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489 lines
18 KiB
489 lines
18 KiB
// |
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// Copyright (C) 2014 The Android Open Source Project |
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// |
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// Licensed under the Apache License, Version 2.0 (the "License"); |
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// you may not use this file except in compliance with the License. |
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// You may obtain a copy of the License at |
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// |
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// http://www.apache.org/licenses/LICENSE-2.0 |
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// |
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// Unless required by applicable law or agreed to in writing, software |
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// distributed under the License is distributed on an "AS IS" BASIS, |
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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// See the License for the specific language governing permissions and |
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// limitations under the License. |
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// |
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#include "update_engine/update_manager/evaluation_context.h" |
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#include <memory> |
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#include <string> |
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#include <base/bind.h> |
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#include <brillo/message_loops/fake_message_loop.h> |
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#include <brillo/message_loops/message_loop_utils.h> |
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#include <gtest/gtest.h> |
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#include "update_engine/common/fake_clock.h" |
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#include "update_engine/update_manager/fake_variable.h" |
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#include "update_engine/update_manager/generic_variables.h" |
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#include "update_engine/update_manager/mock_variable.h" |
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#include "update_engine/update_manager/umtest_utils.h" |
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using base::Bind; |
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using base::Closure; |
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using base::Time; |
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using base::TimeDelta; |
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using brillo::MessageLoop; |
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using brillo::MessageLoopRunMaxIterations; |
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using brillo::MessageLoopRunUntil; |
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using chromeos_update_engine::FakeClock; |
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using std::string; |
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using std::unique_ptr; |
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using testing::Return; |
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using testing::StrictMock; |
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using testing::_; |
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namespace chromeos_update_manager { |
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namespace { |
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void DoNothing() {} |
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// Sets the value of the passed pointer to true. |
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void SetTrue(bool* value) { |
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*value = true; |
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} |
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bool GetBoolean(bool* value) { |
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return *value; |
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} |
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template<typename T> |
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void ReadVar(scoped_refptr<EvaluationContext> ec, Variable<T>* var) { |
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ec->GetValue(var); |
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} |
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// Runs |evaluation|; if the value pointed by |count_p| is greater than zero, |
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// decrement it and schedule a reevaluation; otherwise, writes true to |done_p|. |
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void EvaluateRepeatedly(Closure evaluation, scoped_refptr<EvaluationContext> ec, |
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int* count_p, bool* done_p) { |
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evaluation.Run(); |
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// Schedule reevaluation if needed. |
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if (*count_p > 0) { |
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Closure closure = Bind(EvaluateRepeatedly, evaluation, ec, count_p, done_p); |
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ASSERT_TRUE(ec->RunOnValueChangeOrTimeout(closure)) |
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<< "Failed to schedule reevaluation, count_p=" << *count_p; |
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(*count_p)--; |
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} else { |
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*done_p = true; |
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} |
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} |
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} // namespace |
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class UmEvaluationContextTest : public ::testing::Test { |
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protected: |
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void SetUp() override { |
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loop_.SetAsCurrent(); |
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// Apr 22, 2009 19:25:00 UTC (this is a random reference point). |
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fake_clock_.SetMonotonicTime(Time::FromTimeT(1240428300)); |
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// Mar 2, 2006 1:23:45 UTC. |
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fake_clock_.SetWallclockTime(Time::FromTimeT(1141262625)); |
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eval_ctx_ = new EvaluationContext( |
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&fake_clock_, default_timeout_, default_timeout_, |
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unique_ptr<base::Callback<void(EvaluationContext*)>>(nullptr)); |
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} |
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void TearDown() override { |
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// Ensure that the evaluation context did not leak and is actually being |
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// destroyed. |
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if (eval_ctx_) { |
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base::WeakPtr<EvaluationContext> eval_ctx_weak_alias = |
