1 // SPDX-License-Identifier: GPL-2.0
2
3 #define pr_fmt(fmt) "irq: " fmt
4
5 #include <linux/acpi.h>
6 #include <linux/debugfs.h>
7 #include <linux/hardirq.h>
8 #include <linux/interrupt.h>
9 #include <linux/irq.h>
10 #include <linux/irqdesc.h>
11 #include <linux/irqdomain.h>
12 #include <linux/module.h>
13 #include <linux/mutex.h>
14 #include <linux/of.h>
15 #include <linux/of_address.h>
16 #include <linux/of_irq.h>
17 #include <linux/topology.h>
18 #include <linux/seq_file.h>
19 #include <linux/slab.h>
20 #include <linux/smp.h>
21 #include <linux/fs.h>
22
23 static LIST_HEAD(irq_domain_list);
24 static DEFINE_MUTEX(irq_domain_mutex);
25
26 static struct irq_domain *irq_default_domain;
27
28 static void irq_domain_check_hierarchy(struct irq_domain *domain);
29
30 struct irqchip_fwid {
31 struct fwnode_handle fwnode;
32 unsigned int type;
33 char *name;
34 phys_addr_t *pa;
35 };
36
37 #ifdef CONFIG_GENERIC_IRQ_DEBUGFS
38 static void debugfs_add_domain_dir(struct irq_domain *d);
39 static void debugfs_remove_domain_dir(struct irq_domain *d);
40 #else
debugfs_add_domain_dir(struct irq_domain * d)41 static inline void debugfs_add_domain_dir(struct irq_domain *d) { }
debugfs_remove_domain_dir(struct irq_domain * d)42 static inline void debugfs_remove_domain_dir(struct irq_domain *d) { }
43 #endif
44
45 const struct fwnode_operations irqchip_fwnode_ops;
46 EXPORT_SYMBOL_GPL(irqchip_fwnode_ops);
47
48 /**
49 * __irq_domain_alloc_fwnode - Allocate a fwnode_handle suitable for
50 * identifying an irq domain
51 * @type: Type of irqchip_fwnode. See linux/irqdomain.h
52 * @id: Optional user provided id if name != NULL
53 * @name: Optional user provided domain name
54 * @pa: Optional user-provided physical address
55 *
56 * Allocate a struct irqchip_fwid, and return a poiner to the embedded
57 * fwnode_handle (or NULL on failure).
58 *
59 * Note: The types IRQCHIP_FWNODE_NAMED and IRQCHIP_FWNODE_NAMED_ID are
60 * solely to transport name information to irqdomain creation code. The
61 * node is not stored. For other types the pointer is kept in the irq
62 * domain struct.
63 */
__irq_domain_alloc_fwnode(unsigned int type,int id,const char * name,phys_addr_t * pa)64 struct fwnode_handle *__irq_domain_alloc_fwnode(unsigned int type, int id,
65 const char *name,
66 phys_addr_t *pa)
67 {
68 struct irqchip_fwid *fwid;
69 char *n;
70
71 fwid = kzalloc(sizeof(*fwid), GFP_KERNEL);
72
73 switch (type) {
74 case IRQCHIP_FWNODE_NAMED:
75 n = kasprintf(GFP_KERNEL, "%s", name);
76 break;
77 case IRQCHIP_FWNODE_NAMED_ID:
78 n = kasprintf(GFP_KERNEL, "%s-%d", name, id);
79 break;
80 default:
81 n = kasprintf(GFP_KERNEL, "irqchip@%pa", pa);
82 break;
83 }
84
85 if (!fwid || !n) {
86 kfree(fwid);
87 kfree(n);
88 return NULL;
89 }
90
91 fwid->type = type;
92 fwid->name = n;
93 fwid->pa = pa;
94 fwid->fwnode.ops = &irqchip_fwnode_ops;
95 return &fwid->fwnode;
96 }
97 EXPORT_SYMBOL_GPL(__irq_domain_alloc_fwnode);
98
99 /**
100 * irq_domain_free_fwnode - Free a non-OF-backed fwnode_handle
101 *
102 * Free a fwnode_handle allocated with irq_domain_alloc_fwnode.
103 */
irq_domain_free_fwnode(struct fwnode_handle * fwnode)104 void irq_domain_free_fwnode(struct fwnode_handle *fwnode)
105 {
106 struct irqchip_fwid *fwid;
107
108 if (WARN_ON(!is_fwnode_irqchip(fwnode)))
109 return;
110
111 fwid = container_of(fwnode, struct irqchip_fwid, fwnode);
112 kfree(fwid->name);
113 kfree(fwid);
114 }
115 EXPORT_SYMBOL_GPL(irq_domain_free_fwnode);
116
117 /**
118 * __irq_domain_add() - Allocate a new irq_domain data structure
119 * @fwnode: firmware node for the interrupt controller
120 * @size: Size of linear map; 0 for radix mapping only
121 * @hwirq_max: Maximum number of interrupts supported by controller
122 * @direct_max: Maximum value of direct maps; Use ~0 for no limit; 0 for no
123 * direct mapping
124 * @ops: domain callbacks
125 * @host_data: Controller private data pointer
126 *
127 * Allocates and initializes an irq_domain structure.
128 * Returns pointer to IRQ domain, or NULL on failure.
129 */
__irq_domain_add(struct fwnode_handle * fwnode,int size,irq_hw_number_t hwirq_max,int direct_max,const struct irq_domain_ops * ops,void * host_data)130 struct irq_domain *__irq_domain_add(struct fwnode_handle *fwnode, int size,
131 irq_hw_number_t hwirq_max, int direct_max,
132 const struct irq_domain_ops *ops,
133 void *host_data)
134 {
135 struct irqchip_fwid *fwid;
136 struct irq_domain *domain;
137
138 static atomic_t unknown_domains;
139
140 domain = kzalloc_node(sizeof(*domain) + (sizeof(unsigned int) * size),
141 GFP_KERNEL, of_node_to_nid(to_of_node(fwnode)));
142 if (!domain)
143 return NULL;
144
145 if (is_fwnode_irqchip(fwnode)) {
146 fwid = container_of(fwnode, struct irqchip_fwid, fwnode);
147
148 switch (fwid->type) {
149 case IRQCHIP_FWNODE_NAMED:
150 case IRQCHIP_FWNODE_NAMED_ID:
151 domain->fwnode = fwnode;
152 domain->name = kstrdup(fwid->name, GFP_KERNEL);
153 if (!domain->name) {
154 kfree(domain);
155 return NULL;
156 }
157 domain->flags |= IRQ_DOMAIN_NAME_ALLOCATED;
158 break;
159 default:
160 domain->fwnode = fwnode;
161 domain->name = fwid->name;
162 break;
163 }
164 } else if (is_of_node(fwnode) || is_acpi_device_node(fwnode) ||
165 is_software_node(fwnode)) {
166 char *name;
167
168 /*
169 * fwnode paths contain '/', which debugfs is legitimately
170 * unhappy about. Replace them with ':', which does
171 * the trick and is not as offensive as '\'...
172 */
173 name = kasprintf(GFP_KERNEL, "%pfw", fwnode);
174 if (!name) {
175 kfree(domain);
176 return NULL;
177 }
178
179 strreplace(name, '/', ':');
180
181 domain->name = name;
182 domain->fwnode = fwnode;
183 domain->flags |= IRQ_DOMAIN_NAME_ALLOCATED;
184 }
185
186 if (!domain->name) {
187 if (fwnode)
188 pr_err("Invalid fwnode type for irqdomain\n");
189 domain->name = kasprintf(GFP_KERNEL, "unknown-%d",
190 atomic_inc_return(&unknown_domains));
191 if (!domain->name) {
192 kfree(domain);
193 return NULL;
194 }
195 domain->flags |= IRQ_DOMAIN_NAME_ALLOCATED;
196 }
197
198 fwnode_handle_get(fwnode);
199
200 /* Fill structure */
201 INIT_RADIX_TREE(&domain->revmap_tree, GFP_KERNEL);
202 mutex_init(&domain->revmap_tree_mutex);
203 domain->ops = ops;
204 domain->host_data = host_data;
205 domain->hwirq_max = hwirq_max;
206 domain->revmap_size = size;
207 domain->revmap_direct_max_irq = direct_max;
208 irq_domain_check_hierarchy(domain);
209
210 mutex_lock(&irq_domain_mutex);
211 debugfs_add_domain_dir(domain);
212 list_add(&domain->link, &irq_domain_list);
213 mutex_unlock(&irq_domain_mutex);
214
215 pr_debug("Added domain %s\n", domain->name);
216 return domain;
217 }
218 EXPORT_SYMBOL_GPL(__irq_domain_add);
219
220 /**
221 * irq_domain_remove() - Remove an irq domain.
222 * @domain: domain to remove
223 *
224 * This routine is used to remove an irq domain. The caller must ensure
225 * that all mappings within the domain have been disposed of prior to
226 * use, depending on the revmap type.
227 */
irq_domain_remove(struct irq_domain * domain)228 void irq_domain_remove(struct irq_domain *domain)
229 {
230 mutex_lock(&irq_domain_mutex);
231 debugfs_remove_domain_dir(domain);
232
233 WARN_ON(!radix_tree_empty(&domain->revmap_tree));
234
235 list_del(&domain->link);
236
237 /*
238 * If the going away domain is the default one, reset it.
