remove comment in machoread.c (macho_symfile_read)
[deliverable/binutils-gdb.git] / gdb / parse.c
CommitLineData
c906108c 1/* Parse expressions for GDB.
c4a172b5 2
6aba47ca 3 Copyright (C) 1986, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996, 1997,
7b6bb8da 4 1998, 1999, 2000, 2001, 2004, 2005, 2007, 2008, 2009, 2010, 2011
9b254dd1 5 Free Software Foundation, Inc.
c4a172b5 6
c906108c
SS
7 Modified from expread.y by the Department of Computer Science at the
8 State University of New York at Buffalo, 1991.
9
c5aa993b 10 This file is part of GDB.
c906108c 11
c5aa993b
JM
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
a9762ec7 14 the Free Software Foundation; either version 3 of the License, or
c5aa993b 15 (at your option) any later version.
c906108c 16
c5aa993b
JM
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.
c906108c 21
c5aa993b 22 You should have received a copy of the GNU General Public License
a9762ec7 23 along with this program. If not, see <http://www.gnu.org/licenses/>. */
c906108c
SS
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. */
c5aa993b 33
c906108c 34#include "defs.h"
12c89474 35#include <ctype.h>
e17c207e 36#include "arch-utils.h"
c906108c 37#include "gdb_string.h"
c906108c
SS
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"
0b4e1325 45#include "f-lang.h"
c906108c
SS
46#include "parser-defs.h"
47#include "gdbcmd.h"
c5aa993b 48#include "symfile.h" /* for overlay functions */
f57d151a 49#include "inferior.h"
d16aafd8 50#include "doublest.h"
0406ec40 51#include "gdb_assert.h"
fe898f56 52#include "block.h"
59f92a09 53#include "source.h"
9e35dae4 54#include "objfiles.h"
65d12d83 55#include "exceptions.h"
029a67e4 56#include "user-regs.h"
e2305d34 57
5f9769d1
PH
58/* Standard set of definitions for printing, dumping, prefixifying,
59 * and evaluating expressions. */
60
61const struct exp_descriptor exp_descriptor_standard =
62 {
63 print_subexp_standard,
64 operator_length_standard,
c0201579 65 operator_check_standard,
5f9769d1
PH
66 op_name_standard,
67 dump_subexp_body_standard,
68 evaluate_subexp_standard
69 };
c906108c
SS
70\f
71/* Global variables declared in parser-defs.h (and commented there). */
72struct expression *expout;
73int expout_size;
74int expout_ptr;
75struct block *expression_context_block;
84f0252a 76CORE_ADDR expression_context_pc;
c906108c
SS
77struct block *innermost_block;
78int arglist_len;
79union type_stack_elt *type_stack;
80int type_stack_depth, type_stack_size;
81char *lexptr;
665132f9 82char *prev_lexptr;
c906108c
SS
83int paren_depth;
84int comma_terminates;
3a913e29 85
65d12d83
TT
86/* True if parsing an expression to find a field reference. This is
87 only used by completion. */
88int in_parse_field;
89
90/* The index of the last struct expression directly before a '.' or
91 '->'. This is set when parsing and is only used when completing a
92 field name. It is -1 if no dereference operation was found. */
93static int expout_last_struct = -1;
94
3a913e29
JB
95/* A temporary buffer for identifiers, so we can null-terminate them.
96
97 We allocate this with xrealloc. parse_exp_1 used to allocate with
98 alloca, using the size of the whole expression as a conservative
99 estimate of the space needed. However, macro expansion can
100 introduce names longer than the original expression; there's no
101 practical way to know beforehand how large that might be. */
102char *namecopy;
103size_t namecopy_size;
c906108c 104\f
c906108c 105static int expressiondebug = 0;
920d2a44
AC
106static void
107show_expressiondebug (struct ui_file *file, int from_tty,
108 struct cmd_list_element *c, const char *value)
109{
110 fprintf_filtered (file, _("Expression debugging is %s.\n"), value);
111}
c906108c 112
92981e24
TT
113
114/* Non-zero if an expression parser should set yydebug. */
115int parser_debug;
116
117static void
118show_parserdebug (struct ui_file *file, int from_tty,
119 struct cmd_list_element *c, const char *value)
120{
121 fprintf_filtered (file, _("Parser debugging is %s.\n"), value);
122}
123
124
74b7792f 125static void free_funcalls (void *ignore);
c906108c 126
65d12d83 127static int prefixify_expression (struct expression *);
c906108c 128
65d12d83
TT
129static int prefixify_subexp (struct expression *, struct expression *, int,
130 int);
c906108c 131
e85c3284 132static struct expression *parse_exp_in_context (char **, struct block *, int,
65d12d83 133 int, int *);
e85c3284 134
a14ed312 135void _initialize_parse (void);
392a587b 136
c906108c
SS
137/* Data structure for saving values of arglist_len for function calls whose
138 arguments contain other function calls. */
139
140struct funcall
141 {
142 struct funcall *next;
143 int arglist_len;
144 };
145
146static struct funcall *funcall_chain;
147
c906108c
SS
148/* Begin counting arguments for a function call,
149 saving the data about any containing call. */
150
151void
fba45db2 152start_arglist (void)
c906108c 153{
f86f5ca3 154 struct funcall *new;
c906108c
SS
155
156 new = (struct funcall *) xmalloc (sizeof (struct funcall));
157 new->next = funcall_chain;
158 new->arglist_len = arglist_len;
159 arglist_len = 0;
160 funcall_chain = new;
161}
162
163/* Return the number of arguments in a function call just terminated,
164 and restore the data for the containing function call. */
165
166int
fba45db2 167end_arglist (void)
c906108c 168{
f86f5ca3
PH
169 int val = arglist_len;
170 struct funcall *call = funcall_chain;
ad3bbd48 171
c906108c
SS
172 funcall_chain = call->next;
173 arglist_len = call->arglist_len;
b8c9b27d 174 xfree (call);
c906108c
SS
175 return val;
176}
177
178/* Free everything in the funcall chain.
