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[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,
9b254dd1
DJ
4 1998, 1999, 2000, 2001, 2004, 2005, 2007, 2008
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
cce74817
JM
34#include <ctype.h>
35
c906108c
SS
36#include "defs.h"
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"
e2305d34 55
5f9769d1
PH
56/* Standard set of definitions for printing, dumping, prefixifying,
57 * and evaluating expressions. */
58
59const struct exp_descriptor exp_descriptor_standard =
60 {
61 print_subexp_standard,
62 operator_length_standard,
63 op_name_standard,
64 dump_subexp_body_standard,
65 evaluate_subexp_standard
66 };
c906108c
SS
67\f
68/* Global variables declared in parser-defs.h (and commented there). */
69struct expression *expout;
70int expout_size;
71int expout_ptr;
72struct block *expression_context_block;
84f0252a 73CORE_ADDR expression_context_pc;
c906108c
SS
74struct block *innermost_block;
75int arglist_len;
76union type_stack_elt *type_stack;
77int type_stack_depth, type_stack_size;
78char *lexptr;
665132f9 79char *prev_lexptr;
c906108c
SS
80int paren_depth;
81int comma_terminates;
3a913e29
JB
82
83/* A temporary buffer for identifiers, so we can null-terminate them.
84
85 We allocate this with xrealloc. parse_exp_1 used to allocate with
86 alloca, using the size of the whole expression as a conservative
87 estimate of the space needed. However, macro expansion can
88 introduce names longer than the original expression; there's no
89 practical way to know beforehand how large that might be. */
90char *namecopy;
91size_t namecopy_size;
c906108c 92\f
c906108c 93static int expressiondebug = 0;
920d2a44
AC
94static void
95show_expressiondebug (struct ui_file *file, int from_tty,
96 struct cmd_list_element *c, const char *value)
97{
98 fprintf_filtered (file, _("Expression debugging is %s.\n"), value);
99}
c906108c 100
74b7792f 101static void free_funcalls (void *ignore);
c906108c 102
a14ed312 103static void prefixify_expression (struct expression *);
c906108c 104
570b8f7c
AC
105static void prefixify_subexp (struct expression *, struct expression *, int,
106 int);
c906108c 107
e85c3284
PH
108static struct expression *parse_exp_in_context (char **, struct block *, int,
109 int);
110
a14ed312 111void _initialize_parse (void);
392a587b 112
c906108c
SS
113/* Data structure for saving values of arglist_len for function calls whose
114 arguments contain other function calls. */
115
116struct funcall
117 {
118 struct funcall *next;
119 int arglist_len;
120 };
121
122static struct funcall *funcall_chain;
123
c906108c
SS
124/* Begin counting arguments for a function call,
125 saving the data about any containing call. */
126
127void
fba45db2 128start_arglist (void)
c906108c 129{
f86f5ca3 130 struct funcall *new;
c906108c
SS
131
132 new = (struct funcall *) xmalloc (sizeof (struct funcall));
133 new->next = funcall_chain;
134 new->arglist_len = arglist_len;
135 arglist_len = 0;
136 funcall_chain = new;
137}
138
139/* Return the number of arguments in a function call just terminated,
140 and restore the data for the containing function call. */
141
142int
fba45db2 143end_arglist (void)
c906108c 144{
f86f5ca3
PH
145 int val = arglist_len;
146 struct funcall *call = funcall_chain;
c906108c
SS
147 funcall_chain = call->next;
148 arglist_len = call->arglist_len;
b8c9b27d 149 xfree (call);
c906108c
SS
150 return val;
151}
152
153/* Free everything in the funcall chain.
154 Used when there is an error inside parsing. */
155
156static void
74b7792f 157free_funcalls (void *ignore)
c906108c 158{
f86f5ca3 159 struct funcall *call, *next;
c906108c
SS
160
161 for (call = funcall_chain; call; call = next)
162 {
163 next = call->next;
b8c9b27d 164 xfree (call);
c906108c
SS
165 }
166}
167\f
168/* This page contains the functions for adding data to the struct expression
169 being constructed. */
170
171/* Add one element to the end of the expression. */
172
173/* To avoid a bug in the Sun 4 compiler, we pass things that can fit into
174 a register through here */
175
176void
fba45db2 177write_exp_elt (union exp_element expelt)
c906108c
SS
178{
179 if (expout_ptr >= expout_size)
180 {
181 expout_size *= 2;
182 expout = (struct expression *)
183 xrealloc ((char *) expout, sizeof (struct expression)
184 + EXP_ELEM_TO_BYTES (expout_size));
185 }
186 expout->elts[expout_ptr++] = expelt;
187}
188
189void
fba45db2 190write_exp_elt_opcode (enum exp_opcode expelt)
c906108c
SS
191{
192 union exp_element tmp;
