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/tmp/gdb-8.1/gdb/objc-lang.c
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1 /* Objective-C language support routines for GDB, the GNU debugger.
2 
3  Copyright (C) 2002-2018 Free Software Foundation, Inc.
4 
5  Contributed by Apple Computer, Inc.
6  Written by Michael Snyder.
7 
8  This file is part of GDB.
9 
10  This program is free software; you can redistribute it and/or modify
11  it under the terms of the GNU General Public License as published by
12  the Free Software Foundation; either version 3 of the License, or
13  (at your option) any later version.
14 
15  This program is distributed in the hope that it will be useful,
16  but WITHOUT ANY WARRANTY; without even the implied warranty of
17  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18  GNU General Public License for more details.
19 
20  You should have received a copy of the GNU General Public License
21  along with this program. If not, see <http://www.gnu.org/licenses/>. */
22 
23 #include "defs.h"
24 #include "symtab.h"
25 #include "gdbtypes.h"
26 #include "expression.h"
27 #include "parser-defs.h"
28 #include "language.h"
29 #include "varobj.h"
30 #include "c-lang.h"
31 #include "objc-lang.h"
32 #include "complaints.h"
33 #include "value.h"
34 #include "symfile.h"
35 #include "objfiles.h"
36 #include "target.h" /* for target_has_execution */
37 #include "gdbcore.h"
38 #include "gdbcmd.h"
39 #include "frame.h"
40 #include "gdb_regex.h"
41 #include "regcache.h"
42 #include "block.h"
43 #include "infcall.h"
44 #include "valprint.h"
45 #include "cli/cli-utils.h"
46 
47 #include <ctype.h>
48 
49 struct objc_object {
51 };
52 
53 struct objc_class {
57  long version;
58  long info;
64 };
65 
66 struct objc_super {
69 };
70 
71 struct objc_method {
75 };
76 
77 static const struct objfile_data *objc_objfile_data;
78 
79 /* Lookup a structure type named "struct NAME", visible in lexical
80  block BLOCK. If NOERR is nonzero, return zero if NAME is not
81  suitably defined. */
82 
83 struct symbol *
84 lookup_struct_typedef (const char *name, const struct block *block, int noerr)
85 {
86  struct symbol *sym;
87 
89 
90  if (sym == NULL)
91  {
92  if (noerr)
93  return 0;
94  else
95  error (_("No struct type named %s."), name);
96  }
97  if (TYPE_CODE (SYMBOL_TYPE (sym)) != TYPE_CODE_STRUCT)
98  {
99  if (noerr)
100  return 0;
101  else
102  error (_("This context has class, union or enum %s, not a struct."),
103  name);
104  }
105  return sym;
106 }
107 
108 CORE_ADDR
109 lookup_objc_class (struct gdbarch *gdbarch, const char *classname)
110 {
111  struct type *char_type = builtin_type (gdbarch)->builtin_char;
112  struct value * function, *classval;
113 
114  if (! target_has_execution)
115  {
116  /* Can't call into inferior to lookup class. */
117  return 0;
118  }
119 
120  if (lookup_minimal_symbol("objc_lookUpClass", 0, 0).minsym)
121  function = find_function_in_inferior("objc_lookUpClass", NULL);
122  else if (lookup_minimal_symbol ("objc_lookup_class", 0, 0).minsym)
123  function = find_function_in_inferior("objc_lookup_class", NULL);
124  else
125  {
127  _("no way to lookup Objective-C classes"));
128  return 0;
129  }
130 
131  classval = value_string (classname, strlen (classname) + 1, char_type);
132  classval = value_coerce_array (classval);
133  return (CORE_ADDR) value_as_long (call_function_by_hand (function,
134  NULL,
135  1, &classval));
136 }
137 
138 CORE_ADDR
140 {
141  struct type *char_type = builtin_type (gdbarch)->builtin_char;
142  struct value * function, *selstring;
143 
144  if (! target_has_execution)
145  {
146  /* Can't call into inferior to lookup selector. */
147  return 0;
148  }
149 
150  if (lookup_minimal_symbol("sel_getUid", 0, 0).minsym)
151  function = find_function_in_inferior("sel_getUid", NULL);
152  else if (lookup_minimal_symbol ("sel_get_any_uid", 0, 0).minsym)
153  function = find_function_in_inferior("sel_get_any_uid", NULL);
154  else
155  {
157  _("no way to lookup Objective-C selectors"));
158  return 0;
159  }
160 
161  selstring = value_coerce_array (value_string (selname,
162  strlen (selname) + 1,
163  char_type));
164  return value_as_long (call_function_by_hand (function, NULL, 1, &selstring));
165 }
166 
167 struct value *
168 value_nsstring (struct gdbarch *gdbarch, char *ptr, int len)
169 {
170  struct type *char_type = builtin_type (gdbarch)->builtin_char;
171  struct value *stringValue[3];
172  struct value *function, *nsstringValue;
173  struct symbol *sym;
174  struct type *type;
175 
177  return 0; /* Can't call into inferior to create NSString. */
178 
179  stringValue[2] = value_string(ptr, len, char_type);
180  stringValue[2] = value_coerce_array(stringValue[2]);
181  /* _NSNewStringFromCString replaces "istr" after Lantern2A. */
182  if (lookup_minimal_symbol("_NSNewStringFromCString", 0, 0).minsym)
183  {
184  function = find_function_in_inferior("_NSNewStringFromCString", NULL);
185  nsstringValue = call_function_by_hand(function,
186  NULL, 1, &stringValue[2]);
187  }
188  else if (lookup_minimal_symbol("istr", 0, 0).minsym)
189  {
190  function = find_function_in_inferior("istr", NULL);
191  nsstringValue = call_function_by_hand(function, NULL, 1, &stringValue[2]);
192  }
193  else if (lookup_minimal_symbol("+[NSString stringWithCString:]", 0, 0).minsym)
194  {
195  function
196  = find_function_in_inferior("+[NSString stringWithCString:]", NULL);
198 
199  stringValue[0] = value_from_longest
200  (type, lookup_objc_class (gdbarch, "NSString"));
201  stringValue[1] = value_from_longest
202  (type, lookup_child_selector (gdbarch, "stringWithCString:"));
203  nsstringValue = call_function_by_hand(function, NULL, 3, &stringValue[0]);
204  }
205  else
206  error (_("NSString: internal error -- no way to create new NSString"));
207 
208  sym = lookup_struct_typedef("NSString", 0, 1);
209  if (sym == NULL)
