The Gaudi Framework  v40r0 (475e45c1)
PrecedenceRulesGraph.h
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11 #pragma once
12 
13 // std includes
14 #include <algorithm>
15 #include <memory>
16 #include <sstream>
17 #include <unordered_map>
18 #include <variant>
19 #include <vector>
20 
21 #include <boost/filesystem.hpp>
22 #include <boost/graph/adjacency_list.hpp>
23 #include <boost/graph/graphml.hpp>
24 
25 // fwk includes
26 #include "../AlgsExecutionStates.h"
27 #include "../EventSlot.h"
28 #include "Visitors/IGraphVisitor.h"
29 #include <Gaudi/Algorithm.h>
31 #include <GaudiKernel/DataObject.h>
32 #include <GaudiKernel/ICondSvc.h>
35 #include <GaudiKernel/TaggedBool.h>
37 
38 namespace concurrency {
44 } // namespace concurrency
45 
46 namespace precedence {
47 
48  // Precedence trace utilities ==============================================
49  struct AlgoTraceProps {
51  AlgoTraceProps( const std::string& name, int index = -1, int rank = -1, long int runtime = -1,
52  long long int start = -1 )
53  : m_name( name ), m_index( index ), m_rank( rank ), m_runtime( runtime ), m_start( start ) {}
54  std::string m_name;
55  int m_index{ -1 };
56  int m_rank{ -1 };
57  long int m_runtime{ -1 }; // us
58  long long int m_start{ -1 }; // ns
59  int m_eccentricity{ -1 };
60  };
61 
62  using PrecTrace = boost::adjacency_list<boost::vecS, boost::vecS, boost::bidirectionalS, AlgoTraceProps>;
63  using AlgoTraceVertex = boost::graph_traits<PrecTrace>::vertex_descriptor;
64 
65  // Precedence rules utilities ==============================================
66  struct AlgoProps {
67  AlgoProps() {}
68  AlgoProps( Gaudi::Algorithm* algo, uint nodeIndex, uint algoIndex )
69  : m_name( algo->name() )
70  , m_nodeIndex( nodeIndex )
71  , m_algoIndex( algoIndex )
72  , m_algorithm( algo )
73  , m_isAsynchronous( algo->isAsynchronous() ) {}
74 
75  std::string m_name{ "" };
76  int m_nodeIndex{ -1 };
77  int m_algoIndex{ -1 };
78  int m_rank{ -1 };
82  bool m_isAsynchronous{ false };
83  };
84 
86  DecisionHubProps( const std::string& name, uint nodeIndex, concurrency::Concurrent modeConcurrent,
87  concurrency::PromptDecision modePromptDecision, concurrency::ModeOr modeOR,
88  concurrency::AllPass allPass, concurrency::Inverted isInverted )
89  : m_name( name )
90  , m_nodeIndex( nodeIndex )
91  , m_modeConcurrent( modeConcurrent )
92  , m_modePromptDecision( modePromptDecision )
93  , m_inverted( isInverted )
94  , m_modeOR( modeOR )
95  , m_allPass( allPass ) {}
96 
97  std::string m_name;
99 
106  bool m_inverted{ false };
108  bool m_modeOR;
110  bool m_allPass;
111  };
112 
113  struct DataProps {
114  DataProps( const DataObjID& id ) : m_id( id ) {}
115 
117  };
118 
120  CondDataProps( const DataObjID& id ) : DataProps( id ) {}
121  };
122 
123  // Vertex unpacking ========================================================
124 
125  struct VertexName {
126  std::string operator()( const AlgoProps& props ) const { return props.m_name; }
127 
128  std::string operator()( const DecisionHubProps& props ) const { return props.m_name; }
129 
130  std::string operator()( const DataProps& props ) const { return props.m_id.fullKey(); }
131  };
132 
133  struct GroupMode {
134  std::string operator()( const AlgoProps& ) const { return ""; }
135 
136  std::string operator()( const DecisionHubProps& props ) const {
137  return props.m_modeConcurrent ? "Concurrent" : "Sequential";
138  }
139 
140  std::string operator()( const DataProps& ) const { return ""; }
141  };
142 
143  struct GroupLogic {
144  std::string operator()( const AlgoProps& ) const { return ""; }
145 
146  std::string operator()( const DecisionHubProps& props ) const { return props.m_modeOR ? "OR" : "AND"; }
147 
148  std::string operator()( const DataProps& ) const { return ""; }
149  };
150 
151  struct GroupExit {
152  std::string operator()( const AlgoProps& ) const { return ""; }
153 
154  std::string operator()( const DecisionHubProps& props ) const {
155  return props.m_modePromptDecision ? "Early" : "Late";
156  }
157 
158  std::string operator()( const DataProps& ) const { return ""; }
159  };
160 
162  std::string operator()( const AlgoProps& ) const { return ""; }
163 
164  std::string operator()( const DecisionHubProps& props ) const {
165  return props.m_inverted ? "Inverted" : "Non-inverted";
166  }
167 
168  std::string operator()( const DataProps& ) const { return ""; }
169  };
170 
171  struct AllPass {
172  std::string operator()( const AlgoProps& ) const { return ""; }
173 
174  std::string operator()( const DecisionHubProps& props ) const { return props.m_allPass ? "Optimist" : "Realist"; }
175 
176  std::string operator()( const DataProps& ) const { return ""; }
177  };
178 
179  struct CFDecision {
180  CFDecision( const EventSlot& slot ) : m_slot( slot ) {}
181 
182  std::string operator()( const AlgoProps& props ) const {
183  return std::to_string( m_slot.controlFlowState.at( props.m_nodeIndex ) );
184  }
185 
186  std::string operator()( const DecisionHubProps& props ) const {
187  return std::to_string( m_slot.controlFlowState.at( props.m_nodeIndex ) );
188  }
189 
190  std::string operator()( const DataProps& ) const { return ""; }
191 
193  };
194 
195  struct EntityState {
196  EntityState( const EventSlot& slot, SmartIF<ISvcLocator>& svcLocator, bool conditionsEnabled )
197  : m_slot( slot )
198  , m_whiteboard( svcLocator->service<IHiveWhiteBoard>( "EventDataSvc", false ) )
199  , m_conditionsEnabled( conditionsEnabled ) {
201  MsgStream log{ msgSvc, "EntityState.Getter" };
202 
203  // Figure if we can discover the data object states
204  if ( !m_whiteboard.isValid() ) {
205  log << MSG::WARNING << "Failed to locate EventDataSvc: no way to add DO "
206  << "states to the TTT dump " << endmsg;
207  }
208 
209  if ( m_conditionsEnabled ) {
210  // Figure if we can discover Condition data object states
211  m_condSvc = svcLocator->service<ICondSvc>( "CondSvc", false );
212  if ( !m_condSvc.isValid() )
213  log << MSG::WARNING << "Failed to locate CondSvc: no way to add Condition DO "
214  << "states to the TTT dump " << endmsg;
215  }
216 
217  if ( !m_slot.eventContext->valid() )
218  log << MSG::WARNING << "Event context is invalid: no way to add DO states"
219  << " in the TTT dump" << endmsg;
220  }
221 
222  // Returns algorithm's FSM state
223  std::string operator()( const AlgoProps& props ) const {
224  std::ostringstream oss;
225  oss << m_slot.algsStates[props.m_algoIndex];
226  return oss.str();
227  }
228 
229  std::string operator()( const DecisionHubProps& ) const { return ""; }
230 
231  std::string operator()( const DataProps& props ) const {
232  std::string state;
233 
