blob: 10379e3eca5379a1ac9c275069f1e17c3ecf5918 [file] [log] [blame]
DRCc641cdd2015-01-14 15:41:11 +000011.5 pre-beta
2============
3
4[1] Added full SIMD acceleration for PowerPC platforms using AltiVec VMX
5(128-bit SIMD) instructions. Although the performance of libjpeg-turbo on
6PowerPC was already good, due to the increased number of registers available
7to the compiler vs. x86, it was still possible to speed up compression by about
83-4x and decompression by about 2-2.5x (relative to libjpeg v6b) through the
9use of AltiVec instructions.
10
DRCeb32cc12015-06-25 03:44:36 +000011[2] Added a new libjpeg API function (jpeg_skip_scanlines()) that can be used
12to partially decode a JPEG image. See libjpeg.txt for more details.
13
DRC1a4778f2015-07-07 16:39:03 +000014[3] The TJCompressor and TJDecompressor classes in the TurboJPEG Java API now
15implement the Closeable interface, so those classes can be used with a
16try-with-resources statement.
17
DRCb3817da2015-07-14 20:42:52 +000018[4] The TurboJPEG Java classes now throw unchecked idiomatic exceptions
19(IllegalArgumentException, IllegalStateException) for unrecoverable errors
DRC739edeb2015-07-21 09:34:02 -050020caused by incorrect API usage, and those classes throw a new checked exception
21type (TJException) for errors that are passed through from the C library.
DRCb3817da2015-07-14 20:42:52 +000022
DRC250c8872015-10-13 13:37:32 -050023[5] Source buffers for the TurboJPEG C API functions, as well as the
DRC6fa14b32015-08-13 20:06:03 -050024jpeg_mem_src() function in the libjpeg API, are now declared as const pointers.
25This facilitates passing read-only buffers to those functions and ensures the
26caller that the source buffer will not be modified. This should not create any
27backward API or ABI incompatibilities with prior libjpeg-turbo releases.
28
DRC250c8872015-10-13 13:37:32 -050029[6] The MIPS DSPr2 SIMD code can now be compiled to support either FR=0 or FR=1
James Cowgillf62dbcc2015-08-15 13:30:14 +010030FPUs.
31
DRCd65e7682015-10-14 22:26:25 -050032[7] Fixed additional negative left shifts and other issues reported by the GCC
33and Clang undefined behavior sanitizers. Most of these issues affected only
3432-bit code, and none of them was known to pose a security threat, but removing
35the warnings makes it easier to detect actual security issues, should they
36arise in the future.
37
DRCd70a5c12015-12-14 16:59:43 -060038[8] Removed the unnecessary .arch directive from the ARM64 NEON SIMD code.
39This directive was preventing the code from assembling using the clang
40integrated assembler.
41
DRC2111c5a2016-01-06 19:24:55 -060042[9] Fixed a regression caused by 1.4.1[6] that prevented 32-bit and 64-bit
DRC5a3b4fe2016-01-06 19:17:54 -060043libjpeg-turbo RPMs from being installed simultaneously on recent Red Hat/Fedora
44distributions. This was due to the addition of a macro in jconfig.h that
45allows the Huffman codec to determine the word size at compile time. Since
46that macro differs between 32-bit and 64-bit builds, this caused a conflict
47between the i386 and x86_64 RPMs (any differing files, other than executables,
48are not allowed when 32-bit and 64-bit RPMs are installed simultaneously.)
49Since the macro is used only internally, it has been moved into jconfigint.h.
50
DRC250c8872015-10-13 13:37:32 -050051
521.4.2
53=====
54
55[1] Fixed an issue whereby cjpeg would segfault if a Windows bitmap with a
56negative width or height was used as an input image (Windows bitmaps can have
57a negative height if they are stored in top-down order, but such files are
58rare and not supported by libjpeg-turbo.)
59
60[2] Fixed an issue whereby, under certain circumstances, libjpeg-turbo would
DRCb5a55e62015-08-29 18:05:43 -050061incorrectly encode certain JPEG images when quality=100 and the fast integer
62forward DCT were used. This was known to cause 'make test' to fail when the
63library was built with '-march=haswell' on x86 systems.
64
DRC250c8872015-10-13 13:37:32 -050065[3] Fixed an issue whereby libjpeg-turbo would crash when built with the latest
Chandler Carruth498d9bc2015-09-15 11:57:03 -070066& greatest development version of the Clang/LLVM compiler. This was caused by
67an x86-64 ABI conformance issue in some of libjpeg-turbo's 64-bit SSE2 SIMD
68routines. Those routines were incorrectly using a 64-bit mov instruction to
69transfer a 32-bit JDIMENSION argument, whereas the x86-64 ABI allows the upper
70(unused) 32 bits of a 32-bit argument's register to be undefined. The new
71Clang/LLVM optimizer uses load combining to transfer multiple adjacent 32-bit
72structure members into a single 64-bit register, and this exposed the ABI
73conformance issue.
74
DRC250c8872015-10-13 13:37:32 -050075[4] Fixed a bug in the MIPS DSPr2 4:2:0 "plain" (non-fancy and non-merged)
James Cowgill54792ba2015-09-16 23:05:46 -050076upsampling routine that caused a buffer overflow (and subsequent segfault) when
77decompressing a 4:2:0 JPEG image whose scaled output width was less than 16
78pixels. The "plain" upsampling routines are normally only used when
79decompressing a non-YCbCr JPEG image, but they are also used when decompressing
80a JPEG image whose scaled output height is 1.
81
DRC250c8872015-10-13 13:37:32 -050082[5] Fixed various negative left shifts and other issues reported by the GCC and
83Clang undefined behavior sanitizers. None of these was known to pose a
DRC8e9cef22015-09-21 12:57:41 -050084security threat, but removing the warnings makes it easier to detect actual
85security issues, should they arise in the future.
86
DRCc641cdd2015-01-14 15:41:11 +000087
DRCcbc99702015-01-16 06:29:52 +0000881.4.1
89=====
90
91[1] tjbench now properly handles CMYK/YCCK JPEG files. Passing an argument of
92-cmyk (instead of, for instance, -rgb) will cause tjbench to internally convert
93the source bitmap to CMYK prior to compression, to generate YCCK JPEG files,
94and to internally convert the decompressed CMYK pixels back to RGB after
95decompression (the latter is done automatically if a CMYK or YCCK JPEG is
96passed to tjbench as a source image.) The CMYK<->RGB conversion operation is
97not benchmarked. NOTE: The quick & dirty CMYK<->RGB conversions that tjbench
98uses are suitable for testing only. Proper conversion between CMYK and RGB
99requires a color management system.
100
DRCdd7f03b2015-01-16 06:45:54 +0000101[2] 'make test' now performs additional bitwise regression tests using tjbench,
102mainly for the purpose of testing compression from/decompression to a subregion
103of a larger image buffer.
