blob: 33e245ebe70c255668c6cae92e196382dfa2119a [file] [log] [blame]
Thomas Gleixner457c8992019-05-19 13:08:55 +01001// SPDX-License-Identifier: GPL-2.0-only
Linus Torvalds1da177e2005-04-16 15:20:36 -07002/*
3 * linux/mm/vmalloc.c
4 *
5 * Copyright (C) 1993 Linus Torvalds
6 * Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999
7 * SMP-safe vmalloc/vfree/ioremap, Tigran Aivazian <tigran@veritas.com>, May 2000
8 * Major rework to support vmap/vunmap, Christoph Hellwig, SGI, August 2002
Christoph Lameter930fc452005-10-29 18:15:41 -07009 * Numa awareness, Christoph Lameter, SGI, June 2005
Linus Torvalds1da177e2005-04-16 15:20:36 -070010 */
11
Nick Piggindb64fe02008-10-18 20:27:03 -070012#include <linux/vmalloc.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070013#include <linux/mm.h>
14#include <linux/module.h>
15#include <linux/highmem.h>
Ingo Molnarc3edc402017-02-02 08:35:14 +010016#include <linux/sched/signal.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070017#include <linux/slab.h>
18#include <linux/spinlock.h>
19#include <linux/interrupt.h>
Alexey Dobriyan5f6a6a92008-10-06 03:50:47 +040020#include <linux/proc_fs.h>
Christoph Lametera10aa572008-04-28 02:12:40 -070021#include <linux/seq_file.h>
Rick Edgecombe868b1042019-04-25 17:11:36 -070022#include <linux/set_memory.h>
Thomas Gleixner3ac7fe52008-04-30 00:55:01 -070023#include <linux/debugobjects.h>
Christoph Lameter23016962008-04-28 02:12:42 -070024#include <linux/kallsyms.h>
Nick Piggindb64fe02008-10-18 20:27:03 -070025#include <linux/list.h>
Chris Wilson4da56b92016-04-04 14:46:42 +010026#include <linux/notifier.h>
Nick Piggindb64fe02008-10-18 20:27:03 -070027#include <linux/rbtree.h>
28#include <linux/radix-tree.h>
29#include <linux/rcupdate.h>
Tejun Heof0aa6612009-02-20 16:29:08 +090030#include <linux/pfn.h>
Catalin Marinas89219d32009-06-11 13:23:19 +010031#include <linux/kmemleak.h>
Arun Sharma600634972011-07-26 16:09:06 -070032#include <linux/atomic.h>
Gideon Israel Dsouza3b321232014-04-07 15:37:26 -070033#include <linux/compiler.h>
Al Viro32fcfd42013-03-10 20:14:08 -040034#include <linux/llist.h>
Toshi Kani0f616be2015-04-14 15:47:17 -070035#include <linux/bitops.h>
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -070036#include <linux/rbtree_augmented.h>
Gideon Israel Dsouza3b321232014-04-07 15:37:26 -070037
Linus Torvalds7c0f6ba2016-12-24 11:46:01 -080038#include <linux/uaccess.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070039#include <asm/tlbflush.h>
David Miller2dca6992009-09-21 12:22:34 -070040#include <asm/shmparam.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070041
Mel Gormandd56b042015-11-06 16:28:43 -080042#include "internal.h"
43
Al Viro32fcfd42013-03-10 20:14:08 -040044struct vfree_deferred {
45 struct llist_head list;
46 struct work_struct wq;
47};
48static DEFINE_PER_CPU(struct vfree_deferred, vfree_deferred);
49
50static void __vunmap(const void *, int);
51
52static void free_work(struct work_struct *w)
53{
54 struct vfree_deferred *p = container_of(w, struct vfree_deferred, wq);
Byungchul Park894e58c2017-09-06 16:24:26 -070055 struct llist_node *t, *llnode;
56
57 llist_for_each_safe(llnode, t, llist_del_all(&p->list))
58 __vunmap((void *)llnode, 1);
Al Viro32fcfd42013-03-10 20:14:08 -040059}
60
Nick Piggindb64fe02008-10-18 20:27:03 -070061/*** Page table manipulation functions ***/
Adrian Bunkb2213852006-09-25 23:31:02 -070062
Linus Torvalds1da177e2005-04-16 15:20:36 -070063static void vunmap_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end)
64{
65 pte_t *pte;
66
67 pte = pte_offset_kernel(pmd, addr);
68 do {
69 pte_t ptent = ptep_get_and_clear(&init_mm, addr, pte);
70 WARN_ON(!pte_none(ptent) && !pte_present(ptent));
71 } while (pte++, addr += PAGE_SIZE, addr != end);
72}
73
Nick Piggindb64fe02008-10-18 20:27:03 -070074static void vunmap_pmd_range(pud_t *pud, unsigned long addr, unsigned long end)
Linus Torvalds1da177e2005-04-16 15:20:36 -070075{
76 pmd_t *pmd;
77 unsigned long next;
78
79 pmd = pmd_offset(pud, addr);
80 do {
81 next = pmd_addr_end(addr, end);
Toshi Kanib9820d82015-04-14 15:47:26 -070082 if (pmd_clear_huge(pmd))
83 continue;
Linus Torvalds1da177e2005-04-16 15:20:36 -070084 if (pmd_none_or_clear_bad(pmd))
85 continue;
86 vunmap_pte_range(pmd, addr, next);
87 } while (pmd++, addr = next, addr != end);
88}
89
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +030090static void vunmap_pud_range(p4d_t *p4d, unsigned long addr, unsigned long end)
Linus Torvalds1da177e2005-04-16 15:20:36 -070091{
92 pud_t *pud;
93 unsigned long next;
94
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +030095 pud = pud_offset(p4d, addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -070096 do {
97 next = pud_addr_end(addr, end);
Toshi Kanib9820d82015-04-14 15:47:26 -070098 if (pud_clear_huge(pud))
99 continue;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700100 if (pud_none_or_clear_bad(pud))
101 continue;
102 vunmap_pmd_range(pud, addr, next);
103 } while (pud++, addr = next, addr != end);
104}
105
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300106static void vunmap_p4d_range(pgd_t *pgd, unsigned long addr, unsigned long end)
107{
108 p4d_t *p4d;
109 unsigned long next;
110
111 p4d = p4d_offset(pgd, addr);
112 do {
113 next = p4d_addr_end(addr, end);
114 if (p4d_clear_huge(p4d))
115 continue;
116 if (p4d_none_or_clear_bad(p4d))
117 continue;
118 vunmap_pud_range(p4d, addr, next);
119 } while (p4d++, addr = next, addr != end);
120}
121
Nick Piggindb64fe02008-10-18 20:27:03 -0700122static void vunmap_page_range(unsigned long addr, unsigned long end)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700123{
124 pgd_t *pgd;
125 unsigned long next;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700126
127 BUG_ON(addr >= end);
128 pgd = pgd_offset_k(addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700129 do {
130 next = pgd_addr_end(addr, end);
131 if (pgd_none_or_clear_bad(pgd))
132 continue;
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300133 vunmap_p4d_range(pgd, addr, next);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700134 } while (pgd++, addr = next, addr != end);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700135}
136
137static int vmap_pte_range(pmd_t *pmd, unsigned long addr,
Nick Piggindb64fe02008-10-18 20:27:03 -0700138 unsigned long end, pgprot_t prot, struct page **pages, int *nr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700139{
140 pte_t *pte;
141
Nick Piggindb64fe02008-10-18 20:27:03 -0700142 /*
143 * nr is a running index into the array which helps higher level
144 * callers keep track of where we're up to.
145 */
146
Hugh Dickins872fec12005-10-29 18:16:21 -0700147 pte = pte_alloc_kernel(pmd, addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700148 if (!pte)
149 return -ENOMEM;
150 do {
Nick Piggindb64fe02008-10-18 20:27:03 -0700151 struct page *page = pages[*nr];
152
153 if (WARN_ON(!pte_none(*pte)))
154 return -EBUSY;
155 if (WARN_ON(!page))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700156 return -ENOMEM;
157 set_pte_at(&init_mm, addr, pte, mk_pte(page, prot));
Nick Piggindb64fe02008-10-18 20:27:03 -0700158 (*nr)++;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700159 } while (pte++, addr += PAGE_SIZE, addr != end);
160 return 0;
161}
162
Nick Piggindb64fe02008-10-18 20:27:03 -0700163static int vmap_pmd_range(pud_t *pud, unsigned long addr,
164 unsigned long end, pgprot_t prot, struct page **pages, int *nr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700165{
166 pmd_t *pmd;
167 unsigned long next;
168
169 pmd = pmd_alloc(&init_mm, pud, addr);
170 if (!pmd)
171 return -ENOMEM;
172 do {
173 next = pmd_addr_end(addr, end);
Nick Piggindb64fe02008-10-18 20:27:03 -0700174 if (vmap_pte_range(pmd, addr, next, prot, pages, nr))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700175 return -ENOMEM;
176 } while (pmd++, addr = next, addr != end);
177 return 0;
178}
179
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300180static int vmap_pud_range(p4d_t *p4d, unsigned long addr,
Nick Piggindb64fe02008-10-18 20:27:03 -0700181 unsigned long end, pgprot_t prot, struct page **pages, int *nr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700182{
183 pud_t *pud;
184 unsigned long next;
185
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300186 pud = pud_alloc(&init_mm, p4d, addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700187 if (!pud)
188 return -ENOMEM;
189 do {
190 next = pud_addr_end(addr, end);
Nick Piggindb64fe02008-10-18 20:27:03 -0700191 if (vmap_pmd_range(pud, addr, next, prot, pages, nr))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700192 return -ENOMEM;
193 } while (pud++, addr = next, addr != end);
194 return 0;
195}
196
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300197static int vmap_p4d_range(pgd_t *pgd, unsigned long addr,
198 unsigned long end, pgprot_t prot, struct page **pages, int *nr)
199{
200 p4d_t *p4d;
201 unsigned long next;
202
203 p4d = p4d_alloc(&init_mm, pgd, addr);
204 if (!p4d)
205 return -ENOMEM;
206 do {
207 next = p4d_addr_end(addr, end);
208 if (vmap_pud_range(p4d, addr, next, prot, pages, nr))
209 return -ENOMEM;
210 } while (p4d++, addr = next, addr != end);
211 return 0;
212}
213
Nick Piggindb64fe02008-10-18 20:27:03 -0700214/*
215 * Set up page tables in kva (addr, end). The ptes shall have prot "prot", and
216 * will have pfns corresponding to the "pages" array.
217 *
218 * Ie. pte at addr+N*PAGE_SIZE shall point to pfn corresponding to pages[N]
219 */
Tejun Heo8fc48982009-02-20 16:29:08 +0900220static int vmap_page_range_noflush(unsigned long start, unsigned long end,
221 pgprot_t prot, struct page **pages)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700222{
223 pgd_t *pgd;
224 unsigned long next;
Adam Lackorzynski2e4e27c2009-01-04 12:00:46 -0800225 unsigned long addr = start;
Nick Piggindb64fe02008-10-18 20:27:03 -0700226 int err = 0;
227 int nr = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700228
229 BUG_ON(addr >= end);
230 pgd = pgd_offset_k(addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700231 do {
232 next = pgd_addr_end(addr, end);
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300233 err = vmap_p4d_range(pgd, addr, next, prot, pages, &nr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700234 if (err)
Figo.zhangbf88c8c2009-09-21 17:01:47 -0700235 return err;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700236 } while (pgd++, addr = next, addr != end);
Nick Piggindb64fe02008-10-18 20:27:03 -0700237
Nick Piggindb64fe02008-10-18 20:27:03 -0700238 return nr;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700239}
240
Tejun Heo8fc48982009-02-20 16:29:08 +0900241static int vmap_page_range(unsigned long start, unsigned long end,
242 pgprot_t prot, struct page **pages)
243{
244 int ret;
245
246 ret = vmap_page_range_noflush(start, end, prot, pages);
247 flush_cache_vmap(start, end);
248 return ret;
249}
250
KAMEZAWA Hiroyuki81ac3ad2009-09-22 16:45:49 -0700251int is_vmalloc_or_module_addr(const void *x)
Linus Torvalds73bdf0a2008-10-15 08:35:12 -0700252{
253 /*
Russell Kingab4f2ee2008-11-06 17:11:07 +0000254 * ARM, x86-64 and sparc64 put modules in a special place,
Linus Torvalds73bdf0a2008-10-15 08:35:12 -0700255 * and fall back on vmalloc() if that fails. Others
256 * just put it in the vmalloc space.
257 */
258#if defined(CONFIG_MODULES) && defined(MODULES_VADDR)
259 unsigned long addr = (unsigned long)x;
260 if (addr >= MODULES_VADDR && addr < MODULES_END)
261 return 1;
262#endif
263 return is_vmalloc_addr(x);
264}
265
Christoph Lameter48667e72008-02-04 22:28:31 -0800266/*
malcadd688f2014-01-27 17:06:53 -0800267 * Walk a vmap address to the struct page it maps.
Christoph Lameter48667e72008-02-04 22:28:31 -0800268 */
malcadd688f2014-01-27 17:06:53 -0800269struct page *vmalloc_to_page(const void *vmalloc_addr)
Christoph Lameter48667e72008-02-04 22:28:31 -0800270{
271 unsigned long addr = (unsigned long) vmalloc_addr;
malcadd688f2014-01-27 17:06:53 -0800272 struct page *page = NULL;
Christoph Lameter48667e72008-02-04 22:28:31 -0800273 pgd_t *pgd = pgd_offset_k(addr);
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300274 p4d_t *p4d;
275 pud_t *pud;
276 pmd_t *pmd;
277 pte_t *ptep, pte;
Christoph Lameter48667e72008-02-04 22:28:31 -0800278
Ingo Molnar7aa413d2008-06-19 13:28:11 +0200279 /*
280 * XXX we might need to change this if we add VIRTUAL_BUG_ON for
281 * architectures that do not vmalloc module space
282 */
Linus Torvalds73bdf0a2008-10-15 08:35:12 -0700283 VIRTUAL_BUG_ON(!is_vmalloc_or_module_addr(vmalloc_addr));
Jiri Slaby59ea7462008-06-12 13:56:40 +0200284
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300285 if (pgd_none(*pgd))
286 return NULL;
287 p4d = p4d_offset(pgd, addr);
288 if (p4d_none(*p4d))
289 return NULL;
290 pud = pud_offset(p4d, addr);
Ard Biesheuvel029c54b2017-06-23 15:08:41 -0700291
292 /*
293 * Don't dereference bad PUD or PMD (below) entries. This will also
294 * identify huge mappings, which we may encounter on architectures
295 * that define CONFIG_HAVE_ARCH_HUGE_VMAP=y. Such regions will be
296 * identified as vmalloc addresses by is_vmalloc_addr(), but are
297 * not [unambiguously] associated with a struct page, so there is
298 * no correct value to return for them.
299 */
300 WARN_ON_ONCE(pud_bad(*pud));
301 if (pud_none(*pud) || pud_bad(*pud))
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300302 return NULL;
303 pmd = pmd_offset(pud, addr);
Ard Biesheuvel029c54b2017-06-23 15:08:41 -0700304 WARN_ON_ONCE(pmd_bad(*pmd));
305 if (pmd_none(*pmd) || pmd_bad(*pmd))
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300306 return NULL;
Nick Piggindb64fe02008-10-18 20:27:03 -0700307
Kirill A. Shutemovc2febaf2017-03-09 17:24:07 +0300308 ptep = pte_offset_map(pmd, addr);
309 pte = *ptep;
310 if (pte_present(pte))
311 page = pte_page(pte);
312 pte_unmap(ptep);
malcadd688f2014-01-27 17:06:53 -0800313 return page;
Jianyu Zhanece86e222014-01-21 15:49:12 -0800314}
315EXPORT_SYMBOL(vmalloc_to_page);
316
malcadd688f2014-01-27 17:06:53 -0800317/*
318 * Map a vmalloc()-space virtual address to the physical page frame number.
319 */
320unsigned long vmalloc_to_pfn(const void *vmalloc_addr)
321{
322 return page_to_pfn(vmalloc_to_page(vmalloc_addr));
323}
324EXPORT_SYMBOL(vmalloc_to_pfn);
325
Nick Piggindb64fe02008-10-18 20:27:03 -0700326
327/*** Global kva allocator ***/
328
Uladzislau Rezki (Sony)bb850f42019-05-17 14:31:34 -0700329#define DEBUG_AUGMENT_PROPAGATE_CHECK 0
Uladzislau Rezki (Sony)a6cf4e02019-05-17 14:31:37 -0700330#define DEBUG_AUGMENT_LOWEST_MATCH_CHECK 0
Uladzislau Rezki (Sony)bb850f42019-05-17 14:31:34 -0700331
Nick Piggindb64fe02008-10-18 20:27:03 -0700332
Nick Piggindb64fe02008-10-18 20:27:03 -0700333static DEFINE_SPINLOCK(vmap_area_lock);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -0800334static DEFINE_SPINLOCK(free_vmap_area_lock);
Joonsoo Kimf1c40692013-04-29 15:07:37 -0700335/* Export for kexec only */
336LIST_HEAD(vmap_area_list);
Chris Wilson80c4bd72016-05-20 16:57:38 -0700337static LLIST_HEAD(vmap_purge_list);
Nick Piggin89699602011-03-22 16:30:36 -0700338static struct rb_root vmap_area_root = RB_ROOT;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700339static bool vmap_initialized __read_mostly;
Nick Piggin89699602011-03-22 16:30:36 -0700340
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700341/*
342 * This kmem_cache is used for vmap_area objects. Instead of
343 * allocating from slab we reuse an object from this cache to
344 * make things faster. Especially in "no edge" splitting of
345 * free block.
346 */
347static struct kmem_cache *vmap_area_cachep;
Nick Piggin89699602011-03-22 16:30:36 -0700348
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700349/*
350 * This linked list is used in pair with free_vmap_area_root.
351 * It gives O(1) access to prev/next to perform fast coalescing.
352 */
353static LIST_HEAD(free_vmap_area_list);
354
355/*
356 * This augment red-black tree represents the free vmap space.
357 * All vmap_area objects in this tree are sorted by va->va_start
358 * address. It is used for allocation and merging when a vmap
359 * object is released.
360 *
361 * Each vmap_area node contains a maximum available free block
362 * of its sub-tree, right or left. Therefore it is possible to
363 * find a lowest match of free area.
364 */
365static struct rb_root free_vmap_area_root = RB_ROOT;
366
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -0700367/*
368 * Preload a CPU with one object for "no edge" split case. The
369 * aim is to get rid of allocations from the atomic context, thus
370 * to use more permissive allocation masks.
371 */
372static DEFINE_PER_CPU(struct vmap_area *, ne_fit_preload_node);
373
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700374static __always_inline unsigned long
375va_size(struct vmap_area *va)
376{
377 return (va->va_end - va->va_start);
378}
379
380static __always_inline unsigned long
381get_subtree_max_size(struct rb_node *node)
382{
383 struct vmap_area *va;
384
385 va = rb_entry_safe(node, struct vmap_area, rb_node);
386 return va ? va->subtree_max_size : 0;
387}
388
389/*
390 * Gets called when remove the node and rotate.
391 */
392static __always_inline unsigned long
393compute_subtree_max_size(struct vmap_area *va)
394{
395 return max3(va_size(va),
396 get_subtree_max_size(va->rb_node.rb_left),
397 get_subtree_max_size(va->rb_node.rb_right));
398}
399
Michel Lespinasse315cc062019-09-25 16:46:07 -0700400RB_DECLARE_CALLBACKS_MAX(static, free_vmap_area_rb_augment_cb,
401 struct vmap_area, rb_node, unsigned long, subtree_max_size, va_size)
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700402
403static void purge_vmap_area_lazy(void);
404static BLOCKING_NOTIFIER_HEAD(vmap_notify_list);
405static unsigned long lazy_max_pages(void);
Nick Piggindb64fe02008-10-18 20:27:03 -0700406
Roman Gushchin97105f02019-07-11 21:00:13 -0700407static atomic_long_t nr_vmalloc_pages;
408
409unsigned long vmalloc_nr_pages(void)
410{
411 return atomic_long_read(&nr_vmalloc_pages);
412}
413
Nick Piggindb64fe02008-10-18 20:27:03 -0700414static struct vmap_area *__find_vmap_area(unsigned long addr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700415{
Nick Piggindb64fe02008-10-18 20:27:03 -0700416 struct rb_node *n = vmap_area_root.rb_node;
417
418 while (n) {
419 struct vmap_area *va;
420
421 va = rb_entry(n, struct vmap_area, rb_node);
422 if (addr < va->va_start)
423 n = n->rb_left;
HATAYAMA Daisukecef2ac32013-07-03 15:02:17 -0700424 else if (addr >= va->va_end)
Nick Piggindb64fe02008-10-18 20:27:03 -0700425 n = n->rb_right;
426 else
427 return va;
428 }
429
430 return NULL;
431}
432
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700433/*
434 * This function returns back addresses of parent node
435 * and its left or right link for further processing.
436 */
437static __always_inline struct rb_node **
438find_va_links(struct vmap_area *va,
439 struct rb_root *root, struct rb_node *from,
440 struct rb_node **parent)
Nick Piggindb64fe02008-10-18 20:27:03 -0700441{
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700442 struct vmap_area *tmp_va;
443 struct rb_node **link;
Nick Piggindb64fe02008-10-18 20:27:03 -0700444
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700445 if (root) {
446 link = &root->rb_node;
447 if (unlikely(!*link)) {
448 *parent = NULL;
449 return link;
450 }
451 } else {
452 link = &from;
Nick Piggindb64fe02008-10-18 20:27:03 -0700453 }
454
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700455 /*
456 * Go to the bottom of the tree. When we hit the last point
457 * we end up with parent rb_node and correct direction, i name
458 * it link, where the new va->rb_node will be attached to.
459 */
460 do {
461 tmp_va = rb_entry(*link, struct vmap_area, rb_node);
Nick Piggindb64fe02008-10-18 20:27:03 -0700462
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700463 /*
464 * During the traversal we also do some sanity check.
465 * Trigger the BUG() if there are sides(left/right)
466 * or full overlaps.
