mdesc.c 23.8 KB
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/* mdesc.c: Sun4V machine description handling.
 *
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 * Copyright (C) 2007, 2008 David S. Miller <davem@davemloft.net>
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 */
#include <linux/kernel.h>
#include <linux/types.h>
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#include <linux/memblock.h>
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#include <linux/log2.h>
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#include <linux/list.h>
#include <linux/slab.h>
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#include <linux/mm.h>
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#include <linux/miscdevice.h>
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#include <linux/bootmem.h>
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#include <linux/export.h>
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#include <asm/cpudata.h>
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#include <asm/hypervisor.h>
#include <asm/mdesc.h>
#include <asm/prom.h>
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#include <asm/uaccess.h>
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#include <asm/oplib.h>
#include <asm/smp.h>

/* Unlike the OBP device tree, the machine description is a full-on
 * DAG.  An arbitrary number of ARCs are possible from one
 * node to other nodes and thus we can't use the OBP device_node
 * data structure to represent these nodes inside of the kernel.
 *
 * Actually, it isn't even a DAG, because there are back pointers
 * which create cycles in the graph.
 *
 * mdesc_hdr and mdesc_elem describe the layout of the data structure
 * we get from the Hypervisor.
 */
struct mdesc_hdr {
	u32	version; /* Transport version */
	u32	node_sz; /* node block size */
	u32	name_sz; /* name block size */
	u32	data_sz; /* data block size */
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} __attribute__((aligned(16)));
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struct mdesc_elem {
	u8	tag;
#define MD_LIST_END	0x00
#define MD_NODE		0x4e
#define MD_NODE_END	0x45
#define MD_NOOP		0x20
#define MD_PROP_ARC	0x61
#define MD_PROP_VAL	0x76
#define MD_PROP_STR	0x73
#define MD_PROP_DATA	0x64
	u8	name_len;
	u16	resv;
	u32	name_offset;
	union {
		struct {
			u32	data_len;
			u32	data_offset;
		} data;
		u64	val;
	} d;
};

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struct mdesc_mem_ops {
	struct mdesc_handle *(*alloc)(unsigned int mdesc_size);
	void (*free)(struct mdesc_handle *handle);
};
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struct mdesc_handle {
	struct list_head	list;
	struct mdesc_mem_ops	*mops;
	void			*self_base;
	atomic_t		refcnt;
	unsigned int		handle_size;
	struct mdesc_hdr	mdesc;
};
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static void mdesc_handle_init(struct mdesc_handle *hp,
			      unsigned int handle_size,
			      void *base)
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{
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	BUG_ON(((unsigned long)&hp->mdesc) & (16UL - 1));

	memset(hp, 0, handle_size);
	INIT_LIST_HEAD(&hp->list);
	hp->self_base = base;
	atomic_set(&hp->refcnt, 1);
	hp->handle_size = handle_size;
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}

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static struct mdesc_handle * __init mdesc_memblock_alloc(unsigned int mdesc_size)
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{
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	unsigned int handle_size, alloc_size;
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	struct mdesc_handle *hp;
	unsigned long paddr;
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	handle_size = (sizeof(struct mdesc_handle) -
		       sizeof(struct mdesc_hdr) +
		       mdesc_size);
	alloc_size = PAGE_ALIGN(handle_size);
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	paddr = memblock_alloc(alloc_size, PAGE_SIZE);
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	hp = NULL;
	if (paddr) {
		hp = __va(paddr);
		mdesc_handle_init(hp, handle_size, hp);
	}
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	return hp;
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}

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static void __init mdesc_memblock_free(struct mdesc_handle *hp)
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{
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	unsigned int alloc_size;
	unsigned long start;
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	BUG_ON(atomic_read(&hp->refcnt) != 0);
	BUG_ON(!list_empty(&hp->list));
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	alloc_size = PAGE_ALIGN(hp->handle_size);
	start = __pa(hp);
	free_bootmem_late(start, alloc_size);
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}

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static struct mdesc_mem_ops memblock_mdesc_ops = {
	.alloc = mdesc_memblock_alloc,
	.free  = mdesc_memblock_free,
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};

static struct mdesc_handle *mdesc_kmalloc(unsigned int mdesc_size)
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{
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	unsigned int handle_size;
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	struct mdesc_handle *hp;
	unsigned long addr;
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	void *base;
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	handle_size = (sizeof(struct mdesc_handle) -
		       sizeof(struct mdesc_hdr) +
		       mdesc_size);

