xref: /linux/mm/vmalloc.c (revision 7e5b528b4ce31208ef5c240c14beec4853d8262c)
11da177e4SLinus Torvalds /*
21da177e4SLinus Torvalds  *  linux/mm/vmalloc.c
31da177e4SLinus Torvalds  *
41da177e4SLinus Torvalds  *  Copyright (C) 1993  Linus Torvalds
51da177e4SLinus Torvalds  *  Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999
61da177e4SLinus Torvalds  *  SMP-safe vmalloc/vfree/ioremap, Tigran Aivazian <tigran@veritas.com>, May 2000
71da177e4SLinus Torvalds  *  Major rework to support vmap/vunmap, Christoph Hellwig, SGI, August 2002
8930fc45aSChristoph Lameter  *  Numa awareness, Christoph Lameter, SGI, June 2005
91da177e4SLinus Torvalds  */
101da177e4SLinus Torvalds 
11db64fe02SNick Piggin #include <linux/vmalloc.h>
121da177e4SLinus Torvalds #include <linux/mm.h>
131da177e4SLinus Torvalds #include <linux/module.h>
141da177e4SLinus Torvalds #include <linux/highmem.h>
15d43c36dcSAlexey Dobriyan #include <linux/sched.h>
161da177e4SLinus Torvalds #include <linux/slab.h>
171da177e4SLinus Torvalds #include <linux/spinlock.h>
181da177e4SLinus Torvalds #include <linux/interrupt.h>
195f6a6a9cSAlexey Dobriyan #include <linux/proc_fs.h>
20a10aa579SChristoph Lameter #include <linux/seq_file.h>
213ac7fe5aSThomas Gleixner #include <linux/debugobjects.h>
2223016969SChristoph Lameter #include <linux/kallsyms.h>
23db64fe02SNick Piggin #include <linux/list.h>
24db64fe02SNick Piggin #include <linux/rbtree.h>
25db64fe02SNick Piggin #include <linux/radix-tree.h>
26db64fe02SNick Piggin #include <linux/rcupdate.h>
27f0aa6617STejun Heo #include <linux/pfn.h>
2889219d37SCatalin Marinas #include <linux/kmemleak.h>
2960063497SArun Sharma #include <linux/atomic.h>
303b32123dSGideon Israel Dsouza #include <linux/compiler.h>
3132fcfd40SAl Viro #include <linux/llist.h>
323b32123dSGideon Israel Dsouza 
331da177e4SLinus Torvalds #include <asm/uaccess.h>
341da177e4SLinus Torvalds #include <asm/tlbflush.h>
352dca6999SDavid Miller #include <asm/shmparam.h>
361da177e4SLinus Torvalds 
3732fcfd40SAl Viro struct vfree_deferred {
3832fcfd40SAl Viro 	struct llist_head list;
3932fcfd40SAl Viro 	struct work_struct wq;
4032fcfd40SAl Viro };
4132fcfd40SAl Viro static DEFINE_PER_CPU(struct vfree_deferred, vfree_deferred);
4232fcfd40SAl Viro 
4332fcfd40SAl Viro static void __vunmap(const void *, int);
4432fcfd40SAl Viro 
4532fcfd40SAl Viro static void free_work(struct work_struct *w)
4632fcfd40SAl Viro {
4732fcfd40SAl Viro 	struct vfree_deferred *p = container_of(w, struct vfree_deferred, wq);
4832fcfd40SAl Viro 	struct llist_node *llnode = llist_del_all(&p->list);
4932fcfd40SAl Viro 	while (llnode) {
5032fcfd40SAl Viro 		void *p = llnode;
5132fcfd40SAl Viro 		llnode = llist_next(llnode);
5232fcfd40SAl Viro 		__vunmap(p, 1);
5332fcfd40SAl Viro 	}
5432fcfd40SAl Viro }
5532fcfd40SAl Viro 
56db64fe02SNick Piggin /*** Page table manipulation functions ***/
57b221385bSAdrian Bunk 
581da177e4SLinus Torvalds static void vunmap_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end)
591da177e4SLinus Torvalds {
601da177e4SLinus Torvalds 	pte_t *pte;
611da177e4SLinus Torvalds 
621da177e4SLinus Torvalds 	pte = pte_offset_kernel(pmd, addr);
631da177e4SLinus Torvalds 	do {
641da177e4SLinus Torvalds 		pte_t ptent = ptep_get_and_clear(&init_mm, addr, pte);
651da177e4SLinus Torvalds 		WARN_ON(!pte_none(ptent) && !pte_present(ptent));
661da177e4SLinus Torvalds 	} while (pte++, addr += PAGE_SIZE, addr != end);
671da177e4SLinus Torvalds }
681da177e4SLinus Torvalds 
69db64fe02SNick Piggin static void vunmap_pmd_range(pud_t *pud, unsigned long addr, unsigned long end)
701da177e4SLinus Torvalds {
711da177e4SLinus Torvalds 	pmd_t *pmd;
721da177e4SLinus Torvalds 	unsigned long next;
731da177e4SLinus Torvalds 
741da177e4SLinus Torvalds 	pmd = pmd_offset(pud, addr);
751da177e4SLinus Torvalds 	do {
761da177e4SLinus Torvalds 		next = pmd_addr_end(addr, end);
771da177e4SLinus Torvalds 		if (pmd_none_or_clear_bad(pmd))
781da177e4SLinus Torvalds 			continue;
791da177e4SLinus Torvalds 		vunmap_pte_range(pmd, addr, next);
801da177e4SLinus Torvalds 	} while (pmd++, addr = next, addr != end);
811da177e4SLinus Torvalds }
821da177e4SLinus Torvalds 
83db64fe02SNick Piggin static void vunmap_pud_range(pgd_t *pgd, unsigned long addr, unsigned long end)
841da177e4SLinus Torvalds {
851da177e4SLinus Torvalds 	pud_t *pud;
861da177e4SLinus Torvalds 	unsigned long next;
871da177e4SLinus Torvalds 
881da177e4SLinus Torvalds 	pud = pud_offset(pgd, addr);
891da177e4SLinus Torvalds 	do {
901da177e4SLinus Torvalds 		next = pud_addr_end(addr, end);
911da177e4SLinus Torvalds 		if (pud_none_or_clear_bad(pud))
921da177e4SLinus Torvalds 			continue;
931da177e4SLinus Torvalds 		vunmap_pmd_range(pud, addr, next);
941da177e4SLinus Torvalds 	} while (pud++, addr = next, addr != end);
951da177e4SLinus Torvalds }
961da177e4SLinus Torvalds 
97db64fe02SNick Piggin static void vunmap_page_range(unsigned long addr, unsigned long end)
981da177e4SLinus Torvalds {
991da177e4SLinus Torvalds 	pgd_t *pgd;
1001da177e4SLinus Torvalds 	unsigned long next;
1011da177e4SLinus Torvalds 
1021da177e4SLinus Torvalds 	BUG_ON(addr >= end);
1031da177e4SLinus Torvalds 	pgd = pgd_offset_k(addr);
1041da177e4SLinus Torvalds 	do {
1051da177e4SLinus Torvalds 		next = pgd_addr_end(addr, end);
1061da177e4SLinus Torvalds 		if (pgd_none_or_clear_bad(pgd))
1071da177e4SLinus Torvalds 			continue;
1081da177e4SLinus Torvalds 		vunmap_pud_range(pgd, addr, next);
1091da177e4SLinus Torvalds 	} while (pgd++, addr = next, addr != end);
1101da177e4SLinus Torvalds }
1111da177e4SLinus Torvalds 
1121da177e4SLinus Torvalds static int vmap_pte_range(pmd_t *pmd, unsigned long addr,
113db64fe02SNick Piggin 		unsigned long end, pgprot_t prot, struct page **pages, int *nr)
1141da177e4SLinus Torvalds {
1151da177e4SLinus Torvalds 	pte_t *pte;
1161da177e4SLinus Torvalds 
117db64fe02SNick Piggin 	/*
118db64fe02SNick Piggin 	 * nr is a running index into the array which helps higher level
119db64fe02SNick Piggin 	 * callers keep track of where we're up to.
120db64fe02SNick Piggin 	 */
121db64fe02SNick Piggin 
122872fec16SHugh Dickins 	pte = pte_alloc_kernel(pmd, addr);
1231da177e4SLinus Torvalds 	if (!pte)
1241da177e4SLinus Torvalds 		return -ENOMEM;
1251da177e4SLinus Torvalds 	do {
126db64fe02SNick Piggin 		struct page *page = pages[*nr];
127db64fe02SNick Piggin 
128db64fe02SNick Piggin 		if (WARN_ON(!pte_none(*pte)))
129db64fe02SNick Piggin 			return -EBUSY;
130db64fe02SNick Piggin 		if (WARN_ON(!page))
1311da177e4SLinus Torvalds 			return -ENOMEM;
1321da177e4SLinus Torvalds 		set_pte_at(&init_mm, addr, pte, mk_pte(page, prot));
133db64fe02SNick Piggin 		(*nr)++;
1341da177e4SLinus Torvalds 	} while (pte++, addr += PAGE_SIZE, addr != end);
1351da177e4SLinus Torvalds 	return 0;
1361da177e4SLinus Torvalds }
1371da177e4SLinus Torvalds 
138db64fe02SNick Piggin static int vmap_pmd_range(pud_t *pud, unsigned long addr,
139db64fe02SNick Piggin 		unsigned long end, pgprot_t prot, struct page **pages, int *nr)
1401da177e4SLinus Torvalds {
1411da177e4SLinus Torvalds 	pmd_t *pmd;
1421da177e4SLinus Torvalds 	unsigned long next;
1431da177e4SLinus Torvalds 
1441da177e4SLinus Torvalds 	pmd = pmd_alloc(&init_mm, pud, addr);
1451da177e4SLinus Torvalds 	if (!pmd)
1461da177e4SLinus Torvalds 		return -ENOMEM;
1471da177e4SLinus Torvalds 	do {
1481da177e4SLinus Torvalds 		next = pmd_addr_end(addr, end);
149db64fe02SNick Piggin 		if (vmap_pte_range(pmd, addr, next, prot, pages, nr))
1501da177e4SLinus Torvalds 			return -ENOMEM;
1511da177e4SLinus Torvalds 	} while (pmd++, addr = next, addr != end);
1521da177e4SLinus Torvalds 	return 0;
1531da177e4SLinus Torvalds }
1541da177e4SLinus Torvalds 
155db64fe02SNick Piggin static int vmap_pud_range(pgd_t *pgd, unsigned long addr,
156db64fe02SNick Piggin 		unsigned long end, pgprot_t prot, struct page **pages, int *nr)
1571da177e4SLinus Torvalds {
1581da177e4SLinus Torvalds 	pud_t *pud;
1591da177e4SLinus Torvalds 	unsigned long next;
1601da177e4SLinus Torvalds 
1611da177e4SLinus Torvalds 	pud = pud_alloc(&init_mm, pgd, addr);
1621da177e4SLinus Torvalds 	if (!pud)
1631da177e4SLinus Torvalds 		return -ENOMEM;
1641da177e4SLinus Torvalds 	do {
1651da177e4SLinus Torvalds 		next = pud_addr_end(addr, end);
166db64fe02SNick Piggin 		if (vmap_pmd_range(pud, addr, next, prot, pages, nr))
1671da177e4SLinus Torvalds 			return -ENOMEM;
1681da177e4SLinus Torvalds 	} while (pud++, addr = next, addr != end);
1691da177e4SLinus Torvalds 	return 0;
1701da177e4SLinus Torvalds }
1711da177e4SLinus Torvalds 
172db64fe02SNick Piggin /*
173db64fe02SNick Piggin  * Set up page tables in kva (addr, end). The ptes shall have prot "prot", and
174db64fe02SNick Piggin  * will have pfns corresponding to the "pages" array.
175db64fe02SNick Piggin  *
176db64fe02SNick Piggin  * Ie. pte at addr+N*PAGE_SIZE shall point to pfn corresponding to pages[N]
177db64fe02SNick Piggin  */
1788fc48985STejun Heo static int vmap_page_range_noflush(unsigned long start, unsigned long end,
179db64fe02SNick Piggin 				   pgprot_t prot, struct page **pages)
1801da177e4SLinus Torvalds {
1811da177e4SLinus Torvalds 	pgd_t *pgd;
1821da177e4SLinus Torvalds 	unsigned long next;
1832e4e27c7SAdam Lackorzynski 	unsigned long addr = start;
184db64fe02SNick Piggin 	int err = 0;
185db64fe02SNick Piggin 	int nr = 0;
1861da177e4SLinus Torvalds 
1871da177e4SLinus Torvalds 	BUG_ON(addr >= end);
1881da177e4SLinus Torvalds 	pgd = pgd_offset_k(addr);
1891da177e4SLinus Torvalds 	do {
1901da177e4SLinus Torvalds 		next = pgd_addr_end(addr, end);
191db64fe02SNick Piggin 		err = vmap_pud_range(pgd, addr, next, prot, pages, &nr);
1921da177e4SLinus Torvalds 		if (err)
193bf88c8c8SFigo.zhang 			return err;
1941da177e4SLinus Torvalds 	} while (pgd++, addr = next, addr != end);
195db64fe02SNick Piggin 
196db64fe02SNick Piggin 	return nr;
1971da177e4SLinus Torvalds }
1981da177e4SLinus Torvalds 
1998fc48985STejun Heo static int vmap_page_range(unsigned long start, unsigned long end,
2008fc48985STejun Heo 			   pgprot_t prot, struct page **pages)
2018fc48985STejun Heo {
2028fc48985STejun Heo 	int ret;
2038fc48985STejun Heo 
2048fc48985STejun Heo 	ret = vmap_page_range_noflush(start, end, prot, pages);
2058fc48985STejun Heo 	flush_cache_vmap(start, end);
2068fc48985STejun Heo 	return ret;
2078fc48985STejun Heo }
2088fc48985STejun Heo 
20981ac3ad9SKAMEZAWA Hiroyuki int is_vmalloc_or_module_addr(const void *x)
21073bdf0a6SLinus Torvalds {
21173bdf0a6SLinus Torvalds 	/*
212ab4f2ee1SRussell King 	 * ARM, x86-64 and sparc64 put modules in a special place,
21373bdf0a6SLinus Torvalds 	 * and fall back on vmalloc() if that fails. Others
21473bdf0a6SLinus Torvalds 	 * just put it in the vmalloc space.
21573bdf0a6SLinus Torvalds 	 */
21673bdf0a6SLinus Torvalds #if defined(CONFIG_MODULES) && defined(MODULES_VADDR)
21773bdf0a6SLinus Torvalds 	unsigned long addr = (unsigned long)x;
21873bdf0a6SLinus Torvalds 	if (addr >= MODULES_VADDR && addr < MODULES_END)
21973bdf0a6SLinus Torvalds 		return 1;
22073bdf0a6SLinus Torvalds #endif
22173bdf0a6SLinus Torvalds 	return is_vmalloc_addr(x);
22273bdf0a6SLinus Torvalds }
22373bdf0a6SLinus Torvalds 
22448667e7aSChristoph Lameter /*
225add688fbSmalc  * Walk a vmap address to the struct page it maps.
22648667e7aSChristoph Lameter  */
227add688fbSmalc struct page *vmalloc_to_page(const void *vmalloc_addr)
22848667e7aSChristoph Lameter {
22948667e7aSChristoph Lameter 	unsigned long addr = (unsigned long) vmalloc_addr;
230add688fbSmalc 	struct page *page = NULL;
23148667e7aSChristoph Lameter 	pgd_t *pgd = pgd_offset_k(addr);
23248667e7aSChristoph Lameter 
2337aa413deSIngo Molnar 	/*
2347aa413deSIngo Molnar 	 * XXX we might need to change this if we add VIRTUAL_BUG_ON for
2357aa413deSIngo Molnar 	 * architectures that do not vmalloc module space
2367aa413deSIngo Molnar 	 */
23773bdf0a6SLinus Torvalds 	VIRTUAL_BUG_ON(!is_vmalloc_or_module_addr(vmalloc_addr));
23859ea7463SJiri Slaby 
23948667e7aSChristoph Lameter 	if (!pgd_none(*pgd)) {
240db64fe02SNick Piggin 		pud_t *pud = pud_offset(pgd, addr);
24148667e7aSChristoph Lameter 		if (!pud_none(*pud)) {
242db64fe02SNick Piggin 			pmd_t *pmd = pmd_offset(pud, addr);
24348667e7aSChristoph Lameter 			if (!pmd_none(*pmd)) {
244db64fe02SNick Piggin 				pte_t *ptep, pte;
245db64fe02SNick Piggin 
24648667e7aSChristoph Lameter 				ptep = pte_offset_map(pmd, addr);
24748667e7aSChristoph Lameter 				pte = *ptep;
24848667e7aSChristoph Lameter 				if (pte_present(pte))
249add688fbSmalc 					page = pte_page(pte);
25048667e7aSChristoph Lameter 				pte_unmap(ptep);
25148667e7aSChristoph Lameter 			}
25248667e7aSChristoph Lameter 		}
25348667e7aSChristoph Lameter 	}
254add688fbSmalc 	return page;
255ece86e22SJianyu Zhan }
256ece86e22SJianyu Zhan EXPORT_SYMBOL(vmalloc_to_page);
257ece86e22SJianyu Zhan 
258add688fbSmalc /*
259add688fbSmalc  * Map a vmalloc()-space virtual address to the physical page frame number.
260add688fbSmalc  */
261add688fbSmalc unsigned long vmalloc_to_pfn(const void *vmalloc_addr)
262add688fbSmalc {
263add688fbSmalc 	return page_to_pfn(vmalloc_to_page(vmalloc_addr));
264add688fbSmalc }
265add688fbSmalc EXPORT_SYMBOL(vmalloc_to_pfn);
266add688fbSmalc 
267db64fe02SNick Piggin 
268db64fe02SNick Piggin /*** Global kva allocator ***/
269db64fe02SNick Piggin 
270db64fe02SNick Piggin #define VM_LAZY_FREE	0x01
271db64fe02SNick Piggin #define VM_LAZY_FREEING	0x02
272db64fe02SNick Piggin #define VM_VM_AREA	0x04
273db64fe02SNick Piggin 
274db64fe02SNick Piggin static DEFINE_SPINLOCK(vmap_area_lock);
275f1c4069eSJoonsoo Kim /* Export for kexec only */
276f1c4069eSJoonsoo Kim LIST_HEAD(vmap_area_list);
27789699605SNick Piggin static struct rb_root vmap_area_root = RB_ROOT;
27889699605SNick Piggin 
27989699605SNick Piggin /* The vmap cache globals are protected by vmap_area_lock */
28089699605SNick Piggin static struct rb_node *free_vmap_cache;
28189699605SNick Piggin static unsigned long cached_hole_size;
28289699605SNick Piggin static unsigned long cached_vstart;
28389699605SNick Piggin static unsigned long cached_align;
28489699605SNick Piggin 
285ca23e405STejun Heo static unsigned long vmap_area_pcpu_hole;
286db64fe02SNick Piggin 
287db64fe02SNick Piggin static struct vmap_area *__find_vmap_area(unsigned long addr)
2881da177e4SLinus Torvalds {
289db64fe02SNick Piggin 	struct rb_node *n = vmap_area_root.rb_node;
290db64fe02SNick Piggin 
291db64fe02SNick Piggin 	while (n) {
292db64fe02SNick Piggin 		struct vmap_area *va;
293db64fe02SNick Piggin 
294db64fe02SNick Piggin 		va = rb_entry(n, struct vmap_area, rb_node);
295db64fe02SNick Piggin 		if (addr < va->va_start)
296db64fe02SNick Piggin 			n = n->rb_left;
297cef2ac3fSHATAYAMA Daisuke 		else if (addr >= va->va_end)
298db64fe02SNick Piggin 			n = n->rb_right;
299db64fe02SNick Piggin 		else
300db64fe02SNick Piggin 			return va;
301db64fe02SNick Piggin 	}
302db64fe02SNick Piggin 
303db64fe02SNick Piggin 	return NULL;
304db64fe02SNick Piggin }
305db64fe02SNick Piggin 
306db64fe02SNick Piggin static void __insert_vmap_area(struct vmap_area *va)
307db64fe02SNick Piggin {
308db64fe02SNick Piggin 	struct rb_node **p = &vmap_area_root.rb_node;
309db64fe02SNick Piggin 	struct rb_node *parent = NULL;
310db64fe02SNick Piggin 	struct rb_node *tmp;
311db64fe02SNick Piggin 
312db64fe02SNick Piggin 	while (*p) {
313170168d0SNamhyung Kim 		struct vmap_area *tmp_va;
314db64fe02SNick Piggin 
315db64fe02SNick Piggin 		parent = *p;
316170168d0SNamhyung Kim 		tmp_va = rb_entry(parent, struct vmap_area, rb_node);
317170168d0SNamhyung Kim 		if (va->va_start < tmp_va->va_end)
318db64fe02SNick Piggin 			p = &(*p)->rb_left;
319170168d0SNamhyung Kim 		else if (va->va_end > tmp_va->va_start)
320db64fe02SNick Piggin 			p = &(*p)->rb_right;
321db64fe02SNick Piggin 		else
322db64fe02SNick Piggin 			BUG();
323db64fe02SNick Piggin 	}
324db64fe02SNick Piggin 
325db64fe02SNick Piggin 	rb_link_node(&va->rb_node, parent, p);
326db64fe02SNick Piggin 	rb_insert_color(&va->rb_node, &vmap_area_root);
327db64fe02SNick Piggin 
3284341fa45SJoonsoo Kim 	/* address-sort this list */
329db64fe02SNick Piggin 	tmp = rb_prev(&va->rb_node);
330db64fe02SNick Piggin 	if (tmp) {
331db64fe02SNick Piggin 		struct vmap_area *prev;
332db64fe02SNick Piggin 		prev = rb_entry(tmp, struct vmap_area, rb_node);
333db64fe02SNick Piggin 		list_add_rcu(&va->list, &prev->list);
334db64fe02SNick Piggin 	} else
335db64fe02SNick Piggin 		list_add_rcu(&va->list, &vmap_area_list);
336db64fe02SNick Piggin }
337db64fe02SNick Piggin 
338db64fe02SNick Piggin static void purge_vmap_area_lazy(void);
339db64fe02SNick Piggin 
340db64fe02SNick Piggin /*
341db64fe02SNick Piggin  * Allocate a region of KVA of the specified size and alignment, within the
342db64fe02SNick Piggin  * vstart and vend.
343db64fe02SNick Piggin  */
344db64fe02SNick Piggin static struct vmap_area *alloc_vmap_area(unsigned long size,
345db64fe02SNick Piggin 				unsigned long align,
346db64fe02SNick Piggin 				unsigned long vstart, unsigned long vend,
347db64fe02SNick Piggin 				int node, gfp_t gfp_mask)
348db64fe02SNick Piggin {
349db64fe02SNick Piggin 	struct vmap_area *va;
350db64fe02SNick Piggin 	struct rb_node *n;
3511da177e4SLinus Torvalds 	unsigned long addr;
352db64fe02SNick Piggin 	int purged = 0;
35389699605SNick Piggin 	struct vmap_area *first;
354db64fe02SNick Piggin 
3557766970cSNick Piggin 	BUG_ON(!size);
356db64fe02SNick Piggin 	BUG_ON(size & ~PAGE_MASK);
35789699605SNick Piggin 	BUG_ON(!is_power_of_2(align));
358db64fe02SNick Piggin 
359db64fe02SNick Piggin 	va = kmalloc_node(sizeof(struct vmap_area),
360db64fe02SNick Piggin 			gfp_mask & GFP_RECLAIM_MASK, node);
361db64fe02SNick Piggin 	if (unlikely(!va))
362db64fe02SNick Piggin 		return ERR_PTR(-ENOMEM);
363db64fe02SNick Piggin 
3647f88f88fSCatalin Marinas 	/*
3657f88f88fSCatalin Marinas 	 * Only scan the relevant parts containing pointers to other objects
3667f88f88fSCatalin Marinas 	 * to avoid false negatives.
