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mi-cmd-var.c revision 1.6.4.1
      1 /* MI Command Set - varobj commands.
      2    Copyright (C) 2000-2017 Free Software Foundation, Inc.
      3 
      4    Contributed by Cygnus Solutions (a Red Hat company).
      5 
      6    This file is part of GDB.
      7 
      8    This program is free software; you can redistribute it and/or modify
      9    it under the terms of the GNU General Public License as published by
     10    the Free Software Foundation; either version 3 of the License, or
     11    (at your option) any later version.
     12 
     13    This program is distributed in the hope that it will be useful,
     14    but WITHOUT ANY WARRANTY; without even the implied warranty of
     15    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     16    GNU General Public License for more details.
     17 
     18    You should have received a copy of the GNU General Public License
     19    along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
     20 
     21 #include "defs.h"
     22 #include "mi-cmds.h"
     23 #include "mi-main.h"
     24 #include "ui-out.h"
     25 #include "mi-out.h"
     26 #include "varobj.h"
     27 #include "language.h"
     28 #include "value.h"
     29 #include <ctype.h>
     30 #include "mi-getopt.h"
     31 #include "gdbthread.h"
     32 #include "mi-parse.h"
     33 
     34 extern unsigned int varobjdebug;		/* defined in varobj.c.  */
     35 
     36 static void varobj_update_one (struct varobj *var,
     37 			       enum print_values print_values,
     38 			       int is_explicit);
     39 
     40 static int mi_print_value_p (struct varobj *var,
     41 			     enum print_values print_values);
     42 
     43 /* Print variable object VAR.  The PRINT_VALUES parameter controls
     44    if the value should be printed.  The PRINT_EXPRESSION parameter
     45    controls if the expression should be printed.  */
     46 
     47 static void
     48 print_varobj (struct varobj *var, enum print_values print_values,
     49 	      int print_expression)
     50 {
     51   struct ui_out *uiout = current_uiout;
     52   int thread_id;
     53 
     54   uiout->field_string ("name", varobj_get_objname (var));
     55   if (print_expression)
     56     {
     57       std::string exp = varobj_get_expression (var);
     58 
     59       uiout->field_string ("exp", exp.c_str ());
     60     }
     61   uiout->field_int ("numchild", varobj_get_num_children (var));
     62 
     63   if (mi_print_value_p (var, print_values))
     64     {
     65       std::string val = varobj_get_value (var);
     66 
     67       uiout->field_string ("value", val.c_str ());
     68     }
     69 
     70   std::string type = varobj_get_type (var);
     71   if (!type.empty ())
     72     uiout->field_string ("type", type.c_str ());
     73 
     74   thread_id = varobj_get_thread_id (var);
     75   if (thread_id > 0)
     76     uiout->field_int ("thread-id", thread_id);
     77 
     78   if (varobj_get_frozen (var))
     79     uiout->field_int ("frozen", 1);
     80 
     81   gdb::unique_xmalloc_ptr<char> display_hint = varobj_get_display_hint (var);
     82   if (display_hint)
     83     uiout->field_string ("displayhint", display_hint.get ());
     84 
     85   if (varobj_is_dynamic_p (var))
     86     uiout->field_int ("dynamic", 1);
     87 }
     88 
     89 /* VAROBJ operations */
     90 
     91 void
     92 mi_cmd_var_create (const char *command, char **argv, int argc)
     93 {
     94   struct ui_out *uiout = current_uiout;
     95   CORE_ADDR frameaddr = 0;
     96   struct varobj *var;
     97   char *name;
     98   char *frame;
     99   char *expr;
    100   struct cleanup *old_cleanups;
    101   enum varobj_type var_type;
    102 
    103   if (argc != 3)
    104     error (_("-var-create: Usage: NAME FRAME EXPRESSION."));
    105 
    106   name = xstrdup (argv[0]);