239 */
240 if (unlikely(irq_default_domain == domain))
241 irq_set_default_host(NULL);
242
243 mutex_unlock(&irq_domain_mutex);
244
245 pr_debug("Removed domain %s\n", domain->name);
246
247 fwnode_handle_put(domain->fwnode);
248 if (domain->flags & IRQ_DOMAIN_NAME_ALLOCATED)
249 kfree(domain->name);
250 kfree(domain);
251 }
252 EXPORT_SYMBOL_GPL(irq_domain_remove);
253
irq_domain_update_bus_token(struct irq_domain * domain,enum irq_domain_bus_token bus_token)254 void irq_domain_update_bus_token(struct irq_domain *domain,
255 enum irq_domain_bus_token bus_token)
256 {
257 char *name;
258
259 if (domain->bus_token == bus_token)
260 return;
261
262 mutex_lock(&irq_domain_mutex);
263
264 domain->bus_token = bus_token;
265
266 name = kasprintf(GFP_KERNEL, "%s-%d", domain->name, bus_token);
267 if (!name) {
268 mutex_unlock(&irq_domain_mutex);
269 return;
270 }
271
272 debugfs_remove_domain_dir(domain);
273
274 if (domain->flags & IRQ_DOMAIN_NAME_ALLOCATED)
275 kfree(domain->name);
276 else
277 domain->flags |= IRQ_DOMAIN_NAME_ALLOCATED;
278
279 domain->name = name;
280 debugfs_add_domain_dir(domain);
281
282 mutex_unlock(&irq_domain_mutex);
283 }
284 EXPORT_SYMBOL_GPL(irq_domain_update_bus_token);
285
286 /**
287 * irq_domain_add_simple() - Register an irq_domain and optionally map a range of irqs
288 * @of_node: pointer to interrupt controller's device tree node.
289 * @size: total number of irqs in mapping
290 * @first_irq: first number of irq block assigned to the domain,
291 * pass zero to assign irqs on-the-fly. If first_irq is non-zero, then
292 * pre-map all of the irqs in the domain to virqs starting at first_irq.
293 * @ops: domain callbacks
294 * @host_data: Controller private data pointer
295 *
296 * Allocates an irq_domain, and optionally if first_irq is positive then also
297 * allocate irq_descs and map all of the hwirqs to virqs starting at first_irq.
298 *
299 * This is intended to implement the expected behaviour for most
300 * interrupt controllers. If device tree is used, then first_irq will be 0 and
301 * irqs get mapped dynamically on the fly. However, if the controller requires
302 * static virq assignments (non-DT boot) then it will set that up correctly.
303 */
irq_domain_add_simple(struct device_node * of_node,unsigned int size,unsigned int first_irq,const struct irq_domain_ops * ops,void * host_data)304 struct irq_domain *irq_domain_add_simple(struct device_node *of_node,
305 unsigned int size,
306 unsigned int first_irq,
307 const struct irq_domain_ops *ops,
308 void *host_data)
309 {
310 struct irq_domain *domain;
311
312 domain = __irq_domain_add(of_node_to_fwnode(of_node), size, size, 0, ops, host_data);
313 if (!domain)
314 return NULL;
315
316 if (first_irq > 0) {
317 if (IS_ENABLED(CONFIG_SPARSE_IRQ)) {
318 /* attempt to allocated irq_descs */
319 int rc = irq_alloc_descs(first_irq, first_irq, size,
320 of_node_to_nid(of_node));
321 if (rc < 0)
322 pr_info("Cannot allocate irq_descs @ IRQ%d, assuming pre-allocated\n",
323 first_irq);
324 }
325 irq_domain_associate_many(domain, first_irq, 0, size);
326 }
327
328 return domain;
329 }
330 EXPORT_SYMBOL_GPL(irq_domain_add_simple);
331
332 /**
333 * irq_domain_add_legacy() - Allocate and register a legacy revmap irq_domain.
334 * @of_node: pointer to interrupt controller's device tree node.
335 * @size: total number of irqs in legacy mapping
336 * @first_irq: first number of irq block assigned to the domain
337 * @first_hwirq: first hwirq number to use for the translation. Should normally
338 * be '0', but a positive integer can be used if the effective
339 * hwirqs numbering does not begin at zero.
340 * @ops: map/unmap domain callbacks
341 * @host_data: Controller private data pointer
342 *
343 * Note: the map() callback will be called before this function returns
344 * for all legacy interrupts except 0 (which is always the invalid irq for
345 * a legacy controller).
346 */
irq_domain_add_legacy(struct device_node * of_node,unsigned int size,unsigned int first_irq,irq_hw_number_t first_hwirq,const struct irq_domain_ops * ops,void * host_data)347 struct irq_domain *irq_domain_add_legacy(struct device_node *of_node,
348 unsigned int size,
349 unsigned int first_irq,
350 irq_hw_number_t first_hwirq,
351 const struct irq_domain_ops *ops,
352 void *host_data)
353 {
354 struct irq_domain *domain;
355
356 domain = __irq_domain_add(of_node_to_fwnode(of_node), first_hwirq + size,
357 first_hwirq + size, 0, ops, host_data);
358 if (domain)
359 irq_domain_associate_many(domain, first_irq, first_hwirq, size);
360
361 return domain;
362 }
363 EXPORT_SYMBOL_GPL(irq_domain_add_legacy);
364
365 /**
366 * irq_find_matching_fwspec() - Locates a domain for a given fwspec
367 * @fwspec: FW specifier for an interrupt
368 * @bus_token: domain-specific data
369 */
irq_find_matching_fwspec(struct irq_fwspec * fwspec,enum irq_domain_bus_token bus_token)370 struct irq_domain *irq_find_matching_fwspec(struct irq_fwspec *fwspec,
371 enum irq_domain_bus_token bus_token)
372 {
373 struct irq_domain *h, *found = NULL;
374 struct fwnode_handle *fwnode = fwspec->fwnode;
375 int rc;
376
377 /* We might want to match the legacy controller last since
378 * it might potentially be set to match all interrupts in
379 * the absence of a device node. This isn't a problem so far
380 * yet though...
381 *
382 * bus_token == DOMAIN_BUS_ANY matches any domain, any other
383 * values must generate an exact match for the domain to be
384 * selected.
385 */
386 mutex_lock(&irq_domain_mutex);
387 list_for_each_entry(h, &irq_domain_list, link) {
388 if (h->ops->select && fwspec->param_count)
389 rc = h->ops->select(h, fwspec, bus_token);
390 else if (h->ops->match)
391 rc = h->ops->match(h, to_of_node(fwnode), bus_token);
392 else
393 rc = ((fwnode != NULL) && (h->fwnode == fwnode) &&
394 ((bus_token == DOMAIN_BUS_ANY) ||
395 (h->bus_token == bus_token)));
396
397 if (rc) {
398 found = h;
399 break;
400 }
401 }
402 mutex_unlock(&irq_domain_mutex);
403 return found;
404 }
405 EXPORT_SYMBOL_GPL(irq_find_matching_fwspec);
406
407 /**
408 * irq_domain_check_msi_remap - Check whether all MSI irq domains implement
409 * IRQ remapping
410 *
411 * Return: false if any MSI irq domain does not support IRQ remapping,
412 * true otherwise (including if there is no MSI irq domain)
413 */
irq_domain_check_msi_remap(void)414 bool irq_domain_check_msi_remap(void)
415 {
416 struct irq_domain *h;
417 bool ret = true;
418
419 mutex_lock(&irq_domain_mutex);
420 list_for_each_entry(h, &irq_domain_list, link) {
421 if (irq_domain_is_msi(h) &&
422 !irq_domain_hierarchical_is_msi_remap(h)) {
423 ret = false;
424 break;
425 }
426 }
427 mutex_unlock(&irq_domain_mutex);
428 return ret;
429 }
430 EXPORT_SYMBOL_GPL(irq_domain_check_msi_remap);
431
432 /**
433 * irq_set_default_host() - Set a "default" irq domain
434 * @domain: default domain pointer
435 *
436 * For convenience, it's possible to set a "default" domain that will be used
437 * whenever NULL is passed to irq_create_mapping(). It makes life easier for
438 * platforms that want to manipulate a few hard coded interrupt numbers that
439 * aren't properly represented in the device-tree.
440 */
irq_set_default_host(struct irq_domain * domain)441 void irq_set_default_host(struct irq_domain *domain)
442 {
443 pr_debug("Default domain set to @0x%p\n", domain);
444
445 irq_default_domain = domain;
446 }
447 EXPORT_SYMBOL_GPL(irq_set_default_host);
448
449 /**
450 * irq_get_default_host() - Retrieve the "default" irq domain
451 *
452 * Returns: the default domain, if any.
453 *
454 * Modern code should never use this. This should only be used on
455 * systems that cannot implement a firmware->fwnode mapping (which
456 * both DT and ACPI provide).
