10 #define ON_DEBUG if ( msgLevel( MSG::DEBUG ) ) 11 #define ON_VERBOSE if ( msgLevel( MSG::VERBOSE ) ) 22 if ( sc.isFailure() ) {
23 fatal() <<
"Base class failed to initialize" <<
endmsg;
28 if ( m_dumpPrecTrace || m_dumpPrecRules ) {
29 if ( !boost::filesystem::create_directory( m_dumpDirName ) ) {
30 error() <<
"Could not create directory " << m_dumpDirName
32 "for task precedence tracing" 38 if ( m_dumpPrecRules ) m_PRGraph.enableAnalysis();
41 m_algResourcePool = serviceLocator()->service(
"AlgResourcePool" );
42 if ( !m_algResourcePool.isValid() ) {
43 fatal() <<
"Error retrieving AlgoResourcePool" <<
endmsg;
47 info() <<
"Assembling CF and DF task precedence rules" <<
endmsg;
54 for (
const auto& ialgoPtr : m_algResourcePool->getTopAlgList() ) {
56 if ( !algorithm ) fatal() <<
"Conversion from IAlgorithm to Gaudi::Algorithm failed" <<
endmsg;
57 sc = assembleCFRules( algorithm,
"RootDecisionHub" );
58 if ( sc.isFailure() ) {
59 fatal() <<
"Could not assemble the CF precedence realm" <<
endmsg;
64 if ( m_ignoreDFRules ) {
65 warning() <<
"Ignoring DF precedence rules, disabling all associated features" <<
endmsg;
70 sc = m_PRGraph.initialize();
71 if ( sc.isFailure() ) {
72 fatal() <<
"Could not assemble the DF precedence realm" <<
endmsg;
77 if ( m_mode ==
"PCE" ) {
79 m_PRGraph.rankAlgorithms( ranker );
80 }
else if ( m_mode ==
"COD" ) {
82 m_PRGraph.rankAlgorithms( ranker );
83 }
else if ( m_mode ==
"E" ) {
85 m_PRGraph.rankAlgorithms( ranker );
86 }
else if ( m_mode ==
"T" ) {
88 m_PRGraph.rankAlgorithms( ranker );
89 }
else if ( m_mode ==
"DRE" ) {
91 m_PRGraph.rankAlgorithms( ranker );
92 }
else if ( !m_mode.empty() ) {
93 error() <<
"Requested prioritization rule '" << m_mode <<
"' is unknown" <<
endmsg;
99 if ( m_verifyRules ) {
103 m_PRGraph.accept( propValidator );
104 if ( !propValidator.passed() )
105 warning() << propValidator.reply() <<
endmsg;
110 if ( sc.isSuccess() ) info() <<
"PrecedenceSvc initialized successfully" <<
endmsg;
117 unsigned int recursionDepth ) {
124 bool isGaudiSequencer(
false );
125 bool isAthSequencer(
false );
129 sc = m_PRGraph.addAlgorithmNode( algo, parentName,
false,
false );
133 isGaudiSequencer =
true;
135 isAthSequencer =
true;
140 error() <<
"Algorithm " << algo->
name() <<
" has isSequence==true, but unable to dcast to Sequence" <<
endmsg;
144 auto subAlgorithms =
seq->subAlgorithms();
150 bool allPass =
false;
151 bool promptDecision =
false;
152 bool isSequential =
false;
153 bool isInverted =
false;
155 if ( isGaudiSequencer ) {
156 modeOr = ( algo->
getProperty(
"ModeOR" ).toString() ==
"True" );
157 allPass = ( algo->
getProperty(
"IgnoreFilterPassed" ).toString() ==
"True" );
158 promptDecision = ( algo->
getProperty(
"ShortCircuit" ).toString() ==
"True" );
159 isInverted = ( algo->
getProperty(
"Invert" ).toString() ==
"True" );
160 if ( allPass ) promptDecision =
false;
161 isSequential = ( algo->
hasProperty(
"Sequential" ) && ( algo->
getProperty(
"Sequential" ).toString() ==
"True" ) );
162 }
else if ( isAthSequencer ) {
163 modeOr = ( algo->
getProperty(
"ModeOR" ).toString() ==
"True" );
164 allPass = ( algo->
getProperty(
"IgnoreFilterPassed" ).toString() ==
"True" );
165 promptDecision = ( algo->
getProperty(
"StopOverride" ).toString() ==
"False" );
166 isSequential = ( algo->
hasProperty(
"Sequential" ) && ( algo->
getProperty(
"Sequential" ).toString() ==
"True" ) );
171 error() <<
"Failed to add DecisionHub " << algo->
name() <<
" to graph of precedence rules" <<
endmsg;
175 for (
auto subalgo : *subAlgorithms ) {
176 sc = assembleCFRules( subalgo, algo->
name(), recursionDepth );
178 error() <<
"Algorithm " << subalgo->name() <<
" could not be flattened" <<
endmsg;
191 m_PRGraph.getAlgorithmNode( cause.
