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@ -21,7 +21,7 @@ using ArcGIS.Desktop.Framework.Threading.Tasks;
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using ArcGIS.Core.Data;
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using ArcGIS.Desktop.Core;
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using ArcGIS.Desktop.Editing;
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using ArcGIS.Desktop.Internal.Layouts.Utilities;
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namespace PruebaAddIn
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{
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@ -59,54 +59,75 @@ namespace PruebaAddIn
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return Geoprocessing.MakeValueArray(inlayers, outpath);
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});*/
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EditOperation op = new EditOperation();
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using (Geodatabase fileGeodatabase = new Geodatabase(new FileGeodatabaseConnectionPath(new Uri("D:\\Proyectos\\Olivia\\Datos\\gdbs\\Soria.gdb"))))
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using (FeatureClass featureClass = fileGeodatabase.OpenDataset<FeatureClass>("prueba"))
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{
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//FeatureClassDefinition facilitySiteDefinition = featureClass.GetDefinition();
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//int facilityIdIndex = facilitySiteDefinition.FindField("TIPO_ENT");
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string whereClause = "NOM_TIPO_ENTIDAD = 'Aceras'";
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Selection sel = featureClass.Select(new QueryFilter { WhereClause = whereClause }, SelectionType.ObjectID, SelectionOption.Normal);
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//management.CreateFeatureClass
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FeatureClass featureClass_out= fileGeodatabase.
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using (FeatureClass featureClass = fileGeodatabase.OpenDataset<FeatureClass>("prueba"))
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{
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FeatureClassDefinition facilitySiteDefinition = featureClass.GetDefinition();
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featureClass_out.CopyFrom<FeatureClass, FeatureClass>(featureClass);
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featureClass_out.DeleteRows(null);
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//int facilityIdIndex = facilitySiteDefinition.FindField("TIPO_ENT");
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string whereClause = "NOM_TIPO_ENTIDAD = 'Aceras'";
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//Selection sel = featureClass.Select(new QueryFilter { WhereClause = whereClause }, SelectionType.ObjectID, SelectionOption.Normal);
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//FeatureClass featSel = sel as FeatureClass;
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//IReadOnlyList<long> selectedOIDs = sel.GetObjectIDs();
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Row row;
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Feature feat;
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using (RowCursor rowCursor = featureClass.Search(new QueryFilter { WhereClause = whereClause }))
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{
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while (rowCursor.MoveNext())
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{
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using (row = rowCursor.Current)
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{
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feat = row as Feature;
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featureClass_out
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}
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}
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}
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var progDlg = new ProgressDialog("Running Geoprocessing Tool", "Cancel", 100, true);
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progDlg.Show();
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var progSrc = new CancelableProgressorSource(progDlg);
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// prepare input parameter values to CopyFeatures tool
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string input_data = layerpath;
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//string out_workspace = ArcGIS.Desktop.Core.Project.Current.DefaultGeodatabasePath;
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string out_data = outpath;
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// make a value array of strings to be passed to ExecuteToolAsync
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var parameters = Geoprocessing.MakeValueArray(input_data, out_data);
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// execute the tool
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IGPResult gpResult = await Geoprocessing.ExecuteToolAsync("FeatureClassToShapefile_conversion", parameters,
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null, new CancelableProgressorSource(progDlg).Progressor, GPExecuteToolFlags.Default);
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// dialog hides itself once the execution is complete
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//progDlg.Hide();
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/*//input layers list should contain the path of each layer name, i.e. if the root node is "Mapping" and the layer name is "gs_points", path is "Mapping\\gs_points".
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List<string> inlayers = new List<string>();
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inlayers.Add(layerpath);
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//outpath is just the folder to save the shapefiles in
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var valueArray = Geoprocessing.MakeValueArray(inlayers, outpath);
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// to let the GP tool run asynchronously without blocking the main thread
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// use the GPThread option of GPExecuteToolFlasgs
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//
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GPExecuteToolFlags flags = GPExecuteToolFlags.GPThread; // instruct the tool run non-blocking GPThread
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IGPResult gpResult = await Geoprocessing.ExecuteToolAsync("FeatureClassToShapefile_conversion", valueArray, null, null, null, flags);*/
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string res = string.IsNullOrEmpty(gpResult.ReturnValue)
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? $@"Error in gp tool: {gpResult.ErrorMessages}"
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: $@"Ok: {gpResult.ReturnValue}";
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return res;
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}
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}
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var progDlg = new ProgressDialog("Running Geoprocessing Tool", "Cancel", 100, true);
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progDlg.Show();
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var progSrc = new CancelableProgressorSource(progDlg);
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// prepare input parameter values to CopyFeatures tool
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string input_data = layerpath;
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//string out_workspace = ArcGIS.Desktop.Core.Project.Current.DefaultGeodatabasePath;
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string out_data = outpath;
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// make a value array of strings to be passed to ExecuteToolAsync
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var parameters = Geoprocessing.MakeValueArray(input_data, out_data);
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// execute the tool
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IGPResult gpResult = await Geoprocessing.ExecuteToolAsync("FeatureClassToShapefile_conversion", parameters,
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null, new CancelableProgressorSource(progDlg).Progressor, GPExecuteToolFlags.Default);
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// dialog hides itself once the execution is complete
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//progDlg.Hide();
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/*//input layers list should contain the path of each layer name, i.e. if the root node is "Mapping" and the layer name is "gs_points", path is "Mapping\\gs_points".
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List<string> inlayers = new List<string>();
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inlayers.Add(layerpath);
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//outpath is just the folder to save the shapefiles in
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var valueArray = Geoprocessing.MakeValueArray(inlayers, outpath);
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// to let the GP tool run asynchronously without blocking the main thread
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// use the GPThread option of GPExecuteToolFlasgs
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//
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GPExecuteToolFlags flags = GPExecuteToolFlags.GPThread; // instruct the tool run non-blocking GPThread
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IGPResult gpResult = await Geoprocessing.ExecuteToolAsync("FeatureClassToShapefile_conversion", valueArray, null, null, null, flags);*/
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string res = string.IsNullOrEmpty(gpResult.ReturnValue)
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? $@"Error in gp tool: {gpResult.ErrorMessages}"
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: $@"Ok: {gpResult.ReturnValue}";
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return res;
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}
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}
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}
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