GNU Linux-libre 5.15.137-gnu
[releases.git] / kernel / irq / irqdesc.c
1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * Copyright (C) 1992, 1998-2006 Linus Torvalds, Ingo Molnar
4  * Copyright (C) 2005-2006, Thomas Gleixner, Russell King
5  *
6  * This file contains the interrupt descriptor management code. Detailed
7  * information is available in Documentation/core-api/genericirq.rst
8  *
9  */
10 #include <linux/irq.h>
11 #include <linux/slab.h>
12 #include <linux/export.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 <linux/irqdomain.h>
18 #include <linux/sysfs.h>
19
20 #include "internals.h"
21
22 /*
23  * lockdep: we want to handle all irq_desc locks as a single lock-class:
24  */
25 static struct lock_class_key irq_desc_lock_class;
26
27 #if defined(CONFIG_SMP)
28 static int __init irq_affinity_setup(char *str)
29 {
30         alloc_bootmem_cpumask_var(&irq_default_affinity);
31         cpulist_parse(str, irq_default_affinity);
32         /*
33          * Set at least the boot cpu. We don't want to end up with
34          * bugreports caused by random commandline masks
35          */
36         cpumask_set_cpu(smp_processor_id(), irq_default_affinity);
37         return 1;
38 }
39 __setup("irqaffinity=", irq_affinity_setup);
40
41 static void __init init_irq_default_affinity(void)
42 {
43         if (!cpumask_available(irq_default_affinity))
44                 zalloc_cpumask_var(&irq_default_affinity, GFP_NOWAIT);
45         if (cpumask_empty(irq_default_affinity))
46                 cpumask_setall(irq_default_affinity);
47 }
48 #else
49 static void __init init_irq_default_affinity(void)
50 {
51 }
52 #endif
53
54 #ifdef CONFIG_SMP
55 static int alloc_masks(struct irq_desc *desc, int node)
56 {
57         if (!zalloc_cpumask_var_node(&desc->irq_common_data.affinity,
58                                      GFP_KERNEL, node))
59                 return -ENOMEM;
60
61 #ifdef CONFIG_GENERIC_IRQ_EFFECTIVE_AFF_MASK
62         if (!zalloc_cpumask_var_node(&desc->irq_common_data.effective_affinity,
63                                      GFP_KERNEL, node)) {
64                 free_cpumask_var(desc->irq_common_data.affinity);
65                 return -ENOMEM;
66         }
67 #endif
68
69 #ifdef CONFIG_GENERIC_PENDING_IRQ
70         if (!zalloc_cpumask_var_node(&desc->pending_mask, GFP_KERNEL, node)) {
71 #ifdef CONFIG_GENERIC_IRQ_EFFECTIVE_AFF_MASK
72                 free_cpumask_var(desc->irq_common_data.effective_affinity);
73 #endif
74                 free_cpumask_var(desc->irq_common_data.affinity);
75                 return -ENOMEM;
76         }
77 #endif
78         return 0;
79 }
80
81 static void desc_smp_init(struct irq_desc *desc, int node,
82                           const struct cpumask *affinity)
83 {
84         if (!affinity)
85                 affinity = irq_default_affinity;
86         cpumask_copy(desc->irq_common_data.affinity, affinity);
87
88 #ifdef CONFIG_GENERIC_PENDING_IRQ
89         cpumask_clear(desc->pending_mask);
90 #endif
91 #ifdef CONFIG_NUMA
92         desc->irq_common_data.node = node;
93 #endif
94 }
95
96 #else
97 static inline int
98 alloc_masks(struct irq_desc *desc, int node) { return 0; }
99 static inline void
100 desc_smp_init(struct irq_desc *desc, int node, const struct cpumask *affinity) { }
101 #endif
102
103 static void desc_set_defaults(unsigned int irq, struct irq_desc *desc, int node,
104                               const struct cpumask *affinity, struct module *owner)
105 {
106         int cpu;
107
108         desc->irq_common_data.handler_data = NULL;
109         desc->irq_common_data.msi_desc = NULL;
110
111         desc->irq_data.common = &desc->irq_common_data;
112         desc->irq_data.irq = irq;
113         desc->irq_data.chip = &no_irq_chip;
