d5a199bfc55d79d3fa74848dd700bb458514d7f9
[deliverable/binutils-gdb.git] / gdb / parse.c
1 /* Parse expressions for GDB.
2
3 Copyright (C) 1986, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997,
4 1998, 1999, 2000, 2001, 2004, 2005, 2007, 2008, 2009, 2010
5 Free Software Foundation, Inc.
6
7 Modified from expread.y by the Department of Computer Science at the
8 State University of New York at Buffalo, 1991.
9
10 This file is part of GDB.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 3 of the License, or
15 (at your option) any later version.
16
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with this program. If not, see <http://www.gnu.org/licenses/>. */
24
25 /* Parse an expression from text in a string,
26 and return the result as a struct expression pointer.
27 That structure contains arithmetic operations in reverse polish,
28 with constants represented by operations that are followed by special data.
29 See expression.h for the details of the format.
30 What is important here is that it can be built up sequentially
31 during the process of parsing; the lower levels of the tree always
32 come first in the result. */
33
34 #include "defs.h"
35 #include <ctype.h>
36 #include "arch-utils.h"
37 #include "gdb_string.h"
38 #include "symtab.h"
39 #include "gdbtypes.h"
40 #include "frame.h"
41 #include "expression.h"
42 #include "value.h"
43 #include "command.h"
44 #include "language.h"
45 #include "f-lang.h"
46 #include "parser-defs.h"
47 #include "gdbcmd.h"
48 #include "symfile.h" /* for overlay functions */
49 #include "inferior.h"
50 #include "doublest.h"
51 #include "gdb_assert.h"
52 #include "block.h"
53 #include "source.h"
54 #include "objfiles.h"
55 #include "exceptions.h"
56 #include "user-regs.h"
57
58 /* Standard set of definitions for printing, dumping, prefixifying,
59 * and evaluating expressions. */
60
61 const struct exp_descriptor exp_descriptor_standard =
62 {
63 print_subexp_standard,
64 operator_length_standard,
65 op_name_standard,
66 dump_subexp_body_standard,
67 evaluate_subexp_standard
68 };
69 \f
70 /* Global variables declared in parser-defs.h (and commented there). */
71 struct expression *expout;
72 int expout_size;
73 int expout_ptr;
74 struct block *expression_context_block;
75 CORE_ADDR expression_context_pc;
76 struct block *innermost_block;
77 int arglist_len;
78 union type_stack_elt *type_stack;
79 int type_stack_depth, type_stack_size;
80 char *lexptr;
81 char *prev_lexptr;
82 int paren_depth;
83 int comma_terminates;
84
85 /* True if parsing an expression to find a field reference. This is
86 only used by completion. */
87 int in_parse_field;
88
89 /* The index of the last struct expression directly before a '.' or
90 '->'. This is set when parsing and is only used when completing a
91 field name. It is -1 if no dereference operation was found. */
92 static int expout_last_struct = -1;
93
94 /* A temporary buffer for identifiers, so we can null-terminate them.
95
96 We allocate this with xrealloc. parse_exp_1 used to allocate with
97 alloca, using the size of the whole expression as a conservative
98 estimate of the space needed. However, macro expansion can
99 introduce names longer than the original expression; there's no
100 practical way to know beforehand how large that might be. */
101 char *namecopy;
102 size_t namecopy_size;
103 \f
104 static int expressiondebug = 0;
105 static void
106 show_expressiondebug (struct ui_file *file, int from_tty,
107 struct cmd_list_element *c, const char *value)
108 {
109 fprintf_filtered (file, _("Expression debugging is %s.\n"), value);
110 }
111
112 static void free_funcalls (void *ignore);
113
114 static int prefixify_expression (struct expression *);
115
116 static int prefixify_subexp (struct expression *, struct expression *, int,
117 int);
118
119 static struct expression *parse_exp_in_context (char **, struct block *, int,
120 int, int *);
121
122 void _initialize_parse (void);
123
124 /* Data structure for saving values of arglist_len for function calls whose
125 arguments contain other function calls. */
126
127 struct funcall
128 {
129 struct funcall *next;
130 int arglist_len;
131 };
132
133 static struct funcall *funcall_chain;
134
135 /* Begin counting arguments for a function call,
136 saving the data about any containing call. */
137
138 void
139 start_arglist (void)
140 {
141 struct funcall *new;
142
143 new = (struct funcall *) xmalloc (sizeof (struct funcall));
144 new->next = funcall_chain;
145 new->arglist_len = arglist_len;
146 arglist_len = 0;
147 funcall_chain = new;
148 }
149
150 /* Return the number of arguments in a function call just terminated,
151 and restore the data for the containing function call. */
152
153 int
154 end_arglist (void)
155 {
156 int val = arglist_len;
157 struct funcall *call = funcall_chain;
158 funcall_chain = call->next;
159 arglist_len = call->arglist_len;
160 xfree (call);
161 return val;
162 }
163
164 /* Free everything in the funcall chain.
