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[mirror_ubuntu-zesty-kernel.git] / kernel / irq / irqdomain.c
CommitLineData
54a90588
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1#define pr_fmt(fmt) "irq: " fmt
2
cc79ca69
GL
3#include <linux/debugfs.h>
4#include <linux/hardirq.h>
5#include <linux/interrupt.h>
08a543ad 6#include <linux/irq.h>
cc79ca69 7#include <linux/irqdesc.h>
08a543ad
GL
8#include <linux/irqdomain.h>
9#include <linux/module.h>
10#include <linux/mutex.h>
11#include <linux/of.h>
7e713301 12#include <linux/of_address.h>
64be38ab 13#include <linux/of_irq.h>
5ca4db61 14#include <linux/topology.h>
cc79ca69 15#include <linux/seq_file.h>
7e713301 16#include <linux/slab.h>
cc79ca69
GL
17#include <linux/smp.h>
18#include <linux/fs.h>
08a543ad
GL
19
20static LIST_HEAD(irq_domain_list);
21static DEFINE_MUTEX(irq_domain_mutex);
22
cc79ca69 23static DEFINE_MUTEX(revmap_trees_mutex);
68700650 24static struct irq_domain *irq_default_domain;
cc79ca69 25
f8264e34
JL
26static int irq_domain_alloc_descs(int virq, unsigned int nr_irqs,
27 irq_hw_number_t hwirq, int node);
28static void irq_domain_check_hierarchy(struct irq_domain *domain);
29
cc79ca69 30/**
fa40f377 31 * __irq_domain_add() - Allocate a new irq_domain data structure
cc79ca69 32 * @of_node: optional device-tree node of the interrupt controller
fa40f377 33 * @size: Size of linear map; 0 for radix mapping only
a257954b 34 * @hwirq_max: Maximum number of interrupts supported by controller
fa40f377
GL
35 * @direct_max: Maximum value of direct maps; Use ~0 for no limit; 0 for no
36 * direct mapping
f8264e34 37 * @ops: domain callbacks
a8db8cf0 38 * @host_data: Controller private data pointer
cc79ca69 39 *
a257954b
JL
40 * Allocates and initialize and irq_domain structure.
41 * Returns pointer to IRQ domain, or NULL on failure.
cc79ca69 42 */
ddaf144c
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43struct irq_domain *__irq_domain_add(struct device_node *of_node, int size,
44 irq_hw_number_t hwirq_max, int direct_max,
fa40f377
GL
45 const struct irq_domain_ops *ops,
46 void *host_data)
cc79ca69 47{
a8db8cf0 48 struct irq_domain *domain;
f110711a 49 struct fwnode_handle *fwnode;
cc79ca69 50
cef5075c
GL
51 domain = kzalloc_node(sizeof(*domain) + (sizeof(unsigned int) * size),
52 GFP_KERNEL, of_node_to_nid(of_node));
a8db8cf0 53 if (WARN_ON(!domain))
cc79ca69
GL
54 return NULL;
55
f110711a
MZ
56 of_node_get(of_node);
57 fwnode = of_node ? &of_node->fwnode : NULL;
58
cc79ca69 59 /* Fill structure */
1aa0dd94 60 INIT_RADIX_TREE(&domain->revmap_tree, GFP_KERNEL);
68700650 61 domain->ops = ops;
a8db8cf0 62 domain->host_data = host_data;
f110711a 63 domain->fwnode = fwnode;
ddaf144c 64 domain->hwirq_max = hwirq_max;
1aa0dd94 65 domain->revmap_size = size;
fa40f377 66 domain->revmap_direct_max_irq = direct_max;
f8264e34 67 irq_domain_check_hierarchy(domain);
cc79ca69 68
a8db8cf0
GL
69 mutex_lock(&irq_domain_mutex);
70 list_add(&domain->link, &irq_domain_list);
71 mutex_unlock(&irq_domain_mutex);
fa40f377 72
1aa0dd94 73 pr_debug("Added domain %s\n", domain->name);
fa40f377 74 return domain;
a8db8cf0 75}
fa40f377 76EXPORT_SYMBOL_GPL(__irq_domain_add);
a8db8cf0 77
58ee99ad
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78/**
79 * irq_domain_remove() - Remove an irq domain.
80 * @domain: domain to remove
81 *
82 * This routine is used to remove an irq domain. The caller must ensure
83 * that all mappings within the domain have been disposed of prior to
84 * use, depending on the revmap type.
85 */
86void irq_domain_remove(struct irq_domain *domain)
87{
88 mutex_lock(&irq_domain_mutex);
89
cef5075c
GL
90 /*
91 * radix_tree_delete() takes care of destroying the root
92 * node when all entries are removed. Shout if there are
93 * any mappings left.
94 */
1aa0dd94 95 WARN_ON(domain->revmap_tree.height);
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96
97 list_del(&domain->link);
98
99 /*
100 * If the going away domain is the default one, reset it.
101 */
102 if (unlikely(irq_default_domain == domain))
103 irq_set_default_host(NULL);
104
105 mutex_unlock(&irq_domain_mutex);
106
1aa0dd94 107 pr_debug("Removed domain %s\n", domain->name);
58ee99ad 108
5d4c9bc7 109 of_node_put(irq_domain_get_of_node(domain));
fa40f377 110 kfree(domain);
58ee99ad 111}
ecd84eb2 112EXPORT_SYMBOL_GPL(irq_domain_remove);
58ee99ad 113
781d0f46 114/**
fa40f377 115 * irq_domain_add_simple() - Register an irq_domain and optionally map a range of irqs
781d0f46
MB
116 * @of_node: pointer to interrupt controller's device tree node.
117 * @size: total number of irqs in mapping
94a63da0 118 * @first_irq: first number of irq block assigned to the domain,
fa40f377
GL
119 * pass zero to assign irqs on-the-fly. If first_irq is non-zero, then
120 * pre-map all of the irqs in the domain to virqs starting at first_irq.
f8264e34 121 * @ops: domain callbacks
781d0f46
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122 * @host_data: Controller private data pointer
123 *
fa40f377
GL
124 * Allocates an irq_domain, and optionally if first_irq is positive then also
125 * allocate irq_descs and map all of the hwirqs to virqs starting at first_irq.
781d0f46
MB
126 *
127 * This is intended to implement the expected behaviour for most
fa40f377
GL
128 * interrupt controllers. If device tree is used, then first_irq will be 0 and
129 * irqs get mapped dynamically on the fly. However, if the controller requires
130 * static virq assignments (non-DT boot) then it will set that up correctly.
