Fix accessing a method's fields from Python
[deliverable/binutils-gdb.git] / gdb / expprint.c
1 /* Print in infix form a struct expression.
2
3 Copyright (C) 1986-2020 Free Software Foundation, Inc.
4
5 This file is part of GDB.
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
19
20 #include "defs.h"
21 #include "symtab.h"
22 #include "gdbtypes.h"
23 #include "expression.h"
24 #include "value.h"
25 #include "language.h"
26 #include "parser-defs.h"
27 #include "user-regs.h" /* For user_reg_map_regnum_to_name. */
28 #include "target.h"
29 #include "block.h"
30 #include "objfiles.h"
31 #include "valprint.h"
32 #include "cli/cli-style.h"
33
34 #include <ctype.h>
35
36 void
37 print_expression (struct expression *exp, struct ui_file *stream)
38 {
39 int pc = 0;
40
41 print_subexp (exp, &pc, stream, PREC_NULL);
42 }
43
44 /* Print the subexpression of EXP that starts in position POS, on STREAM.
45 PREC is the precedence of the surrounding operator;
46 if the precedence of the main operator of this subexpression is less,
47 parentheses are needed here. */
48
49 void
50 print_subexp (struct expression *exp, int *pos,
51 struct ui_file *stream, enum precedence prec)
52 {
53 exp->language_defn->expression_ops ()->print_subexp (exp, pos, stream,
54 prec);
55 }
56
57 /* See parser-defs.h. */
58
59 void
60 print_subexp_funcall (struct expression *exp, int *pos,
61 struct ui_file *stream)
62 {
63 unsigned nargs = longest_to_int (exp->elts[*pos].longconst);
64 (*pos) += 2;
65 print_subexp (exp, pos, stream, PREC_SUFFIX);
66 fputs_filtered (" (", stream);
67 for (unsigned tem = 0; tem < nargs; tem++)
68 {
69 if (tem != 0)
70 fputs_filtered (", ", stream);
71 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
72 }
73 fputs_filtered (")", stream);
74 }
75
76 /* Standard implementation of print_subexp for use in language_defn
77 vectors. */
78 void
79 print_subexp_standard (struct expression *exp, int *pos,
80 struct ui_file *stream, enum precedence prec)
81 {
82 unsigned tem;
83 const struct op_print *op_print_tab;
84 int pc;
85 unsigned nargs;
86 const char *op_str;
87 int assign_modify = 0;
88 enum exp_opcode opcode;
89 enum precedence myprec = PREC_NULL;
90 /* Set to 1 for a right-associative operator. */
91 int assoc = 0;
92 struct value *val;
93 char *tempstr = NULL;
94
95 op_print_tab = exp->language_defn->opcode_print_table ();
96 pc = (*pos)++;
97 opcode = exp->elts[pc].opcode;
98 switch (opcode)
99 {
100 /* Common ops */
101
102 case OP_TYPE:
103 (*pos) += 2;
104 type_print (exp->elts[pc + 1].type, "", stream, 0);
105 return;
106
107 case OP_SCOPE:
108 myprec = PREC_PREFIX;
109 assoc = 0;
110 fputs_filtered (exp->elts[pc + 1].type->name (), stream);
111 fputs_filtered ("::", stream);
112 nargs = longest_to_int (exp->elts[pc + 2].longconst);
113 (*pos) += 4 + BYTES_TO_EXP_ELEM (nargs + 1);
114 fputs_filtered (&exp->elts[pc + 3].string, stream);
115 return;
116
117 case OP_LONG:
118 {
119 struct value_print_options opts;
120
121 get_no_prettyformat_print_options (&opts);
122 (*pos) += 3;
123 value_print (value_from_longest (exp->elts[pc + 1].type,
124 exp->elts[pc + 2].longconst),
125 stream, &opts);
126 }
127 return;
128
129 case OP_FLOAT:
130 {
131 struct value_print_options opts;
132
133 get_no_prettyformat_print_options (&opts);
134 (*pos) += 3;
135 value_print (value_from_contents (exp->elts[pc + 1].type,
136 exp->elts[pc + 2].floatconst),
137 stream, &opts);
138 }
139 return;
140
141 case OP_VAR_VALUE:
142 {
143 const struct block *b;
144
145 (*pos) += 3;
146 b = exp->elts[pc + 1].block;
147 if (b != NULL
148 && BLOCK_FUNCTION (b) != NULL
149 && BLOCK_FUNCTION (b)->print_name () != NULL)
150 {
151 fputs_filtered (BLOCK_FUNCTION (b)->print_name (), stream);
152 fputs_filtered ("::", stream);
153 }
154 fputs_filtered (exp->elts[pc + 2].symbol->print_name (), stream);
155 }
156 return;
157
