Intel® Integrated Performance Primitives Release Notes and New Features

By Abhinav Singh, Published: 08/29/2019, Last Updated: 07/16/2020

This page provides the current Release Notes for Intel® Integrated Performance Primitives. The notes are categorized by year, from newest to oldest, with individual releases listed within each year.

Click a version to expand it into a summary of new features and changes in that version since the last release, and access the download buttons for the detailed release notes, which include important information, such as pre-requisites, software compatibility, installation instructions, and known issues.

You can copy a link to a specific version's section by clicking the chain icon next to its name.

To get product updates, log in to the Intel® Software Development Products Registration Center.
For questions or technical support, visit Intel® Software Products Support.

2020

 System Requirements     Bug Fix Log      Installation Guide

Update 2

What's New in Intel® IPP 2020 Update 2

  • Added new universal 16-bit CRC functions to compute CRC8, CRC16, CRC24 and CRC32 checksums.
  • Enabled Intel® IPP Threading Layer for Intel® IPP Image Processing ippiCrossCorrNorm* functions.
  • Extended Intel® IPP Signal Processing ippsHilbert_32f32fc functions optimization on double precision counterparts.
  • Reinstated and extended optimization for Intel® IPP Image Processing ippiComplement* function for Intel® Advanced Vector Extensions 512 (Intel® AVX-512), Intel® Advanced Vector Extensions 2 (Intel® AVX2) and Intel® Streaming SIMD Extensions 4.2 (Intel® SSE4.2).
  • Added support for custom dispatcher in the Intel® IPP Custom Library Tool.

Threading Notes

Intel® IPP provides Threading Layer APIs on top of sequential Intel® IPP libraries. The APIs include two variants 1) functions with _T suffix in the names, providing threading implementation based on classic Intel® IPP APIs; 2) functions with _LT suffix, providing threading implementation based on Intel® IPP Platform-Aware functions. The Threading Layer APIs support both OpenMP* and Intel® Threading Building Blocks(Intel® TBB) threading technology. Source code of Intel® IPP Threading Layer is also available in the Intel® IPP package as an example and basis to organize threading for pipeline inside a customer application.

The legacy Intel® IPP threaded libraries will be dropped in future release, the code written with these libraries will work as before. However, the threaded library will not expand its threading functions, and the new threading will be developed only in the new Intel® IPP Threading Layer APIs.

It is recommended that you use the new Intel® IPP Threading Layer APIs or implement the threading based on Intel® IPP Threading Layer source code examples in your applications. For more information, check the “Threading Layer Functions” section in the Intel® IPP Developer Reference.

Known Intel® IPP 2020 Update 2 Issues and Limitations

  • If you use Intel® IPP through Intel® System Studio or Intel® Parallel Studio XE suite. This Link provides pointer on downloading Intel® IPP 2020 Update 2 samples.
  • Intel® IPP Signal Processing is deprecating string processing domain and MIMO algorithms within Intel® IPP embedded domain in the future release. If you have any concerns, open a ticket and provide feedback at Intel® online support center.
  • The Erode and Dilate APIs added additional optimization branches. Some optimization branches have performance degradation on the Intel® Advanced Vector Extensions(Intel® AVX) optimization code.
  • The threading layer examples on macOS* fail to build because of the incorrect Makefile. To work around the issue, remove the intel64/ suffix from the G_IPP_PATH_SUFFIX variable in the components/interfaces/tl/Makefile_base.mk file.
  • If you use the standalone version of Intel® IPP on Linux* OS together with, Intel® TBB, you have to install the standalone version of Intel® TBB, otherwise the examples may crash. This is a workaround for this version. For more information, see this article.

Intel® IPP 2020 Documentation

Starting with this version of Intel® IPP, most of the documentation is only available online at Intel® Software Documentation Library. You can also download it from the Intel® Software Development Products Registration Center > Product List > Intel® Parallel Studio XE(or Intel® System Studio) Documentation.

Product Contents

The Intel® IPP for Windows*, Linux* OS, and macOS* is provided as part of the Intel® Parallel Studio XE and Intel® System Studio product. It is also available from the free program:

  • Installation package only supports 64-bit host system. It includes both the 64-bit and 32-bit target libraries.
  • Installation package also provides the online installer that downloads materials chosen during installation.

Intel® IPP Cryptography is provided as the following optional packages:

Intel® IPP Cryptography

Intel® IPP Cryptography is a separate installation package that contains the binaries and header files needed to utilize the functions contained in the Intel® IPP cryptography domain. To obtain the Intel® IPP Cryptography libraries, please review the knowledge base article: where do I download the Intel® IPP cryptography libraries.

Intel® IPP Cryptography library is also available through open source. Visit the Intel® IPP cryptography open source page on GitHub to access the library source code.

Technical Support

If you did not register your Intel® software product during installation, please do so now at the Intel® Software Development Products Registration Center. Registration entitles you to free technical support, product updates and upgrades for the duration of the support term.

