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/*
 * ppc-stub.c:  KGDB support for the Linux kernel.
 *
 * adapted from arch/sparc/kernel/sparc-stub.c for the PowerPC
 * some stuff borrowed from Paul Mackerras' xmon
 * Copyright (C) 1998 Michael AK Tesch (tesch@cs.wisc.edu)
 *
 * Modifications to run under Linux
 * Copyright (C) 1995 David S. Miller (davem@caip.rutgers.edu)
 *
 * This file originally came from the gdb sources, and the
 * copyright notices have been retained below.
 */

/****************************************************************************

		THIS SOFTWARE IS NOT COPYRIGHTED

   HP offers the following for use in the public domain.  HP makes no
   warranty with regard to the software or its performance and the
   user accepts the software "AS IS" with all faults.

   HP DISCLAIMS ANY WARRANTIES, EXPRESS OR IMPLIED, WITH REGARD
   TO THIS SOFTWARE INCLUDING BUT NOT LIMITED TO THE WARRANTIES
   OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.

****************************************************************************/

/****************************************************************************
 *  Header: remcom.c,v 1.34 91/03/09 12:29:49 glenne Exp $
 *
 *  Module name: remcom.c $
 *  Revision: 1.34 $
 *  Date: 91/03/09 12:29:49 $
 *  Contributor:     Lake Stevens Instrument Division$
 *
 *  Description:     low level support for gdb debugger. $
 *
 *  Considerations:  only works on target hardware $
 *
 *  Written by:      Glenn Engel $
 *  ModuleState:     Experimental $
 *
 *  NOTES:           See Below $
 *
 *  Modified for SPARC by Stu Grossman, Cygnus Support.
 *
 *  This code has been extensively tested on the Fujitsu SPARClite demo board.
 *
 *  To enable debugger support, two things need to happen.  One, a
 *  call to set_debug_traps() is necessary in order to allow any breakpoints
 *  or error conditions to be properly intercepted and reported to gdb.
 *  Two, a breakpoint needs to be generated to begin communication.  This
 *  is most easily accomplished by a call to breakpoint().  Breakpoint()
 *  simulates a breakpoint by executing a trap #1.
 *
 *************
 *
 *    The following gdb commands are supported:
 *
 * command          function		          Return value
 *
 *    g             return the value of the CPU registers  hex data or ENN
 *    G             set the value of the CPU registers     OK or ENN
 *    qOffsets      Get section offsets.  Reply is Text=xxx;Data=yyy;Bss=zzz
 *
 *    mAA..AA,LLLL  Read LLLL bytes at address AA..AA      hex data or ENN
 *    MAA..AA,LLLL: Write LLLL bytes at address AA.AA      OK or ENN
 *
 *    c             Resume at current address              SNN   ( signal NN)
 *    cAA..AA       Continue at address AA..AA             SNN
 *
 *    s             Step one instruction                   SNN
 *    sAA..AA       Step one instruction from AA..AA       SNN
 *
 *    k             kill
 *
 *    ?             What was the last sigval ?             SNN   (signal NN)
 *
 *    bBB..BB	    Set baud rate to BB..BB		   OK or BNN, then sets
 *							   baud rate
 *
 * All commands and responses are sent with a packet which includes a
 * checksum.  A packet consists of
 *
 * $<packet info>#<checksum>.
 *
 * where
 * <packet info> :: <characters representing the command or response>
 * <checksum>    :: <two hex digits computed as modulo 256 sum of <packetinfo>>
 *
 * When a packet is received, it is first acknowledged with either '+' or '-'.
 * '+' indicates a successful transfer.  '-' indicates a failed transfer.
 *
 * Example:
 *
 * Host:                  Reply:
 * $m0,10#2a               +$00010203040506070809101112131415#42
 *
 ****************************************************************************/

#include <linux/config.h>
#include <linux/kernel.h>
#include <linux/string.h>
#include <linux/mm.h>
#include <linux/smp.h>
#include <linux/smp_lock.h>
#include <linux/init.h>
#include <linux/sysrq.h>