104
DRC3af282d2015-01-16 06:53:36 +0000105[3] 'make test' no longer tests the regression of the floating point DCT/IDCT
106by default, since the results of those tests can vary if the algorithms in
107question are not implemented using SIMD instructions on a particular platform.
108See the comments in Makefile.am for information on how to re-enable the tests
109and to specify an expected result for them based on the particulars of your
110platform.
111
DRC0e940252015-01-20 10:33:32 +0000112[4] The NULL color conversion routines have been significantly optimized,
113which speeds up the compression of RGB and CMYK JPEGs by 5-20% when using
11464-bit code and 0-3% when using 32-bit code, and the decompression of those
115images by 10-30% when using 64-bit code and 3-12% when using 32-bit code.
116
DRC8b5a0092015-01-21 17:42:28 +0000117[5] Fixed an "illegal instruction" error that occurred when djpeg from a
118SIMD-enabled libjpeg-turbo MIPS build was executed with the -nosmooth option on
119a MIPS machine that lacked DSPr2 support. The MIPS SIMD routines for h2v1 and
120h2v2 merged upsampling were not properly checking for the existence of DSPr2.
121
DRC3ebcc322015-05-15 19:09:44 +0000122[6] Performance has been improved significantly on 64-bit non-Linux and
123non-Windows platforms (generally 10-20% faster compression and 5-10% faster
124decompression.) Due to an oversight, the 64-bit version of the accelerated
125Huffman codec was not being compiled in when libjpeg-turbo was built on
126platforms other than Windows or Linux. Oops.
DRCf64b36f2015-04-22 08:43:04 +0000127
DRCa8b6ea22015-05-06 22:41:12 +0000128[7] Fixed an extremely rare bug in the Huffman encoder that caused 64-bit
129builds of libjpeg-turbo to incorrectly encode a few specific test images when
130quality=98, an optimized Huffman table, and the slow integer forward DCT were
131used.
132
DRCbec45b12015-05-17 15:56:18 +0000133[8] The Windows (CMake) build system now supports building only static or only
DRC665c96e2015-05-15 22:08:21 +0000134shared libraries. This is accomplished by adding either -DENABLE_STATIC=0 or
135-DENABLE_SHARED=0 to the CMake command line.
136
DRC1f79c7c2015-06-01 19:22:41 +0000137[9] TurboJPEG API functions will now return an error code if a warning is
138triggered in the underlying libjpeg API. For instance, if a JPEG file is
139corrupt, the TurboJPEG decompression functions will attempt to decompress
140as much of the image as possible, but those functions will now return -1 to
141indicate that the decompression was not entirely successful.
142
DRCf15ef332015-06-08 17:41:34 +0000143[10] Fixed a bug in the MIPS DSPr2 4:2:2 fancy upsampling routine that caused a
144buffer overflow (and subsequent segfault) when decompressing a 4:2:2 JPEG image
145in which the right-most MCU was 5 or 6 pixels wide.
146
DRCcbc99702015-01-16 06:29:52 +0000147
DRCeb8d0962014-08-30 13:52:09 +00001481.4.0
DRCe0419b52012-07-03 20:01:31 +0000149=====
150
DRCeb8d0962014-08-30 13:52:09 +0000151[1] Fixed a build issue on OS X PowerPC platforms (md5cmp failed to build
152because OS X does not provide the le32toh() and htole32() functions.)
153
DRC72a3cc02014-08-30 20:37:50 +0000154[2] The non-SIMD RGB565 color conversion code did not work correctly on big
155endian machines. This has been fixed.
156
DRC55620c62014-10-23 19:08:14 +0000157[3] Fixed an issue in tjPlaneSizeYUV() whereby it would erroneously return 1
DRC22409742014-10-23 18:54:42 +0000158instead of -1 if componentID was > 0 and subsamp was TJSAMP_GRAY.
159
DRC8f7f49a2015-01-12 08:36:37 +0000160[3] Fixed an issue in tjBufSizeYUV2() whereby it would erroneously return 0
DRC55620c62014-10-23 19:08:14 +0000161instead of -1 if width was < 1.
162
DRC803b5d22014-11-18 15:56:43 +0000163[5] The Huffman encoder now uses clz and bsr instructions for bit counting on
164ARM64 platforms (see 1.4 beta1 [5].)
165
DRC3ebcf7c2014-11-18 21:45:34 +0000166[6] The close() method in the TJCompressor and TJDecompressor Java classes is
167now idempotent. Previously, that method would call the native tjDestroy()
168function even if the TurboJPEG instance had already been destroyed. This
169caused an exception to be thrown during finalization, if the close() method had
170already been called. The exception was caught, but it was still an expensive
171operation.
172
DRCea1eea42014-11-19 00:55:28 +0000173[7] The TurboJPEG API previously generated an error ("Could not determine
174subsampling type for JPEG image") when attempting to decompress grayscale JPEG
175images that were compressed with a sampling factor other than 1 (for instance,
176with 'cjpeg -grayscale -sample 2x2'). Subsampling technically has no meaning
177with grayscale JPEGs, and thus the horizontal and vertical sampling factors
178for such images are ignored by the decompressor. However, the TurboJPEG API
179was being too rigid and was expecting the sampling factors to be equal to 1
180before it treated the image as a grayscale JPEG.
181
DRC9665f5e2014-11-22 04:04:38 +0000182[8] cjpeg, djpeg, and jpegtran now accept an argument of -version, which will
183print the library version and exit.
184
DRC402a7152014-11-22 22:09:30 +0000185[9] Referring to 1.4 beta1 [15], another extremely rare circumstance was
186discovered under which the Huffman encoder's local buffer can be overrun
187when a buffered destination manager is being used and an
188extremely-high-frequency block (basically junk image data) is being encoded.
189Even though the Huffman local buffer was increased from 128 bytes to 136 bytes
190to address the previous issue, the new issue caused even the larger buffer to
191be overrun. Further analysis reveals that, in the absolute worst case (such as
192setting alternating AC coefficients to 32767 and -32768 in the JPEG scanning
193order), the Huffman encoder can produce encoded blocks that approach double the
194size of the unencoded blocks. Thus, the Huffman local buffer was increased to
195256 bytes, which should prevent any such issue from re-occurring in the future.
196
DRC0f4469c2014-11-22 23:56:26 +0000197[10] The new tjPlaneSizeYUV(), tjPlaneWidth(), and tjPlaneHeight() functions
198were not actually usable on any platform except OS X and Windows, because
199those functions were not included in the libturbojpeg mapfile. This has been
200fixed.
201
DRC2a6b8312014-11-25 10:07:43 +0000202[11] Restored the JPP(), JMETHOD(), and FAR macros in the libjpeg-turbo header
203files. The JPP() and JMETHOD() macros were originally implemented in libjpeg
204as a way of supporting non-ANSI compilers that lacked support for prototype
205parameters. libjpeg-turbo has never supported such compilers, but some
206software packages still use the macros to define their own prototypes.