165 Used when there is an error inside parsing. */
166
167 static void
168 free_funcalls (void *ignore)
169 {
170 struct funcall *call, *next;
171
172 for (call = funcall_chain; call; call = next)
173 {
174 next = call->next;
175 xfree (call);
176 }
177 }
178 \f
179 /* This page contains the functions for adding data to the struct expression
180 being constructed. */
181
182 /* Add one element to the end of the expression. */
183
184 /* To avoid a bug in the Sun 4 compiler, we pass things that can fit into
185 a register through here */
186
187 void
188 write_exp_elt (union exp_element expelt)
189 {
190 if (expout_ptr >= expout_size)
191 {
192 expout_size *= 2;
193 expout = (struct expression *)
194 xrealloc ((char *) expout, sizeof (struct expression)
195 + EXP_ELEM_TO_BYTES (expout_size));
196 }
197 expout->elts[expout_ptr++] = expelt;
198 }
199
200 void
201 write_exp_elt_opcode (enum exp_opcode expelt)
202 {
203 union exp_element tmp;
204 memset (&tmp, 0, sizeof (union exp_element));
205
206 tmp.opcode = expelt;
207
208 write_exp_elt (tmp);
209 }
210
211 void
212 write_exp_elt_sym (struct symbol *expelt)
213 {
214 union exp_element tmp;
215 memset (&tmp, 0, sizeof (union exp_element));
216
217 tmp.symbol = expelt;
218
219 write_exp_elt (tmp);
220 }
221
222 void
223 write_exp_elt_block (struct block *b)
224 {
225 union exp_element tmp;
226 memset (&tmp, 0, sizeof (union exp_element));
227 tmp.block = b;
228 write_exp_elt (tmp);
229 }
230
231 void
232 write_exp_elt_objfile (struct objfile *objfile)
233 {
234 union exp_element tmp;
235 memset (&tmp, 0, sizeof (union exp_element));
236 tmp.objfile = objfile;
237 write_exp_elt (tmp);
238 }
239
240 void
241 write_exp_elt_longcst (LONGEST expelt)
242 {
243 union exp_element tmp;
244 memset (&tmp, 0, sizeof (union exp_element));
245
246 tmp.longconst = expelt;
247
248 write_exp_elt (tmp);
249 }
250
251 void
252 write_exp_elt_dblcst (DOUBLEST expelt)
253 {
254 union exp_element tmp;
255 memset (&tmp, 0, sizeof (union exp_element));
256
257 tmp.doubleconst = expelt;
258
259 write_exp_elt (tmp);
260 }
261
262 void
263 write_exp_elt_decfloatcst (gdb_byte expelt[16])
264 {
265 union exp_element tmp;
266 int index;
267
268 for (index = 0; index < 16; index++)
269 tmp.decfloatconst[index] = expelt[index];
270
271 write_exp_elt (tmp);
272 }
273
274 void
275 write_exp_elt_type (struct type *expelt)
276 {
277 union exp_element tmp;
278 memset (&tmp, 0, sizeof (union exp_element));
279
280 tmp.type = expelt;
281
282 write_exp_elt (tmp);
283 }
284
285 void
286 write_exp_elt_intern (struct internalvar *expelt)
287 {
288 union exp_element tmp;
289 memset (&tmp, 0, sizeof (union exp_element));
290
291 tmp.internalvar = expelt;
292
293 write_exp_elt (tmp);
294 }
295
296 /* Add a string constant to the end of the expression.
297
298 String constants are stored by first writing an expression element
299 that contains the length of the string, then stuffing the string
300 constant itself into however many expression elements are needed
301 to hold it, and then writing another expression element that contains
302 the length of the string. I.E. an expression element at each end of
303 the string records the string length, so you can skip over the
304 expression elements containing the actual string bytes from either
305 end of the string. Note that this also allows gdb to handle
306 strings with embedded null bytes, as is required for some languages.
307
308 Don't be fooled by the fact that the string is null byte terminated,
309 this is strictly for the convenience of debugging gdb itself.
310 Gdb does not depend up the string being null terminated, since the
311 actual length is recorded in expression elements at each end of the
312 string. The null byte is taken into consideration when computing how
313 many expression elements are required to hold the string constant, of
314 course. */
315
316
317 void
318 write_exp_string (struct stoken str)
319 {
320 int len = str.length;
321 int lenelt;
322 char *strdata;
323
324 /* Compute the number of expression elements required to hold the string
325 (including a null byte terminator), along with one expression element
326 at each end to record the actual string length (not including the
327 null byte terminator). */
328
329 lenelt = 2 + BYTES_TO_EXP_ELEM (len + 1);
330
331 /* Ensure that we have enough available expression elements to store
332 everything. */
333
334 if ((expout_ptr + lenelt) >= expout_size)
335 {
336 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
337 expout = (struct expression *)
338 xrealloc ((char *) expout, (sizeof (struct expression)
339 + EXP_ELEM_TO_BYTES (expout_size)));
340 }
341
342 /* Write the leading length expression element (which advances the current
343 expression element index), then write the string constant followed by a
344 terminating null byte, and then write the trailing length expression
345 element. */
346
347 write_exp_elt_longcst ((LONGEST) len);
348 strdata = (char *) &expout->elts[expout_ptr];
349 memcpy (strdata, str.ptr, len);
350 *(strdata + len) = '\0';
351 expout_ptr += lenelt - 2;
352 write_exp_elt_longcst ((LONGEST) len);
353 }
354
355 /* Add a vector of string constants to the end of the expression.
356
357 This adds an OP_STRING operation, but encodes the contents
358 differently from write_exp_string. The language is expected to
359 handle evaluation of this expression itself.
360
361 After the usual OP_STRING header, TYPE is written into the
362 expression as a long constant. The interpretation of this field is
363 up to the language evaluator.
