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Add libjpeg-turbo 1.3.1.
This commit is contained in:
@@ -0,0 +1,457 @@
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1.3.1
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=====
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[1] On Un*x systems, 'make install' now installs the libjpeg-turbo libraries
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into /opt/libjpeg-turbo/lib32 by default on any 32-bit system, not just x86,
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and into /opt/libjpeg-turbo/lib64 by default on any 64-bit system, not just
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x86-64. You can override this by overriding either the 'prefix' or 'libdir'
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configure variables.
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[2] The Windows installer now places a copy of the TurboJPEG DLLs in the same
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directory as the rest of the libjpeg-turbo binaries. This was mainly done
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to support TurboVNC 1.3, which bundles the DLLs in its Windows installation.
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When using a 32-bit version of CMake on 64-bit Windows, it is impossible to
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access the c:\WINDOWS\system32 directory, which made it impossible for the
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TurboVNC build scripts to bundle the 64-bit TurboJPEG DLL.
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[3] Fixed a bug whereby attempting to encode a progressive JPEG with arithmetic
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entropy coding (by passing arguments of -progressive -arithmetic to cjpeg or
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jpegtran, for instance) would result in an error, "Requested feature was
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omitted at compile time".
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[4] Fixed a couple of issues whereby malformed JPEG images would cause
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libjpeg-turbo to use uninitialized memory during decompression.
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[5] Fixed an error ("Buffer passed to JPEG library is too small") that occurred
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when calling the TurboJPEG YUV encoding function with a very small (< 5x5)
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source image, and added a unit test to check for this error.
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[6] The Java classes should now build properly under Visual Studio 2010 and
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later.
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[7] Fixed an issue that prevented SRPMs generated using the in-tree packaging
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tools from being rebuilt on certain newer Linux distributions.
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[8] Numerous minor fixes to eliminate compilation and build/packaging system
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warnings, fix cosmetic issues, improve documentation clarity, and other general
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source cleanup.
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1.3.0
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=====
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[1] 'make test' now works properly on FreeBSD, and it no longer requires the
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md5sum executable to be present on other Un*x platforms.
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[2] Overhauled the packaging system:
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-- To avoid conflict with vendor-supplied libjpeg-turbo packages, the
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official RPMs and DEBs for libjpeg-turbo have been renamed to
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"libjpeg-turbo-official".
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-- The TurboJPEG libraries are now located under /opt/libjpeg-turbo in the
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official Linux and Mac packages, to avoid conflict with vendor-supplied
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packages and also to streamline the packaging system.
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-- Release packages are now created with the directory structure defined
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by the configure variables "prefix", "bindir", "libdir", etc. (Un*x) or by the
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CMAKE_INSTALL_PREFIX variable (Windows.) The exception is that the docs are
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always located under the system default documentation directory on Un*x and Mac
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systems, and on Windows, the TurboJPEG DLL is always located in the Windows
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system directory.
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-- To avoid confusion, official libjpeg-turbo packages on Linux/Unix platforms
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(except for Mac) will always install the 32-bit libraries in
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/opt/libjpeg-turbo/lib32 and the 64-bit libraries in /opt/libjpeg-turbo/lib64.
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-- Fixed an issue whereby, in some cases, the libjpeg-turbo executables on Un*x
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systems were not properly linking with the shared libraries installed by the
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same package.
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-- Fixed an issue whereby building the "installer" target on Windows when
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WITH_JAVA=1 would fail if the TurboJPEG JAR had not been previously built.
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-- Building the "install" target on Windows now installs files into the same
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places that the installer does.
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[3] Fixed a Huffman encoder bug that prevented I/O suspension from working
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properly.
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1.2.90 (1.3 beta1)
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==================
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[1] Added support for additional scaling factors (3/8, 5/8, 3/4, 7/8, 9/8, 5/4,
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11/8, 3/2, 13/8, 7/4, 15/8, and 2) when decompressing. Note that the IDCT will
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not be SIMD-accelerated when using any of these new scaling factors.
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[2] The TurboJPEG dynamic library is now versioned. It was not strictly
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necessary to do so, because TurboJPEG uses versioned symbols, and if a function
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changes in an ABI-incompatible way, that function is renamed and a legacy
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function is provided to maintain backward compatibility. However, certain
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Linux distro maintainers have a policy against accepting any library that isn't
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versioned.
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[3] Extended the TurboJPEG Java API so that it can be used to compress a JPEG
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image from and decompress a JPEG image to an arbitrary position in a large
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image buffer.