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eval_ctx_->weak_ptr_factory_.GetWeakPtr(); |
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ASSERT_NE(nullptr, eval_ctx_weak_alias.get()); |
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eval_ctx_ = nullptr; |
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EXPECT_EQ(nullptr, eval_ctx_weak_alias.get()) |
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<< "The evaluation context was not destroyed! This is likely a bug " |
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"in how the test was written, look for leaking handles to the EC, " |
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"possibly through closure objects."; |
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} |
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// Check that the evaluation context removed all the observers. |
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EXPECT_TRUE(fake_int_var_.observer_list_.empty()); |
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EXPECT_TRUE(fake_async_var_.observer_list_.empty()); |
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EXPECT_TRUE(fake_const_var_.observer_list_.empty()); |
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EXPECT_TRUE(fake_poll_var_.observer_list_.empty()); |
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EXPECT_FALSE(loop_.PendingTasks()); |
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} |
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TimeDelta default_timeout_ = TimeDelta::FromSeconds(5); |
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brillo::FakeMessageLoop loop_{nullptr}; |
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FakeClock fake_clock_; |
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scoped_refptr<EvaluationContext> eval_ctx_; |
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// FakeVariables used for testing the EvaluationContext. These are required |
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// here to prevent them from going away *before* the EvaluationContext under |
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// test does, which keeps a reference to them. |
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FakeVariable<bool> fail_var_ = {"fail_var", kVariableModePoll}; |
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FakeVariable<int> fake_int_var_ = {"fake_int", kVariableModePoll}; |
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FakeVariable<string> fake_async_var_ = {"fake_async", kVariableModeAsync}; |
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FakeVariable<string> fake_const_var_ = {"fake_const", kVariableModeConst}; |
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FakeVariable<string> fake_poll_var_ = {"fake_poll", |
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TimeDelta::FromSeconds(1)}; |
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StrictMock<MockVariable<string>> mock_var_async_ { |
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"mock_var_async", kVariableModeAsync}; |
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StrictMock<MockVariable<string>> mock_var_poll_ { |
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"mock_var_poll", kVariableModePoll}; |
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}; |
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TEST_F(UmEvaluationContextTest, GetValueFails) { |
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// FakeVariable is initialized as returning null. |
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EXPECT_EQ(nullptr, eval_ctx_->GetValue(&fake_int_var_)); |
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} |
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TEST_F(UmEvaluationContextTest, GetValueFailsWithInvalidVar) { |
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EXPECT_EQ(nullptr, eval_ctx_->GetValue(static_cast<Variable<int>*>(nullptr))); |
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} |
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TEST_F(UmEvaluationContextTest, GetValueReturns) { |
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const int* p_fake_int; |
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fake_int_var_.reset(new int(42)); |
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p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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ASSERT_NE(nullptr, p_fake_int); |
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EXPECT_EQ(42, *p_fake_int); |
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} |
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TEST_F(UmEvaluationContextTest, GetValueCached) { |
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const int* p_fake_int; |
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fake_int_var_.reset(new int(42)); |
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p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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// Check that if the variable changes, the EvaluationContext keeps returning |
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// the cached value. |
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fake_int_var_.reset(new int(5)); |
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p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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ASSERT_NE(nullptr, p_fake_int); |
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EXPECT_EQ(42, *p_fake_int); |
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} |
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TEST_F(UmEvaluationContextTest, GetValueCachesNull) { |
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const int* p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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EXPECT_EQ(nullptr, p_fake_int); |
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fake_int_var_.reset(new int(42)); |
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// A second attempt to read the variable should not work because this |
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// EvaluationContext already got a null value. |
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p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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EXPECT_EQ(nullptr, p_fake_int); |
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} |
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TEST_F(UmEvaluationContextTest, GetValueMixedTypes) { |
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const int* p_fake_int; |
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const string* p_fake_string; |
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fake_int_var_.reset(new int(42)); |
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fake_poll_var_.reset(new string("Hello world!")); |
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// Check that the EvaluationContext can handle multiple Variable types. This |
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// is mostly a compile-time check due to the template nature of this method. |
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p_fake_int = eval_ctx_->GetValue(&fake_int_var_); |
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p_fake_string = eval_ctx_->GetValue(&fake_poll_var_); |
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ASSERT_NE(nullptr, p_fake_int); |
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EXPECT_EQ(42, *p_fake_int); |
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ASSERT_NE(nullptr, p_fake_string); |