For technical information about Intel® IPP, including FAQ's, tips and tricks, and other support information, please visit the Intel® IPP forum and browse the Intel® IPP support page.

For general information about Intel technical support, product updates, user forums, FAQs, tips and tricks and other support questions, please visit the support site.

Note: If your distributor provides technical support for this product, please contact them rather than Intel.

License Definitions

Any software source code included with this product is furnished under a software license and may only be used or copied in accordance with the terms of that license. Please see the Intel® Software Products End User License Agreement for license definitions and restrictions on the library.

Update 1

What's New in Intel® IPP 2020 Update 1

  • Extended optimization for Intel® IPP Cryptography SM4 (ECB, CBC, CFB, OFB, CRT) on 10th Generation Intel® Core™ processor family.
  • Introduced Intel® IPP Cryptography RSA multi-buffer cipher API that enables to process up to 8 messages simultaneously. The API is optimized for 10th Generation Intel® Core™ processor family with performance improvement with up to 6x for decryption and up to 4x for encryption against using RSA classic API (single-buffer).
  • Extended Intel® IPP Image Processing ippsFIRSparse*_32fc functions optimizations for Intel® Advanced Vector Extensions 512 (Intel® AVX-512) and Intel® Advanced Vector Extensions 2 (Intel® AVX2).
  • Added support for BZIP2 version 1.0.8 in the IPP Data Compression.
  • Extended optimization for Intel® IPP Image Processing Resize 8u functions on 10th Generation Intel® Core™ processor family.
  • Extended optimization for Intel® IPP Image Processing ippsAddProduct_32fc function for Intel® Advanced Vector Extensions 512 (Intel® AVX-512) and Intel® Advanced Vector Extensions 2 (Intel® AVX2).
  • Modified Intel® IPP Cryptography ECSignDSA and SM2 APIs to clean up the ephemeral key after usage avoiding multiple key usage to improve security.
  • Updated the Intel® IPP Threading Layer in accordance with Intel® Threading Building Blocks(Intel® TBB) 2020 update 1 release deprecation.
  • Optimized performance for Intel® IPP Data compression LZ4 for smaller block sizes.
  • Other Changes:
    • Dropped support for Intel® IPP Android libraries. It is recommended to migrate to the Intel® IPP Linux* OS version which is entirely compatible with Intel® IPP Android libraries.

Threading Notes

Intel® IPP provides Threading Layer APIs on top of sequential Intel® IPP libraries. The APIs include two variants 1) functions with _T suffix in the names, providing threading implementation based on classic Intel® IPP APIs; 2) functions with _LT suffix, providing threading implementation based on Intel® IPP Platform-Aware functions. The Threading Layer APIs support both OpenMP* and Intel® Threading Building Blocks(Intel® TBB) threading technology. Source code of Intel® IPP Threading Layer is also available in the Intel® IPP package as an example and basis to organize threading for pipeline inside a customer application.

The legacy Intel® IPP threaded libraries will be dropped in future release, the code written with these libraries will work as before. However, the threaded library will not expand its threading functions, and the new threading will be developed only in the new Intel® IPP Threading Layer APIs.

It is recommended that you use the new Intel® IPP Threading Layer APIs or implement the threading based on Intel® IPP Threading Layer source code examples in your applications. For more information, check the “Threading Layer Functions” section in the Intel® IPP Developer Reference.

Known Intel® IPP 2020 Update 1 Issues and Limitations

  • If you use Intel® IPP through Intel® System Studio suite. This Link provides pointer on downloading Intel® IPP 2020 Update 1 Linux* samples.
  • Intel® IPP Signal Processing is deprecating string processing domain and MIMO algorithms within Intel® IPP embedded domain in the future release. If you have any concerns, open a ticket and provide feedback at Intel® online support center.
  • The Erode and Dilate APIs added additional optimization branches. Some optimization branches have performance degradation on the Intel® Advanced Vector Extensions(Intel® AVX) optimization code.
  • The threading layer examples on macOS* fail to build because of the incorrect Makefile. To work around the issue, remove the intel64/ suffix from the G_IPP_PATH_SUFFIX variable in the components/interfaces/tl/Makefile_base.mk file.
  • If you use the standalone version of Intel® IPP on Linux* OS together with, Intel® TBB, you have to install the standalone version of Intel® TBB, otherwise the examples may crash. This is a workaround for this version. For more information, see this article.

Intel® IPP 2020 Documentation

Starting with this version of Intel® IPP, most of the documentation is only available online at Intel® Software Documentation Library. You can also download it from the Intel® Software Development Products Registration Center > Product List > Intel® Parallel Studio XE(or Intel® System Studio) Documentation.

Product Contents

The Intel® IPP for Windows*, Linux* OS, and macOS* is provided as part of the Intel® Parallel Studio XE and Intel® System Studio product. It is also available from the free program:

  • Installation package only supports 64-bit host system. It includes both the 64-bit and 32-bit target libraries.
  • Installation package also provides the online installer that downloads materials chosen during installation.

