1 /* 2 * include/asm-xtensa/atomic.h 3 * 4 * Atomic operations that C can't guarantee us. Useful for resource counting.. 5 * 6 * This file is subject to the terms and conditions of the GNU General Public 7 * License. See the file "COPYING" in the main directory of this archive 8 * for more details. 9 * 10 * Copyright (C) 2001 - 2005 Tensilica Inc. 11 */ 12 13 #ifndef _XTENSA_ATOMIC_H 14 #define _XTENSA_ATOMIC_H 15 16 #include <linux/stringify.h> 17 #include <linux/types.h> 18 19 #ifdef __KERNEL__ 20 #include <asm/processor.h> 21 #include <asm/cmpxchg.h> 22 23 #define ATOMIC_INIT(i) { (i) } 24 25 /* 26 * This Xtensa implementation assumes that the right mechanism 27 * for exclusion is for locking interrupts to level 1. 28 * 29 * Locking interrupts looks like this: 30 * 31 * rsil a15, 1 32 * <code> 33 * wsr a15, PS 34 * rsync 35 * 36 * Note that a15 is used here because the register allocation 37 * done by the compiler is not guaranteed and a window overflow 38 * may not occur between the rsil and wsr instructions. By using 39 * a15 in the rsil, the machine is guaranteed to be in a state 40 * where no register reference will cause an overflow. 41 */ 42 43 /** 44 * atomic_read - read atomic variable 45 * @v: pointer of type atomic_t 46 * 47 * Atomically reads the value of @v. 48 */ 49 #define atomic_read(v) (*(volatile int *)&(v)->counter) 50 51 /** 52 * atomic_set - set atomic variable 53 * @v: pointer of type atomic_t 54 * @i: required value 55 * 56 * Atomically sets the value of @v to @i. 57 */ 58 #define atomic_set(v,i) ((v)->counter = (i)) 59 60 /** 61 * atomic_add - add integer to atomic variable 62 * @i: integer value to add 63 * @v: pointer of type atomic_t 64 * 65 * Atomically adds @i to @v. 66 */ 67 static inline void atomic_add(int i, atomic_t * v) 68 { 69 unsigned int vval; 70 71 __asm__ __volatile__( 72 "rsil a15, "__stringify(LOCKLEVEL)"\n\t" 73 "l32i %0, %2, 0 \n\t" 74 "add %0, %0, %1 \n\t" 75 "s32i %0, %2, 0 \n\t" 76 "wsr a15, "__stringify(PS)" \n\t" 77 "rsync \n" 78 : "=&a" (vval) 79 : "a" (i), "a" (v) 80 : "a15", "memory" 81 ); 82 } 83 84 /** 85 * atomic_sub - subtract the atomic variable 86 * @i: integer value to subtract 87 * @v: pointer of type atomic_t 88 * 89 * Atomically subtracts @i from @v. 90 */ 91 static inline void atomic_sub(int i, atomic_t *v) 92 { 93 unsigned int vval; 94 95 __asm__ __volatile__( 96 "rsil a15, "__stringify(LOCKLEVEL)"\n\t" 97 "l32i %0, %2, 0 \n\t" 98 "sub %0, %0, %1 \n\t" 99 "s32i %0, %2, 0 \n\t" 100 "wsr a15, "__stringify(PS)" \n\t" 101 "rsync \n" 102 : "=&a" (vval) 103 : "a" (i), "a" (v) 104 : "a15", "memory" 105 ); 106 } 107 108 /* 109 * We use atomic_{add|sub}_return to define other functions. 110 */ 111 112 static inline int atomic_add_return(int i, atomic_t * v) 113 { 114 unsigned int vval; 115 116 __asm__ __volatile__( 117 "rsil a15,"__stringify(LOCKLEVEL)"\n\t" 118 "l32i %0, %2, 0 \n\t" 119 "add %0, %0, %1 \n\t" 120 "s32i %0, %2, 0 \n\t" 121 "wsr a15, "__stringify(PS)" \n\t" 122 "rsync \n" 123 : "=&a" (vval) 124 : "a" (i), "a" (v) 125 : "a15", "memory" 126 ); 127 128 return vval; 129 } 130 131 static inline int atomic_sub_return(int i, atomic_t * v) 132 { 133 unsigned int vval; 134 135 __asm__ __volatile__( 136 "rsil a15,"__stringify(LOCKLEVEL)"\n\t" 137 "l32i %0, %2, 0 \n\t" 138 "sub %0, %0, %1 \n\t" 139 "s32i %0, %2, 0 \n\t" 140 "wsr a15, "__stringify(PS)" \n\t" 141 "rsync \n" 142 : "=&a" (vval) 143 : "a" (i), "a" (v) 144 : "a15", "memory" 145 ); 146 147 return vval; 148 } 149 150 /** 151 * atomic_sub_and_test - subtract value from variable and test result 152 * @i: integer value to subtract 153 * @v: pointer of type atomic_t 154 * 155 * Atomically subtracts @i from @v and returns 156 * true if the result is zero, or false for all 157 * other cases. 