158 case OP_VAR_MSYM_VALUE:
159 {
160 (*pos) += 3;
161 fputs_filtered (exp->elts[pc + 2].msymbol->print_name (), stream);
162 }
163 return;
164
165 case OP_FUNC_STATIC_VAR:
166 {
167 tem = longest_to_int (exp->elts[pc + 1].longconst);
168 (*pos) += 3 + BYTES_TO_EXP_ELEM (tem + 1);
169 fputs_filtered (&exp->elts[pc + 1].string, stream);
170 }
171 return;
172
173 case OP_VAR_ENTRY_VALUE:
174 {
175 (*pos) += 2;
176 fprintf_filtered (stream, "%s@entry",
177 exp->elts[pc + 1].symbol->print_name ());
178 }
179 return;
180
181 case OP_LAST:
182 (*pos) += 2;
183 fprintf_filtered (stream, "$%d",
184 longest_to_int (exp->elts[pc + 1].longconst));
185 return;
186
187 case OP_REGISTER:
188 {
189 const char *name = &exp->elts[pc + 2].string;
190
191 (*pos) += 3 + BYTES_TO_EXP_ELEM (exp->elts[pc + 1].longconst + 1);
192 fprintf_filtered (stream, "$%s", name);
193 return;
194 }
195
196 case OP_BOOL:
197 (*pos) += 2;
198 fprintf_filtered (stream, "%s",
199 longest_to_int (exp->elts[pc + 1].longconst)
200 ? "TRUE" : "FALSE");
201 return;
202
203 case OP_INTERNALVAR:
204 (*pos) += 2;
205 fprintf_filtered (stream, "$%s",
206 internalvar_name (exp->elts[pc + 1].internalvar));
207 return;
208
209 case OP_FUNCALL:
210 print_subexp_funcall (exp, pos, stream);
211 return;
212
213 case OP_NAME:
214 nargs = longest_to_int (exp->elts[pc + 1].longconst);
215 (*pos) += 3 + BYTES_TO_EXP_ELEM (nargs + 1);
216 fputs_filtered (&exp->elts[pc + 2].string, stream);
217 return;
218
219 case OP_STRING:
220 {
221 struct value_print_options opts;
222
223 nargs = longest_to_int (exp->elts[pc + 1].longconst);
224 (*pos) += 3 + BYTES_TO_EXP_ELEM (nargs + 1);
225 /* LA_PRINT_STRING will print using the current repeat count threshold.
226 If necessary, we can temporarily set it to zero, or pass it as an
227 additional parameter to LA_PRINT_STRING. -fnf */
228 get_user_print_options (&opts);
229 LA_PRINT_STRING (stream, builtin_type (exp->gdbarch)->builtin_char,
230 (gdb_byte *) &exp->elts[pc + 2].string, nargs,
231 NULL, 0, &opts);
232 }
233 return;
234
235 case OP_OBJC_NSSTRING: /* Objective-C Foundation Class
236 NSString constant. */
237 {
238 struct value_print_options opts;
239
240 nargs = longest_to_int (exp->elts[pc + 1].longconst);
241 (*pos) += 3 + BYTES_TO_EXP_ELEM (nargs + 1);
242 fputs_filtered ("@\"", stream);
243 get_user_print_options (&opts);
244 LA_PRINT_STRING (stream, builtin_type (exp->gdbarch)->builtin_char,
245 (gdb_byte *) &exp->elts[pc + 2].string, nargs,
246 NULL, 0, &opts);
247 fputs_filtered ("\"", stream);
248 }
249 return;
250
251 case OP_OBJC_MSGCALL:
252 { /* Objective C message (method) call. */
253 (*pos) += 3;
254 nargs = longest_to_int (exp->elts[pc + 2].longconst);
255 fprintf_unfiltered (stream, "[");
256 print_subexp (exp, pos, stream, PREC_SUFFIX);
257 gdb::unique_xmalloc_ptr<char> selector
258 = target_read_string (exp->elts[pc + 1].longconst, 1024);
259 if (selector == nullptr)
260 error (_("bad selector"));
261 if (nargs)
262 {
263 char *s, *nextS;
264
265 s = selector.get ();
266 for (tem = 0; tem < nargs; tem++)
267 {
268 nextS = strchr (s, ':');
269 gdb_assert (nextS); /* Make sure we found ':'. */
270 *nextS = '\0';
271 fprintf_unfiltered (stream, " %s: ", s);
272 s = nextS + 1;
273 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
274 }
275 }
276 else
277 {
278 fprintf_unfiltered (stream, " %s", selector.get ());
279 }
280 fprintf_unfiltered (stream, "]");
281 return;
282 }
283
284 case OP_ARRAY:
285 (*pos) += 3;
286 nargs = longest_to_int (exp->elts[pc + 2].longconst);
287 nargs -= longest_to_int (exp->elts[pc + 1].longconst);
288 nargs++;
289 tem = 0;
290 if (exp->elts[pc + 4].opcode == OP_LONG
291 && exp->elts[pc + 5].type
292 == builtin_type (exp->gdbarch)->builtin_char
293 && exp->language_defn->la_language == language_c)
294 {
295 /* Attempt to print C character arrays using string syntax.
