Uses of Class
oracle.pgx.common.Pair
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Packages that use Pair Package Description oracle.pgx.api This package contains the main Java APIs.oracle.pgx.common This package contains APIs and classes shared by all sub-components of PGX. -
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Uses of Pair in oracle.pgx.api
Methods in oracle.pgx.api that return Pair Modifier and Type Method Description <ID> Pair<PgxMap<java.lang.Integer,PgxVertex<ID>>,VertexSet<ID>>
Analyst. computeHighDegreeVertices(PgxGraph graph, int k)
Computes the k vertices with the highest degrees in the graph.<ID> Pair<PgxMap<java.lang.Integer,PgxVertex<ID>>,VertexSet<ID>>
Analyst. computeHighDegreeVertices(PgxGraph graph, int k, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices)
Computes the k vertices with the highest degrees in the graph.<ID> Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>
Analyst. diameter(PgxGraph graph)
Diameter/radius gives an overview of the distances in a graph<ID> Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>
Analyst. diameter(PgxGraph graph, Scalar<java.lang.Integer> diameter, VertexProperty<ID,java.lang.Integer> eccentricity)
Diameter/radius gives an overview of the distances in a graph<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, ID root)
Convenience wrapper aroundAnalyst.filteredBfs(PgxGraph, PgxVertex)
taking a vertex ID instead ofPgxVertex
.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, ID root, int maxDepth)
Convenience wrapper aroundAnalyst.filteredBfs(PgxGraph, PgxVertex, int)
taking a vertex ID instead ofPgxVertex
.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredBfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, ID root)
Convenience wrapper aroundAnalyst.filteredDfs(PgxGraph, PgxVertex)
taking a vertex ID instead ofPgxVertex
.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, ID root, int maxDepth)
Convenience wrapper aroundAnalyst.filteredDfs(PgxGraph, PgxVertex, int)
taking a vertex ID instead ofPgxVertex
.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>
Analyst. filteredDfs(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> Pair<PgxVertex<ID>,PgxVertex<ID>>
PgxEdge. getVertices()
Blocking version ofPgxEdge.getVerticesAsync()
.<ID> Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>
Analyst. hits(PgxGraph graph)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>
Analyst. hits(PgxGraph graph, int max)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>
Analyst. hits(PgxGraph graph, int max, VertexProperty<ID,java.lang.Double> auth, VertexProperty<ID,java.lang.Double> hubs)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>
Analyst. hits(PgxGraph graph, VertexProperty<ID,java.lang.Double> auth, VertexProperty<ID,java.lang.Double> hubs)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>
Analyst. kcore(PgxGraph graph)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>
Analyst. kcore(PgxGraph graph, int minCore, int maxCore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>
Analyst. kcore(PgxGraph graph, int minCore, int maxCore, Scalar<java.lang.Long> maxKCore, VertexProperty<ID,java.lang.Long> kcore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>
Analyst. kcore(PgxGraph graph, Scalar<java.lang.Long> maxKCore, VertexProperty<ID,java.lang.Long> kcore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> Pair<VertexSequence<ID>,EdgeSequence>
Analyst. limitedShortestPathHopDist(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index)
Computes the k-hop limited shortest path between two vertices.<ID> Pair<VertexSequence<ID>,EdgeSequence>
Analyst. limitedShortestPathHopDist(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, VertexSequence<ID> pathVertices, EdgeSequence pathEdges)
Computes the k-hop limited shortest path between two vertices.<ID> Pair<VertexSequence<ID>,EdgeSequence>
Analyst. limitedShortestPathHopDistFiltered(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, EdgeFilter filter)
Computes the k-hop limited shortest path between two vertices.<ID> Pair<VertexSequence<ID>,EdgeSequence>
Analyst. limitedShortestPathHopDistFiltered(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, EdgeFilter filter, VertexSequence<ID> pathVertices, EdgeSequence pathEdges)
Computes the k-hop limited shortest path between two vertices.<ID> Pair<Scalar<java.lang.Double>,Scalar<java.lang.Double>>
Analyst. partitionConductance(PgxGraph graph, Partition<ID> partition)
