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Fixed /*@i@*/ splintme errors.
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1/*
2** Splint - annotation-assisted static program checker
3** Copyright (C) 1994-2003 University of Virginia,
4** Massachusetts Institute of Technology
5**
6** This program is free software; you can redistribute it and/or modify it
7** under the terms of the GNU General Public License as published by the
8** Free Software Foundation; either version 2 of the License, or (at your
9** option) any later version.
10**
11** This program is distributed in the hope that it will be useful, but
12** WITHOUT ANY WARRANTY; without even the implied warranty of
13** MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14** General Public License for more details.
15**
16** The GNU General Public License is available from http://www.gnu.org/ or
17** the Free Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
18** MA 02111-1307, USA.
19**
20** For information on splint: info@splint.org
21** To report a bug: splint-bug@splint.org
22** For more information: http://www.splint.org
23*/
24
25/*
26** constraintExpr.c
27*/
28
29/* #define DEBUGPRINT 1 */
30
31# include "splintMacros.nf"
32# include "basic.h"
33# include "cgrammar.h"
34# include "cgrammar_tokens.h"
35
36# include "exprChecks.h"
37# include "exprNodeSList.h"
38
39
40static ctype constraintExpr_getOrigType (constraintExpr p_e);
41static bool constraintExpr_hasTypeChange(constraintExpr p_e) /*@*/;
42
43static /*@only@*/ constraintExpr constraintExpr_makeBinaryOpConstraintExprIntLiteral (/*@only@*/constraintExpr p_expr, int p_literal);
44
45
46/*@only@*/ static constraintExpr
47doSRefFixInvarConstraintTerm (/*@only@*/ constraintExpr p_e,
48 sRef p_s, ctype p_ct);
49
50/*@only@*/ static constraintExpr
51doSRefFixConstraintParamTerm (/*@only@*/ constraintExpr p_e, /*@temp@*/ /*@observer@*/ exprNodeList p_arglist) /*@modifies p_e@*/;
52
53static /*@only@*/ constraintExpr
54doFixResultTerm (/*@only@*/ constraintExpr p_e, /*@exposed@*/ exprNode p_fcnCall)
55 /*@modifies p_e@*/;
56
57static bool constraintExpr_canGetCType (constraintExpr p_e) /*@*/;
58
59static ctype constraintExpr_getCType (constraintExpr p_e);
60
61static /*@only@*/ constraintExpr constraintExpr_adjustMaxSetForCast(/*@only@*/ constraintExpr p_e, ctype p_ct);
62
63/*@special@*/ /*@notnull@*/ static constraintExpr constraintExpr_makeBinaryOp (void)
64 /* @allocates result->data @ @sets result->kind @ */ ;
65
66void constraintExpr_free (/*@only@*/ constraintExpr expr)
67{
68 if (constraintExpr_isDefined(expr) )
69 {
70 switch (expr->kind)
71 {
72 case unaryExpr:
73 constraintExprData_freeUnaryExpr(expr->data);
74 break;
75 case binaryexpr:
76 constraintExprData_freeBinaryExpr(expr->data);
77 break;
78 case term:
79 constraintExprData_freeTerm(expr->data);
80 break;
81 default:
82 BADEXIT;
83 }
84
85 expr->data = NULL;
86 free (expr);
87 }
88 else
89 {
90 llcontbug(message("attempted to free null pointer in constraintExpr_free"));
91 }
92}
93
94bool constraintExpr_isLit (constraintExpr expr)
95{
96 llassert (expr != NULL);
97
98 if (expr->kind == term)
99 {
100 constraintTerm term = constraintExprData_termGetTerm (expr->data);
101 if (constraintTerm_isIntLiteral (term) )
102 {
103 return TRUE;
104 }
105
106 }
107 return FALSE;
108}
109
110static bool isZeroBinaryOp (constraintExpr expr)
111{
112 constraintExpr e2;
113
114 llassert (expr != NULL); /* evans 2001-07-18 */
115
116 if (!constraintExpr_isBinaryExpr (expr) )
117 {
118 return FALSE;
119 }
120
121
122 e2 = constraintExprData_binaryExprGetExpr2(expr->data);
123
124 llassert (e2 != NULL); /* evans 2001-07-18 */
125
126 if (constraintExpr_isBinaryExpr (e2) )
127 {
128 constraintExpr e1;
129 constraintExprBinaryOpKind op;
130
131 op = constraintExprData_binaryExprGetOp (e2->data);
132
133 e1 = constraintExprData_binaryExprGetExpr1(e2->data);
134
135 if (constraintExpr_isLit(e1) )
136 {
137 if (constraintExpr_getValue(e1) == 0 )
138 {
139 return TRUE;
140 }
141 }
142 }
143 return FALSE;
144}
145
146/* change expr + (o - expr) to (expr -expr) */
147
148/*@only@*/ /*@notnull@*/ static constraintExpr removeZero (/*@only@*/ /*@returned@*/ constraintExpr expr)
149{
150 constraintExpr expr1, expr2;
151
152 constraintExpr temp;
153
154 constraintExprBinaryOpKind op;
155
156 constraintExprBinaryOpKind tempOp;
157
158 llassert (expr != NULL); /* evans 2001-07-18 */
159
160 if (!isZeroBinaryOp(expr) )
161 return expr;
162
163
164 expr1 = constraintExprData_binaryExprGetExpr1(expr->data);
165 expr2 = constraintExprData_binaryExprGetExpr2(expr->data);
166 op = constraintExprData_binaryExprGetOp(expr->data);
167
168 llassert( constraintExpr_isBinaryExpr(expr2) );
169
170 temp = constraintExprData_binaryExprGetExpr2 (expr2->data);
171 temp = constraintExpr_copy (temp);
172
173 tempOp = constraintExprData_binaryExprGetOp (expr2->data);
174
175 if (op == BINARYOP_PLUS)
176 op = tempOp;
177 else if (op == BINARYOP_MINUS)
178 {
179 if (tempOp == BINARYOP_PLUS)
180 op = BINARYOP_MINUS;
181 else if (tempOp == BINARYOP_MINUS)
182 op = BINARYOP_PLUS;
183 else
184 BADEXIT;
185 }
186 else
187 BADEXIT;
188
189 expr->data = constraintExprData_binaryExprSetExpr2(expr->data, temp);
190 expr->data = constraintExprData_binaryExprSetOp(expr->data, op);
191
192 return expr;
193}
194
195
196/*@only@*//*@notnull@*/ constraintExpr constraintExpr_propagateConstants (/*@only@*/ constraintExpr expr,
197 /*@out@*/ bool * propagate,
198 /*@out@*/ int *literal)
199{
200 constraintExpr expr1;
201 constraintExpr expr2;
202 bool propagate1, propagate2;
203 int literal1, literal2;
204 constraintExprBinaryOpKind op;
205
206 propagate1 = FALSE;
207 propagate2 = FALSE;
208
209 literal1 = 0;
210 literal2 = 0;
211
212 *propagate = FALSE;
213 *literal = 0;
214
215
216 llassert (expr != NULL);
217
218 /* we simplify unaryExpr elsewhere */
219 if (expr->kind != binaryexpr)
220 return expr;
221
222 op = constraintExprData_binaryExprGetOp (expr->data);
223
224 DPRINTF((message("constraintExpr_propagateConstants: binaryexpr: %s", constraintExpr_unparse(expr) ) ) );
225
226 expr = removeZero(expr);
227
228 expr1 = constraintExprData_binaryExprGetExpr1(expr->data);
229 expr2 = constraintExprData_binaryExprGetExpr2(expr->data);
230
231 expr1 = constraintExpr_copy(expr1);
232 expr2 = constraintExpr_copy(expr2);
233
234 expr1 = constraintExpr_propagateConstants (expr1, &propagate1, &literal1);
235 expr2 = constraintExpr_propagateConstants (expr2, &propagate2, &literal2);
236
237 expr1 = removeZero(expr1);
238 expr2 = removeZero(expr2);
239
240
241 *propagate = propagate1 || propagate2;
242
243 if (op == BINARYOP_PLUS)
244 *literal = literal1 + literal2;
245 else if (op == BINARYOP_MINUS)
246 *literal = literal1 - literal2;
247 else
248 BADEXIT;
249
250 if ( constraintExpr_isLit (expr1) && constraintExpr_isLit (expr2) )
251 {
252 long t1, t2;
253 t1 = constraintExpr_getValue (expr1);
254 t2 = constraintExpr_getValue (expr2);
255 llassert(*propagate == FALSE);
256 *propagate = FALSE;
257
258 constraintExpr_free (expr);
259 constraintExpr_free (expr1);
260 constraintExpr_free (expr2);
261
262 if (op == BINARYOP_PLUS )
263 return (constraintExpr_makeIntLiteral ((t1+t2) ));
264 else if (op == BINARYOP_MINUS)
265 return (constraintExpr_makeIntLiteral ((t1-t2) ));
266 else
267 BADEXIT;
268 }
269
270
271 if (constraintExpr_isLit (expr1) )
272 {
273 *propagate = TRUE;
274
275 *literal += constraintExpr_getValue (expr1);
276
277 if (op == BINARYOP_PLUS)
278 {
279 constraintExpr_free(expr1);
280 constraintExpr_free(expr);
281 return expr2;
282 }
283 else if (op == BINARYOP_MINUS)
284 {
285
286 constraintExpr temp;
287
288 /* this is an ugly kludge to deal with not
289 having a unary minus operation...*/
290
291 temp = constraintExpr_makeIntLiteral (0);
292 temp = constraintExpr_makeSubtractExpr (temp, expr2);
293
294 constraintExpr_free(expr1);
295 constraintExpr_free(expr);
296
297 llassert (constraintExpr_isDefined(temp) );
298 return temp;
299 }
300 else
301 {
302 BADBRANCH; /* evans 2001-07-18 */
303 }
304 }
305
306 if (constraintExpr_isLit (expr2) )
307 {
308 *propagate = TRUE;
309
310 if ( op == BINARYOP_PLUS )
311 *literal += constraintExpr_getValue (expr2);
312 else if (op == BINARYOP_MINUS)
313 *literal -= constraintExpr_getValue (expr2);
314 else
315 BADEXIT;
316
317
318 constraintExpr_free(expr2);
319 constraintExpr_free(expr);
320 return expr1;
321 }
322
323 DPRINTF((message("constraintExpr_propagateConstants returning: %s", constraintExpr_unparse(expr) ) ) );
324
325 expr->data = constraintExprData_binaryExprSetExpr1 (expr->data, expr1);
