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span.h 5.2 KiB

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  1. /* Copyright (c) 2017, Google Inc.
  2. *
  3. * Permission to use, copy, modify, and/or distribute this software for any
  4. * purpose with or without fee is hereby granted, provided that the above
  5. * copyright notice and this permission notice appear in all copies.
  6. *
  7. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  8. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  9. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
  10. * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  11. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
  12. * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
  13. * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */
  14. #ifndef OPENSSL_HEADER_SSL_SPAN_H
  15. #define OPENSSL_HEADER_SSL_SPAN_H
  16. #include <openssl/base.h>
  17. #if !defined(BORINGSSL_NO_CXX)
  18. extern "C++" {
  19. #include <algorithm>
  20. #include <type_traits>
  21. namespace bssl {
  22. template <typename T>
  23. class Span;
  24. namespace internal {
  25. template <typename T>
  26. class SpanBase {
  27. // Put comparison operator implementations into a base class with const T, so
  28. // they can be used with any type that implicitly converts into a Span.
  29. static_assert(std::is_const<T>::value,
  30. "Span<T> must be derived from SpanBase<const T>");
  31. friend bool operator==(Span<T> lhs, Span<T> rhs) {
  32. // MSVC issues warning C4996 because std::equal is unsafe. The pragma to
  33. // suppress the warning mysteriously has no effect, hence this
  34. // implementation. See
  35. // https://msdn.microsoft.com/en-us/library/aa985974.aspx.
  36. if (lhs.size() != rhs.size()) {
  37. return false;
  38. }
  39. for (T *l = lhs.begin(), *r = rhs.begin(); l != lhs.end() && r != rhs.end();
  40. ++l, ++r) {
  41. if (*l != *r) {
  42. return false;
  43. }
  44. }
  45. return true;
  46. }
  47. friend bool operator!=(Span<T> lhs, Span<T> rhs) { return !(lhs == rhs); }
  48. };
  49. } // namespace internal
  50. // A Span<T> is a non-owning reference to a contiguous array of objects of type
  51. // |T|. Conceptually, a Span is a simple a pointer to |T| and a count of
  52. // elements accessible via that pointer. The elements referenced by the Span can
  53. // be mutated if |T| is mutable.
  54. //
  55. // A Span can be constructed from container types implementing |data()| and
  56. // |size()| methods. If |T| is constant, construction from a container type is
  57. // implicit. This allows writing methods that accept data from some unspecified
  58. // container type:
  59. //
  60. // // Foo views data referenced by v.
  61. // void Foo(bssl::Span<const uint8_t> v) { ... }
  62. //
  63. // std::vector<uint8_t> vec;
  64. // Foo(vec);
  65. //
  66. // For mutable Spans, conversion is explicit:
  67. //
  68. // // FooMutate mutates data referenced by v.
  69. // void FooMutate(bssl::Span<uint8_t> v) { ... }
  70. //
  71. // FooMutate(bssl::Span<uint8_t>(vec));
  72. //
  73. // You can also use the |MakeSpan| and |MakeConstSpan| factory methods to
  74. // construct Spans in order to deduce the type of the Span automatically.
  75. //
  76. // FooMutate(bssl::MakeSpan(vec));
  77. //
  78. // Note that Spans have value type sematics. They are cheap to construct and
  79. // copy, and should be passed by value whenever a method would otherwise accept
  80. // a reference or pointer to a container or array.
  81. template <typename T>
  82. class Span : private internal::SpanBase<const T> {
  83. private:
  84. template <bool B, class V = void>
  85. using enable_if_t = typename std::enable_if<B, V>::type;
  86. // Heuristically test whether C is a container type that can be converted into
  87. // a Span by checking for data() and size() member functions.
  88. template <typename C>
  89. using EnableIfContainer = enable_if_t<
  90. std::is_convertible<decltype(std::declval<C>().data()), T *>::value &&
  91. std::is_integral<decltype(std::declval<C>().size())>::value>;
  92. public:
  93. constexpr Span() : Span(nullptr, 0) {}
  94. constexpr Span(T *ptr, size_t len) : data_(ptr), size_(len) {}
  95. template <size_t N>
  96. constexpr Span(T (&array)[N]) : Span(array, N) {}
  97. template <typename C, typename = EnableIfContainer<C>,
  98. typename = enable_if_t<std::is_const<T>::value, C>>
  99. Span(const C &container) : data_(container.data()), size_(container.size()) {}
  100. template <typename C, typename = EnableIfContainer<C>,
  101. typename = enable_if_t<!std::is_const<T>::value, C>>
  102. explicit Span(C &container)
  103. : data_(container.data()), size_(container.size()) {}
  104. T *data() const { return data_; }
  105. size_t size() const { return size_; }
  106. T *begin() const { return data_; }
  107. const T *cbegin() const { return data_; }
  108. T *end() const { return data_ + size_; };
  109. const T *cend() const { return end(); };
  110. T &operator[](size_t i) const { return data_[i]; }
  111. T &at(size_t i) const { return data_[i]; }
  112. private:
  113. T *data_;
  114. size_t size_;
  115. };
  116. template <typename T>
  117. Span<T> MakeSpan(T *ptr, size_t size) {
  118. return Span<T>(ptr, size);
  119. }
  120. template <typename C>
  121. auto MakeSpan(C &c) -> decltype(MakeSpan(c.data(), c.size())) {
  122. return MakeSpan(c.data(), c.size());
  123. }
  124. template <typename T>
  125. Span<const T> MakeConstSpan(T *ptr, size_t size) {
  126. return Span<const T>(ptr, size);
  127. }
  128. template <typename C>
  129. auto MakeConstSpan(const C &c) -> decltype(MakeConstSpan(c.data(), c.size())) {
  130. return MakeConstSpan(c.data(), c.size());
  131. }
  132. } // namespace bssl
  133. } // extern C++
  134. #endif // !defined(BORINGSSL_NO_CXX)
  135. #endif // OPENSSL_HEADER_SSL_SPAN_H