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537 lines
20 KiB
537 lines
20 KiB
//
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// Copyright (C) 2012 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/cros/p2p_manager.h"
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#include <dirent.h>
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#include <fcntl.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <sys/xattr.h>
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#include <unistd.h>
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#include <memory>
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#include <string>
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#include <vector>
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#include <base/bind.h>
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#include <base/callback.h>
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#include <base/files/file_util.h>
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#if BASE_VER < 780000 // Android
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#include <base/message_loop/message_loop.h>
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#endif // BASE_VER < 780000
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#include <base/strings/stringprintf.h>
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#if BASE_VER >= 780000 // CrOS
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#include <base/task/single_thread_task_executor.h>
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#endif // BASE_VER >= 780000
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#include <brillo/asynchronous_signal_handler.h>
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#include <brillo/message_loops/base_message_loop.h>
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#include <brillo/message_loops/message_loop.h>
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#include <brillo/message_loops/message_loop_utils.h>
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#include <gmock/gmock.h>
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#include <gtest/gtest.h>
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#include <policy/libpolicy.h>
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#include <policy/mock_device_policy.h>
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#include "update_engine/common/prefs.h"
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#include "update_engine/common/subprocess.h"
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#include "update_engine/common/test_utils.h"
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#include "update_engine/common/utils.h"
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#include "update_engine/cros/fake_p2p_manager_configuration.h"
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#include "update_engine/cros/fake_system_state.h"
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#include "update_engine/update_manager/fake_update_manager.h"
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#include "update_engine/update_manager/mock_policy.h"
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using base::TimeDelta;
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using brillo::MessageLoop;
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using std::string;
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using std::unique_ptr;
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using std::vector;
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using testing::_;
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using testing::DoAll;
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using testing::Return;
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using testing::SetArgPointee;
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namespace chromeos_update_engine {
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// Test fixture that sets up a testing configuration (with e.g. a
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// temporary p2p dir) for P2PManager and cleans up when the test is
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// done.
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class P2PManagerTest : public testing::Test {
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protected:
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P2PManagerTest() = default;
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~P2PManagerTest() override = default;
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// Derived from testing::Test.
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void SetUp() override {
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loop_.SetAsCurrent();
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FakeSystemState::CreateInstance();
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async_signal_handler_.Init();
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subprocess_.Init(&async_signal_handler_);
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test_conf_ = new FakeP2PManagerConfiguration();
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// Allocate and install a mock policy implementation in the fake Update
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// Manager. Note that the FakeUpdateManager takes ownership of the policy
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// object.
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mock_policy_ = new chromeos_update_manager::MockPolicy();
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fake_um_.set_policy(mock_policy_);
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// Construct the P2P manager under test.
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manager_.reset(P2PManager::Construct(test_conf_,
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&fake_um_,
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"cros_au",
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3,
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TimeDelta::FromDays(5)));
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}
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#if BASE_VER < 780000 // Android
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base::MessageLoopForIO base_loop_;
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brillo::BaseMessageLoop loop_{&base_loop_};
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#else // CrOS
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base::SingleThreadTaskExecutor base_loop_{base::MessagePumpType::IO};
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brillo::BaseMessageLoop loop_{base_loop_.task_runner()};
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#endif // BASE_VER < 780000
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brillo::AsynchronousSignalHandler async_signal_handler_;
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Subprocess subprocess_;
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// The P2PManager::Configuration instance used for testing.
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FakeP2PManagerConfiguration* test_conf_;
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chromeos_update_manager::MockPolicy* mock_policy_ = nullptr;
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chromeos_update_manager::FakeUpdateManager fake_um_;
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unique_ptr<P2PManager> manager_;
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};
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// Check that IsP2PEnabled() polls the policy correctly, with the value not
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// changing between calls.
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TEST_F(P2PManagerTest, P2PEnabledInitAndNotChanged) {
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EXPECT_CALL(*mock_policy_, P2PEnabled(_, _, _, _));
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EXPECT_CALL(*mock_policy_, P2PEnabledChanged(_, _, _, _, false));
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EXPECT_FALSE(manager_->IsP2PEnabled());
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brillo::MessageLoopRunMaxIterations(MessageLoop::current(), 100);
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EXPECT_FALSE(manager_->IsP2PEnabled());
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}
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// Check that IsP2PEnabled() polls the policy correctly, with the value changing
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// between calls.