207Similarly, libjpeg-turbo has never supported MS-DOS and other platforms that
208have far symbols, but some software packages still use the FAR macro. A pretty
DRCe2dd3e32014-11-25 09:48:15 +0000209good argument can be made that this is a bad practice on the part of the
210software in question, but since this affects more than one package, it's just
211easier to fix it here.
212
DRCd51e6c22014-12-19 18:18:46 +0000213[12] Fixed issues that were preventing the ARM 64-bit SIMD code from compiling
214for iOS, and included an ARMv8 architecture in all of the binaries installed by
215the "official" libjpeg-turbo SDK for OS X.
216
DRCeb8d0962014-08-30 13:52:09 +0000217
DRCfe77fa22014-08-30 13:48:45 +00002181.3.90 (1.4 beta1)
219==================
DRCf610d612013-04-26 10:33:29 +0000220
DRCfc26b652014-03-16 22:56:26 +0000221[1] New features in the TurboJPEG API:
222-- YUV planar images can now be generated with an arbitrary line padding
223(previously only 4-byte padding, which was compatible with X Video, was
224supported.)
225-- The decompress-to-YUV function has been extended to support image scaling.
226-- JPEG images can now be compressed from YUV planar source images.
227-- YUV planar images can now be decoded into RGB or grayscale images.
228-- 4:1:1 subsampling is now supported. This is mainly included for
229compatibility, since 4:1:1 is not fully accelerated in libjpeg-turbo and has no
230significant advantages relative to 4:2:0.
231-- CMYK images are now supported. This feature allows CMYK source images to be
232compressed to YCCK JPEGs and YCCK or CMYK JPEGs to be decompressed to CMYK
DRCf6d7b772014-08-20 16:02:49 +0000233destination images. Conversion between CMYK/YCCK and RGB or YUV images is not
234supported. Such conversion requires a color management system and is thus out
235of scope for a codec library.
DRCfc26b652014-03-16 22:56:26 +0000236-- The handling of YUV images in the Java API has been significantly refactored
237and should now be much more intuitive.
238-- The Java API now supports encoding a YUV image from an arbitrary position in
239a large image buffer.
DRCaecea382014-08-11 18:05:41 +0000240-- All of the YUV functions now have a corresponding function that operates on
241separate image planes instead of a unified image buffer. This allows for
DRCf6d7b772014-08-20 16:02:49 +0000242compressing/decoding from or decompressing/encoding to a subregion of a larger
243YUV image. It also allows for handling YUV formats that swap the order of the
244U and V planes.
DRCf610d612013-04-26 10:33:29 +0000245
DRCa6b7fbd2013-09-30 18:13:27 +0000246[2] Added SIMD acceleration for DSPr2-capable MIPS platforms. This speeds up
DRCd64e23e2013-10-08 02:32:07 +0000247the compression of full-color JPEGs by 70-80% on such platforms and
248decompression by 25-35%.
DRC0be9fa52013-07-24 21:50:20 +0000249
DRCfc26b652014-03-16 22:56:26 +0000250[3] If an application attempts to decompress a Huffman-coded JPEG image whose
DRCa1135062014-01-31 17:22:15 +0000251header does not contain Huffman tables, libjpeg-turbo will now insert the
252default Huffman tables. In order to save space, many motion JPEG video frames
253are encoded without the default Huffman tables, so these frames can now be
254successfully decompressed by libjpeg-turbo without additional work on the part
255of the application. An application can still override the Huffman tables, for
256instance to re-use tables from a previous frame of the same video.
257
DRCb1068fa2014-03-23 17:53:07 +0000258[4] The Mac packaging system now uses pkgbuild and productbuild rather than
259PackageMaker (which is obsolete and no longer supported.) This means that
260OS X 10.6 "Snow Leopard" or later must be used when packaging libjpeg-turbo,
261although the packages produced can be installed on OS X 10.5 "Leopard" or
262later. OS X 10.4 "Tiger" is no longer supported.
263
DRC0cfc4c12014-03-28 18:33:25 +0000264[5] The Huffman encoder now uses clz and bsr instructions for bit counting on
265ARM platforms rather than a lookup table. This reduces the memory footprint
266by 64k, which may be important for some mobile applications. Out of four
DRCfdd625e2014-04-15 03:07:44 +0000267Android devices that were tested, two demonstrated a small overall performance
268loss (~3-4% on average) with ARMv6 code and a small gain (also ~3-4%) with
269ARMv7 code when enabling this new feature, but the other two devices
270demonstrated a significant overall performance gain with both ARMv6 and ARMv7
DRCf6d7b772014-08-20 16:02:49 +0000271code (~10-20%) when enabling the feature. Actual mileage may vary.
DRC0cfc4c12014-03-28 18:33:25 +0000272
DRC0816d082014-04-20 06:57:52 +0000273[6] Worked around an issue with Visual C++ 2010 and later that caused incorrect
DRCbeb0b332014-04-20 07:36:33 +0000274pixels to be generated when decompressing a JPEG image to a 256-color bitmap,
275if compiler optimization was enabled when libjpeg-turbo was built. This caused
276the regression tests to fail when doing a release build under Visual C++ 2010
277and later.
278
DRC715bb412014-05-11 10:09:07 +0000279[7] Improved the accuracy and performance of the non-SIMD implementation of the
280floating point inverse DCT (using code borrowed from libjpeg v8a and later.)
281The accuracy of this implementation now matches the accuracy of the SSE/SSE2
282implementation. Note, however, that the floating point DCT/IDCT algorithms are
283mainly a legacy feature. They generally do not produce significantly better
284accuracy than the slow integer DCT/IDCT algorithms, and they are quite a bit
285slower.
286
DRC78df2e62014-05-12 09:23:57 +0000287[8] Added a new output colorspace (JCS_RGB565) to the libjpeg API that allows
DRCd729f4d2014-08-23 15:47:51 +0000288for decompressing JPEG images into RGB565 (16-bit) pixels. If dithering is not
289used, then this code path is SIMD-accelerated on ARM platforms.
DRC78df2e62014-05-12 09:23:57 +0000290
DRCf6d7b772014-08-20 16:02:49 +0000291[9] Numerous obsolete features, such as support for non-ANSI compilers and
292support for the MS-DOS memory model, were removed from the libjpeg code,
293greatly improving its readability and making it easier to maintain and extend.
DRC5033f3e2014-05-18 18:33:44 +0000294
DRCcf55f0b2014-05-28 20:19:54 +0000295[10] Fixed a segfault that occurred when calling output_message() with msg_code
296set to JMSG_COPYRIGHT.
297
DRCb7d6e842014-06-22 20:36:50 +0000298[11] Fixed an issue whereby wrjpgcom was allowing comments longer than 65k
299characters to be passed on the command line, which was causing it to generate
300incorrect JPEG files.