09153d55 193 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
194
195 tmp.opcode = expelt;
196
197 write_exp_elt (tmp);
198}
199
200void
fba45db2 201write_exp_elt_sym (struct symbol *expelt)
c906108c
SS
202{
203 union exp_element tmp;
09153d55 204 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
205
206 tmp.symbol = expelt;
207
208 write_exp_elt (tmp);
209}
210
211void
fba45db2 212write_exp_elt_block (struct block *b)
c906108c
SS
213{
214 union exp_element tmp;
09153d55 215 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
216 tmp.block = b;
217 write_exp_elt (tmp);
218}
219
9e35dae4
DJ
220void
221write_exp_elt_objfile (struct objfile *objfile)
222{
223 union exp_element tmp;
224 memset (&tmp, 0, sizeof (union exp_element));
225 tmp.objfile = objfile;
226 write_exp_elt (tmp);
227}
228
c906108c 229void
fba45db2 230write_exp_elt_longcst (LONGEST expelt)
c906108c
SS
231{
232 union exp_element tmp;
09153d55 233 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
234
235 tmp.longconst = expelt;
236
237 write_exp_elt (tmp);
238}
239
240void
fba45db2 241write_exp_elt_dblcst (DOUBLEST expelt)
c906108c
SS
242{
243 union exp_element tmp;
09153d55 244 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
245
246 tmp.doubleconst = expelt;
247
248 write_exp_elt (tmp);
249}
250
27bc4d80
TJB
251void
252write_exp_elt_decfloatcst (gdb_byte expelt[16])
253{
254 union exp_element tmp;
255 int index;
256
257 for (index = 0; index < 16; index++)
258 tmp.decfloatconst[index] = expelt[index];
259
260 write_exp_elt (tmp);
261}
262
c906108c 263void
fba45db2 264write_exp_elt_type (struct type *expelt)
c906108c
SS
265{
266 union exp_element tmp;
09153d55 267 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
268
269 tmp.type = expelt;
270
271 write_exp_elt (tmp);
272}
273
274void
fba45db2 275write_exp_elt_intern (struct internalvar *expelt)
c906108c
SS
276{
277 union exp_element tmp;
09153d55 278 memset (&tmp, 0, sizeof (union exp_element));
c906108c
SS
279
280 tmp.internalvar = expelt;
281
282 write_exp_elt (tmp);
283}
284
285/* Add a string constant to the end of the expression.
286
287 String constants are stored by first writing an expression element
288 that contains the length of the string, then stuffing the string
289 constant itself into however many expression elements are needed
290 to hold it, and then writing another expression element that contains
291 the length of the string. I.E. an expression element at each end of
292 the string records the string length, so you can skip over the
293 expression elements containing the actual string bytes from either
294 end of the string. Note that this also allows gdb to handle
295 strings with embedded null bytes, as is required for some languages.
296
297 Don't be fooled by the fact that the string is null byte terminated,
298 this is strictly for the convenience of debugging gdb itself. Gdb
299 Gdb does not depend up the string being null terminated, since the
300 actual length is recorded in expression elements at each end of the
301 string. The null byte is taken into consideration when computing how
302 many expression elements are required to hold the string constant, of
303 course. */
304
305
306void
fba45db2 307write_exp_string (struct stoken str)
c906108c 308{
f86f5ca3
PH
309 int len = str.length;
310 int lenelt;
311 char *strdata;
c906108c
SS
312
313 /* Compute the number of expression elements required to hold the string
314 (including a null byte terminator), along with one expression element
315 at each end to record the actual string length (not including the
316 null byte terminator). */
317
318 lenelt = 2 + BYTES_TO_EXP_ELEM (len + 1);
319
320 /* Ensure that we have enough available expression elements to store
321 everything. */
322
323 if ((expout_ptr + lenelt) >= expout_size)
324 {
325 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
326 expout = (struct expression *)
327 xrealloc ((char *) expout, (sizeof (struct expression)
328 + EXP_ELEM_TO_BYTES (expout_size)));
329 }
330
331 /* Write the leading length expression element (which advances the current
332 expression element index), then write the string constant followed by a
333 terminating null byte, and then write the trailing length expression
334 element. */
335
336 write_exp_elt_longcst ((LONGEST) len);
337 strdata = (char *) &expout->elts[expout_ptr];
338 memcpy (strdata, str.ptr, len);
339 *(strdata + len) = '\0';
340 expout_ptr += lenelt - 2;
341 write_exp_elt_longcst ((LONGEST) len);
342}
343
344/* Add a bitstring constant to the end of the expression.