467 */
468 if (va->va_start < tmp_va->va_end &&
469 va->va_end <= tmp_va->va_start)
470 link = &(*link)->rb_left;
471 else if (va->va_end > tmp_va->va_start &&
472 va->va_start >= tmp_va->va_end)
473 link = &(*link)->rb_right;
474 else
475 BUG();
476 } while (*link);
477
478 *parent = &tmp_va->rb_node;
479 return link;
Nick Piggindb64fe02008-10-18 20:27:03 -0700480}
481
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700482static __always_inline struct list_head *
483get_va_next_sibling(struct rb_node *parent, struct rb_node **link)
484{
485 struct list_head *list;
Nick Piggindb64fe02008-10-18 20:27:03 -0700486
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700487 if (unlikely(!parent))
488 /*
489 * The red-black tree where we try to find VA neighbors
490 * before merging or inserting is empty, i.e. it means
491 * there is no free vmap space. Normally it does not
492 * happen but we handle this case anyway.
493 */
494 return NULL;
495
496 list = &rb_entry(parent, struct vmap_area, rb_node)->list;
497 return (&parent->rb_right == link ? list->next : list);
498}
499
500static __always_inline void
501link_va(struct vmap_area *va, struct rb_root *root,
502 struct rb_node *parent, struct rb_node **link, struct list_head *head)
503{
504 /*
505 * VA is still not in the list, but we can
506 * identify its future previous list_head node.
507 */
508 if (likely(parent)) {
509 head = &rb_entry(parent, struct vmap_area, rb_node)->list;
510 if (&parent->rb_right != link)
511 head = head->prev;
512 }
513
514 /* Insert to the rb-tree */
515 rb_link_node(&va->rb_node, parent, link);
516 if (root == &free_vmap_area_root) {
517 /*
518 * Some explanation here. Just perform simple insertion
519 * to the tree. We do not set va->subtree_max_size to
520 * its current size before calling rb_insert_augmented().
521 * It is because of we populate the tree from the bottom
522 * to parent levels when the node _is_ in the tree.
523 *
524 * Therefore we set subtree_max_size to zero after insertion,
525 * to let __augment_tree_propagate_from() puts everything to
526 * the correct order later on.
527 */
528 rb_insert_augmented(&va->rb_node,
529 root, &free_vmap_area_rb_augment_cb);
530 va->subtree_max_size = 0;
531 } else {
532 rb_insert_color(&va->rb_node, root);
533 }
534
535 /* Address-sort this list */
536 list_add(&va->list, head);
537}
538
539static __always_inline void
540unlink_va(struct vmap_area *va, struct rb_root *root)
541{
Uladzislau Rezki (Sony)460e42d2019-07-11 20:59:03 -0700542 if (WARN_ON(RB_EMPTY_NODE(&va->rb_node)))
543 return;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700544
Uladzislau Rezki (Sony)460e42d2019-07-11 20:59:03 -0700545 if (root == &free_vmap_area_root)
546 rb_erase_augmented(&va->rb_node,
547 root, &free_vmap_area_rb_augment_cb);
548 else
549 rb_erase(&va->rb_node, root);
550
551 list_del(&va->list);
552 RB_CLEAR_NODE(&va->rb_node);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700553}
554
Uladzislau Rezki (Sony)bb850f42019-05-17 14:31:34 -0700555#if DEBUG_AUGMENT_PROPAGATE_CHECK
556static void
557augment_tree_propagate_check(struct rb_node *n)
558{
559 struct vmap_area *va;
560 struct rb_node *node;
561 unsigned long size;
562 bool found = false;
563
564 if (n == NULL)
565 return;
566
567 va = rb_entry(n, struct vmap_area, rb_node);
568 size = va->subtree_max_size;
569 node = n;
570
571 while (node) {
572 va = rb_entry(node, struct vmap_area, rb_node);
573
574 if (get_subtree_max_size(node->rb_left) == size) {
575 node = node->rb_left;
576 } else {
577 if (va_size(va) == size) {
578 found = true;
579 break;
580 }
581
582 node = node->rb_right;
583 }
584 }
585
586 if (!found) {
587 va = rb_entry(n, struct vmap_area, rb_node);
588 pr_emerg("tree is corrupted: %lu, %lu\n",
589 va_size(va), va->subtree_max_size);
590 }
591
592 augment_tree_propagate_check(n->rb_left);
593 augment_tree_propagate_check(n->rb_right);
594}
595#endif
596
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700597/*
598 * This function populates subtree_max_size from bottom to upper
599 * levels starting from VA point. The propagation must be done
600 * when VA size is modified by changing its va_start/va_end. Or
601 * in case of newly inserting of VA to the tree.
602 *
603 * It means that __augment_tree_propagate_from() must be called:
604 * - After VA has been inserted to the tree(free path);
605 * - After VA has been shrunk(allocation path);
606 * - After VA has been increased(merging path).
607 *
608 * Please note that, it does not mean that upper parent nodes
609 * and their subtree_max_size are recalculated all the time up
610 * to the root node.
611 *
612 * 4--8
613 * /\
614 * / \
615 * / \
616 * 2--2 8--8
617 *
618 * For example if we modify the node 4, shrinking it to 2, then
619 * no any modification is required. If we shrink the node 2 to 1
620 * its subtree_max_size is updated only, and set to 1. If we shrink
621 * the node 8 to 6, then its subtree_max_size is set to 6 and parent
622 * node becomes 4--6.
623 */
624static __always_inline void
625augment_tree_propagate_from(struct vmap_area *va)
626{
627 struct rb_node *node = &va->rb_node;
628 unsigned long new_va_sub_max_size;
629
630 while (node) {
631 va = rb_entry(node, struct vmap_area, rb_node);
632 new_va_sub_max_size = compute_subtree_max_size(va);
633
634 /*
635 * If the newly calculated maximum available size of the
636 * subtree is equal to the current one, then it means that
637 * the tree is propagated correctly. So we have to stop at
638 * this point to save cycles.
639 */
640 if (va->subtree_max_size == new_va_sub_max_size)
641 break;
642
643 va->subtree_max_size = new_va_sub_max_size;
644 node = rb_parent(&va->rb_node);
645 }
Uladzislau Rezki (Sony)bb850f42019-05-17 14:31:34 -0700646
647#if DEBUG_AUGMENT_PROPAGATE_CHECK
648 augment_tree_propagate_check(free_vmap_area_root.rb_node);
649#endif
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700650}
651
652static void
653insert_vmap_area(struct vmap_area *va,
654 struct rb_root *root, struct list_head *head)
655{
656 struct rb_node **link;
657 struct rb_node *parent;
658
659 link = find_va_links(va, root, NULL, &parent);
660 link_va(va, root, parent, link, head);
661}
662
663static void
664insert_vmap_area_augment(struct vmap_area *va,
665 struct rb_node *from, struct rb_root *root,
666 struct list_head *head)
667{
668 struct rb_node **link;
669 struct rb_node *parent;
670
671 if (from)
672 link = find_va_links(va, NULL, from, &parent);
673 else
674 link = find_va_links(va, root, NULL, &parent);
675
676 link_va(va, root, parent, link, head);
677 augment_tree_propagate_from(va);
678}
679
680/*
681 * Merge de-allocated chunk of VA memory with previous
682 * and next free blocks. If coalesce is not done a new
683 * free area is inserted. If VA has been merged, it is
684 * freed.
685 */
686static __always_inline void
687merge_or_add_vmap_area(struct vmap_area *va,
688 struct rb_root *root, struct list_head *head)
689{
690 struct vmap_area *sibling;
691 struct list_head *next;
692 struct rb_node **link;
693 struct rb_node *parent;
694 bool merged = false;
695
696 /*
697 * Find a place in the tree where VA potentially will be
698 * inserted, unless it is merged with its sibling/siblings.
699 */
700 link = find_va_links(va, root, NULL, &parent);
701
702 /*
703 * Get next node of VA to check if merging can be done.
704 */
705 next = get_va_next_sibling(parent, link);
706 if (unlikely(next == NULL))
707 goto insert;
708
709 /*
710 * start end
711 * | |
712 * |<------VA------>|<-----Next----->|
713 * | |
714 * start end
715 */
716 if (next != head) {
717 sibling = list_entry(next, struct vmap_area, list);
718 if (sibling->va_start == va->va_end) {
719 sibling->va_start = va->va_start;
720
721 /* Check and update the tree if needed. */
722 augment_tree_propagate_from(sibling);
723
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700724 /* Free vmap_area object. */
725 kmem_cache_free(vmap_area_cachep, va);
726
727 /* Point to the new merged area. */
728 va = sibling;
729 merged = true;
730 }
731 }
732
733 /*
734 * start end
735 * | |
736 * |<-----Prev----->|<------VA------>|
737 * | |
738 * start end
739 */
740 if (next->prev != head) {
741 sibling = list_entry(next->prev, struct vmap_area, list);
742 if (sibling->va_end == va->va_start) {
743 sibling->va_end = va->va_end;
744
745 /* Check and update the tree if needed. */
746 augment_tree_propagate_from(sibling);
747
Uladzislau Rezki (Sony)54f63d92019-07-11 20:59:00 -0700748 if (merged)
749 unlink_va(va, root);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700750
751 /* Free vmap_area object. */
752 kmem_cache_free(vmap_area_cachep, va);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700753 return;
754 }
755 }
756
757insert:
758 if (!merged) {
759 link_va(va, root, parent, link, head);
760 augment_tree_propagate_from(va);
761 }
762}
763
764static __always_inline bool
765is_within_this_va(struct vmap_area *va, unsigned long size,
766 unsigned long align, unsigned long vstart)
767{
768 unsigned long nva_start_addr;
769
770 if (va->va_start > vstart)
771 nva_start_addr = ALIGN(va->va_start, align);
772 else
773 nva_start_addr = ALIGN(vstart, align);
774
775 /* Can be overflowed due to big size or alignment. */
776 if (nva_start_addr + size < nva_start_addr ||
777 nva_start_addr < vstart)
778 return false;
779
780 return (nva_start_addr + size <= va->va_end);
781}
782
783/*
784 * Find the first free block(lowest start address) in the tree,
785 * that will accomplish the request corresponding to passing
786 * parameters.
787 */
788static __always_inline struct vmap_area *
789find_vmap_lowest_match(unsigned long size,
790 unsigned long align, unsigned long vstart)
791{
792 struct vmap_area *va;
793 struct rb_node *node;
794 unsigned long length;
795
796 /* Start from the root. */
797 node = free_vmap_area_root.rb_node;
798
799 /* Adjust the search size for alignment overhead. */
800 length = size + align - 1;
801
802 while (node) {
803 va = rb_entry(node, struct vmap_area, rb_node);
804
805 if (get_subtree_max_size(node->rb_left) >= length &&
806 vstart < va->va_start) {
807 node = node->rb_left;
808 } else {
809 if (is_within_this_va(va, size, align, vstart))
810 return va;
811
812 /*
813 * Does not make sense to go deeper towards the right
814 * sub-tree if it does not have a free block that is
815 * equal or bigger to the requested search length.
816 */
817 if (get_subtree_max_size(node->rb_right) >= length) {
818 node = node->rb_right;
819 continue;
820 }
821
822 /*
Andrew Morton3806b042019-05-31 22:30:03 -0700823 * OK. We roll back and find the first right sub-tree,
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700824 * that will satisfy the search criteria. It can happen
825 * only once due to "vstart" restriction.
826 */
827 while ((node = rb_parent(node))) {
828 va = rb_entry(node, struct vmap_area, rb_node);
829 if (is_within_this_va(va, size, align, vstart))
830 return va;
831
832 if (get_subtree_max_size(node->rb_right) >= length &&
833 vstart <= va->va_start) {
834 node = node->rb_right;
835 break;
836 }
837 }
838 }
839 }
840
841 return NULL;
842}
843
Uladzislau Rezki (Sony)a6cf4e02019-05-17 14:31:37 -0700844#if DEBUG_AUGMENT_LOWEST_MATCH_CHECK
845#include <linux/random.h>
846
847static struct vmap_area *
848find_vmap_lowest_linear_match(unsigned long size,
849 unsigned long align, unsigned long vstart)
850{
851 struct vmap_area *va;
852
853 list_for_each_entry(va, &free_vmap_area_list, list) {
854 if (!is_within_this_va(va, size, align, vstart))
855 continue;
856
857 return va;
858 }
859
860 return NULL;
861}
862
863static void
864find_vmap_lowest_match_check(unsigned long size)
865{
866 struct vmap_area *va_1, *va_2;
867 unsigned long vstart;
868 unsigned int rnd;
869
870 get_random_bytes(&rnd, sizeof(rnd));
871 vstart = VMALLOC_START + rnd;
872
873 va_1 = find_vmap_lowest_match(size, 1, vstart);
874 va_2 = find_vmap_lowest_linear_match(size, 1, vstart);
875
876 if (va_1 != va_2)
877 pr_emerg("not lowest: t: 0x%p, l: 0x%p, v: 0x%lx\n",
878 va_1, va_2, vstart);
879}
880#endif
881
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700882enum fit_type {
883 NOTHING_FIT = 0,
884 FL_FIT_TYPE = 1, /* full fit */
885 LE_FIT_TYPE = 2, /* left edge fit */
886 RE_FIT_TYPE = 3, /* right edge fit */
887 NE_FIT_TYPE = 4 /* no edge fit */
888};
889
890static __always_inline enum fit_type
891classify_va_fit_type(struct vmap_area *va,
892 unsigned long nva_start_addr, unsigned long size)
893{
894 enum fit_type type;
895
896 /* Check if it is within VA. */
897 if (nva_start_addr < va->va_start ||
898 nva_start_addr + size > va->va_end)
899 return NOTHING_FIT;
900
901 /* Now classify. */
902 if (va->va_start == nva_start_addr) {
903 if (va->va_end == nva_start_addr + size)
904 type = FL_FIT_TYPE;
905 else
906 type = LE_FIT_TYPE;
907 } else if (va->va_end == nva_start_addr + size) {
908 type = RE_FIT_TYPE;
909 } else {
910 type = NE_FIT_TYPE;
911 }
912
913 return type;
914}
915
916static __always_inline int
917adjust_va_to_fit_type(struct vmap_area *va,
918 unsigned long nva_start_addr, unsigned long size,
919 enum fit_type type)
920{
Arnd Bergmann2c929232019-06-28 12:07:09 -0700921 struct vmap_area *lva = NULL;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700922
923 if (type == FL_FIT_TYPE) {
924 /*
925 * No need to split VA, it fully fits.
926 *
927 * | |
928 * V NVA V
929 * |---------------|
930 */
931 unlink_va(va, &free_vmap_area_root);
932 kmem_cache_free(vmap_area_cachep, va);
933 } else if (type == LE_FIT_TYPE) {
934 /*
935 * Split left edge of fit VA.
936 *
937 * | |
938 * V NVA V R
939 * |-------|-------|
940 */
941 va->va_start += size;
942 } else if (type == RE_FIT_TYPE) {
943 /*
944 * Split right edge of fit VA.
945 *
946 * | |
947 * L V NVA V
948 * |-------|-------|
949 */
950 va->va_end = nva_start_addr;
951 } else if (type == NE_FIT_TYPE) {
952 /*
953 * Split no edge of fit VA.
954 *
955 * | |
956 * L V NVA V R
957 * |---|-------|---|
958 */
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -0700959 lva = __this_cpu_xchg(ne_fit_preload_node, NULL);
960 if (unlikely(!lva)) {
961 /*
962 * For percpu allocator we do not do any pre-allocation
963 * and leave it as it is. The reason is it most likely
964 * never ends up with NE_FIT_TYPE splitting. In case of
965 * percpu allocations offsets and sizes are aligned to
966 * fixed align request, i.e. RE_FIT_TYPE and FL_FIT_TYPE
967 * are its main fitting cases.
968 *
969 * There are a few exceptions though, as an example it is
970 * a first allocation (early boot up) when we have "one"
971 * big free space that has to be split.
Uladzislau Rezki (Sony)060650a2019-11-30 17:54:40 -0800972 *
973 * Also we can hit this path in case of regular "vmap"
974 * allocations, if "this" current CPU was not preloaded.
975 * See the comment in alloc_vmap_area() why. If so, then
976 * GFP_NOWAIT is used instead to get an extra object for
977 * split purpose. That is rare and most time does not
978 * occur.
979 *
980 * What happens if an allocation gets failed. Basically,
981 * an "overflow" path is triggered to purge lazily freed
982 * areas to free some memory, then, the "retry" path is
983 * triggered to repeat one more time. See more details
984 * in alloc_vmap_area() function.
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -0700985 */
986 lva = kmem_cache_alloc(vmap_area_cachep, GFP_NOWAIT);
987 if (!lva)
988 return -1;
989 }
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -0700990
991 /*
992 * Build the remainder.
993 */
994 lva->va_start = va->va_start;
995 lva->va_end = nva_start_addr;
996
997 /*
998 * Shrink this VA to remaining size.
999 */
1000 va->va_start = nva_start_addr + size;
1001 } else {
1002 return -1;
1003 }
1004
1005 if (type != FL_FIT_TYPE) {
1006 augment_tree_propagate_from(va);
1007
Arnd Bergmann2c929232019-06-28 12:07:09 -07001008 if (lva) /* type == NE_FIT_TYPE */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001009 insert_vmap_area_augment(lva, &va->rb_node,
1010 &free_vmap_area_root, &free_vmap_area_list);
1011 }
1012
1013 return 0;
1014}
1015
1016/*
1017 * Returns a start address of the newly allocated area, if success.
1018 * Otherwise a vend is returned that indicates failure.
1019 */
1020static __always_inline unsigned long
1021__alloc_vmap_area(unsigned long size, unsigned long align,
Uladzislau Rezki (Sony)cacca6b2019-07-11 20:58:53 -07001022 unsigned long vstart, unsigned long vend)
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001023{
1024 unsigned long nva_start_addr;
1025 struct vmap_area *va;
1026 enum fit_type type;
1027 int ret;
1028
1029 va = find_vmap_lowest_match(size, align, vstart);
1030 if (unlikely(!va))
1031 return vend;
1032
1033 if (va->va_start > vstart)
1034 nva_start_addr = ALIGN(va->va_start, align);
1035 else
1036 nva_start_addr = ALIGN(vstart, align);
1037
1038 /* Check the "vend" restriction. */
1039 if (nva_start_addr + size > vend)
1040 return vend;
1041
1042 /* Classify what we have found. */
1043 type = classify_va_fit_type(va, nva_start_addr, size);
1044 if (WARN_ON_ONCE(type == NOTHING_FIT))
1045 return vend;
1046
1047 /* Update the free vmap_area. */
1048 ret = adjust_va_to_fit_type(va, nva_start_addr, size, type);
1049 if (ret)
1050 return vend;
1051
Uladzislau Rezki (Sony)a6cf4e02019-05-17 14:31:37 -07001052#if DEBUG_AUGMENT_LOWEST_MATCH_CHECK
1053 find_vmap_lowest_match_check(size);
1054#endif
1055
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001056 return nva_start_addr;
1057}
Chris Wilson4da56b92016-04-04 14:46:42 +01001058
Nick Piggindb64fe02008-10-18 20:27:03 -07001059/*
1060 * Allocate a region of KVA of the specified size and alignment, within the
1061 * vstart and vend.
1062 */
1063static struct vmap_area *alloc_vmap_area(unsigned long size,
1064 unsigned long align,
1065 unsigned long vstart, unsigned long vend,
1066 int node, gfp_t gfp_mask)
1067{
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001068 struct vmap_area *va, *pva;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001069 unsigned long addr;
Nick Piggindb64fe02008-10-18 20:27:03 -07001070 int purged = 0;
1071
Nick Piggin77669702009-02-27 14:03:03 -08001072 BUG_ON(!size);
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08001073 BUG_ON(offset_in_page(size));
Nick Piggin89699602011-03-22 16:30:36 -07001074 BUG_ON(!is_power_of_2(align));
Nick Piggindb64fe02008-10-18 20:27:03 -07001075
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001076 if (unlikely(!vmap_initialized))
1077 return ERR_PTR(-EBUSY);
1078
Christoph Hellwig5803ed22016-12-12 16:44:20 -08001079 might_sleep();
Uladzislau Rezki (Sony)f07116d2019-11-30 17:54:37 -08001080 gfp_mask = gfp_mask & GFP_RECLAIM_MASK;
Chris Wilson4da56b92016-04-04 14:46:42 +01001081
Uladzislau Rezki (Sony)f07116d2019-11-30 17:54:37 -08001082 va = kmem_cache_alloc_node(vmap_area_cachep, gfp_mask, node);
Nick Piggindb64fe02008-10-18 20:27:03 -07001083 if (unlikely(!va))
1084 return ERR_PTR(-ENOMEM);
1085
Catalin Marinas7f88f882013-11-12 15:07:45 -08001086 /*
1087 * Only scan the relevant parts containing pointers to other objects
1088 * to avoid false negatives.
1089 */
Uladzislau Rezki (Sony)f07116d2019-11-30 17:54:37 -08001090 kmemleak_scan_area(&va->rb_node, SIZE_MAX, gfp_mask);
Catalin Marinas7f88f882013-11-12 15:07:45 -08001091
Nick Piggindb64fe02008-10-18 20:27:03 -07001092retry:
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001093 /*
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001094 * Preload this CPU with one extra vmap_area object. It is used
1095 * when fit type of free area is NE_FIT_TYPE. Please note, it
1096 * does not guarantee that an allocation occurs on a CPU that
1097 * is preloaded, instead we minimize the case when it is not.
1098 * It can happen because of cpu migration, because there is a
1099 * race until the below spinlock is taken.
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001100 *
1101 * The preload is done in non-atomic context, thus it allows us
1102 * to use more permissive allocation masks to be more stable under
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001103 * low memory condition and high memory pressure. In rare case,
1104 * if not preloaded, GFP_NOWAIT is used.
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001105 *
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001106 * Set "pva" to NULL here, because of "retry" path.
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001107 */
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001108 pva = NULL;
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001109
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001110 if (!this_cpu_read(ne_fit_preload_node))
1111 /*
1112 * Even if it fails we do not really care about that.
1113 * Just proceed as it is. If needed "overflow" path
1114 * will refill the cache we allocate from.
1115 */
Uladzislau Rezki (Sony)f07116d2019-11-30 17:54:37 -08001116 pva = kmem_cache_alloc_node(vmap_area_cachep, gfp_mask, node);
Uladzislau Rezki (Sony)82dd23e2019-07-11 20:58:57 -07001117
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001118 spin_lock(&free_vmap_area_lock);
Uladzislau Rezki (Sony)81f1ba52019-11-30 17:54:33 -08001119
1120 if (pva && __this_cpu_cmpxchg(ne_fit_preload_node, NULL, pva))
1121 kmem_cache_free(vmap_area_cachep, pva);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001122
Nick Piggin89699602011-03-22 16:30:36 -07001123 /*
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001124 * If an allocation fails, the "vend" address is
1125 * returned. Therefore trigger the overflow path.