781d0f46
MB
131 */
132struct irq_domain *irq_domain_add_simple(struct device_node *of_node,
133 unsigned int size,
134 unsigned int first_irq,
135 const struct irq_domain_ops *ops,
136 void *host_data)
137{
fa40f377
GL
138 struct irq_domain *domain;
139
ddaf144c 140 domain = __irq_domain_add(of_node, size, size, 0, ops, host_data);
fa40f377
GL
141 if (!domain)
142 return NULL;
2854d167 143
fa40f377 144 if (first_irq > 0) {
2854d167 145 if (IS_ENABLED(CONFIG_SPARSE_IRQ)) {
fa40f377
GL
146 /* attempt to allocated irq_descs */
147 int rc = irq_alloc_descs(first_irq, first_irq, size,
148 of_node_to_nid(of_node));
149 if (rc < 0)
d202b7b9
LW
150 pr_info("Cannot allocate irq_descs @ IRQ%d, assuming pre-allocated\n",
151 first_irq);
fa40f377 152 }
ddaf144c 153 irq_domain_associate_many(domain, first_irq, 0, size);
2854d167
LW
154 }
155
fa40f377 156 return domain;
781d0f46 157}
346dbb79 158EXPORT_SYMBOL_GPL(irq_domain_add_simple);
781d0f46 159
a8db8cf0
GL
160/**
161 * irq_domain_add_legacy() - Allocate and register a legacy revmap irq_domain.
162 * @of_node: pointer to interrupt controller's device tree node.
1bc04f2c
GL
163 * @size: total number of irqs in legacy mapping
164 * @first_irq: first number of irq block assigned to the domain
165 * @first_hwirq: first hwirq number to use for the translation. Should normally
166 * be '0', but a positive integer can be used if the effective
167 * hwirqs numbering does not begin at zero.
a8db8cf0
GL
168 * @ops: map/unmap domain callbacks
169 * @host_data: Controller private data pointer
170 *
171 * Note: the map() callback will be called before this function returns
172 * for all legacy interrupts except 0 (which is always the invalid irq for
173 * a legacy controller).
174 */
175struct irq_domain *irq_domain_add_legacy(struct device_node *of_node,
1bc04f2c
GL
176 unsigned int size,
177 unsigned int first_irq,
178 irq_hw_number_t first_hwirq,
a18dc81b 179 const struct irq_domain_ops *ops,
a8db8cf0
GL
180 void *host_data)
181{
1bc04f2c 182 struct irq_domain *domain;
a8db8cf0 183
ddaf144c
GL
184 domain = __irq_domain_add(of_node, first_hwirq + size,
185 first_hwirq + size, 0, ops, host_data);
f8264e34
JL
186 if (domain)
187 irq_domain_associate_many(domain, first_irq, first_hwirq, size);
1bc04f2c 188
a8db8cf0
GL
189 return domain;
190}
ecd84eb2 191EXPORT_SYMBOL_GPL(irq_domain_add_legacy);
a8db8cf0 192
cc79ca69 193/**
130b8c6c
MZ
194 * irq_find_matching_fwnode() - Locates a domain for a given fwnode
195 * @fwnode: FW descriptor of the interrupt controller
ad3aedfb 196 * @bus_token: domain-specific data
cc79ca69 197 */
130b8c6c
MZ
198struct irq_domain *irq_find_matching_fwnode(struct fwnode_handle *fwnode,
199 enum irq_domain_bus_token bus_token)
cc79ca69
GL
200{
201 struct irq_domain *h, *found = NULL;
a18dc81b 202 int rc;
cc79ca69
GL
203
204 /* We might want to match the legacy controller last since
205 * it might potentially be set to match all interrupts in
206 * the absence of a device node. This isn't a problem so far
207 * yet though...
ad3aedfb
MZ
208 *
209 * bus_token == DOMAIN_BUS_ANY matches any domain, any other
210 * values must generate an exact match for the domain to be
211 * selected.
cc79ca69
GL
212 */
213 mutex_lock(&irq_domain_mutex);
a18dc81b
GL
214 list_for_each_entry(h, &irq_domain_list, link) {
215 if (h->ops->match)
130b8c6c 216 rc = h->ops->match(h, to_of_node(fwnode), bus_token);
a18dc81b 217 else
130b8c6c 218 rc = ((fwnode != NULL) && (h->fwnode == fwnode) &&
ad3aedfb
MZ
219 ((bus_token == DOMAIN_BUS_ANY) ||
220 (h->bus_token == bus_token)));
a18dc81b
GL
221
222 if (rc) {
cc79ca69
GL
223 found = h;
224 break;
225 }
a18dc81b 226 }
cc79ca69
GL
227 mutex_unlock(&irq_domain_mutex);
228 return found;
229}
130b8c6c 230EXPORT_SYMBOL_GPL(irq_find_matching_fwnode);
cc79ca69
GL
231
232/**
233 * irq_set_default_host() - Set a "default" irq domain
68700650 234 * @domain: default domain pointer
cc79ca69
GL
235 *
236 * For convenience, it's possible to set a "default" domain that will be used
237 * whenever NULL is passed to irq_create_mapping(). It makes life easier for
238 * platforms that want to manipulate a few hard coded interrupt numbers that
239 * aren't properly represented in the device-tree.
240 */
68700650 241void irq_set_default_host(struct irq_domain *domain)
cc79ca69 242{
54a90588 243 pr_debug("Default domain set to @0x%p\n", domain);
cc79ca69 244
68700650 245 irq_default_domain = domain;
cc79ca69 246}
ecd84eb2 247EXPORT_SYMBOL_GPL(irq_set_default_host);
cc79ca69 248
43a77591 249void irq_domain_disassociate(struct irq_domain *domain, unsigned int irq)
913af207 250{
ddaf144c
GL
251 struct irq_data *irq_data = irq_get_irq_data(irq);
252 irq_hw_number_t hwirq;
913af207 253
ddaf144c
GL
254 if (WARN(!irq_data || irq_data->domain != domain,
255 "virq%i doesn't exist; cannot disassociate\n", irq))
256 return;
913af207 257
ddaf144c
GL
258 hwirq = irq_data->hwirq;
259 irq_set_status_flags(irq, IRQ_NOREQUEST);
913af207 260
ddaf144c
GL
261 /* remove chip and handler */
262 irq_set_chip_and_handler(irq, NULL, NULL);
913af207 263
ddaf144c
GL
264 /* Make sure it's completed */
265 synchronize_irq(irq);
913af207 266
ddaf144c
GL
267 /* Tell the PIC about it */
268 if (domain->ops->unmap)
269 domain->ops->unmap(domain, irq);
270 smp_mb();
913af207 271
ddaf144c
GL
272 irq_data->domain = NULL;
273 irq_data->hwirq = 0;
913af207 274
ddaf144c
GL
275 /* Clear reverse map for this hwirq */
276 if (hwirq < domain->revmap_size) {
277 domain->linear_revmap[hwirq] = 0;
278 } else {
279 mutex_lock(&revmap_trees_mutex);
280 radix_tree_delete(&domain->revmap_tree, hwirq);
281 mutex_unlock(&revmap_trees_mutex);
913af207
GL
282 }
283}
284
ddaf144c
GL
285int irq_domain_associate(struct irq_domain *domain, unsigned int virq,
286 irq_hw_number_t hwirq)
cc79ca69 287{
ddaf144c
GL
288 struct irq_data *irq_data = irq_get_irq_data(virq);
289 int ret;
cc79ca69 290
ddaf144c
GL
291 if (WARN(hwirq >= domain->hwirq_max,
292 "error: hwirq 0x%x is too large for %s\n", (int)hwirq, domain->name))
293 return -EINVAL;
294 if (WARN(!irq_data, "error: virq%i is not allocated", virq))
295 return -EINVAL;
296 if (WARN(irq_data->domain, "error: virq%i is already associated", virq))
297 return -EINVAL;
cc79ca69 298
ddaf144c
GL
299 mutex_lock(&irq_domain_mutex);
300 irq_data->hwirq = hwirq;
301 irq_data->domain = domain;
302 if (domain->ops->map) {
303 ret = domain->ops->map(domain, virq, hwirq);
304 if (ret != 0) {
305 /*
306 * If map() returns -EPERM, this interrupt is protected
307 * by the firmware or some other service and shall not
308 * be mapped. Don't bother telling the user about it.
