| 1 | /*
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| 2 |  * Project: MoleCuilder
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| 3 |  * Description: creates and alters molecular systems
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| 4 |  * Copyright (C)  2010-2012 University of Bonn. All rights reserved.
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| 5 |  * Please see the LICENSE file or "Copyright notice" in builder.cpp for details.
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| 6 |  */
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| 7 | 
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| 8 | /*
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| 9 |  * Formula.cpp
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| 10 |  *
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| 11 |  *  Created on: Jul 21, 2010
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| 12 |  *      Author: crueger
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| 13 |  */
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| 14 | 
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| 15 | // include config.h
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| 16 | #ifdef HAVE_CONFIG_H
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| 17 | #include <config.h>
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| 18 | #endif
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| 19 | 
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| 20 | #include "CodePatterns/MemDebug.hpp"
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| 21 | 
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| 22 | #include "Formula.hpp"
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| 23 | 
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| 24 | #include <sstream>
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| 25 | 
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| 26 | #include "World.hpp"
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| 27 | #include "Element/periodentafel.hpp"
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| 28 | #include "Element/element.hpp"
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| 29 | #include "CodePatterns/Assert.hpp"
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| 30 | #include "CodePatterns/Range.hpp"
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| 31 | 
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| 32 | using namespace std;
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| 33 | 
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| 34 | Formula::Formula() :
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| 35 |   numElements(0)
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| 36 | {}
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| 37 | 
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| 38 | Formula::Formula(const Formula &src) :
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| 39 |   elementCounts(src.elementCounts),
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| 40 |   numElements(src.numElements)
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| 41 | {}
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| 42 | 
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| 43 | Formula::Formula(const string &formula) :
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| 44 |   numElements(0)
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| 45 | {
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| 46 |   fromString(formula);
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| 47 | }
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| 48 | 
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| 49 | Formula::~Formula()
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| 50 | {}
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| 51 | 
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| 52 | Formula &Formula::operator=(const Formula &rhs){
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| 53 |   // No self-assignment check needed
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| 54 |   elementCounts=rhs.elementCounts;
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| 55 |   numElements=rhs.numElements;
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| 56 |   return *this;
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| 57 | }
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| 58 | 
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| 59 | std::string Formula::toString() const{
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| 60 |   stringstream sstr;
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| 61 |   for(const_iterator iter=end();iter!=begin();){
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| 62 |     --iter;
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| 63 |     sstr << (*iter).first->getSymbol();
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| 64 |     if((*iter).second>1)
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| 65 |       sstr << (*iter).second;
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| 66 |   }
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| 67 |   return sstr.str();
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| 68 | }
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| 69 | 
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| 70 | void Formula::fromString(const std::string &formula) throw(FormulaStringParseException){
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| 71 |   // make this transactional, in case an error is thrown
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| 72 |   Formula res;
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| 73 |   string::const_iterator begin = formula.begin();
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| 74 |   string::const_iterator end = formula.end();
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| 75 |   res.parseFromString(begin,end,static_cast<char>(0));
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| 76 |   (*this)=res;
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| 77 | }
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| 78 | 
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| 79 | int Formula::parseMaybeNumber(std::string::const_iterator &it,string::const_iterator &end) throw(FormulaStringParseException){
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| 80 |   static const range<char> Numbers = makeRange('0',static_cast<char>('9'+1));
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| 81 |   int count = 0;
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| 82 |   while(it!=end && Numbers.isInRange(*it))
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| 83 |     count = (count*10) + ((*it++)-Numbers.first);
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| 84 |   // one is implicit
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| 85 |   count = (count!=0)?count:1;
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| 86 |   return count;
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| 87 | }
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| 88 | 
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| 89 | void Formula::parseFromString(std::string::const_iterator &it,string::const_iterator &end,char delimiter) throw(FormulaStringParseException){
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| 90 |   // some constants needed for parsing... Assumes ASCII, change if other encodings are used
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| 91 |   static const range<char> CapitalLetters = makeRange('A',static_cast<char>('Z'+1));
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| 92 |   static const range<char> SmallLetters = makeRange('a',static_cast<char>('z'+1));
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| 93 |   map<char,char> delimiters;
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| 94 |   delimiters['('] = ')';
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| 95 |   delimiters['['] = ']';
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| 96 |   // clean the formula