Nick Piggin89699602011-03-22 16:30:36 -07001126 */
Uladzislau Rezki (Sony)cacca6b2019-07-11 20:58:53 -07001127 addr = __alloc_vmap_area(size, align, vstart, vend);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001128 spin_unlock(&free_vmap_area_lock);
1129
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001130 if (unlikely(addr == vend))
Nick Piggin89699602011-03-22 16:30:36 -07001131 goto overflow;
Nick Piggindb64fe02008-10-18 20:27:03 -07001132
1133 va->va_start = addr;
1134 va->va_end = addr + size;
Pengfei Li688fcbf2019-09-23 15:36:39 -07001135 va->vm = NULL;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001136
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001137 spin_lock(&vmap_area_lock);
1138 insert_vmap_area(va, &vmap_area_root, &vmap_area_list);
Nick Piggindb64fe02008-10-18 20:27:03 -07001139 spin_unlock(&vmap_area_lock);
1140
Wang Xiaoqiang61e16552016-01-15 16:57:19 -08001141 BUG_ON(!IS_ALIGNED(va->va_start, align));
Nick Piggin89699602011-03-22 16:30:36 -07001142 BUG_ON(va->va_start < vstart);
1143 BUG_ON(va->va_end > vend);
1144
Nick Piggindb64fe02008-10-18 20:27:03 -07001145 return va;
Nick Piggin89699602011-03-22 16:30:36 -07001146
1147overflow:
Nick Piggin89699602011-03-22 16:30:36 -07001148 if (!purged) {
1149 purge_vmap_area_lazy();
1150 purged = 1;
1151 goto retry;
1152 }
Chris Wilson4da56b92016-04-04 14:46:42 +01001153
1154 if (gfpflags_allow_blocking(gfp_mask)) {
1155 unsigned long freed = 0;
1156 blocking_notifier_call_chain(&vmap_notify_list, 0, &freed);
1157 if (freed > 0) {
1158 purged = 0;
1159 goto retry;
1160 }
1161 }
1162
Florian Fainelli03497d72017-04-27 11:19:00 -07001163 if (!(gfp_mask & __GFP_NOWARN) && printk_ratelimit())
Joe Perches756a0252016-03-17 14:19:47 -07001164 pr_warn("vmap allocation for size %lu failed: use vmalloc=<size> to increase size\n",
1165 size);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001166
1167 kmem_cache_free(vmap_area_cachep, va);
Nick Piggin89699602011-03-22 16:30:36 -07001168 return ERR_PTR(-EBUSY);
Nick Piggindb64fe02008-10-18 20:27:03 -07001169}
1170
Chris Wilson4da56b92016-04-04 14:46:42 +01001171int register_vmap_purge_notifier(struct notifier_block *nb)
1172{
1173 return blocking_notifier_chain_register(&vmap_notify_list, nb);
1174}
1175EXPORT_SYMBOL_GPL(register_vmap_purge_notifier);
1176
1177int unregister_vmap_purge_notifier(struct notifier_block *nb)
1178{
1179 return blocking_notifier_chain_unregister(&vmap_notify_list, nb);
1180}
1181EXPORT_SYMBOL_GPL(unregister_vmap_purge_notifier);
1182
Nick Piggindb64fe02008-10-18 20:27:03 -07001183/*
1184 * Free a region of KVA allocated by alloc_vmap_area
1185 */
1186static void free_vmap_area(struct vmap_area *va)
1187{
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001188 /*
1189 * Remove from the busy tree/list.
1190 */
Nick Piggindb64fe02008-10-18 20:27:03 -07001191 spin_lock(&vmap_area_lock);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001192 unlink_va(va, &vmap_area_root);
Nick Piggindb64fe02008-10-18 20:27:03 -07001193 spin_unlock(&vmap_area_lock);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001194
1195 /*
1196 * Insert/Merge it back to the free tree/list.
1197 */
1198 spin_lock(&free_vmap_area_lock);
1199 merge_or_add_vmap_area(va,
1200 &free_vmap_area_root, &free_vmap_area_list);
1201 spin_unlock(&free_vmap_area_lock);
Nick Piggindb64fe02008-10-18 20:27:03 -07001202}
1203
1204/*
1205 * Clear the pagetable entries of a given vmap_area
1206 */
1207static void unmap_vmap_area(struct vmap_area *va)
1208{
1209 vunmap_page_range(va->va_start, va->va_end);
1210}
1211
1212/*
1213 * lazy_max_pages is the maximum amount of virtual address space we gather up
1214 * before attempting to purge with a TLB flush.
1215 *
1216 * There is a tradeoff here: a larger number will cover more kernel page tables
1217 * and take slightly longer to purge, but it will linearly reduce the number of
1218 * global TLB flushes that must be performed. It would seem natural to scale
1219 * this number up linearly with the number of CPUs (because vmapping activity
1220 * could also scale linearly with the number of CPUs), however it is likely
1221 * that in practice, workloads might be constrained in other ways that mean
1222 * vmap activity will not scale linearly with CPUs. Also, I want to be
1223 * conservative and not introduce a big latency on huge systems, so go with
1224 * a less aggressive log scale. It will still be an improvement over the old
1225 * code, and it will be simple to change the scale factor if we find that it
1226 * becomes a problem on bigger systems.
1227 */
1228static unsigned long lazy_max_pages(void)
1229{
1230 unsigned int log;
1231
1232 log = fls(num_online_cpus());
1233
1234 return log * (32UL * 1024 * 1024 / PAGE_SIZE);
1235}
1236
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001237static atomic_long_t vmap_lazy_nr = ATOMIC_LONG_INIT(0);
Nick Piggindb64fe02008-10-18 20:27:03 -07001238
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001239/*
1240 * Serialize vmap purging. There is no actual criticial section protected
1241 * by this look, but we want to avoid concurrent calls for performance
1242 * reasons and to make the pcpu_get_vm_areas more deterministic.
1243 */
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001244static DEFINE_MUTEX(vmap_purge_lock);
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001245
Nick Piggin02b709d2010-02-01 22:25:57 +11001246/* for per-CPU blocks */
1247static void purge_fragmented_blocks_allcpus(void);
1248
Nick Piggindb64fe02008-10-18 20:27:03 -07001249/*
Cliff Wickman3ee48b62010-09-16 11:44:02 -05001250 * called before a call to iounmap() if the caller wants vm_area_struct's
1251 * immediately freed.
1252 */
1253void set_iounmap_nonlazy(void)
1254{
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001255 atomic_long_set(&vmap_lazy_nr, lazy_max_pages()+1);
Cliff Wickman3ee48b62010-09-16 11:44:02 -05001256}
1257
1258/*
Nick Piggindb64fe02008-10-18 20:27:03 -07001259 * Purges all lazily-freed vmap areas.
Nick Piggindb64fe02008-10-18 20:27:03 -07001260 */
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001261static bool __purge_vmap_area_lazy(unsigned long start, unsigned long end)
Nick Piggindb64fe02008-10-18 20:27:03 -07001262{
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001263 unsigned long resched_threshold;
Chris Wilson80c4bd72016-05-20 16:57:38 -07001264 struct llist_node *valist;
Nick Piggindb64fe02008-10-18 20:27:03 -07001265 struct vmap_area *va;
Vegard Nossumcbb76672009-02-27 14:03:04 -08001266 struct vmap_area *n_va;
Nick Piggindb64fe02008-10-18 20:27:03 -07001267
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001268 lockdep_assert_held(&vmap_purge_lock);
Nick Piggin02b709d2010-02-01 22:25:57 +11001269
Chris Wilson80c4bd72016-05-20 16:57:38 -07001270 valist = llist_del_all(&vmap_purge_list);
Uladzislau Rezki (Sony)68571be92019-05-14 15:41:22 -07001271 if (unlikely(valist == NULL))
1272 return false;
1273
1274 /*
Joerg Roedel3f8fd022019-07-19 20:46:52 +02001275 * First make sure the mappings are removed from all page-tables
1276 * before they are freed.
1277 */
1278 vmalloc_sync_all();
1279
1280 /*
Uladzislau Rezki (Sony)68571be92019-05-14 15:41:22 -07001281 * TODO: to calculate a flush range without looping.
1282 * The list can be up to lazy_max_pages() elements.
1283 */
Chris Wilson80c4bd72016-05-20 16:57:38 -07001284 llist_for_each_entry(va, valist, purge_list) {
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001285 if (va->va_start < start)
1286 start = va->va_start;
1287 if (va->va_end > end)
1288 end = va->va_end;
Nick Piggindb64fe02008-10-18 20:27:03 -07001289 }
Nick Piggindb64fe02008-10-18 20:27:03 -07001290
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001291 flush_tlb_kernel_range(start, end);
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001292 resched_threshold = lazy_max_pages() << 1;
Nick Piggindb64fe02008-10-18 20:27:03 -07001293
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001294 spin_lock(&free_vmap_area_lock);
Joel Fernandes763b2182016-12-12 16:44:26 -08001295 llist_for_each_entry_safe(va, n_va, valist, purge_list) {
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001296 unsigned long nr = (va->va_end - va->va_start) >> PAGE_SHIFT;
Joel Fernandes763b2182016-12-12 16:44:26 -08001297
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07001298 /*
1299 * Finally insert or merge lazily-freed area. It is
1300 * detached and there is no need to "unlink" it from
1301 * anything.
1302 */
1303 merge_or_add_vmap_area(va,
1304 &free_vmap_area_root, &free_vmap_area_list);
1305
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001306 atomic_long_sub(nr, &vmap_lazy_nr);
Uladzislau Rezki (Sony)68571be92019-05-14 15:41:22 -07001307
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001308 if (atomic_long_read(&vmap_lazy_nr) < resched_threshold)
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001309 cond_resched_lock(&free_vmap_area_lock);
Joel Fernandes763b2182016-12-12 16:44:26 -08001310 }
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08001311 spin_unlock(&free_vmap_area_lock);
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001312 return true;
Nick Piggindb64fe02008-10-18 20:27:03 -07001313}
1314
1315/*
Nick Piggin496850e2008-11-19 15:36:33 -08001316 * Kick off a purge of the outstanding lazy areas. Don't bother if somebody
1317 * is already purging.
1318 */
1319static void try_purge_vmap_area_lazy(void)
1320{
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001321 if (mutex_trylock(&vmap_purge_lock)) {
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001322 __purge_vmap_area_lazy(ULONG_MAX, 0);
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001323 mutex_unlock(&vmap_purge_lock);
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001324 }
Nick Piggin496850e2008-11-19 15:36:33 -08001325}
1326
1327/*
Nick Piggindb64fe02008-10-18 20:27:03 -07001328 * Kick off a purge of the outstanding lazy areas.
1329 */
1330static void purge_vmap_area_lazy(void)
1331{
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001332 mutex_lock(&vmap_purge_lock);
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001333 purge_fragmented_blocks_allcpus();
1334 __purge_vmap_area_lazy(ULONG_MAX, 0);
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001335 mutex_unlock(&vmap_purge_lock);
Nick Piggindb64fe02008-10-18 20:27:03 -07001336}
1337
1338/*
Jeremy Fitzhardinge64141da2010-12-02 14:31:18 -08001339 * Free a vmap area, caller ensuring that the area has been unmapped
1340 * and flush_cache_vunmap had been called for the correct range
1341 * previously.
Nick Piggindb64fe02008-10-18 20:27:03 -07001342 */
Jeremy Fitzhardinge64141da2010-12-02 14:31:18 -08001343static void free_vmap_area_noflush(struct vmap_area *va)
Nick Piggindb64fe02008-10-18 20:27:03 -07001344{
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001345 unsigned long nr_lazy;
Chris Wilson80c4bd72016-05-20 16:57:38 -07001346
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07001347 spin_lock(&vmap_area_lock);
1348 unlink_va(va, &vmap_area_root);
1349 spin_unlock(&vmap_area_lock);
1350
Uladzislau Rezki (Sony)4d36e6f2019-05-14 15:41:25 -07001351 nr_lazy = atomic_long_add_return((va->va_end - va->va_start) >>
1352 PAGE_SHIFT, &vmap_lazy_nr);
Chris Wilson80c4bd72016-05-20 16:57:38 -07001353
1354 /* After this point, we may free va at any time */
1355 llist_add(&va->purge_list, &vmap_purge_list);
1356
1357 if (unlikely(nr_lazy > lazy_max_pages()))
Nick Piggin496850e2008-11-19 15:36:33 -08001358 try_purge_vmap_area_lazy();
Nick Piggindb64fe02008-10-18 20:27:03 -07001359}
1360
Nick Pigginb29acbd2008-12-01 13:13:47 -08001361/*
1362 * Free and unmap a vmap area
1363 */
1364static void free_unmap_vmap_area(struct vmap_area *va)
1365{
1366 flush_cache_vunmap(va->va_start, va->va_end);
Christoph Hellwigc8eef012016-12-12 16:44:01 -08001367 unmap_vmap_area(va);
Chintan Pandya82a2e922018-06-07 17:06:46 -07001368 if (debug_pagealloc_enabled())
1369 flush_tlb_kernel_range(va->va_start, va->va_end);
1370
Christoph Hellwigc8eef012016-12-12 16:44:01 -08001371 free_vmap_area_noflush(va);
Nick Pigginb29acbd2008-12-01 13:13:47 -08001372}
1373
Nick Piggindb64fe02008-10-18 20:27:03 -07001374static struct vmap_area *find_vmap_area(unsigned long addr)
1375{
1376 struct vmap_area *va;
1377
1378 spin_lock(&vmap_area_lock);
1379 va = __find_vmap_area(addr);
1380 spin_unlock(&vmap_area_lock);
1381
1382 return va;
1383}
1384
Nick Piggindb64fe02008-10-18 20:27:03 -07001385/*** Per cpu kva allocator ***/
1386
1387/*
1388 * vmap space is limited especially on 32 bit architectures. Ensure there is
1389 * room for at least 16 percpu vmap blocks per CPU.
1390 */
1391/*
1392 * If we had a constant VMALLOC_START and VMALLOC_END, we'd like to be able
1393 * to #define VMALLOC_SPACE (VMALLOC_END-VMALLOC_START). Guess
1394 * instead (we just need a rough idea)
1395 */
1396#if BITS_PER_LONG == 32
1397#define VMALLOC_SPACE (128UL*1024*1024)
1398#else
1399#define VMALLOC_SPACE (128UL*1024*1024*1024)
1400#endif
1401
1402#define VMALLOC_PAGES (VMALLOC_SPACE / PAGE_SIZE)
1403#define VMAP_MAX_ALLOC BITS_PER_LONG /* 256K with 4K pages */
1404#define VMAP_BBMAP_BITS_MAX 1024 /* 4MB with 4K pages */
1405#define VMAP_BBMAP_BITS_MIN (VMAP_MAX_ALLOC*2)
1406#define VMAP_MIN(x, y) ((x) < (y) ? (x) : (y)) /* can't use min() */
1407#define VMAP_MAX(x, y) ((x) > (y) ? (x) : (y)) /* can't use max() */
Clemens Ladischf982f9152011-06-21 22:09:50 +02001408#define VMAP_BBMAP_BITS \
1409 VMAP_MIN(VMAP_BBMAP_BITS_MAX, \
1410 VMAP_MAX(VMAP_BBMAP_BITS_MIN, \
1411 VMALLOC_PAGES / roundup_pow_of_two(NR_CPUS) / 16))
Nick Piggindb64fe02008-10-18 20:27:03 -07001412
1413#define VMAP_BLOCK_SIZE (VMAP_BBMAP_BITS * PAGE_SIZE)
1414
1415struct vmap_block_queue {
1416 spinlock_t lock;
1417 struct list_head free;
Nick Piggindb64fe02008-10-18 20:27:03 -07001418};
1419
1420struct vmap_block {
1421 spinlock_t lock;
1422 struct vmap_area *va;
Nick Piggindb64fe02008-10-18 20:27:03 -07001423 unsigned long free, dirty;
Roman Pen7d61bfe2015-04-15 16:13:55 -07001424 unsigned long dirty_min, dirty_max; /*< dirty range */
Nick Pigginde560422010-02-01 22:24:18 +11001425 struct list_head free_list;
1426 struct rcu_head rcu_head;
Nick Piggin02b709d2010-02-01 22:25:57 +11001427 struct list_head purge;
Nick Piggindb64fe02008-10-18 20:27:03 -07001428};
1429
1430/* Queue of free and dirty vmap blocks, for allocation and flushing purposes */
1431static DEFINE_PER_CPU(struct vmap_block_queue, vmap_block_queue);
1432
1433/*
1434 * Radix tree of vmap blocks, indexed by address, to quickly find a vmap block
1435 * in the free path. Could get rid of this if we change the API to return a
1436 * "cookie" from alloc, to be passed to free. But no big deal yet.
1437 */
1438static DEFINE_SPINLOCK(vmap_block_tree_lock);
1439static RADIX_TREE(vmap_block_tree, GFP_ATOMIC);
1440
1441/*
1442 * We should probably have a fallback mechanism to allocate virtual memory
1443 * out of partially filled vmap blocks. However vmap block sizing should be
1444 * fairly reasonable according to the vmalloc size, so it shouldn't be a
1445 * big problem.
1446 */
1447
1448static unsigned long addr_to_vb_idx(unsigned long addr)
1449{
1450 addr -= VMALLOC_START & ~(VMAP_BLOCK_SIZE-1);
1451 addr /= VMAP_BLOCK_SIZE;
1452 return addr;
1453}
1454
Roman Pencf725ce2015-04-15 16:13:52 -07001455static void *vmap_block_vaddr(unsigned long va_start, unsigned long pages_off)
1456{
1457 unsigned long addr;
1458
1459 addr = va_start + (pages_off << PAGE_SHIFT);
1460 BUG_ON(addr_to_vb_idx(addr) != addr_to_vb_idx(va_start));
1461 return (void *)addr;
1462}
1463
1464/**
1465 * new_vmap_block - allocates new vmap_block and occupies 2^order pages in this
1466 * block. Of course pages number can't exceed VMAP_BBMAP_BITS
1467 * @order: how many 2^order pages should be occupied in newly allocated block
1468 * @gfp_mask: flags for the page level allocator
1469 *
Mike Rapoporta862f682019-03-05 15:48:42 -08001470 * Return: virtual address in a newly allocated block or ERR_PTR(-errno)
Roman Pencf725ce2015-04-15 16:13:52 -07001471 */
1472static void *new_vmap_block(unsigned int order, gfp_t gfp_mask)
Nick Piggindb64fe02008-10-18 20:27:03 -07001473{
1474 struct vmap_block_queue *vbq;
1475 struct vmap_block *vb;
1476 struct vmap_area *va;
1477 unsigned long vb_idx;
1478 int node, err;
Roman Pencf725ce2015-04-15 16:13:52 -07001479 void *vaddr;
Nick Piggindb64fe02008-10-18 20:27:03 -07001480
1481 node = numa_node_id();
1482
1483 vb = kmalloc_node(sizeof(struct vmap_block),
1484 gfp_mask & GFP_RECLAIM_MASK, node);
1485 if (unlikely(!vb))
1486 return ERR_PTR(-ENOMEM);
1487
1488 va = alloc_vmap_area(VMAP_BLOCK_SIZE, VMAP_BLOCK_SIZE,
1489 VMALLOC_START, VMALLOC_END,
1490 node, gfp_mask);
Tobias Klauserddf9c6d42011-01-13 15:46:15 -08001491 if (IS_ERR(va)) {
Nick Piggindb64fe02008-10-18 20:27:03 -07001492 kfree(vb);
Julia Lawalle7d86342010-08-09 17:18:28 -07001493 return ERR_CAST(va);
Nick Piggindb64fe02008-10-18 20:27:03 -07001494 }
1495
1496 err = radix_tree_preload(gfp_mask);
1497 if (unlikely(err)) {
1498 kfree(vb);
1499 free_vmap_area(va);
1500 return ERR_PTR(err);
1501 }
1502
Roman Pencf725ce2015-04-15 16:13:52 -07001503 vaddr = vmap_block_vaddr(va->va_start, 0);
Nick Piggindb64fe02008-10-18 20:27:03 -07001504 spin_lock_init(&vb->lock);
1505 vb->va = va;
Roman Pencf725ce2015-04-15 16:13:52 -07001506 /* At least something should be left free */
1507 BUG_ON(VMAP_BBMAP_BITS <= (1UL << order));
1508 vb->free = VMAP_BBMAP_BITS - (1UL << order);
Nick Piggindb64fe02008-10-18 20:27:03 -07001509 vb->dirty = 0;
Roman Pen7d61bfe2015-04-15 16:13:55 -07001510 vb->dirty_min = VMAP_BBMAP_BITS;
1511 vb->dirty_max = 0;
Nick Piggindb64fe02008-10-18 20:27:03 -07001512 INIT_LIST_HEAD(&vb->free_list);
Nick Piggindb64fe02008-10-18 20:27:03 -07001513
1514 vb_idx = addr_to_vb_idx(va->va_start);
1515 spin_lock(&vmap_block_tree_lock);
1516 err = radix_tree_insert(&vmap_block_tree, vb_idx, vb);
1517 spin_unlock(&vmap_block_tree_lock);
1518 BUG_ON(err);
1519 radix_tree_preload_end();
1520
1521 vbq = &get_cpu_var(vmap_block_queue);
Nick Piggindb64fe02008-10-18 20:27:03 -07001522 spin_lock(&vbq->lock);
Roman Pen68ac5462015-04-15 16:13:48 -07001523 list_add_tail_rcu(&vb->free_list, &vbq->free);
Nick Piggindb64fe02008-10-18 20:27:03 -07001524 spin_unlock(&vbq->lock);
Tejun Heo3f04ba82009-10-29 22:34:12 +09001525 put_cpu_var(vmap_block_queue);
Nick Piggindb64fe02008-10-18 20:27:03 -07001526
Roman Pencf725ce2015-04-15 16:13:52 -07001527 return vaddr;
Nick Piggindb64fe02008-10-18 20:27:03 -07001528}
1529
Nick Piggindb64fe02008-10-18 20:27:03 -07001530static void free_vmap_block(struct vmap_block *vb)
1531{
1532 struct vmap_block *tmp;
1533 unsigned long vb_idx;
1534
Nick Piggindb64fe02008-10-18 20:27:03 -07001535 vb_idx = addr_to_vb_idx(vb->va->va_start);
1536 spin_lock(&vmap_block_tree_lock);
1537 tmp = radix_tree_delete(&vmap_block_tree, vb_idx);
1538 spin_unlock(&vmap_block_tree_lock);
1539 BUG_ON(tmp != vb);
1540
Jeremy Fitzhardinge64141da2010-12-02 14:31:18 -08001541 free_vmap_area_noflush(vb->va);
Lai Jiangshan22a3c7d2011-03-18 12:13:08 +08001542 kfree_rcu(vb, rcu_head);
Nick Piggindb64fe02008-10-18 20:27:03 -07001543}
1544
Nick Piggin02b709d2010-02-01 22:25:57 +11001545static void purge_fragmented_blocks(int cpu)
1546{
1547 LIST_HEAD(purge);
1548 struct vmap_block *vb;
1549 struct vmap_block *n_vb;
1550 struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
1551
1552 rcu_read_lock();
1553 list_for_each_entry_rcu(vb, &vbq->free, free_list) {
1554
1555 if (!(vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS))
1556 continue;
1557
1558 spin_lock(&vb->lock);
1559 if (vb->free + vb->dirty == VMAP_BBMAP_BITS && vb->dirty != VMAP_BBMAP_BITS) {
1560 vb->free = 0; /* prevent further allocs after releasing lock */
1561 vb->dirty = VMAP_BBMAP_BITS; /* prevent purging it again */
Roman Pen7d61bfe2015-04-15 16:13:55 -07001562 vb->dirty_min = 0;
1563 vb->dirty_max = VMAP_BBMAP_BITS;
Nick Piggin02b709d2010-02-01 22:25:57 +11001564 spin_lock(&vbq->lock);
1565 list_del_rcu(&vb->free_list);
1566 spin_unlock(&vbq->lock);
1567 spin_unlock(&vb->lock);
1568 list_add_tail(&vb->purge, &purge);
1569 } else
1570 spin_unlock(&vb->lock);
1571 }
1572 rcu_read_unlock();
1573
1574 list_for_each_entry_safe(vb, n_vb, &purge, purge) {
1575 list_del(&vb->purge);
1576 free_vmap_block(vb);
1577 }
1578}
1579
Nick Piggin02b709d2010-02-01 22:25:57 +11001580static void purge_fragmented_blocks_allcpus(void)
1581{
1582 int cpu;
1583
1584 for_each_possible_cpu(cpu)
1585 purge_fragmented_blocks(cpu);
1586}
1587
Nick Piggindb64fe02008-10-18 20:27:03 -07001588static void *vb_alloc(unsigned long size, gfp_t gfp_mask)
1589{
1590 struct vmap_block_queue *vbq;
1591 struct vmap_block *vb;
Roman Pencf725ce2015-04-15 16:13:52 -07001592 void *vaddr = NULL;
Nick Piggindb64fe02008-10-18 20:27:03 -07001593 unsigned int order;
1594
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08001595 BUG_ON(offset_in_page(size));
Nick Piggindb64fe02008-10-18 20:27:03 -07001596 BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
Jan Karaaa91c4d2012-07-31 16:41:37 -07001597 if (WARN_ON(size == 0)) {
1598 /*
1599 * Allocating 0 bytes isn't what caller wants since
1600 * get_order(0) returns funny result. Just warn and terminate
1601 * early.