Intel® IPP Cryptography is provided as the following optional packages:

Intel® IPP Cryptography

Intel® IPP Cryptography is a separate installation package that contains the binaries and header files needed to utilize the functions contained in the Intel® IPP cryptography domain. To obtain the Intel® IPP Cryptography libraries, please review the knowledge base article: where do I download the Intel® IPP cryptography libraries.

Intel® IPP Cryptography library is also available through open source. Visit the Intel® IPP cryptography open source page on GitHub to access the library source code.

Technical Support

If you did not register your Intel® software product during installation, please do so now at the Intel® Software Development Products Registration Center. Registration entitles you to free technical support, product updates and upgrades for the duration of the support term.

For technical information about Intel® IPP, including FAQ's, tips and tricks, and other support information, please visit the Intel® IPP forum and browse the Intel® IPP support page.

For general information about Intel technical support, product updates, user forums, FAQs, tips and tricks and other support questions, please visit the support site.

Note: If your distributor provides technical support for this product, please contact them rather than Intel.

License Definitions

Any software source code included with this product is furnished under a software license and may only be used or copied in accordance with the terms of that license. Please see the Intel® Software Products End User License Agreement for license definitions and restrictions on the library.

Initial Release

What's New in Intel® IPP 2020:

  • Extended Intel® IPP Signal Processing with the pattern matching algorithm to calculate the similarity of binary patterns optimized for Intel® Advanced Vector Extensions 512 (Intel® AVX-512) instructions on 10th Generation Intel® Core™ processor family.
  • Extended Intel® IPP Signal Processing with the algorithm to select top K elements from a vector optimized for Intel® AVX-512 instructions on 10th Generation Intel® Core™ processor family.
  • Extended optimization for Intel® IPP Cryptography cipher AES, RSA support on 10th Generation Intel® Core™ processor family.
  • Enabled acceleration for Intel® IPP Data Compression ZFP 0.5.4 version for Intel® AVX-512 instructions.
  • Improved security for Intel® IPP Cryptography by replacing small dynamic libraries along with the dynamic dispatcher with one dynamic library with all optimized variants and a dispatcher inside.
  • Added support for 32f/64f extensions to Intel® IPP Signal Processing ippsMaxAbsIndx and ippsMinAbsIndx algorithms.
  • Fixed the issue with stack alignment in Intel® IPP and Intel® IPP Cryptography non-PIC libraries that caused application crash on Linux* OS.
  • Added new API for Intel® IPP Cryptography RSA multi-buffer support.
  • Other Changes:
    • Dropped Supplemental Streaming SIMD Extensions 3(SSSE3) optimized variant in Intel® IPP Core due to unsupported hardware on macOS* systems.

Threading Notes

Intel® IPP provides Threading Layer APIs on top of sequential Intel® IPP libraries. The APIs include two variants 1) functions with _T suffix in the names, providing threading implementation based on classic Intel® IPP APIs; 2) functions with _LT suffix, providing threading implementation based on Intel® IPP Platform-Aware functions. The Threading Layer APIs support both OpenMP* and Intel® Threading Building Blocks(Intel® TBB) threading technology. Source code of Intel® IPP Threading Layer is also available in the Intel® IPP package as an example and basis to organize threading for pipeline inside a customer application.

The legacy Intel® IPP threaded libraries will be dropped in future release, the code written with these libraries will work as before. However, the threaded library will not expand its threading functions, and the new threading will be developed only in the new Intel® IPP Threading Layer APIs.

It is recommended that you use the new Intel® IPP Threading Layer APIs or implement the threading based on Intel® IPP Threading Layer source code examples in your applications. For more information, check the “Threading Layer Functions” section in the Intel® IPP Developer Reference.

Known Intel® IPP 2020 Issues and Limitations

  • Intel® IPP Android libraries are deprecated and will be dropped in the future release. It is recommended to migrate to the Intel® IPP Linux* OS version which is entirely compatible with Intel® IPP Android libraries.
  • The Erode and Dilate APIs added additional optimization branches. Some optimization branches have performance degradation on the Intel® Advanced Vector Extensions(Intel® AVX) optimization code.
  • The threading layer examples on macOS* fail to build because of the incorrect Makefile. To work around the issue, remove the intel64/ suffix from the G_IPP_PATH_SUFFIX variable in the components/interfaces/tl/Makefile_base.mk file.
  • If you use the standalone version of Intel® IPP on Linux* OS together with, Intel® TBB, you have to install the standalone version of Intel® TBB, otherwise the examples may crash. This is a workaround for this version. For more information, see this article.

Intel® IPP 2020 Documentation

Starting with this version of Intel® IPP, most of the documentation is only available online at Intel® Software Documentation Library. You can also download it from the Intel® Software Development Products Registration Center > Product List > Intel® Parallel Studio XE(or Intel® System Studio) Documentation.

