working on contfrac
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							@ -17,6 +17,7 @@
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*/
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					*/
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#include "contfrac.h"
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					#include "contfrac.h"
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					#include "permutation.h"
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#include <stdio.h>
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					#include <stdio.h>
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#include <string.h>
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					#include <string.h>
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#include <math.h>
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					#include <math.h>
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@ -121,6 +122,7 @@ void ContFrac<T>::canonicalize()
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{
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					{
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int n=this->length();
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					int n=this->length();
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if(n==0) return;
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					if(n==0) return;
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					this->copyonwrite();
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if((*this)[n]==1) {(*this)[n]=0; ++(*this)[n-1];} //avoid deepest 1/1
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					if((*this)[n]==1) {(*this)[n]=0; ++(*this)[n-1];} //avoid deepest 1/1
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for(int i=1; i<=n; ++i) //truncate if possible
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					for(int i=1; i<=n; ++i) //truncate if possible
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	{
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						{
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@ -139,11 +141,13 @@ ContFrac<T> Homographic<T>::value(const ContFrac<T>&x) const
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Homographic<T> h(*this);
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					Homographic<T> h(*this);
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std::list<T> l;
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					std::list<T> l;
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for(int i=0; i<=x.length()+1; ++i) //scan all input
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					typename ContFrac<T>::iterator px=x.begin();
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					do //scan all input
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	{
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						{
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	//digest next input term
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						//digest next input term
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	Homographic<T> hnew;
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						Homographic<T> hnew;
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	if(i>x.length()||i!=0&&x[i]==0) //input is infinity
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						if(px==x.end()|| px!=x.begin()&& *px==0) //input is infinity
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		{
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							{
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		hnew.x[0][0]=hnew.x[0][1]=h.x[0][1];
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							hnew.x[0][0]=hnew.x[0][1]=h.x[0][1];
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                hnew.x[1][0]=hnew.x[1][1]=h.x[1][1];
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					                hnew.x[1][0]=hnew.x[1][1]=h.x[1][1];
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@ -152,8 +156,8 @@ for(int i=0; i<=x.length()+1; ++i) //scan all input
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		{
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							{
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		hnew.x[0][0]=h.x[0][1];
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							hnew.x[0][0]=h.x[0][1];
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		hnew.x[1][0]=h.x[1][1];
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							hnew.x[1][0]=h.x[1][1];
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		hnew.x[0][1]=h.x[0][0]+h.x[0][1]*x[i];
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							hnew.x[0][1]=h.x[0][0]+h.x[0][1]* *px;
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        	hnew.x[1][1]=h.x[1][0]+h.x[1][1]*x[i];
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					        	hnew.x[1][1]=h.x[1][0]+h.x[1][1]* *px;
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		}
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							}
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	//std::cout<<"hnew\n"<< hnew.x[0][0]<<" "<< hnew.x[0][1]<<"\n"<< hnew.x[1][0]<<" "<< hnew.x[1][1]<<"\n";
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						//std::cout<<"hnew\n"<< hnew.x[0][0]<<" "<< hnew.x[0][1]<<"\n"<< hnew.x[1][0]<<" "<< hnew.x[1][1]<<"\n";
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@ -182,21 +186,119 @@ for(int i=0; i<=x.length()+1; ++i) //scan all input
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	if(hnew.x[1][0]==0&&hnew.x[1][1]==0) //terminate
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						if(hnew.x[1][0]==0&&hnew.x[1][1]==0) //terminate
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		{
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							{
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		//std::cout<<"terminate at "<<i<<"\n";
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							//std::cout<<"terminate at "<<i<<"\n";
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		if(i<=x.length()) laerror("unexpected termination in Homographic::value");
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							if(px!=x.end()) laerror("unexpected termination in Homographic::value");
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		break;
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							break;
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		}
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							}
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	h=hnew;
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						h=hnew;
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	}
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						++px;
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						} while(px!=x.beyondend());
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//std::cout <<"size= "<<l.size()<<std::endl;
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					//std::cout <<"size= "<<l.size()<<std::endl;
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return ContFrac<T>(l);
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					return ContFrac<T>(l);
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}
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					}
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					template <typename T>
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					void Rational<T>::simplify()
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					{
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					if(den<0)
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						{
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						num= -num;
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						den= -den;
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						}
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					T g=gcd(num,den); 
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					if(g>1) 
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						{
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						num/=g; 
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						den/=g;
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						}
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					}
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					template <typename T>
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					Rational<T> & Rational<T>::operator*=(const T  &rhs)
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					{
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					T r=rhs;
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					T g=gcd(r,den);
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					if(g>1)
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					        {
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					        r/=g;
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					        den/=g;
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					        }
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					num*=r;
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					return *this;
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					}
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					template <typename T>
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					Rational<T> & Rational<T>::operator/=(const T  &rhs)
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					{
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					T r=rhs;
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					T g=gcd(r,num);
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					if(g>1)
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					        {
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					        r/=g;
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					        num/=g;
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					        }
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					den*=r;
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					return *this;
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					}
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					template <typename T>
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					Rational<T>  Rational<T>::operator+(const Rational &rhs) const
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					{
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					Rational r;
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					r.den = lcm(den,rhs.den);
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					r.num = num*(r.den/den) + rhs.num*(r.den/rhs.den);
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					r.simplify();
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					return r;
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					}
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					template <typename T>
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					Rational<T>  Rational<T>::operator-(const Rational &rhs) const
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					{
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					Rational r;
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					r.den = lcm(den,rhs.den);
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					r.num = num*(r.den/den) - rhs.num*(r.den/rhs.den);
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					r.simplify();
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					return r;
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					}
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					template <typename T>
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					Rational<T> & Rational<T>::operator*=(const Rational &rhs)
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					{
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					Rational r(rhs);
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					T g;
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					g=gcd(num,r.den);
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					if(g>1)
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						{
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						num/=g;
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						r.den/=g;
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						}
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					g=gcd(den,r.num);
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					if(g>1)
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					        {
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					        den/=g;
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					        r.num/=g;
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					        }
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					num*=r.num;
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					den*=r.den;
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					return *this;
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					}
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/***************************************************************************//**
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					/***************************************************************************//**
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 * forced instantization in the corresponding object file
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					 * forced instantization in the corresponding object file
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 ******************************************************************************/
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					 ******************************************************************************/
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					template class Rational<int>;
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					template class Rational<unsigned int>;
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					template class Rational<long>;
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					template class Rational<unsigned long>;
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					template class Rational<long long>;
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					template class Rational<unsigned long long>;
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template class ContFrac<int>;
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					template class ContFrac<int>;
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template class ContFrac<unsigned int>;
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					template class ContFrac<unsigned int>;
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template class ContFrac<long>;
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					template class ContFrac<long>;
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										68
									