179 Used when there is an error inside parsing. */
180
181static void
74b7792f 182free_funcalls (void *ignore)
c906108c 183{
f86f5ca3 184 struct funcall *call, *next;
c906108c
SS
185
186 for (call = funcall_chain; call; call = next)
187 {
188 next = call->next;
b8c9b27d 189 xfree (call);
c906108c
SS
190 }
191}
192\f
193/* This page contains the functions for adding data to the struct expression
194 being constructed. */
195
196/* Add one element to the end of the expression. */
197
198/* To avoid a bug in the Sun 4 compiler, we pass things that can fit into
0df8b418 199 a register through here. */
c906108c
SS
200
201void
fba45db2 202write_exp_elt (union exp_element expelt)
c906108c
SS
203{
204 if (expout_ptr >= expout_size)
205 {
206 expout_size *= 2;
207 expout = (struct expression *)
208 xrealloc ((char *) expout, sizeof (struct expression)
209 + EXP_ELEM_TO_BYTES (expout_size));
210 }
211 expout->elts[expout_ptr++] = expelt;
212}
213
214void
fba45db2 215write_exp_elt_opcode (enum exp_opcode expelt)
c906108c
SS
216{
217 union exp_element tmp;
218
ad3bbd48 219 memset (&tmp, 0, sizeof (union exp_element));
c906108c 220 tmp.opcode = expelt;
c906108c
SS
221 write_exp_elt (tmp);
222}
223
224void
fba45db2 225write_exp_elt_sym (struct symbol *expelt)
c906108c
SS
226{
227 union exp_element tmp;
228
ad3bbd48 229 memset (&tmp, 0, sizeof (union exp_element));
c906108c 230 tmp.symbol = expelt;
c906108c
SS
231 write_exp_elt (tmp);
232}
233
234void
fba45db2 235write_exp_elt_block (struct block *b)
c906108c
SS
236{
237 union exp_element tmp;
ad3bbd48 238
09153d55 239 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
240 tmp.block = b;
241 write_exp_elt (tmp);
242}
243
9e35dae4
DJ
244void
245write_exp_elt_objfile (struct objfile *objfile)
246{
247 union exp_element tmp;
ad3bbd48 248
9e35dae4
DJ
249 memset (&tmp, 0, sizeof (union exp_element));
250 tmp.objfile = objfile;
251 write_exp_elt (tmp);
252}
253
c906108c 254void
fba45db2 255write_exp_elt_longcst (LONGEST expelt)
c906108c
SS
256{
257 union exp_element tmp;
258
ad3bbd48 259 memset (&tmp, 0, sizeof (union exp_element));
c906108c 260 tmp.longconst = expelt;
c906108c
SS
261 write_exp_elt (tmp);
262}
263
264void
fba45db2 265write_exp_elt_dblcst (DOUBLEST expelt)
c906108c
SS
266{
267 union exp_element tmp;
268
ad3bbd48 269 memset (&tmp, 0, sizeof (union exp_element));
c906108c 270 tmp.doubleconst = expelt;
c906108c
SS
271 write_exp_elt (tmp);
272}
273
27bc4d80
TJB
274void
275write_exp_elt_decfloatcst (gdb_byte expelt[16])
276{
277 union exp_element tmp;
278 int index;
279
280 for (index = 0; index < 16; index++)
281 tmp.decfloatconst[index] = expelt[index];
282
283 write_exp_elt (tmp);
284}
285
c906108c 286void
fba45db2 287write_exp_elt_type (struct type *expelt)
c906108c
SS
288{
289 union exp_element tmp;
290
ad3bbd48 291 memset (&tmp, 0, sizeof (union exp_element));
c906108c 292 tmp.type = expelt;
c906108c
SS
293 write_exp_elt (tmp);
294}
295
296void
fba45db2 297write_exp_elt_intern (struct internalvar *expelt)
c906108c
SS
298{
299 union exp_element tmp;
300
ad3bbd48 301 memset (&tmp, 0, sizeof (union exp_element));
c906108c 302 tmp.internalvar = expelt;
c906108c
SS
303 write_exp_elt (tmp);
304}
305
306/* Add a string constant to the end of the expression.
307
308 String constants are stored by first writing an expression element
309 that contains the length of the string, then stuffing the string
310 constant itself into however many expression elements are needed
311 to hold it, and then writing another expression element that contains
0df8b418 312 the length of the string. I.e. an expression element at each end of
c906108c
SS
313 the string records the string length, so you can skip over the
314 expression elements containing the actual string bytes from either
315 end of the string. Note that this also allows gdb to handle
316 strings with embedded null bytes, as is required for some languages.
317
318 Don't be fooled by the fact that the string is null byte terminated,
bc3b79fd 319 this is strictly for the convenience of debugging gdb itself.
c906108c
SS
320 Gdb does not depend up the string being null terminated, since the
321 actual length is recorded in expression elements at each end of the
322 string. The null byte is taken into consideration when computing how
323 many expression elements are required to hold the string constant, of
0df8b418 324 course. */
c906108c
SS
325
326
327void
fba45db2 328write_exp_string (struct stoken str)
c906108c 329{
f86f5ca3
PH
330 int len = str.length;
331 int lenelt;
332 char *strdata;
c906108c
SS
333
334 /* Compute the number of expression elements required to hold the string
335 (including a null byte terminator), along with one expression element
336 at each end to record the actual string length (not including the
0df8b418 337 null byte terminator). */
c906108c
SS
338
339 lenelt = 2 + BYTES_TO_EXP_ELEM (len + 1);
340
341 /* Ensure that we have enough available expression elements to store
0df8b418 342 everything. */
c906108c
SS
343
344 if ((expout_ptr + lenelt) >= expout_size)
345 {
346 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
347 expout = (struct expression *)
348 xrealloc ((char *) expout, (sizeof (struct expression)
349 + EXP_ELEM_TO_BYTES (expout_size)));
350 }
351
352 /* Write the leading length expression element (which advances the current
353 expression element index), then write the string constant followed by a
354 terminating null byte, and then write the trailing length expression
0df8b418 355 element. */
c906108c
SS
356
357 write_exp_elt_longcst ((LONGEST) len);
358 strdata = (char *) &expout->elts[expout_ptr];
359 memcpy (strdata, str.ptr, len);
360 *(strdata + len) = '\0';
361 expout_ptr += lenelt - 2;
362 write_exp_elt_longcst ((LONGEST) len);
363}
364
6c7a06a3
TT
365/* Add a vector of string constants to the end of the expression.
366
367 This adds an OP_STRING operation, but encodes the contents
368 differently from write_exp_string. The language is expected to
369 handle evaluation of this expression itself.
370
371 After the usual OP_STRING header, TYPE is written into the
372 expression as a long constant. The interpretation of this field is
373 up to the language evaluator.
374
375 Next, each string in VEC is written. The length is written as a
376 long constant, followed by the contents of the string. */
377
378void
379write_exp_string_vector (int type, struct stoken_vector *vec)
380{
381 int i, n_slots, len;
382
383 /* Compute the size. We compute the size in number of slots to
384 avoid issues with string padding. */
385 n_slots = 0;
386 for (i = 0; i < vec->len; ++i)
387 {
388 /* One slot for the length of this element, plus the number of
389 slots needed for this string. */
390 n_slots += 1 + BYTES_TO_EXP_ELEM (vec->tokens[i].length);
391 }
392
393 /* One more slot for the type of the string. */
394 ++n_slots;
395
396 /* Now compute a phony string length. */
397 len = EXP_ELEM_TO_BYTES (n_slots) - 1;
398
399 n_slots += 4;
400 if ((expout_ptr + n_slots) >= expout_size)
401 {
402 expout_size = max (expout_size * 2, expout_ptr + n_slots + 10);
403 expout = (struct expression *)
404 xrealloc ((char *) expout, (sizeof (struct expression)
405 + EXP_ELEM_TO_BYTES (expout_size)));
406 }
407
408 write_exp_elt_opcode (OP_STRING);
409 write_exp_elt_longcst (len);
410 write_exp_elt_longcst (type);
411
412 for (i = 0; i < vec->len; ++i)
413 {
414 write_exp_elt_longcst (vec->tokens[i].length);
415 memcpy (&expout->elts[expout_ptr], vec->tokens[i].ptr,
416 vec->tokens[i].length);
417 expout_ptr += BYTES_TO_EXP_ELEM (vec->tokens[i].length);
418 }
419
420 write_exp_elt_longcst (len);
421 write_exp_elt_opcode (OP_STRING);
422}
423
c906108c
SS
424/* Add a bitstring constant to the end of the expression.