309 */
310 if (ret != -EPERM) {
311 pr_info("%s didn't like hwirq-0x%lx to VIRQ%i mapping (rc=%d)\n",
312 domain->name, hwirq, virq, ret);
f5a1ad05 313 }
ddaf144c
GL
314 irq_data->domain = NULL;
315 irq_data->hwirq = 0;
316 mutex_unlock(&irq_domain_mutex);
317 return ret;
98aa468e
GL
318 }
319
ddaf144c
GL
320 /* If not already assigned, give the domain the chip's name */
321 if (!domain->name && irq_data->chip)
322 domain->name = irq_data->chip->name;
323 }
2a71a1a9 324
ddaf144c
GL
325 if (hwirq < domain->revmap_size) {
326 domain->linear_revmap[hwirq] = virq;
327 } else {
328 mutex_lock(&revmap_trees_mutex);
329 radix_tree_insert(&domain->revmap_tree, hwirq, irq_data);
330 mutex_unlock(&revmap_trees_mutex);
98aa468e 331 }
ddaf144c
GL
332 mutex_unlock(&irq_domain_mutex);
333
334 irq_clear_status_flags(virq, IRQ_NOREQUEST);
cc79ca69
GL
335
336 return 0;
337}
ddaf144c 338EXPORT_SYMBOL_GPL(irq_domain_associate);
98aa468e 339
ddaf144c
GL
340void irq_domain_associate_many(struct irq_domain *domain, unsigned int irq_base,
341 irq_hw_number_t hwirq_base, int count)
342{
5d4c9bc7 343 struct device_node *of_node;
ddaf144c
GL
344 int i;
345
5d4c9bc7 346 of_node = irq_domain_get_of_node(domain);
ddaf144c 347 pr_debug("%s(%s, irqbase=%i, hwbase=%i, count=%i)\n", __func__,
5d4c9bc7 348 of_node_full_name(of_node), irq_base, (int)hwirq_base, count);
ddaf144c
GL
349
350 for (i = 0; i < count; i++) {
351 irq_domain_associate(domain, irq_base + i, hwirq_base + i);
352 }
cc79ca69 353}
98aa468e 354EXPORT_SYMBOL_GPL(irq_domain_associate_many);
cc79ca69
GL
355
356/**
357 * irq_create_direct_mapping() - Allocate an irq for direct mapping
68700650 358 * @domain: domain to allocate the irq for or NULL for default domain
cc79ca69
GL
359 *
360 * This routine is used for irq controllers which can choose the hardware
361 * interrupt numbers they generate. In such a case it's simplest to use
1aa0dd94
GL
362 * the linux irq as the hardware interrupt number. It still uses the linear
363 * or radix tree to store the mapping, but the irq controller can optimize
364 * the revmap path by using the hwirq directly.
cc79ca69 365 */
68700650 366unsigned int irq_create_direct_mapping(struct irq_domain *domain)
cc79ca69 367{
5d4c9bc7 368 struct device_node *of_node;
cc79ca69
GL
369 unsigned int virq;
370
68700650
GL
371 if (domain == NULL)
372 domain = irq_default_domain;
cc79ca69 373
5d4c9bc7
MZ
374 of_node = irq_domain_get_of_node(domain);
375 virq = irq_alloc_desc_from(1, of_node_to_nid(of_node));
03848373 376 if (!virq) {
54a90588 377 pr_debug("create_direct virq allocation failed\n");
03848373 378 return 0;
cc79ca69 379 }
1aa0dd94 380 if (virq >= domain->revmap_direct_max_irq) {
cc79ca69 381 pr_err("ERROR: no free irqs available below %i maximum\n",
1aa0dd94 382 domain->revmap_direct_max_irq);
cc79ca69
GL
383 irq_free_desc(virq);
384 return 0;
385 }
54a90588 386 pr_debug("create_direct obtained virq %d\n", virq);
cc79ca69 387
98aa468e 388 if (irq_domain_associate(domain, virq, virq)) {
cc79ca69 389 irq_free_desc(virq);
03848373 390 return 0;
cc79ca69
GL
391 }
392
393 return virq;
394}
ecd84eb2 395EXPORT_SYMBOL_GPL(irq_create_direct_mapping);
cc79ca69
GL
396
397/**
398 * irq_create_mapping() - Map a hardware interrupt into linux irq space
68700650
GL
399 * @domain: domain owning this hardware interrupt or NULL for default domain
400 * @hwirq: hardware irq number in that domain space
cc79ca69
GL
401 *
402 * Only one mapping per hardware interrupt is permitted. Returns a linux
403 * irq number.
404 * If the sense/trigger is to be specified, set_irq_type() should be called
405 * on the number returned from that call.
406 */
68700650 407unsigned int irq_create_mapping(struct irq_domain *domain,
cc79ca69
GL
408 irq_hw_number_t hwirq)
409{
5d4c9bc7 410 struct device_node *of_node;
5b7526e3 411 int virq;
cc79ca69 412
54a90588 413 pr_debug("irq_create_mapping(0x%p, 0x%lx)\n", domain, hwirq);
cc79ca69 414
68700650
GL
415 /* Look for default domain if nececssary */
416 if (domain == NULL)
417 domain = irq_default_domain;
418 if (domain == NULL) {
798f0fd1 419 WARN(1, "%s(, %lx) called with NULL domain\n", __func__, hwirq);
03848373 420 return 0;
cc79ca69 421 }
54a90588 422 pr_debug("-> using domain @%p\n", domain);
cc79ca69 423
5d4c9bc7
MZ
424 of_node = irq_domain_get_of_node(domain);
425
cc79ca69 426 /* Check if mapping already exists */
68700650 427 virq = irq_find_mapping(domain, hwirq);
03848373 428 if (virq) {
54a90588 429 pr_debug("-> existing mapping on virq %d\n", virq);
cc79ca69
GL
430 return virq;
431 }
432
1bc04f2c 433 /* Allocate a virtual interrupt number */
5d4c9bc7 434 virq = irq_domain_alloc_descs(-1, 1, hwirq, of_node_to_nid(of_node));
5b7526e3 435 if (virq <= 0) {
54a90588 436 pr_debug("-> virq allocation failed\n");
1bc04f2c 437 return 0;
cc79ca69
GL
438 }
439
98aa468e 440 if (irq_domain_associate(domain, virq, hwirq)) {
73255704 441 irq_free_desc(virq);
03848373 442 return 0;
cc79ca69
GL
443 }
444
54a90588 445 pr_debug("irq %lu on domain %s mapped to virtual irq %u\n",
5d4c9bc7 446 hwirq, of_node_full_name(of_node), virq);
cc79ca69
GL
447
448 return virq;
449}
450EXPORT_SYMBOL_GPL(irq_create_mapping);
451
98aa468e
GL
452/**
453 * irq_create_strict_mappings() - Map a range of hw irqs to fixed linux irqs
454 * @domain: domain owning the interrupt range
455 * @irq_base: beginning of linux IRQ range
456 * @hwirq_base: beginning of hardware IRQ range
457 * @count: Number of interrupts to map
458 *
459 * This routine is used for allocating and mapping a range of hardware
460 * irqs to linux irqs where the linux irq numbers are at pre-defined
461 * locations. For use by controllers that already have static mappings
462 * to insert in to the domain.