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TEST_F(P2PManagerTest, P2PEnabledInitAndChanged) {
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EXPECT_CALL(*mock_policy_, P2PEnabled(_, _, _, _))
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.WillOnce(DoAll(SetArgPointee<3>(true),
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Return(chromeos_update_manager::EvalStatus::kSucceeded)));
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EXPECT_CALL(*mock_policy_, P2PEnabledChanged(_, _, _, _, true));
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EXPECT_CALL(*mock_policy_, P2PEnabledChanged(_, _, _, _, false));
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EXPECT_TRUE(manager_->IsP2PEnabled());
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brillo::MessageLoopRunMaxIterations(MessageLoop::current(), 100);
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EXPECT_FALSE(manager_->IsP2PEnabled());
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}
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// Check that we keep the $N newest files with the .$EXT.p2p extension.
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TEST_F(P2PManagerTest, HousekeepingCountLimit) {
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// Specifically pass 0 for |max_file_age| to allow files of any age. Note that
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// we need to reallocate the test_conf_ member, whose currently aliased object
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// will be freed.
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test_conf_ = new FakeP2PManagerConfiguration();
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manager_.reset(P2PManager::Construct(test_conf_,
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&fake_um_,
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"cros_au",
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3,
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TimeDelta() /* max_file_age */));
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EXPECT_EQ(manager_->CountSharedFiles(), 0);
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base::Time start_time = base::Time::FromDoubleT(1246996800.);
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// Generate files with different timestamps matching our pattern and generate
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// other files not matching the pattern.
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for (int n = 0; n < 5; n++) {
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base::FilePath path = test_conf_->GetP2PDir().Append(
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base::StringPrintf("file_%d.cros_au.p2p", n));
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base::Time file_time = start_time + TimeDelta::FromMinutes(n);
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EXPECT_EQ(0, base::WriteFile(path, nullptr, 0));
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EXPECT_TRUE(base::TouchFile(path, file_time, file_time));
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path = test_conf_->GetP2PDir().Append(
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base::StringPrintf("file_%d.OTHER.p2p", n));
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EXPECT_EQ(0, base::WriteFile(path, nullptr, 0));
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EXPECT_TRUE(base::TouchFile(path, file_time, file_time));
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}
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// CountSharedFiles() only counts 'cros_au' files.
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EXPECT_EQ(manager_->CountSharedFiles(), 5);
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EXPECT_TRUE(manager_->PerformHousekeeping());
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// At this point - after HouseKeeping - we should only have
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// eight files left.
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for (int n = 0; n < 5; n++) {
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string file_name;
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bool expect;
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expect = (n >= 2);
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file_name = base::StringPrintf(
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"%s/file_%d.cros_au.p2p", test_conf_->GetP2PDir().value().c_str(), n);
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EXPECT_EQ(expect, utils::FileExists(file_name.c_str()));
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file_name = base::StringPrintf(
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"%s/file_%d.OTHER.p2p", test_conf_->GetP2PDir().value().c_str(), n);
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EXPECT_TRUE(utils::FileExists(file_name.c_str()));
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}
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// CountSharedFiles() only counts 'cros_au' files.
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EXPECT_EQ(manager_->CountSharedFiles(), 3);
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}
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// Check that we keep files with the .$EXT.p2p extension not older
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// than some specific age (5 days, in this test).
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TEST_F(P2PManagerTest, HousekeepingAgeLimit) {
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// We set the cutoff time to be 1 billion seconds (01:46:40 UTC on 9
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// September 2001 - arbitrary number, but constant to avoid test
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// flakiness) since the epoch and then we put two files before that
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// date and three files after.
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base::Time cutoff_time = base::Time::FromTimeT(1000000000);
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TimeDelta age_limit = TimeDelta::FromDays(5);
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// Set the clock just so files with a timestamp before |cutoff_time|
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// will be deleted at housekeeping.
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FakeSystemState::Get()->fake_clock()->SetWallclockTime(cutoff_time +
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age_limit);
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// Specifically pass 0 for |num_files_to_keep| to allow any number of files.
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// Note that we need to reallocate the test_conf_ member, whose currently
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// aliased object will be freed.
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test_conf_ = new FakeP2PManagerConfiguration();
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manager_.reset(P2PManager::Construct(test_conf_,
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&fake_um_,
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"cros_au",
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0 /* num_files_to_keep */,
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age_limit));
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EXPECT_EQ(manager_->CountSharedFiles(), 0);
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// Generate files with different timestamps matching our pattern and generate
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// other files not matching the pattern.
