fdt.c 30.1 KB
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/*
 * Functions for working with the Flattened Device Tree data format
 *
 * Copyright 2009 Benjamin Herrenschmidt, IBM Corp
 * benh@kernel.crashing.org
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * version 2 as published by the Free Software Foundation.
 */

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#include <linux/crc32.h>
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#include <linux/kernel.h>
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#include <linux/initrd.h>
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#include <linux/memblock.h>
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#include <linux/mutex.h>
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#include <linux/of.h>
#include <linux/of_fdt.h>
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#include <linux/of_reserved_mem.h>
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#include <linux/sizes.h>
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#include <linux/string.h>
#include <linux/errno.h>
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#include <linux/slab.h>
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#include <linux/libfdt.h>
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#include <linux/debugfs.h>
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#include <linux/serial_core.h>
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#include <linux/sysfs.h>
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#include <asm/setup.h>  /* for COMMAND_LINE_SIZE */
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#include <asm/page.h>

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/*
 * of_fdt_limit_memory - limit the number of regions in the /memory node
 * @limit: maximum entries
 *
 * Adjust the flattened device tree to have at most 'limit' number of
 * memory entries in the /memory node. This function may be called
 * any time after initial_boot_param is set.
 */
void of_fdt_limit_memory(int limit)
{
	int memory;
	int len;
	const void *val;
	int nr_address_cells = OF_ROOT_NODE_ADDR_CELLS_DEFAULT;
	int nr_size_cells = OF_ROOT_NODE_SIZE_CELLS_DEFAULT;
	const uint32_t *addr_prop;
	const uint32_t *size_prop;
	int root_offset;
	int cell_size;

	root_offset = fdt_path_offset(initial_boot_params, "/");
	if (root_offset < 0)
		return;

	addr_prop = fdt_getprop(initial_boot_params, root_offset,
				"#address-cells", NULL);
	if (addr_prop)
		nr_address_cells = fdt32_to_cpu(*addr_prop);

	size_prop = fdt_getprop(initial_boot_params, root_offset,
				"#size-cells", NULL);
	if (size_prop)
		nr_size_cells = fdt32_to_cpu(*size_prop);

	cell_size = sizeof(uint32_t)*(nr_address_cells + nr_size_cells);

	memory = fdt_path_offset(initial_boot_params, "/memory");
	if (memory > 0) {
		val = fdt_getprop(initial_boot_params, memory, "reg", &len);
		if (len > limit*cell_size) {
			len = limit*cell_size;
			pr_debug("Limiting number of entries to %d\n", limit);
			fdt_setprop(initial_boot_params, memory, "reg", val,
					len);
		}
	}
}

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/**
 * of_fdt_is_compatible - Return true if given node from the given blob has
 * compat in its compatible list
 * @blob: A device tree blob
 * @node: node to test
 * @compat: compatible string to compare with compatible list.
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 *
 * On match, returns a non-zero value with smaller values returned for more
 * specific compatible values.
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 */
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int of_fdt_is_compatible(const void *blob,
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		      unsigned long node, const char *compat)
{
	const char *cp;
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	int cplen;
	unsigned long l, score = 0;
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	cp = fdt_getprop(blob, node, "compatible", &cplen);
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	if (cp == NULL)
		return 0;
	while (cplen > 0) {
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		score++;
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		if (of_compat_cmp(cp, compat, strlen(compat)) == 0)
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			return score;
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		l = strlen(cp) + 1;
		cp += l;
		cplen -= l;
	}

	return 0;
}

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/**
 * of_fdt_is_big_endian - Return true if given node needs BE MMIO accesses
 * @blob: A device tree blob
 * @node: node to test
 *
 * Returns true if the node has a "big-endian" property, or if the kernel
 * was compiled for BE *and* the node has a "native-endian" property.
 * Returns false otherwise.
 */
bool of_fdt_is_big_endian(const void *blob, unsigned long node)
{
	if (fdt_getprop(blob, node, "big-endian", NULL))
		return true;
	if (IS_ENABLED(CONFIG_CPU_BIG_ENDIAN) &&
	    fdt_getprop(blob, node, "native-endian", NULL))
		return true;
	return false;
}

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/**
 * of_fdt_match - Return true if node matches a list of compatible values
 */
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int of_fdt_match(const void *blob, unsigned long node,
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                 const char *const *compat)
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{
	unsigned int tmp, score = 0;

	if (!compat)
		return 0;

	while (*compat) {
		tmp = of_fdt_is_compatible(blob, node, *compat);
		if (tmp && (score == 0 || (tmp < score)))
			score = tmp;
		compat++;
	}

	return score;
}

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static void *unflatten_dt_alloc(void **mem, unsigned long size,
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				       unsigned long align)
{
	void *res;