463 *
464 * Non-linear users can use irq_create_identity_mapping() for IRQ-at-a-time
465 * domain insertion.
466 *
467 * 0 is returned upon success, while any failure to establish a static
468 * mapping is treated as an error.
469 */
470int irq_create_strict_mappings(struct irq_domain *domain, unsigned int irq_base,
471 irq_hw_number_t hwirq_base, int count)
472{
5d4c9bc7 473 struct device_node *of_node;
98aa468e
GL
474 int ret;
475
5d4c9bc7 476 of_node = irq_domain_get_of_node(domain);
98aa468e 477 ret = irq_alloc_descs(irq_base, irq_base, count,
5d4c9bc7 478 of_node_to_nid(of_node));
98aa468e
GL
479 if (unlikely(ret < 0))
480 return ret;
481
ddaf144c 482 irq_domain_associate_many(domain, irq_base, hwirq_base, count);
98aa468e
GL
483 return 0;
484}
485EXPORT_SYMBOL_GPL(irq_create_strict_mappings);
486
11e4438e
MZ
487static int irq_domain_translate(struct irq_domain *d,
488 struct irq_fwspec *fwspec,
489 irq_hw_number_t *hwirq, unsigned int *type)
490{
491#ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
492 if (d->ops->translate)
493 return d->ops->translate(d, fwspec, hwirq, type);
494#endif
495 if (d->ops->xlate)
496 return d->ops->xlate(d, to_of_node(fwspec->fwnode),
497 fwspec->param, fwspec->param_count,
498 hwirq, type);
499
500 /* If domain has no translation, then we assume interrupt line */
501 *hwirq = fwspec->param[0];
502 return 0;
503}
504
505static void of_phandle_args_to_fwspec(struct of_phandle_args *irq_data,
506 struct irq_fwspec *fwspec)
507{
508 int i;
509
510 fwspec->fwnode = irq_data->np ? &irq_data->np->fwnode : NULL;
511 fwspec->param_count = irq_data->args_count;
512
513 for (i = 0; i < irq_data->args_count; i++)
514 fwspec->param[i] = irq_data->args[i];
515}
516
e6d30ab1 517unsigned int irq_create_of_mapping(struct of_phandle_args *irq_data)
cc79ca69 518{
11e4438e 519 struct irq_fwspec fwspec;
68700650 520 struct irq_domain *domain;
cc79ca69
GL
521 irq_hw_number_t hwirq;
522 unsigned int type = IRQ_TYPE_NONE;
f8264e34 523 int virq;
cc79ca69 524
11e4438e
MZ
525 of_phandle_args_to_fwspec(irq_data, &fwspec);
526
527 if (fwspec.fwnode)
528 domain = irq_find_matching_fwnode(fwspec.fwnode, DOMAIN_BUS_ANY);
529 else
530 domain = irq_default_domain;
531
68700650 532 if (!domain) {
798f0fd1 533 pr_warn("no irq domain found for %s !\n",
11e4438e 534 of_node_full_name(to_of_node(fwspec.fwnode)));
03848373 535 return 0;
cc79ca69
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536 }
537
11e4438e
MZ
538 if (irq_domain_translate(domain, &fwspec, &hwirq, &type))
539 return 0;
cc79ca69 540
0cc01aba 541 if (irq_domain_is_hierarchy(domain)) {
11e4438e
MZ
542 /* Temporary hack */
543 void *desc = &fwspec;
544#ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
545 if (!domain->ops->translate)
546 desc = irq_data;
547#endif
0cc01aba
YC
548 /*
549 * If we've already configured this interrupt,
550 * don't do it again, or hell will break loose.
551 */
552 virq = irq_find_mapping(domain, hwirq);
553 if (virq)
554 return virq;
555
11e4438e 556 virq = irq_domain_alloc_irqs(domain, 1, NUMA_NO_NODE, desc);
0cc01aba
YC
557 if (virq <= 0)
558 return 0;
559 } else {
560 /* Create mapping */
561 virq = irq_create_mapping(domain, hwirq);
562 if (!virq)
563 return virq;
564 }
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565
566 /* Set type if specified and different than the current one */
567 if (type != IRQ_TYPE_NONE &&
fbab62c5 568 type != irq_get_trigger_type(virq))
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569 irq_set_irq_type(virq, type);
570 return virq;
571}
572EXPORT_SYMBOL_GPL(irq_create_of_mapping);
573
574/**
575 * irq_dispose_mapping() - Unmap an interrupt
576 * @virq: linux irq number of the interrupt to unmap
577 */
578void irq_dispose_mapping(unsigned int virq)
579{
580 struct irq_data *irq_data = irq_get_irq_data(virq);
68700650 581 struct irq_domain *domain;
cc79ca69 582
03848373 583 if (!virq || !irq_data)
cc79ca69
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584 return;
585
68700650
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586 domain = irq_data->domain;
587 if (WARN_ON(domain == NULL))
cc79ca69
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588 return;
589
ddaf144c 590 irq_domain_disassociate(domain, virq);
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591 irq_free_desc(virq);
592}
593EXPORT_SYMBOL_GPL(irq_dispose_mapping);
594
595/**
596 * irq_find_mapping() - Find a linux irq from an hw irq number.
