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| 1 // Copyright 2015 The Chromium Authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. |
| 4 |
| 5 #include "config.h" |
| 6 #include "modules/fetch/DataConsumerTee.h" |
| 7 |
| 8 #include "core/dom/ActiveDOMObject.h" |
| 9 #include "core/dom/ExecutionContext.h" |
| 10 #include "platform/Task.h" |
| 11 #include "platform/ThreadSafeFunctional.h" |
| 12 #include "platform/heap/Handle.h" |
| 13 #include "public/platform/Platform.h" |
| 14 #include "public/platform/WebThread.h" |
| 15 #include "public/platform/WebTraceLocation.h" |
| 16 #include "wtf/Deque.h" |
| 17 #include "wtf/Functional.h" |
| 18 #include "wtf/ThreadSafeRefCounted.h" |
| 19 #include "wtf/ThreadingPrimitives.h" |
| 20 #include "wtf/Vector.h" |
| 21 |
| 22 namespace blink { |
| 23 |
| 24 using Result = WebDataConsumerHandle::Result; |
| 25 using Flags = WebDataConsumerHandle::Flags; |
| 26 |
| 27 namespace { |
| 28 |
| 29 // This file contains the "tee" implementation. There are several classes and |
| 30 // their relationship is complicated, so let me describe here. |
| 31 // |
| 32 // Tee::create function creates two DestinationHandles (destinations) from one |
| 33 // WebDataConsumerHandle (source). In fact, it uses a reader of the source |
| 34 // handle. |
| 35 // |
| 36 // SourceContext reads data from the source reader and enques it to two |
| 37 // destination contexts. Destination readers read data from its associated |
| 38 // contexts. Here is an object graph. |
| 39 // |
| 40 // R: the root object |
| 41 // SR: the source reader |
| 42 // SC: the SourceContext |
| 43 // DCn: nth DestinationContext |
| 44 // DRn: nth DestinationReader |
| 45 // DHn: nth DestinationHandle |
| 46 // --------- |
| 47 // (normal) |
| 48 // ---> DC1 <--- DR1 / DH1 |
| 49 // | |
| 50 // | |
| 51 // SR <--SC <-> R |
| 52 // | |
| 53 // | |
| 54 // ---> DC2 <--- DR2 / DH2 |
| 55 // |
| 56 // --------- |
| 57 // |
| 58 // The root object (R) refers to the SourceContext, and is referred by many |
| 59 // objects including the SourceContext. As the root object is a |
| 60 // ThreadSafeRefCounted that reference cycle keeps the entire pipe alive. |
| 61 // The root object only has "stop" function that breaks the reference cycle. |
| 62 // It will be called when: |
| 63 // - The source context finishes reading, |
| 64 // - The source context gets errored while reading, |
| 65 // - The execution context associated with the source context is stopped or |
| 66 // - All destination handles and readers are gone. |
| 67 // |
| 68 // --------- |
| 69 // (stopped) |
| 70 // ---> DC1 <--- DR1 / DH1 |
| 71 // | |
| 72 // | |
| 73 // SR <--SC --> R |
| 74 // | |
| 75 // | |
| 76 // ---> DC2 <--- DR2 / DH2 |
| 77 // |
| 78 // ------- |
| 79 // When |stop| is called, no one has a strong reference to the source context |
| 80 // and it will be collected. |
| 81 // |
| 82 |
| 83 class SourceContext; |
| 84 |
| 85 class TeeRootObject final : public ThreadSafeRefCounted<TeeRootObject> { |
| 86 public: |
| 87 static PassRefPtr<TeeRootObject> create() { return adoptRef(new TeeRootObjec
t()); } |
| 88 |
| 89 void initialize(SourceContext* sourceContext) |
| 90 { |
| 91 m_sourceContext = sourceContext; |
| 92 } |
| 93 |
| 94 // This function can be called from any thread. |
| 95 void stop() |
| 96 { |
| 97 m_sourceContext = nullptr; |
| 98 } |
| 99 |
| 100 private: |
| 101 TeeRootObject() = default; |
| 102 |
| 103 CrossThreadPersistent<SourceContext> m_sourceContext; |
| 104 }; |
| 105 |
| 106 class DestinationTracker final : public ThreadSafeRefCounted<DestinationTracker>
{ |
| 107 public: |
