Bitcoin Core  25.99.0
P2P Digital Currency
span.h
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1 // Copyright (c) 2018-2022 The Bitcoin Core developers
2 // Distributed under the MIT software license, see the accompanying
3 // file COPYING or http://www.opensource.org/licenses/mit-license.php.
4 
5 #ifndef BITCOIN_SPAN_H
6 #define BITCOIN_SPAN_H
7 
8 #include <type_traits>
9 #include <cstddef>
10 #include <algorithm>
11 #include <assert.h>
12 
13 #ifdef DEBUG
14 #define CONSTEXPR_IF_NOT_DEBUG
15 #define ASSERT_IF_DEBUG(x) assert((x))
16 #else
17 #define CONSTEXPR_IF_NOT_DEBUG constexpr
18 #define ASSERT_IF_DEBUG(x)
19 #endif
20 
21 #if defined(__clang__)
22 #if __has_attribute(lifetimebound)
23 #define SPAN_ATTR_LIFETIMEBOUND [[clang::lifetimebound]]
24 #else
25 #define SPAN_ATTR_LIFETIMEBOUND
26 #endif
27 #else
28 #define SPAN_ATTR_LIFETIMEBOUND
29 #endif
30 
95 template<typename C>
96 class Span
97 {
98  C* m_data;
99  std::size_t m_size{0};
100 
101  template <class T>
102  struct is_Span_int : public std::false_type {};
103  template <class T>
104  struct is_Span_int<Span<T>> : public std::true_type {};
105  template <class T>
106  struct is_Span : public is_Span_int<typename std::remove_cv<T>::type>{};
107 
108 
109 public:
110  constexpr Span() noexcept : m_data(nullptr) {}
111 
117  template <typename T, typename std::enable_if<std::is_convertible<T (*)[], C (*)[]>::value, int>::type = 0>
118  constexpr Span(T* begin, std::size_t size) noexcept : m_data(begin), m_size(size) {}
119 
125  template <typename T, typename std::enable_if<std::is_convertible<T (*)[], C (*)[]>::value, int>::type = 0>
127  {
129  }
130 
139  template <typename O, typename std::enable_if<std::is_convertible<O (*)[], C (*)[]>::value, int>::type = 0>
140  constexpr Span(const Span<O>& other) noexcept : m_data(other.m_data), m_size(other.m_size) {}
141 
143  constexpr Span(const Span&) noexcept = default;
144 
146  Span& operator=(const Span& other) noexcept = default;
147 
149  template <int N>
150  constexpr Span(C (&a)[N]) noexcept : m_data(a), m_size(N) {}
151 
159  template <typename V>
160  constexpr Span(V& other SPAN_ATTR_LIFETIMEBOUND,
161  typename std::enable_if<!is_Span<V>::value &&
162  std::is_convertible<typename std::remove_pointer<decltype(std::declval<V&>().data())>::type (*)[], C (*)[]>::value &&
163  std::is_convertible<decltype(std::declval<V&>().size()), std::size_t>::value, std::nullptr_t>::type = nullptr)
164  : m_data(other.data()), m_size(other.size()){}
165 
166  template <typename V>
167  constexpr Span(const V& other SPAN_ATTR_LIFETIMEBOUND,
168  typename std::enable_if<!is_Span<V>::value &&
169  std::is_convertible<typename std::remove_pointer<decltype(std::declval<const V&>().data())>::type (*)[], C (*)[]>::value &&
170  std::is_convertible<decltype(std::declval<const V&>().size()), std::size_t>::value, std::nullptr_t>::type = nullptr)
171  : m_data(other.data()), m_size(other.size()){}
172 
173  constexpr C* data() const noexcept { return m_data; }
174  constexpr C* begin() const noexcept { return m_data; }
175  constexpr C* end() const noexcept { return m_data + m_size; }
176  CONSTEXPR_IF_NOT_DEBUG C& front() const noexcept
177  {
178  ASSERT_IF_DEBUG(size() > 0);
179  return m_data[0];
180  }
181  CONSTEXPR_IF_NOT_DEBUG C& back() const noexcept
182  {
183  ASSERT_IF_DEBUG(size() > 0);
184  return m_data[m_size - 1];
185  }
186  constexpr std::size_t size() const noexcept { return m_size; }
187  constexpr std::size_t size_bytes() const noexcept { return sizeof(C) * m_size; }
188  constexpr bool empty() const noexcept { return size() == 0; }
189  CONSTEXPR_IF_NOT_DEBUG C& operator[](std::size_t pos) const noexcept
190  {
191  ASSERT_IF_DEBUG(size() > pos);
192  return m_data[pos];
193  }
194  CONSTEXPR_IF_NOT_DEBUG Span<C> subspan(std::size_t offset) const noexcept
195  {
