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								[section:facade Iterator Facade]
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								While the iterator interface is rich, there is a core subset of the
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								interface that is necessary for all the functionality.  We have
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								identified the following core behaviors for iterators:
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								* dereferencing
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								* incrementing
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								* decrementing
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								* equality comparison
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								* random-access motion
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								* distance measurement
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								In addition to the behaviors listed above, the core interface elements
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								include the associated types exposed through iterator traits:
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								`value_type`, `reference`, `difference_type`, and
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								`iterator_category`.
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								Iterator facade uses the Curiously Recurring Template
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								Pattern (CRTP) [Cop95]_ so that the user can specify the behavior
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								of `iterator_facade` in a derived class.  Former designs used
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								policy objects to specify the behavior, but that approach was
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								discarded for several reasons:
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								1. the creation and eventual copying of the policy object may create
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								   overhead that can be avoided with the current approach.
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								2. The policy object approach does not allow for custom constructors
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								   on the created iterator types, an essential feature if
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								   `iterator_facade` should be used in other library
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								   implementations.
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								3. Without the use of CRTP, the standard requirement that an
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								   iterator's `operator++` returns the iterator type itself
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								   would mean that all iterators built with the library would
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								   have to be specializations of `iterator_facade<...>`, rather
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								   than something more descriptive like
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								   `indirect_iterator<T*>`.  Cumbersome type generator
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								   metafunctions would be needed to build new parameterized
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								   iterators, and a separate `iterator_adaptor` layer would be
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								   impossible.
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								[h2 Usage]
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								The user of `iterator_facade` derives his iterator class from a
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								specialization of `iterator_facade` and passes the derived
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								iterator class as `iterator_facade`\ 's first template parameter.
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								The order of the other template parameters have been carefully
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								chosen to take advantage of useful defaults.  For example, when
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								defining a constant lvalue iterator, the user can pass a
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								const-qualified version of the iterator's `value_type` as
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								`iterator_facade`\ 's `Value` parameter and omit the
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								`Reference` parameter which follows.
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								The derived iterator class must define member functions implementing
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								the iterator's core behaviors.  The following table describes
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								expressions which are required to be valid depending on the category
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								of the derived iterator type.  These member functions are described
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								briefly below and in more detail in the iterator facade
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								requirements.
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								[table Core Interface
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								  [
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								    [Expression]
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								    [Effects]
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								  ]
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								  [
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								    [`i.dereference()`]
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								    [Access the value referred to]
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								  [
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								    [`i.equal(j)`]
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								    [Compare for equality with `j`]
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								  ]
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								  [
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								    [`i.increment()`]
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								    [Advance by one position]
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								  ]
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								  [
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								    [`i.decrement()`]
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								    [Retreat by one position]
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								  ]
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								  [
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								    [`i.advance(n)`]
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								    [Advance by `n` positions]
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								  [
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								    [`i.distance_to(j)`]
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								    [Measure the distance to `j`]
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								  ]
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								]
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								[/ .. Should we add a comment that a zero overhead implementation of iterator_facade is possible with proper inlining?]
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								In addition to implementing the core interface functions, an iterator
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								derived from `iterator_facade` typically defines several
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								constructors. To model any of the standard iterator concepts, the
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								iterator must at least have a copy constructor. Also, if the iterator
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								type `X` is meant to be automatically interoperate with another
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								iterator type `Y` (as with constant and mutable iterators) then
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								there must be an implicit conversion from `X` to `Y` or from `Y`
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								to `X` (but not both), typically implemented as a conversion
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								constructor. Finally, if the iterator is to model Forward Traversal
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								Iterator or a more-refined iterator concept, a default constructor is
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								required.
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								[h2 Iterator Core Access]
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								`iterator_facade` and the operator implementations need to be able
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								to access the core member functions in the derived class.  Making the
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								core member functions public would expose an implementation detail to
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								the user.  The design used here ensures that implementation details do
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								not appear in the public interface of the derived iterator type.
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								Preventing direct access to the core member functions has two
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								advantages.  First, there is no possibility for the user to accidently
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								use a member function of the iterator when a member of the value_type
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								was intended.  This has been an issue with smart pointer
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								implementations in the past.  The second and main advantage is that
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								library implementers can freely exchange a hand-rolled iterator
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								implementation for one based on `iterator_facade` without fear of
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								breaking code that was accessing the public core member functions
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								directly.
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								In a naive implementation, keeping the derived class' core member
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								functions private would require it to grant friendship to
