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FastMonitoringService.h
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1 #ifndef EvFFastMonitoringService_H
2 #define EvFFastMonitoringService_H 1
3 
4 
13 
14 #include "boost/filesystem.hpp"
15 
18 
19 #include <string>
20 #include <vector>
21 #include <map>
22 #include <queue>
23 #include <sstream>
24 #include <unordered_map>
25 
26 /*Description
27  this is an evolution of the MicroStateService intended to be run standalone in cmsRun or similar
28  As such, it has to independently create a monitoring thread and run it in each forked process, which needs
29  to be arranged following the standard CMSSW procedure.
30  We try to use boost threads for uniformity with the rest of the framework, even if they suck a bit.
31  A legenda for use by the monitoring process in the DAQ needs to be generated as soon as convenient - since
32  no access to the EventProcessor is granted, this needs to wait until after beginJob is executed.
33  At the same time, we try to spare time in the monitoring by avoiding even a single string lookup and using the
34  moduledesc pointer to key into the map instead.
35  As a bonus, we can now add to the monitored status the current path (and possibly associate modules to a path...)
36  this intermediate info will be called "ministate" :D
37  The general counters and status variables (event number, number of processed events, number of passed and stored
38  events, luminosity section etc. are also monitored here.
39 
40  NOTA BENE!!! with respect to the MicroStateService, no string or string pointers are used for the microstates.
41  NOTA BENE!!! the state of the edm::EventProcessor cannot be monitored directly from within a service, so a
42  different solution must be identified for that (especially one needs to identify error states).
43  NOTA BENE!!! to keep backward compatibility with the MicroStateService, a common base class with abstract interface,
44  exposing the single method to be used by all other packages (except EventFilter/Processor,
45  which should continue to use the concrete class interface) will be defined
46 
47 */
49 
50 namespace edm {
52 }
53 
54 namespace evf{
55 
57  {
58  struct Encoding
59  {
60  Encoding(unsigned int res): reserved_(res), current_(reserved_), currentReserved_(0)
61  {
62  if (reserved_)
64  // completeReservedWithDummies();
65  }
67  {
68  if (reserved_)
69  delete[] dummiesForReserved_;
70  }
71  //trick: only encode state when sending it over (i.e. every sec)
72  int encode(const void *add){
73  std::unordered_map<const void *, int>::const_iterator it=quickReference_.find(add);
74  return (it!=quickReference_.end()) ? (*it).second : 0;
75  }
76  const void* decode(unsigned int index){return decoder_[index];}
77  void fillReserved(const void* add, unsigned int i){
78  // translation_[*name]=current_;
80  if(decoder_.size()<=i)
81  decoder_.push_back(add);
82  else
84  }
85  void updateReserved(const void* add){
88  }
90  {
91  for(unsigned int i = currentReserved_; i<reserved_; i++)
93  }
94  void update(const void* add){
95  // translation_[*name]=current_;
97  decoder_.push_back(add);
98  current_++;
99  }
100  unsigned int vecsize() {
101  return decoder_.size();
102  }
103  std::unordered_map<const void *,int> quickReference_;
104  std::vector<const void *> decoder_;
105  unsigned int reserved_;
106  int current_;
109  };
110  public:
111 
112  // the names of the states - some of them are never reached in an online app
114  // Reserved names for microstates
115  // moved into base class in EventFilter/Utilities for compatibility with MicroStateServiceClassic
116  static const std::string nopath_;
119  static void fillDescriptions(edm::ConfigurationDescriptions& descriptions);
120 
123 
125  void jobFailure();
127  void postBeginJob();
128  void postEndJob();
129 
134 
139  void prePathEvent(edm::StreamContext const&, edm::PathContext const&);
140  void preEvent(edm::StreamContext const&);
141  void postEvent(edm::StreamContext const&);
149  void setExceptionDetected(unsigned int ls);
150 
151  //this is still needed for use in special functions like DQM which are in turn framework services
154 
155  void accumulateFileSize(unsigned int lumi, unsigned long fileSize);
156  void startedLookingForFile();
157  void stoppedLookingForFile(unsigned int lumi);
158  void reportLockWait(unsigned int ls, double waitTime, unsigned int lockCount);
159  unsigned int getEventsProcessedForLumi(unsigned int lumi, bool * abortFlag=nullptr);
160  bool getAbortFlagForLumi(unsigned int lumi);
161  bool shouldWriteFiles(unsigned int lumi, unsigned int* proc=nullptr)
162  {
163  unsigned int processed = getEventsProcessedForLumi(lumi);
164  if (proc) *proc = processed;
165  return !getAbortFlagForLumi(lumi) && (processed || emptyLumisectionMode_);
166  }
167  std::string getRunDirName() const { return runDirectory_.stem().string(); }
168  void setInputSource(FedRawDataInputSource *inputSource) {inputSource_=inputSource;}
169 
170  private:
171 
172  void doSnapshot(const unsigned int ls, const bool isGlobalEOL);
173 
174  void doStreamEOLSnapshot(const unsigned int ls, const unsigned int streamID) {
175  //pick up only event count here
176  fmt_.jsonMonitor_->snapStreamAtomic(ls,streamID);
177  }
178 
179  void dowork() { // the function to be called in the thread. Thread completes when function returns.
