hack to work around analysis bug
[IRC.git] / Robust / src / IR / Flat / BuildCode.java
1 package IR.Flat;
2 import IR.Tree.FlagExpressionNode;
3 import IR.Tree.DNFFlag;
4 import IR.Tree.DNFFlagAtom;
5 import IR.Tree.TagExpressionList;
6 import IR.*;
7 import java.util.*;
8 import java.io.*;
9 import Util.Relation;
10 import Analysis.TaskStateAnalysis.FlagState;
11 import Analysis.TaskStateAnalysis.FlagComparator;
12 import Analysis.TaskStateAnalysis.OptionalTaskDescriptor;
13 import Analysis.TaskStateAnalysis.Predicate;
14 import Analysis.TaskStateAnalysis.SafetyAnalysis;
15 import Analysis.TaskStateAnalysis.TaskIndex;
16 import Analysis.Locality.LocalityAnalysis;
17 import Analysis.Locality.LocalityBinding;
18 import Analysis.Prefetch.*;
19
20 public class BuildCode {
21     State state;
22     Hashtable temptovar;
23     Hashtable paramstable;
24     Hashtable tempstable;
25     Hashtable fieldorder;
26     Hashtable flagorder;
27     int tag=0;
28     String localsprefix="___locals___";
29     String paramsprefix="___params___";
30     String oidstr="___nextobject___";
31     String nextobjstr="___nextobject___";
32     String localcopystr="___localcopy___";
33     public static boolean GENERATEPRECISEGC=false;
34     public static String PREFIX="";
35     public static String arraytype="ArrayObject";
36     public static int flagcount = 0;
37     Virtual virtualcalls;
38     TypeUtil typeutil;
39     private int maxtaskparams=0;
40     private int maxcount=0;
41     ClassDescriptor[] cdarray;
42     TypeDescriptor[] arraytable;
43     LocalityAnalysis locality;
44     Hashtable<TempDescriptor, TempDescriptor> backuptable;
45     Hashtable<LocalityBinding, TempDescriptor> reverttable;
46     SafetyAnalysis sa;
47
48     public BuildCode(State st, Hashtable temptovar, TypeUtil typeutil, SafetyAnalysis sa) {
49         this(st, temptovar, typeutil, null, sa);
50     }
51
52     public BuildCode(State st, Hashtable temptovar, TypeUtil typeutil, LocalityAnalysis locality) {
53         this(st, temptovar, typeutil, locality, null);
54     }
55
56     public BuildCode(State st, Hashtable temptovar, TypeUtil typeutil, LocalityAnalysis locality, SafetyAnalysis sa) {
57         this.sa=sa;
58         state=st;
59         this.temptovar=temptovar;
60         paramstable=new Hashtable();
61         tempstable=new Hashtable();
62         fieldorder=new Hashtable();
63         flagorder=new Hashtable();
64         this.typeutil=typeutil;
65         virtualcalls=new Virtual(state,locality);
66         if (locality!=null) {
67             this.locality=locality;
68             this.backuptable=new Hashtable<TempDescriptor, TempDescriptor>();
69             this.reverttable=new Hashtable<LocalityBinding, TempDescriptor>();
70         }
71     }
72
73     /** The buildCode method outputs C code for all the methods.  The Flat
74      * versions of the methods must already be generated and stored in
75      * the State object. */
76
77     public void buildCode() {
78         /* Create output streams to write to */
79         PrintWriter outclassdefs=null;
80         PrintWriter outstructs=null;
81         PrintWriter outrepairstructs=null;
82         PrintWriter outmethodheader=null;
83         PrintWriter outmethod=null;
84         PrintWriter outvirtual=null;
85         PrintWriter outtask=null;
86         PrintWriter outtaskdefs=null;
87         PrintWriter outoptionalarrays=null;
88         PrintWriter optionalheaders=null;
89
90         try {
91             outstructs=new PrintWriter(new FileOutputStream(PREFIX+"structdefs.h"), true);
92             outmethodheader=new PrintWriter(new FileOutputStream(PREFIX+"methodheaders.h"), true);
93             outclassdefs=new PrintWriter(new FileOutputStream(PREFIX+"classdefs.h"), true);
94             outmethod=new PrintWriter(new FileOutputStream(PREFIX+"methods.c"), true);
95             outvirtual=new PrintWriter(new FileOutputStream(PREFIX+"virtualtable.h"), true);
96             if (state.TASK) {
97                 outtask=new PrintWriter(new FileOutputStream(PREFIX+"task.h"), true);
98                 outtaskdefs=new PrintWriter(new FileOutputStream(PREFIX+"taskdefs.c"), true);
99                 if (state.OPTIONAL){
100                     outoptionalarrays=new PrintWriter(new FileOutputStream(PREFIX+"optionalarrays.c"), true);
101                     optionalheaders=new PrintWriter(new FileOutputStream(PREFIX+"optionalstruct.h"), true);
102                 } 
103             }
104             if (state.structfile!=null) {
105                 outrepairstructs=new PrintWriter(new FileOutputStream(PREFIX+state.structfile+".struct"), true);
106             }
107         } catch (Exception e) {
108             e.printStackTrace();
109             System.exit(-1);
110         }
111
112         /* Build the virtual dispatch tables */
113         buildVirtualTables(outvirtual);
114
115         /* Output includes */
116         outmethodheader.println("#ifndef METHODHEADERS_H");
117         outmethodheader.println("#define METHODHEADERS_H");
118         outmethodheader.println("#include \"structdefs.h\"");
119         if (state.DSM)
120             outmethodheader.println("#include \"dstm.h\"");
121
122         /* Output Structures */
123         outputStructs(outstructs);
124
125         // Output the C class declarations
126         // These could mutually reference each other
127         outputClassDeclarations(outclassdefs);
128
129         // Output function prototypes and structures for parameters
130         Iterator it=state.getClassSymbolTable().getDescriptorsIterator();
131         while(it.hasNext()) {
132             ClassDescriptor cn=(ClassDescriptor)it.next();
133             generateCallStructs(cn, outclassdefs, outstructs, outmethodheader);
134         }
135         outclassdefs.close();
136
137         if (state.TASK) {
138             /* Map flags to integers */
139             /* The runtime keeps track of flags using these integers */
140             it=state.getClassSymbolTable().getDescriptorsIterator();
141             while(it.hasNext()) {
142                 ClassDescriptor cn=(ClassDescriptor)it.next();
143                 mapFlags(cn);
144             }
145             /* Generate Tasks */
146             generateTaskStructs(outstructs, outmethodheader);
147
148             /* Outputs generic task structures if this is a task
149                program */
150             outputTaskTypes(outtask);
151         }
152
153         /* Build the actual methods */
154         outputMethods(outmethod);
155
156         if (state.TASK) {
157             /* Output code for tasks */
158             outputTaskCode(outtaskdefs, outmethod);
159             outtaskdefs.close();
160             /* Record maximum number of task parameters */
161             outstructs.println("#define MAXTASKPARAMS "+maxtaskparams);
162         } else if (state.main!=null) {
163             /* Generate main method */
164             outputMainMethod(outmethod);
165         }
166         
167         /* Generate information for task with optional parameters */
168         if (state.TASK&&state.OPTIONAL){
169             generateOptionalArrays(outoptionalarrays, optionalheaders, state.getAnalysisResult(), state.getOptionalTaskDescriptors());
170             outoptionalarrays.close();
171         } 
172
173         /* Output structure definitions for repair tool */
174         if (state.structfile!=null) {
175             buildRepairStructs(outrepairstructs);
176             outrepairstructs.close();
177         }
178
179         /* Close files */
180         outmethodheader.println("#endif");
181         outmethodheader.close();
182         outmethod.close();
183         outstructs.println("#endif");
184         outstructs.close();
185     }
186
187     /* This code just generates the main C method for java programs.
188      * The main C method packs up the arguments into a string array
189      * and passes it to the java main method. */
190
191     private void outputMainMethod(PrintWriter outmethod) {
192         outmethod.println("int main(int argc, const char *argv[]) {");
193         outmethod.println("  int i;");
194         if (state.THREAD||state.DSM) {
195             outmethod.println("initializethreads();");
196         }
197         if (state.DSM) {
198             outmethod.println("if (dstmStartup(argv[1])) {");
199             if (GENERATEPRECISEGC) {
200                 outmethod.println("  struct ArrayObject * stringarray=allocate_newarray(NULL, STRINGARRAYTYPE, argc-2);");
201             } else {
202                 outmethod.println("  struct ArrayObject * stringarray=allocate_newarray(STRINGARRAYTYPE, argc-2);");
203             }
204         } else {
205             if (GENERATEPRECISEGC) {
206                 outmethod.println("  struct ArrayObject * stringarray=allocate_newarray(NULL, STRINGARRAYTYPE, argc-1);");
207             } else {
208                 outmethod.println("  struct ArrayObject * stringarray=allocate_newarray(STRINGARRAYTYPE, argc-1);");
209             }
210         }
211         if (state.DSM) {
212             outmethod.println("  for(i=2;i<argc;i++) {");
213         } else 
214             outmethod.println("  for(i=1;i<argc;i++) {");
215         outmethod.println("    int length=strlen(argv[i]);");
216         if (GENERATEPRECISEGC) {
217             outmethod.println("    struct ___String___ *newstring=NewString(NULL, argv[i], length);");
218         } else {
219             outmethod.println("    struct ___String___ *newstring=NewString(argv[i], length);");
220         }
221         if (state.DSM)
222             outmethod.println("    ((void **)(((char *)& stringarray->___length___)+sizeof(int)))[i-2]=newstring;");
223         else
224             outmethod.println("    ((void **)(((char *)& stringarray->___length___)+sizeof(int)))[i-1]=newstring;");
225         outmethod.println("  }");
226         
227         
228         MethodDescriptor md=typeutil.getMain();
229         ClassDescriptor cd=typeutil.getMainClass();
230         
231         outmethod.println("   {");
232         if (GENERATEPRECISEGC) {
233             if (state.DSM) {
234                 outmethod.print("       struct "+cd.getSafeSymbol()+locality.getMain().getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params __parameterlist__={");
235             } else
236                 outmethod.print("       struct "+cd.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params __parameterlist__={");
237             outmethod.println("1, NULL,"+"stringarray};");
238             if (state.DSM)
239                 outmethod.println("     "+cd.getSafeSymbol()+locality.getMain().getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(& __parameterlist__);");
240             else
241                 outmethod.println("     "+cd.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(& __parameterlist__);");
242         } else {
243             if (state.DSM)
244                 outmethod.println("     "+cd.getSafeSymbol()+locality.getMain().getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(stringarray);");
245             else
246                 outmethod.println("     "+cd.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(stringarray);");
247         }
248         outmethod.println("   }");
249
250         if (state.DSM) {
251             outmethod.println("}");
252         }
253
254         if (state.THREAD||state.DSM) {
255             outmethod.println("pthread_mutex_lock(&gclistlock);");
256             outmethod.println("threadcount--;");
257             outmethod.println("pthread_cond_signal(&gccond);");
258             outmethod.println("pthread_mutex_unlock(&gclistlock);");
259             if (state.THREAD)
260                 outmethod.println("pthread_exit(NULL);");
261         }
262
263
264         outmethod.println("}");
265     }
266
267     /* This method outputs code for each task. */
268
269     private void outputTaskCode(PrintWriter outtaskdefs, PrintWriter outmethod) {
270         /* Compile task based program */
271         outtaskdefs.println("#include \"task.h\"");
272         outtaskdefs.println("#include \"methodheaders.h\"");
273         Iterator taskit=state.getTaskSymbolTable().getDescriptorsIterator();
274         while(taskit.hasNext()) {
275             TaskDescriptor td=(TaskDescriptor)taskit.next();
276             FlatMethod fm=state.getMethodFlat(td);
277             generateFlatMethod(fm, null, outmethod);
278             generateTaskDescriptor(outtaskdefs, fm, td);
279         }
280         
281         //Output task descriptors
282         taskit=state.getTaskSymbolTable().getDescriptorsIterator();
283         outtaskdefs.println("struct taskdescriptor * taskarray[]= {");
284         boolean first=true;
285         while(taskit.hasNext()) {
286             TaskDescriptor td=(TaskDescriptor)taskit.next();
287             if (first)
288                 first=false;
289             else
290                 outtaskdefs.println(",");
291             outtaskdefs.print("&task_"+td.getSafeSymbol());
292         }
293         outtaskdefs.println("};");
294
295         outtaskdefs.println("int numtasks="+state.getTaskSymbolTable().getValueSet().size()+";");
296     }
297
298     /* This method outputs most of the methods.c file.  This includes
299      * some standard includes and then an array with the sizes of
300      * objets and array that stores supertype and then the code for
301      * the Java methods.. */
302
303     private void outputMethods(PrintWriter outmethod) {
304         outmethod.println("#include \"methodheaders.h\"");
305         outmethod.println("#include \"virtualtable.h\"");
306         outmethod.println("#include <runtime.h>");
307         if (state.DSM) {
308             outmethod.println("#include \"localobjects.h\"");
309         }
310         if (state.THREAD||state.DSM)
311             outmethod.println("#include <thread.h>");
312         if (state.main!=null) {
313             outmethod.println("#include <string.h>");       
314         }
315         if (state.CONSCHECK) {
316             outmethod.println("#include \"checkers.h\"");
317         }
318         //Store the sizes of classes & array elements
319         generateSizeArray(outmethod);
320         
321         //Store table of supertypes
322         generateSuperTypeTable(outmethod);
323
324         //Store the layout of classes
325         generateLayoutStructs(outmethod);
326
327         /* Generate code for methods */
328         if (state.DSM) {
329             for(Iterator<LocalityBinding> lbit=locality.getLocalityBindings().iterator();lbit.hasNext();) {
330                 LocalityBinding lb=lbit.next();
331                 MethodDescriptor md=lb.getMethod();
332                 FlatMethod fm=state.getMethodFlat(md);
333                 if (!md.getModifiers().isNative()) {
334                         generateFlatMethod(fm, lb, outmethod);
335                 }
336             }
337         } else {
338             Iterator classit=state.getClassSymbolTable().getDescriptorsIterator();
339             while(classit.hasNext()) {
340                 ClassDescriptor cn=(ClassDescriptor)classit.next();
341                 Iterator methodit=cn.getMethods();
342                 while(methodit.hasNext()) {
343                     /* Classify parameters */
344                     MethodDescriptor md=(MethodDescriptor)methodit.next();
345                     FlatMethod fm=state.getMethodFlat(md);
346                     if (!md.getModifiers().isNative()) {
347                         generateFlatMethod(fm, null, outmethod);
348                     }
349                 }
350             }
351         } 
352     }
353
354     private void outputStructs(PrintWriter outstructs) {
355         outstructs.println("#ifndef STRUCTDEFS_H");
356         outstructs.println("#define STRUCTDEFS_H");
357         outstructs.println("#include \"classdefs.h\"");
358
359         /* Output #defines that the runtime uses to determine type
360          * numbers for various objects it needs */
361         outstructs.println("#define MAXCOUNT "+maxcount);
362         if (state.DSM) {
363             LocalityBinding lb=new LocalityBinding(typeutil.getRun(), false);
364             lb.setGlobalThis(LocalityAnalysis.GLOBAL);
365             outstructs.println("#define RUNMETHOD "+virtualcalls.getLocalityNumber(lb));
366         }
367
368         outstructs.println("#define STRINGARRAYTYPE "+
369                            (state.getArrayNumber(
370                                                  (new TypeDescriptor(typeutil.getClass(TypeUtil.StringClass))).makeArray(state))+state.numClasses()));
371
372         outstructs.println("#define OBJECTARRAYTYPE "+
373                            (state.getArrayNumber(
374                                                  (new TypeDescriptor(typeutil.getClass(TypeUtil.ObjectClass))).makeArray(state))+state.numClasses()));
375
376
377         outstructs.println("#define STRINGTYPE "+typeutil.getClass(TypeUtil.StringClass).getId());
378         outstructs.println("#define CHARARRAYTYPE "+
379                            (state.getArrayNumber((new TypeDescriptor(TypeDescriptor.CHAR)).makeArray(state))+state.numClasses()));
380
381         outstructs.println("#define BYTEARRAYTYPE "+
382                            (state.getArrayNumber((new TypeDescriptor(TypeDescriptor.BYTE)).makeArray(state))+state.numClasses()));
