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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 *
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -04007 * This file is released under the GPLv2 license.
Tejun Heofbf59bc2009-02-20 16:29:08 +09008 *
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -04009 * The percpu allocator handles both static and dynamic areas. Percpu
10 * areas are allocated in chunks which are divided into units. There is
11 * a 1-to-1 mapping for units to possible cpus. These units are grouped
12 * based on NUMA properties of the machine.
Tejun Heofbf59bc2009-02-20 16:29:08 +090013 *
14 * c0 c1 c2
15 * ------------------- ------------------- ------------
16 * | u0 | u1 | u2 | u3 | | u0 | u1 | u2 | u3 | | u0 | u1 | u
17 * ------------------- ...... ------------------- .... ------------
18 *
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -040019 * Allocation is done by offsets into a unit's address space. Ie., an
20 * area of 512 bytes at 6k in c1 occupies 512 bytes at 6k in c1:u0,
21 * c1:u1, c1:u2, etc. On NUMA machines, the mapping may be non-linear
22 * and even sparse. Access is handled by configuring percpu base
23 * registers according to the cpu to unit mappings and offsetting the
24 * base address using pcpu_unit_size.
Tejun Heofbf59bc2009-02-20 16:29:08 +090025 *
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -040026 * There is special consideration for the first chunk which must handle
27 * the static percpu variables in the kernel image as allocation services
28 * are not online yet. In short, the first chunk is structure like so:
29 *
30 * <Static | [Reserved] | Dynamic>
31 *
32 * The static data is copied from the original section managed by the
33 * linker. The reserved section, if non-zero, primarily manages static
34 * percpu variables from kernel modules. Finally, the dynamic section
35 * takes care of normal allocations.
Tejun Heofbf59bc2009-02-20 16:29:08 +090036 *
37 * Allocation state in each chunk is kept using an array of integers
38 * on chunk->map. A positive value in the map represents a free
39 * region and negative allocated. Allocation inside a chunk is done
40 * by scanning this map sequentially and serving the first matching
41 * entry. This is mostly copied from the percpu_modalloc() allocator.
Christoph Lametere1b9aa32009-04-02 13:21:44 +090042 * Chunks can be determined from the address using the index field
43 * in the page struct. The index field contains a pointer to the chunk.
Tejun Heofbf59bc2009-02-20 16:29:08 +090044 *
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -040045 * These chunks are organized into lists according to free_size and
46 * tries to allocate from the fullest chunk first. Each chunk maintains
47 * a maximum contiguous area size hint which is guaranteed to be equal
48 * to or larger than the maximum contiguous area in the chunk. This
49 * helps prevent the allocator from iterating over chunks unnecessarily.
50 *
Masahiro Yamada4091fb92017-02-27 14:29:56 -080051 * To use this allocator, arch code should do the following:
Tejun Heofbf59bc2009-02-20 16:29:08 +090052 *
Tejun Heofbf59bc2009-02-20 16:29:08 +090053 * - define __addr_to_pcpu_ptr() and __pcpu_ptr_to_addr() to translate
Tejun Heoe0100982009-03-10 16:27:48 +090054 * regular address to percpu pointer and back if they need to be
55 * different from the default
Tejun Heofbf59bc2009-02-20 16:29:08 +090056 *
Tejun Heo8d408b42009-02-24 11:57:21 +090057 * - use pcpu_setup_first_chunk() during percpu area initialization to
58 * setup the first chunk containing the kernel static percpu area
Tejun Heofbf59bc2009-02-20 16:29:08 +090059 */
60
Joe Perches870d4b12016-03-17 14:19:53 -070061#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
62
Tejun Heofbf59bc2009-02-20 16:29:08 +090063#include <linux/bitmap.h>
64#include <linux/bootmem.h>
Tejun Heofd1e8a12009-08-14 15:00:51 +090065#include <linux/err.h>
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -040066#include <linux/lcm.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090067#include <linux/list.h>
Tejun Heoa530b792009-07-04 08:11:00 +090068#include <linux/log2.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090069#include <linux/mm.h>
70#include <linux/module.h>
71#include <linux/mutex.h>
72#include <linux/percpu.h>
73#include <linux/pfn.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090074#include <linux/slab.h>
Tejun Heoccea34b2009-03-07 00:44:13 +090075#include <linux/spinlock.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090076#include <linux/vmalloc.h>
Tejun Heoa56dbdd2009-03-07 00:44:11 +090077#include <linux/workqueue.h>
Catalin Marinasf528f0b2011-09-26 17:12:53 +010078#include <linux/kmemleak.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090079
80#include <asm/cacheflush.h>
Tejun Heoe0100982009-03-10 16:27:48 +090081#include <asm/sections.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090082#include <asm/tlbflush.h>
Vivek Goyal3b034b02009-11-24 15:50:03 +090083#include <asm/io.h>
Tejun Heofbf59bc2009-02-20 16:29:08 +090084
Dennis Zhoudf95e792017-06-19 19:28:32 -040085#define CREATE_TRACE_POINTS
86#include <trace/events/percpu.h>
87
Dennis Zhou8fa3ed82017-06-19 19:28:30 -040088#include "percpu-internal.h"
89
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -070090/* the slots are sorted by free bytes left, 1-31 bytes share the same slot */
91#define PCPU_SLOT_BASE_SHIFT 5
92
Tejun Heo1a4d7602014-09-02 14:46:05 -040093#define PCPU_EMPTY_POP_PAGES_LOW 2
94#define PCPU_EMPTY_POP_PAGES_HIGH 4
Tejun Heofbf59bc2009-02-20 16:29:08 +090095
Tejun Heobbddff02010-09-03 18:22:48 +020096#ifdef CONFIG_SMP
Tejun Heoe0100982009-03-10 16:27:48 +090097/* default addr <-> pcpu_ptr mapping, override in asm/percpu.h if necessary */
98#ifndef __addr_to_pcpu_ptr
99#define __addr_to_pcpu_ptr(addr) \
Tejun Heo43cf38e2010-02-02 14:38:57 +0900100 (void __percpu *)((unsigned long)(addr) - \
101 (unsigned long)pcpu_base_addr + \
102 (unsigned long)__per_cpu_start)
Tejun Heoe0100982009-03-10 16:27:48 +0900103#endif
104#ifndef __pcpu_ptr_to_addr
105#define __pcpu_ptr_to_addr(ptr) \
Tejun Heo43cf38e2010-02-02 14:38:57 +0900106 (void __force *)((unsigned long)(ptr) + \
107 (unsigned long)pcpu_base_addr - \
108 (unsigned long)__per_cpu_start)
Tejun Heoe0100982009-03-10 16:27:48 +0900109#endif
Tejun Heobbddff02010-09-03 18:22:48 +0200110#else /* CONFIG_SMP */
111/* on UP, it's always identity mapped */
112#define __addr_to_pcpu_ptr(addr) (void __percpu *)(addr)
113#define __pcpu_ptr_to_addr(ptr) (void __force *)(ptr)
114#endif /* CONFIG_SMP */
Tejun Heoe0100982009-03-10 16:27:48 +0900115
Daniel Micay13287102017-05-10 13:36:37 -0400116static int pcpu_unit_pages __ro_after_init;
117static int pcpu_unit_size __ro_after_init;
118static int pcpu_nr_units __ro_after_init;
119static int pcpu_atom_size __ro_after_init;
Dennis Zhou8fa3ed82017-06-19 19:28:30 -0400120int pcpu_nr_slots __ro_after_init;
Daniel Micay13287102017-05-10 13:36:37 -0400121static size_t pcpu_chunk_struct_size __ro_after_init;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900122
Tejun Heoa855b842011-11-18 10:55:35 -0800123/* cpus with the lowest and highest unit addresses */
Daniel Micay13287102017-05-10 13:36:37 -0400124static unsigned int pcpu_low_unit_cpu __ro_after_init;
125static unsigned int pcpu_high_unit_cpu __ro_after_init;
Tejun Heo2f39e632009-07-04 08:11:00 +0900126
Tejun Heofbf59bc2009-02-20 16:29:08 +0900127/* the address of the first chunk which starts with the kernel static area */
Daniel Micay13287102017-05-10 13:36:37 -0400128void *pcpu_base_addr __ro_after_init;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900129EXPORT_SYMBOL_GPL(pcpu_base_addr);
130
Daniel Micay13287102017-05-10 13:36:37 -0400131static const int *pcpu_unit_map __ro_after_init; /* cpu -> unit */
132const unsigned long *pcpu_unit_offsets __ro_after_init; /* cpu -> unit offset */
Tejun Heo2f39e632009-07-04 08:11:00 +0900133
Tejun Heo65632972009-08-14 15:00:52 +0900134/* group information, used for vm allocation */
Daniel Micay13287102017-05-10 13:36:37 -0400135static int pcpu_nr_groups __ro_after_init;
136static const unsigned long *pcpu_group_offsets __ro_after_init;
137static const size_t *pcpu_group_sizes __ro_after_init;
Tejun Heo65632972009-08-14 15:00:52 +0900138
Tejun Heoae9e6bc92009-04-02 13:19:54 +0900139/*
140 * The first chunk which always exists. Note that unlike other
141 * chunks, this one can be allocated and mapped in several different
142 * ways and thus often doesn't live in the vmalloc area.
143 */
Dennis Zhou8fa3ed82017-06-19 19:28:30 -0400144struct pcpu_chunk *pcpu_first_chunk __ro_after_init;
Tejun Heoae9e6bc92009-04-02 13:19:54 +0900145
146/*
147 * Optional reserved chunk. This chunk reserves part of the first
Dennis Zhou (Facebook)e2266702017-07-24 19:01:59 -0400148 * chunk and serves it for reserved allocations. When the reserved
149 * region doesn't exist, the following variable is NULL.
Tejun Heoae9e6bc92009-04-02 13:19:54 +0900150 */
Dennis Zhou8fa3ed82017-06-19 19:28:30 -0400151struct pcpu_chunk *pcpu_reserved_chunk __ro_after_init;
Tejun Heoedcb4632009-03-06 14:33:59 +0900152
Dennis Zhou8fa3ed82017-06-19 19:28:30 -0400153DEFINE_SPINLOCK(pcpu_lock); /* all internal data structures */
Tejun Heo6710e592016-05-25 11:48:25 -0400154static DEFINE_MUTEX(pcpu_alloc_mutex); /* chunk create/destroy, [de]pop, map ext */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900155
Dennis Zhou8fa3ed82017-06-19 19:28:30 -0400156struct list_head *pcpu_slot __ro_after_init; /* chunk list slots */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900157
Tejun Heo4f996e22016-05-25 11:48:25 -0400158/* chunks which need their map areas extended, protected by pcpu_lock */
159static LIST_HEAD(pcpu_map_extend_chunks);
160
Tejun Heob539b872014-09-02 14:46:05 -0400161/*
162 * The number of empty populated pages, protected by pcpu_lock. The
163 * reserved chunk doesn't contribute to the count.
164 */
Dennis Zhou (Facebook)6b9b6f32017-07-15 22:23:08 -0400165int pcpu_nr_empty_pop_pages;
Tejun Heob539b872014-09-02 14:46:05 -0400166
Tejun Heo1a4d7602014-09-02 14:46:05 -0400167/*
168 * Balance work is used to populate or destroy chunks asynchronously. We
169 * try to keep the number of populated free pages between
170 * PCPU_EMPTY_POP_PAGES_LOW and HIGH for atomic allocations and at most one
171 * empty chunk.
172 */
Tejun Heofe6bd8c2014-09-02 14:46:05 -0400173static void pcpu_balance_workfn(struct work_struct *work);
174static DECLARE_WORK(pcpu_balance_work, pcpu_balance_workfn);
Tejun Heo1a4d7602014-09-02 14:46:05 -0400175static bool pcpu_async_enabled __read_mostly;
176static bool pcpu_atomic_alloc_failed;
177
178static void pcpu_schedule_balance_work(void)
179{
180 if (pcpu_async_enabled)
181 schedule_work(&pcpu_balance_work);
182}
Tejun Heoa56dbdd2009-03-07 00:44:11 +0900183
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400184/**
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -0400185 * pcpu_addr_in_chunk - check if the address is served from this chunk
186 * @chunk: chunk of interest
187 * @addr: percpu address
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400188 *
189 * RETURNS:
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -0400190 * True if the address is served from this chunk.
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400191 */
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -0400192static bool pcpu_addr_in_chunk(struct pcpu_chunk *chunk, void *addr)
Tejun Heo020ec652010-04-09 18:57:00 +0900193{
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400194 void *start_addr, *end_addr;
Tejun Heo020ec652010-04-09 18:57:00 +0900195
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -0400196 if (!chunk)
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400197 return false;
198
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -0400199 start_addr = chunk->base_addr + chunk->start_offset;
200 end_addr = chunk->base_addr + chunk->nr_pages * PAGE_SIZE -
201 chunk->end_offset;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400202
203 return addr >= start_addr && addr < end_addr;
Tejun Heo020ec652010-04-09 18:57:00 +0900204}
205
Tejun Heod9b55ee2009-02-24 11:57:21 +0900206static int __pcpu_size_to_slot(int size)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900207{
Tejun Heocae3aeb2009-02-21 16:56:23 +0900208 int highbit = fls(size); /* size is in bytes */
Tejun Heofbf59bc2009-02-20 16:29:08 +0900209 return max(highbit - PCPU_SLOT_BASE_SHIFT + 2, 1);
210}
211
Tejun Heod9b55ee2009-02-24 11:57:21 +0900212static int pcpu_size_to_slot(int size)
213{
214 if (size == pcpu_unit_size)
215 return pcpu_nr_slots - 1;
216 return __pcpu_size_to_slot(size);
217}
218
Tejun Heofbf59bc2009-02-20 16:29:08 +0900219static int pcpu_chunk_slot(const struct pcpu_chunk *chunk)
220{
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700221 if (chunk->free_bytes < PCPU_MIN_ALLOC_SIZE || chunk->contig_bits == 0)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900222 return 0;
223
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700224 return pcpu_size_to_slot(chunk->free_bytes);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900225}
226
Tejun Heo88999a82010-04-09 18:57:01 +0900227/* set the pointer to a chunk in a page struct */
228static void pcpu_set_page_chunk(struct page *page, struct pcpu_chunk *pcpu)
229{
230 page->index = (unsigned long)pcpu;
231}
232
233/* obtain pointer to a chunk from a page struct */
234static struct pcpu_chunk *pcpu_get_page_chunk(struct page *page)
235{
236 return (struct pcpu_chunk *)page->index;
237}
238
239static int __maybe_unused pcpu_page_idx(unsigned int cpu, int page_idx)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900240{
Tejun Heo2f39e632009-07-04 08:11:00 +0900241 return pcpu_unit_map[cpu] * pcpu_unit_pages + page_idx;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900242}
243
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400244static unsigned long pcpu_unit_page_offset(unsigned int cpu, int page_idx)
245{
246 return pcpu_unit_offsets[cpu] + (page_idx << PAGE_SHIFT);
247}
248
Tejun Heo9983b6f02010-06-18 11:44:31 +0200249static unsigned long pcpu_chunk_addr(struct pcpu_chunk *chunk,
250 unsigned int cpu, int page_idx)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900251{
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400252 return (unsigned long)chunk->base_addr +
253 pcpu_unit_page_offset(cpu, page_idx);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900254}
255
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400256static void pcpu_next_unpop(unsigned long *bitmap, int *rs, int *re, int end)
Tejun Heoce3141a2009-07-04 08:11:00 +0900257{
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400258 *rs = find_next_zero_bit(bitmap, end, *rs);
259 *re = find_next_bit(bitmap, end, *rs + 1);
Tejun Heoce3141a2009-07-04 08:11:00 +0900260}
261
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400262static void pcpu_next_pop(unsigned long *bitmap, int *rs, int *re, int end)
Tejun Heoce3141a2009-07-04 08:11:00 +0900263{
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400264 *rs = find_next_bit(bitmap, end, *rs);
265 *re = find_next_zero_bit(bitmap, end, *rs + 1);
Tejun Heoce3141a2009-07-04 08:11:00 +0900266}
267
268/*
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400269 * Bitmap region iterators. Iterates over the bitmap between
270 * [@start, @end) in @chunk. @rs and @re should be integer variables
271 * and will be set to start and end index of the current free region.
Tejun Heoce3141a2009-07-04 08:11:00 +0900272 */
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400273#define pcpu_for_each_unpop_region(bitmap, rs, re, start, end) \
274 for ((rs) = (start), pcpu_next_unpop((bitmap), &(rs), &(re), (end)); \
275 (rs) < (re); \
276 (rs) = (re) + 1, pcpu_next_unpop((bitmap), &(rs), &(re), (end)))
Tejun Heoce3141a2009-07-04 08:11:00 +0900277
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -0400278#define pcpu_for_each_pop_region(bitmap, rs, re, start, end) \
279 for ((rs) = (start), pcpu_next_pop((bitmap), &(rs), &(re), (end)); \
280 (rs) < (re); \
281 (rs) = (re) + 1, pcpu_next_pop((bitmap), &(rs), &(re), (end)))
Tejun Heoce3141a2009-07-04 08:11:00 +0900282
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400283/*
284 * The following are helper functions to help access bitmaps and convert
285 * between bitmap offsets to address offsets.
286 */
287static unsigned long *pcpu_index_alloc_map(struct pcpu_chunk *chunk, int index)
288{
289 return chunk->alloc_map +
290 (index * PCPU_BITMAP_BLOCK_BITS / BITS_PER_LONG);
291}
292
293static unsigned long pcpu_off_to_block_index(int off)
294{
295 return off / PCPU_BITMAP_BLOCK_BITS;
296}
297
298static unsigned long pcpu_off_to_block_off(int off)
299{
300 return off & (PCPU_BITMAP_BLOCK_BITS - 1);
301}
302
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400303static unsigned long pcpu_block_off_to_off(int index, int off)
304{
305 return index * PCPU_BITMAP_BLOCK_BITS + off;
306}
307
Tejun Heofbf59bc2009-02-20 16:29:08 +0900308/**
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400309 * pcpu_next_md_free_region - finds the next hint free area
310 * @chunk: chunk of interest
311 * @bit_off: chunk offset
312 * @bits: size of free area
313 *
314 * Helper function for pcpu_for_each_md_free_region. It checks
315 * block->contig_hint and performs aggregation across blocks to find the
316 * next hint. It modifies bit_off and bits in-place to be consumed in the
317 * loop.
318 */
319static void pcpu_next_md_free_region(struct pcpu_chunk *chunk, int *bit_off,
320 int *bits)
321{
322 int i = pcpu_off_to_block_index(*bit_off);
323 int block_off = pcpu_off_to_block_off(*bit_off);
324 struct pcpu_block_md *block;
325
326 *bits = 0;
327 for (block = chunk->md_blocks + i; i < pcpu_chunk_nr_blocks(chunk);
328 block++, i++) {
329 /* handles contig area across blocks */
330 if (*bits) {
331 *bits += block->left_free;
332 if (block->left_free == PCPU_BITMAP_BLOCK_BITS)
333 continue;
334 return;
335 }
336
337 /*
338 * This checks three things. First is there a contig_hint to
339 * check. Second, have we checked this hint before by
340 * comparing the block_off. Third, is this the same as the
341 * right contig hint. In the last case, it spills over into
342 * the next block and should be handled by the contig area
343 * across blocks code.