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	*mem = PTR_ALIGN(*mem, align);
	res = *mem;
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	*mem += size;

	return res;
}

/**
 * unflatten_dt_node - Alloc and populate a device_node from the flat tree
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 * @blob: The parent device tree blob
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 * @mem: Memory chunk to use for allocating device nodes and properties
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 * @poffset: pointer to node in flat tree
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 * @dad: Parent struct device_node
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 * @nodepp: The device_node tree created by the call
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 * @fpsize: Size of the node path up at the current depth.
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 * @dryrun: If true, do not allocate device nodes but still calculate needed
 * memory size
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 */
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static void * unflatten_dt_node(const void *blob,
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				void *mem,
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				int *poffset,
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				struct device_node *dad,
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				struct device_node **nodepp,
				unsigned long fpsize,
				bool dryrun)
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{
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	const __be32 *p;
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	struct device_node *np;
	struct property *pp, **prev_pp = NULL;
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	const char *pathp;
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	unsigned int l, allocl;
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	static int depth;
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	int old_depth;
	int offset;
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	int has_name = 0;
	int new_format = 0;

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	pathp = fdt_get_name(blob, *poffset, &l);
	if (!pathp)
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		return mem;
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	allocl = ++l;
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	/* version 0x10 has a more compact unit name here instead of the full
	 * path. we accumulate the full path size using "fpsize", we'll rebuild
	 * it later. We detect this because the first character of the name is
	 * not '/'.
	 */
	if ((*pathp) != '/') {
		new_format = 1;
		if (fpsize == 0) {
			/* root node: special case. fpsize accounts for path
			 * plus terminating zero. root node only has '/', so
			 * fpsize should be 2, but we want to avoid the first
			 * level nodes to have two '/' so we use fpsize 1 here
			 */
			fpsize = 1;
			allocl = 2;
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			l = 1;
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			pathp = "";
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		} else {
			/* account for '/' and path size minus terminal 0
			 * already in 'l'
			 */
			fpsize += l;
			allocl = fpsize;
		}
	}

	np = unflatten_dt_alloc(&mem, sizeof(struct device_node) + allocl,
				__alignof__(struct device_node));
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	if (!dryrun) {
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		char *fn;
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		of_node_init(np);
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		np->full_name = fn = ((char *)np) + sizeof(*np);
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		if (new_format) {
			/* rebuild full path for new format */
			if (dad && dad->parent) {
				strcpy(fn, dad->full_name);
#ifdef DEBUG
				if ((strlen(fn) + l + 1) != allocl) {
					pr_debug("%s: p: %d, l: %d, a: %d\n",
						pathp, (int)strlen(fn),
						l, allocl);
				}
#endif
				fn += strlen(fn);
			}
			*(fn++) = '/';
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		}
		memcpy(fn, pathp, l);

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		prev_pp = &np->properties;
		if (dad != NULL) {
			np->parent = dad;
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			np->sibling = dad->child;
			dad->child = np;
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		}
	}
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	/* process properties */
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	for (offset = fdt_first_property_offset(blob, *poffset);
	     (offset >= 0);
	     (offset = fdt_next_property_offset(blob, offset))) {
		const char *pname;
		u32 sz;

		if (!(p = fdt_getprop_by_offset(blob, offset, &pname, &sz))) {
			offset = -FDT_ERR_INTERNAL;
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			break;
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		}

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		if (pname == NULL) {
			pr_info("Can't find property name in list !\n");
			break;
		}
		if (strcmp(pname, "name") == 0)
			has_name = 1;
		pp = unflatten_dt_alloc(&mem, sizeof(struct property),
					__alignof__(struct property));
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		if (!dryrun) {
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			/* We accept flattened tree phandles either in
			 * ePAPR-style "phandle" properties, or the
			 * legacy "linux,phandle" properties.  If both
			 * appear and have different values, things
			 * will get weird.  Don't do that. */
			if ((strcmp(pname, "phandle") == 0) ||
			    (strcmp(pname, "linux,phandle") == 0)) {
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				if (np->phandle == 0)
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					np->phandle = be32_to_cpup(p);
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			}
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			/* And we process the "ibm,phandle" property
			 * used in pSeries dynamic device tree
			 * stuff */
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			if (strcmp(pname, "ibm,phandle") == 0)
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				np->phandle = be32_to_cpup(p);
			pp->name = (char *)pname;
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			pp->length = sz;
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			pp->value = (__be32 *)p;
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			*prev_pp = pp;
			prev_pp = &pp->next;
		}
	}
	/* with version 0x10 we may not have the name property, recreate
	 * it here from the unit name if absent
	 */
	if (!has_name) {
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		const char *p1 = pathp, *ps = pathp, *pa = NULL;
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		int sz;

		while (*p1) {
			if ((*p1) == '@')
				pa = p1;
			if ((*p1) == '/')
				ps = p1 + 1;
			p1++;
		}
		if (pa < ps)
			pa = p1;
		sz = (pa - ps) + 1;
		pp = unflatten_dt_alloc(&mem, sizeof(struct property) + sz,
					__alignof__(struct property));
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		if (!dryrun) {
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			pp->name = "name";
			pp->length = sz;
			pp->value = pp + 1;
			*prev_pp = pp;
			prev_pp = &pp->next;
			memcpy(pp->value, ps, sz - 1);
			((char *)pp->value)[sz - 1] = 0;
			pr_debug("fixed up name for %s -> %s\n", pathp,
				(char *)pp->value);
		}
	}
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	if (!dryrun) {
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		*prev_pp = NULL;
		np->name = of_get_property(np, "name", NULL);
		np->type = of_get_property(np, "device_type", NULL);

