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[/] [openrisc/] [tags/] [gnu-src/] [gdb-6.8/] [pre-binutils-2.20.1-sync/] [gdb/] [cli/] [cli-script.c] - Diff between revs 24 and 157

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/* GDB CLI command scripting.
/* GDB CLI command scripting.
 
 
   Copyright (c) 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995,
   Copyright (c) 1986, 1987, 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995,
   1996, 1997, 1998, 1999, 2000, 2001, 2002, 2004, 2005, 2006, 2007, 2008
   1996, 1997, 1998, 1999, 2000, 2001, 2002, 2004, 2005, 2006, 2007, 2008
   Free Software Foundation, Inc.
   Free Software Foundation, Inc.
 
 
   This file is part of GDB.
   This file is part of GDB.
 
 
   This program is free software; you can redistribute it and/or modify
   This program is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   it under the terms of the GNU General Public License as published by
   the Free Software Foundation; either version 3 of the License, or
   the Free Software Foundation; either version 3 of the License, or
   (at your option) any later version.
   (at your option) any later version.
 
 
   This program is distributed in the hope that it will be useful,
   This program is distributed in the hope that it will be useful,
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   but WITHOUT ANY WARRANTY; without even the implied warranty of
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
   GNU General Public License for more details.
   GNU General Public License for more details.
 
 
   You should have received a copy of the GNU General Public License
   You should have received a copy of the GNU General Public License
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
   along with this program.  If not, see <http://www.gnu.org/licenses/>.  */
 
 
#include "defs.h"
#include "defs.h"
#include "value.h"
#include "value.h"
#include "language.h"           /* For value_true */
#include "language.h"           /* For value_true */
#include <ctype.h>
#include <ctype.h>
 
 
#include "ui-out.h"
#include "ui-out.h"
#include "gdb_string.h"
#include "gdb_string.h"
#include "exceptions.h"
#include "exceptions.h"
#include "top.h"
#include "top.h"
#include "breakpoint.h"
#include "breakpoint.h"
#include "cli/cli-cmds.h"
#include "cli/cli-cmds.h"
#include "cli/cli-decode.h"
#include "cli/cli-decode.h"
#include "cli/cli-script.h"
#include "cli/cli-script.h"
#include "gdb_assert.h"
#include "gdb_assert.h"
 
 
/* Prototypes for local functions */
/* Prototypes for local functions */
 
 
static enum command_control_type
static enum command_control_type
        recurse_read_control_structure (struct command_line *current_cmd);
        recurse_read_control_structure (struct command_line *current_cmd);
 
 
static char *insert_args (char *line);
static char *insert_args (char *line);
 
 
static struct cleanup * setup_user_args (char *p);
static struct cleanup * setup_user_args (char *p);
 
 
static void validate_comname (char *);
static void validate_comname (char *);
 
 
/* Level of control structure when reading.  */
/* Level of control structure when reading.  */
static int control_level;
static int control_level;
 
 
/* Level of control structure when executing.  */
/* Level of control structure when executing.  */
static int command_nest_depth = 1;
static int command_nest_depth = 1;
 
 
/* This is to prevent certain commands being printed twice.  */
/* This is to prevent certain commands being printed twice.  */
static int suppress_next_print_command_trace = 0;
static int suppress_next_print_command_trace = 0;
 
 
/* Structure for arguments to user defined functions.  */
/* Structure for arguments to user defined functions.  */
#define MAXUSERARGS 10
#define MAXUSERARGS 10
struct user_args
struct user_args
  {
  {
    struct user_args *next;
    struct user_args *next;
    /* It is necessary to store a malloced copy of the command line to
    /* It is necessary to store a malloced copy of the command line to
       ensure that the arguments are not overwritten before they are used.  */
       ensure that the arguments are not overwritten before they are used.  */
    char *command;
    char *command;
    struct
    struct
      {
      {
        char *arg;
        char *arg;
        int len;
        int len;
      }
      }
    a[MAXUSERARGS];
    a[MAXUSERARGS];
    int count;
    int count;
  }
  }
 *user_args;
 *user_args;
 
 


/* Allocate, initialize a new command line structure for one of the
/* Allocate, initialize a new command line structure for one of the
   control commands (if/while).  */
   control commands (if/while).  */
 
 
static struct command_line *
static struct command_line *
build_command_line (enum command_control_type type, char *args)
build_command_line (enum command_control_type type, char *args)
{
{
  struct command_line *cmd;
  struct command_line *cmd;
 
 
  if (args == NULL && (type == if_control || type == while_control))
  if (args == NULL && (type == if_control || type == while_control))
    error (_("if/while commands require arguments."));
    error (_("if/while commands require arguments."));
  gdb_assert (args != NULL);
  gdb_assert (args != NULL);
 
 
  cmd = (struct command_line *) xmalloc (sizeof (struct command_line));
  cmd = (struct command_line *) xmalloc (sizeof (struct command_line));
  cmd->next = NULL;
  cmd->next = NULL;
  cmd->control_type = type;
  cmd->control_type = type;
 
 
  cmd->body_count = 1;
  cmd->body_count = 1;
  cmd->body_list
  cmd->body_list
    = (struct command_line **) xmalloc (sizeof (struct command_line *)
    = (struct command_line **) xmalloc (sizeof (struct command_line *)
                                        * cmd->body_count);
                                        * cmd->body_count);
  memset (cmd->body_list, 0, sizeof (struct command_line *) * cmd->body_count);
  memset (cmd->body_list, 0, sizeof (struct command_line *) * cmd->body_count);
  cmd->line = savestring (args, strlen (args));
  cmd->line = savestring (args, strlen (args));
 
 
  return cmd;
  return cmd;
}
}
 
 
/* Build and return a new command structure for the control commands
/* Build and return a new command structure for the control commands
   such as "if" and "while".  */
   such as "if" and "while".  */
 
 
static struct command_line *
static struct command_line *
get_command_line (enum command_control_type type, char *arg)
get_command_line (enum command_control_type type, char *arg)
{
{
  struct command_line *cmd;
  struct command_line *cmd;
  struct cleanup *old_chain = NULL;
  struct cleanup *old_chain = NULL;
 
 
  /* Allocate and build a new command line structure.  */
  /* Allocate and build a new command line structure.  */
  cmd = build_command_line (type, arg);
  cmd = build_command_line (type, arg);
 
 
  old_chain = make_cleanup_free_command_lines (&cmd);
  old_chain = make_cleanup_free_command_lines (&cmd);
 
 
  /* Read in the body of this command.  */
  /* Read in the body of this command.  */
  if (recurse_read_control_structure (cmd) == invalid_control)
  if (recurse_read_control_structure (cmd) == invalid_control)
    {
    {
      warning (_("Error reading in canned sequence of commands."));
      warning (_("Error reading in canned sequence of commands."));
      do_cleanups (old_chain);
      do_cleanups (old_chain);
      return NULL;
      return NULL;
    }
    }
 
 
  discard_cleanups (old_chain);
  discard_cleanups (old_chain);
  return cmd;
  return cmd;
}
}
 
 
/* Recursively print a command (including full control structures).  */
/* Recursively print a command (including full control structures).  */
 
 
void
void
print_command_lines (struct ui_out *uiout, struct command_line *cmd,
print_command_lines (struct ui_out *uiout, struct command_line *cmd,
                     unsigned int depth)
                     unsigned int depth)
{
{
  struct command_line *list;
  struct command_line *list;
 
 
  list = cmd;
  list = cmd;
  while (list)
  while (list)
    {
    {
 
 
      if (depth)
      if (depth)
        ui_out_spaces (uiout, 2 * depth);
        ui_out_spaces (uiout, 2 * depth);
 
 
      /* A simple command, print it and continue.  */
      /* A simple command, print it and continue.  */
      if (list->control_type == simple_control)
      if (list->control_type == simple_control)
        {
        {
          ui_out_field_string (uiout, NULL, list->line);
          ui_out_field_string (uiout, NULL, list->line);
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* loop_continue to jump to the start of a while loop, print it
      /* loop_continue to jump to the start of a while loop, print it
         and continue. */
         and continue. */
      if (list->control_type == continue_control)
      if (list->control_type == continue_control)
        {
        {
          ui_out_field_string (uiout, NULL, "loop_continue");
          ui_out_field_string (uiout, NULL, "loop_continue");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* loop_break to break out of a while loop, print it and continue.  */
      /* loop_break to break out of a while loop, print it and continue.  */
      if (list->control_type == break_control)
      if (list->control_type == break_control)
        {
        {
          ui_out_field_string (uiout, NULL, "loop_break");
          ui_out_field_string (uiout, NULL, "loop_break");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* A while command.  Recursively print its subcommands and continue.  */
      /* A while command.  Recursively print its subcommands and continue.  */
      if (list->control_type == while_control)
      if (list->control_type == while_control)
        {
        {
          ui_out_field_fmt (uiout, NULL, "while %s", list->line);
          ui_out_field_fmt (uiout, NULL, "while %s", list->line);
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          print_command_lines (uiout, *list->body_list, depth + 1);
          print_command_lines (uiout, *list->body_list, depth + 1);
          if (depth)
          if (depth)
            ui_out_spaces (uiout, 2 * depth);
            ui_out_spaces (uiout, 2 * depth);
          ui_out_field_string (uiout, NULL, "end");
          ui_out_field_string (uiout, NULL, "end");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* An if command.  Recursively print both arms before continueing.  */
      /* An if command.  Recursively print both arms before continueing.  */
      if (list->control_type == if_control)
      if (list->control_type == if_control)
        {
        {
          ui_out_field_fmt (uiout, NULL, "if %s", list->line);
          ui_out_field_fmt (uiout, NULL, "if %s", list->line);
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          /* The true arm. */
          /* The true arm. */
          print_command_lines (uiout, list->body_list[0], depth + 1);
          print_command_lines (uiout, list->body_list[0], depth + 1);
 
