1 #ifndef __ASM_SPINLOCK_H
2 #define __ASM_SPINLOCK_H
3 #ifdef __KERNEL__
4
5 /*
6 * Simple spin lock operations.
7 *
8 * Copyright (C) 2001-2004 Paul Mackerras <paulus@au.ibm.com>, IBM
9 * Copyright (C) 2001 Anton Blanchard <anton@au.ibm.com>, IBM
10 * Copyright (C) 2002 Dave Engebretsen <engebret@us.ibm.com>, IBM
11 * Rework to support virtual processors
12 *
13 * Type of int is used as a full 64b word is not necessary.
14 *
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License
17 * as published by the Free Software Foundation; either version
18 * 2 of the License, or (at your option) any later version.
19 *
20 * (the type definitions are in asm/spinlock_types.h)
21 */
22 #include <linux/irqflags.h>
23 #ifdef CONFIG_PPC64
24 #include <asm/paca.h>
25 #include <asm/hvcall.h>
26 #endif
27 #include <asm/asm-compat.h>
28 #include <asm/synch.h>
29 #include <asm/ppc-opcode.h>
30
31 #ifdef CONFIG_PPC64
32 /* use 0x800000yy when locked, where yy == CPU number */
33 #ifdef __BIG_ENDIAN__
34 #define LOCK_TOKEN (*(u32 *)(&get_paca()->lock_token))
35 #else
36 #define LOCK_TOKEN (*(u32 *)(&get_paca()->paca_index))
37 #endif
38 #else
39 #define LOCK_TOKEN 1
40 #endif
41
42 #if defined(CONFIG_PPC64) && defined(CONFIG_SMP)
43 #define CLEAR_IO_SYNC (get_paca()->io_sync = 0)
44 #define SYNC_IO do { \
45 if (unlikely(get_paca()->io_sync)) { \
46 mb(); \
47 get_paca()->io_sync = 0; \
48 } \
49 } while (0)
50 #else
51 #define CLEAR_IO_SYNC
52 #define SYNC_IO
53 #endif
54
55 #ifdef CONFIG_PPC_PSERIES
56 #define vcpu_is_preempted vcpu_is_preempted
vcpu_is_preempted(int cpu)57 static inline bool vcpu_is_preempted(int cpu)
58 {
59 return !!(be32_to_cpu(lppaca_of(cpu).yield_count) & 1);
60 }
61 #endif
62
arch_spin_value_unlocked(arch_spinlock_t lock)63 static __always_inline int arch_spin_value_unlocked(arch_spinlock_t lock)
64 {
65 return lock.slock == 0;
66 }
67
arch_spin_is_locked(arch_spinlock_t * lock)68 static inline int arch_spin_is_locked(arch_spinlock_t *lock)
69 {
70 smp_mb();
71 return !arch_spin_value_unlocked(*lock);
72 }
73
74 /*
75 * This returns the old value in the lock, so we succeeded
76 * in getting the lock if the return value is 0.
77 */
__arch_spin_trylock(arch_spinlock_t * lock)78 static inline unsigned long __arch_spin_trylock(arch_spinlock_t *lock)
79 {
80 unsigned long tmp, token;
81
82 token = LOCK_TOKEN;
83 __asm__ __volatile__(
84 "1: " PPC_LWARX(%0,0,%2,1) "\n\
85 cmpwi 0,%0,0\n\
86 bne- 2f\n\
87 stwcx. %1,0,%2\n\
88 bne- 1b\n"
89 PPC_ACQUIRE_BARRIER
90 "2:"
91 : "=&r" (tmp)
92 : "r" (token), "r" (&lock->slock)
93 : "cr0", "memory");
94
95 return tmp;
96 }
97
arch_spin_trylock(arch_spinlock_t * lock)98 static inline int arch_spin_trylock(arch_spinlock_t *lock)
99 {
100 CLEAR_IO_SYNC;
101 return __arch_spin_trylock(lock) == 0;
102 }
103
104 /*
105 * On a system with shared processors (that is, where a physical
106 * processor is multiplexed between several virtual processors),
107 * there is no point spinning on a lock if the holder of the lock
108 * isn't currently scheduled on a physical processor. Instead
109 * we detect this situation and ask the hypervisor to give the
110 * rest of our timeslice to the lock holder.