383
384         outstructs.println("#define BYTEARRAYARRAYTYPE "+
385                            (state.getArrayNumber((new TypeDescriptor(TypeDescriptor.BYTE)).makeArray(state).makeArray(state))+state.numClasses()));
386         
387         outstructs.println("#define NUMCLASSES "+state.numClasses());
388         if (state.TASK) {
389             outstructs.println("#define STARTUPTYPE "+typeutil.getClass(TypeUtil.StartupClass).getId());
390             outstructs.println("#define TAGTYPE "+typeutil.getClass(TypeUtil.TagClass).getId());
391             outstructs.println("#define TAGARRAYTYPE "+
392                                (state.getArrayNumber(new TypeDescriptor(typeutil.getClass(TypeUtil.TagClass)).makeArray(state))+state.numClasses()));
393         }
394     }
395
396     private void outputClassDeclarations(PrintWriter outclassdefs) {
397         if (state.THREAD||state.DSM)
398             outclassdefs.println("#include <pthread.h>");
399         if(state.OPTIONAL)
400             outclassdefs.println("#include \"optionalstruct.h\"");
401         outclassdefs.println("struct "+arraytype+";");
402         /* Start by declaring all structs */
403         Iterator it=state.getClassSymbolTable().getDescriptorsIterator();
404         while(it.hasNext()) {
405             ClassDescriptor cn=(ClassDescriptor)it.next();
406             outclassdefs.println("struct "+cn.getSafeSymbol()+";");
407         }
408         outclassdefs.println("");
409         //Print out definition for array type
410         outclassdefs.println("struct "+arraytype+" {");
411         outclassdefs.println("  int type;");
412         if (state.THREAD) {
413             outclassdefs.println("  pthread_t tid;");
414             outclassdefs.println("  void * lockentry;");
415             outclassdefs.println("  int lockcount;");
416         }
417         if (state.TASK) {
418             outclassdefs.println("  int flag;");
419             outclassdefs.println("  void * flagptr;");
420             if(state.OPTIONAL){
421                 outclassdefs.println("  int numfses;");
422                 outclassdefs.println("  int * fses;");
423             }
424         }
425         printClassStruct(typeutil.getClass(TypeUtil.ObjectClass), outclassdefs);
426         
427         outclassdefs.println("  int ___length___;");
428         outclassdefs.println("};\n");
429         outclassdefs.println("extern int classsize[];");
430         outclassdefs.println("extern int hasflags[];");
431         outclassdefs.println("extern unsigned int * pointerarray[];");
432         outclassdefs.println("extern int supertypes[];");
433     }
434
435     /** Prints out definitions for generic task structures */
436
437     private void outputTaskTypes(PrintWriter outtask) {
438         outtask.println("#ifndef _TASK_H");
439         outtask.println("#define _TASK_H");
440         outtask.println("struct parameterdescriptor {");
441         outtask.println("int type;");
442         outtask.println("int numberterms;");
443         outtask.println("int *intarray;");
444         outtask.println("void * queue;");
445         outtask.println("int numbertags;");
446         outtask.println("int *tagarray;");
447         outtask.println("};");
448         
449         outtask.println("struct taskdescriptor {");
450         outtask.println("void * taskptr;");
451         outtask.println("int numParameters;");
452         outtask.println("int numTotal;");
453         outtask.println("struct parameterdescriptor **descriptorarray;");
454         outtask.println("char * name;");
455         outtask.println("};");
456         outtask.println("extern struct taskdescriptor * taskarray[];");
457         outtask.println("extern numtasks;");
458         outtask.println("#endif");
459     }
460
461
462     private void buildRepairStructs(PrintWriter outrepairstructs) {
463         Iterator classit=state.getClassSymbolTable().getDescriptorsIterator();
464         while(classit.hasNext()) {
465             ClassDescriptor cn=(ClassDescriptor)classit.next();
466             outrepairstructs.println("structure "+cn.getSymbol()+" {");
467             outrepairstructs.println("  int __type__;");
468             if (state.TASK) {
469                 outrepairstructs.println("  int __flag__;");
470                 outrepairstructs.println("  int __flagptr__;");
471             }
472             printRepairStruct(cn, outrepairstructs);
473             outrepairstructs.println("}\n");
474         }
475         
476         for(int i=0;i<state.numArrays();i++) {
477             TypeDescriptor tdarray=arraytable[i];
478             TypeDescriptor tdelement=tdarray.dereference();
479             outrepairstructs.println("structure "+arraytype+"_"+state.getArrayNumber(tdarray)+" {");
480             outrepairstructs.println("  int __type__;");
481             printRepairStruct(typeutil.getClass(TypeUtil.ObjectClass), outrepairstructs);
482             outrepairstructs.println("  int length;");
483             /*
484               // Need to add support to repair tool for this
485               if (tdelement.isClass()||tdelement.isArray())
486                 outrepairstructs.println("  "+tdelement.getRepairSymbol()+" * elem[this.length];");
487             else
488                 outrepairstructs.println("  "+tdelement.getRepairSymbol()+" elem[this.length];");
489             */
490             outrepairstructs.println("}\n");
491         }
492     }
493
494     private void printRepairStruct(ClassDescriptor cn, PrintWriter output) {
495         ClassDescriptor sp=cn.getSuperDesc();
496         if (sp!=null)
497             printRepairStruct(sp, output);
498         
499         Vector fields=(Vector)fieldorder.get(cn);
500
501         for(int i=0;i<fields.size();i++) {
502             FieldDescriptor fd=(FieldDescriptor)fields.get(i);
503             if (fd.getType().isArray()) {
504                 output.println("  "+arraytype+"_"+ state.getArrayNumber(fd.getType()) +" * "+fd.getSymbol()+";");
505             } else if (fd.getType().isClass())
506                 output.println("  "+fd.getType().getRepairSymbol()+" * "+fd.getSymbol()+";");
507             else if (fd.getType().isFloat())
508                 output.println("  int "+fd.getSymbol()+"; /* really float */");
509             else 
510                 output.println("  "+fd.getType().getRepairSymbol()+" "+fd.getSymbol()+";");
511         }
512     }
513
514     /** This method outputs TaskDescriptor information */
515     void generateTaskDescriptor(PrintWriter output, FlatMethod fm, TaskDescriptor task) {
516         for (int i=0;i<task.numParameters();i++) {
517             VarDescriptor param_var=task.getParameter(i);
518             TypeDescriptor param_type=task.getParamType(i);
519             FlagExpressionNode param_flag=task.getFlag(param_var);
520             TagExpressionList param_tag=task.getTag(param_var);
521
522             int dnfterms;
523             if (param_flag==null) {
524                 output.println("int parameterdnf_"+i+"_"+task.getSafeSymbol()+"[]={");
525                 output.println("0x0, 0x0 };");
526                 dnfterms=1;
527             } else {
528                 DNFFlag dflag=param_flag.getDNF();
529                 dnfterms=dflag.size();
530                 
531                 Hashtable flags=(Hashtable)flagorder.get(param_type.getClassDesc());
532                 output.println("int parameterdnf_"+i+"_"+task.getSafeSymbol()+"[]={");
533                 for(int j=0;j<dflag.size();j++) {
534                     if (j!=0)
535                         output.println(",");
536                     Vector term=dflag.get(j);
537                     int andmask=0;
538                     int checkmask=0;
539                     for(int k=0;k<term.size();k++) {
540                         DNFFlagAtom dfa=(DNFFlagAtom)term.get(k);
541                         FlagDescriptor fd=dfa.getFlag();
542                         boolean negated=dfa.getNegated();
543                         int flagid=1<<((Integer)flags.get(fd)).intValue();
544                         andmask|=flagid;
545                         if (!negated)
546                             checkmask|=flagid;
547                     }
548                     output.print("0x"+Integer.toHexString(andmask)+", 0x"+Integer.toHexString(checkmask));
549                 }
550                 output.println("};");
551             }
552
553             output.println("int parametertag_"+i+"_"+task.getSafeSymbol()+"[]={");
554             //BUG...added next line to fix, test with any task program
555             if (param_tag!=null)
556                 for(int j=0;j<param_tag.numTags();j++) {
557                     if (j!=0)
558                         output.println(",");
559                     /* for each tag we need */
560                     /* which slot it is */
561                     /* what type it is */
562                     TagVarDescriptor tvd=(TagVarDescriptor)task.getParameterTable().get(param_tag.getName(j));
563                     TempDescriptor tmp=param_tag.getTemp(j);
564                     int slot=fm.getTagInt(tmp);
565                     output.println(slot+", "+state.getTagId(tvd.getTag()));
566                 }
567             output.println("};");
568
569             output.println("struct parameterdescriptor parameter_"+i+"_"+task.getSafeSymbol()+"={");
570             output.println("/* type */"+param_type.getClassDesc().getId()+",");
571             output.println("/* number of DNF terms */"+dnfterms+",");
572             output.println("parameterdnf_"+i+"_"+task.getSafeSymbol()+",");
573             output.println("0,");
574             //BUG, added next line to fix and else statement...test
575             //with any task program
576             if (param_tag!=null)
577                 output.println("/* number of tags */"+param_tag.numTags()+",");
578             else
579                 output.println("/* number of tags */ 0,");
580             output.println("parametertag_"+i+"_"+task.getSafeSymbol());
581             output.println("};");
582         }
583
584
585         output.println("struct parameterdescriptor * parameterdescriptors_"+task.getSafeSymbol()+"[] = {");
586         for (int i=0;i<task.numParameters();i++) {
587             if (i!=0)
588                 output.println(",");
589             output.print("&parameter_"+i+"_"+task.getSafeSymbol());
590         }
591         output.println("};");
592
593         output.println("struct taskdescriptor task_"+task.getSafeSymbol()+"={");
594         output.println("&"+task.getSafeSymbol()+",");
595         output.println("/* number of parameters */" +task.numParameters() + ",");
596         int numtotal=task.numParameters()+fm.numTags();
597         output.println("/* number total parameters */" +numtotal + ",");
598         output.println("parameterdescriptors_"+task.getSafeSymbol()+",");
599         output.println("\""+task.getSymbol()+"\"");
600         output.println("};");
601     }
602
603
604     /** The buildVirtualTables method outputs the virtual dispatch
605      * tables for methods. */
606
607     private void buildVirtualTables(PrintWriter outvirtual) {
608         Iterator classit=state.getClassSymbolTable().getDescriptorsIterator();
609         while(classit.hasNext()) {
610             ClassDescriptor cd=(ClassDescriptor)classit.next();
611             if (virtualcalls.getMethodCount(cd)>maxcount)
612                 maxcount=virtualcalls.getMethodCount(cd);
613         }
614         MethodDescriptor[][] virtualtable=null;
615         LocalityBinding[][] lbvirtualtable=null;
616         if (state.DSM)
617             lbvirtualtable=new LocalityBinding[state.numClasses()+state.numArrays()][maxcount];
618         else
619             virtualtable=new MethodDescriptor[state.numClasses()+state.numArrays()][maxcount];
620
621         /* Fill in virtual table */
622         classit=state.getClassSymbolTable().getDescriptorsIterator();
623         while(classit.hasNext()) {
624             ClassDescriptor cd=(ClassDescriptor)classit.next();
625             if (state.DSM)
626                 fillinRow(cd, lbvirtualtable, cd.getId());
627             else
628                 fillinRow(cd, virtualtable, cd.getId());
629         }
630
631         ClassDescriptor objectcd=typeutil.getClass(TypeUtil.ObjectClass);
632         Iterator arrayit=state.getArrayIterator();
633         while(arrayit.hasNext()) {
634             TypeDescriptor td=(TypeDescriptor)arrayit.next();
635             int id=state.getArrayNumber(td);
636             if (state.DSM)
637                 fillinRow(objectcd, lbvirtualtable, id+state.numClasses());
638             else
639                 fillinRow(objectcd, virtualtable, id+state.numClasses());
640         }
641         
642         outvirtual.print("void * virtualtable[]={");
643         boolean needcomma=false;
644         for(int i=0;i<state.numClasses()+state.numArrays();i++) {
645             for(int j=0;j<maxcount;j++) {
646                 if (needcomma)
647                     outvirtual.print(", ");
648                 if (state.DSM&&lbvirtualtable[i][j]!=null) {
649                     LocalityBinding lb=lbvirtualtable[i][j];
650                     MethodDescriptor md=lb.getMethod();
651                     outvirtual.print("& "+md.getClassDesc().getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor());
652                 } else if (!state.DSM&&virtualtable[i][j]!=null) {
653                     MethodDescriptor md=virtualtable[i][j];
654                     outvirtual.print("& "+md.getClassDesc().getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor());
655                 } else {
656                     outvirtual.print("0");
657                 }
658                 needcomma=true;
659             }
660             outvirtual.println("");
661         }
662         outvirtual.println("};");
663         outvirtual.close();
664     }
665
666     private void fillinRow(ClassDescriptor cd, MethodDescriptor[][] virtualtable, int rownum) {
667         /* Get inherited methods */
668         if (cd.getSuperDesc()!=null)
669             fillinRow(cd.getSuperDesc(), virtualtable, rownum);
670         /* Override them with our methods */
671         for(Iterator it=cd.getMethods();it.hasNext();) {
672             MethodDescriptor md=(MethodDescriptor)it.next();
673             if (md.isStatic()||md.getReturnType()==null)
674                 continue;
675             int methodnum=virtualcalls.getMethodNumber(md);
676             virtualtable[rownum][methodnum]=md;
677         }
678     }
679
680     private void fillinRow(ClassDescriptor cd, LocalityBinding[][] virtualtable, int rownum) {
681         /* Get inherited methods */
682         if (cd.getSuperDesc()!=null)
683             fillinRow(cd.getSuperDesc(), virtualtable, rownum);
684         /* Override them with our methods */
685         if (locality.getClassBindings(cd)!=null)
686             for(Iterator<LocalityBinding> lbit=locality.getClassBindings(cd).iterator();lbit.hasNext();) {
687                 LocalityBinding lb=lbit.next();
688                 MethodDescriptor md=lb.getMethod();
689                 //Is the method static or a constructor
690                 if (md.isStatic()||md.getReturnType()==null)
691                     continue;
692                 int methodnum=virtualcalls.getLocalityNumber(lb);
693                 virtualtable[rownum][methodnum]=lb;
694             }
695     }
696
697
698     /** Generate array that contains the sizes of class objects.  The
699      * object allocation functions in the runtime use this
700      * information. */
701
702     private void generateSizeArray(PrintWriter outclassdefs) {
703         outclassdefs.print("int classsize[]={");
704         Iterator it=state.getClassSymbolTable().getDescriptorsIterator();
705         cdarray=new ClassDescriptor[state.numClasses()];
706         while(it.hasNext()) {
707             ClassDescriptor cd=(ClassDescriptor)it.next();
708             cdarray[cd.getId()]=cd;
709         }
710         boolean needcomma=false;
711         for(int i=0;i<state.numClasses();i++) {
712             if (needcomma)
713                 outclassdefs.print(", ");
714             outclassdefs.print("sizeof(struct "+cdarray[i].getSafeSymbol()+")");            
715             needcomma=true;
716         }
717
718         arraytable=new TypeDescriptor[state.numArrays()];
719
720         Iterator arrayit=state.getArrayIterator();
721         while(arrayit.hasNext()) {
722             TypeDescriptor td=(TypeDescriptor)arrayit.next();
723             int id=state.getArrayNumber(td);
724             arraytable[id]=td;
725         }
726         
727         for(int i=0;i<state.numArrays();i++) {
728             if (needcomma)
729                 outclassdefs.print(", ");
730             TypeDescriptor tdelement=arraytable[i].dereference();
731             if (tdelement.isArray()||tdelement.isClass())
732                 outclassdefs.print("sizeof(void *)");
733             else
734                 outclassdefs.print("sizeof("+tdelement.getSafeSymbol()+")");
735             needcomma=true;
736         }
737
738         outclassdefs.println("};");
739     }
740
741     /** Constructs params and temp objects for each method or task.
