#include <cstdlib>
#include <map>
#include <string>
#include <vector>
#include "db/db_impl/db_impl.h"
#include "db/db_test_util.h"
#include "db/version_set.h"
#include "db/write_batch_internal.h"
#include "file/filename.h"
#include "port/stack_trace.h"
#include "rocksdb/db.h"
#include "rocksdb/env.h"
#include "rocksdb/transaction_log.h"
#include "test_util/sync_point.h"
#include "test_util/testharness.h"
#include "test_util/testutil.h"
#include "util/string_util.h"
namespace ROCKSDB_NAMESPACE {
class DeleteFileTest : public DBTestBase {
public:
const int numlevels_;
const std::string wal_dir_;
DeleteFileTest()
: DBTestBase("deletefile_test", true),
numlevels_(7),
wal_dir_(dbname_ + "/wal_files") {}
void SetOptions(Options* options) {
ASSERT_NE(options, nullptr);
options->delete_obsolete_files_period_micros = 0; options->enable_thread_tracking = true;
options->write_buffer_size = 1024 * 1024 * 1000;
options->target_file_size_base = 1024 * 1024 * 1000;
options->max_bytes_for_level_base = 1024 * 1024 * 1000;
options->WAL_ttl_seconds = 300; options->WAL_size_limit_MB = 1024; options->wal_dir = wal_dir_;
}
void AddKeys(int numkeys, int startkey = 0) {
WriteOptions options;
options.sync = false;
ReadOptions roptions;
for (int i = startkey; i < (numkeys + startkey); i++) {
std::string temp = std::to_string(i);
Slice key(temp);
Slice value(temp);
ASSERT_OK(db_->Put(options, key, value));
}
}
int numKeysInLevels(std::vector<LiveFileMetaData>& metadata,
std::vector<int>* keysperlevel = nullptr) {
if (keysperlevel != nullptr) {
keysperlevel->resize(numlevels_);
}
int numKeys = 0;
for (size_t i = 0; i < metadata.size(); i++) {
int startkey = atoi(metadata[i].smallestkey.c_str());
int endkey = atoi(metadata[i].largestkey.c_str());
int numkeysinfile = (endkey - startkey + 1);
numKeys += numkeysinfile;
if (keysperlevel != nullptr) {
(*keysperlevel)[(int)metadata[i].level] += numkeysinfile;
}
fprintf(stderr, "level %d name %s smallest %s largest %s\n",
metadata[i].level, metadata[i].name.c_str(),
metadata[i].smallestkey.c_str(), metadata[i].largestkey.c_str());
}
return numKeys;
}
void CreateTwoLevels() {
AddKeys(50000, 10000);
ASSERT_OK(dbfull()->TEST_FlushMemTable());
ASSERT_OK(dbfull()->TEST_WaitForFlushMemTable());
for (int i = 0; i < 2; ++i) {
ASSERT_OK(dbfull()->TEST_CompactRange(i, nullptr, nullptr));
}
AddKeys(50000, 10000);
ASSERT_OK(dbfull()->TEST_FlushMemTable());
ASSERT_OK(dbfull()->TEST_WaitForFlushMemTable());
ASSERT_OK(dbfull()->TEST_CompactRange(0, nullptr, nullptr));
}
void CheckFileTypeCounts(const std::string& dir, int required_log,
int required_sst, int required_manifest) {
std::vector<std::string> filenames;
ASSERT_OK(env_->GetChildren(dir, &filenames));
int log_cnt = 0, sst_cnt = 0, manifest_cnt = 0;
for (const auto& file : filenames) {
uint64_t number;
FileType type;
if (ParseFileName(file, &number, &type)) {
log_cnt += (type == kWalFile);
sst_cnt += (type == kTableFile);
manifest_cnt += (type == kDescriptorFile);
}
}
if (required_log >= 0) {
ASSERT_EQ(required_log, log_cnt);
}
if (required_sst >= 0) {
ASSERT_EQ(required_sst, sst_cnt);
}
if (required_manifest >= 0) {
ASSERT_EQ(required_manifest, manifest_cnt);
}
}
static void DoSleep(void* arg) {
auto test = static_cast<DeleteFileTest*>(arg);
test->env_->SleepForMicroseconds(2 * 1000 * 1000);
}
static void GuardFinish(void* ) {
TEST_SYNC_POINT("DeleteFileTest::GuardFinish");
}
};
TEST_F(DeleteFileTest, PurgeObsoleteFilesTest) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
CreateTwoLevels();
CheckFileTypeCounts(wal_dir_, 1, 0, 0);
CheckFileTypeCounts(dbname_, 0, 2, 1);
std::string first("0"), last("999999");
CompactRangeOptions compact_options;
compact_options.change_level = true;
compact_options.target_level = 2;
Slice first_slice(first), last_slice(last);
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