 
          /* Show the false arm if it exists.  */
          /* Show the false arm if it exists.  */
          if (list->body_count == 2)
          if (list->body_count == 2)
            {
            {
              if (depth)
              if (depth)
                ui_out_spaces (uiout, 2 * depth);
                ui_out_spaces (uiout, 2 * depth);
              ui_out_field_string (uiout, NULL, "else");
              ui_out_field_string (uiout, NULL, "else");
              ui_out_text (uiout, "\n");
              ui_out_text (uiout, "\n");
              print_command_lines (uiout, list->body_list[1], depth + 1);
              print_command_lines (uiout, list->body_list[1], depth + 1);
            }
            }
 
 
          if (depth)
          if (depth)
            ui_out_spaces (uiout, 2 * depth);
            ui_out_spaces (uiout, 2 * depth);
          ui_out_field_string (uiout, NULL, "end");
          ui_out_field_string (uiout, NULL, "end");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* A commands command.  Print the breakpoint commands and continue.  */
      /* A commands command.  Print the breakpoint commands and continue.  */
      if (list->control_type == commands_control)
      if (list->control_type == commands_control)
        {
        {
          if (*(list->line))
          if (*(list->line))
            ui_out_field_fmt (uiout, NULL, "commands %s", list->line);
            ui_out_field_fmt (uiout, NULL, "commands %s", list->line);
          else
          else
            ui_out_field_string (uiout, NULL, "commands");
            ui_out_field_string (uiout, NULL, "commands");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          print_command_lines (uiout, *list->body_list, depth + 1);
          print_command_lines (uiout, *list->body_list, depth + 1);
          if (depth)
          if (depth)
            ui_out_spaces (uiout, 2 * depth);
            ui_out_spaces (uiout, 2 * depth);
          ui_out_field_string (uiout, NULL, "end");
          ui_out_field_string (uiout, NULL, "end");
          ui_out_text (uiout, "\n");
          ui_out_text (uiout, "\n");
          list = list->next;
          list = list->next;
          continue;
          continue;
        }
        }
 
 
      /* ignore illegal command type and try next */
      /* ignore illegal command type and try next */
      list = list->next;
      list = list->next;
    }                           /* while (list) */
    }                           /* while (list) */
}
}
 
 
/* Handle pre-post hooks.  */
/* Handle pre-post hooks.  */
 
 
static void
static void
clear_hook_in_cleanup (void *data)
clear_hook_in_cleanup (void *data)
{
{
  struct cmd_list_element *c = data;
  struct cmd_list_element *c = data;
  c->hook_in = 0; /* Allow hook to work again once it is complete */
  c->hook_in = 0; /* Allow hook to work again once it is complete */
}
}
 
 
void
void
execute_cmd_pre_hook (struct cmd_list_element *c)
execute_cmd_pre_hook (struct cmd_list_element *c)
{
{
  if ((c->hook_pre) && (!c->hook_in))
  if ((c->hook_pre) && (!c->hook_in))
    {
    {
      struct cleanup *cleanups = make_cleanup (clear_hook_in_cleanup, c);
      struct cleanup *cleanups = make_cleanup (clear_hook_in_cleanup, c);
      c->hook_in = 1; /* Prevent recursive hooking */
      c->hook_in = 1; /* Prevent recursive hooking */
      execute_user_command (c->hook_pre, (char *) 0);
      execute_user_command (c->hook_pre, (char *) 0);
      do_cleanups (cleanups);
      do_cleanups (cleanups);
    }
    }
}
}
 
 
void
void
execute_cmd_post_hook (struct cmd_list_element *c)
execute_cmd_post_hook (struct cmd_list_element *c)
{
{
  if ((c->hook_post) && (!c->hook_in))
  if ((c->hook_post) && (!c->hook_in))
    {
    {
      struct cleanup *cleanups = make_cleanup (clear_hook_in_cleanup, c);
      struct cleanup *cleanups = make_cleanup (clear_hook_in_cleanup, c);
      c->hook_in = 1; /* Prevent recursive hooking */
      c->hook_in = 1; /* Prevent recursive hooking */
      execute_user_command (c->hook_post, (char *) 0);
      execute_user_command (c->hook_post, (char *) 0);
      do_cleanups (cleanups);
      do_cleanups (cleanups);
    }
    }
}
}
 
 
/* Execute the command in CMD.  */
/* Execute the command in CMD.  */
static void
static void
do_restore_user_call_depth (void * call_depth)
do_restore_user_call_depth (void * call_depth)
{
{
  int * depth = call_depth;
  int * depth = call_depth;
  (*depth)--;
  (*depth)--;
  if ((*depth) == 0)
  if ((*depth) == 0)
    in_user_command = 0;
    in_user_command = 0;
}
}
 
 
 
 
void
void
execute_user_command (struct cmd_list_element *c, char *args)
execute_user_command (struct cmd_list_element *c, char *args)
{
{
  struct command_line *cmdlines;
  struct command_line *cmdlines;
  struct cleanup *old_chain;
  struct cleanup *old_chain;
  enum command_control_type ret;
  enum command_control_type ret;
  static int user_call_depth = 0;
  static int user_call_depth = 0;
  extern int max_user_call_depth;
  extern int max_user_call_depth;
 
 
  old_chain = setup_user_args (args);
  old_chain = setup_user_args (args);
 
 
  cmdlines = c->user_commands;
  cmdlines = c->user_commands;
  if (cmdlines == 0)
  if (cmdlines == 0)
    /* Null command */
    /* Null command */
    return;
    return;
 
 
  if (++user_call_depth > max_user_call_depth)
  if (++user_call_depth > max_user_call_depth)
    error (_("Max user call depth exceeded -- command aborted."));
    error (_("Max user call depth exceeded -- command aborted."));
 
 
  make_cleanup (do_restore_user_call_depth, &user_call_depth);
  make_cleanup (do_restore_user_call_depth, &user_call_depth);
 
 
  /* Set the instream to 0, indicating execution of a
  /* Set the instream to 0, indicating execution of a
     user-defined function.  */
     user-defined function.  */
  make_cleanup (do_restore_instream_cleanup, instream);
  make_cleanup (do_restore_instream_cleanup, instream);
  instream = (FILE *) 0;
  instream = (FILE *) 0;
 
 
  /* Also set the global in_user_command, so that NULL instream is
  /* Also set the global in_user_command, so that NULL instream is
     not confused with Insight.  */
     not confused with Insight.  */
  in_user_command = 1;
  in_user_command = 1;
 
 
  command_nest_depth++;
  command_nest_depth++;
  while (cmdlines)
  while (cmdlines)
    {
    {
      ret = execute_control_command (cmdlines);
      ret = execute_control_command (cmdlines);
      if (ret != simple_control && ret != break_control)
      if (ret != simple_control && ret != break_control)
        {
        {
          warning (_("Error executing canned sequence of commands."));
          warning (_("Error executing canned sequence of commands."));
          break;
          break;
        }
        }
      cmdlines = cmdlines->next;
      cmdlines = cmdlines->next;
    }
    }
  command_nest_depth--;
  command_nest_depth--;
  do_cleanups (old_chain);
  do_cleanups (old_chain);
}
}
 
 
/* This function is called every time GDB prints a prompt.
/* This function is called every time GDB prints a prompt.
   It ensures that errors and the like to not confuse the command tracing.  */
   It ensures that errors and the like to not confuse the command tracing.  */
 
 
void
void
reset_command_nest_depth (void)
reset_command_nest_depth (void)
{
{
  command_nest_depth = 1;
  command_nest_depth = 1;
 
 
  /* Just in case.  */
  /* Just in case.  */
  suppress_next_print_command_trace = 0;
  suppress_next_print_command_trace = 0;
}
}
 
 
/* Print the command, prefixed with '+' to represent the call depth.
/* Print the command, prefixed with '+' to represent the call depth.
   This is slightly complicated because this function may be called
   This is slightly complicated because this function may be called
   from execute_command and execute_control_command.  Unfortunately
   from execute_command and execute_control_command.  Unfortunately
   execute_command also prints the top level control commands.
   execute_command also prints the top level control commands.
   In these cases execute_command will call execute_control_command
   In these cases execute_command will call execute_control_command
   via while_command or if_command.  Inner levels of 'if' and 'while'
   via while_command or if_command.  Inner levels of 'if' and 'while'
   are dealt with directly.  Therefore we can use these functions
   are dealt with directly.  Therefore we can use these functions
   to determine whether the command has been printed already or not.  */
   to determine whether the command has been printed already or not.  */
void
void
print_command_trace (const char *cmd)
print_command_trace (const char *cmd)
{
{
  int i;
  int i;
 
 
  if (suppress_next_print_command_trace)
  if (suppress_next_print_command_trace)
    {
    {
      suppress_next_print_command_trace = 0;
      suppress_next_print_command_trace = 0;
      return;
      return;
    }
    }
 
 
  if (!source_verbose && !trace_commands)
  if (!source_verbose && !trace_commands)
    return;
    return;
 
 
  for (i=0; i < command_nest_depth; i++)
  for (i=0; i < command_nest_depth; i++)
    printf_filtered ("+");
    printf_filtered ("+");
 
 
  printf_filtered ("%s\n", cmd);
  printf_filtered ("%s\n", cmd);
}
}
 
 
enum command_control_type
enum command_control_type
execute_control_command (struct command_line *cmd)
execute_control_command (struct command_line *cmd)
{
{
  struct expression *expr;
  struct expression *expr;
  struct command_line *current;
  struct command_line *current;
  struct cleanup *old_chain = make_cleanup (null_cleanup, 0);
  struct cleanup *old_chain = make_cleanup (null_cleanup, 0);
  struct value *val;
  struct value *val;
  struct value *val_mark;
  struct value *val_mark;
  int loop;
  int loop;
  enum command_control_type ret;
  enum command_control_type ret;
  char *new_line;
  char *new_line;
 