742      * These objects tell the compiler which temps need to be
743      * allocated.  */
744
745     private void generateTempStructs(FlatMethod fm, LocalityBinding lb) {
746         MethodDescriptor md=fm.getMethod();
747         TaskDescriptor task=fm.getTask();
748         Set<TempDescriptor> saveset=lb!=null?locality.getTempSet(lb):null;
749         ParamsObject objectparams=md!=null?new ParamsObject(md,tag++):new ParamsObject(task, tag++);
750
751         if (lb!=null)
752             paramstable.put(lb, objectparams);
753         else if (md!=null)
754             paramstable.put(md, objectparams);
755         else
756             paramstable.put(task, objectparams);
757
758         for(int i=0;i<fm.numParameters();i++) {
759             TempDescriptor temp=fm.getParameter(i);
760             TypeDescriptor type=temp.getType();
761             if (type.isPtr()&&GENERATEPRECISEGC)
762                 objectparams.addPtr(temp);
763             else
764                 objectparams.addPrim(temp);
765             if(lb!=null&&saveset.contains(temp)) {
766                 backuptable.put(temp, temp.createNew());
767             }
768         }
769
770         for(int i=0;i<fm.numTags();i++) {
771             TempDescriptor temp=fm.getTag(i);
772             if (GENERATEPRECISEGC)
773                 objectparams.addPtr(temp);
774             else
775                 objectparams.addPrim(temp);
776         }
777
778         TempObject objecttemps=md!=null?new TempObject(objectparams,md,tag++):new TempObject(objectparams, task, tag++);
779         if (lb!=null)
780             tempstable.put(lb, objecttemps);
781         else if (md!=null)
782             tempstable.put(md, objecttemps);
783         else
784             tempstable.put(task, objecttemps);
785
786         for(Iterator nodeit=fm.getNodeSet().iterator();nodeit.hasNext();) {
787             FlatNode fn=(FlatNode)nodeit.next();
788             TempDescriptor[] writes=fn.writesTemps();
789             for(int i=0;i<writes.length;i++) {
790                 TempDescriptor temp=writes[i];
791                 TypeDescriptor type=temp.getType();
792                 if (type.isPtr()&&GENERATEPRECISEGC)
793                     objecttemps.addPtr(temp);
794                 else
795                     objecttemps.addPrim(temp);
796                 if(lb!=null&&saveset.contains(temp)&&
797                    !backuptable.containsKey(temp))
798                     backuptable.put(temp, temp.createNew());
799             }
800         }
801
802         /* Create backup temps */
803         if (lb!=null) {
804             for(Iterator<TempDescriptor> tmpit=backuptable.values().iterator();tmpit.hasNext();) {
805                 TempDescriptor tmp=tmpit.next();
806                 TypeDescriptor type=tmp.getType();
807                 if (type.isPtr()&&GENERATEPRECISEGC)
808                     objecttemps.addPtr(tmp);
809                 else
810                     objecttemps.addPrim(tmp);
811             }
812             /* Create temp to hold revert table */
813             if (lb.getHasAtomic()||lb.isAtomic()) {
814                 TempDescriptor reverttmp=new TempDescriptor("revertlist", typeutil.getClass(TypeUtil.ObjectClass));
815                 if (GENERATEPRECISEGC)
816                     objecttemps.addPtr(reverttmp);
817                 else
818                     objecttemps.addPrim(reverttmp);
819                 reverttable.put(lb, reverttmp);
820             }
821         }
822     }
823
824     /** This method outputs the following information about classes
825      * and arrays:
826      * (1) For classes, what are the locations of pointers.
827      * (2) For arrays, does the array contain pointers or primitives.
828      * (3) For classes, does the class contain flags.
829      */
830
831     private void generateLayoutStructs(PrintWriter output) {
832         Iterator it=state.getClassSymbolTable().getDescriptorsIterator();
833         while(it.hasNext()) {
834             ClassDescriptor cn=(ClassDescriptor)it.next();
835             output.println("unsigned int "+cn.getSafeSymbol()+"_pointers[]={");
836             Iterator allit=cn.getFieldTable().getAllDescriptorsIterator();
837             int count=0;
838             while(allit.hasNext()) {
839                 FieldDescriptor fd=(FieldDescriptor)allit.next();
840                 TypeDescriptor type=fd.getType();
841                 if (state.DSM&&fd.isGlobal()) //Don't GC the global objects for now
842                     continue;
843                 if (type.isPtr())
844                     count++;
845             }
846             output.print(count);
847             allit=cn.getFieldTable().getAllDescriptorsIterator();
848             while(allit.hasNext()) {
849                 FieldDescriptor fd=(FieldDescriptor)allit.next();
850                 TypeDescriptor type=fd.getType();
851                 if (state.DSM&&fd.isGlobal()) //Don't GC the global objects for now
852                     continue;
853                 if (type.isPtr()) {
854                     output.println(",");
855                     output.print("((unsigned int)&(((struct "+cn.getSafeSymbol() +" *)0)->"+fd.getSafeSymbol()+"))");
856                 }
857             }
858             output.println("};");
859         }
860         output.println("unsigned int * pointerarray[]={");
861         boolean needcomma=false;
862         for(int i=0;i<state.numClasses();i++) {
863             ClassDescriptor cn=cdarray[i];
864             if (needcomma)
865                 output.println(",");
866             needcomma=true;
867             output.print(cn.getSafeSymbol()+"_pointers");
868         }
869
870         for(int i=0;i<state.numArrays();i++) {
871             if (needcomma)
872                 output.println(", ");
873             TypeDescriptor tdelement=arraytable[i].dereference();
874             if (tdelement.isArray()||tdelement.isClass())
875                 output.print("((unsigned int *)1)");
876             else
877                 output.print("0");
878             needcomma=true;
879         }
880         
881         output.println("};");
882         needcomma=false;
883         output.println("int hasflags[]={");
884         for(int i=0;i<state.numClasses();i++) {
885             ClassDescriptor cn=cdarray[i];
886             if (needcomma)
887                 output.println(", ");
888             needcomma=true;
889             if (cn.hasFlags())
890                 output.print("1");
891             else
892                 output.print("0");
893         }
894         output.println("};");
895     }
896
897     /** Print out table to give us supertypes */
898     private void generateSuperTypeTable(PrintWriter output) {
899         output.println("int supertypes[]={");
900         boolean needcomma=false;
901         for(int i=0;i<state.numClasses();i++) {
902             ClassDescriptor cn=cdarray[i];
903             if (needcomma)
904                 output.println(",");
905             needcomma=true;
906             if (cn.getSuperDesc()!=null) {
907                 ClassDescriptor cdsuper=cn.getSuperDesc();
908                 output.print(cdsuper.getId());
909             } else
910                 output.print("-1");
911         }
912         output.println("};");
913     }
914
915     /** Force consistent field ordering between inherited classes. */
916
917     private void printClassStruct(ClassDescriptor cn, PrintWriter classdefout) {
918         
919         ClassDescriptor sp=cn.getSuperDesc();
920         if (sp!=null)
921             printClassStruct(sp, classdefout);
922         
923         if (!fieldorder.containsKey(cn)) {
924             Vector fields=new Vector();
925             fieldorder.put(cn,fields);
926             if (sp==null&&!state.TASK) {
927                 fields.add(cn.getFieldTable().get("cachedCode"));
928             }
929             Iterator fieldit=cn.getFields();
930             while(fieldit.hasNext()) {
931                 FieldDescriptor fd=(FieldDescriptor)fieldit.next();
932                 if ((sp==null||!sp.getFieldTable().contains(fd.getSymbol()))&&
933                     (!fd.getSymbol().equals("cachedCode")||state.TASK))
934                     fields.add(fd);
935             }
936         }
937         Vector fields=(Vector)fieldorder.get(cn);
938
939         for(int i=0;i<fields.size();i++) {
940             FieldDescriptor fd=(FieldDescriptor)fields.get(i);
941             if (fd.getType().isClass()||fd.getType().isArray())
942                 classdefout.println("  struct "+fd.getType().getSafeSymbol()+" * "+fd.getSafeSymbol()+";");
943             else 
944                 classdefout.println("  "+fd.getType().getSafeSymbol()+" "+fd.getSafeSymbol()+";");
945         }
946     }
947
948
949     /* Map flags to integers consistently between inherited
950      * classes. */
951
952     private void mapFlags(ClassDescriptor cn) {
953         ClassDescriptor sp=cn.getSuperDesc();
954         if (sp!=null)
955             mapFlags(sp);
956         int max=0;
957         if (!flagorder.containsKey(cn)) {
958             Hashtable flags=new Hashtable();
959             flagorder.put(cn,flags);
960             if (sp!=null) {
961                 Hashtable superflags=(Hashtable)flagorder.get(sp);
962                 Iterator superflagit=superflags.keySet().iterator();
963                 while(superflagit.hasNext()) {
964                     FlagDescriptor fd=(FlagDescriptor)superflagit.next();
965                     Integer number=(Integer)superflags.get(fd);
966                     flags.put(fd, number);
967                     if ((number.intValue()+1)>max)
968                         max=number.intValue()+1;
969                 }
970             }
971             
972             Iterator flagit=cn.getFlags();
973             while(flagit.hasNext()) {
974                 FlagDescriptor fd=(FlagDescriptor)flagit.next();
975                 if (sp==null||!sp.getFlagTable().contains(fd.getSymbol()))
976                     flags.put(fd, new Integer(max++));
977             }
978         }
979     }
980
981
982     /** This function outputs (1) structures that parameters are
983      * passed in (when PRECISE GC is enabled) and (2) function
984      * prototypes for the methods */
985
986     private void generateCallStructs(ClassDescriptor cn, PrintWriter classdefout, PrintWriter output, PrintWriter headersout) {
987         /* Output class structure */
988         classdefout.println("struct "+cn.getSafeSymbol()+" {");
989         classdefout.println("  int type;");
990         if (state.THREAD) {
991             classdefout.println("  pthread_t tid;");
992             classdefout.println("  void * lockentry;");
993             classdefout.println("  int lockcount;");
994         }
995
996         if (state.TASK) {
997             classdefout.println("  int flag;");
998             classdefout.println("  void * flagptr;");
999             if (state.OPTIONAL){
1000                 classdefout.println("  int numfses;");
1001                 classdefout.println("  int * fses;");
1002             }
1003         }
1004         printClassStruct(cn, classdefout);
1005         classdefout.println("};\n");
1006
1007         if (state.DSM) {
1008             /* Cycle through LocalityBindings */
1009             HashSet<MethodDescriptor> nativemethods=new HashSet<MethodDescriptor>();
1010             Set<LocalityBinding> lbset=locality.getClassBindings(cn);
1011             if (lbset!=null) {
1012                 for(Iterator<LocalityBinding> lbit=lbset.iterator();lbit.hasNext();) {
1013                     LocalityBinding lb=lbit.next();
1014                     MethodDescriptor md=lb.getMethod();
1015                     if (md.getModifiers().isNative()) {
1016                         //make sure we only print a native method once
1017                         if (nativemethods.contains(md)) {
1018                             FlatMethod fm=state.getMethodFlat(md);
1019                             generateTempStructs(fm, lb);
1020                             continue;
1021                         } else
1022                             nativemethods.add(md);
1023                     }
1024                     generateMethod(cn, md, lb, headersout, output);
1025                 }
1026             }
1027             for(Iterator methodit=cn.getMethods();methodit.hasNext();) {
1028                 MethodDescriptor md=(MethodDescriptor)methodit.next();
1029                 if (md.getModifiers().isNative()&&!nativemethods.contains(md)) {
1030                     //Need to build param structure for library code
1031                     FlatMethod fm=state.getMethodFlat(md);
1032                     generateTempStructs(fm, null);
1033                     generateMethodParam(cn, md, null, output);
1034                 }
1035             }
1036
1037         } else
1038             for(Iterator methodit=cn.getMethods();methodit.hasNext();) {
1039                 MethodDescriptor md=(MethodDescriptor)methodit.next();
1040                 generateMethod(cn, md, null, headersout, output);
1041             }
1042     }
1043
1044     private void generateMethodParam(ClassDescriptor cn, MethodDescriptor md, LocalityBinding lb, PrintWriter output) {
1045         /* Output parameter structure */
1046         if (GENERATEPRECISEGC) {
1047             ParamsObject objectparams=(ParamsObject) paramstable.get(lb!=null?lb:md);
1048             if (state.DSM&&lb!=null)
1049                 output.println("struct "+cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params {");
1050             else
1051                 output.println("struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params {");
1052             output.println("  int size;");
1053             output.println("  void * next;");
1054             for(int i=0;i<objectparams.numPointers();i++) {
1055                 TempDescriptor temp=objectparams.getPointer(i);
1056                 output.println("  struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol()+";");
1057             }
1058             output.println("};\n");
1059         }
1060     }
1061
1062
1063     private void generateMethod(ClassDescriptor cn, MethodDescriptor md, LocalityBinding lb, PrintWriter headersout, PrintWriter output) {
1064         FlatMethod fm=state.getMethodFlat(md);
1065         generateTempStructs(fm, lb);
1066         
1067         ParamsObject objectparams=(ParamsObject) paramstable.get(lb!=null?lb:md);
1068         TempObject objecttemps=(TempObject) tempstable.get(lb!=null?lb:md);
1069         
1070         generateMethodParam(cn, md, lb, output);
1071         
1072         /* Output temp structure */
1073         if (GENERATEPRECISEGC) {
1074             if (state.DSM)
1075                 output.println("struct "+cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_locals {");
1076             else
1077                 output.println("struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_locals {");
1078             output.println("  int size;");
1079             output.println("  void * next;");
1080             for(int i=0;i<objecttemps.numPointers();i++) {
1081                 TempDescriptor temp=objecttemps.getPointer(i);
1082                 if (temp.getType().isNull())
1083                     output.println("  void * "+temp.getSafeSymbol()+";");
1084                 else
1085                     output.println("  struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol()+";");
1086             }
1087             output.println("};\n");
1088         }
1089         
1090         /********* Output method declaration ***********/
1091
1092         /* First the return type */
1093         if (md.getReturnType()!=null) {
1094             if (md.getReturnType().isClass()||md.getReturnType().isArray())
1095                 headersout.print("struct " + md.getReturnType().getSafeSymbol()+" * ");
1096             else
1097                 headersout.print(md.getReturnType().getSafeSymbol()+" ");
1098         } else 
1099             //catch the constructor case
1100             headersout.print("void ");
1101
1102         /* Next the method name */
1103         if (state.DSM) {
1104             headersout.print(cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(");
1105         } else
1106             headersout.print(cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(");
1107         
1108         boolean printcomma=false;
1109         if (GENERATEPRECISEGC) {
1110             if (state.DSM) {
1111                 headersout.print("struct "+cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * "+paramsprefix);
1112             } else
1113                 headersout.print("struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * "+paramsprefix);
1114             printcomma=true;
1115         }
1116         
1117         if (state.DSM&&lb.isAtomic()) {
1118             if (printcomma)
1119                 headersout.print(", ");
1120             headersout.print("transrecord_t * trans");
1121             printcomma=true;
1122         }
1123
1124         /*  Output parameter list*/
1125         for(int i=0;i<objectparams.numPrimitives();i++) {
1126             TempDescriptor temp=objectparams.getPrimitive(i);
1127             if (printcomma)
1128                 headersout.print(", ");
