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DataFormats/EcalRecHit/test/testEcalUncalibratedRecHit.cppunit.cc
267 строк
15 KB
Cms Build
Clang-Format
03 июн 2019, 06:38
03 июн 2019, 06:38
0f65aee
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/* Unit test for EcalUncalibratedRecHit Konstantinos Theofilatos', Oct 2011 */ #include <cppunit/extensions/HelperMacros.h> #include "DataFormats/EcalRecHit/interface/EcalRecHit.h" #include "DataFormats/EcalRecHit/interface/EcalUncalibratedRecHit.h" #include "DataFormats/EcalDetId/interface/EBDetId.h" class testEcalUncalibratedRecHit : public CppUnit::TestFixture { CPPUNIT_TEST_SUITE(testEcalUncalibratedRecHit); CPPUNIT_TEST(testOne); CPPUNIT_TEST_SUITE_END(); public: void setUp() {} void tearDown() {} void print(uint32_t k) { for (int i = 31; i >= 0; i--) { std::cout << (((0x1 << i) & k) != 0); } std::cout << std::endl; } void testOne(); }; ///registration of the test so that the runner can find it CPPUNIT_TEST_SUITE_REGISTRATION(testEcalUncalibratedRecHit); void testEcalUncalibratedRecHit::testOne() { std::cout << std::endl; std::cout << "testing the EcalUncalibratedRecHit " << std::endl; EcalUncalibratedRecHit urh; std::cout << "initial status" << std::endl; print(urh.flags()); urh.setAmplitude(17.3); CPPUNIT_ASSERT(urh.amplitude() == (float)17.3); urh.setAmplitudeError(1.3); CPPUNIT_ASSERT(urh.amplitudeError() == (float)1.3); urh.setPedestal(12.35); CPPUNIT_ASSERT(urh.pedestal() == (float)12.35); urh.setJitter(3.35); CPPUNIT_ASSERT(urh.jitter() == (float)3.35); urh.setChi2(12.35); CPPUNIT_ASSERT(urh.chi2() == (float)12.35); const unsigned int nsample = EcalDataFrame::MAXSAMPLES; for (unsigned int ibx = 0; ibx < nsample; ++ibx) { urh.setOutOfTimeAmplitude(ibx, 11.2 + ibx); CPPUNIT_ASSERT(urh.outOfTimeAmplitude(ibx) == (float)(11.2 + ibx)); } print(urh.flags()); std::cout << "start setting flagBits" << std::endl; print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kHasSwitchToGain6" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kHasSwitchToGain6); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain6) = " << urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain6) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain6)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kPoorReco" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kPoorReco); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kHasSwitchToGain1" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kHasSwitchToGain1); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain1) = " << urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain1) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kHasSwitchToGain1)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kOutOfTime" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kOutOfTime); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kGood" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kGood); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kLeadingEdgeRecovered" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kLeadingEdgeRecovered); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); CPPUNIT_ASSERT(!urh.isSaturated()); std::cout << "setting EcalUncalibratedRecHit::kSaturated" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kSaturated); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); CPPUNIT_ASSERT(urh.isSaturated()); std::cout << "setting EcalUncalibratedRecHit::kOutOfTime" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kOutOfTime); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kPoorReco" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kPoorReco); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); std::cout << "setting EcalUncalibratedRecHit::kGood" << std::endl; urh.setFlagBit(EcalUncalibratedRecHit::kGood); // print(urh.flags()); std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kGood) = " << urh.checkFlag(EcalUncalibratedRecHit::kGood) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) = " << urh.checkFlag(EcalUncalibratedRecHit::kPoorReco) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kSaturated) = " << urh.checkFlag(EcalUncalibratedRecHit::kSaturated) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) = " << urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime) << std::endl; std::cout << "urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) = " << urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered) << std::endl; CPPUNIT_ASSERT(urh.checkFlag(EcalUncalibratedRecHit::kGood)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kPoorReco)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kSaturated)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kOutOfTime)); CPPUNIT_ASSERT(!urh.checkFlag(EcalUncalibratedRecHit::kLeadingEdgeRecovered)); }