3677f88f88fSCatalin Marinas 	 */
3687f88f88fSCatalin Marinas 	kmemleak_scan_area(&va->rb_node, SIZE_MAX, gfp_mask & GFP_RECLAIM_MASK);
3697f88f88fSCatalin Marinas 
370db64fe02SNick Piggin retry:
371db64fe02SNick Piggin 	spin_lock(&vmap_area_lock);
37289699605SNick Piggin 	/*
37389699605SNick Piggin 	 * Invalidate cache if we have more permissive parameters.
37489699605SNick Piggin 	 * cached_hole_size notes the largest hole noticed _below_
37589699605SNick Piggin 	 * the vmap_area cached in free_vmap_cache: if size fits
37689699605SNick Piggin 	 * into that hole, we want to scan from vstart to reuse
37789699605SNick Piggin 	 * the hole instead of allocating above free_vmap_cache.
37889699605SNick Piggin 	 * Note that __free_vmap_area may update free_vmap_cache
37989699605SNick Piggin 	 * without updating cached_hole_size or cached_align.
38089699605SNick Piggin 	 */
38189699605SNick Piggin 	if (!free_vmap_cache ||
38289699605SNick Piggin 			size < cached_hole_size ||
38389699605SNick Piggin 			vstart < cached_vstart ||
38489699605SNick Piggin 			align < cached_align) {
38589699605SNick Piggin nocache:
38689699605SNick Piggin 		cached_hole_size = 0;
38789699605SNick Piggin 		free_vmap_cache = NULL;
38889699605SNick Piggin 	}
38989699605SNick Piggin 	/* record if we encounter less permissive parameters */
39089699605SNick Piggin 	cached_vstart = vstart;
39189699605SNick Piggin 	cached_align = align;
39289699605SNick Piggin 
39389699605SNick Piggin 	/* find starting point for our search */
39489699605SNick Piggin 	if (free_vmap_cache) {
39589699605SNick Piggin 		first = rb_entry(free_vmap_cache, struct vmap_area, rb_node);
396248ac0e1SJohannes Weiner 		addr = ALIGN(first->va_end, align);
39789699605SNick Piggin 		if (addr < vstart)
39889699605SNick Piggin 			goto nocache;
399bcb615a8SZhang Yanfei 		if (addr + size < addr)
4007766970cSNick Piggin 			goto overflow;
4017766970cSNick Piggin 
40289699605SNick Piggin 	} else {
40389699605SNick Piggin 		addr = ALIGN(vstart, align);
404bcb615a8SZhang Yanfei 		if (addr + size < addr)
40589699605SNick Piggin 			goto overflow;
406db64fe02SNick Piggin 
40789699605SNick Piggin 		n = vmap_area_root.rb_node;
40889699605SNick Piggin 		first = NULL;
40989699605SNick Piggin 
41089699605SNick Piggin 		while (n) {
411db64fe02SNick Piggin 			struct vmap_area *tmp;
412db64fe02SNick Piggin 			tmp = rb_entry(n, struct vmap_area, rb_node);
413db64fe02SNick Piggin 			if (tmp->va_end >= addr) {
414db64fe02SNick Piggin 				first = tmp;
41589699605SNick Piggin 				if (tmp->va_start <= addr)
41689699605SNick Piggin 					break;
417db64fe02SNick Piggin 				n = n->rb_left;
41889699605SNick Piggin 			} else
419db64fe02SNick Piggin 				n = n->rb_right;
420db64fe02SNick Piggin 		}
421db64fe02SNick Piggin 
422db64fe02SNick Piggin 		if (!first)
423db64fe02SNick Piggin 			goto found;
424db64fe02SNick Piggin 	}
425db64fe02SNick Piggin 
42689699605SNick Piggin 	/* from the starting point, walk areas until a suitable hole is found */
427248ac0e1SJohannes Weiner 	while (addr + size > first->va_start && addr + size <= vend) {
42889699605SNick Piggin 		if (addr + cached_hole_size < first->va_start)
42989699605SNick Piggin 			cached_hole_size = first->va_start - addr;
430248ac0e1SJohannes Weiner 		addr = ALIGN(first->va_end, align);
431bcb615a8SZhang Yanfei 		if (addr + size < addr)
4327766970cSNick Piggin 			goto overflow;
433db64fe02SNick Piggin 
43492ca922fSHong zhi guo 		if (list_is_last(&first->list, &vmap_area_list))
435db64fe02SNick Piggin 			goto found;
43692ca922fSHong zhi guo 
43792ca922fSHong zhi guo 		first = list_entry(first->list.next,
43892ca922fSHong zhi guo 				struct vmap_area, list);
439db64fe02SNick Piggin 	}
44089699605SNick Piggin 
441db64fe02SNick Piggin found:
44289699605SNick Piggin 	if (addr + size > vend)
44389699605SNick Piggin 		goto overflow;
44489699605SNick Piggin 
44589699605SNick Piggin 	va->va_start = addr;
44689699605SNick Piggin 	va->va_end = addr + size;
44789699605SNick Piggin 	va->flags = 0;
44889699605SNick Piggin 	__insert_vmap_area(va);
44989699605SNick Piggin 	free_vmap_cache = &va->rb_node;
45089699605SNick Piggin 	spin_unlock(&vmap_area_lock);
45189699605SNick Piggin 
45289699605SNick Piggin 	BUG_ON(va->va_start & (align-1));
45389699605SNick Piggin 	BUG_ON(va->va_start < vstart);
45489699605SNick Piggin 	BUG_ON(va->va_end > vend);
45589699605SNick Piggin 
45689699605SNick Piggin 	return va;
45789699605SNick Piggin 
4587766970cSNick Piggin overflow:
459db64fe02SNick Piggin 	spin_unlock(&vmap_area_lock);
460db64fe02SNick Piggin 	if (!purged) {
461db64fe02SNick Piggin 		purge_vmap_area_lazy();
462db64fe02SNick Piggin 		purged = 1;
463db64fe02SNick Piggin 		goto retry;
464db64fe02SNick Piggin 	}
465db64fe02SNick Piggin 	if (printk_ratelimit())
4660cbc8533SPintu Kumar 		pr_warn("vmap allocation for size %lu failed: "
467c1279c4eSGlauber Costa 			"use vmalloc=<size> to increase size.\n", size);
4682498ce42SRalph Wuerthner 	kfree(va);
469db64fe02SNick Piggin 	return ERR_PTR(-EBUSY);
470db64fe02SNick Piggin }
471db64fe02SNick Piggin 
472db64fe02SNick Piggin static void __free_vmap_area(struct vmap_area *va)
473db64fe02SNick Piggin {
474db64fe02SNick Piggin 	BUG_ON(RB_EMPTY_NODE(&va->rb_node));
47589699605SNick Piggin 
47689699605SNick Piggin 	if (free_vmap_cache) {
47789699605SNick Piggin 		if (va->va_end < cached_vstart) {
47889699605SNick Piggin 			free_vmap_cache = NULL;
47989699605SNick Piggin 		} else {
48089699605SNick Piggin 			struct vmap_area *cache;
48189699605SNick Piggin 			cache = rb_entry(free_vmap_cache, struct vmap_area, rb_node);
48289699605SNick Piggin 			if (va->va_start <= cache->va_start) {
48389699605SNick Piggin 				free_vmap_cache = rb_prev(&va->rb_node);
48489699605SNick Piggin 				/*
48589699605SNick Piggin 				 * We don't try to update cached_hole_size or
48689699605SNick Piggin 				 * cached_align, but it won't go very wrong.
48789699605SNick Piggin 				 */
48889699605SNick Piggin 			}
48989699605SNick Piggin 		}
49089699605SNick Piggin 	}
491db64fe02SNick Piggin 	rb_erase(&va->rb_node, &vmap_area_root);
492db64fe02SNick Piggin 	RB_CLEAR_NODE(&va->rb_node);
493db64fe02SNick Piggin 	list_del_rcu(&va->list);
494db64fe02SNick Piggin 
495ca23e405STejun Heo 	/*
496ca23e405STejun Heo 	 * Track the highest possible candidate for pcpu area
497ca23e405STejun Heo 	 * allocation.  Areas outside of vmalloc area can be returned
498ca23e405STejun Heo 	 * here too, consider only end addresses which fall inside
499ca23e405STejun Heo 	 * vmalloc area proper.
500ca23e405STejun Heo 	 */
501ca23e405STejun Heo 	if (va->va_end > VMALLOC_START && va->va_end <= VMALLOC_END)
502ca23e405STejun Heo 		vmap_area_pcpu_hole = max(vmap_area_pcpu_hole, va->va_end);
503ca23e405STejun Heo 
50414769de9SLai Jiangshan 	kfree_rcu(va, rcu_head);
505db64fe02SNick Piggin }
506db64fe02SNick Piggin 
507db64fe02SNick Piggin /*
508db64fe02SNick Piggin  * Free a region of KVA allocated by alloc_vmap_area
509db64fe02SNick Piggin  */
510db64fe02SNick Piggin static void free_vmap_area(struct vmap_area *va)
511db64fe02SNick Piggin {
512db64fe02SNick Piggin 	spin_lock(&vmap_area_lock);
513db64fe02SNick Piggin 	__free_vmap_area(va);
514db64fe02SNick Piggin 	spin_unlock(&vmap_area_lock);
515db64fe02SNick Piggin }
516db64fe02SNick Piggin 
517db64fe02SNick Piggin /*
518db64fe02SNick Piggin  * Clear the pagetable entries of a given vmap_area
519db64fe02SNick Piggin  */
520db64fe02SNick Piggin static void unmap_vmap_area(struct vmap_area *va)
521db64fe02SNick Piggin {
522db64fe02SNick Piggin 	vunmap_page_range(va->va_start, va->va_end);
523db64fe02SNick Piggin }
524db64fe02SNick Piggin 
525cd52858cSNick Piggin static void vmap_debug_free_range(unsigned long start, unsigned long end)
526cd52858cSNick Piggin {
527cd52858cSNick Piggin 	/*
528cd52858cSNick Piggin 	 * Unmap page tables and force a TLB flush immediately if
529cd52858cSNick Piggin 	 * CONFIG_DEBUG_PAGEALLOC is set. This catches use after free
530cd52858cSNick Piggin 	 * bugs similarly to those in linear kernel virtual address
531cd52858cSNick Piggin 	 * space after a page has been freed.
532cd52858cSNick Piggin 	 *
533cd52858cSNick Piggin 	 * All the lazy freeing logic is still retained, in order to
534cd52858cSNick Piggin 	 * minimise intrusiveness of this debugging feature.
535cd52858cSNick Piggin 	 *
536cd52858cSNick Piggin 	 * This is going to be *slow* (linear kernel virtual address
537cd52858cSNick Piggin 	 * debugging doesn't do a broadcast TLB flush so it is a lot
538cd52858cSNick Piggin 	 * faster).
539cd52858cSNick Piggin 	 */
540cd52858cSNick Piggin #ifdef CONFIG_DEBUG_PAGEALLOC
541cd52858cSNick Piggin 	vunmap_page_range(start, end);
542cd52858cSNick Piggin 	flush_tlb_kernel_range(start, end);
543cd52858cSNick Piggin #endif
544cd52858cSNick Piggin }
545cd52858cSNick Piggin 
546db64fe02SNick Piggin /*
547db64fe02SNick Piggin  * lazy_max_pages is the maximum amount of virtual address space we gather up
548db64fe02SNick Piggin  * before attempting to purge with a TLB flush.
549db64fe02SNick Piggin  *
550db64fe02SNick Piggin  * There is a tradeoff here: a larger number will cover more kernel page tables
551db64fe02SNick Piggin  * and take slightly longer to purge, but it will linearly reduce the number of
552db64fe02SNick Piggin  * global TLB flushes that must be performed. It would seem natural to scale
553db64fe02SNick Piggin  * this number up linearly with the number of CPUs (because vmapping activity
554db64fe02SNick Piggin  * could also scale linearly with the number of CPUs), however it is likely
555db64fe02SNick Piggin  * that in practice, workloads might be constrained in other ways that mean
556db64fe02SNick Piggin  * vmap activity will not scale linearly with CPUs. Also, I want to be
557db64fe02SNick Piggin  * conservative and not introduce a big latency on huge systems, so go with
558db64fe02SNick Piggin  * a less aggressive log scale. It will still be an improvement over the old
559db64fe02SNick Piggin  * code, and it will be simple to change the scale factor if we find that it
560db64fe02SNick Piggin  * becomes a problem on bigger systems.
561db64fe02SNick Piggin  */
562db64fe02SNick Piggin static unsigned long lazy_max_pages(void)
563db64fe02SNick Piggin {
564db64fe02SNick Piggin 	unsigned int log;
565db64fe02SNick Piggin 
566db64fe02SNick Piggin 	log = fls(num_online_cpus());
567db64fe02SNick Piggin 
568db64fe02SNick Piggin 	return log * (32UL * 1024 * 1024 / PAGE_SIZE);
569db64fe02SNick Piggin }
570db64fe02SNick Piggin 
571db64fe02SNick Piggin static atomic_t vmap_lazy_nr = ATOMIC_INIT(0);
572db64fe02SNick Piggin 
57302b709dfSNick Piggin /* for per-CPU blocks */
57402b709dfSNick Piggin static void purge_fragmented_blocks_allcpus(void);
57502b709dfSNick Piggin 
576db64fe02SNick Piggin /*
5773ee48b6aSCliff Wickman  * called before a call to iounmap() if the caller wants vm_area_struct's
5783ee48b6aSCliff Wickman  * immediately freed.
5793ee48b6aSCliff Wickman  */
5803ee48b6aSCliff Wickman void set_iounmap_nonlazy(void)
5813ee48b6aSCliff Wickman {
5823ee48b6aSCliff Wickman 	atomic_set(&vmap_lazy_nr, lazy_max_pages()+1);
5833ee48b6aSCliff Wickman }
5843ee48b6aSCliff Wickman 
5853ee48b6aSCliff Wickman /*
586db64fe02SNick Piggin  * Purges all lazily-freed vmap areas.
587db64fe02SNick Piggin  *
588db64fe02SNick Piggin  * If sync is 0 then don't purge if there is already a purge in progress.
589db64fe02SNick Piggin  * If force_flush is 1, then flush kernel TLBs between *start and *end even
590db64fe02SNick Piggin  * if we found no lazy vmap areas to unmap (callers can use this to optimise
591db64fe02SNick Piggin  * their own TLB flushing).
592db64fe02SNick Piggin  * Returns with *start = min(*start, lowest purged address)
593db64fe02SNick Piggin  *              *end = max(*end, highest purged address)
594db64fe02SNick Piggin  */
595db64fe02SNick Piggin static void __purge_vmap_area_lazy(unsigned long *start, unsigned long *end,
596db64fe02SNick Piggin 					int sync, int force_flush)
597db64fe02SNick Piggin {
59846666d8aSAndrew Morton 	static DEFINE_SPINLOCK(purge_lock);
599db64fe02SNick Piggin 	LIST_HEAD(valist);
600db64fe02SNick Piggin 	struct vmap_area *va;
601cbb76676SVegard Nossum 	struct vmap_area *n_va;
602db64fe02SNick Piggin 	int nr = 0;
603db64fe02SNick Piggin 
604db64fe02SNick Piggin 	/*
605db64fe02SNick Piggin 	 * If sync is 0 but force_flush is 1, we'll go sync anyway but callers
606db64fe02SNick Piggin 	 * should not expect such behaviour. This just simplifies locking for
607db64fe02SNick Piggin 	 * the case that isn't actually used at the moment anyway.
608db64fe02SNick Piggin 	 */
609db64fe02SNick Piggin 	if (!sync && !force_flush) {
61046666d8aSAndrew Morton 		if (!spin_trylock(&purge_lock))
611db64fe02SNick Piggin 			return;
612db64fe02SNick Piggin 	} else
61346666d8aSAndrew Morton 		spin_lock(&purge_lock);
614db64fe02SNick Piggin 
61502b709dfSNick Piggin 	if (sync)
61602b709dfSNick Piggin 		purge_fragmented_blocks_allcpus();
61702b709dfSNick Piggin 
618db64fe02SNick Piggin 	rcu_read_lock();
619db64fe02SNick Piggin 	list_for_each_entry_rcu(va, &vmap_area_list, list) {
620db64fe02SNick Piggin 		if (va->flags & VM_LAZY_FREE) {
621db64fe02SNick Piggin 			if (va->va_start < *start)
622db64fe02SNick Piggin 				*start = va->va_start;
623db64fe02SNick Piggin 			if (va->va_end > *end)
624db64fe02SNick Piggin 				*end = va->va_end;
625db64fe02SNick Piggin 			nr += (va->va_end - va->va_start) >> PAGE_SHIFT;
626db64fe02SNick Piggin 			list_add_tail(&va->purge_list, &valist);
627db64fe02SNick Piggin 			va->flags |= VM_LAZY_FREEING;
628db64fe02SNick Piggin 			va->flags &= ~VM_LAZY_FREE;
629db64fe02SNick Piggin 		}
630db64fe02SNick Piggin 	}
631db64fe02SNick Piggin 	rcu_read_unlock();
632db64fe02SNick Piggin 
63388f50044SYongseok Koh 	if (nr)
634db64fe02SNick Piggin 		atomic_sub(nr, &vmap_lazy_nr);
635db64fe02SNick Piggin 
636db64fe02SNick Piggin 	if (nr || force_flush)
637db64fe02SNick Piggin 		flush_tlb_kernel_range(*start, *end);
638db64fe02SNick Piggin 
639db64fe02SNick Piggin 	if (nr) {
640db64fe02SNick Piggin 		spin_lock(&vmap_area_lock);
641cbb76676SVegard Nossum 		list_for_each_entry_safe(va, n_va, &valist, purge_list)
642db64fe02SNick Piggin 			__free_vmap_area(va);
643db64fe02SNick Piggin 		spin_unlock(&vmap_area_lock);
644db64fe02SNick Piggin 	}
64546666d8aSAndrew Morton 	spin_unlock(&purge_lock);
646db64fe02SNick Piggin }
647db64fe02SNick Piggin 
648db64fe02SNick Piggin /*
649496850e5SNick Piggin  * Kick off a purge of the outstanding lazy areas. Don't bother if somebody
650496850e5SNick Piggin  * is already purging.
651496850e5SNick Piggin  */
652496850e5SNick Piggin static void try_purge_vmap_area_lazy(void)
653496850e5SNick Piggin {
654496850e5SNick Piggin 	unsigned long start = ULONG_MAX, end = 0;
655496850e5SNick Piggin 
656496850e5SNick Piggin 	__purge_vmap_area_lazy(&start, &end, 0, 0);
657496850e5SNick Piggin }
658496850e5SNick Piggin 
659496850e5SNick Piggin /*
660db64fe02SNick Piggin  * Kick off a purge of the outstanding lazy areas.
661db64fe02SNick Piggin  */
662db64fe02SNick Piggin static void purge_vmap_area_lazy(void)
663db64fe02SNick Piggin {
664db64fe02SNick Piggin 	unsigned long start = ULONG_MAX, end = 0;
665db64fe02SNick Piggin 
666496850e5SNick Piggin 	__purge_vmap_area_lazy(&start, &end, 1, 0);
667db64fe02SNick Piggin }
668db64fe02SNick Piggin 
669db64fe02SNick Piggin /*
67064141da5SJeremy Fitzhardinge  * Free a vmap area, caller ensuring that the area has been unmapped
67164141da5SJeremy Fitzhardinge  * and flush_cache_vunmap had been called for the correct range
67264141da5SJeremy Fitzhardinge  * previously.
673db64fe02SNick Piggin  */
67464141da5SJeremy Fitzhardinge static void free_vmap_area_noflush(struct vmap_area *va)
675db64fe02SNick Piggin {
676db64fe02SNick Piggin 	va->flags |= VM_LAZY_FREE;
677db64fe02SNick Piggin 	atomic_add((va->va_end - va->va_start) >> PAGE_SHIFT, &vmap_lazy_nr);
678db64fe02SNick Piggin 	if (unlikely(atomic_read(&vmap_lazy_nr) > lazy_max_pages()))
679496850e5SNick Piggin 		try_purge_vmap_area_lazy();
680db64fe02SNick Piggin }
681db64fe02SNick Piggin 
682b29acbdcSNick Piggin /*
68364141da5SJeremy Fitzhardinge  * Free and unmap a vmap area, caller ensuring flush_cache_vunmap had been
68464141da5SJeremy Fitzhardinge  * called for the correct range previously.
68564141da5SJeremy Fitzhardinge  */
68664141da5SJeremy Fitzhardinge static void free_unmap_vmap_area_noflush(struct vmap_area *va)
68764141da5SJeremy Fitzhardinge {
68864141da5SJeremy Fitzhardinge 	unmap_vmap_area(va);
68964141da5SJeremy Fitzhardinge 	free_vmap_area_noflush(va);
69064141da5SJeremy Fitzhardinge }
69164141da5SJeremy Fitzhardinge 
69264141da5SJeremy Fitzhardinge /*
693b29acbdcSNick Piggin  * Free and unmap a vmap area
694b29acbdcSNick Piggin  */
695b29acbdcSNick Piggin static void free_unmap_vmap_area(struct vmap_area *va)
696b29acbdcSNick Piggin {
697b29acbdcSNick Piggin 	flush_cache_vunmap(va->va_start, va->va_end);
698b29acbdcSNick Piggin 	free_unmap_vmap_area_noflush(va);
699b29acbdcSNick Piggin }
700b29acbdcSNick Piggin 
701db64fe02SNick Piggin static struct vmap_area *find_vmap_area(unsigned long addr)
702db64fe02SNick Piggin {
703db64fe02SNick Piggin 	struct vmap_area *va;
704db64fe02SNick Piggin 
705db64fe02SNick Piggin 	spin_lock(&vmap_area_lock);
706db64fe02SNick Piggin 	va = __find_vmap_area(addr);
707db64fe02SNick Piggin 	spin_unlock(&vmap_area_lock);
708db64fe02SNick Piggin 
709db64fe02SNick Piggin 	return va;
710db64fe02SNick Piggin }
711db64fe02SNick Piggin 
712db64fe02SNick Piggin static void free_unmap_vmap_area_addr(unsigned long addr)
713db64fe02SNick Piggin {
714db64fe02SNick Piggin 	struct vmap_area *va;
715db64fe02SNick Piggin 
716db64fe02SNick Piggin 	va = find_vmap_area(addr);
717db64fe02SNick Piggin 	BUG_ON(!va);
718db64fe02SNick Piggin 	free_unmap_vmap_area(va);
719db64fe02SNick Piggin }
720db64fe02SNick Piggin 
721db64fe02SNick Piggin 
722db64fe02SNick Piggin /*** Per cpu kva allocator ***/
723db64fe02SNick Piggin 
724db64fe02SNick Piggin /*
725db64fe02SNick Piggin  * vmap space is limited especially on 32 bit architectures. Ensure there is
726db64fe02SNick Piggin  * room for at least 16 percpu vmap blocks per CPU.
