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Tejun Heofbf59bc2009-02-20 16:29:08 +09001/*
Tejun Heo88999a82010-04-09 18:57:01 +09002 * mm/percpu.c - percpu memory allocator
Tejun Heofbf59bc2009-02-20 16:29:08 +09003 *
4 * Copyright (C) 2009 SUSE Linux Products GmbH
5 * Copyright (C) 2009 Tejun Heo <tj@kernel.org>
6 *
7 * This file is released under the GPLv2.
8 *
9 * This is percpu allocator which can handle both static and dynamic
Tejun Heo88999a82010-04-09 18:57:01 +090010 * areas. Percpu areas are allocated in chunks. Each chunk is
11 * consisted of boot-time determined number of units and the first
12 * chunk is used for static percpu variables in the kernel image
Tejun Heo2f39e632009-07-04 08:11:00 +090013 * (special boot time alloc/init handling necessary as these areas
14 * need to be brought up before allocation services are running).
15 * Unit grows as necessary and all units grow or shrink in unison.
Tejun Heo88999a82010-04-09 18:57:01 +090016 * When a chunk is filled up, another chunk is allocated.
Tejun Heofbf59bc2009-02-20 16:29:08 +090017 *
18 * c0 c1 c2
19 * ------------------- ------------------- ------------
20 * | u0 | u1 | u2 | u3 | | u0 | u1 | u2 | u3 | | u0 | u1 | u
21 * ------------------- ...... ------------------- .... ------------
22 *
23 * Allocation is done in offset-size areas of single unit space. Ie,
24 * an area of 512 bytes at 6k in c1 occupies 512 bytes at 6k of c1:u0,
Tejun Heo2f39e632009-07-04 08:11:00 +090025 * c1:u1, c1:u2 and c1:u3. On UMA, units corresponds directly to
26 * cpus. On NUMA, the mapping can be non-linear and even sparse.
27 * Percpu access can be done by configuring percpu base registers
28 * according to cpu to unit mapping and pcpu_unit_size.
Tejun Heofbf59bc2009-02-20 16:29:08 +090029 *
Tejun Heo2f39e632009-07-04 08:11:00 +090030 * There are usually many small percpu allocations many of them being
31 * as small as 4 bytes. The allocator organizes chunks into lists
Tejun Heofbf59bc2009-02-20 16:29:08 +090032 * according to free size and tries to allocate from the fullest one.
33 * Each chunk keeps the maximum contiguous area size hint which is
Namhyung Kim4785879e2010-08-11 11:24:10 +090034 * guaranteed to be equal to or larger than the maximum contiguous
Tejun Heofbf59bc2009-02-20 16:29:08 +090035 * area in the chunk. This helps the allocator not to iterate the
36 * chunk maps unnecessarily.
37 *
38 * Allocation state in each chunk is kept using an array of integers
39 * on chunk->map. A positive value in the map represents a free
40 * region and negative allocated. Allocation inside a chunk is done
41 * by scanning this map sequentially and serving the first matching
42 * entry. This is mostly copied from the percpu_modalloc() allocator.
Christoph Lametere1b9aa32009-04-02 13:21:44 +090043 * Chunks can be determined from the address using the index field
44 * in the page struct. The index field contains a pointer to the chunk.
Tejun Heofbf59bc2009-02-20 16:29:08 +090045 *
46 * To use this allocator, arch code should do the followings.
47 *
Tejun Heofbf59bc2009-02-20 16:29:08 +090048 * - define __addr_to_pcpu_ptr() and __pcpu_ptr_to_addr() to translate
Tejun Heoe0100982009-03-10 16:27:48 +090049 * regular address to percpu pointer and back if they need to be
50 * different from the default
Tejun Heofbf59bc2009-02-20 16:29:08 +090051 *
Tejun Heo8d408b42009-02-24 11:57:21 +090052 * - use pcpu_setup_first_chunk() during percpu area initialization to
53 * setup the first chunk containing the kernel static percpu area
Tejun Heofbf59bc2009-02-20 16:29:08 +090054 */
55
56#include <linux/bitmap.h>
57#include <linux/bootmem.h>
Tejun Heofd1e8a12009-08-14 15:00:51 +090058#include <linux/err.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090059#include <linux/list.h>
Tejun Heoa530b792009-07-04 08:11:00 +090060#include <linux/log2.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090061#include <linux/mm.h>
62#include <linux/module.h>
63#include <linux/mutex.h>
64#include <linux/percpu.h>
65#include <linux/pfn.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090066#include <linux/slab.h>
Tejun Heoccea34b2009-03-07 00:44:13 +090067#include <linux/spinlock.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090068#include <linux/vmalloc.h>
Tejun Heoa56dbdd2009-03-07 00:44:11 +090069#include <linux/workqueue.h>
Catalin Marinasf528f0b2011-09-26 17:12:53 +010070#include <linux/kmemleak.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090071
72#include <asm/cacheflush.h>
Tejun Heoe0100982009-03-10 16:27:48 +090073#include <asm/sections.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090074#include <asm/tlbflush.h>
Vivek Goyal3b034b02009-11-24 15:50:03 +090075#include <asm/io.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090076
Tejun Heofbf59bc2009-02-20 16:29:08 +090077#define PCPU_SLOT_BASE_SHIFT 5 /* 1-31 shares the same slot */
78#define PCPU_DFL_MAP_ALLOC 16 /* start a map with 16 ents */
79
Tejun Heobbddff02010-09-03 18:22:48 +020080#ifdef CONFIG_SMP
Tejun Heoe0100982009-03-10 16:27:48 +090081/* default addr <-> pcpu_ptr mapping, override in asm/percpu.h if necessary */
82#ifndef __addr_to_pcpu_ptr
83#define __addr_to_pcpu_ptr(addr) \
Tejun Heo43cf38e2010-02-02 14:38:57 +090084 (void __percpu *)((unsigned long)(addr) - \
85 (unsigned long)pcpu_base_addr + \
86 (unsigned long)__per_cpu_start)
Tejun Heoe0100982009-03-10 16:27:48 +090087#endif
88#ifndef __pcpu_ptr_to_addr
89#define __pcpu_ptr_to_addr(ptr) \
Tejun Heo43cf38e2010-02-02 14:38:57 +090090 (void __force *)((unsigned long)(ptr) + \
91 (unsigned long)pcpu_base_addr - \
92 (unsigned long)__per_cpu_start)
Tejun Heoe0100982009-03-10 16:27:48 +090093#endif
Tejun Heobbddff02010-09-03 18:22:48 +020094#else /* CONFIG_SMP */
95/* on UP, it's always identity mapped */
96#define __addr_to_pcpu_ptr(addr) (void __percpu *)(addr)
97#define __pcpu_ptr_to_addr(ptr) (void __force *)(ptr)
98#endif /* CONFIG_SMP */
Tejun Heoe0100982009-03-10 16:27:48 +090099
Tejun Heofbf59bc2009-02-20 16:29:08 +0900100struct pcpu_chunk {
101 struct list_head list; /* linked to pcpu_slot lists */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900102 int free_size; /* free bytes in the chunk */
103 int contig_hint; /* max contiguous size hint */
Tejun Heobba174f2009-08-14 15:00:51 +0900104 void *base_addr; /* base address of this chunk */
Al Viro723ad1d2014-03-06 21:13:18 -0500105 int map_used; /* # of map entries used before the sentry */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900106 int map_alloc; /* # of map entries allocated */
107 int *map; /* allocation map */
Tejun Heo88999a82010-04-09 18:57:01 +0900108 void *data; /* chunk data */
Al Viro3d331ad2014-03-06 20:52:32 -0500109 int first_free; /* no free below this */
Tejun Heo8d408b42009-02-24 11:57:21 +0900110 bool immutable; /* no [de]population allowed */
Tejun Heoce3141a2009-07-04 08:11:00 +0900111 unsigned long populated[]; /* populated bitmap */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900112};
113
Tejun Heo40150d32009-02-24 12:32:28 +0900114static int pcpu_unit_pages __read_mostly;
115static int pcpu_unit_size __read_mostly;
Tejun Heo2f39e632009-07-04 08:11:00 +0900116static int pcpu_nr_units __read_mostly;
Tejun Heo65632972009-08-14 15:00:52 +0900117static int pcpu_atom_size __read_mostly;
Tejun Heo40150d32009-02-24 12:32:28 +0900118static int pcpu_nr_slots __read_mostly;
119static size_t pcpu_chunk_struct_size __read_mostly;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900120
Tejun Heoa855b842011-11-18 10:55:35 -0800121/* cpus with the lowest and highest unit addresses */
122static unsigned int pcpu_low_unit_cpu __read_mostly;
123static unsigned int pcpu_high_unit_cpu __read_mostly;
Tejun Heo2f39e632009-07-04 08:11:00 +0900124
Tejun Heofbf59bc2009-02-20 16:29:08 +0900125/* the address of the first chunk which starts with the kernel static area */
Tejun Heo40150d32009-02-24 12:32:28 +0900126void *pcpu_base_addr __read_mostly;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900127EXPORT_SYMBOL_GPL(pcpu_base_addr);
128
Tejun Heofb435d52009-08-14 15:00:51 +0900129static const int *pcpu_unit_map __read_mostly; /* cpu -> unit */
130const unsigned long *pcpu_unit_offsets __read_mostly; /* cpu -> unit offset */
Tejun Heo2f39e632009-07-04 08:11:00 +0900131
Tejun Heo65632972009-08-14 15:00:52 +0900132/* group information, used for vm allocation */
133static int pcpu_nr_groups __read_mostly;
134static const unsigned long *pcpu_group_offsets __read_mostly;
135static const size_t *pcpu_group_sizes __read_mostly;
136
Tejun Heoae9e6bc92009-04-02 13:19:54 +0900137/*
138 * The first chunk which always exists. Note that unlike other
139 * chunks, this one can be allocated and mapped in several different
140 * ways and thus often doesn't live in the vmalloc area.
141 */
142static struct pcpu_chunk *pcpu_first_chunk;
143
144/*
145 * Optional reserved chunk. This chunk reserves part of the first
146 * chunk and serves it for reserved allocations. The amount of
147 * reserved offset is in pcpu_reserved_chunk_limit. When reserved
148 * area doesn't exist, the following variables contain NULL and 0
149 * respectively.
150 */
Tejun Heoedcb4632009-03-06 14:33:59 +0900151static struct pcpu_chunk *pcpu_reserved_chunk;
Tejun Heoedcb4632009-03-06 14:33:59 +0900152static int pcpu_reserved_chunk_limit;
153
Tejun Heofbf59bc2009-02-20 16:29:08 +0900154/*
Tejun Heob38d08f2014-09-02 14:46:02 -0400155 * Free path accesses and alters only the index data structures and can be
156 * safely called from atomic context. When memory needs to be returned to
157 * the system, free path schedules reclaim_work.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900158 */
Tejun Heob38d08f2014-09-02 14:46:02 -0400159static DEFINE_SPINLOCK(pcpu_lock); /* all internal data structures */
160static DEFINE_MUTEX(pcpu_alloc_mutex); /* chunk create/destroy, [de]pop */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900161
Tejun Heo40150d32009-02-24 12:32:28 +0900162static struct list_head *pcpu_slot __read_mostly; /* chunk list slots */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900163
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900164/* reclaim work to release fully free chunks, scheduled from free path */
165static void pcpu_reclaim(struct work_struct *work);
166static DECLARE_WORK(pcpu_reclaim_work, pcpu_reclaim);
167
Tejun Heo020ec652010-04-09 18:57:00 +0900168static bool pcpu_addr_in_first_chunk(void *addr)
169{
170 void *first_start = pcpu_first_chunk->base_addr;
171
172 return addr >= first_start && addr < first_start + pcpu_unit_size;
173}
174
175static bool pcpu_addr_in_reserved_chunk(void *addr)
176{
177 void *first_start = pcpu_first_chunk->base_addr;
178
179 return addr >= first_start &&
180 addr < first_start + pcpu_reserved_chunk_limit;
181}
182
Tejun Heod9b55ee2009-02-24 11:57:21 +0900183static int __pcpu_size_to_slot(int size)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900184{
Tejun Heocae3aeb2009-02-21 16:56:23 +0900185 int highbit = fls(size); /* size is in bytes */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900186 return max(highbit - PCPU_SLOT_BASE_SHIFT + 2, 1);
187}
188
Tejun Heod9b55ee2009-02-24 11:57:21 +0900189static int pcpu_size_to_slot(int size)
190{
191 if (size == pcpu_unit_size)
192 return pcpu_nr_slots - 1;
193 return __pcpu_size_to_slot(size);
194}
195
Tejun Heofbf59bc2009-02-20 16:29:08 +0900196static int pcpu_chunk_slot(const struct pcpu_chunk *chunk)
197{
198 if (chunk->free_size < sizeof(int) || chunk->contig_hint < sizeof(int))
199 return 0;
200
201 return pcpu_size_to_slot(chunk->free_size);
202}
203
Tejun Heo88999a82010-04-09 18:57:01 +0900204/* set the pointer to a chunk in a page struct */
205static void pcpu_set_page_chunk(struct page *page, struct pcpu_chunk *pcpu)
206{
207 page->index = (unsigned long)pcpu;
208}
209
210/* obtain pointer to a chunk from a page struct */
211static struct pcpu_chunk *pcpu_get_page_chunk(struct page *page)
212{
213 return (struct pcpu_chunk *)page->index;
214}
215
216static int __maybe_unused pcpu_page_idx(unsigned int cpu, int page_idx)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900217{
Tejun Heo2f39e632009-07-04 08:11:00 +0900218 return pcpu_unit_map[cpu] * pcpu_unit_pages + page_idx;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900219}
220
Tejun Heo9983b6f02010-06-18 11:44:31 +0200221static unsigned long pcpu_chunk_addr(struct pcpu_chunk *chunk,
222 unsigned int cpu, int page_idx)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900223{
Tejun Heobba174f2009-08-14 15:00:51 +0900224 return (unsigned long)chunk->base_addr + pcpu_unit_offsets[cpu] +
Tejun Heofb435d52009-08-14 15:00:51 +0900225 (page_idx << PAGE_SHIFT);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900226}
227
Tejun Heo88999a82010-04-09 18:57:01 +0900228static void __maybe_unused pcpu_next_unpop(struct pcpu_chunk *chunk,
229 int *rs, int *re, int end)
Tejun Heoce3141a2009-07-04 08:11:00 +0900230{
231 *rs = find_next_zero_bit(chunk->populated, end, *rs);
232 *re = find_next_bit(chunk->populated, end, *rs + 1);
233}
234
Tejun Heo88999a82010-04-09 18:57:01 +0900235static void __maybe_unused pcpu_next_pop(struct pcpu_chunk *chunk,
236 int *rs, int *re, int end)
Tejun Heoce3141a2009-07-04 08:11:00 +0900237{
238 *rs = find_next_bit(chunk->populated, end, *rs);
239 *re = find_next_zero_bit(chunk->populated, end, *rs + 1);
240}
241
242/*
243 * (Un)populated page region iterators. Iterate over (un)populated
Uwe Kleine-Königb5950762010-11-01 15:38:34 -0400244 * page regions between @start and @end in @chunk. @rs and @re should
Tejun Heoce3141a2009-07-04 08:11:00 +0900245 * be integer variables and will be set to start and end page index of
246 * the current region.