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for (int n = 0; n < 5; n++) {
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base::FilePath path = test_conf_->GetP2PDir().Append(
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base::StringPrintf("file_%d.cros_au.p2p", n));
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// With five files and aiming for two of them to be before
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// |cutoff_time|, we distribute it like this:
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//
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// -------- 0 -------- 1 -------- 2 -------- 3 -------- 4 --------
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// |
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// cutoff_time
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//
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base::Time file_date = cutoff_time + (n - 2) * TimeDelta::FromDays(1) +
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TimeDelta::FromHours(12);
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EXPECT_EQ(0, base::WriteFile(path, nullptr, 0));
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EXPECT_TRUE(base::TouchFile(path, file_date, file_date));
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path = test_conf_->GetP2PDir().Append(
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base::StringPrintf("file_%d.OTHER.p2p", n));
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EXPECT_EQ(0, base::WriteFile(path, nullptr, 0));
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EXPECT_TRUE(base::TouchFile(path, file_date, file_date));
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}
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// CountSharedFiles() only counts 'cros_au' files.
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EXPECT_EQ(manager_->CountSharedFiles(), 5);
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EXPECT_TRUE(manager_->PerformHousekeeping());
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// At this point - after HouseKeeping - we should only have
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// eight files left.
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for (int n = 0; n < 5; n++) {
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string file_name;
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bool expect;
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expect = (n >= 2);
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file_name = base::StringPrintf(
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"%s/file_%d.cros_au.p2p", test_conf_->GetP2PDir().value().c_str(), n);
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EXPECT_EQ(expect, utils::FileExists(file_name.c_str()));
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file_name = base::StringPrintf(
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"%s/file_%d.OTHER.p2p", test_conf_->GetP2PDir().value().c_str(), n);
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EXPECT_TRUE(utils::FileExists(file_name.c_str()));
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}
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// CountSharedFiles() only counts 'cros_au' files.
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EXPECT_EQ(manager_->CountSharedFiles(), 3);
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}
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static bool CheckP2PFile(const string& p2p_dir,
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const string& file_name,
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ssize_t expected_size,
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ssize_t expected_size_xattr) {
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string path = p2p_dir + "/" + file_name;
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char ea_value[64] = {0};
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ssize_t ea_size;
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off_t p2p_size = utils::FileSize(path);
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if (p2p_size < 0) {
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LOG(ERROR) << "File " << path << " does not exist";
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return false;
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}
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if (expected_size != 0) {
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if (p2p_size != expected_size) {
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LOG(ERROR) << "Expected size " << expected_size << " but size was "
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<< p2p_size;
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return false;
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}
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}
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if (expected_size_xattr == 0) {
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ea_size = getxattr(
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path.c_str(), "user.cros-p2p-filesize", &ea_value, sizeof ea_value - 1);
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if (ea_size == -1 && errno == ENODATA) {
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// This is valid behavior as we support files without the xattr set.
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} else {
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PLOG(ERROR) << "getxattr() didn't fail with ENODATA as expected, "
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<< "ea_size=" << ea_size << ", errno=" << errno;
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return false;
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}
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} else {
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ea_size = getxattr(
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path.c_str(), "user.cros-p2p-filesize", &ea_value, sizeof ea_value - 1);
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if (ea_size < 0) {
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LOG(ERROR) << "Error getting xattr attribute";
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return false;
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}
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char* endp = nullptr;
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long long int val = strtoll(ea_value, &endp, 0); // NOLINT(runtime/int)
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if (endp == nullptr || *endp != '\0') {
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LOG(ERROR) << "Error parsing xattr '" << ea_value << "' as an integer";
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return false;
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}
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if (val != expected_size_xattr) {
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LOG(ERROR) << "Expected xattr size " << expected_size_xattr
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<< " but size was " << val;
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return false;
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}
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}
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return true;
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}
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static bool CreateP2PFile(string p2p_dir,
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string file_name,
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size_t size,
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size_t size_xattr) {
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string path = p2p_dir + "/" + file_name;
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int fd = open(path.c_str(), O_CREAT | O_RDWR, 0644);
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if (fd == -1) {
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PLOG(ERROR) << "Error creating file with path " << path;
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return false;
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}
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if (ftruncate(fd, size) != 0) {
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PLOG(ERROR) << "Error truncating " << path << " to size " << size;
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close(fd);
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return false;
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}
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if (size_xattr != 0) {
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string decimal_size = std::to_string(size_xattr);
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if (fsetxattr(fd,
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"user.cros-p2p-filesize",
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decimal_size.c_str(),
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decimal_size.size(),
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0) != 0) {
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PLOG(ERROR) << "Error setting xattr on " << path;
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close(fd);
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return false;
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}
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}
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close(fd);
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return true;
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}
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// Check that sharing a *new* file works.