345
346 Bitstring constants are stored by first writing an expression element
347 that contains the length of the bitstring (in bits), then stuffing the
348 bitstring constant itself into however many expression elements are
349 needed to hold it, and then writing another expression element that
350 contains the length of the bitstring. I.E. an expression element at
351 each end of the bitstring records the bitstring length, so you can skip
352 over the expression elements containing the actual bitstring bytes from
353 either end of the bitstring. */
354
355void
fba45db2 356write_exp_bitstring (struct stoken str)
c906108c 357{
f86f5ca3
PH
358 int bits = str.length; /* length in bits */
359 int len = (bits + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
360 int lenelt;
361 char *strdata;
c906108c
SS
362
363 /* Compute the number of expression elements required to hold the bitstring,
364 along with one expression element at each end to record the actual
365 bitstring length in bits. */
366
367 lenelt = 2 + BYTES_TO_EXP_ELEM (len);
368
369 /* Ensure that we have enough available expression elements to store
370 everything. */
371
372 if ((expout_ptr + lenelt) >= expout_size)
373 {
374 expout_size = max (expout_size * 2, expout_ptr + lenelt + 10);
375 expout = (struct expression *)
376 xrealloc ((char *) expout, (sizeof (struct expression)
377 + EXP_ELEM_TO_BYTES (expout_size)));
378 }
379
380 /* Write the leading length expression element (which advances the current
381 expression element index), then write the bitstring constant, and then
382 write the trailing length expression element. */
383
384 write_exp_elt_longcst ((LONGEST) bits);
385 strdata = (char *) &expout->elts[expout_ptr];
386 memcpy (strdata, str.ptr, len);
387 expout_ptr += lenelt - 2;
388 write_exp_elt_longcst ((LONGEST) bits);
389}
390
391/* Add the appropriate elements for a minimal symbol to the end of
392 the expression. The rationale behind passing in text_symbol_type and
393 data_symbol_type was so that Modula-2 could pass in WORD for
394 data_symbol_type. Perhaps it still is useful to have those types vary
395 based on the language, but they no longer have names like "int", so
396 the initial rationale is gone. */
397
c906108c 398void
a858089e
MS
399write_exp_msymbol (struct minimal_symbol *msymbol,
400 struct type *text_symbol_type,
401 struct type *data_symbol_type)
c906108c 402{
64c50499 403 struct gdbarch *gdbarch = current_gdbarch;
c906108c
SS
404 CORE_ADDR addr;
405
406 write_exp_elt_opcode (OP_LONG);
a858089e
MS
407 /* Let's make the type big enough to hold a 64-bit address. */
408 write_exp_elt_type (builtin_type_CORE_ADDR);
c906108c
SS
409
410 addr = SYMBOL_VALUE_ADDRESS (msymbol);
411 if (overlay_debugging)
412 addr = symbol_overlayed_address (addr, SYMBOL_BFD_SECTION (msymbol));
413 write_exp_elt_longcst ((LONGEST) addr);
c5aa993b 414
c906108c
SS
415 write_exp_elt_opcode (OP_LONG);
416
aef9c3b3
DJ
417 if (SYMBOL_BFD_SECTION (msymbol)
418 && SYMBOL_BFD_SECTION (msymbol)->flags & SEC_THREAD_LOCAL)
9e35dae4
DJ
419 {
420 bfd *bfd = SYMBOL_BFD_SECTION (msymbol)->owner;
421 struct objfile *ofp;
422
423 ALL_OBJFILES (ofp)
424 if (ofp->obfd == bfd)
425 break;
426
427 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
428 write_exp_elt_objfile (ofp);
64c50499 429 write_exp_elt_type (builtin_type (gdbarch)->nodebug_tls_symbol);
9e35dae4
DJ
430 write_exp_elt_opcode (UNOP_MEMVAL_TLS);
431 return;
432 }
433
c906108c 434 write_exp_elt_opcode (UNOP_MEMVAL);
c5aa993b 435 switch (msymbol->type)
c906108c
SS
436 {
437 case mst_text:
438 case mst_file_text:
439 case mst_solib_trampoline:
64c50499 440 write_exp_elt_type (builtin_type (gdbarch)->nodebug_text_symbol);
c906108c
SS
441 break;
442
443 case mst_data:
444 case mst_file_data:
445 case mst_bss:
446 case mst_file_bss:
64c50499 447 write_exp_elt_type (builtin_type (gdbarch)->nodebug_data_symbol);
c906108c
SS
448 break;
449
450 default:
64c50499 451 write_exp_elt_type (builtin_type (gdbarch)->nodebug_unknown_symbol);
c906108c
SS
452 break;
453 }
454 write_exp_elt_opcode (UNOP_MEMVAL);
455}
456\f
457/* Recognize tokens that start with '$'. These include:
458
c5aa993b
JM
459 $regname A native register name or a "standard
460 register name".
c906108c 461
c5aa993b
JM
462 $variable A convenience variable with a name chosen
463 by the user.
c906108c 464
c5aa993b
JM
465 $digits Value history with index <digits>, starting
466 from the first value which has index 1.
c906108c 467
c5aa993b
JM
468 $$digits Value history with index <digits> relative
469 to the last value. I.E. $$0 is the last
470 value, $$1 is the one previous to that, $$2
471 is the one previous to $$1, etc.
c906108c 472
c5aa993b 473 $ | $0 | $$0 The last value in the value history.
c906108c 474
c5aa993b
JM
475 $$ An abbreviation for the second to the last
476 value in the value history, I.E. $$1
c906108c 477
c5aa993b 478 */
c906108c
SS
479
480void
fba45db2 481write_dollar_variable (struct stoken str)
c906108c 482{
d7318818
RC
483 struct symbol *sym = NULL;
484 struct minimal_symbol *msym = NULL;
c4a3d09a 485 struct internalvar *isym = NULL;
d7318818 486
c906108c
SS
487 /* Handle the tokens $digits; also $ (short for $0) and $$ (short for $$1)
488 and $$digits (equivalent to $<-digits> if you could type that). */
489
c906108c
SS
490 int negate = 0;
491 int i = 1;
492 /* Double dollar means negate the number and add -1 as well.
