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| 1 // Copyright 2014 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 "content/renderer/scheduler/resource_dispatch_throttler.h" |
| 6 |
| 7 #include "base/memory/scoped_vector.h" |
| 8 #include "content/common/resource_messages.h" |
| 9 #include "content/test/fake_renderer_scheduler.h" |
| 10 #include "testing/gtest/include/gtest/gtest.h" |
| 11 |
| 12 namespace content { |
| 13 namespace { |
| 14 |
| 15 const uint32 kRequestsPerFlush = 4; |
| 16 const double kFlushPeriodSeconds = 1.f / 60; |
| 17 const int kRoutingId = 1; |
| 18 |
| 19 typedef ScopedVector<IPC::Message> ScopedMessages; |
| 20 |
| 21 int GetRequestId(const IPC::Message& msg) { |
| 22 int request_id = -1; |
| 23 switch (msg.type()) { |
| 24 case ResourceHostMsg_RequestResource::ID: { |
| 25 PickleIterator iter(msg); |
| 26 int routing_id = -1; |
| 27 if (!iter.ReadInt(&routing_id) || !iter.ReadInt(&request_id)) |
| 28 NOTREACHED() << "Invalid id for resource request message."; |
| 29 } break; |
| 30 |
| 31 case ResourceHostMsg_DidChangePriority::ID: |
| 32 case ResourceHostMsg_ReleaseDownloadedFile::ID: |
| 33 case ResourceHostMsg_CancelRequest::ID: |
| 34 if (!PickleIterator(msg).ReadInt(&request_id)) |
| 35 NOTREACHED() << "Invalid id for resource message."; |
| 36 break; |
| 37 |
| 38 default: |
| 39 NOTREACHED() << "Invalid message for resource throttling."; |
| 40 break; |
| 41 } |
| 42 return request_id; |
| 43 } |
| 44 |
| 45 class SenderSink : public IPC::Sender { |
| 46 public: |
| 47 SenderSink(ScopedMessages* sent_messages) : sent_messages_(sent_messages) {} |
| 48 |
| 49 // IPC::Sender implementation: |
| 50 bool Send(IPC::Message* msg) override { |
| 51 sent_messages_->push_back(msg); |
| 52 return true; |
| 53 } |
| 54 |
| 55 private: |
| 56 ScopedMessages* sent_messages_; |
| 57 }; |
| 58 |
| 59 } // namespace |
| 60 |
| 61 class ResourceDispatchThrottlerTest : public testing::Test, |
| 62 public FakeRendererScheduler, |
| 63 public ResourceDispatchThrottler { |
| 64 public: |
| 65 ResourceDispatchThrottlerTest() |
| 66 : ResourceDispatchThrottler( |
| 67 &sender_sink_, |
| 68 this, |
| 69 base::TimeDelta::FromSecondsD(kFlushPeriodSeconds), |
| 70 kRequestsPerFlush), |
| 71 sender_sink_(&sent_messages_), |
| 72 flush_scheduled_(false), |
| 73 anticipate_(false), |
| 74 last_request_id_(0) {} |
| 75 ~ResourceDispatchThrottlerTest() override {} |
| 76 |
| 77 // RendererScheduler implementation: |
| 78 bool IsHighPriorityWorkAnticipated() override { return anticipate_; } |
| 79 |
| 80 protected: |
| 81 base::TimeTicks Now() const override { return now_; } |
| 82 |
| 83 void ScheduleFlush() override { flush_scheduled_ = true; } |
| 84 |
| 85 void SetHighPriorityWorkAnticipated(bool anticipate) { |
| 86 anticipate_ = anticipate; |
| 87 } |
| 88 |
| 89 void Advance(base::TimeDelta delta) { now_ += delta; } |
| 90 |
| 91 bool RunScheduledFlush() { |
| 92 if (!flush_scheduled_) |
| 93 return false; |
| 94 |
| 95 flush_scheduled_ = false; |
| 96 Flush(); |
| 97 return true; |