Product Contents

The Intel® IPP for Windows*, Linux* OS, and macOS* is provided as part of the Intel® Parallel Studio XE and Intel® System Studio product. It is also available from the free program:

  • Installation package only supports 64-bit host system. It includes both the 64-bit and 32-bit target libraries.
  • Installation package also provides the online installer that downloads materials chosen during installation.

Intel® IPP Cryptography is provided as the following optional packages:

Intel® IPP Cryptography

Intel® IPP Cryptography is a separate installation package that contains the binaries and header files needed to utilize the functions contained in the Intel® IPP cryptography domain. To obtain the Intel® IPP Cryptography libraries, please review the knowledge base article: where do I download the Intel® IPP cryptography libraries.

Intel® IPP Cryptography library is also available through open source. Visit the Intel® IPP cryptography open source page on GitHub to access the library source code.

Technical Support

If you did not register your Intel® software product during installation, please do so now at the Intel® Software Development Products Registration Center. Registration entitles you to free technical support, product updates and upgrades for the duration of the support term.

For technical information about Intel® IPP, including FAQ's, tips and tricks, and other support information, please visit the Intel® IPP forum and browse the Intel® IPP support page.

For general information about Intel technical support, product updates, user forums, FAQs, tips and tricks and other support questions, please visit the support site.

Note: If your distributor provides technical support for this product, please contact them rather than Intel.

License Definitions

Any software source code included with this product is furnished under a software license and may only be used or copied in accordance with the terms of that license. Please see the Intel® Software Products End User License Agreement for license definitions and restrictions on the library.

2019

Update 5

Release Notes

What's New in Intel® IPP 2019 Update 5:

  • Extended Intel® IPP ippiWarpBilinear and ippiFilterBilateral functions optimization on Intel® Atom™ processor family.
  • Fixed issue with stack alignment in Intel® IPP and Intel® IPP Crypto non-PIC libraries that caused application crash on Linux.

Update 4

Release Notes

What's New in Intel® IPP 2019 Update 4:

  • Added Intel® IPP Crypto open source build support for 3rd party compilers MSVS and GCC
  • Added Intel® IPP package availability in NuGet package manager on Windows, Linux and macOS* systems
  • Enabled acceleration for Intel® IPP Data compression LZO X1X mode for SSE4.2 and Intel® AVX-512 instructions

Update 3

Release Notes

What's New in Intel® IPP 2019 Update 3:

  • Extended Intel® AVX2 and Intel® AVX-512 optimization for ippsFIRMR32f_32fc functions.
  • Added a threading layer example on building custom pipeline code with the sobel filter functions.
  • Added new implementation in the IIR Filter functions to improve precision. The implementation provides similar performance for long length vectors, but reduces the performance for short length vectors.
  • Fixed several bugs in the bzip2 optimization patch files, including Makefile errors, and inconsistency with original code.
  • Fixed the following dispatching issues in Intel® IPP libraries:
    • The IPP functions dispatched Intel® AVX2 optimization code on the Intel® AVX-512 processors with macOS* systems.
    • The cryptography libraries dispatched incorrect code on the systems that do not support Intel® AVX instructions.
    • The cryptography libraries dispatched incorrect optimization code when the libraries were linked dynamically.

Update 2

Release Notes

What's New in Intel® IPP 2019 Update 2:

  • Intel® IPP Update 2 includes functional and security updates. Users should update to the latest version.
  • The previous version of Intel IPP Custom Library Tool is removed in the releases. Users can use the new version of Intel IPP Custom Library Tool based on Python

Update 1

Release Notes

What's New in Intel® IPP 2019 Update 1:

  • Added new functions to support SM2 public key cryptographic algorithm.
  • Added support for Universal Windows driver and Universal Windows Platform (UWP) in the sequential static libraries.
  • Added optimization for Intel® AVX-512 instruction set in the ippsFIRMR32f_32fc functions.
  • Added support for Android* OS and Threading Layer libraries in the Intel IPP Custom Library Tool based on Python*.
  • Removed support for IA-32 libraries on macOS* in this release.

Initial Release

Release Notes

What's New in Intel® IPP 2019:

  • Added new functions to support ZFP floating-point data compression and decompression. This release also introduces the optimization patch files for ZFP 0.5.2 source to provide drop-in optimization with the Intel® IPP functions:
    • ZFP is a lossy floating point data compression with controlled compression accuracy and compression rate. Intel® IPP ZFP functions are highly optimized for Intel® AVX2 and Intel® AVX-512 instruction sets.
    • Intel® IPP ZFP provides easy-to-use interfaces which allow for use of its functions directly in application source code. Intel® IPP ZFP also provides drop-in optimization patch files for open-source ZFP 0.5.2. Users’ applications can use open-source ZFP library interfaces with Intel® IPP optimized functions.
  • Added Intel® Threading Building Blocks threading technology support in the Threading Layer APIs. Check the “Threading Notes” part in the Release Notes to get more information.
  • Added new version of Intel IPP Custom Library Tool based on Python*. This version provides better compatibility on different operation systems. The previous version of Intel IPP Custom Library Tool is deprecated and will be removed in the future Intel IPP releases.
  • Added new APIs to compute CRC24 and CRC16 checksum with 1U input data. The APIs support CRC24A, CRC24B, CRC24С and CRC16 polynomial functions, and are included in the Intel® IPP embedded domain.
  • Color Conversion:
    • Added color conversion functions to convert RGB image to CIE Lab color model, or CIE Lab color model to RGB (ippiRGBToLab/ ippiLabToRGB).
  • Data Compression:
    • Added the optimization patch files for the bzip2 source to provide drop-in optimization with Intel® IPP functions. The patches now supports bzip2 version 1.0.6.
  • Performance:
    • Extended optimization for the Intel® Advanced Vector Extensions 512 (Intel® AVX-512) instruction sets.
  • Other Changes:
    • Removed support for Intel® Xeon Phi™ 72** product family coprocessor (formerly code name Knights Landing) on Windows* platform in this release.
    • Removed support for Intel® Quark™ microprocessors in this release.
    • The IA-32 libraries on macOS* are deprecated and will be removed in a future release.
  • Threading Notes:
    • Intel® IPP provides Threading Layer APIs on top of sequential Intel® IPP libraries. The APIs include two variants 1) functions with _T suffix in the names, providing threading implementation based on classic IPP APIs; 2) functions with _LT suffix, providing threading implementation based on Intel IPP Platform-Aware functions. The Threading Layer APIs support both OpenMP* and Intel® Threading Building Blocks threading technology. Source code of Intel® IPP Threading Layer is also available in IPP package as example and basis to organize threading for pipeline inside a customer application.
    • The legacy Intel IPP threaded libraries are still available by custom installation, and the code written with these libraries will work as before. However, the threaded library will not expand its threading functions, and the new threading will be developed only in the new Intel® IPP threading layer APIs.
    • User applications are recommended to use the new Intel® IPP Threading Layer APIs or implement the threading based on IPP Threading Layer source code examples in their applications. Check the “Threading Layer Functions” section in the Intel® IPP Developer Reference, to get more information on these APIs.

2018

Update 4

Release Notes

What's New in Intel® IPP 2018 Update 4:

  • Added new APIs to compute CRC24 and CRC16 checksum with 1U input data. The APIs support CRC24A, CRC24B, CRC24С and CRC16 polynomial functions, and are included in the Intel® IPP embedded domain
  • Fixed a number of internal and external defects. Visit the Intel® IPP 2018 bug fixes for more information.

Update 3.1

Release Notes

What's New in Intel® IPP 2018 Update 3.1:

  • Minor improvements in mitigation for security vulnerability CVE-2018-3617 (http://cve.mitre.org/cgi-bin/cvename.cgi?name=2018-3617) in the Intel® IPP Cryptography libraries

Update 3

Release Notes

What's New in Intel® IPP 2018 Update 3:

  • Improved LZ4 compression and decompression performance on data with high entropy.
  • Fixed a number of internal and external defects. Visit the Intel® IPP 2018 bug fixes for more information.

Update 2.1

Release Notes

What's New in Intel® IPP 2018 Update 2.1:

  • Mitigated security vulnerability CVE-2018-3617 (http://cve.mitre.org/cgi-bin/cvename.cgi?name=2018-3617) in the Intel® IPP Cryptography libraries

Update 2

Release Notes

What's New in Intel® IPP 2018 Update 2:

  • Added the new APIs to computes the CRC24 and CRC16 checksum. The APIs support CRC24A, CRC24B, CRC24С and CRC16 polynomial functions, and are included in the Intel® IPP embedded domain within the Intel® System Studio package
  • Added new APIs in the image processing domain for fixed point Resize functionality. The functionality provides faster resize operations with less accuracy.
  • Extended optimization for Intel®AVX2 and Intel® AVX-512 instruction set in the following functions:
    • Image processing: Image processing: ippiSeparableFilter, ippiNorm, ipprFilterBorder_L.
    • Signal processing: ippsAdd_32u
  • Extended optimization for Intel® SSE4.2 and Intel®AVX2 instruction set for LZ4 data compression functions
  • Fixed the problem on the incorrect code dispatching for the Intel® AVX512 processor systems running with the OS that does not support AVX-512 instructions. The problem caused some Intel® IPP functions report "illegal instructions” errors.

