Changes for dynamic prefetch enabling
[IRC.git] / Robust / src / Main / Main.java
1 package Main;
2
3 import java.io.FileOutputStream;
4 import java.io.InputStream;
5 import java.io.PrintStream;
6 import java.io.Reader;
7 import java.io.BufferedReader;
8 import java.io.FileReader;
9 import java.io.FileInputStream;
10 import java.util.Iterator;
11 import java.util.Vector;
12
13 import IR.Tree.ParseNode;
14 import IR.Tree.BuildIR;
15 import IR.Tree.SemanticCheck;
16 import IR.Flat.BuildCodeMultiCore;
17 import IR.Flat.BuildFlat;
18 import IR.Flat.BuildCode;
19 import IR.ClassDescriptor;
20 import IR.State;
21 import IR.TaskDescriptor;
22 import IR.TypeUtil;
23 import Analysis.Scheduling.Schedule;
24 import Analysis.Scheduling.ScheduleAnalysis;
25 import Analysis.Scheduling.ScheduleEdge;
26 import Analysis.Scheduling.ScheduleNode;
27 import Analysis.Scheduling.ScheduleSimulator;
28 import Analysis.TaskStateAnalysis.TaskAnalysis;
29 import Analysis.TaskStateAnalysis.TaskTagAnalysis;
30 import Analysis.TaskStateAnalysis.TaskGraph;
31 import Analysis.CallGraph.CallGraph;
32 import Analysis.TaskStateAnalysis.FEdge;
33 import Analysis.TaskStateAnalysis.FlagState;
34 import Analysis.TaskStateAnalysis.TagAnalysis;
35 import Analysis.TaskStateAnalysis.GarbageAnalysis;
36 import Analysis.TaskStateAnalysis.ExecutionGraph;
37 import Analysis.TaskStateAnalysis.SafetyAnalysis;
38 import Analysis.Locality.LocalityAnalysis;
39 import Analysis.Locality.GenerateConversions;
40 import Analysis.Prefetch.PrefetchAnalysis;
41 import Analysis.FlatIRGraph.FlatIRGraph;
42 import Analysis.OwnershipAnalysis.OwnershipAnalysis;
43 import Interface.*;
44
45 public class Main {
46
47     /** Main method for the compiler.  */
48
49   public static void main(String args[]) throws Exception {
50       String ClassLibraryPrefix="./ClassLibrary/";
51       State state=new State();
52
53       for(int i=0;i<args.length;i++) {
54           String option=args[i];
55           if (option.equals("-precise"))
56               IR.Flat.BuildCode.GENERATEPRECISEGC=true;
57           else if (option.equals("-prefetch"))
58               state.PREFETCH=true;
59           else if (option.equals("-dir"))
60               IR.Flat.BuildCode.PREFIX=args[++i]+"/";
61           else if (option.equals("-selfloop"))
62               state.selfloops.add(args[++i]);
63           else if (option.equals("-excprefetch"))
64               state.excprefetch.add(args[++i]);
65           else if (option.equals("-classlibrary"))
66               ClassLibraryPrefix=args[++i]+"/";
67           else if(option.equals("-numcore")) {
68               ++i;
69               state.CORENUM = Integer.parseInt(args[i]);
70           }
71           else if (option.equals("-mainclass"))
72               state.main=args[++i];
73           else if (option.equals("-trueprob")) {
74               state.TRUEPROB=Double.parseDouble(args[++i]);
75           } else if (option.equals("-printflat"))
76               State.PRINTFLAT=true;
77           else if (option.equals("-struct"))
78               state.structfile=args[++i];
79           else if (option.equals("-conscheck"))
80               state.CONSCHECK=true;
81           else if (option.equals("-task"))
82               state.TASK=true;
83           else if (option.equals("-taskstate"))
84               state.TASKSTATE=true;
85           else if (option.equals("-tagstate"))
86               state.TAGSTATE=true;
87           else if (option.equals("-flatirtasks")) {
88               state.FLATIRGRAPH=true;
89               state.FLATIRGRAPHTASKS=true;
90           }
91           else if (option.equals("-flatirusermethods")) {
92               state.FLATIRGRAPH=true;
93               state.FLATIRGRAPHUSERMETHODS=true;
94           }
95           else if (option.equals("-flatirlibmethods")) {
96               state.FLATIRGRAPH=true;
97               state.FLATIRGRAPHLIBMETHODS=true;
98           }
99           else if (option.equals("-multicore"))
100                   state.MULTICORE=true;
101           else if (option.equals("-ownership"))
102               state.OWNERSHIP=true;
103           else if (option.equals("-optional"))
104               state.OPTIONAL=true;
105           else if (option.equals("-raw"))
106                   state.RAW=true;
107           else if (option.equals("-scheduling"))