 
  /* Start by assuming failure, if a problem is detected, the code
  /* Start by assuming failure, if a problem is detected, the code
     below will simply "break" out of the switch.  */
     below will simply "break" out of the switch.  */
  ret = invalid_control;
  ret = invalid_control;
 
 
  switch (cmd->control_type)
  switch (cmd->control_type)
    {
    {
    case simple_control:
    case simple_control:
      /* A simple command, execute it and return.  */
      /* A simple command, execute it and return.  */
      new_line = insert_args (cmd->line);
      new_line = insert_args (cmd->line);
      if (!new_line)
      if (!new_line)
        break;
        break;
      make_cleanup (free_current_contents, &new_line);
      make_cleanup (free_current_contents, &new_line);
      execute_command (new_line, 0);
      execute_command (new_line, 0);
      ret = cmd->control_type;
      ret = cmd->control_type;
      break;
      break;
 
 
    case continue_control:
    case continue_control:
      print_command_trace ("loop_continue");
      print_command_trace ("loop_continue");
 
 
      /* Return for "continue", and "break" so we can either
      /* Return for "continue", and "break" so we can either
         continue the loop at the top, or break out.  */
         continue the loop at the top, or break out.  */
      ret = cmd->control_type;
      ret = cmd->control_type;
      break;
      break;
 
 
    case break_control:
    case break_control:
      print_command_trace ("loop_break");
      print_command_trace ("loop_break");
 
 
      /* Return for "continue", and "break" so we can either
      /* Return for "continue", and "break" so we can either
         continue the loop at the top, or break out.  */
         continue the loop at the top, or break out.  */
      ret = cmd->control_type;
      ret = cmd->control_type;
      break;
      break;
 
 
    case while_control:
    case while_control:
      {
      {
        char *buffer = alloca (strlen (cmd->line) + 7);
        char *buffer = alloca (strlen (cmd->line) + 7);
        sprintf (buffer, "while %s", cmd->line);
        sprintf (buffer, "while %s", cmd->line);
        print_command_trace (buffer);
        print_command_trace (buffer);
 
 
        /* Parse the loop control expression for the while statement.  */
        /* Parse the loop control expression for the while statement.  */
        new_line = insert_args (cmd->line);
        new_line = insert_args (cmd->line);
        if (!new_line)
        if (!new_line)
          break;
          break;
        make_cleanup (free_current_contents, &new_line);
        make_cleanup (free_current_contents, &new_line);
        expr = parse_expression (new_line);
        expr = parse_expression (new_line);
        make_cleanup (free_current_contents, &expr);
        make_cleanup (free_current_contents, &expr);
 
 
        ret = simple_control;
        ret = simple_control;
        loop = 1;
        loop = 1;
 
 
        /* Keep iterating so long as the expression is true.  */
        /* Keep iterating so long as the expression is true.  */
        while (loop == 1)
        while (loop == 1)
          {
          {
            int cond_result;
            int cond_result;
 
 
            QUIT;
            QUIT;
 
 
            /* Evaluate the expression.  */
            /* Evaluate the expression.  */
            val_mark = value_mark ();
            val_mark = value_mark ();
            val = evaluate_expression (expr);
            val = evaluate_expression (expr);
            cond_result = value_true (val);
            cond_result = value_true (val);
            value_free_to_mark (val_mark);
            value_free_to_mark (val_mark);
 
 
            /* If the value is false, then break out of the loop.  */
            /* If the value is false, then break out of the loop.  */
            if (!cond_result)
            if (!cond_result)
              break;
              break;
 
 
            /* Execute the body of the while statement.  */
            /* Execute the body of the while statement.  */
            current = *cmd->body_list;
            current = *cmd->body_list;
            while (current)
            while (current)
              {
              {
                command_nest_depth++;
                command_nest_depth++;
                ret = execute_control_command (current);
                ret = execute_control_command (current);
                command_nest_depth--;
                command_nest_depth--;
 
 
                /* If we got an error, or a "break" command, then stop
                /* If we got an error, or a "break" command, then stop
                   looping.  */
                   looping.  */
                if (ret == invalid_control || ret == break_control)
                if (ret == invalid_control || ret == break_control)
                  {
                  {
                    loop = 0;
                    loop = 0;
                    break;
                    break;
                  }
                  }
 
 
                /* If we got a "continue" command, then restart the loop
                /* If we got a "continue" command, then restart the loop
                   at this point.  */
                   at this point.  */
                if (ret == continue_control)
                if (ret == continue_control)
                  break;
                  break;
 
 
                /* Get the next statement.  */
                /* Get the next statement.  */
                current = current->next;
                current = current->next;
              }
              }
          }
          }
 
 
        /* Reset RET so that we don't recurse the break all the way down.  */
        /* Reset RET so that we don't recurse the break all the way down.  */
        if (ret == break_control)
        if (ret == break_control)
          ret = simple_control;
          ret = simple_control;
 
 
        break;
        break;
      }
      }
 
 
    case if_control:
    case if_control:
      {
      {
        char *buffer = alloca (strlen (cmd->line) + 4);
        char *buffer = alloca (strlen (cmd->line) + 4);
        sprintf (buffer, "if %s", cmd->line);
        sprintf (buffer, "if %s", cmd->line);
        print_command_trace (buffer);
        print_command_trace (buffer);
 
 
        new_line = insert_args (cmd->line);
        new_line = insert_args (cmd->line);
        if (!new_line)
        if (!new_line)
          break;
          break;
        make_cleanup (free_current_contents, &new_line);
        make_cleanup (free_current_contents, &new_line);
        /* Parse the conditional for the if statement.  */
        /* Parse the conditional for the if statement.  */
        expr = parse_expression (new_line);
        expr = parse_expression (new_line);
        make_cleanup (free_current_contents, &expr);
        make_cleanup (free_current_contents, &expr);
 
 
        current = NULL;
        current = NULL;
        ret = simple_control;
        ret = simple_control;
 
 
        /* Evaluate the conditional.  */
        /* Evaluate the conditional.  */
        val_mark = value_mark ();
        val_mark = value_mark ();
        val = evaluate_expression (expr);
        val = evaluate_expression (expr);
 
 
        /* Choose which arm to take commands from based on the value of the
        /* Choose which arm to take commands from based on the value of the
           conditional expression.  */
           conditional expression.  */
        if (value_true (val))
        if (value_true (val))
          current = *cmd->body_list;
          current = *cmd->body_list;
        else if (cmd->body_count == 2)
        else if (cmd->body_count == 2)
          current = *(cmd->body_list + 1);
          current = *(cmd->body_list + 1);
        value_free_to_mark (val_mark);
        value_free_to_mark (val_mark);
 
 
        /* Execute commands in the given arm.  */
        /* Execute commands in the given arm.  */
        while (current)
        while (current)
          {
          {
            command_nest_depth++;
            command_nest_depth++;
            ret = execute_control_command (current);
            ret = execute_control_command (current);
            command_nest_depth--;
            command_nest_depth--;
 
 
            /* If we got an error, get out.  */
            /* If we got an error, get out.  */
            if (ret != simple_control)
            if (ret != simple_control)
              break;
              break;
 
 
            /* Get the next statement in the body.  */
            /* Get the next statement in the body.  */
            current = current->next;
            current = current->next;
          }
          }
 
 
        break;
        break;
      }
      }
    case commands_control:
    case commands_control:
      {
      {
        /* Breakpoint commands list, record the commands in the breakpoint's
        /* Breakpoint commands list, record the commands in the breakpoint's
           command list and return.  */
           command list and return.  */
        new_line = insert_args (cmd->line);
        new_line = insert_args (cmd->line);
        if (!new_line)
        if (!new_line)
          break;
          break;
        make_cleanup (free_current_contents, &new_line);
        make_cleanup (free_current_contents, &new_line);
        ret = commands_from_control_command (new_line, cmd);
        ret = commands_from_control_command (new_line, cmd);
        break;
        break;
      }
      }
 
 
    default:
    default:
      warning (_("Invalid control type in canned commands structure."));
      warning (_("Invalid control type in canned commands structure."));
      break;
      break;
    }
    }
 
 
  do_cleanups (old_chain);
  do_cleanups (old_chain);
 
 
  return ret;
  return ret;
}
}
 
 
/* "while" command support.  Executes a body of statements while the
/* "while" command support.  Executes a body of statements while the
   loop condition is nonzero.  */
   loop condition is nonzero.  */
 
 
void
void
while_command (char *arg, int from_tty)
while_command (char *arg, int from_tty)
{
{
  struct command_line *command = NULL;
  struct command_line *command = NULL;
 
 
  control_level = 1;
  control_level = 1;
  command = get_command_line (while_control, arg);
  command = get_command_line (while_control, arg);
 
 
  if (command == NULL)
  if (command == NULL)
    return;
    return;
 
 
  suppress_next_print_command_trace = 1;
  suppress_next_print_command_trace = 1;
  execute_control_command (command);
  execute_control_command (command);
  free_command_lines (&command);
  free_command_lines (&command);
}
}
 