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	/*
	 * Allocation has to succeed because mdesc update would be missed
	 * and such events are not retransmitted.
	 */
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	base = kmalloc(handle_size + 15, GFP_KERNEL | __GFP_NOFAIL);
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	addr = (unsigned long)base;
	addr = (addr + 15UL) & ~15UL;
	hp = (struct mdesc_handle *) addr;
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	mdesc_handle_init(hp, handle_size, base);
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	return hp;
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}

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static void mdesc_kfree(struct mdesc_handle *hp)
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{
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	BUG_ON(atomic_read(&hp->refcnt) != 0);
	BUG_ON(!list_empty(&hp->list));

	kfree(hp->self_base);
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}

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static struct mdesc_mem_ops kmalloc_mdesc_memops = {
	.alloc = mdesc_kmalloc,
	.free  = mdesc_kfree,
};

static struct mdesc_handle *mdesc_alloc(unsigned int mdesc_size,
					struct mdesc_mem_ops *mops)
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{
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	struct mdesc_handle *hp = mops->alloc(mdesc_size);
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	if (hp)
		hp->mops = mops;
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	return hp;
}
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static void mdesc_free(struct mdesc_handle *hp)
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{
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	hp->mops->free(hp);
}
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static struct mdesc_handle *cur_mdesc;
static LIST_HEAD(mdesc_zombie_list);
static DEFINE_SPINLOCK(mdesc_lock);
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struct mdesc_handle *mdesc_grab(void)
{
	struct mdesc_handle *hp;
	unsigned long flags;
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	spin_lock_irqsave(&mdesc_lock, flags);
	hp = cur_mdesc;
	if (hp)
		atomic_inc(&hp->refcnt);
	spin_unlock_irqrestore(&mdesc_lock, flags);
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	return hp;
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}
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EXPORT_SYMBOL(mdesc_grab);
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void mdesc_release(struct mdesc_handle *hp)
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{
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	unsigned long flags;
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	spin_lock_irqsave(&mdesc_lock, flags);
	if (atomic_dec_and_test(&hp->refcnt)) {
		list_del_init(&hp->list);
		hp->mops->free(hp);
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	}
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	spin_unlock_irqrestore(&mdesc_lock, flags);
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}
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EXPORT_SYMBOL(mdesc_release);
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static DEFINE_MUTEX(mdesc_mutex);
static struct mdesc_notifier_client *client_list;

void mdesc_register_notifier(struct mdesc_notifier_client *client)
{
	u64 node;

	mutex_lock(&mdesc_mutex);
	client->next = client_list;
	client_list = client;

	mdesc_for_each_node_by_name(cur_mdesc, node, client->node_name)
		client->add(cur_mdesc, node);

	mutex_unlock(&mdesc_mutex);
}

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static const u64 *parent_cfg_handle(struct mdesc_handle *hp, u64 node)
{
	const u64 *id;
	u64 a;

	id = NULL;
	mdesc_for_each_arc(a, hp, node, MDESC_ARC_TYPE_BACK) {
		u64 target;

		target = mdesc_arc_target(hp, a);
		id = mdesc_get_property(hp, target,
					"cfg-handle", NULL);
		if (id)
			break;
	}

	return id;
}

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/* Run 'func' on nodes which are in A but not in B.  */
static void invoke_on_missing(const char *name,
			      struct mdesc_handle *a,
			      struct mdesc_handle *b,
			      void (*func)(struct mdesc_handle *, u64))
{
	u64 node;

	mdesc_for_each_node_by_name(a, node, name) {
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		int found = 0, is_vdc_port = 0;
		const char *name_prop;
		const u64 *id;
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		u64 fnode;

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		name_prop = mdesc_get_property(a, node, "name", NULL);
		if (name_prop && !strcmp(name_prop, "vdc-port")) {
			is_vdc_port = 1;
			id = parent_cfg_handle(a, node);
		} else
			id = mdesc_get_property(a, node, "id", NULL);

		if (!id) {
			printk(KERN_ERR "MD: Cannot find ID for %s node.\n",
			       (name_prop ? name_prop : name));
			continue;
		}

