Merge branch 'tty-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/gregkh...
[pandora-kernel.git] / drivers / xen / events.c
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 recieved, 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 #include <linux/linkage.h>
25 #include <linux/interrupt.h>
26 #include <linux/irq.h>
27 #include <linux/module.h>
28 #include <linux/string.h>
29 #include <linux/bootmem.h>
30 #include <linux/slab.h>
31 #include <linux/irqnr.h>
32 #include <linux/pci.h>
33
34 #include <asm/desc.h>
35 #include <asm/ptrace.h>
36 #include <asm/irq.h>
37 #include <asm/idle.h>
38 #include <asm/io_apic.h>
39 #include <asm/sync_bitops.h>
40 #include <asm/xen/pci.h>
41 #include <asm/xen/hypercall.h>
42 #include <asm/xen/hypervisor.h>
43
44 #include <xen/xen.h>
45 #include <xen/hvm.h>
46 #include <xen/xen-ops.h>
47 #include <xen/events.h>
48 #include <xen/interface/xen.h>
49 #include <xen/interface/event_channel.h>
50 #include <xen/interface/hvm/hvm_op.h>
51 #include <xen/interface/hvm/params.h>
52
53 /*
54  * This lock protects updates to the following mapping and reference-count
55  * arrays. The lock does not need to be acquired to read the mapping tables.
56  */
57 static DEFINE_SPINLOCK(irq_mapping_update_lock);
58
59 /* IRQ <-> VIRQ mapping. */
60 static DEFINE_PER_CPU(int [NR_VIRQS], virq_to_irq) = {[0 ... NR_VIRQS-1] = -1};
61
62 /* IRQ <-> IPI mapping */
63 static DEFINE_PER_CPU(int [XEN_NR_IPIS], ipi_to_irq) = {[0 ... XEN_NR_IPIS-1] = -1};
64
65 /* Interrupt types. */
66 enum xen_irq_type {
67         IRQT_UNBOUND = 0,
68         IRQT_PIRQ,
69         IRQT_VIRQ,
70         IRQT_IPI,
71         IRQT_EVTCHN
72 };
73
74 /*
75  * Packed IRQ information:
76  * type - enum xen_irq_type
77  * event channel - irq->event channel mapping
78  * cpu - cpu this event channel is bound to
79  * index - type-specific information:
80  *    PIRQ - vector, with MSB being "needs EIO", or physical IRQ of the HVM
81  *           guest, or GSI (real passthrough IRQ) of the device.
82  *    VIRQ - virq number
83  *    IPI - IPI vector
84  *    EVTCHN -
85  */
86 struct irq_info
87 {
88         enum xen_irq_type type; /* type */
89         unsigned short evtchn;  /* event channel */
90         unsigned short cpu;     /* cpu bound */
91
92         union {
93                 unsigned short virq;
94                 enum ipi_vector ipi;
95                 struct {
96                         unsigned short pirq;
97                         unsigned short gsi;
98                         unsigned char vector;
99                         unsigned char flags;
100                 } pirq;
101         } u;
102 };
103 #define PIRQ_NEEDS_EOI  (1 << 0)
104 #define PIRQ_SHAREABLE  (1 << 1)
105
106 static struct irq_info *irq_info;
107 static int *pirq_to_irq;
108 static int nr_pirqs;
109
110 static int *evtchn_to_irq;
111 struct cpu_evtchn_s {
112         unsigned long bits[NR_EVENT_CHANNELS/BITS_PER_LONG];
113 };
114
115 static __initdata struct cpu_evtchn_s init_evtchn_mask = {
116         .bits[0 ... (NR_EVENT_CHANNELS/BITS_PER_LONG)-1] = ~0ul,
117 };
118 static struct cpu_evtchn_s *cpu_evtchn_mask_p = &init_evtchn_mask;
119
120 static inline unsigned long *cpu_evtchn_mask(int cpu)
121 {
122         return cpu_evtchn_mask_p[cpu].bits;
123 }
124
125 /* Xen will never allocate port zero for any purpose. */
126 #define VALID_EVTCHN(chn)       ((chn) != 0)
127
128 static struct irq_chip xen_dynamic_chip;
129 static struct irq_chip xen_percpu_chip;
130 static struct irq_chip xen_pirq_chip;
131
132 /* Constructor for packed IRQ information. */
133 static struct irq_info mk_unbound_info(void)
134 {
135         return (struct irq_info) { .type = IRQT_UNBOUND };
136 }
137
138 static struct irq_info mk_evtchn_info(unsigned short evtchn)
139 {
140         return (struct irq_info) { .type = IRQT_EVTCHN, .evtchn = evtchn,
141                         .cpu = 0 };
142 }
143
144 static struct irq_info mk_ipi_info(unsigned short evtchn, enum ipi_vector ipi)
145 {
146         return (struct irq_info) { .type = IRQT_IPI, .evtchn = evtchn,
147                         .cpu = 0, .u.ipi = ipi };
148 }
149
150 static struct irq_info mk_virq_info(unsigned short evtchn, unsigned short virq)
151 {
152         return (struct irq_info) { .type = IRQT_VIRQ, .evtchn = evtchn,
153                         .cpu = 0, .u.virq = virq };
154 }
155
156 static struct irq_info mk_pirq_info(unsigned short evtchn, unsigned short pirq,
157                                     unsigned short gsi, unsigned short vector)
158 {
159         return (struct irq_info) { .type = IRQT_PIRQ, .evtchn = evtchn,
160                         .cpu = 0,
161                         .u.pirq = { .pirq = pirq, .gsi = gsi, .vector = vector } };
162 }
163
164 /*
165  * Accessors for packed IRQ information.
