82 lines
4.0 KiB
C++
82 lines
4.0 KiB
C++
/*
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LA: linear algebra C++ interface library
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Copyright (C) 2008 Jiri Pittner <jiri.pittner@jh-inst.cas.cz> or <jiri@pittnerovi.com>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#ifndef _BITVECTOR_H_
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#define _BITVECTOR_H_
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#include "vec.h"
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//compressed storage of large bit vectors
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//any reasonable compiler changes the dividions and modulos to shift/and instructions
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typedef unsigned long bitvector_block; //should be automatically portable and efficiently use wordlength of each machine (32 vs 64)
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#define blockbits (8*sizeof(bitvector_block))
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inline unsigned int bitvector_rounded(unsigned int n)
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{
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return ((n+blockbits-1)/blockbits)*blockbits;
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}
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class bitvector : public NRVec<bitvector_block>
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{
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private:
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unsigned int modulo;
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public:
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bitvector() : NRVec<bitvector_block>() {};
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explicit bitvector (const unsigned int n):NRVec<bitvector_block>((n+blockbits-1)/blockbits) {modulo=n%blockbits;};
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bitvector (const bitvector_block a, const unsigned int n):NRVec<bitvector_block>(a,(n+blockbits-1)/blockbits) {modulo=n%blockbits;};
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bitvector(const bitvector &rhs) : NRVec<bitvector_block>(rhs) {modulo=rhs.modulo;};
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//operator= seems to be correctly synthetized by the compiler
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//override dereferencing to address single bits, is however possible
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//only in the const context (otherwise we would have to define a type which, when assigned to, changes a single bit - possible but probably inefficient)
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void resize(const unsigned int n) {NRVec<bitvector_block>::resize((n+blockbits-1)/blockbits); modulo=n%blockbits;};
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unsigned int size() const {return (nn*blockbits)-blockbits+(modulo?modulo:blockbits);};
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//arguments must be unsigned to keep the resulting assembly code simple and efficient
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const bool operator[](const unsigned int i) const {return (v[i/blockbits] >>(i%blockbits))&1;};
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void set(const unsigned int i) {v[i/blockbits] |= (1<<(i%blockbits));};
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void reset(const unsigned int i) {v[i/blockbits] &= ~(1<<(i%blockbits));};
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const bool get(const unsigned int i) {return (v[i/blockbits] >>(i%blockbits))&1;};
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const bool assign(const unsigned int i, const bool r) {if(r) set(i); else reset(i); return r;};
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void clear() {memset(v,0,nn*sizeof(bitvector_block));};
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void fill() {memset(v,0xff,nn*sizeof(bitvector_block));};
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bool operator!=(const bitvector &rhs) const;
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bool operator==(const bitvector &rhs) const {return !(*this != rhs);};
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bool operator>(const bitvector &rhs) const;
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bool operator<(const bitvector &rhs) const;
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bool operator>=(const bitvector &rhs) const {return !(*this < rhs);};
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bool operator<=(const bitvector &rhs) const {return !(*this > rhs);};
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bitvector operator~() const;
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bitvector& operator&=(const bitvector &rhs);
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bitvector& operator|=(const bitvector &rhs);
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bitvector& operator^=(const bitvector &rhs);
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bitvector operator&(const bitvector &rhs) const {return bitvector(*this) &= rhs;};
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bitvector operator|(const bitvector &rhs) const {return bitvector(*this) |= rhs;};
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bitvector operator^(const bitvector &rhs) const {return bitvector(*this) ^= rhs;};
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unsigned int population(const unsigned int before=0) const; //@@@number of 1's
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//extended, truncated const i.e. not on *this but return new entity, take care of modulo's bits
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//logical shifts <<= >>= << >> not implemented yet
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//logical rotations not implemented yet
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};
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extern ostream & operator<<(ostream &s, const bitvector &x);
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extern istream & operator>>(istream &s, bitvector &x);
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#endif
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