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EXPECT_EQ("Hello world!", *p_fake_string); |
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} |
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// Test that we don't schedule an event if there's no variable to wait for. |
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TEST_F(UmEvaluationContextTest, RunOnValueChangeOrTimeoutWithoutVariables) { |
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fake_const_var_.reset(new string("Hello world!")); |
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EXPECT_EQ(*eval_ctx_->GetValue(&fake_const_var_), "Hello world!"); |
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EXPECT_FALSE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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// Test that reevaluation occurs when an async variable it depends on changes. |
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TEST_F(UmEvaluationContextTest, RunOnValueChangeOrTimeoutWithVariables) { |
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fake_async_var_.reset(new string("Async value")); |
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eval_ctx_->GetValue(&fake_async_var_); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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// Check that the scheduled callback isn't run until we signal a ValueChaged. |
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MessageLoopRunMaxIterations(MessageLoop::current(), 100); |
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EXPECT_FALSE(value); |
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fake_async_var_.NotifyValueChanged(); |
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EXPECT_FALSE(value); |
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// Ensure that the scheduled callback isn't run until we are back on the main |
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// loop. |
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MessageLoopRunMaxIterations(MessageLoop::current(), 100); |
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EXPECT_TRUE(value); |
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} |
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// Test that we don't re-schedule the events if we are attending one. |
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TEST_F(UmEvaluationContextTest, RunOnValueChangeOrTimeoutCalledTwice) { |
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fake_async_var_.reset(new string("Async value")); |
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eval_ctx_->GetValue(&fake_async_var_); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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EXPECT_FALSE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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// The scheduled event should still work. |
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fake_async_var_.NotifyValueChanged(); |
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MessageLoopRunMaxIterations(MessageLoop::current(), 100); |
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EXPECT_TRUE(value); |
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} |
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// Test that reevaluation occurs when a polling timeout fires. |
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TEST_F(UmEvaluationContextTest, RunOnValueChangeOrTimeoutRunsFromTimeout) { |
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fake_poll_var_.reset(new string("Polled value")); |
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eval_ctx_->GetValue(&fake_poll_var_); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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// Check that the scheduled callback isn't run until the timeout occurs. |
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MessageLoopRunMaxIterations(MessageLoop::current(), 10); |
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EXPECT_FALSE(value); |
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MessageLoopRunUntil(MessageLoop::current(), |
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TimeDelta::FromSeconds(10), |
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Bind(&GetBoolean, &value)); |
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EXPECT_TRUE(value); |
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} |
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// Test that callback is called when evaluation context expires, and that it |
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// cannot be used again unless the expiration deadline is reset. |
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TEST_F(UmEvaluationContextTest, RunOnValueChangeOrTimeoutExpires) { |
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fake_async_var_.reset(new string("Async value")); |
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eval_ctx_->GetValue(&fake_async_var_); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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// Check that the scheduled callback isn't run until the timeout occurs. |
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MessageLoopRunMaxIterations(MessageLoop::current(), 10); |
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EXPECT_FALSE(value); |
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MessageLoopRunUntil(MessageLoop::current(), |
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TimeDelta::FromSeconds(10), |
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Bind(&GetBoolean, &value)); |
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EXPECT_TRUE(value); |
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// Ensure that we cannot reschedule an evaluation. |
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EXPECT_FALSE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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// Ensure that we can reschedule an evaluation after resetting expiration. |
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eval_ctx_->ResetExpiration(); |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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// Test that we clear the events when destroying the EvaluationContext. |
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TEST_F(UmEvaluationContextTest, RemoveObserversAndTimeoutTest) { |
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fake_async_var_.reset(new string("Async value")); |
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eval_ctx_->GetValue(&fake_async_var_); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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eval_ctx_ = nullptr; |
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// This should not trigger the callback since the EvaluationContext waiting |
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// for it is gone, and it should have remove all its observers. |
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fake_async_var_.NotifyValueChanged(); |
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MessageLoopRunMaxIterations(MessageLoop::current(), 100); |
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EXPECT_FALSE(value); |
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} |
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// Scheduling two reevaluations from the callback should succeed. |
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TEST_F(UmEvaluationContextTest, |
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RunOnValueChangeOrTimeoutReevaluatesRepeatedly) { |