114         desc->irq_data.chip_data = NULL;
115         irq_settings_clr_and_set(desc, ~0, _IRQ_DEFAULT_INIT_FLAGS);
116         irqd_set(&desc->irq_data, IRQD_IRQ_DISABLED);
117         irqd_set(&desc->irq_data, IRQD_IRQ_MASKED);
118         desc->handle_irq = handle_bad_irq;
119         desc->depth = 1;
120         desc->irq_count = 0;
121         desc->irqs_unhandled = 0;
122         desc->tot_count = 0;
123         desc->name = NULL;
124         desc->owner = owner;
125         for_each_possible_cpu(cpu)
126                 *per_cpu_ptr(desc->kstat_irqs, cpu) = 0;
127         desc_smp_init(desc, node, affinity);
128 }
129
130 int nr_irqs = NR_IRQS;
131 EXPORT_SYMBOL_GPL(nr_irqs);
132
133 static DEFINE_MUTEX(sparse_irq_lock);
134 static DECLARE_BITMAP(allocated_irqs, IRQ_BITMAP_BITS);
135
136 #ifdef CONFIG_SPARSE_IRQ
137
138 static void irq_kobj_release(struct kobject *kobj);
139
140 #ifdef CONFIG_SYSFS
141 static struct kobject *irq_kobj_base;
142
143 #define IRQ_ATTR_RO(_name) \
144 static struct kobj_attribute _name##_attr = __ATTR_RO(_name)
145
146 static ssize_t per_cpu_count_show(struct kobject *kobj,
147                                   struct kobj_attribute *attr, char *buf)
148 {
149         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
150         ssize_t ret = 0;
151         char *p = "";
152         int cpu;
153
154         for_each_possible_cpu(cpu) {
155                 unsigned int c = irq_desc_kstat_cpu(desc, cpu);
156
157                 ret += scnprintf(buf + ret, PAGE_SIZE - ret, "%s%u", p, c);
158                 p = ",";
159         }
160
161         ret += scnprintf(buf + ret, PAGE_SIZE - ret, "\n");
162         return ret;
163 }
164 IRQ_ATTR_RO(per_cpu_count);
165
166 static ssize_t chip_name_show(struct kobject *kobj,
167                               struct kobj_attribute *attr, char *buf)
168 {
169         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
170         ssize_t ret = 0;
171
172         raw_spin_lock_irq(&desc->lock);
173         if (desc->irq_data.chip && desc->irq_data.chip->name) {
174                 ret = scnprintf(buf, PAGE_SIZE, "%s\n",
175                                 desc->irq_data.chip->name);
176         }
177         raw_spin_unlock_irq(&desc->lock);
178
179         return ret;
180 }
181 IRQ_ATTR_RO(chip_name);
182
183 static ssize_t hwirq_show(struct kobject *kobj,
184                           struct kobj_attribute *attr, char *buf)
185 {
186         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
187         ssize_t ret = 0;
188
189         raw_spin_lock_irq(&desc->lock);
190         if (desc->irq_data.domain)
191                 ret = sprintf(buf, "%lu\n", desc->irq_data.hwirq);
192         raw_spin_unlock_irq(&desc->lock);
193
194         return ret;
195 }
196 IRQ_ATTR_RO(hwirq);
197
198 static ssize_t type_show(struct kobject *kobj,
199                          struct kobj_attribute *attr, char *buf)
200 {
201         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
202         ssize_t ret = 0;
203
204         raw_spin_lock_irq(&desc->lock);
205         ret = sprintf(buf, "%s\n",
206                       irqd_is_level_type(&desc->irq_data) ? "level" : "edge");
207         raw_spin_unlock_irq(&desc->lock);
208
209         return ret;
210
211 }
212 IRQ_ATTR_RO(type);
213
214 static ssize_t wakeup_show(struct kobject *kobj,
215                            struct kobj_attribute *attr, char *buf)
216 {
217         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
218         ssize_t ret = 0;
219
220         raw_spin_lock_irq(&desc->lock);
221         ret = sprintf(buf, "%s\n",
222                       irqd_is_wakeup_set(&desc->irq_data) ? "enabled" : "disabled");
223         raw_spin_unlock_irq(&desc->lock);
224
225         return ret;
226
227 }
228 IRQ_ATTR_RO(wakeup);
