cleanup elf stuff
[nestedvm.git] / src / org / ibex / nestedvm / Interpreter.java
1 // Copyright 2000-2005 the Contributors, as shown in the revision logs.
2 // Licensed under the Apache Public Source License 2.0 ("the License").
3 // You may not use this file except in compliance with the License.
4
5 // Copyright 2003 Brian Alliet
6 // Based on org.xwt.imp.MIPS by Adam Megacz
7 // Portions Copyright 2003 Adam Megacz
8
9 package org.ibex.nestedvm;
10
11 import org.ibex.nestedvm.util.*;
12 import java.io.*;
13
14 public class Interpreter extends UnixRuntime implements Cloneable {
15     // Registers
16     private int[] registers = new int[32];
17     private int hi,lo;
18     
19     // Floating Point Registers
20     private int[] fpregs = new int[32];
21     // 24-31 - unused
22     // 23 - conditional bit
23     // 18-22 - unused
24     // 12-17 - cause bits (unimplemented)
25     // 7-11  - enables bits (unimplemented)
26     // 2-6   - flags (unimplemented)
27     // 0-1   - rounding mode (only implemented for fixed point conversions)
28     private int fcsr;
29     
30     private int pc;
31     
32     // The filename if the binary we're running
33     public String image;
34     private ELF.Symtab symtab;
35     
36     // Register Operations
37     private final void setFC(boolean b) { fcsr = (fcsr&~0x800000) | (b ? 0x800000 : 0x000000); }
38     private final int roundingMode() { return fcsr & 3; /* bits 0-1 */ }
39     private final double getDouble(int r) {
40         return Double.longBitsToDouble(((fpregs[r+1]&0xffffffffL) << 32) | (fpregs[r]&0xffffffffL));
41     }
42     private final void setDouble(int r, double d) {
43         long l = Double.doubleToLongBits(d);
44         fpregs[r+1] = (int)(l >>> 32); fpregs[r] = (int)l;
45     }
46     private final float getFloat(int r) { return Float.intBitsToFloat(fpregs[r]); }
47     private final void setFloat(int r, float f) { fpregs[r] = Float.floatToRawIntBits(f); }
48     
49     protected void _execute() throws ExecutionException {
50         try {
51             runSome();
52         } catch(ExecutionException e) {
53             e.setLocation(toHex(pc) + ": " + sourceLine(pc));
54             throw e;
55         }
56     }
57     
58     protected Object clone() throws CloneNotSupportedException {
59         Interpreter r = (Interpreter) super.clone();
60         r.registers = (int[]) registers.clone();
61         r.fpregs = (int[]) fpregs.clone();
62         return r;
63     }
64     
65     // Main interpretor
66     // the return value is meaningless, its just to catch people typing "return" by accident
67     private final int runSome() throws FaultException,ExecutionException {
68         final int PAGE_WORDS = (1<<pageShift)>>2;
69         int[] r = registers;
70         int[] f = fpregs;
71         int pc = this.pc;
72         int nextPC = pc + 4;
73     try {
74     OUTER: for(;;) {
75         int insn;
76         try {
77             insn = readPages[pc>>>pageShift][(pc>>>2)&PAGE_WORDS-1];
78         } catch (RuntimeException e) {
79             if(pc == 0xdeadbeef) throw new Error("fell off cpu: r2: " + r[2]);
80             insn = memRead(pc);
81         }
82
83         int op = (insn >>> 26) & 0xff;                 // bits 26-31
84         int rs = (insn >>> 21) & 0x1f;                 // bits 21-25
85         int rt = (insn >>> 16) & 0x1f;                 // bits 16-20 
86         int ft = (insn >>> 16) & 0x1f;
87         int rd = (insn >>> 11) & 0x1f;                 // bits 11-15
88         int fs = (insn >>> 11) & 0x1f;
89         int shamt = (insn >>> 6) & 0x1f;               // bits 6-10
90         int fd = (insn >>> 6) & 0x1f;
91         int subcode = insn & 0x3f;                     // bits 0-5  
92
93         int jumpTarget = (insn & 0x03ffffff);          // bits 0-25
94         int unsignedImmediate = insn & 0xffff;
95         int signedImmediate = (insn << 16) >> 16;
96         int branchTarget = signedImmediate;
97
98         int tmp, addr; // temporaries
99         
100         r[ZERO] = 0;
101         
102         switch(op) {
103             case 0: {
104                 switch(subcode) {
105                     case 0: // SLL
106                         if(insn == 0) break;
107                         r[rd] = r[rt] << shamt;
108                         break;
109                     case 2: // SRL
110                         r[rd] = r[rt] >>> shamt;
111                         break;
112                     case 3: // SRA
113                         r[rd] = r[rt] >> shamt;
114                         break;
