The lol package

[ Tags: crypto, gpl, library ] [ Propose Tags ]

Λ ∘ λ (Lol) is a general-purpose library for ring-based lattice cryptography. For a detailed description of interfaces and functionality, see Λ ∘ λ: A Functional Library for Lattice Cryptography. For example cryptographic applications, see lol-apps.


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Properties

Versions 0.0.1.0, 0.1.0.0, 0.2.0.0, 0.2.0.1, 0.3.0.0, 0.4.0.0, 0.5.0.0, 0.5.0.1, 0.5.0.2, 0.6.0.0 (info)
Change log CHANGES.md
Dependencies arithmoi (>=0.4.1.3 && <0.5), base (>=4.8 && <5), binary, bytestring, constraints, containers (>=0.5.6.2 && <0.6), crypto-api, data-default (>=0.3.0 && <0.8), deepseq (>=1.4.1.1 && <1.5), monadcryptorandom, MonadRandom (>=0.2 && <0.5), mtl (>=2.2.1 && <2.3), numeric-prelude (>=0.4.2 && <0.5), protocol-buffers, protocol-buffers-descriptor, QuickCheck (==2.8.*), random (==1.1.*), reflection (>=1.5.1 && <2.2), repa (==3.4.*), singletons (>=1.1.2.1 && <2.2), tagged-transformer (>=0.7 && <0.9), template-haskell (>=2.2.0.0), th-desugar (>=1.5.4 && <1.7), transformers (>=0.4.2.0 && <0.6), vector (==0.11.*), vector-th-unbox (>=0.2.1.0 && <0.3) [details]
License GPL-2
Copyright Eric Crockett, Chris Peikert
Author Eric Crockett <ecrockett0@gmail.com>, Chris Peikert <cpeikert@alum.mit.edu>
Maintainer Eric Crockett <ecrockett0@gmail.com>
Category Crypto
Home page https://github.com/cpeikert/Lol
Bug tracker https://github.com/cpeikert/Lol/issues
Source repo head: git clone https://github.com/cpeikert/Lol
Uploaded Sat Aug 13 19:12:45 UTC 2016 by crockeea
Updated Sat Aug 13 19:50:52 UTC 2016 by crockeea to revision 1   [What is this?]
Distributions NixOS:0.6.0.0
Downloads 3009 total (66 in the last 30 days)
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Status Docs available [build log]
Last success reported on 2016-11-21 [all 2 reports]
Hackage Matrix CI

Modules

[Index]

Flags

NameDescriptionDefaultType
llvm

Compile via LLVM. This produces much better object code, but you need to have the LLVM compiler installed.

DisabledAutomatic
opt

Turn on library optimizations

EnabledAutomatic

Use -f <flag> to enable a flag, or -f -<flag> to disable that flag. More info

Downloads

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Maintainer's Corner

For package maintainers and hackage trustees


Readme for lol-0.5.0.0

[back to package description]
Most of the functionality in Lol is exported by two modules:

* 'Crypto.Lol' exports the primary *interfaces* of Lol

* 'Crypto.Lol.Types' exports concrete types that would be used by most
  instantiations including tensors, base rings, and cryptographic

For a brief introduction to relevant mathematical notation, see 'Crypto.Lol'.

Overview of key modules, roughly from highest- to lowest-level:

Cyclotomic layer:
* 'Crypto.Lol.Cyclotomic.Cyc', which defines an interface for using cyclotomic
  fields, rings \( R \), and quotient rings \( R_q=R/qR \); as well as many
  other commonly used operations, e.g., converting
  between rings, decoding and decomposing elements, modulus
  reduction/rounding, etc. 'Cyc' is a safe wrapper around the
  'UCyc' type, which exposes some representation-dependent operations.
  'UCyc' (and hence 'Cyc') is implemented using a generic 'Tensor'
  (described below).


Tensor layer:
* 'Crypto.Lol.Cyclotomic.Tensor', which defines a class that encapsulates all
  the necessary linear transformations for operating on representations of
  \( R \)- and \( R_q \)-elements, e.g., the CRT transform, converting between
  the powerful and decoding bases, generating error terms, etc.

* 'Crypto.Lol.Cyclotomic.Tensor.RepaTensor', which gives an
  implementation of the 'Tensor' class based on the "repa"
  package, a highly optimized and parallelizable array library.

* 'Crypto.Lol.Cyclotomic.Tensor.CTensor', which gives an
  implementation of the 'Tensor' class using a C++ backend via Haskell's FFI.


Base ring layer:
* 'Crypto.Lol.Types.FiniteField', which gives an unoptimized implementation of
  finite field arithmetic. To use this module, you will need an instance of
  'IrreduciblePoly'. These instances provide irreducible polynomials
  for various degrees and base fields.  One (orphan) instance is provided for
  characteristic 2 fields of size up to 2^128 in
  'Crypto.Lol.Types.IrreducibleChar2', and is exported by 'Crypto.Lol.Types'.
  If you need to use an unsupported finite field,  define your own
  instance of 'IrreduciblePoly' and do **not** import 'IrreducibleChar2'.

* 'Crypto.Lol.Types.ZqBasic', which is a basic implementation of
  \( \Z_q=\Z/q\Z \) arithmetic.

* 'Crypto.Lol.Factored', which contains type-level support code for
  factored integers. It also supports "reifying" 'Int's at runtime as static
  types and "reflecting" those types as integers back to the code..
  'Factored' types are mainly used to represent cyclotomic indices.