344 */
345 *bits = block->contig_hint;
346 if (*bits && block->contig_hint_start >= block_off &&
347 *bits + block->contig_hint_start < PCPU_BITMAP_BLOCK_BITS) {
348 *bit_off = pcpu_block_off_to_off(i,
349 block->contig_hint_start);
350 return;
351 }
352
353 *bits = block->right_free;
354 *bit_off = (i + 1) * PCPU_BITMAP_BLOCK_BITS - block->right_free;
355 }
356}
357
358/*
359 * Metadata free area iterators. These perform aggregation of free areas
360 * based on the metadata blocks and return the offset @bit_off and size in
361 * bits of the free area @bits.
362 */
363#define pcpu_for_each_md_free_region(chunk, bit_off, bits) \
364 for (pcpu_next_md_free_region((chunk), &(bit_off), &(bits)); \
365 (bit_off) < pcpu_chunk_map_bits((chunk)); \
366 (bit_off) += (bits) + 1, \
367 pcpu_next_md_free_region((chunk), &(bit_off), &(bits)))
368
369/**
Bob Liu90459ce02011-08-04 11:02:33 +0200370 * pcpu_mem_zalloc - allocate memory
Tejun Heo1880d932009-03-07 00:44:09 +0900371 * @size: bytes to allocate
Tejun Heofbf59bc2009-02-20 16:29:08 +0900372 *
Tejun Heo1880d932009-03-07 00:44:09 +0900373 * Allocate @size bytes. If @size is smaller than PAGE_SIZE,
Bob Liu90459ce02011-08-04 11:02:33 +0200374 * kzalloc() is used; otherwise, vzalloc() is used. The returned
Tejun Heo1880d932009-03-07 00:44:09 +0900375 * memory is always zeroed.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900376 *
Tejun Heoccea34b2009-03-07 00:44:13 +0900377 * CONTEXT:
378 * Does GFP_KERNEL allocation.
379 *
Tejun Heofbf59bc2009-02-20 16:29:08 +0900380 * RETURNS:
Tejun Heo1880d932009-03-07 00:44:09 +0900381 * Pointer to the allocated area on success, NULL on failure.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900382 */
Bob Liu90459ce02011-08-04 11:02:33 +0200383static void *pcpu_mem_zalloc(size_t size)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900384{
Tejun Heo099a19d2010-06-27 18:50:00 +0200385 if (WARN_ON_ONCE(!slab_is_available()))
386 return NULL;
387
Tejun Heofbf59bc2009-02-20 16:29:08 +0900388 if (size <= PAGE_SIZE)
Tejun Heo1880d932009-03-07 00:44:09 +0900389 return kzalloc(size, GFP_KERNEL);
Jesper Juhl7af4c092010-10-30 15:56:54 +0200390 else
391 return vzalloc(size);
Tejun Heo1880d932009-03-07 00:44:09 +0900392}
Tejun Heofbf59bc2009-02-20 16:29:08 +0900393
Tejun Heo1880d932009-03-07 00:44:09 +0900394/**
395 * pcpu_mem_free - free memory
396 * @ptr: memory to free
Tejun Heo1880d932009-03-07 00:44:09 +0900397 *
Bob Liu90459ce02011-08-04 11:02:33 +0200398 * Free @ptr. @ptr should have been allocated using pcpu_mem_zalloc().
Tejun Heo1880d932009-03-07 00:44:09 +0900399 */
Tetsuo Handa1d5cfdb2016-01-22 15:11:02 -0800400static void pcpu_mem_free(void *ptr)
Tejun Heo1880d932009-03-07 00:44:09 +0900401{
Tetsuo Handa1d5cfdb2016-01-22 15:11:02 -0800402 kvfree(ptr);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900403}
404
405/**
406 * pcpu_chunk_relocate - put chunk in the appropriate chunk slot
407 * @chunk: chunk of interest
408 * @oslot: the previous slot it was on
409 *
410 * This function is called after an allocation or free changed @chunk.
411 * New slot according to the changed state is determined and @chunk is
Tejun Heoedcb4632009-03-06 14:33:59 +0900412 * moved to the slot. Note that the reserved chunk is never put on
413 * chunk slots.
Tejun Heoccea34b2009-03-07 00:44:13 +0900414 *
415 * CONTEXT:
416 * pcpu_lock.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900417 */
418static void pcpu_chunk_relocate(struct pcpu_chunk *chunk, int oslot)
419{
420 int nslot = pcpu_chunk_slot(chunk);
421
Tejun Heoedcb4632009-03-06 14:33:59 +0900422 if (chunk != pcpu_reserved_chunk && oslot != nslot) {
Tejun Heofbf59bc2009-02-20 16:29:08 +0900423 if (oslot < nslot)
424 list_move(&chunk->list, &pcpu_slot[nslot]);
425 else
426 list_move_tail(&chunk->list, &pcpu_slot[nslot]);
427 }
428}
429
Tejun Heofbf59bc2009-02-20 16:29:08 +0900430/**
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700431 * pcpu_cnt_pop_pages- counts populated backing pages in range
Tejun Heo833af842009-11-11 15:35:18 +0900432 * @chunk: chunk of interest
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700433 * @bit_off: start offset
434 * @bits: size of area to check
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900435 *
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700436 * Calculates the number of populated pages in the region
437 * [page_start, page_end). This keeps track of how many empty populated
438 * pages are available and decide if async work should be scheduled.
Tejun Heoccea34b2009-03-07 00:44:13 +0900439 *
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900440 * RETURNS:
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700441 * The nr of populated pages.
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900442 */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700443static inline int pcpu_cnt_pop_pages(struct pcpu_chunk *chunk, int bit_off,
444 int bits)
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900445{
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700446 int page_start = PFN_UP(bit_off * PCPU_MIN_ALLOC_SIZE);
447 int page_end = PFN_DOWN((bit_off + bits) * PCPU_MIN_ALLOC_SIZE);
448
449 if (page_start >= page_end)
450 return 0;
451
452 /*
453 * bitmap_weight counts the number of bits set in a bitmap up to
454 * the specified number of bits. This is counting the populated
455 * pages up to page_end and then subtracting the populated pages
456 * up to page_start to count the populated pages in
457 * [page_start, page_end).
458 */
459 return bitmap_weight(chunk->populated, page_end) -
460 bitmap_weight(chunk->populated, page_start);
461}
462
463/**
464 * pcpu_chunk_update - updates the chunk metadata given a free area
465 * @chunk: chunk of interest
466 * @bit_off: chunk offset
467 * @bits: size of free area
468 *
Dennis Zhou (Facebook)13f96632017-07-24 19:02:14 -0400469 * This updates the chunk's contig hint and starting offset given a free area.
Dennis Zhou (Facebook)268625a2017-07-24 19:02:15 -0400470 * Choose the best starting offset if the contig hint is equal.
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700471 */
472static void pcpu_chunk_update(struct pcpu_chunk *chunk, int bit_off, int bits)
473{
Dennis Zhou (Facebook)13f96632017-07-24 19:02:14 -0400474 if (bits > chunk->contig_bits) {
475 chunk->contig_bits_start = bit_off;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700476 chunk->contig_bits = bits;
Dennis Zhou (Facebook)268625a2017-07-24 19:02:15 -0400477 } else if (bits == chunk->contig_bits && chunk->contig_bits_start &&
478 (!bit_off ||
479 __ffs(bit_off) > __ffs(chunk->contig_bits_start))) {
480 /* use the start with the best alignment */
481 chunk->contig_bits_start = bit_off;
Dennis Zhou (Facebook)13f96632017-07-24 19:02:14 -0400482 }
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700483}
484
485/**
486 * pcpu_chunk_refresh_hint - updates metadata about a chunk
487 * @chunk: chunk of interest
488 *
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400489 * Iterates over the metadata blocks to find the largest contig area.
490 * It also counts the populated pages and uses the delta to update the
491 * global count.
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700492 *
493 * Updates:
494 * chunk->contig_bits
Dennis Zhou (Facebook)13f96632017-07-24 19:02:14 -0400495 * chunk->contig_bits_start
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400496 * nr_empty_pop_pages (chunk and global)
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700497 */
498static void pcpu_chunk_refresh_hint(struct pcpu_chunk *chunk)
499{
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400500 int bit_off, bits, nr_empty_pop_pages;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700501
502 /* clear metadata */
503 chunk->contig_bits = 0;
504
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400505 bit_off = chunk->first_bit;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700506 bits = nr_empty_pop_pages = 0;
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400507 pcpu_for_each_md_free_region(chunk, bit_off, bits) {
508 pcpu_chunk_update(chunk, bit_off, bits);
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700509
Dennis Zhou (Facebook)525ca842017-07-24 19:02:18 -0400510 nr_empty_pop_pages += pcpu_cnt_pop_pages(chunk, bit_off, bits);
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700511 }
512
513 /*
514 * Keep track of nr_empty_pop_pages.
515 *
516 * The chunk maintains the previous number of free pages it held,
517 * so the delta is used to update the global counter. The reserved
518 * chunk is not part of the free page count as they are populated
519 * at init and are special to serving reserved allocations.
520 */
521 if (chunk != pcpu_reserved_chunk)
522 pcpu_nr_empty_pop_pages +=
523 (nr_empty_pop_pages - chunk->nr_empty_pop_pages);
524
525 chunk->nr_empty_pop_pages = nr_empty_pop_pages;
526}
527
528/**
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400529 * pcpu_block_update - updates a block given a free area
530 * @block: block of interest
531 * @start: start offset in block
532 * @end: end offset in block
533 *
534 * Updates a block given a known free area. The region [start, end) is
Dennis Zhou (Facebook)268625a2017-07-24 19:02:15 -0400535 * expected to be the entirety of the free area within a block. Chooses
536 * the best starting offset if the contig hints are equal.
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400537 */
538static void pcpu_block_update(struct pcpu_block_md *block, int start, int end)
539{
540 int contig = end - start;
541
542 block->first_free = min(block->first_free, start);
543 if (start == 0)
544 block->left_free = contig;
545
546 if (end == PCPU_BITMAP_BLOCK_BITS)
547 block->right_free = contig;
548
549 if (contig > block->contig_hint) {
550 block->contig_hint_start = start;
551 block->contig_hint = contig;
Dennis Zhou (Facebook)268625a2017-07-24 19:02:15 -0400552 } else if (block->contig_hint_start && contig == block->contig_hint &&
553 (!start || __ffs(start) > __ffs(block->contig_hint_start))) {
554 /* use the start with the best alignment */
555 block->contig_hint_start = start;
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400556 }
557}
558
559/**
560 * pcpu_block_refresh_hint
561 * @chunk: chunk of interest
562 * @index: index of the metadata block
563 *
564 * Scans over the block beginning at first_free and updates the block
565 * metadata accordingly.
566 */
567static void pcpu_block_refresh_hint(struct pcpu_chunk *chunk, int index)
568{
569 struct pcpu_block_md *block = chunk->md_blocks + index;
570 unsigned long *alloc_map = pcpu_index_alloc_map(chunk, index);
571 int rs, re; /* region start, region end */
572
573 /* clear hints */
574 block->contig_hint = 0;
575 block->left_free = block->right_free = 0;
576
577 /* iterate over free areas and update the contig hints */
578 pcpu_for_each_unpop_region(alloc_map, rs, re, block->first_free,
579 PCPU_BITMAP_BLOCK_BITS) {
580 pcpu_block_update(block, rs, re);
581 }
582}
583
584/**
585 * pcpu_block_update_hint_alloc - update hint on allocation path
586 * @chunk: chunk of interest
587 * @bit_off: chunk offset
588 * @bits: size of request
Dennis Zhou (Facebook)fc3043342017-07-24 19:02:16 -0400589 *
590 * Updates metadata for the allocation path. The metadata only has to be
591 * refreshed by a full scan iff the chunk's contig hint is broken. Block level
592 * scans are required if the block's contig hint is broken.
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400593 */
594static void pcpu_block_update_hint_alloc(struct pcpu_chunk *chunk, int bit_off,
595 int bits)
596{
597 struct pcpu_block_md *s_block, *e_block, *block;
598 int s_index, e_index; /* block indexes of the freed allocation */
599 int s_off, e_off; /* block offsets of the freed allocation */
600
601 /*
602 * Calculate per block offsets.
603 * The calculation uses an inclusive range, but the resulting offsets
604 * are [start, end). e_index always points to the last block in the
605 * range.
606 */
607 s_index = pcpu_off_to_block_index(bit_off);
608 e_index = pcpu_off_to_block_index(bit_off + bits - 1);
609 s_off = pcpu_off_to_block_off(bit_off);
610 e_off = pcpu_off_to_block_off(bit_off + bits - 1) + 1;
611
612 s_block = chunk->md_blocks + s_index;
613 e_block = chunk->md_blocks + e_index;
614
615 /*
616 * Update s_block.
Dennis Zhou (Facebook)fc3043342017-07-24 19:02:16 -0400617 * block->first_free must be updated if the allocation takes its place.
618 * If the allocation breaks the contig_hint, a scan is required to
619 * restore this hint.
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400620 */
Dennis Zhou (Facebook)fc3043342017-07-24 19:02:16 -0400621 if (s_off == s_block->first_free)
622 s_block->first_free = find_next_zero_bit(
623 pcpu_index_alloc_map(chunk, s_index),
624 PCPU_BITMAP_BLOCK_BITS,
625 s_off + bits);
626
627 if (s_off >= s_block->contig_hint_start &&
628 s_off < s_block->contig_hint_start + s_block->contig_hint) {
629 /* block contig hint is broken - scan to fix it */
630 pcpu_block_refresh_hint(chunk, s_index);
631 } else {
632 /* update left and right contig manually */
633 s_block->left_free = min(s_block->left_free, s_off);
634 if (s_index == e_index)
635 s_block->right_free = min_t(int, s_block->right_free,
636 PCPU_BITMAP_BLOCK_BITS - e_off);
637 else
638 s_block->right_free = 0;
639 }
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400640
641 /*
642 * Update e_block.
643 */
644 if (s_index != e_index) {
Dennis Zhou (Facebook)fc3043342017-07-24 19:02:16 -0400645 /*
646 * When the allocation is across blocks, the end is along
647 * the left part of the e_block.
648 */
649 e_block->first_free = find_next_zero_bit(
650 pcpu_index_alloc_map(chunk, e_index),
651 PCPU_BITMAP_BLOCK_BITS, e_off);
652
653 if (e_off == PCPU_BITMAP_BLOCK_BITS) {
654 /* reset the block */
655 e_block++;
656 } else {
657 if (e_off > e_block->contig_hint_start) {
658 /* contig hint is broken - scan to fix it */
659 pcpu_block_refresh_hint(chunk, e_index);
660 } else {
661 e_block->left_free = 0;
662 e_block->right_free =
663 min_t(int, e_block->right_free,
664 PCPU_BITMAP_BLOCK_BITS - e_off);
665 }
666 }
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400667
668 /* update in-between md_blocks */
669 for (block = s_block + 1; block < e_block; block++) {
670 block->contig_hint = 0;
671 block->left_free = 0;
672 block->right_free = 0;
673 }
674 }
675
Dennis Zhou (Facebook)fc3043342017-07-24 19:02:16 -0400676 /*
677 * The only time a full chunk scan is required is if the chunk
678 * contig hint is broken. Otherwise, it means a smaller space
679 * was used and therefore the chunk contig hint is still correct.
680 */
681 if (bit_off >= chunk->contig_bits_start &&
682 bit_off < chunk->contig_bits_start + chunk->contig_bits)
683 pcpu_chunk_refresh_hint(chunk);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400684}
685
686/**
687 * pcpu_block_update_hint_free - updates the block hints on the free path
688 * @chunk: chunk of interest
689 * @bit_off: chunk offset
690 * @bits: size of request
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400691 *
692 * Updates metadata for the allocation path. This avoids a blind block
693 * refresh by making use of the block contig hints. If this fails, it scans
694 * forward and backward to determine the extent of the free area. This is
695 * capped at the boundary of blocks.
696 *
697 * A chunk update is triggered if a page becomes free, a block becomes free,
698 * or the free spans across blocks. This tradeoff is to minimize iterating
699 * over the block metadata to update chunk->contig_bits. chunk->contig_bits
700 * may be off by up to a page, but it will never be more than the available
701 * space. If the contig hint is contained in one block, it will be accurate.
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400702 */
703static void pcpu_block_update_hint_free(struct pcpu_chunk *chunk, int bit_off,
704 int bits)
705{
706 struct pcpu_block_md *s_block, *e_block, *block;
707 int s_index, e_index; /* block indexes of the freed allocation */
708 int s_off, e_off; /* block offsets of the freed allocation */
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400709 int start, end; /* start and end of the whole free area */
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400710
711 /*
712 * Calculate per block offsets.
713 * The calculation uses an inclusive range, but the resulting offsets
714 * are [start, end). e_index always points to the last block in the
715 * range.
716 */
717 s_index = pcpu_off_to_block_index(bit_off);
718 e_index = pcpu_off_to_block_index(bit_off + bits - 1);
719 s_off = pcpu_off_to_block_off(bit_off);
720 e_off = pcpu_off_to_block_off(bit_off + bits - 1) + 1;
721
722 s_block = chunk->md_blocks + s_index;
723 e_block = chunk->md_blocks + e_index;
724
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400725 /*
726 * Check if the freed area aligns with the block->contig_hint.
727 * If it does, then the scan to find the beginning/end of the
728 * larger free area can be avoided.
729 *
730 * start and end refer to beginning and end of the free area
731 * within each their respective blocks. This is not necessarily
732 * the entire free area as it may span blocks past the beginning
733 * or end of the block.
734 */
735 start = s_off;
736 if (s_off == s_block->contig_hint + s_block->contig_hint_start) {
737 start = s_block->contig_hint_start;
738 } else {
739 /*
740 * Scan backwards to find the extent of the free area.
741 * find_last_bit returns the starting bit, so if the start bit
742 * is returned, that means there was no last bit and the
743 * remainder of the chunk is free.