301
DRC73821bf2014-06-22 20:46:48 +0000302[12] Fixed a bug in the build system that was causing the Windows version of
DRCf6d7b772014-08-20 16:02:49 +0000303wrjpgcom to be built using the rdjpgcom source code.
DRCb7d6e842014-06-22 20:36:50 +0000304
DRCaee4f722014-08-09 23:06:07 +0000305[13] Restored 12-bit-per-component JPEG support. A 12-bit version of
306libjpeg-turbo can now be built by passing an argument of --with-12bit to
307configure (Unix) or -DWITH_12BIT=1 to cmake (Windows.) 12-bit JPEG support is
308included only for convenience. Enabling this feature disables all of the
309performance features in libjpeg-turbo, as well as arithmetic coding and the
DRCf6d7b772014-08-20 16:02:49 +0000310TurboJPEG API. The resulting library still contains the other libjpeg-turbo
311features (such as the colorspace extensions), but in general, it performs no
312faster than libjpeg v6b.
DRCaee4f722014-08-09 23:06:07 +0000313
DRCbc3c1682014-08-20 15:40:43 +0000314[14] Added ARM 64-bit SIMD acceleration for the YCC-to-RGB color conversion
315and IDCT algorithms (both are used during JPEG decompression.) For unknown
316reasons (probably related to clang), this code cannot currently be compiled for
317iOS.
318
DRC2261e1e2014-08-21 03:40:37 +0000319[15] Fixed an extremely rare bug that could cause the Huffman encoder's local
DRCeddc3552014-08-21 03:38:14 +0000320buffer to overrun when a very high-frequency MCU is compressed using quality
321100 and no subsampling, and when the JPEG output buffer is being dynamically
322resized by the destination manager. This issue was so rare that, even with a
323test program specifically designed to make the bug occur (by injecting random
324high-frequency YUV data into the compressor), it was reproducible only once in
325about every 25 million iterations.
326
DRCfe80ec22014-08-21 15:51:47 +0000327[16] Fixed an oversight in the TurboJPEG C wrapper: if any of the JPEG
328compression functions was called repeatedly with the same
329automatically-allocated destination buffer, then TurboJPEG would erroneously
330assume that the jpegSize parameter was equal to the size of the buffer, when in
331fact that parameter was probably equal to the size of the most recently
332compressed JPEG image. If the size of the previous JPEG image was not as large
333as the current JPEG image, then TurboJPEG would unnecessarily reallocate the
334destination buffer.
335
DRCf610d612013-04-26 10:33:29 +0000336
DRC96573d02013-08-11 23:23:41 +00003371.3.1
338=====
339
340[1] On Un*x systems, 'make install' now installs the libjpeg-turbo libraries
341into /opt/libjpeg-turbo/lib32 by default on any 32-bit system, not just x86,
342and into /opt/libjpeg-turbo/lib64 by default on any 64-bit system, not just
343x86-64. You can override this by overriding either the 'prefix' or 'libdir'
344configure variables.
345
DRC4d877932013-09-19 22:55:57 +0000346[2] The Windows installer now places a copy of the TurboJPEG DLLs in the same
347directory as the rest of the libjpeg-turbo binaries. This was mainly done
348to support TurboVNC 1.3, which bundles the DLLs in its Windows installation.
349When using a 32-bit version of CMake on 64-bit Windows, it is impossible to
350access the c:\WINDOWS\system32 directory, which made it impossible for the
351TurboVNC build scripts to bundle the 64-bit TurboJPEG DLL.
352
DRCcadabd42013-09-28 03:10:31 +0000353[3] Fixed a bug whereby attempting to encode a progressive JPEG with arithmetic
354entropy coding (by passing arguments of -progressive -arithmetic to cjpeg or
355jpegtran, for instance) would result in an error, "Requested feature was
356omitted at compile time".
DRC1370f102013-09-24 03:21:38 +0000357
DRC7ebf2942013-11-21 18:32:48 +0000358[4] Fixed a couple of issues whereby malformed JPEG images would cause
DRC43d8cf42013-11-21 18:34:39 +0000359libjpeg-turbo to use uninitialized memory during decompression.
360
DRC38c99702014-02-11 09:45:18 +0000361[5] Fixed an error ("Buffer passed to JPEG library is too small") that occurred
362when calling the TurboJPEG YUV encoding function with a very small (< 5x5)
363source image, and added a unit test to check for this error.
364
DRCd45c5492014-03-11 06:21:46 +0000365[6] The Java classes should now build properly under Visual Studio 2010 and
366later.
367
DRCde23dd82014-03-22 20:43:03 +0000368[7] Fixed an issue that prevented SRPMs generated using the in-tree packaging
369tools from being rebuilt on certain newer Linux distributions.
370
371[8] Numerous minor fixes to eliminate compilation and build/packaging system
372warnings, fix cosmetic issues, improve documentation clarity, and other general
373source cleanup.
374
DRC96573d02013-08-11 23:23:41 +0000375
DRC0bf58f22013-02-06 23:51:08 +00003761.3.0
377=====
378
379[1] 'make test' now works properly on FreeBSD, and it no longer requires the
380md5sum executable to be present on other Un*x platforms.
381
DRCd7a642b2013-04-24 06:40:25 +0000382[2] Overhauled the packaging system:
DRC764e1e22013-04-19 04:25:14 +0000383-- To avoid conflict with vendor-supplied libjpeg-turbo packages, the
384official RPMs and DEBs for libjpeg-turbo have been renamed to
DRCd7a642b2013-04-24 06:40:25 +0000385"libjpeg-turbo-official".
386-- The TurboJPEG libraries are now located under /opt/libjpeg-turbo in the
387official Linux and Mac packages, to avoid conflict with vendor-supplied
388packages and also to streamline the packaging system.
389-- Release packages are now created with the directory structure defined
390by the configure variables "prefix", "bindir", "libdir", etc. (Un*x) or by the
391CMAKE_INSTALL_PREFIX variable (Windows.) The exception is that the docs are
392always located under the system default documentation directory on Un*x and Mac
393systems, and on Windows, the TurboJPEG DLL is always located in the Windows
394system directory.
DRC764e1e22013-04-19 04:25:14 +0000395-- To avoid confusion, official libjpeg-turbo packages on Linux/Unix platforms
396(except for Mac) will always install the 32-bit libraries in
397/opt/libjpeg-turbo/lib32 and the 64-bit libraries in /opt/libjpeg-turbo/lib64.
DRCd7a642b2013-04-24 06:40:25 +0000398-- Fixed an issue whereby, in some cases, the libjpeg-turbo executables on Un*x
399systems were not properly linking with the shared libraries installed by the
400same package.
