percpu.h 6.3 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186
  1. #ifndef __ARCH_S390_PERCPU__
  2. #define __ARCH_S390_PERCPU__
  3. #include <linux/preempt.h>
  4. #include <asm/cmpxchg.h>
  5. /*
  6. * s390 uses its own implementation for per cpu data, the offset of
  7. * the cpu local data area is cached in the cpu's lowcore memory.
  8. */
  9. #define __my_cpu_offset S390_lowcore.percpu_offset
  10. /*
  11. * For 64 bit module code, the module may be more than 4G above the
  12. * per cpu area, use weak definitions to force the compiler to
  13. * generate external references.
  14. */
  15. #if defined(CONFIG_SMP) && defined(MODULE)
  16. #define ARCH_NEEDS_WEAK_PER_CPU
  17. #endif
  18. /*
  19. * We use a compare-and-swap loop since that uses less cpu cycles than
  20. * disabling and enabling interrupts like the generic variant would do.
  21. */
  22. #define arch_this_cpu_to_op_simple(pcp, val, op) \
  23. ({ \
  24. typedef typeof(pcp) pcp_op_T__; \
  25. pcp_op_T__ old__, new__, prev__; \
  26. pcp_op_T__ *ptr__; \
  27. preempt_disable(); \
  28. ptr__ = raw_cpu_ptr(&(pcp)); \
  29. prev__ = *ptr__; \
  30. do { \
  31. old__ = prev__; \
  32. new__ = old__ op (val); \
  33. prev__ = cmpxchg(ptr__, old__, new__); \
  34. } while (prev__ != old__); \
  35. preempt_enable(); \
  36. new__; \
  37. })
  38. #define this_cpu_add_1(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  39. #define this_cpu_add_2(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  40. #define this_cpu_add_return_1(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  41. #define this_cpu_add_return_2(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  42. #define this_cpu_and_1(pcp, val) arch_this_cpu_to_op_simple(pcp, val, &)
  43. #define this_cpu_and_2(pcp, val) arch_this_cpu_to_op_simple(pcp, val, &)
  44. #define this_cpu_or_1(pcp, val) arch_this_cpu_to_op_simple(pcp, val, |)
  45. #define this_cpu_or_2(pcp, val) arch_this_cpu_to_op_simple(pcp, val, |)
  46. #ifndef CONFIG_HAVE_MARCH_Z196_FEATURES
  47. #define this_cpu_add_4(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  48. #define this_cpu_add_8(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  49. #define this_cpu_add_return_4(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  50. #define this_cpu_add_return_8(pcp, val) arch_this_cpu_to_op_simple(pcp, val, +)
  51. #define this_cpu_and_4(pcp, val) arch_this_cpu_to_op_simple(pcp, val, &)
  52. #define this_cpu_and_8(pcp, val) arch_this_cpu_to_op_simple(pcp, val, &)
  53. #define this_cpu_or_4(pcp, val) arch_this_cpu_to_op_simple(pcp, val, |)
  54. #define this_cpu_or_8(pcp, val) arch_this_cpu_to_op_simple(pcp, val, |)
  55. #else /* CONFIG_HAVE_MARCH_Z196_FEATURES */
  56. #define arch_this_cpu_add(pcp, val, op1, op2, szcast) \
  57. { \
  58. typedef typeof(pcp) pcp_op_T__; \
  59. pcp_op_T__ val__ = (val); \
  60. pcp_op_T__ old__, *ptr__; \
  61. preempt_disable(); \
  62. ptr__ = raw_cpu_ptr(&(pcp)); \
  63. if (__builtin_constant_p(val__) && \
  64. ((szcast)val__ > -129) && ((szcast)val__ < 128)) { \
  65. asm volatile( \
  66. op2 " %[ptr__],%[val__]\n" \
  67. : [ptr__] "+Q" (*ptr__) \
  68. : [val__] "i" ((szcast)val__) \
  69. : "cc"); \
  70. } else { \
  71. asm volatile( \
  72. op1 " %[old__],%[val__],%[ptr__]\n" \
  73. : [old__] "=d" (old__), [ptr__] "+Q" (*ptr__) \
  74. : [val__] "d" (val__) \
  75. : "cc"); \
  76. } \
  77. preempt_enable(); \
  78. }