    107   /* Add cleanup for name. Must be free_current_contents as name can
    108      be reallocated.  */
    109   old_cleanups = make_cleanup (free_current_contents, &name);
    110 
    111   frame = xstrdup (argv[1]);
    112   make_cleanup (xfree, frame);
    113 
    114   expr = xstrdup (argv[2]);
    115   make_cleanup (xfree, expr);
    116 
    117   if (strcmp (name, "-") == 0)
    118     {
    119       xfree (name);
    120       name = varobj_gen_name ();
    121     }
    122   else if (!isalpha (*name))
    123     error (_("-var-create: name of object must begin with a letter"));
    124 
    125   if (strcmp (frame, "*") == 0)
    126     var_type = USE_CURRENT_FRAME;
    127   else if (strcmp (frame, "@") == 0)
    128     var_type = USE_SELECTED_FRAME;
    129   else
    130     {
    131       var_type = USE_SPECIFIED_FRAME;
    132       frameaddr = string_to_core_addr (frame);
    133     }
    134 
    135   if (varobjdebug)
    136     fprintf_unfiltered (gdb_stdlog,
    137 		    "Name=\"%s\", Frame=\"%s\" (%s), Expression=\"%s\"\n",
    138 			name, frame, hex_string (frameaddr), expr);
    139 
    140   var = varobj_create (name, expr, frameaddr, var_type);
    141 
    142   if (var == NULL)
    143     error (_("-var-create: unable to create variable object"));
    144 
    145   print_varobj (var, PRINT_ALL_VALUES, 0 /* don't print expression */);
    146 
    147   uiout->field_int ("has_more", varobj_has_more (var, 0));
    148 
    149   do_cleanups (old_cleanups);
    150 }
    151 
    152 void
    153 mi_cmd_var_delete (const char *command, char **argv, int argc)
    154 {
    155   char *name;
    156   struct varobj *var;
    157   int numdel;
    158   int children_only_p = 0;
    159   struct cleanup *old_cleanups;
    160   struct ui_out *uiout = current_uiout;
    161 
    162   if (argc < 1 || argc > 2)
    163     error (_("-var-delete: Usage: [-c] EXPRESSION."));
    164 
    165   name = xstrdup (argv[0]);
    166   /* Add cleanup for name. Must be free_current_contents as name can
    167      be reallocated.  */
    168   old_cleanups = make_cleanup (free_current_contents, &name);
    169 
    170   /* If we have one single argument it cannot be '-c' or any string
    171      starting with '-'.  */
    172   if (argc == 1)
    173     {
    174       if (strcmp (name, "-c") == 0)
    175 	error (_("-var-delete: Missing required "
    176 		 "argument after '-c': variable object name"));
    177       if (*name == '-')
    178 	error (_("-var-delete: Illegal variable object name"));
    179     }
    180 
    181   /* If we have 2 arguments they must be '-c' followed by a string
    182      which would be the variable name.  */
    183   if (argc == 2)
    184     {
    185       if (strcmp (name, "-c") != 0)
    186 	error (_("-var-delete: Invalid option."));
    187       children_only_p = 1;
    188       do_cleanups (old_cleanups);
    189       name = xstrdup (argv[1]);
    190       old_cleanups = make_cleanup (free_current_contents, &name);
    191     }
    192 
    193   /* If we didn't error out, now NAME contains the name of the
    194      variable.  */
    195 
    196   var = varobj_get_handle (name);
    197 
    198   numdel = varobj_delete (var, children_only_p);
    199 
    200   uiout->field_int ("ndeleted", numdel);
    201 
    202   do_cleanups (old_cleanups);
    203 }
    204 
    205 /* Parse a string argument into a format value.  */
    206 
    207 static enum varobj_display_formats
    208 mi_parse_format (const char *arg)
    209 {
    210   if (arg != NULL)
    211     {
    212       int len;
    213 
    214       len = strlen (arg);
    215 
    216       if (strncmp (arg, "natural", len) == 0)
    217 	return FORMAT_NATURAL;
    218       else if (strncmp (arg, "binary", len) == 0)
    219 	return FORMAT_BINARY;
    220       else if (strncmp (arg, "decimal", len) == 0)
    221 	return FORMAT_DECIMAL;