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fake_poll_var_.reset(new string("Polled value")); |
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Closure evaluation = Bind(ReadVar<string>, eval_ctx_, &fake_poll_var_); |
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int num_reevaluations = 2; |
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bool done = false; |
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// Run the evaluation once. |
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evaluation.Run(); |
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// Schedule repeated reevaluations. |
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Closure closure = Bind(EvaluateRepeatedly, evaluation, eval_ctx_, |
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&num_reevaluations, &done); |
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ASSERT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(closure)); |
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MessageLoopRunUntil(MessageLoop::current(), |
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TimeDelta::FromSeconds(10), |
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Bind(&GetBoolean, &done)); |
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EXPECT_EQ(0, num_reevaluations); |
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} |
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// Test that we can delete the EvaluationContext while having pending events. |
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TEST_F(UmEvaluationContextTest, ObjectDeletedWithPendingEventsTest) { |
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fake_async_var_.reset(new string("Async value")); |
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fake_poll_var_.reset(new string("Polled value")); |
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eval_ctx_->GetValue(&fake_async_var_); |
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eval_ctx_->GetValue(&fake_poll_var_); |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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// TearDown() checks for leaked observers on this async_variable, which means |
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// that our object is still alive after removing its reference. |
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} |
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// Test that timed events fired after removal of the EvaluationContext don't |
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// crash. |
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TEST_F(UmEvaluationContextTest, TimeoutEventAfterDeleteTest) { |
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FakeVariable<string> fake_short_poll_var = {"fake_short_poll", |
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TimeDelta::FromSeconds(1)}; |
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fake_short_poll_var.reset(new string("Polled value")); |
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eval_ctx_->GetValue(&fake_short_poll_var); |
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bool value = false; |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&SetTrue, &value))); |
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// Remove the last reference to the EvaluationContext and run the loop for |
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// 10 seconds to give time to the main loop to trigger the timeout Event (of 1 |
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// second). Our callback should not be called because the EvaluationContext |
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// was removed before the timeout event is attended. |
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eval_ctx_ = nullptr; |
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MessageLoopRunUntil(MessageLoop::current(), |
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TimeDelta::FromSeconds(10), |
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Bind(&GetBoolean, &value)); |
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EXPECT_FALSE(value); |
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} |
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TEST_F(UmEvaluationContextTest, DefaultTimeout) { |
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// Test that the evaluation timeout calculation uses the default timeout on |
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// setup. |
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EXPECT_CALL(mock_var_async_, GetValue(default_timeout_, _)) |
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.WillOnce(Return(nullptr)); |
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EXPECT_EQ(nullptr, eval_ctx_->GetValue(&mock_var_async_)); |
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} |
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TEST_F(UmEvaluationContextTest, TimeoutUpdatesWithMonotonicTime) { |
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fake_clock_.SetMonotonicTime( |
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fake_clock_.GetMonotonicTime() + TimeDelta::FromSeconds(1)); |
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TimeDelta timeout = default_timeout_ - TimeDelta::FromSeconds(1); |
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EXPECT_CALL(mock_var_async_, GetValue(timeout, _)) |
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.WillOnce(Return(nullptr)); |
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EXPECT_EQ(nullptr, eval_ctx_->GetValue(&mock_var_async_)); |
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} |
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TEST_F(UmEvaluationContextTest, ResetEvaluationResetsTimesWallclock) { |
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Time cur_time = fake_clock_.GetWallclockTime(); |
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// Advance the time on the clock but don't call ResetEvaluation yet. |
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fake_clock_.SetWallclockTime(cur_time + TimeDelta::FromSeconds(4)); |
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EXPECT_TRUE(eval_ctx_->IsWallclockTimeGreaterThan( |
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cur_time - TimeDelta::FromSeconds(1))); |
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EXPECT_FALSE(eval_ctx_->IsWallclockTimeGreaterThan(cur_time)); |
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EXPECT_FALSE(eval_ctx_->IsWallclockTimeGreaterThan( |
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cur_time + TimeDelta::FromSeconds(1))); |
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// Call ResetEvaluation now, which should use the new evaluation time. |
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eval_ctx_->ResetEvaluation(); |
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cur_time = fake_clock_.GetWallclockTime(); |
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EXPECT_TRUE(eval_ctx_->IsWallclockTimeGreaterThan( |
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cur_time - TimeDelta::FromSeconds(1))); |
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EXPECT_FALSE(eval_ctx_->IsWallclockTimeGreaterThan(cur_time)); |
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EXPECT_FALSE(eval_ctx_->IsWallclockTimeGreaterThan( |
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cur_time + TimeDelta::FromSeconds(1))); |
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} |
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TEST_F(UmEvaluationContextTest, ResetEvaluationResetsTimesMonotonic) { |