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		mdesc_for_each_node_by_name(b, fnode, name) {
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			const u64 *fid;

			if (is_vdc_port) {
				name_prop = mdesc_get_property(b, fnode,
							       "name", NULL);
				if (!name_prop ||
				    strcmp(name_prop, "vdc-port"))
					continue;
				fid = parent_cfg_handle(b, fnode);
				if (!fid) {
					printk(KERN_ERR "MD: Cannot find ID "
					       "for vdc-port node.\n");
					continue;
				}
			} else
				fid = mdesc_get_property(b, fnode,
							 "id", NULL);
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			if (*id == *fid) {
				found = 1;
				break;
			}
		}
		if (!found)
			func(a, node);
	}
}

static void notify_one(struct mdesc_notifier_client *p,
		       struct mdesc_handle *old_hp,
		       struct mdesc_handle *new_hp)
{
	invoke_on_missing(p->node_name, old_hp, new_hp, p->remove);
	invoke_on_missing(p->node_name, new_hp, old_hp, p->add);
}

static void mdesc_notify_clients(struct mdesc_handle *old_hp,
				 struct mdesc_handle *new_hp)
{
	struct mdesc_notifier_client *p = client_list;

	while (p) {
		notify_one(p, old_hp, new_hp);
		p = p->next;
	}
}

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void mdesc_update(void)
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{
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	unsigned long len, real_len, status;
	struct mdesc_handle *hp, *orig_hp;
	unsigned long flags;

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	mutex_lock(&mdesc_mutex);

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	(void) sun4v_mach_desc(0UL, 0UL, &len);

	hp = mdesc_alloc(len, &kmalloc_mdesc_memops);
	if (!hp) {
		printk(KERN_ERR "MD: mdesc alloc fails\n");
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		goto out;
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	}

	status = sun4v_mach_desc(__pa(&hp->mdesc), len, &real_len);
	if (status != HV_EOK || real_len > len) {
		printk(KERN_ERR "MD: mdesc reread fails with %lu\n",
		       status);
		atomic_dec(&hp->refcnt);
		mdesc_free(hp);
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		goto out;
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	}
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	spin_lock_irqsave(&mdesc_lock, flags);
	orig_hp = cur_mdesc;
	cur_mdesc = hp;
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	spin_unlock_irqrestore(&mdesc_lock, flags);
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	mdesc_notify_clients(orig_hp, hp);

	spin_lock_irqsave(&mdesc_lock, flags);
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	if (atomic_dec_and_test(&orig_hp->refcnt))
		mdesc_free(orig_hp);
	else
		list_add(&orig_hp->list, &mdesc_zombie_list);
	spin_unlock_irqrestore(&mdesc_lock, flags);
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out:
	mutex_unlock(&mdesc_mutex);
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}

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static struct mdesc_elem *node_block(struct mdesc_hdr *mdesc)
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{
	return (struct mdesc_elem *) (mdesc + 1);
}

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static void *name_block(struct mdesc_hdr *mdesc)
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{
	return ((void *) node_block(mdesc)) + mdesc->node_sz;
}

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static void *data_block(struct mdesc_hdr *mdesc)
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{
	return ((void *) name_block(mdesc)) + mdesc->name_sz;
}

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u64 mdesc_node_by_name(struct mdesc_handle *hp,
		       u64 from_node, const char *name)
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{
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	struct mdesc_elem *ep = node_block(&hp->mdesc);
	const char *names = name_block(&hp->mdesc);
	u64 last_node = hp->mdesc.node_sz / 16;
	u64 ret;

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	if (from_node == MDESC_NODE_NULL) {
		ret = from_node = 0;
	} else if (from_node >= last_node) {
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		return MDESC_NODE_NULL;
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	} else {
		ret = ep[from_node].d.val;
	}
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	while (ret < last_node) {
		if (ep[ret].tag != MD_NODE)
			return MDESC_NODE_NULL;
		if (!strcmp(names + ep[ret].name_offset, name))
			break;
		ret = ep[ret].d.val;
	}
	if (ret >= last_node)
		ret = MDESC_NODE_NULL;
	return ret;
}
EXPORT_SYMBOL(mdesc_node_by_name);
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const void *mdesc_get_property(struct mdesc_handle *hp, u64 node,
			       const char *name, int *lenp)
{
	const char *names = name_block(&hp->mdesc);
	u64 last_node = hp->mdesc.node_sz / 16;
	void *data = data_block(&hp->mdesc);
	struct mdesc_elem *ep;
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	if (node == MDESC_NODE_NULL || node >= last_node)
		return NULL;
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	ep = node_block(&hp->mdesc) + node;
	ep++;
	for (; ep->tag != MD_NODE_END; ep++) {
		void *val = NULL;
		int len = 0;

		switch (ep->tag) {
		case MD_PROP_VAL:
			val = &ep->d.val;
			len = 8;
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			break;