326 expr->data = constraintExprData_binaryExprSetExpr2 (expr->data, expr2);
327
328 expr = removeZero(expr);
329 return expr;
330}
331
332/*@notnull@*/ /*@only@*/ static constraintExpr constraintExpr_combineConstants (/*@only@*/ constraintExpr expr ) /*@modifies expr@*/
333{
334 bool propagate;
335 int literal;
336
337 DPRINTF ((message ("Before combine %s", constraintExpr_unparse(expr) ) ) );
338 expr = constraintExpr_propagateConstants (expr, &propagate, &literal);
339
340
341 if (propagate)
342 {
343 constraintExpr ret;
344
345 if (literal != 0)
346 {
347 ret = constraintExpr_makeBinaryOpConstraintExprIntLiteral (expr, literal);
348 expr = ret;
349 }
350 }
351 DPRINTF ((message ("After combine %s", constraintExpr_unparse(expr) ) ) );
352
353 llassert(constraintExpr_isDefined(expr) );
354 return expr;
355}
356
357/*@special@*/
358static /*@notnull@*/ constraintExpr constraintExpr_alloc (void) /*@post:isnull result->data@*/
359{
360 constraintExpr ret;
361 ret = dmalloc (sizeof (*ret) );
362 ret->kind = term;
363 ret->data = NULL;
364 ret->ct = FALSE;
365 ret->origType = ctype_undefined;
366 return ret;
367}
368
369/*@only@*/ static constraintExprData copyExprData (/*@observer@*/ constraintExprData data, constraintExprKind kind)
370{
371 constraintExprData ret;
372 llassert(constraintExprData_isDefined(data));
373
374 switch (kind)
375 {
376 case binaryexpr:
377 ret = constraintExprData_copyBinaryExpr(data);
378 break;
379 case unaryExpr:
380 ret = constraintExprData_copyUnaryExpr(data);
381 break;
382 case term:
383 ret = constraintExprData_copyTerm(data);
384 break;
385 default:
386 BADEXIT;
387 }
388 return ret;
389}
390
391constraintExpr constraintExpr_copy (constraintExpr expr)
392{
393 constraintExpr ret;
394 ret = constraintExpr_alloc ();
395
396
397 /*drl 03/02/2003 this shouldn't be used to copy a null
398 expression but handle things cleanly if it is*/
399 llassert (!constraintExpr_isUndefined(expr) );
400
401 if (constraintExpr_isUndefined(expr) )
402 {
403 return constraintExpr_undefined;
404 }
405
406 ret->kind = expr->kind;
407
408 ret->data = copyExprData (expr->data, expr->kind);
409 ret->ct = expr->ct;
410 ret->origType = expr->origType;
411 return ret;
412}
413
414
415/*@only@*/ static constraintExpr oldconstraintExpr_makeTermExprNode ( /*@dependent@*/ exprNode e)
416{
417 constraintExpr ret;
418 constraintTerm t;
419 ret = constraintExpr_alloc();
420 ret->kind = term;
421 ret->data = dmalloc (sizeof *(ret->data) );
422 t = constraintTerm_makeExprNode (e);
423 ret->data = constraintExprData_termSetTerm (ret->data, t);
424 ret->ct = FALSE;
425 ret->origType = ctype_undefined;
426
427 return ret;
428}
429
430/*@access exprNode@*/
431constraintExpr constraintExpr_makeExprNode (exprNode e)
432{
433 sRef s;
434 constraintExpr ret, ce1, ce2;
435 exprData data;
436 exprNode t, t1, t2;
437 lltok tok;
438
439 llassert (e != NULL);
440
441 data = e->edata;
442
443 switch (e->kind)
444 {
445 case XPR_SIZEOF:
446 t = exprData_getSingle (data);
447 while (exprNode_isInParens (t) )
448 {
449 t = exprData_getUopNode (t->edata);
450 }
451 s = exprNode_getSref (t);
452 if (sRef_isFixedArray(s) )
453 {
454 int size;
455
456 size = (int) sRef_getArraySize(s);
457 ret = constraintExpr_makeIntLiteral (size);
458 }
459 else if (exprNode_isStringLiteral (t))
460 {
461 cstring str = multiVal_forceString (exprNode_getValue(t));
462 ret = constraintExpr_makeIntLiteral (size_toLong (cstring_length (str) + 1));
463 }
464 else
465 {
466 DPRINTF ((message ("could not determine the size of %s", exprNode_unparse (e) ) ) );
467 ret = oldconstraintExpr_makeTermExprNode (e);
468 }
469 break;
470
471 case XPR_OP:
472 DPRINTF ((message ("Examining operation %s", exprNode_unparse (e) ) ) );
473 t1 = exprData_getOpA (data);
474 t2 = exprData_getOpB (data);
475 tok = exprData_getOpTok (data);
476
477 if (lltok_isPlus_Op (tok) || lltok_isMinus_Op (tok) )
478 {
479 ce1 = constraintExpr_makeExprNode (t1);
480 ce2 = constraintExpr_makeExprNode (t2);
481 ret = constraintExpr_parseMakeBinaryOp (ce1, tok, ce2);
482 }
483
484
485 /* define this block to activate the cheesy heuristic
486 for handling sizeof expressions*/
487#if 0
488
489
490 /*
491 drl 8-11-001
492
493 We handle expressions containing sizeof with the rule
494 (sizeof type ) * Expr = Expr
495
496 This is the total wronge way to do this but...
497 it may be better than nothing
498 */
499
500
501
502 else if (lltok_isMult(tok) )
503 {
504 if ((t1->kind == XPR_SIZEOF) || (t1->kind == XPR_SIZEOFT) )
505 {
506 ret = constraintExpr_makeExprNode(t2);
507 }
508 else if ((t2->kind == XPR_SIZEOF) || (t2->kind == XPR_SIZEOFT) )
509 {
510 ret = constraintExpr_makeExprNode(t1);
511 }
512 else
513 {
514 ret = oldconstraintExpr_makeTermExprNode (e);
515 }
516 }
517#endif
518
519 else
520 ret = oldconstraintExpr_makeTermExprNode (e);
521
522 break;
523 case XPR_PARENS:
524 t = exprData_getUopNode (data);
525 ret = constraintExpr_makeExprNode (t);
526 break;
527
528 case XPR_PREOP:
529 t = exprData_getUopNode (data);
530 tok = exprData_getUopTok (data);
531 if (lltok_isIncOp (tok))
532 {
533 constraintExpr temp;
534 temp = constraintExpr_makeExprNode(t);
535 ret = constraintExpr_makeIncConstraintExpr(temp);
536 }
537 else if (lltok_isDecOp (tok))
538 {
539 constraintExpr temp;
540 temp = constraintExpr_makeExprNode(t);
541 ret = constraintExpr_makeDecConstraintExpr(temp);
542 }
543 else
544 ret = oldconstraintExpr_makeTermExprNode (e);
545 break;
546
547 case XPR_POSTOP:
548 t = exprData_getUopNode (data);
549 ret = constraintExpr_makeExprNode (t);
550 break;
551 case XPR_CAST:
552 t = exprData_getCastNode (data);
553 ret = constraintExpr_makeExprNode (t);
554 break;
555 case XPR_COMMA:
556 t = exprData_getPairA(data);
557 ret = constraintExpr_makeExprNode(t);
558 break;
559 default:
560 ret = oldconstraintExpr_makeTermExprNode (e);
561
562 }
563 return ret;
564}
565
566/*@noaccess exprNode@*/
567
568
569
570
571/*@only@*/ constraintExpr constraintExpr_makeTermExprNode (/*@exposed@*/ exprNode e)
572{
573 return oldconstraintExpr_makeTermExprNode(e);
574}
575
576static constraintExpr constraintExpr_makeTerm (/*@only@*/ constraintTerm t)
577{
578 constraintExpr ret;
579
580 ret = constraintExpr_alloc();
581 ret->kind = term;
582 ret->data = dmalloc (sizeof *(ret->data) );
583 ret->data->term = NULL;
584 ret->data = constraintExprData_termSetTerm (ret->data, t);
585 ret->ct = FALSE;
586 ret->origType = ctype_undefined;
587
588 return ret;
589}
590
591constraintExpr constraintExpr_makeTermsRef (/*@temp@*/ sRef s)
592{
593 constraintExpr ret;
594 constraintTerm t;
595 ret = constraintExpr_alloc();
596 ret->kind = term;
597 ret->data = dmalloc (sizeof *(ret->data) );
598 t = constraintTerm_makesRef (s);
599 ret->data = constraintExprData_termSetTerm (ret->data, t);
600
601 ret->ct = FALSE;
602 ret->origType = ctype_undefined;
603
604 return ret;
605}
606
607/*@special@*/ /*@notnull@*/ static constraintExpr makeUnaryOpGeneric (void) /*@allocates result->data@*/ /*@defines result->kind@*/
608{
609 constraintExpr ret;
610 ret = constraintExpr_alloc();
611 ret->kind = unaryExpr;
612 ret->data = dmalloc ( sizeof *(ret->data) );
613 ret->data->unaryOp.expr = constraintExpr_undefined;
614 return ret;
615}
616
617/*@notnull@*/ /*@only@*/ static constraintExpr constraintExpr_makeUnaryOpConstraintExpr (/*@only@*/ constraintExpr cexpr)
618{
619 constraintExpr ret;
620 ret = makeUnaryOpGeneric();
621
622 /*@-uniondef@*/
623 /*@-compdef@*/
624 ret->data = constraintExprData_unaryExprSetExpr (ret->data, cexpr);
625 ret->data = constraintExprData_unaryExprSetOp (ret->data, UNARYOP_UNDEFINED);
626
627 return ret;
628
629 /*@=compdef@*/
630 /*@=uniondef@*/
631}
632
633
634/*@only@*/ /*@notnull@*/static constraintExpr constraintExpr_makeUnaryOp (/*@only@*/ constraintExpr cexpr, constraintExprUnaryOpKind Op )
635{
636 constraintExpr ret;
637 ret = makeUnaryOpGeneric();
638
639 ret->data = constraintExprData_unaryExprSetExpr (ret->data, cexpr);
640 ret->data = constraintExprData_unaryExprSetOp (ret->data, Op);
641
642 ret->ct = FALSE;
643 ret->origType = ctype_undefined;
644
645 return ret;
646}
647
648/*@only@*/ /*@notnull@*/
649static constraintExpr constraintExpr_makeUnaryOpExprNode (/*@exposed@*/ exprNode expr)
650{
651 constraintExpr ret;
652 constraintExpr sub;
653 sub = constraintExpr_makeExprNode (expr);
654 ret = constraintExpr_makeUnaryOpConstraintExpr(sub);
655
656 return ret;
657}
658
659/*@only@*/ /*@notnull@*/
660static constraintExpr constraintExpr_makeMaxSetConstraintExpr (/*@only@*/ constraintExpr c)
661{
662 constraintExpr ret;
663 ret = constraintExpr_makeUnaryOp (c, MAXSET);
664 return ret;
665}
666
667
