prom_init.c 78.6 KB
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/*
 * Procedures for interfacing to Open Firmware.
 *
 * Paul Mackerras	August 1996.
 * Copyright (C) 1996-2005 Paul Mackerras.
 * 
 *  Adapted for 64bit PowerPC by Dave Engebretsen and Peter Bergner.
 *    {engebret|bergner}@us.ibm.com 
 *
 *      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 the Free Software Foundation; either version
 *      2 of the License, or (at your option) any later version.
 */

#undef DEBUG_PROM

#include <stdarg.h>
#include <linux/kernel.h>
#include <linux/string.h>
#include <linux/init.h>
#include <linux/threads.h>
#include <linux/spinlock.h>
#include <linux/types.h>
#include <linux/pci.h>
#include <linux/proc_fs.h>
#include <linux/stringify.h>
#include <linux/delay.h>
#include <linux/initrd.h>
#include <linux/bitops.h>
#include <asm/prom.h>
#include <asm/rtas.h>
#include <asm/page.h>
#include <asm/processor.h>
#include <asm/irq.h>
#include <asm/io.h>
#include <asm/smp.h>
#include <asm/mmu.h>
#include <asm/pgtable.h>
#include <asm/pci.h>
#include <asm/iommu.h>
#include <asm/btext.h>
#include <asm/sections.h>
#include <asm/machdep.h>
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#include <asm/opal.h>
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#include <linux/linux_logo.h>

/*
 * Eventually bump that one up
 */
#define DEVTREE_CHUNK_SIZE	0x100000

/*
 * This is the size of the local memory reserve map that gets copied
 * into the boot params passed to the kernel. That size is totally
 * flexible as the kernel just reads the list until it encounters an
 * entry with size 0, so it can be changed without breaking binary
 * compatibility
 */
#define MEM_RESERVE_MAP_SIZE	8

/*
 * prom_init() is called very early on, before the kernel text
 * and data have been mapped to KERNELBASE.  At this point the code
 * is running at whatever address it has been loaded at.
 * On ppc32 we compile with -mrelocatable, which means that references
 * to extern and static variables get relocated automatically.
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 * ppc64 objects are always relocatable, we just need to relocate the
 * TOC.
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 *
 * Because OF may have mapped I/O devices into the area starting at
 * KERNELBASE, particularly on CHRP machines, we can't safely call
 * OF once the kernel has been mapped to KERNELBASE.  Therefore all
 * OF calls must be done within prom_init().
 *
 * ADDR is used in calls to call_prom.  The 4th and following
 * arguments to call_prom should be 32-bit values.
 * On ppc64, 64 bit values are truncated to 32 bits (and
 * fortunately don't get interpreted as two arguments).
 */
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#define ADDR(x)		(u32)(unsigned long)(x)

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#ifdef CONFIG_PPC64
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#define OF_WORKAROUNDS	0
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#else
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#define OF_WORKAROUNDS	of_workarounds
int of_workarounds;
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#endif

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#define OF_WA_CLAIM	1	/* do phys/virt claim separately, then map */
#define OF_WA_LONGTRAIL	2	/* work around longtrail bugs */

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#define PROM_BUG() do {						\
        prom_printf("kernel BUG at %s line 0x%x!\n",		\
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		    __FILE__, __LINE__);			\
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        __asm__ __volatile__(".long " BUG_ILLEGAL_INSTR);	\
} while (0)

#ifdef DEBUG_PROM
#define prom_debug(x...)	prom_printf(x)
#else
#define prom_debug(x...)
#endif


typedef u32 prom_arg_t;

struct prom_args {
        u32 service;
        u32 nargs;
        u32 nret;
        prom_arg_t args[10];
};

struct prom_t {
	ihandle root;
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	phandle chosen;
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	int cpu;
	ihandle stdout;
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	ihandle mmumap;
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	ihandle memory;
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};

struct mem_map_entry {
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	u64	base;
	u64	size;
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};

typedef u32 cell_t;

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extern void __start(unsigned long r3, unsigned long r4, unsigned long r5,
		    unsigned long r6, unsigned long r7, unsigned long r8,
		    unsigned long r9);
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#ifdef CONFIG_PPC64
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extern int enter_prom(struct prom_args *args, unsigned long entry);
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#else
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static inline int enter_prom(struct prom_args *args, unsigned long entry)
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{
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	return ((int (*)(struct prom_args *))entry)(args);
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}
#endif

extern void copy_and_flush(unsigned long dest, unsigned long src,
			   unsigned long size, unsigned long offset);

/* prom structure */
static struct prom_t __initdata prom;

static unsigned long prom_entry __initdata;

#define PROM_SCRATCH_SIZE 256

static char __initdata of_stdout_device[256];
static char __initdata prom_scratch[PROM_SCRATCH_SIZE];

static unsigned long __initdata dt_header_start;
static unsigned long __initdata dt_struct_start, dt_struct_end;
static unsigned long __initdata dt_string_start, dt_string_end;

static unsigned long __initdata prom_initrd_start, prom_initrd_end;

#ifdef CONFIG_PPC64
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static int __initdata prom_iommu_force_on;
static int __initdata prom_iommu_off;
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static unsigned long __initdata prom_tce_alloc_start;
static unsigned long __initdata prom_tce_alloc_end;
#endif

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/* Platforms codes are now obsolete in the kernel. Now only used within this
 * file and ultimately gone too. Feel free to change them if you need, they
 * are not shared with anything outside of this file anymore
 */
#define PLATFORM_PSERIES	0x0100
#define PLATFORM_PSERIES_LPAR	0x0101
#define PLATFORM_LPAR		0x0001
#define PLATFORM_POWERMAC	0x0400
#define PLATFORM_GENERIC	0x0500
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#define PLATFORM_OPAL		0x0600
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static int __initdata of_platform;

static char __initdata prom_cmd_line[COMMAND_LINE_SIZE];

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static unsigned long __initdata prom_memory_limit;

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static unsigned long __initdata alloc_top;
static unsigned long __initdata alloc_top_high;
static unsigned long __initdata alloc_bottom;
static unsigned long __initdata rmo_top;
static unsigned long __initdata ram_top;

static struct mem_map_entry __initdata mem_reserve_map[MEM_RESERVE_MAP_SIZE];
static int __initdata mem_reserve_cnt;

static cell_t __initdata regbuf[1024];


/*
 * Error results ... some OF calls will return "-1" on error, some
 * will return 0, some will return either. To simplify, here are
 * macros to use with any ihandle or phandle return value to check if
 * it is valid
 */

#define PROM_ERROR		(-1u)
#define PHANDLE_VALID(p)	((p) != 0 && (p) != PROM_ERROR)
#define IHANDLE_VALID(i)	((i) != 0 && (i) != PROM_ERROR)


/* This is the one and *ONLY* place where we actually call open
 * firmware.
 */

static int __init call_prom(const char *service, int nargs, int nret, ...)
{
	int i;
	struct prom_args args;
	va_list list;

	args.service = ADDR(service);
	args.nargs = nargs;
	args.nret = nret;

	va_start(list, nret);
	for (i = 0; i < nargs; i++)
		args.args[i] = va_arg(list, prom_arg_t);
	va_end(list);

	for (i = 0; i < nret; i++)
		args.args[nargs+i] = 0;

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	if (enter_prom(&args, prom_entry) < 0)
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		return PROM_ERROR;
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	return (nret > 0) ? args.args[nargs] : 0;
}

static int __init call_prom_ret(const char *service, int nargs, int nret,
				prom_arg_t *rets, ...)
{
	int i;
	struct prom_args args;
	va_list list;

	args.service = ADDR(service);
	args.nargs = nargs;
	args.nret = nret;

	va_start(list, rets);
	for (i = 0; i < nargs; i++)
		args.args[i] = va_arg(list, prom_arg_t);
	va_end(list);

	for (i = 0; i < nret; i++)
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		args.args[nargs+i] = 0;
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	if (enter_prom(&args, prom_entry) < 0)
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		return PROM_ERROR;
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	if (rets != NULL)
		for (i = 1; i < nret; ++i)
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			rets[i-1] = args.args[nargs+i];
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	return (nret > 0) ? args.args[nargs] : 0;
}


static void __init prom_print(const char *msg)
{
	const char *p, *q;

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	if (prom.stdout == 0)
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		return;

	for (p = msg; *p != 0; p = q) {
		for (q = p; *q != 0 && *q != '\n'; ++q)
			;
		if (q > p)
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			call_prom("write", 3, 1, prom.stdout, p, q - p);
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		if (*q == 0)
			break;
		++q;
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		call_prom("write", 3, 1, prom.stdout, ADDR("\r\n"), 2);
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	}
}


static void __init prom_print_hex(unsigned long val)
{
	int i, nibbles = sizeof(val)*2;
	char buf[sizeof(val)*2+1];

	for (i = nibbles-1;  i >= 0;  i--) {
		buf[i] = (val & 0xf) + '0';
		if (buf[i] > '9')
			buf[i] += ('a'-'0'-10);
		val >>= 4;
	}
	buf[nibbles] = '\0';
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	call_prom("write", 3, 1, prom.stdout, buf, nibbles);
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}

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/* max number of decimal digits in an unsigned long */
#define UL_DIGITS 21
static void __init prom_print_dec(unsigned long val)
{
	int i, size;
	char buf[UL_DIGITS+1];

	for (i = UL_DIGITS-1; i >= 0;  i--) {
		buf[i] = (val % 10) + '0';
		val = val/10;
		if (val == 0)
			break;
	}
	/* shift stuff down */
	size = UL_DIGITS - i;
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	call_prom("write", 3, 1, prom.stdout, buf+i, size);
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}
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static void __init prom_printf(const char *format, ...)
{
	const char *p, *q, *s;
	va_list args;
	unsigned long v;
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	long vs;
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	va_start(args, format);
	for (p = format; *p != 0; p = q) {
		for (q = p; *q != 0 && *q != '\n' && *q != '%'; ++q)
			;
		if (q > p)
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			call_prom("write", 3, 1, prom.stdout, p, q - p);
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		if (*q == 0)
			break;
		if (*q == '\n') {
			++q;
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			call_prom("write", 3, 1, prom.stdout,
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				  ADDR("\r\n"), 2);
			continue;
		}
		++q;
		if (*q == 0)
			break;
		switch (*q) {
		case 's':
			++q;
			s = va_arg(args, const char *);
			prom_print(s);
			break;
		case 'x':
			++q;
			v = va_arg(args, unsigned long);
			prom_print_hex(v);
			break;
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		case 'd':
			++q;
			vs = va_arg(args, int);
			if (vs < 0) {
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				prom_print("-");
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				vs = -vs;
			}
			prom_print_dec(vs);
			break;
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		case 'l':
			++q;
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			if (*q == 0)
				break;
			else if (*q == 'x') {
				++q;
				v = va_arg(args, unsigned long);
				prom_print_hex(v);
			} else if (*q == 'u') { /* '%lu' */
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				++q;
				v = va_arg(args, unsigned long);
				prom_print_dec(v);
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			} else if (*q == 'd') { /* %ld */
				++q;
				vs = va_arg(args, long);
				if (vs < 0) {
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					prom_print("-");
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					vs = -vs;
				}
				prom_print_dec(vs);
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			}
			break;
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		}
	}
}


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static unsigned int __init prom_claim(unsigned long virt, unsigned long size,
				unsigned long align)
{

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	if (align == 0 && (OF_WORKAROUNDS & OF_WA_CLAIM)) {
		/*
		 * Old OF requires we claim physical and virtual separately
		 * and then map explicitly (assuming virtual mode)
		 */
		int ret;
		prom_arg_t result;

		ret = call_prom_ret("call-method", 5, 2, &result,
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				    ADDR("claim"), prom.memory,
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				    align, size, virt);
		if (ret != 0 || result == -1)
			return -1;
		ret = call_prom_ret("call-method", 5, 2, &result,
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				    ADDR("claim"), prom.mmumap,
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				    align, size, virt);
		if (ret != 0) {
			call_prom("call-method", 4, 1, ADDR("release"),
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				  prom.memory, size, virt);
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			return -1;
		}
		/* the 0x12 is M (coherence) + PP == read/write */
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		call_prom("call-method", 6, 1,
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			  ADDR("map"), prom.mmumap, 0x12, size, virt, virt);
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		return virt;
	}
	return call_prom("claim", 3, 1, (prom_arg_t)virt, (prom_arg_t)size,
			 (prom_arg_t)align);
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}

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static void __init __attribute__((noreturn)) prom_panic(const char *reason)
{
	prom_print(reason);
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	/* Do not call exit because it clears the screen on pmac
	 * it also causes some sort of double-fault on early pmacs */
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	if (of_platform == PLATFORM_POWERMAC)
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		asm("trap\n");

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	/* ToDo: should put up an SRC here on pSeries */
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	call_prom("exit", 0, 0);

	for (;;)			/* should never get here */
		;
}


static int __init prom_next_node(phandle *nodep)
{
	phandle node;

	if ((node = *nodep) != 0
	    && (*nodep = call_prom("child", 1, 1, node)) != 0)
		return 1;
	if ((*nodep = call_prom("peer", 1, 1, node)) != 0)
		return 1;
	for (;;) {
		if ((node = call_prom("parent", 1, 1, node)) == 0)
			return 0;
		if ((*nodep = call_prom("peer", 1, 1, node)) != 0)
			return 1;
	}
}

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static int inline prom_getprop(phandle node, const char *pname,
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			       void *value, size_t valuelen)
{
	return call_prom("getprop", 4, 1, node, ADDR(pname),
			 (u32)(unsigned long) value, (u32) valuelen);
}

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static int inline prom_getproplen(phandle node, const char *pname)
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{
	return call_prom("getproplen", 2, 1, node, ADDR(pname));
}

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static void add_string(char **str, const char *q)
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{
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	char *p = *str;

	while (*q)
		*p++ = *q++;
	*p++ = ' ';
	*str = p;
}

static char *tohex(unsigned int x)
{
	static char digits[] = "0123456789abcdef";
	static char result[9];
	int i;

	result[8] = 0;
	i = 8;
	do {
		--i;
		result[i] = digits[x & 0xf];
		x >>= 4;
	} while (x != 0 && i > 0);
	return &result[i];
}

static int __init prom_setprop(phandle node, const char *nodename,
			       const char *pname, void *value, size_t valuelen)
{
	char cmd[256], *p;

	if (!(OF_WORKAROUNDS & OF_WA_LONGTRAIL))
		return call_prom("setprop", 4, 1, node, ADDR(pname),
				 (u32)(unsigned long) value, (u32) valuelen);