210  sym = lookup_struct_typedef("NXString", 0, 1);
211  if (sym == NULL)
213  else
215 
216  deprecated_set_value_type (nsstringValue, type);
217  return nsstringValue;
218 }
219 
220 /* Objective-C name demangling. */
221 
222 char *
223 objc_demangle (const char *mangled, int options)
224 {
225  char *demangled, *cp;
226 
227  if (mangled[0] == '_' &&
228  (mangled[1] == 'i' || mangled[1] == 'c') &&
229  mangled[2] == '_')
230  {
231  cp = demangled = (char *) xmalloc (strlen (mangled) + 2);
232 
233  if (mangled[1] == 'i')
234  *cp++ = '-'; /* for instance method */
235  else
236  *cp++ = '+'; /* for class method */
237 
238  *cp++ = '['; /* opening left brace */
239  strcpy(cp, mangled+3); /* Tack on the rest of the mangled name. */
240 
241  while (*cp && *cp == '_')
242  cp++; /* Skip any initial underbars in class
243  name. */
244 
245  cp = strchr(cp, '_');
246  if (!cp) /* Find first non-initial underbar. */
247  {
248  xfree(demangled); /* not mangled name */
249  return NULL;
250  }
251  if (cp[1] == '_') /* Easy case: no category name. */
252  {
253  *cp++ = ' '; /* Replace two '_' with one ' '. */
254  strcpy(cp, mangled + (cp - demangled) + 2);
255  }
256  else
257  {
258  *cp++ = '('; /* Less easy case: category name. */
259  cp = strchr(cp, '_');
260  if (!cp)
261  {
262  xfree(demangled); /* not mangled name */
263  return NULL;
264  }
265  *cp++ = ')';
266  *cp++ = ' '; /* Overwriting 1st char of method name... */
267  strcpy(cp, mangled + (cp - demangled)); /* Get it back. */
268  }
269 
270  while (*cp && *cp == '_')
271  cp++; /* Skip any initial underbars in
272  method name. */
273 
274  for (; *cp; cp++)
275  if (*cp == '_')
276  *cp = ':'; /* Replace remaining '_' with ':'. */
277 
278  *cp++ = ']'; /* closing right brace */
279  *cp++ = 0; /* string terminator */
280  return demangled;
281  }
282  else
283  return NULL; /* Not an objc mangled name. */
284 }
285 
286 /* la_sniff_from_mangled_name for ObjC. */
287 
288 static int
289 objc_sniff_from_mangled_name (const char *mangled, char **demangled)
290 {
291  *demangled = objc_demangle (mangled, 0);
292  return *demangled != NULL;
293 }
294 
295 /* Determine if we are currently in the Objective-C dispatch function.
296  If so, get the address of the method function that the dispatcher
297  would call and use that as the function to step into instead. Also
298  skip over the trampoline for the function (if any). This is better
299  for the user since they are only interested in stepping into the
300  method function anyway. */
301 static CORE_ADDR
303 {
304  struct gdbarch *gdbarch = get_frame_arch (frame);
305  CORE_ADDR real_stop_pc;
306  CORE_ADDR method_stop_pc;
307 
308  real_stop_pc = gdbarch_skip_trampoline_code (gdbarch, frame, stop_pc);
309 
310  if (real_stop_pc != 0)
311  find_objc_msgcall (real_stop_pc, &method_stop_pc);
312  else
313  find_objc_msgcall (stop_pc, &method_stop_pc);
314 
315  if (method_stop_pc)
316  {
317  real_stop_pc = gdbarch_skip_trampoline_code
318  (gdbarch, frame, method_stop_pc);
319  if (real_stop_pc == 0)
320  real_stop_pc = method_stop_pc;
321  }
322 
323  return real_stop_pc;
324 }
325 
326 
327 /* Table mapping opcodes into strings for printing operators
328  and precedences of the operators. */
329 
330 static const struct op_print objc_op_print_tab[] =
331  {
332  {",", BINOP_COMMA, PREC_COMMA, 0},
333  {"=", BINOP_ASSIGN, PREC_ASSIGN, 1},
334  {"||", BINOP_LOGICAL_OR, PREC_LOGICAL_OR, 0},
335  {"&&", BINOP_LOGICAL_AND, PREC_LOGICAL_AND, 0},
336  {"|", BINOP_BITWISE_IOR, PREC_BITWISE_IOR, 0},
337  {"^", BINOP_BITWISE_XOR, PREC_BITWISE_XOR, 0},
338  {"&", BINOP_BITWISE_AND, PREC_BITWISE_AND, 0},
339  {"==", BINOP_EQUAL, PREC_EQUAL, 0},
340  {"!=", BINOP_NOTEQUAL, PREC_EQUAL, 0},
341  {"<=", BINOP_LEQ, PREC_ORDER, 0},
342  {">=", BINOP_GEQ, PREC_ORDER, 0},
343  {">", BINOP_GTR, PREC_ORDER, 0},
344  {"<", BINOP_LESS, PREC_ORDER, 0},
345  {">>", BINOP_RSH, PREC_SHIFT, 0},
346  {"<<", BINOP_LSH, PREC_SHIFT, 0},
347  {"+", BINOP_ADD, PREC_ADD, 0},
348  {"-", BINOP_SUB, PREC_ADD, 0},
349  {"*", BINOP_MUL, PREC_MUL, 0},
350  {"/", BINOP_DIV, PREC_MUL, 0},
351  {"%", BINOP_REM, PREC_MUL, 0},
352  {"@", BINOP_REPEAT, PREC_REPEAT, 0},
353  {"-", UNOP_NEG, PREC_PREFIX, 0},
354  {"!", UNOP_LOGICAL_NOT, PREC_PREFIX, 0},
355  {"~", UNOP_COMPLEMENT, PREC_PREFIX, 0},
356  {"*", UNOP_IND, PREC_PREFIX, 0},
357  {"&", UNOP_ADDR, PREC_PREFIX, 0},
358  {"sizeof ", UNOP_SIZEOF, PREC_PREFIX, 0},
359  {"++", UNOP_PREINCREMENT, PREC_PREFIX, 0},
360  {"--", UNOP_PREDECREMENT, PREC_PREFIX, 0},
361  {NULL, OP_NULL, PREC_NULL, 0}
362 };
363 
364 static const char *objc_extensions[] =
365 {
366  ".m", NULL
367 };
368 
369 extern const struct language_defn objc_language_defn = {
370  "objective-c", /* Language name */
371  "Objective-C",
379  c_parse,
380  c_yyerror,
382  c_printchar, /* Print a character constant */
383  c_printstr, /* Function to print string constant */
384  c_emit_char,
385  c_print_type, /* Print a type using appropriate syntax */
386  c_print_typedef, /* Print a typedef using appropriate syntax */
387  c_val_print, /* Print a value using appropriate syntax */
388  c_value_print, /* Print a top-level value */
389  default_read_var_value, /* la_read_var_value */
390  objc_skip_trampoline, /* Language specific skip_trampoline */
391  "self", /* name_of_this */
392  basic_lookup_symbol_nonlocal, /* lookup_symbol_nonlocal */
393  basic_lookup_transparent_type,/* lookup_transparent_type */
394  objc_demangle, /* Language specific symbol demangler */
396  NULL, /* Language specific
397  class_name_from_physname */
398  objc_op_print_tab, /* Expression operators for printing */
399  1, /* C-style arrays */
400  0, /* String lower bound */
408  NULL, /* la_get_symbol_name_matcher */
412  NULL,
413  NULL,
414  LANG_MAGIC
415 };
416 
417 /*
418  * ObjC:
419  * Following functions help construct Objective-C message calls.
