xref: /openbmc/linux/drivers/xen/events/events_base.c (revision 5f32c314)
1 /*
2  * Xen event channels
3  *
4  * Xen models interrupts with abstract event channels.  Because each
5  * domain gets 1024 event channels, but NR_IRQ is not that large, we
6  * must dynamically map irqs<->event channels.  The event channels
7  * interface with the rest of the kernel by defining a xen interrupt
8  * chip.  When an event is received, it is mapped to an irq and sent
9  * through the normal interrupt processing path.
10  *
11  * There are four kinds of events which can be mapped to an event
12  * channel:
13  *
14  * 1. Inter-domain notifications.  This includes all the virtual
15  *    device events, since they're driven by front-ends in another domain
16  *    (typically dom0).
17  * 2. VIRQs, typically used for timers.  These are per-cpu events.
18  * 3. IPIs.
19  * 4. PIRQs - Hardware interrupts.
20  *
21  * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
22  */
23 
24 #define pr_fmt(fmt) "xen:" KBUILD_MODNAME ": " fmt
25 
26 #include <linux/linkage.h>
27 #include <linux/interrupt.h>
28 #include <linux/irq.h>
29 #include <linux/module.h>
30 #include <linux/string.h>
31 #include <linux/bootmem.h>
32 #include <linux/slab.h>
33 #include <linux/irqnr.h>
34 #include <linux/pci.h>
35 
36 #ifdef CONFIG_X86
37 #include <asm/desc.h>
38 #include <asm/ptrace.h>
39 #include <asm/irq.h>
40 #include <asm/idle.h>
41 #include <asm/io_apic.h>
42 #include <asm/xen/page.h>
43 #include <asm/xen/pci.h>
44 #endif
45 #include <asm/sync_bitops.h>
46 #include <asm/xen/hypercall.h>
47 #include <asm/xen/hypervisor.h>
48 
49 #include <xen/xen.h>
50 #include <xen/hvm.h>
51 #include <xen/xen-ops.h>
52 #include <xen/events.h>
53 #include <xen/interface/xen.h>
54 #include <xen/interface/event_channel.h>
55 #include <xen/interface/hvm/hvm_op.h>
56 #include <xen/interface/hvm/params.h>
57 #include <xen/interface/physdev.h>
58 #include <xen/interface/sched.h>
59 #include <xen/interface/vcpu.h>
60 #include <asm/hw_irq.h>
61 
62 #include "events_internal.h"
63 
64 const struct evtchn_ops *evtchn_ops;
65 
66 /*
67  * This lock protects updates to the following mapping and reference-count
68  * arrays. The lock does not need to be acquired to read the mapping tables.
69  */
70 static DEFINE_MUTEX(irq_mapping_update_lock);
71 
72 static LIST_HEAD(xen_irq_list_head);
73 
74 /* IRQ <-> VIRQ mapping. */
75 static DEFINE_PER_CPU(int [NR_VIRQS], virq_to_irq) = {[0 ... NR_VIRQS-1] = -1};
76 
77 /* IRQ <-> IPI mapping */
78 static DEFINE_PER_CPU(int [XEN_NR_IPIS], ipi_to_irq) = {[0 ... XEN_NR_IPIS-1] = -1};
79 
80 int **evtchn_to_irq;
81 #ifdef CONFIG_X86
82 static unsigned long *pirq_eoi_map;
83 #endif
84 static bool (*pirq_needs_eoi)(unsigned irq);
85 
86 #define EVTCHN_ROW(e)  (e / (PAGE_SIZE/sizeof(**evtchn_to_irq)))
87 #define EVTCHN_COL(e)  (e % (PAGE_SIZE/sizeof(**evtchn_to_irq)))
88 #define EVTCHN_PER_ROW (PAGE_SIZE / sizeof(**evtchn_to_irq))
89 
90 /* Xen will never allocate port zero for any purpose. */
91 #define VALID_EVTCHN(chn)	((chn) != 0)
92 
93 static struct irq_chip xen_dynamic_chip;
94 static struct irq_chip xen_percpu_chip;
95 static struct irq_chip xen_pirq_chip;
96 static void enable_dynirq(struct irq_data *data);
97 static void disable_dynirq(struct irq_data *data);
98 
99 static void clear_evtchn_to_irq_row(unsigned row)
100 {
101 	unsigned col;
102 
103 	for (col = 0; col < EVTCHN_PER_ROW; col++)
104 		evtchn_to_irq[row][col] = -1;
105 }
106 
107 static void clear_evtchn_to_irq_all(void)
108 {
109 	unsigned row;
110 
111 	for (row = 0; row < EVTCHN_ROW(xen_evtchn_max_channels()); row++) {
112 		if (evtchn_to_irq[row] == NULL)
113 			continue;
114 		clear_evtchn_to_irq_row(row);
115 	}
116 }
117 
118 static int set_evtchn_to_irq(unsigned evtchn, unsigned irq)
119 {
120 	unsigned row;
121 	unsigned col;
122 
123 	if (evtchn >= xen_evtchn_max_channels())
124 		return -EINVAL;
125 
126 	row = EVTCHN_ROW(evtchn);
127 	col = EVTCHN_COL(evtchn);
128 
129 	if (evtchn_to_irq[row] == NULL) {
130 		/* Unallocated irq entries return -1 anyway */
131 		if (irq == -1)
132 			return 0;
133 
134 		evtchn_to_irq[row] = (int *)get_zeroed_page(GFP_KERNEL);
135 		if (evtchn_to_irq[row] == NULL)
136 			return -ENOMEM;
137 
138 		clear_evtchn_to_irq_row(row);
139 	}
140 
141 	evtchn_to_irq[EVTCHN_ROW(evtchn)][EVTCHN_COL(evtchn)] = irq;
142 	return 0;
143 }
144 
145 int get_evtchn_to_irq(unsigned evtchn)
146 {
147 	if (evtchn >= xen_evtchn_max_channels())
148 		return -1;
149 	if (evtchn_to_irq[EVTCHN_ROW(evtchn)] == NULL)
150 		return -1;
151 	return evtchn_to_irq[EVTCHN_ROW(evtchn)][EVTCHN_COL(evtchn)];
152 }
153 
154 /* Get info for IRQ */
155 struct irq_info *info_for_irq(unsigned irq)
156 {
157 	return irq_get_handler_data(irq);
158 }
159 
160 /* Constructors for packed IRQ information. */
161 static int xen_irq_info_common_setup(struct irq_info *info,
162 				     unsigned irq,
163 				     enum xen_irq_type type,
164 				     unsigned evtchn,
165 				     unsigned short cpu)
166 {
167 	int ret;
168 
169 	BUG_ON(info->type != IRQT_UNBOUND && info->type != type);
170 
171 	info->type = type;
172 	info->irq = irq;
173 	info->evtchn = evtchn;
174 	info->cpu = cpu;
175 
176 	ret = set_evtchn_to_irq(evtchn, irq);
177 	if (ret < 0)
178 		return ret;
179 
180 	irq_clear_status_flags(irq, IRQ_NOREQUEST|IRQ_NOAUTOEN);
181 
182 	return xen_evtchn_port_setup(info);
183 }
184 
185 static int xen_irq_info_evtchn_setup(unsigned irq,
186 				     unsigned evtchn)
187 {
188 	struct irq_info *info = info_for_irq(irq);
189 
190 	return xen_irq_info_common_setup(info, irq, IRQT_EVTCHN, evtchn, 0);
191 }
192 
193 static int xen_irq_info_ipi_setup(unsigned cpu,
194 				  unsigned irq,
195 				  unsigned evtchn,
196 				  enum ipi_vector ipi)
197 {
198 	struct irq_info *info = info_for_irq(irq);
199 
200 	info->u.ipi = ipi;
201 
202 	per_cpu(ipi_to_irq, cpu)[ipi] = irq;
203 
204 	return xen_irq_info_common_setup(info, irq, IRQT_IPI, evtchn, 0);
205 }
206 
207 static int xen_irq_info_virq_setup(unsigned cpu,
208 				   unsigned irq,
209 				   unsigned evtchn,
210 				   unsigned virq)
211 {
212 	struct irq_info *info = info_for_irq(irq);
213 
214 	info->u.virq = virq;
215 
216 	per_cpu(virq_to_irq, cpu)[virq] = irq;
217 
218 	return xen_irq_info_common_setup(info, irq, IRQT_VIRQ, evtchn, 0);
219 }
220 
221 static int xen_irq_info_pirq_setup(unsigned irq,
222 				   unsigned evtchn,
223 				   unsigned pirq,
224 				   unsigned gsi,
225 				   uint16_t domid,
226 				   unsigned char flags)
227 {
228 	struct irq_info *info = info_for_irq(irq);
229 
230 	info->u.pirq.pirq = pirq;
231 	info->u.pirq.gsi = gsi;
232 	info->u.pirq.domid = domid;
233 	info->u.pirq.flags = flags;
234 
235 	return xen_irq_info_common_setup(info, irq, IRQT_PIRQ, evtchn, 0);
236 }
237 
238 static void xen_irq_info_cleanup(struct irq_info *info)
239 {
240 	set_evtchn_to_irq(info->evtchn, -1);
241 	info->evtchn = 0;
242 }
243 
244 /*
245  * Accessors for packed IRQ information.