166  */
167 static struct irq_info *info_for_irq(unsigned irq)
168 {
169         return &irq_info[irq];
170 }
171
172 static unsigned int evtchn_from_irq(unsigned irq)
173 {
174         return info_for_irq(irq)->evtchn;
175 }
176
177 unsigned irq_from_evtchn(unsigned int evtchn)
178 {
179         return evtchn_to_irq[evtchn];
180 }
181 EXPORT_SYMBOL_GPL(irq_from_evtchn);
182
183 static enum ipi_vector ipi_from_irq(unsigned irq)
184 {
185         struct irq_info *info = info_for_irq(irq);
186
187         BUG_ON(info == NULL);
188         BUG_ON(info->type != IRQT_IPI);
189
190         return info->u.ipi;
191 }
192
193 static unsigned virq_from_irq(unsigned irq)
194 {
195         struct irq_info *info = info_for_irq(irq);
196
197         BUG_ON(info == NULL);
198         BUG_ON(info->type != IRQT_VIRQ);
199
200         return info->u.virq;
201 }
202
203 static unsigned pirq_from_irq(unsigned irq)
204 {
205         struct irq_info *info = info_for_irq(irq);
206
207         BUG_ON(info == NULL);
208         BUG_ON(info->type != IRQT_PIRQ);
209
210         return info->u.pirq.pirq;
211 }
212
213 static unsigned gsi_from_irq(unsigned irq)
214 {
215         struct irq_info *info = info_for_irq(irq);
216
217         BUG_ON(info == NULL);
218         BUG_ON(info->type != IRQT_PIRQ);
219
220         return info->u.pirq.gsi;
221 }
222
223 static unsigned vector_from_irq(unsigned irq)
224 {
225         struct irq_info *info = info_for_irq(irq);
226
227         BUG_ON(info == NULL);
228         BUG_ON(info->type != IRQT_PIRQ);
229
230         return info->u.pirq.vector;
231 }
232
233 static enum xen_irq_type type_from_irq(unsigned irq)
234 {
235         return info_for_irq(irq)->type;
236 }
237
238 static unsigned cpu_from_irq(unsigned irq)
239 {
240         return info_for_irq(irq)->cpu;
241 }
242
243 static unsigned int cpu_from_evtchn(unsigned int evtchn)
244 {
245         int irq = evtchn_to_irq[evtchn];
246         unsigned ret = 0;
247
248         if (irq != -1)
249                 ret = cpu_from_irq(irq);
250
251         return ret;
252 }
253
254 static bool pirq_needs_eoi(unsigned irq)
255 {
256         struct irq_info *info = info_for_irq(irq);
257
258         BUG_ON(info->type != IRQT_PIRQ);
259
260         return info->u.pirq.flags & PIRQ_NEEDS_EOI;
261 }
262
263 static inline unsigned long active_evtchns(unsigned int cpu,
264                                            struct shared_info *sh,
265                                            unsigned int idx)
266 {
267         return (sh->evtchn_pending[idx] &
268                 cpu_evtchn_mask(cpu)[idx] &
269                 ~sh->evtchn_mask[idx]);
270 }
271
272 static void bind_evtchn_to_cpu(unsigned int chn, unsigned int cpu)
273 {
274         int irq = evtchn_to_irq[chn];
275
276         BUG_ON(irq == -1);
277 #ifdef CONFIG_SMP
278         cpumask_copy(irq_to_desc(irq)->affinity, cpumask_of(cpu));
279 #endif
280
281         __clear_bit(chn, cpu_evtchn_mask(cpu_from_irq(irq)));
282         __set_bit(chn, cpu_evtchn_mask(cpu));
283
284         irq_info[irq].cpu = cpu;
285 }
286
287 static void init_evtchn_cpu_bindings(void)
288 {
289 #ifdef CONFIG_SMP
290         struct irq_desc *desc;
291         int i;
292
293         /* By default all event channels notify CPU#0. */
294         for_each_irq_desc(i, desc) {
295                 cpumask_copy(desc->affinity, cpumask_of(0));
296         }
297 #endif
298
299         memset(cpu_evtchn_mask(0), ~0, sizeof(struct cpu_evtchn_s));
300 }
301
302 static inline void clear_evtchn(int port)
303 {
304         struct shared_info *s = HYPERVISOR_shared_info;
305         sync_clear_bit(port, &s->evtchn_pending[0]);
306 }
307
308 static inline void set_evtchn(int port)
309 {
310         struct shared_info *s = HYPERVISOR_shared_info;
311         sync_set_bit(port, &s->evtchn_pending[0]);
312 }
313
314 static inline int test_evtchn(int port)
315 {
316         struct shared_info *s = HYPERVISOR_shared_info;
317         return sync_test_bit(port, &s->evtchn_pending[0]);
318 }
319
320
321 /**
322  * notify_remote_via_irq - send event to remote end of event channel via irq
323  * @irq: irq of event channel to send event to
324  *
325  * Unlike notify_remote_via_evtchn(), this is safe to use across
326  * save/restore. Notifications on a broken connection are silently
327  * dropped.
328  */
329 void notify_remote_via_irq(int irq)
330 {
331         int evtchn = evtchn_from_irq(irq);
332
333         if (VALID_EVTCHN(evtchn))
334                 notify_remote_via_evtchn(evtchn);
335 }
336 EXPORT_SYMBOL_GPL(notify_remote_via_irq);
337
338 static void mask_evtchn(int port)
339 {
340         struct shared_info *s = HYPERVISOR_shared_info;
341         sync_set_bit(port, &s->evtchn_mask[0]);
342 }
343
344 static void unmask_evtchn(int port)
345 {
346         struct shared_info *s = HYPERVISOR_shared_info;
347         unsigned int cpu = get_cpu();
348
349         BUG_ON(!irqs_disabled());
350
351         /* Slow path (hypercall) if this is a non-local port. */
352         if (unlikely(cpu != cpu_from_evtchn(port))) {
353                 struct evtchn_unmask unmask = { .port = port };
354                 (void)HYPERVISOR_event_channel_op(EVTCHNOP_unmask, &unmask);
355         } else {
356                 struct vcpu_info *vcpu_info = __get_cpu_var(xen_vcpu);
357
358                 sync_clear_bit(port, &s->evtchn_mask[0]);
359
360                 /*
361                  * The following is basically the equivalent of
362                  * 'hw_resend_irq'. Just like a real IO-APIC we 'lose
363                  * the interrupt edge' if the channel is masked.