420  */
421 
422 struct selname /* For parsing Objective-C. */
423  {
424  struct selname *next;
425  char *msglist_sel;
427  };
428 
429 static int msglist_len;
430 static struct selname *selname_chain;
431 static char *msglist_sel;
432 
433 void
435 {
436  struct selname *newobj = XNEW (struct selname);
437 
438  newobj->next = selname_chain;
439  newobj->msglist_len = msglist_len;
440  newobj->msglist_sel = msglist_sel;
441  msglist_len = 0;
442  msglist_sel = (char *)xmalloc(1);
443  *msglist_sel = 0;
444  selname_chain = newobj;
445 }
446 
447 void
448 add_msglist(struct stoken *str, int addcolon)
449 {
450  char *s;
451  const char *p;
452  int len, plen;
453 
454  if (str == 0) /* Unnamed arg, or... */
455  {
456  if (addcolon == 0) /* variable number of args. */
457  {
458  msglist_len++;
459  return;
460  }
461  p = "";
462  plen = 0;
463  }
464  else
465  {
466  p = str->ptr;
467  plen = str->length;
468  }
469  len = plen + strlen(msglist_sel) + 2;
470  s = (char *)xmalloc(len);
471  strcpy(s, msglist_sel);
472  strncat(s, p, plen);
474  msglist_sel = s;
475  if (addcolon)
476  {
477  s[len-2] = ':';
478  s[len-1] = 0;
479  msglist_len++;
480  }
481  else
482  s[len-2] = '\0';
483 }
484 
485 int
487 {
488  int val = msglist_len;
489  struct selname *sel = selname_chain;
490  char *p = msglist_sel;
491  CORE_ADDR selid;
492 
493  selname_chain = sel->next;
494  msglist_len = sel->msglist_len;
495  msglist_sel = sel->msglist_sel;
496  selid = lookup_child_selector (parse_gdbarch (ps), p);
497  if (!selid)
498  error (_("Can't find selector \"%s\""), p);
499  write_exp_elt_longcst (ps, selid);
500  xfree(p);
501  write_exp_elt_longcst (ps, val); /* Number of args */
502  xfree(sel);
503 
504  return val;
505 }
506 
507 /*
508  * Function: specialcmp (const char *a, const char *b)
509  *
510  * Special strcmp: treats ']' and ' ' as end-of-string.
511  * Used for qsorting lists of objc methods (either by class or selector).
512  */
513 
514 static int
515 specialcmp (const char *a, const char *b)
516 {
517  while (*a && *a != ' ' && *a != ']' && *b && *b != ' ' && *b != ']')
518  {
519  if (*a != *b)
520  return *a - *b;
521  a++, b++;
522  }
523  if (*a && *a != ' ' && *a != ']')
524  return 1; /* a is longer therefore greater. */
525  if (*b && *b != ' ' && *b != ']')
526  return -1; /* a is shorter therefore lesser. */
527  return 0; /* a and b are identical. */
528 }
529 
530 /*
531  * Function: compare_selectors (const void *, const void *)
532  *
533  * Comparison function for use with qsort. Arguments are symbols or
534  * msymbols Compares selector part of objc method name alphabetically.
535  */
536 
537 static int
538 compare_selectors (const void *a, const void *b)
539 {
540  const char *aname, *bname;
541 
542  aname = SYMBOL_PRINT_NAME (*(struct symbol **) a);
543  bname = SYMBOL_PRINT_NAME (*(struct symbol **) b);
544  if (aname == NULL || bname == NULL)
545  error (_("internal: compare_selectors(1)"));
546 
547  aname = strchr(aname, ' ');
548  bname = strchr(bname, ' ');
549  if (aname == NULL || bname == NULL)
550  error (_("internal: compare_selectors(2)"));
551 
552  return specialcmp (aname+1, bname+1);
553 }
554 
555 /*
556  * Function: selectors_info (regexp, from_tty)
557  *
558  * Implements the "Info selectors" command. Takes an optional regexp
559  * arg. Lists all objective c selectors that match the regexp. Works
560  * by grepping thru all symbols for objective c methods. Output list
561  * is sorted and uniqued.
562  */
563 
564 static void
565 info_selectors_command (const char *regexp, int from_tty)
566 {
567  struct objfile *objfile;
568  struct minimal_symbol *msymbol;
569  const char *name;
570  char *val;
571  int matches = 0;
572  int maxlen = 0;
573  int ix;
574  char myregexp[2048];
575  char asel[256];
576  struct symbol **sym_arr;
577  int plusminus = 0;
578 
579  if (regexp == NULL)
580  strcpy(myregexp, ".*]"); /* Null input, match all objc methods. */
581  else
582  {
583  if (*regexp == '+' || *regexp == '-')
584  { /* User wants only class methods or only instance methods. */
585  plusminus = *regexp++;
586  while (*regexp == ' ' || *regexp == '\t')
587  regexp++;
588  }
589  if (*regexp == '\0')
590  strcpy(myregexp, ".*]");
591  else
592  {
593  /* Allow a few extra bytes because of the strcat below. */
594  if (sizeof (myregexp) < strlen (regexp) + 4)
595  error (_("Regexp is too long: %s"), regexp);
596  strcpy(myregexp, regexp);
597  if (myregexp[strlen(myregexp) - 1] == '$') /* end of selector */
598  myregexp[strlen(myregexp) - 1] = ']'; /* end of method name */
599  else
600  strcat(myregexp, ".*]");
601  }
602  }
603 
604  if (regexp != NULL)
605  {
606  val = re_comp (myregexp);
607  if (val != 0)
608  error (_("Invalid regexp (%s): %s"), val, regexp);
609  }
610 
611  /* First time thru is JUST to get max length and count. */
612  ALL_MSYMBOLS (objfile, msymbol)
613  {
614  QUIT;
615  name = MSYMBOL_NATURAL_NAME (msymbol);
616  if (name
617  && (name[0] == '-' || name[0] == '+')
618  && name[1] == '[') /* Got a method name. */
619  {
620  /* Filter for class/instance methods. */
621  if (plusminus && name[0] != plusminus)
622  continue;
623  /* Find selector part. */
624  name = (char *) strchr (name+2, ' ');
625  if (name == NULL)
626  {
628  _("Bad method name '%s'"),
629  MSYMBOL_NATURAL_NAME (msymbol));
630  continue;
631  }
632  if (regexp == NULL || re_exec(++name) != 0)
633  {
634  const char *mystart = name;
635  const char *myend = strchr (mystart, ']');
636 
637  if (myend && (myend - mystart > maxlen))
638  maxlen = myend - mystart; /* Get longest selector. */
639  matches++;
640  }
641  }
642  }
643  if (matches)
644  {
645  printf_filtered (_("Selectors matching \"%s\":\n\n"),
646  regexp ? regexp : "*");
647 
648  sym_arr = XALLOCAVEC (struct symbol *, matches);