| 108 static PassRefPtr<DestinationTracker> create(PassRefPtr<TeeRootObject> root)
{ return adoptRef(new DestinationTracker(root)); } |
| 109 ~DestinationTracker() |
| 110 { |
| 111 m_root->stop(); |
| 112 } |
| 113 |
| 114 private: |
| 115 explicit DestinationTracker(PassRefPtr<TeeRootObject> root) : m_root(root) {
} |
| 116 |
| 117 RefPtr<TeeRootObject> m_root; |
| 118 }; |
| 119 |
| 120 class DestinationContext final : public ThreadSafeRefCounted<DestinationContext>
{ |
| 121 public: |
| 122 class Proxy : public ThreadSafeRefCounted<Proxy> { |
| 123 public: |
| 124 static PassRefPtr<Proxy> create(PassRefPtr<DestinationContext> context,
PassRefPtr<DestinationTracker> tracker) |
| 125 { |
| 126 return adoptRef(new Proxy(context, tracker)); |
| 127 } |
| 128 ~Proxy() |
| 129 { |
| 130 m_context->detach(); |
| 131 } |
| 132 |
| 133 DestinationContext* context() { return m_context.get(); } |
| 134 |
| 135 private: |
| 136 Proxy(PassRefPtr<DestinationContext> context, PassRefPtr<DestinationTrac
ker> tracker) : m_context(context), m_tracker(tracker) { } |
| 137 |
| 138 RefPtr<DestinationContext> m_context; |
| 139 RefPtr<DestinationTracker> m_tracker; |
| 140 }; |
| 141 |
| 142 static PassRefPtr<DestinationContext> create() { return adoptRef(new Destina
tionContext()); } |
| 143 |
| 144 void enqueue(const char* buffer, size_t size) |
| 145 { |
| 146 bool needsNotification = false; |
| 147 { |
| 148 MutexLocker locker(m_mutex); |
| 149 needsNotification = m_queue.isEmpty(); |
| 150 OwnPtr<Vector<char>> data = adoptPtr(new Vector<char>); |
| 151 data->append(buffer, size); |
| 152 m_queue.append(data.release()); |
| 153 } |
| 154 if (needsNotification) |
| 155 notify(); |
| 156 } |
| 157 |
| 158 void setResult(Result r) |
| 159 { |
| 160 ASSERT(r != WebDataConsumerHandle::Ok); |
| 161 ASSERT(r != WebDataConsumerHandle::ShouldWait); |
| 162 { |
| 163 MutexLocker locker(m_mutex); |
| 164 if (m_result != WebDataConsumerHandle::ShouldWait) { |
| 165 // The result was already set. |
| 166 return; |
| 167 } |
| 168 m_result = r; |
| 169 if (r != WebDataConsumerHandle::Done && !m_isTwoPhaseReadInProgress) |
| 170 m_queue.clear(); |
| 171 } |
| 172 notify(); |
| 173 } |
| 174 |
| 175 void notify() |
| 176 { |
| 177 { |
| 178 MutexLocker locker(m_mutex); |
| 179 if (!m_client) { |
| 180 // No client is registered. |
| 181 return; |
| 182 } |
| 183 ASSERT(m_readerThread); |
| 184 if (!m_readerThread->isCurrentThread()) { |
| 185 m_readerThread->postTask(FROM_HERE, new Task(threadSafeBind(&Des
tinationContext::notify, this))); |
| 186 return; |
| 187 } |
| 188 } |
| 189 // The reading thread is the current thread. |
| 190 if (m_client) |
| 191 m_client->didGetReadable(); |
| 192 } |
| 193 |
| 194 // The following functions don't use lock. |
| 195 void attachReader(WebDataConsumerHandle::Client* client) |
| 196 { |
| 197 ASSERT(!m_readerThread); |
| 198 ASSERT(!m_client); |
| 199 m_readerThread = Platform::current()->currentThread(); |
| 200 m_client = client; |
| 201 } |
| 202 void detachReader() |
| 203 { |
| 204 ASSERT(m_readerThread && m_readerThread->isCurrentThread()); |
| 205 m_readerThread = nullptr; |
| 206 m_client = nullptr; |
| 207 } |
| 208 const OwnPtr<Vector<char>>& top() const { return m_queue.first(); } |
| 209 bool isEmpty() const { return m_queue.isEmpty(); } |
| 210 size_t offset() const { return m_offset; } |
| 211 void consume(size_t size) |
| 212 { |
| 213 const auto& top = m_queue.first(); |
| 214 ASSERT(m_offset + size <= top->size()); |
| 215 if (top->size() <= m_offset + size) { |
| 216 m_offset = 0; |
| 217 m_queue.removeFirst(); |
| 218 } else { |
| 219 m_offset += size; |
| 220 } |
| 221 } |
