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3c216924d6
Due to the way that readline's API works (based on globals), we can only have one instance of readline in a process. So the goal of this patch is to only allow editing in the main UI, and make sure that only one UI calls into readline. Some MI paths touch readline variables currently, which is bad as that is changing variables that matter for the main console UI. This patch fixes those. This actually fixes a nasty bug -- starting gdb in MI mode ("gdb -i=mi"), and then doing "set editing on" crashes GDB, because MI is not prepared to use readline: set editing on &"set editing on\n" =cmd-param-changed,param="editing",value="on" ^done (gdb) p 1 readline: readline_callback_read_char() called with no handler! Aborted (core dumped) The fix for that was to add an interp_proc method to query the interpreter whether it actually supports editing. New test included. gdb/ChangeLog: 2016-06-21 Pedro Alves <palves@redhat.com> PR mi/20034 * cli/cli-interp.c: Include cli-interp.h and event-top.h. (cli_interpreter_resume): Pass 1 to gdb_setup_readline. Set the UI's input_handler here. (cli_interpreter_supports_command_editing): New function. (cli_interp_procs): Install it. * cli/cli-interp.h: New file. * event-top.c (async_command_editing_p): Rename to ... (set_editing_cmd_var): ... this. (change_line_handler): Add parameter 'editing', and use it. Bail early if the interpreter doesn't support editing. Don't touch readline state if editing is off. (gdb_rl_callback_handler_remove, gdb_rl_callback_handler_install) (gdb_rl_callback_handler_reinstall): Assert the current UI is the main UI. (display_gdb_prompt): Don't call gdb_rl_callback_handler_remove if not using readline. Check whether the current UI is using command editing instead of checking the async_command_editing_p global. (set_async_editing_command): Delete. (gdb_setup_readline): Add 'editing' parameter. Only allow editing on the main UI. Don't touch readline state if editing is off. (gdb_disable_readline): Don't touch readline state if editing is off. * event-top.h (gdb_setup_readline): Add 'int' parameter. (set_async_editing_command): Delete declaration. (change_line_handler, command_line_handler): Declare. (async_command_editing_p): Rename to ... (set_editing_cmd_var): ... this. * infrun.c (reinstall_readline_callback_handler_cleanup): Check whether the current UI has editing enabled rather than checking the async_command_editing_p global. * interps.c (interp_supports_command_editing): New function. * interps.h (interp_supports_command_editing_ftype): New typedef. (struct interp_procs) <supports_command_editing_proc>: New field. (interp_supports_command_editing): Declare. * mi/mi-interp.c (mi_interpreter_resume): Pass 0 to gdb_setup_readline. Don't clear the async_command_editing_p global. Update comments. * top.c (gdb_readline_wrapper_line, gdb_readline_wrapper): Check whether the current UI has editing enabled rather than checking the async_command_editing_p global. Don't touch readline state if editing is off. (undo_terminal_modifications_before_exit): Switch to the main UI. Unconditionally call gdb_disable_readline. (set_editing): New function. (show_async_command_editing_p): Rename to ... (show_editing): ... this. Show the state of the current UI. (_initialize_top): Adjust. * top.h (struct ui) <command_editing>: New field. * tui/tui-interp.c: Include cli/cli-interp.h. (tui_resume): Pass 1 to gdb_setup_readline. Set the UI's input_handler. (tui_interp_procs): Install cli_interpreter_supports_command_editing. * tui/tui-io.c (tui_getc): Check whether the current UI has editing enabled rather than checking the async_command_editing_p global. gdb/testsuite/ChangeLog: 2016-06-21 Pedro Alves <palves@redhat.com> PR mi/20034 * gdb.mi/mi-editing.exp: New file.
629 lines
17 KiB
C
629 lines
17 KiB
C
/* Manages interpreters for GDB, the GNU debugger.
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Copyright (C) 2000-2016 Free Software Foundation, Inc.
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Written by Jim Ingham <jingham@apple.com> of Apple Computer, Inc.
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This file is part of GDB.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>. */
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/* This is just a first cut at separating out the "interpreter"
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functions of gdb into self-contained modules. There are a couple
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of open areas that need to be sorted out:
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1) The interpreter explicitly contains a UI_OUT, and can insert itself
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into the event loop, but it doesn't explicitly contain hooks for readline.
