spherepack 3.3~a1-5build1 source package in Ubuntu

Changelog

spherepack (3.3~a1-5build1) lunar; urgency=medium

  * No-change rebuild with Python 3.11 only

 -- Graham Inggs <email address hidden>  Wed, 22 Mar 2023 05:51:19 +0000

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Uploaded by:
Graham Inggs
Uploaded to:
Lunar
Original maintainer:
Alastair McKinstry
Architectures:
any
Section:
utils
Urgency:
Medium Urgency

See full publishing history Publishing

Series Pocket Published Component Section
Mantic release universe utils
Lunar release universe utils

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File Size SHA-256 Checksum
spherepack_3.3~a1.orig.tar.xz 138.3 KiB bcbfeb8d214fac981e3b143289e55c791c200337a9cbbd0edc9672fbfbf3d5ad
spherepack_3.3~a1-5build1.debian.tar.xz 20.6 KiB bd07b421413acc0b646ceaaac125e70d9a7ca65df3af2c9038eed12188fe5f9e
spherepack_3.3~a1-5build1.dsc 2.1 KiB d93b93dae1c2e25cc73349d50d6b5f4f2df87d04f029842603a8e19316d47e2a

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Binary packages built by this source

libsphere-dev: Development files for Spherepack scientific library

 SPHEREPACK is a collection of FORTRAN programs that facilitates computer
 modeling of geophysical processes. The package contains programs for computing
 certain common differential operators including divergence, vorticity,
 gradients, and the Laplacian of both scalar and vector functions. Programs are
 also available for inverting these operators. For example, given divergence
 and vorticity, the package can be used to compute the velocity components.
 The Laplacian can also be inverted and therefore the package can be used
 to solve both the scalar and vector Poisson equations. Its use in model
 development is demonstrated by a sample program that solves the time-dependent
 non-linear shallow-water equations. Accurate solutions are obtained via the
 spectral method that uses both scalar and vector spherical harmonic transforms
 that are available to the user. The package also contains utility programs
 for computing the associated Legendre functions, Gauss points and weights,
 and multiple fast Fourier transforms. Programs are provided for both
 equally-spaced and Gauss distributed latitudinal points as well as programs
 that transfer data between these grids.

libsphere0d: Spherepack scientific library for geophysical processes

 SPHEREPACK is a collection of FORTRAN programs that facilitates computer
 modeling of geophysical processes. The package contains programs for computing
 certain common differential operators including divergence, vorticity,
 gradients, and the Laplacian of both scalar and vector functions.
 .
 This package contains the shared library, libsphere.

libsphere0d-dbgsym: debug symbols for libsphere0d
python3-sphere: Python3 interface to the spherepack scientific library.

 This is a python3 interface to spherepack, a library for geophysical processes.

python3-sphere-dbgsym: debug symbols for python3-sphere