3b27b20992
Summary: Move query/frontend/interpret to query/interpret. Split interpret.hpp to frame.hpp and eval.hpp. Move query/frontend/logical to query/plan. Nest namespace frontend::opencypher inside query. Reviewers: florijan, mislav.bradac, buda Reviewed By: florijan Subscribers: pullbot Differential Revision: https://phabricator.memgraph.io/D272
422 lines
15 KiB
C++
422 lines
15 KiB
C++
#include <list>
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#include <tuple>
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#include <unordered_set>
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#include "gtest/gtest.h"
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#include "dbms/dbms.hpp"
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#include "query/frontend/ast/ast.hpp"
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#include "query/frontend/semantic/symbol_generator.hpp"
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#include "query/frontend/semantic/symbol_table.hpp"
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#include "query/plan/operator.hpp"
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#include "query/plan/planner.hpp"
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#include "query_common.hpp"
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using namespace query::plan;
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using query::AstTreeStorage;
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using query::SymbolTable;
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using query::SymbolGenerator;
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using Direction = query::EdgeAtom::Direction;
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namespace {
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class BaseOpChecker {
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public:
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virtual ~BaseOpChecker() {}
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virtual void CheckOp(LogicalOperator &, const SymbolTable &) = 0;
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};
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template <class TOp>
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class OpChecker : public BaseOpChecker {
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public:
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void CheckOp(LogicalOperator &op, const SymbolTable &symbol_table) override {
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auto *expected_op = dynamic_cast<TOp *>(&op);
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ASSERT_TRUE(expected_op);
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ExpectOp(*expected_op, symbol_table);
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}
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virtual void ExpectOp(TOp &op, const SymbolTable &) {}
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};
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using ExpectCreateNode = OpChecker<CreateNode>;
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using ExpectCreateExpand = OpChecker<CreateExpand>;
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using ExpectDelete = OpChecker<Delete>;
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using ExpectScanAll = OpChecker<ScanAll>;
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using ExpectExpand = OpChecker<Expand>;
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using ExpectNodeFilter = OpChecker<NodeFilter>;
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using ExpectEdgeFilter = OpChecker<EdgeFilter>;
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using ExpectFilter = OpChecker<Filter>;
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using ExpectProduce = OpChecker<Produce>;
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using ExpectSetProperty = OpChecker<SetProperty>;
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using ExpectSetProperties = OpChecker<SetProperties>;
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using ExpectSetLabels = OpChecker<SetLabels>;
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using ExpectRemoveProperty = OpChecker<RemoveProperty>;
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using ExpectRemoveLabels = OpChecker<RemoveLabels>;
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template <class TAccessor>
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using ExpectExpandUniquenessFilter =
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OpChecker<ExpandUniquenessFilter<TAccessor>>;
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using ExpectAccumulate = OpChecker<Accumulate>;
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class ExpectAggregate : public OpChecker<Aggregate> {
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public:
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ExpectAggregate() = default;
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ExpectAggregate(const std::vector<query::Aggregation *> &aggregations,
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const std::unordered_set<query::Expression *> &group_by)
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: aggregations_(aggregations), group_by_(group_by) {}
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void ExpectOp(Aggregate &op, const SymbolTable &symbol_table) override {
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auto aggr_it = aggregations_.begin();
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for (const auto &aggr_elem : op.aggregations()) {
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ASSERT_NE(aggr_it, aggregations_.end());
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auto aggr = *aggr_it++;
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auto expected =
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std::make_tuple(aggr->expression_, aggr->op_, symbol_table.at(*aggr));
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EXPECT_EQ(expected, aggr_elem);
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}
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EXPECT_EQ(aggr_it, aggregations_.end());
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auto got_group_by = std::unordered_set<query::Expression *>(
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op.group_by().begin(), op.group_by().end());
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EXPECT_EQ(group_by_, got_group_by);
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}
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private:
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const std::vector<query::Aggregation *> aggregations_;
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const std::unordered_set<query::Expression *> group_by_;
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};
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class PlanChecker : public LogicalOperatorVisitor {
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public:
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using LogicalOperatorVisitor::Visit;
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using LogicalOperatorVisitor::PostVisit;
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PlanChecker(const std::list<BaseOpChecker *> &checkers,
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const SymbolTable &symbol_table)
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: checkers_(checkers), symbol_table_(symbol_table) {}
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void Visit(CreateNode &op) override { CheckOp(op); }
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void Visit(CreateExpand &op) override { CheckOp(op); }
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void Visit(Delete &op) override { CheckOp(op); }
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void Visit(ScanAll &op) override { CheckOp(op); }
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void Visit(Expand &op) override { CheckOp(op); }
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void Visit(NodeFilter &op) override { CheckOp(op); }