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		case MD_PROP_STR:
		case MD_PROP_DATA:
			val = data + ep->d.data.data_offset;
			len = ep->d.data.data_len;
			break;
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		default:
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			break;
		}
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		if (!val)
			continue;
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		if (!strcmp(names + ep->name_offset, name)) {
			if (lenp)
				*lenp = len;
			return val;
		}
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	}

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	return NULL;
}
EXPORT_SYMBOL(mdesc_get_property);
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u64 mdesc_next_arc(struct mdesc_handle *hp, u64 from, const char *arc_type)
{
	struct mdesc_elem *ep, *base = node_block(&hp->mdesc);
	const char *names = name_block(&hp->mdesc);
	u64 last_node = hp->mdesc.node_sz / 16;
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	if (from == MDESC_NODE_NULL || from >= last_node)
		return MDESC_NODE_NULL;
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	ep = base + from;

	ep++;
	for (; ep->tag != MD_NODE_END; ep++) {
		if (ep->tag != MD_PROP_ARC)
			continue;

		if (strcmp(names + ep->name_offset, arc_type))
			continue;

		return ep - base;
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	}
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	return MDESC_NODE_NULL;
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}
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EXPORT_SYMBOL(mdesc_next_arc);
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u64 mdesc_arc_target(struct mdesc_handle *hp, u64 arc)
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{
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	struct mdesc_elem *ep, *base = node_block(&hp->mdesc);

	ep = base + arc;

	return ep->d.val;
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}
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EXPORT_SYMBOL(mdesc_arc_target);

const char *mdesc_node_name(struct mdesc_handle *hp, u64 node)
{
	struct mdesc_elem *ep, *base = node_block(&hp->mdesc);
	const char *names = name_block(&hp->mdesc);
	u64 last_node = hp->mdesc.node_sz / 16;

	if (node == MDESC_NODE_NULL || node >= last_node)
		return NULL;

	ep = base + node;
	if (ep->tag != MD_NODE)
		return NULL;

	return names + ep->name_offset;
}
EXPORT_SYMBOL(mdesc_node_name);
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static u64 max_cpus = 64;

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static void __init report_platform_properties(void)
{
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	struct mdesc_handle *hp = mdesc_grab();
	u64 pn = mdesc_node_by_name(hp, MDESC_NODE_NULL, "platform");
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	const char *s;
	const u64 *v;

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	if (pn == MDESC_NODE_NULL) {
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		prom_printf("No platform node in machine-description.\n");
		prom_halt();
	}

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	s = mdesc_get_property(hp, pn, "banner-name", NULL);
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	printk("PLATFORM: banner-name [%s]\n", s);
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	s = mdesc_get_property(hp, pn, "name", NULL);
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	printk("PLATFORM: name [%s]\n", s);

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	v = mdesc_get_property(hp, pn, "hostid", NULL);
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	if (v)
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		printk("PLATFORM: hostid [%08llx]\n", *v);
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	v = mdesc_get_property(hp, pn, "serial#", NULL);
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	if (v)
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		printk("PLATFORM: serial# [%08llx]\n", *v);
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	v = mdesc_get_property(hp, pn, "stick-frequency", NULL);
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	printk("PLATFORM: stick-frequency [%08llx]\n", *v);
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	v = mdesc_get_property(hp, pn, "mac-address", NULL);
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	if (v)
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		printk("PLATFORM: mac-address [%llx]\n", *v);
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	v = mdesc_get_property(hp, pn, "watchdog-resolution", NULL);
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	if (v)
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		printk("PLATFORM: watchdog-resolution [%llu ms]\n", *v);
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	v = mdesc_get_property(hp, pn, "watchdog-max-timeout", NULL);
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	if (v)
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		printk("PLATFORM: watchdog-max-timeout [%llu ms]\n", *v);
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	v = mdesc_get_property(hp, pn, "max-cpus", NULL);
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	if (v) {
		max_cpus = *v;
		printk("PLATFORM: max-cpus [%llu]\n", max_cpus);
	}
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#ifdef CONFIG_SMP
	{
		int max_cpu, i;

		if (v) {
			max_cpu = *v;
			if (max_cpu > NR_CPUS)
				max_cpu = NR_CPUS;
		} else {
			max_cpu = NR_CPUS;
		}
		for (i = 0; i < max_cpu; i++)
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			set_cpu_possible(i, true);
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	}
#endif

