i2c: sh_mobile: Add support for r8a73a4 and sh73a0
[linux-2.6-block.git] / drivers / of / irq.c
CommitLineData
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GL
1/*
2 * Derived from arch/i386/kernel/irq.c
3 * Copyright (C) 1992 Linus Torvalds
4 * Adapted from arch/i386 by Gary Thomas
5 * Copyright (C) 1995-1996 Gary Thomas (gdt@linuxppc.org)
6 * Updated and modified by Cort Dougan <cort@fsmlabs.com>
7 * Copyright (C) 1996-2001 Cort Dougan
8 * Adapted for Power Macintosh by Paul Mackerras
9 * Copyright (C) 1996 Paul Mackerras (paulus@cs.anu.edu.au)
10 *
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation; either version
14 * 2 of the License, or (at your option) any later version.
15 *
16 * This file contains the code used to make IRQ descriptions in the
17 * device tree to actual irq numbers on an interrupt controller
18 * driver.
19 */
20
21#include <linux/errno.h>
c71a54b0 22#include <linux/list.h>
e3873444
GL
23#include <linux/module.h>
24#include <linux/of.h>
25#include <linux/of_irq.h>
26#include <linux/string.h>
c71a54b0 27#include <linux/slab.h>
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28
29/**
30 * irq_of_parse_and_map - Parse and map an interrupt into linux virq space
d84ff46a 31 * @dev: Device node of the device whose interrupt is to be mapped
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32 * @index: Index of the interrupt to map
33 *
0c02c800 34 * This function is a wrapper that chains of_irq_parse_one() and
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GL
35 * irq_create_of_mapping() to make things easier to callers
36 */
37unsigned int irq_of_parse_and_map(struct device_node *dev, int index)
38{
530210c7 39 struct of_phandle_args oirq;
e3873444 40
0c02c800 41 if (of_irq_parse_one(dev, index, &oirq))
77a7300a 42 return 0;
e3873444 43
e6d30ab1 44 return irq_create_of_mapping(&oirq);
e3873444
GL
45}
46EXPORT_SYMBOL_GPL(irq_of_parse_and_map);
7dc2e113
GL
47
48/**
49 * of_irq_find_parent - Given a device node, find its interrupt parent node
50 * @child: pointer to device node
51 *
52 * Returns a pointer to the interrupt parent node, or NULL if the interrupt
53 * parent could not be determined.
54 */
0b2e9a8e 55struct device_node *of_irq_find_parent(struct device_node *child)
7dc2e113 56{
b4bbb029 57 struct device_node *p;
9a6b2e58 58 const __be32 *parp;
7dc2e113 59
b4bbb029 60 if (!of_node_get(child))
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GL
61 return NULL;
62
63 do {
b4bbb029 64 parp = of_get_property(child, "interrupt-parent", NULL);
7dc2e113 65 if (parp == NULL)
b4bbb029 66 p = of_get_parent(child);
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GL
67 else {
68 if (of_irq_workarounds & OF_IMAP_NO_PHANDLE)
69 p = of_node_get(of_irq_dflt_pic);
70 else
9a6b2e58 71 p = of_find_node_by_phandle(be32_to_cpup(parp));
7dc2e113 72 }
b4bbb029
LT
73 of_node_put(child);
74 child = p;
7dc2e113
GL
75 } while (p && of_get_property(p, "#interrupt-cells", NULL) == NULL);
76
b4bbb029 77 return p;
7dc2e113
GL
78}
79
80/**
0c02c800 81 * of_irq_parse_raw - Low level interrupt tree parsing
7dc2e113 82 * @parent: the device interrupt parent
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GL
83 * @addr: address specifier (start of "reg" property of the device) in be32 format
84 * @out_irq: structure of_irq updated by this function
7dc2e113
GL
85 *
86 * Returns 0 on success and a negative number on error
87 *
88 * This function is a low-level interrupt tree walking function. It
89 * can be used to do a partial walk with synthetized reg and interrupts
90 * properties, for example when resolving PCI interrupts when no device
23616132
GL
91 * node exist for the parent. It takes an interrupt specifier structure as
92 * input, walks the tree looking for any interrupt-map properties, translates
93 * the specifier for each map, and then returns the translated map.