    222       else if (strncmp (arg, "hexadecimal", len) == 0)
    223 	return FORMAT_HEXADECIMAL;
    224       else if (strncmp (arg, "octal", len) == 0)
    225 	return FORMAT_OCTAL;
    226       else if (strncmp (arg, "zero-hexadecimal", len) == 0)
    227 	return FORMAT_ZHEXADECIMAL;
    228     }
    229 
    230   error (_("Must specify the format as: \"natural\", "
    231 	   "\"binary\", \"decimal\", \"hexadecimal\", \"octal\" or \"zero-hexadecimal\""));
    232 }
    233 
    234 void
    235 mi_cmd_var_set_format (const char *command, char **argv, int argc)
    236 {
    237   enum varobj_display_formats format;
    238   struct varobj *var;
    239   struct ui_out *uiout = current_uiout;
    240 
    241   if (argc != 2)
    242     error (_("-var-set-format: Usage: NAME FORMAT."));
    243 
    244   /* Get varobj handle, if a valid var obj name was specified.  */
    245   var = varobj_get_handle (argv[0]);
    246 
    247   format = mi_parse_format (argv[1]);
    248 
    249   /* Set the format of VAR to the given format.  */
    250   varobj_set_display_format (var, format);
    251 
    252   /* Report the new current format.  */
    253   uiout->field_string ("format", varobj_format_string[(int) format]);
    254 
    255   /* Report the value in the new format.  */
    256   std::string val = varobj_get_value (var);
    257   uiout->field_string ("value", val.c_str ());
    258 }
    259 
    260 void
    261 mi_cmd_var_set_visualizer (const char *command, char **argv, int argc)
    262 {
    263   struct varobj *var;
    264 
    265   if (argc != 2)
    266     error (_("Usage: NAME VISUALIZER_FUNCTION."));
    267 
    268   var = varobj_get_handle (argv[0]);
    269 
    270   if (var == NULL)
    271     error (_("Variable object not found"));
    272 
    273   varobj_set_visualizer (var, argv[1]);
    274 }
    275 
    276 void
    277 mi_cmd_var_set_frozen (const char *command, char **argv, int argc)
    278 {
    279   struct varobj *var;
    280   int frozen;
    281 
    282   if (argc != 2)
    283     error (_("-var-set-format: Usage: NAME FROZEN_FLAG."));
    284 
    285   var = varobj_get_handle (argv[0]);
    286 
    287   if (strcmp (argv[1], "0") == 0)
    288     frozen = 0;
    289   else if (strcmp (argv[1], "1") == 0)
    290     frozen = 1;
    291   else
    292     error (_("Invalid flag value"));
    293 
    294   varobj_set_frozen (var, frozen);
    295 
    296   /* We don't automatically return the new value, or what varobjs got
    297      new values during unfreezing.  If this information is required,
    298      client should call -var-update explicitly.  */
    299 }
    300 
    301 void
    302 mi_cmd_var_show_format (const char *command, char **argv, int argc)
    303 {
    304   struct ui_out *uiout = current_uiout;
    305   enum varobj_display_formats format;
    306   struct varobj *var;
    307 
    308   if (argc != 1)
    309     error (_("-var-show-format: Usage: NAME."));
    310 
    311   /* Get varobj handle, if a valid var obj name was specified.  */
    312   var = varobj_get_handle (argv[0]);
    313 
    314   format = varobj_get_display_format (var);
    315 
    316   /* Report the current format.  */
    317   uiout->field_string ("format", varobj_format_string[(int) format]);
    318 }
    319 
    320 void
    321 mi_cmd_var_info_num_children (const char *command, char **argv, int argc)
    322 {
    323   struct ui_out *uiout = current_uiout;
    324   struct varobj *var;
    325 
    326   if (argc != 1)
    327     error (_("-var-info-num-children: Usage: NAME."));
    328 
    329   /* Get varobj handle, if a valid var obj name was specified.  */
    330   var = varobj_get_handle (argv[0]);
    331 
    332   uiout->field_int ("numchild", varobj_get_num_children (var));
    333 }
    334 
    335 /* Return 1 if given the argument PRINT_VALUES we should display
    336    the varobj VAR.  */