457 */
irq_get_default_host(void)458 struct irq_domain *irq_get_default_host(void)
459 {
460 return irq_default_domain;
461 }
462
irq_domain_clear_mapping(struct irq_domain * domain,irq_hw_number_t hwirq)463 static void irq_domain_clear_mapping(struct irq_domain *domain,
464 irq_hw_number_t hwirq)
465 {
466 if (hwirq < domain->revmap_size) {
467 domain->linear_revmap[hwirq] = 0;
468 } else {
469 mutex_lock(&domain->revmap_tree_mutex);
470 radix_tree_delete(&domain->revmap_tree, hwirq);
471 mutex_unlock(&domain->revmap_tree_mutex);
472 }
473 }
474
irq_domain_set_mapping(struct irq_domain * domain,irq_hw_number_t hwirq,struct irq_data * irq_data)475 static void irq_domain_set_mapping(struct irq_domain *domain,
476 irq_hw_number_t hwirq,
477 struct irq_data *irq_data)
478 {
479 if (hwirq < domain->revmap_size) {
480 domain->linear_revmap[hwirq] = irq_data->irq;
481 } else {
482 mutex_lock(&domain->revmap_tree_mutex);
483 radix_tree_insert(&domain->revmap_tree, hwirq, irq_data);
484 mutex_unlock(&domain->revmap_tree_mutex);
485 }
486 }
487
irq_domain_disassociate(struct irq_domain * domain,unsigned int irq)488 void irq_domain_disassociate(struct irq_domain *domain, unsigned int irq)
489 {
490 struct irq_data *irq_data = irq_get_irq_data(irq);
491 irq_hw_number_t hwirq;
492
493 if (WARN(!irq_data || irq_data->domain != domain,
494 "virq%i doesn't exist; cannot disassociate\n", irq))
495 return;
496
497 hwirq = irq_data->hwirq;
498 irq_set_status_flags(irq, IRQ_NOREQUEST);
499
500 /* remove chip and handler */
501 irq_set_chip_and_handler(irq, NULL, NULL);
502
503 /* Make sure it's completed */
504 synchronize_irq(irq);
505
506 /* Tell the PIC about it */
507 if (domain->ops->unmap)
508 domain->ops->unmap(domain, irq);
509 smp_mb();
510
511 irq_data->domain = NULL;
512 irq_data->hwirq = 0;
513 domain->mapcount--;
514
515 /* Clear reverse map for this hwirq */
516 irq_domain_clear_mapping(domain, hwirq);
517 }
518
irq_domain_associate(struct irq_domain * domain,unsigned int virq,irq_hw_number_t hwirq)519 int irq_domain_associate(struct irq_domain *domain, unsigned int virq,
520 irq_hw_number_t hwirq)
521 {
522 struct irq_data *irq_data = irq_get_irq_data(virq);
523 int ret;
524
525 if (WARN(hwirq >= domain->hwirq_max,
526 "error: hwirq 0x%x is too large for %s\n", (int)hwirq, domain->name))
527 return -EINVAL;
528 if (WARN(!irq_data, "error: virq%i is not allocated", virq))
529 return -EINVAL;
530 if (WARN(irq_data->domain, "error: virq%i is already associated", virq))
531 return -EINVAL;
532
533 mutex_lock(&irq_domain_mutex);
534 irq_data->hwirq = hwirq;
535 irq_data->domain = domain;
536 if (domain->ops->map) {
537 ret = domain->ops->map(domain, virq, hwirq);
538 if (ret != 0) {
539 /*
540 * If map() returns -EPERM, this interrupt is protected
541 * by the firmware or some other service and shall not
542 * be mapped. Don't bother telling the user about it.
543 */
544 if (ret != -EPERM) {
545 pr_info("%s didn't like hwirq-0x%lx to VIRQ%i mapping (rc=%d)\n",
546 domain->name, hwirq, virq, ret);
547 }
548 irq_data->domain = NULL;
549 irq_data->hwirq = 0;
550 mutex_unlock(&irq_domain_mutex);
551 return ret;
552 }
553
554 /* If not already assigned, give the domain the chip's name */
555 if (!domain->name && irq_data->chip)
556 domain->name = irq_data->chip->name;
557 }
558
559 domain->mapcount++;
560 irq_domain_set_mapping(domain, hwirq, irq_data);
561 mutex_unlock(&irq_domain_mutex);
562
563 irq_clear_status_flags(virq, IRQ_NOREQUEST);
564
565 return 0;
566 }
567 EXPORT_SYMBOL_GPL(irq_domain_associate);
568
irq_domain_associate_many(struct irq_domain * domain,unsigned int irq_base,irq_hw_number_t hwirq_base,int count)569 void irq_domain_associate_many(struct irq_domain *domain, unsigned int irq_base,
570 irq_hw_number_t hwirq_base, int count)
571 {
572 struct device_node *of_node;
573 int i;
574
575 of_node = irq_domain_get_of_node(domain);
576 pr_debug("%s(%s, irqbase=%i, hwbase=%i, count=%i)\n", __func__,
577 of_node_full_name(of_node), irq_base, (int)hwirq_base, count);
578
579 for (i = 0; i < count; i++) {
580 irq_domain_associate(domain, irq_base + i, hwirq_base + i);
581 }
582 }
583 EXPORT_SYMBOL_GPL(irq_domain_associate_many);
584
585 /**
586 * irq_create_direct_mapping() - Allocate an irq for direct mapping
587 * @domain: domain to allocate the irq for or NULL for default domain
588 *
589 * This routine is used for irq controllers which can choose the hardware
590 * interrupt numbers they generate. In such a case it's simplest to use
591 * the linux irq as the hardware interrupt number. It still uses the linear
592 * or radix tree to store the mapping, but the irq controller can optimize
593 * the revmap path by using the hwirq directly.
594 */
irq_create_direct_mapping(struct irq_domain * domain)595 unsigned int irq_create_direct_mapping(struct irq_domain *domain)
596 {
597 struct device_node *of_node;
598 unsigned int virq;
599
600 if (domain == NULL)
601 domain = irq_default_domain;
602
603 of_node = irq_domain_get_of_node(domain);
604 virq = irq_alloc_desc_from(1, of_node_to_nid(of_node));
605 if (!virq) {
606 pr_debug("create_direct virq allocation failed\n");
607 return 0;
608 }
609 if (virq >= domain->revmap_direct_max_irq) {
610 pr_err("ERROR: no free irqs available below %i maximum\n",
611 domain->revmap_direct_max_irq);
612 irq_free_desc(virq);
613 return 0;
614 }
615 pr_debug("create_direct obtained virq %d\n", virq);
616
617 if (irq_domain_associate(domain, virq, virq)) {
618 irq_free_desc(virq);
619 return 0;
620 }
621
622 return virq;
623 }
624 EXPORT_SYMBOL_GPL(irq_create_direct_mapping);
625
626 /**
627 * irq_create_mapping_affinity() - Map a hardware interrupt into linux irq space
628 * @domain: domain owning this hardware interrupt or NULL for default domain
629 * @hwirq: hardware irq number in that domain space
630 * @affinity: irq affinity
631 *
632 * Only one mapping per hardware interrupt is permitted. Returns a linux
633 * irq number.
634 * If the sense/trigger is to be specified, set_irq_type() should be called
635 * on the number returned from that call.
636 */
irq_create_mapping_affinity(struct irq_domain * domain,irq_hw_number_t hwirq,const struct irq_affinity_desc * affinity)637 unsigned int irq_create_mapping_affinity(struct irq_domain *domain,
638 irq_hw_number_t hwirq,
639 const struct irq_affinity_desc *affinity)
640 {
641 struct device_node *of_node;
642 int virq;
643
644 pr_debug("irq_create_mapping(0x%p, 0x%lx)\n", domain, hwirq);
645
646 /* Look for default domain if nececssary */
647 if (domain == NULL)
648 domain = irq_default_domain;
649 if (domain == NULL) {
650 WARN(1, "%s(, %lx) called with NULL domain\n", __func__, hwirq);
651 return 0;
652 }
653 pr_debug("-> using domain @%p\n", domain);
654
655 of_node = irq_domain_get_of_node(domain);
656
657 /* Check if mapping already exists */
658 virq = irq_find_mapping(domain, hwirq);
659 if (virq) {
660 pr_debug("-> existing mapping on virq %d\n", virq);
661 return virq;
662 }
663
664 /* Allocate a virtual interrupt number */
665 virq = irq_domain_alloc_descs(-1, 1, hwirq, of_node_to_nid(of_node),
666 affinity);
667 if (virq <= 0) {
668 pr_debug("-> virq allocation failed\n");
669 return 0;
670 }
671
672 if (irq_domain_associate(domain, virq, hwirq)) {
673 irq_free_desc(virq);
674 return 0;
675 }
676
677 pr_debug("irq %lu on domain %s mapped to virtual irq %u\n",
678 hwirq, of_node_full_name(of_node), virq);
679
680 return virq;
681 }
682 EXPORT_SYMBOL_GPL(irq_create_mapping_affinity);
683
684 /**
685 * irq_create_strict_mappings() - Map a range of hw irqs to fixed linux irqs
686 * @domain: domain owning the interrupt range
687 * @irq_base: beginning of linux IRQ range
688 * @hwirq_base: beginning of hardware IRQ range
689 * @count: Number of interrupts to map
690 *
691 * This routine is used for allocating and mapping a range of hardware
692 * irqs to linux irqs where the linux irq numbers are at pre-defined
693 * locations. For use by controllers that already have static mappings
694 * to insert in to the domain.
695 *
696 * Non-linear users can use irq_create_identity_mapping() for IRQ-at-a-time
697 * domain insertion.
698 *
699 * 0 is returned upon success, while any failure to establish a static
700 * mapping is treated as an error.
701 */
irq_create_strict_mappings(struct irq_domain * domain,unsigned int irq_base,irq_hw_number_t hwirq_base,int count)702 int irq_create_strict_mappings(struct irq_domain *domain, unsigned int irq_base,
703 irq_hw_number_t hwirq_base, int count)
704 {
705 struct device_node *of_node;
706 int ret;
707
708 of_node = irq_domain_get_of_node(domain);
709 ret = irq_alloc_descs(irq_base, irq_base, count,
710 of_node_to_nid(of_node));
711 if (unlikely(ret < 0))
712 return ret;
713
714 irq_domain_associate_many(domain, irq_base, hwirq_base, count);
715 return 0;
716 }
717 EXPORT_SYMBOL_GPL(irq_create_strict_mappings);
718
irq_domain_translate(struct irq_domain * d,struct irq_fwspec * fwspec,irq_hw_number_t * hwirq,unsigned int * type)719 static int irq_domain_translate(struct irq_domain *d,
720 struct irq_fwspec *fwspec,
721 irq_hw_number_t *hwirq, unsigned int *type)
722 {
723 #ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
724 if (d->ops->translate)
725 return d->ops->translate(d, fwspec, hwirq, type);
726 #endif
727 if (d->ops->xlate)
728 return d->ops->xlate(d, to_of_node(fwspec->fwnode),
729 fwspec->param, fwspec->param_count,
730 hwirq, type);
731
732 /* If domain has no translation, then we assume interrupt line */
733 *hwirq = fwspec->param[0];
734 return 0;
735 }
736
of_phandle_args_to_fwspec(struct device_node * np,const u32 * args,unsigned int count,struct irq_fwspec * fwspec)737 static void of_phandle_args_to_fwspec(struct device_node *np, const u32 *args,
738 unsigned int count,
739 struct irq_fwspec *fwspec)
740 {
741 int i;
742
743 fwspec->fwnode = np ? &np->fwnode : NULL;
744 fwspec->param_count = count;
745
746 for (i = 0; i < count; i++)
747 fwspec->param[i] = args[i];
748 }
749
irq_create_fwspec_mapping(struct irq_fwspec * fwspec)750 unsigned int irq_create_fwspec_mapping(struct irq_fwspec *fwspec)
751 {
752 struct irq_domain *domain;
753 struct irq_data *irq_data;
754 irq_hw_number_t hwirq;
755 unsigned int type = IRQ_TYPE_NONE;
756 int virq;
757
758 if (fwspec->fwnode) {
759 domain = irq_find_matching_fwspec(fwspec, DOMAIN_BUS_WIRED);
760 if (!domain)
761 domain = irq_find_matching_fwspec(fwspec, DOMAIN_BUS_ANY);
762 } else {
763 domain = irq_default_domain;
764 }
765
766 if (!domain) {
767 pr_warn("no irq domain found for %s !\n",
768 of_node_full_name(to_of_node(fwspec->fwnode)));
769 return 0;
770 }
771
772 if (irq_domain_translate(domain, fwspec, &hwirq, &type))
773 return 0;
774
775 /*
776 * WARN if the irqchip returns a type with bits
777 * outside the sense mask set and clear these bits.
