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2 | magnus | 1 | Source: nettle |
2 | Section: libs |
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3 | Priority: optional |
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32 | magnus | 4 | Maintainer: Magnus Holmgren <holmgren@debian.org> |
77 | magnus | 5 | Build-Depends: debhelper (>= 8.1.3), libgmp10-dev, m4, autotools-dev (>= 20100122.1) |
78 | magnus | 6 | Standards-Version: 3.9.2 |
33 | magnus | 7 | Vcs-Svn: svn://svn.kibibyte.se/nettle/trunk |
8 | Vcs-Browser: http://svn.kibibyte.se/nettle |
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9 | Homepage: http://www.lysator.liu.se/~nisse/nettle/ |
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2 | magnus | 10 | |
61 | magnus | 11 | Package: libnettle4 |
2 | magnus | 12 | Architecture: any |
77 | magnus | 13 | Multi-Arch: same |
14 | Pre-Depends: ${misc:Pre-Depends} |
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2 | magnus | 15 | Depends: ${shlibs:Depends}, ${misc:Depends} |
47 | magnus | 16 | Description: low level cryptographic library (symmetric and one-way cryptos) |
2 | magnus | 17 | Nettle is a cryptographic library that is designed to fit easily in more or |
18 | less any context: In crypto toolkits for object-oriented languages (C++, |
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19 | Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel |
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20 | space. |
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21 | . |
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22 | It tries to solve a problem of providing a common set of cryptographic |
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23 | algorithms for higher-level applications by implementing a |
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24 | context-independent set of cryptographic algorithms. In that light, Nettle |
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25 | doesn't do any memory allocation or I/O, it simply provides the |
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26 | cryptographic algorithms for the application to use in any environment and |
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27 | in any way it needs. |
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83 | magnus | 28 | . |
29 | This package contains the symmetric and one-way cryptographic |
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30 | algoritms. To avoid having this package depend on libgmp, the |
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31 | assymetric cryptos reside in a separate library, libhogweed. |
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2 | magnus | 32 | |
61 | magnus | 33 | Package: libhogweed2 |
47 | magnus | 34 | Architecture: any |
77 | magnus | 35 | Multi-Arch: same |
36 | Pre-Depends: ${misc:Pre-Depends} |
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47 | magnus | 37 | Depends: ${shlibs:Depends}, ${misc:Depends} |
38 | Description: low level cryptographic library (public-key cryptos) |
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39 | Nettle is a cryptographic library that is designed to fit easily in more or |
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40 | less any context: In crypto toolkits for object-oriented languages (C++, |
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41 | Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel |
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42 | space. |
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43 | . |
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44 | It tries to solve a problem of providing a common set of cryptographic |
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45 | algorithms for higher-level applications by implementing a |
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46 | context-independent set of cryptographic algorithms. In that light, Nettle |
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47 | doesn't do any memory allocation or I/O, it simply provides the |
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48 | cryptographic algorithms for the application to use in any environment and |
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49 | in any way it needs. |
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83 | magnus | 50 | . |
51 | This package contains the assymetric cryptographic algorithms, which, |
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52 | require the GNU multiple precision arithmetic library (libgmp) for |
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53 | their large integer computations. |
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47 | magnus | 54 | |
55 | Package: nettle-dev |
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2 | magnus | 56 | Section: libdevel |
57 | Architecture: any |
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61 | magnus | 58 | Depends: libnettle4 (= ${binary:Version}), libhogweed2 (= ${binary:Version}), |
62 | magnus | 59 | libgmp10-dev, dpkg (>= 1.15.4) | install-info, ${misc:Depends} |
52 | magnus | 60 | Replaces: libnettle-dev |
61 | Conflicts: libnettle-dev |
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2 | magnus | 62 | Description: low level cryptographic library (development files) |
63 | Nettle is a cryptographic library that is designed to fit easily in more or |
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64 | less any context: In crypto toolkits for object-oriented languages (C++, |
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65 | Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel |
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66 | space. |
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67 | . |
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68 | It tries to solve a problem of providing a common set of cryptographic |
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69 | algorithms for higher-level applications by implementing a |
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70 | context-independent set of cryptographic algorithms. In that light, Nettle |
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71 | doesn't do any memory allocation or I/O, it simply provides the |
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72 | cryptographic algorithms for the application to use in any environment and |
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73 | in any way it needs. |
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74 | . |
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75 | This package contains the development files (C headers and static libraries) |
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76 | |||
77 | Package: nettle-bin |
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78 | Section: misc |
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79 | Architecture: any |
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80 | Depends: ${shlibs:Depends}, ${misc:Depends} |
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81 | magnus | 81 | Breaks: lsh-utils (<< 2.0.4-dfsg-1) |
82 | Replaces: lsh-utils (<< 2.0.4-dfsg-1) |
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69 | magnus | 83 | Suggests: lsh-doc |
2 | magnus | 84 | Description: low level cryptographic library (binary tools) |
85 | Nettle is a cryptographic library that is designed to fit easily in more or |
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86 | less any context: In crypto toolkits for object-oriented languages (C++, |
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87 | Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel |
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88 | space. |
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89 | . |
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90 | It tries to solve a problem of providing a common set of cryptographic |
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91 | algorithms for higher-level applications by implementing a |
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92 | context-independent set of cryptographic algorithms. In that light, Nettle |
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93 | doesn't do any memory allocation or I/O, it simply provides the |
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94 | cryptographic algorithms for the application to use in any environment and |
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95 | in any way it needs. |
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96 | . |
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97 | This package contains binary utilities that accompany the library: |
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98 | . |
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99 | - nettle-lfib-stream - generates a pseudorandom stream, using the Knuth |
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100 | lfib (non-cryptographic) pseudorandom generator. |
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101 | - sexp-conv - conversion tool for handling the different flavours of sexp |
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102 | syntax. |
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15 | magnus | 103 | - pkcs1-conv - converts PKCS#1 keys to sexp format. |
82 | magnus | 104 | - nettle-hash - command-line tool to compute message digests such as SHA-1. |
51 | magnus | 105 | |
106 | Package: nettle-dbg |
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107 | Section: debug |
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108 | Priority: extra |
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109 | Architecture: any |
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61 | magnus | 110 | Depends: libnettle4 (= ${binary:Version}) | libhogweed2 (= ${binary:Version}) | nettle-bin (= ${binary:Version}), ${misc:Depends} |
51 | magnus | 111 | Description: low level cryptographic library (debugging symbols) |
112 | Nettle is a cryptographic library that is designed to fit easily in more or |
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113 | less any context: In crypto toolkits for object-oriented languages (C++, |
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114 | Python, Pike, ...), in applications like LSH or GNUPG, or even in kernel |
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115 | space. |
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116 | . |
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117 | This package contains the debugging symbols for all binary packages. |