115                     case 4: // SLLV
116                         r[rd] = r[rt] << (r[rs]&0x1f);
117                         break;
118                     case 6: // SRLV
119                         r[rd] = r[rt] >>> (r[rs]&0x1f);
120                         break;
121                     case 7: // SRAV
122                         r[rd] = r[rt] >> (r[rs]&0x1f);
123                         break;
124                     case 8: // JR
125                         tmp = r[rs]; pc += 4; nextPC = tmp;
126                         continue OUTER;
127                     case 9: // JALR
128                         tmp = r[rs]; pc += 4; r[rd] = pc+4; nextPC = tmp;
129                         continue OUTER;
130                     case 12: // SYSCALL
131                         this.pc = pc;
132                         r[V0] = syscall(r[V0],r[A0],r[A1],r[A2],r[A3],r[T0],r[T1]);
133                         if(state != RUNNING) { this.pc = nextPC; break OUTER; }
134                         break;
135                     case 13: // BREAK
136                         throw new ExecutionException("Break");
137                     case 16: // MFHI
138                         r[rd] = hi;
139                         break;
140                     case 17: // MTHI
141                         hi = r[rs];
142                         break;
143                     case 18: // MFLO
144                         r[rd] = lo;
145                         break;
146                     case 19: // MTLO
147                         lo = r[rs];
148                         break;
149                     case 24: { // MULT
150                         long hilo = ((long)r[rs]) * ((long)r[rt]);
151                         hi = (int) (hilo >>> 32);
152                         lo = (int) hilo;
153                         break;
154                     }
155                     case 25: { // MULTU
156                         long hilo = (r[rs] & 0xffffffffL) * (r[rt] & 0xffffffffL);
157                         hi = (int) (hilo >>> 32);
158                         lo = (int) hilo;
159                         break;
160                     }
161                     case 26: // DIV
162                         hi = r[rs]%r[rt];
163                         lo = r[rs]/r[rt];
164                         break;
165                     case 27: // DIVU
166                         if(rt != 0) {
167                             hi = (int)((r[rs] & 0xffffffffL) % (r[rt] & 0xffffffffL));
168                             lo = (int)((r[rs] & 0xffffffffL) / (r[rt] & 0xffffffffL));
169                         }
170                         break;
171                     case 32: // ADD
172                         throw new ExecutionException("ADD (add with oveflow trap) not suported");
173                         /*This must trap on overflow
174                         r[rd] = r[rs] + r[rt];
175                         break;*/
176                     case 33: // ADDU
177                         r[rd] = r[rs] + r[rt];
178                         break;
179                     case 34: // SUB
180                         throw new ExecutionException("SUB (sub with oveflow trap) not suported");
181                         /*This must trap on overflow
182                         r[rd] = r[rs] - r[rt];
183                         break;*/
184                     case 35: // SUBU
185                         r[rd] = r[rs] - r[rt];
186                         break;
187                     case 36: // AND
188                         r[rd] = r[rs] & r[rt];
189                         break;
190                     case 37: // OR
191                         r[rd] = r[rs] | r[rt];
192                         break;
193                     case 38: // XOR
194                         r[rd] = r[rs] ^ r[rt];
195                         break;
196                     case 39: // NOR
197                         r[rd] = ~(r[rs] | r[rt]);
198                         break;
199                     case 42: // SLT
200                         r[rd] = r[rs] < r[rt] ? 1 : 0;
201                         break;
202                     case 43: // SLTU
203                         r[rd] = ((r[rs] & 0xffffffffL) < (r[rt] & 0xffffffffL)) ? 1 : 0;
204                         break;
205                     default:
206                         throw new ExecutionException("Illegal instruction 0/" + subcode);
207                 }
208                 break;
209             }
210             case 1: {
211                 switch(rt) {
212                     case 0: // BLTZ
213                         if(r[rs] < 0) {