296 Walk through the args, picking up one character from each
297 of the OP_LONG expression elements. If any array element
298 does not match our expection of what we should find for
299 a simple string, revert back to array printing. Note that
300 the last expression element is an explicit null terminator
301 byte, which doesn't get printed. */
302 tempstr = (char *) alloca (nargs);
303 pc += 4;
304 while (tem < nargs)
305 {
306 if (exp->elts[pc].opcode != OP_LONG
307 || exp->elts[pc + 1].type
308 != builtin_type (exp->gdbarch)->builtin_char)
309 {
310 /* Not a simple array of char, use regular array
311 printing. */
312 tem = 0;
313 break;
314 }
315 else
316 {
317 tempstr[tem++] =
318 longest_to_int (exp->elts[pc + 2].longconst);
319 pc += 4;
320 }
321 }
322 }
323 if (tem > 0)
324 {
325 struct value_print_options opts;
326
327 get_user_print_options (&opts);
328 LA_PRINT_STRING (stream, builtin_type (exp->gdbarch)->builtin_char,
329 (gdb_byte *) tempstr, nargs - 1, NULL, 0, &opts);
330 (*pos) = pc;
331 }
332 else
333 {
334 fputs_filtered (" {", stream);
335 for (tem = 0; tem < nargs; tem++)
336 {
337 if (tem != 0)
338 {
339 fputs_filtered (", ", stream);
340 }
341 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
342 }
343 fputs_filtered ("}", stream);
344 }
345 return;
346
347 case TERNOP_COND:
348 if ((int) prec > (int) PREC_COMMA)
349 fputs_filtered ("(", stream);
350 /* Print the subexpressions, forcing parentheses
351 around any binary operations within them.
352 This is more parentheses than are strictly necessary,
353 but it looks clearer. */
354 print_subexp (exp, pos, stream, PREC_HYPER);
355 fputs_filtered (" ? ", stream);
356 print_subexp (exp, pos, stream, PREC_HYPER);
357 fputs_filtered (" : ", stream);
358 print_subexp (exp, pos, stream, PREC_HYPER);
359 if ((int) prec > (int) PREC_COMMA)
360 fputs_filtered (")", stream);
361 return;
362
363 case TERNOP_SLICE:
364 print_subexp (exp, pos, stream, PREC_SUFFIX);
365 fputs_filtered ("(", stream);
366 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
367 fputs_filtered (opcode == TERNOP_SLICE ? " : " : " UP ", stream);
368 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
369 fputs_filtered (")", stream);
370 return;
371
372 case STRUCTOP_STRUCT:
373 tem = longest_to_int (exp->elts[pc + 1].longconst);
374 (*pos) += 3 + BYTES_TO_EXP_ELEM (tem + 1);
375 print_subexp (exp, pos, stream, PREC_SUFFIX);
376 fputs_filtered (".", stream);
377 fputs_filtered (&exp->elts[pc + 2].string, stream);
378 return;
379
380 /* Will not occur for Modula-2. */
381 case STRUCTOP_PTR:
382 tem = longest_to_int (exp->elts[pc + 1].longconst);
383 (*pos) += 3 + BYTES_TO_EXP_ELEM (tem + 1);
384 print_subexp (exp, pos, stream, PREC_SUFFIX);
385 fputs_filtered ("->", stream);
386 fputs_filtered (&exp->elts[pc + 2].string, stream);
387 return;
388
389 case STRUCTOP_MEMBER:
390 print_subexp (exp, pos, stream, PREC_SUFFIX);
391 fputs_filtered (".*", stream);
392 print_subexp (exp, pos, stream, PREC_SUFFIX);
393 return;
394
395 case STRUCTOP_MPTR:
396 print_subexp (exp, pos, stream, PREC_SUFFIX);
397 fputs_filtered ("->*", stream);
398 print_subexp (exp, pos, stream, PREC_SUFFIX);
399 return;
400
401 case BINOP_SUBSCRIPT:
402 print_subexp (exp, pos, stream, PREC_SUFFIX);
403 fputs_filtered ("[", stream);
404 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
405 fputs_filtered ("]", stream);
406 return;
407
408 case UNOP_POSTINCREMENT:
409 print_subexp (exp, pos, stream, PREC_SUFFIX);
410 fputs_filtered ("++", stream);
411 return;
412
413 case UNOP_POSTDECREMENT:
414 print_subexp (exp, pos, stream, PREC_SUFFIX);
415 fputs_filtered ("--", stream);
416 return;
417
418 case UNOP_CAST:
419 (*pos) += 2;
420 if ((int) prec > (int) PREC_PREFIX)
421 fputs_filtered ("(", stream);
422 fputs_filtered ("(", stream);
423 type_print (exp->elts[pc + 1].type, "", stream, 0);
424 fputs_filtered (") ", stream);
425 print_subexp (exp, pos, stream, PREC_PREFIX);
426 if ((int) prec > (int) PREC_PREFIX)
427 fputs_filtered (")", stream);
428 return;
429
430 case UNOP_CAST_TYPE:
431 if ((int) prec > (int) PREC_PREFIX)
432 fputs_filtered ("(", stream);
433 fputs_filtered ("(", stream);
434 print_subexp (exp, pos, stream, PREC_PREFIX);
435 fputs_filtered (") ", stream);
436 print_subexp (exp, pos, stream, PREC_PREFIX);
437 if ((int) prec > (int) PREC_PREFIX)
438 fputs_filtered (")", stream);
439 return;
440
441 case UNOP_DYNAMIC_CAST:
442 case UNOP_REINTERPRET_CAST:
443 fputs_filtered (opcode == UNOP_DYNAMIC_CAST ? "dynamic_cast"
444 : "reinterpret_cast", stream);
445 fputs_filtered ("<", stream);
446 print_subexp (exp, pos, stream, PREC_PREFIX);
447 fputs_filtered ("> (", stream);
448 print_subexp (exp, pos, stream, PREC_PREFIX);
449 fputs_filtered (")", stream);
450 return;
451
452 case UNOP_MEMVAL:
453 (*pos) += 2;
454 if ((int) prec > (int) PREC_PREFIX)
455 fputs_filtered ("(", stream);
456 if (exp->elts[pc + 1].type->code () == TYPE_CODE_FUNC
457 && exp->elts[pc + 3].opcode == OP_LONG)
458 {
459 struct value_print_options opts;
460
461 /* We have a minimal symbol fn, probably. It's encoded
462 as a UNOP_MEMVAL (function-type) of an OP_LONG (int, address).