229
230 static ssize_t name_show(struct kobject *kobj,
231                          struct kobj_attribute *attr, char *buf)
232 {
233         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
234         ssize_t ret = 0;
235
236         raw_spin_lock_irq(&desc->lock);
237         if (desc->name)
238                 ret = scnprintf(buf, PAGE_SIZE, "%s\n", desc->name);
239         raw_spin_unlock_irq(&desc->lock);
240
241         return ret;
242 }
243 IRQ_ATTR_RO(name);
244
245 static ssize_t actions_show(struct kobject *kobj,
246                             struct kobj_attribute *attr, char *buf)
247 {
248         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
249         struct irqaction *action;
250         ssize_t ret = 0;
251         char *p = "";
252
253         raw_spin_lock_irq(&desc->lock);
254         for (action = desc->action; action != NULL; action = action->next) {
255                 ret += scnprintf(buf + ret, PAGE_SIZE - ret, "%s%s",
256                                  p, action->name);
257                 p = ",";
258         }
259         raw_spin_unlock_irq(&desc->lock);
260
261         if (ret)
262                 ret += scnprintf(buf + ret, PAGE_SIZE - ret, "\n");
263
264         return ret;
265 }
266 IRQ_ATTR_RO(actions);
267
268 static struct attribute *irq_attrs[] = {
269         &per_cpu_count_attr.attr,
270         &chip_name_attr.attr,
271         &hwirq_attr.attr,
272         &type_attr.attr,
273         &wakeup_attr.attr,
274         &name_attr.attr,
275         &actions_attr.attr,
276         NULL
277 };
278 ATTRIBUTE_GROUPS(irq);
279
280 static struct kobj_type irq_kobj_type = {
281         .release        = irq_kobj_release,
282         .sysfs_ops      = &kobj_sysfs_ops,
283         .default_groups = irq_groups,
284 };
285
286 static void irq_sysfs_add(int irq, struct irq_desc *desc)
287 {
288         if (irq_kobj_base) {
289                 /*
290                  * Continue even in case of failure as this is nothing
291                  * crucial and failures in the late irq_sysfs_init()
292                  * cannot be rolled back.
293                  */
294                 if (kobject_add(&desc->kobj, irq_kobj_base, "%d", irq))
295                         pr_warn("Failed to add kobject for irq %d\n", irq);
296                 else
297                         desc->istate |= IRQS_SYSFS;
298         }
299 }
300
301 static void irq_sysfs_del(struct irq_desc *desc)
302 {
303         /*
304          * Only invoke kobject_del() when kobject_add() was successfully
305          * invoked for the descriptor. This covers both early boot, where
306          * sysfs is not initialized yet, and the case of a failed
307          * kobject_add() invocation.
308          */
309         if (desc->istate & IRQS_SYSFS)
310                 kobject_del(&desc->kobj);
311 }
312
313 static int __init irq_sysfs_init(void)
314 {
315         struct irq_desc *desc;
316         int irq;
317
318         /* Prevent concurrent irq alloc/free */
319         irq_lock_sparse();
320
321         irq_kobj_base = kobject_create_and_add("irq", kernel_kobj);
322         if (!irq_kobj_base) {
323                 irq_unlock_sparse();
324                 return -ENOMEM;
325         }
326
327         /* Add the already allocated interrupts */
328         for_each_irq_desc(irq, desc)
329                 irq_sysfs_add(irq, desc);
330         irq_unlock_sparse();
331
332         return 0;
333 }
334 postcore_initcall(irq_sysfs_init);
335
336 #else /* !CONFIG_SYSFS */
337
338 static struct kobj_type irq_kobj_type = {
339         .release        = irq_kobj_release,
340 };
341
342 static void irq_sysfs_add(int irq, struct irq_desc *desc) {}
343 static void irq_sysfs_del(struct irq_desc *desc) {}
344
345 #endif /* CONFIG_SYSFS */