7dc2e113 94 */
23616132 95int of_irq_parse_raw(const __be32 *addr, struct of_phandle_args *out_irq)
7dc2e113
GL
96{
97 struct device_node *ipar, *tnode, *old = NULL, *newpar = NULL;
355e62f5 98 __be32 initial_match_array[MAX_PHANDLE_ARGS];
23616132 99 const __be32 *match_array = initial_match_array;
355e62f5 100 const __be32 *tmp, *imap, *imask, dummy_imask[] = { [0 ... MAX_PHANDLE_ARGS] = ~0 };
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GL
101 u32 intsize = 1, addrsize, newintsize = 0, newaddrsize = 0;
102 int imaplen, match, i;
103
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GL
104#ifdef DEBUG
105 of_print_phandle_args("of_irq_parse_raw: ", out_irq);
106#endif
7dc2e113 107
23616132 108 ipar = of_node_get(out_irq->np);
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GL
109
110 /* First get the #interrupt-cells property of the current cursor
111 * that tells us how to interpret the passed-in intspec. If there
112 * is none, we are nice and just walk up the tree
113 */
114 do {
115 tmp = of_get_property(ipar, "#interrupt-cells", NULL);
116 if (tmp != NULL) {
a7c194b0 117 intsize = be32_to_cpu(*tmp);
7dc2e113
GL
118 break;
119 }
120 tnode = ipar;
121 ipar = of_irq_find_parent(ipar);
122 of_node_put(tnode);
123 } while (ipar);
124 if (ipar == NULL) {
125 pr_debug(" -> no parent found !\n");
126 goto fail;
127 }
128
0c02c800 129 pr_debug("of_irq_parse_raw: ipar=%s, size=%d\n", of_node_full_name(ipar), intsize);
7dc2e113 130
23616132 131 if (out_irq->args_count != intsize)
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GL
132 return -EINVAL;
133
134 /* Look for this #address-cells. We have to implement the old linux
135 * trick of looking for the parent here as some device-trees rely on it
136 */
137 old = of_node_get(ipar);
138 do {
139 tmp = of_get_property(old, "#address-cells", NULL);
140 tnode = of_get_parent(old);
141 of_node_put(old);
142 old = tnode;
143 } while (old && tmp == NULL);
144 of_node_put(old);
145 old = NULL;
a7c194b0 146 addrsize = (tmp == NULL) ? 2 : be32_to_cpu(*tmp);
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GL
147
148 pr_debug(" -> addrsize=%d\n", addrsize);
149
355e62f5
GL
150 /* Range check so that the temporary buffer doesn't overflow */
151 if (WARN_ON(addrsize + intsize > MAX_PHANDLE_ARGS))
152 goto fail;
153
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GL
154 /* Precalculate the match array - this simplifies match loop */
155 for (i = 0; i < addrsize; i++)
78119fd1 156 initial_match_array[i] = addr ? addr[i] : 0;
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GL
157 for (i = 0; i < intsize; i++)
158 initial_match_array[addrsize + i] = cpu_to_be32(out_irq->args[i]);
159
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GL
160 /* Now start the actual "proper" walk of the interrupt tree */
161 while (ipar != NULL) {
162 /* Now check if cursor is an interrupt-controller and if it is
163 * then we are done
164 */
165 if (of_get_property(ipar, "interrupt-controller", NULL) !=
166 NULL) {
167 pr_debug(" -> got it !\n");
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GL
168 return 0;
169 }
170
78119fd1
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171 /*
172 * interrupt-map parsing does not work without a reg
173 * property when #address-cells != 0
174 */
175 if (addrsize && !addr) {
176 pr_debug(" -> no reg passed in when needed !\n");
177 goto fail;
178 }
179
7dc2e113
GL
180 /* Now look for an interrupt-map */
181 imap = of_get_property(ipar, "interrupt-map", &imaplen);
182 /* No interrupt map, check for an interrupt parent */
183 if (imap == NULL) {
184 pr_debug(" -> no map, getting parent\n");
185 newpar = of_irq_find_parent(ipar);
186 goto skiplevel;
187 }
188 imaplen /= sizeof(u32);
189
190 /* Look for a mask */
191 imask = of_get_property(ipar, "interrupt-map-mask", NULL);
23616132
GL
192 if (!imask)
193 imask = dummy_imask;
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GL
194
195 /* Parse interrupt-map */
196 match = 0;
197 while (imaplen > (addrsize + intsize + 1) && !match) {
198 /* Compare specifiers */
199 match = 1;
23616132 200 for (i = 0; i < (addrsize + intsize); i++, imaplen--)