1129             printcomma=true;
1130             if (temp.getType().isClass()||temp.getType().isArray())
1131                 headersout.print("struct " + temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol());
1132             else
1133                 headersout.print(temp.getType().getSafeSymbol()+" "+temp.getSafeSymbol());
1134         }
1135         headersout.println(");\n");
1136     }
1137
1138
1139     /** This function outputs (1) structures that parameters are
1140      * passed in (when PRECISE GC is enabled) and (2) function
1141      * prototypes for the tasks */
1142
1143     private void generateTaskStructs(PrintWriter output, PrintWriter headersout) {
1144         /* Cycle through tasks */
1145         Iterator taskit=state.getTaskSymbolTable().getDescriptorsIterator();
1146
1147         while(taskit.hasNext()) {
1148             /* Classify parameters */
1149             TaskDescriptor task=(TaskDescriptor)taskit.next();
1150             FlatMethod fm=state.getMethodFlat(task);
1151             generateTempStructs(fm, null);
1152
1153             ParamsObject objectparams=(ParamsObject) paramstable.get(task);
1154             TempObject objecttemps=(TempObject) tempstable.get(task);
1155
1156             /* Output parameter structure */
1157             if (GENERATEPRECISEGC) {
1158                 output.println("struct "+task.getSafeSymbol()+"_params {");
1159
1160                 output.println("  int size;");
1161                 output.println("  void * next;");
1162                 for(int i=0;i<objectparams.numPointers();i++) {
1163                     TempDescriptor temp=objectparams.getPointer(i);
1164                     output.println("  struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol()+";");
1165                 }
1166
1167                 output.println("};\n");
1168                 if ((objectparams.numPointers()+fm.numTags())>maxtaskparams) {
1169                     maxtaskparams=objectparams.numPointers()+fm.numTags();
1170                 }
1171             }
1172
1173             /* Output temp structure */
1174             if (GENERATEPRECISEGC) {
1175                 output.println("struct "+task.getSafeSymbol()+"_locals {");
1176                 output.println("  int size;");
1177                 output.println("  void * next;");
1178                 for(int i=0;i<objecttemps.numPointers();i++) {
1179                     TempDescriptor temp=objecttemps.getPointer(i);
1180                     if (temp.getType().isNull())
1181                         output.println("  void * "+temp.getSafeSymbol()+";");
1182                     else if(temp.getType().isTag())
1183                         output.println("  struct "+
1184                                        (new TypeDescriptor(typeutil.getClass(TypeUtil.TagClass))).getSafeSymbol()+" * "+temp.getSafeSymbol()+";");
1185                     else
1186                         output.println("  struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol()+";");
1187                 }
1188                 output.println("};\n");
1189             }
1190             
1191             /* Output task declaration */
1192             headersout.print("void " + task.getSafeSymbol()+"(");
1193             
1194             boolean printcomma=false;
1195             if (GENERATEPRECISEGC) {
1196                 headersout.print("struct "+task.getSafeSymbol()+"_params * "+paramsprefix);
1197             } else
1198                 headersout.print("void * parameterarray[]");
1199             headersout.println(");\n");
1200         }
1201     }
1202
1203     /***** Generate code for FlatMethod fm. *****/
1204
1205     private void generateFlatMethod(FlatMethod fm, LocalityBinding lb, PrintWriter output) {
1206         if (State.PRINTFLAT)
1207             System.out.println(fm.printMethod());
1208         MethodDescriptor md=fm.getMethod();
1209         
1210         TaskDescriptor task=fm.getTask();
1211
1212         ClassDescriptor cn=md!=null?md.getClassDesc():null;
1213
1214         ParamsObject objectparams=(ParamsObject)paramstable.get(lb!=null?lb:md!=null?md:task);
1215         generateHeader(fm, lb, md!=null?md:task,output);
1216         TempObject objecttemp=(TempObject) tempstable.get(lb!=null?lb:md!=null?md:task);
1217         if (state.DSM&&lb.getHasAtomic()) {
1218             output.println("transrecord_t * trans;");
1219         }
1220
1221         if (GENERATEPRECISEGC) {
1222             if (md!=null&&state.DSM)
1223                 output.print("   struct "+cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_locals "+localsprefix+"={");
1224             else if (md!=null&&!state.DSM)
1225                 output.print("   struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_locals "+localsprefix+"={");
1226             else
1227                 output.print("   struct "+task.getSafeSymbol()+"_locals "+localsprefix+"={");
1228
1229             output.print(objecttemp.numPointers()+",");
1230             output.print(paramsprefix);
1231             for(int j=0;j<objecttemp.numPointers();j++)
1232                 output.print(", NULL");
1233             output.println("};");
1234         }
1235
1236         for(int i=0;i<objecttemp.numPrimitives();i++) {
1237             TempDescriptor td=objecttemp.getPrimitive(i);
1238             TypeDescriptor type=td.getType();
1239             if (type.isNull())
1240                 output.println("   void * "+td.getSafeSymbol()+";");
1241             else if (type.isClass()||type.isArray())
1242                 output.println("   struct "+type.getSafeSymbol()+" * "+td.getSafeSymbol()+";");
1243             else
1244                 output.println("   "+type.getSafeSymbol()+" "+td.getSafeSymbol()+";");
1245         }
1246
1247         /* Assign labels to FlatNode's if necessary.*/
1248
1249         Hashtable<FlatNode, Integer> nodetolabel=assignLabels(fm);
1250
1251         /* Check to see if we need to do a GC if this is a
1252          * multi-threaded program...*/
1253
1254         if ((state.THREAD||state.DSM)&&GENERATEPRECISEGC) {
1255             if (state.DSM&&lb.isAtomic())
1256                 output.println("checkcollect2(&"+localsprefix+",trans);");
1257             else
1258                 output.println("checkcollect(&"+localsprefix+");");
1259         }
1260         
1261         /* Do the actual code generation */
1262         FlatNode current_node=null;
1263         HashSet tovisit=new HashSet();
1264         HashSet visited=new HashSet();
1265         tovisit.add(fm.getNext(0));
1266         while(current_node!=null||!tovisit.isEmpty()) {
1267             if (current_node==null) {
1268                 current_node=(FlatNode)tovisit.iterator().next();
1269                 tovisit.remove(current_node);
1270             }
1271             visited.add(current_node);
1272             if (nodetolabel.containsKey(current_node))
1273                 output.println("L"+nodetolabel.get(current_node)+":");
1274             if (state.INSTRUCTIONFAILURE) {
1275                 if (state.THREAD||state.DSM) {
1276                     output.println("if ((++instructioncount)>failurecount) {instructioncount=0;injectinstructionfailure();}");
1277                 }
1278                 else
1279                     output.println("if ((--instructioncount)==0) injectinstructionfailure();");
1280             }
1281             if (current_node.numNext()==0) {
1282                 output.print("   ");
1283                 generateFlatNode(fm, lb, current_node, output);
1284                 if (current_node.kind()!=FKind.FlatReturnNode) {
1285                     output.println("   return;");
1286                 }
1287                 current_node=null;
1288             } else if(current_node.numNext()==1) {
1289                 output.print("   ");
1290                 generateFlatNode(fm, lb, current_node, output);
1291                 FlatNode nextnode=current_node.getNext(0);
1292                 if (visited.contains(nextnode)) {
1293                     output.println("goto L"+nodetolabel.get(nextnode)+";");
1294                     current_node=null;
1295                 } else
1296                     current_node=nextnode;
1297             } else if (current_node.numNext()==2) {
1298                 /* Branch */
1299                 output.print("   ");
1300                 generateFlatCondBranch(fm, lb, (FlatCondBranch)current_node, "L"+nodetolabel.get(current_node.getNext(1)), output);
1301                 if (!visited.contains(current_node.getNext(1)))
1302                     tovisit.add(current_node.getNext(1));
1303                 if (visited.contains(current_node.getNext(0))) {
1304                     output.println("goto L"+nodetolabel.get(current_node.getNext(0))+";");
1305                     current_node=null;
1306                 } else
1307                     current_node=current_node.getNext(0);
1308             } else throw new Error();
1309         }
1310         output.println("}\n\n");
1311     }
1312
1313     /** This method assigns labels to FlatNodes */
1314
1315     private Hashtable<FlatNode, Integer> assignLabels(FlatMethod fm) {
1316         HashSet tovisit=new HashSet();
1317         HashSet visited=new HashSet();
1318         int labelindex=0;
1319         Hashtable<FlatNode, Integer> nodetolabel=new Hashtable<FlatNode, Integer>();
1320         tovisit.add(fm.getNext(0));
1321
1322         /*Assign labels first.  A node needs a label if the previous
1323          * node has two exits or this node is a join point. */
1324
1325         while(!tovisit.isEmpty()) {
1326             FlatNode fn=(FlatNode)tovisit.iterator().next();
1327             tovisit.remove(fn);
1328             visited.add(fn);
1329             for(int i=0;i<fn.numNext();i++) {
1330                 FlatNode nn=fn.getNext(i);
1331                 if(i>0) {
1332                     //1) Edge >1 of node
1333                     nodetolabel.put(nn,new Integer(labelindex++));
1334                 }
1335                 if (!visited.contains(nn)&&!tovisit.contains(nn)) {
1336                     tovisit.add(nn);
1337                 } else {
1338                     //2) Join point
1339                     nodetolabel.put(nn,new Integer(labelindex++));
1340                 }
1341             }
1342         }
1343         return nodetolabel;
1344     }
1345
1346
1347     /** Generate text string that corresponds to the TempDescriptor td. */
1348     private String generateTemp(FlatMethod fm, TempDescriptor td, LocalityBinding lb) {
1349         MethodDescriptor md=fm.getMethod();
1350         TaskDescriptor task=fm.getTask();
1351         TempObject objecttemps=(TempObject) tempstable.get(lb!=null?lb:md!=null?md:task);
1352
1353         if (objecttemps.isLocalPrim(td)||objecttemps.isParamPrim(td)) {
1354             return td.getSafeSymbol();
1355         }
1356
1357         if (objecttemps.isLocalPtr(td)) {
1358             return localsprefix+"."+td.getSafeSymbol();
1359         }
1360
1361         if (objecttemps.isParamPtr(td)) {
1362             return paramsprefix+"->"+td.getSafeSymbol();
1363         }
1364         throw new Error();
1365     }
1366
1367     private void generateFlatNode(FlatMethod fm, LocalityBinding lb, FlatNode fn, PrintWriter output) {
1368         switch(fn.kind()) {
1369         case FKind.FlatAtomicEnterNode:
1370             generateFlatAtomicEnterNode(fm, lb, (FlatAtomicEnterNode) fn, output);
1371             return;
1372         case FKind.FlatAtomicExitNode:
1373             generateFlatAtomicExitNode(fm, lb, (FlatAtomicExitNode) fn, output);
1374             return;
1375         case FKind.FlatGlobalConvNode:
1376             generateFlatGlobalConvNode(fm, lb, (FlatGlobalConvNode) fn, output);
1377             return;
1378         case FKind.FlatTagDeclaration:
1379             generateFlatTagDeclaration(fm, lb, (FlatTagDeclaration) fn,output);
1380             return;
1381         case FKind.FlatCall:
1382             generateFlatCall(fm, lb, (FlatCall) fn,output);
1383             return;
1384         case FKind.FlatFieldNode:
1385             generateFlatFieldNode(fm, lb, (FlatFieldNode) fn,output);
1386             return;
1387         case FKind.FlatElementNode:
1388             generateFlatElementNode(fm, lb, (FlatElementNode) fn,output);
1389             return;
1390         case FKind.FlatSetElementNode:
1391             generateFlatSetElementNode(fm, lb, (FlatSetElementNode) fn,output);
1392             return;
1393         case FKind.FlatSetFieldNode:
1394             generateFlatSetFieldNode(fm, lb, (FlatSetFieldNode) fn,output);
1395             return;
1396         case FKind.FlatNew:
1397             generateFlatNew(fm, lb, (FlatNew) fn,output);
1398             return;
1399         case FKind.FlatOpNode:
1400             generateFlatOpNode(fm, lb, (FlatOpNode) fn,output);
1401             return;
1402         case FKind.FlatCastNode:
1403             generateFlatCastNode(fm, lb, (FlatCastNode) fn,output);
1404             return;
1405         case FKind.FlatLiteralNode:
1406             generateFlatLiteralNode(fm, lb, (FlatLiteralNode) fn,output);
1407             return;
1408         case FKind.FlatReturnNode:
1409             generateFlatReturnNode(fm, lb, (FlatReturnNode) fn,output);
1410             return;
1411         case FKind.FlatNop:
1412             output.println("/* nop */");
1413             return;
1414         case FKind.FlatBackEdge:
1415             if ((state.THREAD||state.DSM)&&GENERATEPRECISEGC) {
1416                 if(state.DSM&&locality.getAtomic(lb).get(fn).intValue()>0) {
1417                     output.println("checkcollect2(&"+localsprefix+",trans);");
1418                 } else
1419                     output.println("checkcollect(&"+localsprefix+");");
1420             } else
1421                 output.println("/* nop */");
1422             return;
1423         case FKind.FlatCheckNode:
1424             generateFlatCheckNode(fm, lb, (FlatCheckNode) fn, output);
1425             return;
1426         case FKind.FlatFlagActionNode:
1427             generateFlatFlagActionNode(fm, lb, (FlatFlagActionNode) fn, output);
1428             return;
1429         case FKind.FlatPrefetchNode:
1430             generateFlatPrefetchNode(fm,lb, (FlatPrefetchNode) fn, output);
1431             return;
1432         }
1433         throw new Error();
1434     }
1435  
1436     public void generateFlatPrefetchNode(FlatMethod fm, LocalityBinding lb, FlatPrefetchNode fpn, PrintWriter output) {
1437         if (state.PREFETCH) {
1438             Vector oids = new Vector();
1439             Vector fieldoffset = new Vector();
1440             Vector endoffset = new Vector();
1441             int tuplecount = 0;  //Keeps track of number of prefetch tuples that need to be generated
1442             for(Iterator it = fpn.hspp.iterator();it.hasNext();) {
1443                 PrefetchPair pp = (PrefetchPair) it.next();
1444                 Integer statusbase = locality.getNodePreTempInfo(lb,fpn).get(pp.base);
1445                 /* Find prefetches that can generate oid */
1446                 if(statusbase == LocalityAnalysis.GLOBAL) {
1447                     generateTransCode(fm, lb, pp, oids, fieldoffset, endoffset, tuplecount, locality.getAtomic(lb).get(fpn).intValue()>0, false);
1448                     tuplecount++;
1449                 } else if (statusbase == LocalityAnalysis.LOCAL) {
1450                     generateTransCode(fm,lb,pp,oids,fieldoffset,endoffset,tuplecount,false,true);
1451                 } else {
1452                     continue;
1453                 }
1454             }
1455             if (tuplecount==0)
1456                 return;
1457             output.println("{");
1458             output.println("/* prefetch */");
1459             output.println("void * prefptr;");
1460             output.println("int tmpindex;");
1461             /*Create C code for oid array */
1462             output.print("   unsigned int oidarray_[] = {");
1463             boolean needcomma=false;
1464             for (Iterator it = oids.iterator();it.hasNext();) {
1465                 if (needcomma)
1466                     output.print(", ");
1467                 output.print(it.next());
1468                 needcomma=true;
1469             }
1470             output.println("};");
1471             
1472             /*Create C code for endoffset values */
1473             output.print("   unsigned short endoffsetarry_[] = {");
1474             needcomma=false;
1475             for (Iterator it = endoffset.iterator();it.hasNext();) {
1476                 if (needcomma)
1477                     output.print(", ");
1478                 output.print(it.next());
1479                 needcomma=true;
1480             }
1481             output.println("};");
1482             
1483             /*Create C code for Field Offset Values */
1484             output.print("   short fieldarry_[] = {");
1485             needcomma=false;
1486             for (Iterator it = fieldoffset.iterator();it.hasNext();) {
1487                 if (needcomma)
1488                     output.print(", ");
1489                 output.print(it.next());
1490                 needcomma=true;
1491             }
1492             output.println("};");
1493             /* make the prefetch call to Runtime */