668/*@only@*/ /*@notnull@*/
669static constraintExpr constraintExpr_makeSRefUnaryOp (/*@temp@*/ /*@observer@*/ sRef s, constraintExprUnaryOpKind op)
670{
671 constraintExpr ret;
672 constraintExpr t;
673
674 t = constraintExpr_makeTermsRef (s);
675 ret = constraintExpr_makeUnaryOpConstraintExpr (t);
676 ret->data = constraintExprData_unaryExprSetOp (ret->data, op);
677
678 return ret;
679}
680
681/*@only@*/
682constraintExpr constraintExpr_makeSRefMaxRead( sRef s)
683{
684 return (constraintExpr_makeSRefUnaryOp (s, MAXREAD) );
685}
686
687/*@only@*/
688constraintExpr constraintExpr_makeSRefMaxset ( sRef s)
689{
690 return (constraintExpr_makeSRefUnaryOp (s, MAXSET) );
691}
692
693/*@only@*/
694constraintExpr constraintExpr_parseMakeUnaryOp (lltok op, constraintExpr cexpr)
695{
696 constraintExpr ret;
697 ret = constraintExpr_makeUnaryOpConstraintExpr ( cexpr);
698
699 switch (lltok_getTok (op))
700 {
701 case QMAXSET:
702 ret->data = constraintExprData_unaryExprSetOp (ret->data, MAXSET);
703 break;
704 case QMAXREAD:
705 ret->data = constraintExprData_unaryExprSetOp (ret->data, MAXREAD);
706 break;
707 default:
708 llfatalbug (message ("Unhandled operation in constraint: %s", lltok_unparse (op)));
709 }
710 return ret;
711}
712
713/*@only@*/
714constraintExpr constraintExpr_makeMaxSetExpr (/*@exposed@*/ exprNode expr)
715{
716 constraintExpr ret;
717 ret = constraintExpr_makeExprNode (expr);
718
719 ret = constraintExpr_makeMaxSetConstraintExpr (ret);
720
721 llassert (ret != NULL);
722 return ret;
723}
724
725/*@only@*/
726constraintExpr constraintExpr_makeMaxReadExpr (exprNode expr)
727{
728 constraintExpr ret;
729 ret = constraintExpr_makeUnaryOpExprNode(expr);
730 ret->data = constraintExprData_unaryExprSetOp (ret->data, MAXREAD);
731 return ret;
732}
733
734# if 0
735/*@only@*/
736/*@unused@*/ static constraintExpr constraintExpr_makeMinSetExpr (/*@exposed@*/ exprNode expr)
737{
738 constraintExpr ret;
739 ret = constraintExpr_makeUnaryOpExprNode(expr);
740 ret->data = constraintExprData_unaryExprSetOp (ret->data, MINSET);
741 return ret;
742}
743
744/*@only@*/
745/*@unused@*/ static constraintExpr constraintExpr_makeMinReadExpr (/*@exposed@*/ exprNode expr)
746{
747 constraintExpr ret;
748 ret = constraintExpr_makeUnaryOpExprNode(expr);
749 ret->data = constraintExprData_unaryExprSetOp (ret->data, MINREAD);
750 return ret;
751}
752# endif
753
754/*@only@*/
755constraintExpr constraintExpr_makeValueExpr (/*@exposed@*/ exprNode expr)
756{
757 constraintExpr ret;
758 ret = constraintExpr_makeExprNode (expr);
759 return ret;
760}
761
762/*@only@*/ /*@notnull@*/
763constraintExpr constraintExpr_makeIntLiteral (long i)
764{
765 constraintExpr ret;
766 constraintTerm t;
767 ret = constraintExpr_alloc();
768 ret->kind = term;
769 ret->data = dmalloc (sizeof *(ret->data) );
770 t = constraintTerm_makeIntLiteral (i);
771 ret->data = constraintExprData_termSetTerm (ret->data, t);
772
773 ret->ct = FALSE;
774 ret->origType = ctype_undefined;
775
776 return ret;
777}
778
779/*
780constraintExpr constraintExpr_makeValueInt (int i)
781{
782 return constraintExpr_makeIntLiteral (i);
783}
784*/
785
786/*@only@*/ /*@notnull@*/
787 /*@special@*/ static constraintExpr constraintExpr_makeBinaryOp (void)
788 /*@allocates result->data @*/ /*@sets result->kind @*/
789{
790 constraintExpr ret;
791 ret = constraintExpr_alloc();
792 ret->kind = binaryexpr;
793 ret->data = dmalloc ( sizeof *(ret->data) );
794
795 ret->data->binaryOp.expr1 = constraintExpr_undefined;
796 ret->data->binaryOp.expr2 = constraintExpr_undefined;
797
798 return ret;
799}
800
801
802static /*@notnull@*/ /*@only@*/ constraintExpr constraintExpr_makeBinaryOpConstraintExpr (/*@only@*/constraintExpr expr1, /*@only@*/ constraintExpr expr2)
803
804{
805 constraintExpr ret;
806
807 ret = constraintExpr_makeBinaryOp();
808 ret->data = constraintExprData_binaryExprSetExpr1 (ret->data, expr1);
809 ret->data = constraintExprData_binaryExprSetExpr2 (ret->data, expr2);
810 ret->data = constraintExprData_binaryExprSetOp (ret->data, BINARYOP_UNDEFINED);
811
812 ret->ct = FALSE;
813 ret->origType = ctype_undefined;
814
815 return ret;
816}
817
818/*@only@*/
819constraintExpr constraintExpr_parseMakeBinaryOp (/*@only@*/ constraintExpr expr1, lltok op,/*@only@*/ constraintExpr expr2)
820{
821 constraintExpr ret;
822 ret = constraintExpr_makeBinaryOpConstraintExpr (expr1, expr2);
823
824 if (lltok_getTok (op) == TPLUS)
825 {
826 ret->data = constraintExprData_binaryExprSetOp(ret->data, BINARYOP_PLUS);
827 }
828 else if (lltok_getTok (op) == TMINUS)
829 {
830 ret->data = constraintExprData_binaryExprSetOp(ret->data, BINARYOP_MINUS);
831 }
832 else
833 {
834 llassert (FALSE);
835 }
836
837 return ret;
838}
839
840# if 0
841/*@only@*/
842/*@unused@*/ static constraintExpr constraintExpr_makeBinaryOpExprNode (/*@exposed@*/ exprNode expr1, /*@exposed@*/ exprNode expr2)
843{
844 constraintExpr ret;
845 constraintExpr sub1, sub2;
846 sub1 = constraintExpr_makeTermExprNode (expr1);
847 sub2 = constraintExpr_makeTermExprNode (expr2);
848 ret = constraintExpr_makeBinaryOpConstraintExpr(sub1, sub2);
849 return ret;
850}
851# endif
852
853static /*@notnull@*/ /*@only@*/
854constraintExpr constraintExpr_makeBinaryOpConstraintExprIntLiteral (/*@only@*/ constraintExpr expr, int literal)
855{
856 constraintExpr ret;
857 constraintExpr constExpr;
858
859 constExpr = constraintExpr_makeIntLiteral (literal);
860 ret = constraintExpr_makeBinaryOpConstraintExpr (expr, constExpr);
861 ret->data = constraintExprData_binaryExprSetOp(ret->data, BINARYOP_PLUS);
862 return ret;
863}
864
865/*@only@*/
866constraintExpr constraintExpr_makeDecConstraintExpr (/*@only@*/constraintExpr expr)
867{
868 constraintExpr ret;
869 constraintExpr inc;
870
871 inc = constraintExpr_makeIntLiteral (1);
872 ret = constraintExpr_makeBinaryOpConstraintExpr (expr, inc);
873 ret->data = constraintExprData_binaryExprSetOp(ret->data, BINARYOP_MINUS);
874 return ret;
875}
876
877
878/*@only@*/ constraintExpr constraintExpr_makeSubtractExpr (/*@only@*/ constraintExpr expr, /*@only@*/ constraintExpr addent)
879{
880 constraintExpr ret;
881
882 DPRINTF ((message ("Making subtract expression") ) );
883
884 ret = constraintExpr_makeBinaryOpConstraintExpr (expr, addent);
885 ret->data = constraintExprData_binaryExprSetOp (ret->data, BINARYOP_MINUS);
886 return ret;
887}
888
889/*@only@*/
890constraintExpr constraintExpr_makeAddExpr (/*@only@*/
891constraintExpr expr, /*@only@*/
892constraintExpr addent)
893{
894 constraintExpr ret;
895
896 DPRINTF ((message ("Doing addTerm simplification") ) );
897
898 ret = constraintExpr_makeBinaryOpConstraintExpr (expr, addent);
899 ret->data = constraintExprData_binaryExprSetOp (ret->data, BINARYOP_PLUS);
900 return ret;
901}
902
903
904/*@only@*/
905constraintExpr constraintExpr_makeIncConstraintExpr (/*@only@*/ constraintExpr expr)
906{
907 constraintExpr ret;
908 constraintExpr inc;
909
910 inc = constraintExpr_makeIntLiteral (1);
911 ret = constraintExpr_makeBinaryOpConstraintExpr (expr, inc);
912 ret->data = constraintExprData_binaryExprSetOp(ret->data, BINARYOP_PLUS);
913 return ret;
914}
915
916/*@only@*/
917static cstring constraintExprUnaryOpKind_print (constraintExprUnaryOpKind op)
918{
919 switch (op)
920 {
921 case MAXSET:
922 return message("maxSet");
923 case MINSET:
924 return message("minSet");
925 case MAXREAD:
926 return message("maxRead");
927 case MINREAD:
928 return message("minRead");
929 default:
930 llassert(FALSE);
931 return message ("<(Unary OP OTHER>");
932 }
933}
934
935
936/*@only@*/
937static cstring constraintExprBinaryOpKind_print (constraintExprBinaryOpKind op)
938{
939
940 switch (op)
941 {
942 case BINARYOP_PLUS:
943 return message("+");
944 case BINARYOP_MINUS:
945 return message("-");
946
947 default:
948 llassert(FALSE);
949 return message ("<binary OP Unknown>");
950 }
951}
952
953bool constraintExpr_similar (constraintExpr expr1, constraintExpr expr2)
954{
955 constraintExprKind kind;
956
957 llassert (expr1 != NULL);
958 llassert (expr2 != NULL);
959 if (expr1->kind != expr2->kind)
960 return FALSE;
961
962 kind = expr1->kind;
963
964 switch (kind)
965 {
966 case term:
967 return constraintTerm_similar (constraintExprData_termGetTerm(expr1->data),
968 constraintExprData_termGetTerm(expr2->data) );
969 /*@notreached@*/ break;
970
971 case unaryExpr:
972 if (constraintExprData_unaryExprGetOp (expr1->data) != constraintExprData_unaryExprGetOp (expr2->data) )
973 return FALSE;
974
975 return (constraintExpr_similar (
976 constraintExprData_unaryExprGetExpr (expr1->data),
977 constraintExprData_unaryExprGetExpr (expr2->data)
978 ));
979
980 case binaryexpr:
981 if (constraintExprData_binaryExprGetOp (expr1->data) != constraintExprData_binaryExprGetOp (expr2->data) )
982 return FALSE;
983
984 if (! constraintExpr_similar (constraintExprData_binaryExprGetExpr1 (expr1->data),
985 constraintExprData_binaryExprGetExpr1 (expr2->data)) )
986 return FALSE;
987
988 if (! constraintExpr_similar (constraintExprData_binaryExprGetExpr2 (expr1->data),
989 constraintExprData_binaryExprGetExpr2 (expr2->data)) )
990 return FALSE;
991 else
992 return TRUE;
993 /*@notreached@*/
994 break;
995
996 default:
997 llassert(FALSE);
998 return FALSE;
999 }
1000 /*@notreached@*/
1001 return FALSE;
1002}
1003
1004bool constraintExpr_same (constraintExpr expr1, constraintExpr expr2)
1005{
1006 constraintExprKind kind;
1007
1008 llassert (expr1 != NULL);
1009 llassert (expr2 != NULL);
1010 if (expr1->kind != expr2->kind)
1011 return FALSE;
1012
1013 kind = expr1->kind;
1014
1015 switch (kind)
1016 {
1017 case term:
1018 return constraintTerm_similar (constraintExprData_termGetTerm(expr1->data),
1019 constraintExprData_termGetTerm(expr2->data) );
1020 /*@notreached@*/ break;
1021
1022 case unaryExpr:
1023 if (constraintExprData_unaryExprGetOp (expr1->data) != constraintExprData_unaryExprGetOp (expr2->data) )
1024 return FALSE;
1025
1026 return (constraintExpr_same (
1027 constraintExprData_unaryExprGetExpr (expr1->data),
1028 constraintExprData_unaryExprGetExpr (expr2->data)
1029 ));
1030
1031
1032 case binaryexpr:
1033 if (constraintExprData_binaryExprGetOp (expr1->data) != constraintExprData_binaryExprGetOp (expr2->data) )
1034 return FALSE;
1035
1036 if (! constraintExpr_same (constraintExprData_binaryExprGetExpr1 (expr1->data),
1037 constraintExprData_binaryExprGetExpr1 (expr2->data)) )
1038 return FALSE;
1039
1040 if (! constraintExpr_same (constraintExprData_binaryExprGetExpr2 (expr1->data),
1041 constraintExprData_binaryExprGetExpr2 (expr2->data)) )
1042 return FALSE;
1043 else
1044 return TRUE;
1045 /*@notreached@*/ break;
1046
1047 default:
1048 llassert(FALSE);
1049 return FALSE;
1050 }
1051
1052 /*@notreached@*/
1053 BADEXIT;
1054}
1055
1056bool
1057constraintExpr_search (/*@observer@*/ constraintExpr c,
1058 /*@observer@*/ constraintExpr old)
1059{
1060 bool ret = FALSE;
1061 constraintExprKind kind;
1062 constraintExpr temp;
1063
1064 if (constraintExpr_similar (c, old))
1065 {
1066 DPRINTF (("Found %q", constraintExpr_unparse (old)));
1067 return TRUE;
1068 }
1069
1070 llassert (constraintExpr_isDefined (c) && constraintExpr_isDefined(old) );
1071
1072 if ( !(constraintExpr_isDefined (c) && constraintExpr_isDefined(old) ) )
1073 return FALSE;
1074
1075 kind = c->kind;
1076
1077 switch (kind)
1078 {
1079 case term:
1080 break;
1081 case unaryExpr:
1082 temp = constraintExprData_unaryExprGetExpr (c->data);
1083 ret = ret || constraintExpr_search (temp, old);
1084 break;
1085 case binaryexpr:
1086
1087 temp = constraintExprData_binaryExprGetExpr1 (c->data);
1088 ret = ret || constraintExpr_search(temp, old);
1089
1090 temp = constraintExprData_binaryExprGetExpr2 (c->data);
1091 ret = ret || constraintExpr_search(temp, old);
1092 break;
1093 default:
1094 llassert(FALSE);
1095 }
1096 return ret;
1097
1098}
1099
1100
1101/*@only@*/ constraintExpr constraintExpr_searchandreplace (/*@only@*/ /*@unique@*/ constraintExpr c, /*@temp@*/ constraintExpr old, /*@temp@*/ constraintExpr newExpr )
1102{
1103 constraintExprKind kind;
1104 constraintExpr temp;
1105 constraintExpr ret;
1106
1107 llassert(constraintExpr_isDefined (newExpr) && (constraintExpr_isDefined (old) && constraintExpr_isDefined(c) ) );
1108
1109 if ( constraintExpr_similar (c, old) )
1110 {
1111
1112 ctype newType, cType;
1113
1114
1115
1116
1117 ret = constraintExpr_copy (newExpr);
1118 llassert(constraintExpr_isDefined(ret) );
1119 /*drl if newExpr != NULL then ret will != NULL*/
1120
1121 DPRINTF((message ("Replacing %s with %s",
1122 constraintExpr_unparse(old), constraintExpr_unparse(newExpr)
1123 )));
1124
1125 if (constraintExpr_canGetCType(c) && constraintExpr_canGetCType(newExpr) )
1126 {
1127 cType = constraintExpr_getCType(c);
1128 newType = constraintExpr_getCType(newExpr);
1129
1130 if (ctype_match(cType,newType) )
1131 {
1132 DPRINTF(( message("constraintExpr_searchandreplace: replacing "
1133 " %s with type %s with %s with type %s",
1134 constraintExpr_print(c), ctype_unparse(cType),
1135 constraintExpr_print(newExpr), ctype_unparse(newType)
1136 )
1137 ));
1138
1139 ret->ct = TRUE;
1140 ret->origType = cType;
1141 }
1142 }
1143
1144 if (constraintExpr_hasMaxSet(c) )
1145 {
1146 if (constraintExpr_hasTypeChange(c))
1147 {
1148 DPRINTF(( message("constraintExpr_searchandreplace: encountered "
1149 "MaxSet with changed type %s ",
1150 constraintExpr_print(c) )
1151 ));
1152
1153 /*fix this with a conversation */
1154 ret = constraintExpr_adjustMaxSetForCast(ret, constraintExpr_getOrigType(c));
1155 }
1156 }
1157 constraintExpr_free(c);
1158
1159 return ret;
1160 }
1161
1162 kind = c->kind;
1163
1164 switch (kind)
1165 {
1166 case term:
1167 break;
1168 case unaryExpr:
1169 temp = constraintExprData_unaryExprGetExpr (c->data);
1170 temp = constraintExpr_copy(temp);
1171 temp = constraintExpr_searchandreplace (temp, old, newExpr);
1172 c->data = constraintExprData_unaryExprSetExpr (c->data, temp);
1173 break;
1174 case binaryexpr:
1175
1176 temp = constraintExprData_binaryExprGetExpr1 (c->data);
1177 temp = constraintExpr_copy(temp);
1178 temp = constraintExpr_searchandreplace (temp, old, newExpr);
1179 c->data = constraintExprData_binaryExprSetExpr1 (c->data, temp);
1180
1181 temp = constraintExprData_binaryExprGetExpr2 (c->data);
1182 temp = constraintExpr_copy(temp);
1183 temp = constraintExpr_searchandreplace (temp, old, newExpr);
1184 c->data = constraintExprData_binaryExprSetExpr2 (c->data, temp);
1185 break;
1186 default:
1187 llassert(FALSE);
1188 }
1189 return c;
1190}
1191
1192/*@notnull@*/ static constraintExpr constraintExpr_simplifyChildren (/*@returned@*/ /*@notnull@*/ constraintExpr c)
1193{
1194 constraintExprKind kind;
1195 constraintExpr temp;
1196
1197 kind = c->kind;
1198
1199 switch (kind)
1200 {
1201 case term:
1202 break;
1203 case unaryExpr:
1204 temp = constraintExprData_unaryExprGetExpr (c->data);
1205 temp = constraintExpr_copy(temp);
1206 temp = constraintExpr_simplify (temp);
1207 c->data = constraintExprData_unaryExprSetExpr (c->data, temp);
1208 break;
1209 case binaryexpr:
1210 DPRINTF((message("constraintExpr_simplfiyChildren: simplify binary expression: %s",constraintExpr_unparse(c) ) ) );
1211 temp = constraintExprData_binaryExprGetExpr1 (c->data);
1212 temp = constraintExpr_copy(temp);
1213 temp = constraintExpr_simplify (temp);
1214
1215 c->data = constraintExprData_binaryExprSetExpr1 (c->data, temp);
1216
1217 temp = constraintExprData_binaryExprGetExpr2 (c->data);
1218 temp = constraintExpr_copy(temp);
1219 temp = constraintExpr_simplify (temp);
1220
1221 c->data = constraintExprData_binaryExprSetExpr2 (c->data, temp);
1222 break;
1223 default:
1224 llassert(FALSE);
1225 }
1226 return c;
1227
1228}
1229
1230
1231constraintExpr constraintExpr_setFileloc (/*@returned@*/ constraintExpr c, fileloc loc) /*@modifies c @*/
1232{
1233 constraintTerm t;
1234 constraintExpr temp;
1235
1236 llassert(c != NULL);
1237
1238 switch (c->kind)
1239 {
1240 case term:
1241 t = constraintExprData_termGetTerm (c->data);
1242 t = constraintTerm_copy(t);
1243 t = constraintTerm_setFileloc (t, loc);
1244 c->data = constraintExprData_termSetTerm (c->data, t);
1245 break;
1246 case binaryexpr:
1247
1248 temp = constraintExprData_binaryExprGetExpr1 (c->data);
1249 temp = constraintExpr_copy(temp);
1250 temp = constraintExpr_setFileloc (temp, loc);
1251 c->data = constraintExprData_binaryExprSetExpr1 (c->data, temp);
1252
1253 temp = constraintExprData_binaryExprGetExpr2 (c->data);
1254 temp = constraintExpr_copy(temp);
1255 temp = constraintExpr_setFileloc (temp, loc);
1256 c->data = constraintExprData_binaryExprSetExpr2 (c->data, temp);
1257 break;
1258 case unaryExpr:
1259 temp = constraintExprData_unaryExprGetExpr (c->data);
1260 temp = constraintExpr_copy(temp);
1261 temp = constraintExpr_setFileloc (temp, loc);
1262 c->data = constraintExprData_unaryExprSetExpr (c->data, temp);
1263 break;
1264 }
1265 return c;
1266}
1267
1268static /*@only@*/ constraintExpr constraintExpr_simplifybinaryExpr (/*@only@*/ /*@notnull@*/ constraintExpr c)
1269{
1270 constraintExpr e1, e2;
1271 constraintExprBinaryOpKind op;
1272
1273 e1 = constraintExprData_binaryExprGetExpr1 (c->data);
1274 e2 = constraintExprData_binaryExprGetExpr2 (c->data);
1275
1276 if (constraintExpr_canGetValue (e1) && constraintExpr_canGetValue(e2) )