425
426 Bitstring constants are stored by first writing an expression element
427 that contains the length of the bitstring (in bits), then stuffing the
428 bitstring constant itself into however many expression elements are
429 needed to hold it, and then writing another expression element that
0df8b418 430 contains the length of the bitstring. I.e. an expression element at
c906108c
SS
431 each end of the bitstring records the bitstring length, so you can skip
432 over the expression elements containing the actual bitstring bytes from
0df8b418 433 either end of the bitstring. */
c906108c
SS
434
435void
fba45db2 436write_exp_bitstring (struct stoken str)
c906108c 437{
f86f5ca3
PH
438 int bits = str.length; /* length in bits */
439 int len = (bits + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
440 int lenelt;
441 char *strdata;
c906108c
SS
442
443 /* Compute the number of expression elements required to hold the bitstring,
444 along with one expression element at each end to record the actual
0df8b418 445 bitstring length in bits. */
c906108c
SS
446
447 lenelt = 2 + BYTES_TO_EXP_ELEM (len);
448
449 /* Ensure that we have enough available expression elements to store
0df8b418 450 everything. */
c906108c
SS
451
452 if ((expout_ptr + lenelt) >= expout_size)
453 {
454 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
455 expout = (struct expression *)
456 xrealloc ((char *) expout, (sizeof (struct expression)
457 + EXP_ELEM_TO_BYTES (expout_size)));
458 }
459
460 /* Write the leading length expression element (which advances the current
461 expression element index), then write the bitstring constant, and then
0df8b418 462 write the trailing length expression element. */
c906108c
SS
463
464 write_exp_elt_longcst ((LONGEST) bits);
465 strdata = (char *) &expout->elts[expout_ptr];
466 memcpy (strdata, str.ptr, len);
467 expout_ptr += lenelt - 2;
468 write_exp_elt_longcst ((LONGEST) bits);
469}
470
471/* Add the appropriate elements for a minimal symbol to the end of
c841afd5 472 the expression. */
c906108c 473
c906108c 474void
c841afd5 475write_exp_msymbol (struct minimal_symbol *msymbol)
c906108c 476{
bccdca4a
UW
477 struct objfile *objfile = msymbol_objfile (msymbol);
478 struct gdbarch *gdbarch = get_objfile_arch (objfile);
479
480 CORE_ADDR addr = SYMBOL_VALUE_ADDRESS (msymbol);
714835d5 481 struct obj_section *section = SYMBOL_OBJ_SECTION (msymbol);
712f90be 482 enum minimal_symbol_type type = MSYMBOL_TYPE (msymbol);
bccdca4a
UW
483 CORE_ADDR pc;
484
485 /* The minimal symbol might point to a function descriptor;
486 resolve it to the actual code address instead. */
487 pc = gdbarch_convert_from_func_ptr_addr (gdbarch, addr, &current_target);
488 if (pc != addr)
489 {
0875794a
JK
490 struct minimal_symbol *ifunc_msym = lookup_minimal_symbol_by_pc (pc);
491
bccdca4a
UW
492 /* In this case, assume we have a code symbol instead of
493 a data symbol. */
0875794a
JK
494
495 if (ifunc_msym != NULL && MSYMBOL_TYPE (ifunc_msym) == mst_text_gnu_ifunc
496 && SYMBOL_VALUE_ADDRESS (ifunc_msym) == pc)
497 {
498 /* A function descriptor has been resolved but PC is still in the
499 STT_GNU_IFUNC resolver body (such as because inferior does not
500 run to be able to call it). */
501
502 type = mst_text_gnu_ifunc;
503 }
504 else
505 type = mst_text;
714835d5 506 section = NULL;
bccdca4a
UW
507 addr = pc;
508 }
509
510 if (overlay_debugging)
714835d5 511 addr = symbol_overlayed_address (addr, section);
c906108c
SS
512
513 write_exp_elt_opcode (OP_LONG);
a858089e 514 /* Let's make the type big enough to hold a 64-bit address. */
46bf5051 515 write_exp_elt_type (objfile_type (objfile)->builtin_core_addr);
c906108c 516 write_exp_elt_longcst ((LONGEST) addr);
c906108c
SS
517 write_exp_elt_opcode (OP_LONG);
518
714835d5 519 if (section && section->the_bfd_section->flags & SEC_THREAD_LOCAL)
9e35dae4 520 {
9e35dae4 521 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
bccdca4a 522 write_exp_elt_objfile (objfile);
46bf5051 523 write_exp_elt_type (objfile_type (objfile)->nodebug_tls_symbol);
9e35dae4
DJ
524 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
525 return;
526 }
527
c906108c 528 write_exp_elt_opcode (UNOP_MEMVAL);
bccdca4a 529 switch (type)
c906108c
SS
530 {
531 case mst_text:
532 case mst_file_text:
533 case mst_solib_trampoline:
46bf5051 534 write_exp_elt_type (objfile_type (objfile)->nodebug_text_symbol);
c906108c
SS
535 break;
536
0875794a
JK
537 case mst_text_gnu_ifunc:
538 write_exp_elt_type (objfile_type (objfile)
539 ->nodebug_text_gnu_ifunc_symbol);
540 break;
541
c906108c
SS
542 case mst_data:
543 case mst_file_data:
544 case mst_bss:
545 case mst_file_bss:
46bf5051 546 write_exp_elt_type (objfile_type (objfile)->nodebug_data_symbol);
c906108c
SS
547 break;
548
0875794a
JK
549 case mst_slot_got_plt:
550 write_exp_elt_type (objfile_type (objfile)->nodebug_got_plt_symbol);
551 break;
552
c906108c 553 default:
46bf5051 554 write_exp_elt_type (objfile_type (objfile)->nodebug_unknown_symbol);
c906108c
SS
555 break;
556 }
557 write_exp_elt_opcode (UNOP_MEMVAL);
558}
65d12d83
TT
559
560/* Mark the current index as the starting location of a structure
561 expression. This is used when completing on field names. */
562
563void
564mark_struct_expression (void)
565{
566 expout_last_struct = expout_ptr;
567}
568
c906108c
SS
569\f
570/* Recognize tokens that start with '$'. These include:
571
c5aa993b
JM
572 $regname A native register name or a "standard
573 register name".
c906108c 574
c5aa993b
JM
575 $variable A convenience variable with a name chosen
576 by the user.
c906108c 577
c5aa993b
JM
578 $digits Value history with index <digits>, starting
579 from the first value which has index 1.
c906108c 580
c5aa993b 581 $$digits Value history with index <digits> relative
0df8b418 582 to the last value. I.e. $$0 is the last
c5aa993b
JM
583 value, $$1 is the one previous to that, $$2
584 is the one previous to $$1, etc.
c906108c 585
c5aa993b 586 $ | $0 | $$0 The last value in the value history.
c906108c 587
c5aa993b 588 $$ An abbreviation for the second to the last
0df8b418 589 value in the value history, I.e. $$1 */
c906108c
SS
590
591void
fba45db2 592write_dollar_variable (struct stoken str)
c906108c 593{
d7318818
RC
594 struct symbol *sym = NULL;
595 struct minimal_symbol *msym = NULL;
c4a3d09a 596 struct internalvar *isym = NULL;
d7318818 597
c906108c 598 /* Handle the tokens $digits; also $ (short for $0) and $$ (short for $$1)
0df8b418 599 and $$digits (equivalent to $<-digits> if you could type that). */
c906108c 600
c906108c
SS
601 int negate = 0;
602 int i = 1;
603 /* Double dollar means negate the number and add -1 as well.