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void Visit(EdgeFilter &op) override { CheckOp(op); }
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void Visit(Filter &op) override { CheckOp(op); }
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void Visit(Produce &op) override { CheckOp(op); }
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void Visit(SetProperty &op) override { CheckOp(op); }
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void Visit(SetProperties &op) override { CheckOp(op); }
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void Visit(SetLabels &op) override { CheckOp(op); }
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void Visit(RemoveProperty &op) override { CheckOp(op); }
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void Visit(RemoveLabels &op) override { CheckOp(op); }
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void Visit(ExpandUniquenessFilter<VertexAccessor> &op) override {
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CheckOp(op);
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}
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void Visit(ExpandUniquenessFilter<EdgeAccessor> &op) override { CheckOp(op); }
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void Visit(Accumulate &op) override { CheckOp(op); }
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void Visit(Aggregate &op) override { CheckOp(op); }
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std::list<BaseOpChecker *> checkers_;
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private:
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void CheckOp(LogicalOperator &op) {
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ASSERT_FALSE(checkers_.empty());
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checkers_.back()->CheckOp(op, symbol_table_);
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checkers_.pop_back();
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}
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const SymbolTable &symbol_table_;
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};
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template <class... TChecker>
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auto CheckPlan(query::Query &query, TChecker... checker) {
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SymbolTable symbol_table;
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SymbolGenerator symbol_generator(symbol_table);
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query.Accept(symbol_generator);
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auto plan = MakeLogicalPlan(query, symbol_table);
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std::list<BaseOpChecker *> checkers{&checker...};
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PlanChecker plan_checker(checkers, symbol_table);
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plan->Accept(plan_checker);
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EXPECT_TRUE(plan_checker.checkers_.empty());
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}
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TEST(TestLogicalPlanner, MatchNodeReturn) {
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// Test MATCH (n) RETURN n AS n
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("n"))), RETURN(IDENT("n"), AS("n")));
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CheckPlan(*query, ExpectScanAll(), ExpectProduce());
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}
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TEST(TestLogicalPlanner, CreateNodeReturn) {
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// Test CREATE (n) RETURN n AS n
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AstTreeStorage storage;
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auto query = QUERY(CREATE(PATTERN(NODE("n"))), RETURN(IDENT("n"), AS("n")));
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CheckPlan(*query, ExpectCreateNode(), ExpectAccumulate(), ExpectProduce());
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}
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TEST(TestLogicalPlanner, CreateExpand) {
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// Test CREATE (n) -[r :rel1]-> (m)
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto relationship = dba->edge_type("relationship");
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auto query = QUERY(CREATE(PATTERN(
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NODE("n"), EDGE("r", relationship, Direction::RIGHT), NODE("m"))));
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CheckPlan(*query, ExpectCreateNode(), ExpectCreateExpand());
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}
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TEST(TestLogicalPlanner, CreateMultipleNode) {
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// Test CREATE (n), (m)
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AstTreeStorage storage;
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auto query = QUERY(CREATE(PATTERN(NODE("n")), PATTERN(NODE("m"))));
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CheckPlan(*query, ExpectCreateNode(), ExpectCreateNode());
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}
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TEST(TestLogicalPlanner, CreateNodeExpandNode) {
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// Test CREATE (n) -[r :rel]-> (m), (l)
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto relationship = dba->edge_type("rel");
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auto query = QUERY(CREATE(
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PATTERN(NODE("n"), EDGE("r", relationship, Direction::RIGHT), NODE("m")),
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PATTERN(NODE("l"))));
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CheckPlan(*query, ExpectCreateNode(), ExpectCreateExpand(),
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ExpectCreateNode());
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}
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TEST(TestLogicalPlanner, MatchCreateExpand) {
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// Test MATCH (n) CREATE (n) -[r :rel1]-> (m)
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto relationship = dba->edge_type("relationship");
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auto query =
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QUERY(MATCH(PATTERN(NODE("n"))),
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CREATE(PATTERN(NODE("n"), EDGE("r", relationship, Direction::RIGHT),
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NODE("m"))));
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CheckPlan(*query, ExpectScanAll(), ExpectCreateExpand());
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}
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TEST(TestLogicalPlanner, MatchLabeledNodes) {
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// Test MATCH (n :label) RETURN n AS n
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto label = dba->label("label");
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auto query =
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QUERY(MATCH(PATTERN(NODE("n", label))), RETURN(IDENT("n"), AS("n")));
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CheckPlan(*query, ExpectScanAll(), ExpectNodeFilter(), ExpectProduce());
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}
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TEST(TestLogicalPlanner, MatchPathReturn) {
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// Test MATCH (n) -[r :relationship]- (m) RETURN n AS n
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto relationship = dba->edge_type("relationship");
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auto query =
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QUERY(MATCH(PATTERN(NODE("n"), EDGE("r", relationship), NODE("m"))),
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RETURN(IDENT("n"), AS("n")));
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CheckPlan(*query, ExpectScanAll(), ExpectExpand(), ExpectEdgeFilter(),