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								`iterator_facade` and each of the seven operators.  In order to
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								reduce the burden of limiting access, `iterator_core_access` is
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								provided, a class that acts as a gateway to the core member functions
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								in the derived iterator class.  The author of the derived class only
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								needs to grant friendship to `iterator_core_access` to make his core
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								member functions available to the library.
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								`iterator_core_access` will be typically implemented as an empty
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								class containing only private static member functions which invoke the
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								iterator core member functions. There is, however, no need to
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								standardize the gateway protocol.  Note that even if
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								`iterator_core_access` used public member functions it would not
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								open a safety loophole, as every core member function preserves the
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								invariants of the iterator.
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								[h2 `operator\[\]`]
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								The indexing operator for a generalized iterator presents special
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								challenges.  A random access iterator's `operator[]` is only
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								required to return something convertible to its `value_type`.
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								Requiring that it return an lvalue would rule out currently-legal
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								random-access iterators which hold the referenced value in a data
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								member (e.g. |counting|_), because `*(p+n)` is a reference
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								into the temporary iterator `p+n`, which is destroyed when
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								`operator[]` returns.
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								.. |counting| replace:: `counting_iterator`
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								Writable iterators built with `iterator_facade` implement the
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								semantics required by the preferred resolution to `issue 299`_ and
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								adopted by proposal n1550_: the result of `p[n]` is an object
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								convertible to the iterator's `value_type`, and `p[n] = x` is
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								equivalent to `*(p + n) = x` (Note: This result object may be
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								implemented as a proxy containing a copy of `p+n`).  This approach
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								will work properly for any random-access iterator regardless of the
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								other details of its implementation.  A user who knows more about
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								the implementation of her iterator is free to implement an
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								`operator[]` that returns an lvalue in the derived iterator
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								class; it will hide the one supplied by `iterator_facade` from
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								clients of her iterator.
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								.. _n1550: http://anubis.dkuug.dk/JTC1/SC22/WG21/docs/papers/2003/n1550.html
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								.. _`issue 299`: http://anubis.dkuug.dk/jtc1/sc22/wg21/docs/lwg-active.html#299
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								.. _`operator arrow`:
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								[h2 `operator->`]
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								The `reference` type of a readable iterator (and today's input
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								iterator) need not in fact be a reference, so long as it is
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								convertible to the iterator's `value_type`.  When the `value_type`
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								is a class, however, it must still be possible to access members
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								through `operator->`.  Therefore, an iterator whose `reference`
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								type is not in fact a reference must return a proxy containing a copy
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								of the referenced value from its `operator->`.
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								The return types for `iterator_facade`\ 's `operator->` and
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								`operator[]` are not explicitly specified. Instead, those types
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								are described in terms of a set of requirements, which must be
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								satisfied by the `iterator_facade` implementation.
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								.. [Cop95] [Coplien, 1995] Coplien, J., Curiously Recurring Template
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								   Patterns, C++ Report, February 1995, pp. 24-27.
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								[section:facade_reference Reference]
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								  template <
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								      class Derived
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								    , class Value
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								    , class CategoryOrTraversal
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								    , class Reference  = Value&
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								    , class Difference = ptrdiff_t
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								  >
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								  class iterator_facade {
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								   public:
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								      typedef remove_const<Value>::type value_type;
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								      typedef Reference reference;
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								      typedef Value\* pointer;
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								      typedef Difference difference_type;
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								      typedef /* see below__ \*/ iterator_category;
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								      reference operator\*() const;
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								      /* see below__ \*/ operator->() const;
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								      /* see below__ \*/ operator[](difference_type n) const;
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								      Derived& operator++();
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								      Derived operator++(int);
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								      Derived& operator--();
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								      Derived operator--(int);
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								      Derived& operator+=(difference_type n);
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								      Derived& operator-=(difference_type n);
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								      Derived operator-(difference_type n) const;
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								   protected:
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								      typedef iterator_facade iterator_facade\_;
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								  };
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								  // Comparison operators
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								  template <class Dr1, class V1, class TC1, class R1, class D1,
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								            class Dr2, class V2, class TC2, class R2, class D2>
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								  typename enable_if_interoperable<Dr1,Dr2,bool>::type // exposition
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								  operator ==(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
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								  template <class Dr1, class V1, class TC1, class R1, class D1,
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								            class Dr2, class V2, class TC2, class R2, class D2>
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								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
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								  operator !=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
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								  template <class Dr1, class V1, class TC1, class R1, class D1,
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								            class Dr2, class V2, class TC2, class R2, class D2>
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								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
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								  operator <(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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								             iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
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								  template <class Dr1, class V1, class TC1, class R1, class D1,
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								            class Dr2, class V2, class TC2, class R2, class D2>
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								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
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								  operator <=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator >(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								             iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator >=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  // Iterator difference
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  /* see below__ \*/
							 | 
						||
| 
								 | 
							