108                   state.SCHEDULING=true; 
109           else if (option.equals("-thread"))
110               state.THREAD=true;
111           else if (option.equals("-dsm"))
112               state.DSM=true;
113           else if (option.equals("-webinterface"))
114               state.WEBINTERFACE=true;
115           else if (option.equals("-instructionfailures"))
116               state.INSTRUCTIONFAILURE=true;
117           else if (option.equals("-help")) {
118               System.out.println("-classlibrary classlibrarydirectory -- directory where classlibrary is located");
119               System.out.println("-selfloop task -- this task doesn't self loop its parameters forever");
120               System.out.println("-dir outputdirectory -- output code in outputdirectory");
121               System.out.println("-struct structfile -- output structure declarations for repair tool");
122               System.out.println("-mainclass -- main function to call");
123               System.out.println("-dsm -- distributed shared memory support");
124               System.out.println("-precise -- use precise garbage collection");
125               System.out.println("-conscheck -- turn on consistency checking");
126               System.out.println("-task -- compiler for tasks");
127               System.out.println("-thread -- threads");
128               System.out.println("-trueprob <d> -- probability of true branch");
129               System.out.println("-printflat -- print out flat representation");
130               System.out.println("-instructionfailures -- insert code for instruction level failures");
131               System.out.println("-taskstate -- do task state analysis");
132               System.out.println("-flatirtasks -- create dot files for flat IR graphs of tasks");
133               System.out.println("-flatirusermethods -- create dot files for flat IR graphs of user methods");
134               System.out.println("-flatirlibmethods -- create dot files for flat IR graphs of library class methods");
135               System.out.println("  note: -flatirusermethods or -flatirlibmethods currently generate all class method flat IR graphs");
136               System.out.println("-ownership -- do ownership analysis");
137               System.out.println("-optional -- enable optional arguments");
138               System.out.println("-webinterface -- enable web interface");
139               System.out.println("-help -- print out help");
140               System.exit(0);
141           } else {
142               readSourceFile(state, args[i]);
143           }
144       }
145       
146
147       readSourceFile(state, ClassLibraryPrefix+"System.java");
148       readSourceFile(state, ClassLibraryPrefix+"String.java");
149       readSourceFile(state, ClassLibraryPrefix+"HashSet.java");
150       readSourceFile(state, ClassLibraryPrefix+"HashMap.java");
151       readSourceFile(state, ClassLibraryPrefix+"HashMapIterator.java");
152       readSourceFile(state, ClassLibraryPrefix+"HashEntry.java");
153       readSourceFile(state, ClassLibraryPrefix+"Integer.java");
154       readSourceFile(state, ClassLibraryPrefix+"StringBuffer.java");
155       //if(!state.RAW) {
156       readSourceFile(state, ClassLibraryPrefix+"FileInputStream.java");
157       readSourceFile(state, ClassLibraryPrefix+"InputStream.java");
158       readSourceFile(state, ClassLibraryPrefix+"OutputStream.java");
159       readSourceFile(state, ClassLibraryPrefix+"FileOutputStream.java");
160       readSourceFile(state, ClassLibraryPrefix+"File.java");
161       readSourceFile(state, ClassLibraryPrefix+"InetAddress.java");
162       readSourceFile(state, ClassLibraryPrefix+"SocketInputStream.java");
163       readSourceFile(state, ClassLibraryPrefix+"SocketOutputStream.java");
164       //}
165       readSourceFile(state, ClassLibraryPrefix+"Math.java");
166       readSourceFile(state, ClassLibraryPrefix+"gnu/Random.java");
167           readSourceFile(state, ClassLibraryPrefix+"Vector.java");
168           readSourceFile(state, ClassLibraryPrefix+"Enumeration.java");
169
170       if (state.TASK) {
171           readSourceFile(state, ClassLibraryPrefix+"Object.java");
172           readSourceFile(state, ClassLibraryPrefix+"TagDescriptor.java");
173       } else if (state.DSM) {
174           readSourceFile(state, ClassLibraryPrefix+"ThreadDSM.java");
175           readSourceFile(state, ClassLibraryPrefix+"ObjectJavaDSM.java");
176       } else {
177           if (state.THREAD) {
178               readSourceFile(state, ClassLibraryPrefix+"Thread.java");
179               readSourceFile(state, ClassLibraryPrefix+"ObjectJava.java");
180           } else
181               readSourceFile(state, ClassLibraryPrefix+"ObjectJavaNT.java");
182       }
183
184       if (state.TASK) {
185           readSourceFile(state, ClassLibraryPrefix+"StartupObject.java");
186           readSourceFile(state, ClassLibraryPrefix+"Socket.java");
187           readSourceFile(state, ClassLibraryPrefix+"ServerSocket.java");
188       } else {
189           readSourceFile(state, ClassLibraryPrefix+"SocketJava.java");
190           readSourceFile(state, ClassLibraryPrefix+"ServerSocketJava.java");
191       }
192
193       BuildIR bir=new BuildIR(state);
194       bir.buildtree();
195       
196       TypeUtil tu=new TypeUtil(state);
197       
198       SemanticCheck sc=new SemanticCheck(state,tu);
199       sc.semanticCheck();
200       tu.createFullTable();
201
202       BuildFlat bf=new BuildFlat(state,tu);
203       bf.buildFlat();
204       SafetyAnalysis sa=null;
205       PrefetchAnalysis pa=null;
206
207       if (state.TAGSTATE) {
208           CallGraph callgraph=new CallGraph(state);
209           TagAnalysis taganalysis=new TagAnalysis(state, callgraph);
210           TaskTagAnalysis tta=new TaskTagAnalysis(state, taganalysis);
211       }
212
213       if (state.TASKSTATE) {
214           CallGraph callgraph=new CallGraph(state);
215           TagAnalysis taganalysis=new TagAnalysis(state, callgraph);
216           TaskAnalysis ta=new TaskAnalysis(state, taganalysis);
217           ta.taskAnalysis();
218           TaskGraph tg=new TaskGraph(state, ta);
219           tg.createDOTfiles();
220           
221           if (state.OPTIONAL) {
222               ExecutionGraph et=new ExecutionGraph(state, ta);
223               et.createExecutionGraph();
224               sa = new SafetyAnalysis(et.getExecutionGraph(), state, ta);
225               sa.doAnalysis();
226               state.storeAnalysisResult(sa.getResult());
227               state.storeOptionalTaskDescriptors(sa.getOptionalTaskDescriptors());
228           }
229           
230           if (state.WEBINTERFACE) {
231               GarbageAnalysis ga=new GarbageAnalysis(state, ta);
232               WebInterface wi=new WebInterface(state, ta, tg, ga, taganalysis);
233               JhttpServer serve=new JhttpServer(8000,wi);
234               serve.run();
235           }
236           
237           if (state.SCHEDULING) {
238               // Save the current standard input, output, and error streams
239               // for later restoration.
240               PrintStream       origOut = System.out;
241
242               // Create a new output stream for the standard output.
243               PrintStream       stdout  = null;
244               try {
245                   stdout = new PrintStream (new FileOutputStream("SimulatorResult.out"));
246               } catch (Exception e) {
247                   // Sigh.  Couldn't open the file.
248                   System.out.println ("Redirect:  Unable to open output file!");
249                   System.exit (1);
250               }
251
252               // Print stuff to the original output and error streams.
253               // On most systems all of this will end up on your console when you
254               // run this application.
255               //origOut.println ("\nRedirect:  Round #1");
256               //System.out.println ("Test output via 'System.out'.");
257               //origOut.println ("Test output via 'origOut' reference.");
258
259               // Set the System out and err streams to use our replacements.
260               System.setOut(stdout);
261
262               // Print stuff to the original output and error streams.
263               // The stuff printed through the 'origOut' and 'origErr' references
264               // should go to the console on most systems while the messages
265               // printed through the 'System.out' and 'System.err' will end up in
266               // the files we created for them.
267               //origOut.println ("\nRedirect:  Round #2");
268               //System.out.println ("Test output via 'SimulatorResult.out'.");
269               //origOut.println ("Test output via 'origOut' reference.");
270               
271               // for test
272               // Randomly set the newRate and probability of FEdges
273               java.util.Random r=new java.util.Random();
274               int tint = 0;
275               for(Iterator it_classes=state.getClassSymbolTable().getDescriptorsIterator();it_classes.hasNext();) {
276                   ClassDescriptor cd=(ClassDescriptor) it_classes.next();
277                   if(cd.hasFlags()){
278                       Vector rootnodes=ta.getRootNodes(cd);
279                       if(rootnodes!=null)
280                           for(Iterator it_rootnodes=rootnodes.iterator();it_rootnodes.hasNext();){
281                               FlagState root=(FlagState)it_rootnodes.next();
282                               Vector allocatingTasks = root.getAllocatingTasks();
283                               if(allocatingTasks != null) {
284                                   for(int k = 0; k < allocatingTasks.size(); k++) {
285                                       TaskDescriptor td = (TaskDescriptor)allocatingTasks.elementAt(k);
286                                       Vector<FEdge> fev = (Vector<FEdge>)ta.getFEdgesFromTD(td);
287                                       int numEdges = fev.size();
288                                       int total = 100;
289                                       for(int j = 0; j < numEdges; j++) {
290                                           FEdge pfe = fev.elementAt(j);
291                                           if(numEdges - j == 1) {
292                                               pfe.setProbability(total);
293                                           } else {
294                                               if((total != 0) && (total != 1)){
295                                                   do {
296                                                       tint = r.nextInt()%total;
297                                                   } while(tint <= 0);
298                                               }
299                                               pfe.setProbability(tint);
300                                               total -= tint;
301                                           }
302                                           /*do {
303                                               tint = r.nextInt()%10;
304                                           } while(tint <= 0);*/
305                                           //int newRate = tint;
306                                           //int newRate = (j+1)%2+1;
307                                           int newRate = 1;
308                                           //int newRate = 10;
309                                           /*do {
310                                               tint = r.nextInt()%100;
311                                           } while(tint <= 0);
312                                           int probability = tint;*/
313                                           int probability = 100;
314                                           pfe.addNewObjInfo(cd, newRate, probability);
315                                       }
316                                   }
317                               }
318                           }
319                       
320                       Iterator it_flags = ta.getFlagStates(cd).iterator();
321                       while(it_flags.hasNext()) {
322                           FlagState fs = (FlagState)it_flags.next();
323                           Iterator it_edges = fs.edges();
324                           while(it_edges.hasNext()) {
325                               /*do {
326                                   tint = r.nextInt()%10;
327                               } while(tint <= 0);*/
328                               tint = 1;
329                               ((FEdge)it_edges.next()).setExeTime(tint);
330                           }
331                       }
332                   }
333               }
334               
335               // generate multiple schedulings
336               ScheduleAnalysis scheduleAnalysis = new ScheduleAnalysis(state, ta);
337               scheduleAnalysis.preSchedule();
338               scheduleAnalysis.scheduleAnalysis();
339               //scheduleAnalysis.setCoreNum(scheduleAnalysis.getSEdges4Test().size());
340               scheduleAnalysis.setCoreNum(state.CORENUM);
341               scheduleAnalysis.schedule();
342               
343               //simulate these schedulings
344               ScheduleSimulator scheduleSimulator = new ScheduleSimulator(scheduleAnalysis.getCoreNum(), state, ta);
345               Iterator it_scheduling = scheduleAnalysis.getSchedulingsIter();
346               int index = 0;
347               Vector<Integer> selectedScheduling = new Vector<Integer>();
348               int processTime = Integer.MAX_VALUE;
349               while(it_scheduling.hasNext()) {
350                   Vector<Schedule> scheduling = (Vector<Schedule>)it_scheduling.next();
351                   scheduleSimulator.setScheduling(scheduling);
352                   int tmpTime = scheduleSimulator.process();
353                   if(tmpTime < processTime) {
354                       selectedScheduling.clear();
355                       selectedScheduling.add(index);
356                       processTime = tmpTime;
