATOR_BITMAP_DESCRIPTION }
93 };
94
95
96 static const TranSetting sDefaultSettings[] = {
97 {JPEG_SET_SMOOTHING, TRAN_SETTING_INT32, 0},
98 {JPEG_SET_QUALITY, TRAN_SETTING_INT32, 95},
99 {JPEG_SET_PROGRESSIVE, TRAN_SETTING_BOOL, true},
100 {JPEG_SET_OPT_COLORS, TRAN_SETTING_BOOL, true},
101 {JPEG_SET_SMALL_FILES, TRAN_SETTING_BOOL, false},
102 {JPEG_SET_GRAY1_AS_RGB24, TRAN_SETTING_BOOL, false},
103 {JPEG_SET_ALWAYS_RGB32, TRAN_SETTING_BOOL, true},
104 {JPEG_SET_PHOTOSHOP_CMYK, TRAN_SETTING_BOOL, true},
105 {JPEG_SET_SHOWREADWARNING, TRAN_SETTING_BOOL, true}
106 };
107
108 const uint32 kNumInputFormats = sizeof(sInputFormats) / sizeof(translation_format);
109 const uint32 kNumOutputFormats = sizeof(sOutputFormats) / sizeof(translation_format);
110 const uint32 kNumDefaultSettings = sizeof(sDefaultSettings) / sizeof(TranSetting);
111
112
113 namespace conversion {
114
115
116 static bool
x_flipped(int32 orientation)117 x_flipped(int32 orientation)
118 {
119 return orientation == 2 || orientation == 3
120 || orientation == 6 || orientation == 7;
121 }
122
123
124 static bool
y_flipped(int32 orientation)125 y_flipped(int32 orientation)
126 {
127 return orientation == 3 || orientation == 4
128 || orientation == 7 || orientation == 8;
129 }
130
131
132 static int32
dest_index(uint32 width,uint32 height,uint32 x,uint32 y,int32 orientation)133 dest_index(uint32 width, uint32 height, uint32 x, uint32 y, int32 orientation)
134 {
135 if (orientation > 4) {
136 uint32 temp = x;
137 x = y;
138 y = temp;
139 }
140 if (y_flipped(orientation))
141 y = height - 1 - y;
142 if (x_flipped(orientation))
143 x = width - 1 - x;
144
145 return y * width + x;
146 }
147
148
149 // #pragma mark - conversion for compression
150
151
152 inline void
convert_from_gray1_to_gray8(uint8 * in,uint8 * out,int32 inRowBytes)153 convert_from_gray1_to_gray8(uint8* in, uint8* out, int32 inRowBytes)
154 {
155 int32 index = 0;
156 int32 index2 = 0;
157 while (index < inRowBytes) {
158 unsigned char c = in[index++];
159 for (int b = 128; b; b = b>>1) {
160 unsigned char color;
161 if (c & b)
162 color = 0;
163 else
164 color = 255;
165 out[index2++] = color;
166 }
167 }
168 }
169
170
171 inline void
convert_from_gray1_to_24(uint8 * in,uint8 * out,int32 inRowBytes)172 convert_from_gray1_to_24(uint8* in, uint8* out, int32 inRowBytes)
173 {
174 int32 index = 0;
175 int32 index2 = 0;
176 while (index < inRowBytes) {
177 unsigned char c = in[index++];
178 for (int b = 128; b; b = b>>1) {
179 unsigned char color;
180 if (c & b)
181 color = 0;
182 else
183 color = 255;
184 out[index2++] = color;
185 out[index2++] = color;
186 out[index2++] = color;
187 }
188 }
189 }
190
191
192 inline void
convert_from_cmap8_to_24(uint8 * in,uint8 * out,int32 inRowBytes)193 convert_from_cmap8_to_24(uint8* in, uint8* out, int32 inRowBytes)
194 {
195 const color_map * map = system_colors();
196 int32 index = 0;
197 int32 index2 = 0;
198 while (index < inRowBytes) {
199 rgb_color color = map->color_list[in[index++]];
200
201 out[index2++] = color.red;
202 out[index2++] = color.green;
203 out[index2++] = color.blue;
204 }
205 }
206
207
208 inline void
convert_from_15_to_24(uint8 * in,uint8 * out,int32 inRowBytes)209 convert_from_15_to_24(uint8* in, uint8* out, int32 inRowBytes)
210 {
211 int32 index = 0;
212 int32 index2 = 0;
213 int16 in_pixel;
214 while (index < inRowBytes) {
215 in_pixel = in[index] | (in[index + 1] << 8);
216 index += 2;
217
218 out[index2++] = (((in_pixel & 0x7c00)) >> 7) | (((in_pixel & 0x7c00)) >> 12);
219 out[index2++] = (((in_pixel & 0x3e0)) >> 2) | (((in_pixel & 0x3e0)) >> 7);
220 out[index2++] = (((in_pixel & 0x1f)) << 3) | (((in_pixel & 0x1f)) >> 2);
221 }
222 }
223
224
225 inline void
convert_from_15b_to_24(uint8 * in,uint8 * out,int32 inRowBytes)226 convert_from_15b_to_24(uint8* in, uint8* out, int32 inRowBytes)
227 {
228 int32 index = 0;
229 int32 index2 = 0;
230 int16 in_pixel;
231 while (index < inRowBytes) {
232 in_pixel = in[index + 1] | (in[index] << 8);
233 index += 2;
234
235 out[index2++] = (((in_pixel & 0x7c00)) >> 7) | (((in_pixel & 0x7c00)) >> 12);
236 out[index2++] = (((in_pixel & 0x3e0)) >> 2) | (((in_pixel & 0x3e0)) >> 7);
237 out[index2++] = (((in_pixel & 0x1f)) << 3) | (((in_pixel & 0x1f)) >> 2);
238 }
239 }
240
241
242 inline void
convert_from_16_to_24(uint8 * in,uint8 * out,int32 inRowBytes)243 convert_from_16_to_24(uint8* in, uint8* out, int32 inRowBytes)
244 {
245 int32 index = 0;
246 int32 index2 = 0;
247 int16 in_pixel;
248 while (index < inRowBytes) {
249 in_pixel = in[index] | (in[index + 1] << 8);
250 index += 2;
251
252 out[index2++] = (((in_pixel & 0xf800)) >> 8) | (((in_pixel & 0xf800)) >> 13);
253 out[index2++] = (((in_pixel & 0x7e0)) >> 3) | (((in_pixel & 0x7e0)) >> 9);
254 out[index2++] = (((in_pixel & 0x1f)) << 3) | (((in_pixel & 0x1f)) >> 2);
255 }
256 }
257
258
259 inline void
convert_from_16b_to_24(uint8 * in,uint8 * out,int32 inRowBytes)260 convert_from_16b_to_24(uint8* in, uint8* out, int32 inRowBytes)
261 {
262 int32 index = 0;
263 int32 index2 = 0;
