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Upstream software project

splinter

Python3 bindings for splinter

About splinter

Python3 bindings for splinter

This project links 9 native package records across 3 recorded operating-system releases. Compare the retained versions and architectures below, then open the package for your own release.

These are catalog observations, not a guarantee of installation, compatibility, or upstream support.

Project pictures and package coverage

splinter repository preview from GitHub
Project repository preview, supplied by GitHub. Open source repository
openSUSE Leap 15.6: 3 package records; openSUSE Leap 16.0: 3 package records; openSUSE Tumbleweed: 3 package records. Catalog coverage diagram, not an application screenshot.splinter: recorded package coverageopenSUSE Leap 15.63 recordsopenSUSE Leap 16.03 recordsopenSUSE Tumbleweed3 records
OpenFactory diagram of linked package records. It is not an application screenshot.

Project identity

Project
splinter
Publisher
Not authoritatively mapped
Native package records
9
Operating systems
opensuse-leap-15-6, opensuse-leap-16-0, opensuse-tumbleweed
License expression
MPL-2.0
Metadata completeness
100/100 (not a software quality rating)
Source repository
Open source repository

Source-reported description

The fullest retained description is shown with its source. Distribution packaging descriptions may include downstream details.

SPLINTER (SPLine INTERpolation) is a library for multivariate function approximation implemented in C++. The library can be used for function approximation, regression and data smoothing. Currently, the library contains the following implementations: 1. tensor product B-splines, 2. radial basis functions, including the thin plate spline, and 3. polynomial regression. The coefficients in these models are computed using ordinary least squares (OLS). The name of the library, SPLINTER, originates from the tensor product B-spline implementation, which was the first of the methods to be implemented.

Description source

Packages by operating system

Compare recorded versions, then open a package for dependency, file, checksum, and repository evidence. Version strings are distribution-specific, not a ranking of newer software.

openSUSE Leap 15.6

  1. libsplinter-3-0

    openSUSE Leap 15.6 / System/Libraries / source splinter

    3.0-bp156.3.5

    A library for multivariate function approximation implemented in C++

    aarch64x86_64leap-15.6
  2. python3-splinter

    openSUSE Leap 15.6 / Development/Languages/Python / source splinter

    3.0-bp156.3.5

    Python3 bindings for splinter

    aarch64x86_64leap-15.6
  3. splinter-devel

    openSUSE Leap 15.6 / Development/Libraries/C and C++ / source splinter

    3.0-bp156.3.5

    Development files for splinter, a multivariate function approximation library

    aarch64x86_64leap-15.6

openSUSE Leap 16.0

  1. libsplinter-3-0

    openSUSE Leap 16.0 / System/Libraries / source splinter

    3.0-bp160.1.12

    A library for multivariate function approximation implemented in C++

    aarch64x86_64leap-16.0
  2. python3-splinter

    openSUSE Leap 16.0 / Development/Languages/Python / source splinter

    3.0-bp160.1.12

    Python3 bindings for splinter

    aarch64x86_64leap-16.0
  3. splinter-devel

    openSUSE Leap 16.0 / Development/Libraries/C and C++ / source splinter

    3.0-bp160.1.12

    Development files for splinter, a multivariate function approximation library

    aarch64x86_64leap-16.0

openSUSE Tumbleweed

  1. libsplinter-3-0

    openSUSE Tumbleweed / System/Libraries / source splinter

    3.0-4.5

    A library for multivariate function approximation implemented in C++

    x86_64tumbleweed
  2. python3-splinter

    openSUSE Tumbleweed / Development/Languages/Python / source splinter

    3.0-4.5

    Python3 bindings for splinter

    x86_64tumbleweed
  3. splinter-devel

    openSUSE Tumbleweed / Development/Libraries/C and C++ / source splinter

    3.0-4.5

    Development files for splinter, a multivariate function approximation library

    x86_64tumbleweed

Project resources and further reading

Mapping provenance

Only source-backed identity signals create public cross-OS links. A reviewer can later approve or dispute an inferred relationship without rewriting native package history.

No field-level source record is published yet.