1277 {
1278 long i;
1279
1280 i = constraintExpr_getValue(e1) + constraintExpr_getValue (e2);
1281 constraintExpr_free(c);
1282 c = constraintExpr_makeIntLiteral (i);
1283 }
1284 else
1285 {
1286 op = constraintExprData_binaryExprGetOp (c->data);
1287 if (op == BINARYOP_MINUS)
1288 if (constraintExpr_similar(e1, e2) )
1289 {
1290 constraintExpr_free(c);
1291 c = constraintExpr_makeIntLiteral (0);
1292 }
1293 }
1294
1295 return c;
1296}
1297
1298/*
1299 this thing takes the lexpr and expr of a constraint and modifies lexpr
1300 and returns a (possiblly new) value for expr
1301*/
1302/* if lexpr is a binary express say x + y, we set lexpr to x and return a value for expr such as expr_old - y */
1303
1304/* the approach is a little Kludgy but seems to work. I should probably use something cleaner at some point ... */
1305
1306
1307/*@only@*/ constraintExpr constraintExpr_solveBinaryExpr (constraintExpr lexpr, /*@only@*/ constraintExpr expr)
1308{
1309 constraintExpr expr1, expr2;
1310 constraintExprBinaryOpKind op;
1311
1312 llassert(constraintExpr_isDefined (lexpr) && constraintExpr_isDefined (expr) );
1313
1314 if (lexpr->kind != binaryexpr)
1315 return expr;
1316
1317 expr2 = constraintExprData_binaryExprGetExpr2 (lexpr->data);
1318 expr1 = constraintExprData_binaryExprGetExpr1 (lexpr->data);
1319
1320 op = constraintExprData_binaryExprGetOp (lexpr->data);
1321
1322 expr1 = constraintExpr_copy(expr1);
1323 expr2 = constraintExpr_copy(expr2);
1324
1325 llassert(constraintExpr_isDefined (expr1) && constraintExpr_isDefined (expr2) );
1326
1327 /* drl possible problem : warning make sure this works */
1328
1329 lexpr->kind = expr1->kind;
1330 sfree (lexpr->data);
1331
1332 lexpr->data = copyExprData (expr1->data, expr1->kind);
1333 constraintExpr_free(expr1);
1334
1335 if (op == BINARYOP_PLUS)
1336 expr = constraintExpr_makeSubtractExpr (expr, expr2);
1337 else if (op == BINARYOP_MINUS)
1338 expr = constraintExpr_makeAddExpr (expr, expr2);
1339 else
1340 BADEXIT;
1341
1342
1343 return expr;
1344
1345 /*
1346 #warning this needs to be checked
1347 expr = constraintExpr_solveBinaryExpr (expr1, expr);
1348
1349 expr = constraintExpr_solveBinaryExpr (expr2, expr);
1350 return expr;
1351 */
1352}
1353
1354static /*@only@*/ constraintExpr constraintExpr_simplifyunaryExpr (/*@only@*/ constraintExpr c)
1355{
1356 constraintExpr exp;
1357
1358 llassert(constraintExpr_isDefined (c) );
1359 llassert (c->kind == unaryExpr);
1360
1361 DPRINTF ((message ("Doing constraintExpr_simplifyunaryExpr:%s", constraintExpr_unparse (c) ) ) );
1362
1363 if ((constraintExprData_unaryExprGetOp (c->data) != MAXSET) &&
1364 (constraintExprData_unaryExprGetOp (c->data) != MAXREAD) )
1365 {
1366 return c;
1367 }
1368
1369 exp = constraintExprData_unaryExprGetExpr (c->data);
1370 exp = constraintExpr_copy(exp);
1371
1372 llassert(constraintExpr_isDefined (exp) );
1373
1374 if (exp->kind == term)
1375 {
1376 constraintTerm cterm;
1377
1378 cterm = constraintExprData_termGetTerm (exp->data);
1379
1380 if (constraintTerm_isStringLiteral(cterm) )
1381 {
1382 cstring val;
1383 val = constraintTerm_getStringLiteral (cterm);
1384 if (constraintExprData_unaryExprGetOp (c->data) == MAXSET)
1385 {
1386 constraintExpr temp;
1387
1388 temp = constraintExpr_makeIntLiteral ((int)strlen (cstring_toCharsSafe(val) ) );
1389 cstring_free(val);
1390 constraintExpr_free(c);
1391 constraintExpr_free(exp);
1392
1393 return temp;
1394
1395 }
1396 if (constraintExprData_unaryExprGetOp (c->data) == MAXREAD)
1397 {
1398 constraintExpr temp;
1399
1400 temp = constraintExpr_makeIntLiteral ((int)strlen (cstring_toCharsSafe(val) ) );
1401 cstring_free(val);
1402 constraintExpr_free(c);
1403 constraintExpr_free(exp);
1404
1405 return temp;
1406 }
1407 BADEXIT;
1408 }
1409
1410 /* slight Kludge to hanlde var [] = { , , };
1411 ** type syntax I don't think this is sounds but it should be good
1412 ** enough. The C stanrad is very confusing about initialization
1413 ** -- DRL 7/25/01
1414 */
1415
1416 if (constraintTerm_isInitBlock(cterm) )
1417 {
1418 constraintExpr temp;
1419 int len;
1420
1421 len = constraintTerm_getInitBlockLength(cterm);
1422
1423 temp = constraintExpr_makeIntLiteral (len );
1424
1425 constraintExpr_free(c);
1426 DPRINTF(( message("Changed too %q", constraintExpr_print(temp)
1427 ) ));
1428 constraintExpr_free(exp);
1429 return temp;
1430 }
1431
1432 constraintExpr_free(exp);
1433 return c;
1434 }
1435
1436 if (exp->kind != binaryexpr)
1437 {
1438 constraintExpr_free(exp);
1439 return c;
1440 }
1441
1442 if (constraintExprData_binaryExprGetOp (exp->data) == BINARYOP_PLUS )
1443 {
1444
1445 /* if (constraintExpr_canGetValue (constraintExprData_binaryExprGetExpr2 (exp->data) ) ) */
1446 {
1447
1448 constraintExpr temp, temp2;
1449
1450 DPRINTF ((message ("Doing fancy simplification") ) );
1451
1452 temp = constraintExprData_binaryExprGetExpr2 (exp->data);
1453
1454 temp2 = constraintExprData_binaryExprGetExpr1 (exp->data);
1455
1456 temp2 = constraintExpr_copy(temp2);
1457 c->data = constraintExprData_unaryExprSetExpr (c->data, temp2);
1458
1459
1460 temp = constraintExpr_copy (temp);
1461
1462 c = constraintExpr_makeSubtractExpr (c, temp);
1463
1464 DPRINTF ((message ("Done fancy simplification:%s", constraintExpr_unparse (c) ) ) );
1465 }
1466 }
1467
1468 DPRINTF ((message ("constraintExpr_simplifyUnaryExpr: Done simplification:%s", constraintExpr_unparse (c) ) ) );
1469
1470 constraintExpr_free(exp);
1471 return c;
1472}
1473
1474
1475/*@only@*/ constraintExpr constraintExpr_simplify (/*@only@*/ constraintExpr c)
1476{
1477 constraintExprKind kind;
1478 constraintExpr ret;
1479 constraintTerm t;
1480
1481 DPRINTF ((message ("Doing constraintExpr_simplify:%s", constraintExpr_unparse (c) ) ) );
1482
1483
1484
1485 llassert ( constraintExpr_isDefined (c) );
1486 if (constraintExpr_isUndefined (c) )
1487 {
1488 return constraintExpr_undefined;
1489 }
1490
1491 ret = constraintExpr_copy(c);
1492 llassert(constraintExpr_isDefined (ret) );
1493
1494 constraintExpr_free(c);
1495
1496 ret = constraintExpr_simplifyChildren (ret);
1497
1498 ret = constraintExpr_combineConstants (ret);
1499
1500 ret = constraintExpr_simplifyChildren (ret);
1501
1502
1503 kind = ret->kind;
1504
1505 switch (kind)
1506 {
1507 case term:
1508 t = constraintExprData_termGetTerm (ret->data);
1509 t = constraintTerm_copy(t);
1510 t = constraintTerm_simplify (t);
1511 ret->data = constraintExprData_termSetTerm (ret->data, t);
1512 break;
1513 case unaryExpr:
1514 ret = constraintExpr_simplifyunaryExpr (ret);
1515 break;
1516 case binaryexpr:
1517 ret = constraintExpr_simplifybinaryExpr (ret);
1518 break;
1519 default:
1520 llassert(FALSE);
1521 }
1522
1523 DPRINTF ((message ("constraintExpr_simplify returning :%s", constraintExpr_unparse (ret) ) ) );
1524 return ret;
1525
1526}
1527
1528/*@only@*/
1529cstring constraintExpr_unparse (/*@temp@*/ /*@observer@*/ constraintExpr ex) /*@*/
1530{
1531 cstring st;
1532 constraintExprKind kind;
1533
1534 llassert (ex != NULL);
1535
1536 kind = ex->kind;
1537
1538 switch (kind)
1539 {
1540 case term:
1541
1542 if (context_getFlag (FLG_PARENCONSTRAINT) )
1543 {
1544 st = message ("(%q) ", constraintTerm_unparse (constraintExprData_termGetTerm (ex->data)));
1545 }
1546 else
1547 {
1548 st = message ("%q", constraintTerm_unparse (constraintExprData_termGetTerm (ex->data)));
1549 }
1550 break;
1551 case unaryExpr:
1552 st = message ("%q(%q)",
1553 constraintExprUnaryOpKind_print (constraintExprData_unaryExprGetOp (ex->data) ),
1554 constraintExpr_unparse (constraintExprData_unaryExprGetExpr (ex->data) )
1555 );
1556 break;
1557 case binaryexpr:
1558 if (context_getFlag (FLG_PARENCONSTRAINT) )
1559 {
1560 st = message ("(%q) %q (%q)",
1561 constraintExpr_unparse (constraintExprData_binaryExprGetExpr1 (ex->data) ),
1562 constraintExprBinaryOpKind_print (constraintExprData_binaryExprGetOp (ex->data)
1563 ),
1564 constraintExpr_unparse (constraintExprData_binaryExprGetExpr2 (ex->data) )
1565 );
1566 }
1567 else
1568 {
1569 st = message ("%q %q %q",
1570 constraintExpr_unparse (constraintExprData_binaryExprGetExpr1 (ex->data) ),
1571 constraintExprBinaryOpKind_print (constraintExprData_binaryExprGetOp (ex->data)
1572 ),
1573 constraintExpr_unparse (constraintExprData_binaryExprGetExpr2 (ex->data) )
1574 );
1575 }
1576
1577 break;
1578 default:
1579 llassert(FALSE);
1580 st = message ("error");
1581
1582 }
1583
1584 DPRINTF((message ("constraintExpr_unparse: '%s'",st) ) );
1585 return st;
1586}
1587
1588constraintExpr constraintExpr_doSRefFixBaseParam (/*@returned@*/ constraintExpr expr, exprNodeList arglist)
1589{