247 */
248#define pcpu_for_each_unpop_region(chunk, rs, re, start, end) \
249 for ((rs) = (start), pcpu_next_unpop((chunk), &(rs), &(re), (end)); \
250 (rs) < (re); \
251 (rs) = (re) + 1, pcpu_next_unpop((chunk), &(rs), &(re), (end)))
252
253#define pcpu_for_each_pop_region(chunk, rs, re, start, end) \
254 for ((rs) = (start), pcpu_next_pop((chunk), &(rs), &(re), (end)); \
255 (rs) < (re); \
256 (rs) = (re) + 1, pcpu_next_pop((chunk), &(rs), &(re), (end)))
257
Tejun Heofbf59bc2009-02-20 16:29:08 +0900258/**
Bob Liu90459ce02011-08-04 11:02:33 +0200259 * pcpu_mem_zalloc - allocate memory
Tejun Heo1880d932009-03-07 00:44:09 +0900260 * @size: bytes to allocate
Tejun Heofbf59bc2009-02-20 16:29:08 +0900261 *
Tejun Heo1880d932009-03-07 00:44:09 +0900262 * Allocate @size bytes. If @size is smaller than PAGE_SIZE,
Bob Liu90459ce02011-08-04 11:02:33 +0200263 * kzalloc() is used; otherwise, vzalloc() is used. The returned
Tejun Heo1880d932009-03-07 00:44:09 +0900264 * memory is always zeroed.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900265 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900266 * CONTEXT:
267 * Does GFP_KERNEL allocation.
268 *
Tejun Heofbf59bc2009-02-20 16:29:08 +0900269 * RETURNS:
Tejun Heo1880d932009-03-07 00:44:09 +0900270 * Pointer to the allocated area on success, NULL on failure.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900271 */
Bob Liu90459ce02011-08-04 11:02:33 +0200272static void *pcpu_mem_zalloc(size_t size)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900273{
Tejun Heo099a19d2010-06-27 18:50:00 +0200274 if (WARN_ON_ONCE(!slab_is_available()))
275 return NULL;
276
Tejun Heofbf59bc2009-02-20 16:29:08 +0900277 if (size <= PAGE_SIZE)
Tejun Heo1880d932009-03-07 00:44:09 +0900278 return kzalloc(size, GFP_KERNEL);
Jesper Juhl7af4c092010-10-30 15:56:54 +0200279 else
280 return vzalloc(size);
Tejun Heo1880d932009-03-07 00:44:09 +0900281}
Tejun Heofbf59bc2009-02-20 16:29:08 +0900282
Tejun Heo1880d932009-03-07 00:44:09 +0900283/**
284 * pcpu_mem_free - free memory
285 * @ptr: memory to free
286 * @size: size of the area
287 *
Bob Liu90459ce02011-08-04 11:02:33 +0200288 * Free @ptr. @ptr should have been allocated using pcpu_mem_zalloc().
Tejun Heo1880d932009-03-07 00:44:09 +0900289 */
290static void pcpu_mem_free(void *ptr, size_t size)
291{
292 if (size <= PAGE_SIZE)
293 kfree(ptr);
294 else
295 vfree(ptr);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900296}
297
298/**
299 * pcpu_chunk_relocate - put chunk in the appropriate chunk slot
300 * @chunk: chunk of interest
301 * @oslot: the previous slot it was on
302 *
303 * This function is called after an allocation or free changed @chunk.
304 * New slot according to the changed state is determined and @chunk is
Tejun Heoedcb4632009-03-06 14:33:59 +0900305 * moved to the slot. Note that the reserved chunk is never put on
306 * chunk slots.
Tejun Heoccea34b2009-03-07 00:44:13 +0900307 *
308 * CONTEXT:
309 * pcpu_lock.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900310 */
311static void pcpu_chunk_relocate(struct pcpu_chunk *chunk, int oslot)
312{
313 int nslot = pcpu_chunk_slot(chunk);
314
Tejun Heoedcb4632009-03-06 14:33:59 +0900315 if (chunk != pcpu_reserved_chunk && oslot != nslot) {
Tejun Heofbf59bc2009-02-20 16:29:08 +0900316 if (oslot < nslot)
317 list_move(&chunk->list, &pcpu_slot[nslot]);
318 else
319 list_move_tail(&chunk->list, &pcpu_slot[nslot]);
320 }
321}
322
Tejun Heofbf59bc2009-02-20 16:29:08 +0900323/**
Tejun Heo833af842009-11-11 15:35:18 +0900324 * pcpu_need_to_extend - determine whether chunk area map needs to be extended
325 * @chunk: chunk of interest
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900326 *
Tejun Heo833af842009-11-11 15:35:18 +0900327 * Determine whether area map of @chunk needs to be extended to
Lucas De Marchi25985ed2011-03-30 22:57:33 -0300328 * accommodate a new allocation.
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900329 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900330 * CONTEXT:
Tejun Heo833af842009-11-11 15:35:18 +0900331 * pcpu_lock.
Tejun Heoccea34b2009-03-07 00:44:13 +0900332 *
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900333 * RETURNS:
Tejun Heo833af842009-11-11 15:35:18 +0900334 * New target map allocation length if extension is necessary, 0
335 * otherwise.
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900336 */
Tejun Heo833af842009-11-11 15:35:18 +0900337static int pcpu_need_to_extend(struct pcpu_chunk *chunk)
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900338{
339 int new_alloc;
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900340
Al Viro723ad1d2014-03-06 21:13:18 -0500341 if (chunk->map_alloc >= chunk->map_used + 3)
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900342 return 0;
343
344 new_alloc = PCPU_DFL_MAP_ALLOC;
Al Viro723ad1d2014-03-06 21:13:18 -0500345 while (new_alloc < chunk->map_used + 3)
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900346 new_alloc *= 2;
347
Tejun Heo833af842009-11-11 15:35:18 +0900348 return new_alloc;
349}
350
351/**
352 * pcpu_extend_area_map - extend area map of a chunk
353 * @chunk: chunk of interest
354 * @new_alloc: new target allocation length of the area map
355 *
356 * Extend area map of @chunk to have @new_alloc entries.
357 *
358 * CONTEXT:
359 * Does GFP_KERNEL allocation. Grabs and releases pcpu_lock.
360 *
361 * RETURNS:
362 * 0 on success, -errno on failure.
363 */
364static int pcpu_extend_area_map(struct pcpu_chunk *chunk, int new_alloc)
365{
366 int *old = NULL, *new = NULL;
367 size_t old_size = 0, new_size = new_alloc * sizeof(new[0]);
368 unsigned long flags;
369
Bob Liu90459ce02011-08-04 11:02:33 +0200370 new = pcpu_mem_zalloc(new_size);
Tejun Heo833af842009-11-11 15:35:18 +0900371 if (!new)
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900372 return -ENOMEM;
Tejun Heoccea34b2009-03-07 00:44:13 +0900373
Tejun Heo833af842009-11-11 15:35:18 +0900374 /* acquire pcpu_lock and switch to new area map */
375 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900376
Tejun Heo833af842009-11-11 15:35:18 +0900377 if (new_alloc <= chunk->map_alloc)
378 goto out_unlock;
379
380 old_size = chunk->map_alloc * sizeof(chunk->map[0]);
Huang Shijiea002d142010-08-08 14:39:07 +0200381 old = chunk->map;
382
383 memcpy(new, old, old_size);
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900384
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900385 chunk->map_alloc = new_alloc;
386 chunk->map = new;
Tejun Heo833af842009-11-11 15:35:18 +0900387 new = NULL;
388
389out_unlock:
390 spin_unlock_irqrestore(&pcpu_lock, flags);
391
392 /*
393 * pcpu_mem_free() might end up calling vfree() which uses
394 * IRQ-unsafe lock and thus can't be called under pcpu_lock.
395 */
396 pcpu_mem_free(old, old_size);
397 pcpu_mem_free(new, new_size);
398
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900399 return 0;
400}
401
402/**
Tejun Heoa16037c2014-09-02 14:46:02 -0400403 * pcpu_fit_in_area - try to fit the requested allocation in a candidate area
404 * @chunk: chunk the candidate area belongs to
405 * @off: the offset to the start of the candidate area
406 * @this_size: the size of the candidate area
407 * @size: the size of the target allocation
408 * @align: the alignment of the target allocation
409 * @pop_only: only allocate from already populated region
410 *
411 * We're trying to allocate @size bytes aligned at @align. @chunk's area
412 * at @off sized @this_size is a candidate. This function determines
413 * whether the target allocation fits in the candidate area and returns the
414 * number of bytes to pad after @off. If the target area doesn't fit, -1
415 * is returned.
416 *
417 * If @pop_only is %true, this function only considers the already
418 * populated part of the candidate area.
419 */
420static int pcpu_fit_in_area(struct pcpu_chunk *chunk, int off, int this_size,
421 int size, int align, bool pop_only)
422{
423 int cand_off = off;
424
425 while (true) {
426 int head = ALIGN(cand_off, align) - off;
427 int page_start, page_end, rs, re;
428
429 if (this_size < head + size)
430 return -1;
431
432 if (!pop_only)
433 return head;
434
435 /*
436 * If the first unpopulated page is beyond the end of the
437 * allocation, the whole allocation is populated;
438 * otherwise, retry from the end of the unpopulated area.
439 */
440 page_start = PFN_DOWN(head + off);
441 page_end = PFN_UP(head + off + size);
442
443 rs = page_start;
444 pcpu_next_unpop(chunk, &rs, &re, PFN_UP(off + this_size));
445 if (rs >= page_end)
446 return head;
447 cand_off = re * PAGE_SIZE;
448 }
449}
450
451/**
Tejun Heofbf59bc2009-02-20 16:29:08 +0900452 * pcpu_alloc_area - allocate area from a pcpu_chunk
453 * @chunk: chunk of interest
Tejun Heocae3aeb2009-02-21 16:56:23 +0900454 * @size: wanted size in bytes
Tejun Heofbf59bc2009-02-20 16:29:08 +0900455 * @align: wanted align
Tejun Heoa16037c2014-09-02 14:46:02 -0400456 * @pop_only: allocate only from the populated area
Tejun Heofbf59bc2009-02-20 16:29:08 +0900457 *
458 * Try to allocate @size bytes area aligned at @align from @chunk.
459 * Note that this function only allocates the offset. It doesn't
460 * populate or map the area.
461 *
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900462 * @chunk->map must have at least two free slots.
463 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900464 * CONTEXT:
465 * pcpu_lock.
466 *
Tejun Heofbf59bc2009-02-20 16:29:08 +0900467 * RETURNS:
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900468 * Allocated offset in @chunk on success, -1 if no matching area is
469 * found.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900470 */
Tejun Heoa16037c2014-09-02 14:46:02 -0400471static int pcpu_alloc_area(struct pcpu_chunk *chunk, int size, int align,
472 bool pop_only)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900473{
474 int oslot = pcpu_chunk_slot(chunk);
475 int max_contig = 0;
476 int i, off;
Al Viro3d331ad2014-03-06 20:52:32 -0500477 bool seen_free = false;
Al Viro723ad1d2014-03-06 21:13:18 -0500478 int *p;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900479
Al Viro3d331ad2014-03-06 20:52:32 -0500480 for (i = chunk->first_free, p = chunk->map + i; i < chunk->map_used; i++, p++) {
Tejun Heofbf59bc2009-02-20 16:29:08 +0900481 int head, tail;
Al Viro723ad1d2014-03-06 21:13:18 -0500482 int this_size;
483
484 off = *p;
485 if (off & 1)
486 continue;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900487
Al Viro723ad1d2014-03-06 21:13:18 -0500488 this_size = (p[1] & ~1) - off;
Tejun Heoa16037c2014-09-02 14:46:02 -0400489
490 head = pcpu_fit_in_area(chunk, off, this_size, size, align,
491 pop_only);
492 if (head < 0) {
Al Viro3d331ad2014-03-06 20:52:32 -0500493 if (!seen_free) {
494 chunk->first_free = i;
495 seen_free = true;
496 }
Al Viro723ad1d2014-03-06 21:13:18 -0500497 max_contig = max(this_size, max_contig);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900498 continue;
499 }
500
501 /*
502 * If head is small or the previous block is free,
503 * merge'em. Note that 'small' is defined as smaller
504 * than sizeof(int), which is very small but isn't too
505 * uncommon for percpu allocations.