234  if ( m_whiteboard.isValid() && m_slot.eventContext->valid() )
235  if ( m_whiteboard->selectStore( m_slot.eventContext->slot() ).isSuccess() )
236  state = m_whiteboard->exists( props.m_id ) ? "Produced" : "Missing";
237 
238  return state;
239  }
240 
241  std::string operator()( const CondDataProps& props ) const {
242  std::string state;
243 
244  if ( m_condSvc.isValid() && m_slot.eventContext->valid() )
245  state = m_condSvc->isValidID( *( m_slot.eventContext ), props.m_id ) ? "Produced" : "Missing";
246 
247  return state;
248  }
249 
251 
254  bool m_conditionsEnabled{ false };
255  };
256 
257  struct StartTime {
259  : m_slot( slot ), m_timelineSvc( svcLocator->service<ITimelineSvc>( "TimelineSvc", false ) ) {
261  MsgStream log{ msgSvc, "StartTime.Getter" };
262 
263  // Figure if we can discover the algorithm timings
264  if ( !m_timelineSvc.isValid() ) {
265  log << MSG::WARNING << "Failed to locate the TimelineSvc: no way to "
266  << "add algorithm start time to the TTT dumps" << endmsg;
267  }
268  }
269 
270  std::string operator()( const AlgoProps& props ) const {
271 
272  std::string startTime;
273 
274  if ( m_timelineSvc.isValid() ) {
275 
276  TimelineEvent te{};
277  te.algorithm = props.m_name;
278  te.slot = m_slot.eventContext->slot();
279  te.event = m_slot.eventContext->evt();
280 
281  m_timelineSvc->getTimelineEvent( te );
282  startTime = std::to_string(
283  std::chrono::duration_cast<std::chrono::nanoseconds>( te.start.time_since_epoch() ).count() );
284  }
285 
286  return startTime;
287  }
288 
289  std::string operator()( const DecisionHubProps& ) const { return ""; }
290 
291  std::string operator()( const DataProps& ) const { return ""; }
292 
295  };
296 
297  struct EndTime {
299  : m_slot( slot ), m_timelineSvc( svcLocator->service<ITimelineSvc>( "TimelineSvc", false ) ) {
301  MsgStream log{ msgSvc, "EndTime.Getter" };
302 
303  // Figure if we can discover the algorithm timings
304  if ( !m_timelineSvc.isValid() )
305  log << MSG::WARNING << "Failed to locate the TimelineSvc: no way to add "
306  << "algorithm completion time to the TTT dumps" << endmsg;
307  }
308 
309  std::string operator()( const AlgoProps& props ) const {
310 
311  std::string endTime;
312 
313  if ( m_timelineSvc.isValid() ) {
314 
315  TimelineEvent te{};
316  te.algorithm = props.m_name;
317  te.slot = m_slot.eventContext->slot();
318  te.event = m_slot.eventContext->evt();
319 
320  m_timelineSvc->getTimelineEvent( te );
321  endTime =
322  std::to_string( std::chrono::duration_cast<std::chrono::nanoseconds>( te.end.time_since_epoch() ).count() );
323  }
324 
325  return endTime;
326  }
327 
328  std::string operator()( const DecisionHubProps& ) const { return ""; }
329 
330  std::string operator()( const DataProps& ) const { return ""; }
331 
334  };
335 
336  struct Duration {
338  : m_slot( slot ), m_timelineSvc( svcLocator->service<ITimelineSvc>( "TimelineSvc", false ) ) {
340  MsgStream log{ msgSvc, "Duration.Getter" };
341 
342  // Figure if we can discover the algorithm timings
343  if ( !m_timelineSvc.isValid() )
344  log << MSG::WARNING << "Failed to locate the TimelineSvc: no way to add "
345  << "algorithm's runtimes to the TTT dumps" << endmsg;
346  }
347 
348  std::string operator()( const AlgoProps& props ) const {
349 
350  std::string time;
351 
352  if ( m_timelineSvc.isValid() ) {
353 
354  TimelineEvent te;
355  te.algorithm = props.m_name;
356  te.slot = m_slot.eventContext->slot();
357  te.event = m_slot.eventContext->evt();
358 
359  m_timelineSvc->getTimelineEvent( te );
360  time = std::to_string( std::chrono::duration_cast<std::chrono::nanoseconds>( te.end - te.start ).count() );
361  }
362 
363  return time;
364  }
365 
366  std::string operator()( const DecisionHubProps& ) const { return ""; }
367 
368  std::string operator()( const DataProps& ) const { return ""; }
369 
372  };
373 
374  struct Operations {
375  std::string operator()( const AlgoProps& props ) const {
376  return props.m_isAsynchronous ? "Asynchronous" : "CPU-bound";
377  }
378 
379  std::string operator()( const DecisionHubProps& ) const { return ""; }
380 
381  std::string operator()( const DataProps& ) const { return ""; }
382  };
383 
384  static inline std::ostream& operator<<( std::ostream& os, const AlgoProps& ) { return os << "Algorithm"; }
385  static inline std::ostream& operator<<( std::ostream& os, const DecisionHubProps& ) { return os << "DecisionHub"; }
386  static inline std::ostream& operator<<( std::ostream& os, const DataProps& ) { return os << "Data"; }
387  static inline std::ostream& operator<<( std::ostream& os, const CondDataProps& ) { return os << "ConditionData"; }
388 
389  //=========================================================================
390 
391  using VariantVertexProps = std::variant<AlgoProps, DecisionHubProps, DataProps, CondDataProps>;
392  using PRGraph = boost::adjacency_list<boost::vecS, boost::vecS, boost::bidirectionalS, VariantVertexProps>;
393  using PRVertexDesc = boost::graph_traits<PRGraph>::vertex_descriptor;
394 
395 } // namespace precedence
396 
397 struct Cause final {
398  enum class source { Root, Task };
399 
401  std::string m_sourceName;
402 };
403 
404 namespace concurrency {
405  class PrecedenceRulesGraph;
406 
407  using precedence::AlgoProps;
409  using precedence::DataProps;
413 
414  // ==========================================================================
416  public:
418  ControlFlowNode( PrecedenceRulesGraph& graph, unsigned int nodeIndex, const std::string& name )
419  : m_graph( &graph ), m_nodeIndex( nodeIndex ), m_nodeName( name ) {}
421  virtual ~ControlFlowNode() = default;
422 
424  virtual bool accept( IGraphVisitor& visitor ) = 0;
426  virtual void printState( std::stringstream& output, EventSlot& slot, const unsigned int& recursionLevel ) const = 0;
428  const unsigned int& getNodeIndex() const { return m_nodeIndex; }
430  const std::string& name() const { return m_nodeName; }
431 
432  public:
434 
435  protected:
436  unsigned int m_nodeIndex;
437  std::string m_nodeName;
438  };
439 
440  class DecisionNode final : public ControlFlowNode {
441  public:
443  DecisionNode( PrecedenceRulesGraph& graph, unsigned int nodeIndex, const std::string& name,
444  Concurrent modeConcurrent, PromptDecision modePromptDecision, ModeOr modeOR, AllPass allPass,
445  Inverted isInverted )
446  : ControlFlowNode( graph, nodeIndex, name )
447  , m_modeConcurrent( modeConcurrent )
448  , m_modePromptDecision( modePromptDecision )
449  , m_modeOR( modeOR )
450  , m_allPass( allPass )
451  , m_inverted( isInverted ) {}
452 
454  bool accept( IGraphVisitor& visitor ) override;