		if (!np->name)
			np->name = "<NULL>";
		if (!np->type)
			np->type = "<NULL>";
	}
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	old_depth = depth;
	*poffset = fdt_next_node(blob, *poffset, &depth);
	if (depth < 0)
		depth = 0;
	while (*poffset > 0 && depth > old_depth)
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		mem = unflatten_dt_node(blob, mem, poffset, np, NULL,
					fpsize, dryrun);
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	if (*poffset < 0 && *poffset != -FDT_ERR_NOTFOUND)
		pr_err("unflatten: error %d processing FDT\n", *poffset);

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	/*
	 * Reverse the child list. Some drivers assumes node order matches .dts
	 * node order
	 */
	if (!dryrun && np->child) {
		struct device_node *child = np->child;
		np->child = NULL;
		while (child) {
			struct device_node *next = child->sibling;
			child->sibling = np->child;
			np->child = child;
			child = next;
		}
	}

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	if (nodepp)
		*nodepp = np;
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	return mem;
}
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/**
 * __unflatten_device_tree - create tree of device_nodes from flat blob
 *
 * unflattens a device-tree, creating the
 * tree of struct device_node. It also fills the "name" and "type"
 * pointers of the nodes so the normal device-tree walking functions
 * can be used.
 * @blob: The blob to expand
 * @mynodes: The device_node tree created by the call
 * @dt_alloc: An allocator that provides a virtual address to memory
 * for the resulting tree
 */
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static void __unflatten_device_tree(const void *blob,
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			     struct device_node **mynodes,
			     void * (*dt_alloc)(u64 size, u64 align))
{
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	unsigned long size;
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	int start;
	void *mem;
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	pr_debug(" -> unflatten_device_tree()\n");

	if (!blob) {
		pr_debug("No device tree pointer\n");
		return;
	}

	pr_debug("Unflattening device tree:\n");
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	pr_debug("magic: %08x\n", fdt_magic(blob));
	pr_debug("size: %08x\n", fdt_totalsize(blob));
	pr_debug("version: %08x\n", fdt_version(blob));
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	if (fdt_check_header(blob)) {
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		pr_err("Invalid device tree blob header\n");
		return;
	}

	/* First pass, scan for size */
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	start = 0;
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	size = (unsigned long)unflatten_dt_node(blob, NULL, &start, NULL, NULL, 0, true);
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	size = ALIGN(size, 4);
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	pr_debug("  size is %lx, allocating...\n", size);

	/* Allocate memory for the expanded device tree */
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	mem = dt_alloc(size + 4, __alignof__(struct device_node));
	memset(mem, 0, size);
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	*(__be32 *)(mem + size) = cpu_to_be32(0xdeadbeef);
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	pr_debug("  unflattening %p...\n", mem);
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	/* Second pass, do actual unflattening */
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	start = 0;
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	unflatten_dt_node(blob, mem, &start, NULL, mynodes, 0, false);
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	if (be32_to_cpup(mem + size) != 0xdeadbeef)
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		pr_warning("End of tree marker overwritten: %08x\n",
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			   be32_to_cpup(mem + size));
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	pr_debug(" <- unflatten_device_tree()\n");
}

static void *kernel_tree_alloc(u64 size, u64 align)
{
	return kzalloc(size, GFP_KERNEL);
}

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static DEFINE_MUTEX(of_fdt_unflatten_mutex);

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/**
 * of_fdt_unflatten_tree - create tree of device_nodes from flat blob
 *
 * unflattens the device-tree passed by the firmware, creating the
 * tree of struct device_node. It also fills the "name" and "type"
 * pointers of the nodes so the normal device-tree walking functions
 * can be used.
 */
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void of_fdt_unflatten_tree(const unsigned long *blob,
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			struct device_node **mynodes)
{
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	mutex_lock(&of_fdt_unflatten_mutex);
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	__unflatten_device_tree(blob, mynodes, &kernel_tree_alloc);
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	mutex_unlock(&of_fdt_unflatten_mutex);
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}
EXPORT_SYMBOL_GPL(of_fdt_unflatten_tree);

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/* Everything below here references initial_boot_params directly. */
int __initdata dt_root_addr_cells;
int __initdata dt_root_size_cells;

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void *initial_boot_params;
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#ifdef CONFIG_OF_EARLY_FLATTREE

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static u32 of_fdt_crc32;

