2015-08-07 13:20:36 by Jaap Boender | Files touched by this commit (65) | |
Log message:
Recursive revbump associated with lang/ocaml update.
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2015-06-30 13:53:00 by Jaap Boender | Files touched by this commit (76) | |
Log message:
Recursive revbump associated with update of lang/ocaml to 4.02.2.
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2015-01-20 15:24:38 by Jaap Boender | Files touched by this commit (55) | |
Log message:
Revbump associated with update of lang/ocaml.
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2014-10-10 00:28:12 by Jaap Boender | Files touched by this commit (5) |
Log message:
Updated package to latest version 1.9. Package now uses ocaml.mk.
Changes include:
- More fixes to build in Windows with zlib (mingw and msvc).
- Build .cmxs with C bindings (Closes: #1303)
- Use advapi32 on Windows (Close: #1055)
- Allow to define --zlib-include and --zlib-libdir if zlib is not installed in
the standard location.
- Added SHA-3 hash function.
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2013-11-01 12:30:24 by Jaap Boender | Files touched by this commit (47) | |
Log message:
Revision bump associated with the update of lang/ocaml to version 4.01.
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2012-10-23 20:17:02 by Aleksej Saushev | Files touched by this commit (368) |
Log message:
Drop superfluous PKG_DESTDIR_SUPPORT, "user-destdir" is default these days.
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2012-10-08 17:18:26 by Jaap Boender | Files touched by this commit (54) | |
Log message:
Revision bump associated with the update of lang/ocaml to version 4.
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2012-08-15 10:24:58 by Thomas Klausner | Files touched by this commit (3) | |
Log message:
Update to 1.6 from Jaap Boender in PR 46800:
This update of ocaml-cryptokit to its newest version, 1.6. does
not actually change anything in the functionality of the software.
Upstream, the build system has changed, and there are also a few
changes to the package (most notably, removal of the PLIST.opt in
favour of the PLIST_VARS system)
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2012-05-12 19:53:40 by Thomas Klausner | Files touched by this commit (6) | |
Log message:
Initial import of ocaml-cryptokit-1.5. Packaged byJaap Boender in PR 41691.
The Cryptokit library for Objective Caml provides a variety of
cryptographic primitives that can be used to implement cryptographic
protocols in security-sensitive applications. The primitives provided
include:
Symmetric-key cryptography: AES, DES, Triple-DES, ARCfour, in ECB,
CBC, CFB and OFB modes. Public-key cryptography: RSA encryption and
signature; Diffie-Hellman key agreement. Hash functions and MACs:
SHA-1, MD5, and MACs based on AES and DES. Random number generation.
Encodings and compression: base 64, hexadecimal, Zlib compression.
Additional ciphers and hashes can easily be used in conjunction
with the library. In particular, basic mechanisms such as chaining
modes, output buffering, and padding are provided by generic classes
that can easily be composed with user-provided ciphers. More
generally, the library promotes a "Lego"-like style of constructing
and composing transformations over character streams.
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