180  monInit_.exchange(true,std::memory_order_acquire);
181  while (!fmt_.m_stoprequest) {
182  edm::LogInfo("FastMonitoringService") << "Current states: Ms=" << fmt_.m_data.fastMacrostateJ_.value()
183  << " ms=" << encPath_[0].encode(ministate_[0])
184  << " us=" << encModule_.encode(microstate_[0]) << std::endl;
185 
186  {
187  std::lock_guard<std::mutex> lock(fmt_.monlock_);
188 
190 
192  std::string CSV = fmt_.jsonMonitor_->getCSVString();
193  //release mutex before writing out fast path file
194  fmt_.monlock_.unlock();
195  if (CSV.size())
196  fmt_.jsonMonitor_->outputCSV(fastPath_,CSV);
197  }
198 
199  snapCounter_++;
200 
201  }
202  ::sleep(sleepTime_);
203  }
204  }
205 
206  //the actual monitoring thread is held by a separate class object for ease of maintenance
209  std::vector<Encoding> encPath_;
211 
212  unsigned int nStreams_;
213  unsigned int nThreads_;
215  unsigned int fastMonIntervals_;
216  unsigned int snapCounter_ = 0;
219 
220  //variables that are used by/monitored by FastMonitoringThread / FastMonitor
221 
222  std::map<unsigned int, timeval> lumiStartTime_;//needed for multiplexed begin/end lumis
223  timeval fileLookStart_, fileLookStop_;//this could also be calculated in the input source
224 
225  unsigned int lastGlobalLumi_;
226  std::queue<unsigned int> lastGlobalLumisClosed_;
228  unsigned int lumiFromSource_;
229 
230  //global state
232 
233  //per stream
234  std::vector<const void*> ministate_;
235  std::vector<const void*> microstate_;
236  std::vector<const void*> threadMicrostate_;
237 
238  //variables measuring source statistics (global)
239  //unordered_map is not used because of very few elements stored concurrently
240  std::map<unsigned int, double> avgLeadTime_;
241  std::map<unsigned int, unsigned int> filesProcessedDuringLumi_;
242  //helpers for source statistics:
243  std::map<unsigned int, unsigned long> accuSize_;
244  std::vector<double> leadTimes_;
245  std::map<unsigned int, std::pair<double,unsigned int>> lockStatsDuringLumi_;
246 
247  //for output module
248  std::map<unsigned int, std::pair<unsigned int,bool>> processedEventsPerLumi_;
249 
250  //flag used to block EOL until event count is picked up by caches (not certain that this is really an issue)
251  //to disable this behavior, set #ATOMIC_LEVEL 0 or 1 in DataPoint.h
252  std::vector<std::atomic<bool>*> streamCounterUpdating_;
253 
254  std::vector<unsigned long> firstEventId_;
255  std::vector<std::atomic<bool>*> collectedPathList_;
256  std::vector<unsigned int> eventCountForPathInit_;
257  std::vector<bool> pathNamesReady_;
258 
260 
261  bool threadIDAvailable_ = false;
262 
263  std::atomic<unsigned long> totalEventsProcessed_;
264 
269  bool pathLegendWritten_ = false;
270  unsigned int nOutputModules_ =0;
271 
272  std::atomic<bool> monInit_;
273  bool exception_detected_ = false;
274  std::vector<unsigned int> exceptionInLS_;
275  bool emptyLumisectionMode_ = false;
276  };
277 
278 }
279 
280 #endif
void prePathEvent(edm::StreamContext const &, edm::PathContext const &)
int i
Definition: DBlmapReader.cc:9
unsigned int getEventsProcessedForLumi(unsigned int lumi, bool *abortFlag=0)
void setExceptionDetected(unsigned int ls)
boost::filesystem::path runDirectory_
void preallocate(edm::service::SystemBounds const &)