1494             output.println("   prefetch("+tuplecount+", oidarray_, endoffsetarry_, fieldarry_);");
1495             output.println("}");
1496         }   
1497     }   
1498     
1499     public void generateTransCode(FlatMethod fm, LocalityBinding lb,PrefetchPair pp, Vector oids, Vector fieldoffset, Vector endoffset, int tuplecount, boolean inside, boolean localbase) {
1500         short offsetcount = 0;
1501         int breakindex=0;
1502         if (inside) {
1503             breakindex=1;
1504         } else if (localbase) {
1505             for(;breakindex<pp.desc.size();breakindex++) {
1506                 Descriptor desc=pp.getDescAt(breakindex);
1507                 if (desc instanceof FieldDescriptor) {
1508                     FieldDescriptor fd=(FieldDescriptor)desc;
1509                     if (fd.isGlobal()) {
1510                         break;
1511                     }
1512                 }
1513             }
1514             breakindex++;
1515         }
1516
1517         if (breakindex>pp.desc.size()) //all local
1518             return;
1519
1520         TypeDescriptor lasttype=pp.base.getType();
1521         String basestr=generateTemp(fm, pp.base, lb);
1522         String teststr="";
1523         boolean maybenull=fm.getMethod().isStatic()||
1524             !pp.base.equals(fm.getParameter(0));
1525                             
1526         for(int i=0;i<breakindex;i++) {
1527             String indexcheck="";
1528
1529             Descriptor desc=pp.getDescAt(i);
1530             if (desc instanceof FieldDescriptor) {
1531                 FieldDescriptor fd=(FieldDescriptor)desc;
1532                 if (maybenull) {
1533                     if (!teststr.equals(""))
1534                         teststr+="&&";
1535                     teststr+="prefptr="+basestr;
1536                     basestr="((struct"+lasttype.getSafeSymbol()+"*)prefptr)->"+fd.getSafeSymbol();
1537                 } else {
1538                     basestr=basestr+"->"+fd.getSafeSymbol();
1539                     maybenull=true;
1540                 }
1541                 lasttype=fd.getType();
1542             } else {
1543                 IndexDescriptor id=(IndexDescriptor)desc;
1544                 indexcheck="(tmpindex=";
1545                 for(int j=0;j<id.tddesc.size();j++) {
1546                     indexcheck+=generateTemp(fm, id.getTempDescAt(j), lb)+"+";
1547                 }
1548                 indexcheck+=id.offset+">=0)&&(tmpindex<((struct ArrayObject *)prefptr)->___length___)";
1549
1550                 if (!teststr.equals(""))
1551                     teststr+="&&";
1552                 teststr+="(((prefptr="+basestr+")!= NULL) &&"+indexcheck;
1553                 basestr="((void **)(((char *) &(((struct ArrayObject*)prefptr)->___length___))+sizeof(int)))[tmpindex]";
1554                 maybenull=true;
1555                 lasttype=lasttype.dereference();
1556             }
1557         }
1558         
1559         String oid;
1560         if (teststr.equals("")) {
1561             oid="((unsigned int)"+basestr+")";
1562         } else {
1563             oid="(unsigned int)("+teststr+")?"+basestr+":NULL)";
1564         }
1565         oids.add(oid);
1566         
1567         for(int i = breakindex; i < pp.desc.size(); i++) {
1568             String newfieldoffset;
1569             Object desc = pp.getDescAt(i);
1570             if(desc instanceof FieldDescriptor) {
1571                 FieldDescriptor fd=(FieldDescriptor)desc;
1572                 newfieldoffset = new String("(unsigned int)(&(((struct "+ lasttype.getSafeSymbol()+" *)0)->"+ fd.getSafeSymbol()+ "))");
1573                 lasttype=fd.getType();
1574             } else {
1575                 newfieldoffset = "";
1576                 IndexDescriptor id=(IndexDescriptor)desc;
1577                 for(int j = 0; j < id.tddesc.size(); j++) {
1578                     newfieldoffset += generateTemp(fm, id.getTempDescAt(j), lb) + "+";
1579                 }
1580                 newfieldoffset += id.offset.toString();
1581                 lasttype=lasttype.dereference();
1582             }
1583             fieldoffset.add(newfieldoffset);
1584         }
1585
1586         int base=(tuplecount>0)?((Short)endoffset.get(tuplecount-1)).intValue():0;
1587         base+=pp.desc.size()-breakindex;
1588         endoffset.add(new Short((short)base));
1589     }
1590
1591
1592   
1593     public void generateFlatGlobalConvNode(FlatMethod fm, LocalityBinding lb, FlatGlobalConvNode fgcn, PrintWriter output) {
1594             if (lb!=fgcn.getLocality())
1595                     return;
1596             /* Have to generate flat globalconv */
1597             if (fgcn.getMakePtr()) {
1598                     output.println(generateTemp(fm, fgcn.getSrc(),lb)+"=(void *)transRead(trans, (unsigned int) "+generateTemp(fm, fgcn.getSrc(),lb)+");");
1599             } else {
1600                     /* Need to convert to OID */
1601                     output.println(generateTemp(fm, fgcn.getSrc(),lb)+"=(void *)COMPOID("+generateTemp(fm, fgcn.getSrc(),lb)+");");
1602             }
1603     }
1604
1605     public void generateFlatAtomicEnterNode(FlatMethod fm,  LocalityBinding lb, FlatAtomicEnterNode faen, PrintWriter output) {
1606             /* Check to see if we need to generate code for this atomic */
1607             if (locality.getAtomic(lb).get(faen.getPrev(0)).intValue()>0)
1608                     return;
1609             /* Backup the temps. */
1610             for(Iterator<TempDescriptor> tmpit=locality.getTemps(lb).get(faen).iterator();tmpit.hasNext();) {
1611                     TempDescriptor tmp=tmpit.next();
1612                     output.println(generateTemp(fm, backuptable.get(tmp),lb)+"="+generateTemp(fm,tmp,lb)+";");
1613             }
1614             output.println("goto transstart"+faen.getIdentifier()+";");
1615
1616             /******* Print code to retry aborted transaction *******/
1617             output.println("transretry"+faen.getIdentifier()+":");
1618
1619             /* Restore temps */
1620             for(Iterator<TempDescriptor> tmpit=locality.getTemps(lb).get(faen).iterator();tmpit.hasNext();) {
1621                     TempDescriptor tmp=tmpit.next();
1622                     output.println(generateTemp(fm, tmp,lb)+"="+generateTemp(fm,backuptable.get(tmp),lb)+";");
1623             }
1624
1625             /********* Need to revert local object store ********/
1626             String revertptr=generateTemp(fm, reverttable.get(lb),lb);
1627
1628         output.println("while ("+revertptr+") {");
1629         output.println("struct ___Object___ * tmpptr;");
1630         output.println("tmpptr="+revertptr+"->"+nextobjstr+";");
1631         output.println("REVERT_OBJ("+revertptr+");");
1632         output.println(revertptr+"=tmpptr;");
1633         output.println("}");
1634
1635         /******* Tell the runtime to start the transaction *******/
1636         
1637         output.println("transstart"+faen.getIdentifier()+":");
1638         output.println("trans=transStart();");
1639     }
1640
1641     public void generateFlatAtomicExitNode(FlatMethod fm,  LocalityBinding lb, FlatAtomicExitNode faen, PrintWriter output) {
1642         /* Check to see if we need to generate code for this atomic */
1643         if (locality.getAtomic(lb).get(faen).intValue()>0)
1644             return;
1645         //store the revert list before we lose the transaction object
1646         String revertptr=generateTemp(fm, reverttable.get(lb),lb);
1647         output.println(revertptr+"=trans->revertlist;");
1648         output.println("if (transCommit(trans)) {");
1649         /* Transaction aborts if it returns true */
1650         output.println("goto transretry"+faen.getAtomicEnter().getIdentifier()+";");
1651         output.println("} else {");
1652         /* Need to commit local object store */
1653         output.println("while ("+revertptr+") {");
1654         output.println("struct ___Object___ * tmpptr;");
1655         output.println("tmpptr="+revertptr+"->"+nextobjstr+";");
1656         output.println("COMMIT_OBJ("+revertptr+");");
1657         output.println(revertptr+"=tmpptr;");
1658         output.println("}");
1659         output.println("}");
1660     }
1661
1662     private void generateFlatCheckNode(FlatMethod fm,  LocalityBinding lb, FlatCheckNode fcn, PrintWriter output) {
1663         if (state.CONSCHECK) {
1664             String specname=fcn.getSpec();
1665             String varname="repairstate___";
1666             output.println("{");
1667             output.println("struct "+specname+"_state * "+varname+"=allocate"+specname+"_state();");
1668
1669             TempDescriptor[] temps=fcn.getTemps();
1670             String[] vars=fcn.getVars();
1671             for(int i=0;i<temps.length;i++) {
1672                 output.println(varname+"->"+vars[i]+"=(unsigned int)"+generateTemp(fm, temps[i],lb)+";");
1673             }
1674
1675             output.println("if (doanalysis"+specname+"("+varname+")) {");
1676             output.println("free"+specname+"_state("+varname+");");
1677             output.println("} else {");
1678             output.println("/* Bad invariant */");
1679             output.println("free"+specname+"_state("+varname+");");
1680             output.println("abort_task();");
1681             output.println("}");
1682             output.println("}");
1683         }
1684     }
1685
1686     private void generateFlatCall(FlatMethod fm, LocalityBinding lb, FlatCall fc, PrintWriter output) {
1687         MethodDescriptor md=fc.getMethod();
1688         ParamsObject objectparams=(ParamsObject)paramstable.get(state.DSM?locality.getBinding(lb, fc):md);
1689         ClassDescriptor cn=md.getClassDesc();
1690         output.println("{");
1691         if (GENERATEPRECISEGC) {
1692             if (state.DSM) {
1693                 LocalityBinding fclb=locality.getBinding(lb, fc);
1694                 output.print("       struct "+cn.getSafeSymbol()+fclb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params __parameterlist__={");
1695             } else
1696                 output.print("       struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params __parameterlist__={");
1697             
1698             output.print(objectparams.numPointers());
1699             output.print(", & "+localsprefix);
1700             if (md.getThis()!=null) {
1701                 output.print(", ");
1702                 output.print("(struct "+md.getThis().getType().getSafeSymbol() +" *)"+ generateTemp(fm,fc.getThis(),lb));
1703             }
1704             if (fc.getThis()!=null&&md.getThis()==null) {
1705                 System.out.println("WARNING!!!!!!!!!!!!");
1706                 System.out.println("Source code calls static method"+md+"on an object in "+fm.getMethod()+"!");         
1707             }
1708             
1709
1710             for(int i=0;i<fc.numArgs();i++) {
1711                 Descriptor var=md.getParameter(i);
1712                 TempDescriptor paramtemp=(TempDescriptor)temptovar.get(var);
1713                 if (objectparams.isParamPtr(paramtemp)) {
1714                     TempDescriptor targ=fc.getArg(i);
1715                     output.print(", ");
1716                     TypeDescriptor td=md.getParamType(i);
1717                     if (td.isTag())
1718                         output.print("(struct "+(new TypeDescriptor(typeutil.getClass(TypeUtil.TagClass))).getSafeSymbol()  +" *)"+generateTemp(fm, targ,lb));
1719                     else
1720                         output.print("(struct "+md.getParamType(i).getSafeSymbol()  +" *)"+generateTemp(fm, targ,lb));
1721                 }
1722             }
1723             output.println("};");
1724         }
1725         output.print("       ");
1726
1727
1728         if (fc.getReturnTemp()!=null)
1729             output.print(generateTemp(fm,fc.getReturnTemp(),lb)+"=");
1730
1731         /* Do we need to do virtual dispatch? */
1732         if (md.isStatic()||md.getReturnType()==null||singleCall(fc.getThis().getType().getClassDesc(),md)) {
1733             //no
1734             if (state.DSM) {
1735                 LocalityBinding fclb=locality.getBinding(lb, fc);
1736                 output.print(cn.getSafeSymbol()+fclb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor());
1737             } else {
1738                 output.print(cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor());
1739             }
1740         } else {
1741             //yes
1742             output.print("((");
1743             if (md.getReturnType().isClass()||md.getReturnType().isArray())
1744                 output.print("struct " + md.getReturnType().getSafeSymbol()+" * ");
1745             else
1746                 output.print(md.getReturnType().getSafeSymbol()+" ");
1747             output.print("(*)(");
1748
1749             boolean printcomma=false;
1750             if (GENERATEPRECISEGC) {
1751                 if (state.DSM) {
1752                     LocalityBinding fclb=locality.getBinding(lb, fc);
1753                     output.print("struct "+cn.getSafeSymbol()+fclb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * ");
1754                 } else
1755                     output.print("struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * ");
1756                 printcomma=true;
1757             }
1758
1759             for(int i=0;i<objectparams.numPrimitives();i++) {
1760                 TempDescriptor temp=objectparams.getPrimitive(i);
1761                 if (printcomma)
1762                     output.print(", ");
1763                 printcomma=true;
1764                 if (temp.getType().isClass()||temp.getType().isArray())
1765                     output.print("struct " + temp.getType().getSafeSymbol()+" * ");
1766                 else
1767                     output.print(temp.getType().getSafeSymbol());
1768             }
1769
1770             if (state.DSM) {
1771                 LocalityBinding fclb=locality.getBinding(lb, fc);
1772                 output.print("))virtualtable["+generateTemp(fm,fc.getThis(),lb)+"->type*"+maxcount+"+"+virtualcalls.getLocalityNumber(fclb)+"])");
1773             } else
1774                 output.print("))virtualtable["+generateTemp(fm,fc.getThis(),lb)+"->type*"+maxcount+"+"+virtualcalls.getMethodNumber(md)+"])");
1775         }
1776
1777         output.print("(");
1778         boolean needcomma=false;
1779         if (GENERATEPRECISEGC) {
1780             output.print("&__parameterlist__");
1781             needcomma=true;
1782         }
1783
1784         if (state.DSM&&locality.getBinding(lb,fc).isAtomic()) {
1785             if (needcomma)
1786                 output.print(",");
1787             output.print("trans");
1788             needcomma=true;
1789         }
1790
1791         if (!GENERATEPRECISEGC) {
1792             if (fc.getThis()!=null) {
1793                 TypeDescriptor ptd=md.getThis().getType();
1794                 if (needcomma)
1795                     output.print(",");
1796                 if (ptd.isClass()&&!ptd.isArray())
1797                     output.print("(struct "+ptd.getSafeSymbol()+" *) ");
1798                 output.print(generateTemp(fm,fc.getThis(),lb));
1799                 needcomma=true;
1800             }
1801         }
1802
1803         for(int i=0;i<fc.numArgs();i++) {
1804             Descriptor var=md.getParameter(i);
1805             TempDescriptor paramtemp=(TempDescriptor)temptovar.get(var);
1806             if (objectparams.isParamPrim(paramtemp)) {
1807                 TempDescriptor targ=fc.getArg(i);
1808                 if (needcomma)
1809                     output.print(", ");
1810
1811                 TypeDescriptor ptd=md.getParamType(i);
1812                 if (ptd.isClass()&&!ptd.isArray())
1813                     output.print("(struct "+ptd.getSafeSymbol()+" *) ");
1814                 output.print(generateTemp(fm, targ,lb));
1815                 needcomma=true;
1816             }
1817         }
1818         output.println(");");
1819         output.println("   }");
1820     }
1821
1822     private boolean singleCall(ClassDescriptor thiscd, MethodDescriptor md) {
1823         Set subclasses=typeutil.getSubClasses(thiscd);
1824         if (subclasses==null)
1825             return true;
1826         for(Iterator classit=subclasses.iterator();classit.hasNext();) {
1827             ClassDescriptor cd=(ClassDescriptor)classit.next();
1828             Set possiblematches=cd.getMethodTable().getSet(md.getSymbol());
1829             for(Iterator matchit=possiblematches.iterator();matchit.hasNext();) {
1830                 MethodDescriptor matchmd=(MethodDescriptor)matchit.next();
1831                 if (md.matches(matchmd))
1832                     return false;
1833             }
1834         }
1835         return true;
1836     }
1837
1838     private void generateFlatFieldNode(FlatMethod fm, LocalityBinding lb, FlatFieldNode ffn, PrintWriter output) {
1839         if (state.DSM) {
1840             Integer status=locality.getNodePreTempInfo(lb,ffn).get(ffn.getSrc());
1841             if (status==LocalityAnalysis.GLOBAL) {
1842                 String field=ffn.getField().getSafeSymbol();
1843                 String src=generateTemp(fm, ffn.getSrc(),lb);
1844                 String dst=generateTemp(fm, ffn.getDst(),lb);
