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jbauch13041cf2016-02-25 06:16:52 -08001/*
2 * Copyright 2016 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Steve Anton10542f22019-01-11 09:11:00 -080011#ifndef RTC_BASE_COPY_ON_WRITE_BUFFER_H_
12#define RTC_BASE_COPY_ON_WRITE_BUFFER_H_
jbauch13041cf2016-02-25 06:16:52 -080013
Yves Gerey988cc082018-10-23 12:03:01 +020014#include <stdint.h>
Jonas Olssona4d87372019-07-05 19:08:33 +020015
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020016#include <algorithm>
Yves Gerey988cc082018-10-23 12:03:01 +020017#include <cstring>
18#include <string>
19#include <type_traits>
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020020#include <utility>
jbauch13041cf2016-02-25 06:16:52 -080021
Mirko Bonadeid9708072019-01-25 20:26:48 +010022#include "api/scoped_refptr.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020023#include "rtc_base/buffer.h"
24#include "rtc_base/checks.h"
Steve Anton10542f22019-01-11 09:11:00 -080025#include "rtc_base/ref_counted_object.h"
Mirko Bonadei35214fc2019-09-23 14:54:28 +020026#include "rtc_base/system/rtc_export.h"
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020027
28namespace rtc {
29
Mirko Bonadei35214fc2019-09-23 14:54:28 +020030class RTC_EXPORT CopyOnWriteBuffer {
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020031 public:
32 // An empty buffer.
33 CopyOnWriteBuffer();
Amit Hilbuch45a2cd22019-03-12 16:58:02 -070034 // Share the data with an existing buffer.
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020035 CopyOnWriteBuffer(const CopyOnWriteBuffer& buf);
36 // Move contents from an existing buffer.
37 CopyOnWriteBuffer(CopyOnWriteBuffer&& buf);
38
Jeroen de Borst4f6d2332018-07-18 11:25:12 -070039 // Construct a buffer from a string, convenient for unittests.
40 CopyOnWriteBuffer(const std::string& s);
41
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020042 // Construct a buffer with the specified number of uninitialized bytes.
43 explicit CopyOnWriteBuffer(size_t size);
44 CopyOnWriteBuffer(size_t size, size_t capacity);
45
46 // Construct a buffer and copy the specified number of bytes into it. The
47 // source array may be (const) uint8_t*, int8_t*, or char*.
48 template <typename T,
49 typename std::enable_if<
50 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
51 CopyOnWriteBuffer(const T* data, size_t size)
52 : CopyOnWriteBuffer(data, size, size) {}
53 template <typename T,
54 typename std::enable_if<
55 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
56 CopyOnWriteBuffer(const T* data, size_t size, size_t capacity)
57 : CopyOnWriteBuffer(size, capacity) {
58 if (buffer_) {
59 std::memcpy(buffer_->data(), data, size);
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +020060 offset_ = 0;
61 size_ = size;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020062 }
63 }
64
65 // Construct a buffer from the contents of an array.
66 template <typename T,
67 size_t N,
68 typename std::enable_if<
69 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
70 CopyOnWriteBuffer(const T (&array)[N]) // NOLINT: runtime/explicit
71 : CopyOnWriteBuffer(array, N) {}
72
73 ~CopyOnWriteBuffer();
74
75 // Get a pointer to the data. Just .data() will give you a (const) uint8_t*,
76 // but you may also use .data<int8_t>() and .data<char>().
77 template <typename T = uint8_t,
78 typename std::enable_if<
79 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
80 const T* data() const {
81 return cdata<T>();
82 }
83
84 // Get writable pointer to the data. This will create a copy of the underlying
85 // data if it is shared with other buffers.
86 template <typename T = uint8_t,
87 typename std::enable_if<
88 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
Danil Chapovalov82e18752021-01-07 13:38:48 +010089 T* MutableData() {
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020090 RTC_DCHECK(IsConsistent());
91 if (!buffer_) {
92 return nullptr;
93 }
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +020094 UnshareAndEnsureCapacity(capacity());
95 return buffer_->data<T>() + offset_;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +020096 }
97
98 // Get const pointer to the data. This will not create a copy of the
99 // underlying data if it is shared with other buffers.
100 template <typename T = uint8_t,
101 typename std::enable_if<
102 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
103 const T* cdata() const {
104 RTC_DCHECK(IsConsistent());
105 if (!buffer_) {
106 return nullptr;
107 }
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200108 return buffer_->data<T>() + offset_;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200109 }
110
111 size_t size() const {
112 RTC_DCHECK(IsConsistent());
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200113 return size_;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200114 }
115
116 size_t capacity() const {
117 RTC_DCHECK(IsConsistent());
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200118 return buffer_ ? buffer_->capacity() - offset_ : 0;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200119 }
120
121 CopyOnWriteBuffer& operator=(const CopyOnWriteBuffer& buf) {
122 RTC_DCHECK(IsConsistent());
123 RTC_DCHECK(buf.IsConsistent());
124 if (&buf != this) {
125 buffer_ = buf.buffer_;
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200126 offset_ = buf.offset_;
127 size_ = buf.size_;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200128 }
129 return *this;
130 }
131
132 CopyOnWriteBuffer& operator=(CopyOnWriteBuffer&& buf) {
133 RTC_DCHECK(IsConsistent());
134 RTC_DCHECK(buf.IsConsistent());
135 buffer_ = std::move(buf.buffer_);
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200136 offset_ = buf.offset_;
137 size_ = buf.size_;
138 buf.offset_ = 0;
139 buf.size_ = 0;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200140 return *this;
141 }
142
143 bool operator==(const CopyOnWriteBuffer& buf) const;
144
145 bool operator!=(const CopyOnWriteBuffer& buf) const {
146 return !(*this == buf);
147 }
148
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200149 uint8_t operator[](size_t index) const {
150 RTC_DCHECK_LT(index, size());
151 return cdata()[index];
152 }
153
154 // Replace the contents of the buffer. Accepts the same types as the
155 // constructors.