727db64fe02SNick Piggin  */
728db64fe02SNick Piggin /*
729db64fe02SNick Piggin  * If we had a constant VMALLOC_START and VMALLOC_END, we'd like to be able
730db64fe02SNick Piggin  * to #define VMALLOC_SPACE		(VMALLOC_END-VMALLOC_START). Guess
731db64fe02SNick Piggin  * instead (we just need a rough idea)
732db64fe02SNick Piggin  */
733db64fe02SNick Piggin #if BITS_PER_LONG == 32
734db64fe02SNick Piggin #define VMALLOC_SPACE		(128UL*1024*1024)
735db64fe02SNick Piggin #else
736db64fe02SNick Piggin #define VMALLOC_SPACE		(128UL*1024*1024*1024)
737db64fe02SNick Piggin #endif
738db64fe02SNick Piggin 
739db64fe02SNick Piggin #define VMALLOC_PAGES		(VMALLOC_SPACE / PAGE_SIZE)
740db64fe02SNick Piggin #define VMAP_MAX_ALLOC		BITS_PER_LONG	/* 256K with 4K pages */
741db64fe02SNick Piggin #define VMAP_BBMAP_BITS_MAX	1024	/* 4MB with 4K pages */
742db64fe02SNick Piggin #define VMAP_BBMAP_BITS_MIN	(VMAP_MAX_ALLOC*2)
743db64fe02SNick Piggin #define VMAP_MIN(x, y)		((x) < (y) ? (x) : (y)) /* can't use min() */
744db64fe02SNick Piggin #define VMAP_MAX(x, y)		((x) > (y) ? (x) : (y)) /* can't use max() */
745f982f915SClemens Ladisch #define VMAP_BBMAP_BITS		\
746f982f915SClemens Ladisch 		VMAP_MIN(VMAP_BBMAP_BITS_MAX,	\
747db64fe02SNick Piggin 		VMAP_MAX(VMAP_BBMAP_BITS_MIN,	\
748f982f915SClemens Ladisch 			VMALLOC_PAGES / roundup_pow_of_two(NR_CPUS) / 16))
749db64fe02SNick Piggin 
750db64fe02SNick Piggin #define VMAP_BLOCK_SIZE		(VMAP_BBMAP_BITS * PAGE_SIZE)
751db64fe02SNick Piggin 
7529b463334SJeremy Fitzhardinge static bool vmap_initialized __read_mostly = false;
7539b463334SJeremy Fitzhardinge 
754db64fe02SNick Piggin struct vmap_block_queue {
755db64fe02SNick Piggin 	spinlock_t lock;
756db64fe02SNick Piggin 	struct list_head free;
757db64fe02SNick Piggin };
758db64fe02SNick Piggin 
759db64fe02SNick Piggin struct vmap_block {
760db64fe02SNick Piggin 	spinlock_t lock;
761db64fe02SNick Piggin 	struct vmap_area *va;
762db64fe02SNick Piggin 	unsigned long free, dirty;
763db64fe02SNick Piggin 	DECLARE_BITMAP(dirty_map, VMAP_BBMAP_BITS);
764db64fe02SNick Piggin 	struct list_head free_list;
765db64fe02SNick Piggin 	struct rcu_head rcu_head;
76602b709dfSNick Piggin 	struct list_head purge;
767db64fe02SNick Piggin };
768db64fe02SNick Piggin 
769db64fe02SNick Piggin /* Queue of free and dirty vmap blocks, for allocation and flushing purposes */
770db64fe02SNick Piggin static DEFINE_PER_CPU(struct vmap_block_queue, vmap_block_queue);
771db64fe02SNick Piggin 
772db64fe02SNick Piggin /*
773db64fe02SNick Piggin  * Radix tree of vmap blocks, indexed by address, to quickly find a vmap block
774db64fe02SNick Piggin  * in the free path. Could get rid of this if we change the API to return a
775db64fe02SNick Piggin  * "cookie" from alloc, to be passed to free. But no big deal yet.
776db64fe02SNick Piggin  */
777db64fe02SNick Piggin static DEFINE_SPINLOCK(vmap_block_tree_lock);
778db64fe02SNick Piggin static RADIX_TREE(vmap_block_tree, GFP_ATOMIC);
779db64fe02SNick Piggin 
780db64fe02SNick Piggin /*
781db64fe02SNick Piggin  * We should probably have a fallback mechanism to allocate virtual memory
782db64fe02SNick Piggin  * out of partially filled vmap blocks. However vmap block sizing should be
783db64fe02SNick Piggin  * fairly reasonable according to the vmalloc size, so it shouldn't be a
784db64fe02SNick Piggin  * big problem.
785db64fe02SNick Piggin  */
786db64fe02SNick Piggin 
787db64fe02SNick Piggin static unsigned long addr_to_vb_idx(unsigned long addr)
788db64fe02SNick Piggin {
789db64fe02SNick Piggin 	addr -= VMALLOC_START & ~(VMAP_BLOCK_SIZE-1);
790db64fe02SNick Piggin 	addr /= VMAP_BLOCK_SIZE;
791db64fe02SNick Piggin 	return addr;
792db64fe02SNick Piggin }
793db64fe02SNick Piggin 
794db64fe02SNick Piggin static struct vmap_block *new_vmap_block(gfp_t gfp_mask)
795db64fe02SNick Piggin {
796db64fe02SNick Piggin 	struct vmap_block_queue *vbq;
797db64fe02SNick Piggin 	struct vmap_block *vb;
798db64fe02SNick Piggin 	struct vmap_area *va;
799db64fe02SNick Piggin 	unsigned long vb_idx;
800db64fe02SNick Piggin 	int node, err;
801db64fe02SNick Piggin 
802db64fe02SNick Piggin 	node = numa_node_id();
803db64fe02SNick Piggin 
804db64fe02SNick Piggin 	vb = kmalloc_node(sizeof(struct vmap_block),
805db64fe02SNick Piggin 			gfp_mask & GFP_RECLAIM_MASK, node);
806db64fe02SNick Piggin 	if (unlikely(!vb))
807db64fe02SNick Piggin 		return ERR_PTR(-ENOMEM);
808db64fe02SNick Piggin 
809db64fe02SNick Piggin 	va = alloc_vmap_area(VMAP_BLOCK_SIZE, VMAP_BLOCK_SIZE,
810db64fe02SNick Piggin 					VMALLOC_START, VMALLOC_END,
811db64fe02SNick Piggin 					node, gfp_mask);
812ddf9c6d4STobias Klauser 	if (IS_ERR(va)) {
813db64fe02SNick Piggin 		kfree(vb);
814e7d86340SJulia Lawall 		return ERR_CAST(va);
815db64fe02SNick Piggin 	}
816db64fe02SNick Piggin 
817db64fe02SNick Piggin 	err = radix_tree_preload(gfp_mask);
818db64fe02SNick Piggin 	if (unlikely(err)) {
819db64fe02SNick Piggin 		kfree(vb);
820db64fe02SNick Piggin 		free_vmap_area(va);
821db64fe02SNick Piggin 		return ERR_PTR(err);
822db64fe02SNick Piggin 	}
823db64fe02SNick Piggin 
824db64fe02SNick Piggin 	spin_lock_init(&vb->lock);
825db64fe02SNick Piggin 	vb->va = va;
826db64fe02SNick Piggin 	vb->free = VMAP_BBMAP_BITS;
827db64fe02SNick Piggin 	vb->dirty = 0;
828db64fe02SNick Piggin 	bitmap_zero(vb->dirty_map, VMAP_BBMAP_BITS);
829db64fe02SNick Piggin 	INIT_LIST_HEAD(&vb->free_list);
830db64fe02SNick Piggin 
831db64fe02SNick Piggin 	vb_idx = addr_to_vb_idx(va->va_start);
832db64fe02SNick Piggin 	spin_lock(&vmap_block_tree_lock);
833db64fe02SNick Piggin 	err = radix_tree_insert(&vmap_block_tree, vb_idx, vb);
834db64fe02SNick Piggin 	spin_unlock(&vmap_block_tree_lock);
835db64fe02SNick Piggin 	BUG_ON(err);
836db64fe02SNick Piggin 	radix_tree_preload_end();
837db64fe02SNick Piggin 
838db64fe02SNick Piggin 	vbq = &get_cpu_var(vmap_block_queue);
839db64fe02SNick Piggin 	spin_lock(&vbq->lock);
840de560423SNick Piggin 	list_add_rcu(&vb->free_list, &vbq->free);
841db64fe02SNick Piggin 	spin_unlock(&vbq->lock);
8423f04ba85STejun Heo 	put_cpu_var(vmap_block_queue);
843db64fe02SNick Piggin 
844db64fe02SNick Piggin 	return vb;
845db64fe02SNick Piggin }
846db64fe02SNick Piggin 
847db64fe02SNick Piggin static void free_vmap_block(struct vmap_block *vb)
848db64fe02SNick Piggin {
849db64fe02SNick Piggin 	struct vmap_block *tmp;
850db64fe02SNick Piggin 	unsigned long vb_idx;
851db64fe02SNick Piggin 
852db64fe02SNick Piggin 	vb_idx = addr_to_vb_idx(vb->va->va_start);
853db64fe02SNick Piggin 	spin_lock(&vmap_block_tree_lock);
854db64fe02SNick Piggin 	tmp = radix_tree_delete(&vmap_block_tree, vb_idx);
855db64fe02SNick Piggin 	spin_unlock(&vmap_block_tree_lock);
856db64fe02SNick Piggin 	BUG_ON(tmp != vb);
857db64fe02SNick Piggin 
85864141da5SJeremy Fitzhardinge 	free_vmap_area_noflush(vb->va);
85922a3c7d1SLai Jiangshan 	kfree_rcu(vb, rcu_head);
860db64fe02SNick Piggin }
861db64fe02SNick Piggin 
86202b709dfSNick Piggin static void purge_fragmented_blocks(int cpu)
86302b709dfSNick Piggin {
86402b709dfSNick Piggin 	LIST_HEAD(purge);
86502b709dfSNick Piggin 	struct vmap_block *vb;
86602b709dfSNick Piggin 	struct vmap_block *n_vb;
86702b709dfSNick Piggin 	struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
86802b709dfSNick Piggin 
86902b709dfSNick Piggin 	rcu_read_lock();
87002b709dfSNick Piggin 	list_for_each_entry_rcu(vb, &vbq->free, free_list) {
87102b709dfSNick Piggin 
87202b709dfSNick Piggin 		if (!(vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS))
87302b709dfSNick Piggin 			continue;
87402b709dfSNick Piggin 
87502b709dfSNick Piggin 		spin_lock(&vb->lock);
87602b709dfSNick Piggin 		if (vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS) {
87702b709dfSNick Piggin 			vb->free = 0; /* prevent further allocs after releasing lock */
87802b709dfSNick Piggin 			vb->dirty = VMAP_BBMAP_BITS; /* prevent purging it again */
87902b709dfSNick Piggin 			bitmap_fill(vb->dirty_map, VMAP_BBMAP_BITS);
88002b709dfSNick Piggin 			spin_lock(&vbq->lock);
88102b709dfSNick Piggin 			list_del_rcu(&vb->free_list);
88202b709dfSNick Piggin 			spin_unlock(&vbq->lock);
88302b709dfSNick Piggin 			spin_unlock(&vb->lock);
88402b709dfSNick Piggin 			list_add_tail(&vb->purge, &purge);
88502b709dfSNick Piggin 		} else
88602b709dfSNick Piggin 			spin_unlock(&vb->lock);
88702b709dfSNick Piggin 	}
88802b709dfSNick Piggin 	rcu_read_unlock();
88902b709dfSNick Piggin 
89002b709dfSNick Piggin 	list_for_each_entry_safe(vb, n_vb, &purge, purge) {
89102b709dfSNick Piggin 		list_del(&vb->purge);
89202b709dfSNick Piggin 		free_vmap_block(vb);
89302b709dfSNick Piggin 	}
89402b709dfSNick Piggin }
89502b709dfSNick Piggin 
89602b709dfSNick Piggin static void purge_fragmented_blocks_allcpus(void)
89702b709dfSNick Piggin {
89802b709dfSNick Piggin 	int cpu;
89902b709dfSNick Piggin 
90002b709dfSNick Piggin 	for_each_possible_cpu(cpu)
90102b709dfSNick Piggin 		purge_fragmented_blocks(cpu);
90202b709dfSNick Piggin }
90302b709dfSNick Piggin 
904db64fe02SNick Piggin static void *vb_alloc(unsigned long size, gfp_t gfp_mask)
905db64fe02SNick Piggin {
906db64fe02SNick Piggin 	struct vmap_block_queue *vbq;
907db64fe02SNick Piggin 	struct vmap_block *vb;
908db64fe02SNick Piggin 	unsigned long addr = 0;
909db64fe02SNick Piggin 	unsigned int order;
910db64fe02SNick Piggin 
911db64fe02SNick Piggin 	BUG_ON(size & ~PAGE_MASK);
912db64fe02SNick Piggin 	BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
913aa91c4d8SJan Kara 	if (WARN_ON(size == 0)) {
914aa91c4d8SJan Kara 		/*
915aa91c4d8SJan Kara 		 * Allocating 0 bytes isn't what caller wants since
916aa91c4d8SJan Kara 		 * get_order(0) returns funny result. Just warn and terminate
917aa91c4d8SJan Kara 		 * early.
918aa91c4d8SJan Kara 		 */
919aa91c4d8SJan Kara 		return NULL;
920aa91c4d8SJan Kara 	}
921db64fe02SNick Piggin 	order = get_order(size);
922db64fe02SNick Piggin 
923db64fe02SNick Piggin again:
924db64fe02SNick Piggin 	rcu_read_lock();
925db64fe02SNick Piggin 	vbq = &get_cpu_var(vmap_block_queue);
926db64fe02SNick Piggin 	list_for_each_entry_rcu(vb, &vbq->free, free_list) {
927db64fe02SNick Piggin 		int i;
928db64fe02SNick Piggin 
929db64fe02SNick Piggin 		spin_lock(&vb->lock);
93002b709dfSNick Piggin 		if (vb->free < 1UL << order)
93102b709dfSNick Piggin 			goto next;
93202b709dfSNick Piggin 
9333fcd76e8SZhang Yanfei 		i = VMAP_BBMAP_BITS - vb->free;
934db64fe02SNick Piggin 		addr = vb->va->va_start + (i << PAGE_SHIFT);
935db64fe02SNick Piggin 		BUG_ON(addr_to_vb_idx(addr) !=
936db64fe02SNick Piggin 				addr_to_vb_idx(vb->va->va_start));
937db64fe02SNick Piggin 		vb->free -= 1UL << order;
938db64fe02SNick Piggin 		if (vb->free == 0) {
939db64fe02SNick Piggin 			spin_lock(&vbq->lock);
940de560423SNick Piggin 			list_del_rcu(&vb->free_list);
941db64fe02SNick Piggin 			spin_unlock(&vbq->lock);
942db64fe02SNick Piggin 		}
943db64fe02SNick Piggin 		spin_unlock(&vb->lock);
944db64fe02SNick Piggin 		break;
94502b709dfSNick Piggin next:
946db64fe02SNick Piggin 		spin_unlock(&vb->lock);
947db64fe02SNick Piggin 	}
94802b709dfSNick Piggin 
9493f04ba85STejun Heo 	put_cpu_var(vmap_block_queue);
950db64fe02SNick Piggin 	rcu_read_unlock();
951db64fe02SNick Piggin 
952db64fe02SNick Piggin 	if (!addr) {
953db64fe02SNick Piggin 		vb = new_vmap_block(gfp_mask);
954db64fe02SNick Piggin 		if (IS_ERR(vb))
955db64fe02SNick Piggin 			return vb;
956db64fe02SNick Piggin 		goto again;
957db64fe02SNick Piggin 	}
958db64fe02SNick Piggin 
959db64fe02SNick Piggin 	return (void *)addr;
960db64fe02SNick Piggin }
961db64fe02SNick Piggin 
962db64fe02SNick Piggin static void vb_free(const void *addr, unsigned long size)
963db64fe02SNick Piggin {
964db64fe02SNick Piggin 	unsigned long offset;
965db64fe02SNick Piggin 	unsigned long vb_idx;
966db64fe02SNick Piggin 	unsigned int order;
967db64fe02SNick Piggin 	struct vmap_block *vb;
968db64fe02SNick Piggin 
969db64fe02SNick Piggin 	BUG_ON(size & ~PAGE_MASK);
970db64fe02SNick Piggin 	BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
971b29acbdcSNick Piggin 
972b29acbdcSNick Piggin 	flush_cache_vunmap((unsigned long)addr, (unsigned long)addr + size);
973b29acbdcSNick Piggin 
974db64fe02SNick Piggin 	order = get_order(size);
975db64fe02SNick Piggin 
976db64fe02SNick Piggin 	offset = (unsigned long)addr & (VMAP_BLOCK_SIZE - 1);
977db64fe02SNick Piggin 
978db64fe02SNick Piggin 	vb_idx = addr_to_vb_idx((unsigned long)addr);
979db64fe02SNick Piggin 	rcu_read_lock();
980db64fe02SNick Piggin 	vb = radix_tree_lookup(&vmap_block_tree, vb_idx);
981db64fe02SNick Piggin 	rcu_read_unlock();
982db64fe02SNick Piggin 	BUG_ON(!vb);
983db64fe02SNick Piggin 
98464141da5SJeremy Fitzhardinge 	vunmap_page_range((unsigned long)addr, (unsigned long)addr + size);
98564141da5SJeremy Fitzhardinge 
986db64fe02SNick Piggin 	spin_lock(&vb->lock);
987de560423SNick Piggin 	BUG_ON(bitmap_allocate_region(vb->dirty_map, offset >> PAGE_SHIFT, order));
988d086817dSMinChan Kim 
989db64fe02SNick Piggin 	vb->dirty += 1UL << order;
990db64fe02SNick Piggin 	if (vb->dirty == VMAP_BBMAP_BITS) {
991de560423SNick Piggin 		BUG_ON(vb->free);
992db64fe02SNick Piggin 		spin_unlock(&vb->lock);
993db64fe02SNick Piggin 		free_vmap_block(vb);
994db64fe02SNick Piggin 	} else
995db64fe02SNick Piggin 		spin_unlock(&vb->lock);
996db64fe02SNick Piggin }
997db64fe02SNick Piggin 
998db64fe02SNick Piggin /**
999db64fe02SNick Piggin  * vm_unmap_aliases - unmap outstanding lazy aliases in the vmap layer
1000db64fe02SNick Piggin  *
1001db64fe02SNick Piggin  * The vmap/vmalloc layer lazily flushes kernel virtual mappings primarily
1002db64fe02SNick Piggin  * to amortize TLB flushing overheads. What this means is that any page you
1003db64fe02SNick Piggin  * have now, may, in a former life, have been mapped into kernel virtual
1004db64fe02SNick Piggin  * address by the vmap layer and so there might be some CPUs with TLB entries
1005db64fe02SNick Piggin  * still referencing that page (additional to the regular 1:1 kernel mapping).
1006db64fe02SNick Piggin  *
1007db64fe02SNick Piggin  * vm_unmap_aliases flushes all such lazy mappings. After it returns, we can
1008db64fe02SNick Piggin  * be sure that none of the pages we have control over will have any aliases
1009db64fe02SNick Piggin  * from the vmap layer.
1010db64fe02SNick Piggin  */
1011db64fe02SNick Piggin void vm_unmap_aliases(void)
1012db64fe02SNick Piggin {
1013db64fe02SNick Piggin 	unsigned long start = ULONG_MAX, end = 0;
1014db64fe02SNick Piggin 	int cpu;
1015db64fe02SNick Piggin 	int flush = 0;
1016db64fe02SNick Piggin 
10179b463334SJeremy Fitzhardinge 	if (unlikely(!vmap_initialized))
10189b463334SJeremy Fitzhardinge 		return;
10199b463334SJeremy Fitzhardinge 
1020db64fe02SNick Piggin 	for_each_possible_cpu(cpu) {
1021db64fe02SNick Piggin 		struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
1022db64fe02SNick Piggin 		struct vmap_block *vb;
1023db64fe02SNick Piggin 
1024db64fe02SNick Piggin 		rcu_read_lock();
1025db64fe02SNick Piggin 		list_for_each_entry_rcu(vb, &vbq->free, free_list) {
1026b136be5eSJoonsoo Kim 			int i, j;
1027db64fe02SNick Piggin 
1028db64fe02SNick Piggin 			spin_lock(&vb->lock);
1029db64fe02SNick Piggin 			i = find_first_bit(vb->dirty_map, VMAP_BBMAP_BITS);
1030b136be5eSJoonsoo Kim 			if (i < VMAP_BBMAP_BITS) {
1031db64fe02SNick Piggin 				unsigned long s, e;
1032b136be5eSJoonsoo Kim 
1033b136be5eSJoonsoo Kim 				j = find_last_bit(vb->dirty_map,
1034b136be5eSJoonsoo Kim 							VMAP_BBMAP_BITS);
1035b136be5eSJoonsoo Kim 				j = j + 1; /* need exclusive index */
1036db64fe02SNick Piggin 
1037db64fe02SNick Piggin 				s = vb->va->va_start + (i << PAGE_SHIFT);
1038db64fe02SNick Piggin 				e = vb->va->va_start + (j << PAGE_SHIFT);
1039db64fe02SNick Piggin 				flush = 1;
1040db64fe02SNick Piggin 
1041db64fe02SNick Piggin 				if (s < start)
1042db64fe02SNick Piggin 					start = s;
1043db64fe02SNick Piggin 				if (e > end)
1044db64fe02SNick Piggin 					end = e;
1045db64fe02SNick Piggin 			}
1046db64fe02SNick Piggin 			spin_unlock(&vb->lock);
1047db64fe02SNick Piggin 		}
1048db64fe02SNick Piggin 		rcu_read_unlock();
1049db64fe02SNick Piggin 	}
1050db64fe02SNick Piggin 
1051db64fe02SNick Piggin 	__purge_vmap_area_lazy(&start, &end, 1, flush);
1052db64fe02SNick Piggin }
1053db64fe02SNick Piggin EXPORT_SYMBOL_GPL(vm_unmap_aliases);
1054db64fe02SNick Piggin 
1055db64fe02SNick Piggin /**
1056db64fe02SNick Piggin  * vm_unmap_ram - unmap linear kernel address space set up by vm_map_ram
1057db64fe02SNick Piggin  * @mem: the pointer returned by vm_map_ram
1058db64fe02SNick Piggin  * @count: the count passed to that vm_map_ram call (cannot unmap partial)
1059db64fe02SNick Piggin  */
1060db64fe02SNick Piggin void vm_unmap_ram(const void *mem, unsigned int count)
1061db64fe02SNick Piggin {
1062db64fe02SNick Piggin 	unsigned long size = count << PAGE_SHIFT;
1063db64fe02SNick Piggin 	unsigned long addr = (unsigned long)mem;
1064db64fe02SNick Piggin 
1065db64fe02SNick Piggin 	BUG_ON(!addr);
1066db64fe02SNick Piggin 	BUG_ON(addr < VMALLOC_START);
1067db64fe02SNick Piggin 	BUG_ON(addr > VMALLOC_END);
1068db64fe02SNick Piggin 	BUG_ON(addr & (PAGE_SIZE-1));
1069db64fe02SNick Piggin 
1070db64fe02SNick Piggin 	debug_check_no_locks_freed(mem, size);
1071cd52858cSNick Piggin 	vmap_debug_free_range(addr, addr+size);
1072db64fe02SNick Piggin 
1073db64fe02SNick Piggin 	if (likely(count <= VMAP_MAX_ALLOC))
1074db64fe02SNick Piggin 		vb_free(mem, size);
1075db64fe02SNick Piggin 	else
1076db64fe02SNick Piggin 		free_unmap_vmap_area_addr(addr);
1077db64fe02SNick Piggin }
1078db64fe02SNick Piggin EXPORT_SYMBOL(vm_unmap_ram);
1079db64fe02SNick Piggin 
1080db64fe02SNick Piggin /**
1081db64fe02SNick Piggin  * vm_map_ram - map pages linearly into kernel virtual address (vmalloc space)
1082db64fe02SNick Piggin  * @pages: an array of pointers to the pages to be mapped
1083db64fe02SNick Piggin  * @count: number of pages
1084db64fe02SNick Piggin  * @node: prefer to allocate data structures on this node
1085db64fe02SNick Piggin  * @prot: memory protection to use. PAGE_KERNEL for regular RAM
1086e99c97adSRandy Dunlap  *
108736437638SGioh Kim  * If you use this function for less than VMAP_MAX_ALLOC pages, it could be
108836437638SGioh Kim  * faster than vmap so it's good.  But if you mix long-life and short-life
108936437638SGioh Kim  * objects with vm_map_ram(), it could consume lots of address space through
109036437638SGioh Kim  * fragmentation (especially on a 32bit machine).  You could see failures in
109136437638SGioh Kim  * the end.  Please use this function for short-lived objects.