493 Thus $$ alone means -1. */
494 if (str.length >= 2 && str.ptr[1] == '$')
495 {
496 negate = 1;
497 i = 2;
498 }
499 if (i == str.length)
500 {
501 /* Just dollars (one or two) */
c5aa993b 502 i = -negate;
c906108c
SS
503 goto handle_last;
504 }
505 /* Is the rest of the token digits? */
506 for (; i < str.length; i++)
507 if (!(str.ptr[i] >= '0' && str.ptr[i] <= '9'))
508 break;
509 if (i == str.length)
510 {
511 i = atoi (str.ptr + 1 + negate);
512 if (negate)
c5aa993b 513 i = -i;
c906108c
SS
514 goto handle_last;
515 }
c5aa993b 516
c906108c
SS
517 /* Handle tokens that refer to machine registers:
518 $ followed by a register name. */
206415a3 519 i = frame_map_name_to_regnum (deprecated_safe_get_selected_frame (),
eb8bc282 520 str.ptr + 1, str.length - 1);
c5aa993b 521 if (i >= 0)
c906108c
SS
522 goto handle_register;
523
c4a3d09a
MF
524 /* Any names starting with $ are probably debugger internal variables. */
525
526 isym = lookup_only_internalvar (copy_name (str) + 1);
527 if (isym)
528 {
529 write_exp_elt_opcode (OP_INTERNALVAR);
530 write_exp_elt_intern (isym);
531 write_exp_elt_opcode (OP_INTERNALVAR);
532 return;
533 }
534
d7318818
RC
535 /* On some systems, such as HP-UX and hppa-linux, certain system routines
536 have names beginning with $ or $$. Check for those, first. */
537
538 sym = lookup_symbol (copy_name (str), (struct block *) NULL,
539 VAR_DOMAIN, (int *) NULL, (struct symtab **) NULL);
540 if (sym)
541 {
542 write_exp_elt_opcode (OP_VAR_VALUE);
543 write_exp_elt_block (block_found); /* set by lookup_symbol */
544 write_exp_elt_sym (sym);
545 write_exp_elt_opcode (OP_VAR_VALUE);
546 return;
547 }
548 msym = lookup_minimal_symbol (copy_name (str), NULL, NULL);
549 if (msym)
c906108c 550 {
d7318818
RC
551 write_exp_msymbol (msym,
552 lookup_function_type (builtin_type_int),
553 builtin_type_int);
554 return;
c906108c 555 }
c5aa993b 556
c4a3d09a 557 /* Any other names are assumed to be debugger internal variables. */
c906108c
SS
558
559 write_exp_elt_opcode (OP_INTERNALVAR);
c4a3d09a 560 write_exp_elt_intern (create_internalvar (copy_name (str) + 1));
c5aa993b 561 write_exp_elt_opcode (OP_INTERNALVAR);
c906108c 562 return;
c5aa993b 563handle_last:
c906108c
SS
564 write_exp_elt_opcode (OP_LAST);
565 write_exp_elt_longcst ((LONGEST) i);
566 write_exp_elt_opcode (OP_LAST);
567 return;
c5aa993b 568handle_register:
c906108c 569 write_exp_elt_opcode (OP_REGISTER);
67f3407f
DJ
570 str.length--;
571 str.ptr++;
572 write_exp_string (str);
c5aa993b 573 write_exp_elt_opcode (OP_REGISTER);
c906108c
SS
574 return;
575}
576
577
c906108c 578char *
fba45db2 579find_template_name_end (char *p)
c906108c
SS
580{
581 int depth = 1;
582 int just_seen_right = 0;
583 int just_seen_colon = 0;
584 int just_seen_space = 0;
c5aa993b 585
c906108c
SS
586 if (!p || (*p != '<'))
587 return 0;
588
589 while (*++p)
590 {
591 switch (*p)
c5aa993b
JM
592 {
593 case '\'':
594 case '\"':
595 case '{':
596 case '}':
597 /* In future, may want to allow these?? */
598 return 0;
599 case '<':
600 depth++; /* start nested template */
601 if (just_seen_colon || just_seen_right || just_seen_space)
602 return 0; /* but not after : or :: or > or space */
603 break;
604 case '>':
605 if (just_seen_colon || just_seen_right)
606 return 0; /* end a (nested?) template */
607 just_seen_right = 1; /* but not after : or :: */
608 if (--depth == 0) /* also disallow >>, insist on > > */
609 return ++p; /* if outermost ended, return */
610 break;
611 case ':':
612 if (just_seen_space || (just_seen_colon > 1))
613 return 0; /* nested class spec coming up */
614 just_seen_colon++; /* we allow :: but not :::: */
615 break;
616 case ' ':
617 break;
618 default:
619 if (!((*p >= 'a' && *p <= 'z') || /* allow token chars */
620 (*p >= 'A' && *p <= 'Z') ||
621 (*p >= '0' && *p <= '9') ||
622 (*p == '_') || (*p == ',') || /* commas for template args */
623 (*p == '&') || (*p == '*') || /* pointer and ref types */
624 (*p == '(') || (*p == ')') || /* function types */
