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Linus Torvalds1da177e2005-04-16 15:20:36 -07001#ifndef __LINUX_PERCPU_H
2#define __LINUX_PERCPU_H
Martin Peschke7ff6f082006-09-25 23:31:21 -07003
Robert P. J. Day0a3021f2007-07-15 23:39:57 -07004#include <linux/preempt.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -07005#include <linux/smp.h>
Martin Peschke7ff6f082006-09-25 23:31:21 -07006#include <linux/cpumask.h>
Tejun Heo6a242902009-03-06 14:33:58 +09007#include <linux/pfn.h>
Tejun Heode380b52010-03-24 17:06:43 +09008#include <linux/init.h>
Martin Peschke7ff6f082006-09-25 23:31:21 -07009
Linus Torvalds1da177e2005-04-16 15:20:36 -070010#include <asm/percpu.h>
11
Tejun Heo6a242902009-03-06 14:33:58 +090012/* enough to cover all DEFINE_PER_CPUs in modules */
Jeremy Fitzhardingeb00742d32007-05-02 19:27:11 +020013#ifdef CONFIG_MODULES
Tejun Heo6a242902009-03-06 14:33:58 +090014#define PERCPU_MODULE_RESERVE (8 << 10)
Jeremy Fitzhardingeb00742d32007-05-02 19:27:11 +020015#else
Tejun Heo6a242902009-03-06 14:33:58 +090016#define PERCPU_MODULE_RESERVE 0
Linus Torvalds1da177e2005-04-16 15:20:36 -070017#endif
18
Tejun Heo6a242902009-03-06 14:33:58 +090019#ifndef PERCPU_ENOUGH_ROOM
Jeremy Fitzhardingeb00742d32007-05-02 19:27:11 +020020#define PERCPU_ENOUGH_ROOM \
Tejun Heo6a242902009-03-06 14:33:58 +090021 (ALIGN(__per_cpu_end - __per_cpu_start, SMP_CACHE_BYTES) + \
22 PERCPU_MODULE_RESERVE)
23#endif
Jeremy Fitzhardingeb00742d32007-05-02 19:27:11 +020024
Jan Blunck632bbfe2006-09-25 23:30:53 -070025/*
26 * Must be an lvalue. Since @var must be a simple identifier,
27 * we force a syntax error here if it isn't.
28 */
29#define get_cpu_var(var) (*({ \
Jan Blunck632bbfe2006-09-25 23:30:53 -070030 preempt_disable(); \
31 &__get_cpu_var(var); }))
Tejun Heof7b64fe2009-10-29 22:34:15 +090032
Rusty Russelle0fdb0e2009-10-29 22:34:15 +090033/*
34 * The weird & is necessary because sparse considers (void)(var) to be
35 * a direct dereference of percpu variable (var).
36 */
Tejun Heof7b64fe2009-10-29 22:34:15 +090037#define put_cpu_var(var) do { \
Rusty Russelle0fdb0e2009-10-29 22:34:15 +090038 (void)&(var); \
Tejun Heof7b64fe2009-10-29 22:34:15 +090039 preempt_enable(); \
40} while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -070041
42#ifdef CONFIG_SMP
43
Tejun Heo8d408b42009-02-24 11:57:21 +090044/* minimum unit size, also is the maximum supported allocation size */
Tejun Heo6a242902009-03-06 14:33:58 +090045#define PCPU_MIN_UNIT_SIZE PFN_ALIGN(64 << 10)
Tejun Heo8d408b42009-02-24 11:57:21 +090046
47/*
48 * PERCPU_DYNAMIC_RESERVE indicates the amount of free area to piggy
Tejun Heo6b19b0c2009-03-06 14:33:59 +090049 * back on the first chunk for dynamic percpu allocation if arch is
50 * manually allocating and mapping it for faster access (as a part of
51 * large page mapping for example).
Tejun Heo8d408b42009-02-24 11:57:21 +090052 *
Tejun Heo6b19b0c2009-03-06 14:33:59 +090053 * The following values give between one and two pages of free space
54 * after typical minimal boot (2-way SMP, single disk and NIC) with
55 * both defconfig and a distro config on x86_64 and 32. More
56 * intelligent way to determine this would be nice.
Tejun Heo8d408b42009-02-24 11:57:21 +090057 */
Tejun Heo6b19b0c2009-03-06 14:33:59 +090058#if BITS_PER_LONG > 32
59#define PERCPU_DYNAMIC_RESERVE (20 << 10)
60#else
61#define PERCPU_DYNAMIC_RESERVE (12 << 10)
62#endif
Tejun Heo8d408b42009-02-24 11:57:21 +090063
Tejun Heofbf59bc2009-02-20 16:29:08 +090064extern void *pcpu_base_addr;
Tejun Heofb435d52009-08-14 15:00:51 +090065extern const unsigned long *pcpu_unit_offsets;
Tejun Heofbf59bc2009-02-20 16:29:08 +090066
Tejun Heofd1e8a12009-08-14 15:00:51 +090067struct pcpu_group_info {
68 int nr_units; /* aligned # of units */
69 unsigned long base_offset; /* base address offset */
70 unsigned int *cpu_map; /* unit->cpu map, empty
71 * entries contain NR_CPUS */
72};
73
74struct pcpu_alloc_info {
75 size_t static_size;
76 size_t reserved_size;
77 size_t dyn_size;
78 size_t unit_size;
79 size_t atom_size;
80 size_t alloc_size;
81 size_t __ai_size; /* internal, don't use */
82 int nr_groups; /* 0 if grouping unnecessary */
83 struct pcpu_group_info groups[];
84};
85
Tejun Heof58dc012009-08-14 15:00:50 +090086enum pcpu_fc {
87 PCPU_FC_AUTO,
88 PCPU_FC_EMBED,
89 PCPU_FC_PAGE,
Tejun Heof58dc012009-08-14 15:00:50 +090090
91 PCPU_FC_NR,
92};
93extern const char *pcpu_fc_names[PCPU_FC_NR];
94
95extern enum pcpu_fc pcpu_chosen_fc;
96
Tejun Heo3cbc8562009-08-14 15:00:50 +090097typedef void * (*pcpu_fc_alloc_fn_t)(unsigned int cpu, size_t size,
98 size_t align);
Tejun Heod4b95f82009-07-04 08:10:59 +090099typedef void (*pcpu_fc_free_fn_t)(void *ptr, size_t size);
100typedef void (*pcpu_fc_populate_pte_fn_t)(unsigned long addr);
Tejun Heoa530b792009-07-04 08:11:00 +0900101typedef int (pcpu_fc_cpu_distance_fn_t)(unsigned int from, unsigned int to);
Tejun Heofbf59bc2009-02-20 16:29:08 +0900102
Tejun Heofd1e8a12009-08-14 15:00:51 +0900103extern struct pcpu_alloc_info * __init pcpu_alloc_alloc_info(int nr_groups,
104 int nr_units);
105extern void __init pcpu_free_alloc_info(struct pcpu_alloc_info *ai);
Tejun Heo033e48f2009-08-14 15:00:51 +0900106
Tejun Heofd1e8a12009-08-14 15:00:51 +0900107extern struct pcpu_alloc_info * __init pcpu_build_alloc_info(
108 size_t reserved_size, ssize_t dyn_size,
109 size_t atom_size,
110 pcpu_fc_cpu_distance_fn_t cpu_distance_fn);
111
Tejun Heofb435d52009-08-14 15:00:51 +0900112extern int __init pcpu_setup_first_chunk(const struct pcpu_alloc_info *ai,
113 void *base_addr);
Tejun Heo8d408b42009-02-24 11:57:21 +0900114
Tejun Heo08fc4582009-08-14 15:00:49 +0900115#ifdef CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK
Tejun Heoc8826dd2009-08-14 15:00:52 +0900116extern int __init pcpu_embed_first_chunk(size_t reserved_size, ssize_t dyn_size,
117 size_t atom_size,
118 pcpu_fc_cpu_distance_fn_t cpu_distance_fn,
119 pcpu_fc_alloc_fn_t alloc_fn,
120 pcpu_fc_free_fn_t free_fn);
Tejun Heo08fc4582009-08-14 15:00:49 +0900121#endif
Tejun Heo66c3a752009-03-10 16:27:48 +0900122
Tejun Heo08fc4582009-08-14 15:00:49 +0900123#ifdef CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK
Tejun Heofb435d52009-08-14 15:00:51 +0900124extern int __init pcpu_page_first_chunk(size_t reserved_size,
Tejun Heod4b95f82009-07-04 08:10:59 +0900125 pcpu_fc_alloc_fn_t alloc_fn,
126 pcpu_fc_free_fn_t free_fn,
127 pcpu_fc_populate_pte_fn_t populate_pte_fn);
Tejun Heo08fc4582009-08-14 15:00:49 +0900128#endif
Tejun Heod4b95f82009-07-04 08:10:59 +0900129
Tejun Heofbf59bc2009-02-20 16:29:08 +0900130/*
131 * Use this to get to a cpu's version of the per-cpu object
132 * dynamically allocated. Non-atomic access to the current CPU's
133 * version should probably be combined with get_cpu()/put_cpu().
134 */
135#define per_cpu_ptr(ptr, cpu) SHIFT_PERCPU_PTR((ptr), per_cpu_offset((cpu)))
136
Rusty Russelle0fdb0e2009-10-29 22:34:15 +0900137extern void __percpu *__alloc_reserved_percpu(size_t size, size_t align);
Tejun Heof2a82052009-02-20 16:29:08 +0900138
Tejun Heoe74e3962009-03-30 19:07:44 +0900139#ifndef CONFIG_HAVE_SETUP_PER_CPU_AREA
140extern void __init setup_per_cpu_areas(void);
141#endif
142
Tejun Heof2a82052009-02-20 16:29:08 +0900143#else /* CONFIG_SMP */
144
145#define per_cpu_ptr(ptr, cpu) ({ (void)(cpu); (ptr); })
146
Tejun Heoe74e3962009-03-30 19:07:44 +0900147static inline void __init setup_per_cpu_areas(void) { }
148
Tejun Heoa76761b2009-07-15 23:35:14 +0900149static inline void *pcpu_lpage_remapped(void *kaddr)
150{
151 return NULL;
152}
153
Tejun Heof2a82052009-02-20 16:29:08 +0900154#endif /* CONFIG_SMP */
155
Tejun Heode380b52010-03-24 17:06:43 +0900156extern void __percpu *__alloc_percpu(size_t size, size_t align);
157extern void free_percpu(void __percpu *__pdata);
158extern phys_addr_t per_cpu_ptr_to_phys(void *addr);
159
Tejun Heo64ef2912009-10-29 22:34:12 +0900160#define alloc_percpu(type) \
Rusty Russelle0fdb0e2009-10-29 22:34:15 +0900161 (typeof(type) __percpu *)__alloc_percpu(sizeof(type), __alignof__(type))
Tejun Heof2a82052009-02-20 16:29:08 +0900162
Tejun Heo066123a2009-04-10 12:02:40 -0700163/*
164 * Optional methods for optimized non-lvalue per-cpu variable access.
165 *
166 * @var can be a percpu variable or a field of it and its size should
167 * equal char, int or long. percpu_read() evaluates to a lvalue and
168 * all others to void.
169 *
170 * These operations are guaranteed to be atomic w.r.t. preemption.
171 * The generic versions use plain get/put_cpu_var(). Archs are
172 * encouraged to implement single-instruction alternatives which don't
173 * require preemption protection.
174 */
175#ifndef percpu_read
176# define percpu_read(var) \
177 ({ \
Tejun Heof7b64fe2009-10-29 22:34:15 +0900178 typeof(var) *pr_ptr__ = &(var); \
179 typeof(var) pr_ret__; \
180 pr_ret__ = get_cpu_var(*pr_ptr__); \
181 put_cpu_var(*pr_ptr__); \
182 pr_ret__; \
Tejun Heo066123a2009-04-10 12:02:40 -0700183 })
184#endif
185
186#define __percpu_generic_to_op(var, val, op) \
187do { \
Tejun Heof7b64fe2009-10-29 22:34:15 +0900188 typeof(var) *pgto_ptr__ = &(var); \
189 get_cpu_var(*pgto_ptr__) op val; \
190 put_cpu_var(*pgto_ptr__); \
Tejun Heo066123a2009-04-10 12:02:40 -0700191} while (0)
192
193#ifndef percpu_write
194# define percpu_write(var, val) __percpu_generic_to_op(var, (val), =)
195#endif
196
197#ifndef percpu_add
198# define percpu_add(var, val) __percpu_generic_to_op(var, (val), +=)
199#endif
200
201#ifndef percpu_sub
202# define percpu_sub(var, val) __percpu_generic_to_op(var, (val), -=)
203#endif
204
205#ifndef percpu_and
206# define percpu_and(var, val) __percpu_generic_to_op(var, (val), &=)
207#endif
208
209#ifndef percpu_or
210# define percpu_or(var, val) __percpu_generic_to_op(var, (val), |=)
211#endif
212
213#ifndef percpu_xor
214# define percpu_xor(var, val) __percpu_generic_to_op(var, (val), ^=)
215#endif
216
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900217/*
218 * Branching function to split up a function into a set of functions that
219 * are called for different scalar sizes of the objects handled.
220 */
221
222extern void __bad_size_call_parameter(void);
223
Tejun Heo0f5e4812009-10-29 22:34:12 +0900224#define __pcpu_size_call_return(stem, variable) \
225({ typeof(variable) pscr_ret__; \
Tejun Heo545695f2009-10-29 22:34:15 +0900226 __verify_pcpu_ptr(&(variable)); \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900227 switch(sizeof(variable)) { \
Tejun Heo0f5e4812009-10-29 22:34:12 +0900228 case 1: pscr_ret__ = stem##1(variable);break; \
229 case 2: pscr_ret__ = stem##2(variable);break; \
230 case 4: pscr_ret__ = stem##4(variable);break; \
231 case 8: pscr_ret__ = stem##8(variable);break; \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900232 default: \
233 __bad_size_call_parameter();break; \
234 } \
Tejun Heo0f5e4812009-10-29 22:34:12 +0900235 pscr_ret__; \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900236})
237
Tejun Heo0f5e4812009-10-29 22:34:12 +0900238#define __pcpu_size_call(stem, variable, ...) \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900239do { \
Tejun Heo545695f2009-10-29 22:34:15 +0900240 __verify_pcpu_ptr(&(variable)); \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900241 switch(sizeof(variable)) { \
242 case 1: stem##1(variable, __VA_ARGS__);break; \
243 case 2: stem##2(variable, __VA_ARGS__);break; \
244 case 4: stem##4(variable, __VA_ARGS__);break; \
245 case 8: stem##8(variable, __VA_ARGS__);break; \
246 default: \
247 __bad_size_call_parameter();break; \
248 } \
249} while (0)
250
251/*
252 * Optimized manipulation for memory allocated through the per cpu
Rusty Russelldd17c8f2009-10-29 22:34:15 +0900253 * allocator or for addresses of per cpu variables.
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900254 *
255 * These operation guarantee exclusivity of access for other operations
256 * on the *same* processor. The assumption is that per cpu data is only
257 * accessed by a single processor instance (the current one).