744 */
745 int l_bit = find_last_bit(pcpu_index_alloc_map(chunk, s_index),
746 start);
747 start = (start == l_bit) ? 0 : l_bit + 1;
748 }
749
750 end = e_off;
751 if (e_off == e_block->contig_hint_start)
752 end = e_block->contig_hint_start + e_block->contig_hint;
753 else
754 end = find_next_bit(pcpu_index_alloc_map(chunk, e_index),
755 PCPU_BITMAP_BLOCK_BITS, end);
756
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400757 /* update s_block */
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400758 e_off = (s_index == e_index) ? end : PCPU_BITMAP_BLOCK_BITS;
759 pcpu_block_update(s_block, start, e_off);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400760
761 /* freeing in the same block */
762 if (s_index != e_index) {
763 /* update e_block */
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400764 pcpu_block_update(e_block, 0, end);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400765
766 /* reset md_blocks in the middle */
767 for (block = s_block + 1; block < e_block; block++) {
768 block->first_free = 0;
769 block->contig_hint_start = 0;
770 block->contig_hint = PCPU_BITMAP_BLOCK_BITS;
771 block->left_free = PCPU_BITMAP_BLOCK_BITS;
772 block->right_free = PCPU_BITMAP_BLOCK_BITS;
773 }
774 }
775
Dennis Zhou (Facebook)b185cd02017-07-24 19:02:17 -0400776 /*
777 * Refresh chunk metadata when the free makes a page free, a block
778 * free, or spans across blocks. The contig hint may be off by up to
779 * a page, but if the hint is contained in a block, it will be accurate
780 * with the else condition below.
781 */
782 if ((ALIGN_DOWN(end, min(PCPU_BITS_PER_PAGE, PCPU_BITMAP_BLOCK_BITS)) >
783 ALIGN(start, min(PCPU_BITS_PER_PAGE, PCPU_BITMAP_BLOCK_BITS))) ||
784 s_index != e_index)
785 pcpu_chunk_refresh_hint(chunk);
786 else
787 pcpu_chunk_update(chunk, pcpu_block_off_to_off(s_index, start),
788 s_block->contig_hint);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400789}
790
791/**
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700792 * pcpu_is_populated - determines if the region is populated
793 * @chunk: chunk of interest
794 * @bit_off: chunk offset
795 * @bits: size of area
796 * @next_off: return value for the next offset to start searching
797 *
798 * For atomic allocations, check if the backing pages are populated.
799 *
800 * RETURNS:
801 * Bool if the backing pages are populated.
802 * next_index is to skip over unpopulated blocks in pcpu_find_block_fit.
803 */
804static bool pcpu_is_populated(struct pcpu_chunk *chunk, int bit_off, int bits,
805 int *next_off)
806{
807 int page_start, page_end, rs, re;
808
809 page_start = PFN_DOWN(bit_off * PCPU_MIN_ALLOC_SIZE);
810 page_end = PFN_UP((bit_off + bits) * PCPU_MIN_ALLOC_SIZE);
811
812 rs = page_start;
813 pcpu_next_unpop(chunk->populated, &rs, &re, page_end);
814 if (rs >= page_end)
815 return true;
816
817 *next_off = re * PAGE_SIZE / PCPU_MIN_ALLOC_SIZE;
818 return false;
819}
820
821/**
822 * pcpu_find_block_fit - finds the block index to start searching
823 * @chunk: chunk of interest
824 * @alloc_bits: size of request in allocation units
825 * @align: alignment of area (max PAGE_SIZE bytes)
826 * @pop_only: use populated regions only
827 *
828 * RETURNS:
829 * The offset in the bitmap to begin searching.
830 * -1 if no offset is found.
831 */
832static int pcpu_find_block_fit(struct pcpu_chunk *chunk, int alloc_bits,
833 size_t align, bool pop_only)
834{
835 int bit_off, bits;
836 int re; /* region end */
837
Dennis Zhou (Facebook)13f96632017-07-24 19:02:14 -0400838 /*
839 * Check to see if the allocation can fit in the chunk's contig hint.
840 * This is an optimization to prevent scanning by assuming if it
841 * cannot fit in the global hint, there is memory pressure and creating
842 * a new chunk would happen soon.
843 */
844 bit_off = ALIGN(chunk->contig_bits_start, align) -
845 chunk->contig_bits_start;
846 if (bit_off + alloc_bits > chunk->contig_bits)
847 return -1;
848
Dennis Zhou (Facebook)86b442f2017-07-24 19:02:13 -0400849 pcpu_for_each_unpop_region(chunk->alloc_map, bit_off, re,
850 chunk->first_bit,
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700851 pcpu_chunk_map_bits(chunk)) {
852 bits = re - bit_off;
853
854 /* check alignment */
855 bits -= ALIGN(bit_off, align) - bit_off;
856 bit_off = ALIGN(bit_off, align);
857 if (bits < alloc_bits)
858 continue;
859
860 bits = alloc_bits;
861 if (!pop_only || pcpu_is_populated(chunk, bit_off, bits,
862 &bit_off))
863 break;
864
865 bits = 0;
866 }
867
868 if (bit_off == pcpu_chunk_map_bits(chunk))
869 return -1;
870
871 return bit_off;
872}
873
874/**
875 * pcpu_alloc_area - allocates an area from a pcpu_chunk
876 * @chunk: chunk of interest
877 * @alloc_bits: size of request in allocation units
878 * @align: alignment of area (max PAGE_SIZE)
879 * @start: bit_off to start searching
880 *
881 * This function takes in a @start offset to begin searching to fit an
882 * allocation of @alloc_bits with alignment @align. If it confirms a
883 * valid free area, it then updates the allocation and boundary maps
884 * accordingly.
885 *
886 * RETURNS:
887 * Allocated addr offset in @chunk on success.
888 * -1 if no matching area is found.
889 */
890static int pcpu_alloc_area(struct pcpu_chunk *chunk, int alloc_bits,
891 size_t align, int start)
892{
893 size_t align_mask = (align) ? (align - 1) : 0;
894 int bit_off, end, oslot;
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900895
Tejun Heo4f996e22016-05-25 11:48:25 -0400896 lockdep_assert_held(&pcpu_lock);
897
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700898 oslot = pcpu_chunk_slot(chunk);
Tejun Heo833af842009-11-11 15:35:18 +0900899
900 /*
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700901 * Search to find a fit.
Tejun Heo833af842009-11-11 15:35:18 +0900902 */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700903 end = start + alloc_bits;
904 bit_off = bitmap_find_next_zero_area(chunk->alloc_map, end, start,
905 alloc_bits, align_mask);
906 if (bit_off >= end)
907 return -1;
Tejun Heo833af842009-11-11 15:35:18 +0900908
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700909 /* update alloc map */
910 bitmap_set(chunk->alloc_map, bit_off, alloc_bits);
Tejun Heo9f7dcf22009-03-07 00:44:09 +0900911
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700912 /* update boundary map */
913 set_bit(bit_off, chunk->bound_map);
914 bitmap_clear(chunk->bound_map, bit_off + 1, alloc_bits - 1);
915 set_bit(bit_off + alloc_bits, chunk->bound_map);
Tejun Heoa16037c2014-09-02 14:46:02 -0400916
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700917 chunk->free_bytes -= alloc_bits * PCPU_MIN_ALLOC_SIZE;
Tejun Heoa16037c2014-09-02 14:46:02 -0400918
Dennis Zhou (Facebook)86b442f2017-07-24 19:02:13 -0400919 /* update first free bit */
920 if (bit_off == chunk->first_bit)
921 chunk->first_bit = find_next_zero_bit(
922 chunk->alloc_map,
923 pcpu_chunk_map_bits(chunk),
924 bit_off + alloc_bits);
925
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400926 pcpu_block_update_hint_alloc(chunk, bit_off, alloc_bits);
Tejun Heoa16037c2014-09-02 14:46:02 -0400927
Tejun Heofbf59bc2009-02-20 16:29:08 +0900928 pcpu_chunk_relocate(chunk, oslot);
929
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700930 return bit_off * PCPU_MIN_ALLOC_SIZE;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900931}
932
933/**
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700934 * pcpu_free_area - frees the corresponding offset
Tejun Heofbf59bc2009-02-20 16:29:08 +0900935 * @chunk: chunk of interest
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700936 * @off: addr offset into chunk
Tejun Heofbf59bc2009-02-20 16:29:08 +0900937 *
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700938 * This function determines the size of an allocation to free using
939 * the boundary bitmap and clears the allocation map.
Tejun Heofbf59bc2009-02-20 16:29:08 +0900940 */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700941static void pcpu_free_area(struct pcpu_chunk *chunk, int off)
Tejun Heofbf59bc2009-02-20 16:29:08 +0900942{
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700943 int bit_off, bits, end, oslot;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900944
Dennis Zhou5ccd30e2017-06-19 19:28:29 -0400945 lockdep_assert_held(&pcpu_lock);
Dennis Zhou30a5b532017-06-19 19:28:31 -0400946 pcpu_stats_area_dealloc(chunk);
Dennis Zhou5ccd30e2017-06-19 19:28:29 -0400947
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700948 oslot = pcpu_chunk_slot(chunk);
Al Viro723ad1d2014-03-06 21:13:18 -0500949
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700950 bit_off = off / PCPU_MIN_ALLOC_SIZE;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900951
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700952 /* find end index */
953 end = find_next_bit(chunk->bound_map, pcpu_chunk_map_bits(chunk),
954 bit_off + 1);
955 bits = end - bit_off;
956 bitmap_clear(chunk->alloc_map, bit_off, bits);
Al Viro3d331ad2014-03-06 20:52:32 -0500957
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700958 /* update metadata */
959 chunk->free_bytes += bits * PCPU_MIN_ALLOC_SIZE;
Tejun Heofbf59bc2009-02-20 16:29:08 +0900960
Dennis Zhou (Facebook)86b442f2017-07-24 19:02:13 -0400961 /* update first free bit */
962 chunk->first_bit = min(chunk->first_bit, bit_off);
963
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400964 pcpu_block_update_hint_free(chunk, bit_off, bits);
Tejun Heob539b872014-09-02 14:46:05 -0400965
Tejun Heofbf59bc2009-02-20 16:29:08 +0900966 pcpu_chunk_relocate(chunk, oslot);
967}
968
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400969static void pcpu_init_md_blocks(struct pcpu_chunk *chunk)
970{
971 struct pcpu_block_md *md_block;
972
973 for (md_block = chunk->md_blocks;
974 md_block != chunk->md_blocks + pcpu_chunk_nr_blocks(chunk);
975 md_block++) {
976 md_block->contig_hint = PCPU_BITMAP_BLOCK_BITS;
977 md_block->left_free = PCPU_BITMAP_BLOCK_BITS;
978 md_block->right_free = PCPU_BITMAP_BLOCK_BITS;
979 }
980}
981
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700982/**
983 * pcpu_alloc_first_chunk - creates chunks that serve the first chunk
984 * @tmp_addr: the start of the region served
985 * @map_size: size of the region served
986 *
987 * This is responsible for creating the chunks that serve the first chunk. The
988 * base_addr is page aligned down of @tmp_addr while the region end is page
989 * aligned up. Offsets are kept track of to determine the region served. All
990 * this is done to appease the bitmap allocator in avoiding partial blocks.
991 *
992 * RETURNS:
993 * Chunk serving the region at @tmp_addr of @map_size.
994 */
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -0400995static struct pcpu_chunk * __init pcpu_alloc_first_chunk(unsigned long tmp_addr,
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -0700996 int map_size)
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -0400997{
998 struct pcpu_chunk *chunk;
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -0400999 unsigned long aligned_addr, lcm_align;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001000 int start_offset, offset_bits, region_size, region_bits;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001001
1002 /* region calculations */
1003 aligned_addr = tmp_addr & PAGE_MASK;
1004
1005 start_offset = tmp_addr - aligned_addr;
Dennis Zhou (Facebook)6b9d7c82017-07-24 19:02:03 -04001006
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001007 /*
1008 * Align the end of the region with the LCM of PAGE_SIZE and
1009 * PCPU_BITMAP_BLOCK_SIZE. One of these constants is a multiple of
1010 * the other.
1011 */
1012 lcm_align = lcm(PAGE_SIZE, PCPU_BITMAP_BLOCK_SIZE);
1013 region_size = ALIGN(start_offset + map_size, lcm_align);
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001014
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001015 /* allocate chunk */
Dennis Zhou (Facebook)8ab16c42017-07-24 19:02:07 -04001016 chunk = memblock_virt_alloc(sizeof(struct pcpu_chunk) +
1017 BITS_TO_LONGS(region_size >> PAGE_SHIFT),
1018 0);
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001019
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001020 INIT_LIST_HEAD(&chunk->list);
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001021
1022 chunk->base_addr = (void *)aligned_addr;
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001023 chunk->start_offset = start_offset;
Dennis Zhou (Facebook)6b9d7c82017-07-24 19:02:03 -04001024 chunk->end_offset = region_size - chunk->start_offset - map_size;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001025
Dennis Zhou (Facebook)8ab16c42017-07-24 19:02:07 -04001026 chunk->nr_pages = region_size >> PAGE_SHIFT;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001027 region_bits = pcpu_chunk_map_bits(chunk);
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001028
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001029 chunk->alloc_map = memblock_virt_alloc(BITS_TO_LONGS(region_bits) *
1030 sizeof(chunk->alloc_map[0]), 0);
1031 chunk->bound_map = memblock_virt_alloc(BITS_TO_LONGS(region_bits + 1) *
1032 sizeof(chunk->bound_map[0]), 0);
1033 chunk->md_blocks = memblock_virt_alloc(pcpu_chunk_nr_blocks(chunk) *
1034 sizeof(chunk->md_blocks[0]), 0);
1035 pcpu_init_md_blocks(chunk);
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001036
1037 /* manage populated page bitmap */
1038 chunk->immutable = true;
Dennis Zhou (Facebook)8ab16c42017-07-24 19:02:07 -04001039 bitmap_fill(chunk->populated, chunk->nr_pages);
1040 chunk->nr_populated = chunk->nr_pages;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001041 chunk->nr_empty_pop_pages =
1042 pcpu_cnt_pop_pages(chunk, start_offset / PCPU_MIN_ALLOC_SIZE,
1043 map_size / PCPU_MIN_ALLOC_SIZE);
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001044
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001045 chunk->contig_bits = map_size / PCPU_MIN_ALLOC_SIZE;
1046 chunk->free_bytes = map_size;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001047
1048 if (chunk->start_offset) {
1049 /* hide the beginning of the bitmap */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001050 offset_bits = chunk->start_offset / PCPU_MIN_ALLOC_SIZE;
1051 bitmap_set(chunk->alloc_map, 0, offset_bits);
1052 set_bit(0, chunk->bound_map);
1053 set_bit(offset_bits, chunk->bound_map);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001054
Dennis Zhou (Facebook)86b442f2017-07-24 19:02:13 -04001055 chunk->first_bit = offset_bits;
1056
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001057 pcpu_block_update_hint_alloc(chunk, 0, offset_bits);
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001058 }
1059
Dennis Zhou (Facebook)6b9d7c82017-07-24 19:02:03 -04001060 if (chunk->end_offset) {
1061 /* hide the end of the bitmap */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001062 offset_bits = chunk->end_offset / PCPU_MIN_ALLOC_SIZE;
1063 bitmap_set(chunk->alloc_map,
1064 pcpu_chunk_map_bits(chunk) - offset_bits,
1065 offset_bits);
1066 set_bit((start_offset + map_size) / PCPU_MIN_ALLOC_SIZE,
1067 chunk->bound_map);
1068 set_bit(region_bits, chunk->bound_map);
Dennis Zhou (Facebook)6b9d7c82017-07-24 19:02:03 -04001069
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001070 pcpu_block_update_hint_alloc(chunk, pcpu_chunk_map_bits(chunk)
1071 - offset_bits, offset_bits);
1072 }
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001073
Dennis Zhou (Facebook)10edf5b2017-07-24 19:02:02 -04001074 return chunk;
1075}
1076
Tejun Heo60810892010-04-09 18:57:01 +09001077static struct pcpu_chunk *pcpu_alloc_chunk(void)
1078{
1079 struct pcpu_chunk *chunk;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001080 int region_bits;
Tejun Heo60810892010-04-09 18:57:01 +09001081
Bob Liu90459ce02011-08-04 11:02:33 +02001082 chunk = pcpu_mem_zalloc(pcpu_chunk_struct_size);
Tejun Heo60810892010-04-09 18:57:01 +09001083 if (!chunk)
1084 return NULL;
1085
Tejun Heo60810892010-04-09 18:57:01 +09001086 INIT_LIST_HEAD(&chunk->list);
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001087 chunk->nr_pages = pcpu_unit_pages;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001088 region_bits = pcpu_chunk_map_bits(chunk);
1089
1090 chunk->alloc_map = pcpu_mem_zalloc(BITS_TO_LONGS(region_bits) *
1091 sizeof(chunk->alloc_map[0]));
1092 if (!chunk->alloc_map)
1093 goto alloc_map_fail;
1094
1095 chunk->bound_map = pcpu_mem_zalloc(BITS_TO_LONGS(region_bits + 1) *
1096 sizeof(chunk->bound_map[0]));
1097 if (!chunk->bound_map)
1098 goto bound_map_fail;
1099
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001100 chunk->md_blocks = pcpu_mem_zalloc(pcpu_chunk_nr_blocks(chunk) *
1101 sizeof(chunk->md_blocks[0]));
1102 if (!chunk->md_blocks)
1103 goto md_blocks_fail;
1104
1105 pcpu_init_md_blocks(chunk);
1106
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001107 /* init metadata */
1108 chunk->contig_bits = region_bits;
1109 chunk->free_bytes = chunk->nr_pages * PAGE_SIZE;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001110
Tejun Heo60810892010-04-09 18:57:01 +09001111 return chunk;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001112
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001113md_blocks_fail:
1114 pcpu_mem_free(chunk->bound_map);
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001115bound_map_fail:
1116 pcpu_mem_free(chunk->alloc_map);
1117alloc_map_fail:
1118 pcpu_mem_free(chunk);
1119
1120 return NULL;
Tejun Heo60810892010-04-09 18:57:01 +09001121}
1122
1123static void pcpu_free_chunk(struct pcpu_chunk *chunk)
1124{
1125 if (!chunk)
1126 return;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001127 pcpu_mem_free(chunk->bound_map);
1128 pcpu_mem_free(chunk->alloc_map);
Tetsuo Handa1d5cfdb2016-01-22 15:11:02 -08001129 pcpu_mem_free(chunk);
Tejun Heo60810892010-04-09 18:57:01 +09001130}
1131
Tejun Heob539b872014-09-02 14:46:05 -04001132/**
1133 * pcpu_chunk_populated - post-population bookkeeping
1134 * @chunk: pcpu_chunk which got populated
1135 * @page_start: the start page
1136 * @page_end: the end page
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001137 * @for_alloc: if this is to populate for allocation
Tejun Heob539b872014-09-02 14:46:05 -04001138 *
1139 * Pages in [@page_start,@page_end) have been populated to @chunk. Update
1140 * the bookkeeping information accordingly. Must be called after each
1141 * successful population.
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001142 *
1143 * If this is @for_alloc, do not increment pcpu_nr_empty_pop_pages because it
1144 * is to serve an allocation in that area.
