preempt.h 8.5 KB

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  1. #ifndef __LINUX_PREEMPT_H
  2. #define __LINUX_PREEMPT_H
  3. /*
  4. * include/linux/preempt.h - macros for accessing and manipulating
  5. * preempt_count (used for kernel preemption, interrupt count, etc.)
  6. */
  7. #include <linux/linkage.h>
  8. #include <linux/list.h>
  9. /*
  10. * We put the hardirq and softirq counter into the preemption
  11. * counter. The bitmask has the following meaning:
  12. *
  13. * - bits 0-7 are the preemption count (max preemption depth: 256)
  14. * - bits 8-15 are the softirq count (max # of softirqs: 256)
  15. *
  16. * The hardirq count could in theory be the same as the number of
  17. * interrupts in the system, but we run all interrupt handlers with
  18. * interrupts disabled, so we cannot have nesting interrupts. Though
  19. * there are a few palaeontologic drivers which reenable interrupts in
  20. * the handler, so we need more than one bit here.
  21. *
  22. * PREEMPT_MASK: 0x000000ff
  23. * SOFTIRQ_MASK: 0x0000ff00
  24. * HARDIRQ_MASK: 0x000f0000
  25. * NMI_MASK: 0x00100000
  26. * PREEMPT_ACTIVE: 0x00200000
  27. * PREEMPT_NEED_RESCHED: 0x80000000
  28. */
  29. #define PREEMPT_BITS 8
  30. #define SOFTIRQ_BITS 8
  31. #define HARDIRQ_BITS 4
  32. #define NMI_BITS 1
  33. #define PREEMPT_SHIFT 0
  34. #define SOFTIRQ_SHIFT (PREEMPT_SHIFT + PREEMPT_BITS)
  35. #define HARDIRQ_SHIFT (SOFTIRQ_SHIFT + SOFTIRQ_BITS)
  36. #define NMI_SHIFT (HARDIRQ_SHIFT + HARDIRQ_BITS)
  37. #define __IRQ_MASK(x) ((1UL << (x))-1)
  38. #define PREEMPT_MASK (__IRQ_MASK(PREEMPT_BITS) << PREEMPT_SHIFT)
  39. #define SOFTIRQ_MASK (__IRQ_MASK(SOFTIRQ_BITS) << SOFTIRQ_SHIFT)
  40. #define HARDIRQ_MASK (__IRQ_MASK(HARDIRQ_BITS) << HARDIRQ_SHIFT)
  41. #define NMI_MASK (__IRQ_MASK(NMI_BITS) << NMI_SHIFT)
  42. #define PREEMPT_OFFSET (1UL << PREEMPT_SHIFT)
  43. #define SOFTIRQ_OFFSET (1UL << SOFTIRQ_SHIFT)
  44. #define HARDIRQ_OFFSET (1UL << HARDIRQ_SHIFT)
  45. #define NMI_OFFSET (1UL << NMI_SHIFT)
  46. #define SOFTIRQ_DISABLE_OFFSET (2 * SOFTIRQ_OFFSET)
  47. #define PREEMPT_ACTIVE_BITS 1
  48. #define PREEMPT_ACTIVE_SHIFT (NMI_SHIFT + NMI_BITS)
  49. #define PREEMPT_ACTIVE (__IRQ_MASK(PREEMPT_ACTIVE_BITS) << PREEMPT_ACTIVE_SHIFT)
  50. /* We use the MSB mostly because its available */
  51. #define PREEMPT_NEED_RESCHED 0x80000000
  52. /* preempt_count() and related functions, depends on PREEMPT_NEED_RESCHED */
  53. #include <asm/preempt.h>
  54. #define hardirq_count() (preempt_count() & HARDIRQ_MASK)
  55. #define softirq_count() (preempt_count() & SOFTIRQ_MASK)
  56. #define irq_count() (preempt_count() & (HARDIRQ_MASK | SOFTIRQ_MASK \
  57. | NMI_MASK))
  58. /*
  59. * Are we doing bottom half or hardware interrupt processing?
  60. * Are we in a softirq context? Interrupt context?
  61. * in_softirq - Are we currently processing softirq or have bh disabled?
  62. * in_serving_softirq - Are we currently processing softirq?