604 Thus $$ alone means -1. */
605 if (str.length >= 2 && str.ptr[1] == '$')
606 {
607 negate = 1;
608 i = 2;
609 }
610 if (i == str.length)
611 {
0df8b418 612 /* Just dollars (one or two). */
c5aa993b 613 i = -negate;
c906108c
SS
614 goto handle_last;
615 }
616 /* Is the rest of the token digits? */
617 for (; i < str.length; i++)
618 if (!(str.ptr[i] >= '0' && str.ptr[i] <= '9'))
619 break;
620 if (i == str.length)
621 {
622 i = atoi (str.ptr + 1 + negate);
623 if (negate)
c5aa993b 624 i = -i;
c906108c
SS
625 goto handle_last;
626 }
c5aa993b 627
c906108c
SS
628 /* Handle tokens that refer to machine registers:
629 $ followed by a register name. */
d80b854b 630 i = user_reg_map_name_to_regnum (parse_gdbarch,
029a67e4 631 str.ptr + 1, str.length - 1);
c5aa993b 632 if (i >= 0)
c906108c
SS
633 goto handle_register;
634
c4a3d09a
MF
635 /* Any names starting with $ are probably debugger internal variables. */
636
637 isym = lookup_only_internalvar (copy_name (str) + 1);
638 if (isym)
639 {
640 write_exp_elt_opcode (OP_INTERNALVAR);
641 write_exp_elt_intern (isym);
642 write_exp_elt_opcode (OP_INTERNALVAR);
643 return;
644 }
645
d7318818 646 /* On some systems, such as HP-UX and hppa-linux, certain system routines
0df8b418 647 have names beginning with $ or $$. Check for those, first. */
d7318818
RC
648
649 sym = lookup_symbol (copy_name (str), (struct block *) NULL,
2570f2b7 650 VAR_DOMAIN, (int *) NULL);
d7318818
RC
651 if (sym)
652 {
653 write_exp_elt_opcode (OP_VAR_VALUE);
654 write_exp_elt_block (block_found); /* set by lookup_symbol */
655 write_exp_elt_sym (sym);
656 write_exp_elt_opcode (OP_VAR_VALUE);
657 return;
658 }
659 msym = lookup_minimal_symbol (copy_name (str), NULL, NULL);
660 if (msym)
c906108c 661 {
c841afd5 662 write_exp_msymbol (msym);
d7318818 663 return;
c906108c 664 }
c5aa993b 665
c4a3d09a 666 /* Any other names are assumed to be debugger internal variables. */
c906108c
SS
667
668 write_exp_elt_opcode (OP_INTERNALVAR);
c4a3d09a 669 write_exp_elt_intern (create_internalvar (copy_name (str) + 1));
c5aa993b 670 write_exp_elt_opcode (OP_INTERNALVAR);
c906108c 671 return;
c5aa993b 672handle_last:
c906108c
SS
673 write_exp_elt_opcode (OP_LAST);
674 write_exp_elt_longcst ((LONGEST) i);
675 write_exp_elt_opcode (OP_LAST);
676 return;
c5aa993b 677handle_register:
c906108c 678 write_exp_elt_opcode (OP_REGISTER);
67f3407f
DJ
679 str.length--;
680 str.ptr++;
681 write_exp_string (str);
c5aa993b 682 write_exp_elt_opcode (OP_REGISTER);
c906108c
SS
683 return;
684}
685
686
c906108c 687char *
fba45db2 688find_template_name_end (char *p)
c906108c
SS
689{
690 int depth = 1;
691 int just_seen_right = 0;
692 int just_seen_colon = 0;
693 int just_seen_space = 0;
c5aa993b 694
c906108c
SS
695 if (!p || (*p != '<'))
696 return 0;
697
698 while (*++p)
699 {
700 switch (*p)
c5aa993b
JM
701 {
702 case '\'':
703 case '\"':
704 case '{':
705 case '}':
0df8b418 706 /* In future, may want to allow these?? */
c5aa993b
JM
707 return 0;
708 case '<':
709 depth++; /* start nested template */
710 if (just_seen_colon || just_seen_right || just_seen_space)
711 return 0; /* but not after : or :: or > or space */
712 break;
713 case '>':
714 if (just_seen_colon || just_seen_right)
715 return 0; /* end a (nested?) template */
716 just_seen_right = 1; /* but not after : or :: */
717 if (--depth == 0) /* also disallow >>, insist on > > */
718 return ++p; /* if outermost ended, return */
719 break;
720 case ':':
721 if (just_seen_space || (just_seen_colon > 1))
722 return 0; /* nested class spec coming up */
723 just_seen_colon++; /* we allow :: but not :::: */
724 break;
725 case ' ':
726 break;
727 default:
728 if (!((*p >= 'a' && *p <= 'z') || /* allow token chars */
729 (*p >= 'A' && *p <= 'Z') ||
730 (*p >= '0' && *p <= '9') ||
731 (*p == '_') || (*p == ',') || /* commas for template args */
732 (*p == '&') || (*p == '*') || /* pointer and ref types */
733 (*p == '(') || (*p == ')') || /* function types */
734 (*p == '[') || (*p == ']'))) /* array types */
735 return 0;
736 }
c906108c 737 if (*p != ' ')
c5aa993b 738 just_seen_space = 0;
c906108c 739 if (*p != ':')
c5aa993b 740 just_seen_colon = 0;
c906108c 741 if (*p != '>')
c5aa993b 742 just_seen_right = 0;
c906108c
SS
743 }
744 return 0;
745}
c5aa993b 746\f
c906108c
SS
747
748
c906108c
SS
749/* Return a null-terminated temporary copy of the name
750 of a string token. */
751
752char *
fba45db2 753copy_name (struct stoken token)
c906108c 754{
3a913e29
JB
755 /* Make sure there's enough space for the token. */
756 if (namecopy_size < token.length + 1)
757 {
758 namecopy_size = token.length + 1;
759 namecopy = xrealloc (namecopy, token.length + 1);
760 }
761
c906108c
SS
762 memcpy (namecopy, token.ptr, token.length);
763 namecopy[token.length] = 0;
3a913e29 764
c906108c
SS
765 return namecopy;
766}
767\f
768/* Reverse an expression from suffix form (in which it is constructed)
65d12d83
TT
769 to prefix form (in which we can conveniently print or execute it).
770 Ordinarily this always returns -1. However, if EXPOUT_LAST_STRUCT
771 is not -1 (i.e., we are trying to complete a field name), it will
772 return the index of the subexpression which is the left-hand-side
773 of the struct operation at EXPOUT_LAST_STRUCT. */
c906108c 774
65d12d83 775static int
f86f5ca3 776prefixify_expression (struct expression *expr)
c906108c 777{
df2a60d0 778 int len = sizeof (struct expression) + EXP_ELEM_TO_BYTES (expr->nelts);
f86f5ca3
PH
779 struct expression *temp;
780 int inpos = expr->nelts, outpos = 0;
c906108c
SS
781
782 temp = (struct expression *) alloca (len);
783
784 /* Copy the original expression into temp. */
785 memcpy (temp, expr, len);
786
65d12d83 787 return prefixify_subexp (temp, expr, inpos, outpos);
c906108c
SS
788}
789
24daaebc
PH
790/* Return the number of exp_elements in the postfix subexpression
791 of EXPR whose operator is at index ENDPOS - 1 in EXPR. */
c906108c
SS
792
793int
f86f5ca3 794length_of_subexp (struct expression *expr, int endpos)
24daaebc 795{
6b4398f7 796 int oplen, args;
24daaebc
PH
797
798 operator_length (expr, endpos, &oplen, &args);
799
800 while (args > 0)
801 {
802 oplen += length_of_subexp (expr, endpos - oplen);
803 args--;
804 }
805
806 return oplen;
807}
808
809/* Sets *OPLENP to the length of the operator whose (last) index is
810 ENDPOS - 1 in EXPR, and sets *ARGSP to the number of arguments that
811 operator takes. */
812
813void
554794dc
SDJ
814operator_length (const struct expression *expr, int endpos, int *oplenp,
815 int *argsp)
5f9769d1
PH
816{