| 98 } |
| 99 |
| 100 bool RequestResource() { |
| 101 ResourceHostMsg_Request request; |
| 102 request.download_to_file = true; |
| 103 return Send(new ResourceHostMsg_RequestResource( |
| 104 kRoutingId, ++last_request_id_, request)); |
| 105 } |
| 106 |
| 107 void RequestResourcesUntilThrottled() { |
| 108 SetHighPriorityWorkAnticipated(true); |
| 109 GetAndResetSentMessageCount(); |
| 110 for (RequestResource(); GetAndResetSentMessageCount(); RequestResource()) { |
| 111 } |
| 112 } |
| 113 |
| 114 bool UpdateRequestPriority(int request_id, net::RequestPriority priority) { |
| 115 return Send(new ResourceHostMsg_DidChangePriority(request_id, priority, 0)); |
| 116 } |
| 117 |
| 118 bool ReleaseDownloadedFile(int request_id) { |
| 119 return Send(new ResourceHostMsg_ReleaseDownloadedFile(request_id)); |
| 120 } |
| 121 |
| 122 bool CancelRequest(int request_id) { |
| 123 return Send(new ResourceHostMsg_CancelRequest(request_id)); |
| 124 } |
| 125 |
| 126 bool RequestResourceSync() { |
| 127 SyncLoadResult result; |
| 128 return Send(new ResourceHostMsg_SyncLoad( |
| 129 kRoutingId, ++last_request_id_, ResourceHostMsg_Request(), &result)); |
| 130 } |
| 131 |
| 132 size_t GetAndResetSentMessageCount() { |
| 133 size_t sent_message_count = sent_messages_.size(); |
| 134 sent_messages_.clear(); |
| 135 return sent_message_count; |
| 136 } |
| 137 |
| 138 const IPC::Message* LastSentMessage() const { |
| 139 return sent_messages_.empty() ? nullptr : sent_messages_.back(); |
| 140 } |
| 141 |
| 142 int LastSentRequestId() const { |
| 143 const IPC::Message* msg = LastSentMessage(); |
| 144 if (!msg) |
| 145 return -1; |
| 146 |
| 147 int routing_id = -1; |
| 148 int request_id = -1; |
| 149 PickleIterator iter(*msg); |
| 150 CHECK(IPC::ReadParam(msg, &iter, &routing_id)); |
| 151 CHECK(IPC::ReadParam(msg, &iter, &request_id)); |
| 152 return request_id; |
| 153 } |
| 154 |
| 155 bool flush_scheduled() const { return flush_scheduled_; } |
| 156 |
| 157 int last_request_id() const { return last_request_id_; } |
| 158 |
| 159 ScopedMessages sent_messages_; |
| 160 |
| 161 private: |
| 162 SenderSink sender_sink_; |
| 163 base::MessageLoopForUI message_loop_; |
| 164 base::TimeTicks now_; |
| 165 bool flush_scheduled_; |
| 166 bool anticipate_; |
| 167 int last_request_id_; |
| 168 |
| 169 DISALLOW_COPY_AND_ASSIGN(ResourceDispatchThrottlerTest); |
| 170 }; |
| 171 |
| 172 TEST_F(ResourceDispatchThrottlerTest, NotThrottledByDefault) { |
| 173 SetHighPriorityWorkAnticipated(false); |
| 174 for (size_t i = 0; i < kRequestsPerFlush * 2; ++i) { |
| 175 RequestResource(); |
| 176 EXPECT_EQ(i + 1, sent_messages_.size()); |
| 177 } |
| 178 } |
| 179 |
| 180 TEST_F(ResourceDispatchThrottlerTest, NotThrottledIfSendLimitNotReached) { |
| 181 SetHighPriorityWorkAnticipated(true); |
| 182 for (size_t i = 0; i < kRequestsPerFlush; ++i) { |
| 183 RequestResource(); |
| 184 EXPECT_EQ(i + 1, sent_messages_.size()); |
| 185 } |
| 186 } |
| 187 |
| 188 TEST_F(ResourceDispatchThrottlerTest, ThrottledWhenHighPriorityWork) { |