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/**
 * res_mem_reserve_reg() - reserve all memory described in 'reg' property
 */
static int __init __reserved_mem_reserve_reg(unsigned long node,
					     const char *uname)
{
	int t_len = (dt_root_addr_cells + dt_root_size_cells) * sizeof(__be32);
	phys_addr_t base, size;
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	int len;
	const __be32 *prop;
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	int nomap, first = 1;
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	prop = of_get_flat_dt_prop(node, "reg", &len);
	if (!prop)
		return -ENOENT;

	if (len && len % t_len != 0) {
		pr_err("Reserved memory: invalid reg property in '%s', skipping node.\n",
		       uname);
		return -EINVAL;
	}

	nomap = of_get_flat_dt_prop(node, "no-map", NULL) != NULL;

	while (len >= t_len) {
		base = dt_mem_next_cell(dt_root_addr_cells, &prop);
		size = dt_mem_next_cell(dt_root_size_cells, &prop);

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		if (size &&
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		    early_init_dt_reserve_memory_arch(base, size, nomap) == 0)
			pr_debug("Reserved memory: reserved region for node '%s': base %pa, size %ld MiB\n",
				uname, &base, (unsigned long)size / SZ_1M);
		else
			pr_info("Reserved memory: failed to reserve memory for node '%s': base %pa, size %ld MiB\n",
				uname, &base, (unsigned long)size / SZ_1M);

		len -= t_len;
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		if (first) {
			fdt_reserved_mem_save_node(node, uname, base, size);
			first = 0;
		}
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	}
	return 0;
}

/**
 * __reserved_mem_check_root() - check if #size-cells, #address-cells provided
 * in /reserved-memory matches the values supported by the current implementation,
 * also check if ranges property has been provided
 */
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static int __init __reserved_mem_check_root(unsigned long node)
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{
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	const __be32 *prop;
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	prop = of_get_flat_dt_prop(node, "#size-cells", NULL);
	if (!prop || be32_to_cpup(prop) != dt_root_size_cells)
		return -EINVAL;

	prop = of_get_flat_dt_prop(node, "#address-cells", NULL);
	if (!prop || be32_to_cpup(prop) != dt_root_addr_cells)
		return -EINVAL;

	prop = of_get_flat_dt_prop(node, "ranges", NULL);
	if (!prop)
		return -EINVAL;
	return 0;
}

/**
 * fdt_scan_reserved_mem() - scan a single FDT node for reserved memory
 */
static int __init __fdt_scan_reserved_mem(unsigned long node, const char *uname,
					  int depth, void *data)
{
	static int found;
	const char *status;
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	int err;
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	if (!found && depth == 1 && strcmp(uname, "reserved-memory") == 0) {
		if (__reserved_mem_check_root(node) != 0) {
			pr_err("Reserved memory: unsupported node format, ignoring\n");
			/* break scan */
			return 1;
		}
		found = 1;
		/* scan next node */
		return 0;
	} else if (!found) {
		/* scan next node */
		return 0;
	} else if (found && depth < 2) {
		/* scanning of /reserved-memory has been finished */
		return 1;
	}

	status = of_get_flat_dt_prop(node, "status", NULL);
	if (status && strcmp(status, "okay") != 0 && strcmp(status, "ok") != 0)
		return 0;

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	err = __reserved_mem_reserve_reg(node, uname);
	if (err == -ENOENT && of_get_flat_dt_prop(node, "size", NULL))
		fdt_reserved_mem_save_node(node, uname, 0, 0);
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	/* scan next node */
	return 0;
}

/**
 * early_init_fdt_scan_reserved_mem() - create reserved memory regions
 *
 * This function grabs memory from early allocator for device exclusive use
 * defined in device tree structures. It should be called by arch specific code
 * once the early allocator (i.e. memblock) has been fully activated.
 */
void __init early_init_fdt_scan_reserved_mem(void)
{
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	int n;
	u64 base, size;

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	if (!initial_boot_params)
		return;

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	/* Process header /memreserve/ fields */
	for (n = 0; ; n++) {
		fdt_get_mem_rsv(initial_boot_params, n, &base, &size);
		if (!size)
			break;
		early_init_dt_reserve_memory_arch(base, size, 0);
	}

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	of_scan_flat_dt(__fdt_scan_reserved_mem, NULL);
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	fdt_init_reserved_mem();
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}

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/**
 * early_init_fdt_reserve_self() - reserve the memory used by the FDT blob
 */
void __init early_init_fdt_reserve_self(void)
{
	if (!initial_boot_params)
		return;

	/* Reserve the dtb region */
	early_init_dt_reserve_memory_arch(__pa(initial_boot_params),
					  fdt_totalsize(initial_boot_params),
					  0);
}

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/**
 * of_scan_flat_dt - scan flattened tree blob and call callback on each.
 * @it: callback function
 * @data: context data pointer
 *
 * This function is used to scan the flattened device-tree, it is
 * used to extract the memory information at boot before we can
 * unflatten the tree
 */
int __init of_scan_flat_dt(int (*it)(unsigned long node,
				     const char *uname, int depth,
				     void *data),
			   void *data)
{
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	const void *blob = initial_boot_params;
	const char *pathp;
	int offset, rc = 0, depth = -1;

        for (offset = fdt_next_node(blob, -1, &depth);
             offset >= 0 && depth >= 0 && !rc;
             offset = fdt_next_node(blob, offset, &depth)) {

		pathp = fdt_get_name(blob, offset, NULL);
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		if (*pathp == '/')
			pathp = kbasename(pathp);
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		rc = it(offset, pathp, depth, data);
	}
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	return rc;
}