m_sourceName )->accept( visitor );
195 m_PRGraph.getHeadNode()->accept( visitor );
221 while ( !CFRulesResolved( slot ) ) {
223 int prevAlgosNum = visitor.m_nodesSucceeded;
224 ON_DEBUG debug() <<
" Proceeding with iteration #" << cntr <<
endmsg;
226 m_PRGraph.getHeadNode()->accept( visitor );
227 if ( prevNodeDecisions == nodeDecisions ) {
228 error() <<
" No progress on iteration " << cntr <<
" detected, node decisions are:" << nodeDecisions <<
endmsg;
231 info() <<
" Iteration #" << cntr <<
" finished, total algorithms executed: " << visitor.m_nodesSucceeded
235 s << cntr <<
", " << ( visitor.m_nodesSucceeded - prevAlgosNum ) <<
"\n";
238 myfile.
open(
"RunSimulation.csv", std::ios::app );
242 if ( visitor.m_nodesSucceeded != prevAlgosNum ) counters.
push_back( visitor.m_nodesSucceeded );
245 info() <<
"Asymptotical intra-event speedup: " << (float)visitor.m_nodesSucceeded / (
float)counters.
size() <<
endmsg;
249 nodeDecisions.assign( nodeDecisions.size(), -1 );
263 info() << m_PRGraph.dumpControlFlow() <<
endmsg;
267 info() <<
std::endl <<
"===================== Data Flow Configuration ====================" <<
std::endl;
268 info() << m_PRGraph.dumpDataFlow() <<
endmsg;
282 if ( !m_dumpPrecRules ) {
283 warning() <<
"To trace temporal and topological aspects of execution flow, " 284 <<
"set DumpPrecedenceRules property to True " <<
endmsg;
288 ON_DEBUG debug() <<
"Dumping temporal precedence rules" <<
endmsg;
291 if ( m_dumpPrecRulesFile.empty() ) {
293 fileName =
"rules.evt-" +
std::to_string( eventID.event_number() ) +
"." +
"run-" +
296 fileName = m_dumpPrecRulesFile;
300 pth.append( fileName );
302 m_PRGraph.dumpPrecRules( pth, slot );
308 if ( !m_dumpPrecTrace ) {
309 warning() <<
"To trace task precedence patterns, set DumpPrecedenceTrace " 310 <<
"property to True " <<
endmsg;
314 ON_DEBUG debug() <<
"Dumping temporal precedence trace" <<
endmsg;
317 if ( m_dumpPrecTraceFile.empty() ) {
319 fileName =
"trace.evt-" +
std::to_string( eventID.event_number() ) +
"." +
"run-" +
322 fileName = m_dumpPrecTraceFile;
326 pth.append( fileName );
328 m_PRGraph.dumpPrecTrace( pth );
StatusCode getProperty(Gaudi::Details::PropertyBase *p) const override
get the property
StatusCode initialize() override
Class representing an event slot.
void dumpPrecedenceRules(EventSlot &) override
Dump precedence rules (available only in DEBUG mode, and must be enabled with the corresponding servi...
void dumpDataFlow() const override
StatusCode assembleCFRules(Gaudi::Algorithm *, const std::string &, unsigned int recursionDepth=0)
StatusCode finalize() override
const std::string & name() const override
The identifying name of the algorithm object.
bool isSequence() const override
Are we a Sequence?
A service to resolve the task execution precedence.
bool hasProperty(const std::string &name) const override
Return true if we have a property with the given name.
constexpr static const auto SUCCESS
std::vector< int > controlFlowState
State of the control flow.
Gaudi::tagged_bool< class ModeOr_tag > ModeOr
StatusCode iterate(EventSlot &, const Cause &) override
Infer the precedence effect caused by an execution flow event.
#define DECLARE_COMPONENT(type)
Gaudi::tagged_bool< class Inverted_tag > Inverted
StatusCode finalize() override
Finalize.
This class is used for returning status codes from appropriate routines.
void dumpPrecedenceTrace(EventSlot &) override
Dump precedence trace (available only in DEBUG mode, and must be enabled with the corresponding servi...
bool CFRulesResolved(EventSlot &) const override
Check if the root CF decision is resolved.
StatusCode simulate(EventSlot &) const override
Simulate execution flow.
Gaudi::tagged_bool< class Concurrent_tag > Concurrent
Gaudi::tagged_bool< class PromptDecision_tag > PromptDecision
Base class from which all concrete algorithm classes should be derived.
Gaudi::tagged_bool< class AllPass_tag > AllPass
constexpr static const auto FAILURE
EventSlot * parentSlot
Pointer to parent slot (null for top level)
const std::string printState(EventSlot &) const override
const EventIDBase & eventID() const
class MergingTransformer< Out(const vector_of_const_< In > false
void dumpControlFlow() const override
Dump precedence rules.
MsgStream & endmsg(MsgStream &s)
MsgStream Modifier: endmsg. Calls the output method of the MsgStream.
std::unique_ptr< EventContext > eventContext
Cache for the eventContext.
AlgsExecutionStates algsStates
Vector of algorithms states.