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| 97 |   clear();
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| 98 |   for(/*send from above*/;it!=end && *it!=delimiter;/*updated in loop*/){
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| 99 |     // we might have a sub formula
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| 100 |     if(delimiters.count(*it)){
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| 101 |       Formula sub;
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| 102 |       char nextdelim=delimiters[*it];
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| 103 |       sub.parseFromString(++it,end,nextdelim);
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| 104 |       if(!sub.getElementCount()){
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| 105 |         throw FormulaStringParseException() << FormulaString( string(it, end) );
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| 106 |       }
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| 107 |       int count = parseMaybeNumber(++it,end);
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| 108 |       addFormula(sub,count);
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| 109 |       continue;
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| 110 |     }
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| 111 |     string shorthand;
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| 112 |     // Atom names start with a capital letter
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| 113 |     if(!CapitalLetters.isInRange(*it))
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| 114 |       throw FormulaStringParseException() << FormulaString( string(it, end) );
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| 115 |     shorthand+=(*it++);
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| 116 |     // the rest of the name follows
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| 117 |     while(it!=end && SmallLetters.isInRange(*it))
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| 118 |       shorthand+=(*it++);
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| 119 |     int count = parseMaybeNumber(it,end);
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| 120 |     // test if the shorthand exists
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| 121 |     if(!World::getInstance().getPeriode()->FindElement(shorthand))
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| 122 |       throw FormulaStringParseException() << FormulaString( string(it, end) );
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| 123 |     // done, we can get the next one
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| 124 |     addElements(shorthand,count);
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| 125 |   }
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| 126 |   if(it==end && delimiter!=0){
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| 127 |     throw FormulaStringParseException() << FormulaString( string(it, end) );
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| 128 |   }
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| 129 | }
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| 130 | 
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| 131 | unsigned int Formula::getElementCount() const{
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| 132 |   return numElements;
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| 133 | }
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| 134 | 
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| 135 | bool Formula::hasElement(const element *element) const{
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| 136 |   ASSERT(element,"Invalid pointer in Formula::hasElement(element*)");
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| 137 |   return hasElement(element->getAtomicNumber());
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| 138 | }
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| 139 | 
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| 140 | bool Formula::hasElement(atomicNumber_t Z) const{
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| 141 |   ASSERT(Z>0,"Invalid atomic Number");
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| 142 |   ASSERT(World::getInstance().getPeriode()->FindElement(Z),"No Element with this number in Periodentafel");
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| 143 |   return elementCounts.size()>=Z && elementCounts[Z-1];
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| 144 | }
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| 145 | 
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| 146 | bool Formula::hasElement(const string &shorthand) const{
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| 147 |   const element * element = World::getInstance().getPeriode()->FindElement(shorthand);
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| 148 |   return hasElement(element);
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| 149 | }
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| 150 | 
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| 151 | void Formula::operator+=(const element *element){
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| 152 |   ASSERT(element,"Invalid pointer in increment of Formula");
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| 153 |   operator+=(element->getAtomicNumber());
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| 154 | }
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| 155 | 
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| 156 | void Formula::operator+=(atomicNumber_t Z){
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| 157 |   ASSERT(Z>0,"Invalid atomic Number");
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| 158 |   ASSERT(World::getInstance().getPeriode()->FindElement(Z),"No Element with this number in Periodentafel");
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| 159 |   elementCounts.resize(max<atomicNumber_t>(Z,elementCounts.size()),0); // No-op when we already have the right size
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| 160 |   // might need to update number of elements
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| 161 |   if(!elementCounts[Z-1]){
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| 162 |     numElements++;
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| 163 |   }
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| 164 |   elementCounts[Z-1]++;    // atomic numbers start at 1
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| 165 | }
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| 166 | 
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| 167 | void Formula::operator+=(const string &shorthand){
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| 168 |   const element * element = World::getInstance().getPeriode()->FindElement(shorthand);
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| 169 |   operator+=(element);
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| 170 | }
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| 171 | 
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| 172 | void Formula::operator-=(const element *element){
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| 173 |   ASSERT(element,"Invalid pointer in decrement of Formula");
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| 174 |   operator-=(element->getAtomicNumber());
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| 175 | }
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| 176 | 
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| 177 | void Formula::operator-=(atomicNumber_t Z){
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| 178 |   ASSERT(Z>0,"Invalid atomic Number");
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| 179 |   ASSERT(World::getInstance().getPeriode()->FindElement(Z),"No Element with this number in Periodentafel");
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| 180 |   ASSERT(elementCounts.size()>=Z && elementCounts[Z-1], "Element not in Formula upon decrement");