/**
 * of_get_flat_dt_root - find the root node in the flat blob
 */
unsigned long __init of_get_flat_dt_root(void)
{
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	return 0;
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}

655 656 657 658 659 660 661 662
/**
 * of_get_flat_dt_size - Return the total size of the FDT
 */
int __init of_get_flat_dt_size(void)
{
	return fdt_totalsize(initial_boot_params);
}

663 664 665 666 667 668
/**
 * of_get_flat_dt_prop - Given a node in the flat blob, return the property ptr
 *
 * This function can be used within scan_flattened_dt callback to get
 * access to properties
 */
669 670
const void *__init of_get_flat_dt_prop(unsigned long node, const char *name,
				       int *size)
671
{
672
	return fdt_getprop(initial_boot_params, node, name, size);
673 674 675 676 677 678 679 680 681 682 683 684
}

/**
 * of_flat_dt_is_compatible - Return true if given node has compat in compatible list
 * @node: node to test
 * @compat: compatible string to compare with compatible list.
 */
int __init of_flat_dt_is_compatible(unsigned long node, const char *compat)
{
	return of_fdt_is_compatible(initial_boot_params, node, compat);
}

685 686 687
/**
 * of_flat_dt_match - Return true if node matches a list of compatible values
 */
688
int __init of_flat_dt_match(unsigned long node, const char *const *compat)
689 690 691 692
{
	return of_fdt_match(initial_boot_params, node, compat);
}

693 694 695 696 697 698 699 700 701
struct fdt_scan_status {
	const char *name;
	int namelen;
	int depth;
	int found;
	int (*iterator)(unsigned long node, const char *uname, int depth, void *data);
	void *data;
};

702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740
const char * __init of_flat_dt_get_machine_name(void)
{
	const char *name;
	unsigned long dt_root = of_get_flat_dt_root();

	name = of_get_flat_dt_prop(dt_root, "model", NULL);
	if (!name)
		name = of_get_flat_dt_prop(dt_root, "compatible", NULL);
	return name;
}

/**
 * of_flat_dt_match_machine - Iterate match tables to find matching machine.
 *
 * @default_match: A machine specific ptr to return in case of no match.
 * @get_next_compat: callback function to return next compatible match table.
 *
 * Iterate through machine match tables to find the best match for the machine
 * compatible string in the FDT.
 */
const void * __init of_flat_dt_match_machine(const void *default_match,
		const void * (*get_next_compat)(const char * const**))
{
	const void *data = NULL;
	const void *best_data = default_match;
	const char *const *compat;
	unsigned long dt_root;
	unsigned int best_score = ~1, score = 0;

	dt_root = of_get_flat_dt_root();
	while ((data = get_next_compat(&compat))) {
		score = of_flat_dt_match(dt_root, compat);
		if (score > 0 && score < best_score) {
			best_data = data;
			best_score = score;
		}
	}
	if (!best_data) {
		const char *prop;
741
		int size;
742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761

		pr_err("\n unrecognized device tree list:\n[ ");

		prop = of_get_flat_dt_prop(dt_root, "compatible", &size);
		if (prop) {
			while (size > 0) {
				printk("'%s' ", prop);
				size -= strlen(prop) + 1;
				prop += strlen(prop) + 1;
			}
		}
		printk("]\n\n");
		return NULL;
	}

	pr_info("Machine model: %s\n", of_flat_dt_get_machine_name());

	return best_data;
}

762
#ifdef CONFIG_BLK_DEV_INITRD
763 764 765 766 767 768 769 770 771 772
#ifndef __early_init_dt_declare_initrd
static void __early_init_dt_declare_initrd(unsigned long start,
					   unsigned long end)
{
	initrd_start = (unsigned long)__va(start);
	initrd_end = (unsigned long)__va(end);
	initrd_below_start_ok = 1;
}
#endif

773 774 775 776
/**
 * early_init_dt_check_for_initrd - Decode initrd location from flat tree
 * @node: reference to node containing initrd location ('chosen')
 */
777
static void __init early_init_dt_check_for_initrd(unsigned long node)
778
{
779
	u64 start, end;
780 781
	int len;
	const __be32 *prop;
782 783 784 785

	pr_debug("Looking for initrd properties... ");

	prop = of_get_flat_dt_prop(node, "linux,initrd-start", &len);
786 787
	if (!prop)
		return;
788
	start = of_read_number(prop, len/4);
789 790 791 792

	prop = of_get_flat_dt_prop(node, "linux,initrd-end", &len);
	if (!prop)
		return;
793
	end = of_read_number(prop, len/4);
794

795
	__early_init_dt_declare_initrd(start, end);
796

797 798
	pr_debug("initrd_start=0x%llx  initrd_end=0x%llx\n",
		 (unsigned long long)start, (unsigned long long)end);
799 800
}
#else
801
static inline void early_init_dt_check_for_initrd(unsigned long node)
802 803 804 805
{
}
#endif /* CONFIG_BLK_DEV_INITRD */