								  operator-(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								            iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  // Iterator addition
							 | 
						||
| 
								 | 
							
								  template <class Dr, class V, class TC, class R, class D>
							 | 
						||
| 
								 | 
							
								  Derived operator+ (iterator_facade<Dr,V,TC,R,D> const&,
							 | 
						||
| 
								 | 
							
								                     typename Derived::difference_type n);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr, class V, class TC, class R, class D>
							 | 
						||
| 
								 | 
							
								  Derived operator+ (typename Derived::difference_type n,
							 | 
						||
| 
								 | 
							
								                     iterator_facade<Dr,V,TC,R,D> const&);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								__ `iterator category`_
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								__ `operator arrow`_
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								__ brackets_
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								__ minus_
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. _`iterator category`:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								The `iterator_category` member of `iterator_facade` is
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. parsed-literal::
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  *iterator-category*\ (CategoryOrTraversal, value_type, reference)
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								where *iterator-category* is defined as follows:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. include:: facade_iterator_category.rst
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								The `enable_if_interoperable` template used above is for exposition
							 | 
						||
| 
								 | 
							
								purposes.  The member operators should only be in an overload set
							 | 
						||
| 
								 | 
							
								provided the derived types `Dr1` and `Dr2` are interoperable, 
							 | 
						||
| 
								 | 
							
								meaning that at least one of the types is convertible to the other.  The
							 | 
						||
| 
								 | 
							
								`enable_if_interoperable` approach uses SFINAE to take the operators
							 | 
						||
| 
								 | 
							
								out of the overload set when the types are not interoperable.  
							 | 
						||
| 
								 | 
							
								The operators should behave *as-if* `enable_if_interoperable`
							 | 
						||
| 
								 | 
							
								were defined to be:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <bool, typename> enable_if_interoperable_impl
							 | 
						||
| 
								 | 
							
								  {};
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <typename T> enable_if_interoperable_impl<true,T>
							 | 
						||
| 
								 | 
							
								  { typedef T type; };
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template<typename Dr1, typename Dr2, typename T>
							 | 
						||
| 
								 | 
							
								  struct enable_if_interoperable
							 | 
						||
| 
								 | 
							
								    : enable_if_interoperable_impl<
							 | 
						||
| 
								 | 
							
								          is_convertible<Dr1,Dr2>::value || is_convertible<Dr2,Dr1>::value
							 | 
						||
| 
								 | 
							
								        , T
							 | 
						||
| 
								 | 
							
								      >
							 | 
						||
| 
								 | 
							
								  {};
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[h2 Requirements]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								The following table describes the typical valid expressions on
							 | 
						||
| 
								 | 
							
								`iterator_facade`\ 's `Derived` parameter, depending on the
							 | 
						||
| 
								 | 
							
								iterator concept(s) it will model.  The operations in the first
							 | 
						||
| 
								 | 
							
								column must be made accessible to member functions of class
							 | 
						||
| 
								 | 
							
								`iterator_core_access`.  In addition,
							 | 
						||
| 
								 | 
							
								`static_cast<Derived*>(iterator_facade*)` shall be well-formed.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								In the table below, `F` is `iterator_facade<X,V,C,R,D>`, `a` is an
							 | 
						||
| 
								 | 
							
								object of type `X`, `b` and `c` are objects of type `const X`,
							 | 
						||
| 
								 | 
							
								`n` is an object of `F::difference_type`, `y` is a constant
							 | 
						||
| 
								 | 
							
								object of a single pass iterator type interoperable with `X`, and `z`
							 | 
						||
| 
								 | 
							
								is a constant object of a random access traversal iterator type
							 | 
						||
| 
								 | 
							
								interoperable with `X`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. _`core operations`:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. topic:: `iterator_facade` Core Operations
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[table Core Operations
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [Expression]
							 | 
						||
| 
								 | 
							