1602 */
1603 return NULL;
1604 }
Nick Piggindb64fe02008-10-18 20:27:03 -07001605 order = get_order(size);
1606
Nick Piggindb64fe02008-10-18 20:27:03 -07001607 rcu_read_lock();
1608 vbq = &get_cpu_var(vmap_block_queue);
1609 list_for_each_entry_rcu(vb, &vbq->free, free_list) {
Roman Pencf725ce2015-04-15 16:13:52 -07001610 unsigned long pages_off;
Nick Piggindb64fe02008-10-18 20:27:03 -07001611
1612 spin_lock(&vb->lock);
Roman Pencf725ce2015-04-15 16:13:52 -07001613 if (vb->free < (1UL << order)) {
1614 spin_unlock(&vb->lock);
1615 continue;
1616 }
Nick Piggin02b709d2010-02-01 22:25:57 +11001617
Roman Pencf725ce2015-04-15 16:13:52 -07001618 pages_off = VMAP_BBMAP_BITS - vb->free;
1619 vaddr = vmap_block_vaddr(vb->va->va_start, pages_off);
Nick Piggin02b709d2010-02-01 22:25:57 +11001620 vb->free -= 1UL << order;
1621 if (vb->free == 0) {
1622 spin_lock(&vbq->lock);
1623 list_del_rcu(&vb->free_list);
1624 spin_unlock(&vbq->lock);
Nick Piggindb64fe02008-10-18 20:27:03 -07001625 }
Roman Pencf725ce2015-04-15 16:13:52 -07001626
Nick Piggindb64fe02008-10-18 20:27:03 -07001627 spin_unlock(&vb->lock);
Nick Piggin02b709d2010-02-01 22:25:57 +11001628 break;
Nick Piggindb64fe02008-10-18 20:27:03 -07001629 }
Nick Piggin02b709d2010-02-01 22:25:57 +11001630
Tejun Heo3f04ba82009-10-29 22:34:12 +09001631 put_cpu_var(vmap_block_queue);
Nick Piggindb64fe02008-10-18 20:27:03 -07001632 rcu_read_unlock();
1633
Roman Pencf725ce2015-04-15 16:13:52 -07001634 /* Allocate new block if nothing was found */
1635 if (!vaddr)
1636 vaddr = new_vmap_block(order, gfp_mask);
Nick Piggindb64fe02008-10-18 20:27:03 -07001637
Roman Pencf725ce2015-04-15 16:13:52 -07001638 return vaddr;
Nick Piggindb64fe02008-10-18 20:27:03 -07001639}
1640
1641static void vb_free(const void *addr, unsigned long size)
1642{
1643 unsigned long offset;
1644 unsigned long vb_idx;
1645 unsigned int order;
1646 struct vmap_block *vb;
1647
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08001648 BUG_ON(offset_in_page(size));
Nick Piggindb64fe02008-10-18 20:27:03 -07001649 BUG_ON(size > PAGE_SIZE*VMAP_MAX_ALLOC);
Nick Pigginb29acbd2008-12-01 13:13:47 -08001650
1651 flush_cache_vunmap((unsigned long)addr, (unsigned long)addr + size);
1652
Nick Piggindb64fe02008-10-18 20:27:03 -07001653 order = get_order(size);
1654
1655 offset = (unsigned long)addr & (VMAP_BLOCK_SIZE - 1);
Roman Pen7d61bfe2015-04-15 16:13:55 -07001656 offset >>= PAGE_SHIFT;
Nick Piggindb64fe02008-10-18 20:27:03 -07001657
1658 vb_idx = addr_to_vb_idx((unsigned long)addr);
1659 rcu_read_lock();
1660 vb = radix_tree_lookup(&vmap_block_tree, vb_idx);
1661 rcu_read_unlock();
1662 BUG_ON(!vb);
1663
Jeremy Fitzhardinge64141da2010-12-02 14:31:18 -08001664 vunmap_page_range((unsigned long)addr, (unsigned long)addr + size);
1665
Chintan Pandya82a2e922018-06-07 17:06:46 -07001666 if (debug_pagealloc_enabled())
1667 flush_tlb_kernel_range((unsigned long)addr,
1668 (unsigned long)addr + size);
1669
Nick Piggindb64fe02008-10-18 20:27:03 -07001670 spin_lock(&vb->lock);
Roman Pen7d61bfe2015-04-15 16:13:55 -07001671
1672 /* Expand dirty range */
1673 vb->dirty_min = min(vb->dirty_min, offset);
1674 vb->dirty_max = max(vb->dirty_max, offset + (1UL << order));
MinChan Kimd0868172009-03-31 15:19:26 -07001675
Nick Piggindb64fe02008-10-18 20:27:03 -07001676 vb->dirty += 1UL << order;
1677 if (vb->dirty == VMAP_BBMAP_BITS) {
Nick Pigginde560422010-02-01 22:24:18 +11001678 BUG_ON(vb->free);
Nick Piggindb64fe02008-10-18 20:27:03 -07001679 spin_unlock(&vb->lock);
1680 free_vmap_block(vb);
1681 } else
1682 spin_unlock(&vb->lock);
1683}
1684
Rick Edgecombe868b1042019-04-25 17:11:36 -07001685static void _vm_unmap_aliases(unsigned long start, unsigned long end, int flush)
Nick Piggindb64fe02008-10-18 20:27:03 -07001686{
Nick Piggindb64fe02008-10-18 20:27:03 -07001687 int cpu;
Nick Piggindb64fe02008-10-18 20:27:03 -07001688
Jeremy Fitzhardinge9b463332008-10-28 19:22:34 +11001689 if (unlikely(!vmap_initialized))
1690 return;
1691
Christoph Hellwig5803ed22016-12-12 16:44:20 -08001692 might_sleep();
1693
Nick Piggindb64fe02008-10-18 20:27:03 -07001694 for_each_possible_cpu(cpu) {
1695 struct vmap_block_queue *vbq = &per_cpu(vmap_block_queue, cpu);
1696 struct vmap_block *vb;
1697
1698 rcu_read_lock();
1699 list_for_each_entry_rcu(vb, &vbq->free, free_list) {
Nick Piggindb64fe02008-10-18 20:27:03 -07001700 spin_lock(&vb->lock);
Roman Pen7d61bfe2015-04-15 16:13:55 -07001701 if (vb->dirty) {
1702 unsigned long va_start = vb->va->va_start;
Nick Piggindb64fe02008-10-18 20:27:03 -07001703 unsigned long s, e;
Joonsoo Kimb136be5e2013-09-11 14:21:40 -07001704
Roman Pen7d61bfe2015-04-15 16:13:55 -07001705 s = va_start + (vb->dirty_min << PAGE_SHIFT);
1706 e = va_start + (vb->dirty_max << PAGE_SHIFT);
Nick Piggindb64fe02008-10-18 20:27:03 -07001707
Roman Pen7d61bfe2015-04-15 16:13:55 -07001708 start = min(s, start);
1709 end = max(e, end);
1710
Nick Piggindb64fe02008-10-18 20:27:03 -07001711 flush = 1;
Nick Piggindb64fe02008-10-18 20:27:03 -07001712 }
1713 spin_unlock(&vb->lock);
1714 }
1715 rcu_read_unlock();
1716 }
1717
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001718 mutex_lock(&vmap_purge_lock);
Christoph Hellwig0574ecd2016-12-12 16:44:07 -08001719 purge_fragmented_blocks_allcpus();
1720 if (!__purge_vmap_area_lazy(start, end) && flush)
1721 flush_tlb_kernel_range(start, end);
Christoph Hellwigf9e09972016-12-12 16:44:23 -08001722 mutex_unlock(&vmap_purge_lock);
Nick Piggindb64fe02008-10-18 20:27:03 -07001723}
Rick Edgecombe868b1042019-04-25 17:11:36 -07001724
1725/**
1726 * vm_unmap_aliases - unmap outstanding lazy aliases in the vmap layer
1727 *
1728 * The vmap/vmalloc layer lazily flushes kernel virtual mappings primarily
1729 * to amortize TLB flushing overheads. What this means is that any page you
1730 * have now, may, in a former life, have been mapped into kernel virtual
1731 * address by the vmap layer and so there might be some CPUs with TLB entries
1732 * still referencing that page (additional to the regular 1:1 kernel mapping).
1733 *
1734 * vm_unmap_aliases flushes all such lazy mappings. After it returns, we can
1735 * be sure that none of the pages we have control over will have any aliases
1736 * from the vmap layer.
1737 */
1738void vm_unmap_aliases(void)
1739{
1740 unsigned long start = ULONG_MAX, end = 0;
1741 int flush = 0;
1742
1743 _vm_unmap_aliases(start, end, flush);
1744}
Nick Piggindb64fe02008-10-18 20:27:03 -07001745EXPORT_SYMBOL_GPL(vm_unmap_aliases);
1746
1747/**
1748 * vm_unmap_ram - unmap linear kernel address space set up by vm_map_ram
1749 * @mem: the pointer returned by vm_map_ram
1750 * @count: the count passed to that vm_map_ram call (cannot unmap partial)
1751 */
1752void vm_unmap_ram(const void *mem, unsigned int count)
1753{
Guillermo Julián Moreno65ee03c2016-06-03 14:55:33 -07001754 unsigned long size = (unsigned long)count << PAGE_SHIFT;
Nick Piggindb64fe02008-10-18 20:27:03 -07001755 unsigned long addr = (unsigned long)mem;
Christoph Hellwig9c3acf62016-12-12 16:44:04 -08001756 struct vmap_area *va;
Nick Piggindb64fe02008-10-18 20:27:03 -07001757
Christoph Hellwig5803ed22016-12-12 16:44:20 -08001758 might_sleep();
Nick Piggindb64fe02008-10-18 20:27:03 -07001759 BUG_ON(!addr);
1760 BUG_ON(addr < VMALLOC_START);
1761 BUG_ON(addr > VMALLOC_END);
Shawn Lina1c0b1a2016-03-17 14:20:37 -07001762 BUG_ON(!PAGE_ALIGNED(addr));
Nick Piggindb64fe02008-10-18 20:27:03 -07001763
Christoph Hellwig9c3acf62016-12-12 16:44:04 -08001764 if (likely(count <= VMAP_MAX_ALLOC)) {
Chintan Pandya05e3ff92018-06-07 17:06:53 -07001765 debug_check_no_locks_freed(mem, size);
Nick Piggindb64fe02008-10-18 20:27:03 -07001766 vb_free(mem, size);
Christoph Hellwig9c3acf62016-12-12 16:44:04 -08001767 return;
1768 }
1769
1770 va = find_vmap_area(addr);
1771 BUG_ON(!va);
Chintan Pandya05e3ff92018-06-07 17:06:53 -07001772 debug_check_no_locks_freed((void *)va->va_start,
1773 (va->va_end - va->va_start));
Christoph Hellwig9c3acf62016-12-12 16:44:04 -08001774 free_unmap_vmap_area(va);
Nick Piggindb64fe02008-10-18 20:27:03 -07001775}
1776EXPORT_SYMBOL(vm_unmap_ram);
1777
1778/**
1779 * vm_map_ram - map pages linearly into kernel virtual address (vmalloc space)
1780 * @pages: an array of pointers to the pages to be mapped
1781 * @count: number of pages
1782 * @node: prefer to allocate data structures on this node
1783 * @prot: memory protection to use. PAGE_KERNEL for regular RAM
Randy Dunlape99c97a2008-10-29 14:01:09 -07001784 *
Gioh Kim36437632014-04-07 15:37:37 -07001785 * If you use this function for less than VMAP_MAX_ALLOC pages, it could be
1786 * faster than vmap so it's good. But if you mix long-life and short-life
1787 * objects with vm_map_ram(), it could consume lots of address space through
1788 * fragmentation (especially on a 32bit machine). You could see failures in
1789 * the end. Please use this function for short-lived objects.
1790 *
Randy Dunlape99c97a2008-10-29 14:01:09 -07001791 * Returns: a pointer to the address that has been mapped, or %NULL on failure
Nick Piggindb64fe02008-10-18 20:27:03 -07001792 */
1793void *vm_map_ram(struct page **pages, unsigned int count, int node, pgprot_t prot)
1794{
Guillermo Julián Moreno65ee03c2016-06-03 14:55:33 -07001795 unsigned long size = (unsigned long)count << PAGE_SHIFT;
Nick Piggindb64fe02008-10-18 20:27:03 -07001796 unsigned long addr;
1797 void *mem;
1798
1799 if (likely(count <= VMAP_MAX_ALLOC)) {
1800 mem = vb_alloc(size, GFP_KERNEL);
1801 if (IS_ERR(mem))
1802 return NULL;
1803 addr = (unsigned long)mem;
1804 } else {
1805 struct vmap_area *va;
1806 va = alloc_vmap_area(size, PAGE_SIZE,
1807 VMALLOC_START, VMALLOC_END, node, GFP_KERNEL);
1808 if (IS_ERR(va))
1809 return NULL;
1810
1811 addr = va->va_start;
1812 mem = (void *)addr;
1813 }
1814 if (vmap_page_range(addr, addr + size, prot, pages) < 0) {
1815 vm_unmap_ram(mem, count);
1816 return NULL;
1817 }
1818 return mem;
1819}
1820EXPORT_SYMBOL(vm_map_ram);
1821
Joonsoo Kim4341fa42013-04-29 15:07:39 -07001822static struct vm_struct *vmlist __initdata;
Mike Rapoport92eac162019-03-05 15:48:36 -08001823
Tejun Heof0aa6612009-02-20 16:29:08 +09001824/**
Nicolas Pitrebe9b7332011-08-25 00:24:21 -04001825 * vm_area_add_early - add vmap area early during boot
1826 * @vm: vm_struct to add
1827 *
1828 * This function is used to add fixed kernel vm area to vmlist before
1829 * vmalloc_init() is called. @vm->addr, @vm->size, and @vm->flags
1830 * should contain proper values and the other fields should be zero.
1831 *
1832 * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
1833 */
1834void __init vm_area_add_early(struct vm_struct *vm)
1835{
1836 struct vm_struct *tmp, **p;
1837
1838 BUG_ON(vmap_initialized);
1839 for (p = &vmlist; (tmp = *p) != NULL; p = &tmp->next) {
1840 if (tmp->addr >= vm->addr) {
1841 BUG_ON(tmp->addr < vm->addr + vm->size);
1842 break;
1843 } else
1844 BUG_ON(tmp->addr + tmp->size > vm->addr);
1845 }
1846 vm->next = *p;
1847 *p = vm;
1848}
1849
1850/**
Tejun Heof0aa6612009-02-20 16:29:08 +09001851 * vm_area_register_early - register vmap area early during boot
1852 * @vm: vm_struct to register
Tejun Heoc0c0a292009-02-24 11:57:21 +09001853 * @align: requested alignment
Tejun Heof0aa6612009-02-20 16:29:08 +09001854 *
1855 * This function is used to register kernel vm area before
1856 * vmalloc_init() is called. @vm->size and @vm->flags should contain
1857 * proper values on entry and other fields should be zero. On return,
1858 * vm->addr contains the allocated address.
1859 *
1860 * DO NOT USE THIS FUNCTION UNLESS YOU KNOW WHAT YOU'RE DOING.
1861 */
Tejun Heoc0c0a292009-02-24 11:57:21 +09001862void __init vm_area_register_early(struct vm_struct *vm, size_t align)
Tejun Heof0aa6612009-02-20 16:29:08 +09001863{
1864 static size_t vm_init_off __initdata;
Tejun Heoc0c0a292009-02-24 11:57:21 +09001865 unsigned long addr;
Tejun Heof0aa6612009-02-20 16:29:08 +09001866
Tejun Heoc0c0a292009-02-24 11:57:21 +09001867 addr = ALIGN(VMALLOC_START + vm_init_off, align);
1868 vm_init_off = PFN_ALIGN(addr + vm->size) - VMALLOC_START;
1869
1870 vm->addr = (void *)addr;
Tejun Heof0aa6612009-02-20 16:29:08 +09001871
Nicolas Pitrebe9b7332011-08-25 00:24:21 -04001872 vm_area_add_early(vm);
Tejun Heof0aa6612009-02-20 16:29:08 +09001873}
1874
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001875static void vmap_init_free_space(void)
1876{
1877 unsigned long vmap_start = 1;
1878 const unsigned long vmap_end = ULONG_MAX;
1879 struct vmap_area *busy, *free;
1880
1881 /*
1882 * B F B B B F
1883 * -|-----|.....|-----|-----|-----|.....|-
1884 * | The KVA space |
1885 * |<--------------------------------->|
1886 */
1887 list_for_each_entry(busy, &vmap_area_list, list) {
1888 if (busy->va_start - vmap_start > 0) {
1889 free = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
1890 if (!WARN_ON_ONCE(!free)) {
1891 free->va_start = vmap_start;
1892 free->va_end = busy->va_start;
1893
1894 insert_vmap_area_augment(free, NULL,
1895 &free_vmap_area_root,
1896 &free_vmap_area_list);
1897 }
1898 }
1899
1900 vmap_start = busy->va_end;
1901 }
1902
1903 if (vmap_end - vmap_start > 0) {
1904 free = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
1905 if (!WARN_ON_ONCE(!free)) {
1906 free->va_start = vmap_start;
1907 free->va_end = vmap_end;
1908
1909 insert_vmap_area_augment(free, NULL,
1910 &free_vmap_area_root,
1911 &free_vmap_area_list);
1912 }
1913 }
1914}
1915
Nick Piggindb64fe02008-10-18 20:27:03 -07001916void __init vmalloc_init(void)
1917{
Ivan Kokshaysky822c18f2009-01-15 13:50:48 -08001918 struct vmap_area *va;
1919 struct vm_struct *tmp;
Nick Piggindb64fe02008-10-18 20:27:03 -07001920 int i;
1921
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001922 /*
1923 * Create the cache for vmap_area objects.
1924 */
1925 vmap_area_cachep = KMEM_CACHE(vmap_area, SLAB_PANIC);
1926
Nick Piggindb64fe02008-10-18 20:27:03 -07001927 for_each_possible_cpu(i) {
1928 struct vmap_block_queue *vbq;
Al Viro32fcfd42013-03-10 20:14:08 -04001929 struct vfree_deferred *p;
Nick Piggindb64fe02008-10-18 20:27:03 -07001930
1931 vbq = &per_cpu(vmap_block_queue, i);
1932 spin_lock_init(&vbq->lock);
1933 INIT_LIST_HEAD(&vbq->free);
Al Viro32fcfd42013-03-10 20:14:08 -04001934 p = &per_cpu(vfree_deferred, i);
1935 init_llist_head(&p->list);
1936 INIT_WORK(&p->wq, free_work);
Nick Piggindb64fe02008-10-18 20:27:03 -07001937 }
Jeremy Fitzhardinge9b463332008-10-28 19:22:34 +11001938
Ivan Kokshaysky822c18f2009-01-15 13:50:48 -08001939 /* Import existing vmlist entries. */
1940 for (tmp = vmlist; tmp; tmp = tmp->next) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001941 va = kmem_cache_zalloc(vmap_area_cachep, GFP_NOWAIT);
1942 if (WARN_ON_ONCE(!va))
1943 continue;
1944
Ivan Kokshaysky822c18f2009-01-15 13:50:48 -08001945 va->va_start = (unsigned long)tmp->addr;
1946 va->va_end = va->va_start + tmp->size;
KyongHodbda5912012-05-29 15:06:49 -07001947 va->vm = tmp;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001948 insert_vmap_area(va, &vmap_area_root, &vmap_area_list);
Ivan Kokshaysky822c18f2009-01-15 13:50:48 -08001949 }
Tejun Heoca23e402009-08-14 15:00:52 +09001950
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07001951 /*
1952 * Now we can initialize a free vmap space.