806 807
#ifdef CONFIG_SERIAL_EARLYCON

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Lad, Prabhakar 已提交
808
static int __init early_init_dt_scan_chosen_serial(void)
809 810
{
	int offset;
811
	const char *p, *q, *options = NULL;
812
	int l;
813
	const struct earlycon_id *match;
814 815 816 817 818 819 820 821 822 823 824 825 826 827
	const void *fdt = initial_boot_params;

	offset = fdt_path_offset(fdt, "/chosen");
	if (offset < 0)
		offset = fdt_path_offset(fdt, "/chosen@0");
	if (offset < 0)
		return -ENOENT;

	p = fdt_getprop(fdt, offset, "stdout-path", &l);
	if (!p)
		p = fdt_getprop(fdt, offset, "linux,stdout-path", &l);
	if (!p || !l)
		return -ENOENT;

828 829 830
	q = strchrnul(p, ':');
	if (*q != '\0')
		options = q + 1;
831
	l = q - p;
832

833
	/* Get the node specified by stdout-path */
834 835 836 837 838
	offset = fdt_path_offset_namelen(fdt, p, l);
	if (offset < 0) {
		pr_warn("earlycon: stdout-path %.*s not found\n", l, p);
		return 0;
	}
839

840 841 842 843 844
	for (match = __earlycon_table; match < __earlycon_table_end; match++) {
		if (!match->compatible[0])
			continue;

		if (fdt_node_check_compatible(fdt, offset, match->compatible))
845 846
			continue;

847
		of_setup_earlycon(match, offset, options);
848 849 850 851 852 853 854 855 856 857 858 859 860 861 862
		return 0;
	}
	return -ENODEV;
}

static int __init setup_of_earlycon(char *buf)
{
	if (buf)
		return 0;

	return early_init_dt_scan_chosen_serial();
}
early_param("earlycon", setup_of_earlycon);
#endif

863 864 865 866 867 868
/**
 * early_init_dt_scan_root - fetch the top level address and size cells
 */
int __init early_init_dt_scan_root(unsigned long node, const char *uname,
				   int depth, void *data)
{
869
	const __be32 *prop;
870 871 872 873

	if (depth != 0)
		return 0;

874 875 876
	dt_root_size_cells = OF_ROOT_NODE_SIZE_CELLS_DEFAULT;
	dt_root_addr_cells = OF_ROOT_NODE_ADDR_CELLS_DEFAULT;

877
	prop = of_get_flat_dt_prop(node, "#size-cells", NULL);
878 879
	if (prop)
		dt_root_size_cells = be32_to_cpup(prop);
880 881 882
	pr_debug("dt_root_size_cells = %x\n", dt_root_size_cells);

	prop = of_get_flat_dt_prop(node, "#address-cells", NULL);
883 884
	if (prop)
		dt_root_addr_cells = be32_to_cpup(prop);
885 886 887 888 889 890
	pr_debug("dt_root_addr_cells = %x\n", dt_root_addr_cells);

	/* break now */
	return 1;
}

891
u64 __init dt_mem_next_cell(int s, const __be32 **cellp)
G
Grant Likely 已提交
892
{
893
	const __be32 *p = *cellp;
G
Grant Likely 已提交
894 895 896 897 898

	*cellp = p + s;
	return of_read_number(p, s);
}

899 900 901 902 903 904
/**
 * early_init_dt_scan_memory - Look for an parse memory nodes
 */
int __init early_init_dt_scan_memory(unsigned long node, const char *uname,
				     int depth, void *data)
{
905 906 907
	const char *type = of_get_flat_dt_prop(node, "device_type", NULL);
	const __be32 *reg, *endp;
	int l;
908 909 910 911 912 913 914

	/* We are scanning "memory" nodes only */
	if (type == NULL) {
		/*
		 * The longtrail doesn't have a device_type on the
		 * /memory node, so look for the node called /memory@0.
		 */
915
		if (!IS_ENABLED(CONFIG_PPC32) || depth != 1 || strcmp(uname, "memory@0") != 0)
916 917 918 919 920 921 922 923 924 925 926 927
			return 0;
	} else if (strcmp(type, "memory") != 0)
		return 0;

	reg = of_get_flat_dt_prop(node, "linux,usable-memory", &l);
	if (reg == NULL)
		reg = of_get_flat_dt_prop(node, "reg", &l);
	if (reg == NULL)
		return 0;

	endp = reg + (l / sizeof(__be32));

928
	pr_debug("memory scan node %s, reg size %d,\n", uname, l);
929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946

	while ((endp - reg) >= (dt_root_addr_cells + dt_root_size_cells)) {
		u64 base, size;

		base = dt_mem_next_cell(dt_root_addr_cells, &reg);
		size = dt_mem_next_cell(dt_root_size_cells, &reg);

		if (size == 0)
			continue;
		pr_debug(" - %llx ,  %llx\n", (unsigned long long)base,
		    (unsigned long long)size);

		early_init_dt_add_memory_arch(base, size);
	}

	return 0;
}

947 948 949
int __init early_init_dt_scan_chosen(unsigned long node, const char *uname,
				     int depth, void *data)
{
950 951
	int l;
	const char *p;
952 953 954

	pr_debug("search \"chosen\", depth: %d, uname: %s\n", depth, uname);