214                             pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;                   
215                             continue OUTER;
216                         }
217                         break;
218                     case 1: // BGEZ
219                         if(r[rs] >= 0) {
220                             pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;
221                             continue OUTER;
222                         }
223                         break;
224                     case 16: // BLTZAL
225                         if(r[rs] < 0) {
226                             pc += 4; r[RA] = pc+4; tmp = pc + branchTarget*4; nextPC = tmp;
227                             continue OUTER;
228                         }
229                         break;
230                     case 17: // BGEZAL
231                         if(r[rs] >= 0) {
232                             pc += 4; r[RA] = pc+4; tmp = pc + branchTarget*4; nextPC = tmp;  
233                             continue OUTER;
234                         }
235                         break;
236                     default:
237                         throw new ExecutionException("Illegal Instruction");
238                 }
239                 break;
240             }
241             case 2: { // J
242                 tmp = (pc&0xf0000000) | (jumpTarget << 2);
243                 pc+=4; nextPC = tmp;
244                 continue OUTER;
245             }
246             case 3: { // JAL
247                 tmp = (pc&0xf0000000) | (jumpTarget << 2);
248                 pc+=4; r[RA] = pc+4; nextPC = tmp;
249                 continue OUTER;
250             }
251             case 4: // BEQ
252                 if(r[rs] == r[rt]) {
253                     pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;
254                     continue OUTER;
255                 }
256                 break;
257             case 5: // BNE                
258                 if(r[rs] != r[rt]) {
259                     pc += 4; tmp = pc + branchTarget*4; nextPC = tmp; 
260                     continue OUTER;
261                 }
262                 break;
263             case 6: //BLEZ
264                 if(r[rs] <= 0) {
265                     pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;
266                     continue OUTER;
267                 }
268                 break;
269             case 7: //BGTZ
270                 if(r[rs] > 0) {
271                     pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;
272                     continue OUTER;
273                 }
274                 break;
275             case 8: // ADDI
276                 r[rt] = r[rs] + signedImmediate;
277                 break;
278             case 9: // ADDIU
279                 r[rt] = r[rs] + signedImmediate;
280                 break;
281             case 10: // SLTI
282                 r[rt] = r[rs] < signedImmediate ? 1 : 0;
283                 break;
284             case 11: // SLTIU
285                 r[rt] = (r[rs]&0xffffffffL) < (signedImmediate&0xffffffffL) ? 1 : 0;
286                 break;
287             case 12: // ANDI
288                 r[rt] = r[rs] & unsignedImmediate;
289                 break;
290             case 13: // ORI
291                 r[rt] = r[rs] | unsignedImmediate;
292                 break;
293             case 14: // XORI
294                 r[rt] = r[rs] ^ unsignedImmediate;
295                 break;
296             case 15: // LUI
297                 r[rt] = unsignedImmediate << 16;
298                 break;
299             case 16:
300                 throw new ExecutionException("TLB/Exception support not implemented");
301             case 17: { // FPU
302                 boolean debug = false;
303                 String line = debug ? sourceLine(pc) : "";
304                 boolean debugon = debug && (line.indexOf("dtoa.c:51") >= 0 || line.indexOf("dtoa.c:52") >= 0 || line.indexOf("test.c") >= 0);
305                 if(rs > 8 && debugon)
306                     System.out.println("               FP Op: " + op + "/" + rs + "/" + subcode + " " + line);
307                 if(roundingMode() != 0 && rs != 6 /*CTC.1*/ && !((rs==16 || rs==17) && subcode == 36 /* CVT.W.Z */))
308                     throw new ExecutionException("Non-cvt.w.z operation attempted with roundingMode != round to nearest");
309                 switch(rs) {
310                     case 0: // MFC.1
311                         r[rt] = f[rd];
312                         break;
313                     case 2: // CFC.1