	/* gah... setprop doesn't work on longtrail, have to use interpret */
	p = cmd;
	add_string(&p, "dev");
	add_string(&p, nodename);
	add_string(&p, tohex((u32)(unsigned long) value));
	add_string(&p, tohex(valuelen));
	add_string(&p, tohex(ADDR(pname)));
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	add_string(&p, tohex(strlen(pname)));
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	add_string(&p, "property");
	*p = 0;
	return call_prom("interpret", 1, 1, (u32)(unsigned long) cmd);
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}

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/* We can't use the standard versions because of relocation headaches. */
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#define isxdigit(c)	(('0' <= (c) && (c) <= '9') \
			 || ('a' <= (c) && (c) <= 'f') \
			 || ('A' <= (c) && (c) <= 'F'))

#define isdigit(c)	('0' <= (c) && (c) <= '9')
#define islower(c)	('a' <= (c) && (c) <= 'z')
#define toupper(c)	(islower(c) ? ((c) - 'a' + 'A') : (c))

unsigned long prom_strtoul(const char *cp, const char **endp)
{
	unsigned long result = 0, base = 10, value;

	if (*cp == '0') {
		base = 8;
		cp++;
		if (toupper(*cp) == 'X') {
			cp++;
			base = 16;
		}
	}

	while (isxdigit(*cp) &&
	       (value = isdigit(*cp) ? *cp - '0' : toupper(*cp) - 'A' + 10) < base) {
		result = result * base + value;
		cp++;
	}

	if (endp)
		*endp = cp;

	return result;
}

unsigned long prom_memparse(const char *ptr, const char **retptr)
{
	unsigned long ret = prom_strtoul(ptr, retptr);
	int shift = 0;

	/*
	 * We can't use a switch here because GCC *may* generate a
	 * jump table which won't work, because we're not running at
	 * the address we're linked at.
	 */
	if ('G' == **retptr || 'g' == **retptr)
		shift = 30;

	if ('M' == **retptr || 'm' == **retptr)
		shift = 20;

	if ('K' == **retptr || 'k' == **retptr)
		shift = 10;

	if (shift) {
		ret <<= shift;
		(*retptr)++;
	}

	return ret;
}

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/*
 * Early parsing of the command line passed to the kernel, used for
 * "mem=x" and the options that affect the iommu
 */
static void __init early_cmdline_parse(void)
{
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	const char *opt;
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	char *p;
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	int l = 0;

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	prom_cmd_line[0] = 0;
	p = prom_cmd_line;
	if ((long)prom.chosen > 0)
		l = prom_getprop(prom.chosen, "bootargs", p, COMMAND_LINE_SIZE-1);
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#ifdef CONFIG_CMDLINE
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	if (l <= 0 || p[0] == '\0') /* dbl check */
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		strlcpy(prom_cmd_line,
			CONFIG_CMDLINE, sizeof(prom_cmd_line));
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#endif /* CONFIG_CMDLINE */
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	prom_printf("command line: %s\n", prom_cmd_line);
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#ifdef CONFIG_PPC64
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	opt = strstr(prom_cmd_line, "iommu=");
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	if (opt) {
		prom_printf("iommu opt is: %s\n", opt);
		opt += 6;
		while (*opt && *opt == ' ')
			opt++;
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		if (!strncmp(opt, "off", 3))
			prom_iommu_off = 1;
		else if (!strncmp(opt, "force", 5))
			prom_iommu_force_on = 1;
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	}
#endif
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	opt = strstr(prom_cmd_line, "mem=");
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	if (opt) {
		opt += 4;
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		prom_memory_limit = prom_memparse(opt, (const char **)&opt);
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#ifdef CONFIG_PPC64
		/* Align to 16 MB == size of ppc64 large page */
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		prom_memory_limit = ALIGN(prom_memory_limit, 0x1000000);
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#endif
	}
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}

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#if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV)
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/*
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 * The architecture vector has an array of PVR mask/value pairs,
 * followed by # option vectors - 1, followed by the option vectors.
 *
 * See prom.h for the definition of the bits specified in the
 * architecture vector.
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 *
 * Because the description vector contains a mix of byte and word
 * values, we declare it as an unsigned char array, and use this
 * macro to put word values in.
 */
#define W(x)	((x) >> 24) & 0xff, ((x) >> 16) & 0xff, \
		((x) >> 8) & 0xff, (x) & 0xff

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unsigned char ibm_architecture_vec[] = {
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	W(0xfffe0000), W(0x003a0000),	/* POWER5/POWER5+ */
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	W(0xffff0000), W(0x003e0000),	/* POWER6 */
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	W(0xffff0000), W(0x003f0000),	/* POWER7 */
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	W(0xffff0000), W(0x004b0000),	/* POWER8 */
	W(0xffffffff), W(0x0f000004),	/* all 2.07-compliant */
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	W(0xffffffff), W(0x0f000003),	/* all 2.06-compliant */
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	W(0xffffffff), W(0x0f000002),	/* all 2.05-compliant */
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	W(0xfffffffe), W(0x0f000001),	/* all 2.04-compliant and earlier */
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	6 - 1,				/* 6 option vectors */
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	/* option vector 1: processor architectures supported */
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	3 - 2,				/* length */
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	0,				/* don't ignore, don't halt */
	OV1_PPC_2_00 | OV1_PPC_2_01 | OV1_PPC_2_02 | OV1_PPC_2_03 |
658
	OV1_PPC_2_04 | OV1_PPC_2_05 | OV1_PPC_2_06 | OV1_PPC_2_07,
659 660

	/* option vector 2: Open Firmware options supported */
661
	34 - 2,				/* length */
662 663 664 665 666 667 668
	OV2_REAL_MODE,
	0, 0,
	W(0xffffffff),			/* real_base */
	W(0xffffffff),			/* real_size */
	W(0xffffffff),			/* virt_base */
	W(0xffffffff),			/* virt_size */
	W(0xffffffff),			/* load_base */
669
	W(256),				/* 256MB min RMA */
670 671 672 673 674
	W(0xffffffff),			/* full client load */
	0,				/* min RMA percentage of total RAM */
	48,				/* max log_2(hash table size) */

	/* option vector 3: processor options supported */
675
	3 - 2,				/* length */
676
	0,				/* don't ignore, don't halt */
677
	OV3_FP | OV3_VMX | OV3_DFP,
678 679

	/* option vector 4: IBM PAPR implementation */
680
	3 - 2,				/* length */
681
	0,				/* don't halt */
682
	OV4_MIN_ENT_CAP,		/* minimum VP entitled capacity */
683 684

	/* option vector 5: PAPR/OF options */
685
	19 - 2,				/* length */
686
	0,				/* don't ignore, don't halt */
687 688 689 690 691 692 693 694
	OV5_FEAT(OV5_LPAR) | OV5_FEAT(OV5_SPLPAR) | OV5_FEAT(OV5_LARGE_PAGES) |
	OV5_FEAT(OV5_DRCONF_MEMORY) | OV5_FEAT(OV5_DONATE_DEDICATE_CPU) |
#ifdef CONFIG_PCI_MSI
	/* PCIe/MSI support.  Without MSI full PCIe is not supported */
	OV5_FEAT(OV5_MSI),
#else
	0,
#endif
695
	0,
696 697 698 699 700 701
#ifdef CONFIG_PPC_SMLPAR
	OV5_FEAT(OV5_CMO) | OV5_FEAT(OV5_XCMO),
#else
	0,
#endif
	OV5_FEAT(OV5_TYPE1_AFFINITY),
702 703 704
	0,
	0,
	0,
705 706 707 708
	/* WARNING: The offset of the "number of cores" field below
	 * must match by the macro below. Update the definition if
	 * the structure layout changes.
	 */
709
#define IBM_ARCH_VEC_NRCORES_OFFSET	117
710
	W(NR_CPUS),			/* number of cores supported */
711 712 713 714
	0,
	0,
	0,
	0,
715 716 717
	OV5_FEAT(OV5_PFO_HW_RNG) | OV5_FEAT(OV5_PFO_HW_ENCR) |
	OV5_FEAT(OV5_PFO_HW_842),
	OV5_FEAT(OV5_SUB_PROCESSORS),
718 719 720 721 722 723
	/* option vector 6: IBM PAPR hints */
	4 - 2,				/* length */
	0,
	0,
	OV6_LINUX,

724 725 726
};

/* Old method - ELF header with PT_NOTE sections */
727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759
static struct fake_elf {
	Elf32_Ehdr	elfhdr;
	Elf32_Phdr	phdr[2];
	struct chrpnote {
		u32	namesz;
		u32	descsz;
		u32	type;
		char	name[8];	/* "PowerPC" */
		struct chrpdesc {
			u32	real_mode;
			u32	real_base;
			u32	real_size;
			u32	virt_base;
			u32	virt_size;
			u32	load_base;
		} chrpdesc;
	} chrpnote;
	struct rpanote {
		u32	namesz;
		u32	descsz;
		u32	type;
		char	name[24];	/* "IBM,RPA-Client-Config" */
		struct rpadesc {
			u32	lpar_affinity;
			u32	min_rmo_size;
			u32	min_rmo_percent;
			u32	max_pft_size;
			u32	splpar;
			u32	min_load;
			u32	new_mem_def;
			u32	ignore_me;
		} rpadesc;
	} rpanote;
760
} fake_elf = {
761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801
	.elfhdr = {
		.e_ident = { 0x7f, 'E', 'L', 'F',
			     ELFCLASS32, ELFDATA2MSB, EV_CURRENT },
		.e_type = ET_EXEC,	/* yeah right */
		.e_machine = EM_PPC,
		.e_version = EV_CURRENT,
		.e_phoff = offsetof(struct fake_elf, phdr),
		.e_phentsize = sizeof(Elf32_Phdr),
		.e_phnum = 2
	},
	.phdr = {
		[0] = {
			.p_type = PT_NOTE,
			.p_offset = offsetof(struct fake_elf, chrpnote),
			.p_filesz = sizeof(struct chrpnote)
		}, [1] = {
			.p_type = PT_NOTE,
			.p_offset = offsetof(struct fake_elf, rpanote),
			.p_filesz = sizeof(struct rpanote)
		}
	},
	.chrpnote = {
		.namesz = sizeof("PowerPC"),
		.descsz = sizeof(struct chrpdesc),
		.type = 0x1275,
		.name = "PowerPC",
		.chrpdesc = {
			.real_mode = ~0U,	/* ~0 means "don't care" */
			.real_base = ~0U,
			.real_size = ~0U,
			.virt_base = ~0U,
			.virt_size = ~0U,
			.load_base = ~0U
		},
	},
	.rpanote = {
		.namesz = sizeof("IBM,RPA-Client-Config"),
		.descsz = sizeof(struct rpadesc),
		.type = 0x12759999,
		.name = "IBM,RPA-Client-Config",
		.rpadesc = {
802 803
			.lpar_affinity = 0,
			.min_rmo_size = 64,	/* in megabytes */
804
			.min_rmo_percent = 0,
805
			.max_pft_size = 48,	/* 2^48 bytes max PFT size */
806 807
			.splpar = 1,
			.min_load = ~0U,
808
			.new_mem_def = 0
809 810 811 812
		}
	}
};

813 814 815 816 817 818 819 820 821 822 823
static int __init prom_count_smt_threads(void)
{
	phandle node;
	char type[64];
	unsigned int plen;

	/* Pick up th first CPU node we can find */
	for (node = 0; prom_next_node(&node); ) {
		type[0] = 0;
		prom_getprop(node, "device_type", type, sizeof(type));

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Anton Blanchard 已提交
824
		if (strcmp(type, "cpu"))
825 826 827 828 829 830 831 832 833 834
			continue;
		/*
		 * There is an entry for each smt thread, each entry being
		 * 4 bytes long.  All cpus should have the same number of
		 * smt threads, so return after finding the first.
		 */
		plen = prom_getproplen(node, "ibm,ppc-interrupt-server#s");
		if (plen == PROM_ERROR)
			break;
		plen >>= 2;
835
		prom_debug("Found %lu smt threads per core\n", (unsigned long)plen);
836 837 838

		/* Sanity check */
		if (plen < 1 || plen > 64) {
839
			prom_printf("Threads per core %lu out of bounds, assuming 1\n",
840 841 842 843 844 845 846 847 848 849 850 851
				    (unsigned long)plen);
			return 1;
		}
		return plen;
	}
	prom_debug("No threads found, assuming 1 per core\n");

	return 1;

}


852 853
static void __init prom_send_capabilities(void)
{
854 855
	ihandle elfloader, root;
	prom_arg_t ret;
856
	u32 *cores;
857 858 859

	root = call_prom("open", 1, 1, ADDR("/"));
	if (root != 0) {
860 861 862 863 864 865
		/* We need to tell the FW about the number of cores we support.
		 *
		 * To do that, we count the number of threads on the first core
		 * (we assume this is the same for all cores) and use it to
		 * divide NR_CPUS.
		 */
866
		cores = (u32 *)&ibm_architecture_vec[IBM_ARCH_VEC_NRCORES_OFFSET];
867 868
		if (*cores != NR_CPUS) {
			prom_printf("WARNING ! "
869
				    "ibm_architecture_vec structure inconsistent: %lu!\n",
870 871
				    *cores);
		} else {
872
			*cores = DIV_ROUND_UP(NR_CPUS, prom_count_smt_threads());
873 874
			prom_printf("Max number of cores passed to firmware: %lu (NR_CPUS = %lu)\n",
				    *cores, NR_CPUS);
875 876
		}

877
		/* try calling the ibm,client-architecture-support method */
878
		prom_printf("Calling ibm,client-architecture-support...");
879 880
		if (call_prom_ret("call-method", 3, 2, &ret,
				  ADDR("ibm,client-architecture-support"),
881
				  root,
882 883 884
				  ADDR(ibm_architecture_vec)) == 0) {
			/* the call exists... */
			if (ret)
885
				prom_printf("\nWARNING: ibm,client-architecture"
886 887
					    "-support call FAILED!\n");
			call_prom("close", 1, 0, root);
888
			prom_printf(" done\n");
889 890 891
			return;
		}
		call_prom("close", 1, 0, root);
892
		prom_printf(" not implemented\n");
893
	}
894