| 222 Result result() { return m_result; } |
| 223 Mutex& mutex() { return m_mutex; } |
| 224 |
| 225 private: |
| 226 DestinationContext() |
| 227 : m_result(WebDataConsumerHandle::ShouldWait) |
| 228 , m_readerThread(nullptr) |
| 229 , m_client(nullptr) |
| 230 , m_offset(0) |
| 231 , m_isTwoPhaseReadInProgress(false) |
| 232 { |
| 233 } |
| 234 |
| 235 void detach() |
| 236 { |
| 237 ASSERT(!m_client); |
| 238 ASSERT(!m_readerThread); |
| 239 m_queue.clear(); |
| 240 } |
| 241 |
| 242 Result m_result; |
| 243 Deque<OwnPtr<Vector<char>>> m_queue; |
| 244 // Note: Holding a WebThread raw pointer is not generally safe, but we can |
| 245 // do that in this case because: |
| 246 // 1. Destructing a ReaderImpl when the bound thread ends is a user's |
| 247 // responsibility. |
| 248 // 2. |m_readerThread| will never be used after the associated reader is |
| 249 // detached. |
| 250 WebThread* m_readerThread; |
| 251 WebDataConsumerHandle::Client* m_client; |
| 252 size_t m_offset; |
| 253 bool m_isTwoPhaseReadInProgress; |
| 254 Mutex m_mutex; |
| 255 }; |
| 256 |
| 257 class DestinationReader final : public WebDataConsumerHandle::Reader { |
| 258 public: |
| 259 DestinationReader(PassRefPtr<DestinationContext::Proxy> contextProxy, WebDat
aConsumerHandle::Client* client) |
| 260 : m_contextProxy(contextProxy) |
| 261 { |
| 262 MutexLocker(context()->mutex()); |
| 263 context()->attachReader(client); |
| 264 if (client) { |
| 265 // We need to use threadSafeBind here to retain the context. Note |
| 266 // |context()| return value is of type DestinationContext*, not |
| 267 // PassRefPtr<DestinationContext>. |
| 268 Platform::current()->currentThread()->postTask(FROM_HERE, new Task(t
hreadSafeBind(&DestinationContext::notify, context()))); |
| 269 } |
| 270 } |
| 271 ~DestinationReader() override |
| 272 { |
| 273 MutexLocker(context()->mutex()); |
| 274 context()->detachReader(); |
| 275 } |
| 276 |
| 277 Result read(void* buffer, size_t size, Flags, size_t* readSize) override |
| 278 { |
| 279 MutexLocker locker(context()->mutex()); |
| 280 *readSize = 0; |
| 281 if (context()->isEmpty()) |
| 282 return context()->result(); |
| 283 |
| 284 const OwnPtr<Vector<char>>& chunk = context()->top(); |
| 285 size_t sizeToCopy = std::min(size, chunk->size() - context()->offset()); |
| 286 std::copy(chunk->data() + context()->offset(), chunk->data() + context()
->offset() + sizeToCopy, static_cast<char*>(buffer)); |
| 287 context()->consume(sizeToCopy); |
| 288 *readSize = sizeToCopy; |
| 289 return WebDataConsumerHandle::Ok; |
| 290 } |
| 291 |
| 292 Result beginRead(const void** buffer, Flags, size_t* available) override |
| 293 { |
| 294 MutexLocker locker(context()->mutex()); |
| 295 *available = 0; |
| 296 *buffer = nullptr; |
| 297 if (context()->isEmpty()) |
| 298 return context()->result(); |
| 299 |
| 300 const OwnPtr<Vector<char>>& chunk = context()->top(); |
| 301 *available = chunk->size() - context()->offset(); |
| 302 *buffer = chunk->data() + context()->offset(); |
| 303 return WebDataConsumerHandle::Ok; |
| 304 } |
| 305 |
| 306 Result endRead(size_t readSize) override |
| 307 { |
| 308 MutexLocker locker(context()->mutex()); |
| 309 if (context()->isEmpty()) |
| 310 return WebDataConsumerHandle::UnexpectedError; |
| 311 context()->consume(readSize); |
| 312 return WebDataConsumerHandle::Ok; |
| 313 } |
| 314 |
| 315 private: |
| 316 DestinationContext* context() { return m_contextProxy->context(); } |
| 317 |
| 318 RefPtr<DestinationContext::Proxy> m_contextProxy; |
| 319 }; |
| 320 |
| 321 class DestinationHandle final : public WebDataConsumerHandle { |
| 322 public: |
