TEST_F(BCLFixture, PatApplicationMeasures) { std::vector<BCLMeasure> patApplicationMeasures = BCLMeasure::patApplicationMeasures(); ASSERT_EQ(4u, patApplicationMeasures.size()); bool filesUpdated; bool xmlUpdated; BCLMeasure alternativeModelMeasure = BCLMeasure::alternativeModelMeasure(); filesUpdated = alternativeModelMeasure.checkForUpdatesFiles(); ASSERT_FALSE(filesUpdated); // DLM: comment out to update built in PAT measures xmlUpdated = alternativeModelMeasure.checkForUpdatesXML(); ASSERT_FALSE(xmlUpdated); // DLM: comment out to update built in PAT measures if (filesUpdated || xmlUpdated){ alternativeModelMeasure.save(); } BCLMeasure reportRequestMeasure = BCLMeasure::reportRequestMeasure(); filesUpdated = reportRequestMeasure.checkForUpdatesFiles(); ASSERT_FALSE(filesUpdated); // DLM: comment out to update built in PAT measures xmlUpdated = reportRequestMeasure.checkForUpdatesXML(); ASSERT_FALSE(xmlUpdated); // DLM: comment out to update built in PAT measures if (filesUpdated || xmlUpdated){ reportRequestMeasure.save(); } BCLMeasure standardReportMeasure = BCLMeasure::standardReportMeasure(); filesUpdated = standardReportMeasure.checkForUpdatesFiles(); ASSERT_FALSE(filesUpdated); // DLM: comment out to update built in PAT measures xmlUpdated = standardReportMeasure.checkForUpdatesXML(); ASSERT_FALSE(xmlUpdated); // DLM: comment out to update built in PAT measures if (filesUpdated || xmlUpdated){ standardReportMeasure.save(); } BCLMeasure calibrationReportMeasure = BCLMeasure::calibrationReportMeasure(); filesUpdated = calibrationReportMeasure.checkForUpdatesFiles(); ASSERT_FALSE(filesUpdated); // DLM: comment out to update built in PAT measures xmlUpdated = calibrationReportMeasure.checkForUpdatesXML(); ASSERT_FALSE(xmlUpdated); // DLM: comment out to update built in PAT measures if (filesUpdated || xmlUpdated){ calibrationReportMeasure.save(); } }
TEST_F(ProjectFixture, RubyMeasureRecord_BCLMeasure) { // Construct problem with RubyMeasure that points to BCLMeasure Problem problem("Problem",VariableVector(),runmanager::Workflow()); MeasureGroup dvar("Variable",MeasureVector()); problem.push(dvar); openstudio::path measuresPath = resourcesPath() / toPath("/utilities/BCL/Measures"); openstudio::path dir = measuresPath / toPath("SetWindowToWallRatioByFacade"); BCLMeasure measure = BCLMeasure::load(dir).get(); RubyMeasure rpert(measure); dvar.push(rpert); OSArgument arg = OSArgument::makeDoubleArgument("wwr"); arg.setValue(0.4); rpert.setArgument(arg); arg = OSArgument::makeIntegerArgument("typo_arg"); arg.setDefaultValue(1); rpert.setArgument(arg); // Serialize to database { ProjectDatabase database = getCleanDatabase("RubyMeasureRecord_BCLMeasure"); bool didStartTransaction = database.startTransaction(); EXPECT_TRUE(didStartTransaction); // Problem Record ProblemRecord problemRecord = ProblemRecord::factoryFromProblem(problem,database); database.save(); if (didStartTransaction) { EXPECT_TRUE(database.commitTransaction()); } } // Re-open database, de-serialize, verify that RubyMeasure is intact. openstudio::path tempDir1 = measuresPath / toPath(toString(createUUID())); { ProjectDatabase database = getExistingDatabase("RubyMeasureRecord_BCLMeasure"); ASSERT_EQ(1u,ProblemRecord::getProblemRecords(database).size()); ASSERT_EQ(1u,MeasureGroupRecord::getMeasureGroupRecords(database).size()); EXPECT_EQ(1u,RubyMeasureRecord::getRubyMeasureRecords(database).size()); MeasureRecordVector dprs = MeasureGroupRecord::getMeasureGroupRecords(database)[0].measureRecords(false); ASSERT_EQ(1u,dprs.size()); ASSERT_TRUE(dprs[0].optionalCast<RubyMeasureRecord>()); RubyMeasureRecord