1 #ifndef FWCore_Framework_stream_ProducingModuleAdaptor_h 2 #define FWCore_Framework_stream_ProducingModuleAdaptor_h 41 template <
typename T,
typename M,
typename B>
49 typename T::GlobalCache
const*
dummy =
nullptr;
51 typename T::InputProcessBlockCache
const* dummyInputProcessBlockCacheImpl =
nullptr;
62 return T::HasAbility::kWatchProcessBlock
or T::HasAbility::kBeginProcessBlockProducer
or 63 T::HasAbility::kEndProcessBlockProducer;
72 T::HasAbility::kBeginLuminosityBlockProducer
or T::HasAbility::kEndLuminosityBlockProducer;
95 this->createStreamModules([
this](
unsigned int iStreamModule) -> M* {
129 if constexpr (T::HasAbility::kWatchProcessBlock
or T::HasAbility::kBeginProcessBlockProducer) {
130 ProcessBlock processBlock(pbp, this->moduleDescription(), mcc,
false);
134 if constexpr (T::HasAbility::kBeginProcessBlockProducer) {
137 this->commit(processBlock);
143 if constexpr (T::HasAbility::kInputProcessBlockCache) {
144 ProcessBlock processBlock(pbp, this->moduleDescription(), mcc,
false);
152 if constexpr (T::HasAbility::kWatchProcessBlock
or T::HasAbility::kEndProcessBlockProducer) {
153 ProcessBlock processBlock(pbp, this->moduleDescription(), mcc,
true);
157 if constexpr (T::HasAbility::kEndProcessBlockProducer) {
160 this->commit(processBlock);
168 Run r(rp, this->moduleDescription(), mcc,
false);
171 Run const& cnstR =
r;
191 Run r(rp, this->moduleDescription(), mcc,
true);
213 T::HasAbility::kBeginLuminosityBlockProducer) {
231 if constexpr (T::HasAbility::kBeginLuminosityBlockProducer) {
239 T::HasAbility::kEndLuminosityBlockProducer) {
254 if constexpr (T::HasAbility::kEndLuminosityBlockProducer) {
static void endLuminosityBlock(edm::LuminosityBlock const &Lumi, edm::EventSetup const &iES, typename T::LuminosityBlockContext const *iContext)
static void beginProcessBlock(edm::ProcessBlock const &iProcessBlock, typename T::GlobalCache *iGC)
static void beginRun(edm::Run const &iRun, edm::EventSetup const &iES, typename T::RunContext const *iRC, std::shared_ptr< typename T::RunSummaryCache > &oCache)
void setProducer(ProducerBase const *iProducer)
bool wantsGlobalLuminosityBlocks() const final
void doBeginProcessBlock(ProcessBlockPrincipal const &pbp, ModuleCallingContext const *mcc) final
void setConsumer(EDConsumerBase const *iConsumer)
std::unique_ptr< G > makeInputProcessBlockCacheImpl(G const *)
static void endRun(edm::Run const &iRun, edm::EventSetup const &iES, typename T::RunContext const *iContext)
impl::choose_unique_ptr< typename T::GlobalCache >::type m_global
void selectInputProcessBlocks(ProductRegistry const &productRegistry, ProcessBlockHelperBase const &processBlockHelperBase) final
void doEndLuminosityBlock(LumiTransitionInfo const &info, ModuleCallingContext const *mcc) final
static void beginRun(edm::Run const &iRun, edm::EventSetup const &iES, typename T::GlobalCache const *iGC, std::shared_ptr< typename T::RunCache const > &oCache)
static void produce(edm::LuminosityBlock &Lumi, edm::EventSetup const &iES, typename T::LuminosityBlockContext const *iRC)
static void produce(edm::LuminosityBlock &, edm::EventSetup const &, typename T::LuminosityBlockContext const *, typename T::LuminosityBlockSummaryCache const *)
void streamEndLuminosityBlockSummary(M *iProd, edm::LuminosityBlock const &iLumi, edm::EventSetup const &iES) final
RunPrincipal const & runPrincipal() const
void doEndProcessBlock(ProcessBlockPrincipal const &pbp, ModuleCallingContext const *mcc) final
void preallocLumis(unsigned int iNLumis) final
impl::choose_mutex< typename T::LuminosityBlockSummaryCache >::type m_lumiSummaryLock
static void prevalidate(ConfigurationDescriptions &descriptions)
void streamEndRunSummary(M *iProd, edm::Run const &iRun, edm::EventSetup const &iES) final
static void streamEndRunSummary(B *iProd, edm::Run const &iRun, edm::EventSetup const &iES, typename T::RunSummaryCache *iCache)