264 int16 in_pixel;
265 while (index < inRowBytes) {
266 in_pixel = in[index + 1] | (in[index] << 8);
267 index += 2;
268
269 out[index2++] = (((in_pixel & 0xf800)) >> 8) | (((in_pixel & 0xf800)) >> 13);
270 out[index2++] = (((in_pixel & 0x7e0)) >> 3) | (((in_pixel & 0x7e0)) >> 9);
271 out[index2++] = (((in_pixel & 0x1f)) << 3) | (((in_pixel & 0x1f)) >> 2);
272 }
273 }
274
275
276 inline void
convert_from_24_to_24(uint8 * in,uint8 * out,int32 inRowBytes)277 convert_from_24_to_24(uint8* in, uint8* out, int32 inRowBytes)
278 {
279 int32 index = 0;
280 int32 index2 = 0;
281 while (index < inRowBytes) {
282 out[index2++] = in[index + 2];
283 out[index2++] = in[index + 1];
284 out[index2++] = in[index];
285 index+=3;
286 }
287 }
288
289
290 inline void
convert_from_32_to_24(uint8 * in,uint8 * out,int32 inRowBytes)291 convert_from_32_to_24(uint8* in, uint8* out, int32 inRowBytes)
292 {
293 inRowBytes /= 4;
294
295 for (int32 i = 0; i < inRowBytes; i++) {
296 out[0] = in[2];
297 out[1] = in[1];
298 out[2] = in[0];
299
300 in += 4;
301 out += 3;
302 }
303 }
304
305
306 inline void
convert_from_32b_to_24(uint8 * in,uint8 * out,int32 inRowBytes)307 convert_from_32b_to_24(uint8* in, uint8* out, int32 inRowBytes)
308 {
309 inRowBytes /= 4;
310
311 for (int32 i = 0; i < inRowBytes; i++) {
312 out[0] = in[1];
313 out[1] = in[2];
314 out[2] = in[3];
315
316 in += 4;
317 out += 3;
318 }
319 }
320
321
322 // #pragma mark - conversion for decompression
323
324
325 inline void
convert_from_CMYK_to_32_photoshop(uint8 * in,uint8 * out,int32 inRowBytes,int32 xStep)326 convert_from_CMYK_to_32_photoshop(uint8* in, uint8* out, int32 inRowBytes, int32 xStep)
327 {
328 for (int32 i = 0; i < inRowBytes; i += 4) {
329 int32 black = in[3];
330 out[0] = in[2] * black / 255;
331 out[1] = in[1] * black / 255;
332 out[2] = in[0] * black / 255;
333 out[3] = 255;
334
335 in += 4;
336 out += xStep;
337 }
338 }
339
340
341 //! !!! UNTESTED !!!
342 inline void
convert_from_CMYK_to_32(uint8 * in,uint8 * out,int32 inRowBytes,int32 xStep)343 convert_from_CMYK_to_32(uint8* in, uint8* out, int32 inRowBytes, int32 xStep)
344 {
345 for (int32 i = 0; i < inRowBytes; i += 4) {
346 int32 black = 255 - in[3];
347 out[0] = ((255 - in[2]) * black) / 255;
348 out[1] = ((255 - in[1]) * black) / 255;
349 out[2] = ((255 - in[0]) * black) / 255;
350 out[3] = 255;
351
352 in += 4;
353 out += xStep;
354 }
355 }
356
357
358 //! RGB24 8:8:8 to xRGB 8:8:8:8
359 inline void
convert_from_24_to_32(uint8 * in,uint8 * out,int32 inRowBytes,int32 xStep)360 convert_from_24_to_32(uint8* in, uint8* out, int32 inRowBytes, int32 xStep)
361 {
362 for (int32 i = 0; i < inRowBytes; i += 3) {
363 out[0] = in[2];
364 out[1] = in[1];
365 out[2] = in[0];
366 out[3] = 255;
367
368 in += 3;
369 out += xStep;
370 }
371 }
372
373
374 //! 8-bit to 8-bit, only need when rotating the image
375 void
translate_8(uint8 * in,uint8 * out,int32 inRowBytes,int32 xStep)376 translate_8(uint8* in, uint8* out, int32 inRowBytes, int32 xStep)
377 {
378 for (int32 i = 0; i < inRowBytes; i++) {
379 out[0] = in[0];
380
381 in++;
382 out += xStep;
383 }
384 }
385
386
387 } // namespace conversion
388
389
390 // #pragma mark -
391
392
SSlider(const char * name,const char * label,BMessage * message,int32 minValue,int32 maxValue,orientation posture,thumb_style thumbType,uint32 flags)393 SSlider::SSlider(const char* name, const char* label,
394 BMessage* message, int32 minValue, int32 maxValue, orientation posture,
395 thumb_style thumbType, uint32 flags)
396 : BSlider(name, label, message, minValue, maxValue,
397 posture, thumbType, flags)
398 {
399 rgb_color barColor = { 0, 0, 229, 255 };
400 UseFillColor(true, &barColor);
401 }
402
403
404 //! Update status string - show actual value
405 const char*
UpdateText() const406 SSlider::UpdateText() const
407 {
408 snprintf(fStatusLabel, sizeof(fStatusLabel), "%" B_PRId32, Value());
409 return fStatusLabel;
410 }
411
412
413 // #pragma mark -
414
415
TranslatorReadView(const char * name,TranslatorSettings * settings)416 TranslatorReadView::TranslatorReadView(const char* name,
417 TranslatorSettings* settings)
418 :
419 BView(name, 0, new BGroupLayout(B_HORIZONTAL)),
420 fSettings(settings)
421 // settings should already be Acquired()
422 {
423 fAlwaysRGB32 = new BCheckBox("alwaysrgb32",
424 B_TRANSLATE("Read greyscale images as RGB32"),
425 new BMessage(VIEW_MSG_SET_ALWAYSRGB32));
426 if (fSettings->SetGetBool(JPEG_SET_ALWAYS_RGB32, NULL))
427 fAlwaysRGB32->SetValue(B_CONTROL_ON);
428
429 fPhotoshopCMYK = new BCheckBox("photoshopCMYK",
430 B_TRANSLATE("Use CMYK code with 0 for 100% ink coverage"),
431 new BMessage(VIEW_MSG_SET_PHOTOSHOPCMYK));
432 if (fSettings->SetGetBool(JPEG_SET_PHOTOSHOP_CMYK, NULL))
433 fPhotoshopCMYK->SetValue(B_CONTROL_ON);
434
435 fShowErrorBox = new BCheckBox("error",
436 B_TRANSLATE("Show warning messages"),
437 new BMessage(VIEW_MSG_SET_SHOWREADERRORBOX));
438 if (fSettings->SetGetBool(JPEG_SET_SHOWREADWARNING, NULL))
439 fShowErrorBox->SetValue(B_CONTROL_ON);
440