506 */
Al Viro723ad1d2014-03-06 21:13:18 -0500507 if (head && (head < sizeof(int) || !(p[-1] & 1))) {
Jianyu Zhan21ddfd32014-03-28 20:55:21 +0800508 *p = off += head;
Al Viro723ad1d2014-03-06 21:13:18 -0500509 if (p[-1] & 1)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900510 chunk->free_size -= head;
Jianyu Zhan21ddfd32014-03-28 20:55:21 +0800511 else
512 max_contig = max(*p - p[-1], max_contig);
Al Viro723ad1d2014-03-06 21:13:18 -0500513 this_size -= head;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900514 head = 0;
515 }
516
517 /* if tail is small, just keep it around */
Al Viro723ad1d2014-03-06 21:13:18 -0500518 tail = this_size - head - size;
519 if (tail < sizeof(int)) {
Tejun Heofbf59bc2009-02-20 16:29:08 +0900520 tail = 0;
Al Viro723ad1d2014-03-06 21:13:18 -0500521 size = this_size - head;
522 }
Tejun Heofbf59bc2009-02-20 16:29:08 +0900523
524 /* split if warranted */
525 if (head || tail) {
Al Viro706c16f2014-03-06 21:08:24 -0500526 int nr_extra = !!head + !!tail;
527
528 /* insert new subblocks */
Al Viro723ad1d2014-03-06 21:13:18 -0500529 memmove(p + nr_extra + 1, p + 1,
Al Viro706c16f2014-03-06 21:08:24 -0500530 sizeof(chunk->map[0]) * (chunk->map_used - i));
531 chunk->map_used += nr_extra;
532
Tejun Heofbf59bc2009-02-20 16:29:08 +0900533 if (head) {
Al Viro3d331ad2014-03-06 20:52:32 -0500534 if (!seen_free) {
535 chunk->first_free = i;
536 seen_free = true;
537 }
Al Viro723ad1d2014-03-06 21:13:18 -0500538 *++p = off += head;
539 ++i;
Al Viro706c16f2014-03-06 21:08:24 -0500540 max_contig = max(head, max_contig);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900541 }
Al Viro706c16f2014-03-06 21:08:24 -0500542 if (tail) {
Al Viro723ad1d2014-03-06 21:13:18 -0500543 p[1] = off + size;
Al Viro706c16f2014-03-06 21:08:24 -0500544 max_contig = max(tail, max_contig);
545 }
Tejun Heofbf59bc2009-02-20 16:29:08 +0900546 }
547
Al Viro3d331ad2014-03-06 20:52:32 -0500548 if (!seen_free)
549 chunk->first_free = i + 1;
550
Tejun Heofbf59bc2009-02-20 16:29:08 +0900551 /* update hint and mark allocated */
Al Viro723ad1d2014-03-06 21:13:18 -0500552 if (i + 1 == chunk->map_used)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900553 chunk->contig_hint = max_contig; /* fully scanned */
554 else
555 chunk->contig_hint = max(chunk->contig_hint,
556 max_contig);
557
Al Viro723ad1d2014-03-06 21:13:18 -0500558 chunk->free_size -= size;
559 *p |= 1;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900560
561 pcpu_chunk_relocate(chunk, oslot);
562 return off;
563 }
564
565 chunk->contig_hint = max_contig; /* fully scanned */
566 pcpu_chunk_relocate(chunk, oslot);
567
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900568 /* tell the upper layer that this chunk has no matching area */
569 return -1;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900570}
571
572/**
573 * pcpu_free_area - free area to a pcpu_chunk
574 * @chunk: chunk of interest
575 * @freeme: offset of area to free
576 *
577 * Free area starting from @freeme to @chunk. Note that this function
578 * only modifies the allocation map. It doesn't depopulate or unmap
579 * the area.
Tejun Heoccea34b2009-03-07 00:44:13 +0900580 *
581 * CONTEXT:
582 * pcpu_lock.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900583 */
584static void pcpu_free_area(struct pcpu_chunk *chunk, int freeme)
585{
586 int oslot = pcpu_chunk_slot(chunk);
Al Viro723ad1d2014-03-06 21:13:18 -0500587 int off = 0;
588 unsigned i, j;
589 int to_free = 0;
590 int *p;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900591
Al Viro723ad1d2014-03-06 21:13:18 -0500592 freeme |= 1; /* we are searching for <given offset, in use> pair */
593
594 i = 0;
595 j = chunk->map_used;
596 while (i != j) {
597 unsigned k = (i + j) / 2;
598 off = chunk->map[k];
599 if (off < freeme)
600 i = k + 1;
601 else if (off > freeme)
602 j = k;
603 else
604 i = j = k;
605 }
Tejun Heofbf59bc2009-02-20 16:29:08 +0900606 BUG_ON(off != freeme);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900607
Al Viro3d331ad2014-03-06 20:52:32 -0500608 if (i < chunk->first_free)
609 chunk->first_free = i;
610
Al Viro723ad1d2014-03-06 21:13:18 -0500611 p = chunk->map + i;
612 *p = off &= ~1;
613 chunk->free_size += (p[1] & ~1) - off;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900614
Tejun Heofbf59bc2009-02-20 16:29:08 +0900615 /* merge with next? */
Al Viro723ad1d2014-03-06 21:13:18 -0500616 if (!(p[1] & 1))
617 to_free++;
618 /* merge with previous? */
619 if (i > 0 && !(p[-1] & 1)) {
620 to_free++;
621 i--;
622 p--;
623 }
624 if (to_free) {
625 chunk->map_used -= to_free;
626 memmove(p + 1, p + 1 + to_free,
627 (chunk->map_used - i) * sizeof(chunk->map[0]));
Tejun Heofbf59bc2009-02-20 16:29:08 +0900628 }
629
Al Viro723ad1d2014-03-06 21:13:18 -0500630 chunk->contig_hint = max(chunk->map[i + 1] - chunk->map[i] - 1, chunk->contig_hint);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900631 pcpu_chunk_relocate(chunk, oslot);
632}
633
Tejun Heo60810892010-04-09 18:57:01 +0900634static struct pcpu_chunk *pcpu_alloc_chunk(void)
635{
636 struct pcpu_chunk *chunk;
637
Bob Liu90459ce02011-08-04 11:02:33 +0200638 chunk = pcpu_mem_zalloc(pcpu_chunk_struct_size);
Tejun Heo60810892010-04-09 18:57:01 +0900639 if (!chunk)
640 return NULL;
641
Bob Liu90459ce02011-08-04 11:02:33 +0200642 chunk->map = pcpu_mem_zalloc(PCPU_DFL_MAP_ALLOC *
643 sizeof(chunk->map[0]));
Tejun Heo60810892010-04-09 18:57:01 +0900644 if (!chunk->map) {
Jianyu Zhan5a838c32014-04-14 13:47:40 +0800645 pcpu_mem_free(chunk, pcpu_chunk_struct_size);
Tejun Heo60810892010-04-09 18:57:01 +0900646 return NULL;
647 }
648
649 chunk->map_alloc = PCPU_DFL_MAP_ALLOC;
Al Viro723ad1d2014-03-06 21:13:18 -0500650 chunk->map[0] = 0;
651 chunk->map[1] = pcpu_unit_size | 1;
652 chunk->map_used = 1;
Tejun Heo60810892010-04-09 18:57:01 +0900653
654 INIT_LIST_HEAD(&chunk->list);
655 chunk->free_size = pcpu_unit_size;
656 chunk->contig_hint = pcpu_unit_size;
657
658 return chunk;
659}
660
661static void pcpu_free_chunk(struct pcpu_chunk *chunk)
662{
663 if (!chunk)
664 return;
665 pcpu_mem_free(chunk->map, chunk->map_alloc * sizeof(chunk->map[0]));
Joonsoo Kimb4916cb2012-10-29 22:59:58 +0900666 pcpu_mem_free(chunk, pcpu_chunk_struct_size);
Tejun Heo60810892010-04-09 18:57:01 +0900667}
668
Tejun Heo9f645532010-04-09 18:57:01 +0900669/*
670 * Chunk management implementation.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900671 *
Tejun Heo9f645532010-04-09 18:57:01 +0900672 * To allow different implementations, chunk alloc/free and
673 * [de]population are implemented in a separate file which is pulled
674 * into this file and compiled together. The following functions
675 * should be implemented.
Tejun Heoce3141a2009-07-04 08:11:00 +0900676 *
Tejun Heo9f645532010-04-09 18:57:01 +0900677 * pcpu_populate_chunk - populate the specified range of a chunk
678 * pcpu_depopulate_chunk - depopulate the specified range of a chunk
679 * pcpu_create_chunk - create a new chunk
680 * pcpu_destroy_chunk - destroy a chunk, always preceded by full depop
681 * pcpu_addr_to_page - translate address to physical address
682 * pcpu_verify_alloc_info - check alloc_info is acceptable during init
Tejun Heofbf59bc2009-02-20 16:29:08 +0900683 */
Tejun Heo9f645532010-04-09 18:57:01 +0900684static int pcpu_populate_chunk(struct pcpu_chunk *chunk, int off, int size);
685static void pcpu_depopulate_chunk(struct pcpu_chunk *chunk, int off, int size);
686static struct pcpu_chunk *pcpu_create_chunk(void);
687static void pcpu_destroy_chunk(struct pcpu_chunk *chunk);
688static struct page *pcpu_addr_to_page(void *addr);
689static int __init pcpu_verify_alloc_info(const struct pcpu_alloc_info *ai);
Tejun Heoce3141a2009-07-04 08:11:00 +0900690
Tejun Heob0c97782010-04-09 18:57:01 +0900691#ifdef CONFIG_NEED_PER_CPU_KM
692#include "percpu-km.c"
693#else
Tejun Heo9f645532010-04-09 18:57:01 +0900694#include "percpu-vm.c"
Tejun Heob0c97782010-04-09 18:57:01 +0900695#endif
Tejun Heofbf59bc2009-02-20 16:29:08 +0900696
697/**
Tejun Heo88999a82010-04-09 18:57:01 +0900698 * pcpu_chunk_addr_search - determine chunk containing specified address
699 * @addr: address for which the chunk needs to be determined.
700 *
701 * RETURNS:
702 * The address of the found chunk.
703 */
704static struct pcpu_chunk *pcpu_chunk_addr_search(void *addr)
705{
706 /* is it in the first chunk? */
707 if (pcpu_addr_in_first_chunk(addr)) {
708 /* is it in the reserved area? */
709 if (pcpu_addr_in_reserved_chunk(addr))
710 return pcpu_reserved_chunk;
711 return pcpu_first_chunk;
712 }
713
714 /*
715 * The address is relative to unit0 which might be unused and
716 * thus unmapped. Offset the address to the unit space of the
717 * current processor before looking it up in the vmalloc
718 * space. Note that any possible cpu id can be used here, so
719 * there's no need to worry about preemption or cpu hotplug.
720 */
721 addr += pcpu_unit_offsets[raw_smp_processor_id()];
Tejun Heo9f645532010-04-09 18:57:01 +0900722 return pcpu_get_page_chunk(pcpu_addr_to_page(addr));
Tejun Heo88999a82010-04-09 18:57:01 +0900723}
724
725/**
Tejun Heoedcb4632009-03-06 14:33:59 +0900726 * pcpu_alloc - the percpu allocator
Tejun Heocae3aeb2009-02-21 16:56:23 +0900727 * @size: size of area to allocate in bytes
Tejun Heofbf59bc2009-02-20 16:29:08 +0900728 * @align: alignment of area (max PAGE_SIZE)
Tejun Heoedcb4632009-03-06 14:33:59 +0900729 * @reserved: allocate from the reserved chunk if available
Tejun Heofbf59bc2009-02-20 16:29:08 +0900730 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900731 * Allocate percpu area of @size bytes aligned at @align.
732 *
733 * CONTEXT:
734 * Does GFP_KERNEL allocation.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900735 *
736 * RETURNS:
737 * Percpu pointer to the allocated area on success, NULL on failure.
738 */
Tejun Heo43cf38e2010-02-02 14:38:57 +0900739static void __percpu *pcpu_alloc(size_t size, size_t align, bool reserved)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900740{
Tejun Heof2badb02009-09-29 09:17:58 +0900741 static int warn_limit = 10;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900742 struct pcpu_chunk *chunk;
Tejun Heof2badb02009-09-29 09:17:58 +0900743 const char *err;
Tejun Heob38d08f2014-09-02 14:46:02 -0400744 int slot, off, new_alloc, cpu, ret;
Jiri Kosina403a91b2009-10-29 00:25:59 +0900745 unsigned long flags;
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100746 void __percpu *ptr;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900747
Al Viro723ad1d2014-03-06 21:13:18 -0500748 /*
749 * We want the lowest bit of offset available for in-use/free
Viro2f69fa82014-03-17 16:01:27 -0400750 * indicator, so force >= 16bit alignment and make size even.
Al Viro723ad1d2014-03-06 21:13:18 -0500751 */
752 if (unlikely(align < 2))
753 align = 2;
754
Christoph Lameterfb009e32014-06-19 09:59:18 -0500755 size = ALIGN(size, 2);
Viro2f69fa82014-03-17 16:01:27 -0400756
Tejun Heo8d408b42009-02-24 11:57:21 +0900757 if (unlikely(!size || size > PCPU_MIN_UNIT_SIZE || align > PAGE_SIZE)) {
Tejun Heofbf59bc2009-02-20 16:29:08 +0900758 WARN(true, "illegal size (%zu) or align (%zu) for "
759 "percpu allocation\n", size, align);
760 return NULL;
761 }
762
Jiri Kosina403a91b2009-10-29 00:25:59 +0900763 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900764
Tejun Heoedcb4632009-03-06 14:33:59 +0900765 /* serve reserved allocations from the reserved chunk if available */
766 if (reserved && pcpu_reserved_chunk) {
767 chunk = pcpu_reserved_chunk;
Tejun Heo833af842009-11-11 15:35:18 +0900768
769 if (size > chunk->contig_hint) {
770 err = "alloc from reserved chunk failed";
Tejun Heoccea34b2009-03-07 00:44:13 +0900771 goto fail_unlock;
Tejun Heof2badb02009-09-29 09:17:58 +0900772 }
Tejun Heo833af842009-11-11 15:35:18 +0900773
774 while ((new_alloc = pcpu_need_to_extend(chunk))) {
775 spin_unlock_irqrestore(&pcpu_lock, flags);
776 if (pcpu_extend_area_map(chunk, new_alloc) < 0) {
777 err = "failed to extend area map of reserved chunk";
Tejun Heob38d08f2014-09-02 14:46:02 -0400778 goto fail;
Tejun Heo833af842009-11-11 15:35:18 +0900779 }
780 spin_lock_irqsave(&pcpu_lock, flags);
781 }
782
Tejun Heoa16037c2014-09-02 14:46:02 -0400783 off = pcpu_alloc_area(chunk, size, align, false);
Tejun Heoedcb4632009-03-06 14:33:59 +0900784 if (off >= 0)
785 goto area_found;
Tejun Heo833af842009-11-11 15:35:18 +0900786
Tejun Heof2badb02009-09-29 09:17:58 +0900787 err = "alloc from reserved chunk failed";
Tejun Heoccea34b2009-03-07 00:44:13 +0900788 goto fail_unlock;
Tejun Heoedcb4632009-03-06 14:33:59 +0900789 }
790
Tejun Heoccea34b2009-03-07 00:44:13 +0900791restart:
Tejun Heoedcb4632009-03-06 14:33:59 +0900792 /* search through normal chunks */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900793 for (slot = pcpu_size_to_slot(size); slot < pcpu_nr_slots; slot++) {
794 list_for_each_entry(chunk, &pcpu_slot[slot], list) {
795 if (size > chunk->contig_hint)
796 continue;
Tejun Heoccea34b2009-03-07 00:44:13 +0900797
Tejun Heo833af842009-11-11 15:35:18 +0900798 new_alloc = pcpu_need_to_extend(chunk);
799 if (new_alloc) {
800 spin_unlock_irqrestore(&pcpu_lock, flags);
801 if (pcpu_extend_area_map(chunk,
802 new_alloc) < 0) {
803 err = "failed to extend area map";
Tejun Heob38d08f2014-09-02 14:46:02 -0400804 goto fail;
Tejun Heo833af842009-11-11 15:35:18 +0900805 }
806 spin_lock_irqsave(&pcpu_lock, flags);
807 /*
808 * pcpu_lock has been dropped, need to
809 * restart cpu_slot list walking.