463 Swallow the OP_LONG (including both its opcodes); ignore
464 its type; print the value in the type of the MEMVAL. */
465 (*pos) += 4;
466 val = value_at_lazy (exp->elts[pc + 1].type,
467 (CORE_ADDR) exp->elts[pc + 5].longconst);
468 get_no_prettyformat_print_options (&opts);
469 value_print (val, stream, &opts);
470 }
471 else
472 {
473 fputs_filtered ("{", stream);
474 type_print (exp->elts[pc + 1].type, "", stream, 0);
475 fputs_filtered ("} ", stream);
476 print_subexp (exp, pos, stream, PREC_PREFIX);
477 }
478 if ((int) prec > (int) PREC_PREFIX)
479 fputs_filtered (")", stream);
480 return;
481
482 case UNOP_MEMVAL_TYPE:
483 if ((int) prec > (int) PREC_PREFIX)
484 fputs_filtered ("(", stream);
485 fputs_filtered ("{", stream);
486 print_subexp (exp, pos, stream, PREC_PREFIX);
487 fputs_filtered ("} ", stream);
488 print_subexp (exp, pos, stream, PREC_PREFIX);
489 if ((int) prec > (int) PREC_PREFIX)
490 fputs_filtered (")", stream);
491 return;
492
493 case BINOP_ASSIGN_MODIFY:
494 opcode = exp->elts[pc + 1].opcode;
495 (*pos) += 2;
496 myprec = PREC_ASSIGN;
497 assoc = 1;
498 assign_modify = 1;
499 op_str = "???";
500 for (tem = 0; op_print_tab[tem].opcode != OP_NULL; tem++)
501 if (op_print_tab[tem].opcode == opcode)
502 {
503 op_str = op_print_tab[tem].string;
504 break;
505 }
506 if (op_print_tab[tem].opcode != opcode)
507 /* Not found; don't try to keep going because we don't know how
508 to interpret further elements. */
509 error (_("Invalid expression"));
510 break;
511
512 /* C++ ops */
513
514 case OP_THIS:
515 ++(*pos);
516 if (exp->language_defn->name_of_this () != NULL)
517 fputs_filtered (exp->language_defn->name_of_this (), stream);
518 else
519 fprintf_styled (stream, metadata_style.style (),
520 _("<language %s has no 'this'>"),
521 exp->language_defn->name ());
522 return;
523
524 /* Modula-2 ops */
525
526 case MULTI_SUBSCRIPT:
527 (*pos) += 2;
528 nargs = longest_to_int (exp->elts[pc + 1].longconst);
529 print_subexp (exp, pos, stream, PREC_SUFFIX);
530 fprintf_unfiltered (stream, " [");
531 for (tem = 0; tem < nargs; tem++)
532 {
533 if (tem != 0)
534 fprintf_unfiltered (stream, ", ");
535 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
536 }
537 fprintf_unfiltered (stream, "]");
538 return;
539
540 case BINOP_VAL:
541 (*pos) += 2;
542 fprintf_unfiltered (stream, "VAL(");
543 type_print (exp->elts[pc + 1].type, "", stream, 0);
544 fprintf_unfiltered (stream, ",");
545 print_subexp (exp, pos, stream, PREC_PREFIX);
546 fprintf_unfiltered (stream, ")");
547 return;
548
549 case TYPE_INSTANCE:
550 {
551 type_instance_flags flags
552 = (type_instance_flag_value) longest_to_int (exp->elts[pc + 1].longconst);
553 LONGEST count = exp->elts[pc + 2].longconst;
554
555 /* The FLAGS. */
556 (*pos)++;
557 /* The COUNT. */
558 (*pos)++;
559 fputs_unfiltered ("TypeInstance(", stream);
560 while (count-- > 0)
561 {
562 type_print (exp->elts[(*pos)++].type, "", stream, 0);
563 if (count > 0)
564 fputs_unfiltered (",", stream);
565 }
566 fputs_unfiltered (",", stream);
567 /* Ending COUNT and ending TYPE_INSTANCE. */
568 (*pos) += 2;
569 print_subexp (exp, pos, stream, PREC_PREFIX);
570
571 if (flags & TYPE_INSTANCE_FLAG_CONST)
572 fputs_unfiltered (",const", stream);
573 if (flags & TYPE_INSTANCE_FLAG_VOLATILE)
574 fputs_unfiltered (",volatile", stream);
575
576 fputs_unfiltered (")", stream);
577 return;
578 }
579
580 case OP_RANGE:
581 {
582 enum range_flag range_flag;
583
584 range_flag = (enum range_flag)
585 longest_to_int (exp->elts[pc + 1].longconst);
586 *pos += 2;
587
