| 1 | #ifndef STACKCLASS_HPP_
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| 2 | #define STACKCLASS_HPP_
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| 3 | 
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| 4 | using namespace std;
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| 5 | 
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| 6 | /*********************************************** includes ***********************************/
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| 7 | 
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| 8 | // include config.h
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| 9 | #ifdef HAVE_CONFIG_H
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| 10 | #include <config.h>
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| 11 | #endif
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| 12 | 
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| 13 | #include "verbose.hpp"
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| 14 | #include "memoryallocator.hpp"
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| 15 | 
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| 16 | /****************************************** forward declarations *****************************/
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| 17 | 
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| 18 | template <typename T> class StackClass;
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| 19 | 
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| 20 | /******************************** Functions for class StackClass ********************************/
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| 21 | 
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| 22 | /* Stack of Stuff.
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| 23 |  * Is used during DepthFirstSearchAnalysis() to detect nonseparable components.
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| 24 |  */
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| 25 | template <typename T> class StackClass {
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| 26 |   public:
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| 27 |   StackClass<T>(int dimension);
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| 28 |   ~StackClass<T>();
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| 29 | 
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| 30 |   bool Push(T object);
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| 31 |   T PopFirst();
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| 32 |   T PopLast();
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| 33 |   bool RemoveItem(T ptr);
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| 34 |   void ClearStack();
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| 35 |   bool IsEmpty() const;
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| 36 |   bool IsFull() const;
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| 37 |   int ItemCount() const;
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| 38 |   void Output(ofstream * const out) const;
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| 39 | 
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| 40 |   private:
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| 41 |     T *StackList;   //!< the list containing the atom pointers
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| 42 |     int EntryCount;     //!< number of entries in the stack
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| 43 |     int CurrentLastEntry;   //!< Current last entry (newest item on stack)
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| 44 |     int CurrentFirstEntry;   //!< Current first entry (oldest item on stack)
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| 45 |     int NextFreeField;       //!< Current index of next free field
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| 46 | };
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| 47 | 
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| 48 | /** Constructor of class StackClass.
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| 49 |  */
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| 50 | template <typename T> StackClass<T>::StackClass(int dimension) : StackList(NULL), EntryCount(dimension), CurrentLastEntry(0), CurrentFirstEntry(0), NextFreeField(0)
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| 51 | {
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| 52 |   StackList = Calloc<T>(EntryCount, "StackClass::StackClass: **StackList");
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| 53 | };
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| 54 | 
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| 55 | /** Destructor of class StackClass.
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| 56 |  */
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| 57 | template <typename T> StackClass<T>::~StackClass()
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| 58 | {
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| 59 |   Free(&StackList);
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| 60 | };
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| 61 | 
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| 62 | /** Pushes an object onto the stack.
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| 63 |  * \param *object atom to be pushed on stack
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| 64 |  * \return true - sucess, false - failure, meaning stack field was occupied
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| 65 |  */
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| 66 | template <typename T> bool StackClass<T>::Push(T object)
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| 67 | {
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| 68 |   if (!IsFull()) {    // check whether free field is really not occupied
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| 69 |     StackList[NextFreeField] = object;
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| 70 |     CurrentLastEntry = NextFreeField;
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| 71 |     NextFreeField = (NextFreeField + 1) % EntryCount; // step on to next free field
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| 72 |     return true;
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| 73 |   } else {
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| 74 |     eLog() << Verbose(0) << "ERROR: Stack is full, " << "Stack: CurrentLastEntry " << CurrentLastEntry<< "\tCurrentFirstEntry " << CurrentFirstEntry << "\tNextFreeField " << NextFreeField << "\tEntryCount " << EntryCount << "!" << endl;
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| 75 |     return false;
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| 76 |   }
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| 77 | };
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| 78 | 
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| 79 | /** Pops first/oldest atom from stack.
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| 80 |  * First in, last out.