401-- Fixed an issue whereby building the "installer" target on Windows when
402WITH_JAVA=1 would fail if the TurboJPEG JAR had not been previously built.
403-- Building the "install" target on Windows now installs files into the same
404places that the installer does.
DRC764e1e22013-04-19 04:25:14 +0000405
DRC4c17a452013-04-25 08:55:31 +0000406[3] Fixed a Huffman encoder bug that prevented I/O suspension from working
407properly.
408
DRC0bf58f22013-02-06 23:51:08 +0000409
DRC84f71222012-12-31 09:44:31 +00004101.2.90 (1.3 beta1)
411==================
DRC27fb3fc2012-01-28 01:48:07 +0000412
413[1] Added support for additional scaling factors (3/8, 5/8, 3/4, 7/8, 9/8, 5/4,
DRCffe4fc12012-03-16 14:30:46 +000041411/8, 3/2, 13/8, 7/4, 15/8, and 2) when decompressing. Note that the IDCT will
415not be SIMD-accelerated when using any of these new scaling factors.
DRC27fb3fc2012-01-28 01:48:07 +0000416
DRC575317b2012-06-15 22:00:47 +0000417[2] The TurboJPEG dynamic library is now versioned. It was not strictly
DRCfd407772012-03-23 03:24:39 +0000418necessary to do so, because TurboJPEG uses versioned symbols, and if a function
419changes in an ABI-incompatible way, that function is renamed and a legacy
420function is provided to maintain backward compatibility. However, certain
DRC5a84a0e2013-02-14 07:31:35 +0000421Linux distro maintainers have a policy against accepting any library that isn't
422versioned.
DRCfd407772012-03-23 03:24:39 +0000423
DRCfac3bea2012-09-24 02:27:55 +0000424[3] Extended the TurboJPEG Java API so that it can be used to compress a JPEG
425image from and decompress a JPEG image to an arbitrary position in a large
426image buffer.
DRC575317b2012-06-15 22:00:47 +0000427
DRC21868092012-07-03 20:02:49 +0000428[4] The tjDecompressToYUV() function now supports the TJFLAG_FASTDCT flag.
DRCe0419b52012-07-03 20:01:31 +0000429
DRCa394bf72012-08-07 18:44:24 +0000430[5] The 32-bit supplementary package for amd64 Debian systems now provides
DRC0a0f8d12012-08-07 18:42:07 +0000431symlinks in /usr/lib/i386-linux-gnu for the TurboJPEG libraries in /usr/lib32.
432This allows those libraries to be used on MultiArch-compatible systems (such as
433Ubuntu 11 and later) without setting the linker path.
434
DRC61e13412012-08-24 02:44:39 +0000435[6] The TurboJPEG Java wrapper should now find the JNI library on Mac systems
436without having to pass -Djava.library.path=/usr/lib to java.
437
DRCd9d1d672012-10-02 04:20:43 +0000438[7] TJBench has been ported to Java to provide a convenient way of validating
439the performance of the TurboJPEG Java API. It can be run with
440'java -cp turbojpeg.jar TJBench'.
441
DRCf73a27c2013-01-01 10:25:43 +0000442[8] cjpeg can now be used to generate JPEG files with the RGB colorspace
443(feature ported from jpeg-8d.)
444
DRC8cbf8932013-01-01 10:44:00 +0000445[9] The width and height in the -crop argument passed to jpegtran can now be
446suffixed with "f" to indicate that, when the upper left corner of the cropping
447region is automatically moved to the nearest iMCU boundary, the bottom right
448corner should be moved by the same amount. In other words, this feature causes
449jpegtran to strictly honor the specified width/height rather than the specified
450bottom right corner (feature ported from jpeg-8d.)
451
DRCf37e4da2013-01-01 10:52:29 +0000452[10] JPEG files using the RGB colorspace can now be decompressed into grayscale
453images (feature ported from jpeg-8d.)
454
DRC00c2cf32013-01-13 12:12:53 +0000455[11] Fixed a regression caused by 1.2.1[7] whereby the build would fail with
DRCb87a0b42013-01-13 12:15:58 +0000456multiple "Mismatch in operand sizes" errors when attempting to build the x86
457SIMD code with NASM 0.98.
458
DRCab706232013-01-18 23:42:31 +0000459[12] The in-memory source/destination managers (jpeg_mem_src() and
460jpeg_mem_dest()) are now included by default when building libjpeg-turbo with
461libjpeg v6b or v7 emulation, so that programs can take advantage of these
462functions without requiring the use of the backward-incompatible libjpeg v8
463ABI. The "age number" of the libjpeg-turbo library on Un*x systems has been
464incremented by 1 to reflect this. You can disable this feature with a
465configure/CMake switch in order to retain strict API/ABI compatibility with the
466libjpeg v6b or v7 API/ABI (or with previous versions of libjpeg-turbo.) See
DRC7e3acc02015-10-10 10:25:46 -0500467README.md for more details.
DRCab706232013-01-18 23:42:31 +0000468
DRC6e6b28c2014-12-19 17:34:30 +0000469[13] Added ARMv7s architecture to libjpeg.a and libturbojpeg.a in the official
DRCa2a2cd62013-02-04 22:29:57 +0000470libjpeg-turbo binary package for OS X, so that those libraries can be used to
471build applications that leverage the faster CPUs in the iPhone 5 and iPad 4.
472
DRC575317b2012-06-15 22:00:47 +0000473
4741.2.1
475=====
476
477[1] Creating or decoding a JPEG file that uses the RGB colorspace should now
478properly work when the input or output colorspace is one of the libjpeg-turbo
479colorspace extensions.
480
481[2] When libjpeg-turbo was built without SIMD support and merged (non-fancy)
482upsampling was used along with an alpha-enabled colorspace during
483decompression, the unused byte of the decompressed pixels was not being set to
4840xFF. This has been fixed. TJUnitTest has also been extended to test for the
485correct behavior of the colorspace extensions when merged upsampling is used.
486
487[3] Fixed a bug whereby the libjpeg-turbo SSE2 SIMD code would not preserve the
DRC4f240162012-04-26 19:50:37 +0000488upper 64 bits of xmm6 and xmm7 on Win64 platforms, which violated the Win64
489calling conventions.
490
DRC575317b2012-06-15 22:00:47 +0000491[4] Fixed a regression caused by 1.2.0[6] whereby decompressing corrupt JPEG
DRCdd2b6512012-05-30 20:36:42 +0000492images (specifically, images in which the component count was erroneously set
493to a large value) would cause libjpeg-turbo to segfault.
494
DRC575317b2012-06-15 22:00:47 +0000495[5] Worked around a severe performance issue with "Bobcat" (AMD Embedded APU)
DRC69799272012-06-13 01:21:29 +0000496processors. The MASKMOVDQU instruction, which was used by the libjpeg-turbo
497SSE2 SIMD code, is apparently implemented in microcode on AMD processors, and
498it is painfully slow on Bobcat processors in particular. Eliminating the use
499of this instruction improved performance by an order of magnitude on Bobcat
500processors and by a small amount (typically 5%) on AMD desktop processors.