1590 constraintTerm Term;
1591 constraintExprKind kind;
1592 constraintExpr expr1, expr2;
1593 constraintExprData data;
1594 llassert (expr != NULL);
1595
1596 data = expr->data;
1597
1598 kind = expr->kind;
1599
1600 switch (kind)
1601 {
1602 case term:
1603 Term = constraintExprData_termGetTerm(data);
1604 Term = constraintTerm_copy(Term);
1605
1606 Term = constraintTerm_doSRefFixBaseParam (Term, arglist);
1607 data = constraintExprData_termSetTerm(data, Term);
1608 break;
1609 case unaryExpr:
1610 expr1 = constraintExprData_unaryExprGetExpr (data);
1611 expr1 = constraintExpr_copy(expr1);
1612
1613 expr1 = constraintExpr_doSRefFixBaseParam (expr1, arglist);
1614 data = constraintExprData_unaryExprSetExpr (data, expr1);
1615 break;
1616 case binaryexpr:
1617 expr1 = constraintExprData_binaryExprGetExpr1 (data);
1618 expr2 = constraintExprData_binaryExprGetExpr2 (data);
1619
1620 expr1 = constraintExpr_copy(expr1);
1621 expr2 = constraintExpr_copy(expr2);
1622
1623 expr1 = constraintExpr_doSRefFixBaseParam (expr1, arglist);
1624 data = constraintExprData_binaryExprSetExpr1 (data, expr1);
1625 expr2 = constraintExpr_doSRefFixBaseParam (expr2, arglist);
1626 data = constraintExprData_binaryExprSetExpr2 (data, expr2);
1627
1628 break;
1629 default:
1630 llassert(FALSE);
1631 data = NULL;
1632 }
1633 return expr;
1634}
1635
1636/*
1637/ *@only@* / constraintExpr constraintExpr_doSRefFixInvarConstraint (/ *@only@* / constraintExpr expr, sRef s, ctype ct)
1638{
1639 constraintExprKind kind;
1640 constraintExpr expr1, expr2;
1641 constraintExprData data;
1642 llassert (expr != NULL);
1643
1644 data = expr->data;
1645
1646 kind = expr->kind;
1647
1648 switch (kind)
1649 {
1650 case term:
1651 expr = doSRefFixInvarConstraintTerm (expr, s, ct);
1652 break;
1653 case unaryExpr:
1654 expr1 = constraintExprData_unaryExprGetExpr (data);
1655 expr1 = constraintExpr_copy(expr1);
1656 expr1 = constraintExpr_doSRefFixInvarConstraint (expr1, s, ct);
1657 data = constraintExprData_unaryExprSetExpr (data, expr1);
1658 break;
1659 case binaryexpr:
1660 expr1 = constraintExprData_binaryExprGetExpr1 (data);
1661 expr2 = constraintExprData_binaryExprGetExpr2 (data);
1662
1663 expr1 = constraintExpr_copy(expr1);
1664 expr2 = constraintExpr_copy(expr2);
1665
1666 expr1 = constraintExpr_doSRefFixInvarConstraint (expr1, s, ct);
1667 data = constraintExprData_binaryExprSetExpr1 (data, expr1);
1668 expr2 = constraintExpr_doSRefFixInvarConstraint (expr2, s, ct);
1669 data = constraintExprData_binaryExprSetExpr2 (data, expr2);
1670
1671 break;
1672 default:
1673 llassert(FALSE);
1674 data = NULL;
1675 }
1676 return expr;
1677}
1678*/
1679
1680/*@only@*/ constraintExpr constraintExpr_doSRefFixConstraintParam (/*@only@*/ constraintExpr expr, exprNodeList arglist) /*@modifies expr@*/
1681{
1682 constraintExprKind kind;
1683 constraintExpr expr1, expr2;
1684 constraintExprData data;
1685 llassert (expr != NULL);
1686
1687 data = expr->data;
1688
1689 kind = expr->kind;
1690
1691 switch (kind)
1692 {
1693 case term:
1694 expr = doSRefFixConstraintParamTerm (expr, arglist);
1695 break;
1696 case unaryExpr:
1697 expr1 = constraintExprData_unaryExprGetExpr (data);
1698 expr1 = constraintExpr_copy(expr1);
1699 expr1 = constraintExpr_doSRefFixConstraintParam (expr1, arglist);
1700 data = constraintExprData_unaryExprSetExpr (data, expr1);
1701 break;
1702 case binaryexpr:
1703 expr1 = constraintExprData_binaryExprGetExpr1 (data);
1704 expr2 = constraintExprData_binaryExprGetExpr2 (data);
1705
1706 expr1 = constraintExpr_copy(expr1);
1707 expr2 = constraintExpr_copy(expr2);
1708
1709 expr1 = constraintExpr_doSRefFixConstraintParam (expr1, arglist);
1710 data = constraintExprData_binaryExprSetExpr1 (data, expr1);
1711 expr2 = constraintExpr_doSRefFixConstraintParam (expr2, arglist);
1712 data = constraintExprData_binaryExprSetExpr2 (data, expr2);
1713
1714 break;
1715 default:
1716 llassert(FALSE);
1717 data = NULL;
1718 }
1719 return expr;
1720}
1721
1722/*@only@*/ constraintExpr constraintExpr_doFixResult (/*@only@*/ constraintExpr expr, /*@observer@*/ exprNode fcnCall)
1723{
1724 constraintExprKind kind;
1725 constraintExpr expr1, expr2;
1726 constraintExprData data;
1727 llassert (expr != NULL);
1728
1729 data = expr->data;
1730
1731 kind = expr->kind;
1732
1733 switch (kind)
1734 {
1735 case term:
1736 expr = doFixResultTerm (expr, fcnCall);
1737 break;
1738 case unaryExpr:
1739 expr1 = constraintExprData_unaryExprGetExpr (data);
1740 expr1 = constraintExpr_copy(expr1);
1741
1742 expr1 = constraintExpr_doFixResult (expr1, fcnCall);
1743 data = constraintExprData_unaryExprSetExpr (data, expr1);
1744 break;
1745 case binaryexpr:
1746 expr1 = constraintExprData_binaryExprGetExpr1 (data);
1747 expr2 = constraintExprData_binaryExprGetExpr2 (data);
1748
1749 expr1 = constraintExpr_copy(expr1);
1750 expr2 = constraintExpr_copy(expr2);
1751
1752 expr1 = constraintExpr_doFixResult (expr1, fcnCall);
1753 data = constraintExprData_binaryExprSetExpr1 (data, expr1);
1754 expr2 = constraintExpr_doFixResult (expr2, fcnCall);
1755 data = constraintExprData_binaryExprSetExpr2 (data, expr2);
1756
1757 break;
1758 default:
1759 llassert(FALSE);
1760 data = NULL;
1761 }
1762 return expr;
1763}
1764
1765cstring constraintExpr_print (constraintExpr expr) /*@*/
1766{
1767 return constraintExpr_unparse (expr);
1768}
1769
1770bool constraintExpr_hasMaxSet (constraintExpr expr) /*@*/
1771{
1772 cstring t;
1773
1774 t = constraintExpr_unparse(expr);
1775
1776 if (cstring_containsLit(t, "maxSet") != NULL )
1777 {
1778 cstring_free(t);
1779 return (TRUE);
1780 }
1781 else
1782 {
1783 cstring_free(t);
1784 return FALSE;
1785 }
1786}
1787
1788
1789
1790 /*returns 1 0 -1 like strcmp
1791 1 => expr1 > expr2
1792 0 => expr1 == expr2
1793 -1 => expr1 < expr2
1794 */
1795
1796int constraintExpr_compare (constraintExpr expr1, constraintExpr expr2)
1797{
1798 long value1, value2;
1799
1800 if (constraintExpr_similar (expr1, expr2) )
1801 {
1802 return 0;
1803 }
1804
1805 value1 = constraintExpr_getValue(expr1);
1806 value2 = constraintExpr_getValue(expr2);
1807
1808 if (value1 > value2)
1809 return 1;
1810
1811 if (value1 == value2)
1812 return 0;
1813
1814 else
1815 return -1;
1816}
1817
1818long constraintExpr_getValue (constraintExpr expr)
1819{
1820 llassert (constraintExpr_isDefined(expr) );
1821 llassert (expr->kind == term);
1822
1823 return (constraintTerm_getValue (constraintExprData_termGetTerm (expr->data)));
1824}
1825
1826bool constraintExpr_canGetValue (constraintExpr expr)
1827{
1828 llassert ( constraintExpr_isDefined (expr) );
1829 if (constraintExpr_isUndefined (expr) )
1830 {
1831 return FALSE;
1832 }
1833
1834 switch (expr->kind)
1835 {
1836 case term:
1837 return constraintTerm_canGetValue (constraintExprData_termGetTerm (expr->data) );
1838 default:
1839 return FALSE;
1840
1841 }
1842
1843 BADEXIT;
1844}
1845
1846fileloc constraintExpr_getFileloc (constraintExpr expr)
1847{
1848 constraintExpr e;
1849constraintTerm t;
1850 constraintExprKind kind;
1851
1852 llassert ( constraintExpr_isDefined (expr) );
1853 if (constraintExpr_isUndefined (expr) )
1854 {
1855 return fileloc_undefined;
1856 }
1857
1858
1859 kind = expr->kind;
1860
1861 switch (kind)
1862 {
1863 case term:
1864 t = constraintExprData_termGetTerm (expr->data);
1865 return (constraintTerm_getFileloc (t) );
1866 /*@notreached@*/
1867 break;
1868 case unaryExpr:
1869 e = constraintExprData_unaryExprGetExpr (expr->data);
1870 return (constraintExpr_getFileloc (e) );
1871 /*@notreached@*/
1872 break;
1873 case binaryexpr:
1874 e = constraintExprData_binaryExprGetExpr1 (expr->data);
1875 return (constraintExpr_getFileloc (e) );
1876 /*@notreached@*/
1877 break;
1878 }
1879 llassert (FALSE);
1880 return (fileloc_undefined);
1881}
1882
1883/*drl moved from constriantTerm.c 5/20/001*/
1884static /*@only@*/ constraintExpr
1885doFixResultTerm (/*@only@*/ constraintExpr e, /*@exposed@*/ exprNode fcnCall)
1886{
1887 constraintTerm t;
1888 sRef s;
1889 constraintExprData data;
1890 constraintExprKind kind;
1891 constraintExpr ret;
1892
1893 llassert (constraintExpr_isDefined (e) );
1894
1895 data = e->data;
1896 kind = e->kind;
1897
1898 llassert (kind == term);
1899
1900 t = constraintExprData_termGetTerm (data);
1901 llassert (constraintTerm_isDefined (t));
1902
1903 ret = e;
1904
1905 switch (constraintTerm_getKind (t))
1906 {
1907 case CTT_EXPR:
1908 case CTT_INTLITERAL:
1909 break;
1910
1911 case CTT_SREF:
1912 s = constraintTerm_getSRef(t);
1913 if (sRef_isResult (s))
1914 {
1915 ret = constraintExpr_makeExprNode(fcnCall);
1916 constraintExpr_free(e);
1917 e = NULL;
1918 }
1919 else
1920 {
1921 e = NULL;
1922 }