456  void addParentNode( DecisionNode* node );
458  void addDaughterNode( ControlFlowNode* node );
460  const std::vector<ControlFlowNode*>& getDaughters() const { return m_children; }
462  void printState( std::stringstream& output, EventSlot& slot, const unsigned int& recursionLevel ) const override;
463 
464  public:
471  bool m_modeOR;
473  bool m_allPass;
475  bool m_inverted{ false };
477  std::vector<ControlFlowNode*> m_children;
479  std::vector<DecisionNode*> m_parents;
480  };
481 
482  // ==========================================================================
483  class DataNode;
484 
485  class AlgorithmNode final : public ControlFlowNode {
486  public:
488  AlgorithmNode( PrecedenceRulesGraph& graph, Gaudi::Algorithm* algoPtr, unsigned int nodeIndex,
489  unsigned int algoIndex )
490  : ControlFlowNode( graph, nodeIndex, algoPtr->name() )
491  , m_algorithm( algoPtr )
492  , m_algoIndex( algoIndex )
493  , m_algoName( algoPtr->name() )
494  , m_isAsynchronous( algoPtr->isAsynchronous() ) {}
495 
497  bool accept( IGraphVisitor& visitor ) override;
498 
500  void addParentNode( DecisionNode* node );
502  const std::vector<DecisionNode*>& getParentDecisionHubs() const { return m_parents; }
503 
505  void addOutputDataNode( DataNode* node );
507  void addInputDataNode( DataNode* node );
509  const std::vector<DataNode*>& getOutputDataNodes() const { return m_outputs; }
511  const std::vector<DataNode*>& getInputDataNodes() const { return m_inputs; }
512 
514  void setRank( float rank ) { m_rank = rank; }
516  float getRank() const { return m_rank; }
517 
521  unsigned int getAlgoIndex() const { return m_algoIndex; }
522 
524  void setAsynchronous( bool value ) { m_isAsynchronous = value; }
526  bool isAsynchronous() const { return m_isAsynchronous; }
527 
529  void printState( std::stringstream& output, EventSlot& slot, const unsigned int& recursionLevel ) const override;
530 
531  public:
533  std::vector<DecisionNode*> m_parents;
534 
535  private:
539  unsigned int m_algoIndex;
541  std::string m_algoName;
543  float m_rank = -1;
546 
548  std::vector<DataNode*> m_outputs;
550  std::vector<DataNode*> m_inputs;
551  };
552 
553  // ==========================================================================
554  class DataNode {
555  public:
558 
560  virtual ~DataNode() = default;
561 
562  const DataObjID& name() const { return m_data_object_path; }
563 
565  virtual bool accept( IGraphVisitor& visitor ) {
566  return visitor.visitEnter( *this ) ? visitor.visit( *this ) : true;
567  }
570  if ( std::find( m_producers.begin(), m_producers.end(), node ) == m_producers.end() )
571  m_producers.push_back( node );
572  }
575  if ( std::find( m_consumers.begin(), m_consumers.end(), node ) == m_consumers.end() )
576  m_consumers.push_back( node );
577  }
579  const std::vector<AlgorithmNode*>& getProducers() const { return m_producers; }
581  const std::vector<AlgorithmNode*>& getConsumers() const { return m_consumers; }
582 
583  public:
585 
586  private:
588  std::vector<AlgorithmNode*> m_producers;
589  std::vector<AlgorithmNode*> m_consumers;
590  };
591 
592  class ConditionNode final : public DataNode {
593  public:
596  : DataNode( graph, path ), m_condSvc( condSvc ) {}
597 
601  bool accept( IGraphVisitor& visitor ) override {
602  return visitor.visitEnter( *this ) ? visitor.visit( *this ) : true;
603  }
604 
605  public:
606  // Service for Conditions handling
608  };
609 
610  // ==========================================================================
611 
613  virtual ~IPrecedenceRulesGraph() = default;
614  };
615 
616  template <typename T>
617  struct CompareNodes {
618  bool operator()( const T& a, const T& b ) const { return a->name() < b->name(); }
619  };
620 
621  class PrecedenceRulesGraph : public CommonMessaging<IPrecedenceRulesGraph> {
622  public:
624  PrecedenceRulesGraph( const std::string& name, SmartIF<ISvcLocator> svc ) : m_svcLocator( svc ), m_name( name ) {
625  // make sure that CommonMessaging is initialized
626  setUpMessaging();
627  }
628 
631 
633  void accept( IGraphVisitor& visitor ) const;
634 
636  StatusCode addDataNode( const DataObjID& dataPath );
638  DataNode* getDataNode( const DataObjID& dataPath ) const { return m_dataPathToDataNodeMap.at( dataPath ).get(); }
640  void registerIODataObjects( const Gaudi::Algorithm* algo );
643 
645  void addHeadNode( const std::string& headName, concurrency::Concurrent, concurrency::PromptDecision,
648  DecisionNode* getHeadNode() const { return m_headNode; }
650  StatusCode addAlgorithmNode( Gaudi::Algorithm* daughterAlgo, const std::string& parentName );
652  AlgorithmNode* getAlgorithmNode( const std::string& algoName ) const {
653  return m_algoNameToAlgoNodeMap.at( algoName ).get();
654  }
656  StatusCode addDecisionHubNode( Gaudi::Algorithm* daughterAlgo, const std::string& parentName,
660  unsigned int getControlFlowNodeCounter() const { return m_nodeCounter; }
661 
663  void rankAlgorithms( IGraphVisitor& ranker ) const;
664 
666  const std::string& name() const override { return m_name; }
668  SmartIF<ISvcLocator>& serviceLocator() const override { return m_svcLocator; }
671  void printState( std::stringstream& output, EventSlot& slot, const unsigned int& recursionLevel ) const;
672 
674  void enableAnalysis() { m_enableAnalysis = true; }
675  PRVertexDesc node( const std::string& ) const;
676 
678  std::string dumpDataFlow() const;
680  std::string dumpControlFlow() const;
682  void dumpPrecRules( const boost::filesystem::path&, const EventSlot& slot );
684  void dumpPrecTrace( const boost::filesystem::path&, const EventSlot& slot );
686  void addEdgeToPrecTrace( const AlgorithmNode* u, const AlgorithmNode* v );
688  void dumpControlFlow( std::ostringstream&, ControlFlowNode*, const int& ) const;
689 
690  private:
694  std::unordered_map<std::string, std::unique_ptr<AlgorithmNode>> m_algoNameToAlgoNodeMap;
696  std::unordered_map<std::string, std::unique_ptr<DecisionNode>> m_decisionNameToDecisionHubMap;
698  std::unordered_map<DataObjID, std::unique_ptr<DataNode>, DataObjID_Hasher> m_dataPathToDataNodeMap;
700  std::unordered_map<std::string, DataObjIDColl> m_algoNameToAlgoInputsMap;
701  std::unordered_map<std::string, DataObjIDColl> m_algoNameToAlgoOutputsMap;
702 
704  unsigned int m_nodeCounter = 0;
706  unsigned int m_algoCounter = 0;
707 
710  const std::string m_name;
711 
714  std::map<std::string, precedence::AlgoTraceVertex> m_prec_trace_map;
715  bool m_enableAnalysis{ false };
718 
721  };
722 
723 } // namespace concurrency
precedence
Definition: precedence.py:1
EventSlot::eventContext
std::unique_ptr< EventContext > eventContext
Cache for the eventContext.