346
347 static RADIX_TREE(irq_desc_tree, GFP_KERNEL);
348
349 static void irq_insert_desc(unsigned int irq, struct irq_desc *desc)
350 {
351         radix_tree_insert(&irq_desc_tree, irq, desc);
352 }
353
354 struct irq_desc *irq_to_desc(unsigned int irq)
355 {
356         return radix_tree_lookup(&irq_desc_tree, irq);
357 }
358 #ifdef CONFIG_KVM_BOOK3S_64_HV_MODULE
359 EXPORT_SYMBOL_GPL(irq_to_desc);
360 #endif
361
362 static void delete_irq_desc(unsigned int irq)
363 {
364         radix_tree_delete(&irq_desc_tree, irq);
365 }
366
367 #ifdef CONFIG_SMP
368 static void free_masks(struct irq_desc *desc)
369 {
370 #ifdef CONFIG_GENERIC_PENDING_IRQ
371         free_cpumask_var(desc->pending_mask);
372 #endif
373         free_cpumask_var(desc->irq_common_data.affinity);
374 #ifdef CONFIG_GENERIC_IRQ_EFFECTIVE_AFF_MASK
375         free_cpumask_var(desc->irq_common_data.effective_affinity);
376 #endif
377 }
378 #else
379 static inline void free_masks(struct irq_desc *desc) { }
380 #endif
381
382 void irq_lock_sparse(void)
383 {
384         mutex_lock(&sparse_irq_lock);
385 }
386
387 void irq_unlock_sparse(void)
388 {
389         mutex_unlock(&sparse_irq_lock);
390 }
391
392 static struct irq_desc *alloc_desc(int irq, int node, unsigned int flags,
393                                    const struct cpumask *affinity,
394                                    struct module *owner)
395 {
396         struct irq_desc *desc;
397
398         desc = kzalloc_node(sizeof(*desc), GFP_KERNEL, node);
399         if (!desc)
400                 return NULL;
401         /* allocate based on nr_cpu_ids */
402         desc->kstat_irqs = alloc_percpu(unsigned int);
403         if (!desc->kstat_irqs)
404                 goto err_desc;
405
406         if (alloc_masks(desc, node))
407                 goto err_kstat;
408
409         raw_spin_lock_init(&desc->lock);
410         lockdep_set_class(&desc->lock, &irq_desc_lock_class);
411         mutex_init(&desc->request_mutex);
412         init_rcu_head(&desc->rcu);
413         init_waitqueue_head(&desc->wait_for_threads);
414
415         desc_set_defaults(irq, desc, node, affinity, owner);
416         irqd_set(&desc->irq_data, flags);
417         kobject_init(&desc->kobj, &irq_kobj_type);
418
419         return desc;
420
421 err_kstat:
422         free_percpu(desc->kstat_irqs);
423 err_desc:
424         kfree(desc);
425         return NULL;
426 }
427
428 static void irq_kobj_release(struct kobject *kobj)
429 {
430         struct irq_desc *desc = container_of(kobj, struct irq_desc, kobj);
431
432         free_masks(desc);
433         free_percpu(desc->kstat_irqs);
434         kfree(desc);
435 }
436
437 static void delayed_free_desc(struct rcu_head *rhp)
438 {
439         struct irq_desc *desc = container_of(rhp, struct irq_desc, rcu);
440
441         kobject_put(&desc->kobj);
442 }
443
444 static void free_desc(unsigned int irq)
445 {
446         struct irq_desc *desc = irq_to_desc(irq);
447
448         irq_remove_debugfs_entry(desc);
449         unregister_irq_proc(irq, desc);
450
451         /*
452          * sparse_irq_lock protects also show_interrupts() and
453          * kstat_irq_usr(). Once we deleted the descriptor from the
454          * sparse tree we can free it. Access in proc will fail to
455          * lookup the descriptor.
456          *
457          * The sysfs entry must be serialized against a concurrent
458          * irq_sysfs_init() as well.
459          */
460         irq_sysfs_del(desc);
461         delete_irq_desc(irq);
462
463         /*
464          * We free the descriptor, masks and stat fields via RCU. That
465          * allows demultiplex interrupts to do rcu based management of
466          * the child interrupts.
467          * This also allows us to use rcu in kstat_irqs_usr().