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| 181 |   elementCounts[Z-1]--;    // atomic numbers start at 1
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| 182 |   // might need to update number of elements
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| 183 |   if(!elementCounts[Z-1]){
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| 184 |     numElements--;
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| 185 |     // resize the Array if this was at the last position
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| 186 |     if(Z==elementCounts.size()){
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| 187 |       // find the first element from the back that is not equal to zero
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| 188 |       set_t::reverse_iterator riter = find_if(elementCounts.rbegin(),
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| 189 |                                               elementCounts.rend(),
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| 190 |                                               bind1st(not_equal_to<mapped_type>(),0));
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| 191 |       // see how many elements are in this range
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| 192 |       set_t::reverse_iterator::difference_type diff = riter - elementCounts.rbegin();
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| 193 |       elementCounts.resize(elementCounts.size()-diff);
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| 194 |     }
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| 195 |   }
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| 196 | }
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| 197 | 
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| 198 | void Formula::operator-=(const string &shorthand){
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| 199 |   const element * element = World::getInstance().getPeriode()->FindElement(shorthand);
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| 200 |   operator-=(element);
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| 201 | }
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| 202 | 
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| 203 | void Formula::addElements(const element *element,unsigned int count){
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| 204 |   ASSERT(element,"Invalid pointer in Formula::addElements(element*)");
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| 205 |   addElements(element->getAtomicNumber(),count);
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| 206 | }
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| 207 | 
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| 208 | void Formula::addElements(atomicNumber_t Z,unsigned int count){
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| 209 |   if(count==0) return;
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| 210 |   ASSERT(Z>0,"Invalid atomic Number");
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| 211 |   ASSERT(World::getInstance().getPeriode()->FindElement(Z),"No Element with this number in Periodentafel");
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| 212 |   elementCounts.resize(max<atomicNumber_t>(Z,elementCounts.size()),0); // No-op when we already have the right size
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| 213 |   // might need to update number of elements
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| 214 |   if(!elementCounts[Z-1]){
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| 215 |     numElements++;
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| 216 |   }
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| 217 |   elementCounts[Z-1]+=count;
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| 218 | }
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| 219 | 
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| 220 | void Formula::addElements(const string &shorthand,unsigned int count){
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| 221 |   const element * element = World::getInstance().getPeriode()->FindElement(shorthand);
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| 222 |   addElements(element,count);
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| 223 | }
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| 224 | 
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| 225 | void Formula::addFormula(const Formula &formula,unsigned int n){
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| 226 |   for(Formula::const_iterator iter=formula.begin();iter!=formula.end();++iter){
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| 227 |     this->addElements(iter->first,iter->second*n);
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| 228 |   }
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| 229 | }
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| 230 | 
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| 231 | enumeration<Formula::key_type> Formula::enumerateElements() const{
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| 232 |   enumeration<key_type> res(1);
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| 233 |   for(Formula::const_iterator iter=begin();iter!=end();++iter){
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| 234 |     res.add(iter->first);
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| 235 |   }
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| 236 |   return res;
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| 237 | }
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| 238 | 
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| 239 | const unsigned int Formula::operator[](const element *element) const{
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| 240 |   ASSERT(element,"Invalid pointer in access of Formula");
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| 241 |   return operator[](element->getAtomicNumber());
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| 242 | }
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| 243 | 
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| 244 | const unsigned int Formula::operator[](atomicNumber_t Z) const{
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| 245 |   ASSERT(Z>0,"Invalid atomic Number");
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| 246 |   ASSERT(World::getInstance().getPeriode()->FindElement(Z),"No Element with this number in Periodentafel");
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| 247 |   if(elementCounts.size()<Z)
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| 248 |     return 0;
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| 249 |   return elementCounts[Z-1]; // atomic numbers start at 1
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| 250 | }
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| 251 | 
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| 252 | const unsigned int Formula::operator[](std::string shorthand) const{
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| 253 |   const element * element = World::getInstance().getPeriode()->FindElement(shorthand);
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| 254 |   return operator[](element);
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| 255 | }
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| 256 | 
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| 257 | bool Formula::operator==(const Formula &rhs) const{
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| 258 |   // quick check... number of elements used
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| 259 |   if(numElements != rhs.numElements){
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| 260 |     return false;
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| 261 |   }
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| 262 |   // second quick check, size of vectors (== last element in formula)
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| 263 |   if(elementCounts.size()!=rhs.elementCounts.size()){
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| 264 |     return false;
