nvidia-cuda-toolkit 10.1.243-3 source package in Ubuntu

Changelog

nvidia-cuda-toolkit (10.1.243-3) experimental; urgency=medium

  [ Graham Inggs ]
  * Switch back to openjdk-8-jre for nvidia-visual-profiler and nvidia-nsight.

 -- Andreas Beckmann <email address hidden>  Sat, 11 Apr 2020 14:56:37 +0200

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Uploaded by:
Debian NVIDIA Maintainers
Uploaded to:
Experimental
Original maintainer:
Debian NVIDIA Maintainers
Architectures:
amd64 ppc64el all
Section:
devel
Urgency:
Medium Urgency

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Focal: [FULLYBUILT] amd64 [FULLYBUILT] ppc64el

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File Size SHA-256 Checksum
nvidia-cuda-toolkit_10.1.243-3.dsc 6.2 KiB a3a761fadea7f44b6aeb44d3f7f6bd0cf92956ee1ed07f95c8337270e7f5b4b1
nvidia-cuda-toolkit_10.1.243.orig-amd64.tar.xz 1.3 GiB 8432a081ca1485db7d779d4339391478b8fb3e7c12f979b0931aa191e14923aa
nvidia-cuda-toolkit_10.1.243.orig-ppc64el.tar.xz 1.1 GiB 87b2861d6320d81fdfd957465f20480d715f6978e25a582f809ac21196f5b60b
nvidia-cuda-toolkit_10.1.243.orig.tar.xz 196 bytes 343486740b3fd891b36e052733c7e68f85fd5902b2df1b68305b0bb52d121389
nvidia-cuda-toolkit_10.1.243-3.debian.tar.xz 60.4 KiB 881d60ed369f1090837aded69cf941a0e4e4ddc482b7bb63f5d74f9d128e4e7c

Available diffs

  • diff from 10.1.243-2 to 10.1.243-3 (pending)

No changes file available.

Binary packages built by this source

libaccinj64-10.1: NVIDIA ACCINJ Library (64-bit)

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 ACCINJ is the OpenACC internal library for profiling.
 .
 This package contains the 64-bit ACCINJ runtime library.

libcublas10: NVIDIA cuBLAS Library

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 The cuBLAS library is an implementation of BLAS (Basic Linear Algebra
 Subprograms) on top of the NVIDIA CUDA runtime. It allows the user to access
 the computational resources of NVIDIA Graphics Processing Unit (GPU), but
 does not auto-parallelize across multiple GPUs.
 .
 This package contains the cuBLAS runtime library.

libcublaslt10: NVIDIA cuBLASLt Library

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 The cuBLASLt library is a lightweight GEMM library with a flexible API and
 tensor core support for INT8 inputs and FP16 CGEMM split-complex matrix
 multiplication.
 .
 This package contains the cuBLASLt runtime library.

libcudart10.1: No summary available for libcudart10.1 in ubuntu groovy.

No description available for libcudart10.1 in ubuntu groovy.

libcufft10: NVIDIA cuFFT Library

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 The FFT is a divide-and-conquer algorithm for efficiently computing discrete
 Fourier transforms of complex or real-valued data sets. It is one of the most
 important and widely used numerical algorithms in computational physics and
 general signal processing. The cuFFT library provides a simple interface for
 computing FFTs on an NVIDIA GPU, which allows users to quickly leverage the
 floating-point power and parallelism of the GPU in a highly optimized and
 tested FFT library.
 .
 This package contains the cuFFT runtime library.

libcufftw10: NVIDIA cuFFTW Library

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 The FFT is a divide-and-conquer algorithm for efficiently computing discrete
 Fourier transforms of complex or real-valued data sets. It is one of the most
 important and widely used numerical algorithms in computational physics and
 general signal processing. The cuFFT library provides a simple interface for
 computing FFTs on an NVIDIA GPU, which allows users to quickly leverage the
 floating-point power and parallelism of the GPU in a highly optimized and
 tested FFT library.
 .
 This package contains the cuFFTW runtime library.

libcuinj64-10.1: NVIDIA CUINJ Library (64-bit)

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 CUINJ is the CUDA internal library for profiling.
 .
 This package contains the 64-bit CUINJ runtime library.

libcupti-dev: NVIDIA CUDA Profiler Tools Interface development files

 The CUDA Profiler Tools Interface (CUPTI) enables the creation of
 profiling and tracing tools that target CUDA applications. CUPTI
 provides a set of APIs targeted at ISVs creating profilers and other
 performance optimization tools. The CUPTI APIs are not intended to be
 used by developers in their CUDA applications.
 .
 This package contains the development files: headers and libraries.

libcupti-doc: No summary available for libcupti-doc in ubuntu groovy.