246  */
247 unsigned int evtchn_from_irq(unsigned irq)
248 {
249 	if (unlikely(WARN(irq < 0 || irq >= nr_irqs, "Invalid irq %d!\n", irq)))
250 		return 0;
251 
252 	return info_for_irq(irq)->evtchn;
253 }
254 
255 unsigned irq_from_evtchn(unsigned int evtchn)
256 {
257 	return get_evtchn_to_irq(evtchn);
258 }
259 EXPORT_SYMBOL_GPL(irq_from_evtchn);
260 
261 int irq_from_virq(unsigned int cpu, unsigned int virq)
262 {
263 	return per_cpu(virq_to_irq, cpu)[virq];
264 }
265 
266 static enum ipi_vector ipi_from_irq(unsigned irq)
267 {
268 	struct irq_info *info = info_for_irq(irq);
269 
270 	BUG_ON(info == NULL);
271 	BUG_ON(info->type != IRQT_IPI);
272 
273 	return info->u.ipi;
274 }
275 
276 static unsigned virq_from_irq(unsigned irq)
277 {
278 	struct irq_info *info = info_for_irq(irq);
279 
280 	BUG_ON(info == NULL);
281 	BUG_ON(info->type != IRQT_VIRQ);
282 
283 	return info->u.virq;
284 }
285 
286 static unsigned pirq_from_irq(unsigned irq)
287 {
288 	struct irq_info *info = info_for_irq(irq);
289 
290 	BUG_ON(info == NULL);
291 	BUG_ON(info->type != IRQT_PIRQ);
292 
293 	return info->u.pirq.pirq;
294 }
295 
296 static enum xen_irq_type type_from_irq(unsigned irq)
297 {
298 	return info_for_irq(irq)->type;
299 }
300 
301 unsigned cpu_from_irq(unsigned irq)
302 {
303 	return info_for_irq(irq)->cpu;
304 }
305 
306 unsigned int cpu_from_evtchn(unsigned int evtchn)
307 {
308 	int irq = get_evtchn_to_irq(evtchn);
309 	unsigned ret = 0;
310 
311 	if (irq != -1)
312 		ret = cpu_from_irq(irq);
313 
314 	return ret;
315 }
316 
317 #ifdef CONFIG_X86
318 static bool pirq_check_eoi_map(unsigned irq)
319 {
320 	return test_bit(pirq_from_irq(irq), pirq_eoi_map);
321 }
322 #endif
323 
324 static bool pirq_needs_eoi_flag(unsigned irq)
325 {
326 	struct irq_info *info = info_for_irq(irq);
327 	BUG_ON(info->type != IRQT_PIRQ);
328 
329 	return info->u.pirq.flags & PIRQ_NEEDS_EOI;
330 }
331 
332 static void bind_evtchn_to_cpu(unsigned int chn, unsigned int cpu)
333 {
334 	int irq = get_evtchn_to_irq(chn);
335 	struct irq_info *info = info_for_irq(irq);
336 
337 	BUG_ON(irq == -1);
338 #ifdef CONFIG_SMP
339 	cpumask_copy(irq_to_desc(irq)->irq_data.affinity, cpumask_of(cpu));
340 #endif
341 
342 	xen_evtchn_port_bind_to_cpu(info, cpu);
343 
344 	info->cpu = cpu;
345 }
346 
347 static void xen_evtchn_mask_all(void)
348 {
349 	unsigned int evtchn;
350 
351 	for (evtchn = 0; evtchn < xen_evtchn_nr_channels(); evtchn++)
352 		mask_evtchn(evtchn);
353 }
354 
355 /**
356  * notify_remote_via_irq - send event to remote end of event channel via irq
357  * @irq: irq of event channel to send event to
358  *
359  * Unlike notify_remote_via_evtchn(), this is safe to use across
360  * save/restore. Notifications on a broken connection are silently
361  * dropped.
362  */
363 void notify_remote_via_irq(int irq)
364 {
365 	int evtchn = evtchn_from_irq(irq);
366 
367 	if (VALID_EVTCHN(evtchn))
368 		notify_remote_via_evtchn(evtchn);
369 }
370 EXPORT_SYMBOL_GPL(notify_remote_via_irq);
371 
372 static void xen_irq_init(unsigned irq)
373 {
374 	struct irq_info *info;
375 #ifdef CONFIG_SMP
376 	struct irq_desc *desc = irq_to_desc(irq);
377 
378 	/* By default all event channels notify CPU#0. */
379 	cpumask_copy(desc->irq_data.affinity, cpumask_of(0));
380 #endif
381 
382 	info = kzalloc(sizeof(*info), GFP_KERNEL);
383 	if (info == NULL)
384 		panic("Unable to allocate metadata for IRQ%d\n", irq);
385 
386 	info->type = IRQT_UNBOUND;
387 	info->refcnt = -1;
388 
389 	irq_set_handler_data(irq, info);
390 
391 	list_add_tail(&info->list, &xen_irq_list_head);
392 }
393 
394 static int __must_check xen_allocate_irq_dynamic(void)
395 {
396 	int first = 0;
397 	int irq;
398 
399 #ifdef CONFIG_X86_IO_APIC
400 	/*
401 	 * For an HVM guest or domain 0 which see "real" (emulated or
402 	 * actual respectively) GSIs we allocate dynamic IRQs
403 	 * e.g. those corresponding to event channels or MSIs
404 	 * etc. from the range above those "real" GSIs to avoid
405 	 * collisions.
406 	 */
407 	if (xen_initial_domain() || xen_hvm_domain())
408 		first = get_nr_irqs_gsi();
409 #endif
410 
411 	irq = irq_alloc_desc_from(first, -1);
412 
413 	if (irq >= 0)
414 		xen_irq_init(irq);
415 
416 	return irq;
417 }
418 
419 static int __must_check xen_allocate_irq_gsi(unsigned gsi)
420 {
421 	int irq;
422 
423 	/*
424 	 * A PV guest has no concept of a GSI (since it has no ACPI
425 	 * nor access to/knowledge of the physical APICs). Therefore
426 	 * all IRQs are dynamically allocated from the entire IRQ
427 	 * space.