649  matches = 0;
650  ALL_MSYMBOLS (objfile, msymbol)
651  {
652  QUIT;
653  name = MSYMBOL_NATURAL_NAME (msymbol);
654  if (name &&
655  (name[0] == '-' || name[0] == '+') &&
656  name[1] == '[') /* Got a method name. */
657  {
658  /* Filter for class/instance methods. */
659  if (plusminus && name[0] != plusminus)
660  continue;
661  /* Find selector part. */
662  name = (char *) strchr(name+2, ' ');
663  if (regexp == NULL || re_exec(++name) != 0)
664  sym_arr[matches++] = (struct symbol *) msymbol;
665  }
666  }
667 
668  qsort (sym_arr, matches, sizeof (struct minimal_symbol *),
670  /* Prevent compare on first iteration. */
671  asel[0] = 0;
672  for (ix = 0; ix < matches; ix++) /* Now do the output. */
673  {
674  char *p = asel;
675 
676  QUIT;
677  name = SYMBOL_NATURAL_NAME (sym_arr[ix]);
678  name = strchr (name, ' ') + 1;
679  if (p[0] && specialcmp(name, p) == 0)
680  continue; /* Seen this one already (not unique). */
681 
682  /* Copy selector part. */
683  while (*name && *name != ']')
684  *p++ = *name++;
685  *p++ = '\0';
686  /* Print in columns. */
687  puts_filtered_tabular(asel, maxlen + 1, 0);
688  }
689  begin_line();
690  }
691  else
692  printf_filtered (_("No selectors matching \"%s\"\n"),
693  regexp ? regexp : "*");
694 }
695 
696 /*
697  * Function: compare_classes (const void *, const void *)
698  *
699  * Comparison function for use with qsort. Arguments are symbols or
700  * msymbols Compares class part of objc method name alphabetically.
701  */
702 
703 static int
704 compare_classes (const void *a, const void *b)
705 {
706  const char *aname, *bname;
707 
708  aname = SYMBOL_PRINT_NAME (*(struct symbol **) a);
709  bname = SYMBOL_PRINT_NAME (*(struct symbol **) b);
710  if (aname == NULL || bname == NULL)
711  error (_("internal: compare_classes(1)"));
712 
713  return specialcmp (aname+1, bname+1);
714 }
715 
716 /*
717  * Function: classes_info(regexp, from_tty)
718  *
719  * Implements the "info classes" command for objective c classes.
720  * Lists all objective c classes that match the optional regexp.
721  * Works by grepping thru the list of objective c methods. List will
722  * be sorted and uniqued (since one class may have many methods).
723  * BUGS: will not list a class that has no methods.
724  */
725 
726 static void
727 info_classes_command (const char *regexp, int from_tty)
728 {
729  struct objfile *objfile;
730  struct minimal_symbol *msymbol;
731  const char *name;
732  char *val;
733  int matches = 0;
734  int maxlen = 0;
735  int ix;
736  char myregexp[2048];
737  char aclass[256];
738  struct symbol **sym_arr;
739 
740  if (regexp == NULL)
741  strcpy(myregexp, ".* "); /* Null input: match all objc classes. */
742  else
743  {
744  /* Allow a few extra bytes because of the strcat below. */
745  if (sizeof (myregexp) < strlen (regexp) + 4)
746  error (_("Regexp is too long: %s"), regexp);
747  strcpy(myregexp, regexp);
748  if (myregexp[strlen(myregexp) - 1] == '$')
749  /* In the method name, the end of the class name is marked by ' '. */
750  myregexp[strlen(myregexp) - 1] = ' ';
751  else
752  strcat(myregexp, ".* ");
753  }
754 
755  if (regexp != NULL)
756  {
757  val = re_comp (myregexp);
758  if (val != 0)
759  error (_("Invalid regexp (%s): %s"), val, regexp);
760  }
761 
762  /* First time thru is JUST to get max length and count. */
763  ALL_MSYMBOLS (objfile, msymbol)
764  {
765  QUIT;
766  name = MSYMBOL_NATURAL_NAME (msymbol);
767  if (name &&
768  (name[0] == '-' || name[0] == '+') &&
769  name[1] == '[') /* Got a method name. */
770  if (regexp == NULL || re_exec(name+2) != 0)
771  {
772  /* Compute length of classname part. */
773  const char *mystart = name + 2;
774  const char *myend = strchr (mystart, ' ');
775 
776  if (myend && (myend - mystart > maxlen))
777  maxlen = myend - mystart;
778  matches++;
779  }
780  }
781  if (matches)
782  {
783  printf_filtered (_("Classes matching \"%s\":\n\n"),
784  regexp ? regexp : "*");
785  sym_arr = XALLOCAVEC (struct symbol *, matches);
786  matches = 0;
787  ALL_MSYMBOLS (objfile, msymbol)
788  {
789  QUIT;
790  name = MSYMBOL_NATURAL_NAME (msymbol);
791  if (name &&
792  (name[0] == '-' || name[0] == '+') &&
793  name[1] == '[') /* Got a method name. */
794  if (regexp == NULL || re_exec(name+2) != 0)
795  sym_arr[matches++] = (struct symbol *) msymbol;
796  }
797 
798  qsort (sym_arr, matches, sizeof (struct minimal_symbol *),
800  /* Prevent compare on first iteration. */
801  aclass[0] = 0;
802  for (ix = 0; ix < matches; ix++) /* Now do the output. */
803  {
804  char *p = aclass;
805 
806  QUIT;
807  name = SYMBOL_NATURAL_NAME (sym_arr[ix]);
808  name += 2;
809  if (p[0] && specialcmp(name, p) == 0)
810  continue; /* Seen this one already (not unique). */
811 
812  /* Copy class part of method name. */
813  while (*name && *name != ' ')
814  *p++ = *name++;
815  *p++ = '\0';
816  /* Print in columns. */
817  puts_filtered_tabular(aclass, maxlen + 1, 0);
818  }
819  begin_line();
820  }
821  else
822  printf_filtered (_("No classes matching \"%s\"\n"), regexp ? regexp : "*");
823 }
824 
825 static char *
826 parse_selector (char *method, char **selector)
827 {
828  char *s1 = NULL;
829  char *s2 = NULL;
830  int found_quote = 0;
831 
832  char *nselector = NULL;
833 
834  gdb_assert (selector != NULL);
835 
836  s1 = method;
837 
838  s1 = skip_spaces (s1);
839  if (*s1 == '\'')
840  {
841  found_quote = 1;
842  s1++;
843  }
844  s1 = skip_spaces (s1);
845 
846  nselector = s1;
847  s2 = s1;
848 
849  for (;;)
850  {
851  if (isalnum (*s2) || (*s2 == '_') || (*s2 == ':'))
852  *s1++ = *s2;
853  else if (isspace (*s2))
854  ;
855  else if ((*s2 == '\0') || (*s2 == '\''))
856  break;
857  else
858  return NULL;
859  s2++;
860  }
861  *s1++ = '\0';
862 
863  s2 = skip_spaces (s2);
864  if (found_quote)
865  {
