Class StrongConnectivity
- All Implemented Interfaces:
Closeable, AutoCloseable
- Direct Known Subclasses:
StrongConnectivityGabow
Any class implementing this abstract class can be used to solve the problem of finding strongly connected components in a directed graph.
It consists in finding components where every pair (u,v) of nodes contained in it has a path from u to v using the specified direction for each edge type.
It is possible to set some restrictions after constructing a new instance of this class and before running it in order to limit the results.
After the execution, we can retrieve the results stored in an instance of the ConnectedComponents class using the GetConnectedComponents method.
Check out the 'Algorithms' section in the SPARKSEE User Manual for more details on this.
- Author:
- Sparsity Technologies http://www.sparsity-technologies.com
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Method Summary
Modifier and TypeMethodDescriptionvoidAllows connectivity through all edge types of the graph.voidAllows connectivity through all node types of the graph.voidaddEdgeType(int type, EdgesDirection dir) Allows connectivity through edges of the given type.voidaddNodeType(int t) Allows connectivity through nodes of the given type.voidexcludeEdges(Objects edges) Set which edges can't be used.voidexcludeNodes(Objects nodes) Set which nodes can't be used.Returns the results generated by the execution of the algorithm.voidrun()Runs the algorithm in order to find the connected components.voidsetMaterializedAttribute(String attributeName) Creates a new common attribute type for all node types in the graph in order to store, persistently, the results related to the connected components found while executing this algorithm.Methods inherited from class Connectivity
close, isClosed
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Method Details
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addEdgeType
Allows connectivity through edges of the given type.- Parameters:
type- [in] Edge type.dir- [in] Edge direction.
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run
public void run()Runs the algorithm in order to find the connected components.This method can be called only once.
- Overrides:
runin classConnectivity
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excludeNodes
Set which nodes can't be used.This will replace any previously specified set of excluded nodes. Should only be used to exclude the usage of specific nodes from allowed node types because it's less efficient than not allowing a node type.
- Overrides:
excludeNodesin classConnectivity- Parameters:
nodes- [in] A set of node identifiers that must be kept intact until the destruction of the class.
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getConnectedComponents
Returns the results generated by the execution of the algorithm.These results contain information related to the connected components found as the number of different components, the set of nodes contained in each component or many other data.
- Overrides:
getConnectedComponentsin classConnectivity- Returns:
- Returns an instance of the class ConnectedComponents which contain information related to the connected components found.
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addAllEdgeTypes
Allows connectivity through all edge types of the graph.- Parameters:
dir- [in] Edge direction.
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excludeEdges
Set which edges can't be used.This will replace any previously specified set of excluded edges. Should only be used to exclude the usage of specific edges from allowed edge types because it's less efficient than not allowing an edge type.
- Overrides:
excludeEdgesin classConnectivity- Parameters:
edges- [in] A set of edge identifiers that must be kept intact until the destruction of the class.
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addNodeType
public void addNodeType(int t) Allows connectivity through nodes of the given type.- Overrides:
addNodeTypein classConnectivity- Parameters:
t- null
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setMaterializedAttribute
Creates a new common attribute type for all node types in the graph in order to store, persistently, the results related to the connected components found while executing this algorithm.Whenever the user wants to retrieve the results, even when the graph has been closed and opened again, it is only necessary to create a new instance of the class ConnectedComponents indicating the graph and the name of the common attribute type which stores the results. This instance will have all the information related to the connected components found in the moment of the execution of the algorithm that stored this data.
It is possible to run the algorithm without specifying this parameter in order to avoid materializing the results of the execution.
- Overrides:
setMaterializedAttributein classConnectivity- Parameters:
attributeName- [in] The name of the common attribute type for all node types in the graph which will store persistently the results generated by the execution of the algorithm.
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addAllNodeTypes
public void addAllNodeTypes()Allows connectivity through all node types of the graph.- Overrides:
addAllNodeTypesin classConnectivity
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