364
365 Next, each string in VEC is written. The length is written as a
366 long constant, followed by the contents of the string. */
367
368 void
369 write_exp_string_vector (int type, struct stoken_vector *vec)
370 {
371 int i, n_slots, len;
372
373 /* Compute the size. We compute the size in number of slots to
374 avoid issues with string padding. */
375 n_slots = 0;
376 for (i = 0; i < vec->len; ++i)
377 {
378 /* One slot for the length of this element, plus the number of
379 slots needed for this string. */
380 n_slots += 1 + BYTES_TO_EXP_ELEM (vec->tokens[i].length);
381 }
382
383 /* One more slot for the type of the string. */
384 ++n_slots;
385
386 /* Now compute a phony string length. */
387 len = EXP_ELEM_TO_BYTES (n_slots) - 1;
388
389 n_slots += 4;
390 if ((expout_ptr + n_slots) >= expout_size)
391 {
392 expout_size = max (expout_size * 2, expout_ptr + n_slots + 10);
393 expout = (struct expression *)
394 xrealloc ((char *) expout, (sizeof (struct expression)
395 + EXP_ELEM_TO_BYTES (expout_size)));
396 }
397
398 write_exp_elt_opcode (OP_STRING);
399 write_exp_elt_longcst (len);
400 write_exp_elt_longcst (type);
401
402 for (i = 0; i < vec->len; ++i)
403 {
404 write_exp_elt_longcst (vec->tokens[i].length);
405 memcpy (&expout->elts[expout_ptr], vec->tokens[i].ptr,
406 vec->tokens[i].length);
407 expout_ptr += BYTES_TO_EXP_ELEM (vec->tokens[i].length);
408 }
409
410 write_exp_elt_longcst (len);
411 write_exp_elt_opcode (OP_STRING);
412 }
413
414 /* Add a bitstring constant to the end of the expression.
415
416 Bitstring constants are stored by first writing an expression element
417 that contains the length of the bitstring (in bits), then stuffing the
418 bitstring constant itself into however many expression elements are
419 needed to hold it, and then writing another expression element that
420 contains the length of the bitstring. I.E. an expression element at
421 each end of the bitstring records the bitstring length, so you can skip
422 over the expression elements containing the actual bitstring bytes from
423 either end of the bitstring. */
424
425 void
426 write_exp_bitstring (struct stoken str)
427 {
428 int bits = str.length; /* length in bits */
429 int len = (bits + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
430 int lenelt;
431 char *strdata;
432
433 /* Compute the number of expression elements required to hold the bitstring,
434 along with one expression element at each end to record the actual
435 bitstring length in bits. */
436
437 lenelt = 2 + BYTES_TO_EXP_ELEM (len);
438
439 /* Ensure that we have enough available expression elements to store
440 everything. */
441
442 if ((expout_ptr + lenelt) >= expout_size)
443 {
444 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
445 expout = (struct expression *)
446 xrealloc ((char *) expout, (sizeof (struct expression)
447 + EXP_ELEM_TO_BYTES (expout_size)));
448 }
449
450 /* Write the leading length expression element (which advances the current
451 expression element index), then write the bitstring constant, and then
452 write the trailing length expression element. */
453
454 write_exp_elt_longcst ((LONGEST) bits);
455 strdata = (char *) &expout->elts[expout_ptr];
456 memcpy (strdata, str.ptr, len);
457 expout_ptr += lenelt - 2;
458 write_exp_elt_longcst ((LONGEST) bits);
459 }
460
461 /* Add the appropriate elements for a minimal symbol to the end of
462 the expression. */
463
464 void
465 write_exp_msymbol (struct minimal_symbol *msymbol)
466 {
467 struct objfile *objfile = msymbol_objfile (msymbol);
468 struct gdbarch *gdbarch = get_objfile_arch (objfile);
469
470 CORE_ADDR addr = SYMBOL_VALUE_ADDRESS (msymbol);
471 struct obj_section *section = SYMBOL_OBJ_SECTION (msymbol);
472 enum minimal_symbol_type type = MSYMBOL_TYPE (msymbol);
473 CORE_ADDR pc;
474
475 /* The minimal symbol might point to a function descriptor;
476 resolve it to the actual code address instead. */
477 pc = gdbarch_convert_from_func_ptr_addr (gdbarch, addr, &current_target);
478 if (pc != addr)
479 {
480 /* In this case, assume we have a code symbol instead of
481 a data symbol. */
482 type = mst_text;
483 section = NULL;
484 addr = pc;
485 }
486
487 if (overlay_debugging)
488 addr = symbol_overlayed_address (addr, section);
489
490 write_exp_elt_opcode (OP_LONG);
491 /* Let's make the type big enough to hold a 64-bit address. */
492 write_exp_elt_type (objfile_type (objfile)->builtin_core_addr);
493 write_exp_elt_longcst ((LONGEST) addr);
494 write_exp_elt_opcode (OP_LONG);
495
496 if (section && section->the_bfd_section->flags & SEC_THREAD_LOCAL)
497 {
498 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
499 write_exp_elt_objfile (objfile);
500 write_exp_elt_type (objfile_type (objfile)->nodebug_tls_symbol);
501 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
502 return;
503 }
504
505 write_exp_elt_opcode (UNOP_MEMVAL);
506 switch (type)
507 {
508 case mst_text:
509 case mst_file_text:
510 case mst_solib_trampoline:
511 write_exp_elt_type (objfile_type (objfile)->nodebug_text_symbol);
512 break;
513
514 case mst_data:
515 case mst_file_data:
516 case mst_bss:
517 case mst_file_bss:
518 write_exp_elt_type (objfile_type (objfile)->nodebug_data_symbol);
519 break;
520
521 default:
522 write_exp_elt_type (objfile_type (objfile)->nodebug_unknown_symbol);
523 break;
524 }
525 write_exp_elt_opcode (UNOP_MEMVAL);
526 }
527
528 /* Mark the current index as the starting location of a structure
529 expression. This is used when completing on field names. */
530
531 void
532 mark_struct_expression (void)
533 {
534 expout_last_struct = expout_ptr;
535 }
536
537 \f
538 /* Recognize tokens that start with '$'. These include:
539
540 $regname A native register name or a "standard
541 register name".