778 */
779 if (WARN_ON(type & ~IRQ_TYPE_SENSE_MASK))
780 type &= IRQ_TYPE_SENSE_MASK;
781
782 /*
783 * If we've already configured this interrupt,
784 * don't do it again, or hell will break loose.
785 */
786 virq = irq_find_mapping(domain, hwirq);
787 if (virq) {
788 /*
789 * If the trigger type is not specified or matches the
790 * current trigger type then we are done so return the
791 * interrupt number.
792 */
793 if (type == IRQ_TYPE_NONE || type == irq_get_trigger_type(virq))
794 return virq;
795
796 /*
797 * If the trigger type has not been set yet, then set
798 * it now and return the interrupt number.
799 */
800 if (irq_get_trigger_type(virq) == IRQ_TYPE_NONE) {
801 irq_data = irq_get_irq_data(virq);
802 if (!irq_data)
803 return 0;
804
805 irqd_set_trigger_type(irq_data, type);
806 return virq;
807 }
808
809 pr_warn("type mismatch, failed to map hwirq-%lu for %s!\n",
810 hwirq, of_node_full_name(to_of_node(fwspec->fwnode)));
811 return 0;
812 }
813
814 if (irq_domain_is_hierarchy(domain)) {
815 virq = irq_domain_alloc_irqs(domain, 1, NUMA_NO_NODE, fwspec);
816 if (virq <= 0)
817 return 0;
818 } else {
819 /* Create mapping */
820 virq = irq_create_mapping(domain, hwirq);
821 if (!virq)
822 return virq;
823 }
824
825 irq_data = irq_get_irq_data(virq);
826 if (!irq_data) {
827 if (irq_domain_is_hierarchy(domain))
828 irq_domain_free_irqs(virq, 1);
829 else
830 irq_dispose_mapping(virq);
831 return 0;
832 }
833
834 /* Store trigger type */
835 irqd_set_trigger_type(irq_data, type);
836
837 return virq;
838 }
839 EXPORT_SYMBOL_GPL(irq_create_fwspec_mapping);
840
irq_create_of_mapping(struct of_phandle_args * irq_data)841 unsigned int irq_create_of_mapping(struct of_phandle_args *irq_data)
842 {
843 struct irq_fwspec fwspec;
844
845 of_phandle_args_to_fwspec(irq_data->np, irq_data->args,
846 irq_data->args_count, &fwspec);
847
848 return irq_create_fwspec_mapping(&fwspec);
849 }
850 EXPORT_SYMBOL_GPL(irq_create_of_mapping);
851
852 /**
853 * irq_dispose_mapping() - Unmap an interrupt
854 * @virq: linux irq number of the interrupt to unmap
855 */
irq_dispose_mapping(unsigned int virq)856 void irq_dispose_mapping(unsigned int virq)
857 {
858 struct irq_data *irq_data = irq_get_irq_data(virq);
859 struct irq_domain *domain;
860
861 if (!virq || !irq_data)
862 return;
863
864 domain = irq_data->domain;
865 if (WARN_ON(domain == NULL))
866 return;
867
868 if (irq_domain_is_hierarchy(domain)) {
869 irq_domain_free_irqs(virq, 1);
870 } else {
871 irq_domain_disassociate(domain, virq);
872 irq_free_desc(virq);
873 }
874 }
875 EXPORT_SYMBOL_GPL(irq_dispose_mapping);
876
877 /**
878 * irq_find_mapping() - Find a linux irq from a hw irq number.
879 * @domain: domain owning this hardware interrupt
880 * @hwirq: hardware irq number in that domain space
881 */
irq_find_mapping(struct irq_domain * domain,irq_hw_number_t hwirq)882 unsigned int irq_find_mapping(struct irq_domain *domain,
883 irq_hw_number_t hwirq)
884 {
885 struct irq_data *data;
886
887 /* Look for default domain if nececssary */
888 if (domain == NULL)
889 domain = irq_default_domain;
890 if (domain == NULL)
891 return 0;
892
893 if (hwirq < domain->revmap_direct_max_irq) {
894 data = irq_domain_get_irq_data(domain, hwirq);
895 if (data && data->hwirq == hwirq)
896 return hwirq;
897 }
898
899 /* Check if the hwirq is in the linear revmap. */
900 if (hwirq < domain->revmap_size)
901 return domain->linear_revmap[hwirq];
902
903 rcu_read_lock();
904 data = radix_tree_lookup(&domain->revmap_tree, hwirq);
905 rcu_read_unlock();
906 return data ? data->irq : 0;
907 }
908 EXPORT_SYMBOL_GPL(irq_find_mapping);
909
910 /**
911 * irq_domain_xlate_onecell() - Generic xlate for direct one cell bindings
912 *
913 * Device Tree IRQ specifier translation function which works with one cell
914 * bindings where the cell value maps directly to the hwirq number.
915 */
irq_domain_xlate_onecell(struct irq_domain * d,struct device_node * ctrlr,const u32 * intspec,unsigned int intsize,unsigned long * out_hwirq,unsigned int * out_type)916 int irq_domain_xlate_onecell(struct irq_domain *d, struct device_node *ctrlr,
917 const u32 *intspec, unsigned int intsize,
918 unsigned long *out_hwirq, unsigned int *out_type)
919 {
920 if (WARN_ON(intsize < 1))
921 return -EINVAL;
922 *out_hwirq = intspec[0];
923 *out_type = IRQ_TYPE_NONE;
924 return 0;
925 }
926 EXPORT_SYMBOL_GPL(irq_domain_xlate_onecell);
927
928 /**
929 * irq_domain_xlate_twocell() - Generic xlate for direct two cell bindings
930 *
931 * Device Tree IRQ specifier translation function which works with two cell
932 * bindings where the cell values map directly to the hwirq number
933 * and linux irq flags.
934 */
irq_domain_xlate_twocell(struct irq_domain * d,struct device_node * ctrlr,const u32 * intspec,unsigned int intsize,irq_hw_number_t * out_hwirq,unsigned int * out_type)935 int irq_domain_xlate_twocell(struct irq_domain *d, struct device_node *ctrlr,
936 const u32 *intspec, unsigned int intsize,
937 irq_hw_number_t *out_hwirq, unsigned int *out_type)
938 {
939 struct irq_fwspec fwspec;
940
941 of_phandle_args_to_fwspec(ctrlr, intspec, intsize, &fwspec);
942 return irq_domain_translate_twocell(d, &fwspec, out_hwirq, out_type);
943 }
944 EXPORT_SYMBOL_GPL(irq_domain_xlate_twocell);
945
946 /**
947 * irq_domain_xlate_onetwocell() - Generic xlate for one or two cell bindings
948 *
949 * Device Tree IRQ specifier translation function which works with either one
950 * or two cell bindings where the cell values map directly to the hwirq number
951 * and linux irq flags.
952 *
953 * Note: don't use this function unless your interrupt controller explicitly
954 * supports both one and two cell bindings. For the majority of controllers
955 * the _onecell() or _twocell() variants above should be used.
956 */
irq_domain_xlate_onetwocell(struct irq_domain * d,struct device_node * ctrlr,const u32 * intspec,unsigned int intsize,unsigned long * out_hwirq,unsigned int * out_type)957 int irq_domain_xlate_onetwocell(struct irq_domain *d,
958 struct device_node *ctrlr,
959 const u32 *intspec, unsigned int intsize,
960 unsigned long *out_hwirq, unsigned int *out_type)
961 {
962 if (WARN_ON(intsize < 1))
963 return -EINVAL;
964 *out_hwirq = intspec[0];
965 if (intsize > 1)
966 *out_type = intspec[1] & IRQ_TYPE_SENSE_MASK;
967 else
968 *out_type = IRQ_TYPE_NONE;
969 return 0;
970 }
971 EXPORT_SYMBOL_GPL(irq_domain_xlate_onetwocell);
972
973 const struct irq_domain_ops irq_domain_simple_ops = {
974 .xlate = irq_domain_xlate_onetwocell,
975 };
976 EXPORT_SYMBOL_GPL(irq_domain_simple_ops);
977
978 /**
979 * irq_domain_translate_onecell() - Generic translate for direct one cell
980 * bindings
981 */
irq_domain_translate_onecell(struct irq_domain * d,struct irq_fwspec * fwspec,unsigned long * out_hwirq,unsigned int * out_type)982 int irq_domain_translate_onecell(struct irq_domain *d,
983 struct irq_fwspec *fwspec,
984 unsigned long *out_hwirq,
985 unsigned int *out_type)
986 {
987 if (WARN_ON(fwspec->param_count < 1))
988 return -EINVAL;
989 *out_hwirq = fwspec->param[0];
990 *out_type = IRQ_TYPE_NONE;
991 return 0;
992 }
993 EXPORT_SYMBOL_GPL(irq_domain_translate_onecell);
994
995 /**
996 * irq_domain_translate_twocell() - Generic translate for direct two cell
997 * bindings
998 *
999 * Device Tree IRQ specifier translation function which works with two cell
1000 * bindings where the cell values map directly to the hwirq number
1001 * and linux irq flags.