428 	 */
429 	if (xen_pv_domain() && !xen_initial_domain())
430 		return xen_allocate_irq_dynamic();
431 
432 	/* Legacy IRQ descriptors are already allocated by the arch. */
433 	if (gsi < NR_IRQS_LEGACY)
434 		irq = gsi;
435 	else
436 		irq = irq_alloc_desc_at(gsi, -1);
437 
438 	xen_irq_init(irq);
439 
440 	return irq;
441 }
442 
443 static void xen_free_irq(unsigned irq)
444 {
445 	struct irq_info *info = irq_get_handler_data(irq);
446 
447 	if (WARN_ON(!info))
448 		return;
449 
450 	list_del(&info->list);
451 
452 	irq_set_handler_data(irq, NULL);
453 
454 	WARN_ON(info->refcnt > 0);
455 
456 	kfree(info);
457 
458 	/* Legacy IRQ descriptors are managed by the arch. */
459 	if (irq < NR_IRQS_LEGACY)
460 		return;
461 
462 	irq_free_desc(irq);
463 }
464 
465 static void xen_evtchn_close(unsigned int port)
466 {
467 	struct evtchn_close close;
468 
469 	close.port = port;
470 	if (HYPERVISOR_event_channel_op(EVTCHNOP_close, &close) != 0)
471 		BUG();
472 
473 	/* Closed ports are implicitly re-bound to VCPU0. */
474 	bind_evtchn_to_cpu(port, 0);
475 }
476 
477 static void pirq_query_unmask(int irq)
478 {
479 	struct physdev_irq_status_query irq_status;
480 	struct irq_info *info = info_for_irq(irq);
481 
482 	BUG_ON(info->type != IRQT_PIRQ);
483 
484 	irq_status.irq = pirq_from_irq(irq);
485 	if (HYPERVISOR_physdev_op(PHYSDEVOP_irq_status_query, &irq_status))
486 		irq_status.flags = 0;
487 
488 	info->u.pirq.flags &= ~PIRQ_NEEDS_EOI;
489 	if (irq_status.flags & XENIRQSTAT_needs_eoi)
490 		info->u.pirq.flags |= PIRQ_NEEDS_EOI;
491 }
492 
493 static bool probing_irq(int irq)
494 {
495 	struct irq_desc *desc = irq_to_desc(irq);
496 
497 	return desc && desc->action == NULL;
498 }
499 
500 static void eoi_pirq(struct irq_data *data)
501 {
502 	int evtchn = evtchn_from_irq(data->irq);
503 	struct physdev_eoi eoi = { .irq = pirq_from_irq(data->irq) };
504 	int rc = 0;
505 
506 	irq_move_irq(data);
507 
508 	if (VALID_EVTCHN(evtchn))
509 		clear_evtchn(evtchn);
510 
511 	if (pirq_needs_eoi(data->irq)) {
512 		rc = HYPERVISOR_physdev_op(PHYSDEVOP_eoi, &eoi);
513 		WARN_ON(rc);
514 	}
515 }
516 
517 static void mask_ack_pirq(struct irq_data *data)
518 {
519 	disable_dynirq(data);
520 	eoi_pirq(data);
521 }
522 
523 static unsigned int __startup_pirq(unsigned int irq)
524 {
525 	struct evtchn_bind_pirq bind_pirq;
526 	struct irq_info *info = info_for_irq(irq);
527 	int evtchn = evtchn_from_irq(irq);
528 	int rc;
529 
530 	BUG_ON(info->type != IRQT_PIRQ);
531 
532 	if (VALID_EVTCHN(evtchn))
533 		goto out;
534 
535 	bind_pirq.pirq = pirq_from_irq(irq);
536 	/* NB. We are happy to share unless we are probing. */
537 	bind_pirq.flags = info->u.pirq.flags & PIRQ_SHAREABLE ?
538 					BIND_PIRQ__WILL_SHARE : 0;
539 	rc = HYPERVISOR_event_channel_op(EVTCHNOP_bind_pirq, &bind_pirq);
540 	if (rc != 0) {
541 		if (!probing_irq(irq))
542 			pr_info("Failed to obtain physical IRQ %d\n", irq);
543 		return 0;
544 	}
545 	evtchn = bind_pirq.port;
546 
547 	pirq_query_unmask(irq);
548 
549 	rc = set_evtchn_to_irq(evtchn, irq);
550 	if (rc != 0) {
551 		pr_err("irq%d: Failed to set port to irq mapping (%d)\n",
552 		       irq, rc);
553 		xen_evtchn_close(evtchn);
554 		return 0;
555 	}
556 	bind_evtchn_to_cpu(evtchn, 0);
557 	info->evtchn = evtchn;
558 
559 out:
560 	unmask_evtchn(evtchn);
561 	eoi_pirq(irq_get_irq_data(irq));
562 
563 	return 0;
564 }
565 
566 static unsigned int startup_pirq(struct irq_data *data)
567 {
568 	return __startup_pirq(data->irq);
569 }
570 
571 static void shutdown_pirq(struct irq_data *data)
572 {
573 	unsigned int irq = data->irq;
574 	struct irq_info *info = info_for_irq(irq);
575 	unsigned evtchn = evtchn_from_irq(irq);
576 
577 	BUG_ON(info->type != IRQT_PIRQ);
578 
579 	if (!VALID_EVTCHN(evtchn))
580 		return;
581 
582 	mask_evtchn(evtchn);
583 	xen_evtchn_close(evtchn);
584 	xen_irq_info_cleanup(info);
585 }
586 
587 static void enable_pirq(struct irq_data *data)
588 {
589 	startup_pirq(data);
590 }
591 
592 static void disable_pirq(struct irq_data *data)
593 {
594 	disable_dynirq(data);
595 }
596 
597 int xen_irq_from_gsi(unsigned gsi)
598 {
599 	struct irq_info *info;
600 
601 	list_for_each_entry(info, &xen_irq_list_head, list) {
602 		if (info->type != IRQT_PIRQ)
603 			continue;
604 
605 		if (info->u.pirq.gsi == gsi)
606 			return info->irq;
607 	}
608 
609 	return -1;
610 }
611 EXPORT_SYMBOL_GPL(xen_irq_from_gsi);
612 
613 static void __unbind_from_irq(unsigned int irq)
614 {
615 	int evtchn = evtchn_from_irq(irq);
616 	struct irq_info *info = irq_get_handler_data(irq);
617 
618 	if (info->refcnt > 0) {
619 		info->refcnt--;
620 		if (info->refcnt != 0)
621 			return;
622 	}
623 
624 	if (VALID_EVTCHN(evtchn)) {
625 		unsigned int cpu = cpu_from_irq(irq);
626 
627 		xen_evtchn_close(evtchn);
628 
629 		switch (type_from_irq(irq)) {
630 		case IRQT_VIRQ:
631 			per_cpu(virq_to_irq, cpu)[virq_from_irq(irq)] = -1;
632 			break;
633 		case IRQT_IPI:
634 			per_cpu(ipi_to_irq, cpu)[ipi_from_irq(irq)] = -1;
635 			break;
636 		default:
637 			break;
638 		}
639 
640 		xen_irq_info_cleanup(info);
641 	}
642 
643 	BUG_ON(info_for_irq(irq)->type == IRQT_UNBOUND);
644 
645 	xen_free_irq(irq);
646 }
647 
648 /*
649  * Do not make any assumptions regarding the relationship between the
650  * IRQ number returned here and the Xen pirq argument.
651  *
652  * Note: We don't assign an event channel until the irq actually started
653  * up.  Return an existing irq if we've already got one for the gsi.
654  *
655  * Shareable implies level triggered, not shareable implies edge
656  * triggered here.