866  if (*s2 == '\'')
867  s2++;
868  s2 = skip_spaces (s2);
869  }
870 
871  if (selector != NULL)
872  *selector = nselector;
873 
874  return s2;
875 }
876 
877 static char *
878 parse_method (char *method, char *type, char **theclass,
879  char **category, char **selector)
880 {
881  char *s1 = NULL;
882  char *s2 = NULL;
883  int found_quote = 0;
884 
885  char ntype = '\0';
886  char *nclass = NULL;
887  char *ncategory = NULL;
888  char *nselector = NULL;
889 
890  gdb_assert (type != NULL);
891  gdb_assert (theclass != NULL);
892  gdb_assert (category != NULL);
893  gdb_assert (selector != NULL);
894 
895  s1 = method;
896 
897  s1 = skip_spaces (s1);
898  if (*s1 == '\'')
899  {
900  found_quote = 1;
901  s1++;
902  }
903  s1 = skip_spaces (s1);
904 
905  if ((s1[0] == '+') || (s1[0] == '-'))
906  ntype = *s1++;
907 
908  s1 = skip_spaces (s1);
909 
910  if (*s1 != '[')
911  return NULL;
912  s1++;
913 
914  nclass = s1;
915  while (isalnum (*s1) || (*s1 == '_'))
916  s1++;
917 
918  s2 = s1;
919  s2 = skip_spaces (s2);
920 
921  if (*s2 == '(')
922  {
923  s2++;
924  s2 = skip_spaces (s2);
925  ncategory = s2;
926  while (isalnum (*s2) || (*s2 == '_'))
927  s2++;
928  *s2++ = '\0';
929  }
930 
931  /* Truncate the class name now that we're not using the open paren. */
932  *s1++ = '\0';
933 
934  nselector = s2;
935  s1 = s2;
936 
937  for (;;)
938  {
939  if (isalnum (*s2) || (*s2 == '_') || (*s2 == ':'))
940  *s1++ = *s2;
941  else if (isspace (*s2))
942  ;
943  else if (*s2 == ']')
944  break;
945  else
946  return NULL;
947  s2++;
948  }
949  *s1++ = '\0';
950  s2++;
951 
952  s2 = skip_spaces (s2);
953  if (found_quote)
954  {
955  if (*s2 != '\'')
956  return NULL;
957  s2++;
958  s2 = skip_spaces (s2);
959  }
960 
961  if (type != NULL)
962  *type = ntype;
963  if (theclass != NULL)
964  *theclass = nclass;
965  if (category != NULL)
966  *category = ncategory;
967  if (selector != NULL)
968  *selector = nselector;
969 
970  return s2;
971 }
972 
973 static void
974 find_methods (char type, const char *theclass, const char *category,
975  const char *selector,
976  VEC (const_char_ptr) **symbol_names)
977 {
978  struct objfile *objfile = NULL;
979 
980  const char *symname = NULL;
981 
982  char ntype = '\0';
983  char *nclass = NULL;
984  char *ncategory = NULL;
985  char *nselector = NULL;
986 
987  static char *tmp = NULL;
988  static unsigned int tmplen = 0;
989 
990  gdb_assert (symbol_names != NULL);
991 
993  {
994  unsigned int *objc_csym;
995  struct minimal_symbol *msymbol = NULL;
996 
997  /* The objfile_csym variable counts the number of ObjC methods
998  that this objfile defines. We save that count as a private
999  objfile data. If we have already determined that this objfile
1000  provides no ObjC methods, we can skip it entirely. */
1001 
1002  unsigned int objfile_csym = 0;
1003 
1004  objc_csym = (unsigned int *) objfile_data (objfile, objc_objfile_data);
1005  if (objc_csym != NULL && *objc_csym == 0)
1006  /* There are no ObjC symbols in this objfile. Skip it entirely. */
1007  continue;
1008 
1009  ALL_OBJFILE_MSYMBOLS (objfile, msymbol)
1010  {
1011  QUIT;
1012 
1013  /* Check the symbol name first as this can be done entirely without
1014  sending any query to the target. */
1015  symname = MSYMBOL_NATURAL_NAME (msymbol);
1016  if (symname == NULL)
1017  continue;
1018 
1019  if ((symname[0] != '-' && symname[0] != '+') || (symname[1] != '['))
1020  /* Not a method name. */
1021  continue;
1022 
1023  objfile_csym++;
1024 
1025  /* Now that thinks are a bit sane, clean up the symname. */
1026  while ((strlen (symname) + 1) >= tmplen)
1027  {
1028  tmplen = (tmplen == 0) ? 1024 : tmplen * 2;
1029  tmp = (char *) xrealloc (tmp, tmplen);
1030  }
1031  strcpy (tmp, symname);
1032 
1033  if (parse_method (tmp, &ntype, &nclass,
1034  &ncategory, &nselector) == NULL)
1035  continue;
1036 
1037  if ((type != '\0') && (ntype != type))
1038  continue;
1039 
1040  if ((theclass != NULL)
1041  && ((nclass == NULL) || (strcmp (theclass, nclass) != 0)))
1042  continue;
1043 
1044  if ((category != NULL) &&
1045  ((ncategory == NULL) || (strcmp (category, ncategory) != 0)))
1046  continue;
1047 
1048  if ((selector != NULL) &&
1049  ((nselector == NULL) || (strcmp (selector, nselector) != 0)))
1050  continue;
1051 
1052  VEC_safe_push (const_char_ptr, *symbol_names, symname);
1053  }
1054 
1055  if (objc_csym == NULL)
1056  {
1057  objc_csym = XOBNEW (&objfile->objfile_obstack, unsigned int);
1058  *objc_csym = objfile_csym;
1059  set_objfile_data (objfile, objc_objfile_data, objc_csym);
1060  }
1061  else
1062  /* Count of ObjC methods in this objfile should be constant. */
1063  gdb_assert (*objc_csym == objfile_csym);
1064  }
1065 }
1066 
1067 /* Uniquify a VEC of strings. */
1068 
1069 static void
1071 {
1072  int ix;
1073  const char *elem, *last = NULL;
1074  int out;
1075 
1076  /* If the vector is empty, there's nothing to do. This explicit
1077  check is needed to avoid invoking qsort with NULL. */
1078  if (VEC_empty (const_char_ptr, *strings))
1079  return;
1080 
1081  qsort (VEC_address (const_char_ptr, *strings),
1082  VEC_length (const_char_ptr, *strings),
1083  sizeof (const_char_ptr),
1084  compare_strings);
1085  out = 0;
1086  for (ix = 0; VEC_iterate (const_char_ptr, *strings, ix, elem); ++ix)
1087  {
1088  if (last == NULL || strcmp (last, elem) != 0)
1089  {
1090  /* Keep ELEM. */
1091  VEC_replace (const_char_ptr, *strings, out, elem);
1092  ++out;
1093  }
1094  last = elem;
1095  }
1096  VEC_truncate (const_char_ptr, *strings, out);
1097 }
1098 
1099 /*
1100  * Function: find_imps (const char *selector, struct symbol **sym_arr)
1101  *
1102  * Input: a string representing a selector
1103  * a pointer to an array of symbol pointers
1104  * possibly a pointer to a symbol found by the caller.
