events.c 39.1 KB
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/*
 * Xen event channels
 *
 * Xen models interrupts with abstract event channels.  Because each
 * domain gets 1024 event channels, but NR_IRQ is not that large, we
 * must dynamically map irqs<->event channels.  The event channels
 * interface with the rest of the kernel by defining a xen interrupt
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 * chip.  When an event is received, it is mapped to an irq and sent
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 * through the normal interrupt processing path.
 *
 * There are four kinds of events which can be mapped to an event
 * channel:
 *
 * 1. Inter-domain notifications.  This includes all the virtual
 *    device events, since they're driