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| 1 |
| 2 // Copyright 2015 The Chromium Authors. All rights reserved. |
| 3 // Use of this source code is governed by a BSD-style license that can be |
| 4 // found in the LICENSE file. |
| 5 |
| 6 #include "content/renderer/scheduler/task_queue_manager.h" |
| 7 |
| 8 #include <functional> |
| 9 #include "base/bind.h" |
| 10 #include "base/threading/thread.h" |
| 11 #include "content/renderer/scheduler/task_queue_selector.h" |
| 12 #include "testing/gmock/include/gmock/gmock.h" |
| 13 #include "testing/perf/perf_test.h" |
| 14 |
| 15 namespace content { |
| 16 |
| 17 namespace { |
| 18 |
| 19 class SelectorForTest : public TaskQueueSelector { |
| 20 public: |
| 21 SelectorForTest() {} |
| 22 |
| 23 void RegisterWorkQueues( |
| 24 const std::vector<const base::TaskQueue*>& work_queues) override { |
| 25 work_queues_ = work_queues; |
| 26 } |
| 27 |
| 28 bool SelectWorkQueueToService(size_t* out_queue_index) override { |
| 29 // Choose the oldest task, if any. |
| 30 bool found_one = false; |
| 31 for (size_t i = 0; i < work_queues_.size(); i++) { |
| 32 if (work_queues_[i]->empty()) |
| 33 continue; |
| 34 // Note: the < comparison is correct due to the fact that the PendingTask |
| 35 // operator inverts its comparison operation in order to work well in a |
| 36 // heap based priority queue. |
| 37 if (!found_one || |
| 38 work_queues_[*out_queue_index]->front() < work_queues_[i]->front()) |
| 39 *out_queue_index = i; |
| 40 found_one = true; |
| 41 } |
| 42 return found_one; |
| 43 } |
| 44 |
| 45 void AsValueInto(base::trace_event::TracedValue* state) const override {} |
| 46 |
| 47 private: |
| 48 std::vector<const base::TaskQueue*> work_queues_; |
| 49 |
| 50 DISALLOW_COPY_AND_ASSIGN(SelectorForTest); |
| 51 }; |
| 52 |
| 53 } // namespace |
| 54 |
| 55 class TaskQueueManagerPerfTest : public testing::Test { |
| 56 protected: |
| 57 void Initialize(size_t num_queues) { |
| 58 num_queues_ = num_queues; |
| 59 message_loop_.reset(new base::MessageLoop()); |
| 60 selector_ = make_scoped_ptr(new SelectorForTest); |
| 61 manager_ = make_scoped_ptr(new TaskQueueManager( |
| 62 num_queues, message_loop_->task_runner(), selector_.get())); |
| 63 } |
| 64 |
| 65 void Benchmark(const std::string& trace, std::function<void()> fn) { |
| 66 base::TimeTicks start = base::TimeTicks::Now(); |
| 67 base::TimeTicks now; |
| 68 unsigned long long num_iterations = 0; |
| 69 do { |
| 70 fn(); |
| 71 now = base::TimeTicks::Now(); |
| 72 num_iterations++; |
| 73 } while (now - start < base::TimeDelta::FromSeconds(5)); |
| 74 perf_test::PrintResult( |
| 75 "task", "", trace, |
| 76 (now - start).InMicroseconds() / static_cast<double>(num_iterations), |
| 77 "us/run", true); |
| 78 } |
| 79 |
| 80 void TestTask() { |
| 81 // Post a variable number of tasks. |
| 82 unsigned int num_posts = 1 + sequence_number_ % 8; |
| 83 for (unsigned int i = 0; i < num_posts; i++) { |
| 84 if (++sequence_number_ < 10000) { |
| 85 // Choose a queue weighted towards queue 0. |
| 86 unsigned int queue = sequence_number_ % (num_queues_ + 1); |
| 87 if (queue == num_queues_) { |
| 88 queue = 0; |
| 89 } |
| 90 base::TimeDelta delay( |
| 91 base::TimeDelta::FromMilliseconds(sequence_number_ % 10)); |
| 92 scoped_refptr<base::SingleThreadTaskRunner> runner = |
| 93 manager_->TaskRunnerForQueue(queue); |
| 94 runner->PostDelayedTask(FROM_HERE, |
| 95 base::Bind(&TaskQueueManagerPerfTest::TestTask, |
| 96 base::Unretained(this)), |
| 97 delay); |
| 98 } else { |
| 99 message_loop_->Quit(); |
| 100 return; |
| 101 } |
| 102 } |
| 103 } |
| 104 |
| 105 size_t num_queues_; |
| 106 unsigned int sequence_number_; |
| 107 scoped_ptr<SelectorForTest> selector_; |
| 108 scoped_ptr<TaskQueueManager> manager_; |
| 109 scoped_ptr<base::MessageLoop> message_loop_; |
| 110 }; |
| 111 |
| 112 TEST_F(TaskQueueManagerPerfTest, RunTenThousandDelayedTasks_OneQueue) { |
| 113 Initialize(1u); |
| 114 |
| 115 Benchmark("post 10000 delayed tasks", [this]() { |
| 116 sequence_number_ = 0; |
| 117 TestTask(); |
| 118 message_loop_->Run(); |
| 119 }); |
| 120 } |
| 121 |
| 122 TEST_F(TaskQueueManagerPerfTest, RunTenThousandDelayedTasks_FourQueues) { |
| 123 Initialize(4u); |
| 124 |
| 125 Benchmark("post 10000 delayed tasks", [this]() { |
| 126 sequence_number_ = 0; |
| 127 TestTask(); |
| 128 message_loop_->Run(); |
| 129 }); |
| 130 } |
| 131 |
| 132 TEST_F(TaskQueueManagerPerfTest, RunTenThousandDelayedTasks_EightQueues) { |
| 133 Initialize(8u); |
| 134 |
| 135 Benchmark("post 10000 delayed tasks", [this]() { |
| 136 sequence_number_ = 0; |
| 137 TestTask(); |
| 138 message_loop_->Run(); |
| 139 }); |
| 140 } |
| 141 |
| 142 } // namespace content |
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