1953 */
1954 vmap_init_free_space();
Jeremy Fitzhardinge9b463332008-10-28 19:22:34 +11001955 vmap_initialized = true;
Nick Piggindb64fe02008-10-18 20:27:03 -07001956}
1957
Tejun Heo8fc48982009-02-20 16:29:08 +09001958/**
1959 * map_kernel_range_noflush - map kernel VM area with the specified pages
1960 * @addr: start of the VM area to map
1961 * @size: size of the VM area to map
1962 * @prot: page protection flags to use
1963 * @pages: pages to map
1964 *
1965 * Map PFN_UP(@size) pages at @addr. The VM area @addr and @size
1966 * specify should have been allocated using get_vm_area() and its
1967 * friends.
1968 *
1969 * NOTE:
1970 * This function does NOT do any cache flushing. The caller is
1971 * responsible for calling flush_cache_vmap() on to-be-mapped areas
1972 * before calling this function.
1973 *
1974 * RETURNS:
1975 * The number of pages mapped on success, -errno on failure.
1976 */
1977int map_kernel_range_noflush(unsigned long addr, unsigned long size,
1978 pgprot_t prot, struct page **pages)
1979{
1980 return vmap_page_range_noflush(addr, addr + size, prot, pages);
1981}
1982
1983/**
1984 * unmap_kernel_range_noflush - unmap kernel VM area
1985 * @addr: start of the VM area to unmap
1986 * @size: size of the VM area to unmap
1987 *
1988 * Unmap PFN_UP(@size) pages at @addr. The VM area @addr and @size
1989 * specify should have been allocated using get_vm_area() and its
1990 * friends.
1991 *
1992 * NOTE:
1993 * This function does NOT do any cache flushing. The caller is
1994 * responsible for calling flush_cache_vunmap() on to-be-mapped areas
1995 * before calling this function and flush_tlb_kernel_range() after.
1996 */
1997void unmap_kernel_range_noflush(unsigned long addr, unsigned long size)
1998{
1999 vunmap_page_range(addr, addr + size);
2000}
Huang Ying81e88fd2011-01-12 14:44:55 +08002001EXPORT_SYMBOL_GPL(unmap_kernel_range_noflush);
Tejun Heo8fc48982009-02-20 16:29:08 +09002002
2003/**
2004 * unmap_kernel_range - unmap kernel VM area and flush cache and TLB
2005 * @addr: start of the VM area to unmap
2006 * @size: size of the VM area to unmap
2007 *
2008 * Similar to unmap_kernel_range_noflush() but flushes vcache before
2009 * the unmapping and tlb after.
2010 */
Nick Piggindb64fe02008-10-18 20:27:03 -07002011void unmap_kernel_range(unsigned long addr, unsigned long size)
2012{
2013 unsigned long end = addr + size;
Tejun Heof6fcba72009-02-20 15:38:48 -08002014
2015 flush_cache_vunmap(addr, end);
Nick Piggindb64fe02008-10-18 20:27:03 -07002016 vunmap_page_range(addr, end);
2017 flush_tlb_kernel_range(addr, end);
2018}
Minchan Kim93ef6d6c2014-06-04 16:11:09 -07002019EXPORT_SYMBOL_GPL(unmap_kernel_range);
Nick Piggindb64fe02008-10-18 20:27:03 -07002020
WANG Chaof6f8ed42014-08-06 16:06:58 -07002021int map_vm_area(struct vm_struct *area, pgprot_t prot, struct page **pages)
Nick Piggindb64fe02008-10-18 20:27:03 -07002022{
2023 unsigned long addr = (unsigned long)area->addr;
Wanpeng Li762216a2013-09-11 14:22:42 -07002024 unsigned long end = addr + get_vm_area_size(area);
Nick Piggindb64fe02008-10-18 20:27:03 -07002025 int err;
2026
WANG Chaof6f8ed42014-08-06 16:06:58 -07002027 err = vmap_page_range(addr, end, prot, pages);
Nick Piggindb64fe02008-10-18 20:27:03 -07002028
WANG Chaof6f8ed42014-08-06 16:06:58 -07002029 return err > 0 ? 0 : err;
Nick Piggindb64fe02008-10-18 20:27:03 -07002030}
2031EXPORT_SYMBOL_GPL(map_vm_area);
2032
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08002033static inline void setup_vmalloc_vm_locked(struct vm_struct *vm,
2034 struct vmap_area *va, unsigned long flags, const void *caller)
Tejun Heocf88c792009-08-14 15:00:52 +09002035{
Tejun Heocf88c792009-08-14 15:00:52 +09002036 vm->flags = flags;
2037 vm->addr = (void *)va->va_start;
2038 vm->size = va->va_end - va->va_start;
2039 vm->caller = caller;
Minchan Kimdb1aeca2012-01-10 15:08:39 -08002040 va->vm = vm;
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08002041}
2042
2043static void setup_vmalloc_vm(struct vm_struct *vm, struct vmap_area *va,
2044 unsigned long flags, const void *caller)
2045{
2046 spin_lock(&vmap_area_lock);
2047 setup_vmalloc_vm_locked(vm, va, flags, caller);
Joonsoo Kimc69480a2013-04-29 15:07:30 -07002048 spin_unlock(&vmap_area_lock);
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002049}
Tejun Heocf88c792009-08-14 15:00:52 +09002050
Zhang Yanfei20fc02b2013-07-08 15:59:58 -07002051static void clear_vm_uninitialized_flag(struct vm_struct *vm)
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002052{
Joonsoo Kimd4033af2013-04-29 15:07:35 -07002053 /*
Zhang Yanfei20fc02b2013-07-08 15:59:58 -07002054 * Before removing VM_UNINITIALIZED,
Joonsoo Kimd4033af2013-04-29 15:07:35 -07002055 * we should make sure that vm has proper values.
2056 * Pair with smp_rmb() in show_numa_info().
2057 */
2058 smp_wmb();
Zhang Yanfei20fc02b2013-07-08 15:59:58 -07002059 vm->flags &= ~VM_UNINITIALIZED;
Tejun Heocf88c792009-08-14 15:00:52 +09002060}
2061
Nick Piggindb64fe02008-10-18 20:27:03 -07002062static struct vm_struct *__get_vm_area_node(unsigned long size,
David Miller2dca6992009-09-21 12:22:34 -07002063 unsigned long align, unsigned long flags, unsigned long start,
Marek Szyprowski5e6cafc2012-04-13 12:32:09 +02002064 unsigned long end, int node, gfp_t gfp_mask, const void *caller)
Nick Piggindb64fe02008-10-18 20:27:03 -07002065{
Kautuk Consul00065262011-12-19 17:12:04 -08002066 struct vmap_area *va;
Nick Piggindb64fe02008-10-18 20:27:03 -07002067 struct vm_struct *area;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002068
Giridhar Pemmasani52fd24c2006-10-28 10:38:34 -07002069 BUG_ON(in_interrupt());
Linus Torvalds1da177e2005-04-16 15:20:36 -07002070 size = PAGE_ALIGN(size);
OGAWA Hirofumi31be8302006-11-16 01:19:29 -08002071 if (unlikely(!size))
2072 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002073
zijun_hu252e5c62016-10-07 16:57:26 -07002074 if (flags & VM_IOREMAP)
2075 align = 1ul << clamp_t(int, get_count_order_long(size),
2076 PAGE_SHIFT, IOREMAP_MAX_ORDER);
2077
Tejun Heocf88c792009-08-14 15:00:52 +09002078 area = kzalloc_node(sizeof(*area), gfp_mask & GFP_RECLAIM_MASK, node);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002079 if (unlikely(!area))
2080 return NULL;
2081
Andrey Ryabinin71394fe2015-02-13 14:40:03 -08002082 if (!(flags & VM_NO_GUARD))
2083 size += PAGE_SIZE;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002084
Nick Piggindb64fe02008-10-18 20:27:03 -07002085 va = alloc_vmap_area(size, align, start, end, node, gfp_mask);
2086 if (IS_ERR(va)) {
2087 kfree(area);
2088 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002089 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002090
Zhang Yanfeid82b1d82013-07-03 15:04:47 -07002091 setup_vmalloc_vm(area, va, flags, caller);
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002092
Linus Torvalds1da177e2005-04-16 15:20:36 -07002093 return area;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002094}
2095
Christoph Lameter930fc452005-10-29 18:15:41 -07002096struct vm_struct *__get_vm_area(unsigned long size, unsigned long flags,
2097 unsigned long start, unsigned long end)
2098{
David Rientjes00ef2d22013-02-22 16:35:36 -08002099 return __get_vm_area_node(size, 1, flags, start, end, NUMA_NO_NODE,
2100 GFP_KERNEL, __builtin_return_address(0));
Christoph Lameter930fc452005-10-29 18:15:41 -07002101}
Rusty Russell5992b6d2007-07-19 01:49:21 -07002102EXPORT_SYMBOL_GPL(__get_vm_area);
Christoph Lameter930fc452005-10-29 18:15:41 -07002103
Benjamin Herrenschmidtc2968612009-02-18 14:48:12 -08002104struct vm_struct *__get_vm_area_caller(unsigned long size, unsigned long flags,
2105 unsigned long start, unsigned long end,
Marek Szyprowski5e6cafc2012-04-13 12:32:09 +02002106 const void *caller)
Benjamin Herrenschmidtc2968612009-02-18 14:48:12 -08002107{
David Rientjes00ef2d22013-02-22 16:35:36 -08002108 return __get_vm_area_node(size, 1, flags, start, end, NUMA_NO_NODE,
2109 GFP_KERNEL, caller);
Benjamin Herrenschmidtc2968612009-02-18 14:48:12 -08002110}
2111
Linus Torvalds1da177e2005-04-16 15:20:36 -07002112/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002113 * get_vm_area - reserve a contiguous kernel virtual area
2114 * @size: size of the area
2115 * @flags: %VM_IOREMAP for I/O mappings or VM_ALLOC
Linus Torvalds1da177e2005-04-16 15:20:36 -07002116 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002117 * Search an area of @size in the kernel virtual mapping area,
2118 * and reserved it for out purposes. Returns the area descriptor
2119 * on success or %NULL on failure.
Mike Rapoporta862f682019-03-05 15:48:42 -08002120 *
2121 * Return: the area descriptor on success or %NULL on failure.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002122 */
2123struct vm_struct *get_vm_area(unsigned long size, unsigned long flags)
2124{
David Miller2dca6992009-09-21 12:22:34 -07002125 return __get_vm_area_node(size, 1, flags, VMALLOC_START, VMALLOC_END,
David Rientjes00ef2d22013-02-22 16:35:36 -08002126 NUMA_NO_NODE, GFP_KERNEL,
2127 __builtin_return_address(0));
Christoph Lameter23016962008-04-28 02:12:42 -07002128}
2129
2130struct vm_struct *get_vm_area_caller(unsigned long size, unsigned long flags,
Marek Szyprowski5e6cafc2012-04-13 12:32:09 +02002131 const void *caller)
Christoph Lameter23016962008-04-28 02:12:42 -07002132{
David Miller2dca6992009-09-21 12:22:34 -07002133 return __get_vm_area_node(size, 1, flags, VMALLOC_START, VMALLOC_END,
David Rientjes00ef2d22013-02-22 16:35:36 -08002134 NUMA_NO_NODE, GFP_KERNEL, caller);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002135}
2136
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02002137/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002138 * find_vm_area - find a continuous kernel virtual area
2139 * @addr: base address
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02002140 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002141 * Search for the kernel VM area starting at @addr, and return it.
2142 * It is up to the caller to do all required locking to keep the returned
2143 * pointer valid.
Mike Rapoporta862f682019-03-05 15:48:42 -08002144 *
2145 * Return: pointer to the found area or %NULL on faulure
Marek Szyprowskie9da6e92012-07-30 09:11:33 +02002146 */
2147struct vm_struct *find_vm_area(const void *addr)
Nick Piggin83342312006-06-23 02:03:20 -07002148{
Nick Piggindb64fe02008-10-18 20:27:03 -07002149 struct vmap_area *va;
Nick Piggin83342312006-06-23 02:03:20 -07002150
Nick Piggindb64fe02008-10-18 20:27:03 -07002151 va = find_vmap_area((unsigned long)addr);
Pengfei Li688fcbf2019-09-23 15:36:39 -07002152 if (!va)
2153 return NULL;
Nick Piggin83342312006-06-23 02:03:20 -07002154
Pengfei Li688fcbf2019-09-23 15:36:39 -07002155 return va->vm;
Andi Kleen7856dfe2005-05-20 14:27:57 -07002156}
2157
Linus Torvalds1da177e2005-04-16 15:20:36 -07002158/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002159 * remove_vm_area - find and remove a continuous kernel virtual area
2160 * @addr: base address
Linus Torvalds1da177e2005-04-16 15:20:36 -07002161 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002162 * Search for the kernel VM area starting at @addr, and remove it.
2163 * This function returns the found VM area, but using it is NOT safe
2164 * on SMP machines, except for its size or flags.
Mike Rapoporta862f682019-03-05 15:48:42 -08002165 *
2166 * Return: pointer to the found area or %NULL on faulure
Linus Torvalds1da177e2005-04-16 15:20:36 -07002167 */
Christoph Lameterb3bdda02008-02-04 22:28:32 -08002168struct vm_struct *remove_vm_area(const void *addr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002169{
Nick Piggindb64fe02008-10-18 20:27:03 -07002170 struct vmap_area *va;
2171
Christoph Hellwig5803ed22016-12-12 16:44:20 -08002172 might_sleep();
2173
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07002174 spin_lock(&vmap_area_lock);
2175 va = __find_vmap_area((unsigned long)addr);
Pengfei Li688fcbf2019-09-23 15:36:39 -07002176 if (va && va->vm) {
Minchan Kimdb1aeca2012-01-10 15:08:39 -08002177 struct vm_struct *vm = va->vm;
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002178
Joonsoo Kimc69480a2013-04-29 15:07:30 -07002179 va->vm = NULL;
Joonsoo Kimc69480a2013-04-29 15:07:30 -07002180 spin_unlock(&vmap_area_lock);
2181
Andrey Ryabinina5af5aa2015-03-12 16:26:11 -07002182 kasan_free_shadow(vm);
KAMEZAWA Hiroyukidd32c272009-09-21 17:02:32 -07002183 free_unmap_vmap_area(va);
KAMEZAWA Hiroyukidd32c272009-09-21 17:02:32 -07002184
Nick Piggindb64fe02008-10-18 20:27:03 -07002185 return vm;
2186 }
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07002187
2188 spin_unlock(&vmap_area_lock);
Nick Piggindb64fe02008-10-18 20:27:03 -07002189 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002190}
2191
Rick Edgecombe868b1042019-04-25 17:11:36 -07002192static inline void set_area_direct_map(const struct vm_struct *area,
2193 int (*set_direct_map)(struct page *page))
2194{
2195 int i;
2196
2197 for (i = 0; i < area->nr_pages; i++)
2198 if (page_address(area->pages[i]))
2199 set_direct_map(area->pages[i]);
2200}
2201
2202/* Handle removing and resetting vm mappings related to the vm_struct. */
2203static void vm_remove_mappings(struct vm_struct *area, int deallocate_pages)
2204{
Rick Edgecombe868b1042019-04-25 17:11:36 -07002205 unsigned long start = ULONG_MAX, end = 0;
2206 int flush_reset = area->flags & VM_FLUSH_RESET_PERMS;
Rick Edgecombe31e67342019-05-27 14:10:58 -07002207 int flush_dmap = 0;
Rick Edgecombe868b1042019-04-25 17:11:36 -07002208 int i;
2209
Rick Edgecombe868b1042019-04-25 17:11:36 -07002210 remove_vm_area(area->addr);
2211
2212 /* If this is not VM_FLUSH_RESET_PERMS memory, no need for the below. */
2213 if (!flush_reset)
2214 return;
2215
2216 /*
2217 * If not deallocating pages, just do the flush of the VM area and
2218 * return.
2219 */
2220 if (!deallocate_pages) {
2221 vm_unmap_aliases();
2222 return;
2223 }
2224
2225 /*
2226 * If execution gets here, flush the vm mapping and reset the direct
2227 * map. Find the start and end range of the direct mappings to make sure
2228 * the vm_unmap_aliases() flush includes the direct map.
2229 */
2230 for (i = 0; i < area->nr_pages; i++) {
Rick Edgecombe8e41f872019-05-27 14:10:57 -07002231 unsigned long addr = (unsigned long)page_address(area->pages[i]);
2232 if (addr) {
Rick Edgecombe868b1042019-04-25 17:11:36 -07002233 start = min(addr, start);
Rick Edgecombe8e41f872019-05-27 14:10:57 -07002234 end = max(addr + PAGE_SIZE, end);
Rick Edgecombe31e67342019-05-27 14:10:58 -07002235 flush_dmap = 1;
Rick Edgecombe868b1042019-04-25 17:11:36 -07002236 }
2237 }
2238
2239 /*
2240 * Set direct map to something invalid so that it won't be cached if
2241 * there are any accesses after the TLB flush, then flush the TLB and
2242 * reset the direct map permissions to the default.
2243 */
2244 set_area_direct_map(area, set_direct_map_invalid_noflush);
Rick Edgecombe31e67342019-05-27 14:10:58 -07002245 _vm_unmap_aliases(start, end, flush_dmap);
Rick Edgecombe868b1042019-04-25 17:11:36 -07002246 set_area_direct_map(area, set_direct_map_default_noflush);
2247}
2248
Christoph Lameterb3bdda02008-02-04 22:28:32 -08002249static void __vunmap(const void *addr, int deallocate_pages)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002250{
2251 struct vm_struct *area;
2252
2253 if (!addr)
2254 return;
2255
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07002256 if (WARN(!PAGE_ALIGNED(addr), "Trying to vfree() bad address (%p)\n",
Dan Carpenterab15d9b2013-07-08 15:59:53 -07002257 addr))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002258 return;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002259
Liviu Dudau6ade2032019-03-05 15:42:54 -08002260 area = find_vm_area(addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002261 if (unlikely(!area)) {
Arjan van de Ven4c8573e2008-07-25 19:45:37 -07002262 WARN(1, KERN_ERR "Trying to vfree() nonexistent vm area (%p)\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -07002263 addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002264 return;
2265 }
2266
Chintan Pandya05e3ff92018-06-07 17:06:53 -07002267 debug_check_no_locks_freed(area->addr, get_vm_area_size(area));
2268 debug_check_no_obj_freed(area->addr, get_vm_area_size(area));
Ingo Molnar9a11b49a2006-07-03 00:24:33 -07002269
Rick Edgecombe868b1042019-04-25 17:11:36 -07002270 vm_remove_mappings(area, deallocate_pages);
2271
Linus Torvalds1da177e2005-04-16 15:20:36 -07002272 if (deallocate_pages) {
2273 int i;
2274
2275 for (i = 0; i < area->nr_pages; i++) {
Christoph Lameterbf53d6f2008-02-04 22:28:34 -08002276 struct page *page = area->pages[i];
2277
2278 BUG_ON(!page);
Vladimir Davydov49491482016-07-26 15:24:24 -07002279 __free_pages(page, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002280 }
Roman Gushchin97105f02019-07-11 21:00:13 -07002281 atomic_long_sub(area->nr_pages, &nr_vmalloc_pages);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002282
David Rientjes244d63e2016-01-14 15:19:35 -08002283 kvfree(area->pages);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002284 }
2285
2286 kfree(area);
2287 return;
2288}
Andrey Ryabininbf22e372016-12-12 16:44:10 -08002289
2290static inline void __vfree_deferred(const void *addr)
2291{
2292 /*
2293 * Use raw_cpu_ptr() because this can be called from preemptible
2294 * context. Preemption is absolutely fine here, because the llist_add()
2295 * implementation is lockless, so it works even if we are adding to
2296 * nother cpu's list. schedule_work() should be fine with this too.
2297 */
2298 struct vfree_deferred *p = raw_cpu_ptr(&vfree_deferred);
2299
2300 if (llist_add((struct llist_node *)addr, &p->list))
2301 schedule_work(&p->wq);
2302}
2303
2304/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002305 * vfree_atomic - release memory allocated by vmalloc()
2306 * @addr: memory base address
Andrey Ryabininbf22e372016-12-12 16:44:10 -08002307 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002308 * This one is just like vfree() but can be called in any atomic context
2309 * except NMIs.
Andrey Ryabininbf22e372016-12-12 16:44:10 -08002310 */
2311void vfree_atomic(const void *addr)
2312{
2313 BUG_ON(in_nmi());
2314
2315 kmemleak_free(addr);
2316
2317 if (!addr)
2318 return;
2319 __vfree_deferred(addr);
2320}
2321
Roman Penyaevc67dc622019-03-05 15:43:24 -08002322static void __vfree(const void *addr)
2323{
2324 if (unlikely(in_interrupt()))
2325 __vfree_deferred(addr);
2326 else
2327 __vunmap(addr, 1);
2328}
2329
Linus Torvalds1da177e2005-04-16 15:20:36 -07002330/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002331 * vfree - release memory allocated by vmalloc()
2332 * @addr: memory base address
Linus Torvalds1da177e2005-04-16 15:20:36 -07002333 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002334 * Free the virtually continuous memory area starting at @addr, as
2335 * obtained from vmalloc(), vmalloc_32() or __vmalloc(). If @addr is
2336 * NULL, no operation is performed.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002337 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002338 * Must not be called in NMI context (strictly speaking, only if we don't
2339 * have CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG, but making the calling
2340 * conventions for vfree() arch-depenedent would be a really bad idea)
Andrew Mortonc9fcee52013-05-07 16:18:18 -07002341 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002342 * May sleep if called *not* from interrupt context.
