irq.c 6.3 KB

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  1. /*
  2. * Common interrupt code for 32 and 64 bit
  3. */
  4. #include <linux/cpu.h>
  5. #include <linux/interrupt.h>
  6. #include <linux/kernel_stat.h>
  7. #include <linux/seq_file.h>
  8. #include <linux/smp.h>
  9. #include <linux/ftrace.h>
  10. #include <asm/apic.h>
  11. #include <asm/io_apic.h>
  12. #include <asm/irq.h>
  13. #include <asm/idle.h>
  14. #include <asm/hw_irq.h>
  15. atomic_t irq_err_count;
  16. /* Function pointer for generic interrupt vector handling */
  17. void (*generic_interrupt_extension)(void) = NULL;
  18. /*
  19. * 'what should we do if we get a hw irq event on an illegal vector'.
  20. * each architecture has to answer this themselves.
  21. */
  22. void ack_bad_irq(unsigned int irq)
  23. {
  24. if (printk_ratelimit())
  25. pr_err("unexpected IRQ trap at vector %02x\n", irq);
  26. /*
  27. * Currently unexpected vectors happen only on SMP and APIC.
  28. * We _must_ ack these because every local APIC has only N
  29. * irq slots per priority level, and a 'hanging, unacked' IRQ
  30. * holds up an irq slot - in excessive cases (when multiple
  31. * unexpected vectors occur) that might lock up the APIC
  32. * completely.
  33. * But only ack when the APIC is enabled -AK
  34. */
  35. ack_APIC_irq();
  36. }
  37. #define irq_stats(x) (&per_cpu(irq_stat, x))
  38. /*
  39. * /proc/interrupts printing:
  40. */
  41. static int show_other_interrupts(struct seq_file *p, int prec)
  42. {
  43. int j;
  44. seq_printf(p, "%*s: ", prec, "NMI");
  45. for_each_online_cpu(j)
  46. seq_printf(p, "%10u ", irq_stats(j)->__nmi_count);
  47. seq_printf(p, " Non-maskable interrupts\n");
  48. #ifdef CONFIG_X86_LOCAL_APIC
  49. seq_printf(p, "%*s: ", prec, "LOC");
  50. for_each_online_cpu(j)
  51. seq_printf(p, "%10u ", irq_stats(j)->apic_timer_irqs);
  52. seq_printf(p, " Local timer interrupts\n");
  53. seq_printf(p, "%*s: ", prec, "SPU");
  54. for_each_online_cpu(j)
  55. seq_printf(p, "%10u ", irq_stats(j)->irq_spurious_count);
  56. seq_printf(p, " Spurious interrupts\n");
  57. seq_printf(p, "%*s: ", prec, "CNT");
  58. for_each_online_cpu(j)
  59. seq_printf(p, "%10u ", irq_stats(j)->apic_perf_irqs);
  60. seq_printf(p, " Performance counter interrupts\n");
  61. seq_printf(p, "%*s: ", prec, "PND");
  62. for_each_online_cpu(j)
  63. seq_printf(p, "%10u ", irq_stats(j)->apic_pending_irqs);
  64. seq_printf(p, " Performance pending work\n");
  65. #endif
  66. if (generic_interrupt_extension) {
  67. seq_printf(p, "%*s: ", prec, "PLT");
  68. for_each_online_cpu(j)
  69. seq_printf(p, "%10u ", irq_stats(j)->generic_irqs);
  70. seq_printf(p, " Platform interrupts\n");
  71. }
  72. #ifdef CONFIG_SMP
  73. seq_printf(p, "%*s: ", prec, "RES");
  74. for_each_online_cpu(j)
  75. seq_printf(p, "%10u ", irq_stats(j)->irq_resched_count);
  76. seq_printf(p, " Rescheduling interrupts\n");
  77. seq_printf(p, "%*s: ", prec, "CAL");
  78. for_each_online_cpu(j)
  79. seq_printf(p, "%10u ", irq_stats(j)->irq_call_count);
  80. seq_printf(p, " Function call interrupts\n");
  81. seq_printf(p, "%*s: ", prec, "TLB");
  82. for_each_online_cpu(j)
  83. seq_printf(p, "%10u ", irq_stats(j)->irq_tlb_count);
  84. seq_printf(p, " TLB shootdowns\n");
  85. #endif
  86. #ifdef CONFIG_X86_MCE
  87. seq_printf(p, "%*s: ", prec, "TRM");
  88. for_each_online_cpu(j)
  89. seq_printf(p, "%10u ", irq_stats(j)->irq_thermal_count);
  90. seq_printf(p, " Thermal event interrupts\n");
  91. # ifdef CONFIG_X86_64
  92. seq_printf(p, "%*s: ", prec, "THR");
  93. for_each_online_cpu(j)
  94. seq_printf(p, "%10u ", irq_stats(j)->irq_threshold_count);
  95. seq_printf(p, " Threshold APIC interrupts\n");
  96. # endif
  97. #endif
  98. seq_printf(p, "%*s: %10u\n", prec, "ERR", atomic_read(&irq_err_count));