								    [Return Type]
							 | 
						||
| 
								 | 
							
								    [Assertion/Note]
							 | 
						||
| 
								 | 
							
								    [Used to implement Iterator Concept(s)]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`c.dereference()`]
							 | 
						||
| 
								 | 
							
								    [`F::reference`]
							 | 
						||
| 
								 | 
							
								    []
							 | 
						||
| 
								 | 
							
								    [Readable Iterator, Writable Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`c.equal(y)`]
							 | 
						||
| 
								 | 
							
								    [convertible to bool]
							 | 
						||
| 
								 | 
							
								    [true iff `c` and `y` refer to the same position]
							 | 
						||
| 
								 | 
							
								    [Single Pass Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`a.increment()`]
							 | 
						||
| 
								 | 
							
								    [unused]
							 | 
						||
| 
								 | 
							
								    []
							 | 
						||
| 
								 | 
							
								    [Incrementable Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`a.decrement()`]
							 | 
						||
| 
								 | 
							
								    [unused]
							 | 
						||
| 
								 | 
							
								    []
							 | 
						||
| 
								 | 
							
								    [Bidirectional Traversal Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`a.advance(n)`]
							 | 
						||
| 
								 | 
							
								    [unused]
							 | 
						||
| 
								 | 
							
								    []
							 | 
						||
| 
								 | 
							
								    [Random Access Traversal Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								  [
							 | 
						||
| 
								 | 
							
								    [`c.distance_to(z)`]
							 | 
						||
| 
								 | 
							
								    [convertible to `F::difference_type`]
							 | 
						||
| 
								 | 
							
								    [equivalent to `distance(c, X(z))`.]
							 | 
						||
| 
								 | 
							
								    [Random Access Traversal Iterator]
							 | 
						||
| 
								 | 
							
								  ]
							 | 
						||
| 
								 | 
							
								]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[h2 Operations]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								The operations in this section are described in terms of operations on
							 | 
						||
| 
								 | 
							
								the core interface of `Derived` which may be inaccessible
							 | 
						||
| 
								 | 
							
								(i.e. private).  The implementation should access these operations
							 | 
						||
| 
								 | 
							
								through member functions of class `iterator_core_access`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  reference operator*() const;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:] `static_cast<Derived const*>(this)->dereference()`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  operator->() const; (see below__)
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								__ `operator arrow`_
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:] If `reference` is a reference type, an object of type `pointer` equal to: `&static_cast<Derived const*>(this)->dereference()`
							 | 
						||
| 
								 | 
							
								Otherwise returns an object of unspecified type such that, 
							 | 
						||
| 
								 | 
							
								`(*static_cast<Derived const*>(this))->m` is equivalent to `(w = **static_cast<Derived const*>(this),
							 | 
						||
| 
								 | 
							
								w.m)` for some temporary object `w` of type `value_type`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. _brackets:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  *unspecified* operator[](difference_type n) const;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:] an object convertible to `value_type`. For constant
							 | 
						||
| 
								 | 
							
								     objects `v` of type `value_type`, and `n` of type
							 | 
						||
| 
								 | 
							
								     `difference_type`, `(*this)[n] = v` is equivalent to
							 | 
						||
| 
								 | 
							
								     `*(*this + n) = v`, and `static_cast<value_type
							 | 
						||
| 
								 | 
							
								     const&>((*this)[n])` is equivalent to
							 | 
						||
| 
								 | 
							
								     `static_cast<value_type const&>(*(*this + n))`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived& operator++();
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:] 
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								    static_cast<Derived*>(this)->increment();
							 | 
						||
| 
								 | 
							
								    return *static_cast<Derived*>(this);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived operator++(int);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								    Derived tmp(static_cast<Derived const*>(this));
							 | 
						||
| 
								 | 
							
								    ++*this;
							 | 
						||
| 
								 | 
							
								    return tmp;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived& operator--();
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								      static_cast<Derived*>(this)->decrement();
							 | 
						||
| 
								 | 
							
								      return *static_cast<Derived*>(this);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived operator--(int);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								    Derived tmp(static_cast<Derived const*>(this));
							 | 
						||
| 
								 | 
							
