irqdesc.c 9.4 KB

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  1. /*
  2. * Copyright (C) 1992, 1998-2006 Linus Torvalds, Ingo Molnar
  3. * Copyright (C) 2005-2006, Thomas Gleixner, Russell King
  4. *
  5. * This file contains the interrupt descriptor management code
  6. *
  7. * Detailed information is available in Documentation/DocBook/genericirq
  8. *
  9. */
  10. #include <linux/irq.h>
  11. #include <linux/slab.h>
  12. #include <linux/module.h>
  13. #include <linux/interrupt.h>
  14. #include <linux/kernel_stat.h>
  15. #include <linux/radix-tree.h>
  16. #include <linux/bitmap.h>
  17. #include "internals.h"
  18. /*
  19. * lockdep: we want to handle all irq_desc locks as a single lock-class:
  20. */
  21. static struct lock_class_key irq_desc_lock_class;
  22. #if defined(CONFIG_SMP) && defined(CONFIG_GENERIC_HARDIRQS)
  23. static void __init init_irq_default_affinity(void)
  24. {
  25. alloc_cpumask_var(&irq_default_affinity, GFP_NOWAIT);
  26. cpumask_setall(irq_default_affinity);
  27. }
  28. #else
  29. static void __init init_irq_default_affinity(void)
  30. {
  31. }
  32. #endif
  33. #ifdef CONFIG_SMP
  34. static int alloc_masks(struct irq_desc *desc, gfp_t gfp, int node)
  35. {
  36. if (!zalloc_cpumask_var_node(&desc->irq_data.affinity, gfp, node))
  37. return -ENOMEM;
  38. #ifdef CONFIG_GENERIC_PENDING_IRQ
  39. if (!zalloc_cpumask_var_node(&desc->pending_mask, gfp, node)) {
  40. free_cpumask_var(desc->irq_data.affinity);
  41. return -ENOMEM;
  42. }
  43. #endif
  44. return 0;
  45. }
  46. static void desc_smp_init(struct irq_desc *desc, int node)
  47. {
  48. desc->irq_data.node = node;
  49. cpumask_copy(desc->irq_data.affinity, irq_default_affinity);
  50. #ifdef CONFIG_GENERIC_PENDING_IRQ
  51. cpumask_clear(desc->pending_mask);
  52. #endif
  53. }
  54. static inline int desc_node(struct irq_desc *desc)
  55. {
  56. return desc->irq_data.node;
  57. }
  58. #else
  59. static inline int
  60. alloc_masks(struct irq_desc *desc, gfp_t gfp, int node) { return 0; }
  61. static inline void desc_smp_init(struct irq_desc *desc, int node) { }
  62. static inline int desc_node(struct irq_desc *desc) { return 0; }
  63. #endif
  64. static void desc_set_defaults(unsigned int irq, struct irq_desc *desc, int node)
  65. {
  66. desc->irq_data.irq = irq;
  67. desc->irq_data.chip = &no_irq_chip;
  68. desc->irq_data.chip_data = NULL;
  69. desc->irq_data.handler_data = NULL;
  70. desc->irq_data.msi_desc = NULL;
  71. desc->status = IRQ_DEFAULT_INIT_FLAGS;
  72. desc->handle_irq = handle_bad_irq;
  73. desc->depth = 1;
  74. desc->irq_count = 0;
  75. desc->irqs_unhandled = 0;
  76. desc->name = NULL;
  77. memset(desc->kstat_irqs, 0, nr_cpu_ids * sizeof(*(desc->kstat_irqs)));
  78. desc_smp_init(desc, node);
  79. }
  80. int nr_irqs = NR_IRQS;
  81. EXPORT_SYMBOL_GPL(nr_irqs);
  82. static DEFINE_RAW_SPINLOCK(sparse_irq_lock);
  83. static DECLARE_BITMAP(allocated_irqs, NR_IRQS);
  84. #ifdef CONFIG_SPARSE_IRQ
  85. static RADIX_TREE(irq_desc_tree, GFP_ATOMIC);
  86. static void irq_insert_desc(unsigned int irq, struct irq_desc *desc)
  87. {
  88. radix_tree_insert(&irq_desc_tree, irq, desc);
  89. }
  90. struct irq_desc *irq_to_desc(unsigned int irq)
  91. {
  92. return radix_tree_lookup(&irq_desc_tree, irq);
  93. }
  94. static void delete_irq_desc(unsigned int irq)
  95. {
  96. radix_tree_delete(&irq_desc_tree, irq);
  97. }
  98. #ifdef CONFIG_SMP
  99. static void free_masks(struct irq_desc *desc)
  100. {
  101. #ifdef CONFIG_GENERIC_PENDING_IRQ
  102. free_cpumask_var(desc->pending_mask);
  103. #endif
  104. free_cpumask_var(desc->affinity);
  105. }
  106. #else
  107. static inline void free_masks(struct irq_desc *desc) { }
  108. #endif
  109. static struct irq_desc *alloc_desc(int irq, int node)
  110. {