 
/* "if" command support.  Execute either the true or false arm depending
/* "if" command support.  Execute either the true or false arm depending
   on the value of the if conditional.  */
   on the value of the if conditional.  */
 
 
void
void
if_command (char *arg, int from_tty)
if_command (char *arg, int from_tty)
{
{
  struct command_line *command = NULL;
  struct command_line *command = NULL;
 
 
  control_level = 1;
  control_level = 1;
  command = get_command_line (if_control, arg);
  command = get_command_line (if_control, arg);
 
 
  if (command == NULL)
  if (command == NULL)
    return;
    return;
 
 
  suppress_next_print_command_trace = 1;
  suppress_next_print_command_trace = 1;
  execute_control_command (command);
  execute_control_command (command);
  free_command_lines (&command);
  free_command_lines (&command);
}
}
 
 
/* Cleanup */
/* Cleanup */
static void
static void
arg_cleanup (void *ignore)
arg_cleanup (void *ignore)
{
{
  struct user_args *oargs = user_args;
  struct user_args *oargs = user_args;
  if (!user_args)
  if (!user_args)
    internal_error (__FILE__, __LINE__,
    internal_error (__FILE__, __LINE__,
                    _("arg_cleanup called with no user args.\n"));
                    _("arg_cleanup called with no user args.\n"));
 
 
  user_args = user_args->next;
  user_args = user_args->next;
  xfree (oargs->command);
  xfree (oargs->command);
  xfree (oargs);
  xfree (oargs);
}
}
 
 
/* Bind the incomming arguments for a user defined command to
/* Bind the incomming arguments for a user defined command to
   $arg0, $arg1 ... $argMAXUSERARGS.  */
   $arg0, $arg1 ... $argMAXUSERARGS.  */
 
 
static struct cleanup *
static struct cleanup *
setup_user_args (char *p)
setup_user_args (char *p)
{
{
  struct user_args *args;
  struct user_args *args;
  struct cleanup *old_chain;
  struct cleanup *old_chain;
  unsigned int arg_count = 0;
  unsigned int arg_count = 0;
 
 
  args = (struct user_args *) xmalloc (sizeof (struct user_args));
  args = (struct user_args *) xmalloc (sizeof (struct user_args));
  memset (args, 0, sizeof (struct user_args));
  memset (args, 0, sizeof (struct user_args));
 
 
  args->next = user_args;
  args->next = user_args;
  user_args = args;
  user_args = args;
 
 
  old_chain = make_cleanup (arg_cleanup, 0/*ignored*/);
  old_chain = make_cleanup (arg_cleanup, 0/*ignored*/);
 
 
  if (p == NULL)
  if (p == NULL)
    return old_chain;
    return old_chain;
 
 
  user_args->command = p = xstrdup (p);
  user_args->command = p = xstrdup (p);
 
 
  while (*p)
  while (*p)
    {
    {
      char *start_arg;
      char *start_arg;
      int squote = 0;
      int squote = 0;
      int dquote = 0;
      int dquote = 0;
      int bsquote = 0;
      int bsquote = 0;
 
 
      if (arg_count >= MAXUSERARGS)
      if (arg_count >= MAXUSERARGS)
        {
        {
          error (_("user defined function may only have %d arguments."),
          error (_("user defined function may only have %d arguments."),
                 MAXUSERARGS);
                 MAXUSERARGS);
          return old_chain;
          return old_chain;
        }
        }
 
 
      /* Strip whitespace.  */
      /* Strip whitespace.  */
      while (*p == ' ' || *p == '\t')
      while (*p == ' ' || *p == '\t')
        p++;
        p++;
 
 
      /* P now points to an argument.  */
      /* P now points to an argument.  */
      start_arg = p;
      start_arg = p;
      user_args->a[arg_count].arg = p;
      user_args->a[arg_count].arg = p;
 
 
      /* Get to the end of this argument.  */
      /* Get to the end of this argument.  */
      while (*p)
      while (*p)
        {
        {
          if (((*p == ' ' || *p == '\t')) && !squote && !dquote && !bsquote)
          if (((*p == ' ' || *p == '\t')) && !squote && !dquote && !bsquote)
            break;
            break;
          else
          else
            {
            {
              if (bsquote)
              if (bsquote)
                bsquote = 0;
                bsquote = 0;
              else if (*p == '\\')
              else if (*p == '\\')
                bsquote = 1;
                bsquote = 1;
              else if (squote)
              else if (squote)
                {
                {
                  if (*p == '\'')
                  if (*p == '\'')
                    squote = 0;
                    squote = 0;
                }
                }
              else if (dquote)
              else if (dquote)
                {
                {
                  if (*p == '"')
                  if (*p == '"')
                    dquote = 0;
                    dquote = 0;
                }
                }
              else
              else
                {
                {
                  if (*p == '\'')
                  if (*p == '\'')
                    squote = 1;
                    squote = 1;
                  else if (*p == '"')
                  else if (*p == '"')
                    dquote = 1;
                    dquote = 1;
                }
                }
              p++;
              p++;
            }
            }
        }
        }
 
 
      user_args->a[arg_count].len = p - start_arg;
      user_args->a[arg_count].len = p - start_arg;
      arg_count++;
      arg_count++;
      user_args->count++;
      user_args->count++;
    }
    }
  return old_chain;
  return old_chain;
}
}
 
 
/* Given character string P, return a point to the first argument ($arg),
/* Given character string P, return a point to the first argument ($arg),
   or NULL if P contains no arguments.  */
   or NULL if P contains no arguments.  */
 
 
static char *
static char *
locate_arg (char *p)
locate_arg (char *p)
{
{
  while ((p = strchr (p, '$')))
  while ((p = strchr (p, '$')))
    {
    {
      if (strncmp (p, "$arg", 4) == 0
      if (strncmp (p, "$arg", 4) == 0
          && (isdigit (p[4]) || p[4] == 'c'))
          && (isdigit (p[4]) || p[4] == 'c'))
        return p;
        return p;
      p++;
      p++;
    }
    }
  return NULL;
  return NULL;
}
}
 
 
/* Insert the user defined arguments stored in user_arg into the $arg
/* Insert the user defined arguments stored in user_arg into the $arg
   arguments found in line, with the updated copy being placed into nline.  */
   arguments found in line, with the updated copy being placed into nline.  */
 
 
static char *
static char *
insert_args (char *line)
insert_args (char *line)
{
{
  char *p, *save_line, *new_line;
  char *p, *save_line, *new_line;
  unsigned len, i;
  unsigned len, i;
 
 
  /* If we are not in a user-defined function, treat $argc, $arg0, et
  /* If we are not in a user-defined function, treat $argc, $arg0, et
     cetera as normal convenience variables.  */
     cetera as normal convenience variables.  */
  if (user_args == NULL)
  if (user_args == NULL)
    return xstrdup (line);
    return xstrdup (line);
 
 
  /* First we need to know how much memory to allocate for the new line.  */
  /* First we need to know how much memory to allocate for the new line.  */
  save_line = line;
  save_line = line;
  len = 0;
  len = 0;
  while ((p = locate_arg (line)))
  while ((p = locate_arg (line)))
    {
    {
      len += p - line;
      len += p - line;
      i = p[4] - '0';
      i = p[4] - '0';
 
 
      if (p[4] == 'c')
      if (p[4] == 'c')
        {
        {
          /* $argc.  Number will be <=10.  */
          /* $argc.  Number will be <=10.  */
          len += user_args->count == 10 ? 2 : 1;
          len += user_args->count == 10 ? 2 : 1;
        }
        }
      else if (i >= user_args->count)
      else if (i >= user_args->count)
        {
        {
          error (_("Missing argument %d in user function."), i);
          error (_("Missing argument %d in user function."), i);
          return NULL;
          return NULL;
        }
        }
      else
      else
        {
        {
          len += user_args->a[i].len;
          len += user_args->a[i].len;
        }
        }
      line = p + 5;
      line = p + 5;
    }
    }
 
 
  /* Don't forget the tail.  */
  /* Don't forget the tail.  */
  len += strlen (line);
  len += strlen (line);
 
 
  /* Allocate space for the new line and fill it in.  */
  /* Allocate space for the new line and fill it in.  */
  new_line = (char *) xmalloc (len + 1);
  new_line = (char *) xmalloc (len + 1);
  if (new_line == NULL)
  if (new_line == NULL)
    return NULL;
    return NULL;
 
 
  /* Restore pointer to beginning of old line.  */
  /* Restore pointer to beginning of old line.  */
  line = save_line;
  line = save_line;
 