Update 1

Release Notes

What's New in Intel® IPP 2018 Update 1:

  • Added new Platform-Aware APIs ipprFilterBorder for 3D data filtering, and ipprCopyBorder for 3D border data copying
  • Extended optimization for Intel® AVX-512 instruction set in the following functions:
    • Image processing: ippiFilterBorder_<16u|16s>_C1R;ippiResizeAntialiasing_8u_C4; ippiResizeLanczos_8u.
    • Signal processing: ippsSqrt_<8u|16s|16u|16sc|32s>;ippsCopyBE_1u;
    • FFT transform functions for order size larger than 17
  • Extended optimization for Intel® SSE4.2 instruction set in the following functions:
    • Image processing: ippiFilterBoxBorder_<16s|8u>; ippiFilterBoxBorder_<16s|8u>_C3, ippiResizeLenear for scale size 0.5, ippiMean_StdDev.
    • Signal processing: ippsMagnitude_<64f|32f>;

Initial Release

Release Notes

What's New in Intel® IPP 2018:

  • Added new functions to support the LZ4 data compression and decompression. This release also introduces the patch files for LZ4 source to provide drop-in optimization with the Intel® IPP functions.
  • Introduced the standalone cryptography packages. The cryptography functions no longer depend on the main Intel® IPP packages, and can be used without the main Intel® IPP packages.
  • Introduced the optimization code for the GraphicsMagick source. The code can provide drop-in optimization on GraphicsMagick with the Intel® IPP functions:
    • The code supports GraphicsMagick version 1.3.25, and provides optimization for the following GraphicsMagick APIs: ResizeImage, ScaleImage, GaussianBlurImage, FlipImage, and FlopImage.
    • The optimization code can improve the APIs performance by up to 4x, depending on the functionality, input parameters, and processors.
  • Made the Integration Wrappers APIs part of the Intel® IPP packages.
  • Computer Vision:
    • Added the 64-bit data length support for Canny edge detection functions (ippiCanny_32f8u_C1R_L).
  • Color Conversion:
    • Added the ippiDemosaicVNG functions that support the demosaicing algorithm with VNG interpolation.
  • Cryptography:
    • Added the Elliptic Curves key generation and Elliptic Curves based Diffie-Hellman shared secret functionality.
    • Added the Elliptic Curves sign generation and verification functionalities for the DSA, NR, and SM2 algorithms..
  • Performance:
    • Extended optimization for the Intel® Advanced Vector Extensions 512 (Intel® AVX-512) and Intel® Advanced Vector Extensions 2 (Intel® AVX2) instruction sets.
    • Improved performance of LZO data compression functions on Intel® AVX2 and Intel® Streaming SIMD Extensions 4.2 (Intel® SSE4.2).
  • Other Changes:
    • Removed support for Intel® Pentium® III processor. The minimal supported instruction set is Intel® Streaming SIMD Extensions 2 (Intel® SSE2).
    • Removed support for the Intel® Xeon Phi™ x100 product family coprocessor (formerly code name Knights Corner) in this release: The Intel® Xeon Phi™ x100 product family coprocessor(formerly code named Knights Corner) was officially announced end of life in January 2017. As part of the end of life process, the support for this family will only be available in the Intel® Parallel Studio XE 2017 version. Intel® Parallel Studio XE 2017 will be supported for a period of 3 years ending in January 2020 for the Intel® Xeon Phi™ x100 product family. Support will be provided for those customers with active support.

Known Issues:

  • The release only provides optimization on Intel® SSE4.2 and later instructions for the morphology image processing functions. Users may notice performance degradation in those functions on some old processors. If the old instructions optimization for the morphology functions is important for your applications, please submit your feedback through the product support.

Threading Notes:

  • To support the internal threading in the Intel® IPP functions, Intel® IPP provides the Threading Layer APIs in the platform-aware functions. These APIs can support both 64-bit object sizes (for large size images and signal data) and internal threading in Intel® IPP functions. Check the “Threading Layer Functions” pat in the Intel® IPP Developer Reference to get more information on these APIs. Your feedback on extending the new threading functions is welcome.
  • The legacy Intel IPP threaded libraries are available by the custom installation, and the code written with these libraries will still work as before. However, the threaded library will not expand its threading functions, and the new threading will be developed only in the new Intel® IPP threading layer APIs. User’s application is recommended to use the new Intel® IPP threading layer APIs or implement the external threading in their applications.

System Requirements

For information about the Intel® IPP system requirements, please visit Intel® Integrated Performance Primitives (Intel® IPP) 2018 System Requirements page.

2017

Update 3

Release Notes

What's New in Intel® IPP 2017 Update 3:

  • Fixed some known problems in Intel® IPP Cryptography functions
  • Added support for Microsoft Visual Studio* 2017 on Windows*.
  • Added Support for Conda* repositories installation.

Update 2

Release Notes

What's New in Intel® IPP 2017 Update 2:

  • Added the new functions in ZLIB to support the user-defined Huffman tables, which allows to increase ZLIB compression ratio at the fastest compression level.
  • Increased LZO compression performance by 20% t0 50%. Added level 999 support in LZO decompression.
  • Introduced support for Intel® Xeon Phi™ processor x200 (formerly Knights Landing) leverage boot mode in the Intel IPP examples.
  • Added an example code on building custom dispatcher for the processor-specific optimization codes.
  • Fixed a number of internal and external defects. Visit the Intel® IPP 2017 bug fixes for more information.