657  */
658 int xen_bind_pirq_gsi_to_irq(unsigned gsi,
659 			     unsigned pirq, int shareable, char *name)
660 {
661 	int irq = -1;
662 	struct physdev_irq irq_op;
663 	int ret;
664 
665 	mutex_lock(&irq_mapping_update_lock);
666 
667 	irq = xen_irq_from_gsi(gsi);
668 	if (irq != -1) {
669 		pr_info("%s: returning irq %d for gsi %u\n",
670 			__func__, irq, gsi);
671 		goto out;
672 	}
673 
674 	irq = xen_allocate_irq_gsi(gsi);
675 	if (irq < 0)
676 		goto out;
677 
678 	irq_op.irq = irq;
679 	irq_op.vector = 0;
680 
681 	/* Only the privileged domain can do this. For non-priv, the pcifront
682 	 * driver provides a PCI bus that does the call to do exactly
683 	 * this in the priv domain. */
684 	if (xen_initial_domain() &&
685 	    HYPERVISOR_physdev_op(PHYSDEVOP_alloc_irq_vector, &irq_op)) {
686 		xen_free_irq(irq);
687 		irq = -ENOSPC;
688 		goto out;
689 	}
690 
691 	ret = xen_irq_info_pirq_setup(irq, 0, pirq, gsi, DOMID_SELF,
692 			       shareable ? PIRQ_SHAREABLE : 0);
693 	if (ret < 0) {
694 		__unbind_from_irq(irq);
695 		irq = ret;
696 		goto out;
697 	}
698 
699 	pirq_query_unmask(irq);
700 	/* We try to use the handler with the appropriate semantic for the
701 	 * type of interrupt: if the interrupt is an edge triggered
702 	 * interrupt we use handle_edge_irq.
703 	 *
704 	 * On the other hand if the interrupt is level triggered we use
705 	 * handle_fasteoi_irq like the native code does for this kind of
706 	 * interrupts.
707 	 *
708 	 * Depending on the Xen version, pirq_needs_eoi might return true
709 	 * not only for level triggered interrupts but for edge triggered
710 	 * interrupts too. In any case Xen always honors the eoi mechanism,
711 	 * not injecting any more pirqs of the same kind if the first one
712 	 * hasn't received an eoi yet. Therefore using the fasteoi handler
713 	 * is the right choice either way.
714 	 */
715 	if (shareable)
716 		irq_set_chip_and_handler_name(irq, &xen_pirq_chip,
717 				handle_fasteoi_irq, name);
718 	else
719 		irq_set_chip_and_handler_name(irq, &xen_pirq_chip,
720 				handle_edge_irq, name);
721 
722 out:
723 	mutex_unlock(&irq_mapping_update_lock);
724 
725 	return irq;
726 }
727 
728 #ifdef CONFIG_PCI_MSI
729 int xen_allocate_pirq_msi(struct pci_dev *dev, struct msi_desc *msidesc)
730 {
731 	int rc;
732 	struct physdev_get_free_pirq op_get_free_pirq;
733 
734 	op_get_free_pirq.type = MAP_PIRQ_TYPE_MSI;
735 	rc = HYPERVISOR_physdev_op(PHYSDEVOP_get_free_pirq, &op_get_free_pirq);
736 
737 	WARN_ONCE(rc == -ENOSYS,
738 		  "hypervisor does not support the PHYSDEVOP_get_free_pirq interface\n");
739 
740 	return rc ? -1 : op_get_free_pirq.pirq;
741 }
742 
743 int xen_bind_pirq_msi_to_irq(struct pci_dev *dev, struct msi_desc *msidesc,
744 			     int pirq, const char *name, domid_t domid)
745 {
746 	int irq, ret;
747 
748 	mutex_lock(&irq_mapping_update_lock);
749 
750 	irq = xen_allocate_irq_dynamic();
751 	if (irq < 0)
752 		goto out;
753 
754 	irq_set_chip_and_handler_name(irq, &xen_pirq_chip, handle_edge_irq,
755 			name);
756 
757 	ret = xen_irq_info_pirq_setup(irq, 0, pirq, 0, domid, 0);
758 	if (ret < 0)
759 		goto error_irq;
760 	ret = irq_set_msi_desc(irq, msidesc);
761 	if (ret < 0)
762 		goto error_irq;
763 out:
764 	mutex_unlock(&irq_mapping_update_lock);
765 	return irq;
766 error_irq:
767 	__unbind_from_irq(irq);
768 	mutex_unlock(&irq_mapping_update_lock);
769 	return ret;
770 }
771 #endif
772 
773 int xen_destroy_irq(int irq)
774 {
775 	struct irq_desc *desc;
776 	struct physdev_unmap_pirq unmap_irq;
777 	struct irq_info *info = info_for_irq(irq);
778 	int rc = -ENOENT;
779 
780 	mutex_lock(&irq_mapping_update_lock);
781 
782 	desc = irq_to_desc(irq);
783 	if (!desc)
784 		goto out;
785 
786 	if (xen_initial_domain()) {
787 		unmap_irq.pirq = info->u.pirq.pirq;
788 		unmap_irq.domid = info->u.pirq.domid;
789 		rc = HYPERVISOR_physdev_op(PHYSDEVOP_unmap_pirq, &unmap_irq);
790 		/* If another domain quits without making the pci_disable_msix
791 		 * call, the Xen hypervisor takes care of freeing the PIRQs
792 		 * (free_domain_pirqs).
793 		 */
794 		if ((rc == -ESRCH && info->u.pirq.domid != DOMID_SELF))
795 			pr_info("domain %d does not have %d anymore\n",
796 				info->u.pirq.domid, info->u.pirq.pirq);
797 		else if (rc) {
798 			pr_warn("unmap irq failed %d\n", rc);
799 			goto out;
800 		}
801 	}
802 
803 	xen_free_irq(irq);
804 
805 out:
806 	mutex_unlock(&irq_mapping_update_lock);
807 	return rc;
808 }
809 
810 int xen_irq_from_pirq(unsigned pirq)
811 {
812 	int irq;
813 
814 	struct irq_info *info;
815 
816 	mutex_lock(&irq_mapping_update_lock);
817 
818 	list_for_each_entry(info, &xen_irq_list_head, list) {
819 		if (info->type != IRQT_PIRQ)
820 			continue;
821 		irq = info->irq;
822 		if (info->u.pirq.pirq == pirq)
823 			goto out;
824 	}
825 	irq = -1;
826 out:
827 	mutex_unlock(&irq_mapping_update_lock);
828 
829 	return irq;
830 }
831 
832 
833 int xen_pirq_from_irq(unsigned irq)
834 {
835 	return pirq_from_irq(irq);
836 }
837 EXPORT_SYMBOL_GPL(xen_pirq_from_irq);
838 
839 int bind_evtchn_to_irq(unsigned int evtchn)
840 {
841 	int irq;
842 	int ret;
843 
844 	if (evtchn >= xen_evtchn_max_channels())
845 		return -ENOMEM;
846 
847 	mutex_lock(&irq_mapping_update_lock);
848 
849 	irq = get_evtchn_to_irq(evtchn);
850 
851 	if (irq == -1) {
852 		irq = xen_allocate_irq_dynamic();
853 		if (irq < 0)
854 			goto out;
855 
856 		irq_set_chip_and_handler_name(irq, &xen_dynamic_chip,
857 					      handle_edge_irq, "event");
858 
859 		ret = xen_irq_info_evtchn_setup(irq, evtchn);
860 		if (ret < 0) {
861 			__unbind_from_irq(irq);
862 			irq = ret;
863 			goto out;
864 		}
865 	} else {
866 		struct irq_info *info = info_for_irq(irq);
867 		WARN_ON(info == NULL || info->type != IRQT_EVTCHN);
868 	}
869 
870 out:
871 	mutex_unlock(&irq_mapping_update_lock);
872 
873 	return irq;
874 }
875 EXPORT_SYMBOL_GPL(bind_evtchn_to_irq);
876 
877 static int bind_ipi_to_irq(unsigned int ipi, unsigned int cpu)
878 {
879 	struct evtchn_bind_ipi bind_ipi;
880 	int evtchn, irq;
881 	int ret;
882 
883 	mutex_lock(&irq_mapping_update_lock);
884 
885 	irq = per_cpu(ipi_to_irq, cpu)[ipi];
886 
887 	if (irq == -1) {
888 		irq = xen_allocate_irq_dynamic();
889 		if (irq < 0)