1105  *
1106  * Output: number of methods that implement that selector. Side
1107  * effects: The array of symbol pointers is filled with matching syms.
1108  *
1109  * By analogy with function "find_methods" (symtab.c), builds a list
1110  * of symbols matching the ambiguous input, so that "decode_line_2"
1111  * (symtab.c) can list them and ask the user to choose one or more.
1112  * In this case the matches are objective c methods
1113  * ("implementations") matching an objective c selector.
1114  *
1115  * Note that it is possible for a normal (c-style) function to have
1116  * the same name as an objective c selector. To prevent the selector
1117  * from eclipsing the function, we allow the caller (decode_line_1) to
1118  * search for such a function first, and if it finds one, pass it in
1119  * to us. We will then integrate it into the list. We also search
1120  * for one here, among the minsyms.
1121  *
1122  * NOTE: if NUM_DEBUGGABLE is non-zero, the sym_arr will be divided
1123  * into two parts: debuggable (struct symbol) syms, and
1124  * non_debuggable (struct minimal_symbol) syms. The debuggable
1125  * ones will come first, before NUM_DEBUGGABLE (which will thus
1126  * be the index of the first non-debuggable one).
1127  */
1128 
1129 const char *
1130 find_imps (const char *method, VEC (const_char_ptr) **symbol_names)
1131 {
1132  char type = '\0';
1133  char *theclass = NULL;
1134  char *category = NULL;
1135  char *selector = NULL;
1136 
1137  char *buf = NULL;
1138  char *tmp = NULL;
1139 
1140  int selector_case = 0;
1141 
1142  gdb_assert (symbol_names != NULL);
1143 
1144  buf = (char *) alloca (strlen (method) + 1);
1145  strcpy (buf, method);
1146  tmp = parse_method (buf, &type, &theclass, &category, &selector);
1147 
1148  if (tmp == NULL)
1149  {
1150  strcpy (buf, method);
1151  tmp = parse_selector (buf, &selector);
1152 
1153  if (tmp == NULL)
1154  return NULL;
1155 
1156  selector_case = 1;
1157  }
1158 
1159  find_methods (type, theclass, category, selector, symbol_names);
1160 
1161  /* If we hit the "selector" case, and we found some methods, then
1162  add the selector itself as a symbol, if it exists. */
1163  if (selector_case && !VEC_empty (const_char_ptr, *symbol_names))
1164  {
1165  struct symbol *sym = lookup_symbol (selector, NULL, VAR_DOMAIN,
1166  0).symbol;
1167 
1168  if (sym != NULL)
1169  VEC_safe_push (const_char_ptr, *symbol_names,
1170  SYMBOL_NATURAL_NAME (sym));
1171  else
1172  {
1173  struct bound_minimal_symbol msym
1174  = lookup_minimal_symbol (selector, 0, 0);
1175 
1176  if (msym.minsym != NULL)
1177  VEC_safe_push (const_char_ptr, *symbol_names,
1178  MSYMBOL_NATURAL_NAME (msym.minsym));
1179  }
1180  }
1181 
1182  uniquify_strings (symbol_names);
1183 
1184  return method + (tmp - buf);
1185 }
1186 
1187 static void
1188 print_object_command (const char *args, int from_tty)
1189 {
1190  struct value *object, *function, *description;
1191  CORE_ADDR string_addr, object_addr;
1192  int i = 0;
1193  gdb_byte c = 0;
1194 
1195  if (!args || !*args)
1196  error (
1197 "The 'print-object' command requires an argument (an Objective-C object)");
1198 
1199  {
1200  expression_up expr = parse_expression (args);
1201  int pc = 0;
1202 
1203  object = evaluate_subexp (builtin_type (expr->gdbarch)->builtin_data_ptr,
1204  expr.get (), &pc, EVAL_NORMAL);
1205  }
1206 
1207  /* Validate the address for sanity. */
1208  object_addr = value_as_long (object);
1209  read_memory (object_addr, &c, 1);
1210 
1211  function = find_function_in_inferior ("_NSPrintForDebugger", NULL);
1212  if (function == NULL)
1213  error (_("Unable to locate _NSPrintForDebugger in child process"));
1214 
1215  description = call_function_by_hand (function, NULL, 1, &object);
1216 
1217  string_addr = value_as_long (description);
1218  if (string_addr == 0)
1219  error (_("object returns null description"));
1220 
1221  read_memory (string_addr + i++, &c, 1);
1222  if (c != 0)
1223  do
1224  { /* Read and print characters up to EOS. */
1225  QUIT;
1226  printf_filtered ("%c", c);
1227  read_memory (string_addr + i++, &c, 1);
1228  } while (c != 0);
1229  else
1230  printf_filtered(_("<object returns empty description>"));
1231  printf_filtered ("\n");
1232 }
1233 
1234 /* The data structure 'methcalls' is used to detect method calls (thru
1235  * ObjC runtime lib functions objc_msgSend, objc_msgSendSuper, etc.),
1236  * and ultimately find the method being called.