542
543 $variable A convenience variable with a name chosen
544 by the user.
545
546 $digits Value history with index <digits>, starting
547 from the first value which has index 1.
548
549 $$digits Value history with index <digits> relative
550 to the last value. I.E. $$0 is the last
551 value, $$1 is the one previous to that, $$2
552 is the one previous to $$1, etc.
553
554 $ | $0 | $$0 The last value in the value history.
555
556 $$ An abbreviation for the second to the last
557 value in the value history, I.E. $$1
558
559 */
560
561 void
562 write_dollar_variable (struct stoken str)
563 {
564 struct symbol *sym = NULL;
565 struct minimal_symbol *msym = NULL;
566 struct internalvar *isym = NULL;
567
568 /* Handle the tokens $digits; also $ (short for $0) and $$ (short for $$1)
569 and $$digits (equivalent to $<-digits> if you could type that). */
570
571 int negate = 0;
572 int i = 1;
573 /* Double dollar means negate the number and add -1 as well.
574 Thus $$ alone means -1. */
575 if (str.length >= 2 && str.ptr[1] == '$')
576 {
577 negate = 1;
578 i = 2;
579 }
580 if (i == str.length)
581 {
582 /* Just dollars (one or two) */
583 i = -negate;
584 goto handle_last;
585 }
586 /* Is the rest of the token digits? */
587 for (; i < str.length; i++)
588 if (!(str.ptr[i] >= '0' && str.ptr[i] <= '9'))
589 break;
590 if (i == str.length)
591 {
592 i = atoi (str.ptr + 1 + negate);
593 if (negate)
594 i = -i;
595 goto handle_last;
596 }
597
598 /* Handle tokens that refer to machine registers:
599 $ followed by a register name. */
600 i = user_reg_map_name_to_regnum (parse_gdbarch,
601 str.ptr + 1, str.length - 1);
602 if (i >= 0)
603 goto handle_register;
604
605 /* Any names starting with $ are probably debugger internal variables. */
606
607 isym = lookup_only_internalvar (copy_name (str) + 1);
608 if (isym)
609 {
610 write_exp_elt_opcode (OP_INTERNALVAR);
611 write_exp_elt_intern (isym);
612 write_exp_elt_opcode (OP_INTERNALVAR);
613 return;
614 }
615
616 /* On some systems, such as HP-UX and hppa-linux, certain system routines
617 have names beginning with $ or $$. Check for those, first. */
618
619 sym = lookup_symbol (copy_name (str), (struct block *) NULL,
620 VAR_DOMAIN, (int *) NULL);
621 if (sym)
622 {
623 write_exp_elt_opcode (OP_VAR_VALUE);
624 write_exp_elt_block (block_found); /* set by lookup_symbol */
625 write_exp_elt_sym (sym);
626 write_exp_elt_opcode (OP_VAR_VALUE);
627 return;
628 }
629 msym = lookup_minimal_symbol (copy_name (str), NULL, NULL);
630 if (msym)
631 {
632 write_exp_msymbol (msym);
633 return;
634 }
635
636 /* Any other names are assumed to be debugger internal variables. */
637
638 write_exp_elt_opcode (OP_INTERNALVAR);
639 write_exp_elt_intern (create_internalvar (copy_name (str) + 1));
640 write_exp_elt_opcode (OP_INTERNALVAR);
641 return;
642 handle_last:
643 write_exp_elt_opcode (OP_LAST);
644 write_exp_elt_longcst ((LONGEST) i);
645 write_exp_elt_opcode (OP_LAST);
646 return;
647 handle_register:
648 write_exp_elt_opcode (OP_REGISTER);
649 str.length--;
650 str.ptr++;
651 write_exp_string (str);
652 write_exp_elt_opcode (OP_REGISTER);
653 return;
654 }
655
656
657 char *
658 find_template_name_end (char *p)
659 {
660 int depth = 1;
661 int just_seen_right = 0;
662 int just_seen_colon = 0;
663 int just_seen_space = 0;
664
665 if (!p || (*p != '<'))
666 return 0;
667
668 while (*++p)
669 {
670 switch (*p)
671 {
672 case '\'':
673 case '\"':
674 case '{':
675 case '}':
676 /* In future, may want to allow these?? */
677 return 0;
678 case '<':
679 depth++; /* start nested template */
680 if (just_seen_colon || just_seen_right || just_seen_space)
681 return 0; /* but not after : or :: or > or space */
682 break;
683 case '>':
684 if (just_seen_colon || just_seen_right)
685 return 0; /* end a (nested?) template */
686 just_seen_right = 1; /* but not after : or :: */
687 if (--depth == 0) /* also disallow >>, insist on > > */
688 return ++p; /* if outermost ended, return */
689 break;
690 case ':':
691 if (just_seen_space || (just_seen_colon > 1))
692 return 0; /* nested class spec coming up */
693 just_seen_colon++; /* we allow :: but not :::: */
694 break;
695 case ' ':
696 break;
697 default:
698 if (!((*p >= 'a' && *p <= 'z') || /* allow token chars */
699 (*p >= 'A' && *p <= 'Z') ||
700 (*p >= '0' && *p <= '9') ||
701 (*p == '_') || (*p == ',') || /* commas for template args */
702 (*p == '&') || (*p == '*') || /* pointer and ref types */
703 (*p == '(') || (*p == ')') || /* function types */
704 (*p == '[') || (*p == ']'))) /* array types */
705 return 0;
706 }
707 if (*p != ' ')
708 just_seen_space = 0;
709 if (*p != ':')
710 just_seen_colon = 0;
711 if (*p != '>')
712 just_seen_right = 0;
713 }
714 return 0;
715 }
716 \f
717
718
719 /* Return a null-terminated temporary copy of the name
720 of a string token. */
721
722 char *
723 copy_name (struct stoken token)
724 {
725 /* Make sure there's enough space for the token. */
726 if (namecopy_size < token.length + 1)
727 {
728 namecopy_size = token.length + 1;
729 namecopy = xrealloc (namecopy, token.length + 1);
730 }
731
732 memcpy (namecopy, token.ptr, token.length);
733 namecopy[token.length] = 0;
734
735 return namecopy;
736 }
737 \f
738 /* Reverse an expression from suffix form (in which it is constructed)
739 to prefix form (in which we can conveniently print or execute it).