Tejun Heob539b872014-09-02 14:46:05 -04001145 */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001146static void pcpu_chunk_populated(struct pcpu_chunk *chunk, int page_start,
1147 int page_end, bool for_alloc)
Tejun Heob539b872014-09-02 14:46:05 -04001148{
1149 int nr = page_end - page_start;
1150
1151 lockdep_assert_held(&pcpu_lock);
1152
1153 bitmap_set(chunk->populated, page_start, nr);
1154 chunk->nr_populated += nr;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001155
1156 if (!for_alloc) {
1157 chunk->nr_empty_pop_pages += nr;
1158 pcpu_nr_empty_pop_pages += nr;
1159 }
Tejun Heob539b872014-09-02 14:46:05 -04001160}
1161
1162/**
1163 * pcpu_chunk_depopulated - post-depopulation bookkeeping
1164 * @chunk: pcpu_chunk which got depopulated
1165 * @page_start: the start page
1166 * @page_end: the end page
1167 *
1168 * Pages in [@page_start,@page_end) have been depopulated from @chunk.
1169 * Update the bookkeeping information accordingly. Must be called after
1170 * each successful depopulation.
1171 */
1172static void pcpu_chunk_depopulated(struct pcpu_chunk *chunk,
1173 int page_start, int page_end)
1174{
1175 int nr = page_end - page_start;
1176
1177 lockdep_assert_held(&pcpu_lock);
1178
1179 bitmap_clear(chunk->populated, page_start, nr);
1180 chunk->nr_populated -= nr;
Dennis Zhou (Facebook)0cecf502017-07-24 19:02:08 -04001181 chunk->nr_empty_pop_pages -= nr;
Tejun Heob539b872014-09-02 14:46:05 -04001182 pcpu_nr_empty_pop_pages -= nr;
1183}
1184
Tejun Heo9f645532010-04-09 18:57:01 +09001185/*
1186 * Chunk management implementation.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001187 *
Tejun Heo9f645532010-04-09 18:57:01 +09001188 * To allow different implementations, chunk alloc/free and
1189 * [de]population are implemented in a separate file which is pulled
1190 * into this file and compiled together. The following functions
1191 * should be implemented.
Tejun Heoce3141a2009-07-04 08:11:00 +09001192 *
Tejun Heo9f645532010-04-09 18:57:01 +09001193 * pcpu_populate_chunk - populate the specified range of a chunk
1194 * pcpu_depopulate_chunk - depopulate the specified range of a chunk
1195 * pcpu_create_chunk - create a new chunk
1196 * pcpu_destroy_chunk - destroy a chunk, always preceded by full depop
1197 * pcpu_addr_to_page - translate address to physical address
1198 * pcpu_verify_alloc_info - check alloc_info is acceptable during init
Tejun Heofbf59bc2009-02-20 16:29:08 +09001199 */
Tejun Heo9f645532010-04-09 18:57:01 +09001200static int pcpu_populate_chunk(struct pcpu_chunk *chunk, int off, int size);
1201static void pcpu_depopulate_chunk(struct pcpu_chunk *chunk, int off, int size);
1202static struct pcpu_chunk *pcpu_create_chunk(void);
1203static void pcpu_destroy_chunk(struct pcpu_chunk *chunk);
1204static struct page *pcpu_addr_to_page(void *addr);
1205static int __init pcpu_verify_alloc_info(const struct pcpu_alloc_info *ai);
Tejun Heoce3141a2009-07-04 08:11:00 +09001206
Tejun Heob0c97782010-04-09 18:57:01 +09001207#ifdef CONFIG_NEED_PER_CPU_KM
1208#include "percpu-km.c"
1209#else
Tejun Heo9f645532010-04-09 18:57:01 +09001210#include "percpu-vm.c"
Tejun Heob0c97782010-04-09 18:57:01 +09001211#endif
Tejun Heofbf59bc2009-02-20 16:29:08 +09001212
1213/**
Tejun Heo88999a82010-04-09 18:57:01 +09001214 * pcpu_chunk_addr_search - determine chunk containing specified address
1215 * @addr: address for which the chunk needs to be determined.
1216 *
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001217 * This is an internal function that handles all but static allocations.
1218 * Static percpu address values should never be passed into the allocator.
1219 *
Tejun Heo88999a82010-04-09 18:57:01 +09001220 * RETURNS:
1221 * The address of the found chunk.
1222 */
1223static struct pcpu_chunk *pcpu_chunk_addr_search(void *addr)
1224{
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001225 /* is it in the dynamic region (first chunk)? */
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -04001226 if (pcpu_addr_in_chunk(pcpu_first_chunk, addr))
Tejun Heo88999a82010-04-09 18:57:01 +09001227 return pcpu_first_chunk;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001228
1229 /* is it in the reserved region? */
Dennis Zhou (Facebook)560f2c22017-07-24 19:02:06 -04001230 if (pcpu_addr_in_chunk(pcpu_reserved_chunk, addr))
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001231 return pcpu_reserved_chunk;
Tejun Heo88999a82010-04-09 18:57:01 +09001232
1233 /*
1234 * The address is relative to unit0 which might be unused and
1235 * thus unmapped. Offset the address to the unit space of the
1236 * current processor before looking it up in the vmalloc
1237 * space. Note that any possible cpu id can be used here, so
1238 * there's no need to worry about preemption or cpu hotplug.
1239 */
1240 addr += pcpu_unit_offsets[raw_smp_processor_id()];
Tejun Heo9f645532010-04-09 18:57:01 +09001241 return pcpu_get_page_chunk(pcpu_addr_to_page(addr));
Tejun Heo88999a82010-04-09 18:57:01 +09001242}
1243
1244/**
Tejun Heoedcb4632009-03-06 14:33:59 +09001245 * pcpu_alloc - the percpu allocator
Tejun Heocae3aeb2009-02-21 16:56:23 +09001246 * @size: size of area to allocate in bytes
Tejun Heofbf59bc2009-02-20 16:29:08 +09001247 * @align: alignment of area (max PAGE_SIZE)
Tejun Heoedcb4632009-03-06 14:33:59 +09001248 * @reserved: allocate from the reserved chunk if available
Tejun Heo5835d962014-09-02 14:46:04 -04001249 * @gfp: allocation flags
Tejun Heofbf59bc2009-02-20 16:29:08 +09001250 *
Tejun Heo5835d962014-09-02 14:46:04 -04001251 * Allocate percpu area of @size bytes aligned at @align. If @gfp doesn't
1252 * contain %GFP_KERNEL, the allocation is atomic.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001253 *
1254 * RETURNS:
1255 * Percpu pointer to the allocated area on success, NULL on failure.
1256 */
Tejun Heo5835d962014-09-02 14:46:04 -04001257static void __percpu *pcpu_alloc(size_t size, size_t align, bool reserved,
1258 gfp_t gfp)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001259{
Tejun Heof2badb02009-09-29 09:17:58 +09001260 static int warn_limit = 10;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001261 struct pcpu_chunk *chunk;
Tejun Heof2badb02009-09-29 09:17:58 +09001262 const char *err;
Tejun Heo6ae833c7f2014-10-08 12:01:52 -04001263 bool is_atomic = (gfp & GFP_KERNEL) != GFP_KERNEL;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001264 int slot, off, cpu, ret;
Jiri Kosina403a91b2009-10-29 00:25:59 +09001265 unsigned long flags;
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001266 void __percpu *ptr;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001267 size_t bits, bit_align;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001268
Al Viro723ad1d2014-03-06 21:13:18 -05001269 /*
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001270 * There is now a minimum allocation size of PCPU_MIN_ALLOC_SIZE,
1271 * therefore alignment must be a minimum of that many bytes.
1272 * An allocation may have internal fragmentation from rounding up
1273 * of up to PCPU_MIN_ALLOC_SIZE - 1 bytes.
Al Viro723ad1d2014-03-06 21:13:18 -05001274 */
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04001275 if (unlikely(align < PCPU_MIN_ALLOC_SIZE))
1276 align = PCPU_MIN_ALLOC_SIZE;
Al Viro723ad1d2014-03-06 21:13:18 -05001277
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04001278 size = ALIGN(size, PCPU_MIN_ALLOC_SIZE);
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001279 bits = size >> PCPU_MIN_ALLOC_SHIFT;
1280 bit_align = align >> PCPU_MIN_ALLOC_SHIFT;
Viro2f69fa82014-03-17 16:01:27 -04001281
zijun_hu3ca45a42016-10-14 15:12:54 +08001282 if (unlikely(!size || size > PCPU_MIN_UNIT_SIZE || align > PAGE_SIZE ||
1283 !is_power_of_2(align))) {
Joe Perches756a0252016-03-17 14:19:47 -07001284 WARN(true, "illegal size (%zu) or align (%zu) for percpu allocation\n",
1285 size, align);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001286 return NULL;
1287 }
1288
Tejun Heo6710e592016-05-25 11:48:25 -04001289 if (!is_atomic)
1290 mutex_lock(&pcpu_alloc_mutex);
1291
Jiri Kosina403a91b2009-10-29 00:25:59 +09001292 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001293
Tejun Heoedcb4632009-03-06 14:33:59 +09001294 /* serve reserved allocations from the reserved chunk if available */
1295 if (reserved && pcpu_reserved_chunk) {
1296 chunk = pcpu_reserved_chunk;
Tejun Heo833af842009-11-11 15:35:18 +09001297
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001298 off = pcpu_find_block_fit(chunk, bits, bit_align, is_atomic);
1299 if (off < 0) {
Tejun Heo833af842009-11-11 15:35:18 +09001300 err = "alloc from reserved chunk failed";
Tejun Heoccea34b2009-03-07 00:44:13 +09001301 goto fail_unlock;
Tejun Heof2badb02009-09-29 09:17:58 +09001302 }
Tejun Heo833af842009-11-11 15:35:18 +09001303
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001304 off = pcpu_alloc_area(chunk, bits, bit_align, off);
Tejun Heoedcb4632009-03-06 14:33:59 +09001305 if (off >= 0)
1306 goto area_found;
Tejun Heo833af842009-11-11 15:35:18 +09001307
Tejun Heof2badb02009-09-29 09:17:58 +09001308 err = "alloc from reserved chunk failed";
Tejun Heoccea34b2009-03-07 00:44:13 +09001309 goto fail_unlock;
Tejun Heoedcb4632009-03-06 14:33:59 +09001310 }
1311
Tejun Heoccea34b2009-03-07 00:44:13 +09001312restart:
Tejun Heoedcb4632009-03-06 14:33:59 +09001313 /* search through normal chunks */
Tejun Heofbf59bc2009-02-20 16:29:08 +09001314 for (slot = pcpu_size_to_slot(size); slot < pcpu_nr_slots; slot++) {
1315 list_for_each_entry(chunk, &pcpu_slot[slot], list) {
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001316 off = pcpu_find_block_fit(chunk, bits, bit_align,
1317 is_atomic);
1318 if (off < 0)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001319 continue;
Tejun Heoccea34b2009-03-07 00:44:13 +09001320
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001321 off = pcpu_alloc_area(chunk, bits, bit_align, off);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001322 if (off >= 0)
1323 goto area_found;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001324
Tejun Heofbf59bc2009-02-20 16:29:08 +09001325 }
1326 }
1327
Jiri Kosina403a91b2009-10-29 00:25:59 +09001328 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heoccea34b2009-03-07 00:44:13 +09001329
Tejun Heob38d08f2014-09-02 14:46:02 -04001330 /*
1331 * No space left. Create a new chunk. We don't want multiple
1332 * tasks to create chunks simultaneously. Serialize and create iff
1333 * there's still no empty chunk after grabbing the mutex.
1334 */
Dennis Zhou11df02b2017-06-21 11:51:09 -04001335 if (is_atomic) {
1336 err = "atomic alloc failed, no space left";
Tejun Heo5835d962014-09-02 14:46:04 -04001337 goto fail;
Dennis Zhou11df02b2017-06-21 11:51:09 -04001338 }
Tejun Heo5835d962014-09-02 14:46:04 -04001339
Tejun Heob38d08f2014-09-02 14:46:02 -04001340 if (list_empty(&pcpu_slot[pcpu_nr_slots - 1])) {
1341 chunk = pcpu_create_chunk();
1342 if (!chunk) {
1343 err = "failed to allocate new chunk";
1344 goto fail;
1345 }
1346
1347 spin_lock_irqsave(&pcpu_lock, flags);
1348 pcpu_chunk_relocate(chunk, -1);
1349 } else {
1350 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heof2badb02009-09-29 09:17:58 +09001351 }
Tejun Heoccea34b2009-03-07 00:44:13 +09001352
Tejun Heoccea34b2009-03-07 00:44:13 +09001353 goto restart;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001354
1355area_found:
Dennis Zhou30a5b532017-06-19 19:28:31 -04001356 pcpu_stats_area_alloc(chunk, size);
Jiri Kosina403a91b2009-10-29 00:25:59 +09001357 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heoccea34b2009-03-07 00:44:13 +09001358
Tejun Heodca49642014-09-02 14:46:01 -04001359 /* populate if not all pages are already there */
Tejun Heo5835d962014-09-02 14:46:04 -04001360 if (!is_atomic) {
Tejun Heoe04d3202014-09-02 14:46:04 -04001361 int page_start, page_end, rs, re;
Tejun Heodca49642014-09-02 14:46:01 -04001362
Tejun Heoe04d3202014-09-02 14:46:04 -04001363 page_start = PFN_DOWN(off);
1364 page_end = PFN_UP(off + size);
Tejun Heob38d08f2014-09-02 14:46:02 -04001365
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -04001366 pcpu_for_each_unpop_region(chunk->populated, rs, re,
1367 page_start, page_end) {
Tejun Heoe04d3202014-09-02 14:46:04 -04001368 WARN_ON(chunk->immutable);
1369
1370 ret = pcpu_populate_chunk(chunk, rs, re);
1371
1372 spin_lock_irqsave(&pcpu_lock, flags);
1373 if (ret) {
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001374 pcpu_free_area(chunk, off);
Tejun Heoe04d3202014-09-02 14:46:04 -04001375 err = "failed to populate";
1376 goto fail_unlock;
1377 }
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001378 pcpu_chunk_populated(chunk, rs, re, true);
Tejun Heoe04d3202014-09-02 14:46:04 -04001379 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heodca49642014-09-02 14:46:01 -04001380 }
Tejun Heofbf59bc2009-02-20 16:29:08 +09001381
Tejun Heoe04d3202014-09-02 14:46:04 -04001382 mutex_unlock(&pcpu_alloc_mutex);
1383 }
Tejun Heoccea34b2009-03-07 00:44:13 +09001384
Tejun Heo1a4d7602014-09-02 14:46:05 -04001385 if (pcpu_nr_empty_pop_pages < PCPU_EMPTY_POP_PAGES_LOW)
1386 pcpu_schedule_balance_work();
1387
Tejun Heodca49642014-09-02 14:46:01 -04001388 /* clear the areas and return address relative to base address */
1389 for_each_possible_cpu(cpu)
1390 memset((void *)pcpu_chunk_addr(chunk, cpu, 0) + off, 0, size);
1391
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001392 ptr = __addr_to_pcpu_ptr(chunk->base_addr + off);
Larry Finger8a8c35f2015-06-24 16:58:51 -07001393 kmemleak_alloc_percpu(ptr, size, gfp);
Dennis Zhoudf95e792017-06-19 19:28:32 -04001394
1395 trace_percpu_alloc_percpu(reserved, is_atomic, size, align,
1396 chunk->base_addr, off, ptr);
1397
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001398 return ptr;
Tejun Heoccea34b2009-03-07 00:44:13 +09001399
1400fail_unlock:
Jiri Kosina403a91b2009-10-29 00:25:59 +09001401 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heob38d08f2014-09-02 14:46:02 -04001402fail:
Dennis Zhoudf95e792017-06-19 19:28:32 -04001403 trace_percpu_alloc_percpu_fail(reserved, is_atomic, size, align);
1404
Tejun Heo5835d962014-09-02 14:46:04 -04001405 if (!is_atomic && warn_limit) {
Joe Perches870d4b12016-03-17 14:19:53 -07001406 pr_warn("allocation failed, size=%zu align=%zu atomic=%d, %s\n",
Joe Perches598d8092016-03-17 14:19:44 -07001407 size, align, is_atomic, err);
Tejun Heof2badb02009-09-29 09:17:58 +09001408 dump_stack();
1409 if (!--warn_limit)
Joe Perches870d4b12016-03-17 14:19:53 -07001410 pr_info("limit reached, disable warning\n");
Tejun Heof2badb02009-09-29 09:17:58 +09001411 }
Tejun Heo1a4d7602014-09-02 14:46:05 -04001412 if (is_atomic) {
1413 /* see the flag handling in pcpu_blance_workfn() */
1414 pcpu_atomic_alloc_failed = true;
1415 pcpu_schedule_balance_work();
Tejun Heo6710e592016-05-25 11:48:25 -04001416 } else {
1417 mutex_unlock(&pcpu_alloc_mutex);
Tejun Heo1a4d7602014-09-02 14:46:05 -04001418 }
Tejun Heoccea34b2009-03-07 00:44:13 +09001419 return NULL;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001420}
Tejun Heoedcb4632009-03-06 14:33:59 +09001421
1422/**
Tejun Heo5835d962014-09-02 14:46:04 -04001423 * __alloc_percpu_gfp - allocate dynamic percpu area
Tejun Heoedcb4632009-03-06 14:33:59 +09001424 * @size: size of area to allocate in bytes
1425 * @align: alignment of area (max PAGE_SIZE)
Tejun Heo5835d962014-09-02 14:46:04 -04001426 * @gfp: allocation flags
Tejun Heoedcb4632009-03-06 14:33:59 +09001427 *
Tejun Heo5835d962014-09-02 14:46:04 -04001428 * Allocate zero-filled percpu area of @size bytes aligned at @align. If
1429 * @gfp doesn't contain %GFP_KERNEL, the allocation doesn't block and can
1430 * be called from any context but is a lot more likely to fail.
Tejun Heoccea34b2009-03-07 00:44:13 +09001431 *
Tejun Heoedcb4632009-03-06 14:33:59 +09001432 * RETURNS:
1433 * Percpu pointer to the allocated area on success, NULL on failure.
1434 */
Tejun Heo5835d962014-09-02 14:46:04 -04001435void __percpu *__alloc_percpu_gfp(size_t size, size_t align, gfp_t gfp)
1436{
1437 return pcpu_alloc(size, align, false, gfp);
1438}
1439EXPORT_SYMBOL_GPL(__alloc_percpu_gfp);
1440
1441/**
1442 * __alloc_percpu - allocate dynamic percpu area
1443 * @size: size of area to allocate in bytes
1444 * @align: alignment of area (max PAGE_SIZE)
1445 *
1446 * Equivalent to __alloc_percpu_gfp(size, align, %GFP_KERNEL).