890 			goto out;
891 
892 		irq_set_chip_and_handler_name(irq, &xen_percpu_chip,
893 					      handle_percpu_irq, "ipi");
894 
895 		bind_ipi.vcpu = cpu;
896 		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
897 						&bind_ipi) != 0)
898 			BUG();
899 		evtchn = bind_ipi.port;
900 
901 		ret = xen_irq_info_ipi_setup(cpu, irq, evtchn, ipi);
902 		if (ret < 0) {
903 			__unbind_from_irq(irq);
904 			irq = ret;
905 			goto out;
906 		}
907 		bind_evtchn_to_cpu(evtchn, cpu);
908 	} else {
909 		struct irq_info *info = info_for_irq(irq);
910 		WARN_ON(info == NULL || info->type != IRQT_IPI);
911 	}
912 
913  out:
914 	mutex_unlock(&irq_mapping_update_lock);
915 	return irq;
916 }
917 
918 static int bind_interdomain_evtchn_to_irq(unsigned int remote_domain,
919 					  unsigned int remote_port)
920 {
921 	struct evtchn_bind_interdomain bind_interdomain;
922 	int err;
923 
924 	bind_interdomain.remote_dom  = remote_domain;
925 	bind_interdomain.remote_port = remote_port;
926 
927 	err = HYPERVISOR_event_channel_op(EVTCHNOP_bind_interdomain,
928 					  &bind_interdomain);
929 
930 	return err ? : bind_evtchn_to_irq(bind_interdomain.local_port);
931 }
932 
933 static int find_virq(unsigned int virq, unsigned int cpu)
934 {
935 	struct evtchn_status status;
936 	int port, rc = -ENOENT;
937 
938 	memset(&status, 0, sizeof(status));
939 	for (port = 0; port < xen_evtchn_max_channels(); port++) {
940 		status.dom = DOMID_SELF;
941 		status.port = port;
942 		rc = HYPERVISOR_event_channel_op(EVTCHNOP_status, &status);
943 		if (rc < 0)
944 			continue;
945 		if (status.status != EVTCHNSTAT_virq)
946 			continue;
947 		if (status.u.virq == virq && status.vcpu == cpu) {
948 			rc = port;
949 			break;
950 		}
951 	}
952 	return rc;
953 }
954 
955 /**
956  * xen_evtchn_nr_channels - number of usable event channel ports
957  *
958  * This may be less than the maximum supported by the current
959  * hypervisor ABI. Use xen_evtchn_max_channels() for the maximum
960  * supported.
961  */
962 unsigned xen_evtchn_nr_channels(void)
963 {
964         return evtchn_ops->nr_channels();
965 }
966 EXPORT_SYMBOL_GPL(xen_evtchn_nr_channels);
967 
968 int bind_virq_to_irq(unsigned int virq, unsigned int cpu)
969 {
970 	struct evtchn_bind_virq bind_virq;
971 	int evtchn, irq, ret;
972 
973 	mutex_lock(&irq_mapping_update_lock);
974 
975 	irq = per_cpu(virq_to_irq, cpu)[virq];
976 
977 	if (irq == -1) {
978 		irq = xen_allocate_irq_dynamic();
979 		if (irq < 0)
980 			goto out;
981 
982 		irq_set_chip_and_handler_name(irq, &xen_percpu_chip,
983 					      handle_percpu_irq, "virq");
984 
985 		bind_virq.virq = virq;
986 		bind_virq.vcpu = cpu;
987 		ret = HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
988 						&bind_virq);
989 		if (ret == 0)
990 			evtchn = bind_virq.port;
991 		else {
992 			if (ret == -EEXIST)
993 				ret = find_virq(virq, cpu);
994 			BUG_ON(ret < 0);
995 			evtchn = ret;
996 		}
997 
998 		ret = xen_irq_info_virq_setup(cpu, irq, evtchn, virq);
999 		if (ret < 0) {
1000 			__unbind_from_irq(irq);
1001 			irq = ret;
1002 			goto out;
1003 		}
1004 
1005 		bind_evtchn_to_cpu(evtchn, cpu);
1006 	} else {
1007 		struct irq_info *info = info_for_irq(irq);
1008 		WARN_ON(info == NULL || info->type != IRQT_VIRQ);
1009 	}
1010 
1011 out:
1012 	mutex_unlock(&irq_mapping_update_lock);
1013 
1014 	return irq;
1015 }
1016 
1017 static void unbind_from_irq(unsigned int irq)
1018 {
1019 	mutex_lock(&irq_mapping_update_lock);
1020 	__unbind_from_irq(irq);
1021 	mutex_unlock(&irq_mapping_update_lock);
1022 }
1023 
1024 int bind_evtchn_to_irqhandler(unsigned int evtchn,
1025 			      irq_handler_t handler,
1026 			      unsigned long irqflags,
1027 			      const char *devname, void *dev_id)
1028 {
1029 	int irq, retval;
1030 
1031 	irq = bind_evtchn_to_irq(evtchn);
1032 	if (irq < 0)
1033 		return irq;
1034 	retval = request_irq(irq, handler, irqflags, devname, dev_id);
1035 	if (retval != 0) {
1036 		unbind_from_irq(irq);
1037 		return retval;
1038 	}
1039 
1040 	return irq;
1041 }
1042 EXPORT_SYMBOL_GPL(bind_evtchn_to_irqhandler);
1043 
1044 int bind_interdomain_evtchn_to_irqhandler(unsigned int remote_domain,
1045 					  unsigned int remote_port,
1046 					  irq_handler_t handler,
1047 					  unsigned long irqflags,
1048 					  const char *devname,
1049 					  void *dev_id)
1050 {
1051 	int irq, retval;
1052 
1053 	irq = bind_interdomain_evtchn_to_irq(remote_domain, remote_port);
1054 	if (irq < 0)
1055 		return irq;
1056 
1057 	retval = request_irq(irq, handler, irqflags, devname, dev_id);
1058 	if (retval != 0) {
1059 		unbind_from_irq(irq);
1060 		return retval;
1061 	}
1062 
1063 	return irq;
1064 }
1065 EXPORT_SYMBOL_GPL(bind_interdomain_evtchn_to_irqhandler);
1066 
1067 int bind_virq_to_irqhandler(unsigned int virq, unsigned int cpu,
1068 			    irq_handler_t handler,
1069 			    unsigned long irqflags, const char *devname, void *dev_id)
1070 {
1071 	int irq, retval;
1072 
1073 	irq = bind_virq_to_irq(virq, cpu);
1074 	if (irq < 0)
1075 		return irq;
1076 	retval = request_irq(irq, handler, irqflags, devname, dev_id);
1077 	if (retval != 0) {
1078 		unbind_from_irq(irq);
1079 		return retval;
1080 	}
1081 
1082 	return irq;
1083 }
1084 EXPORT_SYMBOL_GPL(bind_virq_to_irqhandler);
1085 
1086 int bind_ipi_to_irqhandler(enum ipi_vector ipi,
1087 			   unsigned int cpu,
1088 			   irq_handler_t handler,
1089 			   unsigned long irqflags,
1090 			   const char *devname,
1091 			   void *dev_id)
1092 {
1093 	int irq, retval;
1094 
1095 	irq = bind_ipi_to_irq(ipi, cpu);
1096 	if (irq < 0)
1097 		return irq;
1098 
1099 	irqflags |= IRQF_NO_SUSPEND | IRQF_FORCE_RESUME | IRQF_EARLY_RESUME;
1100 	retval = request_irq(irq, handler, irqflags, devname, dev_id);
1101 	if (retval != 0) {
1102 		unbind_from_irq(irq);
1103 		return retval;
1104 	}
1105 
1106 	return irq;
1107 }
1108 
1109 void unbind_from_irqhandler(unsigned int irq, void *dev_id)
1110 {
1111 	struct irq_info *info = irq_get_handler_data(irq);
1112 
1113 	if (WARN_ON(!info))
1114 		return;
1115 	free_irq(irq, dev_id);
1116 	unbind_from_irq(irq);
1117 }
1118 EXPORT_SYMBOL_GPL(unbind_from_irqhandler);
1119 
1120 /**
1121  * xen_set_irq_priority() - set an event channel priority.