441 BLayoutBuilder::Group<>(this, B_VERTICAL)
442 .SetInsets(B_USE_DEFAULT_SPACING)
443 .Add(fAlwaysRGB32)
444 .Add(fPhotoshopCMYK)
445 .Add(fShowErrorBox)
446 .AddGlue();
447 }
448
449
~TranslatorReadView()450 TranslatorReadView::~TranslatorReadView()
451 {
452 fSettings->Release();
453 }
454
455
456 void
AttachedToWindow()457 TranslatorReadView::AttachedToWindow()
458 {
459 BView::AttachedToWindow();
460
461 fAlwaysRGB32->SetTarget(this);
462 fPhotoshopCMYK->SetTarget(this);
463 fShowErrorBox->SetTarget(this);
464 }
465
466
467 void
MessageReceived(BMessage * message)468 TranslatorReadView::MessageReceived(BMessage* message)
469 {
470 switch (message->what) {
471 case VIEW_MSG_SET_ALWAYSRGB32:
472 {
473 int32 value;
474 if (message->FindInt32("be:value", &value) == B_OK) {
475 bool boolValue = value;
476 fSettings->SetGetBool(JPEG_SET_ALWAYS_RGB32, &boolValue);
477 fSettings->SaveSettings();
478 }
479 break;
480 }
481 case VIEW_MSG_SET_PHOTOSHOPCMYK:
482 {
483 int32 value;
484 if (message->FindInt32("be:value", &value) == B_OK) {
485 bool boolValue = value;
486 fSettings->SetGetBool(JPEG_SET_PHOTOSHOP_CMYK, &boolValue);
487 fSettings->SaveSettings();
488 }
489 break;
490 }
491 case VIEW_MSG_SET_SHOWREADERRORBOX:
492 {
493 int32 value;
494 if (message->FindInt32("be:value", &value) == B_OK) {
495 bool boolValue = value;
496 fSettings->SetGetBool(JPEG_SET_SHOWREADWARNING, &boolValue);
497 fSettings->SaveSettings();
498 }
499 break;
500 }
501 default:
502 BView::MessageReceived(message);
503 break;
504 }
505 }
506
507
508 // #pragma mark - TranslatorWriteView
509
510
TranslatorWriteView(const char * name,TranslatorSettings * settings)511 TranslatorWriteView::TranslatorWriteView(const char* name,
512 TranslatorSettings* settings)
513 :
514 BView(name, 0, new BGroupLayout(B_VERTICAL)),
515 fSettings(settings)
516 // settings should already be Acquired()
517 {
518 fQualitySlider = new SSlider("quality", B_TRANSLATE("Output quality"),
519 new BMessage(VIEW_MSG_SET_QUALITY), 0, 100);
520 fQualitySlider->SetHashMarks(B_HASH_MARKS_BOTTOM);
521 fQualitySlider->SetHashMarkCount(10);
522 fQualitySlider->SetLimitLabels(B_TRANSLATE("Low"), B_TRANSLATE("High"));
523 fQualitySlider->SetValue(fSettings->SetGetInt32(JPEG_SET_QUALITY, NULL));
524
525 fSmoothingSlider = new SSlider("smoothing",
526 B_TRANSLATE("Output smoothing strength"),
527 new BMessage(VIEW_MSG_SET_SMOOTHING), 0, 100);
528 fSmoothingSlider->SetHashMarks(B_HASH_MARKS_BOTTOM);
529 fSmoothingSlider->SetHashMarkCount(10);
530 fSmoothingSlider->SetLimitLabels(B_TRANSLATE("None"), B_TRANSLATE("High"));
531 fSmoothingSlider->SetValue(
532 fSettings->SetGetInt32(JPEG_SET_SMOOTHING, NULL));
533
534 fProgress = new BCheckBox("progress",
535 B_TRANSLATE("Use progressive compression"),
536 new BMessage(VIEW_MSG_SET_PROGRESSIVE));
537 if (fSettings->SetGetBool(JPEG_SET_PROGRESSIVE, NULL))
538 fProgress->SetValue(B_CONTROL_ON);
539
540 fSmallerFile = new BCheckBox("smallerfile",
541 B_TRANSLATE("Make file smaller (sligthtly worse quality)"),
542 new BMessage(VIEW_MSG_SET_SMALLERFILE));
543 if (fSettings->SetGetBool(JPEG_SET_SMALL_FILES))
544 fSmallerFile->SetValue(B_CONTROL_ON);
545
546 fOptimizeColors = new BCheckBox("optimizecolors",
547 B_TRANSLATE("Prevent colors 'washing out'"),
548 new BMessage(VIEW_MSG_SET_OPTIMIZECOLORS));
549 if (fSettings->SetGetBool(JPEG_SET_OPT_COLORS, NULL))
550 fOptimizeColors->SetValue(B_CONTROL_ON);
551 else
552 fSmallerFile->SetEnabled(false);
553
554 fGrayAsRGB24 = new BCheckBox("gray1asrgb24",
555 B_TRANSLATE("Write black-and-white images as RGB24"),
556 new BMessage(VIEW_MSG_SET_GRAY1ASRGB24));
557 if (fSettings->SetGetBool(JPEG_SET_GRAY1_AS_RGB24))
558 fGrayAsRGB24->SetValue(B_CONTROL_ON);
559
560 BLayoutBuilder::Group<>(this, B_VERTICAL)
561 .SetInsets(B_USE_DEFAULT_SPACING)
562 .Add(fQualitySlider)
563 .Add(fSmoothingSlider)
564 .Add(fProgress)
565 .Add(fOptimizeColors)
566 .Add(fSmallerFile)
567 .Add(fGrayAsRGB24)
568 .AddGlue();
569 }
570
571
~TranslatorWriteView()572 TranslatorWriteView::~TranslatorWriteView()
573 {
574 fSettings->Release();
575 }
576
577
578 void
AttachedToWindow()579 TranslatorWriteView::AttachedToWindow()
580 {
581 BView::AttachedToWindow();
582
583 fQualitySlider->SetTarget(this);
584 fSmoothingSlider->SetTarget(this);
585 fProgress->SetTarget(this);
586 fOptimizeColors->SetTarget(this);
587 fSmallerFile->SetTarget(this);
588 fGrayAsRGB24->SetTarget(this);
589 }
590
591
592 void
MessageReceived(BMessage * message)593 TranslatorWriteView::MessageReceived(BMessage* message)
594 {
595 switch (message->what) {
596 case VIEW_MSG_SET_QUALITY:
597 {
598 int32 value;
599 if (message->FindInt32("be:value", &value) == B_OK) {
600 fSettings->SetGetInt32(JPEG_SET_QUALITY, &value);
601 fSettings->SaveSettings();
602 }
603 break;
604 }
605 case VIEW_MSG_SET_SMOOTHING:
606 {
607 int32 value;
608 if (message->FindInt32("be:value", &value) == B_OK) {
609 fSettings->SetGetInt32(JPEG_SET_SMOOTHING, &value);
610 fSettings->SaveSettings();
611 }
612 break;