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I did this because it seems to me many interpreters won't want to use
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the readline command interface, and it is probably simpler to just let
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them take over the input in their resume proc. */
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#include "defs.h"
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#include "gdbcmd.h"
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#include "ui-out.h"
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#include "event-loop.h"
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#include "event-top.h"
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#include "interps.h"
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#include "completer.h"
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#include "top.h" /* For command_loop. */
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#include "continuations.h"
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/* Each UI has its own independent set of interpreters. */
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struct ui_interp_info
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{
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/* Each top level has its own independent set of interpreters. */
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struct interp *interp_list;
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struct interp *current_interpreter;
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struct interp *top_level_interpreter;
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/* The interpreter that is active while `interp_exec' is active, NULL
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at all other times. */
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struct interp *command_interpreter;
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};
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/* Get UI's ui_interp_info object. Never returns NULL. */
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static struct ui_interp_info *
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get_interp_info (struct ui *ui)
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{
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if (ui->interp_info == NULL)
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ui->interp_info = XCNEW (struct ui_interp_info);
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return ui->interp_info;
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}
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/* Get the current UI's ui_interp_info object. Never returns
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NULL. */
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static struct ui_interp_info *
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get_current_interp_info (void)
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{
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return get_interp_info (current_ui);
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}
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struct interp
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{
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/* This is the name in "-i=" and set interpreter. */
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const char *name;
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/* Interpreters are stored in a linked list, this is the next
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one... */
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struct interp *next;
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/* This is a cookie that an instance of the interpreter can use.
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This is a bit confused right now as the exact initialization
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sequence for it, and how it relates to the interpreter's uiout
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object is a bit confused. */
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void *data;
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/* Has the init_proc been run? */
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int inited;
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const struct interp_procs *procs;
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int quiet_p;
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};
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/* The magic initialization routine for this module. */
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void _initialize_interpreter (void);
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static struct interp *interp_lookup_existing (struct ui *ui,
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const char *name);
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/* interp_new - This allocates space for a new interpreter,
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fills the fields from the inputs, and returns a pointer to the
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interpreter. */
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struct interp *
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interp_new (const char *name, const struct interp_procs *procs, void *data)
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{
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struct interp *new_interp;
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new_interp = XNEW (struct interp);
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new_interp->name = xstrdup (name);
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new_interp->data = data;
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new_interp->quiet_p = 0;
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new_interp->procs = procs;
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new_interp->inited = 0;
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/* Check for required procs. */
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gdb_assert (procs->command_loop_proc != NULL);
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return new_interp;
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}
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/* An interpreter factory. Maps an interpreter name to the factory
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function that instantiates an interpreter by that name. */
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struct interp_factory
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{
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/* This is the name in "-i=INTERP" and "interpreter-exec INTERP". */
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const char *name;
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/* The function that creates the interpreter. */
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interp_factory_func func;
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};
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typedef struct interp_factory *interp_factory_p;
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DEF_VEC_P(interp_factory_p);
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/* The registered interpreter factories. */
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static VEC(interp_factory_p) *interpreter_factories = NULL;
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/* See interps.h. */
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void
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interp_factory_register (const char *name, interp_factory_func func)
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{
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struct interp_factory *f;
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int ix;
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/* Assert that no factory for NAME is already registered. */
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for (ix = 0;
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VEC_iterate (interp_factory_p, interpreter_factories, ix, f);
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++ix)
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if (strcmp (f->name, name) == 0)
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{
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internal_error (__FILE__, __LINE__,
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_("interpreter factory already registered: \"%s\"\n"),
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name);
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}
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f = XNEW (struct interp_factory);
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f->name = name;
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f->func = func;
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VEC_safe_push (interp_factory_p, interpreter_factories, f);
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}
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/* Add interpreter INTERP to the gdb interpreter list. The
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interpreter must not have previously been added. */
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void
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interp_add (struct ui *ui, struct interp *interp)
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{
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struct ui_interp_info *ui_interp = get_interp_info (ui);
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gdb_assert (interp_lookup_existing (ui, interp->name) == NULL);
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interp->next = ui_interp->interp_list;
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ui_interp->interp_list = interp;
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}
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/* This sets the current interpreter to be INTERP. If INTERP has not
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been initialized, then this will also run the init proc. If the
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init proc is successful, return 1, if it fails, set the old
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interpreter back in place and return 0. If we can't restore the
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old interpreter, then raise an internal error, since we are in
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pretty bad shape at this point.
