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Source: nettle
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Source: nettle
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Section: libs
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Section: libs
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Priority: optional
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Priority: optional
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Maintainer: Magnus Holmgren <holmgren@debian.org>
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Maintainer: Magnus Holmgren <holmgren@debian.org>
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Build-Depends: dpkg-dev (>= 1.15.7), debhelper (>= 8.1.3),
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Build-Depends: dpkg-dev (>= 1.15.7), debhelper (>= 8.1.3),
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 libgmp10-dev, m4, autotools-dev (>= 20100122.1)
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 libgmp10-dev, m4, autotools-dev (>= 20100122.1)
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Standards-Version: 3.9.3
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Standards-Version: 3.9.3
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Vcs-Svn: svn://svn.kibibyte.se/nettle/trunk
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Vcs-Svn: svn://svn.kibibyte.se/nettle/trunk
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Vcs-Browser: http://svn.kibibyte.se/nettle
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Vcs-Browser: http://svn.kibibyte.se/nettle
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Homepage: http://www.lysator.liu.se/~nisse/nettle/
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Homepage: http://www.lysator.liu.se/~nisse/nettle/
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Package: libnettle4
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Package: libnettle4
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Architecture: any
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Architecture: any
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Multi-Arch: same
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Multi-Arch: same
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Pre-Depends: ${misc:Pre-Depends}
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Pre-Depends: ${misc:Pre-Depends}
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Description: low level cryptographic library (symmetric and one-way cryptos)
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Description: low level cryptographic library (symmetric and one-way cryptos)
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel
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 Python, Pike, ...), in applications like LSH or GnuPG, or even in kernel
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 space.
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 space.
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 .
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 .
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 It tries to solve a problem of providing a common set of cryptographic 
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 It tries to solve a problem of providing a common set of cryptographic 
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 algorithms for higher-level applications by implementing a
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 algorithms for higher-level applications by implementing a
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 doesn't do any memory allocation or I/O, it simply provides the
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 doesn't do any memory allocation or I/O, it simply provides the
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 cryptographic algorithms for the application to use in any environment and
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 cryptographic algorithms for the application to use in any environment and
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 in any way it needs.
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 in any way it needs.
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 .
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 .
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 This package contains the symmetric and one-way cryptographic
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 This package contains the symmetric and one-way cryptographic
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 algorithms. To avoid having this package depend on libgmp, the
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 algorithms. To avoid having this package depend on libgmp, the
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 asymmetric cryptos reside in a separate library, libhogweed.
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 asymmetric cryptos reside in a separate library, libhogweed.
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Package: libhogweed2
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Package: libhogweed2
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Architecture: any
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Architecture: any
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Multi-Arch: same
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Multi-Arch: same
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Pre-Depends: ${misc:Pre-Depends}
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Pre-Depends: ${misc:Pre-Depends}
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Description: low level cryptographic library (public-key cryptos)
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Description: low level cryptographic library (public-key cryptos)
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel
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 Python, Pike, ...), in applications like LSH or GnuPG, or even in kernel
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 space.
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 space.
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 .
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 .
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 It tries to solve a problem of providing a common set of cryptographic 
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 It tries to solve a problem of providing a common set of cryptographic 
46
 algorithms for higher-level applications by implementing a
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 algorithms for higher-level applications by implementing a
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 doesn't do any memory allocation or I/O, it simply provides the
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 doesn't do any memory allocation or I/O, it simply provides the
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 cryptographic algorithms for the application to use in any environment and
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 cryptographic algorithms for the application to use in any environment and
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 in any way it needs.
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 in any way it needs.
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 .
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 .
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 This package contains the asymmetric cryptographic algorithms, which,
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 This package contains the asymmetric cryptographic algorithms, which
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 require the GNU multiple precision arithmetic library (libgmp) for
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 require the GNU multiple precision arithmetic library (libgmp) for
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 their large integer computations.
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 their large integer computations.
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Package: nettle-dev
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Package: nettle-dev
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Section: libdevel
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Section: libdevel
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Architecture: any
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Architecture: any
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Depends: libnettle4 (= ${binary:Version}), libhogweed2 (= ${binary:Version}),
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Depends: libnettle4 (= ${binary:Version}), libhogweed2 (= ${binary:Version}),
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         libgmp10-dev, dpkg (>= 1.15.4) | install-info, ${misc:Depends}
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         libgmp10-dev, dpkg (>= 1.15.4) | install-info, ${misc:Depends}
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Replaces: libnettle-dev
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Replaces: libnettle-dev
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Conflicts: libnettle-dev
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Conflicts: libnettle-dev
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Description: low level cryptographic library (development files)
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Description: low level cryptographic library (development files)
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel
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 Python, Pike, ...), in applications like LSH or GnuPG, or even in kernel
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 space.