817 expr->language_defn->la_exp_desc->operator_length (expr, endpos,
818 oplenp, argsp);
819}
820
821/* Default value for operator_length in exp_descriptor vectors. */
822
823void
554794dc 824operator_length_standard (const struct expression *expr, int endpos,
5f9769d1 825 int *oplenp, int *argsp)
c906108c 826{
f86f5ca3
PH
827 int oplen = 1;
828 int args = 0;
0b4e1325 829 enum f90_range_type range_type;
f86f5ca3 830 int i;
c906108c
SS
831
832 if (endpos < 1)
8a3fe4f8 833 error (_("?error in operator_length_standard"));
c906108c
SS
834
835 i = (int) expr->elts[endpos - 1].opcode;
836
837 switch (i)
838 {
839 /* C++ */
840 case OP_SCOPE:
841 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
842 oplen = 5 + BYTES_TO_EXP_ELEM (oplen + 1);
843 break;
844
845 case OP_LONG:
846 case OP_DOUBLE:
27bc4d80 847 case OP_DECFLOAT:
c906108c
SS
848 case OP_VAR_VALUE:
849 oplen = 4;
850 break;
851
852 case OP_TYPE:
853 case OP_BOOL:
854 case OP_LAST:
c906108c
SS
855 case OP_INTERNALVAR:
856 oplen = 3;
857 break;
858
859 case OP_COMPLEX:
c806c55a 860 oplen = 3;
c906108c 861 args = 2;
c5aa993b 862 break;
c906108c
SS
863
864 case OP_FUNCALL:
865 case OP_F77_UNDETERMINED_ARGLIST:
866 oplen = 3;
867 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
868 break;
869
072bba3b
KS
870 case TYPE_INSTANCE:
871 oplen = 4 + longest_to_int (expr->elts[endpos - 2].longconst);
872 args = 1;
873 break;
874
0df8b418 875 case OP_OBJC_MSGCALL: /* Objective C message (method) call. */
53c551b7
AF
876 oplen = 4;
877 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
878 break;
879
c906108c
SS
880 case UNOP_MAX:
881 case UNOP_MIN:
882 oplen = 3;
883 break;
884
c5aa993b
JM
885 case BINOP_VAL:
886 case UNOP_CAST:
4e8f195d
TT
887 case UNOP_DYNAMIC_CAST:
888 case UNOP_REINTERPRET_CAST:
c5aa993b 889 case UNOP_MEMVAL:
c906108c
SS
890 oplen = 3;
891 args = 1;
892 break;
893
9e35dae4
DJ
894 case UNOP_MEMVAL_TLS:
895 oplen = 4;
896 args = 1;
897 break;
898
c906108c
SS
899 case UNOP_ABS:
900 case UNOP_CAP:
901 case UNOP_CHR:
902 case UNOP_FLOAT:
903 case UNOP_HIGH:
904 case UNOP_ODD:
905 case UNOP_ORD:
906 case UNOP_TRUNC:
907 oplen = 1;
908 args = 1;
909 break;
910
7322dca9
SW
911 case OP_ADL_FUNC:
912 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
913 oplen = 4 + BYTES_TO_EXP_ELEM (oplen + 1);
914 oplen++;
915 oplen++;
916 break;
917
c906108c
SS
918 case OP_LABELED:
919 case STRUCTOP_STRUCT:
920 case STRUCTOP_PTR:
921 args = 1;
922 /* fall through */
67f3407f 923 case OP_REGISTER:
c906108c
SS
924 case OP_M2_STRING:
925 case OP_STRING:
3e43a32a 926 case OP_OBJC_NSSTRING: /* Objective C Foundation Class
0df8b418
MS
927 NSString constant. */
928 case OP_OBJC_SELECTOR: /* Objective C "@selector" pseudo-op. */
c906108c 929 case OP_NAME:
c906108c
SS
930 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
931 oplen = 4 + BYTES_TO_EXP_ELEM (oplen + 1);
932 break;
933
934 case OP_BITSTRING:
935 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
936 oplen = (oplen + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
937 oplen = 4 + BYTES_TO_EXP_ELEM (oplen);
938 break;
939
940 case OP_ARRAY:
941 oplen = 4;
942 args = longest_to_int (expr->elts[endpos - 2].longconst);
943 args -= longest_to_int (expr->elts[endpos - 3].longconst);
944 args += 1;
945 break;
946
947 case TERNOP_COND:
948 case TERNOP_SLICE:
949 case TERNOP_SLICE_COUNT:
950 args = 3;
951 break;
952
953 /* Modula-2 */
c5aa993b 954 case MULTI_SUBSCRIPT:
c906108c 955 oplen = 3;
c5aa993b 956 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
c906108c
SS
957 break;
958
959 case BINOP_ASSIGN_MODIFY:
960 oplen = 3;
961 args = 2;
962 break;
963
964 /* C++ */
965 case OP_THIS:
966 oplen = 2;
967 break;
968
0b4e1325
WZ
969 case OP_F90_RANGE:
970 oplen = 3;
971
972 range_type = longest_to_int (expr->elts[endpos - 2].longconst);
973 switch (range_type)
974 {
975 case LOW_BOUND_DEFAULT:
976 case HIGH_BOUND_DEFAULT:
977 args = 1;
978 break;
979 case BOTH_BOUND_DEFAULT:
980 args = 0;
981 break;
982 case NONE_BOUND_DEFAULT:
983 args = 2;
984 break;
985 }
986
987 break;
988
c906108c
SS
989 default:
990 args = 1 + (i < (int) BINOP_END);
991 }
992
24daaebc
PH
993 *oplenp = oplen;
994 *argsp = args;
c906108c
SS
995}
996
997/* Copy the subexpression ending just before index INEND in INEXPR
998 into OUTEXPR, starting at index OUTBEG.
65d12d83
TT
999 In the process, convert it from suffix to prefix form.
1000 If EXPOUT_LAST_STRUCT is -1, then this function always returns -1.
1001 Otherwise, it returns the index of the subexpression which is the
1002 left-hand-side of the expression at EXPOUT_LAST_STRUCT. */
c906108c 1003
65d12d83 1004static int
f86f5ca3
PH
1005prefixify_subexp (struct expression *inexpr,
1006 struct expression *outexpr, int inend, int outbeg)
c906108c 1007{
24daaebc
PH
1008 int oplen;
1009 int args;
f86f5ca3 1010 int i;
c906108c 1011 int *arglens;
65d12d83 1012 int result = -1;
c906108c 1013
24daaebc 1014 operator_length (inexpr, inend, &oplen, &args);
c906108c
SS
1015
1016 /* Copy the final operator itself, from the end of the input
1017 to the beginning of the output. */
1018 inend -= oplen;
1019 memcpy (&outexpr->elts[outbeg], &inexpr->elts[inend],
1020 EXP_ELEM_TO_BYTES (oplen));
1021 outbeg += oplen;
1022
65d12d83
TT
1023 if (expout_last_struct == inend)
1024 result = outbeg - oplen;
1025
c906108c
SS
1026 /* Find the lengths of the arg subexpressions. */
1027 arglens = (int *) alloca (args * sizeof (int));
1028 for (i = args - 1; i >= 0; i--)
1029 {
1030 oplen = length_of_subexp (inexpr, inend);
1031 arglens[i] = oplen;
1032 inend -= oplen;
1033 }
1034
1035 /* Now copy each subexpression, preserving the order of
1036 the subexpressions, but prefixifying each one.
1037 In this loop, inend starts at the beginning of
1038 the expression this level is working on
1039 and marches forward over the arguments.
1040 outbeg does similarly in the output. */
1041 for (i = 0; i < args; i++)
1042 {
65d12d83 1043 int r;
ad3bbd48 1044
c906108c
SS
1045 oplen = arglens[i];
1046 inend += oplen;
65d12d83
TT
1047 r = prefixify_subexp (inexpr, outexpr, inend, outbeg);
1048 if (r != -1)
1049 {
1050 /* Return immediately. We probably have only parsed a
1051 partial expression, so we don't want to try to reverse
1052 the other operands. */
1053 return r;
1054 }
c906108c
SS
1055 outbeg += oplen;
1056 }
65d12d83
TT
1057
1058 return result;
c906108c
SS
1059}
1060\f
c906108c
SS
1061/* Read an expression from the string *STRINGPTR points to,
1062 parse it, and return a pointer to a struct expression that we malloc.