1845                     
1846                 if (ffn.getField().getType().isPtr()) {
1847
1848                     //TODO: Uncomment this when we have runtime support
1849                     //if (ffn.getSrc()==ffn.getDst()) {
1850                     //output.println("{");
1851                     //output.println("void * temp="+src+";");
1852                     //output.println("if (temp&0x1) {");
1853                     //output.println("temp=(void *) transRead(trans, (unsigned int) temp);");
1854                     //output.println(src+"->"+field+"="+temp+";");
1855                     //output.println("}");
1856                     //output.println(dst+"=temp;");
1857                     //output.println("}");
1858                     //} else {
1859                     output.println(dst+"="+ src +"->"+field+ ";");
1860                     //output.println("if ("+dst+"&0x1) {");
1861                     output.println(dst+"=(void *) transRead(trans, (unsigned int) "+dst+");");
1862                     //output.println(src+"->"+field+"="+src+"->"+field+";");
1863                     //output.println("}");
1864                     //}
1865                 } else {
1866                     output.println(dst+"="+ src+"->"+field+";");
1867                 }
1868             } else if (status==LocalityAnalysis.LOCAL) {
1869                 output.println(generateTemp(fm, ffn.getDst(),lb)+"="+ generateTemp(fm,ffn.getSrc(),lb)+"->"+ ffn.getField().getSafeSymbol()+";");
1870             } else if (status==LocalityAnalysis.EITHER) {
1871                 //Code is reading from a null pointer
1872                 output.println("if ("+generateTemp(fm, ffn.getSrc(),lb)+") {");
1873                 output.println("printf(\"BIG ERROR\\n\");exit(-1);}");
1874                 //This should throw a suitable null pointer error
1875                 output.println(generateTemp(fm, ffn.getDst(),lb)+"="+ generateTemp(fm,ffn.getSrc(),lb)+"->"+ ffn.getField().getSafeSymbol()+";");
1876             } else
1877                 throw new Error("Read from non-global/non-local in:"+lb.getExplanation());
1878         } else
1879             output.println(generateTemp(fm, ffn.getDst(),lb)+"="+ generateTemp(fm,ffn.getSrc(),lb)+"->"+ ffn.getField().getSafeSymbol()+";");
1880     }
1881
1882
1883     private void generateFlatSetFieldNode(FlatMethod fm, LocalityBinding lb, FlatSetFieldNode fsfn, PrintWriter output) {
1884         if (fsfn.getField().getSymbol().equals("length")&&fsfn.getDst().getType().isArray())
1885             throw new Error("Can't set array length");
1886         if (state.DSM && locality.getAtomic(lb).get(fsfn).intValue()>0) {
1887             Integer statussrc=locality.getNodePreTempInfo(lb,fsfn).get(fsfn.getSrc());
1888             Integer statusdst=locality.getNodeTempInfo(lb).get(fsfn).get(fsfn.getDst());
1889             boolean srcglobal=statussrc==LocalityAnalysis.GLOBAL;
1890
1891             String src=generateTemp(fm,fsfn.getSrc(),lb);
1892             String dst=generateTemp(fm,fsfn.getDst(),lb);
1893             if (srcglobal) {
1894                 output.println("{");
1895                 output.println("int srcoid=(int)"+src+"->"+oidstr+";");
1896             }
1897             if (statusdst.equals(LocalityAnalysis.GLOBAL)) {
1898                 String glbdst=dst;
1899                 //mark it dirty
1900                 output.println("*((unsigned int *)&("+dst+"->___localcopy___))|=DIRTY;");
1901                 if (srcglobal) {
1902                     output.println("*((unsigned int *)&("+glbdst+"->"+ fsfn.getField().getSafeSymbol()+"))=srcoid;");
1903                 } else
1904                     output.println(glbdst+"->"+ fsfn.getField().getSafeSymbol()+"="+ src+";");          
1905             } else if (statusdst.equals(LocalityAnalysis.LOCAL)) {
1906                 /** Check if we need to copy */
1907                 output.println("if(!"+dst+"->"+localcopystr+") {");
1908                 /* Link object into list */
1909                 String revertptr=generateTemp(fm, reverttable.get(lb),lb);
1910                 output.println(revertptr+"=trans->revertlist;");
1911                 if (GENERATEPRECISEGC)
1912                     output.println("COPY_OBJ((struct garbagelist *)&"+localsprefix+",(struct ___Object___ *)"+dst+");");
1913                 else
1914                     output.println("COPY_OBJ("+dst+");");
1915                 output.println(dst+"->"+nextobjstr+"="+revertptr+";");
1916                 output.println("trans->revertlist=(struct ___Object___ *)"+dst+";");
1917                 output.println("}");
1918                 if (srcglobal)
1919                     output.println(dst+"->"+ fsfn.getField().getSafeSymbol()+"=srcoid;");
1920                 else
1921                     output.println(dst+"->"+ fsfn.getField().getSafeSymbol()+"="+ src+";");
1922             } else if (statusdst.equals(LocalityAnalysis.EITHER)) {
1923                 //writing to a null...bad
1924                 output.println("if ("+dst+") {");
1925                 output.println("printf(\"BIG ERROR 2\\n\");exit(-1);}");
1926                 if (srcglobal)
1927                     output.println(dst+"->"+ fsfn.getField().getSafeSymbol()+"=srcoid;");
1928                 else
1929                     output.println(dst+"->"+ fsfn.getField().getSafeSymbol()+"="+ src+";");
1930             }
1931             if (srcglobal) {
1932                 output.println("}");
1933             }
1934         } else {
1935             output.println(generateTemp(fm, fsfn.getDst(),lb)+"->"+ fsfn.getField().getSafeSymbol()+"="+ generateTemp(fm,fsfn.getSrc(),lb)+";");
1936         }
1937     }
1938
1939     private void generateFlatElementNode(FlatMethod fm, LocalityBinding lb, FlatElementNode fen, PrintWriter output) {
1940         TypeDescriptor elementtype=fen.getSrc().getType().dereference();
1941         String type="";
1942
1943         if (elementtype.isArray()||elementtype.isClass())
1944             type="void *";
1945         else 
1946             type=elementtype.getSafeSymbol()+" ";
1947
1948         if (fen.needsBoundsCheck()) {
1949             output.println("if ("+generateTemp(fm, fen.getIndex(),lb)+"< 0 || "+generateTemp(fm, fen.getIndex(),lb)+" >= "+generateTemp(fm,fen.getSrc(),lb) + "->___length___)");
1950             output.println("failedboundschk();");
1951         }
1952         if (state.DSM) {
1953             Integer status=locality.getNodePreTempInfo(lb,fen).get(fen.getSrc());
1954             if (status==LocalityAnalysis.GLOBAL) {
1955                 String dst=generateTemp(fm, fen.getDst(),lb);
1956
1957                 if (elementtype.isPtr()) {
1958                     output.println(dst +"=(("+ type+"*)(((char *) &("+ generateTemp(fm,fen.getSrc(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fen.getIndex(),lb)+"];");
1959                     output.println(dst+"=(void *) transRead(trans, (unsigned int) "+dst+");");
1960                 } else {
1961                     output.println(dst +"=(("+ type+"*)(((char *) &("+ generateTemp(fm,fen.getSrc(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fen.getIndex(),lb)+"];");
1962                 }
1963             } else if (status==LocalityAnalysis.LOCAL) {
1964                 output.println(generateTemp(fm, fen.getDst(),lb)+"=(("+ type+"*)(((char *) &("+ generateTemp(fm,fen.getSrc(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fen.getIndex(),lb)+"];");
1965             } else if (status==LocalityAnalysis.EITHER) {
1966                 //Code is reading from a null pointer
1967                 output.println("if ("+generateTemp(fm, fen.getSrc(),lb)+") {");
1968                 output.println("printf(\"BIG ERROR\\n\");exit(-1);}");
1969                 //This should throw a suitable null pointer error
1970                 output.println(generateTemp(fm, fen.getDst(),lb)+"=(("+ type+"*)(((char *) &("+ generateTemp(fm,fen.getSrc(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fen.getIndex(),lb)+"];");
1971             } else
1972                 throw new Error("Read from non-global/non-local in:"+lb.getExplanation());
1973         } else {
1974             output.println(generateTemp(fm, fen.getDst(),lb)+"=(("+ type+"*)(((char *) &("+ generateTemp(fm,fen.getSrc(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fen.getIndex(),lb)+"];");
1975         }
1976     }
1977
1978     private void generateFlatSetElementNode(FlatMethod fm, LocalityBinding lb, FlatSetElementNode fsen, PrintWriter output) {
1979         //TODO: need dynamic check to make sure this assignment is actually legal
1980         //Because Object[] could actually be something more specific...ie. Integer[]
1981
1982         TypeDescriptor elementtype=fsen.getDst().getType().dereference();
1983         String type="";
1984
1985         if (elementtype.isArray()||elementtype.isClass())
1986             type="void *";
1987         else 
1988             type=elementtype.getSafeSymbol()+" ";
1989
1990
1991         if (fsen.needsBoundsCheck()) {
1992             output.println("if ("+generateTemp(fm, fsen.getIndex(),lb)+"< 0 || "+generateTemp(fm, fsen.getIndex(),lb)+" >= "+generateTemp(fm,fsen.getDst(),lb) + "->___length___)");
1993             output.println("failedboundschk();");
1994         }
1995
1996         if (state.DSM && locality.getAtomic(lb).get(fsen).intValue()>0) {
1997             Integer statussrc=locality.getNodePreTempInfo(lb,fsen).get(fsen.getSrc());
1998             Integer statusdst=locality.getNodePreTempInfo(lb,fsen).get(fsen.getDst());
1999             boolean srcglobal=statussrc==LocalityAnalysis.GLOBAL;
2000             boolean dstglobal=statusdst==LocalityAnalysis.GLOBAL;
2001             boolean dstlocal=statusdst==LocalityAnalysis.LOCAL;
2002             
2003             if (dstglobal) {
2004                 output.println("*((unsigned int *)&("+generateTemp(fm,fsen.getDst(),lb)+"->___localcopy___))|=DIRTY;");
2005             } else if (dstlocal) {
2006                 /** Check if we need to copy */
2007                 String dst=generateTemp(fm, fsen.getDst(),lb);
2008                 output.println("if(!"+dst+"->"+localcopystr+") {");
2009                 /* Link object into list */
2010                 String revertptr=generateTemp(fm, reverttable.get(lb),lb);
2011                 output.println(revertptr+"=trans->revertlist;");
2012                 if (GENERATEPRECISEGC)
2013                     output.println("COPY_OBJ((struct garbagelist *)&"+localsprefix+",(struct ___Object___ *)"+dst+");");
2014                 else
2015                     output.println("COPY_OBJ("+dst+");");
2016                 output.println(dst+"->"+nextobjstr+"="+revertptr+";");
2017                 output.println("trans->revertlist=(struct ___Object___ *)"+dst+";");
2018                 output.println("}");
2019             } else {
2020                 throw new Error("Unknown array type in"+fsen+" in " + fm+"\n"+(lb!=null?(lb+" "+lb.getExplanation()):""));
2021             }
2022             if (srcglobal) {
2023                 output.println("{");
2024                 String src=generateTemp(fm, fsen.getSrc(), lb);
2025                 output.println("int srcoid=(int)"+src+"->"+oidstr+";");
2026                 output.println("((int*)(((char *) &("+ generateTemp(fm,fsen.getDst(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fsen.getIndex(),lb)+"]=srcoid;");
2027                 output.println("}");
2028             } else {
2029                 output.println("(("+type +"*)(((char *) &("+ generateTemp(fm,fsen.getDst(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fsen.getIndex(),lb)+"]="+generateTemp(fm,fsen.getSrc(),lb)+";");
2030             }
2031         } else
2032             output.println("(("+type +"*)(((char *) &("+ generateTemp(fm,fsen.getDst(),lb)+"->___length___))+sizeof(int)))["+generateTemp(fm, fsen.getIndex(),lb)+"]="+generateTemp(fm,fsen.getSrc(),lb)+";");
2033     }
2034
2035     private void generateFlatNew(FlatMethod fm, LocalityBinding lb, FlatNew fn, PrintWriter output) {
2036         if (state.DSM && locality.getAtomic(lb).get(fn).intValue()>0&&!fn.isGlobal()) {
2037             //Stash pointer in case of GC
2038             String revertptr=generateTemp(fm, reverttable.get(lb),lb);
2039             output.println(revertptr+"=trans->revertlist;");
2040         }
2041         if (fn.getType().isArray()) {
2042             int arrayid=state.getArrayNumber(fn.getType())+state.numClasses();
2043             if (fn.isGlobal()) {
2044                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_newarrayglobal(trans, "+arrayid+", "+generateTemp(fm, fn.getSize(),lb)+");");
2045             } else if (GENERATEPRECISEGC) {
2046                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_newarray(&"+localsprefix+", "+arrayid+", "+generateTemp(fm, fn.getSize(),lb)+");");
2047             } else {
2048                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_newarray("+arrayid+", "+generateTemp(fm, fn.getSize(),lb)+");");
2049             }
2050         } else {
2051             if (fn.isGlobal()) {
2052                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_newglobal(trans, "+fn.getType().getClassDesc().getId()+");");
2053             } else if (GENERATEPRECISEGC) {
2054                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_new(&"+localsprefix+", "+fn.getType().getClassDesc().getId()+");");
2055             } else {
2056                 output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_new("+fn.getType().getClassDesc().getId()+");");
2057             }
2058         }
2059         if (state.DSM && locality.getAtomic(lb).get(fn).intValue()>0&&!fn.isGlobal()) {
2060             String revertptr=generateTemp(fm, reverttable.get(lb),lb);
2061             output.println("trans->revertlist="+revertptr+";");
2062         }
2063     }
2064
2065     private void generateFlatTagDeclaration(FlatMethod fm, LocalityBinding lb, FlatTagDeclaration fn, PrintWriter output) {
2066         if (GENERATEPRECISEGC) {
2067             output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_tag(&"+localsprefix+", "+state.getTagId(fn.getType())+");");
2068         } else {
2069             output.println(generateTemp(fm,fn.getDst(),lb)+"=allocate_tag("+state.getTagId(fn.getType())+");");
2070         }
2071     }
2072
2073     private void generateFlatOpNode(FlatMethod fm, LocalityBinding lb, FlatOpNode fon, PrintWriter output) {
2074         if (fon.getRight()!=null) {
2075             if (fon.getOp().getOp()==Operation.URIGHTSHIFT) {
2076                 if (fon.getLeft().getType().isLong())
2077                     output.println(generateTemp(fm, fon.getDest(),lb)+" = ((unsigned long long)"+generateTemp(fm, fon.getLeft(),lb)+")>>"+generateTemp(fm,fon.getRight(),lb)+";");
2078                 else
2079                     output.println(generateTemp(fm, fon.getDest(),lb)+" = ((unsigned int)"+generateTemp(fm, fon.getLeft(),lb)+")>>"+generateTemp(fm,fon.getRight(),lb)+";");
2080
2081             } else
2082                 output.println(generateTemp(fm, fon.getDest(),lb)+" = "+generateTemp(fm, fon.getLeft(),lb)+fon.getOp().toString()+generateTemp(fm,fon.getRight(),lb)+";");
2083         } else if (fon.getOp().getOp()==Operation.ASSIGN)
2084             output.println(generateTemp(fm, fon.getDest(),lb)+" = "+generateTemp(fm, fon.getLeft(),lb)+";");
2085         else if (fon.getOp().getOp()==Operation.UNARYPLUS)
2086             output.println(generateTemp(fm, fon.getDest(),lb)+" = "+generateTemp(fm, fon.getLeft(),lb)+";");
2087         else if (fon.getOp().getOp()==Operation.UNARYMINUS)
2088             output.println(generateTemp(fm, fon.getDest(),lb)+" = -"+generateTemp(fm, fon.getLeft(),lb)+";");
2089         else if (fon.getOp().getOp()==Operation.LOGIC_NOT)
2090             output.println(generateTemp(fm, fon.getDest(),lb)+" = !"+generateTemp(fm, fon.getLeft(),lb)+";");
2091         else if (fon.getOp().getOp()==Operation.COMP)
2092             output.println(generateTemp(fm, fon.getDest(),lb)+" = ~"+generateTemp(fm, fon.getLeft(),lb)+";");
2093         else if (fon.getOp().getOp()==Operation.ISAVAILABLE) {
2094             output.println(generateTemp(fm, fon.getDest(),lb)+" = "+generateTemp(fm, fon.getLeft(),lb)+"->fses==NULL;");
2095         } else
2096             output.println(generateTemp(fm, fon.getDest(),lb)+fon.getOp().toString()+generateTemp(fm, fon.getLeft(),lb)+";");
2097     }
2098
2099     private void generateFlatCastNode(FlatMethod fm, LocalityBinding lb, FlatCastNode fcn, PrintWriter output) {
2100         /* TODO: Do type check here */
2101         if (fcn.getType().isArray()) {
2102             throw new Error();
2103         } else if (fcn.getType().isClass())
2104             output.println(generateTemp(fm,fcn.getDst(),lb)+"=(struct "+fcn.getType().getSafeSymbol()+" *)"+generateTemp(fm,fcn.getSrc(),lb)+";");
2105         else
2106             output.println(generateTemp(fm,fcn.getDst(),lb)+"=("+fcn.getType().getSafeSymbol()+")"+generateTemp(fm,fcn.getSrc(),lb)+";");
2107     }
2108
2109     private void generateFlatLiteralNode(FlatMethod fm, LocalityBinding lb, FlatLiteralNode fln, PrintWriter output) {
2110         if (fln.getValue()==null)
2111             output.println(generateTemp(fm, fln.getDst(),lb)+"=0;");
