trie_iterator.hpp 4.3 KB

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  1. //
  2. // trie_iterator.hpp
  3. // trie
  4. //
  5. // Created by Sam Jaffe on 6/16/17.
  6. //
  7. #pragma once
  8. #include "trie.hpp"
  9. #include "iterator/end_aware_iterator.hpp"
  10. #include <list>
  11. #include <stack>
  12. namespace detail {
  13. template <typename Iter>
  14. struct trie_iterator_next {
  15. using iter_t = ::iterator::end_aware_iterator<Iter>;
  16. template <typename Trie> iter_t operator()(Trie & tr) {
  17. return { tr.local_begin(), tr.local_end() };
  18. }
  19. };
  20. template <typename Iter>
  21. struct trie_iterator_next<std::reverse_iterator<Iter>> {
  22. using iter_t = ::iterator::end_aware_iterator<std::reverse_iterator<Iter>>;
  23. template <typename Trie> iter_t operator()(Trie & tr) {
  24. return { tr.local_rbegin(), tr.local_rend() };
  25. }
  26. };
  27. template <typename Trie, typename Iter>
  28. class trie_iterator_base {
  29. protected:
  30. using helper = trie_iterator_next<Iter>;
  31. using impl_t = typename helper::iter_t;
  32. std::stack<Trie *> stk;
  33. std::list<typename Trie::key_type> keys;
  34. std::stack<impl_t> iters;
  35. bool done{false};
  36. public:
  37. using reference = decltype(std::declval<Trie>().value());
  38. using value_type = std::remove_reference_t<reference>;
  39. using pointer = value_type *;
  40. using difference_type = std::ptrdiff_t;
  41. using iterator_category = std::forward_iterator_tag;
  42. public:
  43. trie_iterator_base() : done{true} {}
  44. trie_iterator_base(Trie * tr) { stk.push(tr); }
  45. auto operator*() const -> reference { return root(); }
  46. auto operator->() const -> pointer { return std::addressof(operator*()); }
  47. Trie & root() const { return *stk.top(); }
  48. trie_iterator_base parent() const {
  49. trie_iterator_base tmp{*this};
  50. tmp.pop();
  51. return tmp;
  52. }
  53. protected:
  54. void push(impl_t it) {
  55. iters.push(it);
  56. keys.push_back(it->first);
  57. stk.push(it->second.get());
  58. }
  59. void pop() {
  60. stk.pop();
  61. iters.pop();
  62. keys.pop_back();
  63. }
  64. bool poping_empty() {
  65. if (!iters.top().done()) { return false; }
  66. pop();
  67. return !iters.empty();
  68. }
  69. void assign() {
  70. if (iters.empty()) { return; }
  71. stk.top() = iters.top()->second.get();
  72. keys.back() = iters.top()->first;
  73. }
  74. bool can_recurse() { return !next().done(); }
  75. void recurse() { push(next()); }
  76. impl_t next() { return helper()(root()); }
  77. friend bool operator!=(trie_iterator_base const & lhs, trie_iterator_base const & rhs) {
  78. return !(lhs == rhs);
  79. }
  80. friend bool operator==(trie_iterator_base const & lhs, trie_iterator_base const & rhs) {
  81. if ( lhs.done && rhs.done ) return true;
  82. else if (lhs.keys != rhs.keys) return false;
  83. else if ( lhs.done != rhs.done ) return false;
  84. else return *lhs == *rhs;
  85. }
  86. friend Trie;
  87. template <typename Self, typename _Trie, typename KS>
  88. friend Self find_impl(_Trie * tr, KS const & keys);
  89. };
  90. }
  91. template <typename Trie, typename Iter>
  92. class trie_iterator : public detail::trie_iterator_base<Trie, Iter> {
  93. private:
  94. using super = detail::trie_iterator_base<Trie, Iter>;
  95. public:
  96. trie_iterator() : super() {}
  97. trie_iterator(Trie * tr) : super(tr) { }
  98. trie_iterator(super && take) : super(std::move(take)) { }
  99. trie_iterator & operator++() {
  100. if (super::done) return *this;
  101. if ( super::iters.empty() || super::can_recurse() ) { super::recurse(); }
  102. else { advance(); }
  103. return *this;
  104. }
  105. private:
  106. void advance() {
  107. ++super::iters.top();
  108. while (super::poping_empty()) {
  109. ++super::iters.top();
  110. }
  111. super::assign();
  112. super::done = super::iters.empty();
  113. }
  114. friend Trie;
  115. };
  116. template <typename Trie, typename Iter>
  117. class trie_reverse_iterator : public detail::trie_iterator_base<Trie, Iter> {
  118. private:
  119. using super = detail::trie_iterator_base<Trie, Iter>;
  120. public:
  121. trie_reverse_iterator() : super() {}
  122. trie_reverse_iterator(Trie * tr) : super(tr) {
  123. if (super::can_recurse()) recurse();
  124. }
  125. trie_reverse_iterator & operator++() {
  126. if (super::done || super::iters.empty()) { super::done = true; }
  127. else { advance(); }
  128. return *this;
  129. }
  130. private:
  131. void recurse() {
  132. do { super::recurse(); } while ( super::can_recurse() );
  133. }
  134. void advance() {
  135. ++super::iters.top();
  136. if (super::iters.top().done()) {
  137. while (super::poping_empty());
  138. super::assign();
  139. } else {
  140. super::assign();
  141. if (super::can_recurse()) recurse();
  142. }
  143. }
  144. friend Trie;
  145. };