357                   } else if(tmpTime == processTime) {
358                       selectedScheduling.add(index);
359                   }
360                   index++;
361               }
362               System.out.print("Selected schedulings with least exectution time " + processTime + ": \n\t");
363               for(int i = 0; i < selectedScheduling.size(); i++) {
364                   System.out.print(selectedScheduling.elementAt(i) + ", ");
365               }
366               System.out.println();
367               
368               /*ScheduleSimulator scheduleSimulator = new ScheduleSimulator(4, state, ta);
369               Vector<Schedule> scheduling = new Vector<Schedule>();
370               for(int i = 0; i < 4; i++) {
371                   Schedule schedule = new Schedule(i);
372                   scheduling.add(schedule);
373               }
374               Iterator it_tasks = state.getTaskSymbolTable().getAllDescriptorsIterator();
375               while(it_tasks.hasNext()) {
376                   TaskDescriptor td = (TaskDescriptor)it_tasks.next();
377                   if(td.getSymbol().equals("t10")) {
378                       scheduling.elementAt(1).addTask(td);
379                   } else {
380                       scheduling.elementAt(0).addTask(td);
381                   }
382               }
383               ClassDescriptor cd = (ClassDescriptor)state.getClassSymbolTable().get("E");
384               scheduling.elementAt(0).addTargetCore(cd, 1);
385               scheduleSimulator.setScheduling(scheduling);
386               scheduleSimulator.process();
387               
388               Vector<Schedule> scheduling1 = new Vector<Schedule>();
389               for(int i = 0; i < 4; i++) {
390                   Schedule schedule = new Schedule(i);
391                   scheduling1.add(schedule);
392               }
393               Iterator it_tasks1 = state.getTaskSymbolTable().getAllDescriptorsIterator();
394               while(it_tasks1.hasNext()) {
395                   TaskDescriptor td = (TaskDescriptor)it_tasks1.next();
396                   scheduling1.elementAt(0).addTask(td);
397               }
398               scheduleSimulator.setScheduling(scheduling1);
399               scheduleSimulator.process();*/
400               
401               // Close the streams.
402               try {
403                   stdout.close ();
404                   System.setOut(origOut);
405               } catch (Exception e) {
406                   origOut.println ("Redirect:  Unable to close files!");
407               }
408               
409               if(state.MULTICORE) {
410                   it_scheduling = scheduleAnalysis.getSchedulingsIter();
411                   Vector<Schedule> scheduling = (Vector<Schedule>)it_scheduling.next();
412                   BuildCodeMultiCore bcm=new BuildCodeMultiCore(state, bf.getMap(), tu, sa, scheduling, scheduleAnalysis.getCoreNum(), pa);
413                   bcm.buildCode();
414               }
415           }
416           
417       }
418
419       if(!state.MULTICORE) {
420           if (state.DSM) {
421               CallGraph callgraph=new CallGraph(state);
422               if (state.PREFETCH) {
423                   //speed up prefetch generation using locality analysis results
424                   LocalityAnalysis la=new LocalityAnalysis(state, callgraph, tu);
425                   pa=new PrefetchAnalysis(state, callgraph, tu, la);
426               }
427
428               LocalityAnalysis la=new LocalityAnalysis(state, callgraph, tu);
429               GenerateConversions gc=new GenerateConversions(la, state);
430               BuildCode bc=new BuildCode(state, bf.getMap(), tu, la, pa);
431               bc.buildCode();
432           } else {
433               BuildCode bc=new BuildCode(state, bf.getMap(), tu, sa, pa);
434               bc.buildCode();
435           }
436       }
437
438       if (state.FLATIRGRAPH) {
439           FlatIRGraph firg = new FlatIRGraph(state,
440                                              state.FLATIRGRAPHTASKS,
441                                              state.FLATIRGRAPHUSERMETHODS,
442                                              state.FLATIRGRAPHLIBMETHODS);
443       }
444
445       if (state.OWNERSHIP) {
446           CallGraph callGraph  = new CallGraph( state );
447           int allocationDepth  = 3;
448           OwnershipAnalysis oa =
449               new OwnershipAnalysis( state, callGraph, allocationDepth );
450           //This was breaking the compile
451           //      oa.writeAllAliases( "identifiedAliases.txt" );
452       }
453
454       System.exit(0);
455   }
456     
457     /** Reads in a source file and adds the parse tree to the state object. */
458     
459     private static void readSourceFile(State state, String sourcefile) throws Exception {
460         Reader fr = new BufferedReader(new FileReader(sourcefile));
461         Lex.Lexer l = new Lex.Lexer(fr);
462         java_cup.runtime.lr_parser g;
463         g = new Parse.Parser(l);
464         ParseNode p=null;
465         try {
466             p=(ParseNode) g./*debug_*/parse().value;
467         } catch (Exception e) {
468             System.err.println("Error parsing file:"+sourcefile);
469             e.printStackTrace();
470             System.exit(-1);
471         }
472         state.addParseNode(p);
473         if (l.numErrors()!=0) {
474             System.out.println("Error parsing "+sourcefile);
475             System.exit(l.numErrors());
476         }
477     }
478 }