258 *
259 * The first group is used for accesses that must be done in a
260 * preemption safe way since we know that the context is not preempt
261 * safe. Interrupts may occur. If the interrupt modifies the variable
262 * too then RMW actions will not be reliable.
263 *
264 * The arch code can provide optimized functions in two ways:
265 *
266 * 1. Override the function completely. F.e. define this_cpu_add().
267 * The arch must then ensure that the various scalar format passed
268 * are handled correctly.
269 *
270 * 2. Provide functions for certain scalar sizes. F.e. provide
271 * this_cpu_add_2() to provide per cpu atomic operations for 2 byte
272 * sized RMW actions. If arch code does not provide operations for
273 * a scalar size then the fallback in the generic code will be
274 * used.
275 */
276
277#define _this_cpu_generic_read(pcp) \
278({ typeof(pcp) ret__; \
279 preempt_disable(); \
280 ret__ = *this_cpu_ptr(&(pcp)); \
281 preempt_enable(); \
282 ret__; \
283})
284
285#ifndef this_cpu_read
286# ifndef this_cpu_read_1
287# define this_cpu_read_1(pcp) _this_cpu_generic_read(pcp)
288# endif
289# ifndef this_cpu_read_2
290# define this_cpu_read_2(pcp) _this_cpu_generic_read(pcp)
291# endif
292# ifndef this_cpu_read_4
293# define this_cpu_read_4(pcp) _this_cpu_generic_read(pcp)
294# endif
295# ifndef this_cpu_read_8
296# define this_cpu_read_8(pcp) _this_cpu_generic_read(pcp)
297# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900298# define this_cpu_read(pcp) __pcpu_size_call_return(this_cpu_read_, (pcp))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900299#endif
300
301#define _this_cpu_generic_to_op(pcp, val, op) \
302do { \
303 preempt_disable(); \
Tejun Heof7b64fe2009-10-29 22:34:15 +0900304 *__this_cpu_ptr(&(pcp)) op val; \
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900305 preempt_enable(); \
306} while (0)
307
308#ifndef this_cpu_write
309# ifndef this_cpu_write_1
310# define this_cpu_write_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
311# endif
312# ifndef this_cpu_write_2
313# define this_cpu_write_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
314# endif
315# ifndef this_cpu_write_4
316# define this_cpu_write_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
317# endif
318# ifndef this_cpu_write_8
319# define this_cpu_write_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), =)
320# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900321# define this_cpu_write(pcp, val) __pcpu_size_call(this_cpu_write_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900322#endif
323
324#ifndef this_cpu_add
325# ifndef this_cpu_add_1
326# define this_cpu_add_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
327# endif
328# ifndef this_cpu_add_2
329# define this_cpu_add_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
330# endif
331# ifndef this_cpu_add_4
332# define this_cpu_add_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
333# endif
334# ifndef this_cpu_add_8
335# define this_cpu_add_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), +=)
336# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900337# define this_cpu_add(pcp, val) __pcpu_size_call(this_cpu_add_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900338#endif
339
340#ifndef this_cpu_sub
341# define this_cpu_sub(pcp, val) this_cpu_add((pcp), -(val))
342#endif
343
344#ifndef this_cpu_inc
345# define this_cpu_inc(pcp) this_cpu_add((pcp), 1)
346#endif
347
348#ifndef this_cpu_dec
349# define this_cpu_dec(pcp) this_cpu_sub((pcp), 1)
350#endif
351
352#ifndef this_cpu_and
353# ifndef this_cpu_and_1
354# define this_cpu_and_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
355# endif
356# ifndef this_cpu_and_2