								
								contfrac.h
									
									
									
									
									
								
							
							
						
						
									
										68
									
								
								contfrac.h
									
									
									
									
									
								
							@ -34,16 +34,38 @@ namespace LA {
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template <typename T>
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					template <typename T>
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class ContFrac;
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					class ContFrac;
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//@@@basic rational arithmetics
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template <typename T>
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					template <typename T>
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class Rational {
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					class Rational {
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public:
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					public:
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	T num;
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						T num;
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	T den;
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						T den;
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						Rational() {};
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	Rational(const T p, const T q) : num(p),den(q) {};
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						Rational(const T p, const T q) : num(p),den(q) {};
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	explicit Rational(const T (&a)[2]) :num(a[0]), den(a[1]) {};
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						explicit Rational(const T (&a)[2]) :num(a[0]), den(a[1]) {};
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	Rational(const ContFrac<T> &cf) {cf.convergent(&num,&den);};
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						Rational(const ContFrac<T> &cf) {cf.convergent(&num,&den);};
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						void simplify();
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						//basic rational arithmetics 
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						Rational operator-() const {return Rational(-num,den);};
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						Rational & operator+=(const T  &rhs) {num+=den*rhs; return *this;};
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						Rational & operator-=(const T  &rhs) {num-=den*rhs; return *this;};
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						Rational & operator*=(const T  &rhs);
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						Rational & operator/=(const T  &rhs);
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						Rational operator+(const T  &rhs) const {Rational r(*this); return r+=rhs;};
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						Rational operator-(const T  &rhs) const {Rational r(*this); return r-=rhs;};
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						Rational operator*(const T  &rhs) const {Rational r(*this); return r*=rhs;};
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						Rational operator/(const T  &rhs) const {Rational r(*this); return r/=rhs;};
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						Rational & operator*=(const Rational &rhs);
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						Rational & operator/=(const Rational &rhs) {return (*this)*=Rational(rhs.den,rhs.num);};
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						Rational operator+(const Rational  &rhs) const;
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					        Rational operator-(const Rational  &rhs) const;
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					        Rational operator*(const Rational  &rhs) const {Rational r(*this); return r*=rhs;};
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					        Rational operator/(const Rational  &rhs) const {Rational r(*this); return r/=rhs;};
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						Rational & operator+=(const Rational &rhs) {*this = *this+rhs; return *this;};
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						Rational & operator-=(const Rational &rhs) {*this = *this-rhs; return *this;};
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};
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					};
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template <typename T>
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					template <typename T>
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@ -53,6 +75,16 @@ s<<x.num<<"/"<<x.den;
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return s;
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					return s;
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}
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					}
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					template <typename T>
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					std::istream & operator>>(std::istream &s, Rational<T> &x)
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					{
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					char c;
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					s>>x.num>>c>>x.den;
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					return s;
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					}
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template <typename T>
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					template <typename T>
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class Homographic;
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					class Homographic;