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[4] The tjDecompressToYUV() function now supports the TJFLAG_FASTDCT flag.
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[5] The 32-bit supplementary package for amd64 Debian systems now provides
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symlinks in /usr/lib/i386-linux-gnu for the TurboJPEG libraries in /usr/lib32.
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This allows those libraries to be used on MultiArch-compatible systems (such as
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Ubuntu 11 and later) without setting the linker path.
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[6] The TurboJPEG Java wrapper should now find the JNI library on Mac systems
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without having to pass -Djava.library.path=/usr/lib to java.
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[7] TJBench has been ported to Java to provide a convenient way of validating
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the performance of the TurboJPEG Java API. It can be run with
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'java -cp turbojpeg.jar TJBench'.
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[8] cjpeg can now be used to generate JPEG files with the RGB colorspace
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(feature ported from jpeg-8d.)
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[9] The width and height in the -crop argument passed to jpegtran can now be
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suffixed with "f" to indicate that, when the upper left corner of the cropping
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region is automatically moved to the nearest iMCU boundary, the bottom right
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corner should be moved by the same amount. In other words, this feature causes
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jpegtran to strictly honor the specified width/height rather than the specified
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bottom right corner (feature ported from jpeg-8d.)
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[10] JPEG files using the RGB colorspace can now be decompressed into grayscale
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images (feature ported from jpeg-8d.)
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[11] Fixed a regression caused by 1.2.1[7] whereby the build would fail with
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multiple "Mismatch in operand sizes" errors when attempting to build the x86
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SIMD code with NASM 0.98.
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[12] The in-memory source/destination managers (jpeg_mem_src() and
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jpeg_mem_dest()) are now included by default when building libjpeg-turbo with
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libjpeg v6b or v7 emulation, so that programs can take advantage of these
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functions without requiring the use of the backward-incompatible libjpeg v8
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ABI. The "age number" of the libjpeg-turbo library on Un*x systems has been
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incremented by 1 to reflect this. You can disable this feature with a
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configure/CMake switch in order to retain strict API/ABI compatibility with the
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libjpeg v6b or v7 API/ABI (or with previous versions of libjpeg-turbo.) See
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README-turbo.txt for more details.
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[13] Added ARM v7s architecture to libjpeg.a and libturbojpeg.a in the official
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libjpeg-turbo binary package for OS X, so that those libraries can be used to
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build applications that leverage the faster CPUs in the iPhone 5 and iPad 4.
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1.2.1
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=====
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[1] Creating or decoding a JPEG file that uses the RGB colorspace should now
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properly work when the input or output colorspace is one of the libjpeg-turbo
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colorspace extensions.
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[2] When libjpeg-turbo was built without SIMD support and merged (non-fancy)
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upsampling was used along with an alpha-enabled colorspace during
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decompression, the unused byte of the decompressed pixels was not being set to
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0xFF. This has been fixed. TJUnitTest has also been extended to test for the
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correct behavior of the colorspace extensions when merged upsampling is used.
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[3] Fixed a bug whereby the libjpeg-turbo SSE2 SIMD code would not preserve the
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upper 64 bits of xmm6 and xmm7 on Win64 platforms, which violated the Win64
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calling conventions.
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[4] Fixed a regression caused by 1.2.0[6] whereby decompressing corrupt JPEG
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images (specifically, images in which the component count was erroneously set
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to a large value) would cause libjpeg-turbo to segfault.
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[5] Worked around a severe performance issue with "Bobcat" (AMD Embedded APU)
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processors. The MASKMOVDQU instruction, which was used by the libjpeg-turbo
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SSE2 SIMD code, is apparently implemented in microcode on AMD processors, and
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it is painfully slow on Bobcat processors in particular. Eliminating the use
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of this instruction improved performance by an order of magnitude on Bobcat
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processors and by a small amount (typically 5%) on AMD desktop processors.
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[6] Added SIMD acceleration for performing 4:2:2 upsampling on NEON-capable ARM
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platforms. This speeds up the decompression of 4:2:2 JPEGs by 20-25% on such
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platforms.
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[7] Fixed a regression caused by 1.2.0[2] whereby, on Linux/x86 platforms
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running the 32-bit SSE2 SIMD code in libjpeg-turbo, decompressing a 4:2:0 or
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4:2:2 JPEG image into a 32-bit (RGBX, BGRX, etc.) buffer without using fancy
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upsampling would produce several incorrect columns of pixels at the right-hand
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side of the output image if each row in the output image was not evenly
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divisible by 16 bytes.