1122  * @irq:irq bound to an event channel.
1123  * @priority: priority between XEN_IRQ_PRIORITY_MAX and XEN_IRQ_PRIORITY_MIN.
1124  */
1125 int xen_set_irq_priority(unsigned irq, unsigned priority)
1126 {
1127 	struct evtchn_set_priority set_priority;
1128 
1129 	set_priority.port = evtchn_from_irq(irq);
1130 	set_priority.priority = priority;
1131 
1132 	return HYPERVISOR_event_channel_op(EVTCHNOP_set_priority,
1133 					   &set_priority);
1134 }
1135 EXPORT_SYMBOL_GPL(xen_set_irq_priority);
1136 
1137 int evtchn_make_refcounted(unsigned int evtchn)
1138 {
1139 	int irq = get_evtchn_to_irq(evtchn);
1140 	struct irq_info *info;
1141 
1142 	if (irq == -1)
1143 		return -ENOENT;
1144 
1145 	info = irq_get_handler_data(irq);
1146 
1147 	if (!info)
1148 		return -ENOENT;
1149 
1150 	WARN_ON(info->refcnt != -1);
1151 
1152 	info->refcnt = 1;
1153 
1154 	return 0;
1155 }
1156 EXPORT_SYMBOL_GPL(evtchn_make_refcounted);
1157 
1158 int evtchn_get(unsigned int evtchn)
1159 {
1160 	int irq;
1161 	struct irq_info *info;
1162 	int err = -ENOENT;
1163 
1164 	if (evtchn >= xen_evtchn_max_channels())
1165 		return -EINVAL;
1166 
1167 	mutex_lock(&irq_mapping_update_lock);
1168 
1169 	irq = get_evtchn_to_irq(evtchn);
1170 	if (irq == -1)
1171 		goto done;
1172 
1173 	info = irq_get_handler_data(irq);
1174 
1175 	if (!info)
1176 		goto done;
1177 
1178 	err = -EINVAL;
1179 	if (info->refcnt <= 0)
1180 		goto done;
1181 
1182 	info->refcnt++;
1183 	err = 0;
1184  done:
1185 	mutex_unlock(&irq_mapping_update_lock);
1186 
1187 	return err;
1188 }
1189 EXPORT_SYMBOL_GPL(evtchn_get);
1190 
1191 void evtchn_put(unsigned int evtchn)
1192 {
1193 	int irq = get_evtchn_to_irq(evtchn);
1194 	if (WARN_ON(irq == -1))
1195 		return;
1196 	unbind_from_irq(irq);
1197 }
1198 EXPORT_SYMBOL_GPL(evtchn_put);
1199 
1200 void xen_send_IPI_one(unsigned int cpu, enum ipi_vector vector)
1201 {
1202 	int irq;
1203 
1204 #ifdef CONFIG_X86
1205 	if (unlikely(vector == XEN_NMI_VECTOR)) {
1206 		int rc =  HYPERVISOR_vcpu_op(VCPUOP_send_nmi, cpu, NULL);
1207 		if (rc < 0)
1208 			printk(KERN_WARNING "Sending nmi to CPU%d failed (rc:%d)\n", cpu, rc);
1209 		return;
1210 	}
1211 #endif
1212 	irq = per_cpu(ipi_to_irq, cpu)[vector];
1213 	BUG_ON(irq < 0);
1214 	notify_remote_via_irq(irq);
1215 }
1216 
1217 static DEFINE_PER_CPU(unsigned, xed_nesting_count);
1218 
1219 static void __xen_evtchn_do_upcall(void)
1220 {
1221 	struct vcpu_info *vcpu_info = __this_cpu_read(xen_vcpu);
1222 	int cpu = get_cpu();
1223 	unsigned count;
1224 
1225 	do {
1226 		vcpu_info->evtchn_upcall_pending = 0;
1227 
1228 		if (__this_cpu_inc_return(xed_nesting_count) - 1)
1229 			goto out;
1230 
1231 		xen_evtchn_handle_events(cpu);
1232 
1233 		BUG_ON(!irqs_disabled());
1234 
1235 		count = __this_cpu_read(xed_nesting_count);
1236 		__this_cpu_write(xed_nesting_count, 0);
1237 	} while (count != 1 || vcpu_info->evtchn_upcall_pending);
1238 
1239 out:
1240 
1241 	put_cpu();
1242 }
1243 
1244 void xen_evtchn_do_upcall(struct pt_regs *regs)
1245 {
1246 	struct pt_regs *old_regs = set_irq_regs(regs);
1247 
1248 	irq_enter();
1249 #ifdef CONFIG_X86
1250 	exit_idle();
1251 #endif
1252 
1253 	__xen_evtchn_do_upcall();
1254 
1255 	irq_exit();
1256 	set_irq_regs(old_regs);
1257 }
1258 
1259 void xen_hvm_evtchn_do_upcall(void)
1260 {
1261 	__xen_evtchn_do_upcall();
1262 }
1263 EXPORT_SYMBOL_GPL(xen_hvm_evtchn_do_upcall);
1264 
1265 /* Rebind a new event channel to an existing irq. */
1266 void rebind_evtchn_irq(int evtchn, int irq)
1267 {
1268 	struct irq_info *info = info_for_irq(irq);
1269 
1270 	if (WARN_ON(!info))
1271 		return;
1272 
1273 	/* Make sure the irq is masked, since the new event channel
1274 	   will also be masked. */
1275 	disable_irq(irq);
1276 
1277 	mutex_lock(&irq_mapping_update_lock);
1278 
1279 	/* After resume the irq<->evtchn mappings are all cleared out */
1280 	BUG_ON(get_evtchn_to_irq(evtchn) != -1);
1281 	/* Expect irq to have been bound before,
1282 	   so there should be a proper type */
1283 	BUG_ON(info->type == IRQT_UNBOUND);
1284 
1285 	(void)xen_irq_info_evtchn_setup(irq, evtchn);
1286 
1287 	mutex_unlock(&irq_mapping_update_lock);
1288 
1289 	/* new event channels are always bound to cpu 0 */
1290 	irq_set_affinity(irq, cpumask_of(0));
1291 
1292 	/* Unmask the event channel. */
1293 	enable_irq(irq);
1294 }
1295 
1296 /* Rebind an evtchn so that it gets delivered to a specific cpu */
1297 static int rebind_irq_to_cpu(unsigned irq, unsigned tcpu)
1298 {
1299 	struct evtchn_bind_vcpu bind_vcpu;
1300 	int evtchn = evtchn_from_irq(irq);
1301 	int masked;
1302 
1303 	if (!VALID_EVTCHN(evtchn))
1304 		return -1;
1305 
1306 	/*
1307 	 * Events delivered via platform PCI interrupts are always
1308 	 * routed to vcpu 0 and hence cannot be rebound.
1309 	 */
1310 	if (xen_hvm_domain() && !xen_have_vector_callback)
1311 		return -1;
1312 
1313 	/* Send future instances of this interrupt to other vcpu. */
1314 	bind_vcpu.port = evtchn;
1315 	bind_vcpu.vcpu = tcpu;
1316 
1317 	/*
1318 	 * Mask the event while changing the VCPU binding to prevent
1319 	 * it being delivered on an unexpected VCPU.