rpr = dprs[0].cast<RubyMeasureRecord>(); RubyMeasure rp = rpr.rubyMeasure(); EXPECT_TRUE(rp.usesBCLMeasure()); EXPECT_TRUE(rp.measure()); EXPECT_EQ(dir,rp.measureDirectory()); EXPECT_EQ(measure.uuid(),rp.measureUUID()); EXPECT_EQ(measure.versionUUID(),rp.measureVersionUUID()); EXPECT_ANY_THROW(rp.perturbationScript()); EXPECT_EQ(2u,rp.arguments().size()); EXPECT_FALSE(rp.hasIncompleteArguments()); // Update measure and save BCLMeasure newVersion = measure.clone(tempDir1).get(); newVersion.setDescription("Window to wall ratio with sill height configurable."); newVersion.save(); EXPECT_NE(measure.versionUUID(),newVersion.versionUUID()); OSArgumentVector args; args.push_back(OSArgument::makeDoubleArgument("wwr")); args.push_back(OSArgument::makeDoubleArgument("sillHeight")); Problem problemCopy = ProblemRecord::getProblemRecords(database)[0].problem(); problemCopy.updateMeasure(newVersion,args,false); bool didStartTransaction = database.startTransaction(); EXPECT_TRUE(didStartTransaction); // Problem Record ProblemRecord problemRecord = ProblemRecord::factoryFromProblem(problemCopy,database); database.save(); if (didStartTransaction) { EXPECT_TRUE(database.commitTransaction()); } } // Re-open database, check that old argument records are gone, check that de-serialized object ok openstudio::path tempDir2 = measuresPath / toPath(toString(createUUID())); { ProjectDatabase database = getExistingDatabase("RubyMeasureRecord_BCLMeasure"); ASSERT_EQ(1u,ProblemRecord::getProblemRecords(database).size()); EXPECT_EQ(1u,MeasureGroupRecord::getMeasureGroupRecords(database).size()); EXPECT_EQ(1u,RubyMeasureRecord::getRubyMeasureRecords(database).size()); EXPECT_EQ(1u,FileReferenceRecord::getFileReferenceRecords(database).size()); EXPECT_EQ(2u,OSArgumentRecord::getOSArgumentRecords(database).size()); Problem problemCopy = ProblemRecord::getProblemRecords(database)[0].problem(); InputVariableVector vars = problemCopy.variables(); ASSERT_FALSE(vars.empty()); ASSERT_TRUE(vars[0].optionalCast<MeasureGroup>()); MeasureVector dps = vars[0].cast<MeasureGroup>().measures(false); ASSERT_FALSE(dps.empty()); ASSERT_TRUE(dps[0].optionalCast<RubyMeasure>()); RubyMeasure rp = dps[0].cast<RubyMeasure>(); EXPECT_TRUE(rp.usesBCLMeasure()); EXPECT_TRUE(rp.measure()); EXPECT_EQ(tempDir1,rp.measureDirectory()); EXPECT_EQ(measure.uuid(),rp.measureUUID()); EXPECT_NE(measure.versionUUID(),rp.measureVersionUUID()); EXPECT_ANY_THROW(rp.perturbationScript()); ASSERT_EQ(2u,rp.arguments().size()); EXPECT_TRUE(rp.hasIncompleteArguments()); EXPECT_EQ("wwr",rp.arguments()[0].name()); ASSERT_EQ(1u,rp.incompleteArguments().size()); EXPECT_EQ("sillHeight",rp.incompleteArguments()[0].name()); // Set to different measure BCLMeasure measure2 = measure.clone(tempDir2).get(); measure2.changeUID(); measure2.incrementVersionId(); measure2.save(); measure2 = BCLMeasure::load(tempDir2).get(); EXPECT_NE(measure.uuid(),measure2.uuid()); EXPECT_NE(measure.versionUUID(),measure2.versionUUID()); rp.setMeasure(measure2); EXPECT_TRUE(rp.isDirty()); EXPECT_TRUE(problemCopy.isDirty()); bool didStartTransaction = database.startTransaction(); EXPECT_TRUE(didStartTransaction); // Problem Record ProblemRecord problemRecord = ProblemRecord::factoryFromProblem(problemCopy,database); database.save(); if (didStartTransaction) { EXPECT_TRUE(database.commitTransaction()); } } // Re-open database, check that old measure and all argument records are gone { ProjectDatabase database = getExistingDatabase("RubyMeasureRecord_BCLMeasure"); ASSERT_EQ(1u,ProblemRecord::getProblemRecords(database).size()); EXPECT_EQ(1u,MeasureGroupRecord::getMeasureGroupRecords(database).size()); EXPECT_EQ(1u,RubyMeasureRecord::getRubyMeasureRecords(database).size()); EXPECT_EQ(1u,FileReferenceRecord::getFileReferenceRecords(database).size()); EXPECT_EQ(0u,OSArgumentRecord::getOSArgumentRecords(database).size()); Problem problemCopy = ProblemRecord::getProblemRecords(database)[0].problem(); InputVariableVector vars = problemCopy.variables(); ASSERT_FALSE(vars.empty()); ASSERT_TRUE(vars[0].optionalCast<MeasureGroup>()); MeasureVector dps = vars[0].cast<MeasureGroup>().measures(false); ASSERT_FALSE(dps.empty()); ASSERT_TRUE(dps[0].optionalCast<RubyMeasure>()); RubyMeasure rp = dps[0].cast<RubyMeasure>(); EXPECT_TRUE(rp.usesBCLMeasure()); EXPECT_TRUE(rp.measure()); EXPECT_EQ(tempDir2,rp.measureDirectory()); EXPECT_NE(measure.uuid(),rp.measureUUID()); EXPECT_NE(measure.versionUUID(),rp.measureVersionUUID()); EXPECT_ANY_THROW(rp.perturbationScript()); ASSERT_EQ(0u,rp.arguments().size()); EXPECT_FALSE(rp.hasIncompleteArguments()); } boost::filesystem::remove_all(tempDir1); boost::filesystem::remove_all(tempDir2); }
TEST_F(AnalysisDriverFixture,SimpleProject_UpdateMeasure) { // create a new project SimpleProject project = getCleanSimpleProject("SimpleProject_UpdateMeasure"); Problem problem = project.analysis().problem(); // insert a measure into the project, extract and register its arguments openstudio::path measuresDir = resourcesPath() / toPath("/utilities/BCL/Measures"); openstudio::path dir = measuresDir / toPath("SetWindowToWallRatioByFacade"); BCLMeasure measure = BCLMeasure::load(dir).get(); BCLMeasure projectMeasure = project.insertMeasure(measure); OSArgumentVector args = argumentGetter->getArguments(projectMeasure, project.seedModel(), project.seedIdf()); project.registerArguments(projectMeasure,args); EXPECT_EQ(1u,project.measures().size()); // use the measure to create a new variable/ruby measure MeasureGroup dv("New Measure Group",MeasureVector()); EXPECT_TRUE(problem.push(dv)); RubyMeasure rp(projectMeasure); rp.setArguments(args); EXPECT_TRUE(dv.push(rp)); EXPECT_EQ(args.size(),rp.arguments().size()); EXPECT_TRUE(rp.hasIncompleteArguments()); BOOST_FOREACH(const OSArgument& arg,args) { if (arg.name() == "wwr") { OSArgument temp = arg.clone(); temp.setValue(0.6); rp.setArgument(temp); } if (arg.name() == "sillHeight") { OSArgument temp = arg.clone(); temp.setValue(1.0); rp.setArgument(temp); } if (arg.name() == "facade") { OSArgument temp = arg.clone(); temp.setValue("South"); rp.setArgument(temp); } } EXPECT_FALSE(rp.hasIncompleteArguments()); openstudio::path tempDir = measuresDir / toPath(toString(createUUID())); { // create fake new version of the measure BCLMeasure newVersion = measure.clone(tempDir).get(); newVersion.incrementVersionId(); newVersion.save(); OSArgumentVector newArgs = args; newArgs.push_back(OSArgument::makeDoubleArgument("frame_width")); // update the measure project.updateMeasure(newVersion,newArgs); // verify the final state of SimpleProject and RubyMeasure EXPECT_EQ(1u,project.measures().size()); BCLMeasure retrievedMeasure = project.getMeasureByUUID(measure.uuid()).get(); EXPECT_NE(measure.versionUUID(),retrievedMeasure.versionUUID()); EXPECT_EQ(newVersion.versionUUID(),retrievedMeasure.versionUUID()); ASSERT_TRUE(project.hasStoredArguments(retrievedMeasure)); OSArgumentVector retrievedArgs = project.getStoredArguments(retrievedMeasure); EXPECT_EQ(args.size() + 1u,retrievedArgs.size()); EXPECT_EQ(retrievedArgs.size(),rp.arguments().size()); EXPECT_TRUE(rp.hasIncompleteArguments()); } boost::filesystem::remove_all(tempDir); }