955
	if (depth != 1 || !data ||
956 957 958 959 960
	    (strcmp(uname, "chosen") != 0 && strcmp(uname, "chosen@0") != 0))
		return 0;

	early_init_dt_check_for_initrd(node);

L
Lucas De Marchi 已提交
961
	/* Retrieve command line */
962 963
	p = of_get_flat_dt_prop(node, "bootargs", &l);
	if (p != NULL && l > 0)
964
		strlcpy(data, p, min((int)l, COMMAND_LINE_SIZE));
965

966 967 968 969 970
	/*
	 * CONFIG_CMDLINE is meant to be a default in case nothing else
	 * managed to set the command line, unless CONFIG_CMDLINE_FORCE
	 * is set in which case we override whatever was found earlier.
	 */
971
#ifdef CONFIG_CMDLINE
M
Max Uvarov 已提交
972 973 974 975 976 977 978
#if defined(CONFIG_CMDLINE_EXTEND)
	strlcat(data, " ", COMMAND_LINE_SIZE);
	strlcat(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
#elif defined(CONFIG_CMDLINE_FORCE)
	strlcpy(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
#else
	/* No arguments from boot loader, use kernel's  cmdl*/
979
	if (!((char *)data)[0])
980
		strlcpy(data, CONFIG_CMDLINE, COMMAND_LINE_SIZE);
M
Max Uvarov 已提交
981
#endif
982 983
#endif /* CONFIG_CMDLINE */

984
	pr_debug("Command line is: %s\n", (char*)data);
985 986 987 988 989

	/* break now */
	return 1;
}

990
#ifdef CONFIG_HAVE_MEMBLOCK
991 992 993
#ifndef MIN_MEMBLOCK_ADDR
#define MIN_MEMBLOCK_ADDR	__pa(PAGE_OFFSET)
#endif
994 995 996
#ifndef MAX_MEMBLOCK_ADDR
#define MAX_MEMBLOCK_ADDR	((phys_addr_t)~0)
#endif
997

998 999
void __init __weak early_init_dt_add_memory_arch(u64 base, u64 size)
{
1000
	const u64 phys_offset = MIN_MEMBLOCK_ADDR;
1001 1002

	if (!PAGE_ALIGNED(base)) {
1003 1004 1005 1006 1007
		if (size < PAGE_SIZE - (base & ~PAGE_MASK)) {
			pr_warn("Ignoring memory block 0x%llx - 0x%llx\n",
				base, base + size);
			return;
		}
1008 1009 1010
		size -= PAGE_SIZE - (base & ~PAGE_MASK);
		base = PAGE_ALIGN(base);
	}
1011
	size &= PAGE_MASK;
1012

1013
	if (base > MAX_MEMBLOCK_ADDR) {
1014 1015 1016 1017
		pr_warning("Ignoring memory block 0x%llx - 0x%llx\n",
				base, base + size);
		return;
	}
1018

1019
	if (base + size - 1 > MAX_MEMBLOCK_ADDR) {
1020
		pr_warning("Ignoring memory range 0x%llx - 0x%llx\n",
1021 1022
				((u64)MAX_MEMBLOCK_ADDR) + 1, base + size);
		size = MAX_MEMBLOCK_ADDR - base + 1;
1023 1024
	}

1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038
	if (base + size < phys_offset) {
		pr_warning("Ignoring memory block 0x%llx - 0x%llx\n",
			   base, base + size);
		return;
	}
	if (base < phys_offset) {
		pr_warning("Ignoring memory range 0x%llx - 0x%llx\n",
			   base, phys_offset);
		size -= phys_offset - base;
		base = phys_offset;
	}
	memblock_add(base, size);
}

1039 1040 1041 1042 1043 1044 1045 1046
int __init __weak early_init_dt_reserve_memory_arch(phys_addr_t base,
					phys_addr_t size, bool nomap)
{
	if (nomap)
		return memblock_remove(base, size);
	return memblock_reserve(base, size);
}

1047 1048 1049 1050 1051 1052 1053 1054
/*
 * called from unflatten_device_tree() to bootstrap devicetree itself
 * Architectures can override this definition if memblock isn't used
 */
void * __init __weak early_init_dt_alloc_memory_arch(u64 size, u64 align)
{
	return __va(memblock_alloc(size, align));
}
1055
#else
1056 1057 1058 1059 1060
void __init __weak early_init_dt_add_memory_arch(u64 base, u64 size)
{
	WARN_ON(1);
}