    337 
    338 static int
    339 mi_print_value_p (struct varobj *var, enum print_values print_values)
    340 {
    341   struct type *type;
    342 
    343   if (print_values == PRINT_NO_VALUES)
    344     return 0;
    345 
    346   if (print_values == PRINT_ALL_VALUES)
    347     return 1;
    348 
    349   if (varobj_is_dynamic_p (var))
    350     return 1;
    351 
    352   type = varobj_get_gdb_type (var);
    353   if (type == NULL)
    354     return 1;
    355   else
    356     {
    357       type = check_typedef (type);
    358 
    359       /* For PRINT_SIMPLE_VALUES, only print the value if it has a type
    360 	 and that type is not a compound type.  */
    361       return (TYPE_CODE (type) != TYPE_CODE_ARRAY
    362 	      && TYPE_CODE (type) != TYPE_CODE_STRUCT
    363 	      && TYPE_CODE (type) != TYPE_CODE_UNION);
    364     }
    365 }
    366 
    367 void
    368 mi_cmd_var_list_children (const char *command, char **argv, int argc)
    369 {
    370   struct ui_out *uiout = current_uiout;
    371   struct varobj *var;
    372   VEC(varobj_p) *children;
    373   struct varobj *child;
    374   enum print_values print_values;
    375   int ix;
    376   int from, to;
    377 
    378   if (argc < 1 || argc > 4)
    379     error (_("-var-list-children: Usage: "
    380 	     "[PRINT_VALUES] NAME [FROM TO]"));
    381 
    382   /* Get varobj handle, if a valid var obj name was specified.  */
    383   if (argc == 1 || argc == 3)
    384     var = varobj_get_handle (argv[0]);
    385   else
    386     var = varobj_get_handle (argv[1]);
    387 
    388   if (argc > 2)
    389     {
    390       from = atoi (argv[argc - 2]);
    391       to = atoi (argv[argc - 1]);
    392     }
    393   else
    394     {
    395       from = -1;
    396       to = -1;
    397     }
    398 
    399   children = varobj_list_children (var, &from, &to);
    400   uiout->field_int ("numchild", to - from);
    401   if (argc == 2 || argc == 4)
    402     print_values = mi_parse_print_values (argv[0]);
    403   else
    404     print_values = PRINT_NO_VALUES;
    405 
    406   gdb::unique_xmalloc_ptr<char> display_hint = varobj_get_display_hint (var);
    407   if (display_hint)
    408     uiout->field_string ("displayhint", display_hint.get ());
    409 
    410   if (from < to)
    411     {
    412       struct cleanup *cleanup_children;
    413 
    414       if (mi_version (uiout) == 1)
    415 	cleanup_children
    416 	  = make_cleanup_ui_out_tuple_begin_end (uiout, "children");
    417       else
    418 	cleanup_children
    419 	  = make_cleanup_ui_out_list_begin_end (uiout, "children");
    420       for (ix = from;
    421 	   ix < to && VEC_iterate (varobj_p, children, ix, child);
    422 	   ++ix)
    423 	{
    424 	  struct cleanup *cleanup_child;
    425 
    426 	  cleanup_child = make_cleanup_ui_out_tuple_begin_end (uiout, "child");
    427 	  print_varobj (child, print_values, 1 /* print expression */);
    428 	  do_cleanups (cleanup_child);
    429 	}
    430       do_cleanups (cleanup_children);
    431     }
    432 
    433   uiout->field_int ("has_more", varobj_has_more (var, to));
    434 }
    435 
    436 void
    437 mi_cmd_var_info_type (const char *command, char **argv, int argc)
    438 {
    439   struct ui_out *uiout = current_uiout;
    440   struct varobj *var;
    441 
    442   if (argc != 1)
    443     error (_("-var-info-type: Usage: NAME."));
    444 
    445   /* Get varobj handle, if a valid var obj name was specified.  */
    446   var = varobj_get_handle (argv[0]);
    447 
    448   std::string type_name = varobj_get_type (var);
    449   uiout->field_string ("type", type_name.c_str ());
    450 }
    451 
    452 void
    453 mi_cmd_var_info_path_expression (const char *command, char **argv, int argc)
    454 {
    455   struct ui_out *uiout = current_uiout;
    456   struct varobj *var;
    457 