TEST_F(AnalysisFixture, RubyPerturbation_BCLMeasure) { // construct openstudio::path measuresPath = resourcesPath() / toPath("/utilities/BCL/Measures"); openstudio::path dir = measuresPath / toPath("SetWindowToWallRatioByFacade"); BCLMeasure measure = BCLMeasure::load(dir).get(); RubyPerturbation perturbation(measure); EXPECT_TRUE(perturbation.usesBCLMeasure()); ASSERT_TRUE(perturbation.measure()); EXPECT_TRUE(perturbation.measure().get() == measure); EXPECT_EQ(dir,perturbation.measureDirectory()); EXPECT_TRUE(measure.uuid() == perturbation.measureUUID()); EXPECT_TRUE(measure.versionUUID() == perturbation.measureVersionUUID()); EXPECT_ANY_THROW(perturbation.perturbationScript()); // isUserScript value is ignored in this case EXPECT_TRUE(perturbation.arguments().empty()); EXPECT_FALSE(perturbation.hasIncompleteArguments()); // add arguments to fill in OSArgumentVector args; args.push_back(OSArgument::makeDoubleArgument("wwr")); args.push_back(OSArgument::makeDoubleArgument("sillHeight")); perturbation.setArguments(args); // verify that arguments are incomplete EXPECT_EQ(2u,perturbation.incompleteArguments().size()); // fill in argument values OSArgument arg = OSArgument::makeDoubleArgument("wwr"); EXPECT_TRUE(arg.setValue(0.8)); perturbation.setArgument(arg); EXPECT_EQ(2u,perturbation.arguments().size()); EXPECT_EQ(1u,perturbation.incompleteArguments().size()); EXPECT_TRUE(perturbation.hasIncompleteArguments()); arg = OSArgument::makeDoubleArgument("sillHeight"); arg.setValue("0.1"); perturbation.setArgument(arg); EXPECT_EQ(2u,perturbation.arguments().size()); EXPECT_EQ(0u,perturbation.incompleteArguments().size()); EXPECT_FALSE(perturbation.hasIncompleteArguments()); // update measure openstudio::path tempDir = measuresPath / toPath(toString(createUUID())); { BCLMeasure newVersion = measure.clone(tempDir).get(); newVersion.setDescription("Window to wall ratio by wwr and offset."); newVersion.save(); EXPECT_TRUE(newVersion.uuid() == measure.uuid()); EXPECT_FALSE(newVersion.versionUUID() == measure.versionUUID()); args.pop_back(); args.push_back(OSArgument::makeDoubleArgument("offset")); perturbation.updateMeasure(newVersion,args); EXPECT_TRUE(perturbation.usesBCLMeasure()); ASSERT_TRUE(perturbation.measure()); EXPECT_TRUE(perturbation.measure().get() == newVersion); EXPECT_EQ(tempDir,perturbation.measureDirectory()); EXPECT_TRUE(newVersion.uuid() == perturbation.measureUUID()); EXPECT_TRUE(newVersion.versionUUID() == perturbation.measureVersionUUID()); EXPECT_ANY_THROW(perturbation.perturbationScript()); // verify that arguments updated correctly, values retained EXPECT_EQ(2u,perturbation.arguments().size()); ASSERT_EQ(1u,perturbation.incompleteArguments().size()); EXPECT_TRUE(perturbation.hasIncompleteArguments()); EXPECT_EQ("offset",perturbation.incompleteArguments()[0].name()); EXPECT_EQ("wwr",perturbation.arguments()[0].name()); EXPECT_EQ(0.8,perturbation.arguments()[0].valueAsDouble()); // set measure and verify that arguments cleared perturbation.setMeasure(newVersion); // always goes through setting motions, even if same EXPECT_TRUE(perturbation.usesBCLMeasure()); ASSERT_TRUE(perturbation.measure()); EXPECT_TRUE(perturbation.measure().get() == newVersion); EXPECT_EQ(tempDir,perturbation.measureDirectory()); EXPECT_TRUE(newVersion.uuid() == perturbation.measureUUID()); EXPECT_TRUE(newVersion.versionUUID() == perturbation.measureVersionUUID()); EXPECT_ANY_THROW(perturbation.perturbationScript()); // isUserScript value is ignored in this case EXPECT_TRUE(perturbation.arguments().empty()); EXPECT_FALSE(perturbation.hasIncompleteArguments()); } boost::filesystem::remove_all(tempDir); }