364                  */
365                 if (sync_test_bit(port, &s->evtchn_pending[0]) &&
366                     !sync_test_and_set_bit(port / BITS_PER_LONG,
367                                            &vcpu_info->evtchn_pending_sel))
368                         vcpu_info->evtchn_upcall_pending = 1;
369         }
370
371         put_cpu();
372 }
373
374 static int get_nr_hw_irqs(void)
375 {
376         int ret = 1;
377
378 #ifdef CONFIG_X86_IO_APIC
379         ret = get_nr_irqs_gsi();
380 #endif
381
382         return ret;
383 }
384
385 /* callers of this function should make sure that PHYSDEVOP_get_nr_pirqs
386  * succeeded otherwise nr_pirqs won't hold the right value */
387 static int find_unbound_pirq(void)
388 {
389         int i;
390         for (i = nr_pirqs-1; i >= 0; i--) {
391                 if (pirq_to_irq[i] < 0)
392                         return i;
393         }
394         return -1;
395 }
396
397 static int find_unbound_irq(void)
398 {
399         struct irq_data *data;
400         int irq, res;
401         int start = get_nr_hw_irqs();
402
403         if (start == nr_irqs)
404                 goto no_irqs;
405
406         /* nr_irqs is a magic value. Must not use it.*/
407         for (irq = nr_irqs-1; irq > start; irq--) {
408                 data = irq_get_irq_data(irq);
409                 /* only 0->15 have init'd desc; handle irq > 16 */
410                 if (!data)
411                         break;
412                 if (data->chip == &no_irq_chip)
413                         break;
414                 if (data->chip != &xen_dynamic_chip)
415                         continue;
416                 if (irq_info[irq].type == IRQT_UNBOUND)
417                         return irq;
418         }
419
420         if (irq == start)
421                 goto no_irqs;
422
423         res = irq_alloc_desc_at(irq, 0);
424
425         if (WARN_ON(res != irq))
426                 return -1;
427
428         return irq;
429
430 no_irqs:
431         panic("No available IRQ to bind to: increase nr_irqs!\n");
432 }
433
434 static bool identity_mapped_irq(unsigned irq)
435 {
436         /* identity map all the hardware irqs */
437         return irq < get_nr_hw_irqs();
438 }
439
440 static void pirq_unmask_notify(int irq)
441 {
442         struct physdev_eoi eoi = { .irq = pirq_from_irq(irq) };
443
444         if (unlikely(pirq_needs_eoi(irq))) {
445                 int rc = HYPERVISOR_physdev_op(PHYSDEVOP_eoi, &eoi);
446                 WARN_ON(rc);
447         }
448 }
449
450 static void pirq_query_unmask(int irq)
451 {
452         struct physdev_irq_status_query irq_status;
453         struct irq_info *info = info_for_irq(irq);
454
455         BUG_ON(info->type != IRQT_PIRQ);
456
457         irq_status.irq = pirq_from_irq(irq);
458         if (HYPERVISOR_physdev_op(PHYSDEVOP_irq_status_query, &irq_status))
459                 irq_status.flags = 0;
460
461         info->u.pirq.flags &= ~PIRQ_NEEDS_EOI;
462         if (irq_status.flags & XENIRQSTAT_needs_eoi)
463                 info->u.pirq.flags |= PIRQ_NEEDS_EOI;
464 }
465
466 static bool probing_irq(int irq)
467 {
468         struct irq_desc *desc = irq_to_desc(irq);
469
470         return desc && desc->action == NULL;
471 }
472
473 static unsigned int startup_pirq(unsigned int irq)
474 {
475         struct evtchn_bind_pirq bind_pirq;
476         struct irq_info *info = info_for_irq(irq);
477         int evtchn = evtchn_from_irq(irq);
478         int rc;
479
480         BUG_ON(info->type != IRQT_PIRQ);
481
482         if (VALID_EVTCHN(evtchn))
483                 goto out;
484
485         bind_pirq.pirq = pirq_from_irq(irq);
486         /* NB. We are happy to share unless we are probing. */
487         bind_pirq.flags = info->u.pirq.flags & PIRQ_SHAREABLE ?
488                                         BIND_PIRQ__WILL_SHARE : 0;
489         rc = HYPERVISOR_event_channel_op(EVTCHNOP_bind_pirq, &bind_pirq);
490         if (rc != 0) {
491                 if (!probing_irq(irq))
492                         printk(KERN_INFO "Failed to obtain physical IRQ %d\n",
493                                irq);
494                 return 0;
495         }
496         evtchn = bind_pirq.port;
497
498         pirq_query_unmask(irq);
499
500         evtchn_to_irq[evtchn] = irq;
501         bind_evtchn_to_cpu(evtchn, 0);
502         info->evtchn = evtchn;
503
504 out:
505         unmask_evtchn(evtchn);
506         pirq_unmask_notify(irq);
507
508         return 0;
509 }
510
511 static void shutdown_pirq(unsigned int irq)
512 {
513         struct evtchn_close close;
514         struct irq_info *info = info_for_irq(irq);
515         int evtchn = evtchn_from_irq(irq);
516
517         BUG_ON(info->type != IRQT_PIRQ);
518
519         if (!VALID_EVTCHN(evtchn))
520                 return;
521
522         mask_evtchn(evtchn);
523
524         close.port = evtchn;
525         if (HYPERVISOR_event_channel_op(EVTCHNOP_close, &close) != 0)
526                 BUG();
527
528         bind_evtchn_to_cpu(evtchn, 0);
529         evtchn_to_irq[evtchn] = -1;
530         info->evtchn = 0;
531 }
532
533 static void enable_pirq(unsigned int irq)
534 {
535         startup_pirq(irq);
536 }
537
538 static void disable_pirq(unsigned int irq)
539 {
540 }
541
542 static void ack_pirq(unsigned int irq)
543 {
544         int evtchn = evtchn_from_irq(irq);
545
546         move_native_irq(irq);
547
548         if (VALID_EVTCHN(evtchn)) {
549                 mask_evtchn(evtchn);
550                 clear_evtchn(evtchn);
551         }
552 }
553
554 static void end_pirq(unsigned int irq)
555 {
556         int evtchn = evtchn_from_irq(irq);
557         struct irq_desc *desc = irq_to_desc(irq);
558
559         if (WARN_ON(!desc))
560                 return;
561
562         if ((desc->status & (IRQ_DISABLED|IRQ_PENDING)) ==
563             (IRQ_DISABLED|IRQ_PENDING)) {
564                 shutdown_pirq(irq);
565         } else if (VALID_EVTCHN(evtchn)) {
566                 unmask_evtchn(evtchn);
567                 pirq_unmask_notify(irq);
568         }
569 }
570
571 static int find_irq_by_gsi(unsigned gsi)
572 {
573         int irq;
574
575         for (irq = 0; irq < nr_irqs; irq++) {
576                 struct irq_info *info = info_for_irq(irq);
577
578                 if (info == NULL || info->type != IRQT_PIRQ)
579                         continue;
580
581                 if (gsi_from_irq(irq) == gsi)
582                         return irq;
583         }
584
585         return -1;
586 }
587
588 int xen_allocate_pirq(unsigned gsi, int shareable, char *name)
589 {
590         return xen_map_pirq_gsi(gsi, gsi, shareable, name);
591 }
592
593 /* xen_map_pirq_gsi might allocate irqs from the top down, as a
594  * consequence don't assume that the irq number returned has a low value
595  * or can be used as a pirq number unless you know otherwise.
596  *
597  * One notable exception is when xen_map_pirq_gsi is called passing an
598  * hardware gsi as argument, in that case the irq number returned
599  * matches the gsi number passed as second argument.
600  *
601  * Note: We don't assign an event channel until the irq actually started
602  * up.  Return an existing irq if we've already got one for the gsi.