2112         else if (fln.getType().getSymbol().equals(TypeUtil.StringClass)) {
2113             if (GENERATEPRECISEGC) {
2114                 if (state.DSM && locality.getAtomic(lb).get(fln).intValue()>0) {
2115                     //Stash pointer in case of GC
2116                     String revertptr=generateTemp(fm, reverttable.get(lb),lb);
2117                     output.println(revertptr+"=trans->revertlist;");
2118                 }
2119                 output.println(generateTemp(fm, fln.getDst(),lb)+"=NewString(&"+localsprefix+", \""+FlatLiteralNode.escapeString((String)fln.getValue())+"\","+((String)fln.getValue()).length()+");");
2120                 if (state.DSM && locality.getAtomic(lb).get(fln).intValue()>0) {
2121                     //Stash pointer in case of GC
2122                     String revertptr=generateTemp(fm, reverttable.get(lb),lb);
2123                     output.println("trans->revertlist="+revertptr+";");
2124                 }
2125             } else {
2126                 output.println(generateTemp(fm, fln.getDst(),lb)+"=NewString(\""+FlatLiteralNode.escapeString((String)fln.getValue())+"\","+((String)fln.getValue()).length()+");");
2127             }
2128         } else if (fln.getType().isBoolean()) {
2129             if (((Boolean)fln.getValue()).booleanValue())
2130                 output.println(generateTemp(fm, fln.getDst(),lb)+"=1;");
2131             else
2132                 output.println(generateTemp(fm, fln.getDst(),lb)+"=0;");
2133         } else if (fln.getType().isChar()) {
2134             String st=FlatLiteralNode.escapeString(fln.getValue().toString());
2135             output.println(generateTemp(fm, fln.getDst(),lb)+"='"+st+"';");
2136         } else if (fln.getType().isLong()) {
2137             output.println(generateTemp(fm, fln.getDst(),lb)+"="+fln.getValue()+"LL;");
2138         } else
2139             output.println(generateTemp(fm, fln.getDst(),lb)+"="+fln.getValue()+";");
2140     }
2141
2142     private void generateFlatReturnNode(FlatMethod fm, LocalityBinding lb, FlatReturnNode frn, PrintWriter output) {
2143         if (frn.getReturnTemp()!=null) {
2144             if (frn.getReturnTemp().getType().isPtr())
2145                 output.println("return (struct "+fm.getMethod().getReturnType().getSafeSymbol()+"*)"+generateTemp(fm, frn.getReturnTemp(), lb)+";");
2146             else
2147                 output.println("return "+generateTemp(fm, frn.getReturnTemp(), lb)+";");
2148         } else
2149             output.println("return;");
2150     }
2151
2152     private void generateFlatCondBranch(FlatMethod fm, LocalityBinding lb, FlatCondBranch fcb, String label, PrintWriter output) {
2153         output.println("if (!"+generateTemp(fm, fcb.getTest(),lb)+") goto "+label+";");
2154     }
2155
2156     /** This method generates header information for the method or
2157      * task referenced by the Descriptor des. */
2158
2159     private void generateHeader(FlatMethod fm, LocalityBinding lb, Descriptor des, PrintWriter output) {
2160         /* Print header */
2161         ParamsObject objectparams=(ParamsObject)paramstable.get(lb!=null?lb:des);
2162         MethodDescriptor md=null;
2163         TaskDescriptor task=null;
2164         if (des instanceof MethodDescriptor)
2165             md=(MethodDescriptor) des;
2166         else
2167             task=(TaskDescriptor) des;
2168
2169         ClassDescriptor cn=md!=null?md.getClassDesc():null;
2170         
2171         if (md!=null&&md.getReturnType()!=null) {
2172             if (md.getReturnType().isClass()||md.getReturnType().isArray())
2173                 output.print("struct " + md.getReturnType().getSafeSymbol()+" * ");
2174             else
2175                 output.print(md.getReturnType().getSafeSymbol()+" ");
2176         } else 
2177             //catch the constructor case
2178             output.print("void ");
2179         if (md!=null) {
2180             if (state.DSM) {
2181                 output.print(cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(");
2182             } else
2183                 output.print(cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"(");
2184         } else
2185             output.print(task.getSafeSymbol()+"(");
2186         
2187         boolean printcomma=false;
2188         if (GENERATEPRECISEGC) {
2189             if (md!=null) {
2190                 if (state.DSM) {
2191                     output.print("struct "+cn.getSafeSymbol()+lb.getSignature()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * "+paramsprefix);
2192                 } else
2193                     output.print("struct "+cn.getSafeSymbol()+md.getSafeSymbol()+"_"+md.getSafeMethodDescriptor()+"_params * "+paramsprefix);
2194             } else
2195                 output.print("struct "+task.getSafeSymbol()+"_params * "+paramsprefix);
2196             printcomma=true;
2197         }
2198
2199         if (state.DSM&&lb.isAtomic()) {
2200             if (printcomma)
2201                 output.print(", ");
2202             output.print("transrecord_t * trans");
2203             printcomma=true;
2204         }
2205
2206         if (md!=null) {
2207             /* Method */
2208             for(int i=0;i<objectparams.numPrimitives();i++) {
2209                 TempDescriptor temp=objectparams.getPrimitive(i);
2210                 if (printcomma)
2211                     output.print(", ");
2212                 printcomma=true;
2213                 if (temp.getType().isClass()||temp.getType().isArray())
2214                     output.print("struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol());
2215                 else
2216                     output.print(temp.getType().getSafeSymbol()+" "+temp.getSafeSymbol());
2217             }
2218             output.println(") {");
2219         } else if (!GENERATEPRECISEGC) {
2220             /* Imprecise Task */
2221             output.println("void * parameterarray[]) {");
2222             /* Unpack variables */
2223             for(int i=0;i<objectparams.numPrimitives();i++) {
2224                 TempDescriptor temp=objectparams.getPrimitive(i);
2225                 output.println("struct "+temp.getType().getSafeSymbol()+" * "+temp.getSafeSymbol()+"=parameterarray["+i+"];");
2226             }
2227             for(int i=0;i<fm.numTags();i++) {
2228                 TempDescriptor temp=fm.getTag(i);
2229                 int offset=i+objectparams.numPrimitives();
2230                 output.println("struct ___TagDescriptor___ * "+temp.getSafeSymbol()+"=parameterarray["+offset+"];");
2231             }
2232
2233             if ((objectparams.numPrimitives()+fm.numTags())>maxtaskparams)
2234                 maxtaskparams=objectparams.numPrimitives()+fm.numTags();
2235         } else output.println(") {");
2236     }
2237     
2238     public void generateFlatFlagActionNode(FlatMethod fm, LocalityBinding lb, FlatFlagActionNode ffan, PrintWriter output) {
2239         output.println("/* FlatFlagActionNode */");
2240
2241
2242         /* Process tag changes */
2243         Relation tagsettable=new Relation();
2244         Relation tagcleartable=new Relation();
2245
2246         Iterator tagsit=ffan.getTempTagPairs(); 
2247         while (tagsit.hasNext()) {
2248             TempTagPair ttp=(TempTagPair) tagsit.next();
2249             TempDescriptor objtmp=ttp.getTemp();
2250             TagDescriptor tag=ttp.getTag();
2251             TempDescriptor tagtmp=ttp.getTagTemp();
2252             boolean tagstatus=ffan.getTagChange(ttp);
2253             if (tagstatus) {
2254                 tagsettable.put(objtmp, tagtmp);
2255             } else {
2256                 tagcleartable.put(objtmp, tagtmp);
2257             }
2258         }
2259
2260
2261         Hashtable flagandtable=new Hashtable();
2262         Hashtable flagortable=new Hashtable();
2263
2264         /* Process flag changes */
2265         Iterator flagsit=ffan.getTempFlagPairs();
2266         while(flagsit.hasNext()) {
2267             TempFlagPair tfp=(TempFlagPair)flagsit.next();
2268             TempDescriptor temp=tfp.getTemp();
2269             Hashtable flagtable=(Hashtable)flagorder.get(temp.getType().getClassDesc());
2270             FlagDescriptor flag=tfp.getFlag();
2271             if (flag==null) {
2272                 //Newly allocate objects that don't set any flags case
2273                 if (flagortable.containsKey(temp)) {
2274                     throw new Error();
2275                 }
2276                 int mask=0;
2277                 flagortable.put(temp,new Integer(mask));
2278             } else {
2279                 int flagid=1<<((Integer)flagtable.get(flag)).intValue();
2280                 boolean flagstatus=ffan.getFlagChange(tfp);
2281                 if (flagstatus) {
2282                     int mask=0;
2283                     if (flagortable.containsKey(temp)) {
2284                         mask=((Integer)flagortable.get(temp)).intValue();
2285                     }
2286                     mask|=flagid;
2287                     flagortable.put(temp,new Integer(mask));
2288                 } else {
2289                     int mask=0xFFFFFFFF;
2290                     if (flagandtable.containsKey(temp)) {
2291                         mask=((Integer)flagandtable.get(temp)).intValue();
2292                     }
2293                     mask&=(0xFFFFFFFF^flagid);
2294                     flagandtable.put(temp,new Integer(mask));
2295                 }
2296             }
2297         }
2298
2299
2300         HashSet flagtagset=new HashSet();
2301         flagtagset.addAll(flagortable.keySet());
2302         flagtagset.addAll(flagandtable.keySet());
2303         flagtagset.addAll(tagsettable.keySet());
2304         flagtagset.addAll(tagcleartable.keySet());
2305
2306         Iterator ftit=flagtagset.iterator();
2307         while(ftit.hasNext()) {
2308             TempDescriptor temp=(TempDescriptor)ftit.next();
2309             
2310             
2311             Set tagtmps=tagcleartable.get(temp);
2312             if (tagtmps!=null) {
2313                 Iterator tagit=tagtmps.iterator();
2314                 while(tagit.hasNext()) {
2315                     TempDescriptor tagtmp=(TempDescriptor)tagit.next();
2316                     if (GENERATEPRECISEGC) 
2317                         output.println("tagclear(&"+localsprefix+", (struct ___Object___ *)"+generateTemp(fm, temp,lb)+", "+generateTemp(fm,tagtmp,lb)+");");
2318                     else
2319                         output.println("tagclear((struct ___Object___ *)"+generateTemp(fm, temp,lb)+", "+generateTemp(fm,tagtmp,lb)+");");
2320                 }
2321             }
2322
2323             tagtmps=tagsettable.get(temp);
2324             if (tagtmps!=null) {
2325                 Iterator tagit=tagtmps.iterator();
2326                 while(tagit.hasNext()) {
2327                     TempDescriptor tagtmp=(TempDescriptor)tagit.next();
2328                     if (GENERATEPRECISEGC)
2329                         output.println("tagset(&"+localsprefix+", (struct ___Object___ *)"+generateTemp(fm, temp,lb)+", "+generateTemp(fm,tagtmp,lb)+");");
2330                     else
2331                         output.println("tagset((struct ___Object___ *)"+generateTemp(fm, temp, lb)+", "+generateTemp(fm,tagtmp, lb)+");");
2332                 }
2333             }
2334
2335             int ormask=0;
2336             int andmask=0xFFFFFFF;
2337             
2338             if (flagortable.containsKey(temp))
2339                 ormask=((Integer)flagortable.get(temp)).intValue();
2340             if (flagandtable.containsKey(temp))
2341                 andmask=((Integer)flagandtable.get(temp)).intValue();
2342             if (ffan.getTaskType()==FlatFlagActionNode.NEWOBJECT) {
2343                 output.println("flagorandinit("+generateTemp(fm, temp, lb)+", 0x"+Integer.toHexString(ormask)+", 0x"+Integer.toHexString(andmask)+");");
2344             } else {
2345                 output.println("flagorand("+generateTemp(fm, temp, lb)+", 0x"+Integer.toHexString(ormask)+", 0x"+Integer.toHexString(andmask)+");");
2346             }
2347         }
2348     }
2349
2350     void generateOptionalHeader(PrintWriter headers) {
2351
2352          //GENERATE HEADERS
2353          headers.println("#include \"task.h\"\n\n");
2354          headers.println("#ifndef _OPTIONAL_STRUCT_");
2355          headers.println("#define _OPTIONAL_STRUCT_");
2356          
2357          //STRUCT PREDICATEMEMBER
2358          headers.println("struct predicatemember{");
2359          headers.println("int type;");
2360          headers.println("int numdnfterms;");
2361          headers.println("int * flags;");
2362          headers.println("int numtags;");
2363          headers.println("int * tags;\n};\n\n");
2364
2365          //STRUCT OPTIONALTASKDESCRIPTOR
2366          headers.println("struct optionaltaskdescriptor{");
2367          headers.println("struct taskdescriptor * task;");
2368          headers.println("int index;");
2369          headers.println("int numenterflags;");
2370          headers.println("int * enterflags;");
2371          headers.println("int numpredicatemembers;");
2372          headers.println("struct predicatemember ** predicatememberarray;");
2373          headers.println("};\n\n");
2374          
2375          //STRUCT TASKFAILURE
2376          headers.println("struct taskfailure {");
2377          headers.println("struct taskdescriptor * task;");
2378          headers.println("int index;");
2379          headers.println("int numoptionaltaskdescriptors;");
2380          headers.println("struct optionaltaskdescriptor ** optionaltaskdescriptorarray;\n};\n\n");
2381
2382          //STRUCT FSANALYSISWRAPPER
2383          headers.println("struct fsanalysiswrapper{");
2384          headers.println("int  flags;");
2385          headers.println("int numtags;");
2386          headers.println("int * tags;");
2387          headers.println("int numtaskfailures;");
2388          headers.println("struct taskfailure ** taskfailurearray;");
2389          headers.println("int numoptionaltaskdescriptors;");
2390          headers.println("struct optionaltaskdescriptor ** optionaltaskdescriptorarray;\n};\n\n");
2391
2392          //STRUCT CLASSANALYSISWRAPPER
2393          headers.println("struct classanalysiswrapper{");
2394          headers.println("int type;");
2395          headers.println("int numotd;");
2396          headers.println("struct optionaltaskdescriptor ** otdarray;");
2397          headers.println("int numfsanalysiswrappers;");
2398          headers.println("struct fsanalysiswrapper ** fsanalysiswrapperarray;\n};");
2399          
2400          headers.println("extern struct classanalysiswrapper * classanalysiswrapperarray[];");
2401
2402          Iterator taskit=state.getTaskSymbolTable().getDescriptorsIterator();
2403          while(taskit.hasNext()) {
2404              TaskDescriptor td=(TaskDescriptor)taskit.next();
2405              headers.println("extern struct taskdescriptor task_"+td.getSafeSymbol()+";");
2406          }
2407          
2408     }
2409
2410     //CHECK OVER THIS -- THERE COULD BE SOME ERRORS HERE
2411     int generateOptionalPredicate(Predicate predicate, OptionalTaskDescriptor otd, ClassDescriptor cdtemp, PrintWriter output) {
2412         int predicateindex = 0;
2413         //iterate through the classes concerned by the predicate
2414         Set c_vard = predicate.vardescriptors;
2415         Hashtable<TempDescriptor, Integer> slotnumber=new Hashtable<TempDescriptor, Integer>();
2416         int current_slot=0;
2417         
2418         for(Iterator vard_it = c_vard.iterator(); vard_it.hasNext();){
2419             VarDescriptor vard = (VarDescriptor)vard_it.next();
2420             TypeDescriptor typed = vard.getType();
2421             
2422             //generate for flags
2423             HashSet fen_hashset = predicate.flags.get(vard.getSymbol());
2424             output.println("int predicateflags_"+predicateindex+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"[]={");
2425             int numberterms=0;
2426             if (fen_hashset!=null){
2427                 for (Iterator fen_it = fen_hashset.iterator(); fen_it.hasNext();){
2428                     FlagExpressionNode fen = (FlagExpressionNode)fen_it.next();
2429                     if (fen!=null) {
2430                         DNFFlag dflag=fen.getDNF();
2431                         numberterms+=dflag.size();
2432                         
2433                         Hashtable flags=(Hashtable)flagorder.get(typed.getClassDesc());
2434                         
2435                         for(int j=0;j<dflag.size();j++) {
2436                             if (j!=0)
2437                                 output.println(",");
2438                             Vector term=dflag.get(j);
2439                             int andmask=0;
2440                             int checkmask=0;
2441                             for(int k=0;k<term.size();k++) {
2442                                 DNFFlagAtom dfa=(DNFFlagAtom)term.get(k);
2443                                 FlagDescriptor fd=dfa.getFlag();
2444                                 boolean negated=dfa.getNegated();
2445                                 int flagid=1<<((Integer)flags.get(fd)).intValue();