 
  /* Save pointer to beginning of new line.  */
  /* Save pointer to beginning of new line.  */
  save_line = new_line;
  save_line = new_line;
 
 
  while ((p = locate_arg (line)))
  while ((p = locate_arg (line)))
    {
    {
      int i, len;
      int i, len;
 
 
      memcpy (new_line, line, p - line);
      memcpy (new_line, line, p - line);
      new_line += p - line;
      new_line += p - line;
 
 
      if (p[4] == 'c')
      if (p[4] == 'c')
        {
        {
          gdb_assert (user_args->count >= 0 && user_args->count <= 10);
          gdb_assert (user_args->count >= 0 && user_args->count <= 10);
          if (user_args->count == 10)
          if (user_args->count == 10)
            {
            {
              *(new_line++) = '1';
              *(new_line++) = '1';
              *(new_line++) = '0';
              *(new_line++) = '0';
            }
            }
          else
          else
            *(new_line++) = user_args->count + '0';
            *(new_line++) = user_args->count + '0';
        }
        }
      else
      else
        {
        {
          i = p[4] - '0';
          i = p[4] - '0';
          len = user_args->a[i].len;
          len = user_args->a[i].len;
          if (len)
          if (len)
          {
          {
            memcpy (new_line, user_args->a[i].arg, len);
            memcpy (new_line, user_args->a[i].arg, len);
            new_line += len;
            new_line += len;
          }
          }
        }
        }
      line = p + 5;
      line = p + 5;
    }
    }
  /* Don't forget the tail.  */
  /* Don't forget the tail.  */
  strcpy (new_line, line);
  strcpy (new_line, line);
 
 
  /* Return a pointer to the beginning of the new line.  */
  /* Return a pointer to the beginning of the new line.  */
  return save_line;
  return save_line;
}
}
 
 


/* Expand the body_list of COMMAND so that it can hold NEW_LENGTH
/* Expand the body_list of COMMAND so that it can hold NEW_LENGTH
   code bodies.  This is typically used when we encounter an "else"
   code bodies.  This is typically used when we encounter an "else"
   clause for an "if" command.  */
   clause for an "if" command.  */
 
 
static void
static void
realloc_body_list (struct command_line *command, int new_length)
realloc_body_list (struct command_line *command, int new_length)
{
{
  int n;
  int n;
  struct command_line **body_list;
  struct command_line **body_list;
 
 
  n = command->body_count;
  n = command->body_count;
 
 
  /* Nothing to do?  */
  /* Nothing to do?  */
  if (new_length <= n)
  if (new_length <= n)
    return;
    return;
 
 
  body_list = (struct command_line **)
  body_list = (struct command_line **)
    xmalloc (sizeof (struct command_line *) * new_length);
    xmalloc (sizeof (struct command_line *) * new_length);
 
 
  memcpy (body_list, command->body_list, sizeof (struct command_line *) * n);
  memcpy (body_list, command->body_list, sizeof (struct command_line *) * n);
  memset (body_list + n, 0, sizeof (struct command_line *) * (new_length - n));
  memset (body_list + n, 0, sizeof (struct command_line *) * (new_length - n));
 
 
  xfree (command->body_list);
  xfree (command->body_list);
  command->body_list = body_list;
  command->body_list = body_list;
  command->body_count = new_length;
  command->body_count = new_length;
}
}
 
 
/* Read one line from the input stream.  If the command is an "else" or
/* Read one line from the input stream.  If the command is an "else" or
   "end", return such an indication to the caller.  */
   "end", return such an indication to the caller.  */
 
 
static enum misc_command_type
static enum misc_command_type
read_next_line (struct command_line **command)
read_next_line (struct command_line **command)
{
{
  char *p, *p1, *prompt_ptr, control_prompt[256];
  char *p, *p1, *prompt_ptr, control_prompt[256];
  int i = 0;
  int i = 0;
 
 
  if (control_level >= 254)
  if (control_level >= 254)
    error (_("Control nesting too deep!"));
    error (_("Control nesting too deep!"));
 
 
  /* Set a prompt based on the nesting of the control commands.  */
  /* Set a prompt based on the nesting of the control commands.  */
  if (instream == stdin || (instream == 0 && deprecated_readline_hook != NULL))
  if (instream == stdin || (instream == 0 && deprecated_readline_hook != NULL))
    {
    {
      for (i = 0; i < control_level; i++)
      for (i = 0; i < control_level; i++)
        control_prompt[i] = ' ';
        control_prompt[i] = ' ';
      control_prompt[i] = '>';
      control_prompt[i] = '>';
      control_prompt[i + 1] = '\0';
      control_prompt[i + 1] = '\0';
      prompt_ptr = (char *) &control_prompt[0];
      prompt_ptr = (char *) &control_prompt[0];
    }
    }
  else
  else
    prompt_ptr = NULL;
    prompt_ptr = NULL;
 
 
  p = command_line_input (prompt_ptr, instream == stdin, "commands");
  p = command_line_input (prompt_ptr, instream == stdin, "commands");
 
 
  /* Not sure what to do here.  */
  /* Not sure what to do here.  */
  if (p == NULL)
  if (p == NULL)
    return end_command;
    return end_command;
 
 
  /* Strip leading and trailing whitespace.  */
  /* Strip leading and trailing whitespace.  */
  while (*p == ' ' || *p == '\t')
  while (*p == ' ' || *p == '\t')
    p++;
    p++;
 
 
  p1 = p + strlen (p);
  p1 = p + strlen (p);
  while (p1 != p && (p1[-1] == ' ' || p1[-1] == '\t'))
  while (p1 != p && (p1[-1] == ' ' || p1[-1] == '\t'))
    p1--;
    p1--;
 
 
  /* Blanks and comments don't really do anything, but we need to
  /* Blanks and comments don't really do anything, but we need to
     distinguish them from else, end and other commands which can be
     distinguish them from else, end and other commands which can be
     executed.  */
     executed.  */
  if (p1 == p || p[0] == '#')
  if (p1 == p || p[0] == '#')
    return nop_command;
    return nop_command;
 
 
  /* Is this the end of a simple, while, or if control structure?  */
  /* Is this the end of a simple, while, or if control structure?  */
  if (p1 - p == 3 && !strncmp (p, "end", 3))
  if (p1 - p == 3 && !strncmp (p, "end", 3))
    return end_command;
    return end_command;
 
 
  /* Is the else clause of an if control structure?  */
  /* Is the else clause of an if control structure?  */
  if (p1 - p == 4 && !strncmp (p, "else", 4))
  if (p1 - p == 4 && !strncmp (p, "else", 4))
    return else_command;
    return else_command;
 
 
  /* Check for while, if, break, continue, etc and build a new command
  /* Check for while, if, break, continue, etc and build a new command
     line structure for them.  */
     line structure for them.  */
  if (p1 - p > 5 && !strncmp (p, "while", 5))
  if (p1 - p > 5 && !strncmp (p, "while", 5))
    {
    {
      char *first_arg;
      char *first_arg;
      first_arg = p + 5;
      first_arg = p + 5;
      while (first_arg < p1 && isspace (*first_arg))
      while (first_arg < p1 && isspace (*first_arg))
        first_arg++;
        first_arg++;
      *command = build_command_line (while_control, first_arg);
      *command = build_command_line (while_control, first_arg);
    }
    }
  else if (p1 - p > 2 && !strncmp (p, "if", 2))
  else if (p1 - p > 2 && !strncmp (p, "if", 2))
    {
    {
      char *first_arg;
      char *first_arg;
      first_arg = p + 2;
      first_arg = p + 2;
      while (first_arg < p1 && isspace (*first_arg))
      while (first_arg < p1 && isspace (*first_arg))
        first_arg++;
        first_arg++;
      *command = build_command_line (if_control, first_arg);
      *command = build_command_line (if_control, first_arg);
    }
    }
  else if (p1 - p >= 8 && !strncmp (p, "commands", 8))
  else if (p1 - p >= 8 && !strncmp (p, "commands", 8))
    {
    {
      char *first_arg;
      char *first_arg;
      first_arg = p + 8;
      first_arg = p + 8;
      while (first_arg < p1 && isspace (*first_arg))
      while (first_arg < p1 && isspace (*first_arg))
        first_arg++;
        first_arg++;
      *command = build_command_line (commands_control, first_arg);
      *command = build_command_line (commands_control, first_arg);
    }
    }
  else if (p1 - p == 10 && !strncmp (p, "loop_break", 10))
  else if (p1 - p == 10 && !strncmp (p, "loop_break", 10))
    {
    {
      *command = (struct command_line *)
      *command = (struct command_line *)
        xmalloc (sizeof (struct command_line));
        xmalloc (sizeof (struct command_line));
      (*command)->next = NULL;
      (*command)->next = NULL;
      (*command)->line = NULL;
      (*command)->line = NULL;
      (*command)->control_type = break_control;
      (*command)->control_type = break_control;
      (*command)->body_count = 0;
      (*command)->body_count = 0;
      (*command)->body_list = NULL;
      (*command)->body_list = NULL;
    }
    }
  else if (p1 - p == 13 && !strncmp (p, "loop_continue", 13))
  else if (p1 - p == 13 && !strncmp (p, "loop_continue", 13))
    {
    {
      *command = (struct command_line *)
      *command = (struct command_line *)
        xmalloc (sizeof (struct command_line));
        xmalloc (sizeof (struct command_line));
      (*command)->next = NULL;
      (*command)->next = NULL;
      (*command)->line = NULL;
      (*command)->line = NULL;
      (*command)->control_type = continue_control;
      (*command)->control_type = continue_control;
      (*command)->body_count = 0;
      (*command)->body_count = 0;
      (*command)->body_list = NULL;
      (*command)->body_list = NULL;
    }
    }
  else
  else
    {
    {
      /* A normal command.  */
      /* A normal command.  */
      *command = (struct command_line *)
      *command = (struct command_line *)
        xmalloc (sizeof (struct command_line));
        xmalloc (sizeof (struct command_line));
      (*command)->next = NULL;
      (*command)->next = NULL;
      (*command)->line = savestring (p, p1 - p);
      (*command)->line = savestring (p, p1 - p);
      (*command)->control_type = simple_control;
      (*command)->control_type = simple_control;
      (*command)->body_count = 0;
      (*command)->body_count = 0;
      (*command)->body_list = NULL;
      (*command)->body_list = NULL;
    }
    }
 
 
  /* Nothing special.  */
  /* Nothing special.  */
  return ok_command;
  return ok_command;
}
}
 
 
/* Recursively read in the control structures and create a command_line
/* Recursively read in the control structures and create a command_line
   structure from them.
   structure from them.
 