810 */
811 goto restart;
Tejun Heoccea34b2009-03-07 00:44:13 +0900812 }
813
Tejun Heoa16037c2014-09-02 14:46:02 -0400814 off = pcpu_alloc_area(chunk, size, align, false);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900815 if (off >= 0)
816 goto area_found;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900817 }
818 }
819
Jiri Kosina403a91b2009-10-29 00:25:59 +0900820 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heoccea34b2009-03-07 00:44:13 +0900821
Tejun Heob38d08f2014-09-02 14:46:02 -0400822 /*
823 * No space left. Create a new chunk. We don't want multiple
824 * tasks to create chunks simultaneously. Serialize and create iff
825 * there's still no empty chunk after grabbing the mutex.
826 */
827 mutex_lock(&pcpu_alloc_mutex);
828
829 if (list_empty(&pcpu_slot[pcpu_nr_slots - 1])) {
830 chunk = pcpu_create_chunk();
831 if (!chunk) {
832 err = "failed to allocate new chunk";
833 goto fail;
834 }
835
836 spin_lock_irqsave(&pcpu_lock, flags);
837 pcpu_chunk_relocate(chunk, -1);
838 } else {
839 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heof2badb02009-09-29 09:17:58 +0900840 }
Tejun Heoccea34b2009-03-07 00:44:13 +0900841
Tejun Heob38d08f2014-09-02 14:46:02 -0400842 mutex_unlock(&pcpu_alloc_mutex);
Tejun Heoccea34b2009-03-07 00:44:13 +0900843 goto restart;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900844
845area_found:
Jiri Kosina403a91b2009-10-29 00:25:59 +0900846 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heoccea34b2009-03-07 00:44:13 +0900847
Tejun Heodca49642014-09-02 14:46:01 -0400848 /* populate if not all pages are already there */
Tejun Heoe04d3202014-09-02 14:46:04 -0400849 if (true) {
850 int page_start, page_end, rs, re;
Tejun Heodca49642014-09-02 14:46:01 -0400851
Tejun Heoe04d3202014-09-02 14:46:04 -0400852 mutex_lock(&pcpu_alloc_mutex);
Tejun Heodca49642014-09-02 14:46:01 -0400853
Tejun Heoe04d3202014-09-02 14:46:04 -0400854 page_start = PFN_DOWN(off);
855 page_end = PFN_UP(off + size);
Tejun Heob38d08f2014-09-02 14:46:02 -0400856
Tejun Heoe04d3202014-09-02 14:46:04 -0400857 pcpu_for_each_unpop_region(chunk, rs, re, page_start, page_end) {
858 WARN_ON(chunk->immutable);
859
860 ret = pcpu_populate_chunk(chunk, rs, re);
861
862 spin_lock_irqsave(&pcpu_lock, flags);
863 if (ret) {
864 mutex_unlock(&pcpu_alloc_mutex);
865 pcpu_free_area(chunk, off);
866 err = "failed to populate";
867 goto fail_unlock;
868 }
869 bitmap_set(chunk->populated, rs, re - rs);
870 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heodca49642014-09-02 14:46:01 -0400871 }
Tejun Heofbf59bc2009-02-20 16:29:08 +0900872
Tejun Heoe04d3202014-09-02 14:46:04 -0400873 mutex_unlock(&pcpu_alloc_mutex);
874 }
Tejun Heoccea34b2009-03-07 00:44:13 +0900875
Tejun Heodca49642014-09-02 14:46:01 -0400876 /* clear the areas and return address relative to base address */
877 for_each_possible_cpu(cpu)
878 memset((void *)pcpu_chunk_addr(chunk, cpu, 0) + off, 0, size);
879
Catalin Marinasf528f0b2011-09-26 17:12:53 +0100880 ptr = __addr_to_pcpu_ptr(chunk->base_addr + off);
881 kmemleak_alloc_percpu(ptr, size);
882 return ptr;
Tejun Heoccea34b2009-03-07 00:44:13 +0900883
884fail_unlock:
Jiri Kosina403a91b2009-10-29 00:25:59 +0900885 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heob38d08f2014-09-02 14:46:02 -0400886fail:
Tejun Heof2badb02009-09-29 09:17:58 +0900887 if (warn_limit) {
888 pr_warning("PERCPU: allocation failed, size=%zu align=%zu, "
889 "%s\n", size, align, err);
890 dump_stack();
891 if (!--warn_limit)
892 pr_info("PERCPU: limit reached, disable warning\n");
893 }
Tejun Heoccea34b2009-03-07 00:44:13 +0900894 return NULL;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900895}
Tejun Heoedcb4632009-03-06 14:33:59 +0900896
897/**
898 * __alloc_percpu - allocate dynamic percpu area
899 * @size: size of area to allocate in bytes
900 * @align: alignment of area (max PAGE_SIZE)
901 *
Tejun Heo9329ba972010-09-10 11:01:56 +0200902 * Allocate zero-filled percpu area of @size bytes aligned at @align.
903 * Might sleep. Might trigger writeouts.
Tejun Heoedcb4632009-03-06 14:33:59 +0900904 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900905 * CONTEXT:
906 * Does GFP_KERNEL allocation.
907 *
Tejun Heoedcb4632009-03-06 14:33:59 +0900908 * RETURNS:
909 * Percpu pointer to the allocated area on success, NULL on failure.
910 */
Tejun Heo43cf38e2010-02-02 14:38:57 +0900911void __percpu *__alloc_percpu(size_t size, size_t align)
Tejun Heoedcb4632009-03-06 14:33:59 +0900912{
913 return pcpu_alloc(size, align, false);
914}
Tejun Heofbf59bc2009-02-20 16:29:08 +0900915EXPORT_SYMBOL_GPL(__alloc_percpu);
916
Tejun Heoedcb4632009-03-06 14:33:59 +0900917/**
918 * __alloc_reserved_percpu - allocate reserved percpu area
919 * @size: size of area to allocate in bytes
920 * @align: alignment of area (max PAGE_SIZE)
921 *
Tejun Heo9329ba972010-09-10 11:01:56 +0200922 * Allocate zero-filled percpu area of @size bytes aligned at @align
923 * from reserved percpu area if arch has set it up; otherwise,
924 * allocation is served from the same dynamic area. Might sleep.
925 * Might trigger writeouts.
Tejun Heoedcb4632009-03-06 14:33:59 +0900926 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900927 * CONTEXT:
928 * Does GFP_KERNEL allocation.
929 *
Tejun Heoedcb4632009-03-06 14:33:59 +0900930 * RETURNS:
931 * Percpu pointer to the allocated area on success, NULL on failure.
932 */
Tejun Heo43cf38e2010-02-02 14:38:57 +0900933void __percpu *__alloc_reserved_percpu(size_t size, size_t align)
Tejun Heoedcb4632009-03-06 14:33:59 +0900934{
935 return pcpu_alloc(size, align, true);
936}
937
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900938/**
939 * pcpu_reclaim - reclaim fully free chunks, workqueue function
940 * @work: unused
941 *
942 * Reclaim all fully free chunks except for the first one.
Tejun Heoccea34b2009-03-07 00:44:13 +0900943 *
944 * CONTEXT:
945 * workqueue context.
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900946 */
947static void pcpu_reclaim(struct work_struct *work)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900948{
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900949 LIST_HEAD(todo);
950 struct list_head *head = &pcpu_slot[pcpu_nr_slots - 1];
951 struct pcpu_chunk *chunk, *next;
952
Tejun Heoccea34b2009-03-07 00:44:13 +0900953 mutex_lock(&pcpu_alloc_mutex);
954 spin_lock_irq(&pcpu_lock);
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900955
956 list_for_each_entry_safe(chunk, next, head, list) {
957 WARN_ON(chunk->immutable);
958
959 /* spare the first one */
960 if (chunk == list_first_entry(head, struct pcpu_chunk, list))
961 continue;
962
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900963 list_move(&chunk->list, &todo);
964 }
965
Tejun Heoccea34b2009-03-07 00:44:13 +0900966 spin_unlock_irq(&pcpu_lock);
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900967
968 list_for_each_entry_safe(chunk, next, &todo, list) {
Tejun Heoa93ace42014-09-02 14:46:02 -0400969 int rs, re;
Tejun Heodca49642014-09-02 14:46:01 -0400970
Tejun Heoa93ace42014-09-02 14:46:02 -0400971 pcpu_for_each_pop_region(chunk, rs, re, 0, pcpu_unit_pages) {
972 pcpu_depopulate_chunk(chunk, rs, re);
973 bitmap_clear(chunk->populated, rs, re - rs);
974 }
Tejun Heo60810892010-04-09 18:57:01 +0900975 pcpu_destroy_chunk(chunk);
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900976 }
Tejun Heo971f3912009-08-14 15:00:49 +0900977
978 mutex_unlock(&pcpu_alloc_mutex);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900979}
980
981/**
982 * free_percpu - free percpu area
983 * @ptr: pointer to area to free
984 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900985 * Free percpu area @ptr.
986 *
987 * CONTEXT:
988 * Can be called from atomic context.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900989 */
Tejun Heo43cf38e2010-02-02 14:38:57 +0900990void free_percpu(void __percpu *ptr)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900991{
Andrew Morton129182e2010-01-08 14:42:39 -0800992 void *addr;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900993 struct pcpu_chunk *chunk;
Tejun Heoccea34b2009-03-07 00:44:13 +0900994 unsigned long flags;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900995 int off;
996
997 if (!ptr)
998 return;
999
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001000 kmemleak_free_percpu(ptr);
1001
Andrew Morton129182e2010-01-08 14:42:39 -08001002 addr = __pcpu_ptr_to_addr(ptr);
1003
Tejun Heoccea34b2009-03-07 00:44:13 +09001004 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001005
1006 chunk = pcpu_chunk_addr_search(addr);
Tejun Heobba174f2009-08-14 15:00:51 +09001007 off = addr - chunk->base_addr;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001008
1009 pcpu_free_area(chunk, off);
1010
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001011 /* if there are more than one fully free chunks, wake up grim reaper */
Tejun Heofbf59bc2009-02-20 16:29:08 +09001012 if (chunk->free_size == pcpu_unit_size) {
1013 struct pcpu_chunk *pos;
1014
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001015 list_for_each_entry(pos, &pcpu_slot[pcpu_nr_slots - 1], list)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001016 if (pos != chunk) {
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001017 schedule_work(&pcpu_reclaim_work);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001018 break;
1019 }
1020 }
1021
Tejun Heoccea34b2009-03-07 00:44:13 +09001022 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001023}
1024EXPORT_SYMBOL_GPL(free_percpu);
1025
Vivek Goyal3b034b02009-11-24 15:50:03 +09001026/**
Tejun Heo10fad5e2010-03-10 18:57:54 +09001027 * is_kernel_percpu_address - test whether address is from static percpu area
1028 * @addr: address to test
1029 *
1030 * Test whether @addr belongs to in-kernel static percpu area. Module
1031 * static percpu areas are not considered. For those, use
1032 * is_module_percpu_address().
1033 *
1034 * RETURNS:
1035 * %true if @addr is from in-kernel static percpu area, %false otherwise.
1036 */
1037bool is_kernel_percpu_address(unsigned long addr)
1038{
Tejun Heobbddff02010-09-03 18:22:48 +02001039#ifdef CONFIG_SMP
Tejun Heo10fad5e2010-03-10 18:57:54 +09001040 const size_t static_size = __per_cpu_end - __per_cpu_start;
1041 void __percpu *base = __addr_to_pcpu_ptr(pcpu_base_addr);
1042 unsigned int cpu;
1043
1044 for_each_possible_cpu(cpu) {
1045 void *start = per_cpu_ptr(base, cpu);
1046
1047 if ((void *)addr >= start && (void *)addr < start + static_size)
1048 return true;
1049 }
Tejun Heobbddff02010-09-03 18:22:48 +02001050#endif
1051 /* on UP, can't distinguish from other static vars, always false */
Tejun Heo10fad5e2010-03-10 18:57:54 +09001052 return false;
1053}
1054
1055/**
Vivek Goyal3b034b02009-11-24 15:50:03 +09001056 * per_cpu_ptr_to_phys - convert translated percpu address to physical address
1057 * @addr: the address to be converted to physical address
1058 *
1059 * Given @addr which is dereferenceable address obtained via one of
1060 * percpu access macros, this function translates it into its physical
1061 * address. The caller is responsible for ensuring @addr stays valid
1062 * until this function finishes.
1063 *
Dave Young67589c712011-11-23 08:20:53 -08001064 * percpu allocator has special setup for the first chunk, which currently
1065 * supports either embedding in linear address space or vmalloc mapping,
1066 * and, from the second one, the backing allocator (currently either vm or
1067 * km) provides translation.
1068 *
1069 * The addr can be tranlated simply without checking if it falls into the
1070 * first chunk. But the current code reflects better how percpu allocator
1071 * actually works, and the verification can discover both bugs in percpu
1072 * allocator itself and per_cpu_ptr_to_phys() callers. So we keep current
1073 * code.
1074 *
Vivek Goyal3b034b02009-11-24 15:50:03 +09001075 * RETURNS:
1076 * The physical address for @addr.
1077 */
1078phys_addr_t per_cpu_ptr_to_phys(void *addr)
1079{
Tejun Heo9983b6f02010-06-18 11:44:31 +02001080 void __percpu *base = __addr_to_pcpu_ptr(pcpu_base_addr);
1081 bool in_first_chunk = false;
Tejun Heoa855b842011-11-18 10:55:35 -08001082 unsigned long first_low, first_high;
Tejun Heo9983b6f02010-06-18 11:44:31 +02001083 unsigned int cpu;
1084
1085 /*
Tejun Heoa855b842011-11-18 10:55:35 -08001086 * The following test on unit_low/high isn't strictly
Tejun Heo9983b6f02010-06-18 11:44:31 +02001087 * necessary but will speed up lookups of addresses which
1088 * aren't in the first chunk.