613 }
614 case VIEW_MSG_SET_PROGRESSIVE:
615 {
616 int32 value;
617 if (message->FindInt32("be:value", &value) == B_OK) {
618 bool boolValue = value;
619 fSettings->SetGetBool(JPEG_SET_PROGRESSIVE, &boolValue);
620 fSettings->SaveSettings();
621 }
622 break;
623 }
624 case VIEW_MSG_SET_OPTIMIZECOLORS:
625 {
626 int32 value;
627 if (message->FindInt32("be:value", &value) == B_OK) {
628 bool boolValue = value;
629 fSettings->SetGetBool(JPEG_SET_OPT_COLORS, &boolValue);
630 fSmallerFile->SetEnabled(value);
631 fSettings->SaveSettings();
632 }
633 break;
634 }
635 case VIEW_MSG_SET_SMALLERFILE:
636 {
637 int32 value;
638 if (message->FindInt32("be:value", &value) == B_OK) {
639 bool boolValue = value;
640 fSettings->SetGetBool(JPEG_SET_SMALL_FILES, &boolValue);
641 fSettings->SaveSettings();
642 }
643 break;
644 }
645 case VIEW_MSG_SET_GRAY1ASRGB24:
646 {
647 int32 value;
648 if (message->FindInt32("be:value", &value) == B_OK) {
649 bool boolValue = value;
650 fSettings->SetGetBool(JPEG_SET_GRAY1_AS_RGB24, &boolValue);
651 fSettings->SaveSettings();
652 }
653 break;
654 }
655 default:
656 BView::MessageReceived(message);
657 break;
658 }
659 }
660
661
662 // #pragma mark -
663
664
TranslatorAboutView(const char * name)665 TranslatorAboutView::TranslatorAboutView(const char* name)
666 :
667 BView(name, 0, new BGroupLayout(B_VERTICAL))
668 {
669 BAlignment labelAlignment = BAlignment(B_ALIGN_LEFT, B_ALIGN_TOP);
670 BStringView* title = new BStringView("Title", sTranslatorName);
671 title->SetFont(be_bold_font);
672 title->SetExplicitAlignment(labelAlignment);
673
674 char versionString[100];
675 snprintf(versionString, sizeof(versionString),
676 B_TRANSLATE("Version %d.%d.%d"),
677 (int)(sTranslatorVersion >> 8),
678 (int)((sTranslatorVersion >> 4) & 0xf),
679 (int)(sTranslatorVersion & 0xf));
680
681 BStringView* version = new BStringView("Version", versionString);
682 version->SetExplicitAlignment(labelAlignment);
683
684 BTextView* infoView = new BTextView("info");
685 infoView->SetText(sTranslatorInfo);
686 infoView->SetViewUIColor(B_PANEL_BACKGROUND_COLOR);
687 rgb_color textColor = ui_color(B_PANEL_TEXT_COLOR);
688 infoView->SetFontAndColor(be_plain_font, B_FONT_ALL, &textColor);
689 infoView->MakeEditable(false);
690
691 BLayoutBuilder::Group<>(this, B_VERTICAL, 0)
692 .SetInsets(B_USE_DEFAULT_SPACING)
693 .Add(title)
694 .Add(version)
695 .Add(infoView);
696 }
697
698
TranslatorView(const char * name,TranslatorSettings * settings)699 TranslatorView::TranslatorView(const char* name, TranslatorSettings* settings)
700 :
701 BTabView(name, B_WIDTH_FROM_LABEL)
702 {
703 SetBorder(B_NO_BORDER);
704
705 AddTab(new TranslatorWriteView(B_TRANSLATE("Write"), settings->Acquire()));
706 AddTab(new TranslatorReadView(B_TRANSLATE("Read"), settings->Acquire()));
707 AddTab(new TranslatorAboutView(B_TRANSLATE("About")));
708
709 settings->Release();
710 }
711
712
713 // #pragma mark - Translator Add-On
714
715
716 BView*
NewConfigView(TranslatorSettings * settings)717 JPEGTranslator::NewConfigView(TranslatorSettings* settings)
718 {
719 BView* configView = new TranslatorView("TranslatorView", settings);
720 return configView;
721 }
722
723
724 /*! Determine whether or not we can handle this data */
725 status_t
DerivedIdentify(BPositionIO * inSource,const translation_format * inFormat,BMessage * ioExtension,translator_info * outInfo,uint32 outType)726 JPEGTranslator::DerivedIdentify(BPositionIO* inSource,
727 const translation_format* inFormat, BMessage* ioExtension,
728 translator_info* outInfo, uint32 outType)
729 {
730 if (outType != 0 && outType != B_TRANSLATOR_BITMAP && outType != JPEG_FORMAT)
731 return B_NO_TRANSLATOR;
732
733 // !!! You might need to make this buffer bigger to test for your native format
734 off_t position = inSource->Position();
735 char header[sizeof(TranslatorBitmap)];
736 status_t err = inSource->Read(header, sizeof(TranslatorBitmap));
737 inSource->Seek(position, SEEK_SET);
738 if (err < B_OK)
739 return err;
740
741 if (B_BENDIAN_TO_HOST_INT32(((TranslatorBitmap *)header)->magic) == B_TRANSLATOR_BITMAP) {
742 if (PopulateInfoFromFormat(outInfo, B_TRANSLATOR_BITMAP) != B_OK)
743 return B_NO_TRANSLATOR;
744 } else {
745 // First 3 bytes in jpg files are always the same from what i've seen so far
746 // check them
747 if (header[0] == (char)0xff && header[1] == (char)0xd8 && header[2] == (char)0xff) {
748 if (PopulateInfoFromFormat(outInfo, JPEG_FORMAT) != B_OK)
749 return B_NO_TRANSLATOR;
750
751 } else
752 return B_NO_TRANSLATOR;
753 }
754
755 return B_OK;
756 }
757
758
759 status_t
DerivedTranslate(BPositionIO * inSource,const translator_info * inInfo,BMessage * ioExtension,uint32 outType,BPositionIO * outDestination,int32 baseType)760 JPEGTranslator::DerivedTranslate(BPositionIO* inSource,
761 const translator_info* inInfo, BMessage* ioExtension, uint32 outType,
762 BPositionIO* outDestination, int32 baseType)
763 {
764 // Setup a "breakpoint" since throwing exceptions does not seem to work
765 // at all in an add-on. (?)