  99. #if defined(CONFIG_X86_IO_APIC)
  100. seq_printf(p, "%*s: %10u\n", prec, "MIS", atomic_read(&irq_mis_count));
  101. #endif
  102. return 0;
  103. }
  104. int show_interrupts(struct seq_file *p, void *v)
  105. {
  106. unsigned long flags, any_count = 0;
  107. int i = *(loff_t *) v, j, prec;
  108. struct irqaction *action;
  109. struct irq_desc *desc;
  110. if (i > nr_irqs)
  111. return 0;
  112. for (prec = 3, j = 1000; prec < 10 && j <= nr_irqs; ++prec)
  113. j *= 10;
  114. if (i == nr_irqs)
  115. return show_other_interrupts(p, prec);
  116. /* print header */
  117. if (i == 0) {
  118. seq_printf(p, "%*s", prec + 8, "");
  119. for_each_online_cpu(j)
  120. seq_printf(p, "CPU%-8d", j);
  121. seq_putc(p, '\n');
  122. }
  123. desc = irq_to_desc(i);
  124. if (!desc)
  125. return 0;
  126. spin_lock_irqsave(&desc->lock, flags);
  127. for_each_online_cpu(j)
  128. any_count |= kstat_irqs_cpu(i, j);
  129. action = desc->action;
  130. if (!action && !any_count)
  131. goto out;
  132. seq_printf(p, "%*d: ", prec, i);
  133. for_each_online_cpu(j)
  134. seq_printf(p, "%10u ", kstat_irqs_cpu(i, j));
  135. seq_printf(p, " %8s", desc->chip->name);
  136. seq_printf(p, "-%-8s", desc->name);
  137. if (action) {
  138. seq_printf(p, " %s", action->name);
  139. while ((action = action->next) != NULL)
  140. seq_printf(p, ", %s", action->name);
  141. }
  142. seq_putc(p, '\n');
  143. out:
  144. spin_unlock_irqrestore(&desc->lock, flags);
  145. return 0;
  146. }
  147. /*
  148. * /proc/stat helpers
  149. */
  150. u64 arch_irq_stat_cpu(unsigned int cpu)
  151. {
  152. u64 sum = irq_stats(cpu)->__nmi_count;
  153. #ifdef CONFIG_X86_LOCAL_APIC
  154. sum += irq_stats(cpu)->apic_timer_irqs;
  155. sum += irq_stats(cpu)->irq_spurious_count;
  156. sum += irq_stats(cpu)->apic_perf_irqs;
  157. sum += irq_stats(cpu)->apic_pending_irqs;
  158. #endif
  159. if (generic_interrupt_extension)
  160. sum += irq_stats(cpu)->generic_irqs;
  161. #ifdef CONFIG_SMP
  162. sum += irq_stats(cpu)->irq_resched_count;
  163. sum += irq_stats(cpu)->irq_call_count;
  164. sum += irq_stats(cpu)->irq_tlb_count;
  165. #endif
  166. #ifdef CONFIG_X86_MCE
  167. sum += irq_stats(cpu)->irq_thermal_count;
  168. # ifdef CONFIG_X86_64
  169. sum += irq_stats(cpu)->irq_threshold_count;
  170. # endif
  171. #endif
  172. return sum;
  173. }
  174. u64 arch_irq_stat(void)
  175. {
  176. u64 sum = atomic_read(&irq_err_count);
  177. #ifdef CONFIG_X86_IO_APIC
  178. sum += atomic_read(&irq_mis_count);
  179. #endif
  180. return sum;
  181. }
  182. /*
  183. * do_IRQ handles all normal device IRQ's (the special
  184. * SMP cross-CPU interrupts have their own specific
  185. * handlers).
  186. */
  187. unsigned int __irq_entry do_IRQ(struct pt_regs *regs)
  188. {
  189. struct pt_regs *old_regs = set_irq_regs(regs);
  190. /* high bit used in ret_from_ code */
  191. unsigned vector = ~regs->orig_ax;
  192. unsigned irq;
  193. exit_idle();
  194. irq_enter();
  195. irq = __get_cpu_var(vector_irq)[vector];
  196. if (!handle_irq(irq, regs)) {
  197. ack_APIC_irq();
  198. if (printk_ratelimit())
  199. pr_emerg("%s: %d.%d No irq handler for vector (irq %d)\n",
  200. __func__, smp_processor_id(), vector, irq);
  201. }
  202. irq_exit();
  203. set_irq_regs(old_regs);
  204. return 1;
  205. }
  206. /*
  207. * Handler for GENERIC_INTERRUPT_VECTOR.
  208. */
  209. void smp_generic_interrupt(struct pt_regs *regs)
  210. {
  211. struct pt_regs *old_regs = set_irq_regs(regs);
  212. ack_APIC_irq();
  213. exit_idle();
  214. irq_enter();
  215. inc_irq_stat(generic_irqs);
  216. if (generic_interrupt_extension)
  217. generic_interrupt_extension();
  218. irq_exit();
  219. set_irq_regs(old_regs);
  220. }
  221. EXPORT_SYMBOL_GPL(vector_used_by_percpu_irq);