    458   if (argc != 1)
    459     error (_("Usage: NAME."));
    460 
    461   /* Get varobj handle, if a valid var obj name was specified.  */
    462   var = varobj_get_handle (argv[0]);
    463 
    464   const char *path_expr = varobj_get_path_expr (var);
    465 
    466   uiout->field_string ("path_expr", path_expr);
    467 }
    468 
    469 void
    470 mi_cmd_var_info_expression (const char *command, char **argv, int argc)
    471 {
    472   struct ui_out *uiout = current_uiout;
    473   const struct language_defn *lang;
    474   struct varobj *var;
    475 
    476   if (argc != 1)
    477     error (_("-var-info-expression: Usage: NAME."));
    478 
    479   /* Get varobj handle, if a valid var obj name was specified.  */
    480   var = varobj_get_handle (argv[0]);
    481 
    482   lang = varobj_get_language (var);
    483 
    484   uiout->field_string ("lang", lang->la_natural_name);
    485 
    486   std::string exp = varobj_get_expression (var);
    487   uiout->field_string ("exp", exp.c_str ());
    488 }
    489 
    490 void
    491 mi_cmd_var_show_attributes (const char *command, char **argv, int argc)
    492 {
    493   struct ui_out *uiout = current_uiout;
    494   int attr;
    495   const char *attstr;
    496   struct varobj *var;
    497 
    498   if (argc != 1)
    499     error (_("-var-show-attributes: Usage: NAME."));
    500 
    501   /* Get varobj handle, if a valid var obj name was specified */
    502   var = varobj_get_handle (argv[0]);
    503 
    504   attr = varobj_get_attributes (var);
    505   /* FIXME: define masks for attributes */
    506   if (attr & 0x00000001)
    507     attstr = "editable";
    508   else
    509     attstr = "noneditable";
    510 
    511   uiout->field_string ("attr", attstr);
    512 }
    513 
    514 void
    515 mi_cmd_var_evaluate_expression (const char *command, char **argv, int argc)
    516 {
    517   struct ui_out *uiout = current_uiout;
    518   struct varobj *var;
    519 
    520   enum varobj_display_formats format;
    521   int formatFound;
    522   int oind;
    523   char *oarg;
    524 
    525   enum opt
    526   {
    527     OP_FORMAT
    528   };
    529   static const struct mi_opt opts[] =
    530     {
    531       {"f", OP_FORMAT, 1},
    532       { 0, 0, 0 }
    533     };
    534 
    535   /* Parse arguments.  */
    536   format = FORMAT_NATURAL;
    537   formatFound = 0;
    538   oind = 0;
    539   while (1)
    540     {
    541       int opt = mi_getopt ("-var-evaluate-expression", argc, argv,
    542 			   opts, &oind, &oarg);
    543 
    544       if (opt < 0)
    545 	break;
    546       switch ((enum opt) opt)
    547 	{
    548 	case OP_FORMAT:
    549 	  if (formatFound)
    550 	    error (_("Cannot specify format more than once"));
    551 
    552 	  format = mi_parse_format (oarg);
    553 	  formatFound = 1;
    554 	  break;
    555 	}
    556     }
    557 
    558   if (oind >= argc)
    559     error (_("Usage: [-f FORMAT] NAME"));
    560 
    561   if (oind < argc - 1)
    562     error (_("Garbage at end of command"));
    563 
    564   /* Get varobj handle, if a valid var obj name was specified.  */
    565   var = varobj_get_handle (argv[oind]);
    566 
    567   if (formatFound)
    568     {
    569       std::string val = varobj_get_formatted_value (var, format);
    570 
    571       uiout->field_string ("value", val.c_str ());
    572     }
    573   else
    574     {
    575       std::string val = varobj_get_value (var);
    576 
    577       uiout->field_string ("value", val.c_str ());
    578     }
    579 }
    580 
    581 void
    582 mi_cmd_var_assign (const char *command, char **argv, int argc)
    583 {
    584   struct ui_out *uiout = current_uiout;
    585   struct varobj *var;
    586 
    587   if (argc != 2)
    588     error (_("-var-assign: Usage: NAME EXPRESSION."));
    589 
    590   /* Get varobj handle, if a valid var obj name was specified.  */
