futex.h 3.1 KB

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  1. #ifndef _ASM_FUTEX_H
  2. #define _ASM_FUTEX_H
  3. #include <linux/futex.h>
  4. #include <asm/errno.h>
  5. #include <asm/system.h>
  6. #include <asm/uaccess.h>
  7. #define __futex_atomic_op1(insn, ret, oldval, uaddr, oparg) \
  8. do { \
  9. register unsigned long r8 __asm ("r8") = 0; \
  10. __asm__ __volatile__( \
  11. " mf;; \n" \
  12. "[1:] " insn ";; \n" \
  13. " .xdata4 \"__ex_table\", 1b-., 2f-. \n" \
  14. "[2:]" \
  15. : "+r" (r8), "=r" (oldval) \
  16. : "r" (uaddr), "r" (oparg) \
  17. : "memory"); \
  18. ret = r8; \
  19. } while (0)
  20. #define __futex_atomic_op2(insn, ret, oldval, uaddr, oparg) \
  21. do { \
  22. register unsigned long r8 __asm ("r8") = 0; \
  23. int val, newval; \
  24. do { \
  25. __asm__ __volatile__( \
  26. " mf;; \n" \
  27. "[1:] ld4 %3=[%4];; \n" \
  28. " mov %2=%3 \n" \
  29. insn ";; \n" \
  30. " mov ar.ccv=%2;; \n" \
  31. "[2:] cmpxchg4.acq %1=[%4],%3,ar.ccv;; \n" \
  32. " .xdata4 \"__ex_table\", 1b-., 3f-.\n" \
  33. " .xdata4 \"__ex_table\", 2b-., 3f-.\n" \
  34. "[3:]" \
  35. : "+r" (r8), "=r" (val), "=&r" (oldval), \
  36. "=&r" (newval) \
  37. : "r" (uaddr), "r" (oparg) \
  38. : "memory"); \
  39. if (unlikely (r8)) \
  40. break; \
  41. } while (unlikely (val != oldval)); \
  42. ret = r8; \
  43. } while (0)
  44. static inline int
  45. futex_atomic_op_inuser (int encoded_op, int __user *uaddr)
  46. {
  47. int op = (encoded_op >> 28) & 7;
  48. int cmp = (encoded_op >> 24) & 15;
  49. int oparg = (encoded_op << 8) >> 20;
  50. int cmparg = (encoded_op << 20) >> 20;
  51. int oldval = 0, ret;
  52. if (encoded_op & (FUTEX_OP_OPARG_SHIFT << 28))
  53. oparg = 1 << oparg;
  54. if (! access_ok (VERIFY_WRITE, uaddr, sizeof(int)))
  55. return -EFAULT;
  56. pagefault_disable();
  57. switch (op) {
  58. case FUTEX_OP_SET:
  59. __futex_atomic_op1("xchg4 %1=[%2],%3", ret, oldval, uaddr,
  60. oparg);
  61. break;
  62. case FUTEX_OP_ADD:
  63. __futex_atomic_op2("add %3=%3,%5", ret, oldval, uaddr, oparg);
  64. break;
  65. case FUTEX_OP_OR:
  66. __futex_atomic_op2("or %3=%3,%5", ret, oldval, uaddr, oparg);
  67. break;
  68. case FUTEX_OP_ANDN:
  69. __futex_atomic_op2("and %3=%3,%5", ret, oldval, uaddr,
  70. ~oparg);
  71. break;
  72. case FUTEX_OP_XOR:
  73. __futex_atomic_op2("xor %3=%3,%5", ret, oldval, uaddr, oparg);
  74. break;
  75. default:
  76. ret = -ENOSYS;
  77. }
  78. pagefault_enable();
  79. if (!ret) {
  80. switch (cmp) {
  81. case FUTEX_OP_CMP_EQ: ret = (oldval == cmparg); break;
  82. case FUTEX_OP_CMP_NE: ret = (oldval != cmparg); break;
  83. case FUTEX_OP_CMP_LT: ret = (oldval < cmparg); break;
  84. case FUTEX_OP_CMP_GE: ret = (oldval >= cmparg); break;
  85. case FUTEX_OP_CMP_LE: ret = (oldval <= cmparg); break;
  86. case FUTEX_OP_CMP_GT: ret = (oldval > cmparg); break;
  87. default: ret = -ENOSYS;
  88. }
  89. }
  90. return ret;
  91. }
  92. static inline int
  93. futex_atomic_cmpxchg_inatomic(int __user *uaddr, int oldval, int newval)
  94. {
  95. if (!access_ok(VERIFY_WRITE, uaddr, sizeof(int)))
  96. return -EFAULT;
  97. {
  98. register unsigned long r8 __asm ("r8");
  99. __asm__ __volatile__(
  100. " mf;; \n"
  101. " mov ar.ccv=%3;; \n"
  102. "[1:] cmpxchg4.acq %0=[%1],%2,ar.ccv \n"
  103. " .xdata4 \"__ex_table\", 1b-., 2f-. \n"
  104. "[2:]"
  105. : "=r" (r8)
  106. : "r" (uaddr), "r" (newval),
  107. "rO" ((long) (unsigned) oldval)
  108. : "memory");
  109. return r8;
  110. }
  111. }
  112. #endif /* _ASM_FUTEX_H */