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@ -60,7 +92,6 @@ template <typename T>
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class BiHomographic;
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					class BiHomographic;
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//@@@implement iterator and rewrite  Homographic<T>::value
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template <typename T>
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					template <typename T>
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class ContFrac : public NRVec<T> {
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					class ContFrac : public NRVec<T> {
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@ -72,13 +103,14 @@ public:
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	ContFrac(const NRVec<T> &v) : NRVec<T>(v) {}; //allow implicit conversion from NRVec
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						ContFrac(const NRVec<T> &v) : NRVec<T>(v) {}; //allow implicit conversion from NRVec
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	ContFrac(const int n) : NRVec<T>(n+1) {};
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						ContFrac(const int n) : NRVec<T>(n+1) {};
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	ContFrac(double x, const int n, const T thres=0); //might yield a non-canonical form 
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						ContFrac(double x, const int n, const T thres=0); //might yield a non-canonical form 
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						//we could make a template for analogous conversion from an arbitrary-precision type
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	ContFrac(const T p, const T q); //should yield a canonical form
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						ContFrac(const T p, const T q); //should yield a canonical form
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	ContFrac(const Rational<T> &r) : ContFrac(r.num,r.den) {};
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						ContFrac(const Rational<T> &r) : ContFrac(r.num,r.den) {};
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	void canonicalize();
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						void canonicalize();
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	void convergent(T *p, T*q, const int trunc= -1) const;
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						void convergent(T *p, T*q, const int trunc= -1) const;
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	Rational<T> rational(const int trunc= -1) const {T p,q; convergent(&p,&q,trunc); return Rational<T>(p,q);};
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						Rational<T> rational(const int trunc= -1) const {T p,q; convergent(&p,&q,trunc); return Rational<T>(p,q);};
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	double value(const int trunc= -1) const;
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						double value(const int trunc= -1) const; //we could make also a template usable with an arbitrary-precision type
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	ContFrac reciprocal() const;
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						ContFrac reciprocal() const;
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	int length() const {return NRVec<T>::size()-1;};
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						int length() const {return NRVec<T>::size()-1;};
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	void resize(const int n, const bool preserve=true) 
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						void resize(const int n, const bool preserve=true) 
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@ -87,12 +119,40 @@ public:
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		NRVec<T>::resize(n+1,preserve);
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							NRVec<T>::resize(n+1,preserve);
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		if(preserve) for(int i=nold+1; i<=n;++i) (*this)[i]=0;
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							if(preserve) for(int i=nold+1; i<=n;++i) (*this)[i]=0;
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		} 
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							} 
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						//arithmetics with a single ContFrac operand
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	ContFrac operator+(const Rational<T> &rhs) const {Homographic<T> h({{rhs.num,rhs.den},{rhs.den,0}}); return h.value(*this);};
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						ContFrac operator+(const Rational<T> &rhs) const {Homographic<T> h({{rhs.num,rhs.den},{rhs.den,0}}); return h.value(*this);};
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			||||||
	ContFrac operator-(const Rational<T> &rhs) const {Homographic<T> h({{-rhs.num,rhs.den},{rhs.den,0}}); return h.value(*this);};
 | 
						ContFrac operator-(const Rational<T> &rhs) const {Homographic<T> h({{-rhs.num,rhs.den},{rhs.den,0}}); return h.value(*this);};
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			||||||
	ContFrac operator*(const Rational<T> &rhs) const {Homographic<T> h({{0,rhs.num},{rhs.den,0}}); return h.value(*this);};
 | 
						ContFrac operator*(const Rational<T> &rhs) const {Homographic<T> h({{0,rhs.num},{rhs.den,0}}); return h.value(*this);};
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			||||||
	ContFrac operator/(const Rational<T> &rhs) const {Homographic<T> h({{0,rhs.den},{rhs.num,0}}); return h.value(*this);};
 | 
						ContFrac operator/(const Rational<T> &rhs) const {Homographic<T> h({{0,rhs.den},{rhs.num,0}}); return h.value(*this);};
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			||||||
 | 
					