1061 1062 1063
int __init __weak early_init_dt_reserve_memory_arch(phys_addr_t base,
					phys_addr_t size, bool nomap)
{
1064
	pr_err("Reserved memory not supported, ignoring range %pa - %pa%s\n",
1065
		  &base, &size, nomap ? " (nomap)" : "");
1066 1067
	return -ENOSYS;
}
1068 1069 1070 1071 1072 1073

void * __init __weak early_init_dt_alloc_memory_arch(u64 size, u64 align)
{
	WARN_ON(1);
	return NULL;
}
1074 1075
#endif

1076
bool __init early_init_dt_verify(void *params)
1077 1078 1079 1080 1081
{
	if (!params)
		return false;

	/* check device tree validity */
1082
	if (fdt_check_header(params))
1083 1084
		return false;

1085 1086
	/* Setup flat device-tree pointer */
	initial_boot_params = params;
1087 1088
	of_fdt_crc32 = crc32_be(~0, initial_boot_params,
				fdt_totalsize(initial_boot_params));
1089 1090 1091 1092 1093 1094
	return true;
}


void __init early_init_dt_scan_nodes(void)
{
1095 1096 1097 1098 1099 1100 1101 1102
	/* Retrieve various information from the /chosen node */
	of_scan_flat_dt(early_init_dt_scan_chosen, boot_command_line);

	/* Initialize {size,address}-cells info */
	of_scan_flat_dt(early_init_dt_scan_root, NULL);

	/* Setup memory, calling early_init_dt_add_memory_arch */
	of_scan_flat_dt(early_init_dt_scan_memory, NULL);
1103 1104 1105 1106 1107 1108 1109 1110 1111
}

bool __init early_init_dt_scan(void *params)
{
	bool status;

	status = early_init_dt_verify(params);
	if (!status)
		return false;
1112

1113
	early_init_dt_scan_nodes();
1114 1115 1116
	return true;
}

1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
/**
 * unflatten_device_tree - create tree of device_nodes from flat blob
 *
 * unflattens the device-tree passed by the firmware, creating the
 * tree of struct device_node. It also fills the "name" and "type"
 * pointers of the nodes so the normal device-tree walking functions
 * can be used.
 */
void __init unflatten_device_tree(void)
{
G
Grant Likely 已提交
1127
	__unflatten_device_tree(initial_boot_params, &of_root,
1128
				early_init_dt_alloc_memory_arch);
1129

1130
	/* Get pointer to "/chosen" and "/aliases" nodes for use everywhere */
1131
	of_alias_scan(early_init_dt_alloc_memory_arch);
1132
}
1133

1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146
/**
 * unflatten_and_copy_device_tree - copy and create tree of device_nodes from flat blob
 *
 * Copies and unflattens the device-tree passed by the firmware, creating the
 * tree of struct device_node. It also fills the "name" and "type"
 * pointers of the nodes so the normal device-tree walking functions
 * can be used. This should only be used when the FDT memory has not been
 * reserved such is the case when the FDT is built-in to the kernel init
 * section. If the FDT memory is reserved already then unflatten_device_tree
 * should be used instead.
 */
void __init unflatten_and_copy_device_tree(void)
{
1147 1148 1149 1150 1151 1152 1153 1154
	int size;
	void *dt;

	if (!initial_boot_params) {
		pr_warn("No valid device tree found, continuing without\n");
		return;
	}

1155
	size = fdt_totalsize(initial_boot_params);
1156
	dt = early_init_dt_alloc_memory_arch(size,
1157
					     roundup_pow_of_two(FDT_V17_SIZE));
1158 1159 1160 1161 1162 1163 1164 1165

	if (dt) {
		memcpy(dt, initial_boot_params, size);
		initial_boot_params = dt;
	}
	unflatten_device_tree();
}

1166 1167 1168 1169
#ifdef CONFIG_SYSFS
static ssize_t of_fdt_raw_read(struct file *filp, struct kobject *kobj,
			       struct bin_attribute *bin_attr,
			       char *buf, loff_t off, size_t count)
R
Rob Herring 已提交
1170
{
1171 1172 1173
	memcpy(buf, initial_boot_params + off, count);
	return count;
}
R
Rob Herring 已提交
1174

1175 1176 1177 1178
static int __init of_fdt_raw_init(void)
{
	static struct bin_attribute of_fdt_raw_attr =
		__BIN_ATTR(fdt, S_IRUSR, of_fdt_raw_read, NULL, 0);
R
Rob Herring 已提交
1179

1180 1181
	if (!initial_boot_params)
		return 0;
R
Rob Herring 已提交
1182

1183 1184 1185 1186 1187 1188 1189
	if (of_fdt_crc32 != crc32_be(~0, initial_boot_params,
				     fdt_totalsize(initial_boot_params))) {
		pr_warn("fdt: not creating '/sys/firmware/fdt': CRC check failed\n");
		return 0;
	}
	of_fdt_raw_attr.size = fdt_totalsize(initial_boot_params);
	return sysfs_create_bin_file(firmware_kobj, &of_fdt_raw_attr);
R
Rob Herring 已提交
1190
}
1191
late_initcall(of_fdt_raw_init);
R
Rob Herring 已提交
1192 1193
#endif

1194
#endif /* CONFIG_OF_EARLY_FLATTREE */