501
DRC575317b2012-06-15 22:00:47 +0000502[6] Added SIMD acceleration for performing 4:2:2 upsampling on NEON-capable ARM
503platforms. This speeds up the decompression of 4:2:2 JPEGs by 20-25% on such
504platforms.
505
DRCde37e072012-06-18 00:08:18 +0000506[7] Fixed a regression caused by 1.2.0[2] whereby, on Linux/x86 platforms
507running the 32-bit SSE2 SIMD code in libjpeg-turbo, decompressing a 4:2:0 or
5084:2:2 JPEG image into a 32-bit (RGBX, BGRX, etc.) buffer without using fancy
509upsampling would produce several incorrect columns of pixels at the right-hand
510side of the output image if each row in the output image was not evenly
511divisible by 16 bytes.
DRC8126d0c2012-06-15 21:54:45 +0000512
DRC112a0bb2012-06-28 23:25:34 +0000513[8] Fixed an issue whereby attempting to build the SIMD extensions with Xcode
5144.3 on OS X platforms would cause NASM to return numerous errors of the form
515"'%define' expects a macro identifier".
516
DRC73d74c12012-06-29 23:46:38 +0000517[9] Added flags to the TurboJPEG API that allow the caller to force the use of
518either the fast or the accurate DCT/IDCT algorithms in the underlying codec.
519
DRC27fb3fc2012-01-28 01:48:07 +0000520
DRC1ca924a2011-11-29 08:58:27 +00005211.2.0
522=====
523
524[1] Fixed build issue with YASM on Unix systems (the libjpeg-turbo build system
525was not adding the current directory to the assembler include path, so YASM
526was not able to find jsimdcfg.inc.)
527
DRCebfe9e42011-12-01 10:58:36 +0000528[2] Fixed out-of-bounds read in SSE2 SIMD code that occurred when decompressing
529a JPEG image to a bitmap buffer whose size was not a multiple of 16 bytes.
530This was more of an annoyance than an actual bug, since it did not cause any
531actual run-time problems, but the issue showed up when running libjpeg-turbo in
532valgrind. See http://crbug.com/72399 for more information.
533
DRCab64b622011-12-18 16:29:35 +0000534[3] Added a compile-time macro (LIBJPEG_TURBO_VERSION) that can be used to
535check the version of libjpeg-turbo against which an application was compiled.
536
DRC67ce3b22011-12-19 02:21:03 +0000537[4] Added new RGBA/BGRA/ABGR/ARGB colorspace extension constants (libjpeg API)
538and pixel formats (TurboJPEG API), which allow applications to specify that,
539when decompressing to a 4-component RGB buffer, the unused byte should be set
540to 0xFF so that it can be interpreted as an opaque alpha channel.
541
DRCa7466c92012-01-26 22:20:31 +0000542[5] Fixed regression issue whereby DevIL failed to build against libjpeg-turbo
543because libjpeg-turbo's distributed version of jconfig.h contained an INLINE
544macro, which conflicted with a similar macro in DevIL. This macro is used only
545internally when building libjpeg-turbo, so it was moved into config.h.
546
DRC12781cb2012-01-27 01:23:20 +0000547[6] libjpeg-turbo will now correctly decompress erroneous CMYK/YCCK JPEGs whose
548K component is assigned a component ID of 1 instead of 4. Although these files
549are in violation of the spec, other JPEG implementations handle them
550correctly.
551
DRC6e6b28c2014-12-19 17:34:30 +0000552[7] Added ARMv6 and ARMv7 architectures to libjpeg.a and libturbojpeg.a in
DRCa2a2cd62013-02-04 22:29:57 +0000553the official libjpeg-turbo binary package for OS X, so that those libraries can
554be used to build both OS X and iOS applications.
DRCc0526462012-02-10 01:44:55 +0000555
DRC1ca924a2011-11-29 08:58:27 +0000556
DRCf8e00552011-02-04 11:06:36 +00005571.1.90 (1.2 beta1)
558==================
559
DRC7bc3fb52011-10-28 06:45:53 +0000560[1] Added a Java wrapper for the TurboJPEG API. See java/README for more
561details.
DRCf8e00552011-02-04 11:06:36 +0000562
DRC7bc3fb52011-10-28 06:45:53 +0000563[2] The TurboJPEG API can now be used to scale down images during
564decompression.
DRCa3c30592011-02-07 08:06:16 +0000565
DRC15866ac2011-03-04 13:46:55 +0000566[3] Added SIMD routines for RGB-to-grayscale color conversion, which
567significantly improves the performance of grayscale JPEG compression from an
568RGB source image.
569
DRC3c21b082011-10-28 06:25:13 +0000570[4] Improved the performance of the C color conversion routines, which are used
571on platforms for which SIMD acceleration is not available.
DRC15866ac2011-03-04 13:46:55 +0000572
DRC3c21b082011-10-28 06:25:13 +0000573[5] Added a function to the TurboJPEG API that performs lossless transforms.
574This function is implemented using the same back end as jpegtran, but it
575performs transcoding entirely in memory and allows multiple transforms and/or
576crop operations to be batched together, so the source coefficients only need to
577be read once. This is useful when generating image tiles from a single source
578JPEG.
DRC15866ac2011-03-04 13:46:55 +0000579
DRC3c21b082011-10-28 06:25:13 +0000580[6] Added tests for the new TurboJPEG scaled decompression and lossless
DRC77fee432011-11-01 17:14:22 +0000581transform features to tjbench (the TurboJPEG benchmark, formerly called
582"jpgtest".)
DRC15866ac2011-03-04 13:46:55 +0000583
584[7] Added support for 4:4:0 (transposed 4:2:2) subsampling in TurboJPEG, which
585was necessary in order for it to read 4:2:2 JPEG files that had been losslessly
586transposed or rotated 90 degrees.
587
DRC67d1fc12011-05-24 14:13:01 +0000588[8] All legacy VirtualGL code has been re-factored, and this has allowed
589libjpeg-turbo, in its entirety, to be re-licensed under a BSD-style license.
DRCee269922011-04-26 23:46:38 +0000590
DRCf89dd1e2011-05-21 14:23:30 +0000591[9] libjpeg-turbo can now be built with YASM.
DRC56fb2372011-05-03 06:32:41 +0000592
DRCe5c6eb52011-08-17 20:59:56 +0000593[10] Added SIMD acceleration for ARM Linux and iOS platforms that support
594NEON instructions.