Definition: EventSlot.h:82
ITimelineSvc.h
concurrency::AlgorithmNode::m_rank
float m_rank
Algorithm rank of any kind.
Definition: PrecedenceRulesGraph.h:543
concurrency::AlgorithmNode::setAsynchronous
void setAsynchronous(bool value)
Set the asynchronous flag.
Definition: PrecedenceRulesGraph.h:524
concurrency::ControlFlowNode::accept
virtual bool accept(IGraphVisitor &visitor)=0
Visitor entry point.
precedence::EntityState::m_condSvc
SmartIF< ICondSvc > m_condSvc
Definition: PrecedenceRulesGraph.h:253
concurrency::AlgorithmNode::m_parents
std::vector< DecisionNode * > m_parents
Control flow parents of an AlgorithmNode (DecisionNodes)
Definition: PrecedenceRulesGraph.h:533
precedence::EndTime::m_timelineSvc
SmartIF< ITimelineSvc > m_timelineSvc
Definition: PrecedenceRulesGraph.h:333
ConditionsStallTest.condSvc
condSvc
Definition: ConditionsStallTest.py:77
concurrency::DataNode::m_producers
std::vector< AlgorithmNode * > m_producers
Definition: PrecedenceRulesGraph.h:588
precedence::DecisionHubProps::DecisionHubProps
DecisionHubProps(const std::string &name, uint nodeIndex, concurrency::Concurrent modeConcurrent, concurrency::PromptDecision modePromptDecision, concurrency::ModeOr modeOR, concurrency::AllPass allPass, concurrency::Inverted isInverted)
Definition: PrecedenceRulesGraph.h:86
concurrency::PrecedenceRulesGraph::printState
void printState(std::stringstream &output, EventSlot &slot, const unsigned int &recursionLevel) const
Print a string representing the control flow state.
Definition: PrecedenceRulesGraph.cpp:260
concurrency::PrecedenceRulesGraph::dumpPrecTrace
void dumpPrecTrace(const boost::filesystem::path &, const EventSlot &slot)
dump to file the precedence trace
Definition: PrecedenceRulesGraph.cpp:666
concurrency::PrecedenceRulesGraph::addDataNode
StatusCode addDataNode(const DataObjID &dataPath)
Add DataNode that represents DataObject.
Definition: PrecedenceRulesGraph.cpp:421
concurrency::ControlFlowNode::printState
virtual void printState(std::stringstream &output, EventSlot &slot, const unsigned int &recursionLevel) const =0
Print a string representing the control flow state.
Gaudi.Configuration.log
log
Definition: Configuration.py:28
concurrency::PrecedenceRulesGraph::accept
void accept(IGraphVisitor &visitor) const
An entry point to visit all graph nodes.
Definition: PrecedenceRulesGraph.cpp:538
precedence::DataProps::m_id
DataObjID m_id
Definition: PrecedenceRulesGraph.h:116
precedence::DecisionHubProps::m_modeConcurrent
bool m_modeConcurrent
Whether all daughters will be evaluated concurrently or sequentially.
Definition: PrecedenceRulesGraph.h:101
precedence::AlgoProps::AlgoProps
AlgoProps()
Definition: PrecedenceRulesGraph.h:67
AtlasMCRecoFullPrecedenceDump.path
path
Definition: AtlasMCRecoFullPrecedenceDump.py:49
precedence::Duration::operator()
std::string operator()(const DecisionHubProps &) const
Definition: PrecedenceRulesGraph.h:366
precedence::AlgoProps::m_algoIndex
int m_algoIndex
Definition: PrecedenceRulesGraph.h:77
precedence::Operations::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:381
concurrency::AlgorithmNode::getInputDataNodes
const std::vector< DataNode * > & getInputDataNodes() const
Get all consumer nodes.
Definition: PrecedenceRulesGraph.h:511
concurrency::PrecedenceRulesGraph::getControlFlowNodeCounter
unsigned int getControlFlowNodeCounter() const
Get total number of control flow graph nodes.
Definition: PrecedenceRulesGraph.h:660
precedence::EntityState::m_conditionsEnabled
bool m_conditionsEnabled
Definition: PrecedenceRulesGraph.h:254
precedence::CondDataProps::CondDataProps
CondDataProps(const DataObjID &id)
Definition: PrecedenceRulesGraph.h:120
concurrency::DataNode::m_consumers
std::vector< AlgorithmNode * > m_consumers
Definition: PrecedenceRulesGraph.h:589
precedence::AlgoTraceProps::m_runtime
long int m_runtime
Definition: PrecedenceRulesGraph.h:57
TimelineEvent::start
time_point start
Definition: TimelineEvent.h:26
concurrency::AlgorithmNode::setRank
void setRank(float rank)
Set Algorithm rank.
Definition: PrecedenceRulesGraph.h:514
check_ParticleID.props
props
Definition: check_ParticleID.py:21
concurrency::PrecedenceRulesGraph::m_name
const std::string m_name
Definition: PrecedenceRulesGraph.h:710
precedence::DecisionNegation::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:168
EventSlot
Class representing an event slot.
Definition: EventSlot.h:23
concurrency::DecisionNode::m_modeOR
bool m_modeOR
Whether acting as "and" (false) or "or" node (true)
Definition: PrecedenceRulesGraph.h:471
concurrency::PrecedenceRulesGraph
Definition: PrecedenceRulesGraph.h:621
concurrency::ControlFlowNode::name
const std::string & name() const
Get node name.
Definition: PrecedenceRulesGraph.h:430
precedence::StartTime
Definition: PrecedenceRulesGraph.h:257
concurrency::PrecedenceRulesGraph::m_decisionNameToDecisionHubMap
std::unordered_map< std::string, std::unique_ptr< DecisionNode > > m_decisionNameToDecisionHubMap
Index: map of decision's name to DecisionHub.
Definition: PrecedenceRulesGraph.h:696
concurrency::PrecedenceRulesGraph::dumpPrecRules
void dumpPrecRules(const boost::filesystem::path &, const EventSlot &slot)
dump to file the precedence rules
Definition: PrecedenceRulesGraph.cpp:625
concurrency::DecisionNode::m_children
std::vector< ControlFlowNode * > m_children
All direct daughter nodes in the tree.
Definition: PrecedenceRulesGraph.h:477
concurrency::AlgorithmNode::m_outputs
std::vector< DataNode * > m_outputs
Algorithm outputs (DataNodes)
Definition: PrecedenceRulesGraph.h:548
precedence::Duration::m_timelineSvc
SmartIF< ITimelineSvc > m_timelineSvc
Definition: PrecedenceRulesGraph.h:371
precedence::EndTime::EndTime
EndTime(const EventSlot &slot, SmartIF< ISvcLocator > &svcLocator)
Definition: PrecedenceRulesGraph.h:298
precedence::DecisionNegation::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:164
concurrency::PrecedenceRulesGraph::m_enableAnalysis
bool m_enableAnalysis
Definition: PrecedenceRulesGraph.h:715
MSG::WARNING
@ WARNING
Definition: IMessageSvc.h:22
concurrency::AlgorithmNode::getOutputDataNodes
const std::vector< DataNode * > & getOutputDataNodes() const
Get all supplier nodes.