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[8] Fixed an issue whereby attempting to build the SIMD extensions with Xcode
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4.3 on OS X platforms would cause NASM to return numerous errors of the form
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"'%define' expects a macro identifier".
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[9] Added flags to the TurboJPEG API that allow the caller to force the use of
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either the fast or the accurate DCT/IDCT algorithms in the underlying codec.
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1.2.0
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=====
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[1] Fixed build issue with YASM on Unix systems (the libjpeg-turbo build system
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was not adding the current directory to the assembler include path, so YASM
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was not able to find jsimdcfg.inc.)
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[2] Fixed out-of-bounds read in SSE2 SIMD code that occurred when decompressing
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a JPEG image to a bitmap buffer whose size was not a multiple of 16 bytes.
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This was more of an annoyance than an actual bug, since it did not cause any
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actual run-time problems, but the issue showed up when running libjpeg-turbo in
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valgrind. See http://crbug.com/72399 for more information.
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[3] Added a compile-time macro (LIBJPEG_TURBO_VERSION) that can be used to
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check the version of libjpeg-turbo against which an application was compiled.
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[4] Added new RGBA/BGRA/ABGR/ARGB colorspace extension constants (libjpeg API)
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and pixel formats (TurboJPEG API), which allow applications to specify that,
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when decompressing to a 4-component RGB buffer, the unused byte should be set
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to 0xFF so that it can be interpreted as an opaque alpha channel.
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[5] Fixed regression issue whereby DevIL failed to build against libjpeg-turbo
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because libjpeg-turbo's distributed version of jconfig.h contained an INLINE
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macro, which conflicted with a similar macro in DevIL. This macro is used only
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internally when building libjpeg-turbo, so it was moved into config.h.
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[6] libjpeg-turbo will now correctly decompress erroneous CMYK/YCCK JPEGs whose
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K component is assigned a component ID of 1 instead of 4. Although these files
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are in violation of the spec, other JPEG implementations handle them
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correctly.
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[7] Added ARM v6 and ARM v7 architectures to libjpeg.a and libturbojpeg.a in
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the official libjpeg-turbo binary package for OS X, so that those libraries can
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be used to build both OS X and iOS applications.
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1.1.90 (1.2 beta1)
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==================
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[1] Added a Java wrapper for the TurboJPEG API. See java/README for more
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details.
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[2] The TurboJPEG API can now be used to scale down images during
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decompression.
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[3] Added SIMD routines for RGB-to-grayscale color conversion, which
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significantly improves the performance of grayscale JPEG compression from an
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RGB source image.
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[4] Improved the performance of the C color conversion routines, which are used
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on platforms for which SIMD acceleration is not available.
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[5] Added a function to the TurboJPEG API that performs lossless transforms.
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This function is implemented using the same back end as jpegtran, but it
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performs transcoding entirely in memory and allows multiple transforms and/or
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crop operations to be batched together, so the source coefficients only need to
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be read once. This is useful when generating image tiles from a single source
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JPEG.
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[6] Added tests for the new TurboJPEG scaled decompression and lossless
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transform features to tjbench (the TurboJPEG benchmark, formerly called
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"jpgtest".)
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[7] Added support for 4:4:0 (transposed 4:2:2) subsampling in TurboJPEG, which
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was necessary in order for it to read 4:2:2 JPEG files that had been losslessly
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transposed or rotated 90 degrees.
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[8] All legacy VirtualGL code has been re-factored, and this has allowed
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libjpeg-turbo, in its entirety, to be re-licensed under a BSD-style license.
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[9] libjpeg-turbo can now be built with YASM.
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[10] Added SIMD acceleration for ARM Linux and iOS platforms that support
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NEON instructions.
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[11] Refactored the TurboJPEG C API and documented it using Doxygen. The
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TurboJPEG 1.2 API uses pixel formats to define the size and component order of
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the uncompressed source/destination images, and it includes a more efficient
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version of TJBUFSIZE() that computes a worst-case JPEG size based on the level
|
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of chrominance subsampling. The refactored implementation of the TurboJPEG API
|
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now uses the libjpeg memory source and destination managers, which allows the
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TurboJPEG compressor to grow the JPEG buffer as necessary.
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[12] Eliminated errors in the output of jpegtran on Windows that occurred when
|
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the application was invoked using I/O redirection
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(jpegtran <input.jpg >output.jpg).
|
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|
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[13] The inclusion of libjpeg v7 and v8 emulation as well as arithmetic coding
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support in libjpeg-turbo v1.1.0 introduced several new error constants in
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jerror.h, and these were mistakenly enabled for all emulation modes, causing
|
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the error enum in libjpeg-turbo to sometimes have different values than the
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same enum in libjpeg. This represents an ABI incompatibility, and it caused
|
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problems with rare applications that took specific action based on a particular
|
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error value. The fix was to include the new error constants conditionally
|
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based on whether libjpeg v7 or v8 emulation was enabled.
