#include "db/write_controller.h"
#include <array>
#include <ratio>
#include "rocksdb/system_clock.h"
#include "test_util/testharness.h"
namespace ROCKSDB_NAMESPACE {
namespace {
class TimeSetClock : public SystemClockWrapper {
public:
explicit TimeSetClock() : SystemClockWrapper(nullptr) {}
const char* Name() const override { return "TimeSetClock"; }
uint64_t now_micros_ = 6666;
uint64_t NowNanos() override { return now_micros_ * std::milli::den; }
};
} class WriteControllerTest : public testing::Test {
public:
WriteControllerTest() { clock_ = std::make_shared<TimeSetClock>(); }
std::shared_ptr<TimeSetClock> clock_;
};
#define MILLION *1000000u
#define MB MILLION
#define MBPS MILLION
#define SECS MILLION
TEST_F(WriteControllerTest, BasicAPI) {
WriteController controller(40 MBPS); EXPECT_EQ(controller.delayed_write_rate(), 40 MBPS);
EXPECT_FALSE(controller.IsStopped());
EXPECT_FALSE(controller.NeedsDelay());
EXPECT_EQ(0, controller.GetDelay(clock_.get(), 100 MB));
controller.set_delayed_write_rate(20 MBPS);
EXPECT_EQ(controller.delayed_write_rate(), 20 MBPS);
EXPECT_FALSE(controller.IsStopped());
EXPECT_FALSE(controller.NeedsDelay());
EXPECT_EQ(0, controller.GetDelay(clock_.get(), 100 MB));
{
auto delay_token_0 = controller.GetDelayToken(10 MBPS);
EXPECT_EQ(controller.delayed_write_rate(), 10 MBPS);
EXPECT_FALSE(controller.IsStopped());
EXPECT_TRUE(controller.NeedsDelay());
EXPECT_EQ(2 SECS, controller.GetDelay(clock_.get(), 20 MB));
clock_->now_micros_ += 2 SECS;
auto delay_token_1 = controller.GetDelayToken(2 MBPS);
EXPECT_EQ(10 SECS, controller.GetDelay(clock_.get(), 20 MB));
clock_->now_micros_ += 10 SECS;
auto delay_token_2 = controller.GetDelayToken(1 MBPS);
EXPECT_EQ(20 SECS, controller.GetDelay(clock_.get(), 20 MB));
clock_->now_micros_ += 20 SECS;
auto delay_token_3 = controller.GetDelayToken(20 MBPS);
EXPECT_EQ(1 SECS, controller.GetDelay(clock_.get(), 20 MB));
clock_->now_micros_ += 1 SECS;
EXPECT_EQ(controller.delayed_write_rate(), 20 MBPS);
auto delay_token_4 =
controller.GetDelayToken(controller.delayed_write_rate() * 3);
EXPECT_EQ(controller.delayed_write_rate(), 40 MBPS);
EXPECT_EQ(static_cast<uint64_t>(0.5 SECS),
controller.GetDelay(clock_.get(), 20 MB));
EXPECT_FALSE(controller.IsStopped());
EXPECT_TRUE(controller.NeedsDelay());
{
auto stop_token_1 = controller.GetStopToken();
EXPECT_TRUE(controller.IsStopped());
EXPECT_EQ(0, controller.GetDelay(clock_.get(), 100 MB));
{
auto stop_token_2 = controller.GetStopToken();
EXPECT_TRUE(controller.IsStopped());
EXPECT_EQ(0, controller.GetDelay(clock_.get(), 100 MB));
}
EXPECT_TRUE(controller.IsStopped());
EXPECT_EQ(0, controller.GetDelay(clock_.get(), 100 MB));
}
EXPECT_FALSE(controller.IsStopped());
EXPECT_TRUE(controller.NeedsDelay());
EXPECT_EQ(controller.delayed_write_rate(), 40 MBPS);
clock_->now_micros_ += static_cast<uint64_t>(0.5 SECS);
EXPECT_EQ(1 SECS, controller.GetDelay(clock_.get(), 40 MB));
}
EXPECT_FALSE(controller.NeedsDelay());