158 */ 159 #define atomic_sub_and_test(i,v) (atomic_sub_return((i),(v)) == 0) 160 161 /** 162 * atomic_inc - increment atomic variable 163 * @v: pointer of type atomic_t 164 * 165 * Atomically increments @v by 1. 166 */ 167 #define atomic_inc(v) atomic_add(1,(v)) 168 169 /** 170 * atomic_inc - increment atomic variable 171 * @v: pointer of type atomic_t 172 * 173 * Atomically increments @v by 1. 174 */ 175 #define atomic_inc_return(v) atomic_add_return(1,(v)) 176 177 /** 178 * atomic_dec - decrement atomic variable 179 * @v: pointer of type atomic_t 180 * 181 * Atomically decrements @v by 1. 182 */ 183 #define atomic_dec(v) atomic_sub(1,(v)) 184 185 /** 186 * atomic_dec_return - decrement atomic variable 187 * @v: pointer of type atomic_t 188 * 189 * Atomically decrements @v by 1. 190 */ 191 #define atomic_dec_return(v) atomic_sub_return(1,(v)) 192 193 /** 194 * atomic_dec_and_test - decrement and test 195 * @v: pointer of type atomic_t 196 * 197 * Atomically decrements @v by 1 and 198 * returns true if the result is 0, or false for all other 199 * cases. 200 */ 201 #define atomic_dec_and_test(v) (atomic_sub_return(1,(v)) == 0) 202 203 /** 204 * atomic_inc_and_test - increment and test 205 * @v: pointer of type atomic_t 206 * 207 * Atomically increments @v by 1 208 * and returns true if the result is zero, or false for all 209 * other cases. 210 */ 211 #define atomic_inc_and_test(v) (atomic_add_return(1,(v)) == 0) 212 213 /** 214 * atomic_add_negative - add and test if negative 215 * @v: pointer of type atomic_t 216 * @i: integer value to add 217 * 218 * Atomically adds @i to @v and returns true 219 * if the result is negative, or false when 220 * result is greater than or equal to zero. 221 */ 222 #define atomic_add_negative(i,v) (atomic_add_return((i),(v)) < 0) 223 224 #define atomic_cmpxchg(v, o, n) ((int)cmpxchg(&((v)->counter), (o), (n))) 225 #define atomic_xchg(v, new) (xchg(&((v)->counter), new)) 226 227 /** 228 * __atomic_add_unless - add unless the number is a given value 229 * @v: pointer of type atomic_t 230 * @a: the amount to add to v... 231 * @u: ...unless v is equal to u. 232 * 233 * Atomically adds @a to @v, so long as it was not @u. 234 * Returns the old value of @v. 235 */ 236 static __inline__ int __atomic_add_unless(atomic_t *v, int a, int u) 237 { 238 int c, old; 239 c = atomic_read(v); 240 for (;;) { 241 if (unlikely(c == (u))) 242 break; 243 old = atomic_cmpxchg((v), c, c + (a)); 244 if (likely(old == c)) 245 break; 246 c = old; 247 } 248 return c; 249 } 250 251 252 static inline void atomic_clear_mask(unsigned int mask, atomic_t *v) 253 { 254 unsigned int all_f = -1; 255 unsigned int vval; 256 257 __asm__ __volatile__( 258 "rsil a15,"__stringify(LOCKLEVEL)"\n\t" 259 "l32i %0, %2, 0 \n\t" 260 "xor %1, %4, %3 \n\t" 261 "and %0, %0, %4 \n\t" 262 "s32i %0, %2, 0 \n\t" 263 "wsr a15, "__stringify(PS)" \n\t" 264 "rsync \n" 265 : "=&a" (vval), "=a" (mask) 266 : "a" (v), "a" (all_f), "1" (mask) 267 : "a15", "memory" 268 ); 269 } 270 271 static inline void atomic_set_mask(unsigned int mask, atomic_t *v) 272 { 273 unsigned int vval; 274 275 __asm__ __volatile__( 276 "rsil a15,"__stringify(LOCKLEVEL)"\n\t" 277 "l32i %0, %2, 0 \n\t" 278 "or %0, %0, %1 \n\t" 279 "s32i %0, %2, 0 \n\t" 280 "wsr a15, "__stringify(PS)" \n\t" 281 "rsync \n" 282 : "=&a" (vval) 283 : "a" (mask), "a" (v) 284 : "a15", "memory" 285 ); 286 } 287 288 /* Atomic operations are already serializing */ 289 #define smp_mb__before_atomic_dec() barrier() 290 #define smp_mb__after_atomic_dec() barrier() 291 #define smp_mb__before_atomic_inc() barrier() 292 #define smp_mb__after_atomic_inc() barrier() 293 294 #endif /* __KERNEL__ */ 295 296 #endif /* _XTENSA_ATOMIC_H */ 297 298