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 space.
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 .
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 .
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 It tries to solve a problem of providing a common set of cryptographic 
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 It tries to solve a problem of providing a common set of cryptographic 
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 algorithms for higher-level applications by implementing a
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 algorithms for higher-level applications by implementing a
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 doesn't do any memory allocation or I/O, it simply provides the
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 doesn't do any memory allocation or I/O, it simply provides the
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 cryptographic algorithms for the application to use in any environment and
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 cryptographic algorithms for the application to use in any environment and
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 in any way it needs.
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 in any way it needs.
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 .
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 .
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 This package contains the development files (C headers and static libraries)
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 This package contains the development files (C headers and static libraries)
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Package: nettle-bin
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Package: nettle-bin
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Section: misc
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Section: misc
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Architecture: any
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Architecture: any
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Depends: ${shlibs:Depends}, ${misc:Depends}
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Breaks: lsh-utils (<< 2.0.4-dfsg-1)
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Breaks: lsh-utils (<< 2.0.4-dfsg-1)
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Replaces: lsh-utils (<< 2.0.4-dfsg-1)
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Replaces: lsh-utils (<< 2.0.4-dfsg-1)
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Suggests: lsh-doc
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Suggests: lsh-doc
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Description: low level cryptographic library (binary tools)
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Description: low level cryptographic library (binary tools)
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel
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 Python, Pike, ...), in applications like LSH or GnuPG, or even in kernel
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 space.
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 space.
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 .
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 .
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 It tries to solve a problem of providing a common set of cryptographic 
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 It tries to solve a problem of providing a common set of cryptographic 
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 algorithms for higher-level applications by implementing a
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 algorithms for higher-level applications by implementing a
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 context-independent set of cryptographic algorithms. In that light, Nettle
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 doesn't do any memory allocation or I/O, it simply provides the
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 doesn't do any memory allocation or I/O, it simply provides the
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 cryptographic algorithms for the application to use in any environment and
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 cryptographic algorithms for the application to use in any environment and
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 in any way it needs.
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 in any way it needs.
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 .
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 .
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 This package contains binary utilities that accompany the library:
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 This package contains binary utilities that accompany the library:
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 .
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 .
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    - nettle-lfib-stream - generates a pseudo-random stream, using the Knuth 
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    - nettle-lfib-stream - generates a pseudo-random stream, using the Knuth 
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      lfib (non-cryptographic) pseudo-random generator.
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      lfib (non-cryptographic) pseudo-random generator.
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    - sexp-conv - conversion tool for handling the different flavours of sexp
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    - sexp-conv - conversion tool for handling the different flavours of sexp
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      syntax.
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      syntax.
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    - pkcs1-conv - converts PKCS#1 keys to sexp format.
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    - pkcs1-conv - converts PKCS#1 keys to sexp format.
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    - nettle-hash - command-line tool to compute message digests such as SHA-1.
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    - nettle-hash - command-line tool to compute message digests such as SHA-1.
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Package: nettle-dbg
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Package: nettle-dbg
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Section: debug
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Section: debug
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Priority: extra
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Priority: extra
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Architecture: any
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Architecture: any
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Depends: libnettle4 (= ${binary:Version}) | libhogweed2 (= ${binary:Version}) | nettle-bin (= ${binary:Version}), ${misc:Depends}
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Depends: libnettle4 (= ${binary:Version}) | libhogweed2 (= ${binary:Version}) | nettle-bin (= ${binary:Version}), ${misc:Depends}
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Description: low level cryptographic library (debugging symbols)
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Description: low level cryptographic library (debugging symbols)
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 Nettle is a cryptographic library that is designed to fit easily in more or
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 less any context: In crypto toolkits for object-oriented languages (C++,
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 Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel
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 Python, Pike, ...), in applications like LSH or GnuPG, or even in kernel
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 space.
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 space.
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 .
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 .
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 This package contains the debugging symbols for all binary packages.
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 This package contains the debugging symbols for all binary packages.