603  */
604 int xen_map_pirq_gsi(unsigned pirq, unsigned gsi, int shareable, char *name)
605 {
606         int irq = 0;
607         struct physdev_irq irq_op;
608
609         spin_lock(&irq_mapping_update_lock);
610
611         if ((pirq > nr_pirqs) || (gsi > nr_irqs)) {
612                 printk(KERN_WARNING "xen_map_pirq_gsi: %s %s is incorrect!\n",
613                         pirq > nr_pirqs ? "nr_pirqs" :"",
614                         gsi > nr_irqs ? "nr_irqs" : "");
615                 goto out;
616         }
617
618         irq = find_irq_by_gsi(gsi);
619         if (irq != -1) {
620                 printk(KERN_INFO "xen_map_pirq_gsi: returning irq %d for gsi %u\n",
621                        irq, gsi);
622                 goto out;       /* XXX need refcount? */
623         }
624
625         /* If we are a PV guest, we don't have GSIs (no ACPI passed). Therefore
626          * we are using the !xen_initial_domain() to drop in the function.*/
627         if (identity_mapped_irq(gsi) || (!xen_initial_domain() &&
628                                 xen_pv_domain())) {
629                 irq = gsi;
630                 irq_alloc_desc_at(irq, 0);
631         } else
632                 irq = find_unbound_irq();
633
634         set_irq_chip_and_handler_name(irq, &xen_pirq_chip,
635                                       handle_level_irq, name);
636
637         irq_op.irq = irq;
638         irq_op.vector = 0;
639
640         /* Only the privileged domain can do this. For non-priv, the pcifront
641          * driver provides a PCI bus that does the call to do exactly
642          * this in the priv domain. */
643         if (xen_initial_domain() &&
644             HYPERVISOR_physdev_op(PHYSDEVOP_alloc_irq_vector, &irq_op)) {
645                 irq_free_desc(irq);
646                 irq = -ENOSPC;
647                 goto out;
648         }
649
650         irq_info[irq] = mk_pirq_info(0, pirq, gsi, irq_op.vector);
651         irq_info[irq].u.pirq.flags |= shareable ? PIRQ_SHAREABLE : 0;
652         pirq_to_irq[pirq] = irq;
653
654 out:
655         spin_unlock(&irq_mapping_update_lock);
656
657         return irq;
658 }
659
660 #ifdef CONFIG_PCI_MSI
661 #include <linux/msi.h>
662 #include "../pci/msi.h"
663
664 void xen_allocate_pirq_msi(char *name, int *irq, int *pirq)
665 {
666         spin_lock(&irq_mapping_update_lock);
667
668         *irq = find_unbound_irq();
669         if (*irq == -1)
670                 goto out;
671
672         *pirq = find_unbound_pirq();
673         if (*pirq == -1)
674                 goto out;
675
676         set_irq_chip_and_handler_name(*irq, &xen_pirq_chip,
677                                       handle_level_irq, name);
678
679         irq_info[*irq] = mk_pirq_info(0, *pirq, 0, 0);
680         pirq_to_irq[*pirq] = *irq;
681
682 out:
683         spin_unlock(&irq_mapping_update_lock);
684 }
685
686 int xen_create_msi_irq(struct pci_dev *dev, struct msi_desc *msidesc, int type)
687 {
688         int irq = -1;
689         struct physdev_map_pirq map_irq;
690         int rc;
691         int pos;
692         u32 table_offset, bir;
693
694         memset(&map_irq, 0, sizeof(map_irq));
695         map_irq.domid = DOMID_SELF;
696         map_irq.type = MAP_PIRQ_TYPE_MSI;
697         map_irq.index = -1;
698         map_irq.pirq = -1;
699         map_irq.bus = dev->bus->number;
700         map_irq.devfn = dev->devfn;
701
702         if (type == PCI_CAP_ID_MSIX) {
703                 pos = pci_find_capability(dev, PCI_CAP_ID_MSIX);
704
705                 pci_read_config_dword(dev, msix_table_offset_reg(pos),
706                                         &table_offset);
707                 bir = (u8)(table_offset & PCI_MSIX_FLAGS_BIRMASK);
708
709                 map_irq.table_base = pci_resource_start(dev, bir);
710                 map_irq.entry_nr = msidesc->msi_attrib.entry_nr;
711         }
712
713         spin_lock(&irq_mapping_update_lock);
714
715         irq = find_unbound_irq();
716
717         if (irq == -1)
718                 goto out;
719
720         rc = HYPERVISOR_physdev_op(PHYSDEVOP_map_pirq, &map_irq);
721         if (rc) {
722                 printk(KERN_WARNING "xen map irq failed %d\n", rc);
723
724                 irq_free_desc(irq);
725
726                 irq = -1;
727                 goto out;
728         }
729         irq_info[irq] = mk_pirq_info(0, map_irq.pirq, 0, map_irq.index);
730
731         set_irq_chip_and_handler_name(irq, &xen_pirq_chip,
732                         handle_level_irq,
733                         (type == PCI_CAP_ID_MSIX) ? "msi-x":"msi");
734
735 out:
736         spin_unlock(&irq_mapping_update_lock);
737         return irq;
738 }
739 #endif
740
741 int xen_destroy_irq(int irq)
742 {
743         struct irq_desc *desc;
744         struct physdev_unmap_pirq unmap_irq;
745         struct irq_info *info = info_for_irq(irq);
746         int rc = -ENOENT;
747
748         spin_lock(&irq_mapping_update_lock);
749
750         desc = irq_to_desc(irq);
751         if (!desc)
752                 goto out;
753
754         if (xen_initial_domain()) {
755                 unmap_irq.pirq = info->u.pirq.gsi;
756                 unmap_irq.domid = DOMID_SELF;
757                 rc = HYPERVISOR_physdev_op(PHYSDEVOP_unmap_pirq, &unmap_irq);
758                 if (rc) {
759                         printk(KERN_WARNING "unmap irq failed %d\n", rc);
760                         goto out;
761                 }
762         }
763         irq_info[irq] = mk_unbound_info();
764
765         irq_free_desc(irq);
766
767 out:
768         spin_unlock(&irq_mapping_update_lock);
769         return rc;
770 }
771
772 int xen_vector_from_irq(unsigned irq)
773 {
774         return vector_from_irq(irq);
775 }
776
777 int xen_gsi_from_irq(unsigned irq)
778 {
779         return gsi_from_irq(irq);
780 }
781
782 int bind_evtchn_to_irq(unsigned int evtchn)
783 {
784         int irq;
785
786         spin_lock(&irq_mapping_update_lock);
787
788         irq = evtchn_to_irq[evtchn];
789
790         if (irq == -1) {
791                 irq = find_unbound_irq();
792
793                 set_irq_chip_and_handler_name(irq, &xen_dynamic_chip,
794                                               handle_fasteoi_irq, "event");
795
796                 evtchn_to_irq[evtchn] = irq;
797                 irq_info[irq] = mk_evtchn_info(evtchn);
798         }
799
800         spin_unlock(&irq_mapping_update_lock);
801
802         return irq;
803 }
804 EXPORT_SYMBOL_GPL(bind_evtchn_to_irq);
805
806 static int bind_ipi_to_irq(unsigned int ipi, unsigned int cpu)
807 {
808         struct evtchn_bind_ipi bind_ipi;
809         int evtchn, irq;
810
811         spin_lock(&irq_mapping_update_lock);
812
813         irq = per_cpu(ipi_to_irq, cpu)[ipi];
814
815         if (irq == -1) {
816                 irq = find_unbound_irq();
817                 if (irq < 0)
818                         goto out;
819
820                 set_irq_chip_and_handler_name(irq, &xen_percpu_chip,
821                                               handle_percpu_irq, "ipi");
822
823                 bind_ipi.vcpu = cpu;