  79. #define this_cpu_add_4(pcp, val) arch_this_cpu_add(pcp, val, "laa", "asi", int)
  80. #define this_cpu_add_8(pcp, val) arch_this_cpu_add(pcp, val, "laag", "agsi", long)
  81. #define arch_this_cpu_add_return(pcp, val, op) \
  82. ({ \
  83. typedef typeof(pcp) pcp_op_T__; \
  84. pcp_op_T__ val__ = (val); \
  85. pcp_op_T__ old__, *ptr__; \
  86. preempt_disable(); \
  87. ptr__ = raw_cpu_ptr(&(pcp)); \
  88. asm volatile( \
  89. op " %[old__],%[val__],%[ptr__]\n" \
  90. : [old__] "=d" (old__), [ptr__] "+Q" (*ptr__) \
  91. : [val__] "d" (val__) \
  92. : "cc"); \
  93. preempt_enable(); \
  94. old__ + val__; \
  95. })
  96. #define this_cpu_add_return_4(pcp, val) arch_this_cpu_add_return(pcp, val, "laa")
  97. #define this_cpu_add_return_8(pcp, val) arch_this_cpu_add_return(pcp, val, "laag")
  98. #define arch_this_cpu_to_op(pcp, val, op) \
  99. { \
  100. typedef typeof(pcp) pcp_op_T__; \
  101. pcp_op_T__ val__ = (val); \
  102. pcp_op_T__ old__, *ptr__; \
  103. preempt_disable(); \
  104. ptr__ = raw_cpu_ptr(&(pcp)); \
  105. asm volatile( \
  106. op " %[old__],%[val__],%[ptr__]\n" \
  107. : [old__] "=d" (old__), [ptr__] "+Q" (*ptr__) \
  108. : [val__] "d" (val__) \
  109. : "cc"); \
  110. preempt_enable(); \
  111. }
  112. #define this_cpu_and_4(pcp, val) arch_this_cpu_to_op(pcp, val, "lan")
  113. #define this_cpu_and_8(pcp, val) arch_this_cpu_to_op(pcp, val, "lang")
  114. #define this_cpu_or_4(pcp, val) arch_this_cpu_to_op(pcp, val, "lao")
  115. #define this_cpu_or_8(pcp, val) arch_this_cpu_to_op(pcp, val, "laog")
  116. #endif /* CONFIG_HAVE_MARCH_Z196_FEATURES */
  117. #define arch_this_cpu_cmpxchg(pcp, oval, nval) \
  118. ({ \
  119. typedef typeof(pcp) pcp_op_T__; \
  120. pcp_op_T__ ret__; \
  121. pcp_op_T__ *ptr__; \
  122. preempt_disable(); \
  123. ptr__ = raw_cpu_ptr(&(pcp)); \
  124. ret__ = cmpxchg(ptr__, oval, nval); \
  125. preempt_enable(); \
  126. ret__; \
  127. })
  128. #define this_cpu_cmpxchg_1(pcp, oval, nval) arch_this_cpu_cmpxchg(pcp, oval, nval)
  129. #define this_cpu_cmpxchg_2(pcp, oval, nval) arch_this_cpu_cmpxchg(pcp, oval, nval)
  130. #define this_cpu_cmpxchg_4(pcp, oval, nval) arch_this_cpu_cmpxchg(pcp, oval, nval)
  131. #define this_cpu_cmpxchg_8(pcp, oval, nval) arch_this_cpu_cmpxchg(pcp, oval, nval)
  132. #define arch_this_cpu_xchg(pcp, nval) \
  133. ({ \
  134. typeof(pcp) *ptr__; \
  135. typeof(pcp) ret__; \
  136. preempt_disable(); \
  137. ptr__ = raw_cpu_ptr(&(pcp)); \
  138. ret__ = xchg(ptr__, nval); \
  139. preempt_enable(); \
  140. ret__; \
  141. })
  142. #define this_cpu_xchg_1(pcp, nval) arch_this_cpu_xchg(pcp, nval)
  143. #define this_cpu_xchg_2(pcp, nval) arch_this_cpu_xchg(pcp, nval)
  144. #define this_cpu_xchg_4(pcp, nval) arch_this_cpu_xchg(pcp, nval)
  145. #define this_cpu_xchg_8(pcp, nval) arch_this_cpu_xchg(pcp, nval)
  146. #define arch_this_cpu_cmpxchg_double(pcp1, pcp2, o1, o2, n1, n2) \
  147. ({ \
  148. typeof(pcp1) o1__ = (o1), n1__ = (n1); \
  149. typeof(pcp2) o2__ = (o2), n2__ = (n2); \
  150. typeof(pcp1) *p1__; \
  151. typeof(pcp2) *p2__; \
  152. int ret__; \
  153. preempt_disable(); \
  154. p1__ = raw_cpu_ptr(&(pcp1)); \
  155. p2__ = raw_cpu_ptr(&(pcp2)); \
  156. ret__ = __cmpxchg_double(p1__, p2__, o1__, o2__, n1__, n2__); \
  157. preempt_enable(); \
  158. ret__; \
  159. })
  160. #define this_cpu_cmpxchg_double_8 arch_this_cpu_cmpxchg_double
  161. #include <asm-generic/percpu.h>
  162. #endif /* __ARCH_S390_PERCPU__ */