1447 */
Tejun Heo43cf38e2010-02-02 14:38:57 +09001448void __percpu *__alloc_percpu(size_t size, size_t align)
Tejun Heoedcb4632009-03-06 14:33:59 +09001449{
Tejun Heo5835d962014-09-02 14:46:04 -04001450 return pcpu_alloc(size, align, false, GFP_KERNEL);
Tejun Heoedcb4632009-03-06 14:33:59 +09001451}
Tejun Heofbf59bc2009-02-20 16:29:08 +09001452EXPORT_SYMBOL_GPL(__alloc_percpu);
1453
Tejun Heoedcb4632009-03-06 14:33:59 +09001454/**
1455 * __alloc_reserved_percpu - allocate reserved percpu area
1456 * @size: size of area to allocate in bytes
1457 * @align: alignment of area (max PAGE_SIZE)
1458 *
Tejun Heo9329ba92010-09-10 11:01:56 +02001459 * Allocate zero-filled percpu area of @size bytes aligned at @align
1460 * from reserved percpu area if arch has set it up; otherwise,
1461 * allocation is served from the same dynamic area. Might sleep.
1462 * Might trigger writeouts.
Tejun Heoedcb4632009-03-06 14:33:59 +09001463 *
Tejun Heoccea34b2009-03-07 00:44:13 +09001464 * CONTEXT:
1465 * Does GFP_KERNEL allocation.
1466 *
Tejun Heoedcb4632009-03-06 14:33:59 +09001467 * RETURNS:
1468 * Percpu pointer to the allocated area on success, NULL on failure.
1469 */
Tejun Heo43cf38e2010-02-02 14:38:57 +09001470void __percpu *__alloc_reserved_percpu(size_t size, size_t align)
Tejun Heoedcb4632009-03-06 14:33:59 +09001471{
Tejun Heo5835d962014-09-02 14:46:04 -04001472 return pcpu_alloc(size, align, true, GFP_KERNEL);
Tejun Heoedcb4632009-03-06 14:33:59 +09001473}
1474
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001475/**
Tejun Heo1a4d7602014-09-02 14:46:05 -04001476 * pcpu_balance_workfn - manage the amount of free chunks and populated pages
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001477 * @work: unused
1478 *
1479 * Reclaim all fully free chunks except for the first one.
1480 */
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001481static void pcpu_balance_workfn(struct work_struct *work)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001482{
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001483 LIST_HEAD(to_free);
1484 struct list_head *free_head = &pcpu_slot[pcpu_nr_slots - 1];
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001485 struct pcpu_chunk *chunk, *next;
Tejun Heo1a4d7602014-09-02 14:46:05 -04001486 int slot, nr_to_pop, ret;
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001487
Tejun Heo1a4d7602014-09-02 14:46:05 -04001488 /*
1489 * There's no reason to keep around multiple unused chunks and VM
1490 * areas can be scarce. Destroy all free chunks except for one.
1491 */
Tejun Heoccea34b2009-03-07 00:44:13 +09001492 mutex_lock(&pcpu_alloc_mutex);
1493 spin_lock_irq(&pcpu_lock);
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001494
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001495 list_for_each_entry_safe(chunk, next, free_head, list) {
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001496 WARN_ON(chunk->immutable);
1497
1498 /* spare the first one */
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001499 if (chunk == list_first_entry(free_head, struct pcpu_chunk, list))
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001500 continue;
1501
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001502 list_move(&chunk->list, &to_free);
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001503 }
1504
Tejun Heoccea34b2009-03-07 00:44:13 +09001505 spin_unlock_irq(&pcpu_lock);
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001506
Tejun Heofe6bd8c2014-09-02 14:46:05 -04001507 list_for_each_entry_safe(chunk, next, &to_free, list) {
Tejun Heoa93ace42014-09-02 14:46:02 -04001508 int rs, re;
Tejun Heodca49642014-09-02 14:46:01 -04001509
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -04001510 pcpu_for_each_pop_region(chunk->populated, rs, re, 0,
1511 chunk->nr_pages) {
Tejun Heoa93ace42014-09-02 14:46:02 -04001512 pcpu_depopulate_chunk(chunk, rs, re);
Tejun Heob539b872014-09-02 14:46:05 -04001513 spin_lock_irq(&pcpu_lock);
1514 pcpu_chunk_depopulated(chunk, rs, re);
1515 spin_unlock_irq(&pcpu_lock);
Tejun Heoa93ace42014-09-02 14:46:02 -04001516 }
Tejun Heo60810892010-04-09 18:57:01 +09001517 pcpu_destroy_chunk(chunk);
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001518 }
Tejun Heo971f3912009-08-14 15:00:49 +09001519
Tejun Heo1a4d7602014-09-02 14:46:05 -04001520 /*
1521 * Ensure there are certain number of free populated pages for
1522 * atomic allocs. Fill up from the most packed so that atomic
1523 * allocs don't increase fragmentation. If atomic allocation
1524 * failed previously, always populate the maximum amount. This
1525 * should prevent atomic allocs larger than PAGE_SIZE from keeping
1526 * failing indefinitely; however, large atomic allocs are not
1527 * something we support properly and can be highly unreliable and
1528 * inefficient.
1529 */
1530retry_pop:
1531 if (pcpu_atomic_alloc_failed) {
1532 nr_to_pop = PCPU_EMPTY_POP_PAGES_HIGH;
1533 /* best effort anyway, don't worry about synchronization */
1534 pcpu_atomic_alloc_failed = false;
1535 } else {
1536 nr_to_pop = clamp(PCPU_EMPTY_POP_PAGES_HIGH -
1537 pcpu_nr_empty_pop_pages,
1538 0, PCPU_EMPTY_POP_PAGES_HIGH);
1539 }
1540
1541 for (slot = pcpu_size_to_slot(PAGE_SIZE); slot < pcpu_nr_slots; slot++) {
1542 int nr_unpop = 0, rs, re;
1543
1544 if (!nr_to_pop)
1545 break;
1546
1547 spin_lock_irq(&pcpu_lock);
1548 list_for_each_entry(chunk, &pcpu_slot[slot], list) {
Dennis Zhou (Facebook)8ab16c42017-07-24 19:02:07 -04001549 nr_unpop = chunk->nr_pages - chunk->nr_populated;
Tejun Heo1a4d7602014-09-02 14:46:05 -04001550 if (nr_unpop)
1551 break;
1552 }
1553 spin_unlock_irq(&pcpu_lock);
1554
1555 if (!nr_unpop)
1556 continue;
1557
1558 /* @chunk can't go away while pcpu_alloc_mutex is held */
Dennis Zhou (Facebook)91e914c2017-07-24 19:02:10 -04001559 pcpu_for_each_unpop_region(chunk->populated, rs, re, 0,
1560 chunk->nr_pages) {
Tejun Heo1a4d7602014-09-02 14:46:05 -04001561 int nr = min(re - rs, nr_to_pop);
1562
1563 ret = pcpu_populate_chunk(chunk, rs, rs + nr);
1564 if (!ret) {
1565 nr_to_pop -= nr;
1566 spin_lock_irq(&pcpu_lock);
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001567 pcpu_chunk_populated(chunk, rs, rs + nr, false);
Tejun Heo1a4d7602014-09-02 14:46:05 -04001568 spin_unlock_irq(&pcpu_lock);
1569 } else {
1570 nr_to_pop = 0;
1571 }
1572
1573 if (!nr_to_pop)
1574 break;
1575 }
1576 }
1577
1578 if (nr_to_pop) {
1579 /* ran out of chunks to populate, create a new one and retry */
1580 chunk = pcpu_create_chunk();
1581 if (chunk) {
1582 spin_lock_irq(&pcpu_lock);
1583 pcpu_chunk_relocate(chunk, -1);
1584 spin_unlock_irq(&pcpu_lock);
1585 goto retry_pop;
1586 }
1587 }
1588
Tejun Heo971f3912009-08-14 15:00:49 +09001589 mutex_unlock(&pcpu_alloc_mutex);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001590}
1591
1592/**
1593 * free_percpu - free percpu area
1594 * @ptr: pointer to area to free
1595 *
Tejun Heoccea34b2009-03-07 00:44:13 +09001596 * Free percpu area @ptr.
1597 *
1598 * CONTEXT:
1599 * Can be called from atomic context.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001600 */
Tejun Heo43cf38e2010-02-02 14:38:57 +09001601void free_percpu(void __percpu *ptr)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001602{
Andrew Morton129182e2010-01-08 14:42:39 -08001603 void *addr;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001604 struct pcpu_chunk *chunk;
Tejun Heoccea34b2009-03-07 00:44:13 +09001605 unsigned long flags;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001606 int off;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001607
1608 if (!ptr)
1609 return;
1610
Catalin Marinasf528f0b2011-09-26 17:12:53 +01001611 kmemleak_free_percpu(ptr);
1612
Andrew Morton129182e2010-01-08 14:42:39 -08001613 addr = __pcpu_ptr_to_addr(ptr);
1614
Tejun Heoccea34b2009-03-07 00:44:13 +09001615 spin_lock_irqsave(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001616
1617 chunk = pcpu_chunk_addr_search(addr);
Tejun Heobba174f2009-08-14 15:00:51 +09001618 off = addr - chunk->base_addr;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001619
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001620 pcpu_free_area(chunk, off);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001621
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001622 /* if there are more than one fully free chunks, wake up grim reaper */
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07001623 if (chunk->free_bytes == pcpu_unit_size) {
Tejun Heofbf59bc2009-02-20 16:29:08 +09001624 struct pcpu_chunk *pos;
1625
Tejun Heoa56dbdd2009-03-07 00:44:11 +09001626 list_for_each_entry(pos, &pcpu_slot[pcpu_nr_slots - 1], list)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001627 if (pos != chunk) {
Tejun Heo1a4d7602014-09-02 14:46:05 -04001628 pcpu_schedule_balance_work();
Tejun Heofbf59bc2009-02-20 16:29:08 +09001629 break;
1630 }
1631 }
1632
Dennis Zhoudf95e792017-06-19 19:28:32 -04001633 trace_percpu_free_percpu(chunk->base_addr, off, ptr);
1634
Tejun Heoccea34b2009-03-07 00:44:13 +09001635 spin_unlock_irqrestore(&pcpu_lock, flags);
Tejun Heofbf59bc2009-02-20 16:29:08 +09001636}
1637EXPORT_SYMBOL_GPL(free_percpu);
1638
Thomas Gleixner383776f2017-02-27 15:37:36 +01001639bool __is_kernel_percpu_address(unsigned long addr, unsigned long *can_addr)
1640{
1641#ifdef CONFIG_SMP
1642 const size_t static_size = __per_cpu_end - __per_cpu_start;
1643 void __percpu *base = __addr_to_pcpu_ptr(pcpu_base_addr);
1644 unsigned int cpu;
1645
1646 for_each_possible_cpu(cpu) {
1647 void *start = per_cpu_ptr(base, cpu);
1648 void *va = (void *)addr;
1649
1650 if (va >= start && va < start + static_size) {
Peter Zijlstra8ce371f2017-03-20 12:26:55 +01001651 if (can_addr) {
Thomas Gleixner383776f2017-02-27 15:37:36 +01001652 *can_addr = (unsigned long) (va - start);
Peter Zijlstra8ce371f2017-03-20 12:26:55 +01001653 *can_addr += (unsigned long)
1654 per_cpu_ptr(base, get_boot_cpu_id());
1655 }
Thomas Gleixner383776f2017-02-27 15:37:36 +01001656 return true;
1657 }
1658 }
1659#endif
1660 /* on UP, can't distinguish from other static vars, always false */
1661 return false;
1662}
1663
Vivek Goyal3b034b02009-11-24 15:50:03 +09001664/**
Tejun Heo10fad5e2010-03-10 18:57:54 +09001665 * is_kernel_percpu_address - test whether address is from static percpu area
1666 * @addr: address to test
1667 *
1668 * Test whether @addr belongs to in-kernel static percpu area. Module
1669 * static percpu areas are not considered. For those, use
1670 * is_module_percpu_address().
1671 *
1672 * RETURNS:
1673 * %true if @addr is from in-kernel static percpu area, %false otherwise.
1674 */
1675bool is_kernel_percpu_address(unsigned long addr)
1676{
Thomas Gleixner383776f2017-02-27 15:37:36 +01001677 return __is_kernel_percpu_address(addr, NULL);
Tejun Heo10fad5e2010-03-10 18:57:54 +09001678}
1679
1680/**
Vivek Goyal3b034b02009-11-24 15:50:03 +09001681 * per_cpu_ptr_to_phys - convert translated percpu address to physical address
1682 * @addr: the address to be converted to physical address
1683 *
1684 * Given @addr which is dereferenceable address obtained via one of
1685 * percpu access macros, this function translates it into its physical
1686 * address. The caller is responsible for ensuring @addr stays valid
1687 * until this function finishes.
1688 *
Dave Young67589c712011-11-23 08:20:53 -08001689 * percpu allocator has special setup for the first chunk, which currently
1690 * supports either embedding in linear address space or vmalloc mapping,
1691 * and, from the second one, the backing allocator (currently either vm or
1692 * km) provides translation.
1693 *
Yannick Guerrinibffc4372015-03-06 23:30:42 +01001694 * The addr can be translated simply without checking if it falls into the
Dave Young67589c712011-11-23 08:20:53 -08001695 * first chunk. But the current code reflects better how percpu allocator
1696 * actually works, and the verification can discover both bugs in percpu
1697 * allocator itself and per_cpu_ptr_to_phys() callers. So we keep current
1698 * code.
1699 *
Vivek Goyal3b034b02009-11-24 15:50:03 +09001700 * RETURNS:
1701 * The physical address for @addr.
1702 */
1703phys_addr_t per_cpu_ptr_to_phys(void *addr)
1704{
Tejun Heo9983b6f02010-06-18 11:44:31 +02001705 void __percpu *base = __addr_to_pcpu_ptr(pcpu_base_addr);
1706 bool in_first_chunk = false;
Tejun Heoa855b842011-11-18 10:55:35 -08001707 unsigned long first_low, first_high;
Tejun Heo9983b6f02010-06-18 11:44:31 +02001708 unsigned int cpu;
1709
1710 /*
Tejun Heoa855b842011-11-18 10:55:35 -08001711 * The following test on unit_low/high isn't strictly
Tejun Heo9983b6f02010-06-18 11:44:31 +02001712 * necessary but will speed up lookups of addresses which
1713 * aren't in the first chunk.
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001714 *
1715 * The address check is against full chunk sizes. pcpu_base_addr
1716 * points to the beginning of the first chunk including the
1717 * static region. Assumes good intent as the first chunk may
1718 * not be full (ie. < pcpu_unit_pages in size).
Tejun Heo9983b6f02010-06-18 11:44:31 +02001719 */
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001720 first_low = (unsigned long)pcpu_base_addr +
1721 pcpu_unit_page_offset(pcpu_low_unit_cpu, 0);
1722 first_high = (unsigned long)pcpu_base_addr +
1723 pcpu_unit_page_offset(pcpu_high_unit_cpu, pcpu_unit_pages);
Tejun Heoa855b842011-11-18 10:55:35 -08001724 if ((unsigned long)addr >= first_low &&
1725 (unsigned long)addr < first_high) {
Tejun Heo9983b6f02010-06-18 11:44:31 +02001726 for_each_possible_cpu(cpu) {
1727 void *start = per_cpu_ptr(base, cpu);
1728
1729 if (addr >= start && addr < start + pcpu_unit_size) {
1730 in_first_chunk = true;
1731 break;
1732 }
1733 }
1734 }
1735
1736 if (in_first_chunk) {
David Howellseac522e2011-03-28 12:53:29 +01001737 if (!is_vmalloc_addr(addr))
Tejun Heo020ec652010-04-09 18:57:00 +09001738 return __pa(addr);
1739 else
Eugene Surovegin9f57bd42011-12-15 11:25:59 -08001740 return page_to_phys(vmalloc_to_page(addr)) +
1741 offset_in_page(addr);
Tejun Heo020ec652010-04-09 18:57:00 +09001742 } else
Eugene Surovegin9f57bd42011-12-15 11:25:59 -08001743 return page_to_phys(pcpu_addr_to_page(addr)) +
1744 offset_in_page(addr);
Vivek Goyal3b034b02009-11-24 15:50:03 +09001745}
1746
Tejun Heofbf59bc2009-02-20 16:29:08 +09001747/**
Tejun Heofd1e8a12009-08-14 15:00:51 +09001748 * pcpu_alloc_alloc_info - allocate percpu allocation info
1749 * @nr_groups: the number of groups
1750 * @nr_units: the number of units
Tejun Heo033e48f2009-08-14 15:00:51 +09001751 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001752 * Allocate ai which is large enough for @nr_groups groups containing
1753 * @nr_units units. The returned ai's groups[0].cpu_map points to the
1754 * cpu_map array which is long enough for @nr_units and filled with
1755 * NR_CPUS. It's the caller's responsibility to initialize cpu_map
1756 * pointer of other groups.
Tejun Heo033e48f2009-08-14 15:00:51 +09001757 *
1758 * RETURNS:
Tejun Heofd1e8a12009-08-14 15:00:51 +09001759 * Pointer to the allocated pcpu_alloc_info on success, NULL on
1760 * failure.
Tejun Heo033e48f2009-08-14 15:00:51 +09001761 */
Tejun Heofd1e8a12009-08-14 15:00:51 +09001762struct pcpu_alloc_info * __init pcpu_alloc_alloc_info(int nr_groups,
1763 int nr_units)
1764{
1765 struct pcpu_alloc_info *ai;
1766 size_t base_size, ai_size;
1767 void *ptr;
1768 int unit;
1769
1770 base_size = ALIGN(sizeof(*ai) + nr_groups * sizeof(ai->groups[0]),
1771 __alignof__(ai->groups[0].cpu_map[0]));
1772 ai_size = base_size + nr_units * sizeof(ai->groups[0].cpu_map[0]);
1773
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001774 ptr = memblock_virt_alloc_nopanic(PFN_ALIGN(ai_size), 0);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001775 if (!ptr)
1776 return NULL;
1777 ai = ptr;
1778 ptr += base_size;
1779
1780 ai->groups[0].cpu_map = ptr;
1781
1782 for (unit = 0; unit < nr_units; unit++)
1783 ai->groups[0].cpu_map[unit] = NR_CPUS;
1784
1785 ai->nr_groups = nr_groups;
1786 ai->__ai_size = PFN_ALIGN(ai_size);
1787
1788 return ai;
1789}
1790
1791/**
1792 * pcpu_free_alloc_info - free percpu allocation info
1793 * @ai: pcpu_alloc_info to free
1794 *
1795 * Free @ai which was allocated by pcpu_alloc_alloc_info().
1796 */
1797void __init pcpu_free_alloc_info(struct pcpu_alloc_info *ai)
1798{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001799 memblock_free_early(__pa(ai), ai->__ai_size);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001800}
1801
1802/**
Tejun Heofd1e8a12009-08-14 15:00:51 +09001803 * pcpu_dump_alloc_info - print out information about pcpu_alloc_info
1804 * @lvl: loglevel
1805 * @ai: allocation info to dump
1806 *
1807 * Print out information about @ai using loglevel @lvl.