DRC321e0682011-05-03 08:47:43 +0000595
DRC3c21b082011-10-28 06:25:13 +0000596[11] Refactored the TurboJPEG C API and documented it using Doxygen. The
597TurboJPEG 1.2 API uses pixel formats to define the size and component order of
598the uncompressed source/destination images, and it includes a more efficient
599version of TJBUFSIZE() that computes a worst-case JPEG size based on the level
DRC5039d732013-01-21 23:42:12 +0000600of chrominance subsampling. The refactored implementation of the TurboJPEG API
DRC3c21b082011-10-28 06:25:13 +0000601now uses the libjpeg memory source and destination managers, which allows the
602TurboJPEG compressor to grow the JPEG buffer as necessary.
DRC9b28def2011-05-21 14:37:15 +0000603
DRCe9f9ec42011-05-25 06:02:50 +0000604[12] Eliminated errors in the output of jpegtran on Windows that occurred when
DRC7e3fd2f2011-05-25 06:04:43 +0000605the application was invoked using I/O redirection
606(jpegtran <input.jpg >output.jpg).
607
DRCb8c6ee32011-05-31 20:22:37 +0000608[13] The inclusion of libjpeg v7 and v8 emulation as well as arithmetic coding
DRC0571e172011-05-31 20:17:16 +0000609support in libjpeg-turbo v1.1.0 introduced several new error constants in
610jerror.h, and these were mistakenly enabled for all emulation modes, causing
DRCfa9ff8e2011-06-21 06:17:10 +0000611the error enum in libjpeg-turbo to sometimes have different values than the
612same enum in libjpeg. This represents an ABI incompatibility, and it caused
613problems with rare applications that took specific action based on a particular
614error value. The fix was to include the new error constants conditionally
615based on whether libjpeg v7 or v8 emulation was enabled.
DRC0571e172011-05-31 20:17:16 +0000616
DRCeed08612011-06-21 04:56:02 +0000617[14] Fixed an issue whereby Windows applications that used libjpeg-turbo would
DRCb7120ca2011-06-21 04:57:32 +0000618fail to compile if the Windows system headers were included before jpeglib.h.
619This issue was caused by a conflict in the definition of the INT32 type.
DRC6ca69532011-02-18 03:31:11 +0000620
DRC3c21b082011-10-28 06:25:13 +0000621[15] Fixed 32-bit supplementary package for amd64 Debian systems, which was
DRC68a086a2011-07-19 09:26:23 +0000622broken by enhancements to the packaging system in 1.1.
623
DRC3c21b082011-10-28 06:25:13 +0000624[16] When decompressing a JPEG image using an output colorspace of
DRCc08e8c12011-09-08 23:54:40 +0000625JCS_EXT_RGBX, JCS_EXT_BGRX, JCS_EXT_XBGR, or JCS_EXT_XRGB, libjpeg-turbo will
626now set the unused byte to 0xFF, which allows applications to interpret that
627byte as an alpha channel (0xFF = opaque).
628
DRCf8e00552011-02-04 11:06:36 +0000629
DRC6ee54592011-03-01 08:18:30 +00006301.1.1
631=====
632
633[1] Fixed a 1-pixel error in row 0, column 21 of the luminance plane generated
634by tjEncodeYUV().
635
DRC8071c392011-04-17 15:29:17 +0000636[2] libjpeg-turbo's accelerated Huffman decoder previously ignored unexpected
637markers found in the middle of the JPEG data stream during decompression. It
638will now hand off decoding of a particular block to the unaccelerated Huffman
639decoder if an unexpected marker is found, so that the unaccelerated Huffman
640decoder can generate an appropriate warning.
DRC6ee54592011-03-01 08:18:30 +0000641
DRC47aaf6f2011-03-22 05:40:39 +0000642[3] Older versions of MinGW64 prefixed symbol names with underscores by
DRC1da78582011-03-22 09:34:01 +0000643default, which differed from the behavior of 64-bit Visual C++. MinGW64 1.0
644has adopted the behavior of 64-bit Visual C++ as the default, so to accommodate
645this, the libjpeg-turbo SIMD function names are no longer prefixed with an
646underscore when building with MinGW64. This means that, when building
647libjpeg-turbo with older versions of MinGW64, you will now have to add
648-fno-leading-underscore to the CFLAGS.
649
DRCd8840112011-04-25 22:46:25 +0000650[4] Fixed a regression bug in the NSIS script that caused the Windows installer
651build to fail when using the Visual Studio IDE.
652
653[5] Fixed a bug in jpeg_read_coefficients() whereby it would not initialize
654cinfo->image_width and cinfo->image_height if libjpeg v7 or v8 emulation was
655enabled. This specifically caused the jpegoptim program to fail if it was
656linked against a version of libjpeg-turbo that was built with libjpeg v7 or v8
657emulation.
658
DRC049aef52011-04-25 22:41:14 +0000659[6] Eliminated excessive I/O overhead that occurred when reading BMP files in
660cjpeg.
661
DRC5ee81f42011-05-02 00:35:50 +0000662[7] Eliminated errors in the output of cjpeg on Windows that occurred when the
DRC34a8e352011-05-10 22:14:38 +0000663application was invoked using I/O redirection (cjpeg <inputfile >output.jpg).
DRC5ee81f42011-05-02 00:35:50 +0000664
DRCf5c3bb32011-03-18 05:59:07 +0000665
DRC958b2c02011-01-28 08:00:40 +00006661.1.0
667=====
DRCfa1d1832011-01-26 05:35:20 +0000668
DRCa49c4e52011-02-18 20:50:08 +0000669[1] The algorithm used by the SIMD quantization function cannot produce correct
670results when the JPEG quality is >= 98 and the fast integer forward DCT is
671used. Thus, the non-SIMD quantization function is now used for those cases,
672and libjpeg-turbo should now produce identical output to libjpeg v6b in all
673cases.
DRCe1716b82011-02-18 03:19:43 +0000674
DRCa49c4e52011-02-18 20:50:08 +0000675[2] Despite the above, the fast integer forward DCT still degrades somewhat for
DRC5039d732013-01-21 23:42:12 +0000676JPEG qualities greater than 95, so the TurboJPEG wrapper will now automatically
677use the slow integer forward DCT when generating JPEG images of quality 96 or
678greater. This reduces compression performance by as much as 15% for these
679high-quality images but is necessary to ensure that the images are perceptually
680lossless. It also ensures that the library can avoid the performance pitfall
681created by [1].
DRCa49c4e52011-02-18 20:50:08 +0000682
683[3] Ported jpgtest.cxx to pure C to avoid the need for a C++ compiler.
684
685[4] Fixed visual artifacts in grayscale JPEG compression caused by a typo in
DRCd9ee65c2011-04-05 07:01:26 +0000686the RGB-to-luminance lookup tables.
DRC8ed7b812011-02-15 08:31:34 +0000687
DRC240d82f2011-02-19 00:00:34 +0000688[5] The Windows distribution packages now include the libjpeg run-time programs
689(cjpeg, etc.)