| 323 DestinationHandle(PassRefPtr<DestinationContext::Proxy> contextProxy) : m_co
ntextProxy(contextProxy) { } |
| 324 |
| 325 private: |
| 326 DestinationReader* obtainReaderInternal(Client* client) { return new Destina
tionReader(m_contextProxy, client); } |
| 327 |
| 328 RefPtr<DestinationContext::Proxy> m_contextProxy; |
| 329 }; |
| 330 |
| 331 // Bound to the created thread. |
| 332 class SourceContext final : public GarbageCollectedFinalized<SourceContext>, pub
lic ActiveDOMObject, public WebDataConsumerHandle::Client { |
| 333 WILL_BE_USING_GARBAGE_COLLECTED_MIXIN(SourceContext); |
| 334 public: |
| 335 SourceContext( |
| 336 PassRefPtr<TeeRootObject> root, |
| 337 PassOwnPtr<WebDataConsumerHandle> src, |
| 338 PassRefPtr<DestinationContext> dest1, |
| 339 PassRefPtr<DestinationContext> dest2, |
| 340 ExecutionContext* executionContext) |
| 341 : ActiveDOMObject(executionContext) |
| 342 , m_root(root) |
| 343 , m_reader(src->obtainReader(this)) |
| 344 , m_dest1(dest1) |
| 345 , m_dest2(dest2) |
| 346 { |
| 347 suspendIfNeeded(); |
| 348 } |
| 349 ~SourceContext() override |
| 350 { |
| 351 stopInternal(); |
| 352 } |
| 353 |
| 354 void didGetReadable() override |
| 355 { |
| 356 ASSERT(m_reader); |
| 357 Result r = WebDataConsumerHandle::Ok; |
| 358 while (true) { |
| 359 const void* buffer = nullptr; |
| 360 size_t available = 0; |
| 361 r = m_reader->beginRead(&buffer, WebDataConsumerHandle::FlagNone, &a
vailable); |
| 362 if (r == WebDataConsumerHandle::ShouldWait) |
| 363 return; |
| 364 if (r != WebDataConsumerHandle::Ok) |
| 365 break; |
| 366 m_dest1->enqueue(static_cast<const char*>(buffer), available); |
| 367 m_dest2->enqueue(static_cast<const char*>(buffer), available); |
| 368 m_reader->endRead(available); |
| 369 } |
| 370 m_dest1->setResult(r); |
| 371 m_dest2->setResult(r); |
| 372 stopInternal(); |
| 373 } |
| 374 |
| 375 void stop() override |
| 376 { |
| 377 stopInternal(); |
| 378 ActiveDOMObject::stop(); |
| 379 } |
| 380 |
| 381 DEFINE_INLINE_VIRTUAL_TRACE() |
| 382 { |
| 383 ActiveDOMObject::trace(visitor); |
| 384 } |
| 385 |
| 386 private: |
| 387 void stopInternal() |
| 388 { |
| 389 if (!m_root) |
| 390 return; |
| 391 // When we already set a result, this result setting will be ignored. |
| 392 m_dest1->setResult(WebDataConsumerHandle::UnexpectedError); |
| 393 m_dest2->setResult(WebDataConsumerHandle::UnexpectedError); |
| 394 m_root->stop(); |
| 395 m_root = nullptr; |
| 396 m_reader = nullptr; |
| 397 m_dest1 = nullptr; |
| 398 m_dest2 = nullptr; |
| 399 } |
| 400 |
| 401 RefPtr<TeeRootObject> m_root; |
| 402 OwnPtr<WebDataConsumerHandle::Reader> m_reader; |
| 403 RefPtr<DestinationContext> m_dest1; |
| 404 RefPtr<DestinationContext> m_dest2; |
| 405 }; |
| 406 |
| 407 } // namespace |
| 408 |
| 409 void DataConsumerTee::create(ExecutionContext* executionContext, PassOwnPtr<WebD
ataConsumerHandle> src, OwnPtr<WebDataConsumerHandle>* dest1, OwnPtr<WebDataCons
umerHandle>* dest2) |
| 410 { |
| 411 RefPtr<TeeRootObject> root = TeeRootObject::create(); |
| 412 RefPtr<DestinationTracker> tracker = DestinationTracker::create(root); |
| 413 RefPtr<DestinationContext> context1 = DestinationContext::create(); |
| 414 RefPtr<DestinationContext> context2 = DestinationContext::create(); |
| 415 |
| 416 root->initialize(new SourceContext(root, src, context1, context2, executionC
ontext)); |
| 417 |
| 418 *dest1 = adoptPtr(new DestinationHandle(DestinationContext::Proxy::create(co
ntext1, tracker))); |
| 419 *dest2 = adoptPtr(new DestinationHandle(DestinationContext::Proxy::create(co
ntext2, tracker))); |
| 420 } |
| 421 |
| 422 } // namespace blink |
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