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The TOP_LEVEL parameter tells if this new interpreter is
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the top-level one. The top-level is what is requested
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on the command line, and is responsible for reporting general
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notification about target state changes. For example, if
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MI is the top-level interpreter, then it will always report
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events such as target stops and new thread creation, even if they
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are caused by CLI commands. */
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int
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interp_set (struct interp *interp, int top_level)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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struct interp *old_interp = ui_interp->current_interpreter;
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int first_time = 0;
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char buffer[64];
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/* If we already have an interpreter, then trying to
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set top level interpreter is kinda pointless. */
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gdb_assert (!top_level || !ui_interp->current_interpreter);
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gdb_assert (!top_level || !ui_interp->top_level_interpreter);
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if (old_interp != NULL)
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{
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ui_out_flush (current_uiout);
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if (old_interp->procs->suspend_proc
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&& !old_interp->procs->suspend_proc (old_interp->data))
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{
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error (_("Could not suspend interpreter \"%s\"."),
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old_interp->name);
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}
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}
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else
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{
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first_time = 1;
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}
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ui_interp->current_interpreter = interp;
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if (top_level)
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ui_interp->top_level_interpreter = interp;
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/* We use interpreter_p for the "set interpreter" variable, so we need
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to make sure we have a malloc'ed copy for the set command to free. */
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if (interpreter_p != NULL
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&& strcmp (interp->name, interpreter_p) != 0)
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{
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xfree (interpreter_p);
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interpreter_p = xstrdup (interp->name);
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}
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/* Run the init proc. If it fails, try to restore the old interp. */
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if (!interp->inited)
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{
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if (interp->procs->init_proc != NULL)
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{
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interp->data = interp->procs->init_proc (interp, top_level);
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}
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interp->inited = 1;
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}
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/* Do this only after the interpreter is initialized. */
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current_uiout = interp->procs->ui_out_proc (interp);
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/* Clear out any installed interpreter hooks/event handlers. */
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clear_interpreter_hooks ();
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if (interp->procs->resume_proc != NULL
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&& (!interp->procs->resume_proc (interp->data)))
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{
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if (old_interp == NULL || !interp_set (old_interp, 0))
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internal_error (__FILE__, __LINE__,
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_("Failed to initialize new interp \"%s\" %s"),
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interp->name, "and could not restore old interp!\n");
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return 0;
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}
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if (!first_time && !interp_quiet_p (interp))
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{
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xsnprintf (buffer, sizeof (buffer),
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"Switching to interpreter \"%.24s\".\n", interp->name);
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ui_out_text (current_uiout, buffer);
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}
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return 1;
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}
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/* Look up the interpreter for NAME. If no such interpreter exists,
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return NULL, otherwise return a pointer to the interpreter. */
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static struct interp *
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interp_lookup_existing (struct ui *ui, const char *name)
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{
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struct ui_interp_info *ui_interp = get_interp_info (ui);
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struct interp *interp;
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for (interp = ui_interp->interp_list;
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interp != NULL;
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interp = interp->next)
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{
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if (strcmp (interp->name, name) == 0)
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return interp;
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}
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return NULL;
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}
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/* See interps.h. */
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struct interp *
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interp_lookup (struct ui *ui, const char *name)
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{
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struct interp_factory *factory;
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struct interp *interp;
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int ix;
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if (name == NULL || strlen (name) == 0)
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return NULL;
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/* Only create each interpreter once per top level. */
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interp = interp_lookup_existing (ui, name);
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if (interp != NULL)
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return interp;
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for (ix = 0;
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VEC_iterate (interp_factory_p, interpreter_factories, ix, factory);
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++ix)
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if (strcmp (factory->name, name) == 0)
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{
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interp = factory->func (name);
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interp_add (ui, interp);
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return interp;
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}
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return NULL;
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}
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/* Returns the current interpreter. */
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struct ui_out *
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interp_ui_out (struct interp *interp)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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if (interp == NULL)
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interp = ui_interp->current_interpreter;
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return interp->procs->ui_out_proc (interp);
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}
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int
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current_interp_set_logging (int start_log, struct ui_file *out,
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struct ui_file *logfile)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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struct interp *interp = ui_interp->current_interpreter;
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if (interp == NULL
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|| interp->procs->set_logging_proc == NULL)
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return 0;
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return interp->procs->set_logging_proc (interp, start_log, out, logfile);
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}
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/* Temporarily overrides the current interpreter. */
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struct interp *
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interp_set_temp (const char *name)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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struct interp *interp = interp_lookup (current_ui, name);
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struct interp *old_interp = ui_interp->current_interpreter;
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if (interp)
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ui_interp->current_interpreter = interp;
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return old_interp;
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}
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/* Returns the interpreter's cookie. */
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void *
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interp_data (struct interp *interp)
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{
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return interp->data;
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}
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/* Returns the interpreter's name. */
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const char *
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interp_name (struct interp *interp)
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{
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return interp->name;
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}
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/* Returns true if the current interp is the passed in name. */
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int
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current_interp_named_p (const char *interp_name)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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struct interp *interp = ui_interp->current_interpreter;
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if (interp != NULL)
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return (strcmp (interp->name, interp_name) == 0);
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return 0;
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}
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/* The interpreter that was active when a command was executed.
