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#include "FuzzingDefs.h"
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#include "FuzzingOperations.h"
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#include "FuzzingUtils.h"
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#include <Network/NetworkController.h>
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#include <SqpApplication.h>
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#include <Time/TimeController.h>
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#include <Variable/VariableController.h>
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#include <QLoggingCategory>
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#include <QObject>
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#include <QtTest>
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#include <memory>
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Q_LOGGING_CATEGORY(LOG_TestAmdaFuzzing, "TestAmdaFuzzing")
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namespace {
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// /////// //
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// Aliases //
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// /////// //
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using VariableId = int;
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using VariableOperation = std::pair<VariableId, std::shared_ptr<IFuzzingOperation> >;
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using VariablesOperations = std::vector<VariableOperation>;
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using OperationsPool = std::set<std::shared_ptr<IFuzzingOperation> >;
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using VariablesPool = std::map<VariableId, std::shared_ptr<Variable> >;
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// ///////// //
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// Constants //
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// ///////// //
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// Defaults values used when the associated properties have not been set for the test
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const auto NB_MAX_OPERATIONS_DEFAULT_VALUE = 100;
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const auto NB_MAX_VARIABLES_DEFAULT_VALUE = 1;
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const auto AVAILABLE_OPERATIONS_DEFAULT_VALUE
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= QVariant::fromValue(OperationsTypes{FuzzingOperationType::CREATE});
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// /////// //
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// Methods //
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// /////// //
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/// Goes through the variables pool and operations pool to determine the set of {variable/operation}
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/// pairs that are valid (i.e. operation that can be executed on variable)
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VariablesOperations availableOperations(const VariablesPool &variablesPool,
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const OperationsPool &operationsPool)
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{
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VariablesOperations result{};
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for (const auto &variablesPoolEntry : variablesPool) {
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auto variableId = variablesPoolEntry.first;
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auto variable = variablesPoolEntry.second;
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for (const auto &operation : operationsPool) {
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// A pair is valid if the current operation can be executed on the current variable
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if (operation->canExecute(variable)) {
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result.push_back({variableId, operation});
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}
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}
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}
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return result;
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}
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OperationsPool createOperationsPool(const OperationsTypes &types)
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{
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OperationsPool result{};
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std::transform(types.cbegin(), types.cend(), std::inserter(result, result.end()),
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[](const auto &type) { return FuzzingOperationFactory::create(type); });
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return result;
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}
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/**
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* Class to run random tests
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*/
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class FuzzingTest {
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public:
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explicit FuzzingTest(VariableController &variableController, Properties properties)
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: m_VariableController{variableController},
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m_Properties{std::move(properties)},
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m_VariablesPool{}
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{
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// Inits variables pool: at init, all variables are null
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for (auto variableId = 0; variableId < nbMaxVariables(); ++variableId) {
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m_VariablesPool[variableId] = nullptr;
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}
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}
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void execute()
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{
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qCInfo(LOG_TestAmdaFuzzing()) << "Running" << nbMaxOperations() << "operations on"
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<< nbMaxVariables() << "variables...";
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auto canExecute = true;
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for (auto i = 0; i < nbMaxOperations() && canExecute; ++i) {
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// Retrieves all operations that can be executed in the current context
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auto variableOperations = availableOperations(m_VariablesPool, operationsPool());
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canExecute = !variableOperations.empty();
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if (canExecute) {
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// Of the operations available, chooses a random operation and executes it
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auto variableOperation
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= RandomGenerator::instance().randomChoice(variableOperations);
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auto variableId = variableOperation.first;
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auto variable = m_VariablesPool.at(variableId);
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auto fuzzingOperation = variableOperation.second;
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fuzzingOperation->execute(variable, m_VariableController, m_Properties);
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// Updates variable pool with the new state of the variable after operation
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m_VariablesPool[variableId] = variable;
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}
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else {
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qCInfo(LOG_TestAmdaFuzzing())
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<< "No more operations are available, the execution of the test will stop...";
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}
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}
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qCInfo(LOG_TestAmdaFuzzing()) << "Execution of the test completed.";
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}
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private:
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int nbMaxOperations() const
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{
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static auto result
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= m_Properties.value(NB_MAX_OPERATIONS_PROPERTY, NB_MAX_OPERATIONS_DEFAULT_VALUE)
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.toInt();
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return result;
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}
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int nbMaxVariables() const
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{
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static auto result
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= m_Properties.value(NB_MAX_VARIABLES_PROPERTY, NB_MAX_VARIABLES_DEFAULT_VALUE).toInt();
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return result;
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}
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OperationsPool operationsPool() const
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{
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static auto result = createOperationsPool(
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m_Properties.value(AVAILABLE_OPERATIONS_PROPERTY, AVAILABLE_OPERATIONS_DEFAULT_VALUE)
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.value<OperationsTypes>());
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return result;
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}
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VariableController &m_VariableController;
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Properties m_Properties;
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VariablesPool m_VariablesPool;
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};
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} // namespace
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class TestAmdaFuzzing : public QObject {
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Q_OBJECT
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private slots:
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/// Input data for @sa testFuzzing()
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void testFuzzing_data();
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void testFuzzing();
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};
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void TestAmdaFuzzing::testFuzzing_data()
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{
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// ////////////// //
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// Test structure //
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// ////////////// //
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QTest::addColumn<Properties>("properties"); // Properties for random test
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// ////////// //
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// Test cases //
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// ////////// //
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///@todo: complete
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}
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void TestAmdaFuzzing::testFuzzing()
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{
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QFETCH(Properties, properties);
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auto &variableController = sqpApp->variableController();
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auto &timeController = sqpApp->timeController();
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FuzzingTest test{variableController, properties};
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test.execute();
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}
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int main(int argc, char *argv[])
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{
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QLoggingCategory::setFilterRules(
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"*.warning=false\n"
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"*.info=false\n"
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"*.debug=false\n"
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"FuzzingOperations.info=true\n"
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"TestAmdaFuzzing.info=true\n");
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SqpApplication app{argc, argv};
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app.setAttribute(Qt::AA_Use96Dpi, true);
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TestAmdaFuzzing testObject{};
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QTEST_SET_MAIN_SOURCE_PATH
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return QTest::qExec(&testObject, argc, argv);
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}
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#include "TestAmdaFuzzing.moc"
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