468          */
469         call_rcu(&desc->rcu, delayed_free_desc);
470 }
471
472 static int alloc_descs(unsigned int start, unsigned int cnt, int node,
473                        const struct irq_affinity_desc *affinity,
474                        struct module *owner)
475 {
476         struct irq_desc *desc;
477         int i;
478
479         /* Validate affinity mask(s) */
480         if (affinity) {
481                 for (i = 0; i < cnt; i++) {
482                         if (cpumask_empty(&affinity[i].mask))
483                                 return -EINVAL;
484                 }
485         }
486
487         for (i = 0; i < cnt; i++) {
488                 const struct cpumask *mask = NULL;
489                 unsigned int flags = 0;
490
491                 if (affinity) {
492                         if (affinity->is_managed) {
493                                 flags = IRQD_AFFINITY_MANAGED |
494                                         IRQD_MANAGED_SHUTDOWN;
495                         }
496                         mask = &affinity->mask;
497                         node = cpu_to_node(cpumask_first(mask));
498                         affinity++;
499                 }
500
501                 desc = alloc_desc(start + i, node, flags, mask, owner);
502                 if (!desc)
503                         goto err;
504                 irq_insert_desc(start + i, desc);
505                 irq_sysfs_add(start + i, desc);
506                 irq_add_debugfs_entry(start + i, desc);
507         }
508         bitmap_set(allocated_irqs, start, cnt);
509         return start;
510
511 err:
512         for (i--; i >= 0; i--)
513                 free_desc(start + i);
514         return -ENOMEM;
515 }
516
517 static int irq_expand_nr_irqs(unsigned int nr)
518 {
519         if (nr > IRQ_BITMAP_BITS)
520                 return -ENOMEM;
521         nr_irqs = nr;
522         return 0;
523 }
524
525 int __init early_irq_init(void)
526 {
527         int i, initcnt, node = first_online_node;
528         struct irq_desc *desc;
529
530         init_irq_default_affinity();
531
532         /* Let arch update nr_irqs and return the nr of preallocated irqs */
533         initcnt = arch_probe_nr_irqs();
534         printk(KERN_INFO "NR_IRQS: %d, nr_irqs: %d, preallocated irqs: %d\n",
535                NR_IRQS, nr_irqs, initcnt);
536
537         if (WARN_ON(nr_irqs > IRQ_BITMAP_BITS))
538                 nr_irqs = IRQ_BITMAP_BITS;
539
540         if (WARN_ON(initcnt > IRQ_BITMAP_BITS))
541                 initcnt = IRQ_BITMAP_BITS;
542
543         if (initcnt > nr_irqs)
544                 nr_irqs = initcnt;
545
546         for (i = 0; i < initcnt; i++) {
547                 desc = alloc_desc(i, node, 0, NULL, NULL);
548                 set_bit(i, allocated_irqs);
549                 irq_insert_desc(i, desc);
550         }
551         return arch_early_irq_init();
552 }
553
554 #else /* !CONFIG_SPARSE_IRQ */
555
556 struct irq_desc irq_desc[NR_IRQS] __cacheline_aligned_in_smp = {
557         [0 ... NR_IRQS-1] = {
558                 .handle_irq     = handle_bad_irq,
559                 .depth          = 1,
560                 .lock           = __RAW_SPIN_LOCK_UNLOCKED(irq_desc->lock),
561         }
562 };
563
564 int __init early_irq_init(void)
565 {
566         int count, i, node = first_online_node;
567         struct irq_desc *desc;
568
569         init_irq_default_affinity();
570
571         printk(KERN_INFO "NR_IRQS: %d\n", NR_IRQS);
572
573         desc = irq_desc;
574         count = ARRAY_SIZE(irq_desc);
575
576         for (i = 0; i < count; i++) {
577                 desc[i].kstat_irqs = alloc_percpu(unsigned int);
578                 alloc_masks(&desc[i], node);
579                 raw_spin_lock_init(&desc[i].lock);
580                 lockdep_set_class(&desc[i].lock, &irq_desc_lock_class);
581                 mutex_init(&desc[i].request_mutex);
582                 init_waitqueue_head(&desc[i].wait_for_threads);
583                 desc_set_defaults(i, &desc[i], node, NULL, NULL);
584         }
585         return arch_early_irq_init();
586 }
587
588 struct irq_desc *irq_to_desc(unsigned int irq)
589 {
590         return (irq < NR_IRQS) ? irq_desc + irq : NULL;
591 }
592 EXPORT_SYMBOL(irq_to_desc);
593
594 static void free_desc(unsigned int irq)
595 {
596         struct irq_desc *desc = irq_to_desc(irq);
597         unsigned long flags;
598
599         raw_spin_lock_irqsave(&desc->lock, flags);
600         desc_set_defaults(irq, desc, irq_desc_get_node(desc), NULL, NULL);