196  ASSERT_IF_DEBUG(size() >= offset);
197  return Span<C>(m_data + offset, m_size - offset);
198  }
199  CONSTEXPR_IF_NOT_DEBUG Span<C> subspan(std::size_t offset, std::size_t count) const noexcept
200  {
201  ASSERT_IF_DEBUG(size() >= offset + count);
202  return Span<C>(m_data + offset, count);
203  }
204  CONSTEXPR_IF_NOT_DEBUG Span<C> first(std::size_t count) const noexcept
205  {
206  ASSERT_IF_DEBUG(size() >= count);
207  return Span<C>(m_data, count);
208  }
209  CONSTEXPR_IF_NOT_DEBUG Span<C> last(std::size_t count) const noexcept
210  {
211  ASSERT_IF_DEBUG(size() >= count);
212  return Span<C>(m_data + m_size - count, count);
213  }
214 
215  friend constexpr bool operator==(const Span& a, const Span& b) noexcept { return a.size() == b.size() && std::equal(a.begin(), a.end(), b.begin()); }
216  friend constexpr bool operator!=(const Span& a, const Span& b) noexcept { return !(a == b); }
217  friend constexpr bool operator<(const Span& a, const Span& b) noexcept { return std::lexicographical_compare(a.begin(), a.end(), b.begin(), b.end()); }
218  friend constexpr bool operator<=(const Span& a, const Span& b) noexcept { return !(b < a); }
219  friend constexpr bool operator>(const Span& a, const Span& b) noexcept { return (b < a); }
220  friend constexpr bool operator>=(const Span& a, const Span& b) noexcept { return !(a < b); }
221 
222  template <typename O> friend class Span;
223 };
224 
225 // Deduction guides for Span
226 // For the pointer/size based and iterator based constructor:
227 template <typename T, typename EndOrSize> Span(T*, EndOrSize) -> Span<T>;
228 // For the array constructor:
229 template <typename T, std::size_t N> Span(T (&)[N]) -> Span<T>;
230 // For the temporaries/rvalue references constructor, only supporting const output.
231 template <typename T> Span(T&&) -> Span<std::enable_if_t<!std::is_lvalue_reference_v<T>, const std::remove_pointer_t<decltype(std::declval<T&&>().data())>>>;
232 // For (lvalue) references, supporting mutable output.
234 
236 template <typename T>
238 {
239  size_t size = span.size();
240  ASSERT_IF_DEBUG(size > 0);
241  T& back = span[size - 1];
242  span = Span<T>(span.data(), size - 1);
243  return back;
244 }
245 
248 inline const std::byte* AsBytePtr(const void* data) { return reinterpret_cast<const std::byte*>(data); }
249 inline std::byte* AsBytePtr(void* data) { return reinterpret_cast<std::byte*>(data); }
250 
251 // From C++20 as_bytes and as_writeable_bytes
252 template <typename T>
254 {
255  return {AsBytePtr(s.data()), s.size_bytes()};
256 }
257 template <typename T>
259 {
260  return {AsBytePtr(s.data()), s.size_bytes()};
261 }
262 
263 template <typename V>
265 {
266  return AsBytes(Span{std::forward<V>(v)});
267 }
268 template <typename V>
270 {
271  return AsWritableBytes(Span{std::forward<V>(v)});
272 }
273 
274 // Helper functions to safely cast to unsigned char pointers.
275 inline unsigned char* UCharCast(char* c) { return (unsigned char*)c; }
276 inline unsigned char* UCharCast(unsigned char* c) { return c; }
277 inline const unsigned char* UCharCast(const char* c) { return (unsigned char*)c; }
278 inline const unsigned char* UCharCast(const unsigned char* c) { return c; }
279 inline const unsigned char* UCharCast(const std::byte* c) { return reinterpret_cast<const unsigned char*>(c); }
280 
281 // Helper function to safely convert a Span to a Span<[const] unsigned char>.
282 template <typename T> constexpr auto UCharSpanCast(Span<T> s) -> Span<typename std::remove_pointer<decltype(UCharCast(s.data()))>::type> { return {UCharCast(s.data()), s.size()}; }
283 
285 template <typename V> constexpr auto MakeUCharSpan(V&& v) -> decltype(UCharSpanCast(Span{std::forward<V>(v)})) { return UCharSpanCast(Span{std::forward<V>(v)}); }
286 
287 #endif // BITCOIN_SPAN_H
A Span is an object that can refer to a contiguous sequence of objects.