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| 81 |  * \return atom pointer from stack, NULL - if failure (no atom pointer in field)
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| 82 |  */
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| 83 | template <typename T> T StackClass<T>::PopFirst()
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| 84 | {
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| 85 |   T Walker = NULL;
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| 86 |   if (!IsEmpty()) {
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| 87 |     Walker = StackList[CurrentFirstEntry];
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| 88 |     if (Walker == NULL)
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| 89 |       eLog() << Verbose(0) << "ERROR: Stack's field is empty!" << endl;
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| 90 |     StackList[CurrentFirstEntry] = NULL;
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| 91 |     if (CurrentFirstEntry != CurrentLastEntry) { // hasn't last item been popped as well?
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| 92 |       CurrentFirstEntry = (CurrentFirstEntry + 1) % EntryCount; // step back from current free field to last used (somehow modulo does not work in -1)
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| 93 |     } else {
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| 94 |       CurrentFirstEntry = (CurrentFirstEntry + 1) % EntryCount; // step back from current free field to last used (somehow modulo does not work in -1)
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| 95 |       CurrentLastEntry = CurrentFirstEntry;
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| 96 |     }
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| 97 |   } else
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| 98 |     eLog() << Verbose(0) << "ERROR: Stack is empty!" << endl;
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| 99 |   return Walker;
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| 100 | };
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| 101 | 
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| 102 | /** Pops last element from stack.
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| 103 |  * First in, first out.
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| 104 |  * \return element pointer from stack, NULL - if failure (no atom pointer in field)
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| 105 |  */
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| 106 | template <typename T> T StackClass<T>::PopLast()
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| 107 | {
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| 108 |   T Walker = NULL;
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| 109 |   if (!IsEmpty()) {
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| 110 |     Walker = StackList[CurrentLastEntry];
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| 111 |     StackList[CurrentLastEntry] = NULL;
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| 112 |     if (Walker == NULL)
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| 113 |       eLog() << Verbose(0) << "ERROR: Stack's field is empty!" << endl;
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| 114 |     NextFreeField = CurrentLastEntry;
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| 115 |     if (CurrentLastEntry != CurrentFirstEntry)  // has there been more than one item on stack
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| 116 |       CurrentLastEntry = (CurrentLastEntry + (EntryCount-1)) % EntryCount; // step back from current free field to last (modulo does not work in -1, thus go EntryCount-1 instead)
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| 117 |   } else {
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| 118 |     eLog() << Verbose(0) << "ERROR: Stack is empty!" << endl;
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| 119 |   }
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| 120 |   return Walker;
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| 121 | };
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| 122 | 
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| 123 | /** Removes a certain item from the stack.
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| 124 |  * Item is seeked between \a CurrentFirstEntry and \a CurrentLastEntry, if found, place in stack is NULL'd and
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| 125 |  * all subsequent items shifted by one position downward (with wrapping taken into account).
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| 126 |  * \param *ptr adress of item
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| 127 |  * \return true - item was removed, false - item was not found
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| 128 |  */
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| 129 | template <typename T> bool StackClass<T>::RemoveItem(T ptr)
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| 130 | {
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| 131 |   bool found = false;
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| 132 |   Log() << Verbose(5) << "First " << CurrentFirstEntry<< "\tLast " << CurrentLastEntry<< "\tNext " << NextFreeField<< "\tCount " << EntryCount<< "." << endl;
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| 133 |   int i=CurrentFirstEntry;
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| 134 |   if (!IsEmpty())
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| 135 |     do {
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| 136 |       if (StackList[i] == ptr) {  // if item found, remove
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| 137 |         Log() << Verbose(5) << "Item " << *ptr << " was number " << i << " on stack, removing it." << endl;
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| 138 |         found = true;
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| 139 |         StackList[i] = NULL;
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| 140 |       }
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| 141 |       if ((found) && (StackList[i] != NULL)) {  // means we have to shift (and not the removed item)
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| 142 |         if (i == 0) { // we are down to first item in stack, have to put onto last item
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| 143 |           Log() << Verbose(5) << "Shifting item 0 to place " << EntryCount-1 << "." << endl;
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| 144 |           StackList[EntryCount-1] = StackList[0];
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| 145 |         } else {
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| 146 |           Log() << Verbose(5) << "Shifting item " << i << " to place " << i-1 << "." << endl;
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| 147 |           StackList[i-1] = StackList[i];
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| 148 |         }
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| 149 |       }
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| 150 |       i=((i + 1) % EntryCount); // step on
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| 151 |     } while (i!=NextFreeField);
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| 152 |   else
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| 153 |     eLog() << Verbose(0) << "ERROR: Stack is already empty!" << endl;
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| 154 |   if (found) {
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| 155 |     NextFreeField = CurrentLastEntry;
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| 156 |     if (CurrentLastEntry != CurrentFirstEntry)  // has there been more than one item on stack
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| 157 |       CurrentLastEntry = (CurrentLastEntry + (EntryCount-1)) % EntryCount;
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| 158 |   }
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| 159 |   return found;
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| 160 | };
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| 161 | 
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| 162 | 
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| 163 | /** Puts contents of stack into ofstream \a *out.