1808 */
1809static void pcpu_dump_alloc_info(const char *lvl,
1810 const struct pcpu_alloc_info *ai)
Tejun Heo033e48f2009-08-14 15:00:51 +09001811{
Tejun Heofd1e8a12009-08-14 15:00:51 +09001812 int group_width = 1, cpu_width = 1, width;
Tejun Heo033e48f2009-08-14 15:00:51 +09001813 char empty_str[] = "--------";
Tejun Heofd1e8a12009-08-14 15:00:51 +09001814 int alloc = 0, alloc_end = 0;
1815 int group, v;
1816 int upa, apl; /* units per alloc, allocs per line */
Tejun Heo033e48f2009-08-14 15:00:51 +09001817
Tejun Heofd1e8a12009-08-14 15:00:51 +09001818 v = ai->nr_groups;
Tejun Heo033e48f2009-08-14 15:00:51 +09001819 while (v /= 10)
Tejun Heofd1e8a12009-08-14 15:00:51 +09001820 group_width++;
Tejun Heo033e48f2009-08-14 15:00:51 +09001821
Tejun Heofd1e8a12009-08-14 15:00:51 +09001822 v = num_possible_cpus();
1823 while (v /= 10)
1824 cpu_width++;
1825 empty_str[min_t(int, cpu_width, sizeof(empty_str) - 1)] = '\0';
Tejun Heo033e48f2009-08-14 15:00:51 +09001826
Tejun Heofd1e8a12009-08-14 15:00:51 +09001827 upa = ai->alloc_size / ai->unit_size;
1828 width = upa * (cpu_width + 1) + group_width + 3;
1829 apl = rounddown_pow_of_two(max(60 / width, 1));
Tejun Heo033e48f2009-08-14 15:00:51 +09001830
Tejun Heofd1e8a12009-08-14 15:00:51 +09001831 printk("%spcpu-alloc: s%zu r%zu d%zu u%zu alloc=%zu*%zu",
1832 lvl, ai->static_size, ai->reserved_size, ai->dyn_size,
1833 ai->unit_size, ai->alloc_size / ai->atom_size, ai->atom_size);
1834
1835 for (group = 0; group < ai->nr_groups; group++) {
1836 const struct pcpu_group_info *gi = &ai->groups[group];
1837 int unit = 0, unit_end = 0;
1838
1839 BUG_ON(gi->nr_units % upa);
1840 for (alloc_end += gi->nr_units / upa;
1841 alloc < alloc_end; alloc++) {
1842 if (!(alloc % apl)) {
Joe Perches11705322016-03-17 14:19:50 -07001843 pr_cont("\n");
Tejun Heofd1e8a12009-08-14 15:00:51 +09001844 printk("%spcpu-alloc: ", lvl);
1845 }
Joe Perches11705322016-03-17 14:19:50 -07001846 pr_cont("[%0*d] ", group_width, group);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001847
1848 for (unit_end += upa; unit < unit_end; unit++)
1849 if (gi->cpu_map[unit] != NR_CPUS)
Joe Perches11705322016-03-17 14:19:50 -07001850 pr_cont("%0*d ",
1851 cpu_width, gi->cpu_map[unit]);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001852 else
Joe Perches11705322016-03-17 14:19:50 -07001853 pr_cont("%s ", empty_str);
Tejun Heo033e48f2009-08-14 15:00:51 +09001854 }
Tejun Heo033e48f2009-08-14 15:00:51 +09001855 }
Joe Perches11705322016-03-17 14:19:50 -07001856 pr_cont("\n");
Tejun Heo033e48f2009-08-14 15:00:51 +09001857}
Tejun Heo033e48f2009-08-14 15:00:51 +09001858
Tejun Heofbf59bc2009-02-20 16:29:08 +09001859/**
Tejun Heo8d408b42009-02-24 11:57:21 +09001860 * pcpu_setup_first_chunk - initialize the first percpu chunk
Tejun Heofd1e8a12009-08-14 15:00:51 +09001861 * @ai: pcpu_alloc_info describing how to percpu area is shaped
Tejun Heo38a6be52009-07-04 08:10:59 +09001862 * @base_addr: mapped address
Tejun Heofbf59bc2009-02-20 16:29:08 +09001863 *
Tejun Heo8d408b42009-02-24 11:57:21 +09001864 * Initialize the first percpu chunk which contains the kernel static
1865 * perpcu area. This function is to be called from arch percpu area
Tejun Heo38a6be52009-07-04 08:10:59 +09001866 * setup path.
Tejun Heo8d408b42009-02-24 11:57:21 +09001867 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001868 * @ai contains all information necessary to initialize the first
1869 * chunk and prime the dynamic percpu allocator.
Tejun Heo8d408b42009-02-24 11:57:21 +09001870 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001871 * @ai->static_size is the size of static percpu area.
1872 *
1873 * @ai->reserved_size, if non-zero, specifies the amount of bytes to
Tejun Heoedcb4632009-03-06 14:33:59 +09001874 * reserve after the static area in the first chunk. This reserves
1875 * the first chunk such that it's available only through reserved
1876 * percpu allocation. This is primarily used to serve module percpu
1877 * static areas on architectures where the addressing model has
1878 * limited offset range for symbol relocations to guarantee module
1879 * percpu symbols fall inside the relocatable range.
1880 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001881 * @ai->dyn_size determines the number of bytes available for dynamic
1882 * allocation in the first chunk. The area between @ai->static_size +
1883 * @ai->reserved_size + @ai->dyn_size and @ai->unit_size is unused.
Tejun Heo6074d5b2009-03-10 16:27:48 +09001884 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001885 * @ai->unit_size specifies unit size and must be aligned to PAGE_SIZE
1886 * and equal to or larger than @ai->static_size + @ai->reserved_size +
1887 * @ai->dyn_size.
Tejun Heo8d408b42009-02-24 11:57:21 +09001888 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001889 * @ai->atom_size is the allocation atom size and used as alignment
1890 * for vm areas.
Tejun Heo8d408b42009-02-24 11:57:21 +09001891 *
Tejun Heofd1e8a12009-08-14 15:00:51 +09001892 * @ai->alloc_size is the allocation size and always multiple of
1893 * @ai->atom_size. This is larger than @ai->atom_size if
1894 * @ai->unit_size is larger than @ai->atom_size.
1895 *
1896 * @ai->nr_groups and @ai->groups describe virtual memory layout of
1897 * percpu areas. Units which should be colocated are put into the
1898 * same group. Dynamic VM areas will be allocated according to these
1899 * groupings. If @ai->nr_groups is zero, a single group containing
1900 * all units is assumed.
Tejun Heo8d408b42009-02-24 11:57:21 +09001901 *
Tejun Heo38a6be52009-07-04 08:10:59 +09001902 * The caller should have mapped the first chunk at @base_addr and
1903 * copied static data to each unit.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001904 *
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001905 * The first chunk will always contain a static and a dynamic region.
1906 * However, the static region is not managed by any chunk. If the first
1907 * chunk also contains a reserved region, it is served by two chunks -
1908 * one for the reserved region and one for the dynamic region. They
1909 * share the same vm, but use offset regions in the area allocation map.
1910 * The chunk serving the dynamic region is circulated in the chunk slots
1911 * and available for dynamic allocation like any other chunk.
Tejun Heoedcb4632009-03-06 14:33:59 +09001912 *
Tejun Heofbf59bc2009-02-20 16:29:08 +09001913 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09001914 * 0 on success, -errno on failure.
Tejun Heofbf59bc2009-02-20 16:29:08 +09001915 */
Tejun Heofb435d52009-08-14 15:00:51 +09001916int __init pcpu_setup_first_chunk(const struct pcpu_alloc_info *ai,
1917 void *base_addr)
Tejun Heofbf59bc2009-02-20 16:29:08 +09001918{
Dennis Zhou (Facebook)b9c39442017-07-24 19:02:01 -04001919 size_t size_sum = ai->static_size + ai->reserved_size + ai->dyn_size;
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04001920 size_t static_size, dyn_size;
Dennis Zhou (Facebook)0c4169c2017-07-24 19:02:04 -04001921 struct pcpu_chunk *chunk;
Tejun Heo65632972009-08-14 15:00:52 +09001922 unsigned long *group_offsets;
1923 size_t *group_sizes;
Tejun Heofb435d52009-08-14 15:00:51 +09001924 unsigned long *unit_off;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001925 unsigned int cpu;
Tejun Heofd1e8a12009-08-14 15:00:51 +09001926 int *unit_map;
1927 int group, unit, i;
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04001928 int map_size;
1929 unsigned long tmp_addr;
Tejun Heofbf59bc2009-02-20 16:29:08 +09001930
Tejun Heo635b75f2009-09-24 09:43:11 +09001931#define PCPU_SETUP_BUG_ON(cond) do { \
1932 if (unlikely(cond)) { \
Joe Perches870d4b12016-03-17 14:19:53 -07001933 pr_emerg("failed to initialize, %s\n", #cond); \
1934 pr_emerg("cpu_possible_mask=%*pb\n", \
Tejun Heo807de072015-02-13 14:37:34 -08001935 cpumask_pr_args(cpu_possible_mask)); \
Tejun Heo635b75f2009-09-24 09:43:11 +09001936 pcpu_dump_alloc_info(KERN_EMERG, ai); \
1937 BUG(); \
1938 } \
1939} while (0)
1940
Tejun Heo2f39e632009-07-04 08:11:00 +09001941 /* sanity checks */
Tejun Heo635b75f2009-09-24 09:43:11 +09001942 PCPU_SETUP_BUG_ON(ai->nr_groups <= 0);
Tejun Heobbddff02010-09-03 18:22:48 +02001943#ifdef CONFIG_SMP
Tejun Heo635b75f2009-09-24 09:43:11 +09001944 PCPU_SETUP_BUG_ON(!ai->static_size);
Alexander Kuleshovf09f1242015-11-05 18:46:43 -08001945 PCPU_SETUP_BUG_ON(offset_in_page(__per_cpu_start));
Tejun Heobbddff02010-09-03 18:22:48 +02001946#endif
Tejun Heo635b75f2009-09-24 09:43:11 +09001947 PCPU_SETUP_BUG_ON(!base_addr);
Alexander Kuleshovf09f1242015-11-05 18:46:43 -08001948 PCPU_SETUP_BUG_ON(offset_in_page(base_addr));
Tejun Heo635b75f2009-09-24 09:43:11 +09001949 PCPU_SETUP_BUG_ON(ai->unit_size < size_sum);
Alexander Kuleshovf09f1242015-11-05 18:46:43 -08001950 PCPU_SETUP_BUG_ON(offset_in_page(ai->unit_size));
Tejun Heo635b75f2009-09-24 09:43:11 +09001951 PCPU_SETUP_BUG_ON(ai->unit_size < PCPU_MIN_UNIT_SIZE);
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001952 PCPU_SETUP_BUG_ON(!IS_ALIGNED(ai->unit_size, PCPU_BITMAP_BLOCK_SIZE));
Tejun Heo099a19d2010-06-27 18:50:00 +02001953 PCPU_SETUP_BUG_ON(ai->dyn_size < PERCPU_DYNAMIC_EARLY_SIZE);
Dennis Zhou (Facebook)fb29a2c2017-07-24 19:01:58 -04001954 PCPU_SETUP_BUG_ON(!ai->dyn_size);
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04001955 PCPU_SETUP_BUG_ON(!IS_ALIGNED(ai->reserved_size, PCPU_MIN_ALLOC_SIZE));
Dennis Zhou (Facebook)ca460b32017-07-24 19:02:12 -04001956 PCPU_SETUP_BUG_ON(!(IS_ALIGNED(PCPU_BITMAP_BLOCK_SIZE, PAGE_SIZE) ||
1957 IS_ALIGNED(PAGE_SIZE, PCPU_BITMAP_BLOCK_SIZE)));
Tejun Heo9f645532010-04-09 18:57:01 +09001958 PCPU_SETUP_BUG_ON(pcpu_verify_alloc_info(ai) < 0);
Tejun Heo8d408b42009-02-24 11:57:21 +09001959
Tejun Heo65632972009-08-14 15:00:52 +09001960 /* process group information and build config tables accordingly */
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08001961 group_offsets = memblock_virt_alloc(ai->nr_groups *
1962 sizeof(group_offsets[0]), 0);
1963 group_sizes = memblock_virt_alloc(ai->nr_groups *
1964 sizeof(group_sizes[0]), 0);
1965 unit_map = memblock_virt_alloc(nr_cpu_ids * sizeof(unit_map[0]), 0);
1966 unit_off = memblock_virt_alloc(nr_cpu_ids * sizeof(unit_off[0]), 0);
Tejun Heo2f39e632009-07-04 08:11:00 +09001967
Tejun Heofd1e8a12009-08-14 15:00:51 +09001968 for (cpu = 0; cpu < nr_cpu_ids; cpu++)
Tejun Heoffe0d5a2009-09-29 09:17:56 +09001969 unit_map[cpu] = UINT_MAX;
Tejun Heoa855b842011-11-18 10:55:35 -08001970
1971 pcpu_low_unit_cpu = NR_CPUS;
1972 pcpu_high_unit_cpu = NR_CPUS;
Tejun Heo2f39e632009-07-04 08:11:00 +09001973
Tejun Heofd1e8a12009-08-14 15:00:51 +09001974 for (group = 0, unit = 0; group < ai->nr_groups; group++, unit += i) {
1975 const struct pcpu_group_info *gi = &ai->groups[group];
Tejun Heo2f39e632009-07-04 08:11:00 +09001976
Tejun Heo65632972009-08-14 15:00:52 +09001977 group_offsets[group] = gi->base_offset;
1978 group_sizes[group] = gi->nr_units * ai->unit_size;
1979
Tejun Heofd1e8a12009-08-14 15:00:51 +09001980 for (i = 0; i < gi->nr_units; i++) {
1981 cpu = gi->cpu_map[i];
1982 if (cpu == NR_CPUS)
1983 continue;
1984
Dan Carpenter9f295662014-10-29 11:45:04 +03001985 PCPU_SETUP_BUG_ON(cpu >= nr_cpu_ids);
Tejun Heo635b75f2009-09-24 09:43:11 +09001986 PCPU_SETUP_BUG_ON(!cpu_possible(cpu));
1987 PCPU_SETUP_BUG_ON(unit_map[cpu] != UINT_MAX);
Tejun Heofd1e8a12009-08-14 15:00:51 +09001988
1989 unit_map[cpu] = unit + i;
Tejun Heofb435d52009-08-14 15:00:51 +09001990 unit_off[cpu] = gi->base_offset + i * ai->unit_size;
1991
Tejun Heoa855b842011-11-18 10:55:35 -08001992 /* determine low/high unit_cpu */
1993 if (pcpu_low_unit_cpu == NR_CPUS ||
1994 unit_off[cpu] < unit_off[pcpu_low_unit_cpu])
1995 pcpu_low_unit_cpu = cpu;
1996 if (pcpu_high_unit_cpu == NR_CPUS ||
1997 unit_off[cpu] > unit_off[pcpu_high_unit_cpu])
1998 pcpu_high_unit_cpu = cpu;
Tejun Heo2f39e632009-07-04 08:11:00 +09001999 }
Tejun Heo2f39e632009-07-04 08:11:00 +09002000 }
Tejun Heofd1e8a12009-08-14 15:00:51 +09002001 pcpu_nr_units = unit;
2002
2003 for_each_possible_cpu(cpu)
Tejun Heo635b75f2009-09-24 09:43:11 +09002004 PCPU_SETUP_BUG_ON(unit_map[cpu] == UINT_MAX);
2005
2006 /* we're done parsing the input, undefine BUG macro and dump config */
2007#undef PCPU_SETUP_BUG_ON
Tejun Heobcbea792010-12-22 14:19:14 +01002008 pcpu_dump_alloc_info(KERN_DEBUG, ai);
Tejun Heofd1e8a12009-08-14 15:00:51 +09002009
Tejun Heo65632972009-08-14 15:00:52 +09002010 pcpu_nr_groups = ai->nr_groups;
2011 pcpu_group_offsets = group_offsets;
2012 pcpu_group_sizes = group_sizes;
Tejun Heofd1e8a12009-08-14 15:00:51 +09002013 pcpu_unit_map = unit_map;
Tejun Heofb435d52009-08-14 15:00:51 +09002014 pcpu_unit_offsets = unit_off;
Tejun Heo2f39e632009-07-04 08:11:00 +09002015
2016 /* determine basic parameters */
Tejun Heofd1e8a12009-08-14 15:00:51 +09002017 pcpu_unit_pages = ai->unit_size >> PAGE_SHIFT;
Tejun Heod9b55ee2009-02-24 11:57:21 +09002018 pcpu_unit_size = pcpu_unit_pages << PAGE_SHIFT;
Tejun Heo65632972009-08-14 15:00:52 +09002019 pcpu_atom_size = ai->atom_size;
Tejun Heoce3141a2009-07-04 08:11:00 +09002020 pcpu_chunk_struct_size = sizeof(struct pcpu_chunk) +
2021 BITS_TO_LONGS(pcpu_unit_pages) * sizeof(unsigned long);
Tejun Heocafe8812009-03-06 14:33:59 +09002022
Dennis Zhou30a5b532017-06-19 19:28:31 -04002023 pcpu_stats_save_ai(ai);
2024
Tejun Heod9b55ee2009-02-24 11:57:21 +09002025 /*
2026 * Allocate chunk slots. The additional last slot is for
2027 * empty chunks.
2028 */
2029 pcpu_nr_slots = __pcpu_size_to_slot(pcpu_unit_size) + 2;
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002030 pcpu_slot = memblock_virt_alloc(
2031 pcpu_nr_slots * sizeof(pcpu_slot[0]), 0);
Tejun Heofbf59bc2009-02-20 16:29:08 +09002032 for (i = 0; i < pcpu_nr_slots; i++)
2033 INIT_LIST_HEAD(&pcpu_slot[i]);
2034
Tejun Heoedcb4632009-03-06 14:33:59 +09002035 /*
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04002036 * The end of the static region needs to be aligned with the
2037 * minimum allocation size as this offsets the reserved and
2038 * dynamic region. The first chunk ends page aligned by
2039 * expanding the dynamic region, therefore the dynamic region
2040 * can be shrunk to compensate while still staying above the
2041 * configured sizes.
2042 */
2043 static_size = ALIGN(ai->static_size, PCPU_MIN_ALLOC_SIZE);
2044 dyn_size = ai->dyn_size - (static_size - ai->static_size);
2045
2046 /*
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04002047 * Initialize first chunk.
2048 * If the reserved_size is non-zero, this initializes the reserved
2049 * chunk. If the reserved_size is zero, the reserved chunk is NULL
2050 * and the dynamic region is initialized here. The first chunk,
2051 * pcpu_first_chunk, will always point to the chunk that serves
2052 * the dynamic region.