109236437638SGioh Kim  *
1093e99c97adSRandy Dunlap  * Returns: a pointer to the address that has been mapped, or %NULL on failure
1094db64fe02SNick Piggin  */
1095db64fe02SNick Piggin void *vm_map_ram(struct page **pages, unsigned int count, int node, pgprot_t prot)
1096db64fe02SNick Piggin {
1097db64fe02SNick Piggin 	unsigned long size = count << PAGE_SHIFT;
1098db64fe02SNick Piggin 	unsigned long addr;
1099db64fe02SNick Piggin 	void *mem;
1100db64fe02SNick Piggin 
1101db64fe02SNick Piggin 	if (likely(count <= VMAP_MAX_ALLOC)) {
1102db64fe02SNick Piggin 		mem = vb_alloc(size, GFP_KERNEL);
1103db64fe02SNick Piggin 		if (IS_ERR(mem))
1104db64fe02SNick Piggin 			return NULL;
1105db64fe02SNick Piggin 		addr = (unsigned long)mem;
1106db64fe02SNick Piggin 	} else {
1107db64fe02SNick Piggin 		struct vmap_area *va;
1108db64fe02SNick Piggin 		va = alloc_vmap_area(size, PAGE_SIZE,
1109db64fe02SNick Piggin 				VMALLOC_START, VMALLOC_END, node, GFP_KERNEL);
1110db64fe02SNick Piggin 		if (IS_ERR(va))
1111db64fe02SNick Piggin 			return NULL;
1112db64fe02SNick Piggin 
1113db64fe02SNick Piggin 		addr = va->va_start;
1114db64fe02SNick Piggin 		mem = (void *)addr;
1115db64fe02SNick Piggin 	}
1116db64fe02SNick Piggin 	if (vmap_page_range(addr, addr + size, prot, pages) < 0) {
1117db64fe02SNick Piggin 		vm_unmap_ram(mem, count);
1118db64fe02SNick Piggin 		return NULL;
1119db64fe02SNick Piggin 	}
1120db64fe02SNick Piggin 	return mem;
1121db64fe02SNick Piggin }
1122db64fe02SNick Piggin EXPORT_SYMBOL(vm_map_ram);
1123db64fe02SNick Piggin 
11244341fa45SJoonsoo Kim static struct vm_struct *vmlist __initdata;
1125f0aa6617STejun Heo /**
1126be9b7335SNicolas Pitre  * vm_area_add_early - add vmap area early during boot
1127be9b7335SNicolas Pitre  * @vm: vm_struct to add
1128be9b7335SNicolas Pitre  *
1129be9b7335SNicolas Pitre  * This function is used to add fixed kernel vm area to vmlist before
1130be9b7335SNicolas Pitre  * vmalloc_init() is called.  @vm->addr, @vm->size, and @vm->flags
1131be9b7335SNicolas Pitre  * should contain proper values and the other fields should be zero.
1132be9b7335SNicolas Pitre  *
1133be9b7335SNicolas Pitre  * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
1134be9b7335SNicolas Pitre  */
1135be9b7335SNicolas Pitre void __init vm_area_add_early(struct vm_struct *vm)
1136be9b7335SNicolas Pitre {
1137be9b7335SNicolas Pitre 	struct vm_struct *tmp, **p;
1138be9b7335SNicolas Pitre 
1139be9b7335SNicolas Pitre 	BUG_ON(vmap_initialized);
1140be9b7335SNicolas Pitre 	for (p = &vmlist; (tmp = *p) != NULL; p = &tmp->next) {
1141be9b7335SNicolas Pitre 		if (tmp->addr >= vm->addr) {
1142be9b7335SNicolas Pitre 			BUG_ON(tmp->addr < vm->addr + vm->size);
1143be9b7335SNicolas Pitre 			break;
1144be9b7335SNicolas Pitre 		} else
1145be9b7335SNicolas Pitre 			BUG_ON(tmp->addr + tmp->size > vm->addr);
1146be9b7335SNicolas Pitre 	}
1147be9b7335SNicolas Pitre 	vm->next = *p;
1148be9b7335SNicolas Pitre 	*p = vm;
1149be9b7335SNicolas Pitre }
1150be9b7335SNicolas Pitre 
1151be9b7335SNicolas Pitre /**
1152f0aa6617STejun Heo  * vm_area_register_early - register vmap area early during boot
1153f0aa6617STejun Heo  * @vm: vm_struct to register
1154c0c0a293STejun Heo  * @align: requested alignment
1155f0aa6617STejun Heo  *
1156f0aa6617STejun Heo  * This function is used to register kernel vm area before
1157f0aa6617STejun Heo  * vmalloc_init() is called.  @vm->size and @vm->flags should contain
1158f0aa6617STejun Heo  * proper values on entry and other fields should be zero.  On return,
1159f0aa6617STejun Heo  * vm->addr contains the allocated address.
1160f0aa6617STejun Heo  *
1161f0aa6617STejun Heo  * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
1162f0aa6617STejun Heo  */
1163c0c0a293STejun Heo void __init vm_area_register_early(struct vm_struct *vm, size_t align)
1164f0aa6617STejun Heo {
1165f0aa6617STejun Heo 	static size_t vm_init_off __initdata;
1166c0c0a293STejun Heo 	unsigned long addr;
1167f0aa6617STejun Heo 
1168c0c0a293STejun Heo 	addr = ALIGN(VMALLOC_START + vm_init_off, align);
1169c0c0a293STejun Heo 	vm_init_off = PFN_ALIGN(addr + vm->size) - VMALLOC_START;
1170c0c0a293STejun Heo 
1171c0c0a293STejun Heo 	vm->addr = (void *)addr;
1172f0aa6617STejun Heo 
1173be9b7335SNicolas Pitre 	vm_area_add_early(vm);
1174f0aa6617STejun Heo }
1175f0aa6617STejun Heo 
1176db64fe02SNick Piggin void __init vmalloc_init(void)
1177db64fe02SNick Piggin {
1178822c18f2SIvan Kokshaysky 	struct vmap_area *va;
1179822c18f2SIvan Kokshaysky 	struct vm_struct *tmp;
1180db64fe02SNick Piggin 	int i;
1181db64fe02SNick Piggin 
1182db64fe02SNick Piggin 	for_each_possible_cpu(i) {
1183db64fe02SNick Piggin 		struct vmap_block_queue *vbq;
118432fcfd40SAl Viro 		struct vfree_deferred *p;
1185db64fe02SNick Piggin 
1186db64fe02SNick Piggin 		vbq = &per_cpu(vmap_block_queue, i);
1187db64fe02SNick Piggin 		spin_lock_init(&vbq->lock);
1188db64fe02SNick Piggin 		INIT_LIST_HEAD(&vbq->free);
118932fcfd40SAl Viro 		p = &per_cpu(vfree_deferred, i);
119032fcfd40SAl Viro 		init_llist_head(&p->list);
119132fcfd40SAl Viro 		INIT_WORK(&p->wq, free_work);
1192db64fe02SNick Piggin 	}
11939b463334SJeremy Fitzhardinge 
1194822c18f2SIvan Kokshaysky 	/* Import existing vmlist entries. */
1195822c18f2SIvan Kokshaysky 	for (tmp = vmlist; tmp; tmp = tmp->next) {
119643ebdac4SPekka Enberg 		va = kzalloc(sizeof(struct vmap_area), GFP_NOWAIT);
1197dbda591dSKyongHo 		va->flags = VM_VM_AREA;
1198822c18f2SIvan Kokshaysky 		va->va_start = (unsigned long)tmp->addr;
1199822c18f2SIvan Kokshaysky 		va->va_end = va->va_start + tmp->size;
1200dbda591dSKyongHo 		va->vm = tmp;
1201822c18f2SIvan Kokshaysky 		__insert_vmap_area(va);
1202822c18f2SIvan Kokshaysky 	}
1203ca23e405STejun Heo 
1204ca23e405STejun Heo 	vmap_area_pcpu_hole = VMALLOC_END;
1205ca23e405STejun Heo 
12069b463334SJeremy Fitzhardinge 	vmap_initialized = true;
1207db64fe02SNick Piggin }
1208db64fe02SNick Piggin 
12098fc48985STejun Heo /**
12108fc48985STejun Heo  * map_kernel_range_noflush - map kernel VM area with the specified pages
12118fc48985STejun Heo  * @addr: start of the VM area to map
12128fc48985STejun Heo  * @size: size of the VM area to map
12138fc48985STejun Heo  * @prot: page protection flags to use
12148fc48985STejun Heo  * @pages: pages to map
12158fc48985STejun Heo  *
12168fc48985STejun Heo  * Map PFN_UP(@size) pages at @addr.  The VM area @addr and @size
12178fc48985STejun Heo  * specify should have been allocated using get_vm_area() and its
12188fc48985STejun Heo  * friends.
12198fc48985STejun Heo  *
12208fc48985STejun Heo  * NOTE:
12218fc48985STejun Heo  * This function does NOT do any cache flushing.  The caller is
12228fc48985STejun Heo  * responsible for calling flush_cache_vmap() on to-be-mapped areas
12238fc48985STejun Heo  * before calling this function.
12248fc48985STejun Heo  *
12258fc48985STejun Heo  * RETURNS:
12268fc48985STejun Heo  * The number of pages mapped on success, -errno on failure.
12278fc48985STejun Heo  */
12288fc48985STejun Heo int map_kernel_range_noflush(unsigned long addr, unsigned long size,
12298fc48985STejun Heo 			     pgprot_t prot, struct page **pages)
12308fc48985STejun Heo {
12318fc48985STejun Heo 	return vmap_page_range_noflush(addr, addr + size, prot, pages);
12328fc48985STejun Heo }
12338fc48985STejun Heo 
12348fc48985STejun Heo /**
12358fc48985STejun Heo  * unmap_kernel_range_noflush - unmap kernel VM area
12368fc48985STejun Heo  * @addr: start of the VM area to unmap
12378fc48985STejun Heo  * @size: size of the VM area to unmap
12388fc48985STejun Heo  *
12398fc48985STejun Heo  * Unmap PFN_UP(@size) pages at @addr.  The VM area @addr and @size
12408fc48985STejun Heo  * specify should have been allocated using get_vm_area() and its
12418fc48985STejun Heo  * friends.
12428fc48985STejun Heo  *
12438fc48985STejun Heo  * NOTE:
12448fc48985STejun Heo  * This function does NOT do any cache flushing.  The caller is
12458fc48985STejun Heo  * responsible for calling flush_cache_vunmap() on to-be-mapped areas
12468fc48985STejun Heo  * before calling this function and flush_tlb_kernel_range() after.
12478fc48985STejun Heo  */
12488fc48985STejun Heo void unmap_kernel_range_noflush(unsigned long addr, unsigned long size)
12498fc48985STejun Heo {
12508fc48985STejun Heo 	vunmap_page_range(addr, addr + size);
12518fc48985STejun Heo }
125281e88fdcSHuang Ying EXPORT_SYMBOL_GPL(unmap_kernel_range_noflush);
12538fc48985STejun Heo 
12548fc48985STejun Heo /**
12558fc48985STejun Heo  * unmap_kernel_range - unmap kernel VM area and flush cache and TLB
12568fc48985STejun Heo  * @addr: start of the VM area to unmap
12578fc48985STejun Heo  * @size: size of the VM area to unmap
12588fc48985STejun Heo  *
12598fc48985STejun Heo  * Similar to unmap_kernel_range_noflush() but flushes vcache before
12608fc48985STejun Heo  * the unmapping and tlb after.
12618fc48985STejun Heo  */
1262db64fe02SNick Piggin void unmap_kernel_range(unsigned long addr, unsigned long size)
1263db64fe02SNick Piggin {
1264db64fe02SNick Piggin 	unsigned long end = addr + size;
1265f6fcba70STejun Heo 
1266f6fcba70STejun Heo 	flush_cache_vunmap(addr, end);
1267db64fe02SNick Piggin 	vunmap_page_range(addr, end);
1268db64fe02SNick Piggin 	flush_tlb_kernel_range(addr, end);
1269db64fe02SNick Piggin }
127093ef6d6cSMinchan Kim EXPORT_SYMBOL_GPL(unmap_kernel_range);
1271db64fe02SNick Piggin 
1272f6f8ed47SWANG Chao int map_vm_area(struct vm_struct *area, pgprot_t prot, struct page **pages)
1273db64fe02SNick Piggin {
1274db64fe02SNick Piggin 	unsigned long addr = (unsigned long)area->addr;
1275762216abSWanpeng Li 	unsigned long end = addr + get_vm_area_size(area);
1276db64fe02SNick Piggin 	int err;
1277db64fe02SNick Piggin 
1278f6f8ed47SWANG Chao 	err = vmap_page_range(addr, end, prot, pages);
1279db64fe02SNick Piggin 
1280f6f8ed47SWANG Chao 	return err > 0 ? 0 : err;
1281db64fe02SNick Piggin }
1282db64fe02SNick Piggin EXPORT_SYMBOL_GPL(map_vm_area);
1283db64fe02SNick Piggin 
1284f5252e00SMitsuo Hayasaka static void setup_vmalloc_vm(struct vm_struct *vm, struct vmap_area *va,
12855e6cafc8SMarek Szyprowski 			      unsigned long flags, const void *caller)
1286cf88c790STejun Heo {
1287c69480adSJoonsoo Kim 	spin_lock(&vmap_area_lock);
1288cf88c790STejun Heo 	vm->flags = flags;
1289cf88c790STejun Heo 	vm->addr = (void *)va->va_start;
1290cf88c790STejun Heo 	vm->size = va->va_end - va->va_start;
1291cf88c790STejun Heo 	vm->caller = caller;
1292db1aecafSMinchan Kim 	va->vm = vm;
1293cf88c790STejun Heo 	va->flags |= VM_VM_AREA;
1294c69480adSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
1295f5252e00SMitsuo Hayasaka }
1296cf88c790STejun Heo 
129720fc02b4SZhang Yanfei static void clear_vm_uninitialized_flag(struct vm_struct *vm)
1298f5252e00SMitsuo Hayasaka {
1299d4033afdSJoonsoo Kim 	/*
130020fc02b4SZhang Yanfei 	 * Before removing VM_UNINITIALIZED,
1301d4033afdSJoonsoo Kim 	 * we should make sure that vm has proper values.
1302d4033afdSJoonsoo Kim 	 * Pair with smp_rmb() in show_numa_info().
1303d4033afdSJoonsoo Kim 	 */
1304d4033afdSJoonsoo Kim 	smp_wmb();
130520fc02b4SZhang Yanfei 	vm->flags &= ~VM_UNINITIALIZED;
1306cf88c790STejun Heo }
1307cf88c790STejun Heo 
1308db64fe02SNick Piggin static struct vm_struct *__get_vm_area_node(unsigned long size,
13092dca6999SDavid Miller 		unsigned long align, unsigned long flags, unsigned long start,
13105e6cafc8SMarek Szyprowski 		unsigned long end, int node, gfp_t gfp_mask, const void *caller)
1311db64fe02SNick Piggin {
13120006526dSKautuk Consul 	struct vmap_area *va;
1313db64fe02SNick Piggin 	struct vm_struct *area;
13141da177e4SLinus Torvalds 
131552fd24caSGiridhar Pemmasani 	BUG_ON(in_interrupt());
13160f2d4a8eSZhang Yanfei 	if (flags & VM_IOREMAP)
13170f2d4a8eSZhang Yanfei 		align = 1ul << clamp(fls(size), PAGE_SHIFT, IOREMAP_MAX_ORDER);
1318db64fe02SNick Piggin 
13191da177e4SLinus Torvalds 	size = PAGE_ALIGN(size);
132031be8309SOGAWA Hirofumi 	if (unlikely(!size))
132131be8309SOGAWA Hirofumi 		return NULL;
13221da177e4SLinus Torvalds 
1323cf88c790STejun Heo 	area = kzalloc_node(sizeof(*area), gfp_mask & GFP_RECLAIM_MASK, node);
13241da177e4SLinus Torvalds 	if (unlikely(!area))
13251da177e4SLinus Torvalds 		return NULL;
13261da177e4SLinus Torvalds 
13271da177e4SLinus Torvalds 	/*
13281da177e4SLinus Torvalds 	 * We always allocate a guard page.
13291da177e4SLinus Torvalds 	 */
13301da177e4SLinus Torvalds 	size += PAGE_SIZE;
13311da177e4SLinus Torvalds 
1332db64fe02SNick Piggin 	va = alloc_vmap_area(size, align, start, end, node, gfp_mask);
1333db64fe02SNick Piggin 	if (IS_ERR(va)) {
1334db64fe02SNick Piggin 		kfree(area);
1335db64fe02SNick Piggin 		return NULL;
13361da177e4SLinus Torvalds 	}
13371da177e4SLinus Torvalds 
1338f5252e00SMitsuo Hayasaka 	setup_vmalloc_vm(area, va, flags, caller);
1339f5252e00SMitsuo Hayasaka 
13401da177e4SLinus Torvalds 	return area;
13411da177e4SLinus Torvalds }
13421da177e4SLinus Torvalds 
1343930fc45aSChristoph Lameter struct vm_struct *__get_vm_area(unsigned long size, unsigned long flags,
1344930fc45aSChristoph Lameter 				unsigned long start, unsigned long end)
1345930fc45aSChristoph Lameter {
134600ef2d2fSDavid Rientjes 	return __get_vm_area_node(size, 1, flags, start, end, NUMA_NO_NODE,
134700ef2d2fSDavid Rientjes 				  GFP_KERNEL, __builtin_return_address(0));
1348930fc45aSChristoph Lameter }
13495992b6daSRusty Russell EXPORT_SYMBOL_GPL(__get_vm_area);
1350930fc45aSChristoph Lameter 
1351c2968612SBenjamin Herrenschmidt struct vm_struct *__get_vm_area_caller(unsigned long size, unsigned long flags,
1352c2968612SBenjamin Herrenschmidt 				       unsigned long start, unsigned long end,
13535e6cafc8SMarek Szyprowski 				       const void *caller)
1354c2968612SBenjamin Herrenschmidt {
135500ef2d2fSDavid Rientjes 	return __get_vm_area_node(size, 1, flags, start, end, NUMA_NO_NODE,
135600ef2d2fSDavid Rientjes 				  GFP_KERNEL, caller);
1357c2968612SBenjamin Herrenschmidt }
1358c2968612SBenjamin Herrenschmidt 
13591da177e4SLinus Torvalds /**
1360183ff22bSSimon Arlott  *	get_vm_area  -  reserve a contiguous kernel virtual area
13611da177e4SLinus Torvalds  *	@size:		size of the area
13621da177e4SLinus Torvalds  *	@flags:		%VM_IOREMAP for I/O mappings or VM_ALLOC
13631da177e4SLinus Torvalds  *
13641da177e4SLinus Torvalds  *	Search an area of @size in the kernel virtual mapping area,
13651da177e4SLinus Torvalds  *	and reserved it for out purposes.  Returns the area descriptor
13661da177e4SLinus Torvalds  *	on success or %NULL on failure.
13671da177e4SLinus Torvalds  */
13681da177e4SLinus Torvalds struct vm_struct *get_vm_area(unsigned long size, unsigned long flags)
13691da177e4SLinus Torvalds {
13702dca6999SDavid Miller 	return __get_vm_area_node(size, 1, flags, VMALLOC_START, VMALLOC_END,
137100ef2d2fSDavid Rientjes 				  NUMA_NO_NODE, GFP_KERNEL,
137200ef2d2fSDavid Rientjes 				  __builtin_return_address(0));
137323016969SChristoph Lameter }
137423016969SChristoph Lameter 
137523016969SChristoph Lameter struct vm_struct *get_vm_area_caller(unsigned long size, unsigned long flags,
13765e6cafc8SMarek Szyprowski 				const void *caller)
137723016969SChristoph Lameter {
13782dca6999SDavid Miller 	return __get_vm_area_node(size, 1, flags, VMALLOC_START, VMALLOC_END,
137900ef2d2fSDavid Rientjes 				  NUMA_NO_NODE, GFP_KERNEL, caller);
13801da177e4SLinus Torvalds }
13811da177e4SLinus Torvalds 
1382e9da6e99SMarek Szyprowski /**
1383e9da6e99SMarek Szyprowski  *	find_vm_area  -  find a continuous kernel virtual area
1384e9da6e99SMarek Szyprowski  *	@addr:		base address
1385e9da6e99SMarek Szyprowski  *
1386e9da6e99SMarek Szyprowski  *	Search for the kernel VM area starting at @addr, and return it.
1387e9da6e99SMarek Szyprowski  *	It is up to the caller to do all required locking to keep the returned
1388e9da6e99SMarek Szyprowski  *	pointer valid.
1389e9da6e99SMarek Szyprowski  */
1390e9da6e99SMarek Szyprowski struct vm_struct *find_vm_area(const void *addr)
139183342314SNick Piggin {
1392db64fe02SNick Piggin 	struct vmap_area *va;
139383342314SNick Piggin 
1394db64fe02SNick Piggin 	va = find_vmap_area((unsigned long)addr);
1395db64fe02SNick Piggin 	if (va && va->flags & VM_VM_AREA)
1396db1aecafSMinchan Kim 		return va->vm;
139783342314SNick Piggin 
13987856dfebSAndi Kleen 	return NULL;
13997856dfebSAndi Kleen }
14007856dfebSAndi Kleen 
14011da177e4SLinus Torvalds /**
1402183ff22bSSimon Arlott  *	remove_vm_area  -  find and remove a continuous kernel virtual area
14031da177e4SLinus Torvalds  *	@addr:		base address
14041da177e4SLinus Torvalds  *
14051da177e4SLinus Torvalds  *	Search for the kernel VM area starting at @addr, and remove it.