    591   var = varobj_get_handle (argv[0]);
    592 
    593   if (!varobj_editable_p (var))
    594     error (_("-var-assign: Variable object is not editable"));
    595 
    596   const char *expression = argv[1];
    597 
    598   /* MI command '-var-assign' may write memory, so suppress memory
    599      changed notification if it does.  */
    600   scoped_restore save_suppress
    601     = make_scoped_restore (&mi_suppress_notification.memory, 1);
    602 
    603   if (!varobj_set_value (var, expression))
    604     error (_("-var-assign: Could not assign "
    605 	     "expression to variable object"));
    606 
    607   std::string val = varobj_get_value (var);
    608   uiout->field_string ("value", val.c_str ());
    609 }
    610 
    611 /* Type used for parameters passing to mi_cmd_var_update_iter.  */
    612 
    613 struct mi_cmd_var_update
    614   {
    615     int only_floating;
    616     enum print_values print_values;
    617   };
    618 
    619 /* Helper for mi_cmd_var_update - update each VAR.  */
    620 
    621 static void
    622 mi_cmd_var_update_iter (struct varobj *var, void *data_pointer)
    623 {
    624   struct mi_cmd_var_update *data = (struct mi_cmd_var_update *) data_pointer;
    625   int thread_id, thread_stopped;
    626 
    627   thread_id = varobj_get_thread_id (var);
    628 
    629   if (thread_id == -1
    630       && (ptid_equal (inferior_ptid, null_ptid)
    631 	  || is_stopped (inferior_ptid)))
    632     thread_stopped = 1;
    633   else
    634     {
    635       struct thread_info *tp = find_thread_global_id (thread_id);
    636 
    637       if (tp)
    638 	thread_stopped = is_stopped (tp->ptid);
    639       else
    640 	thread_stopped = 1;
    641     }
    642 
    643   if (thread_stopped
    644       && (!data->only_floating || varobj_floating_p (var)))
    645     varobj_update_one (var, data->print_values, 0 /* implicit */);
    646 }
    647 
    648 void
    649 mi_cmd_var_update (const char *command, char **argv, int argc)
    650 {
    651   struct ui_out *uiout = current_uiout;
    652   struct cleanup *cleanup;
    653   char *name;
    654   enum print_values print_values;
    655 
    656   if (argc != 1 && argc != 2)
    657     error (_("-var-update: Usage: [PRINT_VALUES] NAME."));
    658 
    659   if (argc == 1)
    660     name = argv[0];
    661   else
    662     name = argv[1];
    663 
    664   if (argc == 2)
    665     print_values = mi_parse_print_values (argv[0]);
    666   else
    667     print_values = PRINT_NO_VALUES;
    668 
    669   if (mi_version (uiout) <= 1)
    670     cleanup = make_cleanup_ui_out_tuple_begin_end (uiout, "changelist");
    671   else
    672     cleanup = make_cleanup_ui_out_list_begin_end (uiout, "changelist");
    673 
    674   /* Check if the parameter is a "*", which means that we want to
    675      update all variables.  */
    676 
    677   if ((*name == '*' || *name == '@') && (*(name + 1) == '\0'))
    678     {
    679       struct mi_cmd_var_update data;
    680 
    681       data.only_floating = (*name == '@');
    682       data.print_values = print_values;
    683 
    684       /* varobj_update_one automatically updates all the children of
    685 	 VAROBJ.  Therefore update each VAROBJ only once by iterating
    686 	 only the root VAROBJs.  */
    687 
    688       all_root_varobjs (mi_cmd_var_update_iter, &data);
    689     }
    690   else
    691     {
    692       /* Get varobj handle, if a valid var obj name was specified.  */
    693       struct varobj *var = varobj_get_handle (name);
    694 
    695       varobj_update_one (var, print_values, 1 /* explicit */);
    696     }
    697 
    698   do_cleanups (cleanup);
    699 }
    700 
    701 /* Helper for mi_cmd_var_update().  */
    702 
    703 static void
    704 varobj_update_one (struct varobj *var, enum print_values print_values,
