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#include "FWCore/Framework/interface/FileBlock.h"
#include "FWCore/Framework/interface/one/OutputModule.h"
#include "FWCore/Framework/interface/MakerMacros.h"
#include "FWCore/Framework/interface/ProcessBlockForOutput.h"
#include "FWCore/ParameterSet/interface/ConfigurationDescriptions.h"
#include "FWCore/ParameterSet/interface/ParameterSet.h"
#include "FWCore/ParameterSet/interface/ParameterSetDescription.h"
#include "FWCore/MessageLogger/interface/MessageLogger.h"
#include "FWCore/Framework/interface/RunForOutput.h"
#include "FWCore/Utilities/interface/Exception.h"
#include "TTree.h"
#include <memory>
#include <string>
#include <vector>
constexpr unsigned int kDoNotTest = 0xffffffff;
namespace edm {
class TestOneOutput : public one::OutputModule<WatchInputFiles, RunCache<int>, LuminosityBlockCache<int>> {
public:
explicit TestOneOutput(ParameterSet const& pset);
~TestOneOutput() override;
static void fillDescriptions(ConfigurationDescriptions& descriptions);
private:
void write(EventForOutput const& e) override;
void writeLuminosityBlock(LuminosityBlockForOutput const&) override;
void writeRun(RunForOutput const&) override;
void writeProcessBlock(ProcessBlockForOutput const&) override;
void respondToOpenInputFile(FileBlock const&) override;
void respondToCloseInputFile(FileBlock const&) override;
void testFileBlock(FileBlock const&);
std::shared_ptr<int> globalBeginRun(RunForOutput const&) const override;
void globalEndRun(RunForOutput const&) override;
std::shared_ptr<int> globalBeginLuminosityBlock(LuminosityBlockForOutput const&) const override;
void globalEndLuminosityBlock(LuminosityBlockForOutput const&) override;
void endJob() override;
bool verbose_;
std::vector<std::string> expectedProcessesWithProcessBlockProducts_;
std::vector<std::string> expectedTopProcessesWithProcessBlockProducts_;
std::vector<std::string> expectedAddedProcesses_;
std::vector<std::string> expectedTopAddedProcesses_;
std::vector<unsigned int> expectedTopCacheIndices0_;
std::vector<unsigned int> expectedTopCacheIndices1_;
std::vector<unsigned int> expectedTopCacheIndices2_;
std::vector<std::string> expectedProcessNamesAtWrite_;
int expectedWriteProcessBlockTransitions_;
unsigned int countWriteProcessBlockTransitions_ = 0;
unsigned int countInputFiles_ = 0;
bool requireNullTTreesInFileBlock_;
bool testTTreesInFileBlock_;
std::vector<unsigned int> expectedCacheIndexSize_;
unsigned int expectedProcessesInFirstFile_;
std::vector<unsigned int> expectedCacheIndexVectorsPerFile_;
std::vector<unsigned int> expectedNEntries0_;
std::vector<unsigned int> expectedNEntries1_;
std::vector<unsigned int> expectedNEntries2_;
std::vector<unsigned int> expectedCacheEntriesPerFile0_;
std::vector<unsigned int> expectedCacheEntriesPerFile1_;
std::vector<unsigned int> expectedCacheEntriesPerFile2_;
std::vector<unsigned int> expectedOuterOffset_;
std::vector<unsigned int> expectedTranslateFromStoredIndex_;
unsigned int expectedNAddedProcesses_;
bool expectedProductsFromInputKept_;
};
TestOneOutput::TestOneOutput(ParameterSet const& pset)
: one::OutputModuleBase(pset),
one::OutputModule<WatchInputFiles, RunCache<int>, LuminosityBlockCache<int>>(pset),
verbose_(pset.getUntrackedParameter<bool>("verbose")),
expectedProcessesWithProcessBlockProducts_(
pset.getUntrackedParameter<std::vector<std::string>>("expectedProcessesWithProcessBlockProducts")),
expectedTopProcessesWithProcessBlockProducts_(
pset.getUntrackedParameter<std::vector<std::string>>("expectedTopProcessesWithProcessBlockProducts")),
expectedAddedProcesses_(pset.getUntrackedParameter<std::vector<std::string>>("expectedAddedProcesses")),
expectedTopAddedProcesses_(pset.getUntrackedParameter<std::vector<std::string>>("expectedTopAddedProcesses")),