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ExpectProduce());
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}
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TEST(TestLogicalPlanner, MatchWhereReturn) {
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// Test MATCH (n) WHERE n.property < 42 RETURN n AS n
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto property = dba->property("property");
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auto query = QUERY(MATCH(PATTERN(NODE("n"))),
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WHERE(LESS(PROPERTY_LOOKUP("n", property), LITERAL(42))),
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RETURN(IDENT("n"), AS("n")));
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CheckPlan(*query, ExpectScanAll(), ExpectFilter(), ExpectProduce());
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}
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TEST(TestLogicalPlanner, MatchDelete) {
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// Test MATCH (n) DELETE n
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("n"))), DELETE(IDENT("n")));
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CheckPlan(*query, ExpectScanAll(), ExpectDelete());
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}
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TEST(TestLogicalPlanner, MatchNodeSet) {
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// Test MATCH (n) SET n.prop = 42, n = n, n :label
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto prop = dba->property("prop");
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auto label = dba->label("label");
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auto query = QUERY(MATCH(PATTERN(NODE("n"))),
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SET(PROPERTY_LOOKUP("n", prop), LITERAL(42)),
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SET("n", IDENT("n")), SET("n", {label}));
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CheckPlan(*query, ExpectScanAll(), ExpectSetProperty(), ExpectSetProperties(),
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ExpectSetLabels());
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}
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TEST(TestLogicalPlanner, MatchRemove) {
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// Test MATCH (n) REMOVE n.prop REMOVE n :label
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AstTreeStorage storage;
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Dbms dbms;
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auto dba = dbms.active();
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auto prop = dba->property("prop");
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auto label = dba->label("label");
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auto query = QUERY(MATCH(PATTERN(NODE("n"))),
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REMOVE(PROPERTY_LOOKUP("n", prop)), REMOVE("n", {label}));
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CheckPlan(*query, ExpectScanAll(), ExpectRemoveProperty(),
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ExpectRemoveLabels());
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}
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TEST(TestLogicalPlanner, MatchMultiPattern) {
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// Test MATCH (n) -[r]- (m), (j) -[e]- (i)
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("n"), EDGE("r"), NODE("m")),
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PATTERN(NODE("j"), EDGE("e"), NODE("i"))));
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// We expect the expansions after the first to have a uniqueness filter in a
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// single MATCH clause.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand(), ExpectScanAll(),
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ExpectExpand(), ExpectExpandUniquenessFilter<EdgeAccessor>());
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}
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TEST(TestLogicalPlanner, MatchMultiPatternSameStart) {
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// Test MATCH (n), (n) -[e]- (m)
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AstTreeStorage storage;
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auto query = QUERY(
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MATCH(PATTERN(NODE("n")), PATTERN(NODE("n"), EDGE("e"), NODE("m"))));
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// We expect the second pattern to generate only an Expand, since another
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// ScanAll would be redundant.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand());
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}
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TEST(TestLogicalPlanner, MatchMultiPatternSameExpandStart) {
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// Test MATCH (n) -[r]- (m), (m) -[e]- (l)
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("n"), EDGE("r"), NODE("m")),
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PATTERN(NODE("m"), EDGE("e"), NODE("l"))));
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// We expect the second pattern to generate only an Expand. Another
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// ScanAll would be redundant, as it would generate the nodes obtained from
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// expansion. Additionally, a uniqueness filter is expected.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand(), ExpectExpand(),
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ExpectExpandUniquenessFilter<EdgeAccessor>());
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}
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TEST(TestLogicalPlanner, MultiMatch) {
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// Test MATCH (n) -[r]- (m) MATCH (j) -[e]- (i) -[f]- (h)
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AstTreeStorage storage;
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auto query = QUERY(
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MATCH(PATTERN(NODE("n"), EDGE("r"), NODE("m"))),
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MATCH(PATTERN(NODE("j"), EDGE("e"), NODE("i"), EDGE("f"), NODE("h"))));
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// Multiple MATCH clauses form a Cartesian product, so the uniqueness should
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// not cross MATCH boundaries.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand(), ExpectScanAll(),
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ExpectExpand(), ExpectExpand(),
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ExpectExpandUniquenessFilter<EdgeAccessor>());
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}
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TEST(TestLogicalPlanner, MultiMatchSameStart) {
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// Test MATCH (n) MATCH (n) -[r]- (m)
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("n"))),
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MATCH(PATTERN(NODE("n"), EDGE("r"), NODE("m"))));
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// Similar to MatchMultiPatternSameStart, we expect only Expand from second
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// MATCH clause.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand());
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}
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TEST(TestLogicalPlanner, MatchEdgeCycle) {
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// Test MATCH (n) -[r]- (m) -[r]- (j)
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AstTreeStorage storage;
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auto query = QUERY(
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MATCH(PATTERN(NODE("n"), EDGE("r"), NODE("m"), EDGE("r"), NODE("j"))));
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// There is no ExpandUniquenessFilter for referencing the same edge.