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			||||||
 | 
						ContFrac & operator+=(const T  &rhs)  {this->copyonwrite(); (*this)[0]+=rhs; return *this;};
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			||||||
 | 
						ContFrac & operator-=(const T  &rhs)  {this->copyonwrite(); (*this)[0]-=rhs; return *this;};
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			||||||
 | 
						ContFrac operator+(const T  &rhs) const {ContFrac r(*this); r+=rhs; return r;};
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			||||||
 | 
						ContFrac operator-(const T  &rhs) const {ContFrac r(*this); r-=rhs; return r;};
 | 
				
			||||||
 | 
						ContFrac operator*(const T &rhs)  const {Homographic<T> h({{0,rhs},{1,0}}); return h.value(*this);};
 | 
				
			||||||
 | 
						ContFrac operator/(const T &rhs)  const {Homographic<T> h({{0,1},{rhs,0}}); return h.value(*this);};
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			||||||
 | 
					
 | 
				
			||||||
 | 
						//arithmetics with two ContFrac operands
 | 
				
			||||||
 | 
						//@@@
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
						//iterator
 | 
				
			||||||
 | 
					        class iterator {
 | 
				
			||||||
 | 
					        private:
 | 
				
			||||||
 | 
					                T *p;
 | 
				
			||||||
 | 
					        public:
 | 
				
			||||||
 | 
					                iterator() {};
 | 
				
			||||||
 | 
					                ~iterator() {};
 | 
				
			||||||
 | 
							iterator(T *v): p(v) {};
 | 
				
			||||||
 | 
					                bool operator==(const iterator rhs) const {return p==rhs.p;}
 | 
				
			||||||
 | 
					                bool operator!=(const iterator rhs) const {return p!=rhs.p;}
 | 
				
			||||||
 | 
					                iterator operator++() {return ++p;}
 | 
				
			||||||
 | 
					                iterator operator++(int) {return p++;}
 | 
				
			||||||
 | 
					                T& operator*() const {return *p;}
 | 
				
			||||||
 | 
					                T *operator->() const {return p;}
 | 
				
			||||||
 | 
					        };
 | 
				
			||||||
 | 
					        iterator begin() const {return NRVec<T>::v;}
 | 
				
			||||||
 | 
					        iterator end() const {return NRVec<T>::v+NRVec<T>::nn;}
 | 
				
			||||||
 | 
					        iterator beyondend() const {return NRVec<T>::v+NRVec<T>::nn+1;}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
};
 | 
					};
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
				
			|||||||
@ -119,7 +119,7 @@ return big;
 | 
				
			|||||||
template <typename T> 
 | 
					template <typename T> 
 | 
				
			||||||
inline T lcm(T a, T b)
 | 
					inline T lcm(T a, T b)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
return (a*b)/gcd(a,b);
 | 
					return (a/gcd(a,b))*b;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
				
			|||||||
							
								
								
									
										12
									
								
								t.cc
									
									
									
									
									
								
							
							
						
						
									
										12
									
								
								t.cc
									
									
									
									
									
								
							@ -2431,6 +2431,16 @@ NRMat<double> mm=m.permuted_rows(p);
 | 
				
			|||||||
cout <<mm;
 | 
					cout <<mm;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
 | 
					if(1)
 | 
				
			||||||
 | 
					{
 | 
				
			||||||
 | 
					Rational<int> p,q;
 | 
				
			||||||
 | 
					cin>>p>>q;
 | 
				
			||||||
 | 
					cout <<p+q<<endl;
 | 
				
			||||||
 | 
					cout <<p-q<<endl;
 | 
				
			||||||
 | 
					cout <<p*q<<endl;
 | 
				
			||||||
 | 
					cout <<p/q<<endl;
 | 
				
			||||||
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
if(0)
 | 
					if(0)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
double x;
 | 
					double x;
 | 
				
			||||||
@ -2463,7 +2473,7 @@ double zzz=zz.value();
 | 
				
			|||||||
cout <<z<<" "<<zzz<<endl;
 | 
					cout <<z<<" "<<zzz<<endl;
 | 
				
			||||||
}
 | 
					}
 | 
				
			||||||
 | 
					
 | 
				
			||||||
if(1)
 | 
					if(0)
 | 
				
			||||||
{
 | 
					{
 | 
				
			||||||
Rational<int> r({11,101});
 | 
					Rational<int> r({11,101});
 | 
				
			||||||
ContFrac<int> x(r);
 | 
					ContFrac<int> x(r);
 | 
				
			||||||
 | 
				
			|||||||
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		Reference in New Issue
	
	Block a user