895
	/* no ibm,client-architecture-support call, try the old way */
896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941
	elfloader = call_prom("open", 1, 1, ADDR("/packages/elf-loader"));
	if (elfloader == 0) {
		prom_printf("couldn't open /packages/elf-loader\n");
		return;
	}
	call_prom("call-method", 3, 1, ADDR("process-elf-header"),
			elfloader, ADDR(&fake_elf));
	call_prom("close", 1, 0, elfloader);
}
#endif

/*
 * Memory allocation strategy... our layout is normally:
 *
 *  at 14Mb or more we have vmlinux, then a gap and initrd.  In some
 *  rare cases, initrd might end up being before the kernel though.
 *  We assume this won't override the final kernel at 0, we have no
 *  provision to handle that in this version, but it should hopefully
 *  never happen.
 *
 *  alloc_top is set to the top of RMO, eventually shrink down if the
 *  TCEs overlap
 *
 *  alloc_bottom is set to the top of kernel/initrd
 *
 *  from there, allocations are done this way : rtas is allocated
 *  topmost, and the device-tree is allocated from the bottom. We try
 *  to grow the device-tree allocation as we progress. If we can't,
 *  then we fail, we don't currently have a facility to restart
 *  elsewhere, but that shouldn't be necessary.
 *
 *  Note that calls to reserve_mem have to be done explicitly, memory
 *  allocated with either alloc_up or alloc_down isn't automatically
 *  reserved.
 */


/*
 * Allocates memory in the RMO upward from the kernel/initrd
 *
 * When align is 0, this is a special case, it means to allocate in place
 * at the current location of alloc_bottom or fail (that is basically
 * extending the previous allocation). Used for the device-tree flattening
 */
static unsigned long __init alloc_up(unsigned long size, unsigned long align)
{
A
Anton Blanchard 已提交
942
	unsigned long base = alloc_bottom;
943 944
	unsigned long addr = 0;

945 946
	if (align)
		base = _ALIGN_UP(base, align);
947
	prom_debug("alloc_up(%x, %x)\n", size, align);
A
Anton Blanchard 已提交
948
	if (ram_top == 0)
949 950 951
		prom_panic("alloc_up() called with mem not initialized\n");

	if (align)
A
Anton Blanchard 已提交
952
		base = _ALIGN_UP(alloc_bottom, align);
953
	else
A
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954
		base = alloc_bottom;
955

A
Anton Blanchard 已提交
956
	for(; (base + size) <= alloc_top; 
957 958 959
	    base = _ALIGN_UP(base + 0x100000, align)) {
		prom_debug("    trying: 0x%x\n\r", base);
		addr = (unsigned long)prom_claim(base, size, 0);
960
		if (addr != PROM_ERROR && addr != 0)
961 962 963 964 965 966 967
			break;
		addr = 0;
		if (align == 0)
			break;
	}
	if (addr == 0)
		return 0;
A
Anton Blanchard 已提交
968
	alloc_bottom = addr + size;
969 970

	prom_debug(" -> %x\n", addr);
A
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971 972 973 974 975
	prom_debug("  alloc_bottom : %x\n", alloc_bottom);
	prom_debug("  alloc_top    : %x\n", alloc_top);
	prom_debug("  alloc_top_hi : %x\n", alloc_top_high);
	prom_debug("  rmo_top      : %x\n", rmo_top);
	prom_debug("  ram_top      : %x\n", ram_top);
976 977 978 979 980 981 982 983 984 985 986 987 988 989 990

	return addr;
}

/*
 * Allocates memory downward, either from top of RMO, or if highmem
 * is set, from the top of RAM.  Note that this one doesn't handle
 * failures.  It does claim memory if highmem is not set.
 */
static unsigned long __init alloc_down(unsigned long size, unsigned long align,
				       int highmem)
{
	unsigned long base, addr = 0;

	prom_debug("alloc_down(%x, %x, %s)\n", size, align,
A
Anton Blanchard 已提交
991 992
		   highmem ? "(high)" : "(low)");
	if (ram_top == 0)
993 994 995 996
		prom_panic("alloc_down() called with mem not initialized\n");

	if (highmem) {
		/* Carve out storage for the TCE table. */
A
Anton Blanchard 已提交
997 998
		addr = _ALIGN_DOWN(alloc_top_high - size, align);
		if (addr <= alloc_bottom)
999 1000 1001 1002 1003
			return 0;
		/* Will we bump into the RMO ? If yes, check out that we
		 * didn't overlap existing allocations there, if we did,
		 * we are dead, we must be the first in town !
		 */
A
Anton Blanchard 已提交
1004
		if (addr < rmo_top) {
1005
			/* Good, we are first */
A
Anton Blanchard 已提交
1006 1007
			if (alloc_top == rmo_top)
				alloc_top = rmo_top = addr;
1008 1009 1010
			else
				return 0;
		}
A
Anton Blanchard 已提交
1011
		alloc_top_high = addr;
1012 1013 1014
		goto bail;
	}

A
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1015 1016
	base = _ALIGN_DOWN(alloc_top - size, align);
	for (; base > alloc_bottom;
1017 1018 1019
	     base = _ALIGN_DOWN(base - 0x100000, align))  {
		prom_debug("    trying: 0x%x\n\r", base);
		addr = (unsigned long)prom_claim(base, size, 0);
1020
		if (addr != PROM_ERROR && addr != 0)
1021 1022 1023 1024 1025
			break;
		addr = 0;
	}
	if (addr == 0)
		return 0;
A
Anton Blanchard 已提交
1026
	alloc_top = addr;
1027 1028 1029

 bail:
	prom_debug(" -> %x\n", addr);
A
Anton Blanchard 已提交
1030 1031 1032 1033 1034
	prom_debug("  alloc_bottom : %x\n", alloc_bottom);
	prom_debug("  alloc_top    : %x\n", alloc_top);
	prom_debug("  alloc_top_hi : %x\n", alloc_top_high);
	prom_debug("  rmo_top      : %x\n", rmo_top);
	prom_debug("  ram_top      : %x\n", ram_top);
1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053

	return addr;
}

/*
 * Parse a "reg" cell
 */
static unsigned long __init prom_next_cell(int s, cell_t **cellp)
{
	cell_t *p = *cellp;
	unsigned long r = 0;

	/* Ignore more than 2 cells */
	while (s > sizeof(unsigned long) / 4) {
		p++;
		s--;
	}
	r = *p++;
#ifdef CONFIG_PPC64
1054
	if (s > 1) {
1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
		r <<= 32;
		r |= *(p++);
	}
#endif
	*cellp = p;
	return r;
}

/*
 * Very dumb function for adding to the memory reserve list, but
 * we don't need anything smarter at this point
 *
 * XXX Eventually check for collisions.  They should NEVER happen.
 * If problems seem to show up, it would be a good start to track
 * them down.
 */
1071
static void __init reserve_mem(u64 base, u64 size)
1072
{
1073
	u64 top = base + size;
A
Anton Blanchard 已提交
1074
	unsigned long cnt = mem_reserve_cnt;
1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088

	if (size == 0)
		return;

	/* We need to always keep one empty entry so that we
	 * have our terminator with "size" set to 0 since we are
	 * dumb and just copy this entire array to the boot params
	 */
	base = _ALIGN_DOWN(base, PAGE_SIZE);
	top = _ALIGN_UP(top, PAGE_SIZE);
	size = top - base;

	if (cnt >= (MEM_RESERVE_MAP_SIZE - 1))
		prom_panic("Memory reserve map exhausted !\n");
A
Anton Blanchard 已提交
1089 1090 1091
	mem_reserve_map[cnt].base = base;
	mem_reserve_map[cnt].size = size;
	mem_reserve_cnt = cnt + 1;
1092 1093 1094
}

/*
A
Adrian Bunk 已提交
1095
 * Initialize memory allocation mechanism, parse "memory" nodes and
1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
 * obtain that way the top of memory and RMO to setup out local allocator
 */
static void __init prom_init_mem(void)
{
	phandle node;
	char *path, type[64];
	unsigned int plen;
	cell_t *p, *endp;
	u32 rac, rsc;

	/*
	 * We iterate the memory nodes to find
	 * 1) top of RMO (first node)
	 * 2) top of memory
	 */
	rac = 2;
A
Anton Blanchard 已提交
1112
	prom_getprop(prom.root, "#address-cells", &rac, sizeof(rac));
1113
	rsc = 1;
A
Anton Blanchard 已提交
1114
	prom_getprop(prom.root, "#size-cells", &rsc, sizeof(rsc));
1115 1116 1117 1118
	prom_debug("root_addr_cells: %x\n", (unsigned long) rac);
	prom_debug("root_size_cells: %x\n", (unsigned long) rsc);

	prom_debug("scanning memory:\n");
A
Anton Blanchard 已提交
1119
	path = prom_scratch;
1120 1121 1122 1123 1124

	for (node = 0; prom_next_node(&node); ) {
		type[0] = 0;
		prom_getprop(node, "device_type", type, sizeof(type));

1125 1126 1127 1128 1129 1130 1131
		if (type[0] == 0) {
			/*
			 * CHRP Longtrail machines have no device_type
			 * on the memory node, so check the name instead...
			 */
			prom_getprop(node, "name", type, sizeof(type));
		}
A
Anton Blanchard 已提交
1132
		if (strcmp(type, "memory"))
1133
			continue;
1134

A
Anton Blanchard 已提交
1135
		plen = prom_getprop(node, "reg", regbuf, sizeof(regbuf));
1136 1137 1138 1139
		if (plen > sizeof(regbuf)) {
			prom_printf("memory node too large for buffer !\n");
			plen = sizeof(regbuf);
		}
A
Anton Blanchard 已提交
1140
		p = regbuf;
1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157
		endp = p + (plen / sizeof(cell_t));

#ifdef DEBUG_PROM
		memset(path, 0, PROM_SCRATCH_SIZE);
		call_prom("package-to-path", 3, 1, node, path, PROM_SCRATCH_SIZE-1);
		prom_debug("  node %s :\n", path);
#endif /* DEBUG_PROM */

		while ((endp - p) >= (rac + rsc)) {
			unsigned long base, size;

			base = prom_next_cell(rac, &p);
			size = prom_next_cell(rsc, &p);

			if (size == 0)
				continue;
			prom_debug("    %x %x\n", base, size);
A
Anton Blanchard 已提交
1158 1159 1160 1161
			if (base == 0 && (of_platform & PLATFORM_LPAR))
				rmo_top = size;
			if ((base + size) > ram_top)
				ram_top = base + size;
1162 1163 1164
		}
	}

A
Anton Blanchard 已提交
1165
	alloc_bottom = PAGE_ALIGN((unsigned long)&_end + 0x4000);
1166

1167 1168 1169 1170 1171 1172
	/*
	 * If prom_memory_limit is set we reduce the upper limits *except* for
	 * alloc_top_high. This must be the real top of RAM so we can put
	 * TCE's up there.
	 */

A
Anton Blanchard 已提交
1173
	alloc_top_high = ram_top;
1174

A
Anton Blanchard 已提交
1175 1176
	if (prom_memory_limit) {
		if (prom_memory_limit <= alloc_bottom) {
1177
			prom_printf("Ignoring mem=%x <= alloc_bottom.\n",
A
Anton Blanchard 已提交
1178 1179 1180
				prom_memory_limit);
			prom_memory_limit = 0;
		} else if (prom_memory_limit >= ram_top) {
1181
			prom_printf("Ignoring mem=%x >= ram_top.\n",
A
Anton Blanchard 已提交
1182 1183
				prom_memory_limit);
			prom_memory_limit = 0;
1184
		} else {
A
Anton Blanchard 已提交
1185 1186
			ram_top = prom_memory_limit;
			rmo_top = min(rmo_top, prom_memory_limit);
1187 1188 1189
		}
	}

1190 1191 1192 1193 1194 1195 1196 1197
	/*
	 * Setup our top alloc point, that is top of RMO or top of
	 * segment 0 when running non-LPAR.
	 * Some RS64 machines have buggy firmware where claims up at
	 * 1GB fail.  Cap at 768MB as a workaround.
	 * Since 768MB is plenty of room, and we need to cap to something
	 * reasonable on 32-bit, cap at 768MB on all machines.
	 */
A
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1198 1199 1200 1201 1202
	if (!rmo_top)
		rmo_top = ram_top;
	rmo_top = min(0x30000000ul, rmo_top);
	alloc_top = rmo_top;
	alloc_top_high = ram_top;
1203

1204 1205 1206 1207
	/*
	 * Check if we have an initrd after the kernel but still inside
	 * the RMO.  If we do move our bottom point to after it.
	 */
A
Anton Blanchard 已提交
1208 1209 1210 1211
	if (prom_initrd_start &&
	    prom_initrd_start < rmo_top &&
	    prom_initrd_end > alloc_bottom)
		alloc_bottom = PAGE_ALIGN(prom_initrd_end);
1212

1213
	prom_printf("memory layout at init:\n");
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	prom_printf("  memory_limit : %x (16 MB aligned)\n", prom_memory_limit);
	prom_printf("  alloc_bottom : %x\n", alloc_bottom);
	prom_printf("  alloc_top    : %x\n", alloc_top);
	prom_printf("  alloc_top_hi : %x\n", alloc_top_high);
	prom_printf("  rmo_top      : %x\n", rmo_top);
	prom_printf("  ram_top      : %x\n", ram_top);
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}

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static void __init prom_close_stdin(void)
{
	ihandle val;

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	if (prom_getprop(prom.chosen, "stdin", &val, sizeof(val)) > 0)
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		call_prom("close", 1, 0, val);
}

#ifdef CONFIG_PPC_POWERNV

static u64 __initdata prom_opal_size;
static u64 __initdata prom_opal_align;
static int __initdata prom_rtas_start_cpu;
static u64 __initdata prom_rtas_data;
static u64 __initdata prom_rtas_entry;

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#ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
static u64 __initdata prom_opal_base;
static u64 __initdata prom_opal_entry;
#endif