Update 1

Release Notes

What's New in Intel® IPP 2017 Update 1:

  • Added Support of Intel® Xeon Phi™ processor x200 (formerly Knights Landing) leverage boot mode on Windows.
  • Added the following new functions in the cryptography domain:
    • Added functions for the finite field GF(p) arithmetic, and the elliptic curves over the finite field GF(p).
    • Added ippsECCPBindGxyTblStd functions that allow to control memory size for the elliptic curves over GF(p).
  • Fixed a number of internal and external defects. Visit the Intel® IPP 2017 bug fixes for more information.

Initial Release

Release Notes

What's New in Intel® IPP 2017:

  • Added Support of Intel® Xeon Phi™ processor x200 (formerly Knights Landing) leverage boot mode on Windows.
  • Added Intel® IPP Platform-Aware APIs to support 64-bit parameters for image dimensions and vector length on 64-bit platforms and 64-bit operating systems:
    • This release provides 64-bit data length support in the memory allocation, data sorting, image resizing, and image arithmetic functions.
    • Intel® IPP Platform-Aware APIs support external tiling and threading by processing tiled images, which enables you to create effective parallel pipelines at the application level.
  • Introduced new Integration Wrappers APIs for some image processing and computer vision functions as a technical preview. The wrappers provide the easy-to-use C and C++ APIs for Intel® IPP functions, and they are available as a separate download in the form of source and pre-built binaries.
  • Performance and Optimization:
    • Extended optimization for Intel® Advanced Vector Extensions 512 (Intel® AVX-512) instruction set on Intel® Many Integrated Core Architectures (Intel® MIC Architectures). Please see the Intel® IPP Functions Optimized for Intel® AVX-512 article for more information.
    • Extended optimization for Intel® AVX-512 instruction set on Intel® Xeon® processors.
    • Extended optimization for Intel® Advanced Vector Extensions 2 (Intel® AVX2) instruction set on the 6th Generation Intel® Core™ processors. Please see the Intel® IPP Functions Optimized for Intel® AVX2 article for more information.
    • Extended optimization for Intel® Streaming SIMD Extensions 4.2 (Intel® SSE4.2) instruction set on Intel® Atom™ processors.
  • Data Compression:
    • Added the patch files for the zlib source to provide drop-in optimization with Intel® IPP functions. The patches now supports zlib version 1.2.5.3, 1.2.6.1, 1.2.7.3 and 1.2.8.
    • Significantly improved performance of zlib compression functions on the standard compression modes.
    • Introduced a new fastest zlib data compression mode, which can significantly improve compression performance with only a small sacrifice in compression ratio.
  • Signal Processing:
    • Added the ippsIIRIIR functions that perform zero-phase digital IIR filtering.
    • Added 64-bit data length support to the ippsSortRadixAscend and ippsSortRadixDescend functions.
    • Added unsigned integer data support to the ippsSortRadixAscend, ippsSortRadixDescend, ippsSortRadixIndexAscend and ippsSortRadixIndexDescend functions.
  • Image Processing:
    • Added the ippiScaleC functions to support image data scaling and shifting for different data types by using 64-bit floating multiplier and offset.
    • Added the ippiMulC64f functions to support image data multiplication by a 64-bit floating point value.
  • Removed the tutorial from the installation package, and its sample code and documentation are now provided online.
  • Threading Notes: Though Intel® IPP threaded libraries are not installed by default, these threaded libraries are available by the custom installation, so the code written with these libraries will still work as before. However, the multi-threaded libraries are deprecated and moving to external threading is recommended. Your feedback on this is welcome.
  • Installation on IA-32 architecture hosts is no longer supported, and the Intel IPP packages for Intel® 64 architecture hosts include both 64-bit and 32-bit Intel IPP libraries.

9.0

Update 4

Release Notes

What's New in Intel® IPP 9.0 Update 4:

Update 3

Release Notes

What's New in Intel® IPP 9.0 Update 3:

  • Improved zlib decompression performance for small data for Intel® 64 architectures.
  • Fixed a number of internal and external defects,including the memory corruption problem on ippiSet_16u_C1R functions.

Update 2

Release Notes

What's New in Intel® IPP 9.0 Update 2:

  • Image Processing:
    • Added the contiguous volume format (C1V) support to the following 3D data processing functions: ipprWarpAffine, ipprRemap, and ipprFilter.
    • Added the ippiFilterBorderSetMode function to support high accuracy rounding mode in ippiFilterBorder.
    • Added the ippiCopyMirrorBorder function for copying the image values by adding the mirror border pixels.
    • Added mirror border support to the following filtering functions: ippiFilterBilateral, ippiFilterBoxBorder, ippiFilterBorder, ippiFilterSobel, and ippiFilterScharr.
    • Kernel coefficients in the ippiFilterBorder image filtering functions are used in direct order, which is different from the ippiFilter functions in the previous releases.
  • Computer Vision:
    • Added 32-bit floating point input data support to the ippiSegmentWatershed function.
    • Added mirror border support to the following filtering functions: ippiFilterGaussianBorder, ippiFilterLaplacianBorder, ippiMinEigenVal, ippiHarrisCorner, ippiPyramidLayerDown, and ippiPyramidLayerUp.
  • Signal Processing:
    • Added the ippsThreshold_LTAbsVal function, which uses the vector absolute value.
    • Added the ippsIIRIIR64f functions to perform zero-phase digital IIR filtering.
  • The multi-threaded libraries only depend on the Intel® OpenMP* libraries; their dependencies on the other Intel® Compiler runtime libraries were removed.
  • Fixed a number of internal and external defects.