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[14] Fixed an issue whereby Windows applications that used libjpeg-turbo would
|
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fail to compile if the Windows system headers were included before jpeglib.h.
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This issue was caused by a conflict in the definition of the INT32 type.
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|
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[15] Fixed 32-bit supplementary package for amd64 Debian systems, which was
|
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broken by enhancements to the packaging system in 1.1.
|
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|
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[16] When decompressing a JPEG image using an output colorspace of
|
||||
JCS_EXT_RGBX, JCS_EXT_BGRX, JCS_EXT_XBGR, or JCS_EXT_XRGB, libjpeg-turbo will
|
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now set the unused byte to 0xFF, which allows applications to interpret that
|
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byte as an alpha channel (0xFF = opaque).
|
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|
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|
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1.1.1
|
||||
=====
|
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[1] Fixed a 1-pixel error in row 0, column 21 of the luminance plane generated
|
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by tjEncodeYUV().
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[2] libjpeg-turbo's accelerated Huffman decoder previously ignored unexpected
|
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markers found in the middle of the JPEG data stream during decompression. It
|
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will now hand off decoding of a particular block to the unaccelerated Huffman
|
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decoder if an unexpected marker is found, so that the unaccelerated Huffman
|
||||
decoder can generate an appropriate warning.
|
||||
|
||||
[3] Older versions of MinGW64 prefixed symbol names with underscores by
|
||||
default, which differed from the behavior of 64-bit Visual C++. MinGW64 1.0
|
||||
has adopted the behavior of 64-bit Visual C++ as the default, so to accommodate
|
||||
this, the libjpeg-turbo SIMD function names are no longer prefixed with an
|
||||
underscore when building with MinGW64. This means that, when building
|
||||
libjpeg-turbo with older versions of MinGW64, you will now have to add
|
||||
-fno-leading-underscore to the CFLAGS.
|
||||
|
||||
[4] Fixed a regression bug in the NSIS script that caused the Windows installer
|
||||
build to fail when using the Visual Studio IDE.
|
||||
|
||||
[5] Fixed a bug in jpeg_read_coefficients() whereby it would not initialize
|
||||
cinfo->image_width and cinfo->image_height if libjpeg v7 or v8 emulation was
|
||||
enabled. This specifically caused the jpegoptim program to fail if it was
|
||||
linked against a version of libjpeg-turbo that was built with libjpeg v7 or v8
|
||||
emulation.
|
||||
|
||||
[6] Eliminated excessive I/O overhead that occurred when reading BMP files in
|
||||
cjpeg.
|
||||
|
||||
[7] Eliminated errors in the output of cjpeg on Windows that occurred when the
|
||||
application was invoked using I/O redirection (cjpeg <inputfile >output.jpg).
|
||||
|
||||
|
||||
1.1.0
|
||||
=====
|
||||
|
||||
[1] The algorithm used by the SIMD quantization function cannot produce correct
|
||||
results when the JPEG quality is >= 98 and the fast integer forward DCT is
|
||||
used. Thus, the non-SIMD quantization function is now used for those cases,
|
||||
and libjpeg-turbo should now produce identical output to libjpeg v6b in all
|
||||
cases.
|
||||
|
||||
[2] Despite the above, the fast integer forward DCT still degrades somewhat for
|
||||
JPEG qualities greater than 95, so the TurboJPEG wrapper will now automatically
|
||||
use the slow integer forward DCT when generating JPEG images of quality 96 or
|
||||
greater. This reduces compression performance by as much as 15% for these
|
||||
high-quality images but is necessary to ensure that the images are perceptually
|
||||
lossless. It also ensures that the library can avoid the performance pitfall
|
||||
created by [1].
|
||||
|
||||
[3] Ported jpgtest.cxx to pure C to avoid the need for a C++ compiler.
|
||||
|
||||
[4] Fixed visual artifacts in grayscale JPEG compression caused by a typo in
|
||||
the RGB-to-luminance lookup tables.
|
||||
|
||||
[5] The Windows distribution packages now include the libjpeg run-time programs
|
||||
(cjpeg, etc.)
|
||||
|
||||
[6] All packages now include jpgtest.
|
||||
|
||||
[7] The TurboJPEG dynamic library now uses versioned symbols.