14061da177e4SLinus Torvalds  *	This function returns the found VM area, but using it is NOT safe
14077856dfebSAndi Kleen  *	on SMP machines, except for its size or flags.
14081da177e4SLinus Torvalds  */
1409b3bdda02SChristoph Lameter struct vm_struct *remove_vm_area(const void *addr)
14101da177e4SLinus Torvalds {
1411db64fe02SNick Piggin 	struct vmap_area *va;
1412db64fe02SNick Piggin 
1413db64fe02SNick Piggin 	va = find_vmap_area((unsigned long)addr);
1414db64fe02SNick Piggin 	if (va && va->flags & VM_VM_AREA) {
1415db1aecafSMinchan Kim 		struct vm_struct *vm = va->vm;
1416f5252e00SMitsuo Hayasaka 
1417c69480adSJoonsoo Kim 		spin_lock(&vmap_area_lock);
1418c69480adSJoonsoo Kim 		va->vm = NULL;
1419c69480adSJoonsoo Kim 		va->flags &= ~VM_VM_AREA;
1420c69480adSJoonsoo Kim 		spin_unlock(&vmap_area_lock);
1421c69480adSJoonsoo Kim 
1422dd32c279SKAMEZAWA Hiroyuki 		vmap_debug_free_range(va->va_start, va->va_end);
1423dd32c279SKAMEZAWA Hiroyuki 		free_unmap_vmap_area(va);
1424dd32c279SKAMEZAWA Hiroyuki 		vm->size -= PAGE_SIZE;
1425dd32c279SKAMEZAWA Hiroyuki 
1426db64fe02SNick Piggin 		return vm;
1427db64fe02SNick Piggin 	}
1428db64fe02SNick Piggin 	return NULL;
14291da177e4SLinus Torvalds }
14301da177e4SLinus Torvalds 
1431b3bdda02SChristoph Lameter static void __vunmap(const void *addr, int deallocate_pages)
14321da177e4SLinus Torvalds {
14331da177e4SLinus Torvalds 	struct vm_struct *area;
14341da177e4SLinus Torvalds 
14351da177e4SLinus Torvalds 	if (!addr)
14361da177e4SLinus Torvalds 		return;
14371da177e4SLinus Torvalds 
1438e69e9d4aSHATAYAMA Daisuke 	if (WARN(!PAGE_ALIGNED(addr), "Trying to vfree() bad address (%p)\n",
1439ab15d9b4SDan Carpenter 			addr))
14401da177e4SLinus Torvalds 		return;
14411da177e4SLinus Torvalds 
14421da177e4SLinus Torvalds 	area = remove_vm_area(addr);
14431da177e4SLinus Torvalds 	if (unlikely(!area)) {
14444c8573e2SArjan van de Ven 		WARN(1, KERN_ERR "Trying to vfree() nonexistent vm area (%p)\n",
14451da177e4SLinus Torvalds 				addr);
14461da177e4SLinus Torvalds 		return;
14471da177e4SLinus Torvalds 	}
14481da177e4SLinus Torvalds 
14499a11b49aSIngo Molnar 	debug_check_no_locks_freed(addr, area->size);
14503ac7fe5aSThomas Gleixner 	debug_check_no_obj_freed(addr, area->size);
14519a11b49aSIngo Molnar 
14521da177e4SLinus Torvalds 	if (deallocate_pages) {
14531da177e4SLinus Torvalds 		int i;
14541da177e4SLinus Torvalds 
14551da177e4SLinus Torvalds 		for (i = 0; i < area->nr_pages; i++) {
1456bf53d6f8SChristoph Lameter 			struct page *page = area->pages[i];
1457bf53d6f8SChristoph Lameter 
1458bf53d6f8SChristoph Lameter 			BUG_ON(!page);
1459bf53d6f8SChristoph Lameter 			__free_page(page);
14601da177e4SLinus Torvalds 		}
14611da177e4SLinus Torvalds 
14628757d5faSJan Kiszka 		if (area->flags & VM_VPAGES)
14631da177e4SLinus Torvalds 			vfree(area->pages);
14641da177e4SLinus Torvalds 		else
14651da177e4SLinus Torvalds 			kfree(area->pages);
14661da177e4SLinus Torvalds 	}
14671da177e4SLinus Torvalds 
14681da177e4SLinus Torvalds 	kfree(area);
14691da177e4SLinus Torvalds 	return;
14701da177e4SLinus Torvalds }
14711da177e4SLinus Torvalds 
14721da177e4SLinus Torvalds /**
14731da177e4SLinus Torvalds  *	vfree  -  release memory allocated by vmalloc()
14741da177e4SLinus Torvalds  *	@addr:		memory base address
14751da177e4SLinus Torvalds  *
1476183ff22bSSimon Arlott  *	Free the virtually continuous memory area starting at @addr, as
147780e93effSPekka Enberg  *	obtained from vmalloc(), vmalloc_32() or __vmalloc(). If @addr is
147880e93effSPekka Enberg  *	NULL, no operation is performed.
14791da177e4SLinus Torvalds  *
148032fcfd40SAl Viro  *	Must not be called in NMI context (strictly speaking, only if we don't
148132fcfd40SAl Viro  *	have CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG, but making the calling
148232fcfd40SAl Viro  *	conventions for vfree() arch-depenedent would be a really bad idea)
148332fcfd40SAl Viro  *
1484c9fcee51SAndrew Morton  *	NOTE: assumes that the object at *addr has a size >= sizeof(llist_node)
14851da177e4SLinus Torvalds  */
1486b3bdda02SChristoph Lameter void vfree(const void *addr)
14871da177e4SLinus Torvalds {
148832fcfd40SAl Viro 	BUG_ON(in_nmi());
148989219d37SCatalin Marinas 
149089219d37SCatalin Marinas 	kmemleak_free(addr);
149189219d37SCatalin Marinas 
149232fcfd40SAl Viro 	if (!addr)
149332fcfd40SAl Viro 		return;
149432fcfd40SAl Viro 	if (unlikely(in_interrupt())) {
14957c8e0181SChristoph Lameter 		struct vfree_deferred *p = this_cpu_ptr(&vfree_deferred);
149659d3132fSOleg Nesterov 		if (llist_add((struct llist_node *)addr, &p->list))
149732fcfd40SAl Viro 			schedule_work(&p->wq);
149832fcfd40SAl Viro 	} else
14991da177e4SLinus Torvalds 		__vunmap(addr, 1);
15001da177e4SLinus Torvalds }
15011da177e4SLinus Torvalds EXPORT_SYMBOL(vfree);
15021da177e4SLinus Torvalds 
15031da177e4SLinus Torvalds /**
15041da177e4SLinus Torvalds  *	vunmap  -  release virtual mapping obtained by vmap()
15051da177e4SLinus Torvalds  *	@addr:		memory base address
15061da177e4SLinus Torvalds  *
15071da177e4SLinus Torvalds  *	Free the virtually contiguous memory area starting at @addr,
15081da177e4SLinus Torvalds  *	which was created from the page array passed to vmap().
15091da177e4SLinus Torvalds  *
151080e93effSPekka Enberg  *	Must not be called in interrupt context.
15111da177e4SLinus Torvalds  */
1512b3bdda02SChristoph Lameter void vunmap(const void *addr)
15131da177e4SLinus Torvalds {
15141da177e4SLinus Torvalds 	BUG_ON(in_interrupt());
151534754b69SPeter Zijlstra 	might_sleep();
151632fcfd40SAl Viro 	if (addr)
15171da177e4SLinus Torvalds 		__vunmap(addr, 0);
15181da177e4SLinus Torvalds }
15191da177e4SLinus Torvalds EXPORT_SYMBOL(vunmap);
15201da177e4SLinus Torvalds 
15211da177e4SLinus Torvalds /**
15221da177e4SLinus Torvalds  *	vmap  -  map an array of pages into virtually contiguous space
15231da177e4SLinus Torvalds  *	@pages:		array of page pointers
15241da177e4SLinus Torvalds  *	@count:		number of pages to map
15251da177e4SLinus Torvalds  *	@flags:		vm_area->flags
15261da177e4SLinus Torvalds  *	@prot:		page protection for the mapping
15271da177e4SLinus Torvalds  *
15281da177e4SLinus Torvalds  *	Maps @count pages from @pages into contiguous kernel virtual
15291da177e4SLinus Torvalds  *	space.
15301da177e4SLinus Torvalds  */
15311da177e4SLinus Torvalds void *vmap(struct page **pages, unsigned int count,
15321da177e4SLinus Torvalds 		unsigned long flags, pgprot_t prot)
15331da177e4SLinus Torvalds {
15341da177e4SLinus Torvalds 	struct vm_struct *area;
15351da177e4SLinus Torvalds 
153634754b69SPeter Zijlstra 	might_sleep();
153734754b69SPeter Zijlstra 
15384481374cSJan Beulich 	if (count > totalram_pages)
15391da177e4SLinus Torvalds 		return NULL;
15401da177e4SLinus Torvalds 
154123016969SChristoph Lameter 	area = get_vm_area_caller((count << PAGE_SHIFT), flags,
154223016969SChristoph Lameter 					__builtin_return_address(0));
15431da177e4SLinus Torvalds 	if (!area)
15441da177e4SLinus Torvalds 		return NULL;
154523016969SChristoph Lameter 
1546f6f8ed47SWANG Chao 	if (map_vm_area(area, prot, pages)) {
15471da177e4SLinus Torvalds 		vunmap(area->addr);
15481da177e4SLinus Torvalds 		return NULL;
15491da177e4SLinus Torvalds 	}
15501da177e4SLinus Torvalds 
15511da177e4SLinus Torvalds 	return area->addr;
15521da177e4SLinus Torvalds }
15531da177e4SLinus Torvalds EXPORT_SYMBOL(vmap);
15541da177e4SLinus Torvalds 
15552dca6999SDavid Miller static void *__vmalloc_node(unsigned long size, unsigned long align,
15562dca6999SDavid Miller 			    gfp_t gfp_mask, pgprot_t prot,
15575e6cafc8SMarek Szyprowski 			    int node, const void *caller);
1558e31d9eb5SAdrian Bunk static void *__vmalloc_area_node(struct vm_struct *area, gfp_t gfp_mask,
15593722e13cSWanpeng Li 				 pgprot_t prot, int node)
15601da177e4SLinus Torvalds {
156122943ab1SDave Hansen 	const int order = 0;
15621da177e4SLinus Torvalds 	struct page **pages;
15631da177e4SLinus Torvalds 	unsigned int nr_pages, array_size, i;
1564930f036bSDavid Rientjes 	const gfp_t nested_gfp = (gfp_mask & GFP_RECLAIM_MASK) | __GFP_ZERO;
1565930f036bSDavid Rientjes 	const gfp_t alloc_mask = gfp_mask | __GFP_NOWARN;
15661da177e4SLinus Torvalds 
1567762216abSWanpeng Li 	nr_pages = get_vm_area_size(area) >> PAGE_SHIFT;
15681da177e4SLinus Torvalds 	array_size = (nr_pages * sizeof(struct page *));
15691da177e4SLinus Torvalds 
15701da177e4SLinus Torvalds 	area->nr_pages = nr_pages;
15711da177e4SLinus Torvalds 	/* Please note that the recursion is strictly bounded. */
15728757d5faSJan Kiszka 	if (array_size > PAGE_SIZE) {
1573976d6dfbSJan Beulich 		pages = __vmalloc_node(array_size, 1, nested_gfp|__GFP_HIGHMEM,
15743722e13cSWanpeng Li 				PAGE_KERNEL, node, area->caller);
15758757d5faSJan Kiszka 		area->flags |= VM_VPAGES;
1576286e1ea3SAndrew Morton 	} else {
1577976d6dfbSJan Beulich 		pages = kmalloc_node(array_size, nested_gfp, node);
1578286e1ea3SAndrew Morton 	}
15791da177e4SLinus Torvalds 	area->pages = pages;
15801da177e4SLinus Torvalds 	if (!area->pages) {
15811da177e4SLinus Torvalds 		remove_vm_area(area->addr);
15821da177e4SLinus Torvalds 		kfree(area);
15831da177e4SLinus Torvalds 		return NULL;
15841da177e4SLinus Torvalds 	}
15851da177e4SLinus Torvalds 
15861da177e4SLinus Torvalds 	for (i = 0; i < area->nr_pages; i++) {
1587bf53d6f8SChristoph Lameter 		struct page *page;
1588bf53d6f8SChristoph Lameter 
15894b90951cSJianguo Wu 		if (node == NUMA_NO_NODE)
1590930f036bSDavid Rientjes 			page = alloc_page(alloc_mask);
1591930fc45aSChristoph Lameter 		else
1592930f036bSDavid Rientjes 			page = alloc_pages_node(node, alloc_mask, order);
1593bf53d6f8SChristoph Lameter 
1594bf53d6f8SChristoph Lameter 		if (unlikely(!page)) {
15951da177e4SLinus Torvalds 			/* Successfully allocated i pages, free them in __vunmap() */
15961da177e4SLinus Torvalds 			area->nr_pages = i;
15971da177e4SLinus Torvalds 			goto fail;
15981da177e4SLinus Torvalds 		}
1599bf53d6f8SChristoph Lameter 		area->pages[i] = page;
1600660654f9SEric Dumazet 		if (gfp_mask & __GFP_WAIT)
1601660654f9SEric Dumazet 			cond_resched();
16021da177e4SLinus Torvalds 	}
16031da177e4SLinus Torvalds 
1604f6f8ed47SWANG Chao 	if (map_vm_area(area, prot, pages))
16051da177e4SLinus Torvalds 		goto fail;
16061da177e4SLinus Torvalds 	return area->addr;
16071da177e4SLinus Torvalds 
16081da177e4SLinus Torvalds fail:
16093ee9a4f0SJoe Perches 	warn_alloc_failed(gfp_mask, order,
16103ee9a4f0SJoe Perches 			  "vmalloc: allocation failure, allocated %ld of %ld bytes\n",
161122943ab1SDave Hansen 			  (area->nr_pages*PAGE_SIZE), area->size);
16121da177e4SLinus Torvalds 	vfree(area->addr);
16131da177e4SLinus Torvalds 	return NULL;
16141da177e4SLinus Torvalds }
16151da177e4SLinus Torvalds 
1616d0a21265SDavid Rientjes /**
1617d0a21265SDavid Rientjes  *	__vmalloc_node_range  -  allocate virtually contiguous memory
1618d0a21265SDavid Rientjes  *	@size:		allocation size
1619d0a21265SDavid Rientjes  *	@align:		desired alignment
1620d0a21265SDavid Rientjes  *	@start:		vm area range start
1621d0a21265SDavid Rientjes  *	@end:		vm area range end
1622d0a21265SDavid Rientjes  *	@gfp_mask:	flags for the page level allocator
1623d0a21265SDavid Rientjes  *	@prot:		protection mask for the allocated pages
162400ef2d2fSDavid Rientjes  *	@node:		node to use for allocation or NUMA_NO_NODE
1625d0a21265SDavid Rientjes  *	@caller:	caller's return address
1626d0a21265SDavid Rientjes  *
1627d0a21265SDavid Rientjes  *	Allocate enough pages to cover @size from the page level
1628d0a21265SDavid Rientjes  *	allocator with @gfp_mask flags.  Map them into contiguous
1629d0a21265SDavid Rientjes  *	kernel virtual space, using a pagetable protection of @prot.
1630d0a21265SDavid Rientjes  */
1631d0a21265SDavid Rientjes void *__vmalloc_node_range(unsigned long size, unsigned long align,
1632d0a21265SDavid Rientjes 			unsigned long start, unsigned long end, gfp_t gfp_mask,
16335e6cafc8SMarek Szyprowski 			pgprot_t prot, int node, const void *caller)
1634930fc45aSChristoph Lameter {
1635d0a21265SDavid Rientjes 	struct vm_struct *area;
1636d0a21265SDavid Rientjes 	void *addr;
1637d0a21265SDavid Rientjes 	unsigned long real_size = size;
1638d0a21265SDavid Rientjes 
1639d0a21265SDavid Rientjes 	size = PAGE_ALIGN(size);
1640d0a21265SDavid Rientjes 	if (!size || (size >> PAGE_SHIFT) > totalram_pages)
1641de7d2b56SJoe Perches 		goto fail;
1642d0a21265SDavid Rientjes 
164320fc02b4SZhang Yanfei 	area = __get_vm_area_node(size, align, VM_ALLOC | VM_UNINITIALIZED,
1644f5252e00SMitsuo Hayasaka 				  start, end, node, gfp_mask, caller);
1645d0a21265SDavid Rientjes 	if (!area)
1646de7d2b56SJoe Perches 		goto fail;
1647d0a21265SDavid Rientjes 
16483722e13cSWanpeng Li 	addr = __vmalloc_area_node(area, gfp_mask, prot, node);
16491368edf0SMel Gorman 	if (!addr)
1650b82225f3SWanpeng Li 		return NULL;
165189219d37SCatalin Marinas 
165289219d37SCatalin Marinas 	/*
165320fc02b4SZhang Yanfei 	 * In this function, newly allocated vm_struct has VM_UNINITIALIZED
165420fc02b4SZhang Yanfei 	 * flag. It means that vm_struct is not fully initialized.
16554341fa45SJoonsoo Kim 	 * Now, it is fully initialized, so remove this flag here.
1656f5252e00SMitsuo Hayasaka 	 */
165720fc02b4SZhang Yanfei 	clear_vm_uninitialized_flag(area);
1658f5252e00SMitsuo Hayasaka 
1659f5252e00SMitsuo Hayasaka 	/*
16607f88f88fSCatalin Marinas 	 * A ref_count = 2 is needed because vm_struct allocated in
16617f88f88fSCatalin Marinas 	 * __get_vm_area_node() contains a reference to the virtual address of
16627f88f88fSCatalin Marinas 	 * the vmalloc'ed block.
166389219d37SCatalin Marinas 	 */
16647f88f88fSCatalin Marinas 	kmemleak_alloc(addr, real_size, 2, gfp_mask);
166589219d37SCatalin Marinas 
166689219d37SCatalin Marinas 	return addr;
1667de7d2b56SJoe Perches 
1668de7d2b56SJoe Perches fail:
1669de7d2b56SJoe Perches 	warn_alloc_failed(gfp_mask, 0,
1670de7d2b56SJoe Perches 			  "vmalloc: allocation failure: %lu bytes\n",
1671de7d2b56SJoe Perches 			  real_size);
1672de7d2b56SJoe Perches 	return NULL;
1673930fc45aSChristoph Lameter }
1674930fc45aSChristoph Lameter 
16751da177e4SLinus Torvalds /**
1676930fc45aSChristoph Lameter  *	__vmalloc_node  -  allocate virtually contiguous memory
16771da177e4SLinus Torvalds  *	@size:		allocation size
16782dca6999SDavid Miller  *	@align:		desired alignment
16791da177e4SLinus Torvalds  *	@gfp_mask:	flags for the page level allocator
16801da177e4SLinus Torvalds  *	@prot:		protection mask for the allocated pages
168100ef2d2fSDavid Rientjes  *	@node:		node to use for allocation or NUMA_NO_NODE
1682c85d194bSRandy Dunlap  *	@caller:	caller's return address
16831da177e4SLinus Torvalds  *
16841da177e4SLinus Torvalds  *	Allocate enough pages to cover @size from the page level
16851da177e4SLinus Torvalds  *	allocator with @gfp_mask flags.  Map them into contiguous
16861da177e4SLinus Torvalds  *	kernel virtual space, using a pagetable protection of @prot.
16871da177e4SLinus Torvalds  */
16882dca6999SDavid Miller static void *__vmalloc_node(unsigned long size, unsigned long align,
16892dca6999SDavid Miller 			    gfp_t gfp_mask, pgprot_t prot,
16905e6cafc8SMarek Szyprowski 			    int node, const void *caller)
16911da177e4SLinus Torvalds {
1692d0a21265SDavid Rientjes 	return __vmalloc_node_range(size, align, VMALLOC_START, VMALLOC_END,
1693d0a21265SDavid Rientjes 				gfp_mask, prot, node, caller);
16941da177e4SLinus Torvalds }
16951da177e4SLinus Torvalds 
1696930fc45aSChristoph Lameter void *__vmalloc(unsigned long size, gfp_t gfp_mask, pgprot_t prot)
1697930fc45aSChristoph Lameter {
169800ef2d2fSDavid Rientjes 	return __vmalloc_node(size, 1, gfp_mask, prot, NUMA_NO_NODE,
169923016969SChristoph Lameter 				__builtin_return_address(0));
1700930fc45aSChristoph Lameter }
17011da177e4SLinus Torvalds EXPORT_SYMBOL(__vmalloc);
17021da177e4SLinus Torvalds 
1703e1ca7788SDave Young static inline void *__vmalloc_node_flags(unsigned long size,
1704e1ca7788SDave Young 					int node, gfp_t flags)
1705e1ca7788SDave Young {
1706e1ca7788SDave Young 	return __vmalloc_node(size, 1, flags, PAGE_KERNEL,
1707e1ca7788SDave Young 					node, __builtin_return_address(0));
1708e1ca7788SDave Young }
1709e1ca7788SDave Young 
17101da177e4SLinus Torvalds /**
17111da177e4SLinus Torvalds  *	vmalloc  -  allocate virtually contiguous memory
17121da177e4SLinus Torvalds  *	@size:		allocation size
17131da177e4SLinus Torvalds  *	Allocate enough pages to cover @size from the page level
17141da177e4SLinus Torvalds  *	allocator and map them into contiguous kernel virtual space.
17151da177e4SLinus Torvalds  *
1716c1c8897fSMichael Opdenacker  *	For tight control over page level allocator and protection flags
17171da177e4SLinus Torvalds  *	use __vmalloc() instead.
17181da177e4SLinus Torvalds  */
17191da177e4SLinus Torvalds void *vmalloc(unsigned long size)
17201da177e4SLinus Torvalds {
172100ef2d2fSDavid Rientjes 	return __vmalloc_node_flags(size, NUMA_NO_NODE,
172200ef2d2fSDavid Rientjes 				    GFP_KERNEL | __GFP_HIGHMEM);
17231da177e4SLinus Torvalds }
17241da177e4SLinus Torvalds EXPORT_SYMBOL(vmalloc);
17251da177e4SLinus Torvalds 
1726930fc45aSChristoph Lameter /**
1727e1ca7788SDave Young  *	vzalloc - allocate virtually contiguous memory with zero fill
1728e1ca7788SDave Young  *	@size:	allocation size
1729e1ca7788SDave Young  *	Allocate enough pages to cover @size from the page level
1730e1ca7788SDave Young  *	allocator and map them into contiguous kernel virtual space.
1731e1ca7788SDave Young  *	The memory allocated is set to zero.
1732e1ca7788SDave Young  *
1733e1ca7788SDave Young  *	For tight control over page level allocator and protection flags
1734e1ca7788SDave Young  *	use __vmalloc() instead.