Definition: span.h:97
constexpr std::size_t size() const noexcept
Definition: span.h:186
constexpr friend bool operator>=(const Span &a, const Span &b) noexcept
Definition: span.h:220
Span & operator=(const Span &other) noexcept=default
Default assignment operator.
constexpr friend bool operator>(const Span &a, const Span &b) noexcept
Definition: span.h:219
CONSTEXPR_IF_NOT_DEBUG Span< C > subspan(std::size_t offset, std::size_t count) const noexcept
Definition: span.h:199
constexpr Span(V &other SPAN_ATTR_LIFETIMEBOUND, typename std::enable_if<!is_Span< V >::value &&std::is_convertible< typename std::remove_pointer< decltype(std::declval< V & >().data())>::type(*)[], C(*)[]>::value &&std::is_convertible< decltype(std::declval< V & >().size()), std::size_t >::value, std::nullptr_t >::type=nullptr)
Construct a Span for objects with .data() and .size() (std::string, std::array, std::vector,...
Definition: span.h:160
CONSTEXPR_IF_NOT_DEBUG C & back() const noexcept
Definition: span.h:181
constexpr Span(C(&a)[N]) noexcept
Construct a Span from an array.
Definition: span.h:150
constexpr Span() noexcept
Definition: span.h:110
std::size_t m_size
Definition: span.h:99
CONSTEXPR_IF_NOT_DEBUG C & front() const noexcept
Definition: span.h:176
constexpr C * data() const noexcept
Definition: span.h:173
constexpr Span(T *begin, std::size_t size) noexcept
Construct a span from a begin pointer and a size.
Definition: span.h:118
CONSTEXPR_IF_NOT_DEBUG Span(T *begin, T *end) noexcept
Construct a span from a begin and end pointer.
Definition: span.h:126
C * m_data
Definition: span.h:98
constexpr C * end() const noexcept
Definition: span.h:175
constexpr C * begin() const noexcept
Definition: span.h:174
constexpr Span(const Span &) noexcept=default
Default copy constructor.
constexpr Span(const V &other SPAN_ATTR_LIFETIMEBOUND, typename std::enable_if<!is_Span< V >::value &&std::is_convertible< typename std::remove_pointer< decltype(std::declval< const V & >().data())>::type(*)[], C(*)[]>::value &&std::is_convertible< decltype(std::declval< const V & >().size()), std::size_t >::value, std::nullptr_t >::type=nullptr)
Definition: span.h:167
constexpr std::size_t size_bytes() const noexcept
Definition: span.h:187
CONSTEXPR_IF_NOT_DEBUG Span< C > last(std::size_t count) const noexcept
Definition: span.h:209
CONSTEXPR_IF_NOT_DEBUG Span< C > first(std::size_t count) const noexcept
Definition: span.h:204
CONSTEXPR_IF_NOT_DEBUG C & operator[](std::size_t pos) const noexcept
Definition: span.h:189
CONSTEXPR_IF_NOT_DEBUG Span< C > subspan(std::size_t offset) const noexcept
Definition: span.h:194
constexpr bool empty() const noexcept
Definition: span.h:188
constexpr friend bool operator!=(const Span &a, const Span &b) noexcept
Definition: span.h:216
constexpr friend bool operator==(const Span &a, const Span &b) noexcept
Definition: span.h:215
constexpr Span(const Span< O > &other) noexcept
Implicit conversion of spans between compatible types.
Definition: span.h:140
constexpr friend bool operator<(const Span &a, const Span &b) noexcept
Definition: span.h:217
constexpr friend bool operator<=(const Span &a, const Span &b) noexcept
Definition: span.h:218
#define ASSERT_IF_DEBUG(x)
Definition: span.h:18
#define SPAN_ATTR_LIFETIMEBOUND
Definition: span.h:28
constexpr auto MakeUCharSpan(V &&v) -> decltype(UCharSpanCast(Span{std::forward< V >(v)}))
Like the Span constructor, but for (const) unsigned char member types only.
Definition: span.h:285
Span< std::byte > AsWritableBytes(Span< T > s) noexcept
Definition: span.h:258
unsigned char * UCharCast(char *c)
Definition: span.h:275
Span(T *, EndOrSize) -> Span< T >
constexpr auto UCharSpanCast(Span< T > s) -> Span< typename std::remove_pointer< decltype(UCharCast(s.data()))>::type >
Definition: span.h:282
Span< const std::byte > MakeByteSpan(V &&v) noexcept
Definition: span.h:264
Span< const std::byte > AsBytes(Span< T > s) noexcept
Definition: span.h:253
#define CONSTEXPR_IF_NOT_DEBUG
Definition: span.h:17
const std::byte * AsBytePtr(const void *data)
Convert a data pointer to a std::byte data pointer.
Definition: span.h:248
Span< std::byte > MakeWritableByteSpan(V &&v) noexcept
Definition: span.h:269
T & SpanPopBack(Span< T > &span)
Pop the last element off a span, and return a reference to that element.
Definition: span.h:237
static int count