libholoscan
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public |
NVIDIA Holoscan runtime library
|
2025-07-01 |
holoscan
|
public |
NVIDIA Holoscan python bindings
|
2025-07-01 |
cuda-nvvp
|
public |
NVIDIA Visual Profiler to visualize and optimize the performance of your application.
|
2025-06-05 |
cuda-nvprof
|
public |
Tool for collecting and viewing CUDA application profiling data
|
2025-06-05 |
arm-variant
|
public |
A meta-package to select the ARM variant.
|
2025-06-04 |
libnvpl-tensor0
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public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-tensor-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-sparse0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-sparse-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-scalapack0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-scalapack-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-rand0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-rand-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-lapack0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-lapack-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-fft0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-fft-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-blas0
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-blas-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
libnvpl-common-dev
|
public |
The NVIDIA Performance Libraries (NVPL) are a collection of high performance mathematical libraries optimized for the NVIDIA Grace Armv9.0 architecture.
|
2025-05-29 |
_nvpl_dev_mutex
|
public |
The NVIDIA Performance Libraries (NVPL). For convenience only! Not to be used in host requirements for conda recipes!
|
2025-05-29 |
libnvpl-dev
|
public |
The NVIDIA Performance Libraries (NVPL). For convenience only! Not to be used in host requirements for conda recipes!
|
2025-05-29 |
libcal-dev
|
public |
NVIDIA cuBLASMp is a high performance, multi-process, GPU accelerated library for distributed basic dense linear algebra.
|
2025-05-15 |
libcal
|
public |
NVIDIA cuBLASMp is a high performance, multi-process, GPU accelerated library for distributed basic dense linear algebra.
|
2025-05-15 |
libcufftmp-dev
|
public |
The NVIDIA cuFFTMp (cuFFT Multi-process) library
|
2025-04-04 |