konogonka/src/main/java/konogonka/Workers/Analyzer.java

145 lines
5.0 KiB
Java

package konogonka.Workers;
import javafx.concurrent.Task;
import konogonka.ModelControllers.EMsgType;
import konogonka.ModelControllers.LogPrinter;
import konogonka.Tools.ISuperProvider;
import konogonka.Tools.NCA.NCAProvider;
import konogonka.Tools.NPDM.NPDMProvider;
import konogonka.Tools.PFS0.PFS0Provider;
import konogonka.Tools.TIK.TIKProvider;
import konogonka.Tools.XCI.XCIProvider;
import java.io.File;
import java.util.HashMap;
// TODO: volatile needed?
public class Analyzer {
public static Task<NCAProvider> analyzeNCA(File file, HashMap<String, String> keysMap, long offset){
LogPrinter logPrinter = new LogPrinter();
return new Task<NCAProvider>(){
@Override
protected NCAProvider call() {
logPrinter.print("\tStart chain: NCA", EMsgType.INFO);
try {
return new NCAProvider(file, keysMap, offset);
}
catch (Exception e){
logPrinter.print(e.getMessage(), EMsgType.FAIL);
return null;
}
finally {
logPrinter.print("\tEnd chain: NCA", EMsgType.INFO);
logPrinter.close();
}
}
};
}
public static Task<TIKProvider> analyzeTIK(File file, long offset){
LogPrinter logPrinter = new LogPrinter();
return new Task<TIKProvider>() {
@Override
protected TIKProvider call() {
logPrinter.print("\tStart chain: TIK", EMsgType.INFO);
try{
return new TIKProvider(file, offset);
}
catch (Exception e){
logPrinter.print("\tException: "+e.getMessage(), EMsgType.FAIL);
return null;
}
finally {
logPrinter.print("\tEnd chain: TIK", EMsgType.INFO);
logPrinter.close();
}
}
};
}
public static Task<NPDMProvider> analyzeNPDM(File file, long offset){
LogPrinter logPrinter = new LogPrinter();
return new Task<NPDMProvider>(){
@Override
protected NPDMProvider call() {
logPrinter.print("\tStart chain: NPDM", EMsgType.INFO);
try{
return new NPDMProvider(file, offset);
}
catch (Exception e){
logPrinter.print("\tException: "+e.getMessage(), EMsgType.FAIL);
return null;
}
finally {
logPrinter.print("\tEnd chain: NPDM", EMsgType.INFO);
logPrinter.close();
}
}
};
}
public static Task<NPDMProvider> analyzeNPDM(ISuperProvider parentProvider, int fileNo){
LogPrinter logPrinter = new LogPrinter();
return new Task<NPDMProvider>(){
@Override
protected NPDMProvider call() {
logPrinter.print("\tStart chain: NPDM [stream]", EMsgType.INFO);
try{
return new NPDMProvider(parentProvider.getProviderSubFilePipedInpStream(fileNo));
}
catch (Exception e){
logPrinter.print("\tException: "+e.getMessage(), EMsgType.FAIL);
return null;
}
finally {
logPrinter.print("\tEnd chain: NPDM [stream]", EMsgType.INFO);
logPrinter.close();
}
}
};
}
public static Task<PFS0Provider> analyzePFS0(File file){
LogPrinter logPrinter = new LogPrinter();
return new Task<PFS0Provider>(){
@Override
protected PFS0Provider call() {
logPrinter.print("\tStart chain: NSP (PFS0)", EMsgType.INFO);
try{
return new PFS0Provider(file);
}
catch (Exception e){
logPrinter.print("\tException: "+e.getMessage(), EMsgType.FAIL);
return null;
}
finally {
logPrinter.print("\tEnd chain: NSP (PFS0)", EMsgType.INFO);
logPrinter.close();
}
}
};
}
public static Task<XCIProvider> analyzeXCI(File file, String xciHdrKey){
LogPrinter logPrinter = new LogPrinter();
return new Task<XCIProvider>() {
@Override
protected XCIProvider call() {
logPrinter.print("\tStart chain: XCI", EMsgType.INFO);
try {
return new XCIProvider(file, xciHdrKey);
} catch (Exception e) {
logPrinter.print(e.getMessage(), EMsgType.FAIL);
return null;
} finally {
logPrinter.print("\tEnd chain: XCI", EMsgType.INFO);
logPrinter.close();
}
}
};
}
}