Partition conductance assesses the quality of many partitions in a graph<ID> Pair<Scalar<java.lang.Double>,Scalar<java.lang.Double>>
Analyst. partitionConductance(PgxGraph graph, Partition<ID> partition, Scalar<java.lang.Double> avgConductance, Scalar<java.lang.Double> minConductance)
Partition conductance assesses the quality of many partitions in a graph<ID> Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>
Analyst. radius(PgxGraph graph)
Diameter/radius gives an overview of the distances in a graph<ID> Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>
Analyst. radius(PgxGraph graph, Scalar<java.lang.Integer> radius, VertexProperty<ID,java.lang.Integer> eccentricity)
Diameter/radius gives an overview of the distances in a graph<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, ID vertexId, int topK)
Convenience wrapper aroundAnalyst.whomToFollow(PgxGraph, PgxVertex, int)
taking a vertex ID instead of aPgxVertex
.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, ID vertexId, int topK, int sizeCircleOfTrust)
Convenience wrapper aroundAnalyst.whomToFollow(PgxGraph, PgxVertex, int, int)
taking a vertex ID instead of aPgxVertex
.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, ID vertexId, int topK, int sizeCircleOfTrust, int maxIter, java.math.BigDecimal tol, java.math.BigDecimal dampingFactor, int salsaMaxIter, java.math.BigDecimal salsaTol)
Convenience wrapper aroundAnalyst.whomToFollow(PgxGraph, PgxVertex, int, int, int, BigDecimal, BigDecimal, int, BigDecimal)
taking a vertex ID instead of aPgxVertex
.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, ID vertexId, int topK, int sizeCircleOfTrust, int maxIter, java.math.BigDecimal tol, java.math.BigDecimal dampingFactor, int salsaMaxIter, java.math.BigDecimal salsaTol, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
Convenience wrapper aroundAnalyst.whomToFollow(PgxGraph, PgxVertex, int, int, int, BigDecimal, BigDecimal, int, BigDecimal, VertexSequence, VertexSequence)
taking a vertex ID instead of aPgxVertex
.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, int maxIter, double tol, double dampingFactor, int salsaMaxIter, double salsaTol)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, int maxIter, double tol, double dampingFactor, int salsaMaxIter, double salsaTol, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, int topK, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> Pair<VertexSequence<ID>,VertexSequence<ID>>
Analyst. whomToFollow(PgxGraph graph, PgxVertex<ID> vertex, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.Methods in oracle.pgx.api that return types with arguments of type Pair Modifier and Type Method Description <ID> PgxFuture<Pair<PgxMap<java.lang.Integer,PgxVertex<ID>>,VertexSet<ID>>>
Analyst. computeHighDegreeVerticesAsync(PgxGraph graph, int k)
Computes the k vertices with the highest degrees in the graph.<ID> PgxFuture<Pair<PgxMap<java.lang.Integer,PgxVertex<ID>>,VertexSet<ID>>>
Analyst. computeHighDegreeVerticesAsync(PgxGraph graph, int k, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices)
Computes the k vertices with the highest degrees in the graph.<ID> PgxFuture<Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>>
Analyst. diameterAsync(PgxGraph graph)
Diameter/radius gives an overview of the distances in a graph<ID> PgxFuture<Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>>
Analyst. diameterAsync(PgxGraph graph, Scalar<java.lang.Integer> diameter, VertexProperty<ID,java.lang.Integer> eccentricity)
Diameter/radius gives an overview of the distances in a graph<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredBfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, int maxDepth)
A Breadth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, int maxDepth, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, boolean initWithInf, VertexProperty<ID,java.lang.Integer> distance, VertexProperty<ID,PgxVertex<ID>> parent)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Integer>,VertexProperty<ID,PgxVertex<ID>>>>
Analyst. filteredDfsAsync(PgxGraph graph, PgxVertex<ID> root, VertexFilter navigator, int maxDepth)
A Depth-First Search implementation with an option to filter edges during the traversal of the graph.<ID> PgxFuture<Pair<PgxVertex<ID>,PgxVertex<ID>>>
PgxEdge. getVerticesAsync()
Gets both vertices of this edge as a pair.<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>>
Analyst. hitsAsync(PgxGraph graph)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>>