625 (*p == '[') || (*p == ']'))) /* array types */
626 return 0;
627 }
c906108c 628 if (*p != ' ')
c5aa993b 629 just_seen_space = 0;
c906108c 630 if (*p != ':')
c5aa993b 631 just_seen_colon = 0;
c906108c 632 if (*p != '>')
c5aa993b 633 just_seen_right = 0;
c906108c
SS
634 }
635 return 0;
636}
c5aa993b 637\f
c906108c
SS
638
639
c906108c
SS
640/* Return a null-terminated temporary copy of the name
641 of a string token. */
642
643char *
fba45db2 644copy_name (struct stoken token)
c906108c 645{
3a913e29
JB
646 /* Make sure there's enough space for the token. */
647 if (namecopy_size < token.length + 1)
648 {
649 namecopy_size = token.length + 1;
650 namecopy = xrealloc (namecopy, token.length + 1);
651 }
652
c906108c
SS
653 memcpy (namecopy, token.ptr, token.length);
654 namecopy[token.length] = 0;
3a913e29 655
c906108c
SS
656 return namecopy;
657}
658\f
659/* Reverse an expression from suffix form (in which it is constructed)
660 to prefix form (in which we can conveniently print or execute it). */
661
662static void
f86f5ca3 663prefixify_expression (struct expression *expr)
c906108c 664{
df2a60d0 665 int len = sizeof (struct expression) + EXP_ELEM_TO_BYTES (expr->nelts);
f86f5ca3
PH
666 struct expression *temp;
667 int inpos = expr->nelts, outpos = 0;
c906108c
SS
668
669 temp = (struct expression *) alloca (len);
670
671 /* Copy the original expression into temp. */
672 memcpy (temp, expr, len);
673
674 prefixify_subexp (temp, expr, inpos, outpos);
675}
676
24daaebc
PH
677/* Return the number of exp_elements in the postfix subexpression
678 of EXPR whose operator is at index ENDPOS - 1 in EXPR. */
c906108c
SS
679
680int
f86f5ca3 681length_of_subexp (struct expression *expr, int endpos)
24daaebc
PH
682{
683 int oplen, args, i;
684
685 operator_length (expr, endpos, &oplen, &args);
686
687 while (args > 0)
688 {
689 oplen += length_of_subexp (expr, endpos - oplen);
690 args--;
691 }
692
693 return oplen;
694}
695
696/* Sets *OPLENP to the length of the operator whose (last) index is
697 ENDPOS - 1 in EXPR, and sets *ARGSP to the number of arguments that
698 operator takes. */
699
700void
701operator_length (struct expression *expr, int endpos, int *oplenp, int *argsp)
5f9769d1
PH
702{
703 expr->language_defn->la_exp_desc->operator_length (expr, endpos,
704 oplenp, argsp);
705}
706
707/* Default value for operator_length in exp_descriptor vectors. */
708
709void
710operator_length_standard (struct expression *expr, int endpos,
711 int *oplenp, int *argsp)
c906108c 712{
f86f5ca3
PH
713 int oplen = 1;
714 int args = 0;
0b4e1325 715 enum f90_range_type range_type;
f86f5ca3 716 int i;
c906108c
SS
717
718 if (endpos < 1)
8a3fe4f8 719 error (_("?error in operator_length_standard"));
c906108c
SS
720
721 i = (int) expr->elts[endpos - 1].opcode;
722
723 switch (i)
724 {
725 /* C++ */
726 case OP_SCOPE:
727 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
728 oplen = 5 + BYTES_TO_EXP_ELEM (oplen + 1);
729 break;
730
731 case OP_LONG:
732 case OP_DOUBLE:
27bc4d80 733 case OP_DECFLOAT:
c906108c
SS
734 case OP_VAR_VALUE:
735 oplen = 4;
736 break;
737
738 case OP_TYPE:
739 case OP_BOOL:
740 case OP_LAST:
c906108c
SS
741 case OP_INTERNALVAR:
742 oplen = 3;
743 break;
744
745 case OP_COMPLEX:
c5aa993b 746 oplen = 1;
c906108c 747 args = 2;
c5aa993b 748 break;
c906108c
SS
749
750 case OP_FUNCALL:
751 case OP_F77_UNDETERMINED_ARGLIST:
752 oplen = 3;
753 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
754 break;
755
646df18d 756 case OP_OBJC_MSGCALL: /* Objective C message (method) call */
53c551b7
AF
757 oplen = 4;
758 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
759 break;
760
c906108c
SS
761 case UNOP_MAX:
762 case UNOP_MIN:
763 oplen = 3;
764 break;
765
c5aa993b
JM
766 case BINOP_VAL:
767 case UNOP_CAST:
768 case UNOP_MEMVAL:
c906108c
SS
769 oplen = 3;
770 args = 1;
771 break;
772
9e35dae4
DJ
773 case UNOP_MEMVAL_TLS:
774 oplen = 4;
775 args = 1;
776 break;
777
c906108c
SS
778 case UNOP_ABS:
779 case UNOP_CAP:
780 case UNOP_CHR:
781 case UNOP_FLOAT:
782 case UNOP_HIGH:
783 case UNOP_ODD:
784 case UNOP_ORD:
785 case UNOP_TRUNC:
786 oplen = 1;
787 args = 1;
788 break;
789
790 case OP_LABELED:
791 case STRUCTOP_STRUCT:
792 case STRUCTOP_PTR:
793 args = 1;
794 /* fall through */
67f3407f 795 case OP_REGISTER:
c906108c
SS
796 case OP_M2_STRING:
797 case OP_STRING:
646df18d
AF
798 case OP_OBJC_NSSTRING: /* Objective C Foundation Class NSString constant */
799 case OP_OBJC_SELECTOR: /* Objective C "@selector" pseudo-op */
c906108c 800 case OP_NAME:
c906108c
SS
801 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
802 oplen = 4 + BYTES_TO_EXP_ELEM (oplen + 1);
803 break;
804
805 case OP_BITSTRING:
806 oplen = longest_to_int (expr->elts[endpos - 2].longconst);
807 oplen = (oplen + HOST_CHAR_BIT - 1) / HOST_CHAR_BIT;
808 oplen = 4 + BYTES_TO_EXP_ELEM (oplen);
809 break;
810
811 case OP_ARRAY:
812 oplen = 4;
813 args = longest_to_int (expr->elts[endpos - 2].longconst);
814 args -= longest_to_int (expr->elts[endpos - 3].longconst);
815 args += 1;
816 break;
817
818 case TERNOP_COND:
819 case TERNOP_SLICE:
820 case TERNOP_SLICE_COUNT:
821 args = 3;
822 break;
823
824 /* Modula-2 */
c5aa993b 825 case MULTI_SUBSCRIPT:
c906108c 826 oplen = 3;
c5aa993b 827 args = 1 + longest_to_int (expr->elts[endpos - 2].longconst);
c906108c
SS
828 break;
829
830 case BINOP_ASSIGN_MODIFY:
831 oplen = 3;
832 args = 2;
833 break;
834
835 /* C++ */
836 case OP_THIS:
646df18d 837 case OP_OBJC_SELF:
c906108c
SS
838 oplen = 2;
839 break;
840
0b4e1325
WZ
841 case OP_F90_RANGE:
842 oplen = 3;
843
844 range_type = longest_to_int (expr->elts[endpos - 2].longconst);
845 switch (range_type)
846 {
847 case LOW_BOUND_DEFAULT:
848 case HIGH_BOUND_DEFAULT:
849 args = 1;
850 break;
851 case BOTH_BOUND_DEFAULT:
852 args = 0;
853 break;
854 case NONE_BOUND_DEFAULT:
855 args = 2;
856 break;
857 }
858
859 break;
860
c906108c
SS
861 default:
862 args = 1 + (i < (int) BINOP_END);
863 }
864
24daaebc
PH
865 *oplenp = oplen;
866 *argsp = args;
c906108c
SS
867}
868
869/* Copy the subexpression ending just before index INEND in INEXPR
870 into OUTEXPR, starting at index OUTBEG.
871 In the process, convert it from suffix to prefix form. */
872
873static void
f86f5ca3
PH
874prefixify_subexp (struct expression *inexpr,
875 struct expression *outexpr, int inend, int outbeg)
c906108c 876{
24daaebc
PH
877 int oplen;
878 int args;
f86f5ca3 879 int i;
c906108c
SS
880 int *arglens;
881 enum exp_opcode opcode;
882
24daaebc 883 operator_length (inexpr, inend, &oplen, &args);
c906108c
SS
884
885 /* Copy the final operator itself, from the end of the input
886 to the beginning of the output. */
887 inend -= oplen;
888 memcpy (&outexpr->elts[outbeg], &inexpr->elts[inend],
889 EXP_ELEM_TO_BYTES (oplen));
890 outbeg += oplen;
891
892 /* Find the lengths of the arg subexpressions. */
893 arglens = (int *) alloca (args * sizeof (int));
894 for (i = args - 1; i >= 0; i--)
895 {
896 oplen = length_of_subexp (inexpr, inend);
897 arglens[i] = oplen;
898 inend -= oplen;
899 }
900
901 /* Now copy each subexpression, preserving the order of
902 the subexpressions, but prefixifying each one.
903 In this loop, inend starts at the beginning of
904 the expression this level is working on
905 and marches forward over the arguments.
906 outbeg does similarly in the output. */
907 for (i = 0; i < args; i++)
908 {
909 oplen = arglens[i];
910 inend += oplen;
911 prefixify_subexp (inexpr, outexpr, inend, outbeg);
912 outbeg += oplen;
913 }
914}
915\f
916/* This page contains the two entry points to this file. */
917
918/* Read an expression from the string *STRINGPTR points to,
919 parse it, and return a pointer to a struct expression that we malloc.
920 Use block BLOCK as the lexical context for variable names;
921 if BLOCK is zero, use the block of the selected stack frame.
922 Meanwhile, advance *STRINGPTR to point after the expression,
923 at the first nonwhite character that is not part of the expression
924 (possibly a null character).