601         raw_spin_unlock_irqrestore(&desc->lock, flags);
602 }
603
604 static inline int alloc_descs(unsigned int start, unsigned int cnt, int node,
605                               const struct irq_affinity_desc *affinity,
606                               struct module *owner)
607 {
608         u32 i;
609
610         for (i = 0; i < cnt; i++) {
611                 struct irq_desc *desc = irq_to_desc(start + i);
612
613                 desc->owner = owner;
614         }
615         bitmap_set(allocated_irqs, start, cnt);
616         return start;
617 }
618
619 static int irq_expand_nr_irqs(unsigned int nr)
620 {
621         return -ENOMEM;
622 }
623
624 void irq_mark_irq(unsigned int irq)
625 {
626         mutex_lock(&sparse_irq_lock);
627         bitmap_set(allocated_irqs, irq, 1);
628         mutex_unlock(&sparse_irq_lock);
629 }
630
631 #ifdef CONFIG_GENERIC_IRQ_LEGACY
632 void irq_init_desc(unsigned int irq)
633 {
634         free_desc(irq);
635 }
636 #endif
637
638 #endif /* !CONFIG_SPARSE_IRQ */
639
640 int handle_irq_desc(struct irq_desc *desc)
641 {
642         struct irq_data *data;
643
644         if (!desc)
645                 return -EINVAL;
646
647         data = irq_desc_get_irq_data(desc);
648         if (WARN_ON_ONCE(!in_irq() && handle_enforce_irqctx(data)))
649                 return -EPERM;
650
651         generic_handle_irq_desc(desc);
652         return 0;
653 }
654 EXPORT_SYMBOL_GPL(handle_irq_desc);
655
656 /**
657  * generic_handle_irq - Invoke the handler for a particular irq
658  * @irq:        The irq number to handle
659  *
660  */
661 int generic_handle_irq(unsigned int irq)
662 {
663         return handle_irq_desc(irq_to_desc(irq));
664 }
665 EXPORT_SYMBOL_GPL(generic_handle_irq);
666
667 #ifdef CONFIG_IRQ_DOMAIN
668 /**
669  * generic_handle_domain_irq - Invoke the handler for a HW irq belonging
670  *                             to a domain, usually for a non-root interrupt
671  *                             controller
672  * @domain:     The domain where to perform the lookup
673  * @hwirq:      The HW irq number to convert to a logical one
674  *
675  * Returns:     0 on success, or -EINVAL if conversion has failed
676  *
677  */
678 int generic_handle_domain_irq(struct irq_domain *domain, unsigned int hwirq)
679 {
680         return handle_irq_desc(irq_resolve_mapping(domain, hwirq));
681 }
682 EXPORT_SYMBOL_GPL(generic_handle_domain_irq);
683
684 #ifdef CONFIG_HANDLE_DOMAIN_IRQ
685 /**
686  * handle_domain_irq - Invoke the handler for a HW irq belonging to a domain,
687  *                     usually for a root interrupt controller
688  * @domain:     The domain where to perform the lookup
689  * @hwirq:      The HW irq number to convert to a logical one
690  * @regs:       Register file coming from the low-level handling code
691  *
692  * Returns:     0 on success, or -EINVAL if conversion has failed
693  */
694 int handle_domain_irq(struct irq_domain *domain,
695                       unsigned int hwirq, struct pt_regs *regs)
696 {
697         struct pt_regs *old_regs = set_irq_regs(regs);
698         struct irq_desc *desc;
699         int ret = 0;
700
701         irq_enter();
702
703         /* The irqdomain code provides boundary checks */
704         desc = irq_resolve_mapping(domain, hwirq);
705         if (likely(desc))
706                 handle_irq_desc(desc);
707         else
708                 ret = -EINVAL;
709
710         irq_exit();
711         set_irq_regs(old_regs);
712         return ret;
713 }
714
715 /**
716  * handle_domain_nmi - Invoke the handler for a HW irq belonging to a domain
717  * @domain:     The domain where to perform the lookup
718  * @hwirq:      The HW irq number to convert to a logical one
719  * @regs:       Register file coming from the low-level handling code
720  *
721  *              This function must be called from an NMI context.
722  *
723  * Returns:     0 on success, or -EINVAL if conversion has failed
724  */
725 int handle_domain_nmi(struct irq_domain *domain, unsigned int hwirq,
726                       struct pt_regs *regs)
727 {
728         struct pt_regs *old_regs = set_irq_regs(regs);
729         struct irq_desc *desc;
730         int ret = 0;
731
732         /*
733          * NMI context needs to be setup earlier in order to deal with tracing.
734          */
735         WARN_ON(!in_nmi());
736
737         desc = irq_resolve_mapping(domain, hwirq);
738
739         /*
740          * ack_bad_irq is not NMI-safe, just report
741          * an invalid interrupt.
