public static dynamic GetDyno(string data, bool autoquotation = true, 
            bool treatUri = true,
            bool skipTriplesWithEmptyObject = false,
            bool mindAsterisk = false,
            bool useStore = false,
            string defaultGraphUri = "http://test.org/defaultgraph")
        {
            DynamicSPARQLSpace.dotNetRDF.Connector connector = null;

            if (useStore)
            {
                var store = new VDS.RDF.TripleStore();
                store.LoadFromString(data);
                connector =  new Connector(new InMemoryDataset(store, new Uri(defaultGraphUri)));
            }
            else
            {
                var graph = new VDS.RDF.Graph();
                graph.LoadFromString(data);
                connector =  new Connector(new InMemoryDataset(graph));
            }

            dynamic dyno = DynamicSPARQL.CreateDyno(connector.GetQueryingFunction(),
                updateFunc: connector.GetUpdateFunction(),
                autoquotation: autoquotation,
                treatUri: treatUri,
                skipTriplesWithEmptyObject:skipTriplesWithEmptyObject,
                mindAsterisk:mindAsterisk);

            return dyno;
        }
 /// <summary>Loads data from string with optional automated graph generation.</summary>
 /// <param name="store">Target store to be loaded with data.</param>
 /// <param name="data">String with data.</param>
 /// <param name="parser">RDF reader.</param>
 /// <param name="metaGraphUri">When provided, store will have automatically created graphs for all resources that are mentioned in the meta graph provided.</param>
 public static void LoadFromString(this ITripleStore store, string data, IRdfReader parser, Uri metaGraphUri)
 {
     ITripleStore targetStore = (metaGraphUri != null ? new TripleStore() : store);
     IGraph graph = new Graph();
     targetStore.Add(graph);
     graph.LoadFromString(data, parser);
     if (metaGraphUri != null)
     {
         store.ExpandGraphs((TripleStore)targetStore, metaGraphUri);
     }
 }
Exemple #3
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 private void CompareResultGraphs(string results, string expectedResultsPath, bool reduced)
 {
     var expectedResultGraph = new Graph();
     FileLoader.Load(expectedResultGraph, expectedResultsPath);
     var resultSet = expectedResultGraph.GetUriNode(new Uri("http://www.w3.org/2001/sw/DataAccess/tests/result-set#ResultSet"));
     if (resultSet != null)
     {
         var rdfParser = new SparqlRdfParser();
         var xmlParser = new SparqlXmlParser();
         var actualResultSet = new SparqlResultSet();
         var expectedResultSet = new SparqlResultSet();
         using (var tr = new StringReader(results))
         {
             xmlParser.Load(actualResultSet, tr);
         }
         rdfParser.Load(expectedResultSet, expectedResultsPath);
         var bnodeMap = new Dictionary<string, string>();
         CompareSparqlResults(actualResultSet, expectedResultSet, reduced, bnodeMap);
     }
     else
     {
         // This is a constructed graph
         var actualGraph = new Graph();
         actualGraph.LoadFromString(results);
         CompareTripleCollections(actualGraph.Triples, expectedResultGraph.Triples, reduced);
     }
 }
 private void CompareResultGraphs(string results, string expectedResultsPath, bool reduced)
 {
     var expectedResultGraph = new Graph();
     FileLoader.Load(expectedResultGraph, expectedResultsPath);
     var resultSet = expectedResultGraph.GetUriNode(new Uri("http://www.w3.org/2001/sw/DataAccess/tests/result-set#ResultSet"));
     if (resultSet != null)
     {
         var rdfParser = new SparqlRdfParser();
         var xmlParser = new SparqlXmlParser();
         var actualResultSet = new SparqlResultSet();
         var expectedResultSet = new SparqlResultSet();
         using (var tr = new StringReader(results))
         {
             xmlParser.Load(actualResultSet, tr);
         }
         rdfParser.Load(expectedResultSet, expectedResultsPath);
         var bnodeMap = new Dictionary<string, string>();
         CompareSparqlResults(actualResultSet, expectedResultSet, reduced, bnodeMap);
     }
     else
     {
         // This is a constructed graph
         var actualGraph = new Graph();
         actualGraph.LoadFromString(results);
         var toReplace = actualGraph.Triples.Where(
             t => IsGenid(t.Subject) || IsGenid(t.Predicate) || IsGenid(t.Object)).ToList();
         foreach (var t in toReplace)
         {
             var mapped = MapGenidToBlank(t);
             actualGraph.Retract(t);
             actualGraph.Assert(mapped);
         }
         CompareTripleCollections(actualGraph.Triples, expectedResultGraph.Triples, reduced);
     }
 }
        public void WritingRdfXmlWithDtds()
        {
            String fragment = "@prefix xsd: <" + NamespaceMapper.XMLSCHEMA + ">. @prefix : <http://example.org/>. :subj a :obj ; :has \"string\"^^xsd:string ; :has 23 .";
            Graph g = new Graph();
            g.LoadFromString(fragment);

            this.CheckRoundTrip(g);
        }
        public void WritingRdfXmlSimpleCollection()
        {
            String fragment = "@prefix : <http://example.org/>. :subj :pred ( 1 2 3 ).";

            Graph g = new Graph();
            g.LoadFromString(fragment);

            this.CheckRoundTrip(g);
        }
        public void WritingRdfXmlSimpleBNodeCollection3()
        {
            String fragment = "@prefix : <http://example.org/>. :subj :pred [ a :BNode ; :another :thing ].";

            Graph g = new Graph();
            g.LoadFromString(fragment);

            this.CheckRoundTrip(g);
        }