No description available for libcupti-doc in ubuntu groovy.

libcupti10.1: NVIDIA CUDA Profiler Tools Interface runtime library

 The CUDA Profiler Tools Interface (CUPTI) enables the creation of
 profiling and tracing tools that target CUDA applications. CUPTI
 provides a set of APIs targeted at ISVs creating profilers and other
 performance optimization tools. The CUPTI APIs are not intended to be
 used by developers in their CUDA applications.
 .
 This package contains the runtime library.

libcurand10: No summary available for libcurand10 in ubuntu groovy.

No description available for libcurand10 in ubuntu groovy.

libcusolver10: NVIDIA cuSOLVER Library

 The cuSOLVER library contains LAPACK-like functions in dense and sparse
 linear algebra, including linear solver, least-square solver and eigenvalue
 solver.
 .
 This package contains the cuSOLVER runtime library.

libcusolvermg10: NVIDIA cuSOLVERmg Library

 The cuSOLVER library contains LAPACK-like functions in dense and sparse
 linear algebra, including linear solver, least-square solver and eigenvalue
 solver.
 .
 This package contains the cuSOLVERmg runtime library.

libcusparse10: No summary available for libcusparse10 in ubuntu groovy.

No description available for libcusparse10 in ubuntu groovy.

libnppc10: No summary available for libnppc10 in ubuntu groovy.

No description available for libnppc10 in ubuntu groovy.

libnppial10: NVIDIA Performance Primitives lib for Image Arithmetic and Logic

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Arithmetic and Logic operations, which is a sub-library of nppi.

libnppicc10: NVIDIA Performance Primitives lib for Image Color Conversion

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Color and sampling Conversion, which is a sub-library of nppi.

libnppicom10: NVIDIA Performance Primitives lib for Image Compression

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Compression, which is a sub-library of nppi.

libnppidei10: No summary available for libnppidei10 in ubuntu groovy.

No description available for libnppidei10 in ubuntu groovy.

libnppif10: No summary available for libnppif10 in ubuntu groovy.

No description available for libnppif10 in ubuntu groovy.

libnppig10: NVIDIA Performance Primitives lib for Image Geometry transforms

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Geometry transforms, which is a sub-library of nppi.

libnppim10: NVIDIA Performance Primitives lib for Image Morphological operations

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Morphological operations, which is a sub-library of nppi.

libnppist10: NVIDIA Performance Primitives lib for Image Statistics

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Statistics and Linear Transformation, which is a sub-library of nppi.

libnppisu10: NVIDIA Performance Primitives lib for Image Support

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Support, which is a sub-library of nppi.

libnppitc10: NVIDIA Performance Primitives lib for Image Threshold and Compare

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 Image Threshold and Compare, which is a sub-library of nppi.

libnpps10: NVIDIA Performance Primitives for signal processing runtime library

 NVIDIA NPP is a library of functions for performing CUDA accelerated
 processing. The initial set offunctionality in the library focuses on imaging
 and video processing and is widely applicable for developers in these areas.
 NPP will evolve over time to encompass more of the compute heavy tasks in a
 variety of problem domains. The NPP library is written to maximize
 flexibility, while maintaining high performance.
 .
 This package contains the NVIDIA Performance Primitives runtime library for
 signal processing.

libnvblas10: NVBLAS runtime library

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 The NVBLAS Library is a GPU-accelerated Library that implements BLAS (Basic
 Linear Algebra Subprograms). It can accelerate most BLAS Level-3 routines by
 dynamically routing BLAS calls to one or more NVIDIA GPUs present in the
 system, when the characteristics of the call make it to speedup on a GPU.

libnvgraph10: NVIDIA Graph Analytics library (nvGRAPH)