1063 Use block BLOCK as the lexical context for variable names;
1064 if BLOCK is zero, use the block of the selected stack frame.
1065 Meanwhile, advance *STRINGPTR to point after the expression,
1066 at the first nonwhite character that is not part of the expression
1067 (possibly a null character).
1068
1069 If COMMA is nonzero, stop if a comma is reached. */
1070
1071struct expression *
fba45db2 1072parse_exp_1 (char **stringptr, struct block *block, int comma)
e85c3284 1073{
65d12d83 1074 return parse_exp_in_context (stringptr, block, comma, 0, NULL);
e85c3284
PH
1075}
1076
1077/* As for parse_exp_1, except that if VOID_CONTEXT_P, then
65d12d83
TT
1078 no value is expected from the expression.
1079 OUT_SUBEXP is set when attempting to complete a field name; in this
1080 case it is set to the index of the subexpression on the
1081 left-hand-side of the struct op. If not doing such completion, it
1082 is left untouched. */
e85c3284
PH
1083
1084static struct expression *
1085parse_exp_in_context (char **stringptr, struct block *block, int comma,
65d12d83 1086 int void_context_p, int *out_subexp)
c906108c 1087{
65d12d83 1088 volatile struct gdb_exception except;
c906108c 1089 struct cleanup *old_chain;
0cce5bd9 1090 const struct language_defn *lang = NULL;
65d12d83 1091 int subexp;
c906108c
SS
1092
1093 lexptr = *stringptr;
665132f9 1094 prev_lexptr = NULL;
c906108c
SS
1095
1096 paren_depth = 0;
1097 type_stack_depth = 0;
65d12d83 1098 expout_last_struct = -1;
c906108c
SS
1099
1100 comma_terminates = comma;
1101
1102 if (lexptr == 0 || *lexptr == 0)
e2e0b3e5 1103 error_no_arg (_("expression to compute"));
c906108c 1104
74b7792f 1105 old_chain = make_cleanup (free_funcalls, 0 /*ignore*/);
c906108c
SS
1106 funcall_chain = 0;
1107
d705c43c 1108 expression_context_block = block;
59f92a09 1109
d705c43c
PA
1110 /* If no context specified, try using the current frame, if any. */
1111 if (!expression_context_block)
1112 expression_context_block = get_selected_block (&expression_context_pc);
1113 else
1114 expression_context_pc = BLOCK_START (expression_context_block);
59f92a09 1115
d705c43c 1116 /* Fall back to using the current source static context, if any. */
59f92a09 1117
d705c43c 1118 if (!expression_context_block)
59f92a09
FF
1119 {
1120 struct symtab_and_line cursal = get_current_source_symtab_and_line ();
1121 if (cursal.symtab)
d705c43c
PA
1122 expression_context_block
1123 = BLOCKVECTOR_BLOCK (BLOCKVECTOR (cursal.symtab), STATIC_BLOCK);
1124 if (expression_context_block)
1125 expression_context_pc = BLOCK_START (expression_context_block);
84f0252a 1126 }
c906108c 1127
0cce5bd9
JB
1128 if (language_mode == language_mode_auto && block != NULL)
1129 {
1130 /* Find the language associated to the given context block.
1131 Default to the current language if it can not be determined.
1132
1133 Note that using the language corresponding to the current frame
1134 can sometimes give unexpected results. For instance, this
1135 routine is often called several times during the inferior
1136 startup phase to re-parse breakpoint expressions after
1137 a new shared library has been loaded. The language associated
1138 to the current frame at this moment is not relevant for
0df8b418 1139 the breakpoint. Using it would therefore be silly, so it seems
0cce5bd9 1140 better to rely on the current language rather than relying on
0df8b418 1141 the current frame language to parse the expression. That's why
0cce5bd9
JB
1142 we do the following language detection only if the context block
1143 has been specifically provided. */
1144 struct symbol *func = block_linkage_function (block);
1145
1146 if (func != NULL)
1147 lang = language_def (SYMBOL_LANGUAGE (func));
1148 if (lang == NULL || lang->la_language == language_unknown)
1149 lang = current_language;
1150 }
1151 else
1152 lang = current_language;
1153
c906108c
SS
1154 expout_size = 10;
1155 expout_ptr = 0;
1156 expout = (struct expression *)
1157 xmalloc (sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_size));
0cce5bd9 1158 expout->language_defn = lang;
e17c207e 1159 expout->gdbarch = get_current_arch ();
c906108c 1160
65d12d83
TT
1161 TRY_CATCH (except, RETURN_MASK_ALL)
1162 {
0cce5bd9
JB
1163 if (lang->la_parser ())
1164 lang->la_error (NULL);
65d12d83
TT
1165 }
1166 if (except.reason < 0)
1167 {
1168 if (! in_parse_field)
1169 {
1170 xfree (expout);
1171 throw_exception (except);
1172 }
1173 }
c906108c
SS
1174
1175 discard_cleanups (old_chain);
1176
1177 /* Record the actual number of expression elements, and then
1178 reallocate the expression memory so that we free up any
0df8b418 1179 excess elements. */
c906108c
SS
1180
1181 expout->nelts = expout_ptr;
1182 expout = (struct expression *)
1183 xrealloc ((char *) expout,
82ae4854 1184 sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_ptr));
c906108c
SS
1185
1186 /* Convert expression from postfix form as generated by yacc
0df8b418 1187 parser, to a prefix form. */
c906108c 1188
c906108c 1189 if (expressiondebug)
24daaebc
PH
1190 dump_raw_expression (expout, gdb_stdlog,
1191 "before conversion to prefix form");
c906108c 1192
65d12d83
TT
1193 subexp = prefixify_expression (expout);
1194 if (out_subexp)
1195 *out_subexp = subexp;
c906108c 1196
0cce5bd9 1197 lang->la_post_parser (&expout, void_context_p);
e85c3284 1198
c906108c 1199 if (expressiondebug)
24daaebc 1200 dump_prefix_expression (expout, gdb_stdlog);
c906108c
SS
1201
1202 *stringptr = lexptr;
1203 return expout;
1204}
1205
1206/* Parse STRING as an expression, and complain if this fails
1207 to use up all of the contents of STRING. */
1208
1209struct expression *
fba45db2 1210parse_expression (char *string)
c906108c 1211{
f86f5ca3 1212 struct expression *exp;
ad3bbd48 1213
c906108c
SS
1214 exp = parse_exp_1 (&string, 0, 0);
1215 if (*string)
8a3fe4f8 1216 error (_("Junk after end of expression."));
c906108c
SS
1217 return exp;
1218}
e85c3284 1219
65d12d83
TT
1220/* Parse STRING as an expression. If parsing ends in the middle of a
1221 field reference, return the type of the left-hand-side of the
1222 reference; furthermore, if the parsing ends in the field name,
c92817ce
TT
1223 return the field name in *NAME. If the parsing ends in the middle
1224 of a field reference, but the reference is somehow invalid, throw
1225 an exception. In all other cases, return NULL. Returned non-NULL
1226 *NAME must be freed by the caller. */
65d12d83
TT
1227
1228struct type *
1229parse_field_expression (char *string, char **name)
1230{
1231 struct expression *exp = NULL;
1232 struct value *val;
1233 int subexp;
1234 volatile struct gdb_exception except;
1235
c92817ce 1236 TRY_CATCH (except, RETURN_MASK_ERROR)
65d12d83
TT
1237 {
1238 in_parse_field = 1;
1239 exp = parse_exp_in_context (&string, 0, 0, 0, &subexp);
1240 }
1241 in_parse_field = 0;
1242 if (except.reason < 0 || ! exp)
1243 return NULL;
1244 if (expout_last_struct == -1)
1245 {
1246 xfree (exp);
1247 return NULL;
1248 }
1249
1250 *name = extract_field_op (exp, &subexp);
1251 if (!*name)
1252 {
1253 xfree (exp);
1254 return NULL;
1255 }
a0b7aece 1256
c92817ce
TT
1257 /* This might throw an exception. If so, we want to let it
1258 propagate. */
65d12d83 1259 val = evaluate_subexpression_type (exp, subexp);
c92817ce
TT
1260 /* (*NAME) is a part of the EXP memory block freed below. */
1261 *name = xstrdup (*name);
65d12d83
TT
1262 xfree (exp);
1263
1264 return value_type (val);
1265}
1266
0df8b418 1267/* A post-parser that does nothing. */
e85c3284 1268
e85c3284
PH
1269void
1270null_post_parser (struct expression **exp, int void_context_p)
1271{
1272}
d30f5e1f
DE
1273
1274/* Parse floating point value P of length LEN.