  111. /* Temporary hack until we can switch to GFP_KERNEL */
  112. gfp_t gfp = gfp_allowed_mask == GFP_BOOT_MASK ? GFP_NOWAIT : GFP_ATOMIC;
  113. struct irq_desc *desc;
  114. desc = kzalloc_node(sizeof(*desc), gfp, node);
  115. if (!desc)
  116. return NULL;
  117. /* allocate based on nr_cpu_ids */
  118. desc->kstat_irqs = kzalloc_node(nr_cpu_ids * sizeof(*desc->kstat_irqs),
  119. gfp, node);
  120. if (!desc->kstat_irqs)
  121. goto err_desc;
  122. if (alloc_masks(desc, gfp, node))
  123. goto err_kstat;
  124. raw_spin_lock_init(&desc->lock);
  125. lockdep_set_class(&desc->lock, &irq_desc_lock_class);
  126. desc_set_defaults(irq, desc, node);
  127. return desc;
  128. err_kstat:
  129. kfree(desc->kstat_irqs);
  130. err_desc:
  131. kfree(desc);
  132. return NULL;
  133. }
  134. static void free_desc(unsigned int irq)
  135. {
  136. struct irq_desc *desc = irq_to_desc(irq);
  137. unsigned long flags;
  138. unregister_irq_proc(irq, desc);
  139. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  140. delete_irq_desc(irq);
  141. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  142. free_masks(desc);
  143. kfree(desc->kstat_irqs);
  144. kfree(desc);
  145. }
  146. static int alloc_descs(unsigned int start, unsigned int cnt, int node)
  147. {
  148. struct irq_desc *desc;
  149. unsigned long flags;
  150. int i;
  151. for (i = 0; i < cnt; i++) {
  152. desc = alloc_desc(start + i, node);
  153. if (!desc)
  154. goto err;
  155. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  156. irq_insert_desc(start + i, desc);
  157. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  158. }
  159. return start;
  160. err:
  161. for (i--; i >= 0; i--)
  162. free_desc(start + i);
  163. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  164. bitmap_clear(allocated_irqs, start, cnt);
  165. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  166. return -ENOMEM;
  167. }
  168. struct irq_desc * __ref irq_to_desc_alloc_node(unsigned int irq, int node)
  169. {
  170. int res = irq_alloc_descs(irq, irq, 1, node);
  171. if (res == -EEXIST || res == irq)
  172. return irq_to_desc(irq);
  173. return NULL;
  174. }
  175. int __init early_irq_init(void)
  176. {
  177. int i, initcnt, node = first_online_node;
  178. struct irq_desc *desc;
  179. init_irq_default_affinity();
  180. /* Let arch update nr_irqs and return the nr of preallocated irqs */
  181. initcnt = arch_probe_nr_irqs();
  182. printk(KERN_INFO "NR_IRQS:%d nr_irqs:%d %d\n", NR_IRQS, nr_irqs, initcnt);
  183. for (i = 0; i < initcnt; i++) {
  184. desc = alloc_desc(i, node);
  185. set_bit(i, allocated_irqs);
  186. irq_insert_desc(i, desc);
  187. }
  188. return arch_early_irq_init();
  189. }
  190. #else /* !CONFIG_SPARSE_IRQ */
  191. struct irq_desc irq_desc[NR_IRQS] __cacheline_aligned_in_smp = {
  192. [0 ... NR_IRQS-1] = {
  193. .status = IRQ_DEFAULT_INIT_FLAGS,
  194. .handle_irq = handle_bad_irq,
  195. .depth = 1,
  196. .lock = __RAW_SPIN_LOCK_UNLOCKED(irq_desc->lock),
  197. }
  198. };
  199. static unsigned int kstat_irqs_all[NR_IRQS][NR_CPUS];
  200. int __init early_irq_init(void)
  201. {
  202. int count, i, node = first_online_node;
  203. struct irq_desc *desc;
  204. init_irq_default_affinity();
  205. printk(KERN_INFO "NR_IRQS:%d\n", NR_IRQS);
  206. desc = irq_desc;
  207. count = ARRAY_SIZE(irq_desc);
  208. for (i = 0; i < count; i++) {
  209. desc[i].irq_data.irq = i;
  210. desc[i].irq_data.chip = &no_irq_chip;
  211. desc[i].kstat_irqs = kstat_irqs_all[i];
  212. alloc_masks(desc + i, GFP_KERNEL, node);
  213. desc_smp_init(desc + i, node);
  214. lockdep_set_class(&desc[i].lock, &irq_desc_lock_class);
  215. }
  216. return arch_early_irq_init();
  217. }
  218. struct irq_desc *irq_to_desc(unsigned int irq)
  219. {
  220. return (irq < NR_IRQS) ? irq_desc + irq : NULL;
  221. }