2446                                 andmask|=flagid;
2447                                 if (!negated)
2448                                     checkmask|=flagid;
2449                             }
2450                             output.print("/*andmask*/0x"+Integer.toHexString(andmask)+", /*checkmask*/0x"+Integer.toHexString(checkmask));
2451                         }
2452                     }
2453                 }
2454             }
2455             output.println("};\n");
2456             
2457             //generate for tags
2458             TagExpressionList tagel = predicate.tags.get(vard.getSymbol()); 
2459             output.println("int predicatetags_"+predicateindex+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"[]={");
2460             int numtags = 0;
2461             if (tagel!=null){
2462                 for(int j=0;j<tagel.numTags();j++) {
2463                     if (j!=0)
2464                         output.println(",");
2465                     TempDescriptor tmp=tagel.getTemp(j);
2466                     if (!slotnumber.containsKey(tmp)) {
2467                         Integer slotint=new Integer(current_slot++);
2468                         slotnumber.put(tmp,slotint);
2469                     }
2470                     int slot=slotnumber.get(tmp).intValue();
2471                     output.println("/* slot */"+ slot+", /*tagid*/"+state.getTagId(tmp.getTag()));
2472                 }
2473                 numtags = tagel.numTags();
2474             }
2475             output.println("};");
2476             
2477             //store the result into a predicatemember struct
2478             output.println("struct predicatemember predicatemember_"+predicateindex+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"={");
2479             output.println("/*type*/"+typed.getClassDesc().getId()+",");
2480             output.println("/* number of dnf terms */"+numberterms+",");
2481             output.println("predicateflags_"+predicateindex+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2482             output.println("/* number of tag */"+numtags+",");
2483             output.println("predicatetags_"+predicateindex+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2484             output.println("};\n");
2485             predicateindex++;
2486         }
2487         
2488         
2489         //generate an array that stores the entire predicate
2490         output.println("struct predicatemember * predicatememberarray_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"[]={");
2491         for( int j = 0; j<predicateindex; j++){
2492             if( j != predicateindex-1)output.println("&predicatemember_"+j+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2493             else output.println("&predicatemember_"+j+"_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol());
2494         }
2495         output.println("};\n");
2496         return predicateindex;
2497     }
2498
2499
2500      void generateOptionalArrays(PrintWriter output, PrintWriter headers, Hashtable<ClassDescriptor, Hashtable<FlagState, Set<OptionalTaskDescriptor>>> safeexecution, Hashtable optionaltaskdescriptors) {
2501          generateOptionalHeader(headers);
2502          //GENERATE STRUCTS
2503          output.println("#include \"optionalstruct.h\"\n\n");    
2504          output.println("#include \"stdlib.h\"\n");
2505
2506          HashSet processedcd = new HashSet();
2507          int maxotd=0;
2508          Enumeration e = safeexecution.keys();
2509          while (e.hasMoreElements()) {
2510              int numotd=0;
2511              //get the class
2512              ClassDescriptor cdtemp=(ClassDescriptor)e.nextElement();
2513              Hashtable flaginfo=(Hashtable)flagorder.get(cdtemp);//will be used several times
2514              
2515              //Generate the struct of optionals
2516              Collection c_otd = ((Hashtable)optionaltaskdescriptors.get(cdtemp)).values();
2517              numotd = c_otd.size();
2518              if(maxotd<numotd) maxotd = numotd; 
2519              if( !c_otd.isEmpty() ){
2520                  for(Iterator otd_it = c_otd.iterator(); otd_it.hasNext();){
2521                      OptionalTaskDescriptor otd = (OptionalTaskDescriptor)otd_it.next();
2522                      
2523                      //generate the int arrays for the predicate
2524                      Predicate predicate = otd.predicate;
2525                      int predicateindex = generateOptionalPredicate(predicate, otd, cdtemp, output);
2526                      TreeSet<Integer> fsset=new TreeSet<Integer>();
2527                      //iterate through possible FSes corresponding to
2528                      //the state when entering
2529                      
2530                      for(Iterator fses = otd.enterflagstates.iterator(); fses.hasNext();){
2531                          FlagState fs = (FlagState)fses.next();
2532                          int flagid=0;
2533                          for(Iterator flags = fs.getFlags(); flags.hasNext();){
2534                              FlagDescriptor flagd = (FlagDescriptor)flags.next();
2535                              int id=1<<((Integer)flaginfo.get(flagd)).intValue();
2536                              flagid|=id;
2537                          }
2538                          fsset.add(new Integer(flagid));
2539                          //tag information not needed because tag
2540                          //changes are not tolerated.
2541                      }
2542
2543                      output.println("int enterflag_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"[]={");
2544                      boolean needcomma=false;
2545                      for(Iterator<Integer> it=fsset.iterator();it.hasNext();) {
2546                          if(needcomma)
2547                              output.print(", ");
2548                          output.println(it.next());
2549                      }
2550                      
2551                      output.println("};\n");
2552                      
2553                      
2554                      //generate optionaltaskdescriptor that actually
2555                      //includes exit fses, predicate and the task
2556                      //concerned
2557                      output.println("struct optionaltaskdescriptor optionaltaskdescriptor_"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+"={");
2558                      output.println("&task_"+otd.td.getSafeSymbol()+",");
2559                      output.println("/*index*/"+otd.getIndex()+",");
2560                      output.println("/*number of enter flags*/"+fsset.size()+",");
2561                      output.println("enterflag_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2562                      output.println("/*number of members */"+predicateindex+",");
2563                      output.println("predicatememberarray_OTD"+otd.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2564                      output.println("};\n");
2565                  }      
2566              } else
2567                  continue;
2568              // if there are no optionals, there is no need to build the rest of the struct 
2569              
2570              output.println("struct optionaltaskdescriptor * otdarray"+cdtemp.getSafeSymbol()+"[]={");
2571              c_otd = ((Hashtable)optionaltaskdescriptors.get(cdtemp)).values();
2572              if( !c_otd.isEmpty() ){
2573                  boolean needcomma=false;
2574                  for(Iterator otd_it = c_otd.iterator(); otd_it.hasNext();){
2575                      OptionalTaskDescriptor otd = (OptionalTaskDescriptor)otd_it.next();
2576                      if(needcomma) 
2577                          output.println(",");
2578                      needcomma=true;
2579                      output.println("&optionaltaskdescriptor_"+otd.getuid()+"_"+cdtemp.getSafeSymbol());
2580                  }
2581              }
2582              output.println("};\n");
2583              
2584              //get all the possible flagstates reachable by an object
2585              Hashtable hashtbtemp = safeexecution.get(cdtemp);
2586              int fscounter = 0;
2587              TreeSet fsts=new TreeSet(new FlagComparator(flaginfo));
2588              fsts.addAll(hashtbtemp.keySet());
2589              for(Iterator fsit=fsts.iterator();fsit.hasNext();) {
2590                  FlagState fs = (FlagState)fsit.next();
2591                  fscounter++;
2592                  
2593                  //get the set of OptionalTaskDescriptors corresponding
2594                  HashSet<OptionalTaskDescriptor> availabletasks = (HashSet<OptionalTaskDescriptor>)hashtbtemp.get(fs);
2595                  //iterate through the OptionalTaskDescriptors and
2596                  //store the pointers to the optionals struct (see on
2597                  //top) into an array
2598                  
2599                  output.println("struct optionaltaskdescriptor * optionaltaskdescriptorarray_FS"+fscounter+"_"+cdtemp.getSafeSymbol()+"[] = {");
2600                  for(Iterator<OptionalTaskDescriptor> mos = ordertd(availabletasks).iterator(); mos.hasNext();){
2601                      OptionalTaskDescriptor mm = mos.next();
2602                      if(!mos.hasNext()) 
2603                          output.println("&optionaltaskdescriptor_"+mm.getuid()+"_"+cdtemp.getSafeSymbol());
2604                      else 
2605                          output.println("&optionaltaskdescriptor_"+mm.getuid()+"_"+cdtemp.getSafeSymbol()+",");
2606                  }
2607
2608                  output.println("};\n");
2609                  
2610                  //process flag information (what the flag after failure is) so we know what optionaltaskdescriptors to choose.
2611                  
2612                  int flagid=0;
2613                  for(Iterator flags = fs.getFlags(); flags.hasNext();){
2614                      FlagDescriptor flagd = (FlagDescriptor)flags.next();
2615                      int id=1<<((Integer)flaginfo.get(flagd)).intValue();
2616                      flagid|=id;
2617                  }
2618                  
2619                  //process tag information
2620                  
2621                  int tagcounter = 0;
2622                  boolean first = true;
2623                  Enumeration tag_enum = fs.getTags(); 
2624                  output.println("int tags_FS"+fscounter+"_"+cdtemp.getSafeSymbol()+"[]={");
2625                  while(tag_enum.hasMoreElements()){
2626                      tagcounter++;
2627                      TagDescriptor tagd = (TagDescriptor)tag_enum.nextElement(); 
2628                      if(first==true)
2629                          first = false;
2630                      else
2631                          output.println(", ");
2632                      output.println("/*tagid*/"+state.getTagId(tagd));
2633                  }
2634                  output.println("};");
2635                  
2636                  Set<TaskIndex> tiset=sa.getTaskIndex(fs);
2637                  for(Iterator<TaskIndex> itti=tiset.iterator();itti.hasNext();) {
2638                      TaskIndex ti=itti.next();
2639                      if (ti.isRuntime())
2640                          continue;
2641
2642                      Set<OptionalTaskDescriptor> otdset=sa.getOptions(fs, ti);
2643
2644                      output.print("struct optionaltaskdescriptor * optionaltaskfailure_FS"+fscounter+"_"+ti.getTask().getSafeSymbol()+"_"+ti.getIndex()+"_array[] = {");
2645                      boolean needcomma=false;
2646                      for(Iterator<OptionalTaskDescriptor> otdit=ordertd(otdset).iterator();otdit.hasNext();) {
2647                          OptionalTaskDescriptor otd=otdit.next();
2648                          if(needcomma)
2649                              output.print(", ");
2650                          needcomma=true;
2651                          output.println("&optionaltaskdescriptor_"+otd.getuid()+"_"+cdtemp.getSafeSymbol());
2652                      }
2653                      output.println("};");
2654
2655                      output.print("struct taskfailure taskfailure_FS"+fscounter+"_"+ti.getTask().getSafeSymbol()+"_"+ti.getIndex()+" = {");
2656                      output.print("&task_"+ti.getTask().getSafeSymbol()+", ");
2657                      output.print(ti.getIndex()+", ");
2658                      output.print(otdset.size()+", ");
2659                      output.print("optionaltaskfailure_FS"+fscounter+"_"+ti.getTask().getSafeSymbol()+"_"+ti.getIndex()+"_array");
2660                      output.println("};");
2661                  }
2662
2663                  tiset=sa.getTaskIndex(fs);
2664                  boolean needcomma=false;
2665                  int runtimeti=0;
2666                  output.println("struct taskfailure * taskfailurearray"+fscounter+"_"+cdtemp.getSafeSymbol()+"[]={");
2667                  for(Iterator<TaskIndex> itti=tiset.iterator();itti.hasNext();) {
2668                      TaskIndex ti=itti.next();
2669                      if (ti.isRuntime()) {
2670                          runtimeti++;
2671                          continue;
2672                      }
2673                      if (needcomma)
2674                          output.print(", ");
2675                      needcomma=true;
2676                      output.print("&taskfailure_FS"+fscounter+"_"+ti.getTask().getSafeSymbol()+"_"+ti.getIndex());
2677                  }
2678                  output.println("};\n");
2679
2680                  //Store the result in fsanalysiswrapper
2681                  
2682                  output.println("struct fsanalysiswrapper fsanalysiswrapper_FS"+fscounter+"_"+cdtemp.getSafeSymbol()+"={");
2683                  output.println("/*flag*/"+flagid+",");
2684                  output.println("/* number of tags*/"+tagcounter+",");
2685                  output.println("tags_FS"+fscounter+"_"+cdtemp.getSafeSymbol()+",");
2686                  output.println("/* numtask failures */"+(tiset.size()-runtimeti)+",");
2687                  output.println("taskfailurearray"+fscounter+"_"+cdtemp.getSafeSymbol()+",");
2688                  output.println("/* number of optionaltaskdescriptors */"+availabletasks.size()+",");
2689                  output.println("optionaltaskdescriptorarray_FS"+fscounter+"_"+cdtemp.getSafeSymbol());
2690                  output.println("};\n");
2691                  
2692              }
2693
2694              //Build the array of fsanalysiswrappers
2695              output.println("struct fsanalysiswrapper * fsanalysiswrapperarray_"+cdtemp.getSafeSymbol()+"[] = {");
2696              boolean needcomma=false;
2697              for(int i = 0; i<fscounter; i++){
2698                  if (needcomma) output.print(",");
2699                  output.println("&fsanalysiswrapper_FS"+(i+1)+"_"+cdtemp.getSafeSymbol());
2700                  needcomma=true;
2701              }
2702              output.println("};");
2703              
2704              //Build the classanalysiswrapper referring to the previous array
2705              output.println("struct classanalysiswrapper classanalysiswrapper_"+cdtemp.getSafeSymbol()+"={");
2706              output.println("/*type*/"+cdtemp.getId()+",");
2707              output.println("/*numotd*/"+numotd+",");
2708              output.println("otdarray"+cdtemp.getSafeSymbol()+",");
2709              output.println("/* number of fsanalysiswrappers */"+fscounter+",");
2710              output.println("fsanalysiswrapperarray_"+cdtemp.getSafeSymbol()+"};\n");
2711              processedcd.add(cdtemp);
2712          }
2713          
2714          //build an array containing every classes for which code has been build
2715          output.println("struct classanalysiswrapper * classanalysiswrapperarray[]={");
2716          for(int i=0;i<state.numClasses();i++) {
2717              ClassDescriptor cn=cdarray[i];
2718              if (i>0)
2719                  output.print(", ");
2720              if (processedcd.contains(cn))
2721                  output.print("&classanalysiswrapper_"+cn.getSafeSymbol());
2722              else
2723                  output.print("NULL");
2724          }
2725          output.println("};");
2726          
2727          output.println("#define MAXOTD "+maxotd);
2728          headers.println("#endif");
2729      }
2730
2731     public List<OptionalTaskDescriptor> ordertd(Set<OptionalTaskDescriptor> otdset) {
2732         Relation r=new Relation();
2733         for(Iterator<OptionalTaskDescriptor>otdit=otdset.iterator();otdit.hasNext();) {
2734             OptionalTaskDescriptor otd=otdit.next();
2735             TaskIndex ti=new TaskIndex(otd.td, otd.getIndex());
2736             r.put(ti, otd);
2737         }
2738
2739         LinkedList<OptionalTaskDescriptor> l=new LinkedList<OptionalTaskDescriptor>();
2740         for(Iterator it=r.keySet().iterator();it.hasNext();) {
2741             Set s=r.get(it.next());
2742             for(Iterator it2=s.iterator();it2.hasNext();) {
2743                 OptionalTaskDescriptor otd=(OptionalTaskDescriptor)it2.next();
2744                 l.add(otd);
2745             }
2746         }
2747         
2748         return l;
2749     }
2750 }
2751          
2752
2753
2754
2755
2756