74dac2ed 201 match &= !((match_array[i] ^ *imap++) & imask[i]);
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GL
202
203 pr_debug(" -> match=%d (imaplen=%d)\n", match, imaplen);
204
205 /* Get the interrupt parent */
206 if (of_irq_workarounds & OF_IMAP_NO_PHANDLE)
207 newpar = of_node_get(of_irq_dflt_pic);
208 else
9a6b2e58 209 newpar = of_find_node_by_phandle(be32_to_cpup(imap));
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210 imap++;
211 --imaplen;
212
213 /* Check if not found */
214 if (newpar == NULL) {
215 pr_debug(" -> imap parent not found !\n");
216 goto fail;
217 }
218
1ca56e7d
PC
219 if (!of_device_is_available(newpar))
220 match = 0;
221
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GL
222 /* Get #interrupt-cells and #address-cells of new
223 * parent
224 */
225 tmp = of_get_property(newpar, "#interrupt-cells", NULL);
226 if (tmp == NULL) {
227 pr_debug(" -> parent lacks #interrupt-cells!\n");
228 goto fail;
229 }
a7c194b0 230 newintsize = be32_to_cpu(*tmp);
7dc2e113 231 tmp = of_get_property(newpar, "#address-cells", NULL);
a7c194b0 232 newaddrsize = (tmp == NULL) ? 0 : be32_to_cpu(*tmp);
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233
234 pr_debug(" -> newintsize=%d, newaddrsize=%d\n",
235 newintsize, newaddrsize);
236
237 /* Check for malformed properties */
355e62f5
GL
238 if (WARN_ON(newaddrsize + newintsize > MAX_PHANDLE_ARGS))
239 goto fail;
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GL
240 if (imaplen < (newaddrsize + newintsize))
241 goto fail;
242
243 imap += newaddrsize + newintsize;
244 imaplen -= newaddrsize + newintsize;
245
246 pr_debug(" -> imaplen=%d\n", imaplen);
247 }
248 if (!match)
249 goto fail;
250
23616132
GL
251 /*
252 * Successfully parsed an interrrupt-map translation; copy new
253 * interrupt specifier into the out_irq structure
254 */
2f53a713 255 out_irq->np = newpar;
23616132
GL
256
257 match_array = imap - newaddrsize - newintsize;
258 for (i = 0; i < newintsize; i++)
259 out_irq->args[i] = be32_to_cpup(imap - newintsize + i);
260 out_irq->args_count = intsize = newintsize;
7dc2e113 261 addrsize = newaddrsize;
7dc2e113
GL
262
263 skiplevel:
264 /* Iterate again with new parent */
74a7f084 265 pr_debug(" -> new parent: %s\n", of_node_full_name(newpar));
7dc2e113
GL
266 of_node_put(ipar);
267 ipar = newpar;
268 newpar = NULL;
269 }
270 fail:
271 of_node_put(ipar);
7dc2e113
GL
272 of_node_put(newpar);
273
274 return -EINVAL;
275}
0c02c800 276EXPORT_SYMBOL_GPL(of_irq_parse_raw);
7dc2e113
GL
277
278/**
0c02c800 279 * of_irq_parse_one - Resolve an interrupt for a device
7dc2e113
GL
280 * @device: the device whose interrupt is to be resolved
281 * @index: index of the interrupt to resolve
282 * @out_irq: structure of_irq filled by this function
283 *
23616132
GL
284 * This function resolves an interrupt for a node by walking the interrupt tree,
285 * finding which interrupt controller node it is attached to, and returning the
286 * interrupt specifier that can be used to retrieve a Linux IRQ number.
7dc2e113 287 */
530210c7 288int of_irq_parse_one(struct device_node *device, int index, struct of_phandle_args *out_irq)
7dc2e113
GL
289{
290 struct device_node *p;
d2f71839 291 const __be32 *intspec, *tmp, *addr;
7dc2e113 292 u32 intsize, intlen;
23616132 293 int i, res = -EINVAL;
7dc2e113 294
0c02c800 295 pr_debug("of_irq_parse_one: dev=%s, index=%d\n", of_node_full_name(device), index);
7dc2e113
GL
296
297 /* OldWorld mac stuff is "special", handle out of line */
298 if (of_irq_workarounds & OF_IMAP_OLDWORLD_MAC)
0c02c800 299 return of_irq_parse_oldworld(device, index, out_irq);
7dc2e113 300
79d97015
GL
301 /* Get the reg property (if any) */
302 addr = of_get_property(device, "reg", NULL);
303
a9ecdc0f
FF
304 /* Try the new-style interrupts-extended first */
305 res = of_parse_phandle_with_args(device, "interrupts-extended",
306 "#interrupt-cells", index, out_irq);
307 if (!res)
308 return of_irq_parse_raw(addr, out_irq);
309
7dc2e113
GL
310 /* Get the interrupts property */
311 intspec = of_get_property(device, "interrupts", &intlen);
a9ecdc0f
FF
