1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152
|
// Copyright 2019 The Chromium Authors
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "base/android/java_handler_thread.h"
#include "base/synchronization/waitable_event.h"
#include "base/task/sequence_manager/sequence_manager_impl.h"
#include "base/task/task_observer.h"
#include "base/test/android/java_handler_thread_helpers.h"
#include "base/test/bind.h"
#include "testing/gtest/include/gtest/gtest.h"
namespace base {
namespace {
class JavaHandlerThreadForTest : public android::JavaHandlerThread {
public:
explicit JavaHandlerThreadForTest(
const char* name,
base::ThreadType thread_type = base::ThreadType::kDefault)
: android::JavaHandlerThread(name, thread_type) {}
using android::JavaHandlerThread::state;
using android::JavaHandlerThread::State;
};
class DummyTaskObserver : public TaskObserver {
public:
explicit DummyTaskObserver(int num_tasks)
: num_tasks_started_(0), num_tasks_processed_(0), num_tasks_(num_tasks) {}
DummyTaskObserver(int num_tasks, int num_tasks_started)
: num_tasks_started_(num_tasks_started),
num_tasks_processed_(0),
num_tasks_(num_tasks) {}
DummyTaskObserver(const DummyTaskObserver&) = delete;
DummyTaskObserver& operator=(const DummyTaskObserver&) = delete;
~DummyTaskObserver() override = default;
void WillProcessTask(const PendingTask& /* pending_task */,
bool /* was_blocked_or_low_priority */) override {
num_tasks_started_++;
EXPECT_LE(num_tasks_started_, num_tasks_);
EXPECT_EQ(num_tasks_started_, num_tasks_processed_ + 1);
}
void DidProcessTask(const PendingTask& pending_task) override {
num_tasks_processed_++;
EXPECT_LE(num_tasks_started_, num_tasks_);
EXPECT_EQ(num_tasks_started_, num_tasks_processed_);
}
int num_tasks_started() const { return num_tasks_started_; }
int num_tasks_processed() const { return num_tasks_processed_; }
private:
int num_tasks_started_;
int num_tasks_processed_;
const int num_tasks_;
};
void PostNTasks(int posts_remaining) {
if (posts_remaining > 1) {
SingleThreadTaskRunner::GetCurrentDefault()->PostTask(
FROM_HERE, BindOnce(&PostNTasks, posts_remaining - 1));
}
}
} // namespace
class JavaHandlerThreadTest : public ::testing::Test {};
void RunTest_AbortDontRunMoreTasks(bool delayed, bool init_java_first) {
WaitableEvent test_done_event;
std::unique_ptr<android::JavaHandlerThread> java_thread;
if (init_java_first) {
java_thread = android::JavaHandlerThreadHelpers::CreateJavaFirst();
} else {
java_thread = std::make_unique<android::JavaHandlerThread>(
"JavaHandlerThreadForTesting from AbortDontRunMoreTasks");
}
java_thread->Start();
java_thread->ListenForUncaughtExceptionsForTesting();
auto target =
BindOnce(&android::JavaHandlerThreadHelpers::ThrowExceptionAndAbort,
&test_done_event);
if (delayed) {
java_thread->task_runner()->PostDelayedTask(FROM_HERE, std::move(target),
Milliseconds(10));
} else {
java_thread->task_runner()->PostTask(FROM_HERE, std::move(target));
java_thread->task_runner()->PostTask(FROM_HERE,
MakeExpectedNotRunClosure(FROM_HERE));
}
test_done_event.Wait();
java_thread->Stop();
android::ScopedJavaLocalRef<jthrowable> exception =
java_thread->GetUncaughtExceptionIfAny();
ASSERT_TRUE(
android::JavaHandlerThreadHelpers::IsExceptionTestException(exception));
}
TEST_F(JavaHandlerThreadTest, JavaExceptionAbort) {
constexpr bool delayed = false;
constexpr bool init_java_first = false;
RunTest_AbortDontRunMoreTasks(delayed, init_java_first);
}
TEST_F(JavaHandlerThreadTest, DelayedJavaExceptionAbort) {
constexpr bool delayed = true;
constexpr bool init_java_first = false;
RunTest_AbortDontRunMoreTasks(delayed, init_java_first);
}
TEST_F(JavaHandlerThreadTest, JavaExceptionAbortInitJavaFirst) {
constexpr bool delayed = false;
constexpr bool init_java_first = true;
RunTest_AbortDontRunMoreTasks(delayed, init_java_first);
}
TEST_F(JavaHandlerThreadTest, RunTasksWhileShuttingDownJavaThread) {
const int kNumPosts = 6;
DummyTaskObserver observer(kNumPosts, 1);
auto java_thread = std::make_unique<JavaHandlerThreadForTest>("test");
java_thread->Start();
sequence_manager::internal::SequenceManagerImpl* sequence_manager =
static_cast<sequence_manager::internal::SequenceManagerImpl*>(
java_thread->state()->sequence_manager.get());
java_thread->task_runner()->PostTask(
FROM_HERE, BindLambdaForTesting([&]() {
sequence_manager->AddTaskObserver(&observer);
SingleThreadTaskRunner::GetCurrentDefault()->PostDelayedTask(
FROM_HERE, MakeExpectedNotRunClosure(FROM_HERE), Days(1));
java_thread->StopSequenceManagerForTesting();
PostNTasks(kNumPosts);
}));
java_thread->JoinForTesting();
java_thread.reset();
EXPECT_EQ(kNumPosts, observer.num_tasks_started());
EXPECT_EQ(kNumPosts, observer.num_tasks_processed());
}
} // namespace base
|