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1 /*
2  * Copyright (c) 2021-2021 Huawei Device Co., Ltd.
3  * Licensed under the Apache License, Version 2.0 (the "License");
4  * you may not use this file except in compliance with the License.
5  * You may obtain a copy of the License at
6  *
7  *     http://www.apache.org/licenses/LICENSE-2.0
8  *
9  * Unless required by applicable law or agreed to in writing, software
10  * distributed under the License is distributed on an "AS IS" BASIS,
11  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12  * See the License for the specific language governing permissions and
13  * limitations under the License.
14  */
15 
16 #include "plugin_buffer.h"
17 #include "share_memory.h"
18 #include "surface_memory.h"
19 
20 namespace OHOS {
21 namespace Media {
22 namespace Plugin {
Memory(size_t capacity,std::shared_ptr<uint8_t> bufData,size_t align,MemoryType type)23 Memory::Memory(size_t capacity, std::shared_ptr<uint8_t> bufData, size_t align, MemoryType type)
24     : memoryType(type), capacity(capacity), alignment(align),
25       offset(0), size(0), allocator(nullptr), addr(std::move(bufData))
26 {
27 }
28 
Memory(size_t capacity,std::shared_ptr<Allocator> allocator,size_t align,MemoryType type,bool allocMem)29 Memory::Memory(size_t capacity, std::shared_ptr<Allocator> allocator, size_t align, MemoryType type, bool allocMem)
30     : memoryType(type), capacity(capacity), alignment(align), offset(0),
31       size(0), allocator(std::move(allocator)), addr(nullptr)
32 {
33     if (!allocMem) { // SurfaceMemory alloc mem in subclass
34         return;
35     }
36     size_t allocSize = align ? (capacity + align - 1) : capacity;
37     if (this->allocator) {
38         addr = std::shared_ptr<uint8_t>(static_cast<uint8_t*>(this->allocator->Alloc(allocSize)),
39                                         [this](uint8_t* ptr) { this->allocator->Free(static_cast<void*>(ptr)); });
40     } else {
41         addr = std::shared_ptr<uint8_t>(new uint8_t[allocSize], std::default_delete<uint8_t[]>());
42     }
43     offset = static_cast<size_t>(AlignUp(reinterpret_cast<uintptr_t>(addr.get()), static_cast<uintptr_t>(align)) -
44         reinterpret_cast<uintptr_t>(addr.get()));
45 }
46 
GetCapacity()47 size_t Memory::GetCapacity()
48 {
49     return capacity;
50 }
51 
Reset()52 void Memory::Reset()
53 {
54     this->size = 0;
55 }
56 
Write(const uint8_t * in,size_t writeSize,size_t position)57 size_t Memory::Write(const uint8_t* in, size_t writeSize, size_t position)
58 {
59     size_t start = 0;
60     if (position == INVALID_POSITION) {
61         start = size;
62     } else {
63         start = std::min(position, capacity);
64     }
65     size_t length = std::min(writeSize, capacity - start);
66     if (memcpy_s(GetRealAddr() + start, length, in, length) != EOK) {
67         return 0;
68     }
69     size = start + length;
70     return length;
71 }
72 
Read(uint8_t * out,size_t readSize,size_t position)73 size_t Memory::Read(uint8_t* out, size_t readSize, size_t position)
74 {
75     size_t start = 0;
76     size_t maxLength = size;
77     if (position != INVALID_POSITION) {
78         start = std::min(position, size);
79         maxLength = size - start;
80     }
81     size_t length = std::min(readSize, maxLength);
82     if (memcpy_s(out, length, GetRealAddr() + start, length) != EOK) {
83         return 0;
84     }
85     return length;
86 }
87 
GetReadOnlyData(size_t position)88 const uint8_t* Memory::GetReadOnlyData(size_t position)
89 {
90     if (position > capacity) {
91         return nullptr;
92     }
93     return GetRealAddr() + position;
94 }
95 
GetWritableAddr(size_t estimatedWriteSize,size_t position)96 uint8_t* Memory::GetWritableAddr(size_t estimatedWriteSize, size_t position)
97 {
98     if (position + estimatedWriteSize > capacity) {
99         return nullptr;
100     }
101     uint8_t* ptr = GetRealAddr() + position;
102     size = (estimatedWriteSize + position);
103     return ptr;
104 }
105 
UpdateDataSize(size_t realWriteSize,size_t position)106 void Memory::UpdateDataSize(size_t realWriteSize, size_t position)
107 {
108     if (position + realWriteSize > capacity) {
109         return;
110     }
111     size = (realWriteSize + position);
112 }
113 
GetSize()114 size_t Memory::GetSize()
115 {
116     return size;
117 }
118 
GetRealAddr() const119 uint8_t* Memory::GetRealAddr() const
120 {
121     return addr.get() + offset;
122 }
123 
GetMemoryType()124 MemoryType Memory::GetMemoryType()