690
DRC9cd2c422011-02-19 17:52:45 +0000691[6] All packages now include jpgtest.
DRC240d82f2011-02-19 00:00:34 +0000692
DRCe4d9b5b2011-02-25 06:17:17 +0000693[7] The TurboJPEG dynamic library now uses versioned symbols.
694
695[8] Added two new TurboJPEG API functions, tjEncodeYUV() and
696tjDecompressToYUV(), to replace the somewhat hackish TJ_YUV flag.
697
DRC2d94e262011-01-25 06:52:31 +0000698
DRC958b2c02011-01-28 08:00:40 +00006991.0.90 (1.1 beta1)
700==================
DRC766dc5c2010-10-12 02:50:18 +0000701
DRCf38eee02011-02-18 07:00:38 +0000702[1] Added emulation of the libjpeg v7 and v8 APIs and ABIs. See
DRC7e3acc02015-10-10 10:25:46 -0500703README.md for more details. This feature was sponsored by CamTrace SAS.
DRCefa618e2010-10-18 08:41:11 +0000704
705[2] Created a new CMake-based build system for the Visual C++ and MinGW builds.
DRC766dc5c2010-10-12 02:50:18 +0000706
DRC2c62da32012-01-17 22:55:03 +0000707[3] Grayscale bitmaps can now be compressed from/decompressed to using the
708TurboJPEG API.
DRC09854f52010-11-04 22:39:59 +0000709
DRC01e69092011-01-06 01:19:43 +0000710[4] jpgtest can now be used to test decompression performance with existing
711JPEG images.
DRCe89bbae2010-11-12 10:18:08 +0000712
DRCd1c281a2010-11-17 22:44:40 +0000713[5] If the default install prefix (/opt/libjpeg-turbo) is used, then
714'make install' now creates /opt/libjpeg-turbo/lib32 and
715/opt/libjpeg-turbo/lib64 sym links to duplicate the behavior of the binary
716packages.
717
DRCec311932010-11-22 19:51:42 +0000718[6] All symbols in the libjpeg-turbo dynamic library are now versioned, even
719when the library is built with libjpeg v6b emulation.
720
DRC01e69092011-01-06 01:19:43 +0000721[7] Added arithmetic encoding and decoding support (can be disabled with
DRC245cfdf2010-11-23 17:11:06 +0000722configure or CMake options)
DRC66f97e62010-11-23 05:49:54 +0000723
DRC2c62da32012-01-17 22:55:03 +0000724[8] Added a TJ_YUV flag to the TurboJPEG API, which causes both the compressor
725and decompressor to output planar YUV images.
DRCfbb67472010-11-24 04:02:37 +0000726
DRC2c62da32012-01-17 22:55:03 +0000727[9] Added an extended version of tjDecompressHeader() to the TurboJPEG API,
728which allows the caller to determine the type of subsampling used in a JPEG
729image.
DRC50c657b2010-12-14 01:23:16 +0000730
DRC958b2c02011-01-28 08:00:40 +0000731[10] Added further protections against invalid Huffman codes.
DRCfa1d1832011-01-26 05:35:20 +0000732
DRC766dc5c2010-10-12 02:50:18 +0000733
DRC958b2c02011-01-28 08:00:40 +00007341.0.1
735=====
DRC0fbb28e2010-07-30 17:15:52 +0000736
737[1] The Huffman decoder will now handle erroneous Huffman codes (for instance,
738from a corrupt JPEG image.) Previously, these would cause libjpeg-turbo to
739crash under certain circumstances.
740
DRC81a50f72012-01-17 22:56:22 +0000741[2] Fixed typo in SIMD dispatch routines that was causing 4:2:2 upsampling to
DRC025a2792010-08-07 16:27:56 +0000742be used instead of 4:2:0 when decompressing JPEG images using SSE2 code.
DRC30959712010-08-07 16:06:56 +0000743
DRCbdb12882010-08-21 21:14:17 +0000744[3] configure script will now automatically determine whether the
745INCOMPLETE_TYPES_BROKEN macro should be defined.
746
DRC0fbb28e2010-07-30 17:15:52 +0000747
DRC958b2c02011-01-28 08:00:40 +00007481.0.0
749=====
DRC49597872010-05-17 20:47:57 +0000750
DRCc773d102010-06-05 06:58:22 +0000751[1] 2983700: Further FreeBSD build tweaks (no longer necessary to specify
752--host when configuring on a 64-bit system)
DRC49597872010-05-17 20:47:57 +0000753
DRCd5e964c2013-01-10 11:47:39 +0000754[2] Created symlinks in the Unix/Linux packages so that the TurboJPEG
DRCf12c7db2010-05-18 19:04:47 +0000755include file can always be found in /opt/libjpeg-turbo/include, the 32-bit
756static libraries can always be found in /opt/libjpeg-turbo/lib32, and the
75764-bit static libraries can always be found in /opt/libjpeg-turbo/lib64.
758
DRC4bf3b582010-06-05 01:03:23 +0000759[3] The Unix/Linux distribution packages now include the libjpeg run-time
760programs (cjpeg, etc.) and man pages.
761
DRC81a50f72012-01-17 22:56:22 +0000762[4] Created a 32-bit supplementary package for amd64 Debian systems, which
DRC4bf3b582010-06-05 01:03:23 +0000763contains just the 32-bit libjpeg-turbo libraries.
764
765[5] Moved the libraries from */lib32 to */lib in the i386 Debian package.
766
DRCdf3337c2010-07-02 09:13:58 +0000767[6] Include distribution package for Cygwin
DRC4bf3b582010-06-05 01:03:23 +0000768
DRCdf3337c2010-07-02 09:13:58 +0000769[7] No longer necessary to specify --without-simd on non-x86 architectures, and
DRC38ccf852010-06-10 19:49:49 +0000770unit tests now work on those architectures.
771
DRC49597872010-05-17 20:47:57 +0000772
DRC958b2c02011-01-28 08:00:40 +00007730.0.93
774======
DRC0f413b22010-04-06 20:05:39 +0000775
DRCc773d102010-06-05 06:58:22 +0000776[1] 2982659, Fixed x86-64 build on FreeBSD systems
DRC0f413b22010-04-06 20:05:39 +0000777
DRCc773d102010-06-05 06:58:22 +0000778[2] 2988188: Added support for Windows 64-bit systems
DRC1a2219e2010-05-10 20:03:36 +0000779
DRC0f413b22010-04-06 20:05:39 +0000780
DRC958b2c02011-01-28 08:00:40 +00007810.0.91
782======
DRCae19bf62010-03-15 11:40:31 +0000783
784[1] Added documentation to .deb packages
785
786[2] 2968313: Fixed data corruption issues when decompressing large JPEG images
787and/or using buffered I/O with the libjpeg-turbo decompressor
DRC958b2c02011-01-28 08:00:40 +0000788
789
7900.0.90
791======
792
793Initial release