824                 if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
825                                                 &bind_ipi) != 0)
826                         BUG();
827                 evtchn = bind_ipi.port;
828
829                 evtchn_to_irq[evtchn] = irq;
830                 irq_info[irq] = mk_ipi_info(evtchn, ipi);
831                 per_cpu(ipi_to_irq, cpu)[ipi] = irq;
832
833                 bind_evtchn_to_cpu(evtchn, cpu);
834         }
835
836  out:
837         spin_unlock(&irq_mapping_update_lock);
838         return irq;
839 }
840
841
842 int bind_virq_to_irq(unsigned int virq, unsigned int cpu)
843 {
844         struct evtchn_bind_virq bind_virq;
845         int evtchn, irq;
846
847         spin_lock(&irq_mapping_update_lock);
848
849         irq = per_cpu(virq_to_irq, cpu)[virq];
850
851         if (irq == -1) {
852                 irq = find_unbound_irq();
853
854                 set_irq_chip_and_handler_name(irq, &xen_percpu_chip,
855                                               handle_percpu_irq, "virq");
856
857                 bind_virq.virq = virq;
858                 bind_virq.vcpu = cpu;
859                 if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
860                                                 &bind_virq) != 0)
861                         BUG();
862                 evtchn = bind_virq.port;
863
864                 evtchn_to_irq[evtchn] = irq;
865                 irq_info[irq] = mk_virq_info(evtchn, virq);
866
867                 per_cpu(virq_to_irq, cpu)[virq] = irq;
868
869                 bind_evtchn_to_cpu(evtchn, cpu);
870         }
871
872         spin_unlock(&irq_mapping_update_lock);
873
874         return irq;
875 }
876
877 static void unbind_from_irq(unsigned int irq)
878 {
879         struct evtchn_close close;
880         int evtchn = evtchn_from_irq(irq);
881
882         spin_lock(&irq_mapping_update_lock);
883
884         if (VALID_EVTCHN(evtchn)) {
885                 close.port = evtchn;
886                 if (HYPERVISOR_event_channel_op(EVTCHNOP_close, &close) != 0)
887                         BUG();
888
889                 switch (type_from_irq(irq)) {
890                 case IRQT_VIRQ:
891                         per_cpu(virq_to_irq, cpu_from_evtchn(evtchn))
892                                 [virq_from_irq(irq)] = -1;
893                         break;
894                 case IRQT_IPI:
895                         per_cpu(ipi_to_irq, cpu_from_evtchn(evtchn))
896                                 [ipi_from_irq(irq)] = -1;
897                         break;
898                 default:
899                         break;
900                 }
901
902                 /* Closed ports are implicitly re-bound to VCPU0. */
903                 bind_evtchn_to_cpu(evtchn, 0);
904
905                 evtchn_to_irq[evtchn] = -1;
906         }
907
908         if (irq_info[irq].type != IRQT_UNBOUND) {
909                 irq_info[irq] = mk_unbound_info();
910
911                 irq_free_desc(irq);
912         }
913
914         spin_unlock(&irq_mapping_update_lock);
915 }
916
917 int bind_evtchn_to_irqhandler(unsigned int evtchn,
918                               irq_handler_t handler,
919                               unsigned long irqflags,
920                               const char *devname, void *dev_id)
921 {
922         unsigned int irq;
923         int retval;
924
925         irq = bind_evtchn_to_irq(evtchn);
926         retval = request_irq(irq, handler, irqflags, devname, dev_id);
927         if (retval != 0) {
928                 unbind_from_irq(irq);
929                 return retval;
930         }
931
932         return irq;
933 }
934 EXPORT_SYMBOL_GPL(bind_evtchn_to_irqhandler);
935
936 int bind_virq_to_irqhandler(unsigned int virq, unsigned int cpu,
937                             irq_handler_t handler,
938                             unsigned long irqflags, const char *devname, void *dev_id)
939 {
940         unsigned int irq;
941         int retval;
942
943         irq = bind_virq_to_irq(virq, cpu);
944         retval = request_irq(irq, handler, irqflags, devname, dev_id);
945         if (retval != 0) {
946                 unbind_from_irq(irq);
947                 return retval;
948         }
949
950         return irq;
951 }
952 EXPORT_SYMBOL_GPL(bind_virq_to_irqhandler);
953
954 int bind_ipi_to_irqhandler(enum ipi_vector ipi,
955                            unsigned int cpu,
956                            irq_handler_t handler,
957                            unsigned long irqflags,
958                            const char *devname,
959                            void *dev_id)
960 {
961         int irq, retval;
962
963         irq = bind_ipi_to_irq(ipi, cpu);
964         if (irq < 0)
965                 return irq;
966
967         irqflags |= IRQF_NO_SUSPEND;
968         retval = request_irq(irq, handler, irqflags, devname, dev_id);
969         if (retval != 0) {
970                 unbind_from_irq(irq);
971                 return retval;
972         }
973
974         return irq;
975 }
976
977 void unbind_from_irqhandler(unsigned int irq, void *dev_id)
978 {
979         free_irq(irq, dev_id);
980         unbind_from_irq(irq);
981 }
982 EXPORT_SYMBOL_GPL(unbind_from_irqhandler);
983
984 void xen_send_IPI_one(unsigned int cpu, enum ipi_vector vector)
985 {
986         int irq = per_cpu(ipi_to_irq, cpu)[vector];
987         BUG_ON(irq < 0);
988         notify_remote_via_irq(irq);
989 }
990
991 irqreturn_t xen_debug_interrupt(int irq, void *dev_id)
992 {
993         struct shared_info *sh = HYPERVISOR_shared_info;
994         int cpu = smp_processor_id();
995         unsigned long *cpu_evtchn = cpu_evtchn_mask(cpu);
996         int i;
997         unsigned long flags;
998         static DEFINE_SPINLOCK(debug_lock);
999         struct vcpu_info *v;
1000
1001         spin_lock_irqsave(&debug_lock, flags);
1002
1003         printk("\nvcpu %d\n  ", cpu);
1004
1005         for_each_online_cpu(i) {
1006                 int pending;
1007                 v = per_cpu(xen_vcpu, i);
1008                 pending = (get_irq_regs() && i == cpu)
1009                         ? xen_irqs_disabled(get_irq_regs())
1010                         : v->evtchn_upcall_mask;
1011                 printk("%d: masked=%d pending=%d event_sel %0*lx\n  ", i,
1012                        pending, v->evtchn_upcall_pending,
1013                        (int)(sizeof(v->evtchn_pending_sel)*2),
1014                        v->evtchn_pending_sel);
1015         }
1016         v = per_cpu(xen_vcpu, cpu);
1017
1018         printk("\npending:\n   ");
1019         for (i = ARRAY_SIZE(sh->evtchn_pending)-1; i >= 0; i--)
1020                 printk("%0*lx%s", (int)sizeof(sh->evtchn_pending[0])*2,
1021                        sh->evtchn_pending[i],
1022                        i % 8 == 0 ? "\n   " : " ");
1023         printk("\nglobal mask:\n   ");
1024         for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--)
1025                 printk("%0*lx%s",
1026                        (int)(sizeof(sh->evtchn_mask[0])*2),
1027                        sh->evtchn_mask[i],
1028                        i % 8 == 0 ? "\n   " : " ");