 
   The parent_control parameter is the control structure in which the
   The parent_control parameter is the control structure in which the
   following commands are nested.  */
   following commands are nested.  */
 
 
static enum command_control_type
static enum command_control_type
recurse_read_control_structure (struct command_line *current_cmd)
recurse_read_control_structure (struct command_line *current_cmd)
{
{
  int current_body, i;
  int current_body, i;
  enum misc_command_type val;
  enum misc_command_type val;
  enum command_control_type ret;
  enum command_control_type ret;
  struct command_line **body_ptr, *child_tail, *next;
  struct command_line **body_ptr, *child_tail, *next;
 
 
  child_tail = NULL;
  child_tail = NULL;
  current_body = 1;
  current_body = 1;
 
 
  /* Sanity checks.  */
  /* Sanity checks.  */
  if (current_cmd->control_type == simple_control)
  if (current_cmd->control_type == simple_control)
    error (_("Recursed on a simple control type."));
    error (_("Recursed on a simple control type."));
 
 
  if (current_body > current_cmd->body_count)
  if (current_body > current_cmd->body_count)
    error (_("Allocated body is smaller than this command type needs."));
    error (_("Allocated body is smaller than this command type needs."));
 
 
  /* Read lines from the input stream and build control structures.  */
  /* Read lines from the input stream and build control structures.  */
  while (1)
  while (1)
    {
    {
      dont_repeat ();
      dont_repeat ();
 
 
      next = NULL;
      next = NULL;
      val = read_next_line (&next);
      val = read_next_line (&next);
 
 
      /* Just skip blanks and comments.  */
      /* Just skip blanks and comments.  */
      if (val == nop_command)
      if (val == nop_command)
        continue;
        continue;
 
 
      if (val == end_command)
      if (val == end_command)
        {
        {
          if (current_cmd->control_type == while_control
          if (current_cmd->control_type == while_control
              || current_cmd->control_type == if_control
              || current_cmd->control_type == if_control
              || current_cmd->control_type == commands_control)
              || current_cmd->control_type == commands_control)
            {
            {
              /* Success reading an entire canned sequence of commands.  */
              /* Success reading an entire canned sequence of commands.  */
              ret = simple_control;
              ret = simple_control;
              break;
              break;
            }
            }
          else
          else
            {
            {
              ret = invalid_control;
              ret = invalid_control;
              break;
              break;
            }
            }
        }
        }
 
 
      /* Not the end of a control structure.  */
      /* Not the end of a control structure.  */
      if (val == else_command)
      if (val == else_command)
        {
        {
          if (current_cmd->control_type == if_control
          if (current_cmd->control_type == if_control
              && current_body == 1)
              && current_body == 1)
            {
            {
              realloc_body_list (current_cmd, 2);
              realloc_body_list (current_cmd, 2);
              current_body = 2;
              current_body = 2;
              child_tail = NULL;
              child_tail = NULL;
              continue;
              continue;
            }
            }
          else
          else
            {
            {
              ret = invalid_control;
              ret = invalid_control;
              break;
              break;
            }
            }
        }
        }
 
 
      if (child_tail)
      if (child_tail)
        {
        {
          child_tail->next = next;
          child_tail->next = next;
        }
        }
      else
      else
        {
        {
          body_ptr = current_cmd->body_list;
          body_ptr = current_cmd->body_list;
          for (i = 1; i < current_body; i++)
          for (i = 1; i < current_body; i++)
            body_ptr++;
            body_ptr++;
 
 
          *body_ptr = next;
          *body_ptr = next;
 
 
        }
        }
 
 
      child_tail = next;
      child_tail = next;
 
 
      /* If the latest line is another control structure, then recurse
      /* If the latest line is another control structure, then recurse
         on it.  */
         on it.  */
      if (next->control_type == while_control
      if (next->control_type == while_control
          || next->control_type == if_control
          || next->control_type == if_control
          || next->control_type == commands_control)
          || next->control_type == commands_control)
        {
        {
          control_level++;
          control_level++;
          ret = recurse_read_control_structure (next);
          ret = recurse_read_control_structure (next);
          control_level--;
          control_level--;
 
 
          if (ret != simple_control)
          if (ret != simple_control)
            break;
            break;
        }
        }
    }
    }
 
 
  dont_repeat ();
  dont_repeat ();
 
 
  return ret;
  return ret;
}
}
 
 
/* Read lines from the input stream and accumulate them in a chain of
/* Read lines from the input stream and accumulate them in a chain of
   struct command_line's, which is then returned.  For input from a
   struct command_line's, which is then returned.  For input from a
   terminal, the special command "end" is used to mark the end of the
   terminal, the special command "end" is used to mark the end of the
   input, and is not included in the returned chain of commands. */
   input, and is not included in the returned chain of commands. */
 
 
#define END_MESSAGE "End with a line saying just \"end\"."
#define END_MESSAGE "End with a line saying just \"end\"."
 
 
struct command_line *
struct command_line *
read_command_lines (char *prompt_arg, int from_tty)
read_command_lines (char *prompt_arg, int from_tty)
{
{
  struct command_line *head, *tail, *next;
  struct command_line *head, *tail, *next;
  struct cleanup *old_chain;
  struct cleanup *old_chain;
  enum command_control_type ret;
  enum command_control_type ret;
  enum misc_command_type val;
  enum misc_command_type val;
 
 
  control_level = 0;
  control_level = 0;
 
 
  if (from_tty && input_from_terminal_p ())
  if (from_tty && input_from_terminal_p ())
    {
    {
      if (deprecated_readline_begin_hook)
      if (deprecated_readline_begin_hook)
        {
        {
          /* Note - intentional to merge messages with no newline */
          /* Note - intentional to merge messages with no newline */
          (*deprecated_readline_begin_hook) ("%s  %s\n", prompt_arg, END_MESSAGE);
          (*deprecated_readline_begin_hook) ("%s  %s\n", prompt_arg, END_MESSAGE);
        }
        }
      else
      else
        {
        {
          printf_unfiltered ("%s\n%s\n", prompt_arg, END_MESSAGE);
          printf_unfiltered ("%s\n%s\n", prompt_arg, END_MESSAGE);
          gdb_flush (gdb_stdout);
          gdb_flush (gdb_stdout);
        }
        }
    }
    }
 
 
  head = tail = NULL;
  head = tail = NULL;
  old_chain = NULL;
  old_chain = NULL;
 
 
  while (1)
  while (1)
    {
    {
      dont_repeat ();
      dont_repeat ();
      val = read_next_line (&next);
      val = read_next_line (&next);
 
 
      /* Ignore blank lines or comments.  */
      /* Ignore blank lines or comments.  */
      if (val == nop_command)
      if (val == nop_command)
        continue;
        continue;
 
 
      if (val == end_command)
      if (val == end_command)
        {
        {
          ret = simple_control;
          ret = simple_control;
          break;
          break;
        }
        }
 
 
      if (val != ok_command)
      if (val != ok_command)
        {
        {
          ret = invalid_control;
          ret = invalid_control;
          break;
          break;
        }
        }
 
 
      if (next->control_type == while_control
      if (next->control_type == while_control
          || next->control_type == if_control
          || next->control_type == if_control
          || next->control_type == commands_control)
          || next->control_type == commands_control)
        {
        {
          control_level++;
          control_level++;
          ret = recurse_read_control_structure (next);
          ret = recurse_read_control_structure (next);
          control_level--;
          control_level--;
 
 
          if (ret == invalid_control)
          if (ret == invalid_control)
            break;
            break;
        }
        }
 
 
      if (tail)
      if (tail)
        {
        {
          tail->next = next;
          tail->next = next;
        }
        }
      else
      else
        {
        {
          head = next;
          head = next;
          old_chain = make_cleanup_free_command_lines (&head);
          old_chain = make_cleanup_free_command_lines (&head);
        }
        }
      tail = next;
      tail = next;
    }
    }
 
 
  dont_repeat ();
  dont_repeat ();
 
 
  if (head)
  if (head)
    {
    {
      if (ret != invalid_control)
      if (ret != invalid_control)
        {
        {
          discard_cleanups (old_chain);
          discard_cleanups (old_chain);
        }
        }
      else
      else
        do_cleanups (old_chain);
        do_cleanups (old_chain);
    }
    }
 
 
  if (deprecated_readline_end_hook && from_tty && input_from_terminal_p ())
  if (deprecated_readline_end_hook && from_tty && input_from_terminal_p ())
    {
    {
      (*deprecated_readline_end_hook) ();
      (*deprecated_readline_end_hook) ();
    }
    }
  return (head);
  return (head);
}
}
 