#include <asm/cacheflush.h>
#include <asm/system.h>
#include <asm/signal.h>
#include <asm/kgdb.h>
#include <asm/pgtable.h>
#include <asm/ptrace.h>

void breakinst(void);

/*
 * BUFMAX defines the maximum number of characters in inbound/outbound buffers
 * at least NUMREGBYTES*2 are needed for register packets
 */
#define BUFMAX 2048
static char remcomInBuffer[BUFMAX];
static char remcomOutBuffer[BUFMAX];

static int initialized;
static int kgdb_active;
static int kgdb_started;
static u_int fault_jmp_buf[100];
static int kdebug;


static const char hexchars[]="0123456789abcdef";

/* Place where we save old trap entries for restoration - sparc*/
/* struct tt_entry kgdb_savettable[256]; */
/* typedef void (*trapfunc_t)(void); */

static void kgdb_fault_handler(struct pt_regs *regs);
static int handle_exception (struct pt_regs *regs);

#if 0
/* Install an exception handler for kgdb */
static void exceptionHandler(int tnum, unsigned int *tfunc)
{
	/* We are dorking with a live trap table, all irqs off */
}
#endif

int
kgdb_setjmp(long *buf)
{
	asm ("mflr 0; stw 0,0(%0);"
	     "stw 1,4(%0); stw 2,8(%0);"
	     "mfcr 0; stw 0,12(%0);"
	     "stmw 13,16(%0)"
	     : : "r" (buf));
	/* XXX should save fp regs as well */
	return 0;
}
void
kgdb_longjmp(long *buf, int val)
{
	if (val == 0)
		val = 1;
	asm ("lmw 13,16(%0);"
	     "lwz 0,12(%0); mtcrf 0x38,0;"
	     "lwz 0,0(%0); lwz 1,4(%0); lwz 2,8(%0);"
	     "mtlr 0; mr 3,%1"
	     : : "r" (buf), "r" (val));
}
/* Convert ch from a hex digit to an int */
static int
hex(unsigned char ch)
{
	if (ch >= 'a' && ch <= 'f')
		return ch-'a'+10;
	if (ch >= '0' && ch <= '9')
		return ch-'0';
	if (ch >= 'A' && ch <= 'F')
		return ch-'A'+10;
	return -1;
}

/* Convert the memory pointed to by mem into hex, placing result in buf.
 * Return a pointer to the last char put in buf (null), in case of mem fault,
 * return 0.
 */
static unsigned char *
mem2hex(const char *mem, char *buf, int count)
{
	unsigned char ch;
	unsigned short tmp_s;
	unsigned long tmp_l;

	if (kgdb_setjmp((long*)fault_jmp_buf) == 0) {
		debugger_fault_handler = kgdb_fault_handler;

		/* Accessing 16 bit and 32 bit objects in a single
		** load instruction is required to avoid bad side
		** effects for some IO registers.
		*/

		if ((count == 2) && (((long)mem & 1) == 0)) {
			tmp_s = *(unsigned short *)mem;
			mem += 2;
			*buf++ = hexchars[(tmp_s >> 12) & 0xf];
			*buf++ = hexchars[(tmp_s >> 8) & 0xf];
			*buf++ = hexchars[(tmp_s >> 4) & 0xf];
			*buf++ = hexchars[tmp_s & 0xf];

		} else if ((count == 4) && (((long)mem & 3) == 0)) {
			tmp_l = *(unsigned int *)mem;
			mem += 4;
			*buf++ = hexchars[(tmp_l >> 28) & 0xf];
			*buf++ = hexchars[(tmp_l >> 24) & 0xf];
			*buf++ = hexchars[(tmp_l >> 20) & 0xf];
			*buf++ = hexchars[(tmp_l >> 16) & 0xf];
			*buf++ = hexchars[(tmp_l >> 12) & 0xf];
			*buf++ = hexchars[(tmp_l >> 8) & 0xf];
			*buf++ = hexchars[(tmp_l >> 4) & 0xf];
			*buf++ = hexchars[tmp_l & 0xf];

		} else {
			while (