588 if (range_flag & RANGE_HIGH_BOUND_EXCLUSIVE)
589 fputs_filtered ("EXCLUSIVE_", stream);
590 fputs_filtered ("RANGE(", stream);
591 if (!(range_flag & RANGE_LOW_BOUND_DEFAULT))
592 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
593 fputs_filtered ("..", stream);
594 if (!(range_flag & RANGE_HIGH_BOUND_DEFAULT))
595 print_subexp (exp, pos, stream, PREC_ABOVE_COMMA);
596 fputs_filtered (")", stream);
597 return;
598 }
599
600 /* Default ops */
601
602 default:
603 op_str = "???";
604 for (tem = 0; op_print_tab[tem].opcode != OP_NULL; tem++)
605 if (op_print_tab[tem].opcode == opcode)
606 {
607 op_str = op_print_tab[tem].string;
608 myprec = op_print_tab[tem].precedence;
609 assoc = op_print_tab[tem].right_assoc;
610 break;
611 }
612 if (op_print_tab[tem].opcode != opcode)
613 /* Not found; don't try to keep going because we don't know how
614 to interpret further elements. For example, this happens
615 if opcode is OP_TYPE. */
616 error (_("Invalid expression"));
617 }
618
619 /* Note that PREC_BUILTIN will always emit parentheses. */
620 if ((int) myprec < (int) prec)
621 fputs_filtered ("(", stream);
622 if ((int) opcode > (int) BINOP_END)
623 {
624 if (assoc)
625 {
626 /* Unary postfix operator. */
627 print_subexp (exp, pos, stream, PREC_SUFFIX);
628 fputs_filtered (op_str, stream);
629 }
630 else
631 {
632 /* Unary prefix operator. */
633 fputs_filtered (op_str, stream);
634 if (myprec == PREC_BUILTIN_FUNCTION)
635 fputs_filtered ("(", stream);
636 print_subexp (exp, pos, stream, PREC_PREFIX);
637 if (myprec == PREC_BUILTIN_FUNCTION)
638 fputs_filtered (")", stream);
639 }
640 }
641 else
642 {
643 /* Binary operator. */
644 /* Print left operand.
645 If operator is right-associative,
646 increment precedence for this operand. */
647 print_subexp (exp, pos, stream,
648 (enum precedence) ((int) myprec + assoc));
649 /* Print the operator itself. */
650 if (assign_modify)
651 fprintf_filtered (stream, " %s= ", op_str);
652 else if (op_str[0] == ',')
653 fprintf_filtered (stream, "%s ", op_str);
654 else
655 fprintf_filtered (stream, " %s ", op_str);
656 /* Print right operand.
657 If operator is left-associative,
658 increment precedence for this operand. */
659 print_subexp (exp, pos, stream,
660 (enum precedence) ((int) myprec + !assoc));
661 }
662
663 if ((int) myprec < (int) prec)
664 fputs_filtered (")", stream);
665 }
666
667 /* Return the operator corresponding to opcode OP as
668 a string. NULL indicates that the opcode was not found in the
669 current language table. */
670 const char *
671 op_string (enum exp_opcode op)
672 {
673 int tem;
674 const struct op_print *op_print_tab;
675
676 op_print_tab = current_language->opcode_print_table ();
677 for (tem = 0; op_print_tab[tem].opcode != OP_NULL; tem++)
678 if (op_print_tab[tem].opcode == op)
679 return op_print_tab[tem].string;
680 return NULL;
681 }
682
683 /* Support for dumping the raw data from expressions in a human readable
684 form. */
685
686 static int dump_subexp_body (struct expression *exp, struct ui_file *, int);
687
688 /* Default name for the standard operator OPCODE (i.e., one defined in
689 the definition of enum exp_opcode). */
690
691 const char *
692 op_name (enum exp_opcode opcode)
693 {
694 switch (opcode)
695 {
696 default:
697 {
698 static char buf[30];
699
700 xsnprintf (buf, sizeof (buf), "<unknown %d>", opcode);
701 return buf;
702 }
703 #define OP(name) \
704 case name: \
705 return #name ;
706 #include "std-operator.def"
707 #undef OP
708 }
709 }
710
711 /* Print a raw dump of expression EXP to STREAM.