  63. */
  64. #define in_irq() (hardirq_count())
  65. #define in_softirq() (softirq_count())
  66. #define in_interrupt() (irq_count())
  67. #define in_serving_softirq() (softirq_count() & SOFTIRQ_OFFSET)
  68. /*
  69. * Are we in NMI context?
  70. */
  71. #define in_nmi() (preempt_count() & NMI_MASK)
  72. #if defined(CONFIG_PREEMPT_COUNT)
  73. # define PREEMPT_DISABLE_OFFSET 1
  74. #else
  75. # define PREEMPT_DISABLE_OFFSET 0
  76. #endif
  77. /*
  78. * The preempt_count offset needed for things like:
  79. *
  80. * spin_lock_bh()
  81. *
  82. * Which need to disable both preemption (CONFIG_PREEMPT_COUNT) and
  83. * softirqs, such that unlock sequences of:
  84. *
  85. * spin_unlock();
  86. * local_bh_enable();
  87. *
  88. * Work as expected.
  89. */
  90. #define SOFTIRQ_LOCK_OFFSET (SOFTIRQ_DISABLE_OFFSET + PREEMPT_DISABLE_OFFSET)
  91. /*
  92. * Are we running in atomic context? WARNING: this macro cannot
  93. * always detect atomic context; in particular, it cannot know about
  94. * held spinlocks in non-preemptible kernels. Thus it should not be
  95. * used in the general case to determine whether sleeping is possible.
  96. * Do not use in_atomic() in driver code.
  97. */
  98. #define in_atomic() (preempt_count() != 0)
  99. /*
  100. * Check whether we were atomic before we did preempt_disable():
  101. * (used by the scheduler)
  102. */
  103. #define in_atomic_preempt_off() \
  104. ((preempt_count() & ~PREEMPT_ACTIVE) != PREEMPT_DISABLE_OFFSET)
  105. #if defined(CONFIG_DEBUG_PREEMPT) || defined(CONFIG_PREEMPT_TRACER)
  106. extern void preempt_count_add(int val);
  107. extern void preempt_count_sub(int val);
  108. #define preempt_count_dec_and_test() ({ preempt_count_sub(1); should_resched(); })
  109. #else
  110. #define preempt_count_add(val) __preempt_count_add(val)
  111. #define preempt_count_sub(val) __preempt_count_sub(val)
  112. #define preempt_count_dec_and_test() __preempt_count_dec_and_test()
  113. #endif
  114. #define __preempt_count_inc() __preempt_count_add(1)
  115. #define __preempt_count_dec() __preempt_count_sub(1)
  116. #define preempt_count_inc() preempt_count_add(1)
  117. #define preempt_count_dec() preempt_count_sub(1)
  118. #define preempt_active_enter() \
  119. do { \
  120. preempt_count_add(PREEMPT_ACTIVE + PREEMPT_DISABLE_OFFSET); \
  121. barrier(); \
  122. } while (0)
  123. #define preempt_active_exit() \
  124. do { \
  125. barrier(); \
  126. preempt_count_sub(PREEMPT_ACTIVE + PREEMPT_DISABLE_OFFSET); \
  127. } while (0)
  128. #ifdef CONFIG_PREEMPT_COUNT
  129. #define preempt_disable() \
  130. do { \
  131. preempt_count_inc(); \
  132. barrier(); \
  133. } while (0)
  134. #define sched_preempt_enable_no_resched() \
  135. do { \
  136. barrier(); \
  137. preempt_count_dec(); \
  138. } while (0)
  139. #define preempt_enable_no_resched() sched_preempt_enable_no_resched()
  140. #define preemptible() (preempt_count() == 0 && !irqs_disabled())
  141. #ifdef CONFIG_PREEMPT
  142. #define preempt_enable() \
  143. do { \
  144. barrier(); \
  145. if (unlikely(preempt_count_dec_and_test())) \
  146. __preempt_schedule(); \
  147. } while (0)
  148. #define preempt_check_resched() \
  149. do { \
  150. if (should_resched()) \
  151. __preempt_schedule(); \
  152. } while (0)
  153. #else
  154. #define preempt_enable() \
  155. do { \
  156. barrier(); \
  157. preempt_count_dec(); \
  158. } while (0)
  159. #define preempt_check_resched() do { } while (0)
  160. #endif
  161. #define preempt_disable_notrace() \
  162. do { \
  163. __preempt_count_inc(); \
  164. barrier(); \
  165. } while (0)
  166. #define preempt_enable_no_resched_notrace() \
  167. do { \
  168. barrier(); \
  169. __preempt_count_dec(); \
  170. } while (0)
  171. #ifdef CONFIG_PREEMPT
  172. #define preempt_enable_notrace() \
  173. do { \
  174. barrier(); \
  175. if (unlikely(__preempt_count_dec_and_test())) \
  176. __preempt_schedule_notrace(); \
  177. } while (0)
  178. #else
  179. #define preempt_enable_notrace() \
  180. do { \
  181. barrier(); \
  182. __preempt_count_dec(); \
  183. } while (0)
  184. #endif
  185. #else /* !CONFIG_PREEMPT_COUNT */
  186. /*
  187. * Even if we don't have any preemption, we need preempt disable/enable
  188. * to be barriers, so that we don't have things like get_user/put_user
  189. * that can cause faults and scheduling migrate into our preempt-protected
  190. * region.