68700650
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597 * @domain: domain owning this hardware interrupt
598 * @hwirq: hardware irq number in that domain space
cc79ca69 599 */
68700650 600unsigned int irq_find_mapping(struct irq_domain *domain,
cc79ca69
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601 irq_hw_number_t hwirq)
602{
4c0946c4 603 struct irq_data *data;
cc79ca69 604
68700650
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605 /* Look for default domain if nececssary */
606 if (domain == NULL)
607 domain = irq_default_domain;
608 if (domain == NULL)
03848373 609 return 0;
cc79ca69 610
1aa0dd94 611 if (hwirq < domain->revmap_direct_max_irq) {
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612 data = irq_domain_get_irq_data(domain, hwirq);
613 if (data && data->hwirq == hwirq)
4c0946c4 614 return hwirq;
4c0946c4
GL
615 }
616
d3dcb436
GL
617 /* Check if the hwirq is in the linear revmap. */
618 if (hwirq < domain->revmap_size)
619 return domain->linear_revmap[hwirq];
cc79ca69 620
d3dcb436
GL
621 rcu_read_lock();
622 data = radix_tree_lookup(&domain->revmap_tree, hwirq);
623 rcu_read_unlock();
624 return data ? data->irq : 0;
cc79ca69 625}
cc79ca69 626EXPORT_SYMBOL_GPL(irq_find_mapping);
cc79ca69 627
092b2fb0 628#ifdef CONFIG_IRQ_DOMAIN_DEBUG
cc79ca69
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629static int virq_debug_show(struct seq_file *m, void *private)
630{
631 unsigned long flags;
632 struct irq_desc *desc;
1400ea86
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633 struct irq_domain *domain;
634 struct radix_tree_iter iter;
635 void *data, **slot;
cc79ca69
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636 int i;
637
1400ea86
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638 seq_printf(m, " %-16s %-6s %-10s %-10s %s\n",
639 "name", "mapped", "linear-max", "direct-max", "devtree-node");
640 mutex_lock(&irq_domain_mutex);
641 list_for_each_entry(domain, &irq_domain_list, link) {
5d4c9bc7 642 struct device_node *of_node;
1400ea86 643 int count = 0;
5d4c9bc7 644 of_node = irq_domain_get_of_node(domain);
1400ea86
GL
645 radix_tree_for_each_slot(slot, &domain->revmap_tree, &iter, 0)
646 count++;
647 seq_printf(m, "%c%-16s %6u %10u %10u %s\n",
648 domain == irq_default_domain ? '*' : ' ', domain->name,
649 domain->revmap_size + count, domain->revmap_size,
650 domain->revmap_direct_max_irq,
5d4c9bc7 651 of_node ? of_node_full_name(of_node) : "");
1400ea86
GL
652 }
653 mutex_unlock(&irq_domain_mutex);
654
655 seq_printf(m, "%-5s %-7s %-15s %-*s %6s %-14s %s\n", "irq", "hwirq",
5269a9ab 656 "chip name", (int)(2 * sizeof(void *) + 2), "chip data",
1400ea86 657 "active", "type", "domain");
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658
659 for (i = 1; i < nr_irqs; i++) {
660 desc = irq_to_desc(i);
661 if (!desc)
662 continue;
663
664 raw_spin_lock_irqsave(&desc->lock, flags);
1400ea86 665 domain = desc->irq_data.domain;
cc79ca69 666
1400ea86 667 if (domain) {
cc79ca69 668 struct irq_chip *chip;
1400ea86
GL
669 int hwirq = desc->irq_data.hwirq;
670 bool direct;
cc79ca69
GL
671
672 seq_printf(m, "%5d ", i);
1400ea86 673 seq_printf(m, "0x%05x ", hwirq);
cc79ca69
GL
674
675 chip = irq_desc_get_chip(desc);
0bb4afb4 676 seq_printf(m, "%-15s ", (chip && chip->name) ? chip->name : "none");
cc79ca69
GL
677
678 data = irq_desc_get_chip_data(desc);
15e06bf6 679 seq_printf(m, data ? "0x%p " : " %p ", data);
cc79ca69 680
1400ea86
GL
681 seq_printf(m, " %c ", (desc->action && desc->action->handler) ? '*' : ' ');
682 direct = (i == hwirq) && (i < domain->revmap_direct_max_irq);
683 seq_printf(m, "%6s%-8s ",
684 (hwirq < domain->revmap_size) ? "LINEAR" : "RADIX",
685 direct ? "(DIRECT)" : "");
0bb4afb4 686 seq_printf(m, "%s\n", desc->irq_data.domain->name);
cc79ca69
GL
687 }
688
689 raw_spin_unlock_irqrestore(&desc->lock, flags);
690 }
691
692 return 0;
693}
694
695static int virq_debug_open(struct inode *inode, struct file *file)
696{
697 return single_open(file, virq_debug_show, inode->i_private);
698}
699
700static const struct file_operations virq_debug_fops = {
701 .open = virq_debug_open,
702 .read = seq_read,
703 .llseek = seq_lseek,
704 .release = single_release,
705};
706
707static int __init irq_debugfs_init(void)
708{
092b2fb0 709 if (debugfs_create_file("irq_domain_mapping", S_IRUGO, NULL,
cc79ca69
GL
710 NULL, &virq_debug_fops) == NULL)
711 return -ENOMEM;
712
713 return 0;
714}
715__initcall(irq_debugfs_init);
092b2fb0 716#endif /* CONFIG_IRQ_DOMAIN_DEBUG */
cc79ca69 717
16b2e6e2
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718/**
719 * irq_domain_xlate_onecell() - Generic xlate for direct one cell bindings
720 *
721 * Device Tree IRQ specifier translation function which works with one cell
722 * bindings where the cell value maps directly to the hwirq number.
723 */
724int irq_domain_xlate_onecell(struct irq_domain *d, struct device_node *ctrlr,
725 const u32 *intspec, unsigned int intsize,
726 unsigned long *out_hwirq, unsigned int *out_type)
7e713301 727{
16b2e6e2 728 if (WARN_ON(intsize < 1))
7e713301 729 return -EINVAL;
7e713301
GL
730 *out_hwirq = intspec[0];
731 *out_type = IRQ_TYPE_NONE;
7e713301
GL
732 return 0;
733}
16b2e6e2
GL
734EXPORT_SYMBOL_GPL(irq_domain_xlate_onecell);
735
736/**
737 * irq_domain_xlate_twocell() - Generic xlate for direct two cell bindings
738 *
739 * Device Tree IRQ specifier translation function which works with two cell
740 * bindings where the cell values map directly to the hwirq number
741 * and linux irq flags.
742 */
743int irq_domain_xlate_twocell(struct irq_domain *d, struct device_node *ctrlr,
744 const u32 *intspec, unsigned int intsize,
745 irq_hw_number_t *out_hwirq, unsigned int *out_type)
746{
747 if (WARN_ON(intsize < 2))
748 return -EINVAL;
749 *out_hwirq = intspec[0];
750 *out_type = intspec[1] & IRQ_TYPE_SENSE_MASK;
751 return 0;
752}
753EXPORT_SYMBOL_GPL(irq_domain_xlate_twocell);
754
755/**
756 * irq_domain_xlate_onetwocell() - Generic xlate for one or two cell bindings
757 *
758 * Device Tree IRQ specifier translation function which works with either one
759 * or two cell bindings where the cell values map directly to the hwirq number
760 * and linux irq flags.
761 *
762 * Note: don't use this function unless your interrupt controller explicitly
763 * supports both one and two cell bindings. For the majority of controllers
764 * the _onecell() or _twocell() variants above should be used.
