mpfi 1.5.3+ds-3 source package in Ubuntu

Changelog

mpfi (1.5.3+ds-3) unstable; urgency=medium

  * Debianization:
    - debian/control:
      - debhelper, bump to 12;
      - Standards Version, bump to 4.4.0 (no change);
      - libmpfi0-dev, discard (Closes: #940733);
      - Vcs-* fields, migration to Salsa;
    - debian/libmpfi0.symbols:
      - Build-Depends-Package, introduce;
    - debian/rules:
      - get-orig-source target, discard.

 -- Jerome Benoit <email address hidden>  Thu, 26 Sep 2019 20:13:03 +0000

Upload details

Uploaded by:
Debian Science Team
Uploaded to:
Sid
Original maintainer:
Debian Science Team
Architectures:
any all
Section:
math
Urgency:
Medium Urgency

See full publishing history Publishing

Series Pocket Published Component Section
Focal release universe math

Downloads

File Size SHA-256 Checksum
mpfi_1.5.3+ds-3.dsc 2.9 KiB f476802b52bad178a1a080efb9d34fc693d62a13e5df9ba6f937c892a1d53cf6
mpfi_1.5.3+ds.orig.tar.xz 107.9 KiB 34b786105f0ba1d39ed76b5861ed63bce228696b0ef17095f35e68fcb439aabd
mpfi_1.5.3+ds-3.debian.tar.xz 8.7 KiB f1f466b341486fcb006b6a9f949039e59c6087a54c55554b04d22fc66e12406b

Available diffs

No changes file available.

Binary packages built by this source

libmpfi-dev: multiple precision floating-point interval computation library -- libdev

 This package provides a C library of functions for interval arithmetic
 computations with arbitrary precision.
 .
 The basic principle of interval arithmetic consists in enclosing every number
 by an interval containing it and being representable by machine numbers: for
 instance it can be stored as its lower and upper endpoints and these bounds
 are machine numbers, or as a centre and a radius which are machine numbers.
 .
 The arithmetic operations are extended for interval operands in such a way
 that the exact result of the operation belongs to the computed interval.
 .
 The purpose of an arbitrary precision interval arithmetic is on the one hand
 to get guaranteed results, thanks to interval computation, and on the other
 hand to obtain accurate results, thanks to multiple precision arithmetic. The
 MPFI library is built upon MPFR in order to benefit from the correct roundings
 provided by MPFR. Further advantages of using MPFR are its portability and
 compliance with the IEEE 754 standard for floating-point arithmetic.
 .
 This package provides the static library and symbolic links needed for
 development.

libmpfi-dev-common: multiple precision floating-point interval computation library -- headers

 This package provides a C library of functions for interval arithmetic
 computations with arbitrary precision.
 .
 The basic principle of interval arithmetic consists in enclosing every number
 by an interval containing it and being representable by machine numbers: for
 instance it can be stored as its lower and upper endpoints and these bounds
 are machine numbers, or as a centre and a radius which are machine numbers.
 .
 The arithmetic operations are extended for interval operands in such a way
 that the exact result of the operation belongs to the computed interval.
 .
 The purpose of an arbitrary precision interval arithmetic is on the one hand
 to get guaranteed results, thanks to interval computation, and on the other
 hand to obtain accurate results, thanks to multiple precision arithmetic. The
 MPFI library is built upon MPFR in order to benefit from the correct roundings
 provided by MPFR. Further advantages of using MPFR are its portability and
 compliance with the IEEE 754 standard for floating-point arithmetic.
 .
 This package provides the headers needed by developers.

libmpfi-doc: multiple precision floating-point interval computation library -- doc

 This package provides a C library of functions for interval arithmetic
 computations with arbitrary precision.
 .
 The basic principle of interval arithmetic consists in enclosing every number
 by an interval containing it and being representable by machine numbers: for
 instance it can be stored as its lower and upper endpoints and these bounds
 are machine numbers, or as a centre and a radius which are machine numbers.
 .
 The arithmetic operations are extended for interval operands in such a way
 that the exact result of the operation belongs to the computed interval.
 .
 The purpose of an arbitrary precision interval arithmetic is on the one hand
 to get guaranteed results, thanks to interval computation, and on the other
 hand to obtain accurate results, thanks to multiple precision arithmetic. The
 MPFI library is built upon MPFR in order to benefit from the correct roundings
 provided by MPFR. Further advantages of using MPFR are its portability and
 compliance with the IEEE 754 standard for floating-point arithmetic.
 .
 This package provides the user manual.

libmpfi0: multiple precision floating-point interval computation library -- lib

 This package provides a C library of functions for interval arithmetic
 computations with arbitrary precision.
 .
 The basic principle of interval arithmetic consists in enclosing every number
 by an interval containing it and being representable by machine numbers: for
 instance it can be stored as its lower and upper endpoints and these bounds
 are machine numbers, or as a centre and a radius which are machine numbers.
 .
 The arithmetic operations are extended for interval operands in such a way
 that the exact result of the operation belongs to the computed interval.
 .
 The purpose of an arbitrary precision interval arithmetic is on the one hand
 to get guaranteed results, thanks to interval computation, and on the other
 hand to obtain accurate results, thanks to multiple precision arithmetic. The
 MPFI library is built upon MPFR in order to benefit from the correct roundings
 provided by MPFR. Further advantages of using MPFR are its portability and
 compliance with the IEEE 754 standard for floating-point arithmetic.
 .
 This package provides the dynamic library.

libmpfi0-dbgsym: No summary available for libmpfi0-dbgsym in ubuntu groovy.

No description available for libmpfi0-dbgsym in ubuntu groovy.