314                         if(fs != 31) throw new ExecutionException("FCR " + fs + " unavailable");
315                         r[rt] = fcsr;
316                         break;
317                     case 4: // MTC.1
318                         f[rd] = r[rt];
319                         break;
320                     case 6: // CTC.1
321                         if(fs != 31) throw new ExecutionException("FCR " + fs + " unavailable");
322                         fcsr = r[rt];   
323                         break;
324                     case 8: // BC1F, BC1T
325                         if(((fcsr&0x800000)!=0) == (((insn>>>16)&1)!=0)) {
326                             pc += 4; tmp = pc + branchTarget*4; nextPC = tmp;
327                             continue OUTER;
328                         }
329                         break;
330                     case 16: {  // Single
331                         switch(subcode) {
332                             case 0: // ADD.S
333                                 setFloat(fd,getFloat(fs)+getFloat(ft));
334                                 break;
335                             case 1: // SUB.S
336                                 setFloat(fd,getFloat(fs)-getFloat(ft));
337                                 break;
338                             case 2: // MUL.S
339                                 setFloat(fd,getFloat(fs)*getFloat(ft));
340                                 break;
341                             case 3: // DIV.S
342                                 setFloat(fd,getFloat(fs)/getFloat(ft));
343                                 break;
344                             case 5: // ABS.S
345                                 setFloat(fd,Math.abs(getFloat(fs)));
346                                 break;
347                             case 6: // MOV.S
348                                 f[fd] = f[fs];
349                                 break;
350                             case 7: // NEG.S
351                                 setFloat(fd,-getFloat(fs));
352                                 break;
353                             case 33: // CVT.D.S
354                                 setDouble(fd,getFloat(fs));
355                                 break;
356                             case 36: // CVT.W.S
357                                 switch(roundingMode()) {
358                                     case 0: f[fd] = (int)Math.floor(getFloat(fs)+0.5f); break; // Round to nearest
359                                     case 1: f[fd] = (int)getFloat(fs); break; // Round towards zero
360                                     case 2: f[fd] = (int)Math.ceil(getFloat(fs)); break; // Round towards plus infinity
361                                     case 3: f[fd] = (int)Math.floor(getFloat(fs)); break; // Round towards minus infinity
362                                 }
363                                 break;
364                             case 50: // C.EQ.S
365                                 setFC(getFloat(fs) == getFloat(ft));
366                                 break;
367                             case 60: // C.LT.S
368                                 setFC(getFloat(fs) < getFloat(ft));
369                                 break;
370                             case 62: // C.LE.S
371                                 setFC(getFloat(fs) <= getFloat(ft));
372                                 break;   
373                             default: throw new ExecutionException("Invalid Instruction 17/" + rs + "/" + subcode + " at " + sourceLine(pc));
374                         }
375                         break;
376                     }
377                     case 17: { // Double
378                         switch(subcode) {
379                             case 0: // ADD.D
380                                 setDouble(fd,getDouble(fs)+getDouble(ft));
381                                 break;
382                             case 1: // SUB.D
383                                 if(debugon) System.out.println("f" + fd + " = f" + fs + " (" + getDouble(fs) + ") - f" + ft + " (" + getDouble(ft) + ")");
384                                 setDouble(fd,getDouble(fs)-getDouble(ft));
385                                 break;
386                             case 2: // MUL.D
387                                 if(debugon) System.out.println("f" + fd + " = f" + fs + " (" + getDouble(fs) + ") * f" + ft + " (" + getDouble(ft) + ")");
388                                 setDouble(fd,getDouble(fs)*getDouble(ft));
389                                 if(debugon) System.out.println("f" + fd + " = " + getDouble(fd));