 
/* Free a chain of struct command_line's.  */
/* Free a chain of struct command_line's.  */
 
 
void
void
free_command_lines (struct command_line **lptr)
free_command_lines (struct command_line **lptr)
{
{
  struct command_line *l = *lptr;
  struct command_line *l = *lptr;
  struct command_line *next;
  struct command_line *next;
  struct command_line **blist;
  struct command_line **blist;
  int i;
  int i;
 
 
  while (l)
  while (l)
    {
    {
      if (l->body_count > 0)
      if (l->body_count > 0)
        {
        {
          blist = l->body_list;
          blist = l->body_list;
          for (i = 0; i < l->body_count; i++, blist++)
          for (i = 0; i < l->body_count; i++, blist++)
            free_command_lines (blist);
            free_command_lines (blist);
        }
        }
      next = l->next;
      next = l->next;
      xfree (l->line);
      xfree (l->line);
      xfree (l);
      xfree (l);
      l = next;
      l = next;
    }
    }
  *lptr = NULL;
  *lptr = NULL;
}
}
 
 
static void
static void
do_free_command_lines_cleanup (void *arg)
do_free_command_lines_cleanup (void *arg)
{
{
  free_command_lines (arg);
  free_command_lines (arg);
}
}
 
 
struct cleanup *
struct cleanup *
make_cleanup_free_command_lines (struct command_line **arg)
make_cleanup_free_command_lines (struct command_line **arg)
{
{
  return make_cleanup (do_free_command_lines_cleanup, arg);
  return make_cleanup (do_free_command_lines_cleanup, arg);
}
}
 
 
struct command_line *
struct command_line *
copy_command_lines (struct command_line *cmds)
copy_command_lines (struct command_line *cmds)
{
{
  struct command_line *result = NULL;
  struct command_line *result = NULL;
 
 
  if (cmds)
  if (cmds)
    {
    {
      result = (struct command_line *) xmalloc (sizeof (struct command_line));
      result = (struct command_line *) xmalloc (sizeof (struct command_line));
 
 
      result->next = copy_command_lines (cmds->next);
      result->next = copy_command_lines (cmds->next);
      result->line = xstrdup (cmds->line);
      result->line = xstrdup (cmds->line);
      result->control_type = cmds->control_type;
      result->control_type = cmds->control_type;
      result->body_count = cmds->body_count;
      result->body_count = cmds->body_count;
      if (cmds->body_count > 0)
      if (cmds->body_count > 0)
        {
        {
          int i;
          int i;
 
 
          result->body_list = (struct command_line **)
          result->body_list = (struct command_line **)
            xmalloc (sizeof (struct command_line *) * cmds->body_count);
            xmalloc (sizeof (struct command_line *) * cmds->body_count);
 
 
          for (i = 0; i < cmds->body_count; i++)
          for (i = 0; i < cmds->body_count; i++)
            result->body_list[i] = copy_command_lines (cmds->body_list[i]);
            result->body_list[i] = copy_command_lines (cmds->body_list[i]);
        }
        }
      else
      else
        result->body_list = NULL;
        result->body_list = NULL;
    }
    }
 
 
  return result;
  return result;
}
}


static void
static void
validate_comname (char *comname)
validate_comname (char *comname)
{
{
  char *p;
  char *p;
 
 
  if (comname == 0)
  if (comname == 0)
    error_no_arg (_("name of command to define"));
    error_no_arg (_("name of command to define"));
 
 
  p = comname;
  p = comname;
  while (*p)
  while (*p)
    {
    {
      if (!isalnum (*p) && *p != '-' && *p != '_')
      if (!isalnum (*p) && *p != '-' && *p != '_')
        error (_("Junk in argument list: \"%s\""), p);
        error (_("Junk in argument list: \"%s\""), p);
      p++;
      p++;
    }
    }
}
}
 
 
/* This is just a placeholder in the command data structures.  */
/* This is just a placeholder in the command data structures.  */
static void
static void
user_defined_command (char *ignore, int from_tty)
user_defined_command (char *ignore, int from_tty)
{
{
}
}
 
 
void
void
define_command (char *comname, int from_tty)
define_command (char *comname, int from_tty)
{
{
#define MAX_TMPBUF 128   
#define MAX_TMPBUF 128   
  enum cmd_hook_type
  enum cmd_hook_type
    {
    {
      CMD_NO_HOOK = 0,
      CMD_NO_HOOK = 0,
      CMD_PRE_HOOK,
      CMD_PRE_HOOK,
      CMD_POST_HOOK
      CMD_POST_HOOK
    };
    };
  struct command_line *cmds;
  struct command_line *cmds;
  struct cmd_list_element *c, *newc, *oldc, *hookc = 0;
  struct cmd_list_element *c, *newc, *oldc, *hookc = 0;
  char *tem = comname;
  char *tem = comname;
  char *tem2;
  char *tem2;
  char tmpbuf[MAX_TMPBUF];
  char tmpbuf[MAX_TMPBUF];
  int  hook_type      = CMD_NO_HOOK;
  int  hook_type      = CMD_NO_HOOK;
  int  hook_name_size = 0;
  int  hook_name_size = 0;
 
 
#define HOOK_STRING     "hook-"
#define HOOK_STRING     "hook-"
#define HOOK_LEN 5
#define HOOK_LEN 5
#define HOOK_POST_STRING "hookpost-"
#define HOOK_POST_STRING "hookpost-"
#define HOOK_POST_LEN    9
#define HOOK_POST_LEN    9
 
 
  validate_comname (comname);
  validate_comname (comname);
 
 
  /* Look it up, and verify that we got an exact match.  */
  /* Look it up, and verify that we got an exact match.  */
  c = lookup_cmd (&tem, cmdlist, "", -1, 1);
  c = lookup_cmd (&tem, cmdlist, "", -1, 1);
  if (c && strcmp (comname, c->name) != 0)
  if (c && strcmp (comname, c->name) != 0)
    c = 0;
    c = 0;
 
 
  if (c)
  if (c)
    {
    {
      int q;
      int q;
      if (c->class == class_user || c->class == class_alias)
      if (c->class == class_user || c->class == class_alias)
        q = query (_("Redefine command \"%s\"? "), c->name);
        q = query (_("Redefine command \"%s\"? "), c->name);
      else
      else
        q = query (_("Really redefine built-in command \"%s\"? "), c->name);
        q = query (_("Really redefine built-in command \"%s\"? "), c->name);
      if (!q)
      if (!q)
        error (_("Command \"%s\" not redefined."), c->name);
        error (_("Command \"%s\" not redefined."), c->name);
    }
    }
 
 
  /* If this new command is a hook, then mark the command which it
  /* If this new command is a hook, then mark the command which it
     is hooking.  Note that we allow hooking `help' commands, so that
     is hooking.  Note that we allow hooking `help' commands, so that
     we can hook the `stop' pseudo-command.  */
     we can hook the `stop' pseudo-command.  */
 
 
  if (!strncmp (comname, HOOK_STRING, HOOK_LEN))
  if (!strncmp (comname, HOOK_STRING, HOOK_LEN))
    {
    {
       hook_type      = CMD_PRE_HOOK;
       hook_type      = CMD_PRE_HOOK;
       hook_name_size = HOOK_LEN;
       hook_name_size = HOOK_LEN;
    }
    }
  else if (!strncmp (comname, HOOK_POST_STRING, HOOK_POST_LEN))
  else if (!strncmp (comname, HOOK_POST_STRING, HOOK_POST_LEN))
    {
    {
      hook_type      = CMD_POST_HOOK;
      hook_type      = CMD_POST_HOOK;
      hook_name_size = HOOK_POST_LEN;
      hook_name_size = HOOK_POST_LEN;
    }
    }
 
 
  if (hook_type != CMD_NO_HOOK)
  if (hook_type != CMD_NO_HOOK)
    {
    {
      /* Look up cmd it hooks, and verify that we got an exact match.  */
      /* Look up cmd it hooks, and verify that we got an exact match.  */
      tem = comname + hook_name_size;
      tem = comname + hook_name_size;
      hookc = lookup_cmd (&tem, cmdlist, "", -1, 0);
      hookc = lookup_cmd (&tem, cmdlist, "", -1, 0);
      if (hookc && strcmp (comname + hook_name_size, hookc->name) != 0)
      if (hookc && strcmp (comname + hook_name_size, hookc->name) != 0)
        hookc = 0;
        hookc = 0;
      if (!hookc)
      if (!hookc)
        {
        {
          warning (_("Your new `%s' command does not hook any existing command."),
          warning (_("Your new `%s' command does not hook any existing command."),
                   comname);
                   comname);
          if (!query ("Proceed? "))
          if (!query ("Proceed? "))
            error (_("Not confirmed."));
            error (_("Not confirmed."));
        }
        }
    }
    }
 
 
  comname = savestring (comname, strlen (comname));
  comname = savestring (comname, strlen (comname));
 