740 Ordinarily this always returns -1. However, if EXPOUT_LAST_STRUCT
741 is not -1 (i.e., we are trying to complete a field name), it will
742 return the index of the subexpression which is the left-hand-side
743 of the struct operation at EXPOUT_LAST_STRUCT. */
744
745 static int
746 prefixify_expression (struct expression *expr)
747 {
748 int len = sizeof (struct expression) + EXP_ELEM_TO_BYTES (expr->nelts);
749 struct expression *temp;
750 int inpos = expr->nelts, outpos = 0;
751
752 temp = (struct expression *) alloca (len);
753
754 /* Copy the original expression into temp. */
755 memcpy (temp, expr, len);
756
757 return prefixify_subexp (temp, expr, inpos, outpos);
758 }
759
760 /* Return the number of exp_elements in the postfix subexpression
761 of EXPR whose operator is at index ENDPOS - 1 in EXPR. */
762
763 int
764 length_of_subexp (struct expression *expr, int endpos)
765 {
766 int oplen, args, i;
767
768 operator_length (expr, endpos, &oplen, &args);
769
770 while (args > 0)
771 {
772 oplen += length_of_subexp (expr, endpos - oplen);
773 args--;
774 }
775
776 return oplen;
777 }
778
779 /* Sets *OPLENP to the length of the operator whose (last) index is
780 ENDPOS - 1 in EXPR, and sets *ARGSP to the number of arguments that
781 operator takes. */
782
783 void
784 operator_length (struct expression *expr, int endpos, int *oplenp, int *argsp)
785 {
786 expr->language_defn->la_exp_desc->operator_length (expr, endpos,
787 oplenp, argsp);
788 }
789
790 /* Default value for operator_length in exp_descriptor vectors. */
791
792 void
793 operator_length_standard (struct expression *expr, int endpos,
794 int *oplenp, int *argsp)
795 {
796 int oplen = 1;
797 int args = 0;
798 enum f90_range_type range_type;
799 int i;
800
801 if (endpos < 1)
802 error (_("?error in operator_length_standard"));
803
804 i = (int) expr->elts[endpos - 1].opcode;
805
806 switch (i)
807 {
808 /* C++ */
809 case OP_SCOPE:
810 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
811 oplen = 5 + BYTES_TO_EXP_ELEM (oplen + 1);
812 break;
813
814 case OP_LONG:
815 case OP_DOUBLE:
816 case OP_DECFLOAT:
817 case OP_VAR_VALUE:
818 oplen = 4;
819 break;
820
821 case OP_TYPE:
822 case OP_BOOL:
823 case OP_LAST:
824 case OP_INTERNALVAR:
825 oplen = 3;
826 break;
827
828 case OP_COMPLEX:
829 oplen = 3;
830 args = 2;
831 break;
832
833 case OP_FUNCALL:
834 case OP_F77_UNDETERMINED_ARGLIST:
835 oplen = 3;
836 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
837 break;
838
839 case TYPE_INSTANCE:
840 oplen = 4 + longest_to_int (expr->elts[endpos - 2].longconst);
841 args = 1;
842 break;
843
844 case OP_OBJC_MSGCALL: /* Objective C message (method) call */
845 oplen = 4;
846 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
847 break;
848
849 case UNOP_MAX:
850 case UNOP_MIN:
851 oplen = 3;
852 break;
853
854 case BINOP_VAL:
855 case UNOP_CAST:
856 case UNOP_DYNAMIC_CAST:
857 case UNOP_REINTERPRET_CAST:
858 case UNOP_MEMVAL:
859 oplen = 3;
860 args = 1;
861 break;
862
863 case UNOP_MEMVAL_TLS:
864 oplen = 4;
865 args = 1;
866 break;
867
868 case UNOP_ABS:
869 case UNOP_CAP:
870 case UNOP_CHR:
871 case UNOP_FLOAT:
872 case UNOP_HIGH:
873 case UNOP_ODD:
874 case UNOP_ORD:
875 case UNOP_TRUNC:
876 oplen = 1;
877 args = 1;
878 break;
879
880 case OP_LABELED:
881 case STRUCTOP_STRUCT:
882 case STRUCTOP_PTR:
883 args = 1;
884 /* fall through */
885 case OP_REGISTER:
886 case OP_M2_STRING:
887 case OP_STRING:
888 case OP_OBJC_NSSTRING: /* Objective C Foundation Class NSString constant */
889 case OP_OBJC_SELECTOR: /* Objective C "@selector" pseudo-op */
890 case OP_NAME:
891 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
892 oplen = 4 + BYTES_TO_EXP_ELEM (oplen + 1);
893 break;
894
895 case OP_BITSTRING:
896 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
897 oplen = (oplen + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
898 oplen = 4 + BYTES_TO_EXP_ELEM (oplen);