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/* XXX Don't change this structure without updating opal-takeover.S */
static struct opal_secondary_data {
	s64				ack;	/*  0 */
	u64				go;	/*  8 */
	struct opal_takeover_args	args;	/* 16 */
} opal_secondary_data;

extern char opal_secondary_entry;

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static void __init prom_query_opal(void)
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{
	long rc;

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	/* We must not query for OPAL presence on a machine that
	 * supports TNK takeover (970 blades), as this uses the same
	 * h-call with different arguments and will crash
	 */
	if (PHANDLE_VALID(call_prom("finddevice", 1, 1,
				    ADDR("/tnk-memory-map")))) {
		prom_printf("TNK takeover detected, skipping OPAL check\n");
		return;
	}

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	prom_printf("Querying for OPAL presence... ");
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	rc = opal_query_takeover(&prom_opal_size,
				 &prom_opal_align);
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	prom_debug("(rc = %ld) ", rc);
	if (rc != 0) {
		prom_printf("not there.\n");
		return;
	}
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	of_platform = PLATFORM_OPAL;
1275
	prom_printf(" there !\n");
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	prom_debug("  opal_size  = 0x%lx\n", prom_opal_size);
	prom_debug("  opal_align = 0x%lx\n", prom_opal_align);
	if (prom_opal_align < 0x10000)
		prom_opal_align = 0x10000;
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}

static int prom_rtas_call(int token, int nargs, int nret, int *outputs, ...)
{
	struct rtas_args rtas_args;
	va_list list;
	int i;

	rtas_args.token = token;
	rtas_args.nargs = nargs;
	rtas_args.nret  = nret;
	rtas_args.rets  = (rtas_arg_t *)&(rtas_args.args[nargs]);
	va_start(list, outputs);
	for (i = 0; i < nargs; ++i)
		rtas_args.args[i] = va_arg(list, rtas_arg_t);
	va_end(list);

	for (i = 0; i < nret; ++i)
		rtas_args.rets[i] = 0;

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	opal_enter_rtas(&rtas_args, prom_rtas_data,
			prom_rtas_entry);
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	if (nret > 1 && outputs != NULL)
		for (i = 0; i < nret-1; ++i)
			outputs[i] = rtas_args.rets[i+1];
	return (nret > 0)? rtas_args.rets[0]: 0;
}

static void __init prom_opal_hold_cpus(void)
{
	int i, cnt, cpu, rc;
	long j;
	phandle node;
	char type[64];
	u32 servers[8];
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	void *entry = (unsigned long *)&opal_secondary_entry;
	struct opal_secondary_data *data = &opal_secondary_data;
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	prom_debug("prom_opal_hold_cpus: start...\n");
	prom_debug("    - entry       = 0x%x\n", entry);
	prom_debug("    - data        = 0x%x\n", data);

	data->ack = -1;
	data->go = 0;

	/* look for cpus */
	for (node = 0; prom_next_node(&node); ) {
		type[0] = 0;
		prom_getprop(node, "device_type", type, sizeof(type));
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		if (strcmp(type, "cpu") != 0)
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			continue;

		/* Skip non-configured cpus. */
		if (prom_getprop(node, "status", type, sizeof(type)) > 0)
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			if (strcmp(type, "okay") != 0)
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				continue;

		cnt = prom_getprop(node, "ibm,ppc-interrupt-server#s", servers,
			     sizeof(servers));
		if (cnt == PROM_ERROR)
			break;
		cnt >>= 2;
		for (i = 0; i < cnt; i++) {
			cpu = servers[i];
			prom_debug("CPU %d ... ", cpu);
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			if (cpu == prom.cpu) {
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				prom_debug("booted !\n");
				continue;
			}
			prom_debug("starting ... ");

			/* Init the acknowledge var which will be reset by
			 * the secondary cpu when it awakens from its OF
			 * spinloop.
			 */
			data->ack = -1;
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			rc = prom_rtas_call(prom_rtas_start_cpu, 3, 1,
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					    NULL, cpu, entry, data);
			prom_debug("rtas rc=%d ...", rc);

			for (j = 0; j < 100000000 && data->ack == -1; j++) {
				HMT_low();
				mb();
			}
			HMT_medium();
			if (data->ack != -1)
				prom_debug("done, PIR=0x%x\n", data->ack);
			else
				prom_debug("timeout !\n");
		}
	}
	prom_debug("prom_opal_hold_cpus: end...\n");
}

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static void __init prom_opal_takeover(void)
1376
{
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	struct opal_secondary_data *data = &opal_secondary_data;
1378
	struct opal_takeover_args *args = &data->args;
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	u64 align = prom_opal_align;
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	u64 top_addr, opal_addr;

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	args->k_image	= (u64)_stext;
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	args->k_size	= _end - _stext;
	args->k_entry	= 0;
	args->k_entry2	= 0x60;

	top_addr = _ALIGN_UP(args->k_size, align);

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	if (prom_initrd_start != 0) {
		args->rd_image = prom_initrd_start;
		args->rd_size = prom_initrd_end - args->rd_image;
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		args->rd_loc = top_addr;
		top_addr = _ALIGN_UP(args->rd_loc + args->rd_size, align);
	}

	/* Pickup an address for the HAL. We want to go really high
	 * up to avoid problem with future kexecs. On the other hand
	 * we don't want to be all over the TCEs on P5IOC2 machines
	 * which are going to be up there too. We assume the machine
	 * has plenty of memory, and we ask for the HAL for now to
	 * be just below the 1G point, or above the initrd
	 */
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	opal_addr = _ALIGN_DOWN(0x40000000 - prom_opal_size, align);
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	if (opal_addr < top_addr)
		opal_addr = top_addr;
	args->hal_addr = opal_addr;

1408
	/* Copy the command line to the kernel image */
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	strlcpy(boot_command_line, prom_cmd_line,
1410 1411
		COMMAND_LINE_SIZE);

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	prom_debug("  k_image    = 0x%lx\n", args->k_image);
	prom_debug("  k_size     = 0x%lx\n", args->k_size);
	prom_debug("  k_entry    = 0x%lx\n", args->k_entry);
	prom_debug("  k_entry2   = 0x%lx\n", args->k_entry2);
	prom_debug("  hal_addr   = 0x%lx\n", args->hal_addr);
	prom_debug("  rd_image   = 0x%lx\n", args->rd_image);
	prom_debug("  rd_size    = 0x%lx\n", args->rd_size);
	prom_debug("  rd_loc     = 0x%lx\n", args->rd_loc);
	prom_printf("Performing OPAL takeover,this can take a few minutes..\n");
	prom_close_stdin();
	mb();
	data->go = 1;
	for (;;)
		opal_do_takeover(args);
}
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/*
 * Allocate room for and instantiate OPAL
 */
static void __init prom_instantiate_opal(void)
{
	phandle opal_node;
	ihandle opal_inst;
	u64 base, entry;
	u64 size = 0, align = 0x10000;
	u32 rets[2];

	prom_debug("prom_instantiate_opal: start...\n");

	opal_node = call_prom("finddevice", 1, 1, ADDR("/ibm,opal"));
	prom_debug("opal_node: %x\n", opal_node);
	if (!PHANDLE_VALID(opal_node))
		return;

	prom_getprop(opal_node, "opal-runtime-size", &size, sizeof(size));
	if (size == 0)
		return;
	prom_getprop(opal_node, "opal-runtime-alignment", &align,
		     sizeof(align));

	base = alloc_down(size, align, 0);
	if (base == 0) {
		prom_printf("OPAL allocation failed !\n");
		return;
	}

	opal_inst = call_prom("open", 1, 1, ADDR("/ibm,opal"));
	if (!IHANDLE_VALID(opal_inst)) {
		prom_printf("opening opal package failed (%x)\n", opal_inst);
		return;
	}

	prom_printf("instantiating opal at 0x%x...", base);

	if (call_prom_ret("call-method", 4, 3, rets,
			  ADDR("load-opal-runtime"),
			  opal_inst,
			  base >> 32, base & 0xffffffff) != 0
	    || (rets[0] == 0 && rets[1] == 0)) {
		prom_printf(" failed\n");
		return;
	}
	entry = (((u64)rets[0]) << 32) | rets[1];

	prom_printf(" done\n");

	reserve_mem(base, size);

	prom_debug("opal base     = 0x%x\n", base);
	prom_debug("opal align    = 0x%x\n", align);
	prom_debug("opal entry    = 0x%x\n", entry);
	prom_debug("opal size     = 0x%x\n", (long)size);

	prom_setprop(opal_node, "/ibm,opal", "opal-base-address",
		     &base, sizeof(base));
	prom_setprop(opal_node, "/ibm,opal", "opal-entry-address",
		     &entry, sizeof(entry));

#ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
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	prom_opal_base = base;
	prom_opal_entry = entry;
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#endif
	prom_debug("prom_instantiate_opal: end...\n");
}

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#endif /* CONFIG_PPC_POWERNV */
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/*
 * Allocate room for and instantiate RTAS
 */
static void __init prom_instantiate_rtas(void)
{
	phandle rtas_node;
	ihandle rtas_inst;
	u32 base, entry = 0;
	u32 size = 0;

	prom_debug("prom_instantiate_rtas: start...\n");

	rtas_node = call_prom("finddevice", 1, 1, ADDR("/rtas"));
	prom_debug("rtas_node: %x\n", rtas_node);
	if (!PHANDLE_VALID(rtas_node))
		return;

	prom_getprop(rtas_node, "rtas-size", &size, sizeof(size));
	if (size == 0)
		return;

	base = alloc_down(size, PAGE_SIZE, 0);
1521 1522
	if (base == 0)
		prom_panic("Could not allocate memory for RTAS\n");
1523 1524 1525

	rtas_inst = call_prom("open", 1, 1, ADDR("/rtas"));
	if (!IHANDLE_VALID(rtas_inst)) {
1526
		prom_printf("opening rtas package failed (%x)\n", rtas_inst);
1527 1528 1529
		return;
	}

1530
	prom_printf("instantiating rtas at 0x%x...", base);
1531 1532 1533

	if (call_prom_ret("call-method", 3, 2, &entry,
			  ADDR("instantiate-rtas"),
1534
			  rtas_inst, base) != 0
1535 1536 1537 1538 1539 1540 1541 1542
	    || entry == 0) {
		prom_printf(" failed\n");
		return;
	}
	prom_printf(" done\n");

	reserve_mem(base, size);

1543 1544 1545 1546
	prom_setprop(rtas_node, "/rtas", "linux,rtas-base",
		     &base, sizeof(base));
	prom_setprop(rtas_node, "/rtas", "linux,rtas-entry",
		     &entry, sizeof(entry));
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1548 1549
#ifdef CONFIG_PPC_POWERNV
	/* PowerVN takeover hack */
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	prom_rtas_data = base;
	prom_rtas_entry = entry;
	prom_getprop(rtas_node, "start-cpu", &prom_rtas_start_cpu, 4);
1553
#endif
1554 1555 1556 1557 1558 1559 1560 1561
	prom_debug("rtas base     = 0x%x\n", base);
	prom_debug("rtas entry    = 0x%x\n", entry);
	prom_debug("rtas size     = 0x%x\n", (long)size);

	prom_debug("prom_instantiate_rtas: end...\n");
}

#ifdef CONFIG_PPC64
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/*
 * Allocate room for and instantiate Stored Measurement Log (SML)
 */
static void __init prom_instantiate_sml(void)
{
	phandle ibmvtpm_node;
	ihandle ibmvtpm_inst;
	u32 entry = 0, size = 0;
	u64 base;

	prom_debug("prom_instantiate_sml: start...\n");

	ibmvtpm_node = call_prom("finddevice", 1, 1, ADDR("/ibm,vtpm"));
	prom_debug("ibmvtpm_node: %x\n", ibmvtpm_node);
	if (!PHANDLE_VALID(ibmvtpm_node))
		return;

	ibmvtpm_inst = call_prom("open", 1, 1, ADDR("/ibm,vtpm"));
	if (!IHANDLE_VALID(ibmvtpm_inst)) {
		prom_printf("opening vtpm package failed (%x)\n", ibmvtpm_inst);
		return;
	}

	if (call_prom_ret("call-method", 2, 2, &size,
			  ADDR("sml-get-handover-size"),
			  ibmvtpm_inst) != 0 || size == 0) {
		prom_printf("SML get handover size failed\n");
		return;
	}

	base = alloc_down(size, PAGE_SIZE, 0);
	if (base == 0)
		prom_panic("Could not allocate memory for sml\n");

	prom_printf("instantiating sml at 0x%x...", base);

	if (call_prom_ret("call-method", 4, 2, &entry,
			  ADDR("sml-handover"),
			  ibmvtpm_inst, size, base) != 0 || entry == 0) {
		prom_printf("SML handover failed\n");
		return;
	}
	prom_printf(" done\n");

	reserve_mem(base, size);

	prom_setprop(ibmvtpm_node, "/ibm,vtpm", "linux,sml-base",
		     &base, sizeof(base));
	prom_setprop(ibmvtpm_node, "/ibm,vtpm", "linux,sml-size",
		     &size, sizeof(size));

	prom_debug("sml base     = 0x%x\n", base);
	prom_debug("sml size     = 0x%x\n", (long)size);

	prom_debug("prom_instantiate_sml: end...\n");
}

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/*
 * Allocate room for and initialize TCE tables
 */
static void __init prom_initialize_tce_table(void)
{
	phandle node;
	ihandle phb_node;
	char compatible[64], type[64], model[64];
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	char *path = prom_scratch;
1628 1629 1630 1631 1632 1633
	u64 base, align;
	u32 minalign, minsize;
	u64 tce_entry, *tce_entryp;
	u64 local_alloc_top, local_alloc_bottom;
	u64 i;

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	if (prom_iommu_off)
1635 1636 1637 1638 1639
		return;

	prom_debug("starting prom_initialize_tce_table\n");

	/* Cache current top of allocs so we reserve a single block */
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	local_alloc_top = alloc_top_high;
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	local_alloc_bottom = local_alloc_top;

	/* Search all nodes looking for PHBs. */
	for (node = 0; prom_next_node(&node); ) {
		compatible[0] = 0;
		type[0] = 0;
		model[0] = 0;
		prom_getprop(node, "compatible",
			     compatible, sizeof(compatible));
		prom_getprop(node, "device_type", type, sizeof(type));
		prom_getprop(node, "model", model, sizeof(model));