1089 */
Tejun Heoa855b842011-11-18 10:55:35 -08001090 first_low = pcpu_chunk_addr(pcpu_first_chunk, pcpu_low_unit_cpu, 0);
1091 first_high = pcpu_chunk_addr(pcpu_first_chunk, pcpu_high_unit_cpu,
1092 pcpu_unit_pages);
1093 if ((unsigned long)addr >= first_low &&
1094 (unsigned long)addr < first_high) {
Tejun Heo9983b6f02010-06-18 11:44:31 +02001095 for_each_possible_cpu(cpu) {
1096 void *start = per_cpu_ptr(base, cpu);
1097
1098 if (addr >= start && addr < start + pcpu_unit_size) {
1099 in_first_chunk = true;
1100 break;
1101 }
1102 }
1103 }
1104
1105 if (in_first_chunk) {
David Howellseac522e2011-03-28 12:53:29 +01001106 if (!is_vmalloc_addr(addr))
Tejun Heo020ec652010-04-09 18:57:00 +09001107 return __pa(addr);
1108 else
Eugene Surovegin9f57bd42011-12-15 11:25:59 -08001109 return page_to_phys(vmalloc_to_page(addr)) +
1110 offset_in_page(addr);
Tejun Heo020ec652010-04-09 18:57:00 +09001111 } else
Eugene Surovegin9f57bd42011-12-15 11:25:59 -08001112 return page_to_phys(pcpu_addr_to_page(addr)) +
1113 offset_in_page(addr);
Vivek Goyal3b034b02009-11-24 15:50:03 +09001114}
1115
Tejun Heofbf59bc2009-02-20 16:29:08 +09001116/**
Tejun Heofd1e8a12009-08-14 15:00:51 +09001117 * pcpu_alloc_alloc_info - allocate percpu allocation info
1118 * @nr_groups: the number of groups
1119 * @nr_units: the number of units
Tejun Heo033e48f2009-08-14 15:00:51 +09001120 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001121 * Allocate ai which is large enough for @nr_groups groups containing
1122 * @nr_units units. The returned ai's groups[0].cpu_map points to the
1123 * cpu_map array which is long enough for @nr_units and filled with
1124 * NR_CPUS. It's the caller's responsibility to initialize cpu_map
1125 * pointer of other groups.
Tejun Heo033e48f2009-08-14 15:00:51 +09001126 *
1127 * RETURNS:
Tejun Heofd1e8a12009-08-14 15:00:51 +09001128 * Pointer to the allocated pcpu_alloc_info on success, NULL on
1129 * failure.
Tejun Heo033e48f2009-08-14 15:00:51 +09001130 */
Tejun Heofd1e8a12009-08-14 15:00:51 +09001131struct pcpu_alloc_info * __init pcpu_alloc_alloc_info(int nr_groups,
1132 int nr_units)
1133{
1134 struct pcpu_alloc_info *ai;
1135 size_t base_size, ai_size;
1136 void *ptr;
1137 int unit;
1138
1139 base_size = ALIGN(sizeof(*ai) + nr_groups * sizeof(ai->groups[0]),
1140 __alignof__(ai->groups[0].cpu_map[0]));
1141 ai_size = base_size + nr_units * sizeof(ai->groups[0].cpu_map[0]);
1142
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001143 ptr = memblock_virt_alloc_nopanic(PFN_ALIGN(ai_size), 0);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001144 if (!ptr)
1145 return NULL;
1146 ai = ptr;
1147 ptr += base_size;
1148
1149 ai->groups[0].cpu_map = ptr;
1150
1151 for (unit = 0; unit < nr_units; unit++)
1152 ai->groups[0].cpu_map[unit] = NR_CPUS;
1153
1154 ai->nr_groups = nr_groups;
1155 ai->__ai_size = PFN_ALIGN(ai_size);
1156
1157 return ai;
1158}
1159
1160/**
1161 * pcpu_free_alloc_info - free percpu allocation info
1162 * @ai: pcpu_alloc_info to free
1163 *
1164 * Free @ai which was allocated by pcpu_alloc_alloc_info().
1165 */
1166void __init pcpu_free_alloc_info(struct pcpu_alloc_info *ai)
1167{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001168 memblock_free_early(__pa(ai), ai->__ai_size);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001169}
1170
1171/**
Tejun Heofd1e8a12009-08-14 15:00:51 +09001172 * pcpu_dump_alloc_info - print out information about pcpu_alloc_info
1173 * @lvl: loglevel
1174 * @ai: allocation info to dump
1175 *
1176 * Print out information about @ai using loglevel @lvl.
1177 */
1178static void pcpu_dump_alloc_info(const char *lvl,
1179 const struct pcpu_alloc_info *ai)
Tejun Heo033e48f2009-08-14 15:00:51 +09001180{
Tejun Heofd1e8a12009-08-14 15:00:51 +09001181 int group_width = 1, cpu_width = 1, width;
Tejun Heo033e48f2009-08-14 15:00:51 +09001182 char empty_str[] = "--------";
Tejun Heofd1e8a12009-08-14 15:00:51 +09001183 int alloc = 0, alloc_end = 0;
1184 int group, v;
1185 int upa, apl; /* units per alloc, allocs per line */
Tejun Heo033e48f2009-08-14 15:00:51 +09001186
Tejun Heofd1e8a12009-08-14 15:00:51 +09001187 v = ai->nr_groups;
Tejun Heo033e48f2009-08-14 15:00:51 +09001188 while (v /= 10)
Tejun Heofd1e8a12009-08-14 15:00:51 +09001189 group_width++;
Tejun Heo033e48f2009-08-14 15:00:51 +09001190
Tejun Heofd1e8a12009-08-14 15:00:51 +09001191 v = num_possible_cpus();
1192 while (v /= 10)
1193 cpu_width++;
1194 empty_str[min_t(int, cpu_width, sizeof(empty_str) - 1)] = '\0';
Tejun Heo033e48f2009-08-14 15:00:51 +09001195
Tejun Heofd1e8a12009-08-14 15:00:51 +09001196 upa = ai->alloc_size / ai->unit_size;
1197 width = upa * (cpu_width + 1) + group_width + 3;
1198 apl = rounddown_pow_of_two(max(60 / width, 1));
Tejun Heo033e48f2009-08-14 15:00:51 +09001199
Tejun Heofd1e8a12009-08-14 15:00:51 +09001200 printk("%spcpu-alloc: s%zu r%zu d%zu u%zu alloc=%zu*%zu",
1201 lvl, ai->static_size, ai->reserved_size, ai->dyn_size,
1202 ai->unit_size, ai->alloc_size / ai->atom_size, ai->atom_size);
1203
1204 for (group = 0; group < ai->nr_groups; group++) {
1205 const struct pcpu_group_info *gi = &ai->groups[group];
1206 int unit = 0, unit_end = 0;
1207
1208 BUG_ON(gi->nr_units % upa);
1209 for (alloc_end += gi->nr_units / upa;
1210 alloc < alloc_end; alloc++) {
1211 if (!(alloc % apl)) {
Tejun Heocb129822012-03-29 09:45:58 -07001212 printk(KERN_CONT "\n");
Tejun Heofd1e8a12009-08-14 15:00:51 +09001213 printk("%spcpu-alloc: ", lvl);
1214 }
Tejun Heocb129822012-03-29 09:45:58 -07001215 printk(KERN_CONT "[%0*d] ", group_width, group);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001216
1217 for (unit_end += upa; unit < unit_end; unit++)
1218 if (gi->cpu_map[unit] != NR_CPUS)
Tejun Heocb129822012-03-29 09:45:58 -07001219 printk(KERN_CONT "%0*d ", cpu_width,
Tejun Heofd1e8a12009-08-14 15:00:51 +09001220 gi->cpu_map[unit]);
1221 else
Tejun Heocb129822012-03-29 09:45:58 -07001222 printk(KERN_CONT "%s ", empty_str);
Tejun Heo033e48f2009-08-14 15:00:51 +09001223 }
Tejun Heo033e48f2009-08-14 15:00:51 +09001224 }
Tejun Heocb129822012-03-29 09:45:58 -07001225 printk(KERN_CONT "\n");
Tejun Heo033e48f2009-08-14 15:00:51 +09001226}
Tejun Heo033e48f2009-08-14 15:00:51 +09001227
Tejun Heofbf59bc2009-02-20 16:29:08 +09001228/**
Tejun Heo8d408b42009-02-24 11:57:21 +09001229 * pcpu_setup_first_chunk - initialize the first percpu chunk
Tejun Heofd1e8a12009-08-14 15:00:51 +09001230 * @ai: pcpu_alloc_info describing how to percpu area is shaped
Tejun Heo38a6be52009-07-04 08:10:59 +09001231 * @base_addr: mapped address
Tejun Heofbf59bc2009-02-20 16:29:08 +09001232 *
Tejun Heo8d408b42009-02-24 11:57:21 +09001233 * Initialize the first percpu chunk which contains the kernel static
1234 * perpcu area. This function is to be called from arch percpu area
Tejun Heo38a6be52009-07-04 08:10:59 +09001235 * setup path.
Tejun Heo8d408b42009-02-24 11:57:21 +09001236 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001237 * @ai contains all information necessary to initialize the first
1238 * chunk and prime the dynamic percpu allocator.
Tejun Heo8d408b42009-02-24 11:57:21 +09001239 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001240 * @ai->static_size is the size of static percpu area.
1241 *
1242 * @ai->reserved_size, if non-zero, specifies the amount of bytes to
Tejun Heoedcb4632009-03-06 14:33:59 +09001243 * reserve after the static area in the first chunk. This reserves
1244 * the first chunk such that it's available only through reserved
1245 * percpu allocation. This is primarily used to serve module percpu
1246 * static areas on architectures where the addressing model has
1247 * limited offset range for symbol relocations to guarantee module
1248 * percpu symbols fall inside the relocatable range.
1249 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001250 * @ai->dyn_size determines the number of bytes available for dynamic
1251 * allocation in the first chunk. The area between @ai->static_size +
1252 * @ai->reserved_size + @ai->dyn_size and @ai->unit_size is unused.
Tejun Heo6074d5b2009-03-10 16:27:48 +09001253 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001254 * @ai->unit_size specifies unit size and must be aligned to PAGE_SIZE
1255 * and equal to or larger than @ai->static_size + @ai->reserved_size +
1256 * @ai->dyn_size.
Tejun Heo8d408b42009-02-24 11:57:21 +09001257 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001258 * @ai->atom_size is the allocation atom size and used as alignment
1259 * for vm areas.
Tejun Heo8d408b42009-02-24 11:57:21 +09001260 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001261 * @ai->alloc_size is the allocation size and always multiple of
1262 * @ai->atom_size. This is larger than @ai->atom_size if
1263 * @ai->unit_size is larger than @ai->atom_size.
1264 *
1265 * @ai->nr_groups and @ai->groups describe virtual memory layout of
1266 * percpu areas. Units which should be colocated are put into the
1267 * same group. Dynamic VM areas will be allocated according to these
1268 * groupings. If @ai->nr_groups is zero, a single group containing
1269 * all units is assumed.
Tejun Heo8d408b42009-02-24 11:57:21 +09001270 *
Tejun Heo38a6be52009-07-04 08:10:59 +09001271 * The caller should have mapped the first chunk at @base_addr and
1272 * copied static data to each unit.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001273 *
Tejun Heoedcb4632009-03-06 14:33:59 +09001274 * If the first chunk ends up with both reserved and dynamic areas, it
1275 * is served by two chunks - one to serve the core static and reserved
1276 * areas and the other for the dynamic area. They share the same vm
1277 * and page map but uses different area allocation map to stay away
1278 * from each other. The latter chunk is circulated in the chunk slots
1279 * and available for dynamic allocation like any other chunks.