Definition: PrecedenceRulesGraph.h:509
concurrency::AlgorithmNode::m_algoName
std::string m_algoName
The name of the algorithm.
Definition: PrecedenceRulesGraph.h:541
IHiveWhiteBoard
Definition: IHiveWhiteBoard.h:23
precedence::DecisionHubProps::m_name
std::string m_name
Definition: PrecedenceRulesGraph.h:97
concurrency::AlgorithmNode::m_algoIndex
unsigned int m_algoIndex
The index of the algorithm.
Definition: PrecedenceRulesGraph.h:539
concurrency::DecisionNode::m_modePromptDecision
bool m_modePromptDecision
Whether to evaluate the hub decision ASA its child decisions allow to do that.
Definition: PrecedenceRulesGraph.h:469
concurrency::CompareNodes::operator()
bool operator()(const T &a, const T &b) const
Definition: PrecedenceRulesGraph.h:618
precedence::EntityState::m_whiteboard
SmartIF< IHiveWhiteBoard > m_whiteboard
Definition: PrecedenceRulesGraph.h:252
precedence::AlgoProps::m_nodeIndex
int m_nodeIndex
Definition: PrecedenceRulesGraph.h:76
precedence::AlgoProps::m_isAsynchronous
bool m_isAsynchronous
If an algorithm is asynchronous.
Definition: PrecedenceRulesGraph.h:82
precedence::Duration
Definition: PrecedenceRulesGraph.h:336
precedence::EntityState::operator()
std::string operator()(const DecisionHubProps &) const
Definition: PrecedenceRulesGraph.h:229
precedence::PRGraph
boost::adjacency_list< boost::vecS, boost::vecS, boost::bidirectionalS, VariantVertexProps > PRGraph
Definition: PrecedenceRulesGraph.h:392
concurrency::ConditionNode::accept
bool accept(IGraphVisitor &visitor) override
Need to hide the (identical) base method with this one so that visitEnter(ConditionNode&) and visit(C...
Definition: PrecedenceRulesGraph.h:601
precedence::Operations
Definition: PrecedenceRulesGraph.h:374
precedence::EndTime
Definition: PrecedenceRulesGraph.h:297
concurrency::DecisionNode::addParentNode
void addParentNode(DecisionNode *node)
Add a parent node.
Definition: PrecedenceRulesGraph.cpp:41
precedence::AlgoTraceProps::m_index
int m_index
Definition: PrecedenceRulesGraph.h:55
concurrency::PrecedenceRulesGraph::initialize
StatusCode initialize()
Initialize graph.
Definition: PrecedenceRulesGraph.cpp:220
gaudirun.output
output
Definition: gaudirun.py:521
concurrency::ControlFlowNode::m_nodeIndex
unsigned int m_nodeIndex
Definition: PrecedenceRulesGraph.h:436
concurrency::DataNode::m_graph
PrecedenceRulesGraph * m_graph
Definition: PrecedenceRulesGraph.h:584
concurrency::AlgorithmNode::getParentDecisionHubs
const std::vector< DecisionNode * > & getParentDecisionHubs() const
Get all parent decision hubs.
Definition: PrecedenceRulesGraph.h:502
GaudiPartProp.tests.id
id
Definition: tests.py:111
concurrency::DataNode::name
const DataObjID & name() const
Definition: PrecedenceRulesGraph.h:562
precedence::AllPass::operator()
std::string operator()(const AlgoProps &) const
Definition: PrecedenceRulesGraph.h:172
IOTest.start
start
Definition: IOTest.py:110
concurrency::IGraphVisitor
Definition: IGraphVisitor.h:20
concurrency::DecisionNode::addDaughterNode
void addDaughterNode(ControlFlowNode *node)
Add a daughter node.
Definition: PrecedenceRulesGraph.cpp:47
precedence::VertexName::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:126
concurrency::AlgorithmNode::printState
void printState(std::stringstream &output, EventSlot &slot, const unsigned int &recursionLevel) const override
Print a string representing the control flow state.
Definition: PrecedenceRulesGraph.cpp:77
precedence::Duration::m_slot
const EventSlot & m_slot
Definition: PrecedenceRulesGraph.h:370
precedence::GroupMode::operator()
std::string operator()(const AlgoProps &) const
Definition: PrecedenceRulesGraph.h:134
TimelineEvent::event
size_t event
Definition: TimelineEvent.h:22
precedence::DecisionHubProps::m_nodeIndex
uint m_nodeIndex
Definition: PrecedenceRulesGraph.h:98
concurrency::AlgorithmNode::getAlgoIndex
unsigned int getAlgoIndex() const
Get algorithm index.
Definition: PrecedenceRulesGraph.h:521
concurrency::AlgorithmNode::accept
bool accept(IGraphVisitor &visitor) override
Visitor entry point.
Definition: PrecedenceRulesGraph.cpp:191
precedence::Duration::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:348
AvalancheSchedulerErrorTest.msgSvc
msgSvc
Definition: AvalancheSchedulerErrorTest.py:80
precedence::EndTime::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:309
concurrency::AlgorithmNode
Definition: PrecedenceRulesGraph.h:485
precedence::CFDecision
Definition: PrecedenceRulesGraph.h:179
TimelineEvent::slot
size_t slot
Definition: TimelineEvent.h:21
precedence::AllPass::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:174
concurrency::AlgorithmNode::AlgorithmNode
AlgorithmNode(PrecedenceRulesGraph &graph, Gaudi::Algorithm *algoPtr, unsigned int nodeIndex, unsigned int algoIndex)
Constructor.
Definition: PrecedenceRulesGraph.h:488
precedence::PRVertexDesc
boost::graph_traits< PRGraph >::vertex_descriptor PRVertexDesc
Definition: PrecedenceRulesGraph.h:393
concurrency::PrecedenceRulesGraph::m_headNode
DecisionNode * m_headNode
the head node of the control flow graph
Definition: PrecedenceRulesGraph.h:692
precedence::AlgoTraceProps::m_eccentricity
int m_eccentricity
Definition: PrecedenceRulesGraph.h:59
TimelineEvent
Definition: TimelineEvent.h:16
concurrency::DecisionNode::printState
void printState(std::stringstream &output, EventSlot &slot, const unsigned int &recursionLevel) const override
Print a string representing the control flow state.
Definition: PrecedenceRulesGraph.cpp:53
precedence::CondDataProps
Definition: PrecedenceRulesGraph.h:119
precedence::EndTime::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:330
Gaudi::svcLocator
GAUDI_API ISvcLocator * svcLocator()
ISvcLocator::service
virtual SmartIF< IService > & service(const Gaudi::Utils::TypeNameString &typeName, const bool createIf=true)=0
Returns a smart pointer to a service.
precedence::AlgoTraceProps::AlgoTraceProps
AlgoTraceProps(const std::string &name, int index=-1, int rank=-1, long int runtime=-1, long long int start=-1)
Definition: PrecedenceRulesGraph.h:51
concurrency::ConditionNode
Definition: PrecedenceRulesGraph.h:592
precedence::StartTime::m_timelineSvc
SmartIF< ITimelineSvc > m_timelineSvc
Definition: PrecedenceRulesGraph.h:294
concurrency::ControlFlowNode::~ControlFlowNode
virtual ~ControlFlowNode()=default
Destructor.
SmartIF::isValid
bool isValid() const
Allow for check if smart pointer is valid.