Tejun Heoedcb4632009-03-06 14:33:59 +09002053 */
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04002054 tmp_addr = (unsigned long)base_addr + static_size;
2055 map_size = ai->reserved_size ?: dyn_size;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07002056 chunk = pcpu_alloc_first_chunk(tmp_addr, map_size);
Tejun Heo61ace7f2009-03-06 14:33:59 +09002057
Tejun Heoedcb4632009-03-06 14:33:59 +09002058 /* init dynamic chunk if necessary */
Dennis Zhou (Facebook)b9c39442017-07-24 19:02:01 -04002059 if (ai->reserved_size) {
Dennis Zhou (Facebook)0c4169c2017-07-24 19:02:04 -04002060 pcpu_reserved_chunk = chunk;
Dennis Zhou (Facebook)b9c39442017-07-24 19:02:01 -04002061
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04002062 tmp_addr = (unsigned long)base_addr + static_size +
Dennis Zhou (Facebook)c0ebfdc2017-07-24 19:02:05 -04002063 ai->reserved_size;
Dennis Zhou (Facebook)d2f3c382017-07-24 19:02:09 -04002064 map_size = dyn_size;
Dennis Zhou (Facebook)40064ae2017-07-12 11:27:32 -07002065 chunk = pcpu_alloc_first_chunk(tmp_addr, map_size);
Tejun Heoedcb4632009-03-06 14:33:59 +09002066 }
2067
Tejun Heo2441d152009-03-06 14:33:59 +09002068 /* link the first chunk in */
Dennis Zhou (Facebook)0c4169c2017-07-24 19:02:04 -04002069 pcpu_first_chunk = chunk;
Dennis Zhou (Facebook)0cecf502017-07-24 19:02:08 -04002070 pcpu_nr_empty_pop_pages = pcpu_first_chunk->nr_empty_pop_pages;
Tejun Heoae9e6bc92009-04-02 13:19:54 +09002071 pcpu_chunk_relocate(pcpu_first_chunk, -1);
Tejun Heofbf59bc2009-02-20 16:29:08 +09002072
Dennis Zhou30a5b532017-06-19 19:28:31 -04002073 pcpu_stats_chunk_alloc();
Dennis Zhoudf95e792017-06-19 19:28:32 -04002074 trace_percpu_create_chunk(base_addr);
Dennis Zhou30a5b532017-06-19 19:28:31 -04002075
Tejun Heofbf59bc2009-02-20 16:29:08 +09002076 /* we're done */
Tejun Heobba174f2009-08-14 15:00:51 +09002077 pcpu_base_addr = base_addr;
Tejun Heofb435d52009-08-14 15:00:51 +09002078 return 0;
Tejun Heofbf59bc2009-02-20 16:29:08 +09002079}
Tejun Heo66c3a752009-03-10 16:27:48 +09002080
Tejun Heobbddff02010-09-03 18:22:48 +02002081#ifdef CONFIG_SMP
2082
Andi Kleen17f36092012-10-04 17:12:07 -07002083const char * const pcpu_fc_names[PCPU_FC_NR] __initconst = {
Tejun Heof58dc012009-08-14 15:00:50 +09002084 [PCPU_FC_AUTO] = "auto",
2085 [PCPU_FC_EMBED] = "embed",
2086 [PCPU_FC_PAGE] = "page",
Tejun Heof58dc012009-08-14 15:00:50 +09002087};
Tejun Heo66c3a752009-03-10 16:27:48 +09002088
Tejun Heof58dc012009-08-14 15:00:50 +09002089enum pcpu_fc pcpu_chosen_fc __initdata = PCPU_FC_AUTO;
2090
2091static int __init percpu_alloc_setup(char *str)
Tejun Heo66c3a752009-03-10 16:27:48 +09002092{
Cyrill Gorcunov5479c782012-11-25 01:17:13 +04002093 if (!str)
2094 return -EINVAL;
2095
Tejun Heof58dc012009-08-14 15:00:50 +09002096 if (0)
2097 /* nada */;
2098#ifdef CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK
2099 else if (!strcmp(str, "embed"))
2100 pcpu_chosen_fc = PCPU_FC_EMBED;
2101#endif
2102#ifdef CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK
2103 else if (!strcmp(str, "page"))
2104 pcpu_chosen_fc = PCPU_FC_PAGE;
2105#endif
Tejun Heof58dc012009-08-14 15:00:50 +09002106 else
Joe Perches870d4b12016-03-17 14:19:53 -07002107 pr_warn("unknown allocator %s specified\n", str);
Tejun Heo66c3a752009-03-10 16:27:48 +09002108
Tejun Heof58dc012009-08-14 15:00:50 +09002109 return 0;
Tejun Heo66c3a752009-03-10 16:27:48 +09002110}
Tejun Heof58dc012009-08-14 15:00:50 +09002111early_param("percpu_alloc", percpu_alloc_setup);
Tejun Heo66c3a752009-03-10 16:27:48 +09002112
Tejun Heo3c9a0242010-09-09 18:00:15 +02002113/*
2114 * pcpu_embed_first_chunk() is used by the generic percpu setup.
2115 * Build it if needed by the arch config or the generic setup is going
2116 * to be used.
2117 */
Tejun Heo08fc4582009-08-14 15:00:49 +09002118#if defined(CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK) || \
2119 !defined(CONFIG_HAVE_SETUP_PER_CPU_AREA)
Tejun Heo3c9a0242010-09-09 18:00:15 +02002120#define BUILD_EMBED_FIRST_CHUNK
2121#endif
2122
2123/* build pcpu_page_first_chunk() iff needed by the arch config */
2124#if defined(CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK)
2125#define BUILD_PAGE_FIRST_CHUNK
2126#endif
2127
2128/* pcpu_build_alloc_info() is used by both embed and page first chunk */
2129#if defined(BUILD_EMBED_FIRST_CHUNK) || defined(BUILD_PAGE_FIRST_CHUNK)
2130/**
Tejun Heofbf59bc2009-02-20 16:29:08 +09002131 * pcpu_build_alloc_info - build alloc_info considering distances between CPUs
2132 * @reserved_size: the size of reserved percpu area in bytes
2133 * @dyn_size: minimum free size for dynamic allocation in bytes
2134 * @atom_size: allocation atom size
2135 * @cpu_distance_fn: callback to determine distance between cpus, optional
2136 *
2137 * This function determines grouping of units, their mappings to cpus
2138 * and other parameters considering needed percpu size, allocation
2139 * atom size and distances between CPUs.
2140 *
Yannick Guerrinibffc4372015-03-06 23:30:42 +01002141 * Groups are always multiples of atom size and CPUs which are of
Tejun Heofbf59bc2009-02-20 16:29:08 +09002142 * LOCAL_DISTANCE both ways are grouped together and share space for
2143 * units in the same group. The returned configuration is guaranteed
2144 * to have CPUs on different nodes on different groups and >=75% usage
2145 * of allocated virtual address space.
2146 *
2147 * RETURNS:
2148 * On success, pointer to the new allocation_info is returned. On
2149 * failure, ERR_PTR value is returned.
2150 */
2151static struct pcpu_alloc_info * __init pcpu_build_alloc_info(
2152 size_t reserved_size, size_t dyn_size,
2153 size_t atom_size,
2154 pcpu_fc_cpu_distance_fn_t cpu_distance_fn)
2155{
2156 static int group_map[NR_CPUS] __initdata;
2157 static int group_cnt[NR_CPUS] __initdata;
2158 const size_t static_size = __per_cpu_end - __per_cpu_start;
2159 int nr_groups = 1, nr_units = 0;
2160 size_t size_sum, min_unit_size, alloc_size;
2161 int upa, max_upa, uninitialized_var(best_upa); /* units_per_alloc */
2162 int last_allocs, group, unit;
2163 unsigned int cpu, tcpu;
2164 struct pcpu_alloc_info *ai;
2165 unsigned int *cpu_map;
2166
2167 /* this function may be called multiple times */
2168 memset(group_map, 0, sizeof(group_map));
2169 memset(group_cnt, 0, sizeof(group_cnt));
2170
2171 /* calculate size_sum and ensure dyn_size is enough for early alloc */
2172 size_sum = PFN_ALIGN(static_size + reserved_size +
2173 max_t(size_t, dyn_size, PERCPU_DYNAMIC_EARLY_SIZE));
2174 dyn_size = size_sum - static_size - reserved_size;
2175
2176 /*
2177 * Determine min_unit_size, alloc_size and max_upa such that
2178 * alloc_size is multiple of atom_size and is the smallest
Lucas De Marchi25985ed2011-03-30 22:57:33 -03002179 * which can accommodate 4k aligned segments which are equal to
Tejun Heofbf59bc2009-02-20 16:29:08 +09002180 * or larger than min_unit_size.
2181 */
2182 min_unit_size = max_t(size_t, size_sum, PCPU_MIN_UNIT_SIZE);
2183
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -04002184 /* determine the maximum # of units that can fit in an allocation */
Tejun Heofbf59bc2009-02-20 16:29:08 +09002185 alloc_size = roundup(min_unit_size, atom_size);
2186 upa = alloc_size / min_unit_size;
Alexander Kuleshovf09f1242015-11-05 18:46:43 -08002187 while (alloc_size % upa || (offset_in_page(alloc_size / upa)))
Tejun Heofbf59bc2009-02-20 16:29:08 +09002188 upa--;
2189 max_upa = upa;
2190
2191 /* group cpus according to their proximity */
2192 for_each_possible_cpu(cpu) {
2193 group = 0;
2194 next_group:
2195 for_each_possible_cpu(tcpu) {
2196 if (cpu == tcpu)
2197 break;
2198 if (group_map[tcpu] == group && cpu_distance_fn &&
2199 (cpu_distance_fn(cpu, tcpu) > LOCAL_DISTANCE ||
2200 cpu_distance_fn(tcpu, cpu) > LOCAL_DISTANCE)) {
2201 group++;
2202 nr_groups = max(nr_groups, group + 1);
2203 goto next_group;
2204 }
2205 }
2206 group_map[cpu] = group;
2207 group_cnt[group]++;
2208 }
2209
2210 /*
Dennis Zhou (Facebook)9c015162017-07-15 22:23:09 -04002211 * Wasted space is caused by a ratio imbalance of upa to group_cnt.
2212 * Expand the unit_size until we use >= 75% of the units allocated.
2213 * Related to atom_size, which could be much larger than the unit_size.
Tejun Heofbf59bc2009-02-20 16:29:08 +09002214 */
2215 last_allocs = INT_MAX;
2216 for (upa = max_upa; upa; upa--) {
2217 int allocs = 0, wasted = 0;
2218
Alexander Kuleshovf09f1242015-11-05 18:46:43 -08002219 if (alloc_size % upa || (offset_in_page(alloc_size / upa)))
Tejun Heofbf59bc2009-02-20 16:29:08 +09002220 continue;
2221
2222 for (group = 0; group < nr_groups; group++) {
2223 int this_allocs = DIV_ROUND_UP(group_cnt[group], upa);
2224 allocs += this_allocs;
2225 wasted += this_allocs * upa - group_cnt[group];
2226 }
2227
2228 /*
2229 * Don't accept if wastage is over 1/3. The
2230 * greater-than comparison ensures upa==1 always
2231 * passes the following check.
2232 */
2233 if (wasted > num_possible_cpus() / 3)
2234 continue;
2235
2236 /* and then don't consume more memory */
2237 if (allocs > last_allocs)
2238 break;
2239 last_allocs = allocs;
2240 best_upa = upa;
2241 }
2242 upa = best_upa;
2243
2244 /* allocate and fill alloc_info */
2245 for (group = 0; group < nr_groups; group++)
2246 nr_units += roundup(group_cnt[group], upa);
2247
2248 ai = pcpu_alloc_alloc_info(nr_groups, nr_units);
2249 if (!ai)
2250 return ERR_PTR(-ENOMEM);
2251 cpu_map = ai->groups[0].cpu_map;
2252
2253 for (group = 0; group < nr_groups; group++) {
2254 ai->groups[group].cpu_map = cpu_map;
2255 cpu_map += roundup(group_cnt[group], upa);
2256 }
2257
2258 ai->static_size = static_size;
2259 ai->reserved_size = reserved_size;
2260 ai->dyn_size = dyn_size;
2261 ai->unit_size = alloc_size / upa;
2262 ai->atom_size = atom_size;
2263 ai->alloc_size = alloc_size;
2264
2265 for (group = 0, unit = 0; group_cnt[group]; group++) {
2266 struct pcpu_group_info *gi = &ai->groups[group];
2267
2268 /*
2269 * Initialize base_offset as if all groups are located
2270 * back-to-back. The caller should update this to
2271 * reflect actual allocation.
2272 */
2273 gi->base_offset = unit * ai->unit_size;
2274
2275 for_each_possible_cpu(cpu)
2276 if (group_map[cpu] == group)
2277 gi->cpu_map[gi->nr_units++] = cpu;
2278 gi->nr_units = roundup(gi->nr_units, upa);
2279 unit += gi->nr_units;
2280 }
2281 BUG_ON(unit != nr_units);
2282
2283 return ai;
2284}
Tejun Heo3c9a0242010-09-09 18:00:15 +02002285#endif /* BUILD_EMBED_FIRST_CHUNK || BUILD_PAGE_FIRST_CHUNK */
Tejun Heofbf59bc2009-02-20 16:29:08 +09002286
Tejun Heo3c9a0242010-09-09 18:00:15 +02002287#if defined(BUILD_EMBED_FIRST_CHUNK)
Tejun Heo66c3a752009-03-10 16:27:48 +09002288/**
2289 * pcpu_embed_first_chunk - embed the first percpu chunk into bootmem
Tejun Heo66c3a752009-03-10 16:27:48 +09002290 * @reserved_size: the size of reserved percpu area in bytes
Tejun Heo4ba6ce22010-06-27 18:49:59 +02002291 * @dyn_size: minimum free size for dynamic allocation in bytes
Tejun Heoc8826dd2009-08-14 15:00:52 +09002292 * @atom_size: allocation atom size
2293 * @cpu_distance_fn: callback to determine distance between cpus, optional
2294 * @alloc_fn: function to allocate percpu page
Lucas De Marchi25985ed2011-03-30 22:57:33 -03002295 * @free_fn: function to free percpu page
Tejun Heo66c3a752009-03-10 16:27:48 +09002296 *
2297 * This is a helper to ease setting up embedded first percpu chunk and
2298 * can be called where pcpu_setup_first_chunk() is expected.
2299 *
2300 * If this function is used to setup the first chunk, it is allocated
Tejun Heoc8826dd2009-08-14 15:00:52 +09002301 * by calling @alloc_fn and used as-is without being mapped into
2302 * vmalloc area. Allocations are always whole multiples of @atom_size
2303 * aligned to @atom_size.
2304 *
2305 * This enables the first chunk to piggy back on the linear physical
2306 * mapping which often uses larger page size. Please note that this
2307 * can result in very sparse cpu->unit mapping on NUMA machines thus
2308 * requiring large vmalloc address space. Don't use this allocator if
2309 * vmalloc space is not orders of magnitude larger than distances
2310 * between node memory addresses (ie. 32bit NUMA machines).
Tejun Heo66c3a752009-03-10 16:27:48 +09002311 *
Tejun Heo4ba6ce22010-06-27 18:49:59 +02002312 * @dyn_size specifies the minimum dynamic area size.
Tejun Heo66c3a752009-03-10 16:27:48 +09002313 *
2314 * If the needed size is smaller than the minimum or specified unit
Tejun Heoc8826dd2009-08-14 15:00:52 +09002315 * size, the leftover is returned using @free_fn.
Tejun Heo66c3a752009-03-10 16:27:48 +09002316 *
2317 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09002318 * 0 on success, -errno on failure.
Tejun Heo66c3a752009-03-10 16:27:48 +09002319 */
Tejun Heo4ba6ce22010-06-27 18:49:59 +02002320int __init pcpu_embed_first_chunk(size_t reserved_size, size_t dyn_size,
Tejun Heoc8826dd2009-08-14 15:00:52 +09002321 size_t atom_size,
2322 pcpu_fc_cpu_distance_fn_t cpu_distance_fn,
2323 pcpu_fc_alloc_fn_t alloc_fn,
2324 pcpu_fc_free_fn_t free_fn)
Tejun Heo66c3a752009-03-10 16:27:48 +09002325{
Tejun Heoc8826dd2009-08-14 15:00:52 +09002326 void *base = (void *)ULONG_MAX;
2327 void **areas = NULL;
Tejun Heofd1e8a12009-08-14 15:00:51 +09002328 struct pcpu_alloc_info *ai;
zijun_hu93c76b6b2016-10-05 21:19:11 +08002329 size_t size_sum, areas_size;
2330 unsigned long max_distance;
zijun_hu9b739662016-10-05 21:30:24 +08002331 int group, i, highest_group, rc;
Tejun Heo66c3a752009-03-10 16:27:48 +09002332
Tejun Heoc8826dd2009-08-14 15:00:52 +09002333 ai = pcpu_build_alloc_info(reserved_size, dyn_size, atom_size,
2334 cpu_distance_fn);
Tejun Heofd1e8a12009-08-14 15:00:51 +09002335 if (IS_ERR(ai))
2336 return PTR_ERR(ai);
Tejun Heo66c3a752009-03-10 16:27:48 +09002337
Tejun Heofd1e8a12009-08-14 15:00:51 +09002338 size_sum = ai->static_size + ai->reserved_size + ai->dyn_size;
Tejun Heoc8826dd2009-08-14 15:00:52 +09002339 areas_size = PFN_ALIGN(ai->nr_groups * sizeof(void *));
Tejun Heo66c3a752009-03-10 16:27:48 +09002340
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002341 areas = memblock_virt_alloc_nopanic(areas_size, 0);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002342 if (!areas) {
Tejun Heofb435d52009-08-14 15:00:51 +09002343 rc = -ENOMEM;
Tejun Heoc8826dd2009-08-14 15:00:52 +09002344 goto out_free;
Tejun Heofa8a7092009-06-22 11:56:24 +09002345 }
Tejun Heo66c3a752009-03-10 16:27:48 +09002346
zijun_hu9b739662016-10-05 21:30:24 +08002347 /* allocate, copy and determine base address & max_distance */
2348 highest_group = 0;
Tejun Heoc8826dd2009-08-14 15:00:52 +09002349 for (group = 0; group < ai->nr_groups; group++) {
2350 struct pcpu_group_info *gi = &ai->groups[group];
2351 unsigned int cpu = NR_CPUS;
2352 void *ptr;
Tejun Heo66c3a752009-03-10 16:27:48 +09002353
Tejun Heoc8826dd2009-08-14 15:00:52 +09002354 for (i = 0; i < gi->nr_units && cpu == NR_CPUS; i++)
2355 cpu = gi->cpu_map[i];
2356 BUG_ON(cpu == NR_CPUS);
2357
2358 /* allocate space for the whole group */
2359 ptr = alloc_fn(cpu, gi->nr_units * ai->unit_size, atom_size);
2360 if (!ptr) {
2361 rc = -ENOMEM;
2362 goto out_free_areas;
2363 }
Catalin Marinasf528f0b2011-09-26 17:12:53 +01002364 /* kmemleak tracks the percpu allocations separately */
2365 kmemleak_free(ptr);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002366 areas[group] = ptr;
2367
2368 base = min(ptr, base);
zijun_hu9b739662016-10-05 21:30:24 +08002369 if (ptr > areas[highest_group])
2370 highest_group = group;
2371 }
2372 max_distance = areas[highest_group] - base;
2373 max_distance += ai->unit_size * ai->groups[highest_group].nr_units;
2374
2375 /* warn if maximum distance is further than 75% of vmalloc space */
2376 if (max_distance > VMALLOC_TOTAL * 3 / 4) {
2377 pr_warn("max_distance=0x%lx too large for vmalloc space 0x%lx\n",
2378 max_distance, VMALLOC_TOTAL);
2379#ifdef CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK
2380 /* and fail if we have fallback */
2381 rc = -EINVAL;
2382 goto out_free_areas;
2383#endif
Tejun Heo42b64282012-04-27 08:42:53 -07002384 }
2385
2386 /*
2387 * Copy data and free unused parts. This should happen after all
2388 * allocations are complete; otherwise, we may end up with
2389 * overlapping groups.