Analyst. hitsAsync(PgxGraph graph, int max)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>>
Analyst. hitsAsync(PgxGraph graph, int max, VertexProperty<ID,java.lang.Double> auth, VertexProperty<ID,java.lang.Double> hubs)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> PgxFuture<Pair<VertexProperty<ID,java.lang.Double>,VertexProperty<ID,java.lang.Double>>>
Analyst. hitsAsync(PgxGraph graph, VertexProperty<ID,java.lang.Double> auth, VertexProperty<ID,java.lang.Double> hubs)
HITS assigns ranking scores to the vertices, aimed to assess the quality of information and references in linked structures<ID> PgxFuture<Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>>
Analyst. kcoreAsync(PgxGraph graph)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> PgxFuture<Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>>
Analyst. kcoreAsync(PgxGraph graph, int minCore, int maxCore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> PgxFuture<Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>>
Analyst. kcoreAsync(PgxGraph graph, int minCore, int maxCore, Scalar<java.lang.Long> maxKCore, VertexProperty<ID,java.lang.Long> kcore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> PgxFuture<Pair<Scalar<java.lang.Long>,VertexProperty<ID,java.lang.Long>>>
Analyst. kcoreAsync(PgxGraph graph, Scalar<java.lang.Long> maxKCore, VertexProperty<ID,java.lang.Long> kcore)
k-core decomposes a graph into layers revealing subgraphs with particular properties<ID> PgxFuture<Pair<VertexSequence<ID>,EdgeSequence>>
Analyst. limitedShortestPathHopDistAsync(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index)
Computes the k-hop limited shortest path between two vertices.<ID> PgxFuture<Pair<VertexSequence<ID>,EdgeSequence>>
Analyst. limitedShortestPathHopDistAsync(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, VertexSequence<ID> pathVertices, EdgeSequence pathEdges)
Computes the k-hop limited shortest path between two vertices.<ID> PgxFuture<Pair<VertexSequence<ID>,EdgeSequence>>
Analyst. limitedShortestPathHopDistFilteredAsync(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, EdgeFilter filter)
Computes the k-hop limited shortest path between two vertices.<ID> PgxFuture<Pair<VertexSequence<ID>,EdgeSequence>>
Analyst. limitedShortestPathHopDistFilteredAsync(PgxGraph graph, PgxVertex<ID> src, PgxVertex<ID> dst, int maxHops, PgxMap<java.lang.Integer,PgxVertex<ID>> highDegreeVertexMapping, VertexSet<ID> highDegreeVertices, VertexProperty<ID,PgxVect<java.lang.Integer>> index, EdgeFilter filter, VertexSequence<ID> pathVertices, EdgeSequence pathEdges)
Computes the k-hop limited shortest path between two vertices.<ID> PgxFuture<Pair<Scalar<java.lang.Double>,Scalar<java.lang.Double>>>
Analyst. partitionConductanceAsync(PgxGraph graph, Partition<ID> partition)
Partition conductance assesses the quality of many partitions in a graph<ID> PgxFuture<Pair<Scalar<java.lang.Double>,Scalar<java.lang.Double>>>
Analyst. partitionConductanceAsync(PgxGraph graph, Partition<ID> partition, Scalar<java.lang.Double> avgConductance, Scalar<java.lang.Double> minConductance)
Partition conductance assesses the quality of many partitions in a graph<ID> PgxFuture<Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>>
Analyst. radiusAsync(PgxGraph graph)
Diameter/radius gives an overview of the distances in a graph<ID> PgxFuture<Pair<Scalar<java.lang.Integer>,VertexProperty<ID,java.lang.Integer>>>
Analyst. radiusAsync(PgxGraph graph, Scalar<java.lang.Integer> radius, VertexProperty<ID,java.lang.Integer> eccentricity)
Diameter/radius gives an overview of the distances in a graph<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, int maxIter, double tol, double dampingFactor, int salsaMaxIter, double salsaTol)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, int maxIter, double tol, double dampingFactor, int salsaMaxIter, double salsaTol, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK, int sizeCircleOfTrust, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, int topK, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm.<ID> PgxFuture<Pair<VertexSequence<ID>,VertexSequence<ID>>>
Analyst. whomToFollowAsync(PgxGraph graph, PgxVertex<ID> vertex, VertexSequence<ID> hubs, VertexSequence<ID> authorities)
WTF is a recommendation algorithm. -
Uses of Pair in oracle.pgx.common
Methods in oracle.pgx.common that return Pair Modifier and Type Method Description static <A,B>
Pair<A,B>Pair. of(A a, B b)
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