1275 Return 0 (false) if invalid, 1 (true) if valid.
1276 The successfully parsed number is stored in D.
1277 *SUFFIX points to the suffix of the number in P.
1278
1279 NOTE: This accepts the floating point syntax that sscanf accepts. */
1280
1281int
1282parse_float (const char *p, int len, DOUBLEST *d, const char **suffix)
1283{
1284 char *copy;
1285 char *s;
1286 int n, num;
1287
1288 copy = xmalloc (len + 1);
1289 memcpy (copy, p, len);
1290 copy[len] = 0;
1291
1292 num = sscanf (copy, "%" DOUBLEST_SCAN_FORMAT "%n", d, &n);
1293 xfree (copy);
1294
1295 /* The sscanf man page suggests not making any assumptions on the effect
1296 of %n on the result, so we don't.
1297 That is why we simply test num == 0. */
1298 if (num == 0)
1299 return 0;
1300
1301 *suffix = p + n;
1302 return 1;
1303}
1304
1305/* Parse floating point value P of length LEN, using the C syntax for floats.
1306 Return 0 (false) if invalid, 1 (true) if valid.
1307 The successfully parsed number is stored in *D.
1308 Its type is taken from builtin_type (gdbarch) and is stored in *T. */
1309
1310int
1311parse_c_float (struct gdbarch *gdbarch, const char *p, int len,
1312 DOUBLEST *d, struct type **t)
1313{
1314 const char *suffix;
1315 int suffix_len;
1316 const struct builtin_type *builtin_types = builtin_type (gdbarch);
1317
1318 if (! parse_float (p, len, d, &suffix))
1319 return 0;
1320
1321 suffix_len = p + len - suffix;
1322
1323 if (suffix_len == 0)
1324 *t = builtin_types->builtin_double;
1325 else if (suffix_len == 1)
1326 {
1327 /* Handle suffixes: 'f' for float, 'l' for long double. */
1328 if (tolower (*suffix) == 'f')
1329 *t = builtin_types->builtin_float;
1330 else if (tolower (*suffix) == 'l')
1331 *t = builtin_types->builtin_long_double;
1332 else
1333 return 0;
1334 }
1335 else
1336 return 0;
1337
1338 return 1;
1339}
c906108c
SS
1340\f
1341/* Stuff for maintaining a stack of types. Currently just used by C, but
1342 probably useful for any language which declares its types "backwards". */
1343
47663de5
MS
1344static void
1345check_type_stack_depth (void)
c906108c
SS
1346{
1347 if (type_stack_depth == type_stack_size)
1348 {
1349 type_stack_size *= 2;
1350 type_stack = (union type_stack_elt *)
1351 xrealloc ((char *) type_stack, type_stack_size * sizeof (*type_stack));
1352 }
47663de5
MS
1353}
1354
1355void
1356push_type (enum type_pieces tp)
1357{
1358 check_type_stack_depth ();
c906108c
SS
1359 type_stack[type_stack_depth++].piece = tp;
1360}
1361
1362void
fba45db2 1363push_type_int (int n)
c906108c 1364{
47663de5 1365 check_type_stack_depth ();
c906108c
SS
1366 type_stack[type_stack_depth++].int_val = n;
1367}
1368
47663de5
MS
1369void
1370push_type_address_space (char *string)
1371{
50810684 1372 push_type_int (address_space_name_to_int (parse_gdbarch, string));
47663de5
MS
1373}
1374
c5aa993b 1375enum type_pieces
fba45db2 1376pop_type (void)
c906108c
SS
1377{
1378 if (type_stack_depth)
1379 return type_stack[--type_stack_depth].piece;
1380 return tp_end;
1381}
1382
1383int
fba45db2 1384pop_type_int (void)
c906108c
SS
1385{
1386 if (type_stack_depth)
1387 return type_stack[--type_stack_depth].int_val;
1388 /* "Can't happen". */
1389 return 0;
1390}
1391
1392/* Pop the type stack and return the type which corresponds to FOLLOW_TYPE
1393 as modified by all the stuff on the stack. */
1394struct type *
fba45db2 1395follow_types (struct type *follow_type)
c906108c
SS
1396{
1397 int done = 0;
2e2394a0
MS
1398 int make_const = 0;
1399 int make_volatile = 0;
47663de5 1400 int make_addr_space = 0;
c906108c 1401 int array_size;
c906108c
SS
1402
1403 while (!done)
1404 switch (pop_type ())
1405 {
1406 case tp_end:
1407 done = 1;
2e2394a0
MS
1408 if (make_const)
1409 follow_type = make_cv_type (make_const,
1410 TYPE_VOLATILE (follow_type),
1411 follow_type, 0);
1412 if (make_volatile)
1413 follow_type = make_cv_type (TYPE_CONST (follow_type),
1414 make_volatile,
1415 follow_type, 0);
47663de5
MS
1416 if (make_addr_space)
1417 follow_type = make_type_with_address_space (follow_type,
1418 make_addr_space);
1419 make_const = make_volatile = 0;
1420 make_addr_space = 0;
2e2394a0
MS
1421 break;
1422 case tp_const:
1423 make_const = 1;
1424 break;
1425 case tp_volatile:
1426 make_volatile = 1;
c906108c 1427 break;
47663de5
MS
1428 case tp_space_identifier:
1429 make_addr_space = pop_type_int ();
1430 break;
c906108c
SS
1431 case tp_pointer:
1432 follow_type = lookup_pointer_type (follow_type);
2e2394a0
MS
1433 if (make_const)
1434 follow_type = make_cv_type (make_const,
1435 TYPE_VOLATILE (follow_type),
1436 follow_type, 0);
1437 if (make_volatile)
1438 follow_type = make_cv_type (TYPE_CONST (follow_type),
1439 make_volatile,
1440 follow_type, 0);
47663de5
MS
1441 if (make_addr_space)
1442 follow_type = make_type_with_address_space (follow_type,
1443 make_addr_space);
2e2394a0 1444 make_const = make_volatile = 0;
47663de5 1445 make_addr_space = 0;
c906108c
SS
1446 break;
1447 case tp_reference:
1448 follow_type = lookup_reference_type (follow_type);
2e2394a0 1449 if (make_const)
47663de5
MS
1450 follow_type = make_cv_type (make_const,
1451 TYPE_VOLATILE (follow_type),
1452 follow_type, 0);
2e2394a0 1453 if (make_volatile)
47663de5
MS
1454 follow_type = make_cv_type (TYPE_CONST (follow_type),
1455 make_volatile,
1456 follow_type, 0);
1457 if (make_addr_space)
1458 follow_type = make_type_with_address_space (follow_type,
1459 make_addr_space);
2e2394a0 1460 make_const = make_volatile = 0;
47663de5 1461 make_addr_space = 0;
c906108c
SS
1462 break;
1463 case tp_array:
1464 array_size = pop_type_int ();
1465 /* FIXME-type-allocation: need a way to free this type when we are
1466 done with it. */
c906108c 1467 follow_type =
e3506a9f
UW
1468 lookup_array_range_type (follow_type,
1469 0, array_size >= 0 ? array_size - 1 : 0);
c906108c 1470 if (array_size < 0)
d78df370 1471 TYPE_ARRAY_UPPER_BOUND_IS_UNDEFINED (follow_type) = 1;
c906108c
SS
1472 break;
1473 case tp_function:
1474 /* FIXME-type-allocation: need a way to free this type when we are
1475 done with it. */
1476 follow_type = lookup_function_type (follow_type);
1477 break;
1478 }
1479 return follow_type;
1480}
1481\f
f461f5cf
PM
1482/* This function avoids direct calls to fprintf
1483 in the parser generated debug code. */
1484void
1485parser_fprintf (FILE *x, const char *y, ...)