expectedTopCacheIndices0_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedTopCacheIndices0")),
expectedTopCacheIndices1_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedTopCacheIndices1")),
expectedTopCacheIndices2_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedTopCacheIndices2")),
expectedProcessNamesAtWrite_(
pset.getUntrackedParameter<std::vector<std::string>>("expectedProcessNamesAtWrite")),
expectedWriteProcessBlockTransitions_(pset.getUntrackedParameter<int>("expectedWriteProcessBlockTransitions")),
requireNullTTreesInFileBlock_(pset.getUntrackedParameter<bool>("requireNullTTreesInFileBlock")),
testTTreesInFileBlock_(pset.getUntrackedParameter<bool>("testTTreesInFileBlock")),
expectedCacheIndexSize_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedCacheIndexSize")),
expectedProcessesInFirstFile_(pset.getUntrackedParameter<unsigned int>("expectedProcessesInFirstFile")),
expectedCacheIndexVectorsPerFile_(
pset.getUntrackedParameter<std::vector<unsigned int>>("expectedCacheIndexVectorsPerFile")),
expectedNEntries0_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedNEntries0")),
expectedNEntries1_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedNEntries1")),
expectedNEntries2_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedNEntries2")),
expectedCacheEntriesPerFile0_(
pset.getUntrackedParameter<std::vector<unsigned int>>("expectedCacheEntriesPerFile0")),
expectedCacheEntriesPerFile1_(
pset.getUntrackedParameter<std::vector<unsigned int>>("expectedCacheEntriesPerFile1")),
expectedCacheEntriesPerFile2_(
pset.getUntrackedParameter<std::vector<unsigned int>>("expectedCacheEntriesPerFile2")),
expectedOuterOffset_(pset.getUntrackedParameter<std::vector<unsigned int>>("expectedOuterOffset")),
expectedTranslateFromStoredIndex_(
pset.getUntrackedParameter<std::vector<unsigned int>>("expectedTranslateFromStoredIndex")),
expectedNAddedProcesses_(pset.getUntrackedParameter<unsigned int>("expectedNAddedProcesses")),
expectedProductsFromInputKept_(pset.getUntrackedParameter<bool>("expectedProductsFromInputKept")) {}
TestOneOutput::~TestOneOutput() {}
void TestOneOutput::write(EventForOutput const& e) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one write event";
}
}
void TestOneOutput::writeLuminosityBlock(LuminosityBlockForOutput const&) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one writeLuminosityBlock";
}
}
void TestOneOutput::writeRun(RunForOutput const&) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one writeRun";
}
}
void TestOneOutput::writeProcessBlock(ProcessBlockForOutput const& pb) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one writeProcessBlock";
}
if (countWriteProcessBlockTransitions_ < expectedProcessNamesAtWrite_.size()) {
if (expectedProcessNamesAtWrite_[countWriteProcessBlockTransitions_] != pb.processName()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected process name";
}
}
if (!expectedProcessesWithProcessBlockProducts_.empty()) {
if (verbose_) {
for (auto const& process : outputProcessBlockHelper().processesWithProcessBlockProducts()) {
LogAbsolute("TestOneOutput") << " " << process;
}
}
if (expectedProcessesWithProcessBlockProducts_ !=
outputProcessBlockHelper().processesWithProcessBlockProducts()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected process name list";
}
}
if (!(!expectedAddedProcesses_.empty() && expectedAddedProcesses_[0] == "DONOTTEST")) {
if (expectedAddedProcesses_ != outputProcessBlockHelper().processBlockHelper()->addedProcesses()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected addedProcesses list";
}
}
if (!(!expectedTopAddedProcesses_.empty() && expectedTopAddedProcesses_[0] == "DONOTTEST")) {
if (expectedTopAddedProcesses_ !=