CheckFileTypeCounts(dbname_, 0, 1, 1);
Reopen(options);
Iterator* itr = nullptr;
CreateTwoLevels();
itr = db_->NewIterator(ReadOptions());
ASSERT_OK(itr->status());
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
ASSERT_OK(itr->status());
CheckFileTypeCounts(dbname_, 0, 3, 1);
delete itr;
CheckFileTypeCounts(dbname_, 0, 1, 1);
}
TEST_F(DeleteFileTest, WaitForCompactWithWaitForPurgeOptionTest) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
std::string first("0"), last("999999");
CompactRangeOptions compact_options;
compact_options.change_level = true;
compact_options.target_level = 2;
Slice first_slice(first), last_slice(last);
CreateTwoLevels();
Iterator* itr = nullptr;
ReadOptions read_options;
read_options.background_purge_on_iterator_cleanup = true;
itr = db_->NewIterator(read_options);
ASSERT_OK(itr->status());
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
SyncPoint::GetInstance()->LoadDependency(
{{"DBImpl::BGWorkPurge:start", "DeleteFileTest::WaitForPurgeTest"},
{"DBImpl::WaitForCompact:InsideLoop",
"DBImpl::BackgroundCallPurge:beforeMutexLock"}});
SyncPoint::GetInstance()->EnableProcessing();
delete itr;
TEST_SYNC_POINT("DeleteFileTest::WaitForPurgeTest");
CheckFileTypeCounts(dbname_, 0, 3, 1);
WaitForCompactOptions wait_for_compact_options;
wait_for_compact_options.wait_for_purge = true;
Status s = dbfull()->WaitForCompact(wait_for_compact_options);
ASSERT_OK(s);
CheckFileTypeCounts(dbname_, 0, 1, 1);
}
TEST_F(DeleteFileTest, BackgroundPurgeIteratorTest) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
std::string first("0"), last("999999");
CompactRangeOptions compact_options;
compact_options.change_level = true;
compact_options.target_level = 2;
Slice first_slice(first), last_slice(last);
Iterator* itr = nullptr;
CreateTwoLevels();
ReadOptions read_options;
read_options.background_purge_on_iterator_cleanup = true;
itr = db_->NewIterator(read_options);
ASSERT_OK(itr->status());
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
CheckFileTypeCounts(dbname_, 0, 3, 1);
test::SleepingBackgroundTask sleeping_task_before;
env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask,
&sleeping_task_before, Env::Priority::HIGH);
delete itr;
test::SleepingBackgroundTask sleeping_task_after;
env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask,
&sleeping_task_after, Env::Priority::HIGH);
CheckFileTypeCounts(dbname_, 0, 3, 1);
sleeping_task_before.WakeUp();
sleeping_task_before.WaitUntilDone();
sleeping_task_after.WakeUp();
sleeping_task_after.WaitUntilDone();
CheckFileTypeCounts(dbname_, 0, 1, 1);
}
TEST_F(DeleteFileTest, PurgeDuringOpen) {
Options options = CurrentOptions();
CheckFileTypeCounts(dbname_, -1, 0, -1);
Close();
std::unique_ptr<WritableFile> file;
ASSERT_OK(options.env->NewWritableFile(dbname_ + "/000002.sst", &file,
EnvOptions()));
ASSERT_OK(file->Close());
CheckFileTypeCounts(dbname_, -1, 1, -1);
options.avoid_unnecessary_blocking_io = false;
options.create_if_missing = false;
Reopen(options);
CheckFileTypeCounts(dbname_, -1, 0, -1);
Close();
options.avoid_unnecessary_blocking_io = true;
options.create_if_missing = false;
ASSERT_OK(options.env->NewWritableFile(dbname_ + "/000002.sst", &file,
EnvOptions()));
ASSERT_OK(file->Close());
CheckFileTypeCounts(dbname_, -1, 1, -1);
SyncPoint::GetInstance()->DisableProcessing();
SyncPoint::GetInstance()->ClearAllCallBacks();
SyncPoint::GetInstance()->LoadDependency(
{{"DeleteFileTest::PurgeDuringOpen:1", "DBImpl::BGWorkPurge:start"}});
SyncPoint::GetInstance()->EnableProcessing();
Reopen(options);
CheckFileTypeCounts(dbname_, -1, 1, -1);
TEST_SYNC_POINT("DeleteFileTest::PurgeDuringOpen:1");
ASSERT_OK(dbfull()->TEST_WaitForPurge());
CheckFileTypeCounts(dbname_, -1, 0, -1);
}
TEST_F(DeleteFileTest, BackgroundPurgeCFDropTest) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
auto do_test = [&](bool bg_purge) {