766 // In the be_jerror.cpp we implement a handler for critical library errors
767 // (be_error_exit()) and there we use the longjmp() function to return to
768 // this place. If this happens, it is as if the setjmp() call is called
769 // a second time, but this time the return value will be 1. The first
770 // invokation will return 0.
771 jmp_buf longJumpBuffer;
772 int jmpRet = setjmp(longJumpBuffer);
773 if (jmpRet == 1)
774 return B_ERROR;
775
776 try {
777 // What action to take, based on the findings of Identify()
778 if (outType == inInfo->type) {
779 return Copy(inSource, outDestination);
780 } else if (inInfo->type == B_TRANSLATOR_BITMAP
781 && outType == JPEG_FORMAT) {
782 return Compress(inSource, outDestination, &longJumpBuffer);
783 } else if (inInfo->type == JPEG_FORMAT
784 && (outType == B_TRANSLATOR_BITMAP || outType == 0)) {
785 // This is the default if no specific outType was requested.
786 return Decompress(inSource, outDestination, ioExtension,
787 &longJumpBuffer);
788 }
789 } catch (...) {
790 syslog(LOG_ERR, "libjpeg encountered a critical error (caught C++ "
791 "exception).\n");
792 return B_ERROR;
793 }
794
795 return B_NO_TRANSLATOR;
796 }
797
798
799 /*! The user has requested the same format for input and output, so just copy */
800 status_t
Copy(BPositionIO * in,BPositionIO * out)801 JPEGTranslator::Copy(BPositionIO* in, BPositionIO* out)
802 {
803 int block_size = 65536;
804 void* buffer = malloc(block_size);
805 char temp[1024];
806 if (buffer == NULL) {
807 buffer = temp;
808 block_size = 1024;
809 }
810 status_t err = B_OK;
811
812 // Read until end of file or error
813 while (1) {
814 ssize_t to_read = block_size;
815 err = in->Read(buffer, to_read);
816 // Explicit check for EOF
817 if (err == -1) {
818 if (buffer != temp) free(buffer);
819 return B_OK;
820 }
821 if (err <= B_OK) break;
822 to_read = err;
823 err = out->Write(buffer, to_read);
824 if (err != to_read) if (err >= 0) err = B_DEVICE_FULL;
825 if (err < B_OK) break;
826 }
827
828 if (buffer != temp) free(buffer);
829 return (err >= 0) ? B_OK : err;
830 }
831
832
833 /*! Encode into the native format */
834 status_t
Compress(BPositionIO * in,BPositionIO * out,const jmp_buf * longJumpBuffer)835 JPEGTranslator::Compress(BPositionIO* in, BPositionIO* out,
836 const jmp_buf* longJumpBuffer)
837 {
838 using namespace conversion;
839
840 // Read info about bitmap
841 TranslatorBitmap header;
842 status_t err = in->Read(&header, sizeof(TranslatorBitmap));
843 if (err < B_OK)
844 return err;
845 else if (err < (int)sizeof(TranslatorBitmap))
846 return B_ERROR;
847
848 // Grab dimension, color space, and size information from the stream
849 BRect bounds;
850 bounds.left = B_BENDIAN_TO_HOST_FLOAT(header.bounds.left);
851 bounds.top = B_BENDIAN_TO_HOST_FLOAT(header.bounds.top);
852 bounds.right = B_BENDIAN_TO_HOST_FLOAT(header.bounds.right);
853 bounds.bottom = B_BENDIAN_TO_HOST_FLOAT(header.bounds.bottom);
854
855 int32 in_row_bytes = B_BENDIAN_TO_HOST_INT32(header.rowBytes);
856
857 int width = bounds.IntegerWidth() + 1;
858 int height = bounds.IntegerHeight() + 1;
859
860 // Function pointer to convert function
861 // It will point to proper function if needed
862 void (*converter)(uchar* inscanline, uchar* outscanline,
863 int32 inRowBytes) = NULL;
864
865 // Default color info
866 J_COLOR_SPACE jpg_color_space = JCS_RGB;
867 int jpg_input_components = 3;
868 int32 out_row_bytes;
869 int padding = 0;
870
871 switch ((color_space)B_BENDIAN_TO_HOST_INT32(header.colors)) {
872 case B_CMAP8:
873 converter = convert_from_cmap8_to_24;
874 padding = in_row_bytes - width;
875 break;
876
877 case B_GRAY1:
878 if (fSettings->SetGetBool(JPEG_SET_GRAY1_AS_RGB24, NULL)) {
879 converter = convert_from_gray1_to_24;
880 } else {
881 jpg_input_components = 1;
882 jpg_color_space = JCS_GRAYSCALE;
883 converter = convert_from_gray1_to_gray8;
884 }
885 padding = in_row_bytes - (width / 8);
886 break;
887
888 case B_GRAY8:
889 jpg_input_components = 1;