899 break;
900
901 case OP_ARRAY:
902 oplen = 4;
903 args = longest_to_int (expr->elts[endpos - 2].longconst);
904 args -= longest_to_int (expr->elts[endpos - 3].longconst);
905 args += 1;
906 break;
907
908 case TERNOP_COND:
909 case TERNOP_SLICE:
910 case TERNOP_SLICE_COUNT:
911 args = 3;
912 break;
913
914 /* Modula-2 */
915 case MULTI_SUBSCRIPT:
916 oplen = 3;
917 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
918 break;
919
920 case BINOP_ASSIGN_MODIFY:
921 oplen = 3;
922 args = 2;
923 break;
924
925 /* C++ */
926 case OP_THIS:
927 case OP_OBJC_SELF:
928 oplen = 2;
929 break;
930
931 case OP_F90_RANGE:
932 oplen = 3;
933
934 range_type = longest_to_int (expr->elts[endpos - 2].longconst);
935 switch (range_type)
936 {
937 case LOW_BOUND_DEFAULT:
938 case HIGH_BOUND_DEFAULT:
939 args = 1;
940 break;
941 case BOTH_BOUND_DEFAULT:
942 args = 0;
943 break;
944 case NONE_BOUND_DEFAULT:
945 args = 2;
946 break;
947 }
948
949 break;
950
951 default:
952 args = 1 + (i < (int) BINOP_END);
953 }
954
955 *oplenp = oplen;
956 *argsp = args;
957 }
958
959 /* Copy the subexpression ending just before index INEND in INEXPR
960 into OUTEXPR, starting at index OUTBEG.
961 In the process, convert it from suffix to prefix form.
962 If EXPOUT_LAST_STRUCT is -1, then this function always returns -1.
963 Otherwise, it returns the index of the subexpression which is the
964 left-hand-side of the expression at EXPOUT_LAST_STRUCT. */
965
966 static int
967 prefixify_subexp (struct expression *inexpr,
968 struct expression *outexpr, int inend, int outbeg)
969 {
970 int oplen;
971 int args;
972 int i;
973 int *arglens;
974 enum exp_opcode opcode;
975 int result = -1;
976
977 operator_length (inexpr, inend, &oplen, &args);
978
979 /* Copy the final operator itself, from the end of the input
980 to the beginning of the output. */
981 inend -= oplen;
982 memcpy (&outexpr->elts[outbeg], &inexpr->elts[inend],
983 EXP_ELEM_TO_BYTES (oplen));
984 outbeg += oplen;
985
986 if (expout_last_struct == inend)
987 result = outbeg - oplen;
988
989 /* Find the lengths of the arg subexpressions. */
990 arglens = (int *) alloca (args * sizeof (int));
991 for (i = args - 1; i >= 0; i--)
992 {
993 oplen = length_of_subexp (inexpr, inend);
994 arglens[i] = oplen;
995 inend -= oplen;
996 }
997
998 /* Now copy each subexpression, preserving the order of
999 the subexpressions, but prefixifying each one.
1000 In this loop, inend starts at the beginning of
1001 the expression this level is working on
1002 and marches forward over the arguments.
1003 outbeg does similarly in the output. */
1004 for (i = 0; i < args; i++)
1005 {
1006 int r;
1007 oplen = arglens[i];
1008 inend += oplen;
1009 r = prefixify_subexp (inexpr, outexpr, inend, outbeg);
1010 if (r != -1)
1011 {
1012 /* Return immediately. We probably have only parsed a
1013 partial expression, so we don't want to try to reverse
1014 the other operands. */
1015 return r;
1016 }
1017 outbeg += oplen;
1018 }
1019
1020 return result;
1021 }
1022 \f
1023 /* This page contains the two entry points to this file. */
1024
1025 /* Read an expression from the string *STRINGPTR points to,
1026 parse it, and return a pointer to a struct expression that we malloc.
1027 Use block BLOCK as the lexical context for variable names;
1028 if BLOCK is zero, use the block of the selected stack frame.
1029 Meanwhile, advance *STRINGPTR to point after the expression,
1030 at the first nonwhite character that is not part of the expression
1031 (possibly a null character).
1032
1033 If COMMA is nonzero, stop if a comma is reached. */
1034
1035 struct expression *
1036 parse_exp_1 (char **stringptr, struct block *block, int comma)
1037 {
1038 return parse_exp_in_context (stringptr, block, comma, 0, NULL);
1039 }
1040
1041 /* As for parse_exp_1, except that if VOID_CONTEXT_P, then
1042 no value is expected from the expression.