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		if ((type[0] == 0) || (strstr(type, "pci") == NULL))
1654 1655
			continue;

1656
		/* Keep the old logic intact to avoid regression. */
1657
		if (compatible[0] != 0) {
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			if ((strstr(compatible, "python") == NULL) &&
			    (strstr(compatible, "Speedwagon") == NULL) &&
			    (strstr(compatible, "Winnipeg") == NULL))
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				continue;
		} else if (model[0] != 0) {
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			if ((strstr(model, "ython") == NULL) &&
			    (strstr(model, "peedwagon") == NULL) &&
			    (strstr(model, "innipeg") == NULL))
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				continue;
		}

		if (prom_getprop(node, "tce-table-minalign", &minalign,
				 sizeof(minalign)) == PROM_ERROR)
			minalign = 0;
		if (prom_getprop(node, "tce-table-minsize", &minsize,
				 sizeof(minsize)) == PROM_ERROR)
			minsize = 4UL << 20;

		/*
		 * Even though we read what OF wants, we just set the table
		 * size to 4 MB.  This is enough to map 2GB of PCI DMA space.
		 * By doing this, we avoid the pitfalls of trying to DMA to
		 * MMIO space and the DMA alias hole.
		 *
		 * On POWER4, firmware sets the TCE region by assuming
		 * each TCE table is 8MB. Using this memory for anything
		 * else will impact performance, so we always allocate 8MB.
		 * Anton
		 */
1687
		if (pvr_version_is(PVR_POWER4) || pvr_version_is(PVR_POWER4p))
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			minsize = 8UL << 20;
		else
			minsize = 4UL << 20;

		/* Align to the greater of the align or size */
		align = max(minalign, minsize);
		base = alloc_down(minsize, align, 1);
		if (base == 0)
			prom_panic("ERROR, cannot find space for TCE table.\n");
		if (base < local_alloc_bottom)
			local_alloc_bottom = base;

		/* It seems OF doesn't null-terminate the path :-( */
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		memset(path, 0, PROM_SCRATCH_SIZE);
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		/* Call OF to setup the TCE hardware */
		if (call_prom("package-to-path", 3, 1, node,
			      path, PROM_SCRATCH_SIZE-1) == PROM_ERROR) {
			prom_printf("package-to-path failed\n");
		}

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		/* Save away the TCE table attributes for later use. */
		prom_setprop(node, path, "linux,tce-base", &base, sizeof(base));
		prom_setprop(node, path, "linux,tce-size", &minsize, sizeof(minsize));

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		prom_debug("TCE table: %s\n", path);
		prom_debug("\tnode = 0x%x\n", node);
		prom_debug("\tbase = 0x%x\n", base);
		prom_debug("\tsize = 0x%x\n", minsize);

		/* Initialize the table to have a one-to-one mapping
		 * over the allocated size.
		 */
1720
		tce_entryp = (u64 *)base;
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		for (i = 0; i < (minsize >> 3) ;tce_entryp++, i++) {
			tce_entry = (i << PAGE_SHIFT);
			tce_entry |= 0x3;
			*tce_entryp = tce_entry;
		}

		prom_printf("opening PHB %s", path);
		phb_node = call_prom("open", 1, 1, path);
		if (phb_node == 0)
			prom_printf("... failed\n");
		else
			prom_printf("... done\n");

		call_prom("call-method", 6, 0, ADDR("set-64-bit-addressing"),
			  phb_node, -1, minsize,
			  (u32) base, (u32) (base >> 32));
		call_prom("close", 1, 0, phb_node);
	}

	reserve_mem(local_alloc_bottom, local_alloc_top - local_alloc_bottom);

1742 1743
	/* These are only really needed if there is a memory limit in
	 * effect, but we don't know so export them always. */
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	prom_tce_alloc_start = local_alloc_bottom;
	prom_tce_alloc_end = local_alloc_top;
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	/* Flag the first invalid entry */
	prom_debug("ending prom_initialize_tce_table\n");
}
#endif

/*
 * With CHRP SMP we need to use the OF to start the other processors.
 * We can't wait until smp_boot_cpus (the OF is trashed by then)
 * so we have to put the processors into a holding pattern controlled
 * by the kernel (not OF) before we destroy the OF.
 *
 * This uses a chunk of low memory, puts some holding pattern
 * code there and sends the other processors off to there until
 * smp_boot_cpus tells them to do something.  The holding pattern
 * checks that address until its cpu # is there, when it is that
 * cpu jumps to __secondary_start().  smp_boot_cpus() takes care
 * of setting those values.
 *
 * We also use physical address 0x4 here to tell when a cpu
 * is in its holding pattern code.
 *
 * -- Cort
 */
1770 1771 1772 1773 1774 1775
/*
 * We want to reference the copy of __secondary_hold_* in the
 * 0 - 0x100 address range
 */
#define LOW_ADDR(x)	(((unsigned long) &(x)) & 0xff)

1776 1777 1778 1779 1780 1781 1782
static void __init prom_hold_cpus(void)
{
	unsigned long i;
	unsigned int reg;
	phandle node;
	char type[64];
	unsigned long *spinloop
1783
		= (void *) LOW_ADDR(__secondary_hold_spinloop);
1784
	unsigned long *acknowledge
1785 1786
		= (void *) LOW_ADDR(__secondary_hold_acknowledge);
	unsigned long secondary_hold = LOW_ADDR(__secondary_hold);
1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806

	prom_debug("prom_hold_cpus: start...\n");
	prom_debug("    1) spinloop       = 0x%x\n", (unsigned long)spinloop);
	prom_debug("    1) *spinloop      = 0x%x\n", *spinloop);
	prom_debug("    1) acknowledge    = 0x%x\n",
		   (unsigned long)acknowledge);
	prom_debug("    1) *acknowledge   = 0x%x\n", *acknowledge);
	prom_debug("    1) secondary_hold = 0x%x\n", secondary_hold);

	/* Set the common spinloop variable, so all of the secondary cpus
	 * will block when they are awakened from their OF spinloop.
	 * This must occur for both SMP and non SMP kernels, since OF will
	 * be trashed when we move the kernel.
	 */
	*spinloop = 0;

	/* look for cpus */
	for (node = 0; prom_next_node(&node); ) {
		type[0] = 0;
		prom_getprop(node, "device_type", type, sizeof(type));
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		if (strcmp(type, "cpu") != 0)
1808 1809 1810 1811
			continue;

		/* Skip non-configured cpus. */
		if (prom_getprop(node, "status", type, sizeof(type)) > 0)
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			if (strcmp(type, "okay") != 0)
1813 1814 1815 1816 1817
				continue;

		reg = -1;
		prom_getprop(node, "reg", &reg, sizeof(reg));

1818
		prom_debug("cpu hw idx   = %lu\n", reg);
1819 1820 1821 1822 1823 1824 1825

		/* Init the acknowledge var which will be reset by
		 * the secondary cpu when it awakens from its OF
		 * spinloop.
		 */
		*acknowledge = (unsigned long)-1;

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		if (reg != prom.cpu) {
1827
			/* Primary Thread of non-boot cpu or any thread */
1828
			prom_printf("starting cpu hw idx %lu... ", reg);
1829 1830 1831
			call_prom("start-cpu", 3, 0, node,
				  secondary_hold, reg);

1832 1833
			for (i = 0; (i < 100000000) && 
			     (*acknowledge == ((unsigned long)-1)); i++ )
1834 1835
				mb();

1836
			if (*acknowledge == reg)
1837
				prom_printf("done\n");
1838
			else
1839 1840 1841 1842
				prom_printf("failed: %x\n", *acknowledge);
		}
#ifdef CONFIG_SMP
		else
1843
			prom_printf("boot cpu hw idx %lu\n", reg);
1844 1845 1846 1847 1848 1849 1850 1851 1852 1853
#endif /* CONFIG_SMP */
	}

	prom_debug("prom_hold_cpus: end...\n");
}


static void __init prom_init_client_services(unsigned long pp)
{
	/* Get a handle to the prom entry point before anything else */
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	prom_entry = pp;
1855 1856

	/* get a handle for the stdout device */
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1857 1858
	prom.chosen = call_prom("finddevice", 1, 1, ADDR("/chosen"));
	if (!PHANDLE_VALID(prom.chosen))
1859 1860 1861
		prom_panic("cannot find chosen"); /* msg won't be printed :( */

	/* get device tree root */
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1862 1863
	prom.root = call_prom("finddevice", 1, 1, ADDR("/"));
	if (!PHANDLE_VALID(prom.root))
1864
		prom_panic("cannot find device tree root"); /* msg won't be printed :( */
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1866
	prom.mmumap = 0;
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1867 1868 1869 1870 1871 1872
}

#ifdef CONFIG_PPC32
/*
 * For really old powermacs, we need to map things we claim.
 * For that, we need the ihandle of the mmu.
1873
 * Also, on the longtrail, we need to work around other bugs.
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1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886
 */
static void __init prom_find_mmu(void)
{
	phandle oprom;
	char version[64];

	oprom = call_prom("finddevice", 1, 1, ADDR("/openprom"));
	if (!PHANDLE_VALID(oprom))
		return;
	if (prom_getprop(oprom, "model", version, sizeof(version)) <= 0)
		return;
	version[sizeof(version) - 1] = 0;
	/* XXX might need to add other versions here */
1887 1888 1889 1890 1891 1892
	if (strcmp(version, "Open Firmware, 1.0.5") == 0)
		of_workarounds = OF_WA_CLAIM;
	else if (strncmp(version, "FirmWorks,3.", 12) == 0) {
		of_workarounds = OF_WA_CLAIM | OF_WA_LONGTRAIL;
		call_prom("interpret", 1, 1, "dev /memory 0 to allow-reclaim");
	} else
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		return;
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1894 1895 1896 1897
	prom.memory = call_prom("open", 1, 1, ADDR("/memory"));
	prom_getprop(prom.chosen, "mmu", &prom.mmumap,
		     sizeof(prom.mmumap));
	if (!IHANDLE_VALID(prom.memory) || !IHANDLE_VALID(prom.mmumap))
1898
		of_workarounds &= ~OF_WA_CLAIM;		/* hmmm */
1899
}
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#else
#define prom_find_mmu()
#endif
1903 1904 1905

static void __init prom_init_stdout(void)
{
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	char *path = of_stdout_device;
1907 1908 1909
	char type[16];
	u32 val;

A
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1910
	if (prom_getprop(prom.chosen, "stdout", &val, sizeof(val)) <= 0)
1911 1912
		prom_panic("cannot find stdout");

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1913
	prom.stdout = val;
1914 1915 1916

	/* Get the full OF pathname of the stdout device */
	memset(path, 0, 256);
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1917 1918 1919
	call_prom("instance-to-path", 3, 1, prom.stdout, path, 255);
	val = call_prom("instance-to-package", 1, 1, prom.stdout);
	prom_setprop(prom.chosen, "/chosen", "linux,stdout-package",
1920
		     &val, sizeof(val));
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1921 1922
	prom_printf("OF stdout device is: %s\n", of_stdout_device);
	prom_setprop(prom.chosen, "/chosen", "linux,stdout-path",
1923
		     path, strlen(path) + 1);
1924 1925 1926 1927

	/* If it's a display, note it */
	memset(type, 0, sizeof(type));
	prom_getprop(val, "device_type", type, sizeof(type));
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	if (strcmp(type, "display") == 0)
1929
		prom_setprop(val, path, "linux,boot-display", NULL, 0);
1930 1931 1932 1933 1934 1935
}

static int __init prom_find_machine_type(void)
{
	char compat[256];
	int len, i = 0;
1936
#ifdef CONFIG_PPC64
1937
	phandle rtas;
1938
	int x;
1939
#endif
1940

1941
	/* Look for a PowerMac or a Cell */
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	len = prom_getprop(prom.root, "compatible",
1943 1944 1945 1946 1947 1948 1949 1950
			   compat, sizeof(compat)-1);
	if (len > 0) {
		compat[len] = 0;
		while (i < len) {
			char *p = &compat[i];
			int sl = strlen(p);
			if (sl == 0)
				break;
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			if (strstr(p, "Power Macintosh") ||
			    strstr(p, "MacRISC"))
1953
				return PLATFORM_POWERMAC;
1954 1955 1956 1957 1958
#ifdef CONFIG_PPC64
			/* We must make sure we don't detect the IBM Cell
			 * blades as pSeries due to some firmware issues,
			 * so we do it here.
			 */
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			if (strstr(p, "IBM,CBEA") ||
			    strstr(p, "IBM,CPBW-1.0"))
1961 1962
				return PLATFORM_GENERIC;
#endif /* CONFIG_PPC64 */
1963 1964 1965 1966
			i += sl + 1;
		}
	}
#ifdef CONFIG_PPC64
1967 1968 1969 1970 1971
	/* Try to detect OPAL */
	if (PHANDLE_VALID(call_prom("finddevice", 1, 1, ADDR("/ibm,opal"))))
		return PLATFORM_OPAL;

	/* Try to figure out if it's an IBM pSeries or any other
1972 1973 1974 1975 1976
	 * PAPR compliant platform. We assume it is if :
	 *  - /device_type is "chrp" (please, do NOT use that for future
	 *    non-IBM designs !
	 *  - it has /rtas
	 */
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1977
	len = prom_getprop(prom.root, "device_type",
1978 1979 1980
			   compat, sizeof(compat)-1);
	if (len <= 0)
		return PLATFORM_GENERIC;
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1981
	if (strcmp(compat, "chrp"))
1982 1983
		return PLATFORM_GENERIC;

1984 1985
	/* Default to pSeries. We need to know if we are running LPAR */
	rtas = call_prom("finddevice", 1, 1, ADDR("/rtas"));
1986 1987 1988 1989
	if (!PHANDLE_VALID(rtas))
		return PLATFORM_GENERIC;
	x = prom_getproplen(rtas, "ibm,hypertas-functions");
	if (x != PROM_ERROR) {
1990
		prom_debug("Hypertas detected, assuming LPAR !\n");
1991
		return PLATFORM_PSERIES_LPAR;
1992 1993 1994
	}
	return PLATFORM_PSERIES;
#else
1995
	return PLATFORM_GENERIC;
1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038
#endif
}

static int __init prom_set_color(ihandle ih, int i, int r, int g, int b)
{
	return call_prom("call-method", 6, 1, ADDR("color!"), ih, i, b, g, r);
}