  222. struct irq_desc *irq_to_desc_alloc_node(unsigned int irq, int node)
  223. {
  224. return irq_to_desc(irq);
  225. }
  226. static void free_desc(unsigned int irq)
  227. {
  228. dynamic_irq_cleanup(irq);
  229. }
  230. static inline int alloc_descs(unsigned int start, unsigned int cnt, int node)
  231. {
  232. return start;
  233. }
  234. #endif /* !CONFIG_SPARSE_IRQ */
  235. /* Dynamic interrupt handling */
  236. /**
  237. * irq_free_descs - free irq descriptors
  238. * @from: Start of descriptor range
  239. * @cnt: Number of consecutive irqs to free
  240. */
  241. void irq_free_descs(unsigned int from, unsigned int cnt)
  242. {
  243. unsigned long flags;
  244. int i;
  245. if (from >= nr_irqs || (from + cnt) > nr_irqs)
  246. return;
  247. for (i = 0; i < cnt; i++)
  248. free_desc(from + i);
  249. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  250. bitmap_clear(allocated_irqs, from, cnt);
  251. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  252. }
  253. /**
  254. * irq_alloc_descs - allocate and initialize a range of irq descriptors
  255. * @irq: Allocate for specific irq number if irq >= 0
  256. * @from: Start the search from this irq number
  257. * @cnt: Number of consecutive irqs to allocate.
  258. * @node: Preferred node on which the irq descriptor should be allocated
  259. *
  260. * Returns the first irq number or error code
  261. */
  262. int __ref
  263. irq_alloc_descs(int irq, unsigned int from, unsigned int cnt, int node)
  264. {
  265. unsigned long flags;
  266. int start, ret;
  267. if (!cnt)
  268. return -EINVAL;
  269. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  270. start = bitmap_find_next_zero_area(allocated_irqs, nr_irqs, from, cnt, 0);
  271. ret = -EEXIST;
  272. if (irq >=0 && start != irq)
  273. goto err;
  274. ret = -ENOMEM;
  275. if (start >= nr_irqs)
  276. goto err;
  277. bitmap_set(allocated_irqs, start, cnt);
  278. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  279. return alloc_descs(start, cnt, node);
  280. err:
  281. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  282. return ret;
  283. }
  284. /**
  285. * irq_reserve_irqs - mark irqs allocated
  286. * @from: mark from irq number
  287. * @cnt: number of irqs to mark
  288. *
  289. * Returns 0 on success or an appropriate error code
  290. */
  291. int irq_reserve_irqs(unsigned int from, unsigned int cnt)
  292. {
  293. unsigned long flags;
  294. unsigned int start;
  295. int ret = 0;
  296. if (!cnt || (from + cnt) > nr_irqs)
  297. return -EINVAL;
  298. raw_spin_lock_irqsave(&sparse_irq_lock, flags);
  299. start = bitmap_find_next_zero_area(allocated_irqs, nr_irqs, from, cnt, 0);
  300. if (start == from)
  301. bitmap_set(allocated_irqs, start, cnt);
  302. else
  303. ret = -EEXIST;
  304. raw_spin_unlock_irqrestore(&sparse_irq_lock, flags);
  305. return ret;
  306. }
  307. /**
  308. * irq_get_next_irq - get next allocated irq number
  309. * @offset: where to start the search
  310. *
  311. * Returns next irq number after offset or nr_irqs if none is found.
  312. */
  313. unsigned int irq_get_next_irq(unsigned int offset)
  314. {
  315. return find_next_bit(allocated_irqs, nr_irqs, offset);
  316. }
  317. /**
  318. * dynamic_irq_cleanup - cleanup a dynamically allocated irq
  319. * @irq: irq number to initialize
  320. */
  321. void dynamic_irq_cleanup(unsigned int irq)
  322. {
  323. struct irq_desc *desc = irq_to_desc(irq);
  324. unsigned long flags;
  325. raw_spin_lock_irqsave(&desc->lock, flags);
  326. desc_set_defaults(irq, desc, desc_node(desc));
  327. raw_spin_unlock_irqrestore(&desc->lock, flags);
  328. }
  329. unsigned int kstat_irqs_cpu(unsigned int irq, int cpu)
  330. {
  331. struct irq_desc *desc = irq_to_desc(irq);
  332. return desc ? desc->kstat_irqs[cpu] : 0;
  333. }