390                                 break;
391                             case 3: // DIV.D
392                                 setDouble(fd,getDouble(fs)/getDouble(ft));
393                                 break;
394                             case 5: // ABS.D
395                                 setDouble(fd,Math.abs(getDouble(fs)));
396                                 break;
397                             case 6: // MOV.D
398                                 f[fd] = f[fs];
399                                 f[fd+1] = f[fs+1];
400                                 break;
401                             case 7: // NEG.D
402                                 setDouble(fd,-getDouble(fs));
403                                 break;
404                             case 32: // CVT.S.D
405                                 setFloat(fd,(float)getDouble(fs));
406                                 break;
407                             case 36: // CVT.W.D
408                                 if(debugon) System.out.println("CVT.W.D rm: " + roundingMode() + " f" + fs + ":" + getDouble(fs));
409                                 switch(roundingMode()) {
410                                     case 0: f[fd] = (int)Math.floor(getDouble(fs)+0.5); break; // Round to nearest
411                                     case 1: f[fd] = (int)getDouble(fs); break; // Round towards zero
412                                     case 2: f[fd] = (int)Math.ceil(getDouble(fs)); break; // Round towards plus infinity
413                                     case 3: f[fd] = (int)Math.floor(getDouble(fs)); break; // Round towards minus infinity
414                                 }
415                                 if(debugon) System.out.println("CVT.W.D: f" + fd + ":" + f[fd]);
416                                 break;
417                             case 50: // C.EQ.D
418                                 setFC(getDouble(fs) == getDouble(ft));
419                                 break;
420                             case 60: // C.LT.D
421                                 setFC(getDouble(fs) < getDouble(ft));
422                                 break;
423                             case 62: // C.LE.D
424                                 setFC(getDouble(fs) <= getDouble(ft));
425                                 break;                                
426                             default: throw new ExecutionException("Invalid Instruction 17/" + rs + "/" + subcode + " at " + sourceLine(pc));
427                         }
428                         break;
429                     }
430                     case 20: { // Integer
431                         switch(subcode) {
432                             case 32: // CVT.S.W
433                                 setFloat(fd,f[fs]);
434                                 break;
435                             case 33: // CVT.D.W
436                                 setDouble(fd,f[fs]);
437                                 break;
438                             default: throw new ExecutionException("Invalid Instruction 17/" + rs + "/" + subcode + " at " + sourceLine(pc));
439                         }
440                         break;
441                     }
442                     default:
443                         throw new ExecutionException("Invalid Instruction 17/" + rs);
444                 }
445                 break;
446             }
447             case 18: case 19:
448                 throw new ExecutionException("No coprocessor installed");
449             case 32: { // LB
450                 addr = r[rs] + signedImmediate;
451                 try {
452                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
453                 } catch(RuntimeException e) {
454                     tmp = memRead(addr&~3);
455                 }
456                 switch(addr&3) {
457                     case 0: tmp = (tmp>>>24)&0xff; break;
458                     case 1: tmp = (tmp>>>16)&0xff; break;
459                     case 2: tmp = (tmp>>> 8)&0xff; break;
460                     case 3: tmp = (tmp>>> 0)&0xff; break;
461                 }
462                 if((tmp&0x80)!=0) tmp |= 0xffffff00; // sign extend
463                 r[rt] = tmp;
464                 break;
465             }
466             case 33: { // LH
467                 addr = r[rs] + signedImmediate;
468                 try {
469                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
470                 } catch(RuntimeException e) {
471                     tmp = memRead(addr&~3);
472                 }