1280 *
Tejun Heofbf59bc2009-02-20 16:29:08 +09001281 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09001282 * 0 on success, -errno on failure.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001283 */
Tejun Heofb435d52009-08-14 15:00:51 +09001284int __init pcpu_setup_first_chunk(const struct pcpu_alloc_info *ai,
1285 void *base_addr)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001286{
Tejun Heo635b75fc2009-09-24 09:43:11 +09001287 static char cpus_buf[4096] __initdata;
Tejun Heo099a19d2010-06-27 18:50:00 +02001288 static int smap[PERCPU_DYNAMIC_EARLY_SLOTS] __initdata;
1289 static int dmap[PERCPU_DYNAMIC_EARLY_SLOTS] __initdata;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001290 size_t dyn_size = ai->dyn_size;
1291 size_t size_sum = ai->static_size + ai->reserved_size + dyn_size;
Tejun Heoedcb4632009-03-06 14:33:59 +09001292 struct pcpu_chunk *schunk, *dchunk = NULL;
Tejun Heo65632972009-08-14 15:00:52 +09001293 unsigned long *group_offsets;
1294 size_t *group_sizes;
Tejun Heofb435d52009-08-14 15:00:51 +09001295 unsigned long *unit_off;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001296 unsigned int cpu;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001297 int *unit_map;
1298 int group, unit, i;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001299
Tejun Heo635b75fc2009-09-24 09:43:11 +09001300 cpumask_scnprintf(cpus_buf, sizeof(cpus_buf), cpu_possible_mask);
1301
1302#define PCPU_SETUP_BUG_ON(cond) do { \
1303 if (unlikely(cond)) { \
1304 pr_emerg("PERCPU: failed to initialize, %s", #cond); \
1305 pr_emerg("PERCPU: cpu_possible_mask=%s\n", cpus_buf); \
1306 pcpu_dump_alloc_info(KERN_EMERG, ai); \
1307 BUG(); \
1308 } \
1309} while (0)
1310
Tejun Heo2f39e632009-07-04 08:11:00 +09001311 /* sanity checks */
Tejun Heo635b75fc2009-09-24 09:43:11 +09001312 PCPU_SETUP_BUG_ON(ai->nr_groups <= 0);
Tejun Heobbddff02010-09-03 18:22:48 +02001313#ifdef CONFIG_SMP
Tejun Heo635b75fc2009-09-24 09:43:11 +09001314 PCPU_SETUP_BUG_ON(!ai->static_size);
Tejun Heo0415b00d12011-03-24 18:50:09 +01001315 PCPU_SETUP_BUG_ON((unsigned long)__per_cpu_start & ~PAGE_MASK);
Tejun Heobbddff02010-09-03 18:22:48 +02001316#endif
Tejun Heo635b75fc2009-09-24 09:43:11 +09001317 PCPU_SETUP_BUG_ON(!base_addr);
Tejun Heo0415b00d12011-03-24 18:50:09 +01001318 PCPU_SETUP_BUG_ON((unsigned long)base_addr & ~PAGE_MASK);
Tejun Heo635b75fc2009-09-24 09:43:11 +09001319 PCPU_SETUP_BUG_ON(ai->unit_size < size_sum);
1320 PCPU_SETUP_BUG_ON(ai->unit_size & ~PAGE_MASK);
1321 PCPU_SETUP_BUG_ON(ai->unit_size < PCPU_MIN_UNIT_SIZE);
Tejun Heo099a19d2010-06-27 18:50:00 +02001322 PCPU_SETUP_BUG_ON(ai->dyn_size < PERCPU_DYNAMIC_EARLY_SIZE);
Tejun Heo9f645532010-04-09 18:57:01 +09001323 PCPU_SETUP_BUG_ON(pcpu_verify_alloc_info(ai) < 0);
Tejun Heo8d408b42009-02-24 11:57:21 +09001324
Tejun Heo65632972009-08-14 15:00:52 +09001325 /* process group information and build config tables accordingly */
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001326 group_offsets = memblock_virt_alloc(ai->nr_groups *
1327 sizeof(group_offsets[0]), 0);
1328 group_sizes = memblock_virt_alloc(ai->nr_groups *
1329 sizeof(group_sizes[0]), 0);
1330 unit_map = memblock_virt_alloc(nr_cpu_ids * sizeof(unit_map[0]), 0);
1331 unit_off = memblock_virt_alloc(nr_cpu_ids * sizeof(unit_off[0]), 0);
Tejun Heo2f39e632009-07-04 08:11:00 +09001332
Tejun Heofd1e8a12009-08-14 15:00:51 +09001333 for (cpu = 0; cpu < nr_cpu_ids; cpu++)
Tejun Heoffe0d5a2009-09-29 09:17:56 +09001334 unit_map[cpu] = UINT_MAX;
Tejun Heoa855b842011-11-18 10:55:35 -08001335
1336 pcpu_low_unit_cpu = NR_CPUS;
1337 pcpu_high_unit_cpu = NR_CPUS;
Tejun Heo2f39e632009-07-04 08:11:00 +09001338
Tejun Heofd1e8a12009-08-14 15:00:51 +09001339 for (group = 0, unit = 0; group < ai->nr_groups; group++, unit += i) {
1340 const struct pcpu_group_info *gi = &ai->groups[group];
Tejun Heo2f39e632009-07-04 08:11:00 +09001341
Tejun Heo65632972009-08-14 15:00:52 +09001342 group_offsets[group] = gi->base_offset;
1343 group_sizes[group] = gi->nr_units * ai->unit_size;
1344
Tejun Heofd1e8a12009-08-14 15:00:51 +09001345 for (i = 0; i < gi->nr_units; i++) {
1346 cpu = gi->cpu_map[i];
1347 if (cpu == NR_CPUS)
1348 continue;
1349
Tejun Heo635b75fc2009-09-24 09:43:11 +09001350 PCPU_SETUP_BUG_ON(cpu > nr_cpu_ids);
1351 PCPU_SETUP_BUG_ON(!cpu_possible(cpu));
1352 PCPU_SETUP_BUG_ON(unit_map[cpu] != UINT_MAX);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001353
1354 unit_map[cpu] = unit + i;
Tejun Heofb435d52009-08-14 15:00:51 +09001355 unit_off[cpu] = gi->base_offset + i * ai->unit_size;
1356
Tejun Heoa855b842011-11-18 10:55:35 -08001357 /* determine low/high unit_cpu */
1358 if (pcpu_low_unit_cpu == NR_CPUS ||
1359 unit_off[cpu] < unit_off[pcpu_low_unit_cpu])
1360 pcpu_low_unit_cpu = cpu;
1361 if (pcpu_high_unit_cpu == NR_CPUS ||
1362 unit_off[cpu] > unit_off[pcpu_high_unit_cpu])
1363 pcpu_high_unit_cpu = cpu;
Tejun Heo2f39e632009-07-04 08:11:00 +09001364 }
Tejun Heo2f39e632009-07-04 08:11:00 +09001365 }
Tejun Heofd1e8a12009-08-14 15:00:51 +09001366 pcpu_nr_units = unit;
1367
1368 for_each_possible_cpu(cpu)
Tejun Heo635b75fc2009-09-24 09:43:11 +09001369 PCPU_SETUP_BUG_ON(unit_map[cpu] == UINT_MAX);
1370
1371 /* we're done parsing the input, undefine BUG macro and dump config */
1372#undef PCPU_SETUP_BUG_ON
Tejun Heobcbea792010-12-22 14:19:14 +01001373 pcpu_dump_alloc_info(KERN_DEBUG, ai);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001374
Tejun Heo65632972009-08-14 15:00:52 +09001375 pcpu_nr_groups = ai->nr_groups;
1376 pcpu_group_offsets = group_offsets;
1377 pcpu_group_sizes = group_sizes;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001378 pcpu_unit_map = unit_map;
Tejun Heofb435d52009-08-14 15:00:51 +09001379 pcpu_unit_offsets = unit_off;
Tejun Heo2f39e632009-07-04 08:11:00 +09001380
1381 /* determine basic parameters */
Tejun Heofd1e8a12009-08-14 15:00:51 +09001382 pcpu_unit_pages = ai->unit_size >> PAGE_SHIFT;
Tejun Heod9b55ee2009-02-24 11:57:21 +09001383 pcpu_unit_size = pcpu_unit_pages << PAGE_SHIFT;
Tejun Heo65632972009-08-14 15:00:52 +09001384 pcpu_atom_size = ai->atom_size;
Tejun Heoce3141a2009-07-04 08:11:00 +09001385 pcpu_chunk_struct_size = sizeof(struct pcpu_chunk) +
1386 BITS_TO_LONGS(pcpu_unit_pages) * sizeof(unsigned long);
Tejun Heocafe8812009-03-06 14:33:59 +09001387
Tejun Heod9b55ee2009-02-24 11:57:21 +09001388 /*
1389 * Allocate chunk slots. The additional last slot is for
1390 * empty chunks.
1391 */
1392 pcpu_nr_slots = __pcpu_size_to_slot(pcpu_unit_size) + 2;
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001393 pcpu_slot = memblock_virt_alloc(
1394 pcpu_nr_slots * sizeof(pcpu_slot[0]), 0);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001395 for (i = 0; i < pcpu_nr_slots; i++)
1396 INIT_LIST_HEAD(&pcpu_slot[i]);
1397
Tejun Heoedcb4632009-03-06 14:33:59 +09001398 /*
1399 * Initialize static chunk. If reserved_size is zero, the
1400 * static chunk covers static area + dynamic allocation area
1401 * in the first chunk. If reserved_size is not zero, it
1402 * covers static area + reserved area (mostly used for module
1403 * static percpu allocation).
1404 */
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001405 schunk = memblock_virt_alloc(pcpu_chunk_struct_size, 0);
Tejun Heo2441d152009-03-06 14:33:59 +09001406 INIT_LIST_HEAD(&schunk->list);
Tejun Heobba174f2009-08-14 15:00:51 +09001407 schunk->base_addr = base_addr;
Tejun Heo61ace7f2009-03-06 14:33:59 +09001408 schunk->map = smap;
1409 schunk->map_alloc = ARRAY_SIZE(smap);
Tejun Heo38a6be52009-07-04 08:10:59 +09001410 schunk->immutable = true;
Tejun Heoce3141a2009-07-04 08:11:00 +09001411 bitmap_fill(schunk->populated, pcpu_unit_pages);
Tejun Heoedcb4632009-03-06 14:33:59 +09001412
Tejun Heofd1e8a12009-08-14 15:00:51 +09001413 if (ai->reserved_size) {
1414 schunk->free_size = ai->reserved_size;
Tejun Heoae9e6bc92009-04-02 13:19:54 +09001415 pcpu_reserved_chunk = schunk;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001416 pcpu_reserved_chunk_limit = ai->static_size + ai->reserved_size;
Tejun Heoedcb4632009-03-06 14:33:59 +09001417 } else {
1418 schunk->free_size = dyn_size;
1419 dyn_size = 0; /* dynamic area covered */
1420 }
Tejun Heo2441d152009-03-06 14:33:59 +09001421 schunk->contig_hint = schunk->free_size;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001422
Al Viro723ad1d2014-03-06 21:13:18 -05001423 schunk->map[0] = 1;
1424 schunk->map[1] = ai->static_size;
1425 schunk->map_used = 1;
Tejun Heo61ace7f2009-03-06 14:33:59 +09001426 if (schunk->free_size)
Al Viro723ad1d2014-03-06 21:13:18 -05001427 schunk->map[++schunk->map_used] = 1 | (ai->static_size + schunk->free_size);
1428 else
1429 schunk->map[1] |= 1;
Tejun Heo61ace7f2009-03-06 14:33:59 +09001430
Tejun Heoedcb4632009-03-06 14:33:59 +09001431 /* init dynamic chunk if necessary */
1432 if (dyn_size) {
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001433 dchunk = memblock_virt_alloc(pcpu_chunk_struct_size, 0);
Tejun Heoedcb4632009-03-06 14:33:59 +09001434 INIT_LIST_HEAD(&dchunk->list);
Tejun Heobba174f2009-08-14 15:00:51 +09001435 dchunk->base_addr = base_addr;
Tejun Heoedcb4632009-03-06 14:33:59 +09001436 dchunk->map = dmap;
1437 dchunk->map_alloc = ARRAY_SIZE(dmap);
Tejun Heo38a6be52009-07-04 08:10:59 +09001438 dchunk->immutable = true;
Tejun Heoce3141a2009-07-04 08:11:00 +09001439 bitmap_fill(dchunk->populated, pcpu_unit_pages);
Tejun Heoedcb4632009-03-06 14:33:59 +09001440
1441 dchunk->contig_hint = dchunk->free_size = dyn_size;
Al Viro723ad1d2014-03-06 21:13:18 -05001442 dchunk->map[0] = 1;
1443 dchunk->map[1] = pcpu_reserved_chunk_limit;
1444 dchunk->map[2] = (pcpu_reserved_chunk_limit + dchunk->free_size) | 1;
1445 dchunk->map_used = 2;
Tejun Heoedcb4632009-03-06 14:33:59 +09001446 }
1447
Tejun Heo2441d152009-03-06 14:33:59 +09001448 /* link the first chunk in */
Tejun Heoae9e6bc92009-04-02 13:19:54 +09001449 pcpu_first_chunk = dchunk ?: schunk;
1450 pcpu_chunk_relocate(pcpu_first_chunk, -1);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001451
1452 /* we're done */
Tejun Heobba174f2009-08-14 15:00:51 +09001453 pcpu_base_addr = base_addr;
Tejun Heofb435d52009-08-14 15:00:51 +09001454 return 0;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001455}
Tejun Heo66c3a752009-03-10 16:27:48 +09001456
Tejun Heobbddff02010-09-03 18:22:48 +02001457#ifdef CONFIG_SMP
1458
Andi Kleen17f36092012-10-04 17:12:07 -07001459const char * const pcpu_fc_names[PCPU_FC_NR] __initconst = {
Tejun Heof58dc012009-08-14 15:00:50 +09001460 [PCPU_FC_AUTO] = "auto",
1461 [PCPU_FC_EMBED] = "embed",
1462 [PCPU_FC_PAGE] = "page",
Tejun Heof58dc012009-08-14 15:00:50 +09001463};
Tejun Heo66c3a752009-03-10 16:27:48 +09001464
Tejun Heof58dc012009-08-14 15:00:50 +09001465enum pcpu_fc pcpu_chosen_fc __initdata = PCPU_FC_AUTO;
1466
1467static int __init percpu_alloc_setup(char *str)
Tejun Heo66c3a752009-03-10 16:27:48 +09001468{
Cyrill Gorcunov5479c782012-11-25 01:17:13 +04001469 if (!str)
1470 return -EINVAL;
1471
Tejun Heof58dc012009-08-14 15:00:50 +09001472 if (0)
1473 /* nada */;
1474#ifdef CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK
1475 else if (!strcmp(str, "embed"))
1476 pcpu_chosen_fc = PCPU_FC_EMBED;
1477#endif
1478#ifdef CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK
1479 else if (!strcmp(str, "page"))
1480 pcpu_chosen_fc = PCPU_FC_PAGE;
1481#endif
Tejun Heof58dc012009-08-14 15:00:50 +09001482 else
1483 pr_warning("PERCPU: unknown allocator %s specified\n", str);
Tejun Heo66c3a752009-03-10 16:27:48 +09001484
Tejun Heof58dc012009-08-14 15:00:50 +09001485 return 0;
Tejun Heo66c3a752009-03-10 16:27:48 +09001486}
Tejun Heof58dc012009-08-14 15:00:50 +09001487early_param("percpu_alloc", percpu_alloc_setup);
Tejun Heo66c3a752009-03-10 16:27:48 +09001488
Tejun Heo3c9a0242010-09-09 18:00:15 +02001489/*
1490 * pcpu_embed_first_chunk() is used by the generic percpu setup.
1491 * Build it if needed by the arch config or the generic setup is going
1492 * to be used.
1493 */
Tejun Heo08fc4582009-08-14 15:00:49 +09001494#if defined(CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK) || \
1495 !defined(CONFIG_HAVE_SETUP_PER_CPU_AREA)
Tejun Heo3c9a0242010-09-09 18:00:15 +02001496#define BUILD_EMBED_FIRST_CHUNK
1497#endif
1498
1499/* build pcpu_page_first_chunk() iff needed by the arch config */
1500#if defined(CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK)
1501#define BUILD_PAGE_FIRST_CHUNK
1502#endif
1503
1504/* pcpu_build_alloc_info() is used by both embed and page first chunk */
1505#if defined(BUILD_EMBED_FIRST_CHUNK) || defined(BUILD_PAGE_FIRST_CHUNK)
1506/**
Tejun Heofbf59bc2009-02-20 16:29:08 +09001507 * pcpu_build_alloc_info - build alloc_info considering distances between CPUs
1508 * @reserved_size: the size of reserved percpu area in bytes
1509 * @dyn_size: minimum free size for dynamic allocation in bytes
1510 * @atom_size: allocation atom size
1511 * @cpu_distance_fn: callback to determine distance between cpus, optional
1512 *
1513 * This function determines grouping of units, their mappings to cpus
1514 * and other parameters considering needed percpu size, allocation
1515 * atom size and distances between CPUs.
1516 *
1517 * Groups are always mutliples of atom size and CPUs which are of
1518 * LOCAL_DISTANCE both ways are grouped together and share space for
1519 * units in the same group. The returned configuration is guaranteed
1520 * to have CPUs on different nodes on different groups and >=75% usage
1521 * of allocated virtual address space.
1522 *
1523 * RETURNS:
1524 * On success, pointer to the new allocation_info is returned. On
1525 * failure, ERR_PTR value is returned.