 The NVIDIA Graph Analytics library (nvGRAPH) comprises of parallel
 algorithms for high performance analytics on graphs with up to 2 billion
 edges. nvGRAPH makes it possible to build interactive and high throughput
 graph analytics applications.
 .
 nvGRAPH supports three widely-used algorithms:
  * [Page Rank] is most famously used in search engines, and also used in
    social network analysis, recommendation systems, and for novel uses
    in natural science when studying the relationship between proteins
    and in ecological networks.
  * [Single Source Shortest Path] is used to identify the fastest path from
    A to B through a road network, and can also be used for a optimizing
    a wide range of other logistics problems.
  * [Single Source Widest Path] is used in domains like IP traffic routing
    and traffic-sensitive path planning.
 .
 In addition, the nvGRAPH semi-ring SPMV operations can be used to build
 a wide range of innovative graph traversal algorithms.
 .
 nvGRAPH accelerates analysis of large graphs by making efficient use of
 the massive parallelism available in NVIDIA Tesla GPUs. The size of a
 graph in memory is dominated by the number of edges.
 An M40 with 24 GB can support a graph of up to 2 billion edges.

libnvidia-ml-dev: NVIDIA Management Library (NVML) development files

 The NVIDIA Management Library (NVML) provides a monitoring and management API.
 It provides a direct access to the queries and commands exposed via nvidia-smi.
 .
 This package contains the header file and depends on the driver-provided
 library.

libnvjpeg10: NVIDIA JPEG library (nvJPEG)

 The nvJPEG 1.0 library provides high-performance, GPU accelerated JPEG
 decoding functionality for image formats commonly used in deep learning and
 hyperscale multimedia applications. The library offers single and batched JPEG
 decoding capabilities which efficiently utilize the available GPU resources
 for optimum performance; and the flexibility for users to manage the memory
 allocation needed for decoding.

libnvrtc10.1: No summary available for libnvrtc10.1 in ubuntu groovy.

No description available for libnvrtc10.1 in ubuntu groovy.

libnvtoolsext1: No summary available for libnvtoolsext1 in ubuntu groovy.

No description available for libnvtoolsext1 in ubuntu groovy.

libnvvm3: NVIDIA NVVM Library

 NVIDIA's CUDA Compiler (NVCC) is based on the widely used LLVM open source
 compiler infrastructure.
 .
 The NVVM library is used by NVCC to compile CUDA binary code to run on NVIDIA
 GPUs.
 .
 This package contains the NVIDIA NVVM runtime library.

nsight-compute: No summary available for nsight-compute in ubuntu groovy.

No description available for nsight-compute in ubuntu groovy.

nsight-systems: No summary available for nsight-systems in ubuntu groovy.

No description available for nsight-systems in ubuntu groovy.

nvidia-cuda-dev: No summary available for nvidia-cuda-dev in ubuntu groovy.

No description available for nvidia-cuda-dev in ubuntu groovy.

nvidia-cuda-doc: No summary available for nvidia-cuda-doc in ubuntu groovy.

No description available for nvidia-cuda-doc in ubuntu groovy.

nvidia-cuda-gdb: NVIDIA CUDA Debugger (GDB)

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 This package contains the cuda-gdb debugger.

nvidia-cuda-toolkit: No summary available for nvidia-cuda-toolkit in ubuntu groovy.

No description available for nvidia-cuda-toolkit in ubuntu groovy.

nvidia-cuda-toolkit-gcc: NVIDIA CUDA development toolkit (GCC compatibility)

 The Compute Unified Device Architecture (CUDA) enables NVIDIA
 graphics processing units (GPUs) to be used for massively parallel
 general purpose computation.
 .
 This package provides the /usr/bin/cuda-gcc, /usr/bin/cuda-g++ symlinks to
 simplify building packages that need to be built with a CUDA-compatible
 compiler.

nvidia-nsight: NVIDIA Nsight Eclipse Edition

 NVIDIA Nsight Eclipse Edition is a full-featured IDE powered by the Eclipse
 platform that provides an all-in-one integrated environment to edit, build,
 debug and profile CUDA-C applications.
 Nsight Eclipse Edition supports a rich set of commercial and free plugins.

nvidia-opencl-dev: No summary available for nvidia-opencl-dev in ubuntu groovy.

No description available for nvidia-opencl-dev in ubuntu groovy.

nvidia-profiler: No summary available for nvidia-profiler in ubuntu groovy.

No description available for nvidia-profiler in ubuntu groovy.

nvidia-visual-profiler: No summary available for nvidia-visual-profiler in ubuntu groovy.

No description available for nvidia-visual-profiler in ubuntu groovy.