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	mdesc_release(hp);
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}

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static void fill_in_one_cache(cpuinfo_sparc *c, struct mdesc_handle *hp, u64 mp)
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{
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	const u64 *level = mdesc_get_property(hp, mp, "level", NULL);
	const u64 *size = mdesc_get_property(hp, mp, "size", NULL);
	const u64 *line_size = mdesc_get_property(hp, mp, "line-size", NULL);
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	const char *type;
	int type_len;

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	type = mdesc_get_property(hp, mp, "type", &type_len);
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	switch (*level) {
	case 1:
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		if (of_find_in_proplist(type, "instn", type_len)) {
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			c->icache_size = *size;
			c->icache_line_size = *line_size;
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		} else if (of_find_in_proplist(type, "data", type_len)) {
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			c->dcache_size = *size;
			c->dcache_line_size = *line_size;
		}
		break;

	case 2:
		c->ecache_size = *size;
		c->ecache_line_size = *line_size;
		break;

	default:
		break;
	}

	if (*level == 1) {
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		u64 a;
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		mdesc_for_each_arc(a, hp, mp, MDESC_ARC_TYPE_FWD) {
			u64 target = mdesc_arc_target(hp, a);
			const char *name = mdesc_node_name(hp, target);
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			if (!strcmp(name, "cache"))
				fill_in_one_cache(c, hp, target);
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		}
	}
}

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static void find_back_node_value(struct mdesc_handle *hp, u64 node,
				 char *srch_val,
				 void (*func)(struct mdesc_handle *, u64, int),
				 u64 val, int depth)
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{
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	u64 arc;
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	/* Since we have an estimate of recursion depth, do a sanity check. */
	if (depth == 0)
		return;
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	mdesc_for_each_arc(arc, hp, node, MDESC_ARC_TYPE_BACK) {
		u64 n = mdesc_arc_target(hp, arc);
		const char *name = mdesc_node_name(hp, n);
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		if (!strcmp(srch_val, name))
			(*func)(hp, n, val);
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		find_back_node_value(hp, n, srch_val, func, val, depth-1);
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	}
}

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static void __mark_core_id(struct mdesc_handle *hp, u64 node,
			   int core_id)
{
	const u64 *id = mdesc_get_property(hp, node, "id", NULL);

	if (*id < num_possible_cpus())
		cpu_data(*id).core_id = core_id;
}

static void __mark_sock_id(struct mdesc_handle *hp, u64 node,
			   int sock_id)
{
	const u64 *id = mdesc_get_property(hp, node, "id", NULL);

	if (*id < num_possible_cpus())
		cpu_data(*id).sock_id = sock_id;
}

static void mark_core_ids(struct mdesc_handle *hp, u64 mp,
			  int core_id)
{
	find_back_node_value(hp, mp, "cpu", __mark_core_id, core_id, 10);
}

static void mark_sock_ids(struct mdesc_handle *hp, u64 mp,
			  int sock_id)
{
	find_back_node_value(hp, mp, "cpu", __mark_sock_id, sock_id, 10);
}

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static void set_core_ids(struct mdesc_handle *hp)
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{
	int idx;
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	u64 mp;
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	idx = 1;
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	/* Identify unique cores by looking for cpus backpointed to by
	 * level 1 instruction caches.
	 */
679 680
	mdesc_for_each_node_by_name(hp, mp, "cache") {
		const u64 *level;
681 682 683
		const char *type;
		int len;

684
		level = mdesc_get_property(hp, mp, "level", NULL);
685 686 687
		if (*level != 1)
			continue;

688
		type = mdesc_get_property(hp, mp, "type", &len);
689
		if (!of_find_in_proplist(type, "instn", len))
690 691
			continue;

692
		mark_core_ids(hp, mp, idx);
693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722
		idx++;
	}
}

static int set_sock_ids_by_cache(struct mdesc_handle *hp, int level)
{
	u64 mp;
	int idx = 1;
	int fnd = 0;

	/* Identify unique sockets by looking for cpus backpointed to by
	 * shared level n caches.
	 */
	mdesc_for_each_node_by_name(hp, mp, "cache") {
		const u64 *cur_lvl;

		cur_lvl = mdesc_get_property(hp, mp, "level", NULL);
		if (*cur_lvl != level)
			continue;

		mark_sock_ids(hp, mp, idx);
		idx++;
		fnd = 1;
	}
	return fnd;
}

static void set_sock_ids_by_socket(struct mdesc_handle *hp, u64 mp)
{
	int idx = 1;
723