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| 164 |  * \param *out ofstream for output
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| 165 |  */
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| 166 | template <typename T> void StackClass<T>::Output(ofstream * const out) const
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| 167 | {
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| 168 |   *out << "Contents of Stack: ";
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| 169 |   for(int i=0;i<EntryCount;i++) {
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| 170 |     *out << "\t";
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| 171 |     if (i == CurrentFirstEntry)
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| 172 |       *out << " 1";
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| 173 |     if  (i == CurrentLastEntry)
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| 174 |       *out << " "<< EntryCount;
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| 175 |     if (i ==  NextFreeField)
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| 176 |       *out << " F";
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| 177 |     *out << ": " << StackList[i];
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| 178 |   }
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| 179 |   *out << endl;
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| 180 | };
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| 181 | 
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| 182 | /** Checks whether stack is empty.
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| 183 |  * Simply checks whether StackClass::NextFreeField is equal to StackClass::CurrentFirstEntry and
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| 184 |  * StackClass::CurrentFirstEntry is equal to StackClass::CurrentLastEntry.
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| 185 |  * \return true - empty, false - not
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| 186 |  */
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| 187 | template <typename T> bool StackClass<T>::IsEmpty() const
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| 188 | {
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| 189 |   return((NextFreeField == CurrentFirstEntry) && (CurrentLastEntry == CurrentFirstEntry));
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| 190 | };
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| 191 | 
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| 192 | /** Checks whether stack is full.
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| 193 |  * Simply checks whether StackClass::NextFreeField is equal to StackClass::CurrentFirstEntry and
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| 194 |  * StackClass::CurrentFirstEntry is _not_ equal to StackClass::CurrentLastEntry.
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| 195 |  * \return true - full, false - not
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| 196 |  */
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| 197 | template <typename T> bool StackClass<T>::IsFull() const
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| 198 | {
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| 199 |   return((NextFreeField == CurrentFirstEntry) && (CurrentLastEntry != CurrentFirstEntry));
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| 200 | };
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| 201 | 
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| 202 | /** Returns number of items on stack.
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| 203 |  * Simply returns difference between StackClass::Stacklist entry StackClass::CurrentEntry-1.
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| 204 |  * \return number of items on stack
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| 205 |  * \warning will never return correct item count if stack is full, i.e. count would be StackClass::EntryCount.
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| 206 |  */
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| 207 | template <typename T> int StackClass<T>::ItemCount() const
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| 208 | {
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| 209 |   //Log() << Verbose(0) << "Stack: CurrentLastEntry " << CurrentLastEntry<< "\tCurrentFirstEntry " << CurrentFirstEntry << "\tEntryCount " << EntryCount << "." << endl;
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| 210 |   return((NextFreeField + (EntryCount - CurrentFirstEntry)) % EntryCount);
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| 211 | };
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| 212 | 
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| 213 | /** Clears the stack from all atoms.
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| 214 |  * \return true - sucess, false - failure
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| 215 |  */
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| 216 | template <typename T> void StackClass<T>::ClearStack()
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| 217 | {
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| 218 |   for(int i=EntryCount; i--;)
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| 219 |     StackList[i] = NULL;
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| 220 |   CurrentFirstEntry = 0;
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| 221 |   CurrentLastEntry = 0;
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| 222 |   NextFreeField = 0;
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| 223 | };
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| 224 | 
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| 225 | 
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| 226 | 
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| 227 | #endif /*STACKCLASS_HPP_*/
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