const ProducingModuleAdaptor & operator=(const ProducingModuleAdaptor &)=delete
uint32_t T const *__restrict__ uint32_t const *__restrict__ int32_t int Histo::index_type cudaStream_t stream
void doAccessInputProcessBlock(ProcessBlockPrincipal const &pbp, ModuleCallingContext const *mcc) final
bool hasAccumulator() const final
void doBeginRun(RunTransitionInfo const &info, ModuleCallingContext const *mcc) final
static void set(B *iProd, typename T::RunCache const *iCache)
impl::choose_mutex< typename T::RunSummaryCache >::type m_runSummaryLock
static void produce(edm::ProcessBlock &processBlock, typename T::GlobalCache *globalCache)
void setupStreamModules() final
static void beginLuminosityBlock(edm::LuminosityBlock const &Lumi, edm::EventSetup const &iES, typename T::RunContext const *iRC, std::shared_ptr< typename T::LuminosityBlockCache const > &oCache)
static void beginLuminosityBlock(edm::LuminosityBlock const &Lumi, edm::EventSetup const &iES, typename T::LuminosityBlockContext const *iRC, std::shared_ptr< typename T::LuminosityBlockSummaryCache > &oCache)
static void produce(edm::Run &iRun, edm::EventSetup const &iES, typename T::RunContext const *iRC)
ParameterSet const * m_pset
void setConsumer(EDConsumerBase const *iConsumer)
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e< void, edm::EventID const &, edm::Timestamp const & > We also list in braces which AR_WATCH_USING_METHOD_ is used for those or
impl::choose_shared_vec< typename T::RunSummaryCache >::type m_runSummaries
void doRespondToCloseOutputFile() final
std::unique_ptr< T > type
void doEndRun(RunTransitionInfo const &info, ModuleCallingContext const *mcc) final
impl::choose_shared_vec< typename T::LuminosityBlockSummaryCache >::type m_lumiSummaries
static void set(B *iProd, typename T::LuminosityBlockCache const *iCache)
void setupLuminosityBlock(M *iProd, LuminosityBlockIndex iIndex) final
void setupRun(M *iProd, RunIndex iIndex) final
bool hasAcquire() const final
impl::choose_unique_ptr< typename T::InputProcessBlockCache >::type m_inputProcessBlocks
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
void setProducer(ProducerBase const *iProducer)
static void endJob(typename T::GlobalCache *iCache)
static void streamEndLuminosityBlockSummary(B *iProd, edm::LuminosityBlock const &iLumi, edm::EventSetup const &iES, typename T::LuminosityBlockSummaryCache *iCache)
bool wantsGlobalRuns() const final
static void globalEndRun(edm::Run const &iRun, edm::EventSetup const &iES, typename T::RunContext const *iContext, typename T::RunSummaryCache *iCache)
void setProducer(ProducerBase const *iProducer)
void doBeginLuminosityBlock(LumiTransitionInfo const &info, ModuleCallingContext const *mcc) final
impl::choose_shared_vec< typename T::RunCache const >::type m_runs
bool wantsProcessBlocks() const final
ProducingModuleAdaptor(edm::ParameterSet const &iPSet)
~ProducingModuleAdaptor() override
LuminosityBlockIndex index() const
static void fillDescriptions(ConfigurationDescriptions &descriptions)
static void produce(edm::Run &, edm::EventSetup const &, typename T::RunContext const *, typename T::RunSummaryCache const *)
impl::choose_shared_vec< typename T::LuminosityBlockCache const >::type m_lumis
static void beginJob(typename T::GlobalCache *iCache)
std::vector< std::shared_ptr< T > > type
bool wantsInputProcessBlocks() const final
static void globalEndLuminosityBlock(edm::LuminosityBlock const &Lumi, edm::EventSetup const &iES, typename T::LuminosityBlockContext const *iContext, typename T::LuminosityBlockSummaryCache *iCache)
static void produce(edm::ProcessBlock &processBlock, typename T::GlobalCache *globalCache)
static void set(B *iProd, typename T::GlobalCache const *iCache)
static void endProcessBlock(edm::ProcessBlock const &iProcessBlock, typename T::GlobalCache *iGC)