1923 break;
1924 default:
1925 BADEXIT;
1926 }
1927
1928 return ret;
1929
1930}
1931
1932#if 0
1933
1934/*to be used for structure checking */
1935
1936/ *@only@* / static constraintExpr
1937doSRefFixInvarConstraintTerm (/ *@only@* / constraintExpr e,
1938 sRef s, ctype ct)
1939{
1940 constraintTerm t;
1941
1942 constraintExprData data = e->data;
1943
1944 constraintExprKind kind = e->kind;
1945
1946 constraintExpr ret;
1947
1948 llassert(kind == term);
1949
1950 t = constraintExprData_termGetTerm (data);
1951 llassert (constraintTerm_isDefined(t) );
1952
1953 ret = e;
1954
1955 DPRINTF (("Fixing: %s", constraintExpr_print (e)));
1956
1957 switch (constraintTerm_getKind(t))
1958 {
1959 case CTT_EXPR:
1960 DPRINTF((message ("%q @ %q ", constraintTerm_unparse(t),
1961 fileloc_unparse (constraintTerm_getFileloc(t) ) ) ));
1962 break;
1963 case CTT_INTLITERAL:
1964 DPRINTF((message (" %q ", constraintTerm_unparse (t)) ));
1965 break;
1966
1967 case CTT_SREF:
1968 / * evans 2001-07-24: constants should use the original term * /
1969 if (!constraintTerm_canGetValue (t))
1970 {
1971 sRef snew;
1972 DPRINTF ((message("Doing sRef_fixInvarConstraint for %q ",
1973 constraintTerm_unparse (t) ) ));
1974
1975 snew = fixSref (ct, s, constraintTerm_getSRef(t));
1976
1977 ret = constraintExpr_makeTermsRef(snew);
1978
1979 constraintExpr_free (e);
1980
1981 DPRINTF (( message("After Doing sRef_fixConstraintParam constraintExpr is %q ",
1982 constraintExpr_print (ret) ) ));
1983 / *@-branchstate@* /
1984 } / *@=branchstate@* /
1985
1986 break;
1987 default:
1988 BADEXIT;
1989 }
1990
1991 return ret;
1992
1993}
1994#endif
1995
1996/*drl moved from constriantTerm.c 5/20/001*/
1997/*@only@*/ static constraintExpr
1998doSRefFixConstraintParamTerm (/*@only@*/ constraintExpr e, /*@observer@*/ /*@temp@*/ exprNodeList arglist)
1999{
2000 constraintTerm t;
2001
2002 constraintExprData data;
2003
2004 constraintExprKind kind;
2005
2006 constraintExpr ret;
2007
2008
2009 llassert(constraintExpr_isDefined (e) );
2010
2011 data = e->data;
2012
2013 kind = e->kind;
2014
2015
2016
2017 llassert(kind == term);
2018
2019 t = constraintExprData_termGetTerm (data);
2020 llassert (constraintTerm_isDefined(t) );
2021
2022 ret = e;
2023
2024 DPRINTF (("Fixing: %s", constraintExpr_print (e)));
2025
2026 switch (constraintTerm_getKind(t))
2027 {
2028 case CTT_EXPR:
2029 DPRINTF((message ("%q @ %q ", constraintTerm_unparse(t),
2030 fileloc_unparse (constraintTerm_getFileloc(t) ) ) ));
2031 break;
2032 case CTT_INTLITERAL:
2033 DPRINTF((message (" %q ", constraintTerm_unparse (t)) ));
2034 break;
2035 case CTT_SREF:
2036 /* evans 2001-07-24: constants should use the original term */
2037 if (!constraintTerm_canGetValue (t))
2038 {
2039 DPRINTF ((message("Doing sRef_fixConstraintParam for %q ",
2040 constraintTerm_unparse (t) ) ));
2041 ret = sRef_fixConstraintParam (constraintTerm_getSRef(t), arglist);
2042
2043 constraintExpr_free (e);
2044
2045 DPRINTF (( message("After Doing sRef_fixConstraintParam constraintExpr is %q ",
2046 constraintExpr_print (ret) ) ));
2047 /*@-branchstate@*/
2048 } /*@=branchstate@*/
2049
2050 break;
2051 default:
2052 BADEXIT;
2053 }
2054
2055 return ret;
2056
2057}
2058
2059
2060#if 0
2061bool constraintExpr_includesTerm (constraintExpr expr, constraintTerm term)
2062{
2063 if (constraintTerm_hasTerm (expr->term, term) )
2064 return TRUE;
2065
2066 if ((expr->expr) != NULL)
2067 {
2068 return ( constraintExpr_includesTerm (expr->expr, term) );
2069 }
2070 return FALSE;
2071
2072}
2073#endif
2074
2075/*drl added 6/11/01 */
2076bool constraintExpr_isBinaryExpr (/*@observer@*/ constraintExpr c)
2077{
2078
2079 llassert(constraintExpr_isDefined (c) );
2080
2081 if ( ! (constraintExpr_isDefined (c) ) )
2082 return FALSE;
2083
2084 if (c->kind == binaryexpr)
2085 return TRUE;
2086
2087 else
2088 return FALSE;
2089}
2090
2091/*drl added 8/08/001 */
2092bool constraintExpr_isTerm (/*@observer@*/ constraintExpr c) /*@*/
2093{
2094 llassert(constraintExpr_isDefined (c) );
2095
2096 if (c->kind == term)
2097 return TRUE;
2098
2099 else
2100 return FALSE;
2101}
2102
2103/*@observer@*/ /*@temp@*/ constraintTerm constraintExpr_getTerm ( /*@temp@*/ /*@observer@*/ constraintExpr c) /*@*/
2104{
2105 constraintTerm term;
2106
2107 llassert(constraintExpr_isDefined (c) );
2108
2109 llassert(constraintExpr_isTerm(c) );
2110
2111 term = constraintExprData_termGetTerm(c->data);
2112
2113 return term;
2114}
2115
2116static void binaryExpr_dump (/*@observer@*/ constraintExprData data, FILE *f)
2117{
2118 constraintExpr expr1;
2119 constraintExprBinaryOpKind binaryOp;
2120 constraintExpr expr2;
2121
2122
2123 binaryOp = constraintExprData_binaryExprGetOp (data);
2124
2125 fprintf(f, "%d\n", (int) binaryOp);
2126
2127 expr1 = constraintExprData_binaryExprGetExpr1 (data);
2128 expr2 = constraintExprData_binaryExprGetExpr2 (data);
2129
2130 fprintf(f, "e1\n");
2131
2132 constraintExpr_dump(expr1, f);
2133
2134 fprintf(f, "e2\n");
2135 constraintExpr_dump(expr2, f);
2136}
2137
2138
2139static constraintExpr binaryExpr_undump (FILE *f)
2140{
2141 constraintExpr expr1;
2142 constraintExprBinaryOpKind binaryOp;
2143 constraintExpr expr2;
2144
2145 constraintExpr ret;
2146
2147
2148
2149 char * str;
2150 char * os;
2151
2152 os = mstring_create (MAX_DUMP_LINE_LENGTH);
2153
2154 str = fgets(os, MAX_DUMP_LINE_LENGTH, f);
2155
2156 if (! mstring_isDefined(str) )
2157 {
2158 llfatalbug(message("Library file is corrupted") );
2159 }
2160
2161 binaryOp = (constraintExprBinaryOpKind) reader_getInt(&str);
2162
2163 str = fgets(os, MAX_DUMP_LINE_LENGTH, f);
2164
2165 if (! mstring_isDefined(str) )
2166 {
2167 llfatalbug(message("Library file is corrupted") );
2168 }
2169
2170 reader_checkChar (&str, 'e');
2171 reader_checkChar (&str, '1');
2172
2173 expr1 = constraintExpr_undump (f);
2174
2175 str = fgets(os, MAX_DUMP_LINE_LENGTH, f);
2176
2177 reader_checkChar (&str, 'e');
2178 reader_checkChar (&str, '2');
2179
2180 expr2 = constraintExpr_undump (f);
2181
2182 ret = constraintExpr_makeBinaryOpConstraintExpr (expr1, expr2);
2183 ret->data = constraintExprData_binaryExprSetOp(ret->data, binaryOp);
2184
2185 free(os);
2186 return ret;
2187}
2188
2189
2190
2191static void unaryExpr_dump (/*@observer@*/ constraintExprData data, FILE *f)
2192{
2193
2194 constraintExpr expr;
2195 constraintExprUnaryOpKind unaryOp;
2196
2197 unaryOp = constraintExprData_unaryExprGetOp (data);
2198
2199 fprintf(f, "%d\n", (int) unaryOp);
2200
2201 expr = constraintExprData_unaryExprGetExpr (data);
2202
2203 constraintExpr_dump(expr, f);
2204}
2205
2206static constraintExpr unaryExpr_undump ( FILE *f)
2207{
2208
2209 constraintExpr expr;
2210 constraintExprUnaryOpKind unaryOp;
2211 constraintExpr ret;
2212
2213 char * str;
2214 char * os;
2215
2216 str = mstring_create (MAX_DUMP_LINE_LENGTH);
2217 os = str;
2218 str = fgets(os, MAX_DUMP_LINE_LENGTH, f);
2219
2220 if (! mstring_isDefined(str) )
2221 {
2222 llfatalbug(message("Library file is corrupted") );
2223 }
2224
2225 unaryOp = (constraintExprUnaryOpKind) reader_getInt(&str);
2226
2227 expr = constraintExpr_undump (f);
2228
2229 ret = constraintExpr_makeUnaryOp (expr, unaryOp);
2230
2231 free(os);
2232
2233 return ret;
2234}
2235
2236void constraintExpr_dump (/*@observer@*/ constraintExpr expr, FILE *f)
2237{
2238 constraintExprKind kind;
2239 constraintTerm t;
2240
2241
2242 llassert(constraintExpr_isDefined(expr) );
2243
2244 DPRINTF((message("constraintExpr_dump:: dumping constraintExpr %s",
2245 constraintExpr_unparse(expr)
2246 ) ));
2247
2248 kind = expr->kind;
2249
2250 fprintf(f,"%d\n", (int) kind);
2251
2252 switch (kind)
2253 {
2254 case term:
2255 t = constraintExprData_termGetTerm (expr->data);
2256 constraintTerm_dump (t, f);
2257 break;
2258 case unaryExpr:
2259 unaryExpr_dump (expr->data, f);
2260 break;
2261 case binaryexpr:
2262 binaryExpr_dump (expr->data, f);
2263 break;
2264 }
2265}
2266
2267/*@only@*/ constraintExpr constraintExpr_undump (FILE *f)
2268{
2269 constraintExprKind kind;
2270 constraintTerm t;
2271 constraintExpr ret;
2272
2273 char * s;
2274 char * os;
2275
2276 s = mstring_create (MAX_DUMP_LINE_LENGTH);
2277
2278 os = s;
2279
2280 s = fgets(os, MAX_DUMP_LINE_LENGTH, f);
2281
2282 if (! mstring_isDefined(s) )
2283 {
2284 llfatalbug(message("Library file is corrupted") );
2285 }
2286
2287 kind = (constraintExprKind) reader_getInt(&s);
2288
2289 free (os);
2290
2291 switch (kind)
2292 {
2293 case term:
2294 t = constraintTerm_undump (f);
2295 ret = constraintExpr_makeTerm(t);
2296 break;
2297 case unaryExpr:
2298 ret = unaryExpr_undump (f);
2299 break;
2300 case binaryexpr:
2301 ret = binaryExpr_undump (f);
2302 break;
2303 }
2304
2305 return ret;
2306
2307}
2308
2309int constraintExpr_getDepth (constraintExpr ex)
2310{
2311 int ret;
2312
2313 constraintExprKind kind;
2314
2315 llassert (ex != NULL);
2316
2317 kind = ex->kind;
2318
2319 switch (kind)
2320 {
2321 case term:
2322 ret = 1;
2323 break;
2324 case unaryExpr:
2325 ret = constraintExpr_getDepth (constraintExprData_unaryExprGetExpr (ex->data) );
2326 ret++;
2327
2328 break;
2329 case binaryexpr:
2330 ret = 0;
2331 ret = constraintExpr_getDepth (constraintExprData_binaryExprGetExpr1 (ex->data) );
2332
2333 ret++;
2334
2335 ret += constraintExpr_getDepth (constraintExprData_binaryExprGetExpr2 (ex->data) );
2336
2337 break;
2338 default:
2339 BADEXIT;
2340 }
2341
2342 return ret;
2343}
2344
2345
2346bool constraintExpr_canGetCType (constraintExpr e) /*@*/
2347{
2348 if (constraintExpr_isUndefined(e) )
2349 return FALSE;
2350
2351 if (e->kind == term)
2352 {
2353 return TRUE;
2354 }
2355 else
2356 {
2357 DPRINTF(( message("constraintExpr_canGetCType: can't get type for %s ",
2358 constraintExpr_print(e) ) ));
2359 return FALSE;
2360 }
2361}
2362
2363ctype constraintExpr_getCType (constraintExpr e) /*@*/
2364{
2365 constraintTerm t;
2366
2367 llassert(constraintExpr_isDefined(e) );
2368
2369 llassert(constraintExpr_canGetCType(e) );
2370
2371 switch (e->kind)
2372 {
2373 case term:
2374 t = constraintExprData_termGetTerm (e->data);
2375 return (constraintTerm_getCType(t) );
2376 /* assume that a unary expression will be an int ... */
2377 case unaryExpr:
2378 return ctype_signedintegral;
2379
2380 /* drl for just return type of first operand */
2381 case binaryexpr:
2382 return (
2383 constraintExpr_getCType
2384 (constraintExprData_binaryExprGetExpr1 (e->data) )
2385 );
2386 default:
2387 BADEXIT;
2388 }
2389 BADEXIT;
2390}
2391
2392/* drl add 10-5-001 */
2393
2394static bool constraintExpr_hasTypeChange(constraintExpr e)
2395{
2396 llassert(constraintExpr_isDefined(e) );
2397 if (constraintExpr_isDefined((e)) && (e->ct == TRUE) )
2398 {
2399 return TRUE;
2400 }
2401
2402 if (e->kind == unaryExpr)
2403 {
2404 if (constraintExprData_unaryExprGetOp (e->data) == MAXSET)
2405 {
2406 constraintExpr ce;
2407
2408 ce = constraintExprData_unaryExprGetExpr(e->data);
2409
2410 return (constraintExpr_hasTypeChange(ce) );
2411 }
2412
2413 }
2414 return FALSE;
2415}
2416
2417/* drl add 10-5-001 */
2418
2419static ctype constraintExpr_getOrigType (constraintExpr e)
2420{
2421
2422 llassert(constraintExpr_isDefined(e) );
2423 llassert(constraintExpr_hasTypeChange(e) );
2424
2425
2426 if (e->ct == TRUE)
2427 {
2428 return e->origType;
2429 }
2430
2431 if (e->kind == unaryExpr)
2432 {
2433 if (constraintExprData_unaryExprGetOp (e->data) == MAXSET)
2434 {
2435 constraintExpr ce;
2436
2437 ce = constraintExprData_unaryExprGetExpr(e->data);
2438
2439 return (constraintExpr_getOrigType(ce) );
2440 }
2441
2442 }
2443
2444 BADEXIT;
2445}
2446
2447/*drl added these around 10/18/001*/
2448
2449static /*@only@*/ constraintExpr constraintExpr_div (/*@only@*/ constraintExpr e, /*@unused@*/ ctype ct)
2450{
2451 return e;
2452}
2453
2454
2455/*@access exprNode@*/
2456static /*@only@*/ constraintExpr constraintTerm_simpleDivTypeExprNode(/*@only@*/ constraintExpr e, ctype ct)
2457{
2458 exprData data;
2459 exprNode t1, t2, expr;
2460 lltok tok;
2461 constraintTerm t;
2462
2463 llassert(constraintExpr_isDefined(e) );
2464
2465 DPRINTF((
2466 message("constraintTerm_simpleDivTypeExprNode e=%s, ct=%s",
2467 constraintExpr_print(e), ctype_unparse(ct)
2468 )
2469 ));
2470
2471 t = constraintExprData_termGetTerm(e->data);
2472
2473 expr = constraintTerm_getExprNode(t);
2474
2475 llassert(constraintExpr_isDefined(e) );
2476 llassert(exprNode_isDefined(expr) );
2477
2478 if (expr->kind == XPR_OP)
2479 {
2480 data = expr->edata;
2481
2482 t1 = exprData_getOpA (data);
2483 t2 = exprData_getOpB (data);
2484 tok = exprData_getOpTok (data);
2485 if (lltok_isMult(tok) )
2486 {
2487 llassert(exprNode_isDefined(t1) && exprNode_isDefined(t2) );
2488 /*drl 3/2/2003 we know this from the fact that it's a
2489 multiplication operation...*/
2490
2491 if ((t1->kind == XPR_SIZEOF) || (t1->kind == XPR_SIZEOFT) )
2492 {
2493 ctype ct2;
2494
2495 if (t1->kind == XPR_SIZEOFT)
2496 {
2497 ct2 = qtype_getType (exprData_getType (t1->edata));
2498 }
2499 else
2500 {
2501 exprNode tempE;
2502
2503 tempE = exprData_getSingle (t1->edata);
2504
2505 ct2 = exprNode_getType (tempE);
2506 }
2507 if (ctype_match (ctype_makePointer(ct2), ct) )
2508 {
2509 /* this is a bit sloopy but ... */
2510 constraintExpr_free(e);
2511 return constraintExpr_makeExprNode(t2);
2512 }
2513 }
2514
2515
2516 else if ((t2->kind == XPR_SIZEOF) || (t2->kind == XPR_SIZEOFT) )
2517 {
2518 ctype ct2;
2519
2520 if (t2->kind == XPR_SIZEOFT)
2521 {
2522 ct2 = qtype_getType (exprData_getType (t2->edata));
2523 }
2524 else
2525 {
2526 exprNode exprTemp;
2527 exprData eDTemp;
2528
2529 exprTemp = exprData_getSingle (t2->edata);
2530
2531 llassert(exprNode_isDefined(exprTemp) );
2532 eDTemp = exprTemp->edata;
2533
2534 ct2 = qtype_getType (exprData_getType(eDTemp ) );
2535
2536 }
2537 if (ctype_match (ctype_makePointer(ct2),ct) )
2538 {
2539 /*a bit of a sloopy way to do this but... */
2540 constraintExpr_free(e);
2541 return constraintExpr_makeExprNode(t1);
2542 }
2543 }
2544 else
2545 {
2546 /*empty*/
2547 }
2548
2549 }
2550 }
2551 return (constraintExpr_div (e, ct) );
2552}
2553/*@noaccess exprNode@*/
2554
2555static /*@only@*/ constraintExpr simpleDivType (/*@only@*/ constraintExpr e, ctype ct)
2556{
2557 DPRINTF(( (message("simpleDiv got %s ", constraintExpr_unparse(e) ) )
2558 ));
2559
2560 llassert(constraintExpr_isDefined(e) );
2561
2562 switch (e->kind)
2563 {
2564 case term:
2565
2566 {
2567 constraintTerm t;
2568
2569 t = constraintExprData_termGetTerm(e->data);
2570
2571
2572 if (constraintTerm_isExprNode (t) )
2573 {
2574 return constraintTerm_simpleDivTypeExprNode(e, ct);
2575
2576 /* search for * size of ct and remove */
2577 }
2578 return constraintExpr_div (e, ct);
2579 }
2580
2581 case binaryexpr:
2582 {
2583 constraintExpr temp;
2584
2585 temp = constraintExprData_binaryExprGetExpr1 (e->data);
2586 temp = constraintExpr_copy(temp);
2587 temp = simpleDivType (temp, ct);
2588
2589 e->data = constraintExprData_binaryExprSetExpr1 (e->data, temp);
2590
2591 temp = constraintExprData_binaryExprGetExpr2 (e->data);
2592 temp = constraintExpr_copy(temp);
2593 temp = simpleDivType (temp, ct);
2594 e->data = constraintExprData_binaryExprSetExpr2 (e->data, temp);
2595
2596 DPRINTF(( (message("simpleDiv binaryexpr returning %s ", constraintExpr_unparse(e) ) )
2597 ));
2598
2599 return e;
2600 }
2601 case unaryExpr:
2602 return constraintExpr_div (e, ct);
2603
2604 default:
2605 BADEXIT;
2606 }
2607}
2608
2609static /*@only@*/ constraintExpr constraintExpr_adjustMaxSetForCast(/*@only@*/ constraintExpr e, ctype ct)
2610{
2611
2612 DPRINTF(( (message("constraintExpr_adjustMaxSetForCast got %s ", constraintExpr_unparse(e) ) )
2613 ));
2614
2615 e = constraintExpr_makeIncConstraintExpr(e);
2616
2617 e = constraintExpr_simplify(e);
2618
2619
2620 e = simpleDivType (e, ct);
2621
2622 e = constraintExpr_makeDecConstraintExpr(e);
2623
2624 e = constraintExpr_simplify(e);
2625
2626 DPRINTF(( (message("constraintExpr_adjustMaxSetForCast returning %s ", constraintExpr_unparse(e) ) )
2627 ));
2628
2629 return e;
2630}
2631
2632
2633bool constraintExpr_isConstantOnly ( constraintExpr e )
2634{
2635 DPRINTF(( (message("constraintExpr_isConstantOnly %s ",
2636 constraintExpr_unparse(e) ) )
2637 ));
2638
2639 llassert(constraintExpr_isDefined(e) );
2640
2641 switch (e->kind)
2642 {
2643 case term:
2644 {
2645 constraintTerm t;
2646
2647 t = constraintExprData_termGetTerm(e->data);
2648
2649
2650 if (constraintTerm_isConstantOnly (t) )
2651 {
2652 return TRUE;
2653 }
2654 else
2655 {
2656 return FALSE;
2657 }
2658 }
2659
2660 case binaryexpr:
2661 {
2662 constraintExpr temp1, temp2;
2663
2664 temp1 = constraintExprData_binaryExprGetExpr1 (e->data);
2665
2666 temp2 = constraintExprData_binaryExprGetExpr2 (e->data);
2667
2668 if (constraintExpr_isConstantOnly(temp1) &&
2669 constraintExpr_isConstantOnly(temp2) )
2670 {
2671 return TRUE;
2672 }
2673 else
2674 {
2675 return FALSE;
2676 }
2677 }
2678
2679 case unaryExpr:
2680 {
2681 constraintExpr temp;
2682
2683 temp = constraintExprData_unaryExprGetExpr (e->data );
2684
2685 if (constraintExpr_isConstantOnly(temp) )
2686 {
2687 return TRUE;
2688 }
2689 else
2690 {
2691 return FALSE;
2692 }
2693 }
2694 default:
2695 BADEXIT;
2696 }
2697}
2698
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