1320 	 */
1321 	masked = test_and_set_mask(evtchn);
1322 
1323 	/*
1324 	 * If this fails, it usually just indicates that we're dealing with a
1325 	 * virq or IPI channel, which don't actually need to be rebound. Ignore
1326 	 * it, but don't do the xenlinux-level rebind in that case.
1327 	 */
1328 	if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_vcpu, &bind_vcpu) >= 0)
1329 		bind_evtchn_to_cpu(evtchn, tcpu);
1330 
1331 	if (!masked)
1332 		unmask_evtchn(evtchn);
1333 
1334 	return 0;
1335 }
1336 
1337 static int set_affinity_irq(struct irq_data *data, const struct cpumask *dest,
1338 			    bool force)
1339 {
1340 	unsigned tcpu = cpumask_first(dest);
1341 
1342 	return rebind_irq_to_cpu(data->irq, tcpu);
1343 }
1344 
1345 static int retrigger_evtchn(int evtchn)
1346 {
1347 	int masked;
1348 
1349 	if (!VALID_EVTCHN(evtchn))
1350 		return 0;
1351 
1352 	masked = test_and_set_mask(evtchn);
1353 	set_evtchn(evtchn);
1354 	if (!masked)
1355 		unmask_evtchn(evtchn);
1356 
1357 	return 1;
1358 }
1359 
1360 int resend_irq_on_evtchn(unsigned int irq)
1361 {
1362 	return retrigger_evtchn(evtchn_from_irq(irq));
1363 }
1364 
1365 static void enable_dynirq(struct irq_data *data)
1366 {
1367 	int evtchn = evtchn_from_irq(data->irq);
1368 
1369 	if (VALID_EVTCHN(evtchn))
1370 		unmask_evtchn(evtchn);
1371 }
1372 
1373 static void disable_dynirq(struct irq_data *data)
1374 {
1375 	int evtchn = evtchn_from_irq(data->irq);
1376 
1377 	if (VALID_EVTCHN(evtchn))
1378 		mask_evtchn(evtchn);
1379 }
1380 
1381 static void ack_dynirq(struct irq_data *data)
1382 {
1383 	int evtchn = evtchn_from_irq(data->irq);
1384 
1385 	irq_move_irq(data);
1386 
1387 	if (VALID_EVTCHN(evtchn))
1388 		clear_evtchn(evtchn);
1389 }
1390 
1391 static void mask_ack_dynirq(struct irq_data *data)
1392 {
1393 	disable_dynirq(data);
1394 	ack_dynirq(data);
1395 }
1396 
1397 static int retrigger_dynirq(struct irq_data *data)
1398 {
1399 	return retrigger_evtchn(evtchn_from_irq(data->irq));
1400 }
1401 
1402 static void restore_pirqs(void)
1403 {
1404 	int pirq, rc, irq, gsi;
1405 	struct physdev_map_pirq map_irq;
1406 	struct irq_info *info;
1407 
1408 	list_for_each_entry(info, &xen_irq_list_head, list) {
1409 		if (info->type != IRQT_PIRQ)
1410 			continue;
1411 
1412 		pirq = info->u.pirq.pirq;
1413 		gsi = info->u.pirq.gsi;
1414 		irq = info->irq;
1415 
1416 		/* save/restore of PT devices doesn't work, so at this point the
1417 		 * only devices present are GSI based emulated devices */
1418 		if (!gsi)
1419 			continue;
1420 
1421 		map_irq.domid = DOMID_SELF;
1422 		map_irq.type = MAP_PIRQ_TYPE_GSI;
1423 		map_irq.index = gsi;
1424 		map_irq.pirq = pirq;
1425 
1426 		rc = HYPERVISOR_physdev_op(PHYSDEVOP_map_pirq, &map_irq);
1427 		if (rc) {
1428 			pr_warn("xen map irq failed gsi=%d irq=%d pirq=%d rc=%d\n",
1429 				gsi, irq, pirq, rc);
1430 			xen_free_irq(irq);
1431 			continue;
1432 		}
1433 
1434 		printk(KERN_DEBUG "xen: --> irq=%d, pirq=%d\n", irq, map_irq.pirq);
1435 
1436 		__startup_pirq(irq);
1437 	}
1438 }
1439 
1440 static void restore_cpu_virqs(unsigned int cpu)
1441 {
1442 	struct evtchn_bind_virq bind_virq;
1443 	int virq, irq, evtchn;
1444 
1445 	for (virq = 0; virq < NR_VIRQS; virq++) {
1446 		if ((irq = per_cpu(virq_to_irq, cpu)[virq]) == -1)
1447 			continue;
1448 
1449 		BUG_ON(virq_from_irq(irq) != virq);
1450 
1451 		/* Get a new binding from Xen. */
1452 		bind_virq.virq = virq;
1453 		bind_virq.vcpu = cpu;
1454 		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
1455 						&bind_virq) != 0)
1456 			BUG();
1457 		evtchn = bind_virq.port;
1458 
1459 		/* Record the new mapping. */
1460 		(void)xen_irq_info_virq_setup(cpu, irq, evtchn, virq);
1461 		bind_evtchn_to_cpu(evtchn, cpu);
1462 	}
1463 }
1464 
1465 static void restore_cpu_ipis(unsigned int cpu)
1466 {
1467 	struct evtchn_bind_ipi bind_ipi;
1468 	int ipi, irq, evtchn;
1469 
1470 	for (ipi = 0; ipi < XEN_NR_IPIS; ipi++) {
1471 		if ((irq = per_cpu(ipi_to_irq, cpu)[ipi]) == -1)
1472 			continue;
1473 
1474 		BUG_ON(ipi_from_irq(irq) != ipi);
1475 
1476 		/* Get a new binding from Xen. */
1477 		bind_ipi.vcpu = cpu;
1478 		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
1479 						&bind_ipi) != 0)
1480 			BUG();
1481 		evtchn = bind_ipi.port;
1482 
1483 		/* Record the new mapping. */
1484 		(void)xen_irq_info_ipi_setup(cpu, irq, evtchn, ipi);
1485 		bind_evtchn_to_cpu(evtchn, cpu);
1486 	}
1487 }
1488 
1489 /* Clear an irq's pending state, in preparation for polling on it */
1490 void xen_clear_irq_pending(int irq)
1491 {
1492 	int evtchn = evtchn_from_irq(irq);
1493 
1494 	if (VALID_EVTCHN(evtchn))
1495 		clear_evtchn(evtchn);
1496 }
1497 EXPORT_SYMBOL(xen_clear_irq_pending);
1498 void xen_set_irq_pending(int irq)
1499 {
1500 	int evtchn = evtchn_from_irq(irq);
1501 
1502 	if (VALID_EVTCHN(evtchn))
1503 		set_evtchn(evtchn);
1504 }
1505 
1506 bool xen_test_irq_pending(int irq)
1507 {
1508 	int evtchn = evtchn_from_irq(irq);
1509 	bool ret = false;
1510 
1511 	if (VALID_EVTCHN(evtchn))
1512 		ret = test_evtchn(evtchn);
1513 
1514 	return ret;
1515 }
1516 
1517 /* Poll waiting for an irq to become pending with timeout.  In the usual case,
1518  * the irq will be disabled so it won't deliver an interrupt. */
1519 void xen_poll_irq_timeout(int irq, u64 timeout)
1520 {
1521 	evtchn_port_t evtchn = evtchn_from_irq(irq);
1522 
1523 	if (VALID_EVTCHN(evtchn)) {
1524 		struct sched_poll poll;
1525 
1526 		poll.nr_ports = 1;
1527 		poll.timeout = timeout;
1528 		set_xen_guest_handle(poll.ports, &evtchn);
1529 