ColumnFamilyOptions co;
co.max_write_buffer_size_to_maintain =
static_cast<int64_t>(co.write_buffer_size);
WriteOptions wo;
FlushOptions fo;
ColumnFamilyHandle* cfh = nullptr;
ASSERT_OK(db_->CreateColumnFamily(co, "dropme", &cfh));
ASSERT_OK(db_->Put(wo, cfh, "pika", "chu"));
ASSERT_OK(db_->Flush(fo, cfh));
CheckFileTypeCounts(dbname_, 0, 1, 1);
ASSERT_OK(db_->DropColumnFamily(cfh));
CheckFileTypeCounts(dbname_, 0, 1, 1);
delete cfh;
test::SleepingBackgroundTask sleeping_task_after;
env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask,
&sleeping_task_after, Env::Priority::HIGH);
CheckFileTypeCounts(dbname_, 0, bg_purge ? 1 : 0, 1);
TEST_SYNC_POINT("DeleteFileTest::BackgroundPurgeCFDropTest:1");
sleeping_task_after.WakeUp();
sleeping_task_after.WaitUntilDone();
CheckFileTypeCounts(dbname_, 0, 0, 1);
};
{
SCOPED_TRACE("avoid_unnecessary_blocking_io = false");
do_test(false);
}
options.avoid_unnecessary_blocking_io = true;
options.create_if_missing = false;
Reopen(options);
ASSERT_OK(dbfull()->TEST_WaitForPurge());
SyncPoint::GetInstance()->DisableProcessing();
SyncPoint::GetInstance()->ClearAllCallBacks();
SyncPoint::GetInstance()->LoadDependency(
{{"DeleteFileTest::BackgroundPurgeCFDropTest:1",
"DBImpl::BGWorkPurge:start"}});
SyncPoint::GetInstance()->EnableProcessing();
{
SCOPED_TRACE("avoid_unnecessary_blocking_io = true");
do_test(true);
}
}
TEST_F(DeleteFileTest, BackgroundPurgeCopyOptions) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
std::string first("0"), last("999999");
CompactRangeOptions compact_options;
compact_options.change_level = true;
compact_options.target_level = 2;
Slice first_slice(first), last_slice(last);
Iterator* itr = nullptr;
CreateTwoLevels();
{
ReadOptions read_options;
read_options.background_purge_on_iterator_cleanup = true;
itr = db_->NewIterator(read_options);
ASSERT_OK(itr->status());
}
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
CheckFileTypeCounts(dbname_, 0, 3, 1);
delete itr;
test::SleepingBackgroundTask sleeping_task_after;
env_->Schedule(&test::SleepingBackgroundTask::DoSleepTask,
&sleeping_task_after, Env::Priority::HIGH);
sleeping_task_after.WakeUp();
sleeping_task_after.WaitUntilDone();
CheckFileTypeCounts(dbname_, 0, 1, 1);
}
TEST_F(DeleteFileTest, BackgroundPurgeTestMultipleJobs) {
Options options = CurrentOptions();
SetOptions(&options);
Destroy(options);
options.create_if_missing = true;
Reopen(options);
std::string first("0"), last("999999");
CompactRangeOptions compact_options;
compact_options.change_level = true;
compact_options.target_level = 2;
Slice first_slice(first), last_slice(last);
CreateTwoLevels();
ReadOptions read_options;
read_options.background_purge_on_iterator_cleanup = true;
Iterator* itr1 = db_->NewIterator(read_options);
ASSERT_OK(itr1->status());
CreateTwoLevels();
Iterator* itr2 = db_->NewIterator(read_options);
ASSERT_OK(itr2->status());
ASSERT_OK(db_->CompactRange(compact_options, &first_slice, &last_slice));
CheckFileTypeCounts(dbname_, 0, 5, 1);
ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->DisableProcessing();
ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->LoadDependency(
{{"DBImpl::~DBImpl:WaitJob", "DBImpl::BGWorkPurge"},
{"DeleteFileTest::GuardFinish",
"DeleteFileTest::BackgroundPurgeTestMultipleJobs:DBClose"}});
ROCKSDB_NAMESPACE::SyncPoint::GetInstance()->EnableProcessing();
delete itr1;
env_->Schedule(&DeleteFileTest::DoSleep, this, Env::Priority::HIGH);
delete itr2;
env_->Schedule(&DeleteFileTest::GuardFinish, nullptr, Env::Priority::HIGH);
Close();
TEST_SYNC_POINT("DeleteFileTest::BackgroundPurgeTestMultipleJobs:DBClose");
CheckFileTypeCounts(dbname_, 0, 1, 1);
}
}
int main(int argc, char** argv) {
ROCKSDB_NAMESPACE::port::InstallStackTraceHandler();
::testing::InitGoogleTest(&argc, argv);
RegisterCustomObjects(argc, argv);
return RUN_ALL_TESTS();
}