std::map< unsigned int, timeval > lumiStartTime_
void preGlobalBeginLumi(edm::GlobalContext const &)
void fillReserved(const void *add, unsigned int i)
std::string getRunDirName() const
void postGlobalEndLumi(edm::GlobalContext const &)
TrainProcessor *const proc
Definition: MVATrainer.cc:101
void postEvent(edm::StreamContext const &)
void accumulateFileSize(unsigned int lumi, unsigned long fileSize)
std::map< unsigned int, unsigned long > accuSize_
tuple lumi
Definition: fjr2json.py:35
std::vector< unsigned int > eventCountForPathInit_
std::vector< std::atomic< bool > * > streamCounterUpdating_
def ls
Definition: eostools.py:348
bool shouldWriteFiles(unsigned int lumi, unsigned int *proc=0)
void add(const std::vector< const T * > &source, std::vector< const T * > &dest)
void doStreamEOLSnapshot(const unsigned int ls, const unsigned int streamID)
std::map< unsigned int, unsigned int > filesProcessedDuringLumi_
void preGlobalEndLumi(edm::GlobalContext const &)
void preGlobalEarlyTermination(edm::GlobalContext const &, edm::TerminationOrigin)
std::vector< bool > pathNamesReady_
void preModuleBeginJob(edm::ModuleDescription const &)
std::vector< std::atomic< bool > * > collectedPathList_
std::queue< unsigned int > lastGlobalLumisClosed_
void preStreamEndLumi(edm::StreamContext const &)
std::map< unsigned int, double > avgLeadTime_
void doSnapshot(const unsigned int ls, const bool isGlobalEOL)
void preStreamEarlyTermination(edm::StreamContext const &, edm::TerminationOrigin)
std::unique_ptr< jsoncollector::FastMonitor > jsonMonitor_
static const std::string nopath_
std::vector< const void * > threadMicrostate_
std::unordered_map< const void *, int > quickReference_
std::map< unsigned int, std::pair< double, unsigned int > > lockStatsDuringLumi_
std::vector< unsigned long > firstEventId_
static const std::string macroStateNames[FastMonitoringThread::MCOUNT]
void postModuleEvent(edm::StreamContext const &, edm::ModuleCallingContext const &)
void postStreamBeginLumi(edm::StreamContext const &)
void setInputSource(FedRawDataInputSource *inputSource)
void postStreamEndLumi(edm::StreamContext const &)
static void fillDescriptions(edm::ConfigurationDescriptions &descriptions)
std::vector< const void * > microstate_
std::map< unsigned int, std::pair< unsigned int, bool > > processedEventsPerLumi_
void preStreamBeginLumi(edm::StreamContext const &)
std::atomic< unsigned long > totalEventsProcessed_
FedRawDataInputSource * inputSource_
FastMonitoringThread::Macrostate macrostate_
std::vector< double > leadTimes_
void stoppedLookingForFile(unsigned int lumi)
void setMicroState(MicroStateService::Microstate)
boost::filesystem::path workingDirectory_
std::atomic< bool > m_stoprequest
void postGlobalBeginRun(edm::GlobalContext const &)
void preEvent(edm::StreamContext const &)
void preSourceEarlyTermination(edm::TerminationOrigin)
bool getAbortFlagForLumi(unsigned int lumi)
void preModuleEvent(edm::StreamContext const &, edm::ModuleCallingContext const &)
std::vector< const void * > ministate_
const void * decode(unsigned int index)
std::vector< Encoding > encPath_
edm::ModuleDescription * dummiesForReserved_
FastMonitoringService(const edm::ParameterSet &, edm::ActivityRegistry &)
void reportLockWait(unsigned int ls, double waitTime, unsigned int lockCount)
std::vector< unsigned int > exceptionInLS_