1002 */
irq_domain_translate_twocell(struct irq_domain * d,struct irq_fwspec * fwspec,unsigned long * out_hwirq,unsigned int * out_type)1003 int irq_domain_translate_twocell(struct irq_domain *d,
1004 struct irq_fwspec *fwspec,
1005 unsigned long *out_hwirq,
1006 unsigned int *out_type)
1007 {
1008 if (WARN_ON(fwspec->param_count < 2))
1009 return -EINVAL;
1010 *out_hwirq = fwspec->param[0];
1011 *out_type = fwspec->param[1] & IRQ_TYPE_SENSE_MASK;
1012 return 0;
1013 }
1014 EXPORT_SYMBOL_GPL(irq_domain_translate_twocell);
1015
irq_domain_alloc_descs(int virq,unsigned int cnt,irq_hw_number_t hwirq,int node,const struct irq_affinity_desc * affinity)1016 int irq_domain_alloc_descs(int virq, unsigned int cnt, irq_hw_number_t hwirq,
1017 int node, const struct irq_affinity_desc *affinity)
1018 {
1019 unsigned int hint;
1020
1021 if (virq >= 0) {
1022 virq = __irq_alloc_descs(virq, virq, cnt, node, THIS_MODULE,
1023 affinity);
1024 } else {
1025 hint = hwirq % nr_irqs;
1026 if (hint == 0)
1027 hint++;
1028 virq = __irq_alloc_descs(-1, hint, cnt, node, THIS_MODULE,
1029 affinity);
1030 if (virq <= 0 && hint > 1) {
1031 virq = __irq_alloc_descs(-1, 1, cnt, node, THIS_MODULE,
1032 affinity);
1033 }
1034 }
1035
1036 return virq;
1037 }
1038
1039 /**
1040 * irq_domain_reset_irq_data - Clear hwirq, chip and chip_data in @irq_data
1041 * @irq_data: The pointer to irq_data
1042 */
irq_domain_reset_irq_data(struct irq_data * irq_data)1043 void irq_domain_reset_irq_data(struct irq_data *irq_data)
1044 {
1045 irq_data->hwirq = 0;
1046 irq_data->chip = &no_irq_chip;
1047 irq_data->chip_data = NULL;
1048 }
1049 EXPORT_SYMBOL_GPL(irq_domain_reset_irq_data);
1050
1051 #ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
1052 /**
1053 * irq_domain_create_hierarchy - Add a irqdomain into the hierarchy
1054 * @parent: Parent irq domain to associate with the new domain
1055 * @flags: Irq domain flags associated to the domain
1056 * @size: Size of the domain. See below
1057 * @fwnode: Optional fwnode of the interrupt controller
1058 * @ops: Pointer to the interrupt domain callbacks
1059 * @host_data: Controller private data pointer
1060 *
1061 * If @size is 0 a tree domain is created, otherwise a linear domain.
1062 *
1063 * If successful the parent is associated to the new domain and the
1064 * domain flags are set.
1065 * Returns pointer to IRQ domain, or NULL on failure.
1066 */
irq_domain_create_hierarchy(struct irq_domain * parent,unsigned int flags,unsigned int size,struct fwnode_handle * fwnode,const struct irq_domain_ops * ops,void * host_data)1067 struct irq_domain *irq_domain_create_hierarchy(struct irq_domain *parent,
1068 unsigned int flags,
1069 unsigned int size,
1070 struct fwnode_handle *fwnode,
1071 const struct irq_domain_ops *ops,
1072 void *host_data)
1073 {
1074 struct irq_domain *domain;
1075
1076 if (size)
1077 domain = irq_domain_create_linear(fwnode, size, ops, host_data);
1078 else
1079 domain = irq_domain_create_tree(fwnode, ops, host_data);
1080 if (domain) {
1081 domain->parent = parent;
1082 domain->flags |= flags;
1083 }
1084
1085 return domain;
1086 }
1087 EXPORT_SYMBOL_GPL(irq_domain_create_hierarchy);
1088
irq_domain_insert_irq(int virq)1089 static void irq_domain_insert_irq(int virq)
1090 {
1091 struct irq_data *data;
1092
1093 for (data = irq_get_irq_data(virq); data; data = data->parent_data) {
1094 struct irq_domain *domain = data->domain;
1095
1096 domain->mapcount++;
1097 irq_domain_set_mapping(domain, data->hwirq, data);
1098
1099 /* If not already assigned, give the domain the chip's name */
1100 if (!domain->name && data->chip)
1101 domain->name = data->chip->name;
1102 }
1103
1104 irq_clear_status_flags(virq, IRQ_NOREQUEST);
1105 }
1106
irq_domain_remove_irq(int virq)1107 static void irq_domain_remove_irq(int virq)
1108 {
1109 struct irq_data *data;
1110
1111 irq_set_status_flags(virq, IRQ_NOREQUEST);
1112 irq_set_chip_and_handler(virq, NULL, NULL);
1113 synchronize_irq(virq);
1114 smp_mb();
1115
1116 for (data = irq_get_irq_data(virq); data; data = data->parent_data) {
1117 struct irq_domain *domain = data->domain;
1118 irq_hw_number_t hwirq = data->hwirq;
1119
1120 domain->mapcount--;
1121 irq_domain_clear_mapping(domain, hwirq);
1122 }
1123 }
1124
irq_domain_insert_irq_data(struct irq_domain * domain,struct irq_data * child)1125 static struct irq_data *irq_domain_insert_irq_data(struct irq_domain *domain,
1126 struct irq_data *child)
1127 {
1128 struct irq_data *irq_data;
1129
1130 irq_data = kzalloc_node(sizeof(*irq_data), GFP_KERNEL,
1131 irq_data_get_node(child));
1132 if (irq_data) {
1133 child->parent_data = irq_data;
1134 irq_data->irq = child->irq;
1135 irq_data->common = child->common;
1136 irq_data->domain = domain;
1137 }
1138
1139 return irq_data;
1140 }
1141
__irq_domain_free_hierarchy(struct irq_data * irq_data)1142 static void __irq_domain_free_hierarchy(struct irq_data *irq_data)
1143 {
1144 struct irq_data *tmp;
1145
1146 while (irq_data) {
1147 tmp = irq_data;
1148 irq_data = irq_data->parent_data;
1149 kfree(tmp);
1150 }
1151 }
1152
irq_domain_free_irq_data(unsigned int virq,unsigned int nr_irqs)1153 static void irq_domain_free_irq_data(unsigned int virq, unsigned int nr_irqs)
1154 {
1155 struct irq_data *irq_data, *tmp;
1156 int i;
1157
1158 for (i = 0; i < nr_irqs; i++) {
1159 irq_data = irq_get_irq_data(virq + i);
1160 tmp = irq_data->parent_data;
1161 irq_data->parent_data = NULL;
1162 irq_data->domain = NULL;
1163
1164 __irq_domain_free_hierarchy(tmp);
1165 }
1166 }
1167
1168 /**
1169 * irq_domain_disconnect_hierarchy - Mark the first unused level of a hierarchy
1170 * @domain: IRQ domain from which the hierarchy is to be disconnected
1171 * @virq: IRQ number where the hierarchy is to be trimmed
1172 *
1173 * Marks the @virq level belonging to @domain as disconnected.
1174 * Returns -EINVAL if @virq doesn't have a valid irq_data pointing
1175 * to @domain.
1176 *
1177 * Its only use is to be able to trim levels of hierarchy that do not
1178 * have any real meaning for this interrupt, and that the driver marks
1179 * as such from its .alloc() callback.
1180 */
irq_domain_disconnect_hierarchy(struct irq_domain * domain,unsigned int virq)1181 int irq_domain_disconnect_hierarchy(struct irq_domain *domain,
1182 unsigned int virq)
1183 {
1184 struct irq_data *irqd;
1185
1186 irqd = irq_domain_get_irq_data(domain, virq);
1187 if (!irqd)
1188 return -EINVAL;
1189
1190 irqd->chip = ERR_PTR(-ENOTCONN);
1191 return 0;
1192 }
1193
irq_domain_trim_hierarchy(unsigned int virq)1194 static int irq_domain_trim_hierarchy(unsigned int virq)
1195 {
1196 struct irq_data *tail, *irqd, *irq_data;
1197
1198 irq_data = irq_get_irq_data(virq);
1199 tail = NULL;
1200
1201 /* The first entry must have a valid irqchip */
1202 if (!irq_data->chip || IS_ERR(irq_data->chip))
1203 return -EINVAL;
1204
1205 /*
1206 * Validate that the irq_data chain is sane in the presence of
1207 * a hierarchy trimming marker.