890 jpg_color_space = JCS_GRAYSCALE;
891 padding = in_row_bytes - width;
892 break;
893
894 case B_RGB15:
895 case B_RGBA15:
896 converter = convert_from_15_to_24;
897 padding = in_row_bytes - (width * 2);
898 break;
899
900 case B_RGB15_BIG:
901 case B_RGBA15_BIG:
902 converter = convert_from_15b_to_24;
903 padding = in_row_bytes - (width * 2);
904 break;
905
906 case B_RGB16:
907 converter = convert_from_16_to_24;
908 padding = in_row_bytes - (width * 2);
909 break;
910
911 case B_RGB16_BIG:
912 converter = convert_from_16b_to_24;
913 padding = in_row_bytes - (width * 2);
914 break;
915
916 case B_RGB24:
917 converter = convert_from_24_to_24;
918 padding = in_row_bytes - (width * 3);
919 break;
920
921 case B_RGB24_BIG:
922 padding = in_row_bytes - (width * 3);
923 break;
924
925 case B_RGB32:
926 case B_RGBA32:
927 converter = convert_from_32_to_24;
928 padding = in_row_bytes - (width * 4);
929 break;
930
931 case B_RGB32_BIG:
932 case B_RGBA32_BIG:
933 converter = convert_from_32b_to_24;
934 padding = in_row_bytes - (width * 4);
935 break;
936
937 case B_CMYK32:
938 jpg_color_space = JCS_CMYK;
939 jpg_input_components = 4;
940 padding = in_row_bytes - (width * 4);
941 break;
942
943 default:
944 syslog(LOG_ERR, "Wrong type: Color space not implemented.\n");
945 return B_ERROR;
946 }
947 out_row_bytes = jpg_input_components * width;
948
949 // Set basic things needed for jpeg writing
950 struct jpeg_compress_struct cinfo;
951 struct be_jpeg_error_mgr jerr;
952 cinfo.err = be_jpeg_std_error(&jerr, fSettings, longJumpBuffer);
953 jpeg_create_compress(&cinfo);
954 be_jpeg_stdio_dest(&cinfo, out);
955
956 // Set basic values
957 cinfo.image_width = width;
958 cinfo.image_height = height;
959 cinfo.input_components = jpg_input_components;
960 cinfo.in_color_space = jpg_color_space;
961 jpeg_set_defaults(&cinfo);
962
963 // Set better accuracy
964 cinfo.dct_method = JDCT_ISLOW;
965
966 // This is needed to prevent some colors loss
967 // With it generated jpegs are as good as from Fireworks (at last! :D)
968 if (fSettings->SetGetBool(JPEG_SET_OPT_COLORS, NULL)) {
969 int index = 0;
970 while (index < cinfo.num_components) {
971 cinfo.comp_info[index].h_samp_factor = 1;
972 cinfo.comp_info[index].v_samp_factor = 1;
973 // This will make file smaller, but with worse quality more or less
974 // like with 93%-94% (but it's subjective opinion) on tested images
975 // but with smaller size (between 92% and 93% on tested images)
976 if (fSettings->SetGetBool(JPEG_SET_SMALL_FILES))
977 cinfo.comp_info[index].quant_tbl_no = 1;
978 // This will make bigger file, but also better quality ;]
979 // from my tests it seems like useless - better quality with smaller
980 // can be acheived without this
981 // cinfo.comp_info[index].dc_tbl_no = 1;
982 // cinfo.comp_info[index].ac_tbl_no = 1;
983 index++;
984 }
985 }
986
987 // Set quality
988 jpeg_set_quality(&cinfo, fSettings->SetGetInt32(JPEG_SET_QUALITY, NULL), true);
989
990 // Set progressive compression if needed
991 // if not, turn on optimizing in libjpeg
992 if (fSettings->SetGetBool(JPEG_SET_PROGRESSIVE, NULL))
993 jpeg_simple_progression(&cinfo);
994 else
995 cinfo.optimize_coding = TRUE;
996
997 // Set smoothing (effect like Blur)
998 cinfo.smoothing_factor = fSettings->SetGetInt32(JPEG_SET_SMOOTHING, NULL);
999
1000 // Initialize compression
1001 jpeg_start_compress(&cinfo, TRUE);
1002
1003 // Declare scanlines
1004 JSAMPROW in_scanline = NULL;
1005 JSAMPROW out_scanline = NULL;
1006 JSAMPROW writeline;
1007 // Pointer to in_scanline (default) or out_scanline (if there will be conversion)
1008
1009 // Allocate scanline
1010 // Use libjpeg memory allocation functions, so in case of error it will free them itself
1011 in_scanline = (unsigned char *)(cinfo.mem->alloc_large)((j_common_ptr)&cinfo,
1012 JPOOL_PERMANENT, in_row_bytes);
1013
1014 // We need 2nd scanline storage ony for conversion
1015 if (converter != NULL) {
1016 // There will be conversion, allocate second scanline...