Andrey Ryabinin3ca4ea32018-10-26 15:07:03 -07002343 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002344 * NOTE: assumes that the object at @addr has a size >= sizeof(llist_node)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002345 */
Christoph Lameterb3bdda02008-02-04 22:28:32 -08002346void vfree(const void *addr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002347{
Al Viro32fcfd42013-03-10 20:14:08 -04002348 BUG_ON(in_nmi());
Catalin Marinas89219d32009-06-11 13:23:19 +01002349
2350 kmemleak_free(addr);
2351
Andrey Ryabinina8dda162018-10-26 15:07:07 -07002352 might_sleep_if(!in_interrupt());
2353
Al Viro32fcfd42013-03-10 20:14:08 -04002354 if (!addr)
2355 return;
Roman Penyaevc67dc622019-03-05 15:43:24 -08002356
2357 __vfree(addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002358}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002359EXPORT_SYMBOL(vfree);
2360
2361/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002362 * vunmap - release virtual mapping obtained by vmap()
2363 * @addr: memory base address
Linus Torvalds1da177e2005-04-16 15:20:36 -07002364 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002365 * Free the virtually contiguous memory area starting at @addr,
2366 * which was created from the page array passed to vmap().
Linus Torvalds1da177e2005-04-16 15:20:36 -07002367 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002368 * Must not be called in interrupt context.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002369 */
Christoph Lameterb3bdda02008-02-04 22:28:32 -08002370void vunmap(const void *addr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002371{
2372 BUG_ON(in_interrupt());
Peter Zijlstra34754b62009-02-25 16:04:03 +01002373 might_sleep();
Al Viro32fcfd42013-03-10 20:14:08 -04002374 if (addr)
2375 __vunmap(addr, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002376}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002377EXPORT_SYMBOL(vunmap);
2378
2379/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002380 * vmap - map an array of pages into virtually contiguous space
2381 * @pages: array of page pointers
2382 * @count: number of pages to map
2383 * @flags: vm_area->flags
2384 * @prot: page protection for the mapping
Linus Torvalds1da177e2005-04-16 15:20:36 -07002385 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002386 * Maps @count pages from @pages into contiguous kernel virtual
2387 * space.
Mike Rapoporta862f682019-03-05 15:48:42 -08002388 *
2389 * Return: the address of the area or %NULL on failure
Linus Torvalds1da177e2005-04-16 15:20:36 -07002390 */
2391void *vmap(struct page **pages, unsigned int count,
Mike Rapoport92eac162019-03-05 15:48:36 -08002392 unsigned long flags, pgprot_t prot)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002393{
2394 struct vm_struct *area;
Guillermo Julián Moreno65ee03c2016-06-03 14:55:33 -07002395 unsigned long size; /* In bytes */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002396
Peter Zijlstra34754b62009-02-25 16:04:03 +01002397 might_sleep();
2398
Arun KSca79b0c2018-12-28 00:34:29 -08002399 if (count > totalram_pages())
Linus Torvalds1da177e2005-04-16 15:20:36 -07002400 return NULL;
2401
Guillermo Julián Moreno65ee03c2016-06-03 14:55:33 -07002402 size = (unsigned long)count << PAGE_SHIFT;
2403 area = get_vm_area_caller(size, flags, __builtin_return_address(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002404 if (!area)
2405 return NULL;
Christoph Lameter23016962008-04-28 02:12:42 -07002406
WANG Chaof6f8ed42014-08-06 16:06:58 -07002407 if (map_vm_area(area, prot, pages)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002408 vunmap(area->addr);
2409 return NULL;
2410 }
2411
2412 return area->addr;
2413}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002414EXPORT_SYMBOL(vmap);
2415
Michal Hocko8594a212017-05-12 15:46:41 -07002416static void *__vmalloc_node(unsigned long size, unsigned long align,
2417 gfp_t gfp_mask, pgprot_t prot,
2418 int node, const void *caller);
Adrian Bunke31d9eb2008-02-04 22:29:09 -08002419static void *__vmalloc_area_node(struct vm_struct *area, gfp_t gfp_mask,
Wanpeng Li3722e132013-11-12 15:07:29 -08002420 pgprot_t prot, int node)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002421{
2422 struct page **pages;
2423 unsigned int nr_pages, array_size, i;
David Rientjes930f0362014-08-06 16:06:28 -07002424 const gfp_t nested_gfp = (gfp_mask & GFP_RECLAIM_MASK) | __GFP_ZERO;
Laura Abbott704b8622017-08-18 15:16:27 -07002425 const gfp_t alloc_mask = gfp_mask | __GFP_NOWARN;
2426 const gfp_t highmem_mask = (gfp_mask & (GFP_DMA | GFP_DMA32)) ?
2427 0 :
2428 __GFP_HIGHMEM;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002429
Wanpeng Li762216a2013-09-11 14:22:42 -07002430 nr_pages = get_vm_area_size(area) >> PAGE_SHIFT;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002431 array_size = (nr_pages * sizeof(struct page *));
2432
Linus Torvalds1da177e2005-04-16 15:20:36 -07002433 /* Please note that the recursion is strictly bounded. */
Jan Kiszka8757d5f2006-07-14 00:23:56 -07002434 if (array_size > PAGE_SIZE) {
Laura Abbott704b8622017-08-18 15:16:27 -07002435 pages = __vmalloc_node(array_size, 1, nested_gfp|highmem_mask,
Wanpeng Li3722e132013-11-12 15:07:29 -08002436 PAGE_KERNEL, node, area->caller);
Andrew Morton286e1ea2006-10-17 00:09:57 -07002437 } else {
Jan Beulich976d6df2009-12-14 17:58:39 -08002438 pages = kmalloc_node(array_size, nested_gfp, node);
Andrew Morton286e1ea2006-10-17 00:09:57 -07002439 }
Austin Kim7ea362422019-09-23 15:36:42 -07002440
2441 if (!pages) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002442 remove_vm_area(area->addr);
2443 kfree(area);
2444 return NULL;
2445 }
Linus Torvalds1da177e2005-04-16 15:20:36 -07002446
Austin Kim7ea362422019-09-23 15:36:42 -07002447 area->pages = pages;
2448 area->nr_pages = nr_pages;
2449
Linus Torvalds1da177e2005-04-16 15:20:36 -07002450 for (i = 0; i < area->nr_pages; i++) {
Christoph Lameterbf53d6f2008-02-04 22:28:34 -08002451 struct page *page;
2452
Jianguo Wu4b909512013-11-12 15:07:11 -08002453 if (node == NUMA_NO_NODE)
Laura Abbott704b8622017-08-18 15:16:27 -07002454 page = alloc_page(alloc_mask|highmem_mask);
Christoph Lameter930fc452005-10-29 18:15:41 -07002455 else
Laura Abbott704b8622017-08-18 15:16:27 -07002456 page = alloc_pages_node(node, alloc_mask|highmem_mask, 0);
Christoph Lameterbf53d6f2008-02-04 22:28:34 -08002457
2458 if (unlikely(!page)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -07002459 /* Successfully allocated i pages, free them in __vunmap() */
2460 area->nr_pages = i;
Roman Gushchin97105f02019-07-11 21:00:13 -07002461 atomic_long_add(area->nr_pages, &nr_vmalloc_pages);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002462 goto fail;
2463 }
Christoph Lameterbf53d6f2008-02-04 22:28:34 -08002464 area->pages[i] = page;
Liu Xiangdcf61ff2019-11-30 17:54:30 -08002465 if (gfpflags_allow_blocking(gfp_mask))
Eric Dumazet660654f2014-08-06 16:06:25 -07002466 cond_resched();
Linus Torvalds1da177e2005-04-16 15:20:36 -07002467 }
Roman Gushchin97105f02019-07-11 21:00:13 -07002468 atomic_long_add(area->nr_pages, &nr_vmalloc_pages);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002469
WANG Chaof6f8ed42014-08-06 16:06:58 -07002470 if (map_vm_area(area, prot, pages))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002471 goto fail;
2472 return area->addr;
2473
2474fail:
Michal Hockoa8e99252017-02-22 15:46:10 -08002475 warn_alloc(gfp_mask, NULL,
Michal Hocko7877cdc2016-10-07 17:01:55 -07002476 "vmalloc: allocation failure, allocated %ld of %ld bytes",
Dave Hansen22943ab2011-05-24 17:12:18 -07002477 (area->nr_pages*PAGE_SIZE), area->size);
Roman Penyaevc67dc622019-03-05 15:43:24 -08002478 __vfree(area->addr);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002479 return NULL;
2480}
2481
David Rientjesd0a21262011-01-13 15:46:02 -08002482/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002483 * __vmalloc_node_range - allocate virtually contiguous memory
2484 * @size: allocation size
2485 * @align: desired alignment
2486 * @start: vm area range start
2487 * @end: vm area range end
2488 * @gfp_mask: flags for the page level allocator
2489 * @prot: protection mask for the allocated pages
2490 * @vm_flags: additional vm area flags (e.g. %VM_NO_GUARD)
2491 * @node: node to use for allocation or NUMA_NO_NODE
2492 * @caller: caller's return address
David Rientjesd0a21262011-01-13 15:46:02 -08002493 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002494 * Allocate enough pages to cover @size from the page level
2495 * allocator with @gfp_mask flags. Map them into contiguous
2496 * kernel virtual space, using a pagetable protection of @prot.
Mike Rapoporta862f682019-03-05 15:48:42 -08002497 *
2498 * Return: the address of the area or %NULL on failure
David Rientjesd0a21262011-01-13 15:46:02 -08002499 */
2500void *__vmalloc_node_range(unsigned long size, unsigned long align,
2501 unsigned long start, unsigned long end, gfp_t gfp_mask,
Andrey Ryabinincb9e3c22015-02-13 14:40:07 -08002502 pgprot_t prot, unsigned long vm_flags, int node,
2503 const void *caller)
Christoph Lameter930fc452005-10-29 18:15:41 -07002504{
David Rientjesd0a21262011-01-13 15:46:02 -08002505 struct vm_struct *area;
2506 void *addr;
2507 unsigned long real_size = size;
2508
2509 size = PAGE_ALIGN(size);
Arun KSca79b0c2018-12-28 00:34:29 -08002510 if (!size || (size >> PAGE_SHIFT) > totalram_pages())
Joe Perchesde7d2b52011-10-31 17:08:48 -07002511 goto fail;
David Rientjesd0a21262011-01-13 15:46:02 -08002512
Andrey Ryabinincb9e3c22015-02-13 14:40:07 -08002513 area = __get_vm_area_node(size, align, VM_ALLOC | VM_UNINITIALIZED |
2514 vm_flags, start, end, node, gfp_mask, caller);
David Rientjesd0a21262011-01-13 15:46:02 -08002515 if (!area)
Joe Perchesde7d2b52011-10-31 17:08:48 -07002516 goto fail;
David Rientjesd0a21262011-01-13 15:46:02 -08002517
Wanpeng Li3722e132013-11-12 15:07:29 -08002518 addr = __vmalloc_area_node(area, gfp_mask, prot, node);
Mel Gorman1368edf2011-12-08 14:34:30 -08002519 if (!addr)
Wanpeng Lib82225f32013-11-12 15:07:33 -08002520 return NULL;
Catalin Marinas89219d32009-06-11 13:23:19 +01002521
2522 /*
Zhang Yanfei20fc02b2013-07-08 15:59:58 -07002523 * In this function, newly allocated vm_struct has VM_UNINITIALIZED
2524 * flag. It means that vm_struct is not fully initialized.
Joonsoo Kim4341fa42013-04-29 15:07:39 -07002525 * Now, it is fully initialized, so remove this flag here.
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002526 */
Zhang Yanfei20fc02b2013-07-08 15:59:58 -07002527 clear_vm_uninitialized_flag(area);
Mitsuo Hayasakaf5252e02011-10-31 17:08:13 -07002528
Catalin Marinas94f4a162017-07-06 15:40:22 -07002529 kmemleak_vmalloc(area, size, gfp_mask);
Catalin Marinas89219d32009-06-11 13:23:19 +01002530
2531 return addr;
Joe Perchesde7d2b52011-10-31 17:08:48 -07002532
2533fail:
Michal Hockoa8e99252017-02-22 15:46:10 -08002534 warn_alloc(gfp_mask, NULL,
Michal Hocko7877cdc2016-10-07 17:01:55 -07002535 "vmalloc: allocation failure: %lu bytes", real_size);
Joe Perchesde7d2b52011-10-31 17:08:48 -07002536 return NULL;
Christoph Lameter930fc452005-10-29 18:15:41 -07002537}
2538
Uladzislau Rezki (Sony)153178e2019-03-05 15:43:30 -08002539/*
2540 * This is only for performance analysis of vmalloc and stress purpose.
2541 * It is required by vmalloc test module, therefore do not use it other
2542 * than that.
2543 */
2544#ifdef CONFIG_TEST_VMALLOC_MODULE
2545EXPORT_SYMBOL_GPL(__vmalloc_node_range);
2546#endif
2547
Linus Torvalds1da177e2005-04-16 15:20:36 -07002548/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002549 * __vmalloc_node - allocate virtually contiguous memory
2550 * @size: allocation size
2551 * @align: desired alignment
2552 * @gfp_mask: flags for the page level allocator
2553 * @prot: protection mask for the allocated pages
2554 * @node: node to use for allocation or NUMA_NO_NODE
2555 * @caller: caller's return address
Linus Torvalds1da177e2005-04-16 15:20:36 -07002556 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002557 * Allocate enough pages to cover @size from the page level
2558 * allocator with @gfp_mask flags. Map them into contiguous
2559 * kernel virtual space, using a pagetable protection of @prot.
Michal Hockoa7c3e902017-05-08 15:57:09 -07002560 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002561 * Reclaim modifiers in @gfp_mask - __GFP_NORETRY, __GFP_RETRY_MAYFAIL
2562 * and __GFP_NOFAIL are not supported
Michal Hockoa7c3e902017-05-08 15:57:09 -07002563 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002564 * Any use of gfp flags outside of GFP_KERNEL should be consulted
2565 * with mm people.
Mike Rapoporta862f682019-03-05 15:48:42 -08002566 *
2567 * Return: pointer to the allocated memory or %NULL on error
Linus Torvalds1da177e2005-04-16 15:20:36 -07002568 */
Michal Hocko8594a212017-05-12 15:46:41 -07002569static void *__vmalloc_node(unsigned long size, unsigned long align,
David Miller2dca6992009-09-21 12:22:34 -07002570 gfp_t gfp_mask, pgprot_t prot,
Marek Szyprowski5e6cafc2012-04-13 12:32:09 +02002571 int node, const void *caller)
Linus Torvalds1da177e2005-04-16 15:20:36 -07002572{
David Rientjesd0a21262011-01-13 15:46:02 -08002573 return __vmalloc_node_range(size, align, VMALLOC_START, VMALLOC_END,
Andrey Ryabinincb9e3c22015-02-13 14:40:07 -08002574 gfp_mask, prot, 0, node, caller);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002575}
2576
Christoph Lameter930fc452005-10-29 18:15:41 -07002577void *__vmalloc(unsigned long size, gfp_t gfp_mask, pgprot_t prot)
2578{
David Rientjes00ef2d22013-02-22 16:35:36 -08002579 return __vmalloc_node(size, 1, gfp_mask, prot, NUMA_NO_NODE,
Christoph Lameter23016962008-04-28 02:12:42 -07002580 __builtin_return_address(0));
Christoph Lameter930fc452005-10-29 18:15:41 -07002581}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002582EXPORT_SYMBOL(__vmalloc);
2583
Michal Hocko8594a212017-05-12 15:46:41 -07002584static inline void *__vmalloc_node_flags(unsigned long size,
2585 int node, gfp_t flags)
2586{
2587 return __vmalloc_node(size, 1, flags, PAGE_KERNEL,
2588 node, __builtin_return_address(0));
2589}
2590
2591
2592void *__vmalloc_node_flags_caller(unsigned long size, int node, gfp_t flags,
2593 void *caller)
2594{
2595 return __vmalloc_node(size, 1, flags, PAGE_KERNEL, node, caller);
2596}
2597
Linus Torvalds1da177e2005-04-16 15:20:36 -07002598/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002599 * vmalloc - allocate virtually contiguous memory
2600 * @size: allocation size
Linus Torvalds1da177e2005-04-16 15:20:36 -07002601 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002602 * Allocate enough pages to cover @size from the page level
2603 * allocator and map them into contiguous kernel virtual space.
2604 *
2605 * For tight control over page level allocator and protection flags
2606 * use __vmalloc() instead.
Mike Rapoporta862f682019-03-05 15:48:42 -08002607 *
2608 * Return: pointer to the allocated memory or %NULL on error
Linus Torvalds1da177e2005-04-16 15:20:36 -07002609 */
2610void *vmalloc(unsigned long size)
2611{
David Rientjes00ef2d22013-02-22 16:35:36 -08002612 return __vmalloc_node_flags(size, NUMA_NO_NODE,
Michal Hocko19809c22017-05-08 15:57:44 -07002613 GFP_KERNEL);
Linus Torvalds1da177e2005-04-16 15:20:36 -07002614}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002615EXPORT_SYMBOL(vmalloc);
2616
Christoph Lameter930fc452005-10-29 18:15:41 -07002617/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002618 * vzalloc - allocate virtually contiguous memory with zero fill
2619 * @size: allocation size
Dave Younge1ca7782010-10-26 14:22:06 -07002620 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002621 * Allocate enough pages to cover @size from the page level
2622 * allocator and map them into contiguous kernel virtual space.
2623 * The memory allocated is set to zero.
2624 *
2625 * For tight control over page level allocator and protection flags
2626 * use __vmalloc() instead.
Mike Rapoporta862f682019-03-05 15:48:42 -08002627 *
2628 * Return: pointer to the allocated memory or %NULL on error
Dave Younge1ca7782010-10-26 14:22:06 -07002629 */
2630void *vzalloc(unsigned long size)
2631{
David Rientjes00ef2d22013-02-22 16:35:36 -08002632 return __vmalloc_node_flags(size, NUMA_NO_NODE,
Michal Hocko19809c22017-05-08 15:57:44 -07002633 GFP_KERNEL | __GFP_ZERO);
Dave Younge1ca7782010-10-26 14:22:06 -07002634}
2635EXPORT_SYMBOL(vzalloc);
2636
2637/**
Rolf Eike Beeread04082006-09-27 01:50:13 -07002638 * vmalloc_user - allocate zeroed virtually contiguous memory for userspace
2639 * @size: allocation size
Nick Piggin83342312006-06-23 02:03:20 -07002640 *
Rolf Eike Beeread04082006-09-27 01:50:13 -07002641 * The resulting memory area is zeroed so it can be mapped to userspace
2642 * without leaking data.
Mike Rapoporta862f682019-03-05 15:48:42 -08002643 *
2644 * Return: pointer to the allocated memory or %NULL on error
Nick Piggin83342312006-06-23 02:03:20 -07002645 */
2646void *vmalloc_user(unsigned long size)
2647{
Roman Penyaevbc84c532019-03-05 15:43:27 -08002648 return __vmalloc_node_range(size, SHMLBA, VMALLOC_START, VMALLOC_END,
2649 GFP_KERNEL | __GFP_ZERO, PAGE_KERNEL,
2650 VM_USERMAP, NUMA_NO_NODE,
2651 __builtin_return_address(0));
Nick Piggin83342312006-06-23 02:03:20 -07002652}
2653EXPORT_SYMBOL(vmalloc_user);
2654
2655/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002656 * vmalloc_node - allocate memory on a specific node
2657 * @size: allocation size
2658 * @node: numa node
Christoph Lameter930fc452005-10-29 18:15:41 -07002659 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002660 * Allocate enough pages to cover @size from the page level
2661 * allocator and map them into contiguous kernel virtual space.
Christoph Lameter930fc452005-10-29 18:15:41 -07002662 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002663 * For tight control over page level allocator and protection flags
2664 * use __vmalloc() instead.
Mike Rapoporta862f682019-03-05 15:48:42 -08002665 *
2666 * Return: pointer to the allocated memory or %NULL on error
Christoph Lameter930fc452005-10-29 18:15:41 -07002667 */
2668void *vmalloc_node(unsigned long size, int node)
2669{
Michal Hocko19809c22017-05-08 15:57:44 -07002670 return __vmalloc_node(size, 1, GFP_KERNEL, PAGE_KERNEL,
Christoph Lameter23016962008-04-28 02:12:42 -07002671 node, __builtin_return_address(0));
Christoph Lameter930fc452005-10-29 18:15:41 -07002672}
2673EXPORT_SYMBOL(vmalloc_node);
2674
Dave Younge1ca7782010-10-26 14:22:06 -07002675/**
2676 * vzalloc_node - allocate memory on a specific node with zero fill
2677 * @size: allocation size
2678 * @node: numa node
2679 *
2680 * Allocate enough pages to cover @size from the page level
2681 * allocator and map them into contiguous kernel virtual space.
2682 * The memory allocated is set to zero.
2683 *
2684 * For tight control over page level allocator and protection flags
2685 * use __vmalloc_node() instead.
Mike Rapoporta862f682019-03-05 15:48:42 -08002686 *
2687 * Return: pointer to the allocated memory or %NULL on error
Dave Younge1ca7782010-10-26 14:22:06 -07002688 */
2689void *vzalloc_node(unsigned long size, int node)
2690{
2691 return __vmalloc_node_flags(size, node,
Michal Hocko19809c22017-05-08 15:57:44 -07002692 GFP_KERNEL | __GFP_ZERO);
Dave Younge1ca7782010-10-26 14:22:06 -07002693}
2694EXPORT_SYMBOL(vzalloc_node);
2695
Linus Torvalds1da177e2005-04-16 15:20:36 -07002696/**
Andrii Nakryikofc970222019-11-17 09:28:04 -08002697 * vmalloc_user_node_flags - allocate memory for userspace on a specific node
2698 * @size: allocation size
2699 * @node: numa node
2700 * @flags: flags for the page level allocator
2701 *
2702 * The resulting memory area is zeroed so it can be mapped to userspace
2703 * without leaking data.
2704 *
2705 * Return: pointer to the allocated memory or %NULL on error
2706 */
2707void *vmalloc_user_node_flags(unsigned long size, int node, gfp_t flags)
2708{
2709 return __vmalloc_node_range(size, SHMLBA, VMALLOC_START, VMALLOC_END,
2710 flags | __GFP_ZERO, PAGE_KERNEL,
2711 VM_USERMAP, node,
2712 __builtin_return_address(0));
2713}
2714EXPORT_SYMBOL(vmalloc_user_node_flags);
2715
2716/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002717 * vmalloc_exec - allocate virtually contiguous, executable memory
2718 * @size: allocation size
Linus Torvalds1da177e2005-04-16 15:20:36 -07002719 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002720 * Kernel-internal function to allocate enough pages to cover @size
2721 * the page level allocator and map them into contiguous and
2722 * executable kernel virtual space.