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Time cur_time = fake_clock_.GetMonotonicTime(); |
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// Advance the time on the clock but don't call ResetEvaluation yet. |
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fake_clock_.SetMonotonicTime(cur_time + TimeDelta::FromSeconds(4)); |
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EXPECT_TRUE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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cur_time - TimeDelta::FromSeconds(1))); |
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EXPECT_FALSE(eval_ctx_->IsMonotonicTimeGreaterThan(cur_time)); |
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EXPECT_FALSE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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cur_time + TimeDelta::FromSeconds(1))); |
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// Call ResetEvaluation now, which should use the new evaluation time. |
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eval_ctx_->ResetEvaluation(); |
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cur_time = fake_clock_.GetMonotonicTime(); |
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EXPECT_TRUE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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cur_time - TimeDelta::FromSeconds(1))); |
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EXPECT_FALSE(eval_ctx_->IsMonotonicTimeGreaterThan(cur_time)); |
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EXPECT_FALSE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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cur_time + TimeDelta::FromSeconds(1))); |
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} |
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TEST_F(UmEvaluationContextTest, |
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IsWallclockTimeGreaterThanSignalsTriggerReevaluation) { |
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EXPECT_FALSE(eval_ctx_->IsWallclockTimeGreaterThan( |
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fake_clock_.GetWallclockTime() + TimeDelta::FromSeconds(1))); |
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// The "false" from IsWallclockTimeGreaterThan means that's not that timestamp |
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// yet, so this should schedule a callback for when that happens. |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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TEST_F(UmEvaluationContextTest, |
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IsMonotonicTimeGreaterThanSignalsTriggerReevaluation) { |
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EXPECT_FALSE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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fake_clock_.GetMonotonicTime() + TimeDelta::FromSeconds(1))); |
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// The "false" from IsMonotonicTimeGreaterThan means that's not that timestamp |
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// yet, so this should schedule a callback for when that happens. |
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EXPECT_TRUE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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TEST_F(UmEvaluationContextTest, |
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IsWallclockTimeGreaterThanDoesntRecordPastTimestamps) { |
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// IsWallclockTimeGreaterThan() should ignore timestamps on the past for |
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// reevaluation. |
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EXPECT_TRUE(eval_ctx_->IsWallclockTimeGreaterThan( |
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fake_clock_.GetWallclockTime() - TimeDelta::FromSeconds(20))); |
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EXPECT_TRUE(eval_ctx_->IsWallclockTimeGreaterThan( |
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fake_clock_.GetWallclockTime() - TimeDelta::FromSeconds(1))); |
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// Callback should not be scheduled. |
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EXPECT_FALSE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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TEST_F(UmEvaluationContextTest, |
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IsMonotonicTimeGreaterThanDoesntRecordPastTimestamps) { |
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// IsMonotonicTimeGreaterThan() should ignore timestamps on the past for |
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// reevaluation. |
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EXPECT_TRUE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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fake_clock_.GetMonotonicTime() - TimeDelta::FromSeconds(20))); |
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EXPECT_TRUE(eval_ctx_->IsMonotonicTimeGreaterThan( |
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fake_clock_.GetMonotonicTime() - TimeDelta::FromSeconds(1))); |
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// Callback should not be scheduled. |
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EXPECT_FALSE(eval_ctx_->RunOnValueChangeOrTimeout(Bind(&DoNothing))); |
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} |
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TEST_F(UmEvaluationContextTest, DumpContext) { |
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// |fail_var_| yield "(no value)" since it is unset. |
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eval_ctx_->GetValue(&fail_var_); |
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// Check that this is included. |
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fake_int_var_.reset(new int(42)); |
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eval_ctx_->GetValue(&fake_int_var_); |
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// Check that double-quotes are escaped properly. |
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fake_poll_var_.reset(new string("Hello \"world\"!")); |
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eval_ctx_->GetValue(&fake_poll_var_); |
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// Note that the variables are printed in alphabetical order. Also |
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// see UmEvaluationContextText::SetUp() where the values used for |
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// |evaluation_start_{monotonic,wallclock| are set. |
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EXPECT_EQ("{\n" |
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" \"evaluation_start_monotonic\": \"4/22/2009 19:25:00 GMT\",\n" |
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" \"evaluation_start_wallclock\": \"3/2/2006 1:23:45 GMT\",\n" |
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" \"variables\": {\n" |
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" \"fail_var\": \"(no value)\",\n" |
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" \"fake_int\": \"42\",\n" |
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" \"fake_poll\": \"Hello \\\"world\\\"!\"\n" |
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" }\n" |
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"}", |
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eval_ctx_->DumpContext()); |
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} |
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} // namespace chromeos_update_manager
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