2390 */
2391 for (group = 0; group < ai->nr_groups; group++) {
2392 struct pcpu_group_info *gi = &ai->groups[group];
2393 void *ptr = areas[group];
Tejun Heoc8826dd2009-08-14 15:00:52 +09002394
2395 for (i = 0; i < gi->nr_units; i++, ptr += ai->unit_size) {
2396 if (gi->cpu_map[i] == NR_CPUS) {
2397 /* unused unit, free whole */
2398 free_fn(ptr, ai->unit_size);
2399 continue;
2400 }
2401 /* copy and return the unused part */
2402 memcpy(ptr, __per_cpu_load, ai->static_size);
2403 free_fn(ptr + size_sum, ai->unit_size - size_sum);
2404 }
Tejun Heo66c3a752009-03-10 16:27:48 +09002405 }
2406
Tejun Heoc8826dd2009-08-14 15:00:52 +09002407 /* base address is now known, determine group base offsets */
Tejun Heo6ea529a2009-09-24 18:46:01 +09002408 for (group = 0; group < ai->nr_groups; group++) {
Tejun Heoc8826dd2009-08-14 15:00:52 +09002409 ai->groups[group].base_offset = areas[group] - base;
Tejun Heo6ea529a2009-09-24 18:46:01 +09002410 }
Tejun Heoc8826dd2009-08-14 15:00:52 +09002411
Joe Perches870d4b12016-03-17 14:19:53 -07002412 pr_info("Embedded %zu pages/cpu @%p s%zu r%zu d%zu u%zu\n",
Tejun Heofd1e8a12009-08-14 15:00:51 +09002413 PFN_DOWN(size_sum), base, ai->static_size, ai->reserved_size,
2414 ai->dyn_size, ai->unit_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09002415
Tejun Heofb435d52009-08-14 15:00:51 +09002416 rc = pcpu_setup_first_chunk(ai, base);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002417 goto out_free;
2418
2419out_free_areas:
2420 for (group = 0; group < ai->nr_groups; group++)
Michael Holzheuf851c8d2013-09-17 16:57:34 +02002421 if (areas[group])
2422 free_fn(areas[group],
2423 ai->groups[group].nr_units * ai->unit_size);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002424out_free:
Tejun Heofd1e8a12009-08-14 15:00:51 +09002425 pcpu_free_alloc_info(ai);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002426 if (areas)
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002427 memblock_free_early(__pa(areas), areas_size);
Tejun Heofb435d52009-08-14 15:00:51 +09002428 return rc;
Tejun Heod4b95f82009-07-04 08:10:59 +09002429}
Tejun Heo3c9a0242010-09-09 18:00:15 +02002430#endif /* BUILD_EMBED_FIRST_CHUNK */
Tejun Heod4b95f82009-07-04 08:10:59 +09002431
Tejun Heo3c9a0242010-09-09 18:00:15 +02002432#ifdef BUILD_PAGE_FIRST_CHUNK
Tejun Heod4b95f82009-07-04 08:10:59 +09002433/**
Tejun Heo00ae4062009-08-14 15:00:49 +09002434 * pcpu_page_first_chunk - map the first chunk using PAGE_SIZE pages
Tejun Heod4b95f82009-07-04 08:10:59 +09002435 * @reserved_size: the size of reserved percpu area in bytes
2436 * @alloc_fn: function to allocate percpu page, always called with PAGE_SIZE
Lucas De Marchi25985ed2011-03-30 22:57:33 -03002437 * @free_fn: function to free percpu page, always called with PAGE_SIZE
Tejun Heod4b95f82009-07-04 08:10:59 +09002438 * @populate_pte_fn: function to populate pte
2439 *
Tejun Heo00ae4062009-08-14 15:00:49 +09002440 * This is a helper to ease setting up page-remapped first percpu
2441 * chunk and can be called where pcpu_setup_first_chunk() is expected.
Tejun Heod4b95f82009-07-04 08:10:59 +09002442 *
2443 * This is the basic allocator. Static percpu area is allocated
2444 * page-by-page into vmalloc area.
2445 *
2446 * RETURNS:
Tejun Heofb435d52009-08-14 15:00:51 +09002447 * 0 on success, -errno on failure.
Tejun Heod4b95f82009-07-04 08:10:59 +09002448 */
Tejun Heofb435d52009-08-14 15:00:51 +09002449int __init pcpu_page_first_chunk(size_t reserved_size,
2450 pcpu_fc_alloc_fn_t alloc_fn,
2451 pcpu_fc_free_fn_t free_fn,
2452 pcpu_fc_populate_pte_fn_t populate_pte_fn)
Tejun Heod4b95f82009-07-04 08:10:59 +09002453{
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002454 static struct vm_struct vm;
Tejun Heofd1e8a12009-08-14 15:00:51 +09002455 struct pcpu_alloc_info *ai;
Tejun Heo00ae4062009-08-14 15:00:49 +09002456 char psize_str[16];
Tejun Heoce3141a2009-07-04 08:11:00 +09002457 int unit_pages;
Tejun Heod4b95f82009-07-04 08:10:59 +09002458 size_t pages_size;
Tejun Heoce3141a2009-07-04 08:11:00 +09002459 struct page **pages;
Tejun Heofb435d52009-08-14 15:00:51 +09002460 int unit, i, j, rc;
zijun_hu8f606602016-12-12 16:45:02 -08002461 int upa;
2462 int nr_g0_units;
Tejun Heod4b95f82009-07-04 08:10:59 +09002463
Tejun Heo00ae4062009-08-14 15:00:49 +09002464 snprintf(psize_str, sizeof(psize_str), "%luK", PAGE_SIZE >> 10);
2465
Tejun Heo4ba6ce22010-06-27 18:49:59 +02002466 ai = pcpu_build_alloc_info(reserved_size, 0, PAGE_SIZE, NULL);
Tejun Heofd1e8a12009-08-14 15:00:51 +09002467 if (IS_ERR(ai))
2468 return PTR_ERR(ai);
2469 BUG_ON(ai->nr_groups != 1);
zijun_hu8f606602016-12-12 16:45:02 -08002470 upa = ai->alloc_size/ai->unit_size;
2471 nr_g0_units = roundup(num_possible_cpus(), upa);
2472 if (unlikely(WARN_ON(ai->groups[0].nr_units != nr_g0_units))) {
2473 pcpu_free_alloc_info(ai);
2474 return -EINVAL;
2475 }
Tejun Heofd1e8a12009-08-14 15:00:51 +09002476
2477 unit_pages = ai->unit_size >> PAGE_SHIFT;
Tejun Heod4b95f82009-07-04 08:10:59 +09002478
2479 /* unaligned allocations can't be freed, round up to page size */
Tejun Heofd1e8a12009-08-14 15:00:51 +09002480 pages_size = PFN_ALIGN(unit_pages * num_possible_cpus() *
2481 sizeof(pages[0]));
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002482 pages = memblock_virt_alloc(pages_size, 0);
Tejun Heod4b95f82009-07-04 08:10:59 +09002483
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002484 /* allocate pages */
Tejun Heod4b95f82009-07-04 08:10:59 +09002485 j = 0;
zijun_hu8f606602016-12-12 16:45:02 -08002486 for (unit = 0; unit < num_possible_cpus(); unit++) {
2487 unsigned int cpu = ai->groups[0].cpu_map[unit];
Tejun Heoce3141a2009-07-04 08:11:00 +09002488 for (i = 0; i < unit_pages; i++) {
Tejun Heod4b95f82009-07-04 08:10:59 +09002489 void *ptr;
2490
Tejun Heo3cbc8562009-08-14 15:00:50 +09002491 ptr = alloc_fn(cpu, PAGE_SIZE, PAGE_SIZE);
Tejun Heod4b95f82009-07-04 08:10:59 +09002492 if (!ptr) {
Joe Perches870d4b12016-03-17 14:19:53 -07002493 pr_warn("failed to allocate %s page for cpu%u\n",
zijun_hu8f606602016-12-12 16:45:02 -08002494 psize_str, cpu);
Tejun Heod4b95f82009-07-04 08:10:59 +09002495 goto enomem;
2496 }
Catalin Marinasf528f0b2011-09-26 17:12:53 +01002497 /* kmemleak tracks the percpu allocations separately */
2498 kmemleak_free(ptr);
Tejun Heoce3141a2009-07-04 08:11:00 +09002499 pages[j++] = virt_to_page(ptr);
Tejun Heod4b95f82009-07-04 08:10:59 +09002500 }
zijun_hu8f606602016-12-12 16:45:02 -08002501 }
Tejun Heod4b95f82009-07-04 08:10:59 +09002502
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002503 /* allocate vm area, map the pages and copy static data */
2504 vm.flags = VM_ALLOC;
Tejun Heofd1e8a12009-08-14 15:00:51 +09002505 vm.size = num_possible_cpus() * ai->unit_size;
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002506 vm_area_register_early(&vm, PAGE_SIZE);
2507
Tejun Heofd1e8a12009-08-14 15:00:51 +09002508 for (unit = 0; unit < num_possible_cpus(); unit++) {
Tejun Heo1d9d3252009-08-14 15:00:50 +09002509 unsigned long unit_addr =
Tejun Heofd1e8a12009-08-14 15:00:51 +09002510 (unsigned long)vm.addr + unit * ai->unit_size;
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002511
Tejun Heoce3141a2009-07-04 08:11:00 +09002512 for (i = 0; i < unit_pages; i++)
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002513 populate_pte_fn(unit_addr + (i << PAGE_SHIFT));
2514
2515 /* pte already populated, the following shouldn't fail */
Tejun Heofb435d52009-08-14 15:00:51 +09002516 rc = __pcpu_map_pages(unit_addr, &pages[unit * unit_pages],
2517 unit_pages);
2518 if (rc < 0)
2519 panic("failed to map percpu area, err=%d\n", rc);
Tejun Heo8f05a6a2009-07-04 08:10:59 +09002520
2521 /*
2522 * FIXME: Archs with virtual cache should flush local
2523 * cache for the linear mapping here - something
2524 * equivalent to flush_cache_vmap() on the local cpu.
2525 * flush_cache_vmap() can't be used as most supporting
2526 * data structures are not set up yet.
2527 */
2528
2529 /* copy static data */
Tejun Heofd1e8a12009-08-14 15:00:51 +09002530 memcpy((void *)unit_addr, __per_cpu_load, ai->static_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09002531 }
2532
2533 /* we're ready, commit */
Joe Perches870d4b12016-03-17 14:19:53 -07002534 pr_info("%d %s pages/cpu @%p s%zu r%zu d%zu\n",
Tejun Heofd1e8a12009-08-14 15:00:51 +09002535 unit_pages, psize_str, vm.addr, ai->static_size,
2536 ai->reserved_size, ai->dyn_size);
Tejun Heo66c3a752009-03-10 16:27:48 +09002537
Tejun Heofb435d52009-08-14 15:00:51 +09002538 rc = pcpu_setup_first_chunk(ai, vm.addr);
Tejun Heod4b95f82009-07-04 08:10:59 +09002539 goto out_free_ar;
2540
2541enomem:
2542 while (--j >= 0)
Tejun Heoce3141a2009-07-04 08:11:00 +09002543 free_fn(page_address(pages[j]), PAGE_SIZE);
Tejun Heofb435d52009-08-14 15:00:51 +09002544 rc = -ENOMEM;
Tejun Heod4b95f82009-07-04 08:10:59 +09002545out_free_ar:
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002546 memblock_free_early(__pa(pages), pages_size);
Tejun Heofd1e8a12009-08-14 15:00:51 +09002547 pcpu_free_alloc_info(ai);
Tejun Heofb435d52009-08-14 15:00:51 +09002548 return rc;
Tejun Heo66c3a752009-03-10 16:27:48 +09002549}
Tejun Heo3c9a0242010-09-09 18:00:15 +02002550#endif /* BUILD_PAGE_FIRST_CHUNK */
Tejun Heod4b95f82009-07-04 08:10:59 +09002551
Tejun Heobbddff02010-09-03 18:22:48 +02002552#ifndef CONFIG_HAVE_SETUP_PER_CPU_AREA
Tejun Heo8c4bfc62009-07-04 08:10:59 +09002553/*
Tejun Heobbddff02010-09-03 18:22:48 +02002554 * Generic SMP percpu area setup.
Tejun Heoe74e3962009-03-30 19:07:44 +09002555 *
2556 * The embedding helper is used because its behavior closely resembles
2557 * the original non-dynamic generic percpu area setup. This is
2558 * important because many archs have addressing restrictions and might
2559 * fail if the percpu area is located far away from the previous
2560 * location. As an added bonus, in non-NUMA cases, embedding is
2561 * generally a good idea TLB-wise because percpu area can piggy back
2562 * on the physical linear memory mapping which uses large page
2563 * mappings on applicable archs.
2564 */
Tejun Heoe74e3962009-03-30 19:07:44 +09002565unsigned long __per_cpu_offset[NR_CPUS] __read_mostly;
2566EXPORT_SYMBOL(__per_cpu_offset);
2567
Tejun Heoc8826dd2009-08-14 15:00:52 +09002568static void * __init pcpu_dfl_fc_alloc(unsigned int cpu, size_t size,
2569 size_t align)
2570{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002571 return memblock_virt_alloc_from_nopanic(
2572 size, align, __pa(MAX_DMA_ADDRESS));
Tejun Heoc8826dd2009-08-14 15:00:52 +09002573}
2574
2575static void __init pcpu_dfl_fc_free(void *ptr, size_t size)
2576{
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002577 memblock_free_early(__pa(ptr), size);
Tejun Heoc8826dd2009-08-14 15:00:52 +09002578}
2579
Tejun Heoe74e3962009-03-30 19:07:44 +09002580void __init setup_per_cpu_areas(void)
2581{
Tejun Heoe74e3962009-03-30 19:07:44 +09002582 unsigned long delta;
2583 unsigned int cpu;
Tejun Heofb435d52009-08-14 15:00:51 +09002584 int rc;
Tejun Heoe74e3962009-03-30 19:07:44 +09002585
2586 /*
2587 * Always reserve area for module percpu variables. That's
2588 * what the legacy allocator did.
2589 */
Tejun Heofb435d52009-08-14 15:00:51 +09002590 rc = pcpu_embed_first_chunk(PERCPU_MODULE_RESERVE,
Tejun Heoc8826dd2009-08-14 15:00:52 +09002591 PERCPU_DYNAMIC_RESERVE, PAGE_SIZE, NULL,
2592 pcpu_dfl_fc_alloc, pcpu_dfl_fc_free);
Tejun Heofb435d52009-08-14 15:00:51 +09002593 if (rc < 0)
Tejun Heobbddff02010-09-03 18:22:48 +02002594 panic("Failed to initialize percpu areas.");
Tejun Heoe74e3962009-03-30 19:07:44 +09002595
2596 delta = (unsigned long)pcpu_base_addr - (unsigned long)__per_cpu_start;
2597 for_each_possible_cpu(cpu)
Tejun Heofb435d52009-08-14 15:00:51 +09002598 __per_cpu_offset[cpu] = delta + pcpu_unit_offsets[cpu];
Tejun Heoe74e3962009-03-30 19:07:44 +09002599}
Tejun Heobbddff02010-09-03 18:22:48 +02002600#endif /* CONFIG_HAVE_SETUP_PER_CPU_AREA */
2601
2602#else /* CONFIG_SMP */
2603
2604/*
2605 * UP percpu area setup.
2606 *
2607 * UP always uses km-based percpu allocator with identity mapping.
2608 * Static percpu variables are indistinguishable from the usual static
2609 * variables and don't require any special preparation.
2610 */
2611void __init setup_per_cpu_areas(void)
2612{
2613 const size_t unit_size =
2614 roundup_pow_of_two(max_t(size_t, PCPU_MIN_UNIT_SIZE,
2615 PERCPU_DYNAMIC_RESERVE));
2616 struct pcpu_alloc_info *ai;
2617 void *fc;
2618
2619 ai = pcpu_alloc_alloc_info(1, 1);
Santosh Shilimkar999c17e2014-01-21 15:50:40 -08002620 fc = memblock_virt_alloc_from_nopanic(unit_size,
2621 PAGE_SIZE,
2622 __pa(MAX_DMA_ADDRESS));
Tejun Heobbddff02010-09-03 18:22:48 +02002623 if (!ai || !fc)
2624 panic("Failed to allocate memory for percpu areas.");
Catalin Marinas100d13c2012-05-09 16:55:19 +01002625 /* kmemleak tracks the percpu allocations separately */
2626 kmemleak_free(fc);
Tejun Heobbddff02010-09-03 18:22:48 +02002627
2628 ai->dyn_size = unit_size;
2629 ai->unit_size = unit_size;
2630 ai->atom_size = unit_size;
2631 ai->alloc_size = unit_size;
2632 ai->groups[0].nr_units = 1;
2633 ai->groups[0].cpu_map[0] = 0;
2634
2635 if (pcpu_setup_first_chunk(ai, fc) < 0)
2636 panic("Failed to initialize percpu areas.");
2637}
2638
2639#endif /* CONFIG_SMP */
Tejun Heo099a19d2010-06-27 18:50:00 +02002640
2641/*
Tejun Heo1a4d7602014-09-02 14:46:05 -04002642 * Percpu allocator is initialized early during boot when neither slab or
2643 * workqueue is available. Plug async management until everything is up
2644 * and running.
2645 */
2646static int __init percpu_enable_async(void)
2647{
2648 pcpu_async_enabled = true;
2649 return 0;
2650}
2651subsys_initcall(percpu_enable_async);