765 */
766int irq_domain_xlate_onetwocell(struct irq_domain *d,
767 struct device_node *ctrlr,
768 const u32 *intspec, unsigned int intsize,
769 unsigned long *out_hwirq, unsigned int *out_type)
770{
771 if (WARN_ON(intsize < 1))
772 return -EINVAL;
773 *out_hwirq = intspec[0];
774 *out_type = (intsize > 1) ? intspec[1] : IRQ_TYPE_NONE;
775 return 0;
776}
777EXPORT_SYMBOL_GPL(irq_domain_xlate_onetwocell);
7e713301 778
a18dc81b 779const struct irq_domain_ops irq_domain_simple_ops = {
16b2e6e2 780 .xlate = irq_domain_xlate_onetwocell,
75294957
GL
781};
782EXPORT_SYMBOL_GPL(irq_domain_simple_ops);
f8264e34
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783
784static int irq_domain_alloc_descs(int virq, unsigned int cnt,
785 irq_hw_number_t hwirq, int node)
786{
787 unsigned int hint;
788
789 if (virq >= 0) {
790 virq = irq_alloc_descs(virq, virq, cnt, node);
791 } else {
792 hint = hwirq % nr_irqs;
793 if (hint == 0)
794 hint++;
795 virq = irq_alloc_descs_from(hint, cnt, node);
796 if (virq <= 0 && hint > 1)
797 virq = irq_alloc_descs_from(1, cnt, node);
798 }
799
800 return virq;
801}
802
803#ifdef CONFIG_IRQ_DOMAIN_HIERARCHY
afb7da83
JL
804/**
805 * irq_domain_add_hierarchy - Add a irqdomain into the hierarchy
806 * @parent: Parent irq domain to associate with the new domain
807 * @flags: Irq domain flags associated to the domain
808 * @size: Size of the domain. See below
809 * @node: Optional device-tree node of the interrupt controller
810 * @ops: Pointer to the interrupt domain callbacks
811 * @host_data: Controller private data pointer
812 *
813 * If @size is 0 a tree domain is created, otherwise a linear domain.
814 *
815 * If successful the parent is associated to the new domain and the
816 * domain flags are set.
817 * Returns pointer to IRQ domain, or NULL on failure.
818 */
819struct irq_domain *irq_domain_add_hierarchy(struct irq_domain *parent,
820 unsigned int flags,
821 unsigned int size,
822 struct device_node *node,
823 const struct irq_domain_ops *ops,
824 void *host_data)
825{
826 struct irq_domain *domain;
827
828 if (size)
829 domain = irq_domain_add_linear(node, size, ops, host_data);
830 else
831 domain = irq_domain_add_tree(node, ops, host_data);
832 if (domain) {
833 domain->parent = parent;
834 domain->flags |= flags;
835 }
836
837 return domain;
838}
839
f8264e34
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840static void irq_domain_insert_irq(int virq)
841{
842 struct irq_data *data;
843
844 for (data = irq_get_irq_data(virq); data; data = data->parent_data) {
845 struct irq_domain *domain = data->domain;
846 irq_hw_number_t hwirq = data->hwirq;
847
848 if (hwirq < domain->revmap_size) {
849 domain->linear_revmap[hwirq] = virq;
850 } else {
851 mutex_lock(&revmap_trees_mutex);
852 radix_tree_insert(&domain->revmap_tree, hwirq, data);
853 mutex_unlock(&revmap_trees_mutex);
854 }
855
856 /* If not already assigned, give the domain the chip's name */
857 if (!domain->name && data->chip)
858 domain->name = data->chip->name;
859 }
860
861 irq_clear_status_flags(virq, IRQ_NOREQUEST);
862}
863
864static void irq_domain_remove_irq(int virq)
865{
866 struct irq_data *data;
867
868 irq_set_status_flags(virq, IRQ_NOREQUEST);
869 irq_set_chip_and_handler(virq, NULL, NULL);
870 synchronize_irq(virq);
871 smp_mb();
872
873 for (data = irq_get_irq_data(virq); data; data = data->parent_data) {
874 struct irq_domain *domain = data->domain;
875 irq_hw_number_t hwirq = data->hwirq;
876
877 if (hwirq < domain->revmap_size) {
878 domain->linear_revmap[hwirq] = 0;
879 } else {
880 mutex_lock(&revmap_trees_mutex);
881 radix_tree_delete(&domain->revmap_tree, hwirq);
882 mutex_unlock(&revmap_trees_mutex);
883 }
884 }
885}
886
887static struct irq_data *irq_domain_insert_irq_data(struct irq_domain *domain,
888 struct irq_data *child)
889{
890 struct irq_data *irq_data;
891
6783011b
JL
892 irq_data = kzalloc_node(sizeof(*irq_data), GFP_KERNEL,
893 irq_data_get_node(child));
f8264e34
JL
894 if (irq_data) {
895 child->parent_data = irq_data;
896 irq_data->irq = child->irq;
0d0b4c86 897 irq_data->common = child->common;
f8264e34
JL
898 irq_data->domain = domain;
899 }
900
901 return irq_data;
902}
903
904static void irq_domain_free_irq_data(unsigned int virq, unsigned int nr_irqs)
905{
906 struct irq_data *irq_data, *tmp;
907 int i;
908
909 for (i = 0; i < nr_irqs; i++) {
910 irq_data = irq_get_irq_data(virq + i);
911 tmp = irq_data->parent_data;
912 irq_data->parent_data = NULL;
913 irq_data->domain = NULL;
914
915 while (tmp) {
916 irq_data = tmp;
917 tmp = tmp->parent_data;
918 kfree(irq_data);
919 }
920 }
921}
922
923static int irq_domain_alloc_irq_data(struct irq_domain *domain,
924 unsigned int virq, unsigned int nr_irqs)
925{
926 struct irq_data *irq_data;
927 struct irq_domain *parent;
928 int i;
929
930 /* The outermost irq_data is embedded in struct irq_desc */
931 for (i = 0; i < nr_irqs; i++) {
932 irq_data = irq_get_irq_data(virq + i);
933 irq_data->domain = domain;
934
935 for (parent = domain->parent; parent; parent = parent->parent) {
936 irq_data = irq_domain_insert_irq_data(parent, irq_data);
937 if (!irq_data) {
938 irq_domain_free_irq_data(virq, i + 1);
939 return -ENOMEM;
940 }
941 }
942 }
943
944 return 0;
945}
946
947/**
948 * irq_domain_get_irq_data - Get irq_data associated with @virq and @domain
949 * @domain: domain to match
950 * @virq: IRQ number to get irq_data
951 */
952struct irq_data *irq_domain_get_irq_data(struct irq_domain *domain,