925
926 If COMMA is nonzero, stop if a comma is reached. */
927
928struct expression *
fba45db2 929parse_exp_1 (char **stringptr, struct block *block, int comma)
e85c3284
PH
930{
931 return parse_exp_in_context (stringptr, block, comma, 0);
932}
933
934/* As for parse_exp_1, except that if VOID_CONTEXT_P, then
935 no value is expected from the expression. */
936
937static struct expression *
938parse_exp_in_context (char **stringptr, struct block *block, int comma,
939 int void_context_p)
c906108c
SS
940{
941 struct cleanup *old_chain;
942
943 lexptr = *stringptr;
665132f9 944 prev_lexptr = NULL;
c906108c
SS
945
946 paren_depth = 0;
947 type_stack_depth = 0;
948
949 comma_terminates = comma;
950
951 if (lexptr == 0 || *lexptr == 0)
e2e0b3e5 952 error_no_arg (_("expression to compute"));
c906108c 953
74b7792f 954 old_chain = make_cleanup (free_funcalls, 0 /*ignore*/);
c906108c
SS
955 funcall_chain = 0;
956
59f92a09
FF
957 /* If no context specified, try using the current frame, if any. */
958
959 if (!block)
960 block = get_selected_block (&expression_context_pc);
961
962 /* Fall back to using the current source static context, if any. */
963
964 if (!block)
965 {
966 struct symtab_and_line cursal = get_current_source_symtab_and_line ();
967 if (cursal.symtab)
968 block = BLOCKVECTOR_BLOCK (BLOCKVECTOR (cursal.symtab), STATIC_BLOCK);
969 }
970
971 /* Save the context, if specified by caller, or found above. */
972
84f0252a
JB
973 if (block)
974 {
975 expression_context_block = block;
8da065d5 976 expression_context_pc = BLOCK_START (block);
84f0252a 977 }
c906108c 978
c906108c
SS
979 expout_size = 10;
980 expout_ptr = 0;
981 expout = (struct expression *)
982 xmalloc (sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_size));
983 expout->language_defn = current_language;
c13c43fd 984 make_cleanup (free_current_contents, &expout);
c906108c
SS
985
986 if (current_language->la_parser ())
987 current_language->la_error (NULL);
988
989 discard_cleanups (old_chain);
990
991 /* Record the actual number of expression elements, and then
992 reallocate the expression memory so that we free up any
993 excess elements. */
994
995 expout->nelts = expout_ptr;
996 expout = (struct expression *)
997 xrealloc ((char *) expout,
998 sizeof (struct expression) + EXP_ELEM_TO_BYTES (expout_ptr));;
999
1000 /* Convert expression from postfix form as generated by yacc
1001 parser, to a prefix form. */
1002
c906108c 1003 if (expressiondebug)
24daaebc
PH
1004 dump_raw_expression (expout, gdb_stdlog,
1005 "before conversion to prefix form");
c906108c
SS
1006
1007 prefixify_expression (expout);
1008
e85c3284
PH
1009 current_language->la_post_parser (&expout, void_context_p);
1010
c906108c 1011 if (expressiondebug)
24daaebc 1012 dump_prefix_expression (expout, gdb_stdlog);
c906108c
SS
1013
1014 *stringptr = lexptr;
1015 return expout;
1016}
1017
1018/* Parse STRING as an expression, and complain if this fails
1019 to use up all of the contents of STRING. */
1020
1021struct expression *
fba45db2 1022parse_expression (char *string)
c906108c 1023{
f86f5ca3 1024 struct expression *exp;
c906108c
SS
1025 exp = parse_exp_1 (&string, 0, 0);
1026 if (*string)
8a3fe4f8 1027 error (_("Junk after end of expression."));
c906108c
SS
1028 return exp;
1029}
e85c3284 1030
e85c3284
PH
1031/* A post-parser that does nothing */
1032
e85c3284
PH
1033void
1034null_post_parser (struct expression **exp, int void_context_p)
1035{
1036}
c906108c
SS
1037\f
1038/* Stuff for maintaining a stack of types. Currently just used by C, but
1039 probably useful for any language which declares its types "backwards". */
1040
47663de5
MS
1041static void
1042check_type_stack_depth (void)
c906108c
SS
1043{
1044 if (type_stack_depth == type_stack_size)
1045 {
1046 type_stack_size *= 2;
1047 type_stack = (union type_stack_elt *)
1048 xrealloc ((char *) type_stack, type_stack_size * sizeof (*type_stack));
1049 }
47663de5
MS
1050}
1051
1052void
1053push_type (enum type_pieces tp)
1054{
1055 check_type_stack_depth ();
c906108c
SS
1056 type_stack[type_stack_depth++].piece = tp;
1057}
1058
1059void
fba45db2 1060push_type_int (int n)
c906108c 1061{
47663de5 1062 check_type_stack_depth ();
c906108c
SS
1063 type_stack[type_stack_depth++].int_val = n;
1064}
1065
47663de5
MS
1066void
1067push_type_address_space (char *string)
1068{
1069 push_type_int (address_space_name_to_int (string));
1070}
1071
c5aa993b 1072enum type_pieces
fba45db2 1073pop_type (void)
c906108c
SS
1074{