/*
 * If we have a display that we don't know how to drive,
 * we will want to try to execute OF's open method for it
 * later.  However, OF will probably fall over if we do that
 * we've taken over the MMU.
 * So we check whether we will need to open the display,
 * and if so, open it now.
 */
static void __init prom_check_displays(void)
{
	char type[16], *path;
	phandle node;
	ihandle ih;
	int i;

	static unsigned char default_colors[] = {
		0x00, 0x00, 0x00,
		0x00, 0x00, 0xaa,
		0x00, 0xaa, 0x00,
		0x00, 0xaa, 0xaa,
		0xaa, 0x00, 0x00,
		0xaa, 0x00, 0xaa,
		0xaa, 0xaa, 0x00,
		0xaa, 0xaa, 0xaa,
		0x55, 0x55, 0x55,
		0x55, 0x55, 0xff,
		0x55, 0xff, 0x55,
		0x55, 0xff, 0xff,
		0xff, 0x55, 0x55,
		0xff, 0x55, 0xff,
		0xff, 0xff, 0x55,
		0xff, 0xff, 0xff
	};
	const unsigned char *clut;

2039
	prom_debug("Looking for displays\n");
2040 2041 2042
	for (node = 0; prom_next_node(&node); ) {
		memset(type, 0, sizeof(type));
		prom_getprop(node, "device_type", type, sizeof(type));
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		if (strcmp(type, "display") != 0)
2044 2045 2046
			continue;

		/* It seems OF doesn't null-terminate the path :-( */
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2047
		path = prom_scratch;
2048 2049 2050 2051 2052 2053 2054 2055 2056
		memset(path, 0, PROM_SCRATCH_SIZE);

		/*
		 * leave some room at the end of the path for appending extra
		 * arguments
		 */
		if (call_prom("package-to-path", 3, 1, node, path,
			      PROM_SCRATCH_SIZE-10) == PROM_ERROR)
			continue;
2057
		prom_printf("found display   : %s, opening... ", path);
2058 2059 2060 2061 2062 2063 2064 2065 2066
		
		ih = call_prom("open", 1, 1, path);
		if (ih == 0) {
			prom_printf("failed\n");
			continue;
		}

		/* Success */
		prom_printf("done\n");
2067
		prom_setprop(node, path, "linux,opened", NULL, 0);
2068 2069 2070

		/* Setup a usable color table when the appropriate
		 * method is available. Should update this to set-colors */
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2071
		clut = default_colors;
2072
		for (i = 0; i < 16; i++, clut += 3)
2073 2074 2075 2076 2077
			if (prom_set_color(ih, i, clut[0], clut[1],
					   clut[2]) != 0)
				break;

#ifdef CONFIG_LOGO_LINUX_CLUT224
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2078 2079
		clut = PTRRELOC(logo_linux_clut224.clut);
		for (i = 0; i < logo_linux_clut224.clutsize; i++, clut += 3)
2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098
			if (prom_set_color(ih, i + 32, clut[0], clut[1],
					   clut[2]) != 0)
				break;
#endif /* CONFIG_LOGO_LINUX_CLUT224 */
	}
}


/* Return (relocated) pointer to this much memory: moves initrd if reqd. */
static void __init *make_room(unsigned long *mem_start, unsigned long *mem_end,
			      unsigned long needed, unsigned long align)
{
	void *ret;

	*mem_start = _ALIGN(*mem_start, align);
	while ((*mem_start + needed) > *mem_end) {
		unsigned long room, chunk;

		prom_debug("Chunk exhausted, claiming more at %x...\n",
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2099 2100
			   alloc_bottom);
		room = alloc_top - alloc_bottom;
2101 2102 2103
		if (room > DEVTREE_CHUNK_SIZE)
			room = DEVTREE_CHUNK_SIZE;
		if (room < PAGE_SIZE)
2104 2105
			prom_panic("No memory for flatten_device_tree "
				   "(no room)\n");
2106 2107
		chunk = alloc_up(room, 0);
		if (chunk == 0)
2108 2109
			prom_panic("No memory for flatten_device_tree "
				   "(claim failed)\n");
2110
		*mem_end = chunk + room;
2111 2112 2113 2114 2115 2116 2117 2118 2119 2120 2121 2122 2123 2124 2125
	}

	ret = (void *)*mem_start;
	*mem_start += needed;

	return ret;
}

#define dt_push_token(token, mem_start, mem_end) \
	do { *((u32 *)make_room(mem_start, mem_end, 4, 4)) = token; } while(0)

static unsigned long __init dt_find_string(char *str)
{
	char *s, *os;

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2126
	s = os = (char *)dt_string_start;
2127
	s += 4;
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2128
	while (s <  (char *)dt_string_end) {
2129 2130 2131 2132 2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143 2144 2145 2146 2147 2148 2149
		if (strcmp(s, str) == 0)
			return s - os;
		s += strlen(s) + 1;
	}
	return 0;
}

/*
 * The Open Firmware 1275 specification states properties must be 31 bytes or
 * less, however not all firmwares obey this. Make it 64 bytes to be safe.
 */
#define MAX_PROPERTY_NAME 64

static void __init scan_dt_build_strings(phandle node,
					 unsigned long *mem_start,
					 unsigned long *mem_end)
{
	char *prev_name, *namep, *sstart;
	unsigned long soff;
	phandle child;

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2150
	sstart =  (char *)dt_string_start;
2151 2152

	/* get and store all property names */
A
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2153
	prev_name = "";
2154 2155 2156 2157 2158 2159 2160 2161 2162 2163
	for (;;) {
		/* 64 is max len of name including nul. */
		namep = make_room(mem_start, mem_end, MAX_PROPERTY_NAME, 1);
		if (call_prom("nextprop", 3, 1, node, prev_name, namep) != 1) {
			/* No more nodes: unwind alloc */
			*mem_start = (unsigned long)namep;
			break;
		}

 		/* skip "name" */
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2164
 		if (strcmp(namep, "name") == 0) {
2165
 			*mem_start = (unsigned long)namep;
A
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2166
 			prev_name = "name";
2167 2168 2169 2170 2171 2172 2173 2174 2175 2176
 			continue;
 		}
		/* get/create string entry */
		soff = dt_find_string(namep);
		if (soff != 0) {
			*mem_start = (unsigned long)namep;
			namep = sstart + soff;
		} else {
			/* Trim off some if we can */
			*mem_start = (unsigned long)namep + strlen(namep) + 1;
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2177
			dt_string_end = *mem_start;
2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197
		}
		prev_name = namep;
	}

	/* do all our children */
	child = call_prom("child", 1, 1, node);
	while (child != 0) {
		scan_dt_build_strings(child, mem_start, mem_end);
		child = call_prom("peer", 1, 1, child);
	}
}

static void __init scan_dt_build_struct(phandle node, unsigned long *mem_start,
					unsigned long *mem_end)
{
	phandle child;
	char *namep, *prev_name, *sstart, *p, *ep, *lp, *path;
	unsigned long soff;
	unsigned char *valp;
	static char pname[MAX_PROPERTY_NAME];
2198
	int l, room, has_phandle = 0;
2199 2200 2201 2202 2203

	dt_push_token(OF_DT_BEGIN_NODE, mem_start, mem_end);

	/* get the node's full name */
	namep = (char *)*mem_start;
2204 2205 2206 2207
	room = *mem_end - *mem_start;
	if (room > 255)
		room = 255;
	l = call_prom("package-to-path", 3, 1, node, namep, room);
2208 2209
	if (l >= 0) {
		/* Didn't fit?  Get more room. */
2210 2211 2212
		if (l >= room) {
			if (l >= *mem_end - *mem_start)
				namep = make_room(mem_start, mem_end, l+1, 1);
2213 2214 2215 2216 2217
			call_prom("package-to-path", 3, 1, node, namep, l);
		}
		namep[l] = '\0';

		/* Fixup an Apple bug where they have bogus \0 chars in the
P
Paul Mackerras 已提交
2218 2219
		 * middle of the path in some properties, and extract
		 * the unit name (everything after the last '/').
2220
		 */
P
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2221
		for (lp = p = namep, ep = namep + l; p < ep; p++) {
2222
			if (*p == '/')
P
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2223 2224 2225 2226 2227 2228
				lp = namep;
			else if (*p != 0)
				*lp++ = *p;
		}
		*lp = 0;
		*mem_start = _ALIGN((unsigned long)lp + 1, 4);
2229 2230 2231
	}

	/* get it again for debugging */
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2232
	path = prom_scratch;
2233 2234 2235 2236
	memset(path, 0, PROM_SCRATCH_SIZE);
	call_prom("package-to-path", 3, 1, node, path, PROM_SCRATCH_SIZE-1);

	/* get and store all properties */
A
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2237 2238
	prev_name = "";
	sstart = (char *)dt_string_start;
2239 2240
	for (;;) {
		if (call_prom("nextprop", 3, 1, node, prev_name,
A
Anton Blanchard 已提交
2241
			      pname) != 1)
2242 2243 2244
			break;

 		/* skip "name" */
A
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2245 2246
 		if (strcmp(pname, "name") == 0) {
 			prev_name = "name";
2247 2248 2249 2250
 			continue;
 		}

		/* find string offset */
A
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2251
		soff = dt_find_string(pname);
2252 2253
		if (soff == 0) {
			prom_printf("WARNING: Can't find string index for"
A
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2254
				    " <%s>, node %s\n", pname, path);
2255 2256 2257 2258 2259
			break;
		}
		prev_name = sstart + soff;

		/* get length */
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2260
		l = call_prom("getproplen", 2, 1, node, pname);
2261 2262 2263 2264 2265 2266 2267 2268 2269 2270 2271 2272

		/* sanity checks */
		if (l == PROM_ERROR)
			continue;

		/* push property head */
		dt_push_token(OF_DT_PROP, mem_start, mem_end);
		dt_push_token(l, mem_start, mem_end);
		dt_push_token(soff, mem_start, mem_end);

		/* push property content */
		valp = make_room(mem_start, mem_end, l, 4);
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2273
		call_prom("getprop", 4, 1, node, pname, valp, l);
2274
		*mem_start = _ALIGN(*mem_start, 4);
2275

A
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2276
		if (!strcmp(pname, "phandle"))
2277
			has_phandle = 1;
2278 2279
	}

2280 2281 2282 2283
	/* Add a "linux,phandle" property if no "phandle" property already
	 * existed (can happen with OPAL)
	 */
	if (!has_phandle) {
A
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2284
		soff = dt_find_string("linux,phandle");
2285 2286 2287 2288 2289 2290 2291 2292 2293 2294
		if (soff == 0)
			prom_printf("WARNING: Can't find string index for"
				    " <linux-phandle> node %s\n", path);
		else {
			dt_push_token(OF_DT_PROP, mem_start, mem_end);
			dt_push_token(4, mem_start, mem_end);
			dt_push_token(soff, mem_start, mem_end);
			valp = make_room(mem_start, mem_end, 4, 4);
			*(u32 *)valp = node;
		}
2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316
	}

	/* do all our children */
	child = call_prom("child", 1, 1, node);
	while (child != 0) {
		scan_dt_build_struct(child, mem_start, mem_end);
		child = call_prom("peer", 1, 1, child);
	}

	dt_push_token(OF_DT_END_NODE, mem_start, mem_end);
}

static void __init flatten_device_tree(void)
{
	phandle root;
	unsigned long mem_start, mem_end, room;
	struct boot_param_header *hdr;
	char *namep;
	u64 *rsvmap;

	/*
	 * Check how much room we have between alloc top & bottom (+/- a
2317
	 * few pages), crop to 1MB, as this is our "chunk" size
2318
	 */
A
Anton Blanchard 已提交
2319
	room = alloc_top - alloc_bottom - 0x4000;
2320 2321
	if (room > DEVTREE_CHUNK_SIZE)
		room = DEVTREE_CHUNK_SIZE;
A
Anton Blanchard 已提交
2322
	prom_debug("starting device tree allocs at %x\n", alloc_bottom);
2323 2324 2325 2326 2327

	/* Now try to claim that */
	mem_start = (unsigned long)alloc_up(room, PAGE_SIZE);
	if (mem_start == 0)
		prom_panic("Can't allocate initial device-tree chunk\n");
2328
	mem_end = mem_start + room;
2329 2330 2331 2332 2333 2334 2335 2336 2337 2338

	/* Get root of tree */
	root = call_prom("peer", 1, 1, (phandle)0);
	if (root == (phandle)0)
		prom_panic ("couldn't get device tree root\n");

	/* Build header and make room for mem rsv map */ 
	mem_start = _ALIGN(mem_start, 4);
	hdr = make_room(&mem_start, &mem_end,
			sizeof(struct boot_param_header), 4);
A
Anton Blanchard 已提交
2339
	dt_header_start = (unsigned long)hdr;
2340 2341 2342 2343
	rsvmap = make_room(&mem_start, &mem_end, sizeof(mem_reserve_map), 8);

	/* Start of strings */
	mem_start = PAGE_ALIGN(mem_start);
A
Anton Blanchard 已提交
2344
	dt_string_start = mem_start;
2345 2346 2347 2348
	mem_start += 4; /* hole */

	/* Add "linux,phandle" in there, we'll need it */
	namep = make_room(&mem_start, &mem_end, 16, 1);
A
Anton Blanchard 已提交
2349
	strcpy(namep, "linux,phandle");
2350 2351 2352 2353 2354
	mem_start = (unsigned long)namep + strlen(namep) + 1;

	/* Build string array */
	prom_printf("Building dt strings...\n"); 
	scan_dt_build_strings(root, &mem_start, &mem_end);
A
Anton Blanchard 已提交
2355
	dt_string_end = mem_start;
2356 2357 2358

	/* Build structure */
	mem_start = PAGE_ALIGN(mem_start);
A
Anton Blanchard 已提交
2359
	dt_struct_start = mem_start;
2360 2361 2362
	prom_printf("Building dt structure...\n"); 
	scan_dt_build_struct(root, &mem_start, &mem_end);
	dt_push_token(OF_DT_END, &mem_start, &mem_end);
A
Anton Blanchard 已提交
2363
	dt_struct_end = PAGE_ALIGN(mem_start);
2364 2365