156 template <typename T,
157 typename std::enable_if<
158 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
159 void SetData(const T* data, size_t size) {
160 RTC_DCHECK(IsConsistent());
161 if (!buffer_) {
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100162 buffer_ = size > 0 ? new RefCountedBuffer(data, size) : nullptr;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200163 } else if (!buffer_->HasOneRef()) {
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100164 buffer_ = new RefCountedBuffer(data, size, capacity());
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200165 } else {
166 buffer_->SetData(data, size);
167 }
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200168 offset_ = 0;
169 size_ = size;
170
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200171 RTC_DCHECK(IsConsistent());
172 }
173
174 template <typename T,
175 size_t N,
176 typename std::enable_if<
177 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
178 void SetData(const T (&array)[N]) {
179 SetData(array, N);
180 }
181
182 void SetData(const CopyOnWriteBuffer& buf) {
183 RTC_DCHECK(IsConsistent());
184 RTC_DCHECK(buf.IsConsistent());
185 if (&buf != this) {
186 buffer_ = buf.buffer_;
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200187 offset_ = buf.offset_;
188 size_ = buf.size_;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200189 }
190 }
191
192 // Append data to the buffer. Accepts the same types as the constructors.
193 template <typename T,
194 typename std::enable_if<
195 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
196 void AppendData(const T* data, size_t size) {
197 RTC_DCHECK(IsConsistent());
198 if (!buffer_) {
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100199 buffer_ = new RefCountedBuffer(data, size);
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200200 offset_ = 0;
201 size_ = size;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200202 RTC_DCHECK(IsConsistent());
203 return;
204 }
205
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200206 UnshareAndEnsureCapacity(std::max(capacity(), size_ + size));
207
208 buffer_->SetSize(offset_ +
209 size_); // Remove data to the right of the slice.
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200210 buffer_->AppendData(data, size);
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200211 size_ += size;
212
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200213 RTC_DCHECK(IsConsistent());
214 }
215
216 template <typename T,
217 size_t N,
218 typename std::enable_if<
219 internal::BufferCompat<uint8_t, T>::value>::type* = nullptr>
220 void AppendData(const T (&array)[N]) {
221 AppendData(array, N);
222 }
223
224 void AppendData(const CopyOnWriteBuffer& buf) {
225 AppendData(buf.data(), buf.size());
226 }
227
228 // Sets the size of the buffer. If the new size is smaller than the old, the
229 // buffer contents will be kept but truncated; if the new size is greater,
230 // the existing contents will be kept and the new space will be
231 // uninitialized.
232 void SetSize(size_t size);
233
234 // Ensure that the buffer size can be increased to at least capacity without
235 // further reallocation. (Of course, this operation might need to reallocate
236 // the buffer.)
237 void EnsureCapacity(size_t capacity);
238
239 // Resets the buffer to zero size without altering capacity. Works even if the
240 // buffer has been moved from.
241 void Clear();
242
243 // Swaps two buffers.
244 friend void swap(CopyOnWriteBuffer& a, CopyOnWriteBuffer& b) {
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100245 a.buffer_.swap(b.buffer_);
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200246 std::swap(a.offset_, b.offset_);
247 std::swap(a.size_, b.size_);
248 }
249
250 CopyOnWriteBuffer Slice(size_t offset, size_t length) const {
251 CopyOnWriteBuffer slice(*this);
252 RTC_DCHECK_LE(offset, size_);
253 RTC_DCHECK_LE(length + offset, size_);
254 slice.offset_ += offset;
255 slice.size_ = length;
256 return slice;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200257 }
258
259 private:
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100260 using RefCountedBuffer = FinalRefCountedObject<Buffer>;
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200261 // Create a copy of the underlying data if it is referenced from other Buffer
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200262 // objects or there is not enough capacity.
263 void UnshareAndEnsureCapacity(size_t new_capacity);
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200264
265 // Pre- and postcondition of all methods.
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200266 bool IsConsistent() const {
267 if (buffer_) {
268 return buffer_->capacity() > 0 && offset_ <= buffer_->size() &&
269 offset_ + size_ <= buffer_->size();
270 } else {
271 return size_ == 0 && offset_ == 0;
272 }
273 }
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200274
275 // buffer_ is either null, or points to an rtc::Buffer with capacity > 0.
Danil Chapovalov8df643b2021-01-22 16:11:10 +0100276 scoped_refptr<RefCountedBuffer> buffer_;
Ilya Nikolaevskiy741bab02019-09-25 14:37:10 +0200277 // This buffer may represent a slice of a original data.
278 size_t offset_; // Offset of a current slice in the original data in buffer_.
279 // Should be 0 if the buffer_ is empty.
280 size_t size_; // Size of a current slice in the original data in buffer_.
281 // Should be 0 if the buffer_ is empty.
Henrik Kjellanderec78f1c2017-06-29 07:52:50 +0200282};
283
284} // namespace rtc
jbauch13041cf2016-02-25 06:16:52 -0800285
Steve Anton10542f22019-01-11 09:11:00 -0800286#endif // RTC_BASE_COPY_ON_WRITE_BUFFER_H_