312 if (intspec == NULL)
313 return -EINVAL;
314
d2f71839 315 intlen /= sizeof(*intspec);
7dc2e113 316
d2f71839 317 pr_debug(" intspec=%d intlen=%d\n", be32_to_cpup(intspec), intlen);
7dc2e113 318
7dc2e113
GL
319 /* Look for the interrupt parent. */
320 p = of_irq_find_parent(device);
321 if (p == NULL)
322 return -EINVAL;
323
324 /* Get size of interrupt specifier */
325 tmp = of_get_property(p, "#interrupt-cells", NULL);
326 if (tmp == NULL)
327 goto out;
a7c194b0 328 intsize = be32_to_cpu(*tmp);
7dc2e113
GL
329
330 pr_debug(" intsize=%d intlen=%d\n", intsize, intlen);
331
332 /* Check index */
333 if ((index + 1) * intsize > intlen)
334 goto out;
335
23616132
GL
336 /* Copy intspec into irq structure */
337 intspec += index * intsize;
338 out_irq->np = p;
339 out_irq->args_count = intsize;
340 for (i = 0; i < intsize; i++)
341 out_irq->args[i] = be32_to_cpup(intspec++);
342
343 /* Check if there are any interrupt-map translations to process */
344 res = of_irq_parse_raw(addr, out_irq);
7dc2e113
GL
345 out:
346 of_node_put(p);
347 return res;
348}
0c02c800 349EXPORT_SYMBOL_GPL(of_irq_parse_one);
7dc2e113
GL
350
351/**
352 * of_irq_to_resource - Decode a node's IRQ and return it as a resource
353 * @dev: pointer to device tree node
354 * @index: zero-based index of the irq
355 * @r: pointer to resource structure to return result into.
356 */
357int of_irq_to_resource(struct device_node *dev, int index, struct resource *r)
358{
359 int irq = irq_of_parse_and_map(dev, index);
360
361 /* Only dereference the resource if both the
362 * resource and the irq are valid. */
77a7300a 363 if (r && irq) {
661db794
BC
364 const char *name = NULL;
365
cf9e2368 366 memset(r, 0, sizeof(*r));
661db794 367 /*
ae107d06 368 * Get optional "interrupt-names" property to add a name
661db794
BC
369 * to the resource.
370 */
371 of_property_read_string_index(dev, "interrupt-names", index,
372 &name);
373
7dc2e113 374 r->start = r->end = irq;
4a43d686 375 r->flags = IORESOURCE_IRQ | irqd_get_trigger_type(irq_get_irq_data(irq));
8804827b 376 r->name = name ? name : of_node_full_name(dev);
7dc2e113
GL
377 }
378
379 return irq;
380}
381EXPORT_SYMBOL_GPL(of_irq_to_resource);
52f6537c 382
9ec36caf
RH
383/**
384 * of_irq_get - Decode a node's IRQ and return it as a Linux irq number
385 * @dev: pointer to device tree node
386 * @index: zero-based index of the irq
387 *
388 * Returns Linux irq number on success, or -EPROBE_DEFER if the irq domain
389 * is not yet created.
390 *
391 */
392int of_irq_get(struct device_node *dev, int index)
393{
394 int rc;
395 struct of_phandle_args oirq;
396 struct irq_domain *domain;
397
398 rc = of_irq_parse_one(dev, index, &oirq);
399 if (rc)
400 return rc;
401
402 domain = irq_find_host(oirq.np);
403 if (!domain)
404 return -EPROBE_DEFER;
405
406 return irq_create_of_mapping(&oirq);
407}
408
ad69674e
GS
409/**
410 * of_irq_get_byname - Decode a node's IRQ and return it as a Linux irq number
411 * @dev: pointer to device tree node
412 * @name: irq name
413 *
414 * Returns Linux irq number on success, or -EPROBE_DEFER if the irq domain
415 * is not yet created, or error code in case of any other failure.
416 */
417int of_irq_get_byname(struct device_node *dev, const char *name)
418{
419 int index;
420
421 if (unlikely(!name))
422 return -EINVAL;
423
424 index = of_property_match_string(dev, "interrupt-names", name);
425 if (index < 0)
426 return index;
427
428 return of_irq_get(dev, index);
429}
430
52f6537c
AS
431/**
432 * of_irq_count - Count the number of IRQs a node uses
433 * @dev: pointer to device tree node
434 */
435int of_irq_count(struct device_node *dev)
436{
3da52787 437 struct of_phandle_args irq;
52f6537c
AS
438 int nr = 0;
439
3da52787 440 while (of_irq_parse_one(dev, nr, &irq) == 0)
52f6537c
AS
441 nr++;
442
443 return nr;
444}
445
446/**
447 * of_irq_to_resource_table - Fill in resource table with node's IRQ info
448 * @dev: pointer to device tree node
449 * @res: array of resources to fill in
450 * @nr_irqs: the number of IRQs (and upper bound for num of @res elements)
451 *
452 * Returns the size of the filled in table (up to @nr_irqs).