473                 switch(addr&2) {
474                     case 0: tmp = (tmp>>>16)&0xffff; break;
475                     case 2: tmp = (tmp>>> 0)&0xffff; break;
476                 }
477                 if((tmp&0x8000)!=0) tmp |= 0xffff0000; // sign extend
478                 r[rt] = tmp;
479                 break;              
480             }
481             case 34: { // LWL;
482                 addr = r[rs] + signedImmediate;
483                 try {
484                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
485                 } catch(RuntimeException e) {
486                     tmp = memRead(addr&~3);
487                 }
488                 switch(addr&3) {
489                     case 0: r[rt] = (r[rt]&0x00000000)|(tmp<< 0); break;
490                     case 1: r[rt] = (r[rt]&0x000000ff)|(tmp<< 8); break;
491                     case 2: r[rt] = (r[rt]&0x0000ffff)|(tmp<<16); break;
492                     case 3: r[rt] = (r[rt]&0x00ffffff)|(tmp<<24); break;
493                 }
494                 break;
495             }
496             case 35: // LW
497                 addr = r[rs] + signedImmediate;
498                 try {
499                     r[rt] = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
500                 } catch(RuntimeException e) {
501                     r[rt] = memRead(addr);
502                 }
503                 break;
504             case 36: { // LBU
505                 addr = r[rs] + signedImmediate;
506                 try {
507                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
508                 } catch(RuntimeException e) {
509                     tmp = memRead(addr);
510                 }
511                 switch(addr&3) {
512                     case 0: r[rt] = (tmp>>>24)&0xff; break;
513                     case 1: r[rt] = (tmp>>>16)&0xff; break;
514                     case 2: r[rt] = (tmp>>> 8)&0xff; break;
515                     case 3: r[rt] = (tmp>>> 0)&0xff; break;
516                 }
517                 break;
518             }
519             case 37: { // LHU
520                 addr = r[rs] + signedImmediate;
521                 try {
522                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
523                 } catch(RuntimeException e) {
524                     tmp = memRead(addr&~3);
525                 }
526                 switch(addr&2) {
527                     case 0: r[rt] = (tmp>>>16)&0xffff; break;
528                     case 2: r[rt] = (tmp>>> 0)&0xffff; break;
529                 }
530                 break;
531             }
532             case 38: { // LWR
533                 addr = r[rs] + signedImmediate;
534                 try {
535                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
536                 } catch(RuntimeException e) {
537                     tmp = memRead(addr&~3);
538                 }
539                 switch(addr&3) {
540                     case 0: r[rt] = (r[rt]&0xffffff00)|(tmp>>>24); break;
541                     case 1: r[rt] = (r[rt]&0xffff0000)|(tmp>>>16); break;
542                     case 2: r[rt] = (r[rt]&0xff000000)|(tmp>>> 8); break;
543                     case 3: r[rt] = (r[rt]&0x00000000)|(tmp>>> 0); break;
544                 }
545                 break;
546             }
547             case 40: { // SB
548                 addr = r[rs] + signedImmediate;
549                 try {
550                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
551                 } catch(RuntimeException e) {
552                     tmp = memRead(addr&~3);
553                 }
554                 switch(addr&3) {
555                     case 0: tmp = (tmp&0x00ffffff) | ((r[rt]&0xff)<<24); break;
556                     case 1: tmp = (tmp&0xff00ffff) | ((r[rt]&0xff)<<16); break;
557                     case 2: tmp = (tmp&0xffff00ff) | ((r[rt]&0xff)<< 8); break;
558                     case 3: tmp = (tmp&0xffffff00) | ((r[rt]&0xff)<< 0); break;
559                 }
560                 try {
561                     writePages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)] = tmp;
562                 } catch(RuntimeException e) {
563                     memWrite(addr&~3,tmp);
564                 }
565                 break;
566             }
567             case 41: { // SH
568                 addr = r[rs] + signedImmediate;
569                 try {
570                     tmp = readPages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)];
571                 } catch(RuntimeException e) {