1029
1030         printk("\nglobally unmasked:\n   ");
1031         for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--)
1032                 printk("%0*lx%s", (int)(sizeof(sh->evtchn_mask[0])*2),
1033                        sh->evtchn_pending[i] & ~sh->evtchn_mask[i],
1034                        i % 8 == 0 ? "\n   " : " ");
1035
1036         printk("\nlocal cpu%d mask:\n   ", cpu);
1037         for (i = (NR_EVENT_CHANNELS/BITS_PER_LONG)-1; i >= 0; i--)
1038                 printk("%0*lx%s", (int)(sizeof(cpu_evtchn[0])*2),
1039                        cpu_evtchn[i],
1040                        i % 8 == 0 ? "\n   " : " ");
1041
1042         printk("\nlocally unmasked:\n   ");
1043         for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--) {
1044                 unsigned long pending = sh->evtchn_pending[i]
1045                         & ~sh->evtchn_mask[i]
1046                         & cpu_evtchn[i];
1047                 printk("%0*lx%s", (int)(sizeof(sh->evtchn_mask[0])*2),
1048                        pending, i % 8 == 0 ? "\n   " : " ");
1049         }
1050
1051         printk("\npending list:\n");
1052         for (i = 0; i < NR_EVENT_CHANNELS; i++) {
1053                 if (sync_test_bit(i, sh->evtchn_pending)) {
1054                         int word_idx = i / BITS_PER_LONG;
1055                         printk("  %d: event %d -> irq %d%s%s%s\n",
1056                                cpu_from_evtchn(i), i,
1057                                evtchn_to_irq[i],
1058                                sync_test_bit(word_idx, &v->evtchn_pending_sel)
1059                                              ? "" : " l2-clear",
1060                                !sync_test_bit(i, sh->evtchn_mask)
1061                                              ? "" : " globally-masked",
1062                                sync_test_bit(i, cpu_evtchn)
1063                                              ? "" : " locally-masked");
1064                 }
1065         }
1066
1067         spin_unlock_irqrestore(&debug_lock, flags);
1068
1069         return IRQ_HANDLED;
1070 }
1071
1072 static DEFINE_PER_CPU(unsigned, xed_nesting_count);
1073
1074 /*
1075  * Search the CPUs pending events bitmasks.  For each one found, map
1076  * the event number to an irq, and feed it into do_IRQ() for
1077  * handling.
1078  *
1079  * Xen uses a two-level bitmap to speed searching.  The first level is
1080  * a bitset of words which contain pending event bits.  The second
1081  * level is a bitset of pending events themselves.
1082  */
1083 static void __xen_evtchn_do_upcall(void)
1084 {
1085         int cpu = get_cpu();
1086         struct shared_info *s = HYPERVISOR_shared_info;
1087         struct vcpu_info *vcpu_info = __get_cpu_var(xen_vcpu);
1088         unsigned count;
1089
1090         do {
1091                 unsigned long pending_words;
1092
1093                 vcpu_info->evtchn_upcall_pending = 0;
1094
1095                 if (__get_cpu_var(xed_nesting_count)++)
1096                         goto out;
1097
1098 #ifndef CONFIG_X86 /* No need for a barrier -- XCHG is a barrier on x86. */
1099                 /* Clear master flag /before/ clearing selector flag. */
1100                 wmb();
1101 #endif
1102                 pending_words = xchg(&vcpu_info->evtchn_pending_sel, 0);
1103                 while (pending_words != 0) {
1104                         unsigned long pending_bits;
1105                         int word_idx = __ffs(pending_words);
1106                         pending_words &= ~(1UL << word_idx);
1107
1108                         while ((pending_bits = active_evtchns(cpu, s, word_idx)) != 0) {
1109                                 int bit_idx = __ffs(pending_bits);
1110                                 int port = (word_idx * BITS_PER_LONG) + bit_idx;
1111                                 int irq = evtchn_to_irq[port];
1112                                 struct irq_desc *desc;
1113
1114                                 mask_evtchn(port);
1115                                 clear_evtchn(port);
1116
1117                                 if (irq != -1) {
1118                                         desc = irq_to_desc(irq);
1119                                         if (desc)
1120                                                 generic_handle_irq_desc(irq, desc);
1121                                 }
1122                         }
1123                 }
1124
1125                 BUG_ON(!irqs_disabled());
1126
1127                 count = __get_cpu_var(xed_nesting_count);
1128                 __get_cpu_var(xed_nesting_count) = 0;
1129         } while (count != 1 || vcpu_info->evtchn_upcall_pending);
1130
1131 out:
1132
1133         put_cpu();
1134 }
1135
1136 void xen_evtchn_do_upcall(struct pt_regs *regs)
1137 {
1138         struct pt_regs *old_regs = set_irq_regs(regs);
1139
1140         exit_idle();
1141         irq_enter();
1142
1143         __xen_evtchn_do_upcall();
1144
1145         irq_exit();
1146         set_irq_regs(old_regs);
1147 }
1148
1149 void xen_hvm_evtchn_do_upcall(void)
1150 {
1151         __xen_evtchn_do_upcall();
1152 }
1153 EXPORT_SYMBOL_GPL(xen_hvm_evtchn_do_upcall);
1154
1155 /* Rebind a new event channel to an existing irq. */
1156 void rebind_evtchn_irq(int evtchn, int irq)
1157 {
1158         struct irq_info *info = info_for_irq(irq);
1159
1160         /* Make sure the irq is masked, since the new event channel
1161            will also be masked. */
1162         disable_irq(irq);
1163
1164         spin_lock(&irq_mapping_update_lock);
1165
1166         /* After resume the irq<->evtchn mappings are all cleared out */
1167         BUG_ON(evtchn_to_irq[evtchn] != -1);
1168         /* Expect irq to have been bound before,
1169            so there should be a proper type */
1170         BUG_ON(info->type == IRQT_UNBOUND);
1171
1172         evtchn_to_irq[evtchn] = irq;
1173         irq_info[irq] = mk_evtchn_info(evtchn);
1174
1175         spin_unlock(&irq_mapping_update_lock);
1176
1177         /* new event channels are always bound to cpu 0 */
1178         irq_set_affinity(irq, cpumask_of(0));
1179
1180         /* Unmask the event channel. */
1181         enable_irq(irq);
1182 }
1183
1184 /* Rebind an evtchn so that it gets delivered to a specific cpu */
1185 static int rebind_irq_to_cpu(unsigned irq, unsigned tcpu)
1186 {
1187         struct evtchn_bind_vcpu bind_vcpu;
1188         int evtchn = evtchn_from_irq(irq);
1189
1190         /* events delivered via platform PCI interrupts are always
1191          * routed to vcpu 0 */
1192         if (!VALID_EVTCHN(evtchn) ||
1193                 (xen_hvm_domain() && !xen_have_vector_callback))
1194                 return -1;
1195
1196         /* Send future instances of this interrupt to other vcpu. */
1197         bind_vcpu.port = evtchn;
1198         bind_vcpu.vcpu = tcpu;
1199
1200         /*
1201          * If this fails, it usually just indicates that we're dealing with a
1202          * virq or IPI channel, which don't actually need to be rebound. Ignore
1203          * it, but don't do the xenlinux-level rebind in that case.