111 *
112 * So that we can tell which virtual processor is holding a lock,
113 * we put 0x80000000 | smp_processor_id() in the lock when it is
114 * held. Conveniently, we have a word in the paca that holds this
115 * value.
116 */
117
118 #if defined(CONFIG_PPC_SPLPAR)
119 /* We only yield to the hypervisor if we are in shared processor mode */
120 #define SHARED_PROCESSOR (lppaca_shared_proc(local_paca->lppaca_ptr))
121 extern void __spin_yield(arch_spinlock_t *lock);
122 extern void __rw_yield(arch_rwlock_t *lock);
123 #else /* SPLPAR */
124 #define __spin_yield(x) barrier()
125 #define __rw_yield(x) barrier()
126 #define SHARED_PROCESSOR 0
127 #endif
128
arch_spin_lock(arch_spinlock_t * lock)129 static inline void arch_spin_lock(arch_spinlock_t *lock)
130 {
131 CLEAR_IO_SYNC;
132 while (1) {
133 if (likely(__arch_spin_trylock(lock) == 0))
134 break;
135 do {
136 HMT_low();
137 if (SHARED_PROCESSOR)
138 __spin_yield(lock);
139 } while (unlikely(lock->slock != 0));
140 HMT_medium();
141 }
142 }
143
144 static inline
arch_spin_lock_flags(arch_spinlock_t * lock,unsigned long flags)145 void arch_spin_lock_flags(arch_spinlock_t *lock, unsigned long flags)
146 {
147 unsigned long flags_dis;
148
149 CLEAR_IO_SYNC;
150 while (1) {
151 if (likely(__arch_spin_trylock(lock) == 0))
152 break;
153 local_save_flags(flags_dis);
154 local_irq_restore(flags);
155 do {
156 HMT_low();
157 if (SHARED_PROCESSOR)
158 __spin_yield(lock);
159 } while (unlikely(lock->slock != 0));
160 HMT_medium();
161 local_irq_restore(flags_dis);
162 }
163 }
164
arch_spin_unlock(arch_spinlock_t * lock)165 static inline void arch_spin_unlock(arch_spinlock_t *lock)
166 {
167 SYNC_IO;
168 __asm__ __volatile__("# arch_spin_unlock\n\t"
169 PPC_RELEASE_BARRIER: : :"memory");
170 lock->slock = 0;
171 }
172
173 /*
174 * Read-write spinlocks, allowing multiple readers
175 * but only one writer.
176 *
177 * NOTE! it is quite common to have readers in interrupts
178 * but no interrupt writers. For those circumstances we
179 * can "mix" irq-safe locks - any writer needs to get a
180 * irq-safe write-lock, but readers can get non-irqsafe
181 * read-locks.
182 */
183
184 #define arch_read_can_lock(rw) ((rw)->lock >= 0)
185 #define arch_write_can_lock(rw) (!(rw)->lock)
186
187 #ifdef CONFIG_PPC64
188 #define __DO_SIGN_EXTEND "extsw %0,%0\n"
189 #define WRLOCK_TOKEN LOCK_TOKEN /* it's negative */
190 #else
191 #define __DO_SIGN_EXTEND
192 #define WRLOCK_TOKEN (-1)
193 #endif
194
195 /*
196 * This returns the old value in the lock + 1,
197 * so we got a read lock if the return value is > 0.