125 {
126     return memoryType;
127 }
128 
BufferMeta(BufferMetaType type)129 BufferMeta::BufferMeta(BufferMetaType type) : type(type)
130 {
131 }
132 
GetMeta(Tag tag)133 ValueType BufferMeta::GetMeta(Tag tag)
134 {
135     if (tags) {
136         return (*tags)[tag];
137     }
138     return ValueType();
139 }
140 
SetMeta(Tag tag,ValueType value)141 void BufferMeta::SetMeta(Tag tag, ValueType value)
142 {
143     if (!tags) {
144         tags = std::make_shared<TagMap>();
145     }
146     (*tags)[tag] = value;
147 }
148 
GetType() const149 BufferMetaType BufferMeta::GetType() const
150 {
151     return type;
152 }
153 
Buffer(BufferMetaType type)154 Buffer::Buffer(BufferMetaType type) : trackID(0), pts(0), dts(0), duration(0), flag (0), meta()
155 {
156     if (type == BufferMetaType::AUDIO) {
157         meta = std::shared_ptr<AudioBufferMeta>(new AudioBufferMeta());
158     } else if (type == BufferMetaType::VIDEO) {
159         meta = std::shared_ptr<VideoBufferMeta>(new VideoBufferMeta());
160     }
161 }
162 
CreateDefaultBuffer(BufferMetaType type,size_t capacity,std::shared_ptr<Allocator> allocator,size_t align)163 std::shared_ptr<Buffer> Buffer::CreateDefaultBuffer(BufferMetaType type, size_t capacity,
164                                                     std::shared_ptr<Allocator> allocator, size_t align)
165 {
166     auto buffer = std::make_shared<Buffer>(type);
167     std::shared_ptr<Memory> memory = std::shared_ptr<Memory>(new Memory(capacity, allocator, align));
168     buffer->data.push_back(memory);
169     return buffer;
170 }
171 
WrapMemory(uint8_t * data,size_t capacity,size_t size)172 std::shared_ptr<Memory> Buffer::WrapMemory(uint8_t* data, size_t capacity, size_t size)
173 {
174     auto memory = std::shared_ptr<Memory>(new Memory(capacity, std::shared_ptr<uint8_t>(data, [](void* ptr) {})));
175     memory->size = size;
176     this->data.push_back(memory);
177     return memory;
178 }
179 
WrapMemoryPtr(std::shared_ptr<uint8_t> data,size_t capacity,size_t size)180 std::shared_ptr<Memory> Buffer::WrapMemoryPtr(std::shared_ptr<uint8_t> data, size_t capacity, size_t size)
181 {
182     auto memory = std::shared_ptr<Memory>(new Memory(capacity, data));
183     memory->size = size;
184     this->data.push_back(memory);
185     return memory;
186 }
187 
AllocMemory(std::shared_ptr<Allocator> allocator,size_t capacity,size_t align)188 std::shared_ptr<Memory> Buffer::AllocMemory(std::shared_ptr<Allocator> allocator, size_t capacity, size_t align)
189 {
190     auto type = (allocator != nullptr) ? allocator->GetMemoryType() : MemoryType::VIRTUAL_ADDR;
191     std::shared_ptr<Memory> memory = nullptr;
192     switch (type) {
193         case MemoryType::VIRTUAL_ADDR: {
194             memory = std::shared_ptr<Memory>(new Memory(capacity, allocator, align));
195             break;
196         }
197 #if !defined(OHOS_LITE) && defined(VIDEO_SUPPORT)
198         case MemoryType::SURFACE_BUFFER: {
199             memory = std::shared_ptr<Memory>(new SurfaceMemory(capacity, allocator, align));
200             break;
201         }
202         case MemoryType::SHARE_MEMORY:
203             memory = std::shared_ptr<Memory>(new ShareMemory(capacity, allocator, align));
204             break;
205 #endif
206         default:
207             break;
208     }
209     if (memory == nullptr) {
210         return nullptr;
211     }
212     data.push_back(memory);
213     return memory;
214 }
215 
GetMemoryCount()216 uint32_t Buffer::GetMemoryCount()
217 {
218     return data.size();
219 }
220 
GetMemory(uint32_t index)221 std::shared_ptr<Memory> Buffer::GetMemory(uint32_t index)
222 {
223     if (data.size() <= index) {
224         return nullptr;
225     }
226     return data[index];
227 }
228 
GetBufferMeta()229 std::shared_ptr<BufferMeta> Buffer::GetBufferMeta()
230 {
231     return meta;
232 }
233 
IsEmpty()234 bool Buffer::IsEmpty()
235 {
236     return data.empty();
237 }
238 
Reset()239 void Buffer::Reset()
240 {
241     data[0]->Reset();
242     trackID = 0;
243     pts = 0;
244     dts = 0;
245     duration = 0;
246     flag = 0;
247     BufferMetaType type = meta->GetType();
248     meta.reset();
249     if (type == BufferMetaType::AUDIO) {
250         meta = std::shared_ptr<AudioBufferMeta>(new AudioBufferMeta());
251     } else if (type == BufferMetaType::VIDEO) {
252         meta = std::shared_ptr<VideoBufferMeta>(new VideoBufferMeta());
253     }
254 }
255 } // namespace Plugin
256 } // namespace Media
257 } // namespace OHOS
258