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TEST_F(P2PManagerTest, ShareFile) {
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const int kP2PTestFileSize = 1000 * 8; // 8 KB
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EXPECT_TRUE(manager_->FileShare("foo", kP2PTestFileSize));
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EXPECT_EQ(manager_->FileGetPath("foo"),
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test_conf_->GetP2PDir().Append("foo.cros_au.p2p.tmp"));
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EXPECT_TRUE(CheckP2PFile(test_conf_->GetP2PDir().value(),
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"foo.cros_au.p2p.tmp",
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0,
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kP2PTestFileSize));
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// Sharing it again - with the same expected size - should return true
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EXPECT_TRUE(manager_->FileShare("foo", kP2PTestFileSize));
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// ... but if we use the wrong size, it should fail
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EXPECT_FALSE(manager_->FileShare("foo", kP2PTestFileSize + 1));
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}
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// Check that making a shared file visible, does what is expected.
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TEST_F(P2PManagerTest, MakeFileVisible) {
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const int kP2PTestFileSize = 1000 * 8; // 8 KB
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// First, check that it's not visible.
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manager_->FileShare("foo", kP2PTestFileSize);
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EXPECT_EQ(manager_->FileGetPath("foo"),
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test_conf_->GetP2PDir().Append("foo.cros_au.p2p.tmp"));
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EXPECT_TRUE(CheckP2PFile(test_conf_->GetP2PDir().value(),
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"foo.cros_au.p2p.tmp",
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0,
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kP2PTestFileSize));
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// Make the file visible and check that it changed its name. Do it
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// twice to check that FileMakeVisible() is idempotent.
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for (int n = 0; n < 2; n++) {
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manager_->FileMakeVisible("foo");
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EXPECT_EQ(manager_->FileGetPath("foo"),
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test_conf_->GetP2PDir().Append("foo.cros_au.p2p"));
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EXPECT_TRUE(CheckP2PFile(test_conf_->GetP2PDir().value(),
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"foo.cros_au.p2p",
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0,
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kP2PTestFileSize));
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}
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}
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// Check that we return the right values for existing files in P2P_DIR.
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TEST_F(P2PManagerTest, ExistingFiles) {
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bool visible;
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// Check that errors are returned if the file does not exist
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EXPECT_EQ(manager_->FileGetPath("foo"), base::FilePath());
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EXPECT_EQ(manager_->FileGetSize("foo"), -1);
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EXPECT_EQ(manager_->FileGetExpectedSize("foo"), -1);
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EXPECT_FALSE(manager_->FileGetVisible("foo", nullptr));
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// ... then create the file ...
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EXPECT_TRUE(CreateP2PFile(
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test_conf_->GetP2PDir().value(), "foo.cros_au.p2p", 42, 43));
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// ... and then check that the expected values are returned
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EXPECT_EQ(manager_->FileGetPath("foo"),
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test_conf_->GetP2PDir().Append("foo.cros_au.p2p"));
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EXPECT_EQ(manager_->FileGetSize("foo"), 42);
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EXPECT_EQ(manager_->FileGetExpectedSize("foo"), 43);
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EXPECT_TRUE(manager_->FileGetVisible("foo", &visible));
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EXPECT_TRUE(visible);
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// One more time, this time with a .tmp variant. First ensure it errors out..
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EXPECT_EQ(manager_->FileGetPath("bar"), base::FilePath());
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EXPECT_EQ(manager_->FileGetSize("bar"), -1);
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EXPECT_EQ(manager_->FileGetExpectedSize("bar"), -1);
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EXPECT_FALSE(manager_->FileGetVisible("bar", nullptr));
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// ... then create the file ...
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EXPECT_TRUE(CreateP2PFile(
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test_conf_->GetP2PDir().value(), "bar.cros_au.p2p.tmp", 44, 45));
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// ... and then check that the expected values are returned
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EXPECT_EQ(manager_->FileGetPath("bar"),
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test_conf_->GetP2PDir().Append("bar.cros_au.p2p.tmp"));
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EXPECT_EQ(manager_->FileGetSize("bar"), 44);
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EXPECT_EQ(manager_->FileGetExpectedSize("bar"), 45);
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EXPECT_TRUE(manager_->FileGetVisible("bar", &visible));
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EXPECT_FALSE(visible);
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}
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// This is a little bit ugly but short of mocking a 'p2p' service this
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// will have to do. E.g. we essentially simulate the various
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// behaviours of initctl(8) that we rely on.