953 unsigned int virq)
954{
955 struct irq_data *irq_data;
956
957 for (irq_data = irq_get_irq_data(virq); irq_data;
958 irq_data = irq_data->parent_data)
959 if (irq_data->domain == domain)
960 return irq_data;
961
962 return NULL;
963}
964
965/**
966 * irq_domain_set_hwirq_and_chip - Set hwirq and irqchip of @virq at @domain
967 * @domain: Interrupt domain to match
968 * @virq: IRQ number
969 * @hwirq: The hwirq number
970 * @chip: The associated interrupt chip
971 * @chip_data: The associated chip data
972 */
973int irq_domain_set_hwirq_and_chip(struct irq_domain *domain, unsigned int virq,
974 irq_hw_number_t hwirq, struct irq_chip *chip,
975 void *chip_data)
976{
977 struct irq_data *irq_data = irq_domain_get_irq_data(domain, virq);
978
979 if (!irq_data)
980 return -ENOENT;
981
982 irq_data->hwirq = hwirq;
983 irq_data->chip = chip ? chip : &no_irq_chip;
984 irq_data->chip_data = chip_data;
985
986 return 0;
987}
988
1b537708
JL
989/**
990 * irq_domain_set_info - Set the complete data for a @virq in @domain
991 * @domain: Interrupt domain to match
992 * @virq: IRQ number
993 * @hwirq: The hardware interrupt number
994 * @chip: The associated interrupt chip
995 * @chip_data: The associated interrupt chip data
996 * @handler: The interrupt flow handler
997 * @handler_data: The interrupt flow handler data
998 * @handler_name: The interrupt handler name
999 */
1000void irq_domain_set_info(struct irq_domain *domain, unsigned int virq,
1001 irq_hw_number_t hwirq, struct irq_chip *chip,
1002 void *chip_data, irq_flow_handler_t handler,
1003 void *handler_data, const char *handler_name)
1004{
1005 irq_domain_set_hwirq_and_chip(domain, virq, hwirq, chip, chip_data);
1006 __irq_set_handler(virq, handler, 0, handler_name);
1007 irq_set_handler_data(virq, handler_data);
1008}
1009
f8264e34
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1010/**
1011 * irq_domain_reset_irq_data - Clear hwirq, chip and chip_data in @irq_data
1012 * @irq_data: The pointer to irq_data
1013 */
1014void irq_domain_reset_irq_data(struct irq_data *irq_data)
1015{
1016 irq_data->hwirq = 0;
1017 irq_data->chip = &no_irq_chip;
1018 irq_data->chip_data = NULL;
1019}
1020
1021/**
1022 * irq_domain_free_irqs_common - Clear irq_data and free the parent
1023 * @domain: Interrupt domain to match
1024 * @virq: IRQ number to start with
1025 * @nr_irqs: The number of irqs to free
1026 */
1027void irq_domain_free_irqs_common(struct irq_domain *domain, unsigned int virq,
1028 unsigned int nr_irqs)
1029{
1030 struct irq_data *irq_data;
1031 int i;
1032
1033 for (i = 0; i < nr_irqs; i++) {
1034 irq_data = irq_domain_get_irq_data(domain, virq + i);
1035 if (irq_data)
1036 irq_domain_reset_irq_data(irq_data);
1037 }
1038 irq_domain_free_irqs_parent(domain, virq, nr_irqs);
1039}
1040
1041/**
1042 * irq_domain_free_irqs_top - Clear handler and handler data, clear irqdata and free parent
1043 * @domain: Interrupt domain to match
1044 * @virq: IRQ number to start with
1045 * @nr_irqs: The number of irqs to free
1046 */
1047void irq_domain_free_irqs_top(struct irq_domain *domain, unsigned int virq,
1048 unsigned int nr_irqs)
1049{
1050 int i;
1051
1052 for (i = 0; i < nr_irqs; i++) {
1053 irq_set_handler_data(virq + i, NULL);
1054 irq_set_handler(virq + i, NULL);
1055 }
1056 irq_domain_free_irqs_common(domain, virq, nr_irqs);
1057}
1058
36d72731
JL
1059static bool irq_domain_is_auto_recursive(struct irq_domain *domain)
1060{
1061 return domain->flags & IRQ_DOMAIN_FLAG_AUTO_RECURSIVE;
1062}
1063
1064static void irq_domain_free_irqs_recursive(struct irq_domain *domain,
1065 unsigned int irq_base,
1066 unsigned int nr_irqs)
1067{
1068 domain->ops->free(domain, irq_base, nr_irqs);
1069 if (irq_domain_is_auto_recursive(domain)) {
1070 BUG_ON(!domain->parent);
1071 irq_domain_free_irqs_recursive(domain->parent, irq_base,
1072 nr_irqs);
1073 }
1074}
1075
1076static int irq_domain_alloc_irqs_recursive(struct irq_domain *domain,
1077 unsigned int irq_base,
1078 unsigned int nr_irqs, void *arg)
1079{
1080 int ret = 0;
1081 struct irq_domain *parent = domain->parent;
1082 bool recursive = irq_domain_is_auto_recursive(domain);
1083
1084 BUG_ON(recursive && !parent);
1085 if (recursive)
1086 ret = irq_domain_alloc_irqs_recursive(parent, irq_base,
1087 nr_irqs, arg);
1088 if (ret >= 0)
1089 ret = domain->ops->alloc(domain, irq_base, nr_irqs, arg);
1090 if (ret < 0 && recursive)
1091 irq_domain_free_irqs_recursive(parent, irq_base, nr_irqs);
1092
1093 return ret;
1094}
1095
f8264e34
JL
1096/**
1097 * __irq_domain_alloc_irqs - Allocate IRQs from domain
1098 * @domain: domain to allocate from
1099 * @irq_base: allocate specified IRQ nubmer if irq_base >= 0
1100 * @nr_irqs: number of IRQs to allocate
1101 * @node: NUMA node id for memory allocation
1102 * @arg: domain specific argument
1103 * @realloc: IRQ descriptors have already been allocated if true
1104 *
1105 * Allocate IRQ numbers and initialized all data structures to support
1106 * hierarchy IRQ domains.
1107 * Parameter @realloc is mainly to support legacy IRQs.
1108 * Returns error code or allocated IRQ number
1109 *
1110 * The whole process to setup an IRQ has been split into two steps.
1111 * The first step, __irq_domain_alloc_irqs(), is to allocate IRQ
1112 * descriptor and required hardware resources. The second step,
1113 * irq_domain_activate_irq(), is to program hardwares with preallocated
1114 * resources. In this way, it's easier to rollback when failing to
1115 * allocate resources.