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| 265 |   }
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| 266 |   // slow check: all elements
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| 267 |   // direct access to internal structure means all element-counts have to be compared
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| 268 |   // this avoids access to periodentafel to find elements though and is probably faster
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| 269 |   // in total
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| 270 |   return equal(elementCounts.begin(),
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| 271 |                elementCounts.end(),
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| 272 |                rhs.elementCounts.begin());
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| 273 | }
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| 274 | 
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| 275 | bool Formula::operator!=(const Formula &rhs) const{
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| 276 |   return !operator==(rhs);
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| 277 | }
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| 278 | 
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| 279 | Formula::iterator Formula::begin(){
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| 280 |   return iterator(elementCounts,0);
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| 281 | }
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| 282 | Formula::const_iterator Formula::begin() const{
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| 283 |   // this is the only place where this is needed, so this is better than making it mutable
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| 284 |   return const_iterator(const_cast<set_t&>(elementCounts),0);
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| 285 | }
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| 286 | Formula::iterator Formula::end(){
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| 287 |   return iterator(elementCounts);
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| 288 | }
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| 289 | Formula::const_iterator Formula::end() const{
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| 290 |   // this is the only place where this is needed, so this is better than making it mutable
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| 291 |   return const_iterator(const_cast<set_t&>(elementCounts));
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| 292 | }
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| 293 | 
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| 294 | void Formula::clear(){
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| 295 |   elementCounts.clear();
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| 296 |   numElements = 0;
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| 297 | }
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| 298 | 
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| 299 | /**************** Iterator structure ********************/
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| 300 | 
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| 301 | template <class result_type>
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| 302 | Formula::_iterator<result_type>::_iterator(set_t &_set) :
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| 303 |     set(&_set)
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| 304 | {
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| 305 |   pos=set->size();
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| 306 | }
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| 307 | 
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| 308 | template <class result_type>
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| 309 | Formula::_iterator<result_type>::_iterator(set_t &_set,size_t _pos) :
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| 310 |   set(&_set),pos(_pos)
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| 311 | {
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| 312 |   ASSERT(pos<=set->size(),"invalid position in iterator construction");
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| 313 |   while(pos<set->size() && (*set)[pos]==0) ++pos;
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| 314 | }
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| 315 | 
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| 316 | template <class result_type>
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| 317 | Formula::_iterator<result_type>::_iterator(const _iterator &rhs) :
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| 318 |   set(rhs.set),pos(rhs.pos)
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| 319 | {}
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| 320 | 
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| 321 | template <class result_type>
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| 322 | Formula::_iterator<result_type>::~_iterator(){}
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| 323 | 
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| 324 | template <class result_type>
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| 325 | Formula::_iterator<result_type>&
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| 326 | Formula::_iterator<result_type>::operator=(const _iterator<result_type> &rhs){
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| 327 |   set=rhs.set;
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| 328 |   pos=rhs.pos;
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| 329 |   return *this;
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| 330 | }
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| 331 | 
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| 332 | template <class result_type>
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| 333 | bool
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| 334 | Formula::_iterator<result_type>::operator==(const _iterator<result_type> &rhs){
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| 335 |   return set==rhs.set && pos==rhs.pos;
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| 336 | }
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| 337 | 
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| 338 | template <class result_type>
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| 339 | bool
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| 340 | Formula::_iterator<result_type>::operator!=(const _iterator<result_type> &rhs){
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| 341 |   return !operator==(rhs);
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| 342 | }
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| 343 | 
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| 344 | template <class result_type>
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| 345 | Formula::_iterator<result_type>
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| 346 | Formula::_iterator<result_type>::operator++(){
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| 347 |   ASSERT(pos!=set->size(),"Incrementing Formula::iterator beyond end");
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| 348 |   pos++;
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| 349 |   while(pos<set->size() && (*set)[pos]==0) ++pos;
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| 350 |   return *this;
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| 351 | }
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| 352 | 
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| 353 | template <class result_type>
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| 354 | Formula::_iterator<result_type>
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| 355 | Formula::_iterator<result_type>::operator++(int){
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| 356 |   Formula::_iterator<result_type> retval = *this;
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| 357 |   ++(*this);