1526 */
1527static struct pcpu_alloc_info * __init pcpu_build_alloc_info(
1528 size_t reserved_size, size_t dyn_size,
1529 size_t atom_size,
1530 pcpu_fc_cpu_distance_fn_t cpu_distance_fn)
1531{
1532 static int group_map[NR_CPUS] __initdata;
1533 static int group_cnt[NR_CPUS] __initdata;
1534 const size_t static_size = __per_cpu_end - __per_cpu_start;
1535 int nr_groups = 1, nr_units = 0;
1536 size_t size_sum, min_unit_size, alloc_size;
1537 int upa, max_upa, uninitialized_var(best_upa); /* units_per_alloc */
1538 int last_allocs, group, unit;
1539 unsigned int cpu, tcpu;
1540 struct pcpu_alloc_info *ai;
1541 unsigned int *cpu_map;
1542
1543 /* this function may be called multiple times */
1544 memset(group_map, 0, sizeof(group_map));
1545 memset(group_cnt, 0, sizeof(group_cnt));
1546
1547 /* calculate size_sum and ensure dyn_size is enough for early alloc */
1548 size_sum = PFN_ALIGN(static_size + reserved_size +
1549 max_t(size_t, dyn_size, PERCPU_DYNAMIC_EARLY_SIZE));
1550 dyn_size = size_sum - static_size - reserved_size;
1551
1552 /*
1553 * Determine min_unit_size, alloc_size and max_upa such that
1554 * alloc_size is multiple of atom_size and is the smallest
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001555 * which can accommodate 4k aligned segments which are equal to
Tejun Heofbf59bc2009-02-20 16:29:08 +09001556 * or larger than min_unit_size.
1557 */
1558 min_unit_size = max_t(size_t, size_sum, PCPU_MIN_UNIT_SIZE);
1559
1560 alloc_size = roundup(min_unit_size, atom_size);
1561 upa = alloc_size / min_unit_size;
1562 while (alloc_size % upa || ((alloc_size / upa) & ~PAGE_MASK))
1563 upa--;
1564 max_upa = upa;
1565
1566 /* group cpus according to their proximity */
1567 for_each_possible_cpu(cpu) {
1568 group = 0;
1569 next_group:
1570 for_each_possible_cpu(tcpu) {
1571 if (cpu == tcpu)
1572 break;
1573 if (group_map[tcpu] == group && cpu_distance_fn &&
1574 (cpu_distance_fn(cpu, tcpu) > LOCAL_DISTANCE ||
1575 cpu_distance_fn(tcpu, cpu) > LOCAL_DISTANCE)) {
1576 group++;
1577 nr_groups = max(nr_groups, group + 1);
1578 goto next_group;
1579 }
1580 }
1581 group_map[cpu] = group;
1582 group_cnt[group]++;
1583 }
1584
1585 /*
1586 * Expand unit size until address space usage goes over 75%
1587 * and then as much as possible without using more address
1588 * space.
1589 */
1590 last_allocs = INT_MAX;
1591 for (upa = max_upa; upa; upa--) {
1592 int allocs = 0, wasted = 0;
1593
1594 if (alloc_size % upa || ((alloc_size / upa) & ~PAGE_MASK))
1595 continue;
1596
1597 for (group = 0; group < nr_groups; group++) {
1598 int this_allocs = DIV_ROUND_UP(group_cnt[group], upa);
1599 allocs += this_allocs;
1600 wasted += this_allocs * upa - group_cnt[group];
1601 }
1602
1603 /*
1604 * Don't accept if wastage is over 1/3. The
1605 * greater-than comparison ensures upa==1 always
1606 * passes the following check.
1607 */
1608 if (wasted > num_possible_cpus() / 3)
1609 continue;
1610
1611 /* and then don't consume more memory */
1612 if (allocs > last_allocs)
1613 break;
1614 last_allocs = allocs;
1615 best_upa = upa;
1616 }
1617 upa = best_upa;
1618
1619 /* allocate and fill alloc_info */
1620 for (group = 0; group < nr_groups; group++)
1621 nr_units += roundup(group_cnt[group], upa);
1622
1623 ai = pcpu_alloc_alloc_info(nr_groups, nr_units);
1624 if (!ai)
1625 return ERR_PTR(-ENOMEM);
1626 cpu_map = ai->groups[0].cpu_map;
1627
1628 for (group = 0; group < nr_groups; group++) {
1629 ai->groups[group].cpu_map = cpu_map;
1630 cpu_map += roundup(group_cnt[group], upa);
1631 }
1632
1633 ai->static_size = static_size;
1634 ai->reserved_size = reserved_size;
1635 ai->dyn_size = dyn_size;
1636 ai->unit_size = alloc_size / upa;
1637 ai->atom_size = atom_size;
1638 ai->alloc_size = alloc_size;
1639
1640 for (group = 0, unit = 0; group_cnt[group]; group++) {
1641 struct pcpu_group_info *gi = &ai->groups[group];
1642
1643 /*
1644 * Initialize base_offset as if all groups are located
1645 * back-to-back. The caller should update this to
1646 * reflect actual allocation.
1647 */
1648 gi->base_offset = unit * ai->unit_size;
1649
1650 for_each_possible_cpu(cpu)
1651 if (group_map[cpu] == group)
1652 gi->cpu_map[gi->nr_units++] = cpu;
1653 gi->nr_units = roundup(gi->nr_units, upa);
1654 unit += gi->nr_units;
1655 }
1656 BUG_ON(unit != nr_units);
1657
1658 return ai;
1659}
Tejun Heo3c9a0242010-09-09 18:00:15 +02001660#endif /* BUILD_EMBED_FIRST_CHUNK || BUILD_PAGE_FIRST_CHUNK */
Tejun Heofbf59bc2009-02-20 16:29:08 +09001661
Tejun Heo3c9a0242010-09-09 18:00:15 +02001662#if defined(BUILD_EMBED_FIRST_CHUNK)
Tejun Heo66c3a752009-03-10 16:27:48 +09001663/**
1664 * pcpu_embed_first_chunk - embed the first percpu chunk into bootmem
Tejun Heo66c3a752009-03-10 16:27:48 +09001665 * @reserved_size: the size of reserved percpu area in bytes
Tejun Heo4ba6ce22010-06-27 18:49:59 +02001666 * @dyn_size: minimum free size for dynamic allocation in bytes
Tejun Heoc8826dd2009-08-14 15:00:52 +09001667 * @atom_size: allocation atom size
1668 * @cpu_distance_fn: callback to determine distance between cpus, optional
1669 * @alloc_fn: function to allocate percpu page
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001670 * @free_fn: function to free percpu page
Tejun Heo66c3a752009-03-10 16:27:48 +09001671 *
1672 * This is a helper to ease setting up embedded first percpu chunk and
1673 * can be called where pcpu_setup_first_chunk() is expected.
1674 *
1675 * If this function is used to setup the first chunk, it is allocated
Tejun Heoc8826dd2009-08-14 15:00:52 +09001676 * by calling @alloc_fn and used as-is without being mapped into
1677 * vmalloc area. Allocations are always whole multiples of @atom_size
1678 * aligned to @atom_size.
1679 *
1680 * This enables the first chunk to piggy back on the linear physical
1681 * mapping which often uses larger page size. Please note that this
1682 * can result in very sparse cpu->unit mapping on NUMA machines thus
1683 * requiring large vmalloc address space. Don't use this allocator if
1684 * vmalloc space is not orders of magnitude larger than distances
1685 * between node memory addresses (ie. 32bit NUMA machines).
Tejun Heo66c3a752009-03-10 16:27:48 +09001686 *
Tejun Heo4ba6ce22010-06-27 18:49:59 +02001687 * @dyn_size specifies the minimum dynamic area size.
Tejun Heo66c3a752009-03-10 16:27:48 +09001688 *
1689 * If the needed size is smaller than the minimum or specified unit
Tejun Heoc8826dd2009-08-14 15:00:52 +09001690 * size, the leftover is returned using @free_fn.
Tejun Heo66c3a752009-03-10 16:27:48 +09001691 *
1692 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09001693 * 0 on success, -errno on failure.
Tejun Heo66c3a752009-03-10 16:27:48 +09001694 */
Tejun Heo4ba6ce22010-06-27 18:49:59 +02001695int __init pcpu_embed_first_chunk(size_t reserved_size, size_t dyn_size,
Tejun Heoc8826dd2009-08-14 15:00:52 +09001696 size_t atom_size,
1697 pcpu_fc_cpu_distance_fn_t cpu_distance_fn,
1698 pcpu_fc_alloc_fn_t alloc_fn,
1699 pcpu_fc_free_fn_t free_fn)
Tejun Heo66c3a752009-03-10 16:27:48 +09001700{
Tejun Heoc8826dd2009-08-14 15:00:52 +09001701 void *base = (void *)ULONG_MAX;
1702 void **areas = NULL;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001703 struct pcpu_alloc_info *ai;
Tejun Heo6ea529a2009-09-24 18:46:01 +09001704 size_t size_sum, areas_size, max_distance;
Tejun Heoc8826dd2009-08-14 15:00:52 +09001705 int group, i, rc;
Tejun Heo66c3a752009-03-10 16:27:48 +09001706
Tejun Heoc8826dd2009-08-14 15:00:52 +09001707 ai = pcpu_build_alloc_info(reserved_size, dyn_size, atom_size,
1708 cpu_distance_fn);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001709 if (IS_ERR(ai))
1710 return PTR_ERR(ai);
Tejun Heo66c3a752009-03-10 16:27:48 +09001711
Tejun Heofd1e8a12009-08-14 15:00:51 +09001712 size_sum = ai->static_size + ai->reserved_size + ai->dyn_size;
Tejun Heoc8826dd2009-08-14 15:00:52 +09001713 areas_size = PFN_ALIGN(ai->nr_groups * sizeof(void *));
Tejun Heo66c3a752009-03-10 16:27:48 +09001714
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001715 areas = memblock_virt_alloc_nopanic(areas_size, 0);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001716 if (!areas) {
Tejun Heofb435d52009-08-14 15:00:51 +09001717 rc = -ENOMEM;
Tejun Heoc8826dd2009-08-14 15:00:52 +09001718 goto out_free;
Tejun Heofa8a7092009-06-22 11:56:24 +09001719 }
Tejun Heo66c3a752009-03-10 16:27:48 +09001720
Tejun Heoc8826dd2009-08-14 15:00:52 +09001721 /* allocate, copy and determine base address */
1722 for (group = 0; group < ai->nr_groups; group++) {
1723 struct pcpu_group_info *gi = &ai->groups[group];
1724 unsigned int cpu = NR_CPUS;
1725 void *ptr;
Tejun Heo66c3a752009-03-10 16:27:48 +09001726
Tejun Heoc8826dd2009-08-14 15:00:52 +09001727 for (i = 0; i < gi->nr_units && cpu == NR_CPUS; i++)
1728 cpu = gi->cpu_map[i];
1729 BUG_ON(cpu == NR_CPUS);
1730
1731 /* allocate space for the whole group */
1732 ptr = alloc_fn(cpu, gi->nr_units * ai->unit_size, atom_size);
1733 if (!ptr) {
1734 rc = -ENOMEM;
1735 goto out_free_areas;
1736 }
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001737 /* kmemleak tracks the percpu allocations separately */
1738 kmemleak_free(ptr);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001739 areas[group] = ptr;
1740
1741 base = min(ptr, base);
Tejun Heo42b64282012-04-27 08:42:53 -07001742 }
1743
1744 /*
1745 * Copy data and free unused parts. This should happen after all
1746 * allocations are complete; otherwise, we may end up with
1747 * overlapping groups.
1748 */
1749 for (group = 0; group < ai->nr_groups; group++) {
1750 struct pcpu_group_info *gi = &ai->groups[group];
1751 void *ptr = areas[group];
Tejun Heoc8826dd2009-08-14 15:00:52 +09001752
1753 for (i = 0; i < gi->nr_units; i++, ptr += ai->unit_size) {
1754 if (gi->cpu_map[i] == NR_CPUS) {
1755 /* unused unit, free whole */
1756 free_fn(ptr, ai->unit_size);
1757 continue;
1758 }
1759 /* copy and return the unused part */
1760 memcpy(ptr, __per_cpu_load, ai->static_size);
1761 free_fn(ptr + size_sum, ai->unit_size - size_sum);
1762 }
Tejun Heo66c3a752009-03-10 16:27:48 +09001763 }
1764
Tejun Heoc8826dd2009-08-14 15:00:52 +09001765 /* base address is now known, determine group base offsets */
Tejun Heo6ea529a2009-09-24 18:46:01 +09001766 max_distance = 0;
1767 for (group = 0; group < ai->nr_groups; group++) {
Tejun Heoc8826dd2009-08-14 15:00:52 +09001768 ai->groups[group].base_offset = areas[group] - base;
Tejun Heo1a0c3292009-10-04 09:31:05 +09001769 max_distance = max_t(size_t, max_distance,
1770 ai->groups[group].base_offset);
Tejun Heo6ea529a2009-09-24 18:46:01 +09001771 }
1772 max_distance += ai->unit_size;
1773
1774 /* warn if maximum distance is further than 75% of vmalloc space */
Laura Abbott8a092172014-01-02 13:53:21 -08001775 if (max_distance > VMALLOC_TOTAL * 3 / 4) {
Tejun Heo1a0c3292009-10-04 09:31:05 +09001776 pr_warning("PERCPU: max_distance=0x%zx too large for vmalloc "
Mike Frysinger787e5b02011-03-23 08:23:52 +01001777 "space 0x%lx\n", max_distance,
Laura Abbott8a092172014-01-02 13:53:21 -08001778 VMALLOC_TOTAL);
Tejun Heo6ea529a2009-09-24 18:46:01 +09001779#ifdef CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK
1780 /* and fail if we have fallback */
1781 rc = -EINVAL;
1782 goto out_free;
1783#endif
1784 }
Tejun Heoc8826dd2009-08-14 15:00:52 +09001785
Tejun Heo004018e2009-08-14 15:00:49 +09001786 pr_info("PERCPU: Embedded %zu pages/cpu @%p s%zu r%zu d%zu u%zu\n",
Tejun Heofd1e8a12009-08-14 15:00:51 +09001787 PFN_DOWN(size_sum), base, ai->static_size, ai->reserved_size,
1788 ai->dyn_size, ai->unit_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09001789
Tejun Heofb435d52009-08-14 15:00:51 +09001790 rc = pcpu_setup_first_chunk(ai, base);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001791 goto out_free;
1792
1793out_free_areas:
1794 for (group = 0; group < ai->nr_groups; group++)
Michael Holzheuf851c8d2013-09-17 16:57:34 +02001795 if (areas[group])
1796 free_fn(areas[group],
1797 ai->groups[group].nr_units * ai->unit_size);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001798out_free:
Tejun Heofd1e8a12009-08-14 15:00:51 +09001799 pcpu_free_alloc_info(ai);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001800 if (areas)
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001801 memblock_free_early(__pa(areas), areas_size);
Tejun Heofb435d52009-08-14 15:00:51 +09001802 return rc;
Tejun Heod4b95f82009-07-04 08:10:59 +09001803}
Tejun Heo3c9a0242010-09-09 18:00:15 +02001804#endif /* BUILD_EMBED_FIRST_CHUNK */
Tejun Heod4b95f82009-07-04 08:10:59 +09001805
Tejun Heo3c9a0242010-09-09 18:00:15 +02001806#ifdef BUILD_PAGE_FIRST_CHUNK
Tejun Heod4b95f82009-07-04 08:10:59 +09001807/**
Tejun Heo00ae4062009-08-14 15:00:49 +09001808 * pcpu_page_first_chunk - map the first chunk using PAGE_SIZE pages
Tejun Heod4b95f82009-07-04 08:10:59 +09001809 * @reserved_size: the size of reserved percpu area in bytes
1810 * @alloc_fn: function to allocate percpu page, always called with PAGE_SIZE
Lucas De Marchi25985ed2011-03-30 22:57:33 -03001811 * @free_fn: function to free percpu page, always called with PAGE_SIZE
Tejun Heod4b95f82009-07-04 08:10:59 +09001812 * @populate_pte_fn: function to populate pte
1813 *
Tejun Heo00ae4062009-08-14 15:00:49 +09001814 * This is a helper to ease setting up page-remapped first percpu
1815 * chunk and can be called where pcpu_setup_first_chunk() is expected.
