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/**
* Copyright (C) 2019-present MongoDB, Inc.
*
* This program is free software: you can redistribute it and/or modify
* it under the terms of the Server Side Public License, version 1,
* as published by MongoDB, Inc.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* Server Side Public License for more details.
*
* You should have received a copy of the Server Side Public License
* along with this program. If not, see
* <http://www.mongodb.com/licensing/server-side-public-license>.
*
* As a special exception, the copyright holders give permission to link the
* code of portions of this program with the OpenSSL library under certain
* conditions as described in each individual source file and distribute
* linked combinations including the program with the OpenSSL library. You
* must comply with the Server Side Public License in all respects for
* all of the code used other than as permitted herein. If you modify file(s)
* with this exception, you may extend this exception to your version of the
* file(s), but you are not obligated to do so. If you do not wish to do so,
* delete this exception statement from your version. If you delete this
* exception statement from all source files in the program, then also delete
* it in the license file.
*/
#include "mongo/platform/basic.h"
#include "mongo/bson/bsonmisc.h"
#include "mongo/config.h"
#include "mongo/db/exec/document_value/document.h"
#include "mongo/db/exec/document_value/document_value_test_util.h"
#include "mongo/db/exec/document_value/value_comparator.h"
#include "mongo/db/jsobj.h"
#include "mongo/db/json.h"
#include "mongo/db/pipeline/expression.h"
#include "mongo/db/pipeline/expression_context_for_test.h"
#include "mongo/db/query/collation/collator_interface_mock.h"
#include "mongo/dbtests/dbtests.h"
#include "mongo/unittest/unittest.h"
namespace mongo {
namespace ExpressionTests {
namespace {
using boost::intrusive_ptr;
/** Convert BSONObj to a BSONObj with our $const wrappings. */
static BSONObj constify(const BSONObj& obj, bool parentIsArray = false) {
BSONObjBuilder bob;
for (BSONObjIterator itr(obj); itr.more(); itr.next()) {
BSONElement elem = *itr;
if (elem.type() == Object) {
bob << elem.fieldName() << constify(elem.Obj(), false);
} else if (elem.type() == Array && !parentIsArray) {
// arrays within arrays are treated as constant values by the real
// parser
bob << elem.fieldName() << BSONArray(constify(elem.Obj(), true));
} else if (elem.fieldNameStringData() == "$const" ||
(elem.type() == mongo::String && elem.valueStringDataSafe().startsWith("$"))) {
bob.append(elem);
} else {
bob.append(elem.fieldName(), BSON("$const" << elem));
}
}
return bob.obj();
}
/** Convert Value to a wrapped BSONObj with an empty string field name. */
static BSONObj toBson(const Value& value) {
BSONObjBuilder bob;
value.addToBsonObj(&bob, "");
return bob.obj();
}
/** Convert Expression to BSON. */
static BSONObj expressionToBson(const intrusive_ptr<Expression>& expression) {
return BSON("" << expression->serialize(false)).firstElement().embeddedObject().getOwned();
}
/** Convert Document to BSON. */
static BSONObj toBson(const Document& document) {
return document.toBson();
}
/** Create a Document from a BSONObj. */
Document fromBson(BSONObj obj) {
return Document(obj);
}
/** Create a Value from a BSONObj. */
Value valueFromBson(BSONObj obj) {
BSONElement element = obj.firstElement();
return Value(element);
}
namespace And {
class ExpectedResultBase {
public:
virtual ~ExpectedResultBase() {}
void run() {
intrusive_ptr<ExpressionContextForTest> expCtx(new ExpressionContextForTest());
BSONObj specObject = BSON("" << spec());
BSONElement specElement = specObject.firstElement();
VariablesParseState vps = expCtx->variablesParseState;
intrusive_ptr<Expression> expression = Expression::parseOperand(expCtx, specElement, vps);
ASSERT_BSONOBJ_EQ(constify(spec()), expressionToBson(expression));
ASSERT_BSONOBJ_EQ(
BSON("" << expectedResult()),
toBson(expression->evaluate(fromBson(BSON("a" << 1)), &expCtx->variables)));
intrusive_ptr<Expression> optimized = expression->optimize();
ASSERT_BSONOBJ_EQ(
BSON("" << expectedResult()),
toBson(optimized->evaluate(fromBson(BSON("a" << 1)), &expCtx->variables)));
}
protected:
virtual BSONObj spec() = 0;
virtual bool expectedResult() = 0;
};
class OptimizeBase {
public:
virtual ~OptimizeBase() {}
void run() {
intrusive_ptr<ExpressionContextForTest> expCtx(new ExpressionContextForTest());
BSONObj specObject = BSON("" << spec());
BSONElement specElement = specObject.firstElement();
VariablesParseState vps = expCtx->variablesParseState;
intrusive_ptr<Expression> expression = Expression::parseOperand(expCtx, specElement, vps);
ASSERT_BSONOBJ_EQ(constify(spec()), expressionToBson(expression));
intrusive_ptr<Expression> optimized = expression->optimize();
ASSERT_BSONOBJ_EQ(expectedOptimized(), expressionToBson(optimized));
}
protected:
virtual BSONObj spec() = 0;
virtual BSONObj expectedOptimized() = 0;
};
class NoOptimizeBase : public OptimizeBase {
BSONObj expectedOptimized() {
return constify(spec());
}
};
/** $and without operands. */
class NoOperands : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSONArray());
}
bool expectedResult() {
return true;
}
};
/** $and passed 'true'. */
class True : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(true));
}
bool expectedResult() {