712 NOTE, if non-NULL, is printed as extra explanatory text. */
713
714 void
715 dump_raw_expression (struct expression *exp, struct ui_file *stream,
716 const char *note)
717 {
718 int elt;
719 char *eltscan;
720 int eltsize;
721
722 fprintf_filtered (stream, "Dump of expression @ ");
723 gdb_print_host_address (exp, stream);
724 if (note)
725 fprintf_filtered (stream, ", %s:", note);
726 fprintf_filtered (stream, "\n\tLanguage %s, %d elements, %ld bytes each.\n",
727 exp->language_defn->name (), exp->nelts,
728 (long) sizeof (union exp_element));
729 fprintf_filtered (stream, "\t%5s %20s %16s %s\n", "Index", "Opcode",
730 "Hex Value", "String Value");
731 for (elt = 0; elt < exp->nelts; elt++)
732 {
733 fprintf_filtered (stream, "\t%5d ", elt);
734
735 const char *opcode_name = op_name (exp->elts[elt].opcode);
736 fprintf_filtered (stream, "%20s ", opcode_name);
737
738 print_longest (stream, 'd', 0, exp->elts[elt].longconst);
739 fprintf_filtered (stream, " ");
740
741 for (eltscan = (char *) &exp->elts[elt],
742 eltsize = sizeof (union exp_element);
743 eltsize-- > 0;
744 eltscan++)
745 {
746 fprintf_filtered (stream, "%c",
747 isprint (*eltscan) ? (*eltscan & 0xFF) : '.');
748 }
749 fprintf_filtered (stream, "\n");
750 }
751 }
752
753 /* Dump the subexpression of prefix expression EXP whose operator is at
754 position ELT onto STREAM. Returns the position of the next
755 subexpression in EXP. */
756
757 int
758 dump_subexp (struct expression *exp, struct ui_file *stream, int elt)
759 {
760 static int indent = 0;
761 int i;
762
763 fprintf_filtered (stream, "\n");
764 fprintf_filtered (stream, "\t%5d ", elt);
765
766 for (i = 1; i <= indent; i++)
767 fprintf_filtered (stream, " ");
768 indent += 2;
769
770 fprintf_filtered (stream, "%-20s ", op_name (exp->elts[elt].opcode));
771
772 elt = dump_subexp_body (exp, stream, elt);
773
774 indent -= 2;
775
776 return elt;
777 }
778
779 /* Dump the operands of prefix expression EXP whose opcode is at
780 position ELT onto STREAM. Returns the position of the next
781 subexpression in EXP. */
782
783 static int
784 dump_subexp_body (struct expression *exp, struct ui_file *stream, int elt)
785 {
786 return exp->language_defn->expression_ops ()->dump_subexp_body (exp, stream,
787 elt);
788 }
789
790 /* See parser-defs.h. */
791
792 int
793 dump_subexp_body_funcall (struct expression *exp,
794 struct ui_file *stream, int elt)
795 {
796 int nargs = longest_to_int (exp->elts[elt].longconst);
797 fprintf_filtered (stream, "Number of args: %d", nargs);
798 elt += 2;
799
800 for (int i = 1; i <= nargs + 1; i++)
801 elt = dump_subexp (exp, stream, elt);
802
803 return elt;
804 }
805
806 /* Default value for subexp_body in exp_descriptor vector. */
807
808 int
809 dump_subexp_body_standard (struct expression *exp,
810 struct ui_file *stream, int elt)
811 {
812 int opcode = exp->elts[elt++].opcode;
813
814 switch (opcode)
815 {
816 case TERNOP_COND:
817 case TERNOP_SLICE:
818 elt = dump_subexp (exp, stream, elt);
819 /* FALL THROUGH */
820 case BINOP_ADD:
821 case BINOP_SUB:
822 case BINOP_MUL:
823 case BINOP_DIV:
824 case BINOP_REM:
825 case BINOP_MOD:
826 case BINOP_LSH:
827 case BINOP_RSH:
828 case BINOP_LOGICAL_AND:
829 case BINOP_LOGICAL_OR:
830 case BINOP_BITWISE_AND:
831 case BINOP_BITWISE_IOR:
832 case BINOP_BITWISE_XOR:
833 case BINOP_EQUAL:
834 case BINOP_NOTEQUAL:
835 case BINOP_LESS:
836 case BINOP_GTR:
837 case BINOP_LEQ:
838 case BINOP_GEQ:
839 case BINOP_REPEAT:
840 case BINOP_ASSIGN:
841 case BINOP_COMMA:
842 case BINOP_SUBSCRIPT:
843 case BINOP_EXP:
844 case BINOP_MIN:
845 case BINOP_MAX:
846 case BINOP_INTDIV:
847 case BINOP_ASSIGN_MODIFY:
848 case BINOP_VAL:
849 case BINOP_CONCAT:
850 case BINOP_END:
851 case STRUCTOP_MEMBER:
852 case STRUCTOP_MPTR:
853 elt = dump_subexp (exp, stream, elt);
854 /* FALL THROUGH */
855 case UNOP_NEG:
856 case UNOP_LOGICAL_NOT:
857 case UNOP_COMPLEMENT:
858 case UNOP_IND:
859 case UNOP_ADDR:
860 case UNOP_PREINCREMENT:
861 case UNOP_POSTINCREMENT:
862 case UNOP_PREDECREMENT:
863 case UNOP_POSTDECREMENT:
864 case UNOP_SIZEOF:
865 case UNOP_ALIGNOF:
866 case UNOP_PLUS:
867 case UNOP_CAP:
868 case UNOP_CHR:
869 case UNOP_ORD:
870 case UNOP_ABS:
871 case UNOP_FLOAT:
872 case UNOP_HIGH:
873 case UNOP_MAX:
874 case UNOP_MIN:
875 case UNOP_ODD:
876 case UNOP_TRUNC:
877 elt = dump_subexp (exp, stream, elt);
878 break;
879 case OP_LONG:
880 fprintf_filtered (stream, "Type @");
881 gdb_print_host_address (exp->elts[elt].type, stream);
882 fprintf_filtered (stream, " (");
883 type_print (exp->elts[elt].type, NULL, stream, 0);
884 fprintf_filtered (stream, "), value %ld (0x%lx)",
885 (long) exp->elts[elt + 1].longconst,
886 (long) exp->elts[elt + 1].longconst);
887 elt += 3;
888 break;
889 case OP_FLOAT:
890 fprintf_filtered (stream, "Type @");
891 gdb_print_host_address (exp->elts[elt].type, stream);
892 fprintf_filtered (stream, " (");
893 type_print (exp->elts[elt].type, NULL, stream, 0);
894 fprintf_filtered (stream, "), value ");
895 print_floating (exp->elts[elt + 1].floatconst,
896 exp->elts[elt].type, stream);
897 elt += 3;
898 break;
899 case OP_VAR_VALUE:
900 fprintf_filtered (stream, "Block @");
901 gdb_print_host_address (exp->elts[elt].block, stream);
902 fprintf_filtered (stream, ", symbol @");
903 gdb_print_host_address (exp->elts[elt + 1].symbol, stream);
904 fprintf_filtered (stream, " (%s)",
905 exp->elts[elt + 1].symbol->print_name ());
906 elt += 3;
907 break;
908 case OP_VAR_MSYM_VALUE:
909 fprintf_filtered (stream, "Objfile @");
910 gdb_print_host_address (exp->elts[elt].objfile, stream);
911 fprintf_filtered (stream, ", msymbol @");
912 gdb_print_host_address (exp->elts[elt + 1].msymbol, stream);
913 fprintf_filtered (stream, " (%s)",
914 exp->elts[elt + 1].msymbol->print_name ());
915 elt += 3;
916 break;
917 case OP_VAR_ENTRY_VALUE:
918 fprintf_filtered (stream, "Entry value of symbol @");
919 gdb_print_host_address (exp->elts[elt].symbol, stream);
920 fprintf_filtered (stream, " (%s)",
921 exp->elts[elt].symbol->print_name ());
922 elt += 2;
923 break;
924 case OP_LAST:
925 fprintf_filtered (stream, "History element %ld",
926 (long) exp->elts[elt].longconst);
927 elt += 2;
928 break;
929 case OP_REGISTER:
930 fprintf_filtered (stream, "Register $%s", &exp->elts[elt + 1].string);
931 elt += 3 + BYTES_TO_EXP_ELEM (exp->elts[elt].longconst + 1);
932 break;
933 case OP_INTERNALVAR:
934 fprintf_filtered (stream, "Internal var @");
935 gdb_print_host_address (exp->elts[elt].internalvar, stream);
936 fprintf_filtered (stream, " (%s)",
937 internalvar_name (exp->elts[elt].internalvar));
938 elt += 2;
939 break;
940 case OP_FUNCALL:
941 elt = dump_subexp_body_funcall (exp, stream, elt);
942 break;
943 case OP_ARRAY:
944 {
945 int lower, upper;
946 int i;
947
948 lower = longest_to_int (exp->elts[elt].longconst);
949 upper = longest_to_int (exp->elts[elt + 1].longconst);
950
951 fprintf_filtered (stream, "Bounds [%d:%d]", lower, upper);
952 elt += 3;
953
954 for (i = 1; i <= upper - lower + 1; i++)
955 elt = dump_subexp (exp, stream, elt);
956 }
957 break;
958 case UNOP_DYNAMIC_CAST:
959 case UNOP_REINTERPRET_CAST:
960 case UNOP_CAST_TYPE:
961 case UNOP_MEMVAL_TYPE:
962 fprintf_filtered (stream, " (");
963 elt = dump_subexp (exp, stream, elt);
964 fprintf_filtered (stream, ")");
965 elt = dump_subexp (exp, stream, elt);
966 break;
967 case UNOP_MEMVAL:
968 case UNOP_CAST:
969 fprintf_filtered (stream, "Type @");
970 gdb_print_host_address (exp->elts[elt].type, stream);
971 fprintf_filtered (stream, " (");
972 type_print (exp->elts[elt].type, NULL, stream, 0);
973 fprintf_filtered (stream, ")");
974 elt = dump_subexp (exp, stream, elt + 2);
975 break;
976 case OP_TYPE:
977 fprintf_filtered (stream, "Type @");
978 gdb_print_host_address (exp->elts[elt].type, stream);
979 fprintf_filtered (stream, " (");
980 type_print (exp->elts[elt].type, NULL, stream, 0);
981 fprintf_filtered (stream, ")");
982 elt += 2;
983 break;
984 case OP_TYPEOF:
985 case OP_DECLTYPE:
986 fprintf_filtered (stream, "Typeof (");
987 elt = dump_subexp (exp, stream, elt);
988 fprintf_filtered (stream, ")");
989 break;
990 case OP_TYPEID:
991 fprintf_filtered (stream, "typeid (");
992 elt = dump_subexp (exp, stream, elt);
993 fprintf_filtered (stream, ")");
994 break;
995 case STRUCTOP_STRUCT:
996 case STRUCTOP_PTR:
997 {
998 char *elem_name;
999 int len;
1000
1001 len = longest_to_int (exp->elts[elt].longconst);
1002 elem_name = &exp->elts[elt + 1].string;
1003
1004 fprintf_filtered (stream, "Element name: `%.*s'", len, elem_name);
1005 elt = dump_subexp (exp, stream, elt + 3 + BYTES_TO_EXP_ELEM (len + 1));
1006 }
1007 break;
1008 case OP_SCOPE:
1009 {
1010 char *elem_name;
1011 int len;
1012
1013 fprintf_filtered (stream, "Type @");
1014 gdb_print_host_address (exp->elts[elt].type, stream);
1015 fprintf_filtered (stream, " (");
1016 type_print (exp->elts[elt].type, NULL, stream, 0);
1017 fprintf_filtered (stream, ") ");
1018
1019 len = longest_to_int (exp->elts[elt + 1].longconst);
1020 elem_name = &exp->elts[elt + 2].string;
1021
1022 fprintf_filtered (stream, "Field name: `%.*s'", len, elem_name);
1023 elt += 4 + BYTES_TO_EXP_ELEM (len + 1);
1024 }
1025 break;
1026
1027 case OP_FUNC_STATIC_VAR:
1028 {
1029 int len = longest_to_int (exp->elts[elt].longconst);
1030 const char *var_name = &exp->elts[elt + 1].string;
1031 fprintf_filtered (stream, "Field name: `%.*s'", len, var_name);
1032 elt += 3 + BYTES_TO_EXP_ELEM (len + 1);
1033 }
1034 break;
1035
1036 case TYPE_INSTANCE:
1037 {
1038 type_instance_flags flags
1039 = (type_instance_flag_value) longest_to_int (exp->elts[elt++].longconst);
1040 LONGEST len = exp->elts[elt++].longconst;
1041 fprintf_filtered (stream, "%s TypeInstance: ", plongest (len));
1042 while (len-- > 0)
1043 {
1044 fprintf_filtered (stream, "Type @");
1045 gdb_print_host_address (exp->elts[elt].type, stream);
1046 fprintf_filtered (stream, " (");
1047 type_print (exp->elts[elt].type, NULL, stream, 0);
1048 fprintf_filtered (stream, ")");
1049 elt++;
1050 if (len > 0)
1051 fputs_filtered (", ", stream);
1052 }
1053
1054 fprintf_filtered (stream, " Flags: %s (", hex_string (flags));
1055 bool space = false;
1056 auto print_one = [&] (const char *mod)
1057 {
1058 if (space)
1059 fputs_filtered (" ", stream);
1060 space = true;
1061 fprintf_filtered (stream, "%s", mod);
1062 };
1063 if (flags & TYPE_INSTANCE_FLAG_CONST)
1064 print_one ("const");
1065 if (flags & TYPE_INSTANCE_FLAG_VOLATILE)
1066 print_one ("volatile");
1067 fprintf_filtered (stream, ")");
1068
1069 /* Ending LEN and ending TYPE_INSTANCE. */
1070 elt += 2;
1071 elt = dump_subexp (exp, stream, elt);
1072 }
1073 break;
1074 case OP_STRING:
1075 {
1076 LONGEST len = exp->elts[elt].longconst;
1077 LONGEST type = exp->elts[elt + 1].longconst;
1078
1079 fprintf_filtered (stream, "Language-specific string type: %s",
1080 plongest (type));
1081
1082 /* Skip length. */
1083 elt += 1;
1084
1085 /* Skip string content. */
1086 elt += BYTES_TO_EXP_ELEM (len);
1087
1088 /* Skip length and ending OP_STRING. */
1089 elt += 2;
1090 }
1091 break;
1092 case OP_RANGE:
1093 {
1094 enum range_flag range_flag;
1095
1096 range_flag = (enum range_flag)
1097 longest_to_int (exp->elts[elt].longconst);
1098 elt += 2;
1099
1100 if (range_flag & RANGE_HIGH_BOUND_EXCLUSIVE)
1101 fputs_filtered ("Exclusive", stream);
1102 fputs_filtered ("Range '", stream);
1103 if (!(range_flag & RANGE_LOW_BOUND_DEFAULT))
1104 fputs_filtered ("EXP", stream);
1105 fputs_filtered ("..", stream);
1106 if (!(range_flag & RANGE_HIGH_BOUND_DEFAULT))
1107 fputs_filtered ("EXP", stream);
1108 if (range_flag & RANGE_HAS_STRIDE)
1109 fputs_filtered (":EXP", stream);
1110 fputs_filtered ("'", stream);
1111
1112 if (!(range_flag & RANGE_LOW_BOUND_DEFAULT))
1113 elt = dump_subexp (exp, stream, elt);
1114 if (!(range_flag & RANGE_HIGH_BOUND_DEFAULT))
1115 elt = dump_subexp (exp, stream, elt);
1116 if (range_flag & RANGE_HAS_STRIDE)
1117 elt = dump_subexp (exp, stream, elt);
1118 }
1119 break;
1120
1121 default:
1122 case OP_NULL:
1123 case MULTI_SUBSCRIPT:
1124 case OP_COMPLEX:
1125 case OP_BOOL:
1126 case OP_M2_STRING:
1127 case OP_THIS:
1128 case OP_NAME:
1129 fprintf_filtered (stream, "Unknown format");
1130 }
1131
1132 return elt;
1133 }
1134
1135 void
1136 dump_prefix_expression (struct expression *exp, struct ui_file *stream)
1137 {
1138 int elt;
1139
1140 fprintf_filtered (stream, "Dump of expression @ ");
1141 gdb_print_host_address (exp, stream);
1142 fputs_filtered (", after conversion to prefix form:\nExpression: `", stream);
1143 print_expression (exp, stream);
1144 fprintf_filtered (stream, "'\n\tLanguage %s, %d elements, %ld bytes each.\n",
1145 exp->language_defn->name (), exp->nelts,
1146 (long) sizeof (union exp_element));
1147 fputs_filtered ("\n", stream);
1148
1149 for (elt = 0; elt < exp->nelts;)
1150 elt = dump_subexp (exp, stream, elt);
1151 fputs_filtered ("\n", stream);
1152 }
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