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[/] [openrisc/] [trunk/] [gnu-src/] [gdb-7.2/] [sim/] [ppc/] [psim.h] - Blame information for rev 357

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1 330 jeremybenn
/*  This file is part of the program psim.
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    Copyright (C) 1994-1996, Andrew Cagney <cagney@highland.com.au>
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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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    */
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#ifndef _PSIM_H_
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#define _PSIM_H_
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#include "basics.h"
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/* the system object */
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/* typedef struct _psim psim; */
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/* typedef struct _device device; */
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/* when the `system' stops, find out why.  FIXME - at this point this
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   is really a bit puzzling.  After all, how can there be a status
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   when there several processors involved */
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typedef struct _psim_status {
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  int cpu_nr;
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  stop_reason reason;
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  int signal;
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  unsigned_word program_counter;
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} psim_status;
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/* create an initial device tree and then populate it using
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   information obtained from either the command line or a file */
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extern device *psim_tree
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(void);
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extern char **psim_options
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(device *root,
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 char **argv);
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extern void psim_command
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(device *root,
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 char **argv);
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extern void psim_merge_device_file
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(device *root,
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 const char *file_name);
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extern void psim_usage
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(int verbose, int help);
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/* create a new simulator from the device tree */
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extern psim *psim_create
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(const char *file_name,
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 device *root);
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/* Given the created simulator (re) initialize it */
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extern void psim_init
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(psim *system);
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extern void psim_stack
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(psim *system,
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 char **argv,
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 char **envp);
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/* Run/stop the system */
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extern void psim_step
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(psim *system);
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extern void psim_run
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(psim *system);
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extern void psim_restart
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(psim *system,
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 int cpu_nr);
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extern void psim_set_halt_and_restart
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(psim *system,
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 void *halt_jmp_buf,
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 void *restart_jmp_buf);
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extern void psim_clear_halt_and_restart
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(psim *system);
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extern void psim_stop
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(psim *system);
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extern void psim_halt
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(psim *system,
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 int cpu_nr,
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 stop_reason reason,
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 int signal);
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extern int psim_last_cpu
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(psim *system);
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extern int psim_nr_cpus
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(psim *system);
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extern psim_status psim_get_status
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(psim *system);
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/* reveal the internals of the simulation.  Grant access to the
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   processor (cpu) device tree (device) and events (event_queue). */
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extern cpu *psim_cpu
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(psim *system,
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 int cpu_nr);
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extern device *psim_device
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(psim *system,
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 const char *path);
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extern event_queue *psim_event_queue
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(psim *system);
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/* Manipulate the state (registers or memory) of a processor within
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   the system.  In the case of memory, the read/write is performed
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   using the specified processors address translation tables.
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   Where applicable, WHICH_CPU == -1 indicates all processors and
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   WHICH_CPU == <nr_cpus> indicates the `current' processor.
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   The register functions return the size of the register, or 0 if the
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   register's name is not recognized.  */
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extern int psim_read_register
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(psim *system,
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 int which_cpu,
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 void *host_ordered_buf,
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 const char reg[],
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 transfer_mode mode);
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extern int psim_write_register
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(psim *system,
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 int which_cpu,
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 const void *buf,
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 const char reg[],
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 transfer_mode mode);
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extern unsigned psim_read_memory
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(psim *system,
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 int which_cpu,
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 void *buf,
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 unsigned_word vaddr,
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 unsigned len);
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extern unsigned psim_write_memory
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(psim *system,
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 int which_cpu,
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 const void *buf,
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 unsigned_word vaddr,
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 unsigned len,
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 int violate_read_only_section);
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extern void psim_print_info
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(psim *system,
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 int verbose);
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#endif /* _PSIM_H_ */

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