outputProcessBlockHelper().processBlockHelper()->topProcessBlockHelper()->addedProcesses()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected top addedProcesses list";
}
}
if (!expectedTopProcessesWithProcessBlockProducts_.empty()) {
// Same test as the previous except check the list of names in
// the top level process name list from the EventProcessor
if (expectedTopProcessesWithProcessBlockProducts_ != outputProcessBlockHelper()
.processBlockHelper()
->topProcessBlockHelper()
->topProcessesWithProcessBlockProducts()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected top process name list";
}
// Almost the same as the previous test, should get the same result
if (expectedTopProcessesWithProcessBlockProducts_ !=
outputProcessBlockHelper().processBlockHelper()->topProcessesWithProcessBlockProducts()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected top process name list 2";
}
std::vector<unsigned int> const* expectedTopCacheIndices = nullptr;
if (countInputFiles_ == 1 && !expectedTopCacheIndices0_.empty()) {
expectedTopCacheIndices = &expectedTopCacheIndices0_;
} else if (countInputFiles_ == 2 && !expectedTopCacheIndices1_.empty()) {
expectedTopCacheIndices = &expectedTopCacheIndices1_;
} else if (countInputFiles_ == 3 && !expectedTopCacheIndices2_.empty()) {
expectedTopCacheIndices = &expectedTopCacheIndices2_;
}
if (expectedTopCacheIndices != nullptr) {
unsigned int expectedInputProcesses =
expectedTopProcessesWithProcessBlockProducts_.size() -
outputProcessBlockHelper().processBlockHelper()->topProcessBlockHelper()->addedProcesses().size();
std::vector<std::vector<unsigned int>> const& topProcessBlockCacheIndices =
outputProcessBlockHelper().processBlockHelper()->processBlockCacheIndices();
if (expectedTopCacheIndices->size() != expectedInputProcesses * topProcessBlockCacheIndices.size()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected sizes related to top cache indices on input file "
<< (countInputFiles_ - 1);
}
unsigned int iStored = 0;
for (unsigned int i = 0; i < topProcessBlockCacheIndices.size(); ++i) {
if (topProcessBlockCacheIndices[i].size() != expectedInputProcesses) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected size of inner cache indices vector on input file "
<< (countInputFiles_ - 1);
}
for (unsigned int j = 0; j < topProcessBlockCacheIndices[i].size(); ++j) {
if (topProcessBlockCacheIndices[i][j] != (*expectedTopCacheIndices)[iStored]) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected cache index value on input file "
<< (countInputFiles_ - 1);
}
++iStored;
}
}
}
}
if (expectedProcessesInFirstFile_ != 0) {
if (expectedProcessesInFirstFile_ != outputProcessBlockHelper().processBlockHelper()->nProcessesInFirstFile()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for nProcessesInFirstFile";
}
}
for (unsigned int i = 0; i < expectedCacheIndexVectorsPerFile_.size(); ++i) {
if (i < countInputFiles_) {
if (expectedCacheIndexVectorsPerFile_[i] !=
outputProcessBlockHelper().processBlockHelper()->cacheIndexVectorsPerFile()[i]) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for cacheIndexVectorsPerFile, element " << i;
}
}
}
if (countInputFiles_ >= 1 && !expectedNEntries0_.empty()) {
if (expectedNEntries0_ != outputProcessBlockHelper().processBlockHelper()->nEntries()[0]) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected value for nEntries 0";
}
}
if (countInputFiles_ >= 2 && !expectedNEntries1_.empty()) {
if (expectedNEntries1_ != outputProcessBlockHelper().processBlockHelper()->nEntries()[1]) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected value for nEntries 1";
}
}
if (countInputFiles_ >= 3 && !expectedNEntries2_.empty()) {
if (expectedNEntries2_ != outputProcessBlockHelper().processBlockHelper()->nEntries()[2]) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected value for nEntries 2";