1204          */
1205         if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_vcpu, &bind_vcpu) >= 0)
1206                 bind_evtchn_to_cpu(evtchn, tcpu);
1207
1208         return 0;
1209 }
1210
1211 static int set_affinity_irq(unsigned irq, const struct cpumask *dest)
1212 {
1213         unsigned tcpu = cpumask_first(dest);
1214
1215         return rebind_irq_to_cpu(irq, tcpu);
1216 }
1217
1218 int resend_irq_on_evtchn(unsigned int irq)
1219 {
1220         int masked, evtchn = evtchn_from_irq(irq);
1221         struct shared_info *s = HYPERVISOR_shared_info;
1222
1223         if (!VALID_EVTCHN(evtchn))
1224                 return 1;
1225
1226         masked = sync_test_and_set_bit(evtchn, s->evtchn_mask);
1227         sync_set_bit(evtchn, s->evtchn_pending);
1228         if (!masked)
1229                 unmask_evtchn(evtchn);
1230
1231         return 1;
1232 }
1233
1234 static void enable_dynirq(unsigned int irq)
1235 {
1236         int evtchn = evtchn_from_irq(irq);
1237
1238         if (VALID_EVTCHN(evtchn))
1239                 unmask_evtchn(evtchn);
1240 }
1241
1242 static void disable_dynirq(unsigned int irq)
1243 {
1244         int evtchn = evtchn_from_irq(irq);
1245
1246         if (VALID_EVTCHN(evtchn))
1247                 mask_evtchn(evtchn);
1248 }
1249
1250 static void ack_dynirq(unsigned int irq)
1251 {
1252         int evtchn = evtchn_from_irq(irq);
1253
1254         move_masked_irq(irq);
1255
1256         if (VALID_EVTCHN(evtchn))
1257                 unmask_evtchn(evtchn);
1258 }
1259
1260 static int retrigger_dynirq(unsigned int irq)
1261 {
1262         int evtchn = evtchn_from_irq(irq);
1263         struct shared_info *sh = HYPERVISOR_shared_info;
1264         int ret = 0;
1265
1266         if (VALID_EVTCHN(evtchn)) {
1267                 int masked;
1268
1269                 masked = sync_test_and_set_bit(evtchn, sh->evtchn_mask);
1270                 sync_set_bit(evtchn, sh->evtchn_pending);
1271                 if (!masked)
1272                         unmask_evtchn(evtchn);
1273                 ret = 1;
1274         }
1275
1276         return ret;
1277 }
1278
1279 static void restore_cpu_virqs(unsigned int cpu)
1280 {
1281         struct evtchn_bind_virq bind_virq;
1282         int virq, irq, evtchn;
1283
1284         for (virq = 0; virq < NR_VIRQS; virq++) {
1285                 if ((irq = per_cpu(virq_to_irq, cpu)[virq]) == -1)
1286                         continue;
1287
1288                 BUG_ON(virq_from_irq(irq) != virq);
1289
1290                 /* Get a new binding from Xen. */
1291                 bind_virq.virq = virq;
1292                 bind_virq.vcpu = cpu;
1293                 if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
1294                                                 &bind_virq) != 0)
1295                         BUG();
1296                 evtchn = bind_virq.port;
1297
1298                 /* Record the new mapping. */
1299                 evtchn_to_irq[evtchn] = irq;
1300                 irq_info[irq] = mk_virq_info(evtchn, virq);
1301                 bind_evtchn_to_cpu(evtchn, cpu);
1302         }
1303 }
1304
1305 static void restore_cpu_ipis(unsigned int cpu)
1306 {
1307         struct evtchn_bind_ipi bind_ipi;
1308         int ipi, irq, evtchn;
1309
1310         for (ipi = 0; ipi < XEN_NR_IPIS; ipi++) {
1311                 if ((irq = per_cpu(ipi_to_irq, cpu)[ipi]) == -1)
1312                         continue;
1313
1314                 BUG_ON(ipi_from_irq(irq) != ipi);
1315
1316                 /* Get a new binding from Xen. */
1317                 bind_ipi.vcpu = cpu;
1318                 if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
1319                                                 &bind_ipi) != 0)
1320                         BUG();
1321                 evtchn = bind_ipi.port;
1322
1323                 /* Record the new mapping. */
1324                 evtchn_to_irq[evtchn] = irq;
1325                 irq_info[irq] = mk_ipi_info(evtchn, ipi);
1326                 bind_evtchn_to_cpu(evtchn, cpu);
1327         }
1328 }
1329
1330 /* Clear an irq's pending state, in preparation for polling on it */
1331 void xen_clear_irq_pending(int irq)
1332 {
1333         int evtchn = evtchn_from_irq(irq);
1334
1335         if (VALID_EVTCHN(evtchn))
1336                 clear_evtchn(evtchn);
1337 }
1338 EXPORT_SYMBOL(xen_clear_irq_pending);
1339 void xen_set_irq_pending(int irq)
1340 {
1341         int evtchn = evtchn_from_irq(irq);
1342
1343         if (VALID_EVTCHN(evtchn))
1344                 set_evtchn(evtchn);
1345 }
1346
1347 bool xen_test_irq_pending(int irq)
1348 {
1349         int evtchn = evtchn_from_irq(irq);
1350         bool ret = false;
1351
1352         if (VALID_EVTCHN(evtchn))
1353                 ret = test_evtchn(evtchn);
1354
1355         return ret;
1356 }
1357
1358 /* Poll waiting for an irq to become pending with timeout.  In the usual case,
1359  * the irq will be disabled so it won't deliver an interrupt. */
1360 void xen_poll_irq_timeout(int irq, u64 timeout)
1361 {
1362         evtchn_port_t evtchn = evtchn_from_irq(irq);
1363
1364         if (VALID_EVTCHN(evtchn)) {
1365                 struct sched_poll poll;
1366
1367                 poll.nr_ports = 1;
1368                 poll.timeout = timeout;
1369                 set_xen_guest_handle(poll.ports, &evtchn);
1370
1371                 if (HYPERVISOR_sched_op(SCHEDOP_poll, &poll) != 0)
1372                         BUG();
1373         }
1374 }
1375 EXPORT_SYMBOL(xen_poll_irq_timeout);
1376 /* Poll waiting for an irq to become pending.  In the usual case, the
1377  * irq will be disabled so it won't deliver an interrupt. */
1378 void xen_poll_irq(int irq)
1379 {
1380         xen_poll_irq_timeout(irq, 0 /* no timeout */);
1381 }
1382
1383 void xen_irq_resume(void)
1384 {
1385         unsigned int cpu, irq, evtchn;
1386         struct irq_desc *desc;
1387
1388         init_evtchn_cpu_bindings();
1389
1390         /* New event-channel space is not 'live' yet. */
1391         for (evtchn = 0; evtchn < NR_EVENT_CHANNELS; evtchn++)
1392                 mask_evtchn(evtchn);
1393
1394         /* No IRQ <-> event-channel mappings. */
1395         for (irq = 0; irq < nr_irqs; irq++)
1396                 irq_info[irq].evtchn = 0; /* zap event-channel binding */
1397
1398         for (evtchn = 0; evtchn < NR_EVENT_CHANNELS; evtchn++)
1399                 evtchn_to_irq[evtchn] = -1;
1400
1401         for_each_possible_cpu(cpu) {
1402                 restore_cpu_virqs(cpu);
1403                 restore_cpu_ipis(cpu);
1404         }
1405
1406         /*
1407          * Unmask any IRQF_NO_SUSPEND IRQs which are enabled. These
1408          * are not handled by the IRQ core.