    705 		   int is_explicit)
    706 {
    707   struct ui_out *uiout = current_uiout;
    708   VEC (varobj_update_result) *changes;
    709   varobj_update_result *r;
    710   int i;
    711 
    712   changes = varobj_update (&var, is_explicit);
    713 
    714   for (i = 0; VEC_iterate (varobj_update_result, changes, i, r); ++i)
    715     {
    716       int from, to;
    717       struct cleanup *cleanup = make_cleanup (null_cleanup, NULL);
    718 
    719       if (mi_version (uiout) > 1)
    720 	make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
    721       uiout->field_string ("name", varobj_get_objname (r->varobj));
    722 
    723       switch (r->status)
    724 	{
    725 	case VAROBJ_IN_SCOPE:
    726 	  if (mi_print_value_p (r->varobj, print_values))
    727 	    {
    728 	      std::string val = varobj_get_value (r->varobj);
    729 
    730 	      uiout->field_string ("value", val.c_str ());
    731 	    }
    732 	  uiout->field_string ("in_scope", "true");
    733 	  break;
    734         case VAROBJ_NOT_IN_SCOPE:
    735           uiout->field_string ("in_scope", "false");
    736 	  break;
    737         case VAROBJ_INVALID:
    738           uiout->field_string ("in_scope", "invalid");
    739  	  break;
    740 	}
    741 
    742       if (r->status != VAROBJ_INVALID)
    743 	{
    744 	  if (r->type_changed)
    745 	    uiout->field_string ("type_changed", "true");
    746 	  else
    747 	    uiout->field_string ("type_changed", "false");
    748 	}
    749 
    750       if (r->type_changed)
    751 	{
    752 	  std::string type_name = varobj_get_type (r->varobj);
    753 
    754 	  uiout->field_string ("new_type", type_name.c_str ());
    755 	}
    756 
    757       if (r->type_changed || r->children_changed)
    758 	uiout->field_int ("new_num_children",
    759 			  varobj_get_num_children (r->varobj));
    760 
    761       gdb::unique_xmalloc_ptr<char> display_hint
    762 	= varobj_get_display_hint (r->varobj);
    763       if (display_hint)
    764 	uiout->field_string ("displayhint", display_hint.get ());
    765 
    766       if (varobj_is_dynamic_p (r->varobj))
    767 	uiout->field_int ("dynamic", 1);
    768 
    769       varobj_get_child_range (r->varobj, &from, &to);
    770       uiout->field_int ("has_more", varobj_has_more (r->varobj, to));
    771 
    772       if (r->newobj)
    773 	{
    774 	  int j;
    775 	  varobj_p child;
    776 	  struct cleanup *cleanup;
    777 
    778 	  cleanup = make_cleanup_ui_out_list_begin_end (uiout, "new_children");
    779 	  for (j = 0; VEC_iterate (varobj_p, r->newobj, j, child); ++j)
    780 	    {
    781 	      struct cleanup *cleanup_child;
    782 
    783 	      cleanup_child
    784 		= make_cleanup_ui_out_tuple_begin_end (uiout, NULL);
    785 	      print_varobj (child, print_values, 1 /* print_expression */);
    786 	      do_cleanups (cleanup_child);
    787 	    }
    788 
    789 	  do_cleanups (cleanup);
    790 	  VEC_free (varobj_p, r->newobj);
    791 	  r->newobj = NULL;	/* Paranoia.  */
    792 	}
    793 
    794       do_cleanups (cleanup);
    795     }
    796   VEC_free (varobj_update_result, changes);
    797 }
    798 
    799 void
    800 mi_cmd_enable_pretty_printing (const char *command, char **argv, int argc)
    801 {
    802   if (argc != 0)
    803     error (_("-enable-pretty-printing: no arguments allowed"));
    804 
    805   varobj_enable_pretty_printing ();
    806 }
    807 
    808 void
    809 mi_cmd_var_set_update_range (const char *command, char **argv, int argc)
    810 {
    811   struct varobj *var;
    812   int from, to;
    813 
    814   if (argc != 3)
    815     error (_("-var-set-update-range: Usage: VAROBJ FROM TO"));
    816 
    817   var = varobj_get_handle (argv[0]);
    818   from = atoi (argv[1]);
    819   to = atoi (argv[2]);
    820 
    821   varobj_set_child_range (var, from, to);
    822 }
    823