|
||||
|
||||
[8] Added two new TurboJPEG API functions, tjEncodeYUV() and
|
||||
tjDecompressToYUV(), to replace the somewhat hackish TJ_YUV flag.
|
||||
|
||||
|
||||
1.0.90 (1.1 beta1)
|
||||
==================
|
||||
|
||||
[1] Added emulation of the libjpeg v7 and v8 APIs and ABIs. See
|
||||
README-turbo.txt for more details. This feature was sponsored by CamTrace SAS.
|
||||
|
||||
[2] Created a new CMake-based build system for the Visual C++ and MinGW builds.
|
||||
|
||||
[3] Grayscale bitmaps can now be compressed from/decompressed to using the
|
||||
TurboJPEG API.
|
||||
|
||||
[4] jpgtest can now be used to test decompression performance with existing
|
||||
JPEG images.
|
||||
|
||||
[5] If the default install prefix (/opt/libjpeg-turbo) is used, then
|
||||
'make install' now creates /opt/libjpeg-turbo/lib32 and
|
||||
/opt/libjpeg-turbo/lib64 sym links to duplicate the behavior of the binary
|
||||
packages.
|
||||
|
||||
[6] All symbols in the libjpeg-turbo dynamic library are now versioned, even
|
||||
when the library is built with libjpeg v6b emulation.
|
||||
|
||||
[7] Added arithmetic encoding and decoding support (can be disabled with
|
||||
configure or CMake options)
|
||||
|
||||
[8] Added a TJ_YUV flag to the TurboJPEG API, which causes both the compressor
|
||||
and decompressor to output planar YUV images.
|
||||
|
||||
[9] Added an extended version of tjDecompressHeader() to the TurboJPEG API,
|
||||
which allows the caller to determine the type of subsampling used in a JPEG
|
||||
image.
|
||||
|
||||
[10] Added further protections against invalid Huffman codes.
|
||||
|
||||
|
||||
1.0.1
|
||||
=====
|
||||
|
||||
[1] The Huffman decoder will now handle erroneous Huffman codes (for instance,
|
||||
from a corrupt JPEG image.) Previously, these would cause libjpeg-turbo to
|
||||
crash under certain circumstances.
|
||||
|
||||
[2] Fixed typo in SIMD dispatch routines that was causing 4:2:2 upsampling to
|
||||
be used instead of 4:2:0 when decompressing JPEG images using SSE2 code.
|
||||
|
||||
[3] configure script will now automatically determine whether the
|
||||
INCOMPLETE_TYPES_BROKEN macro should be defined.
|
||||
|
||||
|
||||
1.0.0
|
||||
=====
|
||||
|
||||
[1] 2983700: Further FreeBSD build tweaks (no longer necessary to specify
|
||||
--host when configuring on a 64-bit system)
|
||||
|
||||
[2] Created symlinks in the Unix/Linux packages so that the TurboJPEG
|
||||
include file can always be found in /opt/libjpeg-turbo/include, the 32-bit
|
||||
static libraries can always be found in /opt/libjpeg-turbo/lib32, and the
|
||||
64-bit static libraries can always be found in /opt/libjpeg-turbo/lib64.
|
||||
|
||||
[3] The Unix/Linux distribution packages now include the libjpeg run-time
|
||||
programs (cjpeg, etc.) and man pages.
|
||||
|
||||
[4] Created a 32-bit supplementary package for amd64 Debian systems, which
|
||||
contains just the 32-bit libjpeg-turbo libraries.
|
||||
|
||||
[5] Moved the libraries from */lib32 to */lib in the i386 Debian package.
|
||||
|
||||
[6] Include distribution package for Cygwin
|
||||
|
||||
[7] No longer necessary to specify --without-simd on non-x86 architectures, and
|
||||
unit tests now work on those architectures.
|
||||
|
||||
|
||||
0.0.93
|
||||
======
|
||||
|
||||
[1] 2982659, Fixed x86-64 build on FreeBSD systems
|
||||
|
||||
[2] 2988188: Added support for Windows 64-bit systems
|
||||
|
||||
|
||||
0.0.91
|
||||
======
|
||||
|
||||
[1] Added documentation to .deb packages
|
||||
|
||||
[2] 2968313: Fixed data corruption issues when decompressing large JPEG images
|
||||
and/or using buffered I/O with the libjpeg-turbo decompressor
|
||||
|
||||
|
||||
0.0.90
|
||||
======
|
||||
|
||||
Initial release
|
||||
Reference in New Issue
Block a user