357# define this_cpu_and_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
358# endif
359# ifndef this_cpu_and_4
360# define this_cpu_and_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
361# endif
362# ifndef this_cpu_and_8
363# define this_cpu_and_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), &=)
364# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900365# define this_cpu_and(pcp, val) __pcpu_size_call(this_cpu_and_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900366#endif
367
368#ifndef this_cpu_or
369# ifndef this_cpu_or_1
370# define this_cpu_or_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
371# endif
372# ifndef this_cpu_or_2
373# define this_cpu_or_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
374# endif
375# ifndef this_cpu_or_4
376# define this_cpu_or_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
377# endif
378# ifndef this_cpu_or_8
379# define this_cpu_or_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), |=)
380# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900381# define this_cpu_or(pcp, val) __pcpu_size_call(this_cpu_or_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900382#endif
383
384#ifndef this_cpu_xor
385# ifndef this_cpu_xor_1
386# define this_cpu_xor_1(pcp, val) _this_cpu_generic_to_op((pcp), (val), ^=)
387# endif
388# ifndef this_cpu_xor_2
389# define this_cpu_xor_2(pcp, val) _this_cpu_generic_to_op((pcp), (val), ^=)
390# endif
391# ifndef this_cpu_xor_4
392# define this_cpu_xor_4(pcp, val) _this_cpu_generic_to_op((pcp), (val), ^=)
393# endif
394# ifndef this_cpu_xor_8
395# define this_cpu_xor_8(pcp, val) _this_cpu_generic_to_op((pcp), (val), ^=)
396# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900397# define this_cpu_xor(pcp, val) __pcpu_size_call(this_cpu_or_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900398#endif
399
400/*
401 * Generic percpu operations that do not require preemption handling.
402 * Either we do not care about races or the caller has the
403 * responsibility of handling preemptions issues. Arch code can still
404 * override these instructions since the arch per cpu code may be more
405 * efficient and may actually get race freeness for free (that is the
406 * case for x86 for example).
407 *
408 * If there is no other protection through preempt disable and/or
409 * disabling interupts then one of these RMW operations can show unexpected
410 * behavior because the execution thread was rescheduled on another processor
411 * or an interrupt occurred and the same percpu variable was modified from
412 * the interrupt context.
413 */
414#ifndef __this_cpu_read
415# ifndef __this_cpu_read_1
416# define __this_cpu_read_1(pcp) (*__this_cpu_ptr(&(pcp)))
417# endif
418# ifndef __this_cpu_read_2
419# define __this_cpu_read_2(pcp) (*__this_cpu_ptr(&(pcp)))
420# endif
421# ifndef __this_cpu_read_4
422# define __this_cpu_read_4(pcp) (*__this_cpu_ptr(&(pcp)))
423# endif
424# ifndef __this_cpu_read_8
425# define __this_cpu_read_8(pcp) (*__this_cpu_ptr(&(pcp)))
426# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900427# define __this_cpu_read(pcp) __pcpu_size_call_return(__this_cpu_read_, (pcp))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900428#endif
429
430#define __this_cpu_generic_to_op(pcp, val, op) \
431do { \
432 *__this_cpu_ptr(&(pcp)) op val; \
433} while (0)
434
435#ifndef __this_cpu_write
436# ifndef __this_cpu_write_1
437# define __this_cpu_write_1(pcp, val) __this_cpu_generic_to_op((pcp), (val), =)
438# endif
439# ifndef __this_cpu_write_2
440# define __this_cpu_write_2(pcp, val) __this_cpu_generic_to_op((pcp), (val), =)
441# endif
442# ifndef __this_cpu_write_4
443# define __this_cpu_write_4(pcp, val) __this_cpu_generic_to_op((pcp), (val), =)
444# endif