1237  */
1238 
1240  const char *name;
1241  /* Return instance method to be called. */
1243  /* Start of pc range corresponding to method invocation. */
1245  /* End of pc range corresponding to method invocation. */
1247 };
1248 
1249 static int resolve_msgsend (CORE_ADDR pc, CORE_ADDR *new_pc);
1250 static int resolve_msgsend_stret (CORE_ADDR pc, CORE_ADDR *new_pc);
1251 static int resolve_msgsend_super (CORE_ADDR pc, CORE_ADDR *new_pc);
1252 static int resolve_msgsend_super_stret (CORE_ADDR pc, CORE_ADDR *new_pc);
1253 
1254 static struct objc_methcall methcalls[] = {
1255  { "_objc_msgSend", resolve_msgsend, 0, 0},
1256  { "_objc_msgSend_stret", resolve_msgsend_stret, 0, 0},
1257  { "_objc_msgSendSuper", resolve_msgsend_super, 0, 0},
1258  { "_objc_msgSendSuper_stret", resolve_msgsend_super_stret, 0, 0},
1259  { "_objc_getClass", NULL, 0, 0},
1260  { "_objc_getMetaClass", NULL, 0, 0}
1261 };
1262 
1263 #define nmethcalls (sizeof (methcalls) / sizeof (methcalls[0]))
1264 
1265 /* The following function, "find_objc_msgsend", fills in the data
1266  * structure "objc_msgs" by finding the addresses of each of the
1267  * (currently four) functions that it holds (of which objc_msgSend is
1268  * the first). This must be called each time symbols are loaded, in
1269  * case the functions have moved for some reason.
1270  */
1271 
1272 static void
1274 {
1275  unsigned int i;
1276 
1277  for (i = 0; i < nmethcalls; i++)
1278  {
1279  struct bound_minimal_symbol func;
1280 
1281  /* Try both with and without underscore. */
1283  if ((func.minsym == NULL) && (methcalls[i].name[0] == '_'))
1284  {
1286  }
1287  if (func.minsym == NULL)
1288  {
1289  methcalls[i].begin = 0;
1290  methcalls[i].end = 0;
1291  continue;
1292  }
1293 
1296  }
1297 }
1298 
1299 /* find_objc_msgcall (replaces pc_off_limits)
1300  *
1301  * ALL that this function now does is to determine whether the input
1302  * address ("pc") is the address of one of the Objective-C message
1303  * dispatch functions (mainly objc_msgSend or objc_msgSendSuper), and
1304  * if so, it returns the address of the method that will be called.
1305  *
1306  * The old function "pc_off_limits" used to do a lot of other things
1307  * in addition, such as detecting shared library jump stubs and
1308  * returning the address of the shlib function that would be called.
1309  * That functionality has been moved into the gdbarch_skip_trampoline_code and
1310  * IN_SOLIB_TRAMPOLINE macros, which are resolved in the target-
1311  * dependent modules.
1312  */
1313 
1314 static int
1316  CORE_ADDR pc,
1317  CORE_ADDR *new_pc)
1318 {
1319  TRY
1320  {
1321  if (f (pc, new_pc) == 0)
1322  return 1;
1323  }
1324  CATCH (ex, RETURN_MASK_ALL)
1325  {
1327  "Unable to determine target of "
1328  "Objective-C method call (ignoring):\n");
1329  }
1330  END_CATCH
1331 
1332  return 0;
1333 }
1334 
1335 int
1337 {
1338  unsigned int i;
1339 
1340  find_objc_msgsend ();
1341  if (new_pc != NULL)
1342  {
1343  *new_pc = 0;
1344  }
1345 
1346  for (i = 0; i < nmethcalls; i++)
1347  if ((pc >= methcalls[i].begin) && (pc < methcalls[i].end))
1348  {
1349  if (methcalls[i].stop_at != NULL)
1350  return find_objc_msgcall_submethod (methcalls[i].stop_at,
1351  pc, new_pc);
1352  else
1353  return 0;
1354  }
1355 
1356  return 0;
1357 }
1358 
1359 void
1361 {
1362  add_info ("selectors", info_selectors_command,
1363  _("All Objective-C selectors, or those matching REGEXP."));
1364  add_info ("classes", info_classes_command,
1365  _("All Objective-C classes, or those matching REGEXP."));
1366  add_com ("print-object", class_vars, print_object_command,
1367  _("Ask an Objective-C object to print itself."));
1368  add_com_alias ("po", "print-object", class_vars, 1);
1369 }
1370 
1371 static void
1373  struct objc_method *method)
1374 {
1375  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1376 
1377  method->name = read_memory_unsigned_integer (addr + 0, 4, byte_order);
1378  method->types = read_memory_unsigned_integer (addr + 4, 4, byte_order);
1379  method->imp = read_memory_unsigned_integer (addr + 8, 4, byte_order);
1380 }
1381 
1382 static unsigned long
1384 {
1385  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1386 
1387  return read_memory_unsigned_integer (addr + 4, 4, byte_order);
1388 }
1389 
1390 static void
1392  unsigned long num, struct objc_method *method)
1393 {
1395  read_objc_method (gdbarch, addr + 8 + (12 * num), method);
1396 }
1397 
1398 static void
1400  struct objc_object *object)
1401 {
1402  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1403 
1404  object->isa = read_memory_unsigned_integer (addr, 4, byte_order);
1405 }
1406 
1407 static void
1409  struct objc_super *super)
1410 {
1411  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1412 
1413  super->receiver = read_memory_unsigned_integer (addr, 4, byte_order);
1414  super->theclass = read_memory_unsigned_integer (addr + 4, 4, byte_order);
1415 };
1416 
1417 static void
1419  struct objc_class *theclass)
1420 {
1421  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1422 
1423  theclass->isa = read_memory_unsigned_integer (addr, 4, byte_order);
1424  theclass->super_class = read_memory_unsigned_integer (addr + 4, 4, byte_order);
1425  theclass->name = read_memory_unsigned_integer (addr + 8, 4, byte_order);
1426  theclass->version = read_memory_unsigned_integer (addr + 12, 4, byte_order);
1427  theclass->info = read_memory_unsigned_integer (addr + 16, 4, byte_order);
1428  theclass->instance_size = read_memory_unsigned_integer (addr + 18, 4,
1429  byte_order);
1430  theclass->ivars = read_memory_unsigned_integer (addr + 24, 4, byte_order);
1431  theclass->methods = read_memory_unsigned_integer (addr + 28, 4, byte_order);
1432  theclass->cache = read_memory_unsigned_integer (addr + 32, 4, byte_order);
1433  theclass->protocols = read_memory_unsigned_integer (addr + 36, 4, byte_order);
1434 }
1435 
1436 static CORE_ADDR
1438  CORE_ADDR theclass, CORE_ADDR sel)
1439 {
1440  enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
1441  CORE_ADDR subclass = theclass;
1442 
1443  while (subclass != 0)
1444  {
1445 
1446  struct objc_class class_str;
1447  unsigned mlistnum = 0;
1448 
1449  read_objc_class (gdbarch, subclass, &class_str);
1450 
1451  for (;;)
1452  {
1453  CORE_ADDR mlist;
1454  unsigned long nmethods;
1455  unsigned long i;
1456 
1457  mlist = read_memory_unsigned_integer (class_str.methods +
1458  (4 * mlistnum),
1459  4, byte_order);
1460  if (mlist == 0)
1461  break;
1462 
1463  nmethods = read_objc_methlist_nmethods (gdbarch, mlist);
1464 
1465  for (i = 0; i < nmethods; i++)
1466  {
1467  struct objc_method meth_str;