1208 */
1209 for (irqd = irq_data->parent_data; irqd; irq_data = irqd, irqd = irqd->parent_data) {
1210 /* Can't have a valid irqchip after a trim marker */
1211 if (irqd->chip && tail)
1212 return -EINVAL;
1213
1214 /* Can't have an empty irqchip before a trim marker */
1215 if (!irqd->chip && !tail)
1216 return -EINVAL;
1217
1218 if (IS_ERR(irqd->chip)) {
1219 /* Only -ENOTCONN is a valid trim marker */
1220 if (PTR_ERR(irqd->chip) != -ENOTCONN)
1221 return -EINVAL;
1222
1223 tail = irq_data;
1224 }
1225 }
1226
1227 /* No trim marker, nothing to do */
1228 if (!tail)
1229 return 0;
1230
1231 pr_info("IRQ%d: trimming hierarchy from %s\n",
1232 virq, tail->parent_data->domain->name);
1233
1234 /* Sever the inner part of the hierarchy... */
1235 irqd = tail;
1236 tail = tail->parent_data;
1237 irqd->parent_data = NULL;
1238 __irq_domain_free_hierarchy(tail);
1239
1240 return 0;
1241 }
1242
irq_domain_alloc_irq_data(struct irq_domain * domain,unsigned int virq,unsigned int nr_irqs)1243 static int irq_domain_alloc_irq_data(struct irq_domain *domain,
1244 unsigned int virq, unsigned int nr_irqs)
1245 {
1246 struct irq_data *irq_data;
1247 struct irq_domain *parent;
1248 int i;
1249
1250 /* The outermost irq_data is embedded in struct irq_desc */
1251 for (i = 0; i < nr_irqs; i++) {
1252 irq_data = irq_get_irq_data(virq + i);
1253 irq_data->domain = domain;
1254
1255 for (parent = domain->parent; parent; parent = parent->parent) {
1256 irq_data = irq_domain_insert_irq_data(parent, irq_data);
1257 if (!irq_data) {
1258 irq_domain_free_irq_data(virq, i + 1);
1259 return -ENOMEM;
1260 }
1261 }
1262 }
1263
1264 return 0;
1265 }
1266
1267 /**
1268 * irq_domain_get_irq_data - Get irq_data associated with @virq and @domain
1269 * @domain: domain to match
1270 * @virq: IRQ number to get irq_data
1271 */
irq_domain_get_irq_data(struct irq_domain * domain,unsigned int virq)1272 struct irq_data *irq_domain_get_irq_data(struct irq_domain *domain,
1273 unsigned int virq)
1274 {
1275 struct irq_data *irq_data;
1276
1277 for (irq_data = irq_get_irq_data(virq); irq_data;
1278 irq_data = irq_data->parent_data)
1279 if (irq_data->domain == domain)
1280 return irq_data;
1281
1282 return NULL;
1283 }
1284 EXPORT_SYMBOL_GPL(irq_domain_get_irq_data);
1285
1286 /**
1287 * irq_domain_set_hwirq_and_chip - Set hwirq and irqchip of @virq at @domain
1288 * @domain: Interrupt domain to match
1289 * @virq: IRQ number
1290 * @hwirq: The hwirq number
1291 * @chip: The associated interrupt chip
1292 * @chip_data: The associated chip data
1293 */
irq_domain_set_hwirq_and_chip(struct irq_domain * domain,unsigned int virq,irq_hw_number_t hwirq,struct irq_chip * chip,void * chip_data)1294 int irq_domain_set_hwirq_and_chip(struct irq_domain *domain, unsigned int virq,
1295 irq_hw_number_t hwirq, struct irq_chip *chip,
1296 void *chip_data)
1297 {
1298 struct irq_data *irq_data = irq_domain_get_irq_data(domain, virq);
1299
1300 if (!irq_data)
1301 return -ENOENT;
1302
1303 irq_data->hwirq = hwirq;
1304 irq_data->chip = chip ? chip : &no_irq_chip;
1305 irq_data->chip_data = chip_data;
1306
1307 return 0;
1308 }
1309 EXPORT_SYMBOL_GPL(irq_domain_set_hwirq_and_chip);
1310
1311 /**
1312 * irq_domain_set_info - Set the complete data for a @virq in @domain
1313 * @domain: Interrupt domain to match
1314 * @virq: IRQ number
1315 * @hwirq: The hardware interrupt number
1316 * @chip: The associated interrupt chip
1317 * @chip_data: The associated interrupt chip data
1318 * @handler: The interrupt flow handler
1319 * @handler_data: The interrupt flow handler data
1320 * @handler_name: The interrupt handler name
1321 */
irq_domain_set_info(struct irq_domain * domain,unsigned int virq,irq_hw_number_t hwirq,struct irq_chip * chip,void * chip_data,irq_flow_handler_t handler,void * handler_data,const char * handler_name)1322 void irq_domain_set_info(struct irq_domain *domain, unsigned int virq,
1323 irq_hw_number_t hwirq, struct irq_chip *chip,
1324 void *chip_data, irq_flow_handler_t handler,
1325 void *handler_data, const char *handler_name)
1326 {
1327 irq_domain_set_hwirq_and_chip(domain, virq, hwirq, chip, chip_data);
1328 __irq_set_handler(virq, handler, 0, handler_name);
1329 irq_set_handler_data(virq, handler_data);
1330 }
1331 EXPORT_SYMBOL(irq_domain_set_info);
1332
1333 /**
1334 * irq_domain_free_irqs_common - Clear irq_data and free the parent
1335 * @domain: Interrupt domain to match
1336 * @virq: IRQ number to start with
1337 * @nr_irqs: The number of irqs to free
1338 */
irq_domain_free_irqs_common(struct irq_domain * domain,unsigned int virq,unsigned int nr_irqs)1339 void irq_domain_free_irqs_common(struct irq_domain *domain, unsigned int virq,
1340 unsigned int nr_irqs)
1341 {
1342 struct irq_data *irq_data;
1343 int i;
1344
1345 for (i = 0; i < nr_irqs; i++) {
1346 irq_data = irq_domain_get_irq_data(domain, virq + i);
1347 if (irq_data)
1348 irq_domain_reset_irq_data(irq_data);
1349 }
1350 irq_domain_free_irqs_parent(domain, virq, nr_irqs);
1351 }
1352 EXPORT_SYMBOL_GPL(irq_domain_free_irqs_common);
1353
1354 /**
1355 * irq_domain_free_irqs_top - Clear handler and handler data, clear irqdata and free parent
1356 * @domain: Interrupt domain to match
1357 * @virq: IRQ number to start with
1358 * @nr_irqs: The number of irqs to free
1359 */
irq_domain_free_irqs_top(struct irq_domain * domain,unsigned int virq,unsigned int nr_irqs)1360 void irq_domain_free_irqs_top(struct irq_domain *domain, unsigned int virq,
1361 unsigned int nr_irqs)
1362 {
1363 int i;
1364
1365 for (i = 0; i < nr_irqs; i++) {
1366 irq_set_handler_data(virq + i, NULL);
1367 irq_set_handler(virq + i, NULL);
1368 }
1369 irq_domain_free_irqs_common(domain, virq, nr_irqs);
1370 }
1371
irq_domain_free_irqs_hierarchy(struct irq_domain * domain,unsigned int irq_base,unsigned int nr_irqs)1372 static void irq_domain_free_irqs_hierarchy(struct irq_domain *domain,
1373 unsigned int irq_base,
1374 unsigned int nr_irqs)
1375 {
1376 unsigned int i;
1377
1378 if (!domain->ops->free)
1379 return;
1380
1381 for (i = 0; i < nr_irqs; i++) {
1382 if (irq_domain_get_irq_data(domain, irq_base + i))
1383 domain->ops->free(domain, irq_base + i, 1);
1384 }
1385 }
1386
irq_domain_alloc_irqs_hierarchy(struct irq_domain * domain,unsigned int irq_base,unsigned int nr_irqs,void * arg)1387 int irq_domain_alloc_irqs_hierarchy(struct irq_domain *domain,
1388 unsigned int irq_base,
1389 unsigned int nr_irqs, void *arg)
1390 {
1391 if (!domain->ops->alloc) {
1392 pr_debug("domain->ops->alloc() is NULL\n");
1393 return -ENOSYS;
1394 }
1395
1396 return domain->ops->alloc(domain, irq_base, nr_irqs, arg);
1397 }
1398
1399 /**
1400 * __irq_domain_alloc_irqs - Allocate IRQs from domain
1401 * @domain: domain to allocate from
1402 * @irq_base: allocate specified IRQ number if irq_base >= 0
1403 * @nr_irqs: number of IRQs to allocate
1404 * @node: NUMA node id for memory allocation
1405 * @arg: domain specific argument
1406 * @realloc: IRQ descriptors have already been allocated if true
1407 * @affinity: Optional irq affinity mask for multiqueue devices
1408 *
1409 * Allocate IRQ numbers and initialized all data structures to support
1410 * hierarchy IRQ domains.
1411 * Parameter @realloc is mainly to support legacy IRQs.
1412 * Returns error code or allocated IRQ number
1413 *
1414 * The whole process to setup an IRQ has been split into two steps.
1415 * The first step, __irq_domain_alloc_irqs(), is to allocate IRQ
1416 * descriptor and required hardware resources. The second step,
1417 * irq_domain_activate_irq(), is to program hardwares with preallocated
1418 * resources. In this way, it's easier to rollback when failing to
1419 * allocate resources.