1116 */
1117int __irq_domain_alloc_irqs(struct irq_domain *domain, int irq_base,
1118 unsigned int nr_irqs, int node, void *arg,
1119 bool realloc)
1120{
1121 int i, ret, virq;
1122
1123 if (domain == NULL) {
1124 domain = irq_default_domain;
1125 if (WARN(!domain, "domain is NULL; cannot allocate IRQ\n"))
1126 return -EINVAL;
1127 }
1128
1129 if (!domain->ops->alloc) {
1130 pr_debug("domain->ops->alloc() is NULL\n");
1131 return -ENOSYS;
1132 }
1133
1134 if (realloc && irq_base >= 0) {
1135 virq = irq_base;
1136 } else {
1137 virq = irq_domain_alloc_descs(irq_base, nr_irqs, 0, node);
1138 if (virq < 0) {
1139 pr_debug("cannot allocate IRQ(base %d, count %d)\n",
1140 irq_base, nr_irqs);
1141 return virq;
1142 }
1143 }
1144
1145 if (irq_domain_alloc_irq_data(domain, virq, nr_irqs)) {
1146 pr_debug("cannot allocate memory for IRQ%d\n", virq);
1147 ret = -ENOMEM;
1148 goto out_free_desc;
1149 }
1150
1151 mutex_lock(&irq_domain_mutex);
36d72731 1152 ret = irq_domain_alloc_irqs_recursive(domain, virq, nr_irqs, arg);
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JL
1153 if (ret < 0) {
1154 mutex_unlock(&irq_domain_mutex);
1155 goto out_free_irq_data;
1156 }
1157 for (i = 0; i < nr_irqs; i++)
1158 irq_domain_insert_irq(virq + i);
1159 mutex_unlock(&irq_domain_mutex);
1160
1161 return virq;
1162
1163out_free_irq_data:
1164 irq_domain_free_irq_data(virq, nr_irqs);
1165out_free_desc:
1166 irq_free_descs(virq, nr_irqs);
1167 return ret;
1168}
1169
1170/**
1171 * irq_domain_free_irqs - Free IRQ number and associated data structures
1172 * @virq: base IRQ number
1173 * @nr_irqs: number of IRQs to free
1174 */
1175void irq_domain_free_irqs(unsigned int virq, unsigned int nr_irqs)
1176{
1177 struct irq_data *data = irq_get_irq_data(virq);
1178 int i;
1179
1180 if (WARN(!data || !data->domain || !data->domain->ops->free,
1181 "NULL pointer, cannot free irq\n"))
1182 return;
1183
1184 mutex_lock(&irq_domain_mutex);
1185 for (i = 0; i < nr_irqs; i++)
1186 irq_domain_remove_irq(virq + i);
36d72731 1187 irq_domain_free_irqs_recursive(data->domain, virq, nr_irqs);
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JL
1188 mutex_unlock(&irq_domain_mutex);
1189
1190 irq_domain_free_irq_data(virq, nr_irqs);
1191 irq_free_descs(virq, nr_irqs);
1192}
1193
36d72731
JL
1194/**
1195 * irq_domain_alloc_irqs_parent - Allocate interrupts from parent domain
1196 * @irq_base: Base IRQ number
1197 * @nr_irqs: Number of IRQs to allocate
1198 * @arg: Allocation data (arch/domain specific)
1199 *
1200 * Check whether the domain has been setup recursive. If not allocate
1201 * through the parent domain.
1202 */
1203int irq_domain_alloc_irqs_parent(struct irq_domain *domain,
1204 unsigned int irq_base, unsigned int nr_irqs,
1205 void *arg)
1206{
1207 /* irq_domain_alloc_irqs_recursive() has called parent's alloc() */
1208 if (irq_domain_is_auto_recursive(domain))
1209 return 0;
1210
1211 domain = domain->parent;
1212 if (domain)
1213 return irq_domain_alloc_irqs_recursive(domain, irq_base,
1214 nr_irqs, arg);
1215 return -ENOSYS;
1216}
1217
1218/**
1219 * irq_domain_free_irqs_parent - Free interrupts from parent domain
1220 * @irq_base: Base IRQ number
1221 * @nr_irqs: Number of IRQs to free
1222 *
1223 * Check whether the domain has been setup recursive. If not free
1224 * through the parent domain.
1225 */
1226void irq_domain_free_irqs_parent(struct irq_domain *domain,
1227 unsigned int irq_base, unsigned int nr_irqs)
1228{
1229 /* irq_domain_free_irqs_recursive() will call parent's free */
1230 if (!irq_domain_is_auto_recursive(domain) && domain->parent)
1231 irq_domain_free_irqs_recursive(domain->parent, irq_base,
1232 nr_irqs);
1233}
1234
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1235/**
1236 * irq_domain_activate_irq - Call domain_ops->activate recursively to activate
1237 * interrupt
1238 * @irq_data: outermost irq_data associated with interrupt
1239 *
1240 * This is the second step to call domain_ops->activate to program interrupt
1241 * controllers, so the interrupt could actually get delivered.
1242 */
1243void irq_domain_activate_irq(struct irq_data *irq_data)
1244{
1245 if (irq_data && irq_data->domain) {
1246 struct irq_domain *domain = irq_data->domain;
1247
1248 if (irq_data->parent_data)
1249 irq_domain_activate_irq(irq_data->parent_data);
1250 if (domain->ops->activate)
1251 domain->ops->activate(domain, irq_data);
1252 }
1253}
1254
1255/**
1256 * irq_domain_deactivate_irq - Call domain_ops->deactivate recursively to
1257 * deactivate interrupt
1258 * @irq_data: outermost irq_data associated with interrupt
1259 *
1260 * It calls domain_ops->deactivate to program interrupt controllers to disable
1261 * interrupt delivery.
1262 */
1263void irq_domain_deactivate_irq(struct irq_data *irq_data)
1264{
1265 if (irq_data && irq_data->domain) {
1266 struct irq_domain *domain = irq_data->domain;
1267
1268 if (domain->ops->deactivate)
1269 domain->ops->deactivate(domain, irq_data);
1270 if (irq_data->parent_data)
1271 irq_domain_deactivate_irq(irq_data->parent_data);
1272 }
1273}
1274
1275static void irq_domain_check_hierarchy(struct irq_domain *domain)
1276{
1277 /* Hierarchy irq_domains must implement callback alloc() */
1278 if (domain->ops->alloc)
1279 domain->flags |= IRQ_DOMAIN_FLAG_HIERARCHY;
1280}
1281#else /* CONFIG_IRQ_DOMAIN_HIERARCHY */
1282/**
1283 * irq_domain_get_irq_data - Get irq_data associated with @virq and @domain
1284 * @domain: domain to match
1285 * @virq: IRQ number to get irq_data
1286 */
1287struct irq_data *irq_domain_get_irq_data(struct irq_domain *domain,
1288 unsigned int virq)
1289{
1290 struct irq_data *irq_data = irq_get_irq_data(virq);
1291
1292 return (irq_data && irq_data->domain == domain) ? irq_data : NULL;
1293}
1294
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1295/**
1296 * irq_domain_set_info - Set the complete data for a @virq in @domain
1297 * @domain: Interrupt domain to match
1298 * @virq: IRQ number
1299 * @hwirq: The hardware interrupt number
1300 * @chip: The associated interrupt chip
1301 * @chip_data: The associated interrupt chip data
1302 * @handler: The interrupt flow handler
1303 * @handler_data: The interrupt flow handler data
1304 * @handler_name: The interrupt handler name
1305 */
1306void irq_domain_set_info(struct irq_domain *domain, unsigned int virq,
1307 irq_hw_number_t hwirq, struct irq_chip *chip,
1308 void *chip_data, irq_flow_handler_t handler,
1309 void *handler_data, const char *handler_name)
1310{
1311 irq_set_chip_and_handler_name(virq, chip, handler, handler_name);
1312 irq_set_chip_data(virq, chip_data);
1313 irq_set_handler_data(virq, handler_data);
1314}
1315
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JL
1316static void irq_domain_check_hierarchy(struct irq_domain *domain)
1317{
1318}
1319#endif /* CONFIG_IRQ_DOMAIN_HIERARCHY */