742          */
743         if (likely(desc))
744                 handle_irq_desc(desc);
745         else
746                 ret = -EINVAL;
747
748         set_irq_regs(old_regs);
749         return ret;
750 }
751 #endif
752 #endif
753
754 /* Dynamic interrupt handling */
755
756 /**
757  * irq_free_descs - free irq descriptors
758  * @from:       Start of descriptor range
759  * @cnt:        Number of consecutive irqs to free
760  */
761 void irq_free_descs(unsigned int from, unsigned int cnt)
762 {
763         int i;
764
765         if (from >= nr_irqs || (from + cnt) > nr_irqs)
766                 return;
767
768         mutex_lock(&sparse_irq_lock);
769         for (i = 0; i < cnt; i++)
770                 free_desc(from + i);
771
772         bitmap_clear(allocated_irqs, from, cnt);
773         mutex_unlock(&sparse_irq_lock);
774 }
775 EXPORT_SYMBOL_GPL(irq_free_descs);
776
777 /**
778  * __irq_alloc_descs - allocate and initialize a range of irq descriptors
779  * @irq:        Allocate for specific irq number if irq >= 0
780  * @from:       Start the search from this irq number
781  * @cnt:        Number of consecutive irqs to allocate.
782  * @node:       Preferred node on which the irq descriptor should be allocated
783  * @owner:      Owning module (can be NULL)
784  * @affinity:   Optional pointer to an affinity mask array of size @cnt which
785  *              hints where the irq descriptors should be allocated and which
786  *              default affinities to use
787  *
788  * Returns the first irq number or error code
789  */
790 int __ref
791 __irq_alloc_descs(int irq, unsigned int from, unsigned int cnt, int node,
792                   struct module *owner, const struct irq_affinity_desc *affinity)
793 {
794         int start, ret;
795
796         if (!cnt)
797                 return -EINVAL;
798
799         if (irq >= 0) {
800                 if (from > irq)
801                         return -EINVAL;
802                 from = irq;
803         } else {
804                 /*
805                  * For interrupts which are freely allocated the
806                  * architecture can force a lower bound to the @from
807                  * argument. x86 uses this to exclude the GSI space.
808                  */
809                 from = arch_dynirq_lower_bound(from);
810         }
811
812         mutex_lock(&sparse_irq_lock);
813
814         start = bitmap_find_next_zero_area(allocated_irqs, IRQ_BITMAP_BITS,
815                                            from, cnt, 0);
816         ret = -EEXIST;
817         if (irq >=0 && start != irq)
818                 goto unlock;
819
820         if (start + cnt > nr_irqs) {
821                 ret = irq_expand_nr_irqs(start + cnt);
822                 if (ret)
823                         goto unlock;
824         }
825         ret = alloc_descs(start, cnt, node, affinity, owner);
826 unlock:
827         mutex_unlock(&sparse_irq_lock);
828         return ret;
829 }
830 EXPORT_SYMBOL_GPL(__irq_alloc_descs);
831
832 /**
833  * irq_get_next_irq - get next allocated irq number
834  * @offset:     where to start the search
835  *
836  * Returns next irq number after offset or nr_irqs if none is found.
