transform_iterator_ref.rst 5.9 KB

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  1. .. Copyright David Abrahams 2006. Distributed under the Boost
  2. .. Software License, Version 1.0. (See accompanying
  3. .. file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
  4. .. Version 1.3 of this document was accepted for TR1
  5. ::
  6. template <class UnaryFunction,
  7. class Iterator,
  8. class Reference = use_default,
  9. class Value = use_default>
  10. class transform_iterator
  11. {
  12. public:
  13. typedef /* see below */ value_type;
  14. typedef /* see below */ reference;
  15. typedef /* see below */ pointer;
  16. typedef iterator_traits<Iterator>::difference_type difference_type;
  17. typedef /* see below */ iterator_category;
  18. transform_iterator();
  19. transform_iterator(Iterator const& x, UnaryFunction f);
  20. template<class F2, class I2, class R2, class V2>
  21. transform_iterator(
  22. transform_iterator<F2, I2, R2, V2> const& t
  23. , typename enable_if_convertible<I2, Iterator>::type* = 0 // exposition only
  24. , typename enable_if_convertible<F2, UnaryFunction>::type* = 0 // exposition only
  25. );
  26. UnaryFunction functor() const;
  27. Iterator const& base() const;
  28. reference operator*() const;
  29. transform_iterator& operator++();
  30. transform_iterator& operator--();
  31. private:
  32. Iterator m_iterator; // exposition only
  33. UnaryFunction m_f; // exposition only
  34. };
  35. If ``Reference`` is ``use_default`` then the ``reference`` member of
  36. ``transform_iterator`` is
  37. ``result_of<const UnaryFunction(iterator_traits<Iterator>::reference)>::type``.
  38. Otherwise, ``reference`` is ``Reference``.
  39. If ``Value`` is ``use_default`` then the ``value_type`` member is
  40. ``remove_cv<remove_reference<reference> >::type``. Otherwise,
  41. ``value_type`` is ``Value``.
  42. If ``Iterator`` models Readable Lvalue Iterator and if ``Iterator``
  43. models Random Access Traversal Iterator, then ``iterator_category`` is
  44. convertible to ``random_access_iterator_tag``. Otherwise, if
  45. ``Iterator`` models Bidirectional Traversal Iterator, then
  46. ``iterator_category`` is convertible to
  47. ``bidirectional_iterator_tag``. Otherwise ``iterator_category`` is
  48. convertible to ``forward_iterator_tag``. If ``Iterator`` does not
  49. model Readable Lvalue Iterator then ``iterator_category`` is
  50. convertible to ``input_iterator_tag``.
  51. ``transform_iterator`` requirements
  52. ...................................
  53. The type ``UnaryFunction`` must be Assignable, Copy Constructible, and
  54. the expression ``f(*i)`` must be valid where ``f`` is a const object of
  55. type ``UnaryFunction``, ``i`` is an object of type ``Iterator``, and
  56. where the type of ``f(*i)`` must be
  57. ``result_of<const UnaryFunction(iterator_traits<Iterator>::reference)>::type``.
  58. The argument ``Iterator`` shall model Readable Iterator.
  59. ``transform_iterator`` models
  60. .............................
  61. The resulting ``transform_iterator`` models the most refined of the
  62. following that is also modeled by ``Iterator``.
  63. * Writable Lvalue Iterator if ``transform_iterator::reference`` is a non-const reference.
  64. * Readable Lvalue Iterator if ``transform_iterator::reference`` is a const reference.
  65. * Readable Iterator otherwise.
  66. The ``transform_iterator`` models the most refined standard traversal
  67. concept that is modeled by the ``Iterator`` argument.
  68. If ``transform_iterator`` is a model of Readable Lvalue Iterator then
  69. it models the following original iterator concepts depending on what
  70. the ``Iterator`` argument models.
  71. +-----------------------------------+---------------------------------------+
  72. | If ``Iterator`` models | then ``transform_iterator`` models |
  73. +===================================+=======================================+
  74. | Single Pass Iterator | Input Iterator |
  75. +-----------------------------------+---------------------------------------+
  76. | Forward Traversal Iterator | Forward Iterator |
  77. +-----------------------------------+---------------------------------------+
  78. | Bidirectional Traversal Iterator | Bidirectional Iterator |
  79. +-----------------------------------+---------------------------------------+
  80. | Random Access Traversal Iterator | Random Access Iterator |
  81. +-----------------------------------+---------------------------------------+
  82. If ``transform_iterator`` models Writable Lvalue Iterator then it is a
  83. mutable iterator (as defined in the old iterator requirements).
  84. ``transform_iterator<F1, X, R1, V1>`` is interoperable with
  85. ``transform_iterator<F2, Y, R2, V2>`` if and only if ``X`` is
  86. interoperable with ``Y``.
  87. ``transform_iterator`` operations
  88. .................................
  89. In addition to the operations required by the concepts modeled by
  90. ``transform_iterator``, ``transform_iterator`` provides the following
  91. operations.
  92. ``transform_iterator();``
  93. :Returns: An instance of ``transform_iterator`` with ``m_f``
  94. and ``m_iterator`` default constructed.
  95. ``transform_iterator(Iterator const& x, UnaryFunction f);``
  96. :Returns: An instance of ``transform_iterator`` with ``m_f``
  97. initialized to ``f`` and ``m_iterator`` initialized to ``x``.
  98. ::
  99. template<class F2, class I2, class R2, class V2>
  100. transform_iterator(
  101. transform_iterator<F2, I2, R2, V2> const& t
  102. , typename enable_if_convertible<I2, Iterator>::type* = 0 // exposition only
  103. , typename enable_if_convertible<F2, UnaryFunction>::type* = 0 // exposition only
  104. );
  105. :Returns: An instance of ``transform_iterator`` with ``m_f``
  106. initialized to ``t.functor()`` and ``m_iterator`` initialized to
  107. ``t.base()``.
  108. :Requires: ``OtherIterator`` is implicitly convertible to ``Iterator``.
  109. ``UnaryFunction functor() const;``
  110. :Returns: ``m_f``
  111. ``Iterator const& base() const;``
  112. :Returns: ``m_iterator``
  113. ``reference operator*() const;``
  114. :Returns: ``m_f(*m_iterator)``
  115. ``transform_iterator& operator++();``
  116. :Effects: ``++m_iterator``
  117. :Returns: ``*this``
  118. ``transform_iterator& operator--();``
  119. :Effects: ``--m_iterator``
  120. :Returns: ``*this``