1486{
1487 va_list args;
ad3bbd48 1488
f461f5cf
PM
1489 va_start (args, y);
1490 if (x == stderr)
1491 vfprintf_unfiltered (gdb_stderr, y, args);
1492 else
1493 {
1494 fprintf_unfiltered (gdb_stderr, " Unknown FILE used.\n");
1495 vfprintf_unfiltered (gdb_stderr, y, args);
1496 }
1497 va_end (args);
1498}
1499
c0201579
JK
1500/* Implementation of the exp_descriptor method operator_check. */
1501
1502int
1503operator_check_standard (struct expression *exp, int pos,
1504 int (*objfile_func) (struct objfile *objfile,
1505 void *data),
1506 void *data)
1507{
1508 const union exp_element *const elts = exp->elts;
1509 struct type *type = NULL;
1510 struct objfile *objfile = NULL;
1511
1512 /* Extended operators should have been already handled by exp_descriptor
1513 iterate method of its specific language. */
1514 gdb_assert (elts[pos].opcode < OP_EXTENDED0);
1515
1516 /* Track the callers of write_exp_elt_type for this table. */
1517
1518 switch (elts[pos].opcode)
1519 {
1520 case BINOP_VAL:
1521 case OP_COMPLEX:
1522 case OP_DECFLOAT:
1523 case OP_DOUBLE:
1524 case OP_LONG:
1525 case OP_SCOPE:
1526 case OP_TYPE:
1527 case UNOP_CAST:
1528 case UNOP_DYNAMIC_CAST:
1529 case UNOP_REINTERPRET_CAST:
1530 case UNOP_MAX:
1531 case UNOP_MEMVAL:
1532 case UNOP_MIN:
1533 type = elts[pos + 1].type;
1534 break;
1535
1536 case TYPE_INSTANCE:
1537 {
1538 LONGEST arg, nargs = elts[pos + 1].longconst;
1539
1540 for (arg = 0; arg < nargs; arg++)
1541 {
1542 struct type *type = elts[pos + 2 + arg].type;
1543 struct objfile *objfile = TYPE_OBJFILE (type);
1544
1545 if (objfile && (*objfile_func) (objfile, data))
1546 return 1;
1547 }
1548 }
1549 break;
1550
1551 case UNOP_MEMVAL_TLS:
1552 objfile = elts[pos + 1].objfile;
1553 type = elts[pos + 2].type;
1554 break;
1555
1556 case OP_VAR_VALUE:
1557 {
1558 const struct block *const block = elts[pos + 1].block;
1559 const struct symbol *const symbol = elts[pos + 2].symbol;
1560
1561 /* Check objfile where the variable itself is placed.
1562 SYMBOL_OBJ_SECTION (symbol) may be NULL. */
1563 if ((*objfile_func) (SYMBOL_SYMTAB (symbol)->objfile, data))
1564 return 1;
1565
1566 /* Check objfile where is placed the code touching the variable. */
1567 objfile = lookup_objfile_from_block (block);
1568
1569 type = SYMBOL_TYPE (symbol);
1570 }
1571 break;
1572 }
1573
1574 /* Invoke callbacks for TYPE and OBJFILE if they were set as non-NULL. */
1575
1576 if (type && TYPE_OBJFILE (type)
1577 && (*objfile_func) (TYPE_OBJFILE (type), data))
1578 return 1;
1579 if (objfile && (*objfile_func) (objfile, data))
1580 return 1;
1581
1582 return 0;
1583}
1584
1585/* Call OBJFILE_FUNC for any TYPE and OBJFILE found being referenced by EXP.
1586 The functions are never called with NULL OBJFILE. Functions get passed an
1587 arbitrary caller supplied DATA pointer. If any of the functions returns
1588 non-zero value then (any other) non-zero value is immediately returned to
1589 the caller. Otherwise zero is returned after iterating through whole EXP.
1590 */
1591
1592static int
1593exp_iterate (struct expression *exp,
1594 int (*objfile_func) (struct objfile *objfile, void *data),
1595 void *data)
1596{
1597 int endpos;
c0201579
JK
1598
1599 for (endpos = exp->nelts; endpos > 0; )
1600 {
1601 int pos, args, oplen = 0;
1602
dc21167c 1603 operator_length (exp, endpos, &oplen, &args);
c0201579
JK
1604 gdb_assert (oplen > 0);
1605
1606 pos = endpos - oplen;
1607 if (exp->language_defn->la_exp_desc->operator_check (exp, pos,
1608 objfile_func, data))
1609 return 1;
1610
1611 endpos = pos;
1612 }
1613
1614 return 0;
1615}
1616
1617/* Helper for exp_uses_objfile. */
1618
1619static int
1620exp_uses_objfile_iter (struct objfile *exp_objfile, void *objfile_voidp)
1621{
1622 struct objfile *objfile = objfile_voidp;
1623
1624 if (exp_objfile->separate_debug_objfile_backlink)
1625 exp_objfile = exp_objfile->separate_debug_objfile_backlink;
1626
1627 return exp_objfile == objfile;
1628}
1629
1630/* Return 1 if EXP uses OBJFILE (and will become dangling when OBJFILE
1631 is unloaded), otherwise return 0. OBJFILE must not be a separate debug info
1632 file. */
1633
1634int
1635exp_uses_objfile (struct expression *exp, struct objfile *objfile)
1636{
1637 gdb_assert (objfile->separate_debug_objfile_backlink == NULL);
1638
1639 return exp_iterate (exp, exp_uses_objfile_iter, objfile);
1640}
1641
ac9a91a7 1642void
fba45db2 1643_initialize_parse (void)
ac9a91a7
JM
1644{
1645 type_stack_size = 80;
1646 type_stack_depth = 0;
1647 type_stack = (union type_stack_elt *)
1648 xmalloc (type_stack_size * sizeof (*type_stack));
1649
85c07804 1650 add_setshow_zinteger_cmd ("expression", class_maintenance,
3e43a32a
MS
1651 &expressiondebug,
1652 _("Set expression debugging."),
1653 _("Show expression debugging."),
1654 _("When non-zero, the internal representation "
1655 "of expressions will be printed."),
85c07804 1656 NULL,
920d2a44 1657 show_expressiondebug,
85c07804 1658 &setdebuglist, &showdebuglist);
92981e24 1659 add_setshow_boolean_cmd ("parser", class_maintenance,
3e43a32a
MS
1660 &parser_debug,
1661 _("Set parser debugging."),
1662 _("Show parser debugging."),
1663 _("When non-zero, expression parser "
1664 "tracing will be enabled."),
92981e24
TT
1665 NULL,
1666 show_parserdebug,
1667 &setdebuglist, &showdebuglist);
c906108c 1668}
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