	/* Finish header */
A
Anton Blanchard 已提交
2366
	hdr->boot_cpuid_phys = prom.cpu;
2367
	hdr->magic = OF_DT_HEADER;
A
Anton Blanchard 已提交
2368 2369 2370 2371 2372
	hdr->totalsize = dt_struct_end - dt_header_start;
	hdr->off_dt_struct = dt_struct_start - dt_header_start;
	hdr->off_dt_strings = dt_string_start - dt_header_start;
	hdr->dt_strings_size = dt_string_end - dt_string_start;
	hdr->off_mem_rsvmap = ((unsigned long)rsvmap) - dt_header_start;
2373 2374 2375 2376
	hdr->version = OF_DT_VERSION;
	/* Version 16 is not backward compatible */
	hdr->last_comp_version = 0x10;

2377
	/* Copy the reserve map in */
A
Anton Blanchard 已提交
2378
	memcpy(rsvmap, mem_reserve_map, sizeof(mem_reserve_map));
2379 2380 2381 2382 2383

#ifdef DEBUG_PROM
	{
		int i;
		prom_printf("reserved memory map:\n");
A
Anton Blanchard 已提交
2384
		for (i = 0; i < mem_reserve_cnt; i++)
2385
			prom_printf("  %x - %x\n",
A
Anton Blanchard 已提交
2386 2387
				    mem_reserve_map[i].base,
				    mem_reserve_map[i].size);
2388 2389
	}
#endif
2390 2391 2392
	/* Bump mem_reserve_cnt to cause further reservations to fail
	 * since it's too late.
	 */
A
Anton Blanchard 已提交
2393
	mem_reserve_cnt = MEM_RESERVE_MAP_SIZE;
2394 2395

	prom_printf("Device tree strings 0x%x -> 0x%x\n",
A
Anton Blanchard 已提交
2396
		    dt_string_start, dt_string_end);
2397
	prom_printf("Device tree struct  0x%x -> 0x%x\n",
A
Anton Blanchard 已提交
2398
		    dt_struct_start, dt_struct_end);
2399 2400 2401

}

2402 2403 2404 2405
#ifdef CONFIG_PPC_MAPLE
/* PIBS Version 1.05.0000 04/26/2005 has an incorrect /ht/isa/ranges property.
 * The values are bad, and it doesn't even have the right number of cells. */
static void __init fixup_device_tree_maple(void)
2406
{
2407
	phandle isa;
2408
	u32 rloc = 0x01002000; /* IO space; PCI device = 4 */
2409
	u32 isa_ranges[6];
2410 2411 2412 2413 2414 2415 2416 2417 2418
	char *name;

	name = "/ht@0/isa@4";
	isa = call_prom("finddevice", 1, 1, ADDR(name));
	if (!PHANDLE_VALID(isa)) {
		name = "/ht@0/isa@6";
		isa = call_prom("finddevice", 1, 1, ADDR(name));
		rloc = 0x01003000; /* IO space; PCI device = 6 */
	}
2419 2420 2421
	if (!PHANDLE_VALID(isa))
		return;

2422 2423
	if (prom_getproplen(isa, "ranges") != 12)
		return;
2424 2425 2426 2427 2428 2429 2430 2431 2432
	if (prom_getprop(isa, "ranges", isa_ranges, sizeof(isa_ranges))
		== PROM_ERROR)
		return;

	if (isa_ranges[0] != 0x1 ||
		isa_ranges[1] != 0xf4000000 ||
		isa_ranges[2] != 0x00010000)
		return;

2433
	prom_printf("Fixing up bogus ISA range on Maple/Apache...\n");
2434 2435 2436

	isa_ranges[0] = 0x1;
	isa_ranges[1] = 0x0;
2437
	isa_ranges[2] = rloc;
2438 2439 2440
	isa_ranges[3] = 0x0;
	isa_ranges[4] = 0x0;
	isa_ranges[5] = 0x00010000;
2441
	prom_setprop(isa, name, "ranges",
2442 2443
			isa_ranges, sizeof(isa_ranges));
}
2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461

#define CPC925_MC_START		0xf8000000
#define CPC925_MC_LENGTH	0x1000000
/* The values for memory-controller don't have right number of cells */
static void __init fixup_device_tree_maple_memory_controller(void)
{
	phandle mc;
	u32 mc_reg[4];
	char *name = "/hostbridge@f8000000";
	u32 ac, sc;

	mc = call_prom("finddevice", 1, 1, ADDR(name));
	if (!PHANDLE_VALID(mc))
		return;

	if (prom_getproplen(mc, "reg") != 8)
		return;

A
Anton Blanchard 已提交
2462 2463
	prom_getprop(prom.root, "#address-cells", &ac, sizeof(ac));
	prom_getprop(prom.root, "#size-cells", &sc, sizeof(sc));
2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480
	if ((ac != 2) || (sc != 2))
		return;

	if (prom_getprop(mc, "reg", mc_reg, sizeof(mc_reg)) == PROM_ERROR)
		return;

	if (mc_reg[0] != CPC925_MC_START || mc_reg[1] != CPC925_MC_LENGTH)
		return;

	prom_printf("Fixing up bogus hostbridge on Maple...\n");

	mc_reg[0] = 0x0;
	mc_reg[1] = CPC925_MC_START;
	mc_reg[2] = 0x0;
	mc_reg[3] = CPC925_MC_LENGTH;
	prom_setprop(mc, name, "reg", mc_reg, sizeof(mc_reg));
}
2481 2482
#else
#define fixup_device_tree_maple()
2483
#define fixup_device_tree_maple_memory_controller()
2484 2485
#endif

2486
#ifdef CONFIG_PPC_CHRP
2487 2488 2489
/*
 * Pegasos and BriQ lacks the "ranges" property in the isa node
 * Pegasos needs decimal IRQ 14/15, not hexadecimal
2490
 * Pegasos has the IDE configured in legacy mode, but advertised as native
2491
 */
2492 2493
static void __init fixup_device_tree_chrp(void)
{
2494 2495
	phandle ph;
	u32 prop[6];
2496
	u32 rloc = 0x01006000; /* IO space; PCI device = 12 */
2497 2498 2499 2500
	char *name;
	int rc;

	name = "/pci@80000000/isa@c";
2501 2502
	ph = call_prom("finddevice", 1, 1, ADDR(name));
	if (!PHANDLE_VALID(ph)) {
2503
		name = "/pci@ff500000/isa@6";
2504
		ph = call_prom("finddevice", 1, 1, ADDR(name));
2505 2506
		rloc = 0x01003000; /* IO space; PCI device = 6 */
	}
2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517 2518 2519 2520
	if (PHANDLE_VALID(ph)) {
		rc = prom_getproplen(ph, "ranges");
		if (rc == 0 || rc == PROM_ERROR) {
			prom_printf("Fixing up missing ISA range on Pegasos...\n");

			prop[0] = 0x1;
			prop[1] = 0x0;
			prop[2] = rloc;
			prop[3] = 0x0;
			prop[4] = 0x0;
			prop[5] = 0x00010000;
			prom_setprop(ph, name, "ranges", prop, sizeof(prop));
		}
	}
2521

2522 2523 2524 2525 2526 2527
	name = "/pci@80000000/ide@C,1";
	ph = call_prom("finddevice", 1, 1, ADDR(name));
	if (PHANDLE_VALID(ph)) {
		prom_printf("Fixing up IDE interrupt on Pegasos...\n");
		prop[0] = 14;
		prop[1] = 0x0;
2528 2529 2530 2531 2532 2533 2534
		prom_setprop(ph, name, "interrupts", prop, 2*sizeof(u32));
		prom_printf("Fixing up IDE class-code on Pegasos...\n");
		rc = prom_getprop(ph, "class-code", prop, sizeof(u32));
		if (rc == sizeof(u32)) {
			prop[0] &= ~0x5;
			prom_setprop(ph, name, "class-code", prop, sizeof(u32));
		}
2535
	}
2536 2537 2538 2539 2540
}
#else
#define fixup_device_tree_chrp()
#endif

2541
#if defined(CONFIG_PPC64) && defined(CONFIG_PPC_PMAC)
2542 2543
static void __init fixup_device_tree_pmac(void)
{
2544 2545 2546 2547 2548 2549 2550 2551 2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563
	phandle u3, i2c, mpic;
	u32 u3_rev;
	u32 interrupts[2];
	u32 parent;

	/* Some G5s have a missing interrupt definition, fix it up here */
	u3 = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000"));
	if (!PHANDLE_VALID(u3))
		return;
	i2c = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000/i2c@f8001000"));
	if (!PHANDLE_VALID(i2c))
		return;
	mpic = call_prom("finddevice", 1, 1, ADDR("/u3@0,f8000000/mpic@f8040000"));
	if (!PHANDLE_VALID(mpic))
		return;

	/* check if proper rev of u3 */
	if (prom_getprop(u3, "device-rev", &u3_rev, sizeof(u3_rev))
	    == PROM_ERROR)
		return;
2564
	if (u3_rev < 0x35 || u3_rev > 0x39)
2565 2566 2567 2568 2569 2570 2571 2572 2573 2574
		return;
	/* does it need fixup ? */
	if (prom_getproplen(i2c, "interrupts") > 0)
		return;

	prom_printf("fixing up bogus interrupts for u3 i2c...\n");

	/* interrupt on this revision of u3 is number 0 and level */
	interrupts[0] = 0;
	interrupts[1] = 1;
2575 2576
	prom_setprop(i2c, "/u3@0,f8000000/i2c@f8001000", "interrupts",
		     &interrupts, sizeof(interrupts));
2577
	parent = (u32)mpic;
2578 2579
	prom_setprop(i2c, "/u3@0,f8000000/i2c@f8001000", "interrupt-parent",
		     &parent, sizeof(parent));
2580
}
2581 2582 2583
#else
#define fixup_device_tree_pmac()
#endif
2584

2585
#ifdef CONFIG_PPC_EFIKA
2586 2587 2588 2589 2590 2591 2592
/*
 * The MPC5200 FEC driver requires an phy-handle property to tell it how
 * to talk to the phy.  If the phy-handle property is missing, then this
 * function is called to add the appropriate nodes and link it to the
 * ethernet node.
 */
static void __init fixup_device_tree_efika_add_phy(void)
2593 2594 2595
{
	u32 node;
	char prop[64];
2596
	int rv;
2597

2598 2599
	/* Check if /builtin/ethernet exists - bail if it doesn't */
	node = call_prom("finddevice", 1, 1, ADDR("/builtin/ethernet"));
2600 2601 2602
	if (!PHANDLE_VALID(node))
		return;

2603 2604 2605
	/* Check if the phy-handle property exists - bail if it does */
	rv = prom_getprop(node, "phy-handle", prop, sizeof(prop));
	if (!rv)
2606 2607
		return;

2608 2609 2610 2611
	/*
	 * At this point the ethernet device doesn't have a phy described.
	 * Now we need to add the missing phy node and linkage
	 */
2612

2613
	/* Check for an MDIO bus node - if missing then create one */
2614 2615 2616 2617 2618 2619 2620 2621
	node = call_prom("finddevice", 1, 1, ADDR("/builtin/mdio"));
	if (!PHANDLE_VALID(node)) {
		prom_printf("Adding Ethernet MDIO node\n");
		call_prom("interpret", 1, 1,
			" s\" /builtin\" find-device"
			" new-device"
				" 1 encode-int s\" #address-cells\" property"
				" 0 encode-int s\" #size-cells\" property"
2622 2623
				" s\" mdio\" device-name"
				" s\" fsl,mpc5200b-mdio\" encode-string"
2624 2625 2626 2627 2628 2629 2630 2631 2632
				" s\" compatible\" property"
				" 0xf0003000 0x400 reg"
				" 0x2 encode-int"
				" 0x5 encode-int encode+"
				" 0x3 encode-int encode+"
				" s\" interrupts\" property"
			" finish-device");
	};

2633 2634 2635 2636
	/* Check for a PHY device node - if missing then create one and
	 * give it's phandle to the ethernet node */
	node = call_prom("finddevice", 1, 1,
			 ADDR("/builtin/mdio/ethernet-phy"));
2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651
	if (!PHANDLE_VALID(node)) {
		prom_printf("Adding Ethernet PHY node\n");
		call_prom("interpret", 1, 1,
			" s\" /builtin/mdio\" find-device"
			" new-device"
				" s\" ethernet-phy\" device-name"
				" 0x10 encode-int s\" reg\" property"
				" my-self"
				" ihandle>phandle"
			" finish-device"
			" s\" /builtin/ethernet\" find-device"
				" encode-int"
				" s\" phy-handle\" property"
			" device-end");
	}
2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683
}

static void __init fixup_device_tree_efika(void)
{
	int sound_irq[3] = { 2, 2, 0 };
	int bcomm_irq[3*16] = { 3,0,0, 3,1,0, 3,2,0, 3,3,0,
				3,4,0, 3,5,0, 3,6,0, 3,7,0,
				3,8,0, 3,9,0, 3,10,0, 3,11,0,
				3,12,0, 3,13,0, 3,14,0, 3,15,0 };
	u32 node;
	char prop[64];
	int rv, len;

	/* Check if we're really running on a EFIKA */
	node = call_prom("finddevice", 1, 1, ADDR("/"));
	if (!PHANDLE_VALID(node))
		return;

	rv = prom_getprop(node, "model", prop, sizeof(prop));
	if (rv == PROM_ERROR)
		return;
	if (strcmp(prop, "EFIKA5K2"))
		return;

	prom_printf("Applying EFIKA device tree fixups\n");

	/* Claiming to be 'chrp' is death */
	node = call_prom("finddevice", 1, 1, ADDR("/"));
	rv = prom_getprop(node, "device_type", prop, sizeof(prop));
	if (rv != PROM_ERROR && (strcmp(prop, "chrp") == 0))
		prom_setprop(node, "/", "device_type", "efika", sizeof("efika"));