Update 1

Release Notes

What's New in Intel® IPP 9.0 Update 1:

  • Enabled stack protection to enhance security of the Intel® IPP functions at Linux*. To link with Intel® IPP libraries, glibc version 2.4 or higher is now required.
  • Added the following new functions in the Signal Processing, Color Conversion and Cryptography domains:
    • The in-place functions on normalizing the elements of a vector: ippsNormalize.
    • The functions on computing the minimum or maximum absolute value of a vector: ippsMinAbs and ippsMaxAbs.
    • The functions on BGR to YCbCr420 color format conversion: ippiBGRToYCbCr420.
    • The functions on pseudorandom number generation optimized by the Intel RDRAND instruction.
  • Optimized the following functions on Intel® Advanced Vector Extensions 2 (Intel® AVX2) both for Intel® 64 and IA-32 Architectures:
    • Signal Processing: ippsSumLn, ippsNormalize, ippsMinAbs, and ippsMaxAbs.
    • Image Processing: ippiConvert_32s16s, ippiHOG_16s32f_C1R, and ippiSwapChannels_32s_C3C4R.
    • Color Conversion: ippiColorToGray and YCbCr to RGB/BGR conversion functions.
  • Improved the LZO decompression function ippsDecodeLZO performance for Intel® Quark™ processors.
  • Fixed the position-independent code (PIC) problem in the Linux* dynamic libraries. The share libraries now provide the full PIC symbols.

Initial Release

Release Notes

What's New in Intel® IPP 9.0:

  • Extended optimization for Intel® Advanced Vector Extensions 512 (Intel® AVX-512) instruction set in the Computer Vision and Image Processing functions.
  • Extended optimization for Intel® Atom™ processors in the Computer Vision and Image Processing functions.
  • Added optimization for Intel® Quark™ processors to the Cryptography and Data Compression functions.
  • Introduced the new Cryptography functions for SM2/SM3/SM4 algorithms.
  • Added a custom dynamic library building tool, which enables users to build the dynamic library containing the selected Intel® IPP functions.
  • Added the new APIs to support external threading.
  • Improved the CPU dispatcher by using target processor features instead of processor types. The static linkage does not require to explicitly call the processor initialization function now.
  • Provided the new native libraries for 64-bit Android* applications, and replaced the old ones from the Linux* binary.
  • Removed internal memory allocation in the single-threaded libraries.
  • The single-threaded libraries removed the dependency on the Intel® Compiler runtime libraries. The multi-threaded libraries only depends on the Intel® OpenMP* libraries.
  • Image Processing domain changes:
    • New implementation of perspective warping functions.
    • New image filtering functions with border support: ippiFilterMedianBorder, ippiFilterMaxBorder, ippiFilterMinBorder, ippiFilterLaplaceBorder, ippiFilterHipassBorder, ippiFilterSharpenBorder.
    • New implementation of image rotation functionality with the ippiGetRotateTransform and ippiWarpAffine APIs.
    • 3D data processing functions are now available in the image processing domain.
  • Some Intel IPP domains and functions are now legacy:
    • The following Intel® IPP domains are legacy, and they are removed from the main packages: Audio Coding (ippAC), Video Coding (ippVC), Speech Coding (ippSC), Image Compression (ippJP), Data Integrity (ippDI), Generated Transforms (ippGEN), Small Matrices (ippMX), and Realistic Rendering (ippRR). That means these domains won't be optimized for new architectures (the latest optimizations are targeted for Intel® Advanced Vector Extensions 2) and any newly detected performance and stability issues won't be fixed. Find the alternative suggestion for the deprecated functions.
    • Some Intel IPP functions, including the functions for internal memory allocation, are deprecated in the main package. See the alternatives for the deprecated functions.
  • Fixed a number of internal and external defects.

Product and Performance Information

1

Intel's compilers may or may not optimize to the same degree for non-Intel microprocessors for optimizations that are not unique to Intel microprocessors. These optimizations include SSE2, SSE3, and SSSE3 instruction sets and other optimizations. Intel does not guarantee the availability, functionality, or effectiveness of any optimization on microprocessors not manufactured by Intel. Microprocessor-dependent optimizations in this product are intended for use with Intel microprocessors. Certain optimizations not specific to Intel microarchitecture are reserved for Intel microprocessors. Please refer to the applicable product User and Reference Guides for more information regarding the specific instruction sets covered by this notice.

Notice revision #20110804