memgraph/tests/unit/bfs_fine_grained.cpp
Gareth Andrew Lloyd 0fb8e4116f
Fix REPLICA timestamps (#1615)
* Fix up REPLICA GetInfo and CreateSnapshot

Subtle bug where these actions were using the incorrect transactional
access while in REPLICA role. This casued timestamp to be incorrectly
bumped, breaking REPLICA from doing replication.

* Delay DNS resolution

Rather than resolve at endpoint creation, we will instread resolve only
on Socket connect. This allows k8s deployments to change their IP during
pod restarts.

* Minor sonarsource fixes

---------
Co-authored-by: Andreja <andreja.tonev@memgraph.io>
Co-authored-by: DavIvek <david.ivekovic@memgraph.io>
2024-01-05 16:42:54 +00:00

176 lines
7.4 KiB
C++

// Copyright 2024 Memgraph Ltd.
//
// Use of this software is governed by the Business Source License
// included in the file licenses/BSL.txt; by using this file, you agree to be bound by the terms of the Business Source
// License, and you may not use this file except in compliance with the Business Source License.
//
// As of the Change Date specified in that file, in accordance with
// the Business Source License, use of this software will be governed
// by the Apache License, Version 2.0, included in the file
// licenses/APL.txt.
#include "bfs_common.hpp"
#include <optional>
#include <string>
#include <unordered_map>
#include <gtest/internal/gtest-param-util-generated.h>
#include "auth/models.hpp"
#include "disk_test_utils.hpp"
#include "license/license.hpp"
#include "storage/v2/disk/storage.hpp"
#include "storage/v2/inmemory/storage.hpp"
using namespace memgraph::query;
using namespace memgraph::query::plan;
template <typename StorageType>
class VertexDb : public Database {
public:
const std::string testSuite = "bfs_fine_grained";
VertexDb() {
config_ = disk_test_utils::GenerateOnDiskConfig(testSuite);
db_ = std::make_unique<StorageType>(config_);
}
~VertexDb() override {
if (std::is_same<StorageType, memgraph::storage::DiskStorage>::value) {
disk_test_utils::RemoveRocksDbDirs(testSuite);
}
}
std::unique_ptr<memgraph::storage::Storage::Accessor> Access() override {
return db_->Access(memgraph::replication::ReplicationRole::MAIN);
}
std::unique_ptr<LogicalOperator> MakeBfsOperator(Symbol source_sym, Symbol sink_sym, Symbol edge_sym,
EdgeAtom::Direction direction,
const std::vector<memgraph::storage::EdgeTypeId> &edge_types,
const std::shared_ptr<LogicalOperator> &input, bool existing_node,
Expression *lower_bound, Expression *upper_bound,
const ExpansionLambda &filter_lambda) override {
return std::make_unique<ExpandVariable>(input, source_sym, sink_sym, edge_sym, EdgeAtom::Type::BREADTH_FIRST,
direction, edge_types, false, lower_bound, upper_bound, existing_node,
filter_lambda, std::nullopt, std::nullopt);
}
std::pair<std::vector<memgraph::query::VertexAccessor>, std::vector<memgraph::query::EdgeAccessor>> BuildGraph(
memgraph::query::DbAccessor *dba, const std::vector<int> &vertex_locations,
const std::vector<std::tuple<int, int, std::string>> &edges) override {
std::vector<memgraph::query::VertexAccessor> vertex_addr;
std::vector<memgraph::query::EdgeAccessor> edge_addr;
for (size_t id = 0; id < vertex_locations.size(); ++id) {
auto vertex = dba->InsertVertex();
MG_ASSERT(
vertex.SetProperty(dba->NameToProperty("id"), memgraph::storage::PropertyValue(static_cast<int64_t>(id)))
.HasValue());
MG_ASSERT(vertex.AddLabel(dba->NameToLabel(std::to_string(id))).HasValue());
vertex_addr.push_back(vertex);
}
for (auto e : edges) {
int u, v;
std::string type;
std::tie(u, v, type) = e;
auto &from = vertex_addr[u];
auto &to = vertex_addr[v];
