Modules avx512: Difference between revisions

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| align="center" | bio
| align="center" | bio
| align="center" | 3.0.4
| align="center" | 3.0.4
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: BayesAss: Bayesian Inference of Recent Migration Using Multilocus Genotypes Homepage: http://www.rannala.org/?page_id=245 URL: http://www.rannala.org/?page_id=245 Keyword:bio<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: BayesAss: Bayesian Inference of Recent Migration Using Multilocus Genotypes Homepage: http://www.rannala.org/?page_id=245 Keyword:bio<br /><br /><br /></div>
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| align="center" | [http://www.rannala.org/inference-of-recent-migration bayesass3-snps]
| align="center" | [http://www.rannala.org/inference-of-recent-migration bayesass3-snps]
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| align="center" | phys
| align="center" | phys
| align="center" | 1.2.5
| align="center" | 1.2.5
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Boltzmann Transport Properties (BoltzTraP) is a program for calculating the semi-classic transport coefficients. Homepage: http://www.icams.de/content/departments/cmat/boltztrap/ URL: http://www.icams.de/content/departments/cmat/boltztrap/ Keyword:phys<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Boltzmann Transport Properties (BoltzTraP) is a program for calculating the semi-classic transport coefficients. Homepage: http://www.icams.de/content/departments/cmat/boltztrap/ Keyword:phys<br /><br /><br /></div>
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| align="center" | [https://www.boost.org/ boost]
| align="center" | [https://www.boost.org/ boost]
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| align="center" | bio
| align="center" | bio
| align="center" | 1.30, 1.31
| align="center" | 1.30, 1.31
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: FragGeneScan is an application for finding (fragmented) genes in short reads. Homepage: http://omics.informatics.indiana.edu/FragGeneScan/ URL: http://omics.informatics.indiana.edu/FragGeneScan/ Keyword:bio<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: FragGeneScan is an application for finding (fragmented) genes in short reads. Homepage: http://omics.informatics.indiana.edu/FragGeneScan/ Keyword:bio<br /><br /><br /></div>
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| align="center" | [http://grigoriefflab.janelia.org/frealign frealign]
| align="center" | [http://grigoriefflab.janelia.org/frealign frealign]
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| align="center" | [https://sourceforge.net/projects/matio/ matio]
| align="center" | [https://sourceforge.net/projects/matio/ matio]
| align="center" | io
| align="center" | io
| align="center" | 1.5.2, 1.5.19, 1.5.26
| align="center" | 1.5.19, 1.5.26
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: matio is an C library for reading and writing Matlab MAT files. Homepage: https://sourceforge.net/projects/matio/ URL: https://sourceforge.net/projects/matio/ Keyword:io<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: matio is an C library for reading and writing Matlab MAT files. Homepage: https://sourceforge.net/projects/matio/ URL: https://sourceforge.net/projects/matio/ Keyword:io<br /><br /><br /></div>
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| align="center" | bio
| align="center" | bio
| align="center" | 2.0.1
| align="center" | 2.0.1
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Minimac3 is a lower memory and more computationally efficient implementation of the genotype imputation algorithms in minimac and minimac2. Minimac3 is designed to handle very large reference panels in a more computationally efficient way with no loss of accuracy. Homepage: http://genome.sph.umich.edu/wiki/Minimac3 Keyword:bio<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Minimac3 is a lower memory and more computationally efficient implementation of the genotype imputation algorithms in minimac and minimac2. Minimac3 is designed to handle very large reference panels in a more computationally efficient way with no loss of accuracy. Homepage: http://genome.sph.umich.edu/wiki/Minimac3 URL: http://genome.sph.umich.edu/wiki/Minimac3 Keyword:bio<br /><br /><br /></div>
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| align="center" | [https://genome.sph.umich.edu/wiki/Minimac4 minimac4]
| align="center" | [https://genome.sph.umich.edu/wiki/Minimac4 minimac4]
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| align="center" | -
| align="center" | -
| align="center" | 6.0.1.5, 8.6.1.6
| align="center" | 6.0.1.5, 8.6.1.6
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: NVIDIA TensorRT is a platform for high-performance deep learning inference Homepage: https://developer.nvidia.com/tensorrt URL: https://developer.nvidia.com/tensorrt Compatible modules: python/3.10, python/3.11<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: NVIDIA TensorRT is a platform for high-performance deep learning inference Homepage: https://developer.nvidia.com/tensorrt URL: https://developer.nvidia.com/tensorrt Compatible modules: python/3.8, python/3.9, python/3.10, python/3.11<br /><br /><br /></div>
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| align="center" | [https://github.com/tesseract-ocr/tesseract tesseract]
| align="center" | [https://github.com/tesseract-ocr/tesseract tesseract]

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