}
TEST_F(WriteControllerTest, StartFilled) {
WriteController controller(10 MBPS);
auto delay_token_0 =
controller.GetDelayToken(controller.delayed_write_rate());
EXPECT_EQ(0U, controller.GetDelay(clock_.get(), 2000u ));
EXPECT_EQ(0U, controller.GetDelay(clock_.get(), 2000u ));
clock_->now_micros_ += 1000;
EXPECT_EQ(0U, controller.GetDelay(clock_.get(), 2000u ));
EXPECT_EQ(0U, controller.GetDelay(clock_.get(), 2000u ));
uint64_t delay = controller.GetDelay(clock_.get(), 10 MB);
EXPECT_GT(1.0 * delay, 0.999 SECS);
EXPECT_LT(1.0 * delay, 1.001 SECS);
}
TEST_F(WriteControllerTest, DebtAccumulation) {
WriteController controller(10 MBPS);
std::array<std::unique_ptr<WriteControllerToken>, 10> tokens;
uint64_t debt = 0;
for (unsigned i = 0; i < tokens.size(); ++i) {
tokens[i] = controller.GetDelayToken((i + 1u) MBPS);
uint64_t delay = controller.GetDelay(clock_.get(), 63 MB);
ASSERT_GT(delay, debt);
uint64_t incremental = delay - debt;
ASSERT_EQ(incremental, (63 SECS) / (i + 1u));
debt += incremental;
}
clock_->now_micros_ += debt;
debt = 0;
for (unsigned i = 0; i < tokens.size(); ++i) {
tokens[i] = controller.GetDelayToken((i + 1u) MBPS);
uint64_t delay = controller.GetDelay(clock_.get(), 63 MB);
ASSERT_GT(delay, debt);
uint64_t incremental = delay - debt;
ASSERT_EQ(incremental, (63 SECS) / (i + 1u));
debt += incremental;
uint64_t credit = debt / 2;
clock_->now_micros_ += credit;
debt -= credit;
}
clock_->now_micros_ += debt;
debt = 0; (void)debt;
EXPECT_EQ(0U, controller.GetDelay(clock_.get(), 100u ));
for (unsigned i = 0; i < tokens.size(); ++i) {
ASSERT_LT(0U, controller.GetDelay(clock_.get(), 63 MB));
ASSERT_LT(0U, controller.GetDelay(clock_.get(), 100u ));
tokens[i].reset();
}
tokens[0] = controller.GetDelayToken(1 MBPS);
ASSERT_EQ(0U, controller.GetDelay(clock_.get(), 100u ));
}
TEST_F(WriteControllerTest, CreditAccumulation) {
WriteController controller(10 MBPS);
std::array<std::unique_ptr<WriteControllerToken>, 10> tokens;
tokens[0] = controller.GetDelayToken(1 MBPS);
ASSERT_EQ(10 SECS, controller.GetDelay(clock_.get(), 10 MB));
clock_->now_micros_ += 10 SECS;
uint64_t credit = 1000 SECS ;
clock_->now_micros_ += credit;
for (unsigned i = 0; i < tokens.size(); ++i) {
tokens[i] = controller.GetDelayToken((i + 1u) MBPS);
ASSERT_EQ(0U, controller.GetDelay(clock_.get(), 63 MB));
credit -= 63 MB;
}
tokens[0] = controller.GetDelayToken(1 MBPS);
ASSERT_EQ(0U, controller.GetDelay(clock_.get(), credit));
ASSERT_EQ(10 SECS, controller.GetDelay(clock_.get(), 10 MB));
clock_->now_micros_ += 10 SECS;
clock_->now_micros_ += 1000 SECS;
for (unsigned i = 0; i < tokens.size(); ++i) {
ASSERT_EQ(0U, controller.GetDelay(clock_.get(), 3 MB));
tokens[i].reset();
}
tokens[0] = controller.GetDelayToken(1 MBPS);
ASSERT_EQ(10 SECS, controller.GetDelay(clock_.get(), 10 MB));
}
}
int main(int argc, char** argv) {
ROCKSDB_NAMESPACE::port::InstallStackTraceHandler();
::testing::InitGoogleTest(&argc, argv);
return RUN_ALL_TESTS();
}