Definition: SmartIF.h:69
CommonMessaging< IPrecedenceRulesGraph >::setUpMessaging
MSG::Level setUpMessaging() const
Set up local caches.
Definition: CommonMessaging.h:173
plotSpeedupsPyRoot.graph
graph
Definition: plotSpeedupsPyRoot.py:168
StatusCode
Definition: StatusCode.h:64
Gaudi::tagged_bool_ns::tagged_bool
Definition: TaggedBool.h:15
TaggedBool.h
ITimelineSvc
Definition: ITimelineSvc.h:20
concurrency::AlgorithmNode::addInputDataNode
void addInputDataNode(DataNode *node)
Associate an AlgorithmNode, which is a data consumer of this one.
Definition: PrecedenceRulesGraph.cpp:214
concurrency::PrecedenceRulesGraph::m_dataPathToDataNodeMap
std::unordered_map< DataObjID, std::unique_ptr< DataNode >, DataObjID_Hasher > m_dataPathToDataNodeMap
Index: map of data path to DataNode.
Definition: PrecedenceRulesGraph.h:698
IGraphVisitor.h
precedence::AlgoProps::m_rank
int m_rank
Definition: PrecedenceRulesGraph.h:78
Gaudi::Parsers::operator<<
std::ostream & operator<<(std::ostream &o, const Catalog &c)
printout operator
Definition: Catalog.h:49
ICondSvc
Definition: ICondSvc.h:38
concurrency::DataNode::~DataNode
virtual ~DataNode()=default
Destructor.
CommonMessaging
Definition: CommonMessaging.h:65
Cause::m_source
source m_source
Definition: PrecedenceRulesGraph.h:400
Gaudi::Algorithm
Base class from which all concrete algorithm classes should be derived.
Definition: Algorithm.h:87
precedence::GroupMode
Definition: PrecedenceRulesGraph.h:133
concurrency::IGraphVisitor::visit
virtual bool visit(DecisionNode &)
Definition: IGraphVisitor.h:25
concurrency::PrecedenceRulesGraph::name
const std::string & name() const override
Retrieve name of the service.
Definition: PrecedenceRulesGraph.h:666
precedence::DataProps::DataProps
DataProps(const DataObjID &id)
Definition: PrecedenceRulesGraph.h:114
precedence::GroupLogic::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:146
concurrency::IPrecedenceRulesGraph::~IPrecedenceRulesGraph
virtual ~IPrecedenceRulesGraph()=default
concurrency::DecisionNode::m_modeConcurrent
bool m_modeConcurrent
Whether all daughters will be evaluated concurrently or sequentially.
Definition: PrecedenceRulesGraph.h:466
precedence::GroupExit::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:154
precedence::DataProps
Definition: PrecedenceRulesGraph.h:113
concurrency::PrecedenceRulesGraph::m_prec_trace_map
std::map< std::string, precedence::AlgoTraceVertex > m_prec_trace_map
Definition: PrecedenceRulesGraph.h:714
precedence::PrecTrace
boost::adjacency_list< boost::vecS, boost::vecS, boost::bidirectionalS, AlgoTraceProps > PrecTrace
Definition: PrecedenceRulesGraph.h:62
concurrency::PrecedenceRulesGraph::m_nodeCounter
unsigned int m_nodeCounter
Total number of nodes in the graph.
Definition: PrecedenceRulesGraph.h:704
precedence::CFDecision::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:182
concurrency::PrecedenceRulesGraph::getDataNode
DataNode * getDataNode(const DataObjID &dataPath) const
Get DataNode by DataObject path using graph index.
Definition: PrecedenceRulesGraph.h:638
precedence::CFDecision::CFDecision
CFDecision(const EventSlot &slot)
Definition: PrecedenceRulesGraph.h:180
precedence::AllPass::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:176
precedence::GroupExit::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:158
precedence::DecisionNegation::operator()
std::string operator()(const AlgoProps &) const
Definition: PrecedenceRulesGraph.h:162
Cause::source
source
Definition: PrecedenceRulesGraph.h:398
concurrency::PrecedenceRulesGraph::PrecedenceRulesGraph
PrecedenceRulesGraph(const std::string &name, SmartIF< ISvcLocator > svc)
Constructor.
Definition: PrecedenceRulesGraph.h:624
Algorithm.h
concurrency::PrecedenceRulesGraph::rankAlgorithms
void rankAlgorithms(IGraphVisitor &ranker) const
Rank Algorithm nodes by the number of data outputs.
Definition: PrecedenceRulesGraph.cpp:550
concurrency::DataNode::accept
virtual bool accept(IGraphVisitor &visitor)
Entry point for a visitor.
Definition: PrecedenceRulesGraph.h:565
precedence::DecisionNegation
Definition: PrecedenceRulesGraph.h:161
SmartIF< ISvcLocator >
precedence::VertexName::operator()
std::string operator()(const DataProps &props) const
Definition: PrecedenceRulesGraph.h:130
precedence::VertexName
Definition: PrecedenceRulesGraph.h:125
CommonMessaging.h
IHiveWhiteBoard.h
precedence::DecisionHubProps::m_modeOR
bool m_modeOR
Whether acting as "and" (false) or "or" node (true)
Definition: PrecedenceRulesGraph.h:108
concurrency::PrecedenceRulesGraph::addDecisionHubNode
StatusCode addDecisionHubNode(Gaudi::Algorithm *daughterAlgo, const std::string &parentName, concurrency::Concurrent, concurrency::PromptDecision, concurrency::ModeOr, concurrency::AllPass, concurrency::Inverted)
Add a node, which aggregates decisions of direct daughter nodes.
Definition: PrecedenceRulesGraph.cpp:451
precedence::Duration::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:368
endmsg
MsgStream & endmsg(MsgStream &s)
MsgStream Modifier: endmsg. Calls the output method of the MsgStream.
Definition: MsgStream.h:198
concurrency::DecisionNode::getDaughters
const std::vector< ControlFlowNode * > & getDaughters() const
Get children nodes.
Definition: PrecedenceRulesGraph.h:460
precedence::AlgoTraceProps::m_rank
int m_rank
Definition: PrecedenceRulesGraph.h:56
Cause::source::Root
@ Root
concurrency::DecisionNode::m_inverted
bool m_inverted
Whether the selection result is negated or not.
Definition: PrecedenceRulesGraph.h:475
concurrency::ControlFlowNode::ControlFlowNode
ControlFlowNode(PrecedenceRulesGraph &graph, unsigned int nodeIndex, const std::string &name)
Constructor.
Definition: PrecedenceRulesGraph.h:418
concurrency::PrecedenceRulesGraph::dumpControlFlow
std::string dumpControlFlow() const
Print out control flow of Algorithms and Sequences.
Definition: PrecedenceRulesGraph.cpp:560
MsgStream
Definition: MsgStream.h:29
precedence::AlgoTraceProps
Definition: PrecedenceRulesGraph.h:49
plotSpeedupsPyRoot.time
time
Definition: plotSpeedupsPyRoot.py:180
concurrency::AlgorithmNode::getRank
float getRank() const
Get Algorithm rank.
Definition: PrecedenceRulesGraph.h:516
concurrency::PrecedenceRulesGraph::m_algoNameToAlgoNodeMap
std::unordered_map< std::string, std::unique_ptr< AlgorithmNode > > m_algoNameToAlgoNodeMap
Index: map of algorithm's name to AlgorithmNode.