1530 		if (HYPERVISOR_sched_op(SCHEDOP_poll, &poll) != 0)
1531 			BUG();
1532 	}
1533 }
1534 EXPORT_SYMBOL(xen_poll_irq_timeout);
1535 /* Poll waiting for an irq to become pending.  In the usual case, the
1536  * irq will be disabled so it won't deliver an interrupt. */
1537 void xen_poll_irq(int irq)
1538 {
1539 	xen_poll_irq_timeout(irq, 0 /* no timeout */);
1540 }
1541 
1542 /* Check whether the IRQ line is shared with other guests. */
1543 int xen_test_irq_shared(int irq)
1544 {
1545 	struct irq_info *info = info_for_irq(irq);
1546 	struct physdev_irq_status_query irq_status;
1547 
1548 	if (WARN_ON(!info))
1549 		return -ENOENT;
1550 
1551 	irq_status.irq = info->u.pirq.pirq;
1552 
1553 	if (HYPERVISOR_physdev_op(PHYSDEVOP_irq_status_query, &irq_status))
1554 		return 0;
1555 	return !(irq_status.flags & XENIRQSTAT_shared);
1556 }
1557 EXPORT_SYMBOL_GPL(xen_test_irq_shared);
1558 
1559 void xen_irq_resume(void)
1560 {
1561 	unsigned int cpu;
1562 	struct irq_info *info;
1563 
1564 	/* New event-channel space is not 'live' yet. */
1565 	xen_evtchn_mask_all();
1566 	xen_evtchn_resume();
1567 
1568 	/* No IRQ <-> event-channel mappings. */
1569 	list_for_each_entry(info, &xen_irq_list_head, list)
1570 		info->evtchn = 0; /* zap event-channel binding */
1571 
1572 	clear_evtchn_to_irq_all();
1573 
1574 	for_each_possible_cpu(cpu) {
1575 		restore_cpu_virqs(cpu);
1576 		restore_cpu_ipis(cpu);
1577 	}
1578 
1579 	restore_pirqs();
1580 }
1581 
1582 static struct irq_chip xen_dynamic_chip __read_mostly = {
1583 	.name			= "xen-dyn",
1584 
1585 	.irq_disable		= disable_dynirq,
1586 	.irq_mask		= disable_dynirq,
1587 	.irq_unmask		= enable_dynirq,
1588 
1589 	.irq_ack		= ack_dynirq,
1590 	.irq_mask_ack		= mask_ack_dynirq,
1591 
1592 	.irq_set_affinity	= set_affinity_irq,
1593 	.irq_retrigger		= retrigger_dynirq,
1594 };
1595 
1596 static struct irq_chip xen_pirq_chip __read_mostly = {
1597 	.name			= "xen-pirq",
1598 
1599 	.irq_startup		= startup_pirq,
1600 	.irq_shutdown		= shutdown_pirq,
1601 	.irq_enable		= enable_pirq,
1602 	.irq_disable		= disable_pirq,
1603 
1604 	.irq_mask		= disable_dynirq,
1605 	.irq_unmask		= enable_dynirq,
1606 
1607 	.irq_ack		= eoi_pirq,
1608 	.irq_eoi		= eoi_pirq,
1609 	.irq_mask_ack		= mask_ack_pirq,
1610 
1611 	.irq_set_affinity	= set_affinity_irq,
1612 
1613 	.irq_retrigger		= retrigger_dynirq,
1614 };
1615 
1616 static struct irq_chip xen_percpu_chip __read_mostly = {
1617 	.name			= "xen-percpu",
1618 
1619 	.irq_disable		= disable_dynirq,
1620 	.irq_mask		= disable_dynirq,
1621 	.irq_unmask		= enable_dynirq,
1622 
1623 	.irq_ack		= ack_dynirq,
1624 };
1625 
1626 int xen_set_callback_via(uint64_t via)
1627 {
1628 	struct xen_hvm_param a;
1629 	a.domid = DOMID_SELF;
1630 	a.index = HVM_PARAM_CALLBACK_IRQ;
1631 	a.value = via;
1632 	return HYPERVISOR_hvm_op(HVMOP_set_param, &a);
1633 }
1634 EXPORT_SYMBOL_GPL(xen_set_callback_via);
1635 
1636 #ifdef CONFIG_XEN_PVHVM
1637 /* Vector callbacks are better than PCI interrupts to receive event
1638  * channel notifications because we can receive vector callbacks on any
1639  * vcpu and we don't need PCI support or APIC interactions. */
1640 void xen_callback_vector(void)
1641 {
1642 	int rc;
1643 	uint64_t callback_via;
1644 	if (xen_have_vector_callback) {
1645 		callback_via = HVM_CALLBACK_VECTOR(HYPERVISOR_CALLBACK_VECTOR);
1646 		rc = xen_set_callback_via(callback_via);
1647 		if (rc) {
1648 			pr_err("Request for Xen HVM callback vector failed\n");
1649 			xen_have_vector_callback = 0;
1650 			return;
1651 		}
1652 		pr_info("Xen HVM callback vector for event delivery is enabled\n");
1653 		/* in the restore case the vector has already been allocated */
1654 		if (!test_bit(HYPERVISOR_CALLBACK_VECTOR, used_vectors))
1655 			alloc_intr_gate(HYPERVISOR_CALLBACK_VECTOR,
1656 					xen_hvm_callback_vector);
1657 	}
1658 }
1659 #else
1660 void xen_callback_vector(void) {}
1661 #endif
1662 
1663 #undef MODULE_PARAM_PREFIX
1664 #define MODULE_PARAM_PREFIX "xen."
1665 
1666 static bool fifo_events = true;
1667 module_param(fifo_events, bool, 0);
1668 
1669 void __init xen_init_IRQ(void)
1670 {
1671 	int ret = -EINVAL;
1672 
1673 	if (fifo_events)
1674 		ret = xen_evtchn_fifo_init();
1675 	if (ret < 0)
1676 		xen_evtchn_2l_init();
1677 
1678 	evtchn_to_irq = kcalloc(EVTCHN_ROW(xen_evtchn_max_channels()),
1679 				sizeof(*evtchn_to_irq), GFP_KERNEL);
1680 	BUG_ON(!evtchn_to_irq);
1681 
1682 	/* No event channels are 'live' right now. */
1683 	xen_evtchn_mask_all();
1684 
1685 	pirq_needs_eoi = pirq_needs_eoi_flag;
1686 
1687 #ifdef CONFIG_X86
1688 	if (xen_pv_domain()) {
1689 		irq_ctx_init(smp_processor_id());
1690 		if (xen_initial_domain())
1691 			pci_xen_initial_domain();
1692 	}
1693 	if (xen_feature(XENFEAT_hvm_callback_vector))
1694 		xen_callback_vector();
1695 
1696 	if (xen_hvm_domain()) {
1697 		native_init_IRQ();
1698 		/* pci_xen_hvm_init must be called after native_init_IRQ so that
1699 		 * __acpi_register_gsi can point at the right function */
1700 		pci_xen_hvm_init();
1701 	} else {
1702 		int rc;
1703 		struct physdev_pirq_eoi_gmfn eoi_gmfn;
1704 
1705 		pirq_eoi_map = (void *)__get_free_page(GFP_KERNEL|__GFP_ZERO);
1706 		eoi_gmfn.gmfn = virt_to_mfn(pirq_eoi_map);
1707 		rc = HYPERVISOR_physdev_op(PHYSDEVOP_pirq_eoi_gmfn_v2, &eoi_gmfn);
1708 		/* TODO: No PVH support for PIRQ EOI */
1709 		if (rc != 0) {
1710 			free_page((unsigned long) pirq_eoi_map);
1711 			pirq_eoi_map = NULL;
1712 		} else
1713 			pirq_needs_eoi = pirq_check_eoi_map;
1714 	}
1715 #endif
1716 }
1717