837  */
838 unsigned int irq_get_next_irq(unsigned int offset)
839 {
840         return find_next_bit(allocated_irqs, nr_irqs, offset);
841 }
842
843 struct irq_desc *
844 __irq_get_desc_lock(unsigned int irq, unsigned long *flags, bool bus,
845                     unsigned int check)
846 {
847         struct irq_desc *desc = irq_to_desc(irq);
848
849         if (desc) {
850                 if (check & _IRQ_DESC_CHECK) {
851                         if ((check & _IRQ_DESC_PERCPU) &&
852                             !irq_settings_is_per_cpu_devid(desc))
853                                 return NULL;
854
855                         if (!(check & _IRQ_DESC_PERCPU) &&
856                             irq_settings_is_per_cpu_devid(desc))
857                                 return NULL;
858                 }
859
860                 if (bus)
861                         chip_bus_lock(desc);
862                 raw_spin_lock_irqsave(&desc->lock, *flags);
863         }
864         return desc;
865 }
866
867 void __irq_put_desc_unlock(struct irq_desc *desc, unsigned long flags, bool bus)
868         __releases(&desc->lock)
869 {
870         raw_spin_unlock_irqrestore(&desc->lock, flags);
871         if (bus)
872                 chip_bus_sync_unlock(desc);
873 }
874
875 int irq_set_percpu_devid_partition(unsigned int irq,
876                                    const struct cpumask *affinity)
877 {
878         struct irq_desc *desc = irq_to_desc(irq);
879
880         if (!desc)
881                 return -EINVAL;
882
883         if (desc->percpu_enabled)
884                 return -EINVAL;
885
886         desc->percpu_enabled = kzalloc(sizeof(*desc->percpu_enabled), GFP_KERNEL);
887
888         if (!desc->percpu_enabled)
889                 return -ENOMEM;
890
891         if (affinity)
892                 desc->percpu_affinity = affinity;
893         else
894                 desc->percpu_affinity = cpu_possible_mask;
895
896         irq_set_percpu_devid_flags(irq);
897         return 0;
898 }
899
900 int irq_set_percpu_devid(unsigned int irq)
901 {
902         return irq_set_percpu_devid_partition(irq, NULL);
903 }
904
905 int irq_get_percpu_devid_partition(unsigned int irq, struct cpumask *affinity)
906 {
907         struct irq_desc *desc = irq_to_desc(irq);
908
909         if (!desc || !desc->percpu_enabled)
910                 return -EINVAL;
911
912         if (affinity)
913                 cpumask_copy(affinity, desc->percpu_affinity);
914
915         return 0;
916 }
917 EXPORT_SYMBOL_GPL(irq_get_percpu_devid_partition);
918
919 void kstat_incr_irq_this_cpu(unsigned int irq)
920 {
921         kstat_incr_irqs_this_cpu(irq_to_desc(irq));
922 }
923
924 /**
925  * kstat_irqs_cpu - Get the statistics for an interrupt on a cpu
926  * @irq:        The interrupt number
927  * @cpu:        The cpu number
928  *
929  * Returns the sum of interrupt counts on @cpu since boot for
930  * @irq. The caller must ensure that the interrupt is not removed
931  * concurrently.
932  */
933 unsigned int kstat_irqs_cpu(unsigned int irq, int cpu)
934 {
935         struct irq_desc *desc = irq_to_desc(irq);
936
937         return desc && desc->kstat_irqs ?
938                         *per_cpu_ptr(desc->kstat_irqs, cpu) : 0;
939 }
940
941 static bool irq_is_nmi(struct irq_desc *desc)
942 {
943         return desc->istate & IRQS_NMI;
944 }
945
946 static unsigned int kstat_irqs(unsigned int irq)
947 {
948         struct irq_desc *desc = irq_to_desc(irq);
949         unsigned int sum = 0;
950         int cpu;
951
952         if (!desc || !desc->kstat_irqs)
953                 return 0;
954         if (!irq_settings_is_per_cpu_devid(desc) &&
955             !irq_settings_is_per_cpu(desc) &&
956             !irq_is_nmi(desc))
957                 return data_race(desc->tot_count);
958
959         for_each_possible_cpu(cpu)
960                 sum += data_race(*per_cpu_ptr(desc->kstat_irqs, cpu));
961         return sum;
962 }
963
964 /**
965  * kstat_irqs_usr - Get the statistics for an interrupt from thread context
966  * @irq:        The interrupt number
967  *
968  * Returns the sum of interrupt counts on all cpus since boot for @irq.
969  *
970  * It uses rcu to protect the access since a concurrent removal of an
971  * interrupt descriptor is observing an rcu grace period before
972  * delayed_free_desc()/irq_kobj_release().
973  */
974 unsigned int kstat_irqs_usr(unsigned int irq)
975 {
976         unsigned int sum;
977
978         rcu_read_lock();
979         sum = kstat_irqs(irq);
980         rcu_read_unlock();
981         return sum;
982 }
983
984 #ifdef CONFIG_LOCKDEP
985 void __irq_set_lockdep_class(unsigned int irq, struct lock_class_key *lock_class,
986                              struct lock_class_key *request_class)
987 {
988         struct irq_desc *desc = irq_to_desc(irq);
989
990         if (desc) {
991                 lockdep_set_class(&desc->lock, lock_class);
992                 lockdep_set_class(&desc->request_mutex, request_class);
993         }
994 }
995 EXPORT_SYMBOL_GPL(__irq_set_lockdep_class);
996 #endif