453 */
454int of_irq_to_resource_table(struct device_node *dev, struct resource *res,
455 int nr_irqs)
456{
457 int i;
458
459 for (i = 0; i < nr_irqs; i++, res++)
77a7300a 460 if (!of_irq_to_resource(dev, i, res))
52f6537c
AS
461 break;
462
463 return i;
464}
a4f8bf22 465EXPORT_SYMBOL_GPL(of_irq_to_resource_table);
c71a54b0
RH
466
467struct intc_desc {
468 struct list_head list;
469 struct device_node *dev;
470 struct device_node *interrupt_parent;
471};
472
473/**
474 * of_irq_init - Scan and init matching interrupt controllers in DT
475 * @matches: 0 terminated array of nodes to match and init function to call
476 *
477 * This function scans the device tree for matching interrupt controller nodes,
478 * and calls their initialization functions in order with parents first.
479 */
480void __init of_irq_init(const struct of_device_id *matches)
481{
482 struct device_node *np, *parent = NULL;
483 struct intc_desc *desc, *temp_desc;
484 struct list_head intc_desc_list, intc_parent_list;
485
486 INIT_LIST_HEAD(&intc_desc_list);
487 INIT_LIST_HEAD(&intc_parent_list);
488
489 for_each_matching_node(np, matches) {
bf49be02
PC
490 if (!of_find_property(np, "interrupt-controller", NULL) ||
491 !of_device_is_available(np))
c71a54b0
RH
492 continue;
493 /*
494 * Here, we allocate and populate an intc_desc with the node
495 * pointer, interrupt-parent device_node etc.
496 */
497 desc = kzalloc(sizeof(*desc), GFP_KERNEL);
498 if (WARN_ON(!desc))
499 goto err;
500
501 desc->dev = np;
502 desc->interrupt_parent = of_irq_find_parent(np);
d7fb6d0a
RH
503 if (desc->interrupt_parent == np)
504 desc->interrupt_parent = NULL;
c71a54b0
RH
505 list_add_tail(&desc->list, &intc_desc_list);
506 }
507
508 /*
509 * The root irq controller is the one without an interrupt-parent.
510 * That one goes first, followed by the controllers that reference it,
511 * followed by the ones that reference the 2nd level controllers, etc.
512 */
513 while (!list_empty(&intc_desc_list)) {
514 /*
515 * Process all controllers with the current 'parent'.
516 * First pass will be looking for NULL as the parent.
517 * The assumption is that NULL parent means a root controller.
518 */
519 list_for_each_entry_safe(desc, temp_desc, &intc_desc_list, list) {
520 const struct of_device_id *match;
521 int ret;
522 of_irq_init_cb_t irq_init_cb;
523
524 if (desc->interrupt_parent != parent)
525 continue;
526
527 list_del(&desc->list);
528 match = of_match_node(matches, desc->dev);
529 if (WARN(!match->data,
530 "of_irq_init: no init function for %s\n",
531 match->compatible)) {
532 kfree(desc);
533 continue;
534 }
535
536 pr_debug("of_irq_init: init %s @ %p, parent %p\n",
537 match->compatible,
538 desc->dev, desc->interrupt_parent);
d2e41518 539 irq_init_cb = (of_irq_init_cb_t)match->data;
c71a54b0
RH
540 ret = irq_init_cb(desc->dev, desc->interrupt_parent);
541 if (ret) {
542 kfree(desc);
543 continue;
544 }
545
546 /*
547 * This one is now set up; add it to the parent list so
548 * its children can get processed in a subsequent pass.
549 */
550 list_add_tail(&desc->list, &intc_parent_list);
551 }
552
553 /* Get the next pending parent that might have children */
c0cdfaa0
AL
554 desc = list_first_entry_or_null(&intc_parent_list,
555 typeof(*desc), list);
556 if (!desc) {
c71a54b0
RH
557 pr_err("of_irq_init: children remain, but no parents\n");
558 break;
559 }
560 list_del(&desc->list);
561 parent = desc->dev;
562 kfree(desc);
563 }
564
565 list_for_each_entry_safe(desc, temp_desc, &intc_parent_list, list) {
566 list_del(&desc->list);
567 kfree(desc);
568 }
569err:
570 list_for_each_entry_safe(desc, temp_desc, &intc_desc_list, list) {
571 list_del(&desc->list);
572 kfree(desc);
573 }
574}