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TEST_F(P2PManagerTest, StartP2P) {
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// Check that we can start the service
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test_conf_->SetInitctlStartCommand({"true"});
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EXPECT_TRUE(manager_->EnsureP2PRunning());
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test_conf_->SetInitctlStartCommand({"false"});
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|
EXPECT_FALSE(manager_->EnsureP2PRunning());
|
|
test_conf_->SetInitctlStartCommand(
|
|
{"sh", "-c", "echo \"initctl: Job is already running: p2p\" >&2; false"});
|
|
EXPECT_TRUE(manager_->EnsureP2PRunning());
|
|
test_conf_->SetInitctlStartCommand(
|
|
{"sh", "-c", "echo something else >&2; false"});
|
|
EXPECT_FALSE(manager_->EnsureP2PRunning());
|
|
}
|
|
|
|
// Same comment as for StartP2P
|
|
TEST_F(P2PManagerTest, StopP2P) {
|
|
// Check that we can start the service
|
|
test_conf_->SetInitctlStopCommand({"true"});
|
|
EXPECT_TRUE(manager_->EnsureP2PNotRunning());
|
|
test_conf_->SetInitctlStopCommand({"false"});
|
|
EXPECT_FALSE(manager_->EnsureP2PNotRunning());
|
|
test_conf_->SetInitctlStopCommand(
|
|
{"sh", "-c", "echo \"initctl: Unknown instance \" >&2; false"});
|
|
EXPECT_TRUE(manager_->EnsureP2PNotRunning());
|
|
test_conf_->SetInitctlStopCommand(
|
|
{"sh", "-c", "echo something else >&2; false"});
|
|
EXPECT_FALSE(manager_->EnsureP2PNotRunning());
|
|
}
|
|
|
|
static void ExpectUrl(const string& expected_url, const string& url) {
|
|
EXPECT_EQ(url, expected_url);
|
|
MessageLoop::current()->BreakLoop();
|
|
}
|
|
|
|
// Like StartP2P, we're mocking the different results that p2p-client
|
|
// can return. It's not pretty but it works.
|
|
TEST_F(P2PManagerTest, LookupURL) {
|
|
// Emulate p2p-client returning valid URL with "fooX", 42 and "cros_au"
|
|
// being propagated in the right places.
|
|
test_conf_->SetP2PClientCommand(
|
|
{"echo", "http://1.2.3.4/{file_id}_{minsize}"});
|
|
manager_->LookupUrlForFile(
|
|
"fooX",
|
|
42,
|
|
TimeDelta(),
|
|
base::Bind(ExpectUrl, "http://1.2.3.4/fooX.cros_au_42"));
|
|
loop_.Run();
|
|
|
|
// Emulate p2p-client returning invalid URL.
|
|
test_conf_->SetP2PClientCommand({"echo", "not_a_valid_url"});
|
|
manager_->LookupUrlForFile(
|
|
"foobar", 42, TimeDelta(), base::Bind(ExpectUrl, ""));
|
|
loop_.Run();
|
|
|
|
// Emulate p2p-client conveying failure.
|
|
test_conf_->SetP2PClientCommand({"false"});
|
|
manager_->LookupUrlForFile(
|
|
"foobar", 42, TimeDelta(), base::Bind(ExpectUrl, ""));
|
|
loop_.Run();
|
|
|
|
// Emulate p2p-client not existing.
|
|
test_conf_->SetP2PClientCommand({"/path/to/non/existent/helper/program"});
|
|
manager_->LookupUrlForFile(
|
|
"foobar", 42, TimeDelta(), base::Bind(ExpectUrl, ""));
|
|
loop_.Run();
|
|
|
|
// Emulate p2p-client crashing.
|
|
test_conf_->SetP2PClientCommand({"sh", "-c", "kill -SEGV $$"});
|
|
manager_->LookupUrlForFile(
|
|
"foobar", 42, TimeDelta(), base::Bind(ExpectUrl, ""));
|
|
loop_.Run();
|
|
|
|
// Emulate p2p-client exceeding its timeout.
|
|
test_conf_->SetP2PClientCommand(
|
|
{"sh",
|
|
"-c",
|
|
// The 'sleep' launched below could be left behind as an orphaned
|
|
// process when the 'sh' process is terminated by SIGTERM. As a
|
|
// remedy, trap SIGTERM and kill the 'sleep' process, which requires
|
|
// launching 'sleep' in background and then waiting for it.
|
|
"cleanup() { kill \"${sleep_pid}\"; exit 0; }; "
|
|
"trap cleanup TERM; "
|
|
"sleep 5 & "
|
|
"sleep_pid=$!; "
|
|
"echo http://1.2.3.4/; "
|
|
"wait"});
|
|
manager_->LookupUrlForFile("foobar",
|
|
42,
|
|
TimeDelta::FromMilliseconds(500),
|
|
base::Bind(ExpectUrl, ""));
|
|
loop_.Run();
|
|
}
|
|
|
|
} // namespace chromeos_update_engine
|