1017 // Use libjpeg memory allocation functions, so in case of error it will free them itself
1018 out_scanline = (unsigned char *)(cinfo.mem->alloc_large)((j_common_ptr)&cinfo,
1019 JPOOL_PERMANENT, out_row_bytes);
1020 // ... and make it the one to write to file
1021 writeline = out_scanline;
1022 } else
1023 writeline = in_scanline;
1024
1025 while (cinfo.next_scanline < cinfo.image_height) {
1026 // Read scanline
1027 err = in->Read(in_scanline, in_row_bytes);
1028 if (err < in_row_bytes)
1029 return err < B_OK ? Error((j_common_ptr)&cinfo, err)
1030 : Error((j_common_ptr)&cinfo, B_ERROR);
1031
1032 // Convert if needed
1033 if (converter != NULL)
1034 converter(in_scanline, out_scanline, in_row_bytes - padding);
1035
1036 // Write scanline
1037 jpeg_write_scanlines(&cinfo, &writeline, 1);
1038 }
1039
1040 jpeg_finish_compress(&cinfo);
1041 jpeg_destroy_compress(&cinfo);
1042 return B_OK;
1043 }
1044
1045
1046 /*! Decode the native format */
1047 status_t
Decompress(BPositionIO * in,BPositionIO * out,BMessage * ioExtension,const jmp_buf * longJumpBuffer)1048 JPEGTranslator::Decompress(BPositionIO* in, BPositionIO* out,
1049 BMessage* ioExtension, const jmp_buf* longJumpBuffer)
1050 {
1051 using namespace conversion;
1052
1053 // Set basic things needed for jpeg reading
1054 struct jpeg_decompress_struct cinfo;
1055 struct be_jpeg_error_mgr jerr;
1056 cinfo.err = be_jpeg_std_error(&jerr, fSettings, longJumpBuffer);
1057 jpeg_create_decompress(&cinfo);
1058 be_jpeg_stdio_src(&cinfo, in);
1059
1060 jpeg_save_markers(&cinfo, MARKER_EXIF, 131072);
1061 // make sure the EXIF tag is stored
1062
1063 // Read info about image
1064 jpeg_read_header(&cinfo, TRUE);
1065
1066 BMessage exif;
1067
1068 // parse EXIF data and add it ioExtension, if any
1069 jpeg_marker_struct* marker = cinfo.marker_list;
1070 while (marker != NULL) {
1071 if (marker->marker == MARKER_EXIF
1072 && !strncmp((char*)marker->data, "Exif", 4)) {
1073 if (ioExtension != NULL) {
1074 // Strip EXIF header from TIFF data
1075 ioExtension->AddData("exif", B_RAW_TYPE,
1076 (uint8*)marker->data + 6, marker->data_length - 6);
1077 }
1078
1079 BMemoryIO io(marker->data + 6, marker->data_length - 6);
1080 convert_exif_to_message(io, exif);
1081 }
1082 marker = marker->next;
1083 }
1084
1085 // Default color info
1086 color_space outColorSpace = B_RGB32;
1087 int outColorComponents = 4;
1088
1089 // Function pointer to convert function
1090 // It will point to proper function if needed
1091 void (*converter)(uchar* inScanLine, uchar* outScanLine,
1092 int32 inRowBytes, int32 xStep) = convert_from_24_to_32;
1093
1094 // If color space isn't rgb
1095 if (cinfo.out_color_space != JCS_RGB) {
1096 switch (cinfo.out_color_space) {
1097 case JCS_UNKNOWN: /* error/unspecified */
1098 syslog(LOG_ERR, "From Type: Jpeg uses unknown color type\n");
1099 break;
1100 case JCS_GRAYSCALE: /* monochrome */
1101 // Check if user wants to read only as RGB32 or not
1102 if (!fSettings->SetGetBool(JPEG_SET_ALWAYS_RGB32, NULL)) {
1103 // Grayscale
1104 outColorSpace = B_GRAY8;
1105 outColorComponents = 1;
1106 converter = translate_8;
1107 } else {
1108 // RGB
1109 cinfo.out_color_space = JCS_RGB;
1110 cinfo.output_components = 3;
1111 converter = convert_from_24_to_32;
1112 }
1113 break;
1114 case JCS_YCbCr: /* Y/Cb/Cr (also known as YUV) */
1115 cinfo.out_color_space = JCS_RGB;
1116 converter = convert_from_24_to_32;
1117 break;
1118 case JCS_YCCK: /* Y/Cb/Cr/K */
1119 // Let libjpeg convert it to CMYK
1120 cinfo.out_color_space = JCS_CMYK;
1121 // Fall through to CMYK since we need the same settings
1122 case JCS_CMYK: /* C/M/Y/K */
1123 // Use proper converter
1124 if (fSettings->SetGetBool(JPEG_SET_PHOTOSHOP_CMYK))
1125 converter = convert_from_CMYK_to_32_photoshop;
1126 else
1127 converter = convert_from_CMYK_to_32;
1128 break;
1129 default:
1130 syslog(LOG_ERR,
1131 "From Type: Jpeg uses hmm... i don't know really :(\n");
1132 break;
1133 }
1134 }
1135
1136 // Initialize decompression
1137 jpeg_start_decompress(&cinfo);
1138
1139 // retrieve orientation from settings/EXIF
1140 int32 orientation;
1141 if (ioExtension == NULL
1142 || ioExtension->FindInt32("exif:orientation", &orientation) != B_OK) {
1143 if (exif.FindInt32("Orientation", &orientation) != B_OK)
1144 orientation = 1;
1145 }
1146
1147 if (orientation != 1 && converter == NULL)
1148 converter = translate_8;
1149
1150 int32 outputWidth = orientation > 4 ? cinfo.output_height : cinfo.output_width;
1151 int32 outputHeight = orientation > 4 ? cinfo.output_width : cinfo.output_height;
1152
1153 int32 destOffset = dest_index(outputWidth, outputHeight,
1154 0, 0, orientation) * outColorComponents;
1155 int32 xStep = dest_index(outputWidth, outputHeight,
1156 1, 0, orientation) * outColorComponents - destOffset;
1157 int32 yStep = dest_index(outputWidth, outputHeight,
1158 0, 1, orientation) * outColorComponents - destOffset;
1159 bool needAll = orientation != 1;
1160
1161 // Initialize this bounds rect to the size of your image
1162 BRect bounds(0, 0, outputWidth - 1, outputHeight - 1);
1163
1164 #if 0
1165 printf("destOffset = %ld, xStep = %ld, yStep = %ld, input: %ld x %ld, output: %ld x %ld, orientation %ld\n",
1166 destOffset, xStep, yStep, (int32)cinfo.output_width, (int32)cinfo.output_height,
1167 bounds.IntegerWidth() + 1, bounds.IntegerHeight() + 1, orientation);
1168 #endif
1169
1170 // Bytes count in one line of image (scanline)
1171 int32 inRowBytes = cinfo.output_width * cinfo.output_components;
1172 int32 rowBytes = (bounds.IntegerWidth() + 1) * outColorComponents;
1173 int32 dataSize = cinfo.output_width * cinfo.output_height
1174 * outColorComponents;
1175
1176 // Fill out the B_TRANSLATOR_BITMAP's header
1177 TranslatorBitmap header;
1178 header.magic = B_HOST_TO_BENDIAN_INT32(B_TRANSLATOR_BITMAP);
1179 header.bounds.left = B_HOST_TO_BENDIAN_FLOAT(bounds.left);
1180 header.bounds.top = B_HOST_TO_BENDIAN_FLOAT(bounds.top);
1181 header.bounds.right = B_HOST_TO_BENDIAN_FLOAT(bounds.right);
1182 header.bounds.bottom = B_HOST_TO_BENDIAN_FLOAT(bounds.bottom);
1183 header.colors = (color_space)B_HOST_TO_BENDIAN_INT32(outColorSpace);
1184 header.rowBytes = B_HOST_TO_BENDIAN_INT32(rowBytes);
1185 header.dataSize = B_HOST_TO_BENDIAN_INT32(dataSize);
1186
1187 // Write out the header
1188 status_t err = out->Write(&header, sizeof(TranslatorBitmap));
1189 if (err < B_OK)
1190 return Error((j_common_ptr)&cinfo, err);
1191 else if (err < (int)sizeof(TranslatorBitmap))
1192 return Error((j_common_ptr)&cinfo, B_ERROR);
1193
1194 // Declare scanlines
1195 JSAMPROW inScanLine = NULL;
1196 uint8* dest = NULL;
1197 uint8* destLine = NULL;
1198
1199 // Allocate scanline
1200 // Use libjpeg memory allocation functions, so in case of error it will free them itself
1201 inScanLine = (unsigned char *)(cinfo.mem->alloc_large)((j_common_ptr)&cinfo,
1202 JPOOL_PERMANENT, inRowBytes);
1203
1204 // We need 2nd scanline storage only for conversion
1205 if (converter != NULL) {
1206 // There will be conversion, allocate second scanline...
