/** * Contact a belief network context, get the helper list, and search the list to see if there's a * helper which matches the type sequence specified. If there's more than one helper which * matches, find the ``best fit.'' * * <p>The class and count scores of the best-fitting helper class are written into * <tt>max_class_score[0]</tt> and <tt>max_count_score[0]</tt>, respectively. */ public static Class find_helper_class0( Vector seq, String helper_type, int[] max_class_score, int[] max_count_score) throws ClassNotFoundException { long t0 = System.currentTimeMillis(); if (bnc != null) // make sure the reference is still alive try { bnc.get_name(); } catch (RemoteException e) { bnc = null; } if (bnc == null) // need to locate a context { String cb = System.getProperty("java.rmi.server.codebase", "http://localhost"); long tt0 = System.currentTimeMillis(); try { bnc = BeliefNetworkContext.locate_context(new URL(cb).getHost()); } catch (Exception e) { throw new ClassNotFoundException("nested: " + e); } } String[] helperlist; try { helperlist = bnc.get_helper_names(helper_type); } catch (RemoteException e) { throw new ClassNotFoundException("bnc.get_helper_names failed"); } int[] class_score1 = new int[1], count_score1 = new int[1]; max_class_score[0] = -1; max_count_score[0] = -1; Class cmax_score = null; for (int i = 0; i < helperlist.length; i++) { try { Class c = RMIClassLoader.loadClass(helperlist[i]); SeqTriple[] sm = (SeqTriple[]) invoke_description(c); if (sm == null) continue; // apparently not a helper class if (MatchClassPattern.matches(sm, seq, class_score1, count_score1)) { if (class_score1[0] > max_class_score[0] || (class_score1[0] == max_class_score[0] && count_score1[0] > max_count_score[0])) { cmax_score = c; max_class_score[0] = class_score1[0]; max_count_score[0] = count_score1[0]; } } } catch (Exception e2) { System.err.println("PiHelperLoader: attempt to load " + helperlist[i] + " failed; " + e2); } } if (cmax_score == null) { System.err.println("find_helper_class0: failed; helper list:"); for (int i = 0; i < helperlist.length; i++) System.err.println("\t" + helperlist[i]); String s = ""; for (Enumeration e = seq.elements(); e.hasMoreElements(); ) { try { Class c = (Class) e.nextElement(); s += c.getName() + ","; } catch (NoSuchElementException ee) { s += "???" + ","; } } throw new ClassNotFoundException("no " + helper_type + " helper for sequence [" + s + "]"); } // FOR NOW IGNORE THE POSSIBILITY OF TWO OR MORE MATCHES !!! return cmax_score; }
public static void main(String[] args) { boolean do_compile_all = false; String bn_name = "", x1_name = "", x2_name = ""; Vector evidence_names = new Vector(); for (int i = 0; i < args.length; i++) { if (args[i].charAt(0) != '-') continue; switch (args[i].charAt(1)) { case 'b': bn_name = args[++i]; break; case 'a': do_compile_all = true; break; case 'x': if (args[i].charAt(2) == '1') x1_name = args[++i]; else if (args[i].charAt(2) == '2') x2_name = args[++i]; else System.err.println("PathAnalysis.main: " + args[i] + " -- huh???"); break; case 'e': evidence_names.addElement(args[++i]); break; default: System.err.println("PathAnalysis.main: " + args[i] + " -- huh???"); } } try { BeliefNetworkContext bnc = new BeliefNetworkContext(null); bnc.add_path("/bechtel/users10/krarti/dodier/belief-nets/assorted"); AbstractBeliefNetwork bn = bnc.load_network(bn_name); Hashtable path_sets; Enumeration p; if ((p = PathAnalysis.has_directed_cycle(bn)) == null) System.err.println("PathAnalysis: no directed cycles found in " + bn_name); else { System.err.println("PathAnalysis.main: " + bn_name + " has a directed cycle; quit."); System.err.print(" cycle is: "); while (p.hasMoreElements()) { System.err.print(((AbstractVariable) p.nextElement()).get_name()); if (p.hasMoreElements()) System.err.print(" -> "); else System.err.println(""); } System.exit(1); } Vector evidence = new Vector(); if (evidence_names.size() > 0) { for (int i = 0; i < evidence_names.size(); i++) evidence.addElement(bn.name_lookup((String) (evidence_names.elementAt(i)))); } if (do_compile_all) { path_sets = PathAnalysis.compile_all_paths(bn); } else { AbstractVariable x1 = (AbstractVariable) bn.name_lookup(x1_name); AbstractVariable x2 = (AbstractVariable) bn.name_lookup(x2_name); path_sets = new Hashtable(); PathAnalysis.compile_paths(x1, x2, path_sets); if (PathAnalysis.are_d_connected(x1, x2, evidence)) System.err.print( x1.get_name() + " and " + x2.get_name() + " are d-connected given evidence "); else System.err.print( x1.get_name() + " and " + x2.get_name() + " are NOT d-connected given evidence "); for (int i = 0; i < evidence.size(); i++) System.err.print(((AbstractVariable) evidence.elementAt(i)).get_name() + " "); System.err.println(""); } System.err.println("PathAnalysis.main: results of path finding:"); AbstractVariable[] u = bn.get_variables(); for (int i = 0; i < u.length; i++) { System.err.println(" --- paths from: " + u[i].get_name() + " ---"); for (int j = i + 1; j < u.length; j++) { VariablePair vp = new VariablePair(u[i], u[j]); Vector path_set = (Vector) path_sets.get(vp); if (path_set == null) continue; Enumeration path_set_enum = path_set.elements(); while (path_set_enum.hasMoreElements()) { AbstractVariable[] path = (AbstractVariable[]) path_set_enum.nextElement(); System.err.print(" path: "); for (int k = 0; k < path.length; k++) System.err.print(path[k].get_name() + " "); System.err.println(""); } } } System.exit(0); } catch (Exception e) { System.err.println("PathAnalysis.main:"); e.printStackTrace(); System.exit(1); } }