| 189 SetHighPriorityWorkAnticipated(true); |
| 190 for (size_t i = 0; i < kRequestsPerFlush; ++i) |
| 191 RequestResource(); |
| 192 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 193 |
| 194 RequestResource(); |
| 195 EXPECT_EQ(0U, sent_messages_.size()); |
| 196 |
| 197 EXPECT_TRUE(RunScheduledFlush()); |
| 198 EXPECT_EQ(1U, sent_messages_.size()); |
| 199 } |
| 200 |
| 201 TEST_F(ResourceDispatchThrottlerTest, |
| 202 ThrottledWhenDeferredMessageQueueNonEmpty) { |
| 203 SetHighPriorityWorkAnticipated(true); |
| 204 for (size_t i = 0; i < kRequestsPerFlush; ++i) |
| 205 RequestResource(); |
| 206 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 207 |
| 208 RequestResource(); |
| 209 EXPECT_EQ(0U, sent_messages_.size()); |
| 210 SetHighPriorityWorkAnticipated(false); |
| 211 RequestResource(); |
| 212 EXPECT_EQ(0U, sent_messages_.size()); |
| 213 |
| 214 EXPECT_TRUE(RunScheduledFlush()); |
| 215 EXPECT_EQ(2U, sent_messages_.size()); |
| 216 } |
| 217 |
| 218 TEST_F(ResourceDispatchThrottlerTest, NotThrottledIfSufficientTimePassed) { |
| 219 SetHighPriorityWorkAnticipated(true); |
| 220 |
| 221 for (size_t i = 0; i < kRequestsPerFlush * 2; ++i) { |
| 222 Advance(base::TimeDelta::FromSecondsD(kFlushPeriodSeconds * 2)); |
| 223 RequestResource(); |
| 224 EXPECT_EQ(1U, GetAndResetSentMessageCount()); |
| 225 EXPECT_FALSE(flush_scheduled()); |
| 226 } |
| 227 } |
| 228 |
| 229 TEST_F(ResourceDispatchThrottlerTest, NotThrottledIfSyncMessage) { |
| 230 SetHighPriorityWorkAnticipated(true); |
| 231 |
| 232 RequestResourceSync(); |
| 233 EXPECT_EQ(1U, GetAndResetSentMessageCount()); |
| 234 |
| 235 // Saturate the queue. |
| 236 for (size_t i = 0; i < kRequestsPerFlush * 2; ++i) |
| 237 RequestResource(); |
| 238 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 239 |
| 240 // Unthrottled message types should pass through untouched. |
| 241 RequestResourceSync(); |
| 242 EXPECT_EQ(1U, GetAndResetSentMessageCount()); |
| 243 RequestResourceSync(); |
| 244 EXPECT_EQ(1U, GetAndResetSentMessageCount()); |
| 245 |
| 246 // Deferred messages should flush as usual. |
| 247 EXPECT_TRUE(RunScheduledFlush()); |
| 248 EXPECT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 249 } |
| 250 |
| 251 TEST_F(ResourceDispatchThrottlerTest, MultipleFlushes) { |
| 252 SetHighPriorityWorkAnticipated(true); |
| 253 for (size_t i = 0; i < kRequestsPerFlush * 4; ++i) |
| 254 RequestResource(); |
| 255 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 256 |
| 257 for (size_t i = 0; i < 3; ++i) { |
| 258 EXPECT_TRUE(RunScheduledFlush()); |
| 259 EXPECT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()) << i; |
| 260 } |
| 261 |
| 262 EXPECT_FALSE(flush_scheduled()); |
| 263 EXPECT_EQ(0U, sent_messages_.size()); |
| 264 } |
| 265 |
| 266 TEST_F(ResourceDispatchThrottlerTest, MultipleFlushesWhileReceiving) { |
| 267 SetHighPriorityWorkAnticipated(true); |
| 268 for (size_t i = 0; i < kRequestsPerFlush * 4; ++i) |
| 269 RequestResource(); |
| 270 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 271 |