Linus Torvalds1da177e2005-04-16 15:20:36 -07002723 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002724 * For tight control over page level allocator and protection flags
2725 * use __vmalloc() instead.
Mike Rapoporta862f682019-03-05 15:48:42 -08002726 *
2727 * Return: pointer to the allocated memory or %NULL on error
Linus Torvalds1da177e2005-04-16 15:20:36 -07002728 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002729void *vmalloc_exec(unsigned long size)
2730{
Rick Edgecombe868b1042019-04-25 17:11:36 -07002731 return __vmalloc_node_range(size, 1, VMALLOC_START, VMALLOC_END,
2732 GFP_KERNEL, PAGE_KERNEL_EXEC, VM_FLUSH_RESET_PERMS,
2733 NUMA_NO_NODE, __builtin_return_address(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002734}
2735
Andi Kleen0d08e0d2007-05-02 19:27:12 +02002736#if defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA32)
Michal Hocko698d0832018-02-21 14:46:01 -08002737#define GFP_VMALLOC32 (GFP_DMA32 | GFP_KERNEL)
Andi Kleen0d08e0d2007-05-02 19:27:12 +02002738#elif defined(CONFIG_64BIT) && defined(CONFIG_ZONE_DMA)
Michal Hocko698d0832018-02-21 14:46:01 -08002739#define GFP_VMALLOC32 (GFP_DMA | GFP_KERNEL)
Andi Kleen0d08e0d2007-05-02 19:27:12 +02002740#else
Michal Hocko698d0832018-02-21 14:46:01 -08002741/*
2742 * 64b systems should always have either DMA or DMA32 zones. For others
2743 * GFP_DMA32 should do the right thing and use the normal zone.
2744 */
2745#define GFP_VMALLOC32 GFP_DMA32 | GFP_KERNEL
Andi Kleen0d08e0d2007-05-02 19:27:12 +02002746#endif
2747
Linus Torvalds1da177e2005-04-16 15:20:36 -07002748/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002749 * vmalloc_32 - allocate virtually contiguous memory (32bit addressable)
2750 * @size: allocation size
Linus Torvalds1da177e2005-04-16 15:20:36 -07002751 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002752 * Allocate enough 32bit PA addressable pages to cover @size from the
2753 * page level allocator and map them into contiguous kernel virtual space.
Mike Rapoporta862f682019-03-05 15:48:42 -08002754 *
2755 * Return: pointer to the allocated memory or %NULL on error
Linus Torvalds1da177e2005-04-16 15:20:36 -07002756 */
2757void *vmalloc_32(unsigned long size)
2758{
David Miller2dca6992009-09-21 12:22:34 -07002759 return __vmalloc_node(size, 1, GFP_VMALLOC32, PAGE_KERNEL,
David Rientjes00ef2d22013-02-22 16:35:36 -08002760 NUMA_NO_NODE, __builtin_return_address(0));
Linus Torvalds1da177e2005-04-16 15:20:36 -07002761}
Linus Torvalds1da177e2005-04-16 15:20:36 -07002762EXPORT_SYMBOL(vmalloc_32);
2763
Nick Piggin83342312006-06-23 02:03:20 -07002764/**
Rolf Eike Beeread04082006-09-27 01:50:13 -07002765 * vmalloc_32_user - allocate zeroed virtually contiguous 32bit memory
Mike Rapoport92eac162019-03-05 15:48:36 -08002766 * @size: allocation size
Rolf Eike Beeread04082006-09-27 01:50:13 -07002767 *
2768 * The resulting memory area is 32bit addressable and zeroed so it can be
2769 * mapped to userspace without leaking data.
Mike Rapoporta862f682019-03-05 15:48:42 -08002770 *
2771 * Return: pointer to the allocated memory or %NULL on error
Nick Piggin83342312006-06-23 02:03:20 -07002772 */
2773void *vmalloc_32_user(unsigned long size)
2774{
Roman Penyaevbc84c532019-03-05 15:43:27 -08002775 return __vmalloc_node_range(size, SHMLBA, VMALLOC_START, VMALLOC_END,
2776 GFP_VMALLOC32 | __GFP_ZERO, PAGE_KERNEL,
2777 VM_USERMAP, NUMA_NO_NODE,
2778 __builtin_return_address(0));
Nick Piggin83342312006-06-23 02:03:20 -07002779}
2780EXPORT_SYMBOL(vmalloc_32_user);
2781
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002782/*
2783 * small helper routine , copy contents to buf from addr.
2784 * If the page is not present, fill zero.
2785 */
2786
2787static int aligned_vread(char *buf, char *addr, unsigned long count)
2788{
2789 struct page *p;
2790 int copied = 0;
2791
2792 while (count) {
2793 unsigned long offset, length;
2794
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08002795 offset = offset_in_page(addr);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002796 length = PAGE_SIZE - offset;
2797 if (length > count)
2798 length = count;
2799 p = vmalloc_to_page(addr);
2800 /*
2801 * To do safe access to this _mapped_ area, we need
2802 * lock. But adding lock here means that we need to add
2803 * overhead of vmalloc()/vfree() calles for this _debug_
2804 * interface, rarely used. Instead of that, we'll use
2805 * kmap() and get small overhead in this access function.
2806 */
2807 if (p) {
2808 /*
2809 * we can expect USER0 is not used (see vread/vwrite's
2810 * function description)
2811 */
Cong Wang9b04c5f2011-11-25 23:14:39 +08002812 void *map = kmap_atomic(p);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002813 memcpy(buf, map + offset, length);
Cong Wang9b04c5f2011-11-25 23:14:39 +08002814 kunmap_atomic(map);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002815 } else
2816 memset(buf, 0, length);
2817
2818 addr += length;
2819 buf += length;
2820 copied += length;
2821 count -= length;
2822 }
2823 return copied;
2824}
2825
2826static int aligned_vwrite(char *buf, char *addr, unsigned long count)
2827{
2828 struct page *p;
2829 int copied = 0;
2830
2831 while (count) {
2832 unsigned long offset, length;
2833
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08002834 offset = offset_in_page(addr);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002835 length = PAGE_SIZE - offset;
2836 if (length > count)
2837 length = count;
2838 p = vmalloc_to_page(addr);
2839 /*
2840 * To do safe access to this _mapped_ area, we need
2841 * lock. But adding lock here means that we need to add
2842 * overhead of vmalloc()/vfree() calles for this _debug_
2843 * interface, rarely used. Instead of that, we'll use
2844 * kmap() and get small overhead in this access function.
2845 */
2846 if (p) {
2847 /*
2848 * we can expect USER0 is not used (see vread/vwrite's
2849 * function description)
2850 */
Cong Wang9b04c5f2011-11-25 23:14:39 +08002851 void *map = kmap_atomic(p);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002852 memcpy(map + offset, buf, length);
Cong Wang9b04c5f2011-11-25 23:14:39 +08002853 kunmap_atomic(map);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002854 }
2855 addr += length;
2856 buf += length;
2857 copied += length;
2858 count -= length;
2859 }
2860 return copied;
2861}
2862
2863/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002864 * vread() - read vmalloc area in a safe way.
2865 * @buf: buffer for reading data
2866 * @addr: vm address.
2867 * @count: number of bytes to be read.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002868 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002869 * This function checks that addr is a valid vmalloc'ed area, and
2870 * copy data from that area to a given buffer. If the given memory range
2871 * of [addr...addr+count) includes some valid address, data is copied to
2872 * proper area of @buf. If there are memory holes, they'll be zero-filled.
2873 * IOREMAP area is treated as memory hole and no copy is done.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002874 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002875 * If [addr...addr+count) doesn't includes any intersects with alive
2876 * vm_struct area, returns 0. @buf should be kernel's buffer.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002877 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002878 * Note: In usual ops, vread() is never necessary because the caller
2879 * should know vmalloc() area is valid and can use memcpy().
2880 * This is for routines which have to access vmalloc area without
Geert Uytterhoevend9009d62019-07-11 20:59:06 -07002881 * any information, as /dev/kmem.
Mike Rapoporta862f682019-03-05 15:48:42 -08002882 *
2883 * Return: number of bytes for which addr and buf should be increased
2884 * (same number as @count) or %0 if [addr...addr+count) doesn't
2885 * include any intersection with valid vmalloc area
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002886 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002887long vread(char *buf, char *addr, unsigned long count)
2888{
Joonsoo Kime81ce852013-04-29 15:07:32 -07002889 struct vmap_area *va;
2890 struct vm_struct *vm;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002891 char *vaddr, *buf_start = buf;
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002892 unsigned long buflen = count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002893 unsigned long n;
2894
2895 /* Don't allow overflow */
2896 if ((unsigned long) addr + count < count)
2897 count = -(unsigned long) addr;
2898
Joonsoo Kime81ce852013-04-29 15:07:32 -07002899 spin_lock(&vmap_area_lock);
2900 list_for_each_entry(va, &vmap_area_list, list) {
2901 if (!count)
2902 break;
2903
Pengfei Li688fcbf2019-09-23 15:36:39 -07002904 if (!va->vm)
Joonsoo Kime81ce852013-04-29 15:07:32 -07002905 continue;
2906
2907 vm = va->vm;
2908 vaddr = (char *) vm->addr;
Wanpeng Li762216a2013-09-11 14:22:42 -07002909 if (addr >= vaddr + get_vm_area_size(vm))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002910 continue;
2911 while (addr < vaddr) {
2912 if (count == 0)
2913 goto finished;
2914 *buf = '\0';
2915 buf++;
2916 addr++;
2917 count--;
2918 }
Wanpeng Li762216a2013-09-11 14:22:42 -07002919 n = vaddr + get_vm_area_size(vm) - addr;
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002920 if (n > count)
2921 n = count;
Joonsoo Kime81ce852013-04-29 15:07:32 -07002922 if (!(vm->flags & VM_IOREMAP))
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002923 aligned_vread(buf, addr, n);
2924 else /* IOREMAP area is treated as memory hole */
2925 memset(buf, 0, n);
2926 buf += n;
2927 addr += n;
2928 count -= n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002929 }
2930finished:
Joonsoo Kime81ce852013-04-29 15:07:32 -07002931 spin_unlock(&vmap_area_lock);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002932
2933 if (buf == buf_start)
2934 return 0;
2935 /* zero-fill memory holes */
2936 if (buf != buf_start + buflen)
2937 memset(buf, 0, buflen - (buf - buf_start));
2938
2939 return buflen;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002940}
2941
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002942/**
Mike Rapoport92eac162019-03-05 15:48:36 -08002943 * vwrite() - write vmalloc area in a safe way.
2944 * @buf: buffer for source data
2945 * @addr: vm address.
2946 * @count: number of bytes to be read.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002947 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002948 * This function checks that addr is a valid vmalloc'ed area, and
2949 * copy data from a buffer to the given addr. If specified range of
2950 * [addr...addr+count) includes some valid address, data is copied from
2951 * proper area of @buf. If there are memory holes, no copy to hole.
2952 * IOREMAP area is treated as memory hole and no copy is done.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002953 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002954 * If [addr...addr+count) doesn't includes any intersects with alive
2955 * vm_struct area, returns 0. @buf should be kernel's buffer.
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002956 *
Mike Rapoport92eac162019-03-05 15:48:36 -08002957 * Note: In usual ops, vwrite() is never necessary because the caller
2958 * should know vmalloc() area is valid and can use memcpy().
2959 * This is for routines which have to access vmalloc area without
Geert Uytterhoevend9009d62019-07-11 20:59:06 -07002960 * any information, as /dev/kmem.
Mike Rapoporta862f682019-03-05 15:48:42 -08002961 *
2962 * Return: number of bytes for which addr and buf should be
2963 * increased (same number as @count) or %0 if [addr...addr+count)
2964 * doesn't include any intersection with valid vmalloc area
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002965 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07002966long vwrite(char *buf, char *addr, unsigned long count)
2967{
Joonsoo Kime81ce852013-04-29 15:07:32 -07002968 struct vmap_area *va;
2969 struct vm_struct *vm;
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002970 char *vaddr;
2971 unsigned long n, buflen;
2972 int copied = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002973
2974 /* Don't allow overflow */
2975 if ((unsigned long) addr + count < count)
2976 count = -(unsigned long) addr;
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002977 buflen = count;
Linus Torvalds1da177e2005-04-16 15:20:36 -07002978
Joonsoo Kime81ce852013-04-29 15:07:32 -07002979 spin_lock(&vmap_area_lock);
2980 list_for_each_entry(va, &vmap_area_list, list) {
2981 if (!count)
2982 break;
2983
Pengfei Li688fcbf2019-09-23 15:36:39 -07002984 if (!va->vm)
Joonsoo Kime81ce852013-04-29 15:07:32 -07002985 continue;
2986
2987 vm = va->vm;
2988 vaddr = (char *) vm->addr;
Wanpeng Li762216a2013-09-11 14:22:42 -07002989 if (addr >= vaddr + get_vm_area_size(vm))
Linus Torvalds1da177e2005-04-16 15:20:36 -07002990 continue;
2991 while (addr < vaddr) {
2992 if (count == 0)
2993 goto finished;
2994 buf++;
2995 addr++;
2996 count--;
2997 }
Wanpeng Li762216a2013-09-11 14:22:42 -07002998 n = vaddr + get_vm_area_size(vm) - addr;
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07002999 if (n > count)
3000 n = count;
Joonsoo Kime81ce852013-04-29 15:07:32 -07003001 if (!(vm->flags & VM_IOREMAP)) {
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07003002 aligned_vwrite(buf, addr, n);
3003 copied++;
3004 }
3005 buf += n;
3006 addr += n;
3007 count -= n;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003008 }
3009finished:
Joonsoo Kime81ce852013-04-29 15:07:32 -07003010 spin_unlock(&vmap_area_lock);
KAMEZAWA Hiroyukid0107eb2009-09-21 17:02:34 -07003011 if (!copied)
3012 return 0;
3013 return buflen;
Linus Torvalds1da177e2005-04-16 15:20:36 -07003014}
Nick Piggin83342312006-06-23 02:03:20 -07003015
3016/**
Mike Rapoport92eac162019-03-05 15:48:36 -08003017 * remap_vmalloc_range_partial - map vmalloc pages to userspace
3018 * @vma: vma to cover
3019 * @uaddr: target user address to start at
3020 * @kaddr: virtual address of vmalloc kernel memory
3021 * @size: size of map area
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003022 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003023 * Returns: 0 for success, -Exxx on failure
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003024 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003025 * This function checks that @kaddr is a valid vmalloc'ed area,
3026 * and that it is big enough to cover the range starting at
3027 * @uaddr in @vma. Will return failure if that criteria isn't
3028 * met.
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003029 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003030 * Similar to remap_pfn_range() (see mm/memory.c)
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003031 */
3032int remap_vmalloc_range_partial(struct vm_area_struct *vma, unsigned long uaddr,
3033 void *kaddr, unsigned long size)
3034{
3035 struct vm_struct *area;
3036
3037 size = PAGE_ALIGN(size);
3038
3039 if (!PAGE_ALIGNED(uaddr) || !PAGE_ALIGNED(kaddr))
3040 return -EINVAL;
3041
3042 area = find_vm_area(kaddr);
3043 if (!area)
3044 return -EINVAL;
3045
Christoph Hellwigfe9041c2019-06-03 08:55:13 +02003046 if (!(area->flags & (VM_USERMAP | VM_DMA_COHERENT)))
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003047 return -EINVAL;
3048
Roman Penyaev401592d2019-03-05 15:43:20 -08003049 if (kaddr + size > area->addr + get_vm_area_size(area))
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003050 return -EINVAL;
3051
3052 do {
3053 struct page *page = vmalloc_to_page(kaddr);
3054 int ret;
3055
3056 ret = vm_insert_page(vma, uaddr, page);
3057 if (ret)
3058 return ret;
3059
3060 uaddr += PAGE_SIZE;
3061 kaddr += PAGE_SIZE;
3062 size -= PAGE_SIZE;
3063 } while (size > 0);
3064
3065 vma->vm_flags |= VM_DONTEXPAND | VM_DONTDUMP;
3066
3067 return 0;
3068}
3069EXPORT_SYMBOL(remap_vmalloc_range_partial);
3070
3071/**
Mike Rapoport92eac162019-03-05 15:48:36 -08003072 * remap_vmalloc_range - map vmalloc pages to userspace
3073 * @vma: vma to cover (map full range of vma)
3074 * @addr: vmalloc memory
3075 * @pgoff: number of pages into addr before first page to map
Randy Dunlap76824862008-03-19 17:00:40 -07003076 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003077 * Returns: 0 for success, -Exxx on failure
Nick Piggin83342312006-06-23 02:03:20 -07003078 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003079 * This function checks that addr is a valid vmalloc'ed area, and
3080 * that it is big enough to cover the vma. Will return failure if
3081 * that criteria isn't met.
Nick Piggin83342312006-06-23 02:03:20 -07003082 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003083 * Similar to remap_pfn_range() (see mm/memory.c)
Nick Piggin83342312006-06-23 02:03:20 -07003084 */
3085int remap_vmalloc_range(struct vm_area_struct *vma, void *addr,
3086 unsigned long pgoff)
3087{
HATAYAMA Daisukee69e9d4a2013-07-03 15:02:18 -07003088 return remap_vmalloc_range_partial(vma, vma->vm_start,
3089 addr + (pgoff << PAGE_SHIFT),
3090 vma->vm_end - vma->vm_start);
Nick Piggin83342312006-06-23 02:03:20 -07003091}
3092EXPORT_SYMBOL(remap_vmalloc_range);
3093
Christoph Hellwig1eeb66a2007-05-08 00:27:03 -07003094/*
3095 * Implement a stub for vmalloc_sync_all() if the architecture chose not to
3096 * have one.
Joerg Roedel3f8fd022019-07-19 20:46:52 +02003097 *
3098 * The purpose of this function is to make sure the vmalloc area
3099 * mappings are identical in all page-tables in the system.
Christoph Hellwig1eeb66a2007-05-08 00:27:03 -07003100 */
Gideon Israel Dsouza3b321232014-04-07 15:37:26 -07003101void __weak vmalloc_sync_all(void)
Christoph Hellwig1eeb66a2007-05-08 00:27:03 -07003102{
3103}
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003104
3105
Anshuman Khandual8b1e0f82019-07-11 20:58:43 -07003106static int f(pte_t *pte, unsigned long addr, void *data)
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003107{
David Vrabelcd129092011-09-29 16:53:32 +01003108 pte_t ***p = data;
3109
3110 if (p) {
3111 *(*p) = pte;
3112 (*p)++;
3113 }
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003114 return 0;
3115}
3116
3117/**
Mike Rapoport92eac162019-03-05 15:48:36 -08003118 * alloc_vm_area - allocate a range of kernel address space
3119 * @size: size of the area
3120 * @ptes: returns the PTEs for the address space
Randy Dunlap76824862008-03-19 17:00:40 -07003121 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003122 * Returns: NULL on failure, vm_struct on success
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003123 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003124 * This function reserves a range of kernel address space, and
3125 * allocates pagetables to map that range. No actual mappings
3126 * are created.
David Vrabelcd129092011-09-29 16:53:32 +01003127 *
Mike Rapoport92eac162019-03-05 15:48:36 -08003128 * If @ptes is non-NULL, pointers to the PTEs (in init_mm)
3129 * allocated for the VM area are returned.
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003130 */
David Vrabelcd129092011-09-29 16:53:32 +01003131struct vm_struct *alloc_vm_area(size_t size, pte_t **ptes)
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003132{
3133 struct vm_struct *area;
3134
Christoph Lameter23016962008-04-28 02:12:42 -07003135 area = get_vm_area_caller(size, VM_IOREMAP,
3136 __builtin_return_address(0));
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003137 if (area == NULL)
3138 return NULL;
3139
3140 /*
3141 * This ensures that page tables are constructed for this region
3142 * of kernel virtual address space and mapped into init_mm.
3143 */
3144 if (apply_to_page_range(&init_mm, (unsigned long)area->addr,
David Vrabelcd129092011-09-29 16:53:32 +01003145 size, f, ptes ? &ptes : NULL)) {
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003146 free_vm_area(area);
3147 return NULL;
3148 }
3149
Jeremy Fitzhardinge5f4352f2007-07-17 18:37:04 -07003150 return area;
3151}
3152EXPORT_SYMBOL_GPL(alloc_vm_area);
3153
3154void free_vm_area(struct vm_struct *area)
3155{
3156 struct vm_struct *ret;
3157 ret = remove_vm_area(area->addr);
3158 BUG_ON(ret != area);
3159 kfree(area);
3160}
3161EXPORT_SYMBOL_GPL(free_vm_area);
Christoph Lametera10aa572008-04-28 02:12:40 -07003162
Tejun Heo4f8b02b2010-09-03 18:22:47 +02003163#ifdef CONFIG_SMP
Tejun Heoca23e402009-08-14 15:00:52 +09003164static struct vmap_area *node_to_va(struct rb_node *n)
3165{
Geliang Tang4583e772017-02-22 15:41:54 -08003166 return rb_entry_safe(n, struct vmap_area, rb_node);
Tejun Heoca23e402009-08-14 15:00:52 +09003167}
3168
3169/**
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003170 * pvm_find_va_enclose_addr - find the vmap_area @addr belongs to
3171 * @addr: target address
Tejun Heoca23e402009-08-14 15:00:52 +09003172 *
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003173 * Returns: vmap_area if it is found. If there is no such area
3174 * the first highest(reverse order) vmap_area is returned
3175 * i.e. va->va_start < addr && va->va_end < addr or NULL
3176 * if there are no any areas before @addr.