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CheckPlan(*query, ExpectScanAll(), ExpectExpand(), ExpectExpand());
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}
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TEST(TestLogicalPlanner, MatchWithReturn) {
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// Test MATCH (old) WITH old AS new RETURN new AS new
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("old"))), WITH(IDENT("old"), AS("new")),
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RETURN(IDENT("new"), AS("new")));
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// No accumulation since we only do reads.
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CheckPlan(*query, ExpectScanAll(), ExpectProduce(), ExpectProduce());
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}
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TEST(TestLogicalPlanner, MatchWithWhereReturn) {
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// Test MATCH (old) WITH old AS new WHERE new.prop < 42 RETURN new AS new
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Dbms dbms;
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auto dba = dbms.active();
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auto prop = dba->property("prop");
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AstTreeStorage storage;
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auto query = QUERY(MATCH(PATTERN(NODE("old"))), WITH(IDENT("old"), AS("new")),
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WHERE(LESS(PROPERTY_LOOKUP("new", prop), LITERAL(42))),
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RETURN(IDENT("new"), AS("new")));
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// No accumulation since we only do reads.
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CheckPlan(*query, ExpectScanAll(), ExpectProduce(), ExpectFilter(),
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ExpectProduce());
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}
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TEST(TestLogicalPlanner, CreateMultiExpand) {
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// Test CREATE (n) -[r :r]-> (m), (n) - [p :p]-> (l)
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Dbms dbms;
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auto dba = dbms.active();
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auto r = dba->edge_type("r");
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auto p = dba->edge_type("p");
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AstTreeStorage storage;
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auto query = QUERY(
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CREATE(PATTERN(NODE("n"), EDGE("r", r, Direction::RIGHT), NODE("m")),
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PATTERN(NODE("n"), EDGE("p", p, Direction::RIGHT), NODE("l"))));
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CheckPlan(*query, ExpectCreateNode(), ExpectCreateExpand(),
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ExpectCreateExpand());
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}
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TEST(TestLogicalPlanner, MatchWithSumWhereReturn) {
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// Test MATCH (n) WITH SUM(n.prop) + 42 AS sum WHERE sum < 42
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// RETURN sum AS result
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Dbms dbms;
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auto dba = dbms.active();
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auto prop = dba->property("prop");
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AstTreeStorage storage;
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auto sum = SUM(PROPERTY_LOOKUP("n", prop));
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auto literal = LITERAL(42);
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auto query =
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QUERY(MATCH(PATTERN(NODE("n"))), WITH(ADD(sum, literal), AS("sum")),
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WHERE(LESS(IDENT("sum"), LITERAL(42))),
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RETURN(IDENT("sum"), AS("result")));
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auto aggr = ExpectAggregate({sum}, {literal});
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CheckPlan(*query, ExpectScanAll(), aggr, ExpectProduce(), ExpectFilter(),
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ExpectProduce());
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}
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TEST(TestLogicalPlanner, MatchReturnSum) {
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// Test MATCH (n) RETURN SUM(n.prop1) AS sum, n.prop2 AS group
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Dbms dbms;
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auto dba = dbms.active();
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auto prop1 = dba->property("prop1");
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auto prop2 = dba->property("prop2");
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AstTreeStorage storage;
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auto sum = SUM(PROPERTY_LOOKUP("n", prop1));
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auto n_prop2 = PROPERTY_LOOKUP("n", prop2);
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auto query = QUERY(MATCH(PATTERN(NODE("n"))),
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RETURN(sum, AS("sum"), n_prop2, AS("group")));
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auto aggr = ExpectAggregate({sum}, {n_prop2});
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CheckPlan(*query, ExpectScanAll(), aggr, ExpectProduce());
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}
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TEST(TestLogicalPlanner, CreateWithSum) {
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// Test CREATE (n) WITH SUM(n.prop) AS sum
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Dbms dbms;
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auto dba = dbms.active();
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auto prop = dba->property("prop");
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AstTreeStorage storage;
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auto sum = SUM(PROPERTY_LOOKUP("n", prop));
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auto query = QUERY(CREATE(PATTERN(NODE("n"))), WITH(sum, AS("sum")));
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auto aggr = ExpectAggregate({sum}, {});
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// We expect both the accumulation and aggregation because the part before
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// WITH updates the database.
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CheckPlan(*query, ExpectCreateNode(), ExpectAccumulate(), aggr,
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ExpectProduce());
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}
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} // namespace
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