724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739
	mdesc_for_each_node_by_name(hp, mp, "socket") {
		u64 a;

		mdesc_for_each_arc(a, hp, mp, MDESC_ARC_TYPE_FWD) {
			u64 t = mdesc_arc_target(hp, a);
			const char *name;
			const u64 *id;

			name = mdesc_node_name(hp, t);
			if (strcmp(name, "cpu"))
				continue;

			id = mdesc_get_property(hp, t, "id", NULL);
			if (*id < num_possible_cpus())
				cpu_data(*id).sock_id = idx;
		}
740 741 742 743
		idx++;
	}
}

744 745 746 747 748 749 750 751 752 753 754 755 756 757 758
static void set_sock_ids(struct mdesc_handle *hp)
{
	u64 mp;

	/* If machine description exposes sockets data use it.
	 * Otherwise fallback to use shared L3 or L2 caches.
	 */
	mp = mdesc_node_by_name(hp, MDESC_NODE_NULL, "sockets");
	if (mp != MDESC_NODE_NULL)
		return set_sock_ids_by_socket(hp, mp);

	if (!set_sock_ids_by_cache(hp, 3))
		set_sock_ids_by_cache(hp, 2);
}

759
static void mark_proc_ids(struct mdesc_handle *hp, u64 mp, int proc_id)
760
{
761
	u64 a;
762

763 764 765
	mdesc_for_each_arc(a, hp, mp, MDESC_ARC_TYPE_BACK) {
		u64 t = mdesc_arc_target(hp, a);
		const char *name;
766 767
		const u64 *id;

768 769
		name = mdesc_node_name(hp, t);
		if (strcmp(name, "cpu"))
770 771
			continue;

772
		id = mdesc_get_property(hp, t, "id", NULL);
773 774 775 776 777
		if (*id < NR_CPUS)
			cpu_data(*id).proc_id = proc_id;
	}
}

778
static void __set_proc_ids(struct mdesc_handle *hp, const char *exec_unit_name)
779 780
{
	int idx;
781
	u64 mp;
782 783

	idx = 0;
784
	mdesc_for_each_node_by_name(hp, mp, exec_unit_name) {
785 786 787
		const char *type;
		int len;

788
		type = mdesc_get_property(hp, mp, "type", &len);
789 790
		if (!of_find_in_proplist(type, "int", len) &&
		    !of_find_in_proplist(type, "integer", len))
791 792
			continue;

793
		mark_proc_ids(hp, mp, idx);
794 795 796 797
		idx++;
	}
}

798
static void set_proc_ids(struct mdesc_handle *hp)
799
{
800 801
	__set_proc_ids(hp, "exec_unit");
	__set_proc_ids(hp, "exec-unit");
802 803
}

804 805
static void get_one_mondo_bits(const u64 *p, unsigned int *mask,
			       unsigned long def, unsigned long max)
806 807 808 809 810 811 812 813 814 815
{
	u64 val;

	if (!p)
		goto use_default;
	val = *p;

	if (!val || val >= 64)
		goto use_default;

816 817 818
	if (val > max)
		val = max;

819 820 821 822 823 824 825
	*mask = ((1U << val) * 64U) - 1U;
	return;

use_default:
	*mask = ((1U << def) * 64U) - 1U;
}

826 827
static void get_mondo_data(struct mdesc_handle *hp, u64 mp,
			   struct trap_per_cpu *tb)
828
{
829
	static int printed;
830 831
	const u64 *val;

832
	val = mdesc_get_property(hp, mp, "q-cpu-mondo-#bits", NULL);
833
	get_one_mondo_bits(val, &tb->cpu_mondo_qmask, 7, ilog2(max_cpus * 2));
834

835
	val = mdesc_get_property(hp, mp, "q-dev-mondo-#bits", NULL);
836
	get_one_mondo_bits(val, &tb->dev_mondo_qmask, 7, 8);
837

838
	val = mdesc_get_property(hp, mp, "q-resumable-#bits", NULL);
839
	get_one_mondo_bits(val, &tb->resum_qmask, 6, 7);
840