Tejun Heoca23e402009-08-14 15:00:52 +09003177 */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003178static struct vmap_area *
3179pvm_find_va_enclose_addr(unsigned long addr)
Tejun Heoca23e402009-08-14 15:00:52 +09003180{
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003181 struct vmap_area *va, *tmp;
3182 struct rb_node *n;
3183
3184 n = free_vmap_area_root.rb_node;
3185 va = NULL;
Tejun Heoca23e402009-08-14 15:00:52 +09003186
3187 while (n) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003188 tmp = rb_entry(n, struct vmap_area, rb_node);
3189 if (tmp->va_start <= addr) {
3190 va = tmp;
3191 if (tmp->va_end >= addr)
3192 break;
3193
Tejun Heoca23e402009-08-14 15:00:52 +09003194 n = n->rb_right;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003195 } else {
3196 n = n->rb_left;
3197 }
Tejun Heoca23e402009-08-14 15:00:52 +09003198 }
3199
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003200 return va;
Tejun Heoca23e402009-08-14 15:00:52 +09003201}
3202
3203/**
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003204 * pvm_determine_end_from_reverse - find the highest aligned address
3205 * of free block below VMALLOC_END
3206 * @va:
3207 * in - the VA we start the search(reverse order);
3208 * out - the VA with the highest aligned end address.
Tejun Heoca23e402009-08-14 15:00:52 +09003209 *
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003210 * Returns: determined end address within vmap_area
Tejun Heoca23e402009-08-14 15:00:52 +09003211 */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003212static unsigned long
3213pvm_determine_end_from_reverse(struct vmap_area **va, unsigned long align)
Tejun Heoca23e402009-08-14 15:00:52 +09003214{
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003215 unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
Tejun Heoca23e402009-08-14 15:00:52 +09003216 unsigned long addr;
3217
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003218 if (likely(*va)) {
3219 list_for_each_entry_from_reverse((*va),
3220 &free_vmap_area_list, list) {
3221 addr = min((*va)->va_end & ~(align - 1), vmalloc_end);
3222 if ((*va)->va_start < addr)
3223 return addr;
3224 }
Tejun Heoca23e402009-08-14 15:00:52 +09003225 }
3226
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003227 return 0;
Tejun Heoca23e402009-08-14 15:00:52 +09003228}
3229
3230/**
3231 * pcpu_get_vm_areas - allocate vmalloc areas for percpu allocator
3232 * @offsets: array containing offset of each area
3233 * @sizes: array containing size of each area
3234 * @nr_vms: the number of areas to allocate
3235 * @align: alignment, all entries in @offsets and @sizes must be aligned to this
Tejun Heoca23e402009-08-14 15:00:52 +09003236 *
3237 * Returns: kmalloc'd vm_struct pointer array pointing to allocated
3238 * vm_structs on success, %NULL on failure
3239 *
3240 * Percpu allocator wants to use congruent vm areas so that it can
3241 * maintain the offsets among percpu areas. This function allocates
David Rientjesec3f64f2011-01-13 15:46:01 -08003242 * congruent vmalloc areas for it with GFP_KERNEL. These areas tend to
3243 * be scattered pretty far, distance between two areas easily going up
3244 * to gigabytes. To avoid interacting with regular vmallocs, these
3245 * areas are allocated from top.
Tejun Heoca23e402009-08-14 15:00:52 +09003246 *
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003247 * Despite its complicated look, this allocator is rather simple. It
3248 * does everything top-down and scans free blocks from the end looking
3249 * for matching base. While scanning, if any of the areas do not fit the
3250 * base address is pulled down to fit the area. Scanning is repeated till
3251 * all the areas fit and then all necessary data structures are inserted
3252 * and the result is returned.
Tejun Heoca23e402009-08-14 15:00:52 +09003253 */
3254struct vm_struct **pcpu_get_vm_areas(const unsigned long *offsets,
3255 const size_t *sizes, int nr_vms,
David Rientjesec3f64f2011-01-13 15:46:01 -08003256 size_t align)
Tejun Heoca23e402009-08-14 15:00:52 +09003257{
3258 const unsigned long vmalloc_start = ALIGN(VMALLOC_START, align);
3259 const unsigned long vmalloc_end = VMALLOC_END & ~(align - 1);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003260 struct vmap_area **vas, *va;
Tejun Heoca23e402009-08-14 15:00:52 +09003261 struct vm_struct **vms;
3262 int area, area2, last_area, term_area;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003263 unsigned long base, start, size, end, last_end;
Tejun Heoca23e402009-08-14 15:00:52 +09003264 bool purged = false;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003265 enum fit_type type;
Tejun Heoca23e402009-08-14 15:00:52 +09003266
Tejun Heoca23e402009-08-14 15:00:52 +09003267 /* verify parameters and allocate data structures */
Alexander Kuleshov891c49a2015-11-05 18:46:51 -08003268 BUG_ON(offset_in_page(align) || !is_power_of_2(align));
Tejun Heoca23e402009-08-14 15:00:52 +09003269 for (last_area = 0, area = 0; area < nr_vms; area++) {
3270 start = offsets[area];
3271 end = start + sizes[area];
3272
3273 /* is everything aligned properly? */
3274 BUG_ON(!IS_ALIGNED(offsets[area], align));
3275 BUG_ON(!IS_ALIGNED(sizes[area], align));
3276
3277 /* detect the area with the highest address */
3278 if (start > offsets[last_area])
3279 last_area = area;
3280
Wei Yangc568da22017-09-06 16:24:09 -07003281 for (area2 = area + 1; area2 < nr_vms; area2++) {
Tejun Heoca23e402009-08-14 15:00:52 +09003282 unsigned long start2 = offsets[area2];
3283 unsigned long end2 = start2 + sizes[area2];
3284
Wei Yangc568da22017-09-06 16:24:09 -07003285 BUG_ON(start2 < end && start < end2);
Tejun Heoca23e402009-08-14 15:00:52 +09003286 }
3287 }
3288 last_end = offsets[last_area] + sizes[last_area];
3289
3290 if (vmalloc_end - vmalloc_start < last_end) {
3291 WARN_ON(true);
3292 return NULL;
3293 }
3294
Thomas Meyer4d67d862012-05-29 15:06:21 -07003295 vms = kcalloc(nr_vms, sizeof(vms[0]), GFP_KERNEL);
3296 vas = kcalloc(nr_vms, sizeof(vas[0]), GFP_KERNEL);
Tejun Heoca23e402009-08-14 15:00:52 +09003297 if (!vas || !vms)
Kautuk Consulf1db7af2012-01-12 17:20:08 -08003298 goto err_free2;
Tejun Heoca23e402009-08-14 15:00:52 +09003299
3300 for (area = 0; area < nr_vms; area++) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003301 vas[area] = kmem_cache_zalloc(vmap_area_cachep, GFP_KERNEL);
David Rientjesec3f64f2011-01-13 15:46:01 -08003302 vms[area] = kzalloc(sizeof(struct vm_struct), GFP_KERNEL);
Tejun Heoca23e402009-08-14 15:00:52 +09003303 if (!vas[area] || !vms[area])
3304 goto err_free;
3305 }
3306retry:
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003307 spin_lock(&free_vmap_area_lock);
Tejun Heoca23e402009-08-14 15:00:52 +09003308
3309 /* start scanning - we scan from the top, begin with the last area */
3310 area = term_area = last_area;
3311 start = offsets[area];
3312 end = start + sizes[area];
3313
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003314 va = pvm_find_va_enclose_addr(vmalloc_end);
3315 base = pvm_determine_end_from_reverse(&va, align) - end;
Tejun Heoca23e402009-08-14 15:00:52 +09003316
3317 while (true) {
Tejun Heoca23e402009-08-14 15:00:52 +09003318 /*
3319 * base might have underflowed, add last_end before
3320 * comparing.
3321 */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003322 if (base + last_end < vmalloc_start + last_end)
3323 goto overflow;
Tejun Heoca23e402009-08-14 15:00:52 +09003324
3325 /*
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003326 * Fitting base has not been found.
Tejun Heoca23e402009-08-14 15:00:52 +09003327 */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003328 if (va == NULL)
3329 goto overflow;
Tejun Heoca23e402009-08-14 15:00:52 +09003330
3331 /*
Kuppuswamy Sathyanarayanan5336e522019-08-13 15:37:31 -07003332 * If required width exeeds current VA block, move
3333 * base downwards and then recheck.
3334 */
3335 if (base + end > va->va_end) {
3336 base = pvm_determine_end_from_reverse(&va, align) - end;
3337 term_area = area;
3338 continue;
3339 }
3340
3341 /*
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003342 * If this VA does not fit, move base downwards and recheck.
Tejun Heoca23e402009-08-14 15:00:52 +09003343 */
Kuppuswamy Sathyanarayanan5336e522019-08-13 15:37:31 -07003344 if (base + start < va->va_start) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003345 va = node_to_va(rb_prev(&va->rb_node));
3346 base = pvm_determine_end_from_reverse(&va, align) - end;
Tejun Heoca23e402009-08-14 15:00:52 +09003347 term_area = area;
3348 continue;
3349 }
3350
3351 /*
3352 * This area fits, move on to the previous one. If
3353 * the previous one is the terminal one, we're done.
3354 */
3355 area = (area + nr_vms - 1) % nr_vms;
3356 if (area == term_area)
3357 break;
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003358
Tejun Heoca23e402009-08-14 15:00:52 +09003359 start = offsets[area];
3360 end = start + sizes[area];
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003361 va = pvm_find_va_enclose_addr(base + end);
Tejun Heoca23e402009-08-14 15:00:52 +09003362 }
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003363
Tejun Heoca23e402009-08-14 15:00:52 +09003364 /* we've found a fitting base, insert all va's */
3365 for (area = 0; area < nr_vms; area++) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003366 int ret;
Tejun Heoca23e402009-08-14 15:00:52 +09003367
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003368 start = base + offsets[area];
3369 size = sizes[area];
3370
3371 va = pvm_find_va_enclose_addr(start);
3372 if (WARN_ON_ONCE(va == NULL))
3373 /* It is a BUG(), but trigger recovery instead. */
3374 goto recovery;
3375
3376 type = classify_va_fit_type(va, start, size);
3377 if (WARN_ON_ONCE(type == NOTHING_FIT))
3378 /* It is a BUG(), but trigger recovery instead. */
3379 goto recovery;
3380
3381 ret = adjust_va_to_fit_type(va, start, size, type);
3382 if (unlikely(ret))
3383 goto recovery;
3384
3385 /* Allocated area. */
3386 va = vas[area];
3387 va->va_start = start;
3388 va->va_end = start + size;
Tejun Heoca23e402009-08-14 15:00:52 +09003389 }
3390
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003391 spin_unlock(&free_vmap_area_lock);
Tejun Heoca23e402009-08-14 15:00:52 +09003392
3393 /* insert all vm's */
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003394 spin_lock(&vmap_area_lock);
3395 for (area = 0; area < nr_vms; area++) {
3396 insert_vmap_area(vas[area], &vmap_area_root, &vmap_area_list);
3397
3398 setup_vmalloc_vm_locked(vms[area], vas[area], VM_ALLOC,
Zhang Yanfei3645cb42013-07-03 15:04:48 -07003399 pcpu_get_vm_areas);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003400 }
3401 spin_unlock(&vmap_area_lock);
Tejun Heoca23e402009-08-14 15:00:52 +09003402
3403 kfree(vas);
3404 return vms;
3405
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003406recovery:
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003407 /*
3408 * Remove previously allocated areas. There is no
3409 * need in removing these areas from the busy tree,
3410 * because they are inserted only on the final step
3411 * and when pcpu_get_vm_areas() is success.
3412 */
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003413 while (area--) {
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003414 merge_or_add_vmap_area(vas[area],
3415 &free_vmap_area_root, &free_vmap_area_list);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003416 vas[area] = NULL;
3417 }
3418
3419overflow:
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003420 spin_unlock(&free_vmap_area_lock);
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003421 if (!purged) {
3422 purge_vmap_area_lazy();
3423 purged = true;
3424
3425 /* Before "retry", check if we recover. */
3426 for (area = 0; area < nr_vms; area++) {
3427 if (vas[area])
3428 continue;
3429
3430 vas[area] = kmem_cache_zalloc(
3431 vmap_area_cachep, GFP_KERNEL);
3432 if (!vas[area])
3433 goto err_free;
3434 }
3435
3436 goto retry;
3437 }
3438
Tejun Heoca23e402009-08-14 15:00:52 +09003439err_free:
3440 for (area = 0; area < nr_vms; area++) {
Uladzislau Rezki (Sony)68ad4a32019-05-17 14:31:31 -07003441 if (vas[area])
3442 kmem_cache_free(vmap_area_cachep, vas[area]);
3443
Kautuk Consulf1db7af2012-01-12 17:20:08 -08003444 kfree(vms[area]);
Tejun Heoca23e402009-08-14 15:00:52 +09003445 }
Kautuk Consulf1db7af2012-01-12 17:20:08 -08003446err_free2:
Tejun Heoca23e402009-08-14 15:00:52 +09003447 kfree(vas);
3448 kfree(vms);
3449 return NULL;
3450}
3451
3452/**
3453 * pcpu_free_vm_areas - free vmalloc areas for percpu allocator
3454 * @vms: vm_struct pointer array returned by pcpu_get_vm_areas()
3455 * @nr_vms: the number of allocated areas
3456 *
3457 * Free vm_structs and the array allocated by pcpu_get_vm_areas().
3458 */
3459void pcpu_free_vm_areas(struct vm_struct **vms, int nr_vms)
3460{
3461 int i;
3462
3463 for (i = 0; i < nr_vms; i++)
3464 free_vm_area(vms[i]);
3465 kfree(vms);
3466}
Tejun Heo4f8b02b2010-09-03 18:22:47 +02003467#endif /* CONFIG_SMP */
Christoph Lametera10aa572008-04-28 02:12:40 -07003468
3469#ifdef CONFIG_PROC_FS
3470static void *s_start(struct seq_file *m, loff_t *pos)
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003471 __acquires(&vmap_purge_lock)
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003472 __acquires(&vmap_area_lock)
Christoph Lametera10aa572008-04-28 02:12:40 -07003473{
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003474 mutex_lock(&vmap_purge_lock);
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003475 spin_lock(&vmap_area_lock);
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003476
zijun_hu3f500062016-12-12 16:42:17 -08003477 return seq_list_start(&vmap_area_list, *pos);
Christoph Lametera10aa572008-04-28 02:12:40 -07003478}
3479
3480static void *s_next(struct seq_file *m, void *p, loff_t *pos)
3481{
zijun_hu3f500062016-12-12 16:42:17 -08003482 return seq_list_next(p, &vmap_area_list, pos);
Christoph Lametera10aa572008-04-28 02:12:40 -07003483}
3484
3485static void s_stop(struct seq_file *m, void *p)
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003486 __releases(&vmap_purge_lock)
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003487 __releases(&vmap_area_lock)
Christoph Lametera10aa572008-04-28 02:12:40 -07003488{
Uladzislau Rezki (Sony)e36176b2019-11-30 17:54:47 -08003489 mutex_unlock(&vmap_purge_lock);
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003490 spin_unlock(&vmap_area_lock);
Christoph Lametera10aa572008-04-28 02:12:40 -07003491}
3492
Eric Dumazeta47a1262008-07-23 21:27:38 -07003493static void show_numa_info(struct seq_file *m, struct vm_struct *v)
3494{
Kirill A. Shutemove5adfff2012-12-11 16:00:29 -08003495 if (IS_ENABLED(CONFIG_NUMA)) {
Eric Dumazeta47a1262008-07-23 21:27:38 -07003496 unsigned int nr, *counters = m->private;
3497
3498 if (!counters)
3499 return;
3500
Wanpeng Liaf123462013-11-12 15:07:32 -08003501 if (v->flags & VM_UNINITIALIZED)
3502 return;
Dmitry Vyukov7e5b5282014-12-12 16:56:30 -08003503 /* Pair with smp_wmb() in clear_vm_uninitialized_flag() */
3504 smp_rmb();
Wanpeng Liaf123462013-11-12 15:07:32 -08003505
Eric Dumazeta47a1262008-07-23 21:27:38 -07003506 memset(counters, 0, nr_node_ids * sizeof(unsigned int));
3507
3508 for (nr = 0; nr < v->nr_pages; nr++)
3509 counters[page_to_nid(v->pages[nr])]++;
3510
3511 for_each_node_state(nr, N_HIGH_MEMORY)
3512 if (counters[nr])
3513 seq_printf(m, " N%u=%u", nr, counters[nr]);
3514 }
3515}
3516
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07003517static void show_purge_info(struct seq_file *m)
3518{
3519 struct llist_node *head;
3520 struct vmap_area *va;
3521
3522 head = READ_ONCE(vmap_purge_list.first);
3523 if (head == NULL)
3524 return;
3525
3526 llist_for_each_entry(va, head, purge_list) {
3527 seq_printf(m, "0x%pK-0x%pK %7ld unpurged vm_area\n",
3528 (void *)va->va_start, (void *)va->va_end,
3529 va->va_end - va->va_start);
3530 }
3531}
3532
Christoph Lametera10aa572008-04-28 02:12:40 -07003533static int s_show(struct seq_file *m, void *p)
3534{
zijun_hu3f500062016-12-12 16:42:17 -08003535 struct vmap_area *va;
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003536 struct vm_struct *v;
3537
zijun_hu3f500062016-12-12 16:42:17 -08003538 va = list_entry(p, struct vmap_area, list);
3539
Wanpeng Lic2ce8c12013-11-12 15:07:31 -08003540 /*
Pengfei Li688fcbf2019-09-23 15:36:39 -07003541 * s_show can encounter race with remove_vm_area, !vm on behalf
3542 * of vmap area is being tear down or vm_map_ram allocation.
Wanpeng Lic2ce8c12013-11-12 15:07:31 -08003543 */
Pengfei Li688fcbf2019-09-23 15:36:39 -07003544 if (!va->vm) {
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07003545 seq_printf(m, "0x%pK-0x%pK %7ld vm_map_ram\n",
Yisheng Xie78c72742017-07-10 15:48:09 -07003546 (void *)va->va_start, (void *)va->va_end,
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07003547 va->va_end - va->va_start);
Yisheng Xie78c72742017-07-10 15:48:09 -07003548
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003549 return 0;
Yisheng Xie78c72742017-07-10 15:48:09 -07003550 }
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003551
Joonsoo Kimd4033af2013-04-29 15:07:35 -07003552 v = va->vm;
Christoph Lametera10aa572008-04-28 02:12:40 -07003553
Kees Cook45ec1692012-10-08 16:34:09 -07003554 seq_printf(m, "0x%pK-0x%pK %7ld",
Christoph Lametera10aa572008-04-28 02:12:40 -07003555 v->addr, v->addr + v->size, v->size);
3556
Joe Perches62c70bc2011-01-13 15:45:52 -08003557 if (v->caller)
3558 seq_printf(m, " %pS", v->caller);
Christoph Lameter23016962008-04-28 02:12:42 -07003559
Christoph Lametera10aa572008-04-28 02:12:40 -07003560 if (v->nr_pages)
3561 seq_printf(m, " pages=%d", v->nr_pages);
3562
3563 if (v->phys_addr)
Miles Chen199eaa02017-02-24 14:59:51 -08003564 seq_printf(m, " phys=%pa", &v->phys_addr);
Christoph Lametera10aa572008-04-28 02:12:40 -07003565
3566 if (v->flags & VM_IOREMAP)
Fabian Frederickf4527c92014-06-04 16:08:09 -07003567 seq_puts(m, " ioremap");
Christoph Lametera10aa572008-04-28 02:12:40 -07003568
3569 if (v->flags & VM_ALLOC)
Fabian Frederickf4527c92014-06-04 16:08:09 -07003570 seq_puts(m, " vmalloc");
Christoph Lametera10aa572008-04-28 02:12:40 -07003571
3572 if (v->flags & VM_MAP)
Fabian Frederickf4527c92014-06-04 16:08:09 -07003573 seq_puts(m, " vmap");
Christoph Lametera10aa572008-04-28 02:12:40 -07003574
3575 if (v->flags & VM_USERMAP)
Fabian Frederickf4527c92014-06-04 16:08:09 -07003576 seq_puts(m, " user");
Christoph Lametera10aa572008-04-28 02:12:40 -07003577
Christoph Hellwigfe9041c2019-06-03 08:55:13 +02003578 if (v->flags & VM_DMA_COHERENT)
3579 seq_puts(m, " dma-coherent");
3580
David Rientjes244d63e2016-01-14 15:19:35 -08003581 if (is_vmalloc_addr(v->pages))
Fabian Frederickf4527c92014-06-04 16:08:09 -07003582 seq_puts(m, " vpages");
Christoph Lametera10aa572008-04-28 02:12:40 -07003583
Eric Dumazeta47a1262008-07-23 21:27:38 -07003584 show_numa_info(m, v);
Christoph Lametera10aa572008-04-28 02:12:40 -07003585 seq_putc(m, '\n');
Uladzislau Rezki (Sony)dd3b8352019-09-23 15:36:36 -07003586
3587 /*
3588 * As a final step, dump "unpurged" areas. Note,
3589 * that entire "/proc/vmallocinfo" output will not
3590 * be address sorted, because the purge list is not
3591 * sorted.
3592 */
3593 if (list_is_last(&va->list, &vmap_area_list))
3594 show_purge_info(m);
3595
Christoph Lametera10aa572008-04-28 02:12:40 -07003596 return 0;
3597}
3598
Alexey Dobriyan5f6a6a92008-10-06 03:50:47 +04003599static const struct seq_operations vmalloc_op = {
Christoph Lametera10aa572008-04-28 02:12:40 -07003600 .start = s_start,
3601 .next = s_next,
3602 .stop = s_stop,
3603 .show = s_show,
3604};
Alexey Dobriyan5f6a6a92008-10-06 03:50:47 +04003605
Alexey Dobriyan5f6a6a92008-10-06 03:50:47 +04003606static int __init proc_vmalloc_init(void)
3607{
Christoph Hellwigfddda2b2018-04-13 19:44:18 +02003608 if (IS_ENABLED(CONFIG_NUMA))
Joe Perches0825a6f2018-06-14 15:27:58 -07003609 proc_create_seq_private("vmallocinfo", 0400, NULL,
Christoph Hellwig44414d82018-04-24 17:05:17 +02003610 &vmalloc_op,
3611 nr_node_ids * sizeof(unsigned int), NULL);
Christoph Hellwigfddda2b2018-04-13 19:44:18 +02003612 else
Joe Perches0825a6f2018-06-14 15:27:58 -07003613 proc_create_seq("vmallocinfo", 0400, NULL, &vmalloc_op);
Alexey Dobriyan5f6a6a92008-10-06 03:50:47 +04003614 return 0;
3615}
3616module_init(proc_vmalloc_init);
Joonsoo Kimdb3808c2013-04-29 15:07:28 -07003617
Christoph Lametera10aa572008-04-28 02:12:40 -07003618#endif