1075 if (type_stack_depth)
1076 return type_stack[--type_stack_depth].piece;
1077 return tp_end;
1078}
1079
1080int
fba45db2 1081pop_type_int (void)
c906108c
SS
1082{
1083 if (type_stack_depth)
1084 return type_stack[--type_stack_depth].int_val;
1085 /* "Can't happen". */
1086 return 0;
1087}
1088
1089/* Pop the type stack and return the type which corresponds to FOLLOW_TYPE
1090 as modified by all the stuff on the stack. */
1091struct type *
fba45db2 1092follow_types (struct type *follow_type)
c906108c
SS
1093{
1094 int done = 0;
2e2394a0
MS
1095 int make_const = 0;
1096 int make_volatile = 0;
47663de5 1097 int make_addr_space = 0;
c906108c
SS
1098 int array_size;
1099 struct type *range_type;
1100
1101 while (!done)
1102 switch (pop_type ())
1103 {
1104 case tp_end:
1105 done = 1;
2e2394a0
MS
1106 if (make_const)
1107 follow_type = make_cv_type (make_const,
1108 TYPE_VOLATILE (follow_type),
1109 follow_type, 0);
1110 if (make_volatile)
1111 follow_type = make_cv_type (TYPE_CONST (follow_type),
1112 make_volatile,
1113 follow_type, 0);
47663de5
MS
1114 if (make_addr_space)
1115 follow_type = make_type_with_address_space (follow_type,
1116 make_addr_space);
1117 make_const = make_volatile = 0;
1118 make_addr_space = 0;
2e2394a0
MS
1119 break;
1120 case tp_const:
1121 make_const = 1;
1122 break;
1123 case tp_volatile:
1124 make_volatile = 1;
c906108c 1125 break;
47663de5
MS
1126 case tp_space_identifier:
1127 make_addr_space = pop_type_int ();
1128 break;
c906108c
SS
1129 case tp_pointer:
1130 follow_type = lookup_pointer_type (follow_type);
2e2394a0
MS
1131 if (make_const)
1132 follow_type = make_cv_type (make_const,
1133 TYPE_VOLATILE (follow_type),
1134 follow_type, 0);
1135 if (make_volatile)
1136 follow_type = make_cv_type (TYPE_CONST (follow_type),
1137 make_volatile,
1138 follow_type, 0);
47663de5
MS
1139 if (make_addr_space)
1140 follow_type = make_type_with_address_space (follow_type,
1141 make_addr_space);
2e2394a0 1142 make_const = make_volatile = 0;
47663de5 1143 make_addr_space = 0;
c906108c
SS
1144 break;
1145 case tp_reference:
1146 follow_type = lookup_reference_type (follow_type);
2e2394a0 1147 if (make_const)
47663de5
MS
1148 follow_type = make_cv_type (make_const,
1149 TYPE_VOLATILE (follow_type),
1150 follow_type, 0);
2e2394a0 1151 if (make_volatile)
47663de5
MS
1152 follow_type = make_cv_type (TYPE_CONST (follow_type),
1153 make_volatile,
1154 follow_type, 0);
1155 if (make_addr_space)
1156 follow_type = make_type_with_address_space (follow_type,
1157 make_addr_space);
2e2394a0 1158 make_const = make_volatile = 0;
47663de5 1159 make_addr_space = 0;
c906108c
SS
1160 break;
1161 case tp_array:
1162 array_size = pop_type_int ();
1163 /* FIXME-type-allocation: need a way to free this type when we are
1164 done with it. */
1165 range_type =
1166 create_range_type ((struct type *) NULL,
1167 builtin_type_int, 0,
1168 array_size >= 0 ? array_size - 1 : 0);
1169 follow_type =
1170 create_array_type ((struct type *) NULL,
1171 follow_type, range_type);
1172 if (array_size < 0)
c5aa993b 1173 TYPE_ARRAY_UPPER_BOUND_TYPE (follow_type)
c906108c
SS
1174 = BOUND_CANNOT_BE_DETERMINED;
1175 break;
1176 case tp_function:
1177 /* FIXME-type-allocation: need a way to free this type when we are
1178 done with it. */
1179 follow_type = lookup_function_type (follow_type);
1180 break;
1181 }
1182 return follow_type;
1183}
1184\f
f461f5cf
PM
1185/* This function avoids direct calls to fprintf
1186 in the parser generated debug code. */
1187void
1188parser_fprintf (FILE *x, const char *y, ...)
1189{
1190 va_list args;
1191 va_start (args, y);
1192 if (x == stderr)
1193 vfprintf_unfiltered (gdb_stderr, y, args);
1194 else
1195 {
1196 fprintf_unfiltered (gdb_stderr, " Unknown FILE used.\n");
1197 vfprintf_unfiltered (gdb_stderr, y, args);
1198 }
1199 va_end (args);
1200}
1201
ac9a91a7 1202void
fba45db2 1203_initialize_parse (void)
ac9a91a7
JM
1204{
1205 type_stack_size = 80;
1206 type_stack_depth = 0;
1207 type_stack = (union type_stack_elt *)
1208 xmalloc (type_stack_size * sizeof (*type_stack));
1209
85c07804
AC
1210 add_setshow_zinteger_cmd ("expression", class_maintenance,
1211 &expressiondebug, _("\
1212Set expression debugging."), _("\
1213Show expression debugging."), _("\
1214When non-zero, the internal representation of expressions will be printed."),
1215 NULL,
920d2a44 1216 show_expressiondebug,
85c07804 1217 &setdebuglist, &showdebuglist);
c906108c 1218}
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