1735e1ca7788SDave Young  */
1736e1ca7788SDave Young void *vzalloc(unsigned long size)
1737e1ca7788SDave Young {
173800ef2d2fSDavid Rientjes 	return __vmalloc_node_flags(size, NUMA_NO_NODE,
1739e1ca7788SDave Young 				GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO);
1740e1ca7788SDave Young }
1741e1ca7788SDave Young EXPORT_SYMBOL(vzalloc);
1742e1ca7788SDave Young 
1743e1ca7788SDave Young /**
1744ead04089SRolf Eike Beer  * vmalloc_user - allocate zeroed virtually contiguous memory for userspace
174583342314SNick Piggin  * @size: allocation size
1746ead04089SRolf Eike Beer  *
1747ead04089SRolf Eike Beer  * The resulting memory area is zeroed so it can be mapped to userspace
1748ead04089SRolf Eike Beer  * without leaking data.
174983342314SNick Piggin  */
175083342314SNick Piggin void *vmalloc_user(unsigned long size)
175183342314SNick Piggin {
175283342314SNick Piggin 	struct vm_struct *area;
175383342314SNick Piggin 	void *ret;
175483342314SNick Piggin 
17552dca6999SDavid Miller 	ret = __vmalloc_node(size, SHMLBA,
17562dca6999SDavid Miller 			     GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO,
175700ef2d2fSDavid Rientjes 			     PAGE_KERNEL, NUMA_NO_NODE,
175800ef2d2fSDavid Rientjes 			     __builtin_return_address(0));
17592b4ac44eSEric Dumazet 	if (ret) {
1760db64fe02SNick Piggin 		area = find_vm_area(ret);
176183342314SNick Piggin 		area->flags |= VM_USERMAP;
17622b4ac44eSEric Dumazet 	}
176383342314SNick Piggin 	return ret;
176483342314SNick Piggin }
176583342314SNick Piggin EXPORT_SYMBOL(vmalloc_user);
176683342314SNick Piggin 
176783342314SNick Piggin /**
1768930fc45aSChristoph Lameter  *	vmalloc_node  -  allocate memory on a specific node
1769930fc45aSChristoph Lameter  *	@size:		allocation size
1770d44e0780SRandy Dunlap  *	@node:		numa node
1771930fc45aSChristoph Lameter  *
1772930fc45aSChristoph Lameter  *	Allocate enough pages to cover @size from the page level
1773930fc45aSChristoph Lameter  *	allocator and map them into contiguous kernel virtual space.
1774930fc45aSChristoph Lameter  *
1775c1c8897fSMichael Opdenacker  *	For tight control over page level allocator and protection flags
1776930fc45aSChristoph Lameter  *	use __vmalloc() instead.
1777930fc45aSChristoph Lameter  */
1778930fc45aSChristoph Lameter void *vmalloc_node(unsigned long size, int node)
1779930fc45aSChristoph Lameter {
17802dca6999SDavid Miller 	return __vmalloc_node(size, 1, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL,
178123016969SChristoph Lameter 					node, __builtin_return_address(0));
1782930fc45aSChristoph Lameter }
1783930fc45aSChristoph Lameter EXPORT_SYMBOL(vmalloc_node);
1784930fc45aSChristoph Lameter 
1785e1ca7788SDave Young /**
1786e1ca7788SDave Young  * vzalloc_node - allocate memory on a specific node with zero fill
1787e1ca7788SDave Young  * @size:	allocation size
1788e1ca7788SDave Young  * @node:	numa node
1789e1ca7788SDave Young  *
1790e1ca7788SDave Young  * Allocate enough pages to cover @size from the page level
1791e1ca7788SDave Young  * allocator and map them into contiguous kernel virtual space.
1792e1ca7788SDave Young  * The memory allocated is set to zero.
1793e1ca7788SDave Young  *
1794e1ca7788SDave Young  * For tight control over page level allocator and protection flags
1795e1ca7788SDave Young  * use __vmalloc_node() instead.
1796e1ca7788SDave Young  */
1797e1ca7788SDave Young void *vzalloc_node(unsigned long size, int node)
1798e1ca7788SDave Young {
1799e1ca7788SDave Young 	return __vmalloc_node_flags(size, node,
1800e1ca7788SDave Young 			 GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO);
1801e1ca7788SDave Young }
1802e1ca7788SDave Young EXPORT_SYMBOL(vzalloc_node);
1803e1ca7788SDave Young 
18044dc3b16bSPavel Pisa #ifndef PAGE_KERNEL_EXEC
18054dc3b16bSPavel Pisa # define PAGE_KERNEL_EXEC PAGE_KERNEL
18064dc3b16bSPavel Pisa #endif
18074dc3b16bSPavel Pisa 
18081da177e4SLinus Torvalds /**
18091da177e4SLinus Torvalds  *	vmalloc_exec  -  allocate virtually contiguous, executable memory
18101da177e4SLinus Torvalds  *	@size:		allocation size
18111da177e4SLinus Torvalds  *
18121da177e4SLinus Torvalds  *	Kernel-internal function to allocate enough pages to cover @size
18131da177e4SLinus Torvalds  *	the page level allocator and map them into contiguous and
18141da177e4SLinus Torvalds  *	executable kernel virtual space.
18151da177e4SLinus Torvalds  *
1816c1c8897fSMichael Opdenacker  *	For tight control over page level allocator and protection flags
18171da177e4SLinus Torvalds  *	use __vmalloc() instead.
18181da177e4SLinus Torvalds  */
18191da177e4SLinus Torvalds 
18201da177e4SLinus Torvalds void *vmalloc_exec(unsigned long size)
18211da177e4SLinus Torvalds {
18222dca6999SDavid Miller 	return __vmalloc_node(size, 1, GFP_KERNEL | __GFP_HIGHMEM, PAGE_KERNEL_EXEC,
182300ef2d2fSDavid Rientjes 			      NUMA_NO_NODE, __builtin_return_address(0));
18241da177e4SLinus Torvalds }
18251da177e4SLinus Torvalds 
18260d08e0d3SAndi Kleen #if defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA32)
18277ac674f5SBenjamin Herrenschmidt #define GFP_VMALLOC32 GFP_DMA32 | GFP_KERNEL
18280d08e0d3SAndi Kleen #elif defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA)
18297ac674f5SBenjamin Herrenschmidt #define GFP_VMALLOC32 GFP_DMA | GFP_KERNEL
18300d08e0d3SAndi Kleen #else
18310d08e0d3SAndi Kleen #define GFP_VMALLOC32 GFP_KERNEL
18320d08e0d3SAndi Kleen #endif
18330d08e0d3SAndi Kleen 
18341da177e4SLinus Torvalds /**
18351da177e4SLinus Torvalds  *	vmalloc_32  -  allocate virtually contiguous memory (32bit addressable)
18361da177e4SLinus Torvalds  *	@size:		allocation size
18371da177e4SLinus Torvalds  *
18381da177e4SLinus Torvalds  *	Allocate enough 32bit PA addressable pages to cover @size from the
18391da177e4SLinus Torvalds  *	page level allocator and map them into contiguous kernel virtual space.
18401da177e4SLinus Torvalds  */
18411da177e4SLinus Torvalds void *vmalloc_32(unsigned long size)
18421da177e4SLinus Torvalds {
18432dca6999SDavid Miller 	return __vmalloc_node(size, 1, GFP_VMALLOC32, PAGE_KERNEL,
184400ef2d2fSDavid Rientjes 			      NUMA_NO_NODE, __builtin_return_address(0));
18451da177e4SLinus Torvalds }
18461da177e4SLinus Torvalds EXPORT_SYMBOL(vmalloc_32);
18471da177e4SLinus Torvalds 
184883342314SNick Piggin /**
1849ead04089SRolf Eike Beer  * vmalloc_32_user - allocate zeroed virtually contiguous 32bit memory
185083342314SNick Piggin  *	@size:		allocation size
1851ead04089SRolf Eike Beer  *
1852ead04089SRolf Eike Beer  * The resulting memory area is 32bit addressable and zeroed so it can be
1853ead04089SRolf Eike Beer  * mapped to userspace without leaking data.
185483342314SNick Piggin  */
185583342314SNick Piggin void *vmalloc_32_user(unsigned long size)
185683342314SNick Piggin {
185783342314SNick Piggin 	struct vm_struct *area;
185883342314SNick Piggin 	void *ret;
185983342314SNick Piggin 
18602dca6999SDavid Miller 	ret = __vmalloc_node(size, 1, GFP_VMALLOC32 | __GFP_ZERO, PAGE_KERNEL,
186100ef2d2fSDavid Rientjes 			     NUMA_NO_NODE, __builtin_return_address(0));
18622b4ac44eSEric Dumazet 	if (ret) {
1863db64fe02SNick Piggin 		area = find_vm_area(ret);
186483342314SNick Piggin 		area->flags |= VM_USERMAP;
18652b4ac44eSEric Dumazet 	}
186683342314SNick Piggin 	return ret;
186783342314SNick Piggin }
186883342314SNick Piggin EXPORT_SYMBOL(vmalloc_32_user);
186983342314SNick Piggin 
1870d0107eb0SKAMEZAWA Hiroyuki /*
1871d0107eb0SKAMEZAWA Hiroyuki  * small helper routine , copy contents to buf from addr.
1872d0107eb0SKAMEZAWA Hiroyuki  * If the page is not present, fill zero.
1873d0107eb0SKAMEZAWA Hiroyuki  */
1874d0107eb0SKAMEZAWA Hiroyuki 
1875d0107eb0SKAMEZAWA Hiroyuki static int aligned_vread(char *buf, char *addr, unsigned long count)
1876d0107eb0SKAMEZAWA Hiroyuki {
1877d0107eb0SKAMEZAWA Hiroyuki 	struct page *p;
1878d0107eb0SKAMEZAWA Hiroyuki 	int copied = 0;
1879d0107eb0SKAMEZAWA Hiroyuki 
1880d0107eb0SKAMEZAWA Hiroyuki 	while (count) {
1881d0107eb0SKAMEZAWA Hiroyuki 		unsigned long offset, length;
1882d0107eb0SKAMEZAWA Hiroyuki 
1883d0107eb0SKAMEZAWA Hiroyuki 		offset = (unsigned long)addr & ~PAGE_MASK;
1884d0107eb0SKAMEZAWA Hiroyuki 		length = PAGE_SIZE - offset;
1885d0107eb0SKAMEZAWA Hiroyuki 		if (length > count)
1886d0107eb0SKAMEZAWA Hiroyuki 			length = count;
1887d0107eb0SKAMEZAWA Hiroyuki 		p = vmalloc_to_page(addr);
1888d0107eb0SKAMEZAWA Hiroyuki 		/*
1889d0107eb0SKAMEZAWA Hiroyuki 		 * To do safe access to this _mapped_ area, we need
1890d0107eb0SKAMEZAWA Hiroyuki 		 * lock. But adding lock here means that we need to add
1891d0107eb0SKAMEZAWA Hiroyuki 		 * overhead of vmalloc()/vfree() calles for this _debug_
1892d0107eb0SKAMEZAWA Hiroyuki 		 * interface, rarely used. Instead of that, we'll use
1893d0107eb0SKAMEZAWA Hiroyuki 		 * kmap() and get small overhead in this access function.
1894d0107eb0SKAMEZAWA Hiroyuki 		 */
1895d0107eb0SKAMEZAWA Hiroyuki 		if (p) {
1896d0107eb0SKAMEZAWA Hiroyuki 			/*
1897d0107eb0SKAMEZAWA Hiroyuki 			 * we can expect USER0 is not used (see vread/vwrite's
1898d0107eb0SKAMEZAWA Hiroyuki 			 * function description)
1899d0107eb0SKAMEZAWA Hiroyuki 			 */
19009b04c5feSCong Wang 			void *map = kmap_atomic(p);
1901d0107eb0SKAMEZAWA Hiroyuki 			memcpy(buf, map + offset, length);
19029b04c5feSCong Wang 			kunmap_atomic(map);
1903d0107eb0SKAMEZAWA Hiroyuki 		} else
1904d0107eb0SKAMEZAWA Hiroyuki 			memset(buf, 0, length);
1905d0107eb0SKAMEZAWA Hiroyuki 
1906d0107eb0SKAMEZAWA Hiroyuki 		addr += length;
1907d0107eb0SKAMEZAWA Hiroyuki 		buf += length;
1908d0107eb0SKAMEZAWA Hiroyuki 		copied += length;
1909d0107eb0SKAMEZAWA Hiroyuki 		count -= length;
1910d0107eb0SKAMEZAWA Hiroyuki 	}
1911d0107eb0SKAMEZAWA Hiroyuki 	return copied;
1912d0107eb0SKAMEZAWA Hiroyuki }
1913d0107eb0SKAMEZAWA Hiroyuki 
1914d0107eb0SKAMEZAWA Hiroyuki static int aligned_vwrite(char *buf, char *addr, unsigned long count)
1915d0107eb0SKAMEZAWA Hiroyuki {
1916d0107eb0SKAMEZAWA Hiroyuki 	struct page *p;
1917d0107eb0SKAMEZAWA Hiroyuki 	int copied = 0;
1918d0107eb0SKAMEZAWA Hiroyuki 
1919d0107eb0SKAMEZAWA Hiroyuki 	while (count) {
1920d0107eb0SKAMEZAWA Hiroyuki 		unsigned long offset, length;
1921d0107eb0SKAMEZAWA Hiroyuki 
1922d0107eb0SKAMEZAWA Hiroyuki 		offset = (unsigned long)addr & ~PAGE_MASK;
1923d0107eb0SKAMEZAWA Hiroyuki 		length = PAGE_SIZE - offset;
1924d0107eb0SKAMEZAWA Hiroyuki 		if (length > count)
1925d0107eb0SKAMEZAWA Hiroyuki 			length = count;
1926d0107eb0SKAMEZAWA Hiroyuki 		p = vmalloc_to_page(addr);
1927d0107eb0SKAMEZAWA Hiroyuki 		/*
1928d0107eb0SKAMEZAWA Hiroyuki 		 * To do safe access to this _mapped_ area, we need
1929d0107eb0SKAMEZAWA Hiroyuki 		 * lock. But adding lock here means that we need to add
1930d0107eb0SKAMEZAWA Hiroyuki 		 * overhead of vmalloc()/vfree() calles for this _debug_
1931d0107eb0SKAMEZAWA Hiroyuki 		 * interface, rarely used. Instead of that, we'll use
1932d0107eb0SKAMEZAWA Hiroyuki 		 * kmap() and get small overhead in this access function.
1933d0107eb0SKAMEZAWA Hiroyuki 		 */
1934d0107eb0SKAMEZAWA Hiroyuki 		if (p) {
1935d0107eb0SKAMEZAWA Hiroyuki 			/*
1936d0107eb0SKAMEZAWA Hiroyuki 			 * we can expect USER0 is not used (see vread/vwrite's
1937d0107eb0SKAMEZAWA Hiroyuki 			 * function description)
1938d0107eb0SKAMEZAWA Hiroyuki 			 */
19399b04c5feSCong Wang 			void *map = kmap_atomic(p);
1940d0107eb0SKAMEZAWA Hiroyuki 			memcpy(map + offset, buf, length);
19419b04c5feSCong Wang 			kunmap_atomic(map);
1942d0107eb0SKAMEZAWA Hiroyuki 		}
1943d0107eb0SKAMEZAWA Hiroyuki 		addr += length;
1944d0107eb0SKAMEZAWA Hiroyuki 		buf += length;
1945d0107eb0SKAMEZAWA Hiroyuki 		copied += length;
1946d0107eb0SKAMEZAWA Hiroyuki 		count -= length;
1947d0107eb0SKAMEZAWA Hiroyuki 	}
1948d0107eb0SKAMEZAWA Hiroyuki 	return copied;
1949d0107eb0SKAMEZAWA Hiroyuki }
1950d0107eb0SKAMEZAWA Hiroyuki 
1951d0107eb0SKAMEZAWA Hiroyuki /**
1952d0107eb0SKAMEZAWA Hiroyuki  *	vread() -  read vmalloc area in a safe way.
1953d0107eb0SKAMEZAWA Hiroyuki  *	@buf:		buffer for reading data
1954d0107eb0SKAMEZAWA Hiroyuki  *	@addr:		vm address.
1955d0107eb0SKAMEZAWA Hiroyuki  *	@count:		number of bytes to be read.
1956d0107eb0SKAMEZAWA Hiroyuki  *
1957d0107eb0SKAMEZAWA Hiroyuki  *	Returns # of bytes which addr and buf should be increased.
1958d0107eb0SKAMEZAWA Hiroyuki  *	(same number to @count). Returns 0 if [addr...addr+count) doesn't
1959d0107eb0SKAMEZAWA Hiroyuki  *	includes any intersect with alive vmalloc area.
1960d0107eb0SKAMEZAWA Hiroyuki  *
1961d0107eb0SKAMEZAWA Hiroyuki  *	This function checks that addr is a valid vmalloc'ed area, and
1962d0107eb0SKAMEZAWA Hiroyuki  *	copy data from that area to a given buffer. If the given memory range
1963d0107eb0SKAMEZAWA Hiroyuki  *	of [addr...addr+count) includes some valid address, data is copied to
1964d0107eb0SKAMEZAWA Hiroyuki  *	proper area of @buf. If there are memory holes, they'll be zero-filled.
1965d0107eb0SKAMEZAWA Hiroyuki  *	IOREMAP area is treated as memory hole and no copy is done.
1966d0107eb0SKAMEZAWA Hiroyuki  *
1967d0107eb0SKAMEZAWA Hiroyuki  *	If [addr...addr+count) doesn't includes any intersects with alive
1968a8e5202dSCong Wang  *	vm_struct area, returns 0. @buf should be kernel's buffer.
1969d0107eb0SKAMEZAWA Hiroyuki  *
1970d0107eb0SKAMEZAWA Hiroyuki  *	Note: In usual ops, vread() is never necessary because the caller
1971d0107eb0SKAMEZAWA Hiroyuki  *	should know vmalloc() area is valid and can use memcpy().
1972d0107eb0SKAMEZAWA Hiroyuki  *	This is for routines which have to access vmalloc area without
1973d0107eb0SKAMEZAWA Hiroyuki  *	any informaion, as /dev/kmem.
1974d0107eb0SKAMEZAWA Hiroyuki  *
1975d0107eb0SKAMEZAWA Hiroyuki  */
1976d0107eb0SKAMEZAWA Hiroyuki 
19771da177e4SLinus Torvalds long vread(char *buf, char *addr, unsigned long count)
19781da177e4SLinus Torvalds {
1979e81ce85fSJoonsoo Kim 	struct vmap_area *va;
1980e81ce85fSJoonsoo Kim 	struct vm_struct *vm;
19811da177e4SLinus Torvalds 	char *vaddr, *buf_start = buf;
1982d0107eb0SKAMEZAWA Hiroyuki 	unsigned long buflen = count;
19831da177e4SLinus Torvalds 	unsigned long n;
19841da177e4SLinus Torvalds 
19851da177e4SLinus Torvalds 	/* Don't allow overflow */
19861da177e4SLinus Torvalds 	if ((unsigned long) addr + count < count)
19871da177e4SLinus Torvalds 		count = -(unsigned long) addr;
19881da177e4SLinus Torvalds 
1989e81ce85fSJoonsoo Kim 	spin_lock(&vmap_area_lock);
1990e81ce85fSJoonsoo Kim 	list_for_each_entry(va, &vmap_area_list, list) {
1991e81ce85fSJoonsoo Kim 		if (!count)
1992e81ce85fSJoonsoo Kim 			break;
1993e81ce85fSJoonsoo Kim 
1994e81ce85fSJoonsoo Kim 		if (!(va->flags & VM_VM_AREA))
1995e81ce85fSJoonsoo Kim 			continue;
1996e81ce85fSJoonsoo Kim 
1997e81ce85fSJoonsoo Kim 		vm = va->vm;
1998e81ce85fSJoonsoo Kim 		vaddr = (char *) vm->addr;
1999762216abSWanpeng Li 		if (addr >= vaddr + get_vm_area_size(vm))
20001da177e4SLinus Torvalds 			continue;
20011da177e4SLinus Torvalds 		while (addr < vaddr) {
20021da177e4SLinus Torvalds 			if (count == 0)
20031da177e4SLinus Torvalds 				goto finished;
20041da177e4SLinus Torvalds 			*buf = '\0';
20051da177e4SLinus Torvalds 			buf++;
20061da177e4SLinus Torvalds 			addr++;
20071da177e4SLinus Torvalds 			count--;
20081da177e4SLinus Torvalds 		}
2009762216abSWanpeng Li 		n = vaddr + get_vm_area_size(vm) - addr;
2010d0107eb0SKAMEZAWA Hiroyuki 		if (n > count)
2011d0107eb0SKAMEZAWA Hiroyuki 			n = count;
2012e81ce85fSJoonsoo Kim 		if (!(vm->flags & VM_IOREMAP))
2013d0107eb0SKAMEZAWA Hiroyuki 			aligned_vread(buf, addr, n);
2014d0107eb0SKAMEZAWA Hiroyuki 		else /* IOREMAP area is treated as memory hole */
2015d0107eb0SKAMEZAWA Hiroyuki 			memset(buf, 0, n);
2016d0107eb0SKAMEZAWA Hiroyuki 		buf += n;
2017d0107eb0SKAMEZAWA Hiroyuki 		addr += n;
2018d0107eb0SKAMEZAWA Hiroyuki 		count -= n;
20191da177e4SLinus Torvalds 	}
20201da177e4SLinus Torvalds finished:
2021e81ce85fSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
2022d0107eb0SKAMEZAWA Hiroyuki 
2023d0107eb0SKAMEZAWA Hiroyuki 	if (buf == buf_start)
2024d0107eb0SKAMEZAWA Hiroyuki 		return 0;
2025d0107eb0SKAMEZAWA Hiroyuki 	/* zero-fill memory holes */
2026d0107eb0SKAMEZAWA Hiroyuki 	if (buf != buf_start + buflen)
2027d0107eb0SKAMEZAWA Hiroyuki 		memset(buf, 0, buflen - (buf - buf_start));
2028d0107eb0SKAMEZAWA Hiroyuki 
2029d0107eb0SKAMEZAWA Hiroyuki 	return buflen;
20301da177e4SLinus Torvalds }
20311da177e4SLinus Torvalds 
2032d0107eb0SKAMEZAWA Hiroyuki /**
2033d0107eb0SKAMEZAWA Hiroyuki  *	vwrite() -  write vmalloc area in a safe way.
2034d0107eb0SKAMEZAWA Hiroyuki  *	@buf:		buffer for source data
2035d0107eb0SKAMEZAWA Hiroyuki  *	@addr:		vm address.
2036d0107eb0SKAMEZAWA Hiroyuki  *	@count:		number of bytes to be read.
2037d0107eb0SKAMEZAWA Hiroyuki  *
2038d0107eb0SKAMEZAWA Hiroyuki  *	Returns # of bytes which addr and buf should be incresed.
2039d0107eb0SKAMEZAWA Hiroyuki  *	(same number to @count).
2040d0107eb0SKAMEZAWA Hiroyuki  *	If [addr...addr+count) doesn't includes any intersect with valid
2041d0107eb0SKAMEZAWA Hiroyuki  *	vmalloc area, returns 0.
