public class analyzer {
static {
try {
System.loadLibrary("MTKCore");
} catch (UnsatisfiedLinkError e) {
System.err.println("Native code library failed to load.\n" + e);
System.exit(1);
}
}
public static void main(String[] args) {
if (args.length < 1 || args.length > 2) {
System.out.println("Usage: " + " <input_file> <input_resolution>, where:");
System.out.println(" <input_file> is a name of the file to be read");
System.out.print(" <input_resolution> is an optional argument that determine accuracy");
System.out.print(" of wall thickness calculation.");
System.out.print(" The larger the value, the higher the accuracy of the calculations,");
System.out.print("but greatly increase computation time and memory usage.");
System.out.println("Should be at least 100.");
System.exit(1);
}
String aKey = MTKLicenseKey.Value();
if (!LicenseHelper.SetupRuntimeKey()) {
System.exit(1);
}
try {
LicenseManager.Activate(aKey);
} catch (LicenseError theException) {
LicenseManager.Deactivate();
System.out.println("Failed to activate Manufacturing Toolkit license: " + theException.what());
System.exit(1);
}
String aSource = args[0];
int aResolution = 1000;
if (args.length == 2) {
aResolution = Integer.parseInt(args[1]);
}
if (aResolution < 100) {
System.out.format("WARNING: Input resolution \"%d\" < 100. Will be used default resolution.\n\n", aResolution);
aResolution = 1000;
}
Model aModel = new Model();
ModelReader aReader = new ModelReader();
if (!aReader.Read(new UTF16String(aSource), aModel)) {
LicenseManager.Deactivate();
System.out.println("Failed to read the file " + aSource);
System.exit(1);
}
System.out.format("Model: %s\n\n", aModel.Name());
PartProcessor aPartProcessor = new PartProcessor(aResolution);
ModelElementUniqueVisitor aVisitor = new ModelElementUniqueVisitor(aPartProcessor);
aModel.Accept(aVisitor);
LicenseManager.Deactivate();
}
static class PartProcessor extends SolidProcessor {
public PartProcessor(int theResolution) {
WallThickness_VoxelizationParameters aVoxelizationParameters = new WallThickness_VoxelizationParameters();
aVoxelizationParameters.SetResolution(theResolution);
WallThickness_AnalyzerParameters aParameters = new WallThickness_AnalyzerParameters();
aParameters.SetVoxelizationParameters(aVoxelizationParameters);
aParameters.SetMethod(WallThickness_Method.Voxelization);
myAnalyzer = new WallThickness_Analyzer(aParameters);
}
@Override
public void ProcessSolid(Solid theSolid) {
WallThickness_Data aWTData = myAnalyzer.Perform(theSolid);
PrintWTData(aWTData);
}
void PrintWTData(WallThickness_Data theData) {
if (!theData.IsEmpty()) {
System.out.format(" Min thickness = %f mm\n", theData.MinThickness());
System.out.format(" Max thickness = %f mm\n", theData.MaxThickness());
} else {
System.out.println(" Failed to analyze the wall thickness of this entity.");
}
}
private WallThickness_Analyzer myAnalyzer;
}
}
Defines classes, types, enums, and functions related to topological entities and scene graph elements...
The mtk namespace is intended to become the primary namespace for MTK and replace direct use of the c...
Contains classes, namespaces, enums, types, and global functions related to Manufacturing Toolkit.