1420 */
__irq_domain_alloc_irqs(struct irq_domain * domain,int irq_base,unsigned int nr_irqs,int node,void * arg,bool realloc,const struct irq_affinity_desc * affinity)1421 int __irq_domain_alloc_irqs(struct irq_domain *domain, int irq_base,
1422 unsigned int nr_irqs, int node, void *arg,
1423 bool realloc, const struct irq_affinity_desc *affinity)
1424 {
1425 int i, ret, virq;
1426
1427 if (domain == NULL) {
1428 domain = irq_default_domain;
1429 if (WARN(!domain, "domain is NULL; cannot allocate IRQ\n"))
1430 return -EINVAL;
1431 }
1432
1433 if (realloc && irq_base >= 0) {
1434 virq = irq_base;
1435 } else {
1436 virq = irq_domain_alloc_descs(irq_base, nr_irqs, 0, node,
1437 affinity);
1438 if (virq < 0) {
1439 pr_debug("cannot allocate IRQ(base %d, count %d)\n",
1440 irq_base, nr_irqs);
1441 return virq;
1442 }
1443 }
1444
1445 if (irq_domain_alloc_irq_data(domain, virq, nr_irqs)) {
1446 pr_debug("cannot allocate memory for IRQ%d\n", virq);
1447 ret = -ENOMEM;
1448 goto out_free_desc;
1449 }
1450
1451 mutex_lock(&irq_domain_mutex);
1452 ret = irq_domain_alloc_irqs_hierarchy(domain, virq, nr_irqs, arg);
1453 if (ret < 0) {
1454 mutex_unlock(&irq_domain_mutex);
1455 goto out_free_irq_data;
1456 }
1457
1458 for (i = 0; i < nr_irqs; i++) {
1459 ret = irq_domain_trim_hierarchy(virq + i);
1460 if (ret) {
1461 mutex_unlock(&irq_domain_mutex);
1462 goto out_free_irq_data;
1463 }
1464 }
1465
1466 for (i = 0; i < nr_irqs; i++)
1467 irq_domain_insert_irq(virq + i);
1468 mutex_unlock(&irq_domain_mutex);
1469
1470 return virq;
1471
1472 out_free_irq_data:
1473 irq_domain_free_irq_data(virq, nr_irqs);
1474 out_free_desc:
1475 irq_free_descs(virq, nr_irqs);
1476 return ret;
1477 }
1478
1479 /* The irq_data was moved, fix the revmap to refer to the new location */
irq_domain_fix_revmap(struct irq_data * d)1480 static void irq_domain_fix_revmap(struct irq_data *d)
1481 {
1482 void __rcu **slot;
1483
1484 if (d->hwirq < d->domain->revmap_size)
1485 return; /* Not using radix tree. */
1486
1487 /* Fix up the revmap. */
1488 mutex_lock(&d->domain->revmap_tree_mutex);
1489 slot = radix_tree_lookup_slot(&d->domain->revmap_tree, d->hwirq);
1490 if (slot)
1491 radix_tree_replace_slot(&d->domain->revmap_tree, slot, d);
1492 mutex_unlock(&d->domain->revmap_tree_mutex);
1493 }
1494
1495 /**
1496 * irq_domain_push_irq() - Push a domain in to the top of a hierarchy.
1497 * @domain: Domain to push.
1498 * @virq: Irq to push the domain in to.
1499 * @arg: Passed to the irq_domain_ops alloc() function.
1500 *
1501 * For an already existing irqdomain hierarchy, as might be obtained
1502 * via a call to pci_enable_msix(), add an additional domain to the
1503 * head of the processing chain. Must be called before request_irq()
1504 * has been called.
1505 */
irq_domain_push_irq(struct irq_domain * domain,int virq,void * arg)1506 int irq_domain_push_irq(struct irq_domain *domain, int virq, void *arg)
1507 {
1508 struct irq_data *child_irq_data;
1509 struct irq_data *root_irq_data = irq_get_irq_data(virq);
1510 struct irq_desc *desc;
1511 int rv = 0;
1512
1513 /*
1514 * Check that no action has been set, which indicates the virq
1515 * is in a state where this function doesn't have to deal with
1516 * races between interrupt handling and maintaining the
1517 * hierarchy. This will catch gross misuse. Attempting to
1518 * make the check race free would require holding locks across
1519 * calls to struct irq_domain_ops->alloc(), which could lead
1520 * to deadlock, so we just do a simple check before starting.
1521 */
1522 desc = irq_to_desc(virq);
1523 if (!desc)
1524 return -EINVAL;
1525 if (WARN_ON(desc->action))
1526 return -EBUSY;
1527
1528 if (domain == NULL)
1529 return -EINVAL;
1530
1531 if (WARN_ON(!irq_domain_is_hierarchy(domain)))
1532 return -EINVAL;
1533
1534 if (!root_irq_data)
1535 return -EINVAL;
1536
1537 if (domain->parent != root_irq_data->domain)
1538 return -EINVAL;
1539
1540 child_irq_data = kzalloc_node(sizeof(*child_irq_data), GFP_KERNEL,
1541 irq_data_get_node(root_irq_data));
1542 if (!child_irq_data)
1543 return -ENOMEM;
1544
1545 mutex_lock(&irq_domain_mutex);
1546
1547 /* Copy the original irq_data. */
1548 *child_irq_data = *root_irq_data;
1549
1550 /*
1551 * Overwrite the root_irq_data, which is embedded in struct
1552 * irq_desc, with values for this domain.
1553 */
1554 root_irq_data->parent_data = child_irq_data;
1555 root_irq_data->domain = domain;
1556 root_irq_data->mask = 0;
1557 root_irq_data->hwirq = 0;
1558 root_irq_data->chip = NULL;
1559 root_irq_data->chip_data = NULL;
1560
1561 /* May (probably does) set hwirq, chip, etc. */
1562 rv = irq_domain_alloc_irqs_hierarchy(domain, virq, 1, arg);
1563 if (rv) {
1564 /* Restore the original irq_data. */
1565 *root_irq_data = *child_irq_data;
1566 kfree(child_irq_data);
1567 goto error;
1568 }
1569
1570 irq_domain_fix_revmap(child_irq_data);
1571 irq_domain_set_mapping(domain, root_irq_data->hwirq, root_irq_data);
1572
1573 error:
1574 mutex_unlock(&irq_domain_mutex);
1575
1576 return rv;
1577 }
1578 EXPORT_SYMBOL_GPL(irq_domain_push_irq);
1579
1580 /**
1581 * irq_domain_pop_irq() - Remove a domain from the top of a hierarchy.
1582 * @domain: Domain to remove.
1583 * @virq: Irq to remove the domain from.
1584 *
1585 * Undo the effects of a call to irq_domain_push_irq(). Must be
1586 * called either before request_irq() or after free_irq().
1587 */
irq_domain_pop_irq(struct irq_domain * domain,int virq)1588 int irq_domain_pop_irq(struct irq_domain *domain, int virq)
1589 {
1590 struct irq_data *root_irq_data = irq_get_irq_data(virq);
1591 struct irq_data *child_irq_data;
1592 struct irq_data *tmp_irq_data;
1593 struct irq_desc *desc;
1594
1595 /*
1596 * Check that no action is set, which indicates the virq is in
1597 * a state where this function doesn't have to deal with races
1598 * between interrupt handling and maintaining the hierarchy.
1599 * This will catch gross misuse. Attempting to make the check
1600 * race free would require holding locks across calls to
1601 * struct irq_domain_ops->free(), which could lead to
1602 * deadlock, so we just do a simple check before starting.
1603 */
1604 desc = irq_to_desc(virq);
1605 if (!desc)
1606 return -EINVAL;
1607 if (WARN_ON(desc->action))
1608 return -EBUSY;
1609
1610 if (domain == NULL)
1611 return -EINVAL;
1612
1613 if (!root_irq_data)
1614 return -EINVAL;
1615
1616 tmp_irq_data = irq_domain_get_irq_data(domain, virq);
1617
1618 /* We can only "pop" if this domain is at the top of the list */
1619 if (WARN_ON(root_irq_data != tmp_irq_data))
1620 return -EINVAL;
1621
1622 if (WARN_ON(root_irq_data->domain != domain))
1623 return -EINVAL;
1624
1625 child_irq_data = root_irq_data->parent_data;
1626 if (WARN_ON(!child_irq_data))
1627 return -EINVAL;
1628
1629 mutex_lock(&irq_domain_mutex);
1630
1631 root_irq_data->parent_data = NULL;
1632
1633 irq_domain_clear_mapping(domain, root_irq_data->hwirq);
1634 irq_domain_free_irqs_hierarchy(domain, virq, 1);
1635
1636 /* Restore the original irq_data. */
1637 *root_irq_data = *child_irq_data;
1638
1639 irq_domain_fix_revmap(root_irq_data);
1640
1641 mutex_unlock(&irq_domain_mutex);
1642
1643 kfree(child_irq_data);
1644
1645 return 0;
1646 }
1647 EXPORT_SYMBOL_GPL(irq_domain_pop_irq);
1648
1649 /**
1650 * irq_domain_free_irqs - Free IRQ number and associated data structures
1651 * @virq: base IRQ number
1652 * @nr_irqs: number of IRQs to free
1653 */
irq_domain_free_irqs(unsigned int virq,unsigned int nr_irqs)1654 void irq_domain_free_irqs(unsigned int virq, unsigned int nr_irqs)
1655 {
1656 struct irq_data *data = irq_get_irq_data(virq);
1657 int i;
1658
1659 if (WARN(!data || !data->domain || !data->domain->ops->free,
1660 "NULL pointer, cannot free irq\n"))
1661 return;
1662
1663 mutex_lock(&irq_domain_mutex);
1664 for (i = 0; i < nr_irqs; i++)
1665 irq_domain_remove_irq(virq + i);
1666 irq_domain_free_irqs_hierarchy(data->domain, virq, nr_irqs);
1667 mutex_unlock(&irq_domain_mutex);
1668
1669 irq_domain_free_irq_data(virq, nr_irqs);
1670 irq_free_descs(virq, nr_irqs);
1671 }
1672
1673 /**
1674 * irq_domain_alloc_irqs_parent - Allocate interrupts from parent domain
1675 * @irq_base: Base IRQ number
1676 * @nr_irqs: Number of IRQs to allocate
1677 * @arg: Allocation data (arch/domain specific)
1678 *
1679 * Check whether the domain has been setup recursive. If not allocate
1680 * through the parent domain.