auto edge = dba->InsertEdge(&from, &to, dba->NameToEdgeType(type));
MG_ASSERT(edge->SetProperty(dba->NameToProperty("from"), memgraph::storage::PropertyValue(u)).HasValue());
MG_ASSERT(edge->SetProperty(dba->NameToProperty("to"), memgraph::storage::PropertyValue(v)).HasValue());
edge_addr.push_back(*edge);
}
return std::make_pair(vertex_addr, edge_addr);
}
protected:
memgraph::storage::Config config_;
std::unique_ptr<memgraph::storage::Storage> db_;
};
#ifdef MG_ENTERPRISE
class FineGrainedBfsTestInMemory
: public ::testing::TestWithParam<
std::tuple<int, int, EdgeAtom::Direction, std::vector<std::string>, bool, FineGrainedTestType>> {
public:
using StorageType = memgraph::storage::InMemoryStorage;
static void SetUpTestCase() {
memgraph::license::global_license_checker.EnableTesting();
db_ = std::make_unique<VertexDb<StorageType>>();
}
static void TearDownTestCase() { db_ = nullptr; }
protected:
static std::unique_ptr<VertexDb<StorageType>> db_;
};
TEST_P(FineGrainedBfsTestInMemory, All) {
int lower_bound;
int upper_bound;
EdgeAtom::Direction direction;
std::vector<std::string> edge_types;
bool known_sink;
FineGrainedTestType fine_grained_test_type;
std::tie(lower_bound, upper_bound, direction, edge_types, known_sink, fine_grained_test_type) = GetParam();
this->db_->BfsTestWithFineGrainedFiltering(db_.get(), lower_bound, upper_bound, direction, edge_types, known_sink,
fine_grained_test_type);
}
std::unique_ptr<VertexDb<FineGrainedBfsTestInMemory::StorageType>> FineGrainedBfsTestInMemory::db_{nullptr};
INSTANTIATE_TEST_CASE_P(
FineGrained, FineGrainedBfsTestInMemory,
testing::Combine(testing::Values(3), testing::Values(-1),
testing::Values(EdgeAtom::Direction::OUT, EdgeAtom::Direction::IN, EdgeAtom::Direction::BOTH),
testing::Values(std::vector<std::string>{}), testing::Bool(),
testing::Values(FineGrainedTestType::ALL_GRANTED, FineGrainedTestType::ALL_DENIED,
FineGrainedTestType::EDGE_TYPE_A_DENIED, FineGrainedTestType::EDGE_TYPE_B_DENIED,
FineGrainedTestType::LABEL_0_DENIED, FineGrainedTestType::LABEL_3_DENIED)));
class FineGrainedBfsTestOnDisk
: public ::testing::TestWithParam<
std::tuple<int, int, EdgeAtom::Direction, std::vector<std::string>, bool, FineGrainedTestType>> {
public:
using StorageType = memgraph::storage::DiskStorage;
static void SetUpTestCase() {
memgraph::license::global_license_checker.EnableTesting();
db_ = std::make_unique<VertexDb<StorageType>>();
}
static void TearDownTestCase() { db_ = nullptr; }
protected:
static std::unique_ptr<VertexDb<StorageType>> db_;
};
TEST_P(FineGrainedBfsTestOnDisk, All) {
int lower_bound;
int upper_bound;
EdgeAtom::Direction direction;
std::vector<std::string> edge_types;
bool known_sink;
FineGrainedTestType fine_grained_test_type;
std::tie(lower_bound, upper_bound, direction, edge_types, known_sink, fine_grained_test_type) = GetParam();
this->db_->BfsTestWithFineGrainedFiltering(db_.get(), lower_bound, upper_bound, direction, edge_types, known_sink,
fine_grained_test_type);
}
std::unique_ptr<VertexDb<FineGrainedBfsTestOnDisk::StorageType>> FineGrainedBfsTestOnDisk::db_{nullptr};
INSTANTIATE_TEST_CASE_P(
FineGrained, FineGrainedBfsTestOnDisk,
testing::Combine(testing::Values(3), testing::Values(-1),
testing::Values(EdgeAtom::Direction::OUT, EdgeAtom::Direction::IN, EdgeAtom::Direction::BOTH),
testing::Values(std::vector<std::string>{}), testing::Bool(),
testing::Values(FineGrainedTestType::ALL_GRANTED, FineGrainedTestType::ALL_DENIED,
FineGrainedTestType::EDGE_TYPE_A_DENIED, FineGrainedTestType::EDGE_TYPE_B_DENIED,
FineGrainedTestType::LABEL_0_DENIED, FineGrainedTestType::LABEL_3_DENIED)));
#endif