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Normally that'd always be CURRENT_INTERPRETER, except that MI's
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-interpreter-exec command doesn't actually flip the current
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interpreter when running its sub-command. The
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`command_interpreter' global tracks when interp_exec is called
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(IOW, when -interpreter-exec is called). If that is set, it is
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INTERP in '-interpreter-exec INTERP "CMD"' or in 'interpreter-exec
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INTERP "CMD". Otherwise, interp_exec isn't active, and so the
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interpreter running the command is the current interpreter. */
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struct interp *
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command_interp (void)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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if (ui_interp->command_interpreter != NULL)
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return ui_interp->command_interpreter;
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else
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return ui_interp->current_interpreter;
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}
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/* Run the current command interpreter's main loop. */
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void
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current_interp_command_loop (void)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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struct interp *interp = ui_interp->current_interpreter;
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gdb_assert (ui_interp->current_interpreter != NULL);
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interp->procs->command_loop_proc (interp->data);
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}
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/* See interp.h */
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int
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interp_supports_command_editing (struct interp *interp)
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{
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if (interp->procs->supports_command_editing_proc != NULL)
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return interp->procs->supports_command_editing_proc (interp);
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return 0;
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}
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int
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interp_quiet_p (struct interp *interp)
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{
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struct ui_interp_info *ui_interp = get_current_interp_info ();
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if (interp != NULL)
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return interp->quiet_p;
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else
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return ui_interp->current_interpreter->quiet_p;
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}
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static int
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interp_set_quiet (struct interp *interp, int quiet)
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{
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int old_val = interp->quiet_p;
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interp->quiet_p = quiet;
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return old_val;
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}
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/* interp_exec - This executes COMMAND_STR in the current
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interpreter. */
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struct gdb_exception
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interp_exec (struct interp *interp, const char *command_str)
|
|
{
|
|
struct ui_interp_info *ui_interp = get_current_interp_info ();
|
|
|
|
struct gdb_exception ex;
|
|
struct interp *save_command_interp;
|
|
|
|
gdb_assert (interp->procs->exec_proc != NULL);
|
|
|
|
/* See `command_interp' for why we do this. */
|
|
save_command_interp = ui_interp->command_interpreter;
|
|
ui_interp->command_interpreter = interp;
|
|
|
|
ex = interp->procs->exec_proc (interp->data, command_str);
|
|
|
|
ui_interp->command_interpreter = save_command_interp;
|
|
|
|
return ex;
|
|
}
|
|
|
|
/* A convenience routine that nulls out all the common command hooks.