445# ifndef __this_cpu_write_8
446# define __this_cpu_write_8(pcp, val) __this_cpu_generic_to_op((pcp), (val), =)
447# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900448# define __this_cpu_write(pcp, val) __pcpu_size_call(__this_cpu_write_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900449#endif
450
451#ifndef __this_cpu_add
452# ifndef __this_cpu_add_1
453# define __this_cpu_add_1(pcp, val) __this_cpu_generic_to_op((pcp), (val), +=)
454# endif
455# ifndef __this_cpu_add_2
456# define __this_cpu_add_2(pcp, val) __this_cpu_generic_to_op((pcp), (val), +=)
457# endif
458# ifndef __this_cpu_add_4
459# define __this_cpu_add_4(pcp, val) __this_cpu_generic_to_op((pcp), (val), +=)
460# endif
461# ifndef __this_cpu_add_8
462# define __this_cpu_add_8(pcp, val) __this_cpu_generic_to_op((pcp), (val), +=)
463# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900464# define __this_cpu_add(pcp, val) __pcpu_size_call(__this_cpu_add_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900465#endif
466
467#ifndef __this_cpu_sub
468# define __this_cpu_sub(pcp, val) __this_cpu_add((pcp), -(val))
469#endif
470
471#ifndef __this_cpu_inc
472# define __this_cpu_inc(pcp) __this_cpu_add((pcp), 1)
473#endif
474
475#ifndef __this_cpu_dec
476# define __this_cpu_dec(pcp) __this_cpu_sub((pcp), 1)
477#endif
478
479#ifndef __this_cpu_and
480# ifndef __this_cpu_and_1
481# define __this_cpu_and_1(pcp, val) __this_cpu_generic_to_op((pcp), (val), &=)
482# endif
483# ifndef __this_cpu_and_2
484# define __this_cpu_and_2(pcp, val) __this_cpu_generic_to_op((pcp), (val), &=)
485# endif
486# ifndef __this_cpu_and_4
487# define __this_cpu_and_4(pcp, val) __this_cpu_generic_to_op((pcp), (val), &=)
488# endif
489# ifndef __this_cpu_and_8
490# define __this_cpu_and_8(pcp, val) __this_cpu_generic_to_op((pcp), (val), &=)
491# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900492# define __this_cpu_and(pcp, val) __pcpu_size_call(__this_cpu_and_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900493#endif
494
495#ifndef __this_cpu_or
496# ifndef __this_cpu_or_1
497# define __this_cpu_or_1(pcp, val) __this_cpu_generic_to_op((pcp), (val), |=)
498# endif
499# ifndef __this_cpu_or_2
500# define __this_cpu_or_2(pcp, val) __this_cpu_generic_to_op((pcp), (val), |=)
501# endif
502# ifndef __this_cpu_or_4
503# define __this_cpu_or_4(pcp, val) __this_cpu_generic_to_op((pcp), (val), |=)
504# endif
505# ifndef __this_cpu_or_8
506# define __this_cpu_or_8(pcp, val) __this_cpu_generic_to_op((pcp), (val), |=)
507# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900508# define __this_cpu_or(pcp, val) __pcpu_size_call(__this_cpu_or_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900509#endif
510
511#ifndef __this_cpu_xor
512# ifndef __this_cpu_xor_1
513# define __this_cpu_xor_1(pcp, val) __this_cpu_generic_to_op((pcp), (val), ^=)
514# endif
515# ifndef __this_cpu_xor_2
516# define __this_cpu_xor_2(pcp, val) __this_cpu_generic_to_op((pcp), (val), ^=)
517# endif
518# ifndef __this_cpu_xor_4
519# define __this_cpu_xor_4(pcp, val) __this_cpu_generic_to_op((pcp), (val), ^=)
520# endif
521# ifndef __this_cpu_xor_8
522# define __this_cpu_xor_8(pcp, val) __this_cpu_generic_to_op((pcp), (val), ^=)
523# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900524# define __this_cpu_xor(pcp, val) __pcpu_size_call(__this_cpu_xor_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900525#endif
526
527/*
528 * IRQ safe versions of the per cpu RMW operations. Note that these operations
529 * are *not* safe against modification of the same variable from another
530 * processors (which one gets when using regular atomic operations)
531 . They are guaranteed to be atomic vs. local interrupts and
532 * preemption only.