2042d0107eb0SKAMEZAWA Hiroyuki  *
2043d0107eb0SKAMEZAWA Hiroyuki  *	This function checks that addr is a valid vmalloc'ed area, and
2044d0107eb0SKAMEZAWA Hiroyuki  *	copy data from a buffer to the given addr. If specified range of
2045d0107eb0SKAMEZAWA Hiroyuki  *	[addr...addr+count) includes some valid address, data is copied from
2046d0107eb0SKAMEZAWA Hiroyuki  *	proper area of @buf. If there are memory holes, no copy to hole.
2047d0107eb0SKAMEZAWA Hiroyuki  *	IOREMAP area is treated as memory hole and no copy is done.
2048d0107eb0SKAMEZAWA Hiroyuki  *
2049d0107eb0SKAMEZAWA Hiroyuki  *	If [addr...addr+count) doesn't includes any intersects with alive
2050a8e5202dSCong Wang  *	vm_struct area, returns 0. @buf should be kernel's buffer.
2051d0107eb0SKAMEZAWA Hiroyuki  *
2052d0107eb0SKAMEZAWA Hiroyuki  *	Note: In usual ops, vwrite() is never necessary because the caller
2053d0107eb0SKAMEZAWA Hiroyuki  *	should know vmalloc() area is valid and can use memcpy().
2054d0107eb0SKAMEZAWA Hiroyuki  *	This is for routines which have to access vmalloc area without
2055d0107eb0SKAMEZAWA Hiroyuki  *	any informaion, as /dev/kmem.
2056d0107eb0SKAMEZAWA Hiroyuki  */
2057d0107eb0SKAMEZAWA Hiroyuki 
20581da177e4SLinus Torvalds long vwrite(char *buf, char *addr, unsigned long count)
20591da177e4SLinus Torvalds {
2060e81ce85fSJoonsoo Kim 	struct vmap_area *va;
2061e81ce85fSJoonsoo Kim 	struct vm_struct *vm;
2062d0107eb0SKAMEZAWA Hiroyuki 	char *vaddr;
2063d0107eb0SKAMEZAWA Hiroyuki 	unsigned long n, buflen;
2064d0107eb0SKAMEZAWA Hiroyuki 	int copied = 0;
20651da177e4SLinus Torvalds 
20661da177e4SLinus Torvalds 	/* Don't allow overflow */
20671da177e4SLinus Torvalds 	if ((unsigned long) addr + count < count)
20681da177e4SLinus Torvalds 		count = -(unsigned long) addr;
2069d0107eb0SKAMEZAWA Hiroyuki 	buflen = count;
20701da177e4SLinus Torvalds 
2071e81ce85fSJoonsoo Kim 	spin_lock(&vmap_area_lock);
2072e81ce85fSJoonsoo Kim 	list_for_each_entry(va, &vmap_area_list, list) {
2073e81ce85fSJoonsoo Kim 		if (!count)
2074e81ce85fSJoonsoo Kim 			break;
2075e81ce85fSJoonsoo Kim 
2076e81ce85fSJoonsoo Kim 		if (!(va->flags & VM_VM_AREA))
2077e81ce85fSJoonsoo Kim 			continue;
2078e81ce85fSJoonsoo Kim 
2079e81ce85fSJoonsoo Kim 		vm = va->vm;
2080e81ce85fSJoonsoo Kim 		vaddr = (char *) vm->addr;
2081762216abSWanpeng Li 		if (addr >= vaddr + get_vm_area_size(vm))
20821da177e4SLinus Torvalds 			continue;
20831da177e4SLinus Torvalds 		while (addr < vaddr) {
20841da177e4SLinus Torvalds 			if (count == 0)
20851da177e4SLinus Torvalds 				goto finished;
20861da177e4SLinus Torvalds 			buf++;
20871da177e4SLinus Torvalds 			addr++;
20881da177e4SLinus Torvalds 			count--;
20891da177e4SLinus Torvalds 		}
2090762216abSWanpeng Li 		n = vaddr + get_vm_area_size(vm) - addr;
2091d0107eb0SKAMEZAWA Hiroyuki 		if (n > count)
2092d0107eb0SKAMEZAWA Hiroyuki 			n = count;
2093e81ce85fSJoonsoo Kim 		if (!(vm->flags & VM_IOREMAP)) {
2094d0107eb0SKAMEZAWA Hiroyuki 			aligned_vwrite(buf, addr, n);
2095d0107eb0SKAMEZAWA Hiroyuki 			copied++;
2096d0107eb0SKAMEZAWA Hiroyuki 		}
2097d0107eb0SKAMEZAWA Hiroyuki 		buf += n;
2098d0107eb0SKAMEZAWA Hiroyuki 		addr += n;
2099d0107eb0SKAMEZAWA Hiroyuki 		count -= n;
21001da177e4SLinus Torvalds 	}
21011da177e4SLinus Torvalds finished:
2102e81ce85fSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
2103d0107eb0SKAMEZAWA Hiroyuki 	if (!copied)
2104d0107eb0SKAMEZAWA Hiroyuki 		return 0;
2105d0107eb0SKAMEZAWA Hiroyuki 	return buflen;
21061da177e4SLinus Torvalds }
210783342314SNick Piggin 
210883342314SNick Piggin /**
2109e69e9d4aSHATAYAMA Daisuke  *	remap_vmalloc_range_partial  -  map vmalloc pages to userspace
2110e69e9d4aSHATAYAMA Daisuke  *	@vma:		vma to cover
2111e69e9d4aSHATAYAMA Daisuke  *	@uaddr:		target user address to start at
2112e69e9d4aSHATAYAMA Daisuke  *	@kaddr:		virtual address of vmalloc kernel memory
2113e69e9d4aSHATAYAMA Daisuke  *	@size:		size of map area
2114e69e9d4aSHATAYAMA Daisuke  *
2115e69e9d4aSHATAYAMA Daisuke  *	Returns:	0 for success, -Exxx on failure
2116e69e9d4aSHATAYAMA Daisuke  *
2117e69e9d4aSHATAYAMA Daisuke  *	This function checks that @kaddr is a valid vmalloc'ed area,
2118e69e9d4aSHATAYAMA Daisuke  *	and that it is big enough to cover the range starting at
2119e69e9d4aSHATAYAMA Daisuke  *	@uaddr in @vma. Will return failure if that criteria isn't
2120e69e9d4aSHATAYAMA Daisuke  *	met.
2121e69e9d4aSHATAYAMA Daisuke  *
2122e69e9d4aSHATAYAMA Daisuke  *	Similar to remap_pfn_range() (see mm/memory.c)
2123e69e9d4aSHATAYAMA Daisuke  */
2124e69e9d4aSHATAYAMA Daisuke int remap_vmalloc_range_partial(struct vm_area_struct *vma, unsigned long uaddr,
2125e69e9d4aSHATAYAMA Daisuke 				void *kaddr, unsigned long size)
2126e69e9d4aSHATAYAMA Daisuke {
2127e69e9d4aSHATAYAMA Daisuke 	struct vm_struct *area;
2128e69e9d4aSHATAYAMA Daisuke 
2129e69e9d4aSHATAYAMA Daisuke 	size = PAGE_ALIGN(size);
2130e69e9d4aSHATAYAMA Daisuke 
2131e69e9d4aSHATAYAMA Daisuke 	if (!PAGE_ALIGNED(uaddr) || !PAGE_ALIGNED(kaddr))
2132e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
2133e69e9d4aSHATAYAMA Daisuke 
2134e69e9d4aSHATAYAMA Daisuke 	area = find_vm_area(kaddr);
2135e69e9d4aSHATAYAMA Daisuke 	if (!area)
2136e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
2137e69e9d4aSHATAYAMA Daisuke 
2138e69e9d4aSHATAYAMA Daisuke 	if (!(area->flags & VM_USERMAP))
2139e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
2140e69e9d4aSHATAYAMA Daisuke 
2141e69e9d4aSHATAYAMA Daisuke 	if (kaddr + size > area->addr + area->size)
2142e69e9d4aSHATAYAMA Daisuke 		return -EINVAL;
2143e69e9d4aSHATAYAMA Daisuke 
2144e69e9d4aSHATAYAMA Daisuke 	do {
2145e69e9d4aSHATAYAMA Daisuke 		struct page *page = vmalloc_to_page(kaddr);
2146e69e9d4aSHATAYAMA Daisuke 		int ret;
2147e69e9d4aSHATAYAMA Daisuke 
2148e69e9d4aSHATAYAMA Daisuke 		ret = vm_insert_page(vma, uaddr, page);
2149e69e9d4aSHATAYAMA Daisuke 		if (ret)
2150e69e9d4aSHATAYAMA Daisuke 			return ret;
2151e69e9d4aSHATAYAMA Daisuke 
2152e69e9d4aSHATAYAMA Daisuke 		uaddr += PAGE_SIZE;
2153e69e9d4aSHATAYAMA Daisuke 		kaddr += PAGE_SIZE;
2154e69e9d4aSHATAYAMA Daisuke 		size -= PAGE_SIZE;
2155e69e9d4aSHATAYAMA Daisuke 	} while (size > 0);
2156e69e9d4aSHATAYAMA Daisuke 
2157e69e9d4aSHATAYAMA Daisuke 	vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
2158e69e9d4aSHATAYAMA Daisuke 
2159e69e9d4aSHATAYAMA Daisuke 	return 0;
2160e69e9d4aSHATAYAMA Daisuke }
2161e69e9d4aSHATAYAMA Daisuke EXPORT_SYMBOL(remap_vmalloc_range_partial);
2162e69e9d4aSHATAYAMA Daisuke 
2163e69e9d4aSHATAYAMA Daisuke /**
216483342314SNick Piggin  *	remap_vmalloc_range  -  map vmalloc pages to userspace
216583342314SNick Piggin  *	@vma:		vma to cover (map full range of vma)
216683342314SNick Piggin  *	@addr:		vmalloc memory
216783342314SNick Piggin  *	@pgoff:		number of pages into addr before first page to map
21687682486bSRandy Dunlap  *
21697682486bSRandy Dunlap  *	Returns:	0 for success, -Exxx on failure
217083342314SNick Piggin  *
217183342314SNick Piggin  *	This function checks that addr is a valid vmalloc'ed area, and
217283342314SNick Piggin  *	that it is big enough to cover the vma. Will return failure if
217383342314SNick Piggin  *	that criteria isn't met.
217483342314SNick Piggin  *
217572fd4a35SRobert P. J. Day  *	Similar to remap_pfn_range() (see mm/memory.c)
217683342314SNick Piggin  */
217783342314SNick Piggin int remap_vmalloc_range(struct vm_area_struct *vma, void *addr,
217883342314SNick Piggin 						unsigned long pgoff)
217983342314SNick Piggin {
2180e69e9d4aSHATAYAMA Daisuke 	return remap_vmalloc_range_partial(vma, vma->vm_start,
2181e69e9d4aSHATAYAMA Daisuke 					   addr + (pgoff << PAGE_SHIFT),
2182e69e9d4aSHATAYAMA Daisuke 					   vma->vm_end - vma->vm_start);
218383342314SNick Piggin }
218483342314SNick Piggin EXPORT_SYMBOL(remap_vmalloc_range);
218583342314SNick Piggin 
21861eeb66a1SChristoph Hellwig /*
21871eeb66a1SChristoph Hellwig  * Implement a stub for vmalloc_sync_all() if the architecture chose not to
21881eeb66a1SChristoph Hellwig  * have one.
21891eeb66a1SChristoph Hellwig  */
21903b32123dSGideon Israel Dsouza void __weak vmalloc_sync_all(void)
21911eeb66a1SChristoph Hellwig {
21921eeb66a1SChristoph Hellwig }
21935f4352fbSJeremy Fitzhardinge 
21945f4352fbSJeremy Fitzhardinge 
21952f569afdSMartin Schwidefsky static int f(pte_t *pte, pgtable_t table, unsigned long addr, void *data)
21965f4352fbSJeremy Fitzhardinge {
2197cd12909cSDavid Vrabel 	pte_t ***p = data;
2198cd12909cSDavid Vrabel 
2199cd12909cSDavid Vrabel 	if (p) {
2200cd12909cSDavid Vrabel 		*(*p) = pte;
2201cd12909cSDavid Vrabel 		(*p)++;
2202cd12909cSDavid Vrabel 	}
22035f4352fbSJeremy Fitzhardinge 	return 0;
22045f4352fbSJeremy Fitzhardinge }
22055f4352fbSJeremy Fitzhardinge 
22065f4352fbSJeremy Fitzhardinge /**
22075f4352fbSJeremy Fitzhardinge  *	alloc_vm_area - allocate a range of kernel address space
22085f4352fbSJeremy Fitzhardinge  *	@size:		size of the area
2209cd12909cSDavid Vrabel  *	@ptes:		returns the PTEs for the address space
22107682486bSRandy Dunlap  *
22117682486bSRandy Dunlap  *	Returns:	NULL on failure, vm_struct on success
22125f4352fbSJeremy Fitzhardinge  *
22135f4352fbSJeremy Fitzhardinge  *	This function reserves a range of kernel address space, and
22145f4352fbSJeremy Fitzhardinge  *	allocates pagetables to map that range.  No actual mappings
2215cd12909cSDavid Vrabel  *	are created.
2216cd12909cSDavid Vrabel  *
2217cd12909cSDavid Vrabel  *	If @ptes is non-NULL, pointers to the PTEs (in init_mm)
2218cd12909cSDavid Vrabel  *	allocated for the VM area are returned.
22195f4352fbSJeremy Fitzhardinge  */
2220cd12909cSDavid Vrabel struct vm_struct *alloc_vm_area(size_t size, pte_t **ptes)
22215f4352fbSJeremy Fitzhardinge {
22225f4352fbSJeremy Fitzhardinge 	struct vm_struct *area;
22235f4352fbSJeremy Fitzhardinge 
222423016969SChristoph Lameter 	area = get_vm_area_caller(size, VM_IOREMAP,
222523016969SChristoph Lameter 				__builtin_return_address(0));
22265f4352fbSJeremy Fitzhardinge 	if (area == NULL)
22275f4352fbSJeremy Fitzhardinge 		return NULL;
22285f4352fbSJeremy Fitzhardinge 
22295f4352fbSJeremy Fitzhardinge 	/*
22305f4352fbSJeremy Fitzhardinge 	 * This ensures that page tables are constructed for this region
22315f4352fbSJeremy Fitzhardinge 	 * of kernel virtual address space and mapped into init_mm.
22325f4352fbSJeremy Fitzhardinge 	 */
22335f4352fbSJeremy Fitzhardinge 	if (apply_to_page_range(&init_mm, (unsigned long)area->addr,
2234cd12909cSDavid Vrabel 				size, f, ptes ? &ptes : NULL)) {
22355f4352fbSJeremy Fitzhardinge 		free_vm_area(area);
22365f4352fbSJeremy Fitzhardinge 		return NULL;
22375f4352fbSJeremy Fitzhardinge 	}
22385f4352fbSJeremy Fitzhardinge 
22395f4352fbSJeremy Fitzhardinge 	return area;
22405f4352fbSJeremy Fitzhardinge }
22415f4352fbSJeremy Fitzhardinge EXPORT_SYMBOL_GPL(alloc_vm_area);
22425f4352fbSJeremy Fitzhardinge 
22435f4352fbSJeremy Fitzhardinge void free_vm_area(struct vm_struct *area)
22445f4352fbSJeremy Fitzhardinge {
22455f4352fbSJeremy Fitzhardinge 	struct vm_struct *ret;
22465f4352fbSJeremy Fitzhardinge 	ret = remove_vm_area(area->addr);
22475f4352fbSJeremy Fitzhardinge 	BUG_ON(ret != area);
22485f4352fbSJeremy Fitzhardinge 	kfree(area);
22495f4352fbSJeremy Fitzhardinge }
22505f4352fbSJeremy Fitzhardinge EXPORT_SYMBOL_GPL(free_vm_area);
2251a10aa579SChristoph Lameter 
22524f8b02b4STejun Heo #ifdef CONFIG_SMP
2253ca23e405STejun Heo static struct vmap_area *node_to_va(struct rb_node *n)
2254ca23e405STejun Heo {
2255ca23e405STejun Heo 	return n ? rb_entry(n, struct vmap_area, rb_node) : NULL;
2256ca23e405STejun Heo }
2257ca23e405STejun Heo 
2258ca23e405STejun Heo /**
2259ca23e405STejun Heo  * pvm_find_next_prev - find the next and prev vmap_area surrounding @end
2260ca23e405STejun Heo  * @end: target address
2261ca23e405STejun Heo  * @pnext: out arg for the next vmap_area
2262ca23e405STejun Heo  * @pprev: out arg for the previous vmap_area
2263ca23e405STejun Heo  *
2264ca23e405STejun Heo  * Returns: %true if either or both of next and prev are found,
2265ca23e405STejun Heo  *	    %false if no vmap_area exists
2266ca23e405STejun Heo  *
2267ca23e405STejun Heo  * Find vmap_areas end addresses of which enclose @end.  ie. if not
2268ca23e405STejun Heo  * NULL, *pnext->va_end > @end and *pprev->va_end <= @end.
2269ca23e405STejun Heo  */
2270ca23e405STejun Heo static bool pvm_find_next_prev(unsigned long end,
2271ca23e405STejun Heo 			       struct vmap_area **pnext,
2272ca23e405STejun Heo 			       struct vmap_area **pprev)
2273ca23e405STejun Heo {
2274ca23e405STejun Heo 	struct rb_node *n = vmap_area_root.rb_node;
2275ca23e405STejun Heo 	struct vmap_area *va = NULL;
2276ca23e405STejun Heo 
2277ca23e405STejun Heo 	while (n) {
2278ca23e405STejun Heo 		va = rb_entry(n, struct vmap_area, rb_node);
2279ca23e405STejun Heo 		if (end < va->va_end)
2280ca23e405STejun Heo 			n = n->rb_left;
2281ca23e405STejun Heo 		else if (end > va->va_end)
2282ca23e405STejun Heo 			n = n->rb_right;
2283ca23e405STejun Heo 		else
2284ca23e405STejun Heo 			break;
2285ca23e405STejun Heo 	}
2286ca23e405STejun Heo 
2287ca23e405STejun Heo 	if (!va)
2288ca23e405STejun Heo 		return false;
2289ca23e405STejun Heo 
2290ca23e405STejun Heo 	if (va->va_end > end) {
2291ca23e405STejun Heo 		*pnext = va;
2292ca23e405STejun Heo 		*pprev = node_to_va(rb_prev(&(*pnext)->rb_node));
2293ca23e405STejun Heo 	} else {
2294ca23e405STejun Heo 		*pprev = va;
2295ca23e405STejun Heo 		*pnext = node_to_va(rb_next(&(*pprev)->rb_node));
2296ca23e405STejun Heo 	}
2297ca23e405STejun Heo 	return true;
2298ca23e405STejun Heo }
2299ca23e405STejun Heo 
2300ca23e405STejun Heo /**
2301ca23e405STejun Heo  * pvm_determine_end - find the highest aligned address between two vmap_areas
2302ca23e405STejun Heo  * @pnext: in/out arg for the next vmap_area
2303ca23e405STejun Heo  * @pprev: in/out arg for the previous vmap_area
2304ca23e405STejun Heo  * @align: alignment
2305ca23e405STejun Heo  *
2306ca23e405STejun Heo  * Returns: determined end address
2307ca23e405STejun Heo  *
2308ca23e405STejun Heo  * Find the highest aligned address between *@pnext and *@pprev below
2309ca23e405STejun Heo  * VMALLOC_END.  *@pnext and *@pprev are adjusted so that the aligned
2310ca23e405STejun Heo  * down address is between the end addresses of the two vmap_areas.
2311ca23e405STejun Heo  *
2312ca23e405STejun Heo  * Please note that the address returned by this function may fall
2313ca23e405STejun Heo  * inside *@pnext vmap_area.  The caller is responsible for checking
2314ca23e405STejun Heo  * that.
2315ca23e405STejun Heo  */
2316ca23e405STejun Heo static unsigned long pvm_determine_end(struct vmap_area **pnext,
2317ca23e405STejun Heo 				       struct vmap_area **pprev,
2318ca23e405STejun Heo 				       unsigned long align)
2319ca23e405STejun Heo {
2320ca23e405STejun Heo 	const unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
2321ca23e405STejun Heo 	unsigned long addr;
2322ca23e405STejun Heo 
2323ca23e405STejun Heo 	if (*pnext)
2324ca23e405STejun Heo 		addr = min((*pnext)->va_start & ~(align - 1), vmalloc_end);
2325ca23e405STejun Heo 	else
2326ca23e405STejun Heo 		addr = vmalloc_end;
2327ca23e405STejun Heo 
2328ca23e405STejun Heo 	while (*pprev && (*pprev)->va_end > addr) {
2329ca23e405STejun Heo 		*pnext = *pprev;
2330ca23e405STejun Heo 		*pprev = node_to_va(rb_prev(&(*pnext)->rb_node));
2331ca23e405STejun Heo 	}
2332ca23e405STejun Heo 
2333ca23e405STejun Heo 	return addr;
2334ca23e405STejun Heo }
2335ca23e405STejun Heo 
2336ca23e405STejun Heo /**
2337ca23e405STejun Heo  * pcpu_get_vm_areas - allocate vmalloc areas for percpu allocator
2338ca23e405STejun Heo  * @offsets: array containing offset of each area
2339ca23e405STejun Heo  * @sizes: array containing size of each area
2340ca23e405STejun Heo  * @nr_vms: the number of areas to allocate
2341ca23e405STejun Heo  * @align: alignment, all entries in @offsets and @sizes must be aligned to this
2342ca23e405STejun Heo  *
2343ca23e405STejun Heo  * Returns: kmalloc'd vm_struct pointer array pointing to allocated
2344ca23e405STejun Heo  *	    vm_structs on success, %NULL on failure
2345ca23e405STejun Heo  *
2346ca23e405STejun Heo  * Percpu allocator wants to use congruent vm areas so that it can
2347ca23e405STejun Heo  * maintain the offsets among percpu areas.  This function allocates
2348ec3f64fcSDavid Rientjes  * congruent vmalloc areas for it with GFP_KERNEL.  These areas tend to
2349ec3f64fcSDavid Rientjes  * be scattered pretty far, distance between two areas easily going up
2350ec3f64fcSDavid Rientjes  * to gigabytes.  To avoid interacting with regular vmallocs, these
2351ec3f64fcSDavid Rientjes  * areas are allocated from top.
2352ca23e405STejun Heo  *
2353ca23e405STejun Heo  * Despite its complicated look, this allocator is rather simple.  It
2354ca23e405STejun Heo  * does everything top-down and scans areas from the end looking for
2355ca23e405STejun Heo  * matching slot.  While scanning, if any of the areas overlaps with
2356ca23e405STejun Heo  * existing vmap_area, the base address is pulled down to fit the
2357ca23e405STejun Heo  * area.  Scanning is repeated till all the areas fit and then all
2358ca23e405STejun Heo  * necessary data structres are inserted and the result is returned.