}
}
if (countInputFiles_ == 1 && !expectedCacheEntriesPerFile0_.empty()) {
if (expectedCacheEntriesPerFile0_ != outputProcessBlockHelper().processBlockHelper()->cacheEntriesPerFile()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for cacheEntriesPerFile 0";
}
} else if (countInputFiles_ == 2 && !expectedCacheEntriesPerFile1_.empty()) {
if (expectedCacheEntriesPerFile1_ != outputProcessBlockHelper().processBlockHelper()->cacheEntriesPerFile()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for cacheEntriesPerFile 1";
}
} else if (countInputFiles_ == 3 && !expectedCacheEntriesPerFile2_.empty()) {
if (expectedCacheEntriesPerFile2_ != outputProcessBlockHelper().processBlockHelper()->cacheEntriesPerFile()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for cacheEntriesPerFile 2";
}
}
if (!expectedOuterOffset_.empty() && (countInputFiles_ - 1) < expectedOuterOffset_.size()) {
if (expectedOuterOffset_[countInputFiles_ - 1] !=
outputProcessBlockHelper().processBlockHelper()->outerOffset()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for outerOffset, file " << (countInputFiles_ - 1);
}
}
if (countWriteProcessBlockTransitions_ < expectedCacheIndexSize_.size()) {
if (expectedCacheIndexSize_[countWriteProcessBlockTransitions_] !=
outputProcessBlockHelper().processBlockHelper()->processBlockCacheIndices().size()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected cache index size "
<< outputProcessBlockHelper().processBlockHelper()->processBlockCacheIndices().size();
}
}
if (!expectedTranslateFromStoredIndex_.empty()) {
if (expectedTranslateFromStoredIndex_ != outputProcessBlockHelper().translateFromStoredIndex()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for translateFromStoredIndex";
}
}
if (expectedNAddedProcesses_ != kDoNotTest) {
if (expectedNAddedProcesses_ != outputProcessBlockHelper().nAddedProcesses()) {
throw cms::Exception("TestFailure") << "TestOneOutput::writeProcessBlock unexpected value for nAddedProcesses";
}
}
if (expectedProductsFromInputKept_ != outputProcessBlockHelper().productsFromInputKept()) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected value for productsFromInputKept";
}
++countWriteProcessBlockTransitions_;
}
void TestOneOutput::respondToOpenInputFile(FileBlock const& fb) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one respondToOpenInputFile";
}
testFileBlock(fb);
++countInputFiles_;
}
void TestOneOutput::respondToCloseInputFile(FileBlock const& fb) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one respondToCloseInputFile";
}
testFileBlock(fb);
}
void TestOneOutput::testFileBlock(FileBlock const& fb) {
if (requireNullTTreesInFileBlock_) {
if (fb.tree() != nullptr || fb.lumiTree() != nullptr || fb.runTree() != nullptr ||
!fb.processBlockTrees().empty() || !fb.processesWithProcessBlockTrees().empty() ||
fb.processBlockTree(std::string("DoesNotExist")) != nullptr) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::respondToOpenInputFile expected null TTree pointers in FileBlock";
}
} else if (testTTreesInFileBlock_) {
if (fb.tree() == nullptr || std::string("Events") != fb.tree()->GetName() ||
std::string("LuminosityBlocks") != fb.lumiTree()->GetName() ||
std::string("Runs") != fb.runTree()->GetName() || fb.processesWithProcessBlockTrees().size() != 2 ||
fb.processesWithProcessBlockTrees()[0] != "PROD1" || fb.processesWithProcessBlockTrees()[1] != "MERGE" ||
fb.processBlockTrees().size() != 2 ||
std::string("ProcessBlocksPROD1") != fb.processBlockTrees()[0]->GetName() ||
std::string("ProcessBlocksMERGE") != fb.processBlockTrees()[1]->GetName() ||
std::string("ProcessBlocksPROD1") != fb.processBlockTree("PROD1")->GetName() ||
