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pre { line-height: 125%; margin: 0; }
td.linenos pre { color: #000000; background-color: #f0f0f0; padding: 0 5px 0 5px; }
span.linenos { color: #000000; background-color: #f0f0f0; padding: 0 5px 0 5px; }
td.linenos pre.special { color: #000000; background-color: #ffffc0; padding: 0 5px 0 5px; }
span.linenos.special { color: #000000; background-color: #ffffc0; padding: 0 5px 0 5px; }
.highlight .hll { background-color: #ffffcc }
.highlight { background: #ffffff; }
.highlight .c { color: #888888 } /* Comment */
.highlight .err { color: #a61717; background-color: #e3d2d2 } /* Error */
.highlight .k { color: #008800; font-weight: bold } /* Keyword */
.highlight .ch { color: #888888 } /* Comment.Hashbang */
.highlight .cm { color: #888888 } /* Comment.Multiline */
.highlight .cp { color: #cc0000; font-weight: bold } /* Comment.Preproc */
.highlight .cpf { color: #888888 } /* Comment.PreprocFile */
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--  PSL - Small QM reduction
--  Copyright (C) 2002-2016 Tristan Gingold
--
--  This program is free software: you can redistribute it and/or modify
--  it under the terms of the GNU General Public License as published by
--  the Free Software Foundation, either version 2 of the License, or
--  (at your option) any later version.<
LAR PURPOSE. See the -- GNU General Public License for more details. -- -- You should have received a copy of the GNU General Public License -- along with this program. If not, see <gnu.org/licenses>. with PSL.Nodes; use PSL.Nodes; with Interfaces; use Interfaces; package PSL.QM is type Primes_Set (<>) is private; function Build_Primes (N : Node) return Primes_Set; function Build_Node (Ps : Primes_Set) return Node; function Reduce (N : Node) return Node; -- The maximum number of terms that this package can handle. -- The algorithm is in O(2**n) Max_Terms : constant Natural := 12; type Term_Assoc_Type is array (1 .. Max_Terms) of Node; Term_Assoc : Term_Assoc_Type := (others => Null_Node); Nbr_Terms : Natural := 0; procedure Reset; procedure Disp_Primes_Set (Ps : Primes_Set); private -- Scalar type used to represent a vector of booleans for terms. subtype Vector_Type is Unsigned_16; pragma Assert (Vector_Type'Modulus >= 2 ** Max_Terms); -- States of a vector of term. -- If SET is 0, this is a don't care: the term has no influence. -- If SET is 1, the value of the term is in VAL. type Prime_Type is record Val : Unsigned_16; Set : Unsigned_16; end record; subtype Len_Type is Natural range 0 .. 2 ** Max_Terms; type Set_Type is array (Natural range <>) of Prime_Type; -- A set of primes is a collection of at most MAX prime. type Primes_Set (Max : Len_Type) is record Nbr : Len_Type := 0; Set : Set_Type (1 .. Max); end record; end PSL.QM;