144 lines
5.3 KiB
C
144 lines
5.3 KiB
C
/* This file defines the interface between the simulator and gdb.
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Copyright (C) 1993, 1994, 1996, 1997 Free Software Foundation, 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 2 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, write to the Free Software
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Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */
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#if !defined (REMOTE_SIM_H)
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#define REMOTE_SIM_H 1
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/* This file is used when building stand-alone simulators, so isolate this
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file from gdb. */
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/* Pick up CORE_ADDR_TYPE if defined (from gdb), otherwise use same value as
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gdb does (unsigned int - from defs.h). */
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#ifndef CORE_ADDR_TYPE
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typedef unsigned int SIM_ADDR;
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#else
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typedef CORE_ADDR_TYPE SIM_ADDR;
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#endif
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/* Semi-opaque type used as result of sim_open and passed back to all
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other routines. "desc" is short for "descriptor".
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It is up to each simulator to define `sim_state'. */
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typedef struct sim_state *SIM_DESC;
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/* Values for `kind' arg to sim_open. */
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typedef enum {
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SIM_OPEN_STANDALONE, /* simulator used standalone (run.c) */
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SIM_OPEN_DEBUG /* simulator used by debugger (gdb) */
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} SIM_OPEN_KIND;
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/* Return codes from various functions. */
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typedef enum {
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SIM_RC_FAIL = 0,
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SIM_RC_OK = 1
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} SIM_RC;
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/* Main simulator entry points. */
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/* Initialize the simulator. This function is called when the simulator
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is selected from the gdb command line.
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KIND specifies how the simulator will be used. Currently there are only
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two kinds: standalone and debug.
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ARGV is passed from the command line and can be used to select whatever
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run time options the simulator provides.
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ARGV is the standard NULL terminated array of pointers, with argv[0]
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being the program name.
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The result is a descriptor that must be passed back to the other sim_foo
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functions. */
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SIM_DESC sim_open PARAMS ((SIM_OPEN_KIND kind, char **argv));
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/* Terminate usage of the simulator. This may involve freeing target memory
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and closing any open files and mmap'd areas. You cannot assume sim_kill
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has already been called.
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QUITTING is non-zero if we cannot hang on errors. */
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void sim_close PARAMS ((SIM_DESC sd, int quitting));
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/* Load program PROG into the simulator.
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Return non-zero if you wish the caller to handle it
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(it is done this way because most simulators can use gr_load_image,
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but defining it as a callback seems awkward). */
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int sim_load PARAMS ((SIM_DESC sd, char *prog, int from_tty));
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/* Prepare to run the simulated program.
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START_ADDRESS is, yes, you guessed it, the start address of the program.
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ARGV and ENV are NULL terminated lists of pointers.
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Gdb will set the start address via sim_store_register as well, but
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standalone versions of existing simulators are not set up to cleanly call
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sim_store_register, so the START_ADDRESS argument is there as a
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workaround. */
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void sim_create_inferior PARAMS ((SIM_DESC sd, SIM_ADDR start_address,
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char **argv, char **env));
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/* Kill the running program.
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This may involve closing any open files and deleting any mmap'd areas. */
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void sim_kill PARAMS ((SIM_DESC sd));
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/* Read LENGTH bytes of the simulated program's memory and store in BUF.
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Result is number of bytes read, or zero if error. */
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int sim_read PARAMS ((SIM_DESC sd, SIM_ADDR mem, unsigned char *buf, int length));
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/* Store LENGTH bytes from BUF in the simulated program's memory.
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Result is number of bytes write, or zero if error. */
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int sim_write PARAMS ((SIM_DESC sd, SIM_ADDR mem, unsigned char *buf, int length));
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/* Fetch register REGNO and store the raw value in BUF. */
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void sim_fetch_register PARAMS ((SIM_DESC sd, int regno, unsigned char *buf));
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/* Store register REGNO from BUF (in raw format). */
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void sim_store_register PARAMS ((SIM_DESC sd, int regno, unsigned char *buf));
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/* Print some interesting information about the simulator.
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VERBOSE is non-zero for the wordy version. */
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void sim_info PARAMS ((SIM_DESC sd, int verbose));
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/* Fetch why the program stopped.
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SIGRC will contain either the argument to exit() or the signal number. */
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enum sim_stop { sim_exited, sim_stopped, sim_signalled };
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void sim_stop_reason PARAMS ((SIM_DESC sd, enum sim_stop *reason, int *sigrc));
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/* Run (or resume) the program. */
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void sim_resume PARAMS ((SIM_DESC sd, int step, int siggnal));
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/* Passthru for other commands that the simulator might support.
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If SD is NULL, the command is to be interpreted as refering to
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the global state, however the simulator defines that. */
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void sim_do_command PARAMS ((SIM_DESC sd, char *cmd));
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/* Provide simulator with a standard host_callback_struct.
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If SD is NULL, the command is to be interpreted as refering to
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the global state, however the simulator defines that. */
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void sim_set_callbacks PARAMS ((SIM_DESC sd, struct host_callback_struct *));
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#endif /* !defined (REMOTE_SIM_H) */
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