572                     tmp = memRead(addr&~3);
573                 }
574                 switch(addr&2) {
575                     case 0: tmp = (tmp&0x0000ffff) | ((r[rt]&0xffff)<<16); break;
576                     case 2: tmp = (tmp&0xffff0000) | ((r[rt]&0xffff)<< 0); break;
577                 }
578                 try {
579                     writePages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)] = tmp;
580                 } catch(RuntimeException e) {
581                     memWrite(addr&~3,tmp);
582                 }
583                 break;
584             }
585             case 42: { // SWL
586                 addr = r[rs] + signedImmediate;
587                 tmp = memRead(addr&~3);
588                 switch(addr&3) {
589                     case 0: tmp=(tmp&0x00000000)|(r[rt]>>> 0); break;
590                     case 1: tmp=(tmp&0xff000000)|(r[rt]>>> 8); break;
591                     case 2: tmp=(tmp&0xffff0000)|(r[rt]>>>16); break;
592                     case 3: tmp=(tmp&0xffffff00)|(r[rt]>>>24); break;
593                 }
594                 try {
595                     writePages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)] = tmp;
596                 } catch(RuntimeException e) {
597                     memWrite(addr&~3,tmp);
598                 }
599                 break;
600             }
601             case 43: // SW
602                 addr = r[rs] + signedImmediate;
603                 try {
604                     writePages[addr>>>pageShift][(addr>>>2)&(PAGE_WORDS-1)] = r[rt];
605                 } catch(RuntimeException e) {
606                     memWrite(addr&~3,r[rt]);
607                 }
608                 break;
609             case 46: { // SWR
610                 addr = r[rs] + signedImmediate;
611                 tmp = memRead(addr&~3);
612                 switch(addr&3) {
613                     case 0: tmp=(tmp&0x00ffffff)|(r[rt]<<24); break;
614                     case 1: tmp=(tmp&0x0000ffff)|(r[rt]<<16); break;
615                     case 2: tmp=(tmp&0x000000ff)|(r[rt]<< 8); break;
616                     case 3: tmp=(tmp&0x00000000)|(r[rt]<< 0); break;
617                 }
618                 memWrite(addr&~3,tmp);
619                 break;
620             }
621             // Needs to be atomic w/ threads
622             case 48: // LWC0/LL
623                 r[rt] = memRead(r[rs] + signedImmediate);
624                 break;
625             case 49: // LWC1
626                 f[rt] = memRead(r[rs] + signedImmediate);
627                 break;
628             // Needs to be atomic w/ threads
629             case 56:
630                 memWrite(r[rs] + signedImmediate,r[rt]);
631                 r[rt] = 1;
632                 break;
633             case 57: // SWC1
634                 memWrite(r[rs] + signedImmediate,f[rt]);
635                 break;
636             default:
637                 throw new ExecutionException("Invalid Instruction: " + op);
638         }
639         pc = nextPC;
640         nextPC = pc + 4;
641     } // for(;;)
642     } catch(ExecutionException e) {
643         this.pc = pc;
644         throw e;
645     }
646         return 0;
647     }
648     
649     public int lookupSymbol(String name) {
650         ELF.Symbol sym = symtab.getGlobalSymbol(name);
651         return sym == null ? -1 : sym.addr;
652     }
653     
654     private int gp;
655     protected int gp() { return gp; }
656     
657     private ELF.Symbol userInfo;
658     protected int userInfoBae() { return userInfo == null ? 0 : userInfo.addr; }
659     protected int userInfoSize() { return userInfo == null ? 0 : userInfo.size; }
660     
661     private int entryPoint;
662     protected int entryPoint() { return entryPoint; }
663     
664     private int heapStart;
665     protected int heapStart() { return heapStart; }
666     
667     // Image loading function
668     private void loadImage(Seekable data) throws IOException {
669         ELF elf = new ELF(data);
670         symtab = elf.getSymtab();
671         
672         if(elf.header.type != ELF.ET_EXEC) throw new IOException("Binary is not an executable");
673         if(elf.header.machine != ELF.EM_MIPS) throw new IOException("Binary is not for the MIPS I Architecture");
674         if(elf.ident.data != ELF.ELFDATA2MSB) throw new IOException("Binary is not big endian");
675         
676         entryPoint = elf.header.entry;
677         
678         ELF.Symtab symtab = elf.getSymtab();
679         if(symtab == null) throw new IOException("No symtab in binary (did you strip it?)");