198 */
__arch_read_trylock(arch_rwlock_t * rw)199 static inline long __arch_read_trylock(arch_rwlock_t *rw)
200 {
201 long tmp;
202
203 __asm__ __volatile__(
204 "1: " PPC_LWARX(%0,0,%1,1) "\n"
205 __DO_SIGN_EXTEND
206 " addic. %0,%0,1\n\
207 ble- 2f\n"
208 PPC405_ERR77(0,%1)
209 " stwcx. %0,0,%1\n\
210 bne- 1b\n"
211 PPC_ACQUIRE_BARRIER
212 "2:" : "=&r" (tmp)
213 : "r" (&rw->lock)
214 : "cr0", "xer", "memory");
215
216 return tmp;
217 }
218
219 /*
220 * This returns the old value in the lock,
221 * so we got the write lock if the return value is 0.
222 */
__arch_write_trylock(arch_rwlock_t * rw)223 static inline long __arch_write_trylock(arch_rwlock_t *rw)
224 {
225 long tmp, token;
226
227 token = WRLOCK_TOKEN;
228 __asm__ __volatile__(
229 "1: " PPC_LWARX(%0,0,%2,1) "\n\
230 cmpwi 0,%0,0\n\
231 bne- 2f\n"
232 PPC405_ERR77(0,%1)
233 " stwcx. %1,0,%2\n\
234 bne- 1b\n"
235 PPC_ACQUIRE_BARRIER
236 "2:" : "=&r" (tmp)
237 : "r" (token), "r" (&rw->lock)
238 : "cr0", "memory");
239
240 return tmp;
241 }
242
arch_read_lock(arch_rwlock_t * rw)243 static inline void arch_read_lock(arch_rwlock_t *rw)
244 {
245 while (1) {
246 if (likely(__arch_read_trylock(rw) > 0))
247 break;
248 do {
249 HMT_low();
250 if (SHARED_PROCESSOR)
251 __rw_yield(rw);
252 } while (unlikely(rw->lock < 0));
253 HMT_medium();
254 }
255 }
256
arch_write_lock(arch_rwlock_t * rw)257 static inline void arch_write_lock(arch_rwlock_t *rw)
258 {
259 while (1) {
260 if (likely(__arch_write_trylock(rw) == 0))
261 break;
262 do {
263 HMT_low();
264 if (SHARED_PROCESSOR)
265 __rw_yield(rw);
266 } while (unlikely(rw->lock != 0));
267 HMT_medium();
268 }
269 }
270
arch_read_trylock(arch_rwlock_t * rw)271 static inline int arch_read_trylock(arch_rwlock_t *rw)
272 {
273 return __arch_read_trylock(rw) > 0;
274 }
275
arch_write_trylock(arch_rwlock_t * rw)276 static inline int arch_write_trylock(arch_rwlock_t *rw)
277 {
278 return __arch_write_trylock(rw) == 0;
279 }
280
arch_read_unlock(arch_rwlock_t * rw)281 static inline void arch_read_unlock(arch_rwlock_t *rw)
282 {
283 long tmp;
284
285 __asm__ __volatile__(
286 "# read_unlock\n\t"
287 PPC_RELEASE_BARRIER
288 "1: lwarx %0,0,%1\n\
289 addic %0,%0,-1\n"
290 PPC405_ERR77(0,%1)
291 " stwcx. %0,0,%1\n\
292 bne- 1b"
293 : "=&r"(tmp)
294 : "r"(&rw->lock)
295 : "cr0", "xer", "memory");
296 }
297
arch_write_unlock(arch_rwlock_t * rw)298 static inline void arch_write_unlock(arch_rwlock_t *rw)
299 {
300 __asm__ __volatile__("# write_unlock\n\t"
301 PPC_RELEASE_BARRIER: : :"memory");
302 rw->lock = 0;
303 }
304
305 #define arch_read_lock_flags(lock, flags) arch_read_lock(lock)
306 #define arch_write_lock_flags(lock, flags) arch_write_lock(lock)
307
308 #define arch_spin_relax(lock) __spin_yield(lock)
309 #define arch_read_relax(lock) __rw_yield(lock)
310 #define arch_write_relax(lock) __rw_yield(lock)
311
312 /* See include/linux/spinlock.h */
313 #define smp_mb__after_spinlock() smp_mb()
314
315 #endif /* __KERNEL__ */
316 #endif /* __ASM_SPINLOCK_H */
317