return true;
}
};
/** $and passed 'false'. */
class False : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(false));
}
bool expectedResult() {
return false;
}
};
/** $and passed 'true', 'true'. */
class TrueTrue : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(true << true));
}
bool expectedResult() {
return true;
}
};
/** $and passed 'true', 'false'. */
class TrueFalse : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(true << false));
}
bool expectedResult() {
return false;
}
};
/** $and passed 'false', 'true'. */
class FalseTrue : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(false << true));
}
bool expectedResult() {
return false;
}
};
/** $and passed 'false', 'false'. */
class FalseFalse : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(false << false));
}
bool expectedResult() {
return false;
}
};
/** $and passed 'true', 'true', 'true'. */
class TrueTrueTrue : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(true << true << true));
}
bool expectedResult() {
return true;
}
};
/** $and passed 'true', 'true', 'false'. */
class TrueTrueFalse : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(true << true << false));
}
bool expectedResult() {
return false;
}
};
/** $and passed '0', '1'. */
class ZeroOne : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(0 << 1));
}
bool expectedResult() {
return false;
}
};
/** $and passed '1', '2'. */
class OneTwo : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(1 << 2));
}
bool expectedResult() {
return true;
}
};
/** $and passed a field path. */
class FieldPath : public ExpectedResultBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a"));
}
bool expectedResult() {
return true;
}
};
/** A constant expression is optimized to a constant. */
class OptimizeConstantExpression : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(1));
}
BSONObj expectedOptimized() {
return BSON("$const" << true);
}
};
/** A non constant expression is not optimized. */
class NonConstant : public NoOptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a"));
}
};
/** An expression beginning with a single constant is optimized. */
class ConstantNonConstantTrue : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(1 << "$a"));
}
BSONObj expectedOptimized() {
return BSON("$and" << BSON_ARRAY("$a"));
}
// note: using $and as serialization of ExpressionCoerceToBool rather than
// ExpressionAnd
};
class ConstantNonConstantFalse : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(0 << "$a"));
}
BSONObj expectedOptimized() {
return BSON("$const" << false);
}
};
/** An expression with a field path and '1'. */
class NonConstantOne : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a" << 1));
}
BSONObj expectedOptimized() {
return BSON("$and" << BSON_ARRAY("$a"));
}
};
/** An expression with a field path and '0'. */
class NonConstantZero : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a" << 0));
}
BSONObj expectedOptimized() {
return BSON("$const" << false);
}
};
/** An expression with two field paths and '1'. */
class NonConstantNonConstantOne : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a"
<< "$b" << 1));
}
BSONObj expectedOptimized() {
return BSON("$and" << BSON_ARRAY("$a"
<< "$b"));
}
};
/** An expression with two field paths and '0'. */
class NonConstantNonConstantZero : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY("$a"
<< "$b" << 0));
}
BSONObj expectedOptimized() {
return BSON("$const" << false);
}
};
/** An expression with '0', '1', and a field path. */
class ZeroOneNonConstant : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(0 << 1 << "$a"));
}
BSONObj expectedOptimized() {
return BSON("$const" << false);
}
};
/** An expression with '1', '1', and a field path. */
class OneOneNonConstant : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(1 << 1 << "$a"));
}
BSONObj expectedOptimized() {
return BSON("$and" << BSON_ARRAY("$a"));
}
};
/** Nested $and expressions. */
class Nested : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(1 << BSON("$and" << BSON_ARRAY(1)) << "$a"
<< "$b"));
}
BSONObj expectedOptimized() {
return BSON("$and" << BSON_ARRAY("$a"
<< "$b"));
}
};
/** Nested $and expressions containing a nested value evaluating to false. */
class NestedZero : public OptimizeBase {
BSONObj spec() {
return BSON("$and" << BSON_ARRAY(
1 << BSON("$and" << BSON_ARRAY(BSON("$and" << BSON_ARRAY(0)))) << "$a"
<< "$b"));
}
BSONObj expectedOptimized() {
return BSON("$const" << false);
}
};
} // namespace And
class All : public OldStyleSuiteSpecification {
public:
All() : OldStyleSuiteSpecification("expression") {}
void setupTests() {
add<And::NoOperands>();
add<And::True>();
add<And::False>();
add<And::TrueTrue>();
add<And::TrueFalse>();
add<And::FalseTrue>();
add<And::FalseFalse>();
add<And::TrueTrueTrue>();
add<And::TrueTrueFalse>();
add<And::TrueTrueFalse>();
add<And::ZeroOne>();
add<And::OneTwo>();
add<And::FieldPath>();
add<And::OptimizeConstantExpression>();
add<And::NonConstant>();
add<And::ConstantNonConstantTrue>();
add<And::ConstantNonConstantFalse>();
add<And::NonConstantOne>();
add<And::NonConstantZero>();
add<And::NonConstantNonConstantOne>();
add<And::NonConstantNonConstantZero>();
add<And::ZeroOneNonConstant>();
add<And::OneOneNonConstant>();
add<And::Nested>();
add<And::NestedZero>();
}
};
OldStyleSuiteInitializer<All> andAll;
} // namespace
} // namespace ExpressionTests
} // namespace mongo
|