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| 358 |   return retval;
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| 359 | }
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| 360 | 
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| 361 | template <class result_type>
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| 362 | Formula::_iterator<result_type>
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| 363 | Formula::_iterator<result_type>::operator--(){
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| 364 |   ASSERT(pos!=0,"Decrementing Formula::iterator beyond begin");
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| 365 |   pos--;
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| 366 |   while(pos>0 && (*set)[pos]==0) --pos;
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| 367 |   return *this;
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| 368 | }
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| 369 | 
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| 370 | template <class result_type>
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| 371 | Formula::_iterator<result_type>
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| 372 | Formula::_iterator<result_type>::operator--(int){
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| 373 |   Formula::_iterator<result_type> retval = *this;
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| 374 |   --(*this);
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| 375 |   return retval;
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| 376 | }
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| 377 | 
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| 378 | template <class result_type>
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| 379 | result_type
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| 380 | Formula::_iterator<result_type>::operator*(){
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| 381 |   const element *element = World::getInstance().getPeriode()->FindElement(pos+1);
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| 382 |   ASSERT(element,"Element with position of iterator not found");
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| 383 |   return make_pair(element,(*set)[pos]);
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| 384 | }
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| 385 | 
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| 386 | template <class result_type>
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| 387 | result_type*
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| 388 | Formula::_iterator<result_type>::operator->(){
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| 389 |   // no one can keep this value around, so a static is ok to avoid temporaries
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| 390 |   static value_type value=make_pair(reinterpret_cast<element*>(0),0); // no default constructor for std::pair
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| 391 |   const element *element = World::getInstance().getPeriode()->FindElement(pos+1);
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| 392 |   ASSERT(element,"Element with position of iterator not found");
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| 393 |   value = make_pair(element,(*set)[pos]);
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| 394 |   return &value;
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| 395 | }
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| 396 | 
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| 397 | // explicit instantiation of all iterator template methods
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| 398 | // this is quite ugly, but there is no better way unless we expose iterator implementation
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| 399 | 
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| 400 | // instantiate Formula::iterator
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| 401 | template Formula::iterator::_iterator(set_t&);
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| 402 | template Formula::iterator::_iterator(set_t&,size_t);
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| 403 | template Formula::iterator::_iterator(const Formula::iterator&);
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| 404 | template Formula::iterator::~_iterator();
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| 405 | template Formula::iterator &Formula::iterator::operator=(const Formula::iterator&);
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| 406 | template bool Formula::iterator::operator==(const Formula::iterator&);
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| 407 | template bool Formula::iterator::operator!=(const Formula::iterator&);
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| 408 | template Formula::iterator Formula::iterator::operator++();
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| 409 | template Formula::iterator Formula::iterator::operator++(int);
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| 410 | template Formula::iterator Formula::iterator::operator--();
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| 411 | template Formula::iterator Formula::iterator::operator--(int);
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| 412 | template Formula::value_type Formula::iterator::operator*();
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| 413 | template Formula::value_type *Formula::iterator::operator->();
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| 414 | 
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| 415 | // instantiate Formula::const_iterator
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| 416 | template Formula::const_iterator::_iterator(set_t&);
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| 417 | template Formula::const_iterator::_iterator(set_t&,size_t);
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| 418 | template Formula::const_iterator::_iterator(const Formula::const_iterator&);
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| 419 | template Formula::const_iterator::~_iterator();
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| 420 | template Formula::const_iterator &Formula::const_iterator::operator=(const Formula::const_iterator&);
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| 421 | template bool Formula::const_iterator::operator==(const Formula::const_iterator&);
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| 422 | template bool Formula::const_iterator::operator!=(const Formula::const_iterator&);
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| 423 | template Formula::const_iterator Formula::const_iterator::operator++();
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| 424 | template Formula::Formula::const_iterator Formula::const_iterator::operator++(int);
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| 425 | template Formula::Formula::const_iterator Formula::const_iterator::operator--();
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| 426 | template Formula::Formula::const_iterator Formula::const_iterator::operator--(int);
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| 427 | template const Formula::value_type Formula::const_iterator::operator*();
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| 428 | template const Formula::value_type *Formula::const_iterator::operator->();
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| 429 | 
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| 430 | /********************** I/O of Formulas ************************************************/
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| 431 | 
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| 432 | std::ostream &operator<<(std::ostream &ost,const Formula &formula){
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| 433 |   ost << formula.toString();
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| 434 |   return ost;
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| 435 | }
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