| 272 for (size_t i = 0; i < 3; ++i) { |
| 273 EXPECT_TRUE(RunScheduledFlush()); |
| 274 EXPECT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()) << i; |
| 275 for (size_t j = 0; j < kRequestsPerFlush; ++j) |
| 276 RequestResource(); |
| 277 EXPECT_EQ(0U, sent_messages_.size()) << i; |
| 278 } |
| 279 |
| 280 for (size_t i = 0; i < 3; ++i) { |
| 281 EXPECT_TRUE(RunScheduledFlush()); |
| 282 EXPECT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 283 } |
| 284 |
| 285 EXPECT_FALSE(flush_scheduled()); |
| 286 EXPECT_EQ(0U, sent_messages_.size()); |
| 287 } |
| 288 |
| 289 TEST_F(ResourceDispatchThrottlerTest, NonRequestsNeverTriggerThrottling) { |
| 290 RequestResource(); |
| 291 ASSERT_EQ(1U, GetAndResetSentMessageCount()); |
| 292 |
| 293 for (size_t i = 0; i < kRequestsPerFlush * 3; ++i) |
| 294 UpdateRequestPriority(last_request_id(), net::HIGHEST); |
| 295 EXPECT_EQ(kRequestsPerFlush * 3, sent_messages_.size()); |
| 296 |
| 297 RequestResource(); |
| 298 EXPECT_EQ(1U + kRequestsPerFlush * 3, GetAndResetSentMessageCount()); |
| 299 } |
| 300 |
| 301 TEST_F(ResourceDispatchThrottlerTest, NonRequestsDeferredWhenThrottling) { |
| 302 RequestResource(); |
| 303 ASSERT_EQ(1U, GetAndResetSentMessageCount()); |
| 304 |
| 305 RequestResourcesUntilThrottled(); |
| 306 UpdateRequestPriority(last_request_id(), net::HIGHEST); |
| 307 ReleaseDownloadedFile(last_request_id()); |
| 308 CancelRequest(last_request_id()); |
| 309 |
| 310 EXPECT_TRUE(RunScheduledFlush()); |
| 311 EXPECT_EQ(4U, GetAndResetSentMessageCount()); |
| 312 EXPECT_FALSE(flush_scheduled()); |
| 313 } |
| 314 |
| 315 TEST_F(ResourceDispatchThrottlerTest, MessageOrderingPreservedWhenThrottling) { |
| 316 SetHighPriorityWorkAnticipated(true); |
| 317 for (size_t i = 0; i < kRequestsPerFlush; ++i) |
| 318 RequestResource(); |
| 319 ASSERT_EQ(kRequestsPerFlush, GetAndResetSentMessageCount()); |
| 320 |
| 321 for (size_t i = 0; i < kRequestsPerFlush; ++i) { |
| 322 RequestResource(); |
| 323 UpdateRequestPriority(last_request_id(), net::HIGHEST); |
| 324 CancelRequest(last_request_id() - 1); |
| 325 } |
| 326 ASSERT_EQ(0U, sent_messages_.size()); |
| 327 |
| 328 EXPECT_TRUE(RunScheduledFlush()); |
| 329 ASSERT_EQ(kRequestsPerFlush * 3, sent_messages_.size()); |
| 330 for (size_t i = 0; i < sent_messages_.size(); i+=3) { |
| 331 const auto& request_msg = *sent_messages_[i]; |
| 332 const auto& priority_msg = *sent_messages_[i + 1]; |
| 333 const auto& cancel_msg = *sent_messages_[i + 2]; |
| 334 |
| 335 EXPECT_EQ(request_msg.type(), ResourceHostMsg_RequestResource::ID) << i; |
| 336 EXPECT_EQ(priority_msg.type(), ResourceHostMsg_DidChangePriority::ID) << i; |
| 337 EXPECT_EQ(cancel_msg.type(), ResourceHostMsg_CancelRequest::ID) << i; |
| 338 |
| 339 EXPECT_EQ(GetRequestId(request_msg), GetRequestId(priority_msg)); |
| 340 EXPECT_EQ(GetRequestId(request_msg) - 1, GetRequestId(cancel_msg)); |
| 341 } |
| 342 EXPECT_FALSE(flush_scheduled()); |
| 343 } |
| 344 |
| 345 } // namespace content |
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