|
|
Use it when removing your interpreter in its suspend proc. */
|
|
void
|
|
clear_interpreter_hooks (void)
|
|
{
|
|
deprecated_print_frame_info_listing_hook = 0;
|
|
/*print_frame_more_info_hook = 0; */
|
|
deprecated_query_hook = 0;
|
|
deprecated_warning_hook = 0;
|
|
deprecated_interactive_hook = 0;
|
|
deprecated_readline_begin_hook = 0;
|
|
deprecated_readline_hook = 0;
|
|
deprecated_readline_end_hook = 0;
|
|
deprecated_context_hook = 0;
|
|
deprecated_target_wait_hook = 0;
|
|
deprecated_call_command_hook = 0;
|
|
deprecated_error_begin_hook = 0;
|
|
}
|
|
|
|
static void
|
|
interpreter_exec_cmd (char *args, int from_tty)
|
|
{
|
|
struct ui_interp_info *ui_interp = get_current_interp_info ();
|
|
struct interp *old_interp, *interp_to_use;
|
|
char **prules = NULL;
|
|
char **trule = NULL;
|
|
unsigned int nrules;
|
|
unsigned int i;
|
|
int old_quiet, use_quiet;
|
|
struct cleanup *cleanup;
|
|
|
|
if (args == NULL)
|
|
error_no_arg (_("interpreter-exec command"));
|
|
|
|
prules = gdb_buildargv (args);
|
|
cleanup = make_cleanup_freeargv (prules);
|
|
|
|
nrules = 0;
|
|
for (trule = prules; *trule != NULL; trule++)
|
|
nrules++;
|
|
|
|
if (nrules < 2)
|
|
error (_("usage: interpreter-exec <interpreter> [ <command> ... ]"));
|
|
|
|
old_interp = ui_interp->current_interpreter;
|
|
|
|
interp_to_use = interp_lookup (current_ui, prules[0]);
|
|
if (interp_to_use == NULL)
|
|
error (_("Could not find interpreter \"%s\"."), prules[0]);
|
|
|
|
/* Temporarily set interpreters quiet. */
|
|
old_quiet = interp_set_quiet (old_interp, 1);
|
|
use_quiet = interp_set_quiet (interp_to_use, 1);
|
|
|
|
if (!interp_set (interp_to_use, 0))
|
|
error (_("Could not switch to interpreter \"%s\"."), prules[0]);
|
|
|
|
for (i = 1; i < nrules; i++)
|
|
{
|
|
struct gdb_exception e = interp_exec (interp_to_use, prules[i]);
|
|
|
|
if (e.reason < 0)
|
|
{
|
|
interp_set (old_interp, 0);
|
|
interp_set_quiet (interp_to_use, use_quiet);
|
|
interp_set_quiet (old_interp, old_quiet);
|
|
error (_("error in command: \"%s\"."), prules[i]);
|
|
}
|
|
}
|
|
|
|
interp_set (old_interp, 0);
|
|
interp_set_quiet (interp_to_use, use_quiet);
|
|
interp_set_quiet (old_interp, old_quiet);
|
|
|
|
do_cleanups (cleanup);
|
|
}
|
|
|
|
/* List the possible interpreters which could complete the given text. */
|
|
static VEC (char_ptr) *
|
|
interpreter_completer (struct cmd_list_element *ignore,
|
|
const char *text, const char *word)
|
|
{
|
|
struct interp_factory *interp;
|
|
int textlen;
|
|
VEC (char_ptr) *matches = NULL;
|
|
int ix;
|
|
|
|
textlen = strlen (text);
|
|
for (ix = 0;
|
|
VEC_iterate (interp_factory_p, interpreter_factories, ix, interp);
|
|
++ix)
|
|
{
|
|
if (strncmp (interp->name, text, textlen) == 0)
|
|
{
|
|
char *match;
|
|
|
|
match = (char *) xmalloc (strlen (word) + strlen (interp->name) + 1);
|
|
if (word == text)
|
|
strcpy (match, interp->name);
|
|
else if (word > text)
|
|
{
|
|
/* Return some portion of interp->name. */
|
|
strcpy (match, interp->name + (word - text));
|
|
}
|
|
else
|
|
{
|
|
/* Return some of text plus interp->name. */
|
|
strncpy (match, word, text - word);
|
|
match[text - word] = '\0';
|
|
strcat (match, interp->name);
|
|
}
|
|
VEC_safe_push (char_ptr, matches, match);
|
|
}
|
|
}
|
|
|
|
return matches;
|
|
}
|
|
|
|
struct interp *
|
|
top_level_interpreter (void)
|
|
{
|
|
struct ui_interp_info *ui_interp = get_current_interp_info ();
|
|
|
|
return ui_interp->top_level_interpreter;
|
|
}
|
|
|
|
void *
|
|
top_level_interpreter_data (void)
|
|
{
|
|
struct interp *interp;
|
|
|
|
interp = top_level_interpreter ();
|
|
gdb_assert (interp != NULL);
|
|
return interp->data;
|
|
}
|
|
|
|
/* This just adds the "interpreter-exec" command. */
|
|
void
|
|
_initialize_interpreter (void)
|
|
{
|
|
struct cmd_list_element *c;
|
|
|
|
c = add_cmd ("interpreter-exec", class_support,
|
|
interpreter_exec_cmd, _("\
|
|
Execute a command in an interpreter. It takes two arguments:\n\
|
|
The first argument is the name of the interpreter to use.\n\
|
|
The second argument is the command to execute.\n"), &cmdlist);
|
|
set_cmd_completer (c, interpreter_completer);
|
|
}
|