Definition: PrecedenceRulesGraph.h:694
concurrency::PrecedenceRulesGraph::m_algoCounter
unsigned int m_algoCounter
Total number of algorithm nodes in the graph.
Definition: PrecedenceRulesGraph.h:706
precedence::AlgoTraceProps::AlgoTraceProps
AlgoTraceProps()
Definition: PrecedenceRulesGraph.h:50
precedence::VariantVertexProps
std::variant< AlgoProps, DecisionHubProps, DataProps, CondDataProps > VariantVertexProps
Definition: PrecedenceRulesGraph.h:391
DataObjID
Definition: DataObjID.h:47
precedence::EndTime::operator()
std::string operator()(const DecisionHubProps &) const
Definition: PrecedenceRulesGraph.h:328
concurrency::DataNode::DataNode
DataNode(PrecedenceRulesGraph &graph, const DataObjID &path)
Constructor.
Definition: PrecedenceRulesGraph.h:557
precedence::Duration::Duration
Duration(const EventSlot &slot, SmartIF< ISvcLocator > &svcLocator)
Definition: PrecedenceRulesGraph.h:337
concurrency
Definition: PrecedenceRulesGraph.cpp:38
precedence::VertexName::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:128
concurrency::PrecedenceRulesGraph::m_conditionsRealmEnabled
bool m_conditionsRealmEnabled
Enable conditions realm of precedence rules.
Definition: PrecedenceRulesGraph.h:720
precedence::AlgoProps
Definition: PrecedenceRulesGraph.h:66
concurrency::DataNode::getConsumers
const std::vector< AlgorithmNode * > & getConsumers() const
Get all data object consumers.
Definition: PrecedenceRulesGraph.h:581
concurrency::IGraphVisitor::visitEnter
virtual bool visitEnter(DecisionNode &) const
Definition: IGraphVisitor.h:24
precedence::EntityState::operator()
std::string operator()(const CondDataProps &props) const
Definition: PrecedenceRulesGraph.h:241
concurrency::AlgorithmNode::m_algorithm
Gaudi::Algorithm * m_algorithm
Algorithm representative behind the AlgorithmNode.
Definition: PrecedenceRulesGraph.h:537
TimelineEvent.h
concurrency::DecisionNode
Definition: PrecedenceRulesGraph.h:440
concurrency::PrecedenceRulesGraph::m_precTrace
precedence::PrecTrace m_precTrace
facilities for algorithm precedence tracing
Definition: PrecedenceRulesGraph.h:713
concurrency::DataNode::addProducerNode
void addProducerNode(AlgorithmNode *node)
Add relationship to producer AlgorithmNode.
Definition: PrecedenceRulesGraph.h:569
precedence::EntityState::EntityState
EntityState(const EventSlot &slot, SmartIF< ISvcLocator > &svcLocator, bool conditionsEnabled)
Definition: PrecedenceRulesGraph.h:196
concurrency::PrecedenceRulesGraph::m_algoNameToAlgoInputsMap
std::unordered_map< std::string, DataObjIDColl > m_algoNameToAlgoInputsMap
Indexes: maps of algorithm's name to algorithm's inputs/outputs.
Definition: PrecedenceRulesGraph.h:700
concurrency::AlgorithmNode::m_inputs
std::vector< DataNode * > m_inputs
Algorithm inputs (DataNodes)
Definition: PrecedenceRulesGraph.h:550
concurrency::ControlFlowNode::m_nodeName
std::string m_nodeName
Definition: PrecedenceRulesGraph.h:437
concurrency::DecisionNode::m_allPass
bool m_allPass
Whether always passing regardless of daughter results.
Definition: PrecedenceRulesGraph.h:473
concurrency::PrecedenceRulesGraph::getAlgorithmNode
AlgorithmNode * getAlgorithmNode(const std::string &algoName) const
Get the AlgorithmNode from by algorithm name using graph index.
Definition: PrecedenceRulesGraph.h:652
concurrency::PrecedenceRulesGraph::m_PRGraph
precedence::PRGraph m_PRGraph
BGL-based graph of precedence rules.
Definition: PrecedenceRulesGraph.h:717
precedence::EntityState::operator()
std::string operator()(const DataProps &props) const
Definition: PrecedenceRulesGraph.h:231
concurrency::PrecedenceRulesGraph::dumpDataFlow
std::string dumpDataFlow() const
Print out all data origins and destinations, as reflected in the EF graph.
Definition: PrecedenceRulesGraph.cpp:591
concurrency::PrecedenceRulesGraph::registerIODataObjects
void registerIODataObjects(const Gaudi::Algorithm *algo)
Register algorithm in the Data Dependency index.
Definition: PrecedenceRulesGraph.cpp:299
ConditionsStallTest.name
name
Definition: ConditionsStallTest.py:77
Cause::source::Task
@ Task
precedence::AlgoProps::m_name
std::string m_name
Definition: PrecedenceRulesGraph.h:75
DataObject.h
concurrency::DataNode::addConsumerNode
void addConsumerNode(AlgorithmNode *node)
Add relationship to consumer AlgorithmNode.
Definition: PrecedenceRulesGraph.h:574
precedence::DecisionHubProps::m_inverted
bool m_inverted
Whether the selection result is negated or not.
Definition: PrecedenceRulesGraph.h:106
precedence::StartTime::StartTime
StartTime(const EventSlot &slot, SmartIF< ISvcLocator > &svcLocator)
Definition: PrecedenceRulesGraph.h:258
precedence::AlgoTraceProps::m_start
long long int m_start
Definition: PrecedenceRulesGraph.h:58
precedence::GroupLogic
Definition: PrecedenceRulesGraph.h:143
concurrency::AlgorithmNode::m_isAsynchronous
bool m_isAsynchronous
If an algorithm is asynchronous.
Definition: PrecedenceRulesGraph.h:545
concurrency::ControlFlowNode
Definition: PrecedenceRulesGraph.h:415
concurrency::PrecedenceRulesGraph::m_algoNameToAlgoOutputsMap
std::unordered_map< std::string, DataObjIDColl > m_algoNameToAlgoOutputsMap
Definition: PrecedenceRulesGraph.h:701
precedence::DecisionHubProps
Definition: PrecedenceRulesGraph.h:85
concurrency::PrecedenceRulesGraph::addAlgorithmNode
StatusCode addAlgorithmNode(Gaudi::Algorithm *daughterAlgo, const std::string &parentName)
Add algorithm node.
Definition: PrecedenceRulesGraph.cpp:372
concurrency::IPrecedenceRulesGraph
Definition: PrecedenceRulesGraph.h:612
concurrency::PrecedenceRulesGraph::enableAnalysis
void enableAnalysis()
BGL-based facilities.
Definition: PrecedenceRulesGraph.h:674
precedence::GroupExit::operator()
std::string operator()(const AlgoProps &) const
Definition: PrecedenceRulesGraph.h:152
TimelineEvent::algorithm
std::string algorithm
Definition: TimelineEvent.h:24
precedence::EntityState::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:223
concurrency::PrecedenceRulesGraph::serviceLocator
SmartIF< ISvcLocator > & serviceLocator() const override
Retrieve pointer to service locator.
Definition: PrecedenceRulesGraph.h:668
precedence::StartTime::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:270
Properties.v
v
Definition: Properties.py:122
precedence::StartTime::operator()
std::string operator()(const DecisionHubProps &) const
Definition: PrecedenceRulesGraph.h:289
concurrency::DataNode
Definition: PrecedenceRulesGraph.h:554
concurrency::CompareNodes
Definition: PrecedenceRulesGraph.h:617
precedence::EntityState
Definition: PrecedenceRulesGraph.h:195
EventSlot::controlFlowState
std::vector< int > controlFlowState
State of the control flow.