  191. */
  192. #define preempt_disable() barrier()
  193. #define sched_preempt_enable_no_resched() barrier()
  194. #define preempt_enable_no_resched() barrier()
  195. #define preempt_enable() barrier()
  196. #define preempt_check_resched() do { } while (0)
  197. #define preempt_disable_notrace() barrier()
  198. #define preempt_enable_no_resched_notrace() barrier()
  199. #define preempt_enable_notrace() barrier()
  200. #define preemptible() 0
  201. #endif /* CONFIG_PREEMPT_COUNT */
  202. #ifdef MODULE
  203. /*
  204. * Modules have no business playing preemption tricks.
  205. */
  206. #undef sched_preempt_enable_no_resched
  207. #undef preempt_enable_no_resched
  208. #undef preempt_enable_no_resched_notrace
  209. #undef preempt_check_resched
  210. #endif
  211. #define preempt_set_need_resched() \
  212. do { \
  213. set_preempt_need_resched(); \
  214. } while (0)
  215. #define preempt_fold_need_resched() \
  216. do { \
  217. if (tif_need_resched()) \
  218. set_preempt_need_resched(); \
  219. } while (0)
  220. #ifdef CONFIG_PREEMPT_NOTIFIERS
  221. struct preempt_notifier;
  222. /**
  223. * preempt_ops - notifiers called when a task is preempted and rescheduled
  224. * @sched_in: we're about to be rescheduled:
  225. * notifier: struct preempt_notifier for the task being scheduled
  226. * cpu: cpu we're scheduled on
  227. * @sched_out: we've just been preempted
  228. * notifier: struct preempt_notifier for the task being preempted
  229. * next: the task that's kicking us out
  230. *
  231. * Please note that sched_in and out are called under different
  232. * contexts. sched_out is called with rq lock held and irq disabled
  233. * while sched_in is called without rq lock and irq enabled. This
  234. * difference is intentional and depended upon by its users.
  235. */
  236. struct preempt_ops {
  237. void (*sched_in)(struct preempt_notifier *notifier, int cpu);
  238. void (*sched_out)(struct preempt_notifier *notifier,
  239. struct task_struct *next);
  240. };
  241. /**
  242. * preempt_notifier - key for installing preemption notifiers
  243. * @link: internal use
  244. * @ops: defines the notifier functions to be called
  245. *
  246. * Usually used in conjunction with container_of().
  247. */
  248. struct preempt_notifier {
  249. struct hlist_node link;
  250. struct preempt_ops *ops;
  251. };
  252. void preempt_notifier_register(struct preempt_notifier *notifier);
  253. void preempt_notifier_unregister(struct preempt_notifier *notifier);
  254. static inline void preempt_notifier_init(struct preempt_notifier *notifier,
  255. struct preempt_ops *ops)
  256. {
  257. INIT_HLIST_NODE(&notifier->link);
  258. notifier->ops = ops;
  259. }
  260. #endif
  261. #endif /* __LINUX_PREEMPT_H */