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I have a linked list of a struct:

typedef struct {
    std::string title;
    int rating;
} listing;

and a standard iterator that's part of my list's class:

template<class T>
class ListIterator
    ListIterator( ) : current(NULL) {}

    ListIterator(Node<T>* initial) : current(initial) {}

    const T& operator *( ) const { return current->getData( ); }
    //Precondition: Not equal to the default constructor object,
    //that is, current != NULL.

    ListIterator& operator ++( ) //Prefix form
        current = current->getLink( );
        return *this;

    ListIterator operator ++(int) //Postfix form
        ListIterator startVersion(current);
        current = current->getLink( );
        return startVersion;

    bool operator ==(const ListIterator& rightSide) const
    { return (current == rightSide.current); }

    bool operator !=(const ListIterator& rightSide) const
    { return (current != rightSide.current); }

    //The default assignment operator and copy constructor
     //should work correctly for ListIterator,
    Node<T> *current;

this works fine when dealing with lists of standard data types (int, char, string, etc.) but I can't figure out how to iterate through the data in each struct within the list.

It could be due to how I'm storing them:

// declaration of list, Queue is list class name
Queue<listing> list;

// data reads from file
while (!datafile.eof()) {

    listing entry = *new listing;

    datafile >> listing.rating;
    std::getline(datafile, listing.title);



Hope this isn't too vague. If you need to see more code let me know.

Node and Queue class:

template<class T>
class Node
    Node(T theData, Node<T>* theLink) : data(theData), link(theLink){}
    Node<T>* getLink( ) const { return link; }

    const T& getData( ) const { return data; }

    void setData(const T& theData) { data = theData; }
    void setLink(Node<T>* pointer) { link = pointer; }

    T data;
    Node<T> *link;

template<class T>
class Queue
    typedef ListIterator<T> Iterator;

    Queue( );
    // Initializes the object to an empty queue.

    Queue(const Queue<T>& aQueue);

    Queue<T>& operator =(const Queue<T>& rightSide);

    virtual ~Queue( );

    void add(T item);
    // Postcondition: item has been added to the back of the queue.

    T remove( );
    // Precondition: The queue is not empty.
    // Returns the item at the front of the queue
    // and removes that item from the queue.

    bool isEmpty( ) const;
    // Returns true if the queue is empty. Returns false otherwise.

    Iterator begin() const { return Iterator(front); }
    Iterator end() const { return Iterator(); }

    Node<T> *front; // Points to the head of a linked list. 
                    // Items are removed at the head

    Node<T> *back; // Points to the node at the other end of the linked list.
                   // Items are added at this end.
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closed as too localized by WhozCraig, jogojapan, Mario, 0x7fffffff, David Segonds Nov 27 '12 at 0:06

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Why listing entry = *new listing;? Why not listing entry;? –  Nawaz Nov 26 '12 at 5:13
where is ur Node –  Anirudha Nov 26 '12 at 5:14
added the interfaces for node and queue. –  frankV Nov 26 '12 at 5:28
@Nawaz thanks, that seems to work too. –  frankV Nov 26 '12 at 5:29

1 Answer 1

up vote 0 down vote accepted

The solution was pretty simple. I'm embarrassed I didn't see it earlier.

Queue<listing>::Iterator all;
for (all = list.begin(); all != list.end(); all++) {

    listing entry = *all;
    cout << entry.title << " ";
    cout << entry.rating << "\n";

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