2684 2685 2686 2687 2688 2689 2690 2691
	/* CODEGEN,description is exposed in /proc/cpuinfo so
	   fix that too */
	rv = prom_getprop(node, "CODEGEN,description", prop, sizeof(prop));
	if (rv != PROM_ERROR && (strstr(prop, "CHRP")))
		prom_setprop(node, "/", "CODEGEN,description",
			     "Efika 5200B PowerPC System",
			     sizeof("Efika 5200B PowerPC System"));

2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705 2706 2707 2708 2709 2710 2711 2712
	/* Fixup bestcomm interrupts property */
	node = call_prom("finddevice", 1, 1, ADDR("/builtin/bestcomm"));
	if (PHANDLE_VALID(node)) {
		len = prom_getproplen(node, "interrupts");
		if (len == 12) {
			prom_printf("Fixing bestcomm interrupts property\n");
			prom_setprop(node, "/builtin/bestcom", "interrupts",
				     bcomm_irq, sizeof(bcomm_irq));
		}
	}

	/* Fixup sound interrupts property */
	node = call_prom("finddevice", 1, 1, ADDR("/builtin/sound"));
	if (PHANDLE_VALID(node)) {
		rv = prom_getprop(node, "interrupts", prop, sizeof(prop));
		if (rv == PROM_ERROR) {
			prom_printf("Adding sound interrupts property\n");
			prom_setprop(node, "/builtin/sound", "interrupts",
				     sound_irq, sizeof(sound_irq));
		}
	}
2713

2714 2715
	/* Make sure ethernet phy-handle property exists */
	fixup_device_tree_efika_add_phy();
2716 2717 2718 2719 2720
}
#else
#define fixup_device_tree_efika()
#endif

2721 2722 2723
static void __init fixup_device_tree(void)
{
	fixup_device_tree_maple();
2724
	fixup_device_tree_maple_memory_controller();
2725
	fixup_device_tree_chrp();
2726
	fixup_device_tree_pmac();
2727
	fixup_device_tree_efika();
2728
}
2729 2730 2731 2732 2733 2734 2735

static void __init prom_find_boot_cpu(void)
{
	u32 getprop_rval;
	ihandle prom_cpu;
	phandle cpu_pkg;

A
Anton Blanchard 已提交
2736 2737
	prom.cpu = 0;
	if (prom_getprop(prom.chosen, "cpu", &prom_cpu, sizeof(prom_cpu)) <= 0)
P
Paul Mackerras 已提交
2738
		return;
2739 2740 2741 2742

	cpu_pkg = call_prom("instance-to-package", 1, 1, prom_cpu);

	prom_getprop(cpu_pkg, "reg", &getprop_rval, sizeof(getprop_rval));
A
Anton Blanchard 已提交
2743
	prom.cpu = getprop_rval;
2744

A
Anton Blanchard 已提交
2745
	prom_debug("Booting CPU hw index = %lu\n", prom.cpu);
2746 2747 2748 2749 2750 2751 2752 2753
}

static void __init prom_check_initrd(unsigned long r3, unsigned long r4)
{
#ifdef CONFIG_BLK_DEV_INITRD
	if (r3 && r4 && r4 != 0xdeadbeef) {
		unsigned long val;

A
Anton Blanchard 已提交
2754 2755
		prom_initrd_start = is_kernel_addr(r3) ? __pa(r3) : r3;
		prom_initrd_end = prom_initrd_start + r4;
2756

A
Anton Blanchard 已提交
2757 2758
		val = prom_initrd_start;
		prom_setprop(prom.chosen, "/chosen", "linux,initrd-start",
2759
			     &val, sizeof(val));
A
Anton Blanchard 已提交
2760 2761
		val = prom_initrd_end;
		prom_setprop(prom.chosen, "/chosen", "linux,initrd-end",
2762
			     &val, sizeof(val));
2763

A
Anton Blanchard 已提交
2764 2765
		reserve_mem(prom_initrd_start,
			    prom_initrd_end - prom_initrd_start);
2766

A
Anton Blanchard 已提交
2767 2768
		prom_debug("initrd_start=0x%x\n", prom_initrd_start);
		prom_debug("initrd_end=0x%x\n", prom_initrd_end);
2769 2770 2771 2772
	}
#endif /* CONFIG_BLK_DEV_INITRD */
}

2773 2774 2775 2776 2777 2778 2779 2780 2781 2782
#ifdef CONFIG_PPC64
#ifdef CONFIG_RELOCATABLE
static void reloc_toc(void)
{
}

static void unreloc_toc(void)
{
}
#else
2783
static void __reloc_toc(unsigned long offset, unsigned long nr_entries)
2784 2785
{
	unsigned long i;
2786 2787 2788 2789
	unsigned long *toc_entry;

	/* Get the start of the TOC by using r2 directly. */
	asm volatile("addi %0,2,-0x8000" : "=b" (toc_entry));
2790 2791 2792 2793 2794 2795 2796 2797 2798 2799 2800 2801 2802

	for (i = 0; i < nr_entries; i++) {
		*toc_entry = *toc_entry + offset;
		toc_entry++;
	}
}

static void reloc_toc(void)
{
	unsigned long offset = reloc_offset();
	unsigned long nr_entries =
		(__prom_init_toc_end - __prom_init_toc_start) / sizeof(long);

2803
	__reloc_toc(offset, nr_entries);
2804 2805 2806 2807 2808 2809 2810 2811 2812 2813 2814 2815

	mb();
}

static void unreloc_toc(void)
{
	unsigned long offset = reloc_offset();
	unsigned long nr_entries =
		(__prom_init_toc_end - __prom_init_toc_start) / sizeof(long);

	mb();

2816
	__reloc_toc(-offset, nr_entries);
2817 2818 2819
}
#endif
#endif
2820

2821 2822 2823 2824 2825 2826 2827
/*
 * We enter here early on, when the Open Firmware prom is still
 * handling exceptions and the MMU hash table for us.
 */

unsigned long __init prom_init(unsigned long r3, unsigned long r4,
			       unsigned long pp,
2828 2829
			       unsigned long r6, unsigned long r7,
			       unsigned long kbase)
2830 2831 2832 2833
{	
	unsigned long hdr;

#ifdef CONFIG_PPC32
2834
	unsigned long offset = reloc_offset();
2835
	reloc_got2(offset);
2836 2837
#else
	reloc_toc();
2838 2839 2840 2841 2842
#endif

	/*
	 * First zero the BSS
	 */
A
Anton Blanchard 已提交
2843
	memset(&__bss_start, 0, __bss_stop - __bss_start);
2844 2845 2846 2847 2848 2849 2850 2851

	/*
	 * Init interface to Open Firmware, get some node references,
	 * like /chosen
	 */
	prom_init_client_services(pp);

	/*
2852 2853
	 * See if this OF is old enough that we need to do explicit maps
	 * and other workarounds
2854
	 */
2855
	prom_find_mmu();
2856

P
Paul Mackerras 已提交
2857
	/*
2858
	 * Init prom stdout device
P
Paul Mackerras 已提交
2859
	 */
2860
	prom_init_stdout();
P
Paul Mackerras 已提交
2861

A
Anton Blanchard 已提交
2862
	prom_printf("Preparing to boot %s", linux_banner);
2863

2864 2865 2866 2867
	/*
	 * Get default machine type. At this point, we do not differentiate
	 * between pSeries SMP and pSeries LPAR
	 */
A
Anton Blanchard 已提交
2868 2869
	of_platform = prom_find_machine_type();
	prom_printf("Detected machine type: %x\n", of_platform);
2870

2871
#ifndef CONFIG_NONSTATIC_KERNEL
2872 2873 2874
	/* Bail if this is a kdump kernel. */
	if (PHYSICAL_START > 0)
		prom_panic("Error: You can't boot a kdump kernel from OF!\n");
2875
#endif
2876 2877 2878 2879 2880 2881

	/*
	 * Check for an initrd
	 */
	prom_check_initrd(r3, r4);

2882
#if defined(CONFIG_PPC_PSERIES) || defined(CONFIG_PPC_POWERNV)
2883 2884 2885
	/*
	 * On pSeries, inform the firmware about our capabilities
	 */
A
Anton Blanchard 已提交
2886 2887
	if (of_platform == PLATFORM_PSERIES ||
	    of_platform == PLATFORM_PSERIES_LPAR)
2888 2889 2890 2891
		prom_send_capabilities();
#endif

	/*
2892
	 * Copy the CPU hold code
2893
	 */
A
Anton Blanchard 已提交
2894
	if (of_platform != PLATFORM_POWERMAC)
2895
		copy_and_flush(0, kbase, 0x100, 0);
2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916 2917 2918 2919 2920 2921 2922

	/*
	 * Do early parsing of command line
	 */
	early_cmdline_parse();

	/*
	 * Initialize memory management within prom_init
	 */
	prom_init_mem();

	/*
	 * Determine which cpu is actually running right _now_
	 */
	prom_find_boot_cpu();

	/* 
	 * Initialize display devices
	 */
	prom_check_displays();

#ifdef CONFIG_PPC64
	/*
	 * Initialize IOMMU (TCE tables) on pSeries. Do that before anything else
	 * that uses the allocator, we need to make sure we get the top of memory
	 * available for us here...
	 */
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Anton Blanchard 已提交
2923
	if (of_platform == PLATFORM_PSERIES)
2924 2925 2926 2927
		prom_initialize_tce_table();
#endif

	/*
2928 2929
	 * On non-powermacs, try to instantiate RTAS. PowerMacs don't
	 * have a usable RTAS implementation.
2930
	 */
A
Anton Blanchard 已提交
2931 2932
	if (of_platform != PLATFORM_POWERMAC &&
	    of_platform != PLATFORM_OPAL)
2933
		prom_instantiate_rtas();
2934 2935 2936

#ifdef CONFIG_PPC_POWERNV
	/* Detect HAL and try instanciating it & doing takeover */
A
Anton Blanchard 已提交
2937
	if (of_platform == PLATFORM_PSERIES_LPAR) {
2938
		prom_query_opal();
A
Anton Blanchard 已提交
2939
		if (of_platform == PLATFORM_OPAL) {
2940 2941 2942
			prom_opal_hold_cpus();
			prom_opal_takeover();
		}
A
Anton Blanchard 已提交
2943
	} else if (of_platform == PLATFORM_OPAL)
2944
		prom_instantiate_opal();
2945 2946
#endif

2947 2948 2949 2950 2951
#ifdef CONFIG_PPC64
	/* instantiate sml */
	prom_instantiate_sml();
#endif

2952 2953 2954 2955 2956
	/*
	 * On non-powermacs, put all CPUs in spin-loops.
	 *
	 * PowerMacs use a different mechanism to spin CPUs
	 */
A
Anton Blanchard 已提交
2957 2958
	if (of_platform != PLATFORM_POWERMAC &&
	    of_platform != PLATFORM_OPAL)
2959
		prom_hold_cpus();
2960 2961 2962 2963

	/*
	 * Fill in some infos for use by the kernel later on
	 */
A
Anton Blanchard 已提交
2964 2965 2966
	if (prom_memory_limit)
		prom_setprop(prom.chosen, "/chosen", "linux,memory-limit",
			     &prom_memory_limit,
2967
			     sizeof(prom_memory_limit));
2968
#ifdef CONFIG_PPC64
A
Anton Blanchard 已提交
2969 2970
	if (prom_iommu_off)
		prom_setprop(prom.chosen, "/chosen", "linux,iommu-off",
2971
			     NULL, 0);
2972

A
Anton Blanchard 已提交
2973 2974
	if (prom_iommu_force_on)
		prom_setprop(prom.chosen, "/chosen", "linux,iommu-force-on",
2975
			     NULL, 0);
2976

A
Anton Blanchard 已提交
2977 2978 2979
	if (prom_tce_alloc_start) {
		prom_setprop(prom.chosen, "/chosen", "linux,tce-alloc-start",
			     &prom_tce_alloc_start,
2980
			     sizeof(prom_tce_alloc_start));
A
Anton Blanchard 已提交
2981 2982
		prom_setprop(prom.chosen, "/chosen", "linux,tce-alloc-end",
			     &prom_tce_alloc_end,
2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994
			     sizeof(prom_tce_alloc_end));
	}
#endif

	/*
	 * Fixup any known bugs in the device-tree
	 */
	fixup_device_tree();

	/*
	 * Now finally create the flattened device-tree
	 */
2995
	prom_printf("copying OF device tree...\n");
2996 2997
	flatten_device_tree();

2998 2999 3000
	/*
	 * in case stdin is USB and still active on IBM machines...
	 * Unfortunately quiesce crashes on some powermacs if we have
3001 3002
	 * closed stdin already (in particular the powerbook 101). It
	 * appears that the OPAL version of OFW doesn't like it either.
3003
	 */
A
Anton Blanchard 已提交
3004 3005
	if (of_platform != PLATFORM_POWERMAC &&
	    of_platform != PLATFORM_OPAL)
3006
		prom_close_stdin();
3007 3008 3009 3010 3011

	/*
	 * Call OF "quiesce" method to shut down pending DMA's from
	 * devices etc...
	 */
3012
	prom_printf("Calling quiesce...\n");
3013 3014 3015 3016 3017 3018 3019
	call_prom("quiesce", 0, 0);

	/*
	 * And finally, call the kernel passing it the flattened device
	 * tree and NULL as r5, thus triggering the new entry point which
	 * is common to us and kexec
	 */
A
Anton Blanchard 已提交
3020
	hdr = dt_header_start;
3021 3022

	/* Don't print anything after quiesce under OPAL, it crashes OFW */
A
Anton Blanchard 已提交
3023
	if (of_platform != PLATFORM_OPAL) {
3024 3025 3026
		prom_printf("returning from prom_init\n");
		prom_debug("->dt_header_start=0x%x\n", hdr);
	}
3027 3028 3029

#ifdef CONFIG_PPC32
	reloc_got2(-offset);
3030 3031
#else
	unreloc_toc();
3032 3033
#endif

3034 3035 3036
#ifdef CONFIG_PPC_EARLY_DEBUG_OPAL
	/* OPAL early debug gets the OPAL base & entry in r8 and r9 */
	__start(hdr, kbase, 0, 0, 0,
A
Anton Blanchard 已提交
3037
		prom_opal_base, prom_opal_entry);
3038 3039 3040
#else
	__start(hdr, kbase, 0, 0, 0, 0, 0);
#endif
3041 3042 3043

	return 0;
}