Tejun Heod4b95f82009-07-04 08:10:59 +09001816 *
1817 * This is the basic allocator. Static percpu area is allocated
1818 * page-by-page into vmalloc area.
1819 *
1820 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09001821 * 0 on success, -errno on failure.
Tejun Heod4b95f82009-07-04 08:10:59 +09001822 */
Tejun Heofb435d52009-08-14 15:00:51 +09001823int __init pcpu_page_first_chunk(size_t reserved_size,
1824 pcpu_fc_alloc_fn_t alloc_fn,
1825 pcpu_fc_free_fn_t free_fn,
1826 pcpu_fc_populate_pte_fn_t populate_pte_fn)
Tejun Heod4b95f82009-07-04 08:10:59 +09001827{
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001828 static struct vm_struct vm;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001829 struct pcpu_alloc_info *ai;
Tejun Heo00ae4062009-08-14 15:00:49 +09001830 char psize_str[16];
Tejun Heoce3141a2009-07-04 08:11:00 +09001831 int unit_pages;
Tejun Heod4b95f82009-07-04 08:10:59 +09001832 size_t pages_size;
Tejun Heoce3141a2009-07-04 08:11:00 +09001833 struct page **pages;
Tejun Heofb435d52009-08-14 15:00:51 +09001834 int unit, i, j, rc;
Tejun Heod4b95f82009-07-04 08:10:59 +09001835
Tejun Heo00ae4062009-08-14 15:00:49 +09001836 snprintf(psize_str, sizeof(psize_str), "%luK", PAGE_SIZE >> 10);
1837
Tejun Heo4ba6ce22010-06-27 18:49:59 +02001838 ai = pcpu_build_alloc_info(reserved_size, 0, PAGE_SIZE, NULL);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001839 if (IS_ERR(ai))
1840 return PTR_ERR(ai);
1841 BUG_ON(ai->nr_groups != 1);
1842 BUG_ON(ai->groups[0].nr_units != num_possible_cpus());
1843
1844 unit_pages = ai->unit_size >> PAGE_SHIFT;
Tejun Heod4b95f82009-07-04 08:10:59 +09001845
1846 /* unaligned allocations can't be freed, round up to page size */
Tejun Heofd1e8a12009-08-14 15:00:51 +09001847 pages_size = PFN_ALIGN(unit_pages * num_possible_cpus() *
1848 sizeof(pages[0]));
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001849 pages = memblock_virt_alloc(pages_size, 0);
Tejun Heod4b95f82009-07-04 08:10:59 +09001850
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001851 /* allocate pages */
Tejun Heod4b95f82009-07-04 08:10:59 +09001852 j = 0;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001853 for (unit = 0; unit < num_possible_cpus(); unit++)
Tejun Heoce3141a2009-07-04 08:11:00 +09001854 for (i = 0; i < unit_pages; i++) {
Tejun Heofd1e8a12009-08-14 15:00:51 +09001855 unsigned int cpu = ai->groups[0].cpu_map[unit];
Tejun Heod4b95f82009-07-04 08:10:59 +09001856 void *ptr;
1857
Tejun Heo3cbc8562009-08-14 15:00:50 +09001858 ptr = alloc_fn(cpu, PAGE_SIZE, PAGE_SIZE);
Tejun Heod4b95f82009-07-04 08:10:59 +09001859 if (!ptr) {
Tejun Heo00ae4062009-08-14 15:00:49 +09001860 pr_warning("PERCPU: failed to allocate %s page "
1861 "for cpu%u\n", psize_str, cpu);
Tejun Heod4b95f82009-07-04 08:10:59 +09001862 goto enomem;
1863 }
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001864 /* kmemleak tracks the percpu allocations separately */
1865 kmemleak_free(ptr);
Tejun Heoce3141a2009-07-04 08:11:00 +09001866 pages[j++] = virt_to_page(ptr);
Tejun Heod4b95f82009-07-04 08:10:59 +09001867 }
1868
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001869 /* allocate vm area, map the pages and copy static data */
1870 vm.flags = VM_ALLOC;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001871 vm.size = num_possible_cpus() * ai->unit_size;
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001872 vm_area_register_early(&vm, PAGE_SIZE);
1873
Tejun Heofd1e8a12009-08-14 15:00:51 +09001874 for (unit = 0; unit < num_possible_cpus(); unit++) {
Tejun Heo1d9d3252009-08-14 15:00:50 +09001875 unsigned long unit_addr =
Tejun Heofd1e8a12009-08-14 15:00:51 +09001876 (unsigned long)vm.addr + unit * ai->unit_size;
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001877
Tejun Heoce3141a2009-07-04 08:11:00 +09001878 for (i = 0; i < unit_pages; i++)
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001879 populate_pte_fn(unit_addr + (i << PAGE_SHIFT));
1880
1881 /* pte already populated, the following shouldn't fail */
Tejun Heofb435d52009-08-14 15:00:51 +09001882 rc = __pcpu_map_pages(unit_addr, &pages[unit * unit_pages],
1883 unit_pages);
1884 if (rc < 0)
1885 panic("failed to map percpu area, err=%d\n", rc);
Tejun Heo8f05a6a2009-07-04 08:10:59 +09001886
1887 /*
1888 * FIXME: Archs with virtual cache should flush local
1889 * cache for the linear mapping here - something
1890 * equivalent to flush_cache_vmap() on the local cpu.
1891 * flush_cache_vmap() can't be used as most supporting
1892 * data structures are not set up yet.
1893 */
1894
1895 /* copy static data */
Tejun Heofd1e8a12009-08-14 15:00:51 +09001896 memcpy((void *)unit_addr, __per_cpu_load, ai->static_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09001897 }
1898
1899 /* we're ready, commit */
Tejun Heo1d9d3252009-08-14 15:00:50 +09001900 pr_info("PERCPU: %d %s pages/cpu @%p s%zu r%zu d%zu\n",
Tejun Heofd1e8a12009-08-14 15:00:51 +09001901 unit_pages, psize_str, vm.addr, ai->static_size,
1902 ai->reserved_size, ai->dyn_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09001903
Tejun Heofb435d52009-08-14 15:00:51 +09001904 rc = pcpu_setup_first_chunk(ai, vm.addr);
Tejun Heod4b95f82009-07-04 08:10:59 +09001905 goto out_free_ar;
1906
1907enomem:
1908 while (--j >= 0)
Tejun Heoce3141a2009-07-04 08:11:00 +09001909 free_fn(page_address(pages[j]), PAGE_SIZE);
Tejun Heofb435d52009-08-14 15:00:51 +09001910 rc = -ENOMEM;
Tejun Heod4b95f82009-07-04 08:10:59 +09001911out_free_ar:
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001912 memblock_free_early(__pa(pages), pages_size);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001913 pcpu_free_alloc_info(ai);
Tejun Heofb435d52009-08-14 15:00:51 +09001914 return rc;
Tejun Heo66c3a752009-03-10 16:27:48 +09001915}
Tejun Heo3c9a0242010-09-09 18:00:15 +02001916#endif /* BUILD_PAGE_FIRST_CHUNK */
Tejun Heod4b95f82009-07-04 08:10:59 +09001917
Tejun Heobbddff02010-09-03 18:22:48 +02001918#ifndef CONFIG_HAVE_SETUP_PER_CPU_AREA
Tejun Heo8c4bfc62009-07-04 08:10:59 +09001919/*
Tejun Heobbddff02010-09-03 18:22:48 +02001920 * Generic SMP percpu area setup.
Tejun Heoe74e3962009-03-30 19:07:44 +09001921 *
1922 * The embedding helper is used because its behavior closely resembles
1923 * the original non-dynamic generic percpu area setup. This is
1924 * important because many archs have addressing restrictions and might
1925 * fail if the percpu area is located far away from the previous
1926 * location. As an added bonus, in non-NUMA cases, embedding is
1927 * generally a good idea TLB-wise because percpu area can piggy back
1928 * on the physical linear memory mapping which uses large page
1929 * mappings on applicable archs.
1930 */
Tejun Heoe74e3962009-03-30 19:07:44 +09001931unsigned long __per_cpu_offset[NR_CPUS] __read_mostly;
1932EXPORT_SYMBOL(__per_cpu_offset);
1933
Tejun Heoc8826dd2009-08-14 15:00:52 +09001934static void * __init pcpu_dfl_fc_alloc(unsigned int cpu, size_t size,
1935 size_t align)
1936{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001937 return memblock_virt_alloc_from_nopanic(
1938 size, align, __pa(MAX_DMA_ADDRESS));
Tejun Heoc8826dd2009-08-14 15:00:52 +09001939}
1940
1941static void __init pcpu_dfl_fc_free(void *ptr, size_t size)
1942{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001943 memblock_free_early(__pa(ptr), size);
Tejun Heoc8826dd2009-08-14 15:00:52 +09001944}
1945
Tejun Heoe74e3962009-03-30 19:07:44 +09001946void __init setup_per_cpu_areas(void)
1947{
Tejun Heoe74e3962009-03-30 19:07:44 +09001948 unsigned long delta;
1949 unsigned int cpu;
Tejun Heofb435d52009-08-14 15:00:51 +09001950 int rc;
Tejun Heoe74e3962009-03-30 19:07:44 +09001951
1952 /*
1953 * Always reserve area for module percpu variables. That's
1954 * what the legacy allocator did.
1955 */
Tejun Heofb435d52009-08-14 15:00:51 +09001956 rc = pcpu_embed_first_chunk(PERCPU_MODULE_RESERVE,
Tejun Heoc8826dd2009-08-14 15:00:52 +09001957 PERCPU_DYNAMIC_RESERVE, PAGE_SIZE, NULL,
1958 pcpu_dfl_fc_alloc, pcpu_dfl_fc_free);
Tejun Heofb435d52009-08-14 15:00:51 +09001959 if (rc < 0)
Tejun Heobbddff02010-09-03 18:22:48 +02001960 panic("Failed to initialize percpu areas.");
Tejun Heoe74e3962009-03-30 19:07:44 +09001961
1962 delta = (unsigned long)pcpu_base_addr - (unsigned long)__per_cpu_start;
1963 for_each_possible_cpu(cpu)
Tejun Heofb435d52009-08-14 15:00:51 +09001964 __per_cpu_offset[cpu] = delta + pcpu_unit_offsets[cpu];
Tejun Heoe74e3962009-03-30 19:07:44 +09001965}
Tejun Heobbddff02010-09-03 18:22:48 +02001966#endif /* CONFIG_HAVE_SETUP_PER_CPU_AREA */
1967
1968#else /* CONFIG_SMP */
1969
1970/*
1971 * UP percpu area setup.
1972 *
1973 * UP always uses km-based percpu allocator with identity mapping.
1974 * Static percpu variables are indistinguishable from the usual static
1975 * variables and don't require any special preparation.
1976 */
1977void __init setup_per_cpu_areas(void)
1978{
1979 const size_t unit_size =
1980 roundup_pow_of_two(max_t(size_t, PCPU_MIN_UNIT_SIZE,
1981 PERCPU_DYNAMIC_RESERVE));
1982 struct pcpu_alloc_info *ai;
1983 void *fc;
1984
1985 ai = pcpu_alloc_alloc_info(1, 1);
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001986 fc = memblock_virt_alloc_from_nopanic(unit_size,
1987 PAGE_SIZE,
1988 __pa(MAX_DMA_ADDRESS));
Tejun Heobbddff02010-09-03 18:22:48 +02001989 if (!ai || !fc)
1990 panic("Failed to allocate memory for percpu areas.");
Catalin Marinas100d13c2012-05-09 16:55:19 +01001991 /* kmemleak tracks the percpu allocations separately */
1992 kmemleak_free(fc);
Tejun Heobbddff02010-09-03 18:22:48 +02001993
1994 ai->dyn_size = unit_size;
1995 ai->unit_size = unit_size;
1996 ai->atom_size = unit_size;
1997 ai->alloc_size = unit_size;
1998 ai->groups[0].nr_units = 1;
1999 ai->groups[0].cpu_map[0] = 0;
2000
2001 if (pcpu_setup_first_chunk(ai, fc) < 0)
2002 panic("Failed to initialize percpu areas.");
Honggang Li3189edd2014-08-12 21:36:15 +08002003
2004 pcpu_free_alloc_info(ai);
Tejun Heobbddff02010-09-03 18:22:48 +02002005}
2006
2007#endif /* CONFIG_SMP */
Tejun Heo099a19d2010-06-27 18:50:00 +02002008
2009/*
2010 * First and reserved chunks are initialized with temporary allocation
2011 * map in initdata so that they can be used before slab is online.
2012 * This function is called after slab is brought up and replaces those
2013 * with properly allocated maps.
2014 */
2015void __init percpu_init_late(void)
2016{
2017 struct pcpu_chunk *target_chunks[] =
2018 { pcpu_first_chunk, pcpu_reserved_chunk, NULL };
2019 struct pcpu_chunk *chunk;
2020 unsigned long flags;
2021 int i;
2022
2023 for (i = 0; (chunk = target_chunks[i]); i++) {
2024 int *map;
2025 const size_t size = PERCPU_DYNAMIC_EARLY_SLOTS * sizeof(map[0]);
2026
2027 BUILD_BUG_ON(size > PAGE_SIZE);
2028
Bob Liu90459ce02011-08-04 11:02:33 +02002029 map = pcpu_mem_zalloc(size);
Tejun Heo099a19d2010-06-27 18:50:00 +02002030 BUG_ON(!map);
2031
2032 spin_lock_irqsave(&pcpu_lock, flags);
2033 memcpy(map, chunk->map, size);
2034 chunk->map = map;
2035 spin_unlock_irqrestore(&pcpu_lock, flags);
2036 }
2037}