1681 */
irq_domain_alloc_irqs_parent(struct irq_domain * domain,unsigned int irq_base,unsigned int nr_irqs,void * arg)1682 int irq_domain_alloc_irqs_parent(struct irq_domain *domain,
1683 unsigned int irq_base, unsigned int nr_irqs,
1684 void *arg)
1685 {
1686 if (!domain->parent)
1687 return -ENOSYS;
1688
1689 return irq_domain_alloc_irqs_hierarchy(domain->parent, irq_base,
1690 nr_irqs, arg);
1691 }
1692 EXPORT_SYMBOL_GPL(irq_domain_alloc_irqs_parent);
1693
1694 /**
1695 * irq_domain_free_irqs_parent - Free interrupts from parent domain
1696 * @irq_base: Base IRQ number
1697 * @nr_irqs: Number of IRQs to free
1698 *
1699 * Check whether the domain has been setup recursive. If not free
1700 * through the parent domain.
1701 */
irq_domain_free_irqs_parent(struct irq_domain * domain,unsigned int irq_base,unsigned int nr_irqs)1702 void irq_domain_free_irqs_parent(struct irq_domain *domain,
1703 unsigned int irq_base, unsigned int nr_irqs)
1704 {
1705 if (!domain->parent)
1706 return;
1707
1708 irq_domain_free_irqs_hierarchy(domain->parent, irq_base, nr_irqs);
1709 }
1710 EXPORT_SYMBOL_GPL(irq_domain_free_irqs_parent);
1711
__irq_domain_deactivate_irq(struct irq_data * irq_data)1712 static void __irq_domain_deactivate_irq(struct irq_data *irq_data)
1713 {
1714 if (irq_data && irq_data->domain) {
1715 struct irq_domain *domain = irq_data->domain;
1716
1717 if (domain->ops->deactivate)
1718 domain->ops->deactivate(domain, irq_data);
1719 if (irq_data->parent_data)
1720 __irq_domain_deactivate_irq(irq_data->parent_data);
1721 }
1722 }
1723
__irq_domain_activate_irq(struct irq_data * irqd,bool reserve)1724 static int __irq_domain_activate_irq(struct irq_data *irqd, bool reserve)
1725 {
1726 int ret = 0;
1727
1728 if (irqd && irqd->domain) {
1729 struct irq_domain *domain = irqd->domain;
1730
1731 if (irqd->parent_data)
1732 ret = __irq_domain_activate_irq(irqd->parent_data,
1733 reserve);
1734 if (!ret && domain->ops->activate) {
1735 ret = domain->ops->activate(domain, irqd, reserve);
1736 /* Rollback in case of error */
1737 if (ret && irqd->parent_data)
1738 __irq_domain_deactivate_irq(irqd->parent_data);
1739 }
1740 }
1741 return ret;
1742 }
1743
1744 /**
1745 * irq_domain_activate_irq - Call domain_ops->activate recursively to activate
1746 * interrupt
1747 * @irq_data: Outermost irq_data associated with interrupt
1748 * @reserve: If set only reserve an interrupt vector instead of assigning one
1749 *
1750 * This is the second step to call domain_ops->activate to program interrupt
1751 * controllers, so the interrupt could actually get delivered.
1752 */
irq_domain_activate_irq(struct irq_data * irq_data,bool reserve)1753 int irq_domain_activate_irq(struct irq_data *irq_data, bool reserve)
1754 {
1755 int ret = 0;
1756
1757 if (!irqd_is_activated(irq_data))
1758 ret = __irq_domain_activate_irq(irq_data, reserve);
1759 if (!ret)
1760 irqd_set_activated(irq_data);
1761 return ret;
1762 }
1763
1764 /**
1765 * irq_domain_deactivate_irq - Call domain_ops->deactivate recursively to
1766 * deactivate interrupt
1767 * @irq_data: outermost irq_data associated with interrupt
1768 *
1769 * It calls domain_ops->deactivate to program interrupt controllers to disable
1770 * interrupt delivery.
1771 */
irq_domain_deactivate_irq(struct irq_data * irq_data)1772 void irq_domain_deactivate_irq(struct irq_data *irq_data)
1773 {
1774 if (irqd_is_activated(irq_data)) {
1775 __irq_domain_deactivate_irq(irq_data);
1776 irqd_clr_activated(irq_data);
1777 }
1778 }
1779
irq_domain_check_hierarchy(struct irq_domain * domain)1780 static void irq_domain_check_hierarchy(struct irq_domain *domain)
1781 {
1782 /* Hierarchy irq_domains must implement callback alloc() */
1783 if (domain->ops->alloc)
1784 domain->flags |= IRQ_DOMAIN_FLAG_HIERARCHY;
1785 }
1786
1787 /**
1788 * irq_domain_hierarchical_is_msi_remap - Check if the domain or any
1789 * parent has MSI remapping support
1790 * @domain: domain pointer
1791 */
irq_domain_hierarchical_is_msi_remap(struct irq_domain * domain)1792 bool irq_domain_hierarchical_is_msi_remap(struct irq_domain *domain)
1793 {
1794 for (; domain; domain = domain->parent) {
1795 if (irq_domain_is_msi_remap(domain))
1796 return true;
1797 }
1798 return false;
1799 }
1800 #else /* CONFIG_IRQ_DOMAIN_HIERARCHY */
1801 /**
1802 * irq_domain_get_irq_data - Get irq_data associated with @virq and @domain
1803 * @domain: domain to match
1804 * @virq: IRQ number to get irq_data
1805 */
irq_domain_get_irq_data(struct irq_domain * domain,unsigned int virq)1806 struct irq_data *irq_domain_get_irq_data(struct irq_domain *domain,
1807 unsigned int virq)
1808 {
1809 struct irq_data *irq_data = irq_get_irq_data(virq);
1810
1811 return (irq_data && irq_data->domain == domain) ? irq_data : NULL;
1812 }
1813 EXPORT_SYMBOL_GPL(irq_domain_get_irq_data);
1814
1815 /**
1816 * irq_domain_set_info - Set the complete data for a @virq in @domain
1817 * @domain: Interrupt domain to match
1818 * @virq: IRQ number
1819 * @hwirq: The hardware interrupt number
1820 * @chip: The associated interrupt chip
1821 * @chip_data: The associated interrupt chip data
1822 * @handler: The interrupt flow handler
1823 * @handler_data: The interrupt flow handler data
1824 * @handler_name: The interrupt handler name
1825 */
irq_domain_set_info(struct irq_domain * domain,unsigned int virq,irq_hw_number_t hwirq,struct irq_chip * chip,void * chip_data,irq_flow_handler_t handler,void * handler_data,const char * handler_name)1826 void irq_domain_set_info(struct irq_domain *domain, unsigned int virq,
1827 irq_hw_number_t hwirq, struct irq_chip *chip,
1828 void *chip_data, irq_flow_handler_t handler,
1829 void *handler_data, const char *handler_name)
1830 {
1831 irq_set_chip_and_handler_name(virq, chip, handler, handler_name);
1832 irq_set_chip_data(virq, chip_data);
1833 irq_set_handler_data(virq, handler_data);
1834 }
1835
irq_domain_check_hierarchy(struct irq_domain * domain)1836 static void irq_domain_check_hierarchy(struct irq_domain *domain)
1837 {
1838 }
1839 #endif /* CONFIG_IRQ_DOMAIN_HIERARCHY */
1840
1841 #ifdef CONFIG_GENERIC_IRQ_DEBUGFS
1842 static struct dentry *domain_dir;
1843
1844 static void
irq_domain_debug_show_one(struct seq_file * m,struct irq_domain * d,int ind)1845 irq_domain_debug_show_one(struct seq_file *m, struct irq_domain *d, int ind)
1846 {
1847 seq_printf(m, "%*sname: %s\n", ind, "", d->name);
1848 seq_printf(m, "%*ssize: %u\n", ind + 1, "",
1849 d->revmap_size + d->revmap_direct_max_irq);
1850 seq_printf(m, "%*smapped: %u\n", ind + 1, "", d->mapcount);
1851 seq_printf(m, "%*sflags: 0x%08x\n", ind +1 , "", d->flags);
1852 if (d->ops && d->ops->debug_show)
1853 d->ops->debug_show(m, d, NULL, ind + 1);
1854 #ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
1855 if (!d->parent)
1856 return;
1857 seq_printf(m, "%*sparent: %s\n", ind + 1, "", d->parent->name);
1858 irq_domain_debug_show_one(m, d->parent, ind + 4);
1859 #endif
1860 }
1861
irq_domain_debug_show(struct seq_file * m,void * p)1862 static int irq_domain_debug_show(struct seq_file *m, void *p)
1863 {
1864 struct irq_domain *d = m->private;
1865
1866 /* Default domain? Might be NULL */
1867 if (!d) {
1868 if (!irq_default_domain)
1869 return 0;
1870 d = irq_default_domain;
1871 }
1872 irq_domain_debug_show_one(m, d, 0);
1873 return 0;
1874 }
1875 DEFINE_SHOW_ATTRIBUTE(irq_domain_debug);
1876
debugfs_add_domain_dir(struct irq_domain * d)1877 static void debugfs_add_domain_dir(struct irq_domain *d)
1878 {
1879 if (!d->name || !domain_dir || d->debugfs_file)
1880 return;
1881 d->debugfs_file = debugfs_create_file(d->name, 0444, domain_dir, d,
1882 &irq_domain_debug_fops);
1883 }
1884
debugfs_remove_domain_dir(struct irq_domain * d)1885 static void debugfs_remove_domain_dir(struct irq_domain *d)
1886 {
1887 debugfs_remove(d->debugfs_file);
1888 d->debugfs_file = NULL;
1889 }
1890
irq_domain_debugfs_init(struct dentry * root)1891 void __init irq_domain_debugfs_init(struct dentry *root)
1892 {
1893 struct irq_domain *d;
1894
1895 domain_dir = debugfs_create_dir("domains", root);
1896
1897 debugfs_create_file("default", 0444, domain_dir, NULL,
1898 &irq_domain_debug_fops);
1899 mutex_lock(&irq_domain_mutex);
1900 list_for_each_entry(d, &irq_domain_list, link)
1901 debugfs_add_domain_dir(d);
1902 mutex_unlock(&irq_domain_mutex);
1903 }
1904 #endif
1905