 
  /* If the rest of the commands will be case insensitive, this one
  /* If the rest of the commands will be case insensitive, this one
     should behave in the same manner. */
     should behave in the same manner. */
  for (tem = comname; *tem; tem++)
  for (tem = comname; *tem; tem++)
    if (isupper (*tem))
    if (isupper (*tem))
      *tem = tolower (*tem);
      *tem = tolower (*tem);
 
 
  sprintf (tmpbuf, "Type commands for definition of \"%s\".", comname);
  sprintf (tmpbuf, "Type commands for definition of \"%s\".", comname);
  cmds = read_command_lines (tmpbuf, from_tty);
  cmds = read_command_lines (tmpbuf, from_tty);
 
 
  if (c && c->class == class_user)
  if (c && c->class == class_user)
    free_command_lines (&c->user_commands);
    free_command_lines (&c->user_commands);
 
 
  newc = add_cmd (comname, class_user, user_defined_command,
  newc = add_cmd (comname, class_user, user_defined_command,
                  (c && c->class == class_user)
                  (c && c->class == class_user)
                  ? c->doc : savestring ("User-defined.", 13), &cmdlist);
                  ? c->doc : savestring ("User-defined.", 13), &cmdlist);
  newc->user_commands = cmds;
  newc->user_commands = cmds;
 
 
  /* If this new command is a hook, then mark both commands as being
  /* If this new command is a hook, then mark both commands as being
     tied.  */
     tied.  */
  if (hookc)
  if (hookc)
    {
    {
      switch (hook_type)
      switch (hook_type)
        {
        {
        case CMD_PRE_HOOK:
        case CMD_PRE_HOOK:
          hookc->hook_pre  = newc;  /* Target gets hooked.  */
          hookc->hook_pre  = newc;  /* Target gets hooked.  */
          newc->hookee_pre = hookc; /* We are marked as hooking target cmd. */
          newc->hookee_pre = hookc; /* We are marked as hooking target cmd. */
          break;
          break;
        case CMD_POST_HOOK:
        case CMD_POST_HOOK:
          hookc->hook_post  = newc;  /* Target gets hooked.  */
          hookc->hook_post  = newc;  /* Target gets hooked.  */
          newc->hookee_post = hookc; /* We are marked as hooking target cmd. */
          newc->hookee_post = hookc; /* We are marked as hooking target cmd. */
          break;
          break;
        default:
        default:
          /* Should never come here as hookc would be 0. */
          /* Should never come here as hookc would be 0. */
          internal_error (__FILE__, __LINE__, _("bad switch"));
          internal_error (__FILE__, __LINE__, _("bad switch"));
        }
        }
    }
    }
}
}
 
 
void
void
document_command (char *comname, int from_tty)
document_command (char *comname, int from_tty)
{
{
  struct command_line *doclines;
  struct command_line *doclines;
  struct cmd_list_element *c;
  struct cmd_list_element *c;
  char *tem = comname;
  char *tem = comname;
  char tmpbuf[128];
  char tmpbuf[128];
 
 
  validate_comname (comname);
  validate_comname (comname);
 
 
  c = lookup_cmd (&tem, cmdlist, "", 0, 1);
  c = lookup_cmd (&tem, cmdlist, "", 0, 1);
 
 
  if (c->class != class_user)
  if (c->class != class_user)
    error (_("Command \"%s\" is built-in."), comname);
    error (_("Command \"%s\" is built-in."), comname);
 
 
  sprintf (tmpbuf, "Type documentation for \"%s\".", comname);
  sprintf (tmpbuf, "Type documentation for \"%s\".", comname);
  doclines = read_command_lines (tmpbuf, from_tty);
  doclines = read_command_lines (tmpbuf, from_tty);
 
 
  if (c->doc)
  if (c->doc)
    xfree (c->doc);
    xfree (c->doc);
 
 
  {
  {
    struct command_line *cl1;
    struct command_line *cl1;
    int len = 0;
    int len = 0;
 
 
    for (cl1 = doclines; cl1; cl1 = cl1->next)
    for (cl1 = doclines; cl1; cl1 = cl1->next)
      len += strlen (cl1->line) + 1;
      len += strlen (cl1->line) + 1;
 
 
    c->doc = (char *) xmalloc (len + 1);
    c->doc = (char *) xmalloc (len + 1);
    *c->doc = 0;
    *c->doc = 0;
 
 
    for (cl1 = doclines; cl1; cl1 = cl1->next)
    for (cl1 = doclines; cl1; cl1 = cl1->next)
      {
      {
        strcat (c->doc, cl1->line);
        strcat (c->doc, cl1->line);
        if (cl1->next)
        if (cl1->next)
          strcat (c->doc, "\n");
          strcat (c->doc, "\n");
      }
      }
  }
  }
 
 
  free_command_lines (&doclines);
  free_command_lines (&doclines);
}
}


struct source_cleanup_lines_args
struct source_cleanup_lines_args
{
{
  int old_line;
  int old_line;
  char *old_file;
  char *old_file;
};
};
 
 
static void
static void
source_cleanup_lines (void *args)
source_cleanup_lines (void *args)
{
{
  struct source_cleanup_lines_args *p =
  struct source_cleanup_lines_args *p =
  (struct source_cleanup_lines_args *) args;
  (struct source_cleanup_lines_args *) args;
  source_line_number = p->old_line;
  source_line_number = p->old_line;
  source_file_name = p->old_file;
  source_file_name = p->old_file;
}
}
 
 
static void
static void
do_fclose_cleanup (void *stream)
do_fclose_cleanup (void *stream)
{
{
  fclose (stream);
  fclose (stream);
}
}
 
 
struct wrapped_read_command_file_args
struct wrapped_read_command_file_args
{
{
  FILE *stream;
  FILE *stream;
};
};
 
 
static void
static void
wrapped_read_command_file (struct ui_out *uiout, void *data)
wrapped_read_command_file (struct ui_out *uiout, void *data)
{
{
  struct wrapped_read_command_file_args *args = data;
  struct wrapped_read_command_file_args *args = data;
  read_command_file (args->stream);
  read_command_file (args->stream);
}
}
 
 
/* Used to implement source_command */
/* Used to implement source_command */
 
 
void
void
script_from_file (FILE *stream, char *file)
script_from_file (FILE *stream, char *file)
{
{
  struct cleanup *old_cleanups;
  struct cleanup *old_cleanups;
  struct source_cleanup_lines_args old_lines;
  struct source_cleanup_lines_args old_lines;
  int needed_length;
  int needed_length;
 
 
  if (stream == NULL)
  if (stream == NULL)
    internal_error (__FILE__, __LINE__, _("called with NULL file pointer!"));
    internal_error (__FILE__, __LINE__, _("called with NULL file pointer!"));
 
 
  old_cleanups = make_cleanup (do_fclose_cleanup, stream);
  old_cleanups = make_cleanup (do_fclose_cleanup, stream);
 
 
  old_lines.old_line = source_line_number;
  old_lines.old_line = source_line_number;
  old_lines.old_file = source_file_name;
  old_lines.old_file = source_file_name;
  make_cleanup (source_cleanup_lines, &old_lines);
  make_cleanup (source_cleanup_lines, &old_lines);
  source_line_number = 0;
  source_line_number = 0;
  source_file_name = file;
  source_file_name = file;
  /* This will get set every time we read a line.  So it won't stay "" for
  /* This will get set every time we read a line.  So it won't stay "" for
     long.  */
     long.  */
  error_pre_print = "";
  error_pre_print = "";
 
 
  {
  {
    struct gdb_exception e;
    struct gdb_exception e;
    struct wrapped_read_command_file_args args;
    struct wrapped_read_command_file_args args;
    args.stream = stream;
    args.stream = stream;
    e = catch_exception (uiout, wrapped_read_command_file, &args,
    e = catch_exception (uiout, wrapped_read_command_file, &args,
                         RETURN_MASK_ERROR);
                         RETURN_MASK_ERROR);
    switch (e.reason)
    switch (e.reason)
      {
      {
      case 0:
      case 0:
        break;
        break;
      case RETURN_ERROR:
      case RETURN_ERROR:
        /* Re-throw the error, but with the file name information
        /* Re-throw the error, but with the file name information
           prepended.  */
           prepended.  */
        throw_error (e.error,
        throw_error (e.error,
                     _("%s:%d: Error in sourced command file:\n%s"),
                     _("%s:%d: Error in sourced command file:\n%s"),
                     source_file_name, source_line_number, e.message);
                     source_file_name, source_line_number, e.message);
      default:
      default:
        internal_error (__FILE__, __LINE__, _("bad reason"));
        internal_error (__FILE__, __LINE__, _("bad reason"));
      }
      }
  }
  }
 
 
  do_cleanups (old_cleanups);
  do_cleanups (old_cleanups);
}
}
 
 
void
void
show_user_1 (struct cmd_list_element *c, struct ui_file *stream)
show_user_1 (struct cmd_list_element *c, struct ui_file *stream)
{
{
  struct command_line *cmdlines;
  struct command_line *cmdlines;
 
 
  cmdlines = c->user_commands;
  cmdlines = c->user_commands;
  if (!cmdlines)
  if (!cmdlines)
    return;
    return;
  fputs_filtered ("User command ", stream);
  fputs_filtered ("User command ", stream);
  fputs_filtered (c->name, stream);
  fputs_filtered (c->name, stream);
  fputs_filtered (":\n", stream);
  fputs_filtered (":\n", stream);
 
 
  print_command_lines (uiout, cmdlines, 1);
  print_command_lines (uiout, cmdlines, 1);
  fputs_filtered ("\n", stream);
  fputs_filtered ("\n", stream);
}
}
 
 
 
 

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