std::string("ProcessBlocksMERGE") != fb.processBlockTree("MERGE")->GetName() ||
fb.processBlockTree("DOESNOTEXIST") != nullptr) {
throw cms::Exception("TestFailure") << "TestOneOutput::testFileBlock failed. Testing tree pointers";
}
}
}
std::shared_ptr<int> TestOneOutput::globalBeginRun(RunForOutput const& iRun) const {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one globalBeginRun";
for (auto const& it : iRun.productRegistry().productList()) {
LogAbsolute("TestOneOutput") << it.second;
}
}
return std::make_shared<int>(0);
}
void TestOneOutput::globalEndRun(RunForOutput const&) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one globalEndRun";
}
}
std::shared_ptr<int> TestOneOutput::globalBeginLuminosityBlock(LuminosityBlockForOutput const&) const {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one globalBeginLuminosityBlock";
}
return std::make_shared<int>(0);
}
void TestOneOutput::globalEndLuminosityBlock(LuminosityBlockForOutput const&) {
if (verbose_) {
LogAbsolute("TestOneOutput") << "one globalEndLuminosityBlock";
}
}
void TestOneOutput::endJob() {
if (expectedWriteProcessBlockTransitions_ >= 0) {
if (static_cast<unsigned int>(expectedWriteProcessBlockTransitions_) != countWriteProcessBlockTransitions_) {
throw cms::Exception("TestFailure")
<< "TestOneOutput::writeProcessBlock unexpected number of writeProcessBlock transitions";
}
}
}
void TestOneOutput::fillDescriptions(ConfigurationDescriptions& descriptions) {
ParameterSetDescription desc;
OutputModule::fillDescription(desc);
desc.addUntracked<bool>("verbose", true);
desc.addUntracked<std::vector<std::string>>("expectedProcessesWithProcessBlockProducts",
std::vector<std::string>());
desc.addUntracked<std::vector<std::string>>("expectedTopProcessesWithProcessBlockProducts",
std::vector<std::string>());
desc.addUntracked<std::vector<std::string>>("expectedAddedProcesses",
std::vector<std::string>(1, std::string("DONOTTEST")));
desc.addUntracked<std::vector<std::string>>("expectedTopAddedProcesses",
std::vector<std::string>(1, std::string("DONOTTEST")));
desc.addUntracked<std::vector<unsigned int>>("expectedTopCacheIndices0", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedTopCacheIndices1", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedTopCacheIndices2", std::vector<unsigned int>());
desc.addUntracked<std::vector<std::string>>("expectedProcessNamesAtWrite", std::vector<std::string>());
desc.addUntracked<int>("expectedWriteProcessBlockTransitions", -1);
desc.addUntracked<bool>("requireNullTTreesInFileBlock", false);
desc.addUntracked<bool>("testTTreesInFileBlock", false);
desc.addUntracked<std::vector<unsigned int>>("expectedCacheIndexSize", std::vector<unsigned int>());
desc.addUntracked<unsigned int>("expectedProcessesInFirstFile", 0);
desc.addUntracked<std::vector<unsigned int>>("expectedCacheIndexVectorsPerFile", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedNEntries0", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedNEntries1", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedNEntries2", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedCacheEntriesPerFile0", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedCacheEntriesPerFile1", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedCacheEntriesPerFile2", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedOuterOffset", std::vector<unsigned int>());
desc.addUntracked<std::vector<unsigned int>>("expectedTranslateFromStoredIndex", std::vector<unsigned int>());
desc.addUntracked<unsigned int>("expectedNAddedProcesses", kDoNotTest);
desc.addUntracked<bool>("expectedProductsFromInputKept", true);
descriptions.addDefault(desc);
}
} // namespace edm
using edm::TestOneOutput;
DEFINE_FWK_MODULE(TestOneOutput);
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