841
	val = mdesc_get_property(hp, mp, "q-nonresumable-#bits", NULL);
842 843 844 845 846 847 848 849 850
	get_one_mondo_bits(val, &tb->nonresum_qmask, 2, 2);
	if (!printed++) {
		pr_info("SUN4V: Mondo queue sizes "
			"[cpu(%u) dev(%u) r(%u) nr(%u)]\n",
			tb->cpu_mondo_qmask + 1,
			tb->dev_mondo_qmask + 1,
			tb->resum_qmask + 1,
			tb->nonresum_qmask + 1);
	}
851 852
}

853
static void *mdesc_iterate_over_cpus(void *(*func)(struct mdesc_handle *, u64, int, void *), void *arg, cpumask_t *mask)
854
{
855
	struct mdesc_handle *hp = mdesc_grab();
856
	void *ret = NULL;
857
	u64 mp;
858

859 860
	mdesc_for_each_node_by_name(hp, mp, "cpu") {
		const u64 *id = mdesc_get_property(hp, mp, "id", NULL);
861
		int cpuid = *id;
862 863

#ifdef CONFIG_SMP
864 865 866 867
		if (cpuid >= NR_CPUS) {
			printk(KERN_WARNING "Ignoring CPU %d which is "
			       ">= NR_CPUS (%d)\n",
			       cpuid, NR_CPUS);
868
			continue;
869
		}
870
		if (!cpumask_test_cpu(cpuid, mask))
871 872 873
			continue;
#endif

874 875 876 877 878 879 880 881
		ret = func(hp, mp, cpuid, arg);
		if (ret)
			goto out;
	}
out:
	mdesc_release(hp);
	return ret;
}
882

883 884
static void *record_one_cpu(struct mdesc_handle *hp, u64 mp, int cpuid,
			    void *arg)
885 886 887 888 889 890 891
{
	ncpus_probed++;
#ifdef CONFIG_SMP
	set_cpu_present(cpuid, true);
#endif
	return NULL;
}
892

893
void mdesc_populate_present_mask(cpumask_t *mask)
894 895 896
{
	if (tlb_type != hypervisor)
		return;
897

898 899 900
	ncpus_probed = 0;
	mdesc_iterate_over_cpus(record_one_cpu, NULL, mask);
}
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
static void * __init check_one_pgsz(struct mdesc_handle *hp, u64 mp, int cpuid, void *arg)
{
	const u64 *pgsz_prop = mdesc_get_property(hp, mp, "mmu-page-size-list", NULL);
	unsigned long *pgsz_mask = arg;
	u64 val;

	val = (HV_PGSZ_MASK_8K | HV_PGSZ_MASK_64K |
	       HV_PGSZ_MASK_512K | HV_PGSZ_MASK_4MB);
	if (pgsz_prop)
		val = *pgsz_prop;

	if (!*pgsz_mask)
		*pgsz_mask = val;
	else
		*pgsz_mask &= val;
	return NULL;
}

void __init mdesc_get_page_sizes(cpumask_t *mask, unsigned long *pgsz_mask)
{
	*pgsz_mask = 0;
	mdesc_iterate_over_cpus(check_one_pgsz, pgsz_mask, mask);
}

926 927
static void *fill_in_one_cpu(struct mdesc_handle *hp, u64 mp, int cpuid,
			     void *arg)
928 929 930 931 932
{
	const u64 *cfreq = mdesc_get_property(hp, mp, "clock-frequency", NULL);
	struct trap_per_cpu *tb;
	cpuinfo_sparc *c;
	u64 a;
933

934 935 936 937 938 939 940 941 942 943 944 945 946 947 948 949 950 951 952 953 954 955 956 957
#ifndef CONFIG_SMP
	/* On uniprocessor we only want the values for the
	 * real physical cpu the kernel booted onto, however
	 * cpu_data() only has one entry at index 0.
	 */
	if (cpuid != real_hard_smp_processor_id())
		return NULL;
	cpuid = 0;
#endif

	c = &cpu_data(cpuid);
	c->clock_tick = *cfreq;

	tb = &trap_block[cpuid];
	get_mondo_data(hp, mp, tb);

	mdesc_for_each_arc(a, hp, mp, MDESC_ARC_TYPE_FWD) {
		u64 j, t = mdesc_arc_target(hp, a);
		const char *t_name;

		t_name = mdesc_node_name(hp, t);
		if (!strcmp(t_name, "cache")) {
			fill_in_one_cache(c, hp, t);
			continue;
958 959
		}