1043 OUT_SUBEXP is set when attempting to complete a field name; in this
1044 case it is set to the index of the subexpression on the
1045 left-hand-side of the struct op. If not doing such completion, it
1046 is left untouched. */
1047
1048 static struct expression *
1049 parse_exp_in_context (char **stringptr, struct block *block, int comma,
1050 int void_context_p, int *out_subexp)
1051 {
1052 volatile struct gdb_exception except;
1053 struct cleanup *old_chain;
1054 int subexp;
1055
1056 lexptr = *stringptr;
1057 prev_lexptr = NULL;
1058
1059 paren_depth = 0;
1060 type_stack_depth = 0;
1061 expout_last_struct = -1;
1062
1063 comma_terminates = comma;
1064
1065 if (lexptr == 0 || *lexptr == 0)
1066 error_no_arg (_("expression to compute"));
1067
1068 old_chain = make_cleanup (free_funcalls, 0 /*ignore*/);
1069 funcall_chain = 0;
1070
1071 expression_context_block = block;
1072
1073 /* If no context specified, try using the current frame, if any. */
1074 if (!expression_context_block)
1075 expression_context_block = get_selected_block (&expression_context_pc);
1076 else
1077 expression_context_pc = BLOCK_START (expression_context_block);
1078
1079 /* Fall back to using the current source static context, if any. */
1080
1081 if (!expression_context_block)
1082 {
1083 struct symtab_and_line cursal = get_current_source_symtab_and_line ();
1084 if (cursal.symtab)
1085 expression_context_block
1086 = BLOCKVECTOR_BLOCK (BLOCKVECTOR (cursal.symtab), STATIC_BLOCK);
1087 if (expression_context_block)
1088 expression_context_pc = BLOCK_START (expression_context_block);
1089 }
1090
1091 expout_size = 10;
1092 expout_ptr = 0;
1093 expout = (struct expression *)
1094 xmalloc (sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_size));
1095 expout->language_defn = current_language;
1096 expout->gdbarch = get_current_arch ();
1097
1098 TRY_CATCH (except, RETURN_MASK_ALL)
1099 {
1100 if (current_language->la_parser ())
1101 current_language->la_error (NULL);
1102 }
1103 if (except.reason < 0)
1104 {
1105 if (! in_parse_field)
1106 {
1107 xfree (expout);
1108 throw_exception (except);
1109 }
1110 }
1111
1112 discard_cleanups (old_chain);
1113
1114 /* Record the actual number of expression elements, and then
1115 reallocate the expression memory so that we free up any
1116 excess elements. */
1117
1118 expout->nelts = expout_ptr;
1119 expout = (struct expression *)
1120 xrealloc ((char *) expout,
1121 sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_ptr));;
1122
1123 /* Convert expression from postfix form as generated by yacc
1124 parser, to a prefix form. */
1125
1126 if (expressiondebug)
1127 dump_raw_expression (expout, gdb_stdlog,
1128 "before conversion to prefix form");
1129
1130 subexp = prefixify_expression (expout);
1131 if (out_subexp)
1132 *out_subexp = subexp;
1133
1134 current_language->la_post_parser (&expout, void_context_p);
1135
1136 if (expressiondebug)
1137 dump_prefix_expression (expout, gdb_stdlog);
1138
1139 *stringptr = lexptr;
1140 return expout;
1141 }
1142
1143 /* Parse STRING as an expression, and complain if this fails
1144 to use up all of the contents of STRING. */
1145
1146 struct expression *
1147 parse_expression (char *string)
1148 {
1149 struct expression *exp;
1150 exp = parse_exp_1 (&string, 0, 0);
1151 if (*string)
1152 error (_("Junk after end of expression."));
1153 return exp;
1154 }
1155
1156 /* Parse STRING as an expression. If parsing ends in the middle of a
1157 field reference, return the type of the left-hand-side of the
1158 reference; furthermore, if the parsing ends in the field name,
1159 return the field name in *NAME. In all other cases, return NULL.
1160 Returned non-NULL *NAME must be freed by the caller. */
1161
1162 struct type *
1163 parse_field_expression (char *string, char **name)
1164 {
1165 struct expression *exp = NULL;
1166 struct value *val;
1167 int subexp;
1168 volatile struct gdb_exception except;
1169
1170 TRY_CATCH (except, RETURN_MASK_ALL)
1171 {
1172 in_parse_field = 1;
1173 exp = parse_exp_in_context (&string, 0, 0, 0, &subexp);
1174 }
1175 in_parse_field = 0;
1176 if (except.reason < 0 || ! exp)
1177 return NULL;
1178 if (expout_last_struct == -1)
1179 {
1180 xfree (exp);
1181 return NULL;
1182 }
1183
1184 *name = extract_field_op (exp, &subexp);
1185 if (!*name)
1186 {
1187 xfree (exp);
1188 return NULL;
1189 }
1190 /* (*NAME) is a part of the EXP memory block freed below. */
1191 *name = xstrdup (*name);
1192
1193 val = evaluate_subexpression_type (exp, subexp);
1194 xfree (exp);
1195
1196 return value_type (val);
1197 }
1198
1199 /* A post-parser that does nothing */
1200
1201 void
1202 null_post_parser (struct expression **exp, int void_context_p)
1203 {
1204 }
1205 \f
1206 /* Stuff for maintaining a stack of types. Currently just used by C, but