2359ca23e405STejun Heo  */
2360ca23e405STejun Heo struct vm_struct **pcpu_get_vm_areas(const unsigned long *offsets,
2361ca23e405STejun Heo 				     const size_t *sizes, int nr_vms,
2362ec3f64fcSDavid Rientjes 				     size_t align)
2363ca23e405STejun Heo {
2364ca23e405STejun Heo 	const unsigned long vmalloc_start = ALIGN(VMALLOC_START, align);
2365ca23e405STejun Heo 	const unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
2366ca23e405STejun Heo 	struct vmap_area **vas, *prev, *next;
2367ca23e405STejun Heo 	struct vm_struct **vms;
2368ca23e405STejun Heo 	int area, area2, last_area, term_area;
2369ca23e405STejun Heo 	unsigned long base, start, end, last_end;
2370ca23e405STejun Heo 	bool purged = false;
2371ca23e405STejun Heo 
2372ca23e405STejun Heo 	/* verify parameters and allocate data structures */
2373ca23e405STejun Heo 	BUG_ON(align & ~PAGE_MASK || !is_power_of_2(align));
2374ca23e405STejun Heo 	for (last_area = 0, area = 0; area < nr_vms; area++) {
2375ca23e405STejun Heo 		start = offsets[area];
2376ca23e405STejun Heo 		end = start + sizes[area];
2377ca23e405STejun Heo 
2378ca23e405STejun Heo 		/* is everything aligned properly? */
2379ca23e405STejun Heo 		BUG_ON(!IS_ALIGNED(offsets[area], align));
2380ca23e405STejun Heo 		BUG_ON(!IS_ALIGNED(sizes[area], align));
2381ca23e405STejun Heo 
2382ca23e405STejun Heo 		/* detect the area with the highest address */
2383ca23e405STejun Heo 		if (start > offsets[last_area])
2384ca23e405STejun Heo 			last_area = area;
2385ca23e405STejun Heo 
2386ca23e405STejun Heo 		for (area2 = 0; area2 < nr_vms; area2++) {
2387ca23e405STejun Heo 			unsigned long start2 = offsets[area2];
2388ca23e405STejun Heo 			unsigned long end2 = start2 + sizes[area2];
2389ca23e405STejun Heo 
2390ca23e405STejun Heo 			if (area2 == area)
2391ca23e405STejun Heo 				continue;
2392ca23e405STejun Heo 
2393ca23e405STejun Heo 			BUG_ON(start2 >= start && start2 < end);
2394ca23e405STejun Heo 			BUG_ON(end2 <= end && end2 > start);
2395ca23e405STejun Heo 		}
2396ca23e405STejun Heo 	}
2397ca23e405STejun Heo 	last_end = offsets[last_area] + sizes[last_area];
2398ca23e405STejun Heo 
2399ca23e405STejun Heo 	if (vmalloc_end - vmalloc_start < last_end) {
2400ca23e405STejun Heo 		WARN_ON(true);
2401ca23e405STejun Heo 		return NULL;
2402ca23e405STejun Heo 	}
2403ca23e405STejun Heo 
24044d67d860SThomas Meyer 	vms = kcalloc(nr_vms, sizeof(vms[0]), GFP_KERNEL);
24054d67d860SThomas Meyer 	vas = kcalloc(nr_vms, sizeof(vas[0]), GFP_KERNEL);
2406ca23e405STejun Heo 	if (!vas || !vms)
2407f1db7afdSKautuk Consul 		goto err_free2;
2408ca23e405STejun Heo 
2409ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
2410ec3f64fcSDavid Rientjes 		vas[area] = kzalloc(sizeof(struct vmap_area), GFP_KERNEL);
2411ec3f64fcSDavid Rientjes 		vms[area] = kzalloc(sizeof(struct vm_struct), GFP_KERNEL);
2412ca23e405STejun Heo 		if (!vas[area] || !vms[area])
2413ca23e405STejun Heo 			goto err_free;
2414ca23e405STejun Heo 	}
2415ca23e405STejun Heo retry:
2416ca23e405STejun Heo 	spin_lock(&vmap_area_lock);
2417ca23e405STejun Heo 
2418ca23e405STejun Heo 	/* start scanning - we scan from the top, begin with the last area */
2419ca23e405STejun Heo 	area = term_area = last_area;
2420ca23e405STejun Heo 	start = offsets[area];
2421ca23e405STejun Heo 	end = start + sizes[area];
2422ca23e405STejun Heo 
2423ca23e405STejun Heo 	if (!pvm_find_next_prev(vmap_area_pcpu_hole, &next, &prev)) {
2424ca23e405STejun Heo 		base = vmalloc_end - last_end;
2425ca23e405STejun Heo 		goto found;
2426ca23e405STejun Heo 	}
2427ca23e405STejun Heo 	base = pvm_determine_end(&next, &prev, align) - end;
2428ca23e405STejun Heo 
2429ca23e405STejun Heo 	while (true) {
2430ca23e405STejun Heo 		BUG_ON(next && next->va_end <= base + end);
2431ca23e405STejun Heo 		BUG_ON(prev && prev->va_end > base + end);
2432ca23e405STejun Heo 
2433ca23e405STejun Heo 		/*
2434ca23e405STejun Heo 		 * base might have underflowed, add last_end before
2435ca23e405STejun Heo 		 * comparing.
2436ca23e405STejun Heo 		 */
2437ca23e405STejun Heo 		if (base + last_end < vmalloc_start + last_end) {
2438ca23e405STejun Heo 			spin_unlock(&vmap_area_lock);
2439ca23e405STejun Heo 			if (!purged) {
2440ca23e405STejun Heo 				purge_vmap_area_lazy();
2441ca23e405STejun Heo 				purged = true;
2442ca23e405STejun Heo 				goto retry;
2443ca23e405STejun Heo 			}
2444ca23e405STejun Heo 			goto err_free;
2445ca23e405STejun Heo 		}
2446ca23e405STejun Heo 
2447ca23e405STejun Heo 		/*
2448ca23e405STejun Heo 		 * If next overlaps, move base downwards so that it's
2449ca23e405STejun Heo 		 * right below next and then recheck.
2450ca23e405STejun Heo 		 */
2451ca23e405STejun Heo 		if (next && next->va_start < base + end) {
2452ca23e405STejun Heo 			base = pvm_determine_end(&next, &prev, align) - end;
2453ca23e405STejun Heo 			term_area = area;
2454ca23e405STejun Heo 			continue;
2455ca23e405STejun Heo 		}
2456ca23e405STejun Heo 
2457ca23e405STejun Heo 		/*
2458ca23e405STejun Heo 		 * If prev overlaps, shift down next and prev and move
2459ca23e405STejun Heo 		 * base so that it's right below new next and then
2460ca23e405STejun Heo 		 * recheck.
2461ca23e405STejun Heo 		 */
2462ca23e405STejun Heo 		if (prev && prev->va_end > base + start)  {
2463ca23e405STejun Heo 			next = prev;
2464ca23e405STejun Heo 			prev = node_to_va(rb_prev(&next->rb_node));
2465ca23e405STejun Heo 			base = pvm_determine_end(&next, &prev, align) - end;
2466ca23e405STejun Heo 			term_area = area;
2467ca23e405STejun Heo 			continue;
2468ca23e405STejun Heo 		}
2469ca23e405STejun Heo 
2470ca23e405STejun Heo 		/*
2471ca23e405STejun Heo 		 * This area fits, move on to the previous one.  If
2472ca23e405STejun Heo 		 * the previous one is the terminal one, we're done.
2473ca23e405STejun Heo 		 */
2474ca23e405STejun Heo 		area = (area + nr_vms - 1) % nr_vms;
2475ca23e405STejun Heo 		if (area == term_area)
2476ca23e405STejun Heo 			break;
2477ca23e405STejun Heo 		start = offsets[area];
2478ca23e405STejun Heo 		end = start + sizes[area];
2479ca23e405STejun Heo 		pvm_find_next_prev(base + end, &next, &prev);
2480ca23e405STejun Heo 	}
2481ca23e405STejun Heo found:
2482ca23e405STejun Heo 	/* we've found a fitting base, insert all va's */
2483ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
2484ca23e405STejun Heo 		struct vmap_area *va = vas[area];
2485ca23e405STejun Heo 
2486ca23e405STejun Heo 		va->va_start = base + offsets[area];
2487ca23e405STejun Heo 		va->va_end = va->va_start + sizes[area];
2488ca23e405STejun Heo 		__insert_vmap_area(va);
2489ca23e405STejun Heo 	}
2490ca23e405STejun Heo 
2491ca23e405STejun Heo 	vmap_area_pcpu_hole = base + offsets[last_area];
2492ca23e405STejun Heo 
2493ca23e405STejun Heo 	spin_unlock(&vmap_area_lock);
2494ca23e405STejun Heo 
2495ca23e405STejun Heo 	/* insert all vm's */
2496ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++)
24973645cb4aSZhang Yanfei 		setup_vmalloc_vm(vms[area], vas[area], VM_ALLOC,
2498ca23e405STejun Heo 				 pcpu_get_vm_areas);
2499ca23e405STejun Heo 
2500ca23e405STejun Heo 	kfree(vas);
2501ca23e405STejun Heo 	return vms;
2502ca23e405STejun Heo 
2503ca23e405STejun Heo err_free:
2504ca23e405STejun Heo 	for (area = 0; area < nr_vms; area++) {
2505ca23e405STejun Heo 		kfree(vas[area]);
2506ca23e405STejun Heo 		kfree(vms[area]);
2507ca23e405STejun Heo 	}
2508f1db7afdSKautuk Consul err_free2:
2509ca23e405STejun Heo 	kfree(vas);
2510ca23e405STejun Heo 	kfree(vms);
2511ca23e405STejun Heo 	return NULL;
2512ca23e405STejun Heo }
2513ca23e405STejun Heo 
2514ca23e405STejun Heo /**
2515ca23e405STejun Heo  * pcpu_free_vm_areas - free vmalloc areas for percpu allocator
2516ca23e405STejun Heo  * @vms: vm_struct pointer array returned by pcpu_get_vm_areas()
2517ca23e405STejun Heo  * @nr_vms: the number of allocated areas
2518ca23e405STejun Heo  *
2519ca23e405STejun Heo  * Free vm_structs and the array allocated by pcpu_get_vm_areas().
2520ca23e405STejun Heo  */
2521ca23e405STejun Heo void pcpu_free_vm_areas(struct vm_struct **vms, int nr_vms)
2522ca23e405STejun Heo {
2523ca23e405STejun Heo 	int i;
2524ca23e405STejun Heo 
2525ca23e405STejun Heo 	for (i = 0; i < nr_vms; i++)
2526ca23e405STejun Heo 		free_vm_area(vms[i]);
2527ca23e405STejun Heo 	kfree(vms);
2528ca23e405STejun Heo }
25294f8b02b4STejun Heo #endif	/* CONFIG_SMP */
2530a10aa579SChristoph Lameter 
2531a10aa579SChristoph Lameter #ifdef CONFIG_PROC_FS
2532a10aa579SChristoph Lameter static void *s_start(struct seq_file *m, loff_t *pos)
2533d4033afdSJoonsoo Kim 	__acquires(&vmap_area_lock)
2534a10aa579SChristoph Lameter {
2535a10aa579SChristoph Lameter 	loff_t n = *pos;
2536d4033afdSJoonsoo Kim 	struct vmap_area *va;
2537a10aa579SChristoph Lameter 
2538d4033afdSJoonsoo Kim 	spin_lock(&vmap_area_lock);
2539d4033afdSJoonsoo Kim 	va = list_entry((&vmap_area_list)->next, typeof(*va), list);
2540d4033afdSJoonsoo Kim 	while (n > 0 && &va->list != &vmap_area_list) {
2541a10aa579SChristoph Lameter 		n--;
2542d4033afdSJoonsoo Kim 		va = list_entry(va->list.next, typeof(*va), list);
2543a10aa579SChristoph Lameter 	}
2544d4033afdSJoonsoo Kim 	if (!n && &va->list != &vmap_area_list)
2545d4033afdSJoonsoo Kim 		return va;
2546a10aa579SChristoph Lameter 
2547a10aa579SChristoph Lameter 	return NULL;
2548a10aa579SChristoph Lameter 
2549a10aa579SChristoph Lameter }
2550a10aa579SChristoph Lameter 
2551a10aa579SChristoph Lameter static void *s_next(struct seq_file *m, void *p, loff_t *pos)
2552a10aa579SChristoph Lameter {
2553d4033afdSJoonsoo Kim 	struct vmap_area *va = p, *next;
2554a10aa579SChristoph Lameter 
2555a10aa579SChristoph Lameter 	++*pos;
2556d4033afdSJoonsoo Kim 	next = list_entry(va->list.next, typeof(*va), list);
2557d4033afdSJoonsoo Kim 	if (&next->list != &vmap_area_list)
2558d4033afdSJoonsoo Kim 		return next;
2559d4033afdSJoonsoo Kim 
2560d4033afdSJoonsoo Kim 	return NULL;
2561a10aa579SChristoph Lameter }
2562a10aa579SChristoph Lameter 
2563a10aa579SChristoph Lameter static void s_stop(struct seq_file *m, void *p)
2564d4033afdSJoonsoo Kim 	__releases(&vmap_area_lock)
2565a10aa579SChristoph Lameter {
2566d4033afdSJoonsoo Kim 	spin_unlock(&vmap_area_lock);
2567a10aa579SChristoph Lameter }
2568a10aa579SChristoph Lameter 
2569a47a126aSEric Dumazet static void show_numa_info(struct seq_file *m, struct vm_struct *v)
2570a47a126aSEric Dumazet {
2571e5adfffcSKirill A. Shutemov 	if (IS_ENABLED(CONFIG_NUMA)) {
2572a47a126aSEric Dumazet 		unsigned int nr, *counters = m->private;
2573a47a126aSEric Dumazet 
2574a47a126aSEric Dumazet 		if (!counters)
2575a47a126aSEric Dumazet 			return;
2576a47a126aSEric Dumazet 
2577af12346cSWanpeng Li 		if (v->flags & VM_UNINITIALIZED)
2578af12346cSWanpeng Li 			return;
2579*7e5b528bSDmitry Vyukov 		/* Pair with smp_wmb() in clear_vm_uninitialized_flag() */
2580*7e5b528bSDmitry Vyukov 		smp_rmb();
2581af12346cSWanpeng Li 
2582a47a126aSEric Dumazet 		memset(counters, 0, nr_node_ids * sizeof(unsigned int));
2583a47a126aSEric Dumazet 
2584a47a126aSEric Dumazet 		for (nr = 0; nr < v->nr_pages; nr++)
2585a47a126aSEric Dumazet 			counters[page_to_nid(v->pages[nr])]++;
2586a47a126aSEric Dumazet 
2587a47a126aSEric Dumazet 		for_each_node_state(nr, N_HIGH_MEMORY)
2588a47a126aSEric Dumazet 			if (counters[nr])
2589a47a126aSEric Dumazet 				seq_printf(m, " N%u=%u", nr, counters[nr]);
2590a47a126aSEric Dumazet 	}
2591a47a126aSEric Dumazet }
2592a47a126aSEric Dumazet 
2593a10aa579SChristoph Lameter static int s_show(struct seq_file *m, void *p)
2594a10aa579SChristoph Lameter {
2595d4033afdSJoonsoo Kim 	struct vmap_area *va = p;
2596d4033afdSJoonsoo Kim 	struct vm_struct *v;
2597d4033afdSJoonsoo Kim 
2598c2ce8c14SWanpeng Li 	/*
2599c2ce8c14SWanpeng Li 	 * s_show can encounter race with remove_vm_area, !VM_VM_AREA on
2600c2ce8c14SWanpeng Li 	 * behalf of vmap area is being tear down or vm_map_ram allocation.
2601c2ce8c14SWanpeng Li 	 */
2602c2ce8c14SWanpeng Li 	if (!(va->flags & VM_VM_AREA))
2603d4033afdSJoonsoo Kim 		return 0;
2604d4033afdSJoonsoo Kim 
2605d4033afdSJoonsoo Kim 	v = va->vm;
2606a10aa579SChristoph Lameter 
260745ec1690SKees Cook 	seq_printf(m, "0x%pK-0x%pK %7ld",
2608a10aa579SChristoph Lameter 		v->addr, v->addr + v->size, v->size);
2609a10aa579SChristoph Lameter 
261062c70bceSJoe Perches 	if (v->caller)
261162c70bceSJoe Perches 		seq_printf(m, " %pS", v->caller);
261223016969SChristoph Lameter 
2613a10aa579SChristoph Lameter 	if (v->nr_pages)
2614a10aa579SChristoph Lameter 		seq_printf(m, " pages=%d", v->nr_pages);
2615a10aa579SChristoph Lameter 
2616a10aa579SChristoph Lameter 	if (v->phys_addr)
2617ffa71f33SKenji Kaneshige 		seq_printf(m, " phys=%llx", (unsigned long long)v->phys_addr);
2618a10aa579SChristoph Lameter 
2619a10aa579SChristoph Lameter 	if (v->flags & VM_IOREMAP)
2620f4527c90SFabian Frederick 		seq_puts(m, " ioremap");
2621a10aa579SChristoph Lameter 
2622a10aa579SChristoph Lameter 	if (v->flags & VM_ALLOC)
2623f4527c90SFabian Frederick 		seq_puts(m, " vmalloc");
2624a10aa579SChristoph Lameter 
2625a10aa579SChristoph Lameter 	if (v->flags & VM_MAP)
2626f4527c90SFabian Frederick 		seq_puts(m, " vmap");
2627a10aa579SChristoph Lameter 
2628a10aa579SChristoph Lameter 	if (v->flags & VM_USERMAP)
2629f4527c90SFabian Frederick 		seq_puts(m, " user");
2630a10aa579SChristoph Lameter 
2631a10aa579SChristoph Lameter 	if (v->flags & VM_VPAGES)
2632f4527c90SFabian Frederick 		seq_puts(m, " vpages");
2633a10aa579SChristoph Lameter 
2634a47a126aSEric Dumazet 	show_numa_info(m, v);
2635a10aa579SChristoph Lameter 	seq_putc(m, '\n');
2636a10aa579SChristoph Lameter 	return 0;
2637a10aa579SChristoph Lameter }
2638a10aa579SChristoph Lameter 
26395f6a6a9cSAlexey Dobriyan static const struct seq_operations vmalloc_op = {
2640a10aa579SChristoph Lameter 	.start = s_start,
2641a10aa579SChristoph Lameter 	.next = s_next,
2642a10aa579SChristoph Lameter 	.stop = s_stop,
2643a10aa579SChristoph Lameter 	.show = s_show,
2644a10aa579SChristoph Lameter };
26455f6a6a9cSAlexey Dobriyan 
26465f6a6a9cSAlexey Dobriyan static int vmalloc_open(struct inode *inode, struct file *file)
26475f6a6a9cSAlexey Dobriyan {
2648703394c1SRob Jones 	if (IS_ENABLED(CONFIG_NUMA))
2649703394c1SRob Jones 		return seq_open_private(file, &vmalloc_op,
2650703394c1SRob Jones 					nr_node_ids * sizeof(unsigned int));
2651703394c1SRob Jones 	else
2652703394c1SRob Jones 		return seq_open(file, &vmalloc_op);
26535f6a6a9cSAlexey Dobriyan }
26545f6a6a9cSAlexey Dobriyan 
26555f6a6a9cSAlexey Dobriyan static const struct file_operations proc_vmalloc_operations = {
26565f6a6a9cSAlexey Dobriyan 	.open		= vmalloc_open,
26575f6a6a9cSAlexey Dobriyan 	.read		= seq_read,
26585f6a6a9cSAlexey Dobriyan 	.llseek		= seq_lseek,
26595f6a6a9cSAlexey Dobriyan 	.release	= seq_release_private,
26605f6a6a9cSAlexey Dobriyan };
26615f6a6a9cSAlexey Dobriyan 
26625f6a6a9cSAlexey Dobriyan static int __init proc_vmalloc_init(void)
26635f6a6a9cSAlexey Dobriyan {
26645f6a6a9cSAlexey Dobriyan 	proc_create("vmallocinfo", S_IRUSR, NULL, &proc_vmalloc_operations);
26655f6a6a9cSAlexey Dobriyan 	return 0;
26665f6a6a9cSAlexey Dobriyan }
26675f6a6a9cSAlexey Dobriyan module_init(proc_vmalloc_init);
2668db3808c1SJoonsoo Kim 
2669db3808c1SJoonsoo Kim void get_vmalloc_info(struct vmalloc_info *vmi)
2670db3808c1SJoonsoo Kim {
2671f98782ddSJoonsoo Kim 	struct vmap_area *va;
2672db3808c1SJoonsoo Kim 	unsigned long free_area_size;
2673db3808c1SJoonsoo Kim 	unsigned long prev_end;
2674db3808c1SJoonsoo Kim 
2675db3808c1SJoonsoo Kim 	vmi->used = 0;
2676db3808c1SJoonsoo Kim 	vmi->largest_chunk = 0;
2677db3808c1SJoonsoo Kim 
2678db3808c1SJoonsoo Kim 	prev_end = VMALLOC_START;
2679db3808c1SJoonsoo Kim 
2680474750abSJoonsoo Kim 	rcu_read_lock();
2681db3808c1SJoonsoo Kim 
2682f98782ddSJoonsoo Kim 	if (list_empty(&vmap_area_list)) {
2683f98782ddSJoonsoo Kim 		vmi->largest_chunk = VMALLOC_TOTAL;
2684f98782ddSJoonsoo Kim 		goto out;
2685f98782ddSJoonsoo Kim 	}
2686f98782ddSJoonsoo Kim 
2687474750abSJoonsoo Kim 	list_for_each_entry_rcu(va, &vmap_area_list, list) {
2688f98782ddSJoonsoo Kim 		unsigned long addr = va->va_start;
2689db3808c1SJoonsoo Kim 
2690db3808c1SJoonsoo Kim 		/*
2691f98782ddSJoonsoo Kim 		 * Some archs keep another range for modules in vmalloc space
2692db3808c1SJoonsoo Kim 		 */
2693db3808c1SJoonsoo Kim 		if (addr < VMALLOC_START)
2694db3808c1SJoonsoo Kim 			continue;
2695db3808c1SJoonsoo Kim 		if (addr >= VMALLOC_END)
2696db3808c1SJoonsoo Kim 			break;
2697db3808c1SJoonsoo Kim 
2698f98782ddSJoonsoo Kim 		if (va->flags & (VM_LAZY_FREE | VM_LAZY_FREEING))
2699f98782ddSJoonsoo Kim 			continue;
2700f98782ddSJoonsoo Kim 
2701f98782ddSJoonsoo Kim 		vmi->used += (va->va_end - va->va_start);
2702db3808c1SJoonsoo Kim 
2703db3808c1SJoonsoo Kim 		free_area_size = addr - prev_end;
2704db3808c1SJoonsoo Kim 		if (vmi->largest_chunk < free_area_size)
2705db3808c1SJoonsoo Kim 			vmi->largest_chunk = free_area_size;
2706db3808c1SJoonsoo Kim 
2707f98782ddSJoonsoo Kim 		prev_end = va->va_end;
2708db3808c1SJoonsoo Kim 	}
2709db3808c1SJoonsoo Kim 
2710db3808c1SJoonsoo Kim 	if (VMALLOC_END - prev_end > vmi->largest_chunk)
2711db3808c1SJoonsoo Kim 		vmi->largest_chunk = VMALLOC_END - prev_end;
2712db3808c1SJoonsoo Kim 
2713f98782ddSJoonsoo Kim out:
2714474750abSJoonsoo Kim 	rcu_read_unlock();
2715db3808c1SJoonsoo Kim }
2716a10aa579SChristoph Lameter #endif
2717a10aa579SChristoph Lameter 
2718