Definition: EventSlot.h:86
precedence::GroupMode::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:136
precedence::AlgoTraceVertex
boost::graph_traits< PrecTrace >::vertex_descriptor AlgoTraceVertex
Definition: PrecedenceRulesGraph.h:63
precedence::StartTime::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:291
concurrency::DecisionNode::m_parents
std::vector< DecisionNode * > m_parents
Direct parent nodes.
Definition: PrecedenceRulesGraph.h:479
precedence::CFDecision::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:190
concurrency::DecisionNode::accept
bool accept(IGraphVisitor &visitor) override
Visitor entry point.
Definition: PrecedenceRulesGraph.cpp:65
concurrency::AlgorithmNode::addOutputDataNode
void addOutputDataNode(DataNode *node)
Associate an AlgorithmNode, which is a data supplier for this one.
Definition: PrecedenceRulesGraph.cpp:208
precedence::AlgoTraceProps::m_name
std::string m_name
Definition: PrecedenceRulesGraph.h:54
precedence::AllPass
Definition: PrecedenceRulesGraph.h:171
concurrency::ConditionNode::m_condSvc
SmartIF< ICondSvc > m_condSvc
Definition: PrecedenceRulesGraph.h:607
TimelineEvent::end
time_point end
Definition: TimelineEvent.h:27
compareRootHistos.state
state
Definition: compareRootHistos.py:496
precedence::Operations::operator()
std::string operator()(const DecisionHubProps &) const
Definition: PrecedenceRulesGraph.h:379
concurrency::PrecedenceRulesGraph::getHeadNode
DecisionNode * getHeadNode() const
Get head node.
Definition: PrecedenceRulesGraph.h:648
concurrency::PrecedenceRulesGraph::node
PRVertexDesc node(const std::string &) const
Definition: PrecedenceRulesGraph.cpp:529
concurrency::PrecedenceRulesGraph::buildDataDependenciesRealm
StatusCode buildDataDependenciesRealm()
Build data dependency realm WITH data object nodes participating.
Definition: PrecedenceRulesGraph.cpp:318
precedence::GroupExit
Definition: PrecedenceRulesGraph.h:151
concurrency::ConditionNode::ConditionNode
ConditionNode(PrecedenceRulesGraph &graph, const DataObjID &path, SmartIF< ICondSvc > condSvc)
Constructor.
Definition: PrecedenceRulesGraph.h:595
precedence::CFDecision::m_slot
const EventSlot & m_slot
Definition: PrecedenceRulesGraph.h:192
precedence::Operations::operator()
std::string operator()(const AlgoProps &props) const
Definition: PrecedenceRulesGraph.h:375
precedence::GroupLogic::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:148
concurrency::PrecedenceRulesGraph::m_svcLocator
SmartIF< ISvcLocator > m_svcLocator
Service locator (needed to access the MessageSvc)
Definition: PrecedenceRulesGraph.h:709
concurrency::DataNode::m_data_object_path
DataObjID m_data_object_path
Definition: PrecedenceRulesGraph.h:587
precedence::EntityState::m_slot
const EventSlot & m_slot
Definition: PrecedenceRulesGraph.h:250
precedence::DecisionHubProps::m_allPass
bool m_allPass
Whether always passing regardless of daughter results.
Definition: PrecedenceRulesGraph.h:110
concurrency::PrecedenceRulesGraph::addHeadNode
void addHeadNode(const std::string &headName, concurrency::Concurrent, concurrency::PromptDecision, concurrency::ModeOr, concurrency::AllPass, concurrency::Inverted)
Add a node, which has no parents.
Definition: PrecedenceRulesGraph.cpp:504
precedence::CFDecision::operator()
std::string operator()(const DecisionHubProps &props) const
Definition: PrecedenceRulesGraph.h:186
concurrency::ControlFlowNode::m_graph
PrecedenceRulesGraph * m_graph
Definition: PrecedenceRulesGraph.h:433
precedence::GroupMode::operator()
std::string operator()(const DataProps &) const
Definition: PrecedenceRulesGraph.h:140
EventSlot::algsStates
AlgsExecutionStates algsStates
Vector of algorithms states.
Definition: EventSlot.h:84
precedence::StartTime::m_slot
const EventSlot & m_slot
Definition: PrecedenceRulesGraph.h:293
concurrency::AlgorithmNode::isAsynchronous
bool isAsynchronous() const
Check if algorithm is asynchronous.
Definition: PrecedenceRulesGraph.h:526
Cause
Definition: PrecedenceRulesGraph.h:397
DataObjID_Hasher
Definition: DataObjID.h:118
concurrency::DecisionNode::DecisionNode
DecisionNode(PrecedenceRulesGraph &graph, unsigned int nodeIndex, const std::string &name, Concurrent modeConcurrent, PromptDecision modePromptDecision, ModeOr modeOR, AllPass allPass, Inverted isInverted)
Constructor.
Definition: PrecedenceRulesGraph.h:443
precedence::EndTime::m_slot
const EventSlot & m_slot
Definition: PrecedenceRulesGraph.h:332
precedence::DecisionHubProps::m_modePromptDecision
bool m_modePromptDecision
Whether to evaluate the hub decision ASA its child decisions allow to do that.
Definition: PrecedenceRulesGraph.h:104
concurrency::DataNode::getProducers
const std::vector< AlgorithmNode * > & getProducers() const
Get all data object producers.
Definition: PrecedenceRulesGraph.h:579
ICondSvc.h
concurrency::AlgorithmNode::getAlgorithm
Gaudi::Algorithm * getAlgorithm() const
get Algorithm representatives
Definition: PrecedenceRulesGraph.h:519
concurrency::ControlFlowNode::getNodeIndex
const unsigned int & getNodeIndex() const
Get node index.
Definition: PrecedenceRulesGraph.h:428
Gaudi::ParticleProperties::index
size_t index(const Gaudi::ParticleProperty *property, const Gaudi::Interfaces::IParticlePropertySvc *service)
helper utility for mapping of Gaudi::ParticleProperty object into non-negative integral sequential id...
Definition: IParticlePropertySvc.cpp:39
precedence::GroupLogic::operator()
std::string operator()(const AlgoProps &) const
Definition: PrecedenceRulesGraph.h:144
concurrency::AlgorithmNode::addParentNode
void addParentNode(DecisionNode *node)
Add a parent node.
Definition: PrecedenceRulesGraph.cpp:202
Cause::m_sourceName
std::string m_sourceName
Definition: PrecedenceRulesGraph.h:401
precedence::AlgoProps::AlgoProps
AlgoProps(Gaudi::Algorithm *algo, uint nodeIndex, uint algoIndex)
Definition: PrecedenceRulesGraph.h:68
concurrency::PrecedenceRulesGraph::addEdgeToPrecTrace
void addEdgeToPrecTrace(const AlgorithmNode *u, const AlgorithmNode *v)
set cause-effect connection between two algorithms in the precedence trace
Definition: PrecedenceRulesGraph.cpp:719
precedence::AlgoProps::m_algorithm
Gaudi::Algorithm * m_algorithm
Algorithm representative behind the AlgorithmNode.
Definition: PrecedenceRulesGraph.h:80