1207 probably useful for any language which declares its types "backwards". */
1208
1209 static void
1210 check_type_stack_depth (void)
1211 {
1212 if (type_stack_depth == type_stack_size)
1213 {
1214 type_stack_size *= 2;
1215 type_stack = (union type_stack_elt *)
1216 xrealloc ((char *) type_stack, type_stack_size * sizeof (*type_stack));
1217 }
1218 }
1219
1220 void
1221 push_type (enum type_pieces tp)
1222 {
1223 check_type_stack_depth ();
1224 type_stack[type_stack_depth++].piece = tp;
1225 }
1226
1227 void
1228 push_type_int (int n)
1229 {
1230 check_type_stack_depth ();
1231 type_stack[type_stack_depth++].int_val = n;
1232 }
1233
1234 void
1235 push_type_address_space (char *string)
1236 {
1237 push_type_int (address_space_name_to_int (parse_gdbarch, string));
1238 }
1239
1240 enum type_pieces
1241 pop_type (void)
1242 {
1243 if (type_stack_depth)
1244 return type_stack[--type_stack_depth].piece;
1245 return tp_end;
1246 }
1247
1248 int
1249 pop_type_int (void)
1250 {
1251 if (type_stack_depth)
1252 return type_stack[--type_stack_depth].int_val;
1253 /* "Can't happen". */
1254 return 0;
1255 }
1256
1257 /* Pop the type stack and return the type which corresponds to FOLLOW_TYPE
1258 as modified by all the stuff on the stack. */
1259 struct type *
1260 follow_types (struct type *follow_type)
1261 {
1262 int done = 0;
1263 int make_const = 0;
1264 int make_volatile = 0;
1265 int make_addr_space = 0;
1266 int array_size;
1267
1268 while (!done)
1269 switch (pop_type ())
1270 {
1271 case tp_end:
1272 done = 1;
1273 if (make_const)
1274 follow_type = make_cv_type (make_const,
1275 TYPE_VOLATILE (follow_type),
1276 follow_type, 0);
1277 if (make_volatile)
1278 follow_type = make_cv_type (TYPE_CONST (follow_type),
1279 make_volatile,
1280 follow_type, 0);
1281 if (make_addr_space)
1282 follow_type = make_type_with_address_space (follow_type,
1283 make_addr_space);
1284 make_const = make_volatile = 0;
1285 make_addr_space = 0;
1286 break;
1287 case tp_const:
1288 make_const = 1;
1289 break;
1290 case tp_volatile:
1291 make_volatile = 1;
1292 break;
1293 case tp_space_identifier:
1294 make_addr_space = pop_type_int ();
1295 break;
1296 case tp_pointer:
1297 follow_type = lookup_pointer_type (follow_type);
1298 if (make_const)
1299 follow_type = make_cv_type (make_const,
1300 TYPE_VOLATILE (follow_type),
1301 follow_type, 0);
1302 if (make_volatile)
1303 follow_type = make_cv_type (TYPE_CONST (follow_type),
1304 make_volatile,
1305 follow_type, 0);
1306 if (make_addr_space)
1307 follow_type = make_type_with_address_space (follow_type,
1308 make_addr_space);
1309 make_const = make_volatile = 0;
1310 make_addr_space = 0;
1311 break;
1312 case tp_reference:
1313 follow_type = lookup_reference_type (follow_type);
1314 if (make_const)
1315 follow_type = make_cv_type (make_const,
1316 TYPE_VOLATILE (follow_type),
1317 follow_type, 0);
1318 if (make_volatile)
1319 follow_type = make_cv_type (TYPE_CONST (follow_type),
1320 make_volatile,
1321 follow_type, 0);
1322 if (make_addr_space)
1323 follow_type = make_type_with_address_space (follow_type,
1324 make_addr_space);
1325 make_const = make_volatile = 0;
1326 make_addr_space = 0;
1327 break;
1328 case tp_array:
1329 array_size = pop_type_int ();
1330 /* FIXME-type-allocation: need a way to free this type when we are
1331 done with it. */
1332 follow_type =
1333 lookup_array_range_type (follow_type,
1334 0, array_size >= 0 ? array_size - 1 : 0);
1335 if (array_size < 0)
1336 TYPE_ARRAY_UPPER_BOUND_IS_UNDEFINED (follow_type) = 1;
1337 break;
1338 case tp_function:
1339 /* FIXME-type-allocation: need a way to free this type when we are
1340 done with it. */
1341 follow_type = lookup_function_type (follow_type);
1342 break;
1343 }
1344 return follow_type;
1345 }
1346 \f
1347 /* This function avoids direct calls to fprintf
1348 in the parser generated debug code. */
1349 void
1350 parser_fprintf (FILE *x, const char *y, ...)
1351 {
1352 va_list args;
1353 va_start (args, y);
1354 if (x == stderr)
1355 vfprintf_unfiltered (gdb_stderr, y, args);
1356 else
1357 {
1358 fprintf_unfiltered (gdb_stderr, " Unknown FILE used.\n");
1359 vfprintf_unfiltered (gdb_stderr, y, args);
1360 }
1361 va_end (args);
1362 }
1363
1364 void
1365 _initialize_parse (void)
1366 {
1367 type_stack_size = 80;
1368 type_stack_depth = 0;
1369 type_stack = (union type_stack_elt *)
1370 xmalloc (type_stack_size * sizeof (*type_stack));
1371
1372 add_setshow_zinteger_cmd ("expression", class_maintenance,
1373 &expressiondebug, _("\
1374 Set expression debugging."), _("\
1375 Show expression debugging."), _("\
1376 When non-zero, the internal representation of expressions will be printed."),
1377 NULL,
1378 show_expressiondebug,
1379 &setdebuglist, &showdebuglist);
1380 }
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