533 */
534#define irqsafe_cpu_generic_to_op(pcp, val, op) \
535do { \
536 unsigned long flags; \
537 local_irq_save(flags); \
538 *__this_cpu_ptr(&(pcp)) op val; \
539 local_irq_restore(flags); \
540} while (0)
541
542#ifndef irqsafe_cpu_add
543# ifndef irqsafe_cpu_add_1
544# define irqsafe_cpu_add_1(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), +=)
545# endif
546# ifndef irqsafe_cpu_add_2
547# define irqsafe_cpu_add_2(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), +=)
548# endif
549# ifndef irqsafe_cpu_add_4
550# define irqsafe_cpu_add_4(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), +=)
551# endif
552# ifndef irqsafe_cpu_add_8
553# define irqsafe_cpu_add_8(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), +=)
554# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900555# define irqsafe_cpu_add(pcp, val) __pcpu_size_call(irqsafe_cpu_add_, (pcp), (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900556#endif
557
558#ifndef irqsafe_cpu_sub
559# define irqsafe_cpu_sub(pcp, val) irqsafe_cpu_add((pcp), -(val))
560#endif
561
562#ifndef irqsafe_cpu_inc
563# define irqsafe_cpu_inc(pcp) irqsafe_cpu_add((pcp), 1)
564#endif
565
566#ifndef irqsafe_cpu_dec
567# define irqsafe_cpu_dec(pcp) irqsafe_cpu_sub((pcp), 1)
568#endif
569
570#ifndef irqsafe_cpu_and
571# ifndef irqsafe_cpu_and_1
572# define irqsafe_cpu_and_1(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), &=)
573# endif
574# ifndef irqsafe_cpu_and_2
575# define irqsafe_cpu_and_2(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), &=)
576# endif
577# ifndef irqsafe_cpu_and_4
578# define irqsafe_cpu_and_4(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), &=)
579# endif
580# ifndef irqsafe_cpu_and_8
581# define irqsafe_cpu_and_8(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), &=)
582# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900583# define irqsafe_cpu_and(pcp, val) __pcpu_size_call(irqsafe_cpu_and_, (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900584#endif
585
586#ifndef irqsafe_cpu_or
587# ifndef irqsafe_cpu_or_1
588# define irqsafe_cpu_or_1(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), |=)
589# endif
590# ifndef irqsafe_cpu_or_2
591# define irqsafe_cpu_or_2(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), |=)
592# endif
593# ifndef irqsafe_cpu_or_4
594# define irqsafe_cpu_or_4(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), |=)
595# endif
596# ifndef irqsafe_cpu_or_8
597# define irqsafe_cpu_or_8(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), |=)
598# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900599# define irqsafe_cpu_or(pcp, val) __pcpu_size_call(irqsafe_cpu_or_, (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900600#endif
601
602#ifndef irqsafe_cpu_xor
603# ifndef irqsafe_cpu_xor_1
604# define irqsafe_cpu_xor_1(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), ^=)
605# endif
606# ifndef irqsafe_cpu_xor_2
607# define irqsafe_cpu_xor_2(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), ^=)
608# endif
609# ifndef irqsafe_cpu_xor_4
610# define irqsafe_cpu_xor_4(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), ^=)
611# endif
612# ifndef irqsafe_cpu_xor_8
613# define irqsafe_cpu_xor_8(pcp, val) irqsafe_cpu_generic_to_op((pcp), (val), ^=)
614# endif
Tejun Heo0f5e4812009-10-29 22:34:12 +0900615# define irqsafe_cpu_xor(pcp, val) __pcpu_size_call(irqsafe_cpu_xor_, (val))
Christoph Lameter7340a0b2009-10-03 19:48:22 +0900616#endif
617
Linus Torvalds1da177e2005-04-16 15:20:36 -0700618#endif /* __LINUX_PERCPU_H */