								    --*this;
							 | 
						||
| 
								 | 
							
								    return tmp;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived& operator+=(difference_type n);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								      static_cast<Derived*>(this)->advance(n);
							 | 
						||
| 
								 | 
							
								      return *static_cast<Derived*>(this);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived& operator-=(difference_type n);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								      static_cast<Derived*>(this)->advance(-n);
							 | 
						||
| 
								 | 
							
								      return *static_cast<Derived*>(this);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Derived operator-(difference_type n) const;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								    Derived tmp(static_cast<Derived const*>(this));
							 | 
						||
| 
								 | 
							
								    return tmp -= n;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr, class V, class TC, class R, class D>
							 | 
						||
| 
								 | 
							
								  Derived operator+ (iterator_facade<Dr,V,TC,R,D> const&,
							 | 
						||
| 
								 | 
							
								                     typename Derived::difference_type n);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr, class V, class TC, class R, class D>
							 | 
						||
| 
								 | 
							
								  Derived operator+ (typename Derived::difference_type n,
							 | 
						||
| 
								 | 
							
								                     iterator_facade<Dr,V,TC,R,D> const&);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Effects:]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								    Derived tmp(static_cast<Derived const*>(this));
							 | 
						||
| 
								 | 
							
								    return tmp += n;
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator ==(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `((Dr1 const&)lhs).equal((Dr2 const&)rhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `((Dr2 const&)rhs).equal((Dr1 const&)lhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator !=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `!((Dr1 const&)lhs).equal((Dr2 const&)rhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `!((Dr2 const&)rhs).equal((Dr1 const&)lhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
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								  template <class Dr1, class V1, class TC1, class R1, class D1,
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								            class Dr2, class V2, class TC2, class R2, class D2>
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								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
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								 | 
							
								  operator <(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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								 | 
							
								             iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
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								[*Returns:]
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								 | 
							
								 
							 | 
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								  if `is_convertible<Dr2,Dr1>::value`
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								  then 
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								    `((Dr1 const&)lhs).distance_to((Dr2 const&)rhs) < 0`.
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								  Otherwise, 
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								    `((Dr2 const&)rhs).distance_to((Dr1 const&)lhs) > 0`.
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| 
								 | 
							
								
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| 
								 | 
							
								
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| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
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| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
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| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
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| 
								 | 
							
								  operator <=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
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| 
								 | 
							
								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
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| 
								 | 
							
								
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								 | 
							
								[*Returns:]
							 | 
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| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
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| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `((Dr1 const&)lhs).distance_to((Dr2 const&)rhs) <= 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `((Dr2 const&)rhs).distance_to((Dr1 const&)lhs) >= 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator >(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								             iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `((Dr1 const&)lhs).distance_to((Dr2 const&)rhs) > 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `((Dr2 const&)rhs).distance_to((Dr1 const&)lhs) < 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,bool>::type
							 | 
						||
| 
								 | 
							
								  operator >=(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								              iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `((Dr1 const&)lhs).distance_to((Dr2 const&)rhs) >= 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `((Dr2 const&)rhs).distance_to((Dr1 const&)lhs) <= 0`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								.. _minus:
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  template <class Dr1, class V1, class TC1, class R1, class D1,
							 | 
						||
| 
								 | 
							
								            class Dr2, class V2, class TC2, class R2, class D2>
							 | 
						||
| 
								 | 
							
								  typename enable_if_interoperable<Dr1,Dr2,difference>::type
							 | 
						||
| 
								 | 
							
								  operator -(iterator_facade<Dr1,V1,TC1,R1,D1> const& lhs,
							 | 
						||
| 
								 | 
							
								             iterator_facade<Dr2,V2,TC2,R2,D2> const& rhs);
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Return Type:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								   then 
							 | 
						||
| 
								 | 
							
								    `difference` shall be
							 | 
						||
| 
								 | 
							
								    `iterator_traits<Dr1>::difference_type`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								   Otherwise 
							 | 
						||
| 
								 | 
							
								    `difference` shall be `iterator_traits<Dr2>::difference_type`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[*Returns:]
							 | 
						||
| 
								 | 
							
								 
							 | 
						||
| 
								 | 
							
								  if `is_convertible<Dr2,Dr1>::value`
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  then 
							 | 
						||
| 
								 | 
							
								    `-((Dr1 const&)lhs).distance_to((Dr2 const&)rhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								  Otherwise, 
							 | 
						||
| 
								 | 
							
								    `((Dr2 const&)rhs).distance_to((Dr1 const&)lhs)`.
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[endsect]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[include facade_tutorial.qbk]
							 | 
						||
| 
								 | 
							
								
							 | 
						||
| 
								 | 
							
								[endsect]
							 |