1409          */
1410         for_each_irq_desc(irq, desc) {
1411                 if (!desc->action || !(desc->action->flags & IRQF_NO_SUSPEND))
1412                         continue;
1413                 if (desc->status & IRQ_DISABLED)
1414                         continue;
1415
1416                 evtchn = evtchn_from_irq(irq);
1417                 if (evtchn == -1)
1418                         continue;
1419
1420                 unmask_evtchn(evtchn);
1421         }
1422 }
1423
1424 static struct irq_chip xen_dynamic_chip __read_mostly = {
1425         .name           = "xen-dyn",
1426
1427         .disable        = disable_dynirq,
1428         .mask           = disable_dynirq,
1429         .unmask         = enable_dynirq,
1430
1431         .eoi            = ack_dynirq,
1432         .set_affinity   = set_affinity_irq,
1433         .retrigger      = retrigger_dynirq,
1434 };
1435
1436 static struct irq_chip xen_pirq_chip __read_mostly = {
1437         .name           = "xen-pirq",
1438
1439         .startup        = startup_pirq,
1440         .shutdown       = shutdown_pirq,
1441
1442         .enable         = enable_pirq,
1443         .unmask         = enable_pirq,
1444
1445         .disable        = disable_pirq,
1446         .mask           = disable_pirq,
1447
1448         .ack            = ack_pirq,
1449         .end            = end_pirq,
1450
1451         .set_affinity   = set_affinity_irq,
1452
1453         .retrigger      = retrigger_dynirq,
1454 };
1455
1456 static struct irq_chip xen_percpu_chip __read_mostly = {
1457         .name           = "xen-percpu",
1458
1459         .disable        = disable_dynirq,
1460         .mask           = disable_dynirq,
1461         .unmask         = enable_dynirq,
1462
1463         .ack            = ack_dynirq,
1464 };
1465
1466 int xen_set_callback_via(uint64_t via)
1467 {
1468         struct xen_hvm_param a;
1469         a.domid = DOMID_SELF;
1470         a.index = HVM_PARAM_CALLBACK_IRQ;
1471         a.value = via;
1472         return HYPERVISOR_hvm_op(HVMOP_set_param, &a);
1473 }
1474 EXPORT_SYMBOL_GPL(xen_set_callback_via);
1475
1476 #ifdef CONFIG_XEN_PVHVM
1477 /* Vector callbacks are better than PCI interrupts to receive event
1478  * channel notifications because we can receive vector callbacks on any
1479  * vcpu and we don't need PCI support or APIC interactions. */
1480 void xen_callback_vector(void)
1481 {
1482         int rc;
1483         uint64_t callback_via;
1484         if (xen_have_vector_callback) {
1485                 callback_via = HVM_CALLBACK_VECTOR(XEN_HVM_EVTCHN_CALLBACK);
1486                 rc = xen_set_callback_via(callback_via);
1487                 if (rc) {
1488                         printk(KERN_ERR "Request for Xen HVM callback vector"
1489                                         " failed.\n");
1490                         xen_have_vector_callback = 0;
1491                         return;
1492                 }
1493                 printk(KERN_INFO "Xen HVM callback vector for event delivery is "
1494                                 "enabled\n");
1495                 /* in the restore case the vector has already been allocated */
1496                 if (!test_bit(XEN_HVM_EVTCHN_CALLBACK, used_vectors))
1497                         alloc_intr_gate(XEN_HVM_EVTCHN_CALLBACK, xen_hvm_callback_vector);
1498         }
1499 }
1500 #else
1501 void xen_callback_vector(void) {}
1502 #endif
1503
1504 void __init xen_init_IRQ(void)
1505 {
1506         int i, rc;
1507         struct physdev_nr_pirqs op_nr_pirqs;
1508
1509         cpu_evtchn_mask_p = kcalloc(nr_cpu_ids, sizeof(struct cpu_evtchn_s),
1510                                     GFP_KERNEL);
1511         irq_info = kcalloc(nr_irqs, sizeof(*irq_info), GFP_KERNEL);
1512
1513         rc = HYPERVISOR_physdev_op(PHYSDEVOP_get_nr_pirqs, &op_nr_pirqs);
1514         if (rc < 0) {
1515                 nr_pirqs = nr_irqs;
1516                 if (rc != -ENOSYS)
1517                         printk(KERN_WARNING "PHYSDEVOP_get_nr_pirqs returned rc=%d\n", rc);
1518         } else {
1519                 if (xen_pv_domain() && !xen_initial_domain())
1520                         nr_pirqs = max((int)op_nr_pirqs.nr_pirqs, nr_irqs);
1521                 else
1522                         nr_pirqs = op_nr_pirqs.nr_pirqs;
1523         }
1524         pirq_to_irq = kcalloc(nr_pirqs, sizeof(*pirq_to_irq), GFP_KERNEL);
1525         for (i = 0; i < nr_pirqs; i++)
1526                 pirq_to_irq[i] = -1;
1527
1528         evtchn_to_irq = kcalloc(NR_EVENT_CHANNELS, sizeof(*evtchn_to_irq),
1529                                     GFP_KERNEL);
1530         for (i = 0; i < NR_EVENT_CHANNELS; i++)
1531                 evtchn_to_irq[i] = -1;
1532
1533         init_evtchn_cpu_bindings();
1534
1535         /* No event channels are 'live' right now. */
1536         for (i = 0; i < NR_EVENT_CHANNELS; i++)
1537                 mask_evtchn(i);
1538
1539         if (xen_hvm_domain()) {
1540                 xen_callback_vector();
1541                 native_init_IRQ();
1542                 /* pci_xen_hvm_init must be called after native_init_IRQ so that
1543                  * __acpi_register_gsi can point at the right function */
1544                 pci_xen_hvm_init();
1545         } else {
1546                 irq_ctx_init(smp_processor_id());
1547                 if (xen_initial_domain())
1548                         xen_setup_pirqs();
1549         }
1550 }