680         userInfo = symtab.getGlobalSymbol("user_info");
681         ELF.Symbol gpsym = symtab.getGlobalSymbol("_gp");
682         
683         if(gpsym == null) throw new IOException("NO _gp symbol!");
684         gp = gpsym.addr;
685         
686         entryPoint = elf.header.entry;
687         
688         ELF.PHeader[] pheaders = elf.pheaders;
689         int brk = 0;
690         int pageSize = (1<<pageShift);
691         int pageWords = (1<<pageShift) >> 2;
692         for(int i=0;i<pheaders.length;i++) {
693             ELF.PHeader ph = pheaders[i];
694             if(ph.type != ELF.PT_LOAD) continue;
695             int memsize = ph.memsz;
696             int filesize = ph.filesz;
697             if(memsize == 0) continue;
698             if(memsize < 0) throw new IOException("pheader size too large");
699             int addr = ph.vaddr;
700             if(addr == 0x0) throw new IOException("pheader vaddr == 0x0");
701             brk = max(addr+memsize,brk);
702             
703             for(int j=0;j<memsize+pageSize-1;j+=pageSize) {
704                 int page = (j+addr) >>> pageShift;
705                 if(readPages[page] == null)
706                     readPages[page] = new int[pageWords];
707                 if(ph.writable()) writePages[page] = readPages[page];
708             }
709             if(filesize != 0) {
710                 filesize = filesize & ~3;
711                 DataInputStream dis = new DataInputStream(ph.getInputStream());
712                 do {
713                     readPages[addr >>> pageShift][(addr >>> 2)&(pageWords-1)] = dis.readInt();
714                     addr+=4;
715                     filesize-=4;
716                 } while(filesize > 0);
717                 dis.close();
718             }
719         }
720         heapStart = (brk+pageSize-1)&~(pageSize-1);
721     }
722     
723     protected void setCPUState(CPUState state) {
724         for(int i=1;i<32;i++) registers[i] = state.r[i];
725         for(int i=0;i<32;i++) fpregs[i] = state.f[i];
726         hi=state.hi; lo=state.lo; fcsr=state.fcsr;
727         pc=state.pc;
728     }
729     
730     protected void getCPUState(CPUState state) {
731         for(int i=1;i<32;i++) state.r[i] = registers[i];
732         for(int i=0;i<32;i++) state.f[i] = fpregs[i];
733         state.hi=hi; state.lo=lo; state.fcsr=fcsr;
734         state.pc=pc;
735     }
736     
737     public Interpreter(Seekable data) throws IOException {
738         super(4096,65536);
739         loadImage(data);
740     }
741     public Interpreter(String filename) throws IOException {
742         this(new Seekable.File(filename,false));
743         image = filename;
744     }
745     public Interpreter(InputStream is) throws IOException { this(new Seekable.InputStream(is)); }
746     
747     // Debug functions
748     // NOTE: This probably requires a jdk > 1.1, however, it is only used for debugging
749     private java.util.HashMap sourceLineCache;
750     public String sourceLine(int pc) {
751         final String addr2line = "mips-unknown-elf-addr2line";
752         String line = (String) (sourceLineCache == null ? null : sourceLineCache.get(new Integer(pc)));
753         if(line != null) return line;
754         if(image==null) return null;
755         try {
756             Process p = java.lang.Runtime.getRuntime().exec(new String[]{addr2line,"-e",image,toHex(pc)});
757             line = new BufferedReader(new InputStreamReader(p.getInputStream())).readLine();
758             if(line == null) return null;
759             while(line.startsWith("../")) line = line.substring(3);
760             if(sourceLineCache == null) sourceLineCache = new java.util.HashMap();
761             sourceLineCache.put(new Integer(pc),line);
762             return line;
763         } catch(IOException e) {
764             return null;
765         }
766     }
767     
768     public class DebugShutdownHook implements Runnable {
769         public void run() {
770             int pc = Interpreter.this.pc;
771             if(getState() == RUNNING)
772                 System.err.print("\nCPU Executing " + toHex(pc) + ": " + sourceLine(pc) + "\n");
773         }
774     }
775
776     public static void main(String[] argv) throws Exception {
777         String image = argv[0];
778         Interpreter emu = new Interpreter(image);
779         java.lang.Runtime.getRuntime().addShutdownHook(new Thread(emu.new DebugShutdownHook()));
780         int status = emu.run(argv);
781         System.err.println("Exit status: " + status);
782         System.exit(status);
783     }
784 }