960 961 962
		mdesc_for_each_arc(j, hp, t, MDESC_ARC_TYPE_FWD) {
			u64 n = mdesc_arc_target(hp, j);
			const char *n_name;
963

964 965 966 967
			n_name = mdesc_node_name(hp, n);
			if (!strcmp(n_name, "cache"))
				fill_in_one_cache(c, hp, n);
		}
968 969
	}

970 971 972 973 974 975
	c->core_id = 0;
	c->proc_id = -1;

	return NULL;
}

976
void mdesc_fill_in_cpu_data(cpumask_t *mask)
977 978 979
{
	struct mdesc_handle *hp;

980
	mdesc_iterate_over_cpus(fill_in_one_cpu, NULL, mask);
981 982 983

	hp = mdesc_grab();

984 985
	set_core_ids(hp);
	set_proc_ids(hp);
986
	set_sock_ids(hp);
987

988
	mdesc_release(hp);
989 990

	smp_fill_in_sib_core_maps();
991 992
}

993 994 995 996 997 998
/* mdesc_open() - Grab a reference to mdesc_handle when /dev/mdesc is
 * opened. Hold this reference until /dev/mdesc is closed to ensure
 * mdesc data structure is not released underneath us. Store the
 * pointer to mdesc structure in private_data for read and seek to use
 */
static int mdesc_open(struct inode *inode, struct file *file)
999 1000 1001 1002 1003 1004
{
	struct mdesc_handle *hp = mdesc_grab();

	if (!hp)
		return -ENODEV;

1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032
	file->private_data = hp;

	return 0;
}

static ssize_t mdesc_read(struct file *file, char __user *buf,
			  size_t len, loff_t *offp)
{
	struct mdesc_handle *hp = file->private_data;
	unsigned char *mdesc;
	int bytes_left, count = len;

	if (*offp >= hp->handle_size)
		return 0;

	bytes_left = hp->handle_size - *offp;
	if (count > bytes_left)
		count = bytes_left;

	mdesc = (unsigned char *)&hp->mdesc;
	mdesc += *offp;
	if (!copy_to_user(buf, mdesc, count)) {
		*offp += count;
		return count;
	} else {
		return -EFAULT;
	}
}
1033

1034 1035
static loff_t mdesc_llseek(struct file *file, loff_t offset, int whence)
{
1036
	struct mdesc_handle *hp = file->private_data;
1037

1038
	return no_seek_end_llseek_size(file, offset, whence, hp->handle_size);
1039 1040 1041 1042 1043 1044 1045 1046 1047
}

/* mdesc_close() - /dev/mdesc is being closed, release the reference to
 * mdesc structure.
 */
static int mdesc_close(struct inode *inode, struct file *file)
{
	mdesc_release(file->private_data);
	return 0;
1048 1049 1050
}

static const struct file_operations mdesc_fops = {
1051 1052 1053 1054 1055
	.open    = mdesc_open,
	.read	 = mdesc_read,
	.llseek  = mdesc_llseek,
	.release = mdesc_close,
	.owner	 = THIS_MODULE,
1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
};

static struct miscdevice mdesc_misc = {
	.minor	= MISC_DYNAMIC_MINOR,
	.name	= "mdesc",
	.fops	= &mdesc_fops,
};

static int __init mdesc_misc_init(void)
{
	return misc_register(&mdesc_misc);
}

__initcall(mdesc_misc_init);

1071 1072
void __init sun4v_mdesc_init(void)
{
1073
	struct mdesc_handle *hp;
1074 1075 1076 1077 1078 1079
	unsigned long len, real_len, status;

	(void) sun4v_mach_desc(0UL, 0UL, &len);

	printk("MDESC: Size is %lu bytes.\n", len);

Y
Yinghai Lu 已提交
1080
	hp = mdesc_alloc(len, &memblock_mdesc_ops);
1081 1082 1083 1084
	if (hp == NULL) {
		prom_printf("MDESC: alloc of %lu bytes failed.\n", len);
		prom_halt();
	}
1085

1086
	status = sun4v_mach_desc(__pa(&hp->mdesc), len, &real_len);
1087 1088 1089 1090
	if (status != HV_EOK || real_len > len) {
		prom_printf("sun4v_mach_desc fails, err(%lu), "
			    "len(%lu), real_len(%lu)\n",
			    status, len, real_len);
1091
		mdesc_free(hp);
1092 1093 1094
		prom_halt();
	}

1095
	cur_mdesc = hp;
1096 1097 1098

	report_platform_properties();
}