1207 // Use libjpeg memory allocation functions, so in case of error it will
1208 // free them itself
1209 dest = (uint8*)(cinfo.mem->alloc_large)((j_common_ptr)&cinfo,
1210 JPOOL_PERMANENT, needAll ? dataSize : rowBytes);
1211 destLine = dest + destOffset;
1212 } else
1213 destLine = inScanLine;
1214
1215 while (cinfo.output_scanline < cinfo.output_height) {
1216 // Read scanline
1217 jpeg_read_scanlines(&cinfo, &inScanLine, 1);
1218
1219 // Convert if needed
1220 if (converter != NULL)
1221 converter(inScanLine, destLine, inRowBytes, xStep);
1222
1223 if (!needAll) {
1224 // Write the scanline buffer to the output stream
1225 ssize_t bytesWritten = out->Write(destLine, rowBytes);
1226 if (bytesWritten < rowBytes) {
1227 return bytesWritten < B_OK
1228 ? Error((j_common_ptr)&cinfo, bytesWritten)
1229 : Error((j_common_ptr)&cinfo, B_ERROR);
1230 }
1231 } else
1232 destLine += yStep;
1233 }
1234
1235 if (needAll) {
1236 ssize_t bytesWritten = out->Write(dest, dataSize);
1237 if (bytesWritten < dataSize) {
1238 return bytesWritten < B_OK
1239 ? Error((j_common_ptr)&cinfo, bytesWritten)
1240 : Error((j_common_ptr)&cinfo, B_ERROR);
1241 }
1242 }
1243
1244 jpeg_finish_decompress(&cinfo);
1245 jpeg_destroy_decompress(&cinfo);
1246 return B_OK;
1247 }
1248
1249 /*! have the other PopulateInfoFromFormat() check both inputFormats & outputFormats */
1250 status_t
PopulateInfoFromFormat(translator_info * info,uint32 formatType,translator_id id)1251 JPEGTranslator::PopulateInfoFromFormat(translator_info* info,
1252 uint32 formatType, translator_id id)
1253 {
1254 int32 formatCount;
1255 const translation_format* formats = OutputFormats(&formatCount);
1256 for (int i = 0; i <= 1 ;formats = InputFormats(&formatCount), i++) {
1257 if (PopulateInfoFromFormat(info, formatType,
1258 formats, formatCount) == B_OK) {
1259 info->translator = id;
1260 return B_OK;
1261 }
1262 }
1263
1264 return B_ERROR;
1265 }
1266
1267
1268 status_t
PopulateInfoFromFormat(translator_info * info,uint32 formatType,const translation_format * formats,int32 formatCount)1269 JPEGTranslator::PopulateInfoFromFormat(translator_info* info,
1270 uint32 formatType, const translation_format* formats, int32 formatCount)
1271 {
1272 for (int i = 0; i < formatCount; i++) {
1273 if (formats[i].type == formatType) {
1274 info->type = formatType;
1275 info->group = formats[i].group;
1276 info->quality = formats[i].quality;
1277 info->capability = formats[i].capability;
1278 BString str1(formats[i].name);
1279 str1.ReplaceFirst("Be Bitmap Format (JPEGTranslator)",
1280 B_TRANSLATE("Be Bitmap Format (JPEGTranslator)"));
1281 strlcpy(info->name, str1.String(), sizeof(info->name));
1282 strcpy(info->MIME, formats[i].MIME);
1283 return B_OK;
1284 }
1285 }
1286
1287 return B_ERROR;
1288 }
1289
1290 /*!
1291 Frees jpeg alocated memory
1292 Returns given error (B_ERROR by default)
1293 */
1294 status_t
Error(j_common_ptr cinfo,status_t error)1295 JPEGTranslator::Error(j_common_ptr cinfo, status_t error)
1296 {
1297 jpeg_destroy(cinfo);
1298 return error;
1299 }
1300
1301
JPEGTranslator()1302 JPEGTranslator::JPEGTranslator()
1303 : BaseTranslator(sTranslatorName, sTranslatorInfo, sTranslatorVersion,
1304 sInputFormats, kNumInputFormats,
1305 sOutputFormats, kNumOutputFormats,
1306 SETTINGS_FILE,
1307 sDefaultSettings, kNumDefaultSettings,
1308 B_TRANSLATOR_BITMAP, JPEG_FORMAT)
1309 {}
1310
1311
1312 BTranslator*
make_nth_translator(int32 n,image_id you,uint32 flags,...)1313 make_nth_translator(int32 n, image_id you, uint32 flags, ...)
1314 {
1315 if (n == 0)
1316 return new JPEGTranslator();
1317
1318 return NULL;
1319 }
1320
1321
1322 int
main(int,char **)1323 main(int, char**)
1324 {
1325 BApplication app("application/x-vnd.Haiku-JPEGTranslator");
1326 JPEGTranslator* translator = new JPEGTranslator();
1327 if (LaunchTranslatorWindow(translator, sTranslatorName) == B_OK)
1328 app.Run();
1329
1330 return 0;
1331 }
1332
1333