1468 
1469  read_objc_methlist_method (gdbarch, mlist, i, &meth_str);
1470 
1471  if (meth_str.name == sel)
1472  /* FIXME: hppa arch was doing a pointer dereference
1473  here. There needs to be a better way to do that. */
1474  return meth_str.imp;
1475  }
1476  mlistnum++;
1477  }
1478  subclass = class_str.super_class;
1479  }
1480 
1481  return 0;
1482 }
1483 
1484 static CORE_ADDR
1486  CORE_ADDR object, CORE_ADDR sel)
1487 {
1488  struct objc_object ostr;
1489 
1490  if (object == 0)
1491  return 0;
1492  read_objc_object (gdbarch, object, &ostr);
1493  if (ostr.isa == 0)
1494  return 0;
1495 
1496  return find_implementation_from_class (gdbarch, ostr.isa, sel);
1497 }
1498 
1499 static int
1501 {
1502  struct frame_info *frame = get_current_frame ();
1503  struct gdbarch *gdbarch = get_frame_arch (frame);
1504  struct type *ptr_type = builtin_type (gdbarch)->builtin_func_ptr;
1505 
1506  CORE_ADDR object;
1507  CORE_ADDR sel;
1508  CORE_ADDR res;
1509 
1510  object = gdbarch_fetch_pointer_argument (gdbarch, frame, 0, ptr_type);
1511  sel = gdbarch_fetch_pointer_argument (gdbarch, frame, 1, ptr_type);
1512 
1513  res = find_implementation (gdbarch, object, sel);
1514  if (new_pc != 0)
1515  *new_pc = res;
1516  if (res == 0)
1517  return 1;
1518  return 0;
1519 }
1520 
1521 static int
1523 {
1524  struct frame_info *frame = get_current_frame ();
1525  struct gdbarch *gdbarch = get_frame_arch (frame);
1526  struct type *ptr_type = builtin_type (gdbarch)->builtin_func_ptr;
1527 
1528  CORE_ADDR object;
1529  CORE_ADDR sel;
1530  CORE_ADDR res;
1531 
1532  object = gdbarch_fetch_pointer_argument (gdbarch, frame, 1, ptr_type);
1533  sel = gdbarch_fetch_pointer_argument (gdbarch, frame, 2, ptr_type);
1534 
1535  res = find_implementation (gdbarch, object, sel);
1536  if (new_pc != 0)
1537  *new_pc = res;
1538  if (res == 0)
1539  return 1;
1540  return 0;
1541 }
1542 
1543 static int
1545 {
1546  struct frame_info *frame = get_current_frame ();
1547  struct gdbarch *gdbarch = get_frame_arch (frame);
1548  struct type *ptr_type = builtin_type (gdbarch)->builtin_func_ptr;
1549 
1550  struct objc_super sstr;
1551 
1552  CORE_ADDR super;
1553  CORE_ADDR sel;
1554  CORE_ADDR res;
1555 
1556  super = gdbarch_fetch_pointer_argument (gdbarch, frame, 0, ptr_type);
1557  sel = gdbarch_fetch_pointer_argument (gdbarch, frame, 1, ptr_type);
1558 
1559  read_objc_super (gdbarch, super, &sstr);
1560  if (sstr.theclass == 0)
1561  return 0;
1562 
1563  res = find_implementation_from_class (gdbarch, sstr.theclass, sel);
1564  if (new_pc != 0)
1565  *new_pc = res;
1566  if (res == 0)
1567  return 1;
1568  return 0;
1569 }
1570 
1571 static int
1573 {
1574  struct frame_info *frame = get_current_frame ();
1575  struct gdbarch *gdbarch = get_frame_arch (frame);
1576  struct type *ptr_type = builtin_type (gdbarch)->builtin_func_ptr;
1577 
1578  struct objc_super sstr;
1579 
1580  CORE_ADDR super;
1581  CORE_ADDR sel;
1582  CORE_ADDR res;
1583 
1584  super = gdbarch_fetch_pointer_argument (gdbarch, frame, 1, ptr_type);
1585  sel = gdbarch_fetch_pointer_argument (gdbarch, frame, 2, ptr_type);
1586 
1587  read_objc_super (gdbarch, super, &sstr);
1588  if (sstr.theclass == 0)
1589  return 0;
1590 
1591  res = find_implementation_from_class (gdbarch, sstr.theclass, sel);
1592  if (new_pc != 0)
1593  *new_pc = res;
1594  if (res == 0)
1595  return 1;
1596  return 0;
1597 }
1598 
1599 void
1601 {
1602  objc_objfile_data = register_objfile_data ();
1603 }
CORE_ADDR protocols
Definition: objc-lang.c:63
static void read_objc_method(struct gdbarch *gdbarch, CORE_ADDR addr, struct objc_method *method)
Definition: objc-lang.c:1372
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Definition: objc-lang.c:425
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Definition: parser-defs.h:35
static void read_objc_object(struct gdbarch *gdbarch, CORE_ADDR addr, struct objc_object *object)
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const char * ptr
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static CORE_ADDR find_implementation_from_class(struct gdbarch *gdbarch, CORE_ADDR theclass, CORE_ADDR sel)
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Definition: minsyms.c:1532
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Definition: objc-lang.c:74
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Definition: objc-lang.c:54
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long version
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#define _(String)
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static unsigned long read_objc_methlist_nmethods(struct gdbarch *gdbarch, CORE_ADDR addr)
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#define END_CATCH
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CORE_ADDR methods
Definition: objc-lang.c:61
CORE_ADDR begin
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Definition: gdb_assert.h:32
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Definition: varobj.h:236
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#define VEC_address(T, V)
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Definition: objc-lang.c:1500
int(* stop_at)(CORE_ADDR, CORE_ADDR *)
Definition: objc-lang.c:1242
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EXTERN_C char * re_comp(const char *)
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Definition: symtab.h:1161
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Definition: gdbarch.c:3306
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Definition: objc-lang.c:62
ULONGEST read_memory_unsigned_integer(CORE_ADDR memaddr, int len, enum bfd_endian byte_order)
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Definition: objc-lang.c:77
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Definition: objc-lang.c:139
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Definition: objfiles.h:582
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Definition: c-valprint.c:571
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Definition: objc-lang.c:974
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Definition: objc-lang.c:73
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Definition: gdbtypes.c:381
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Definition: frame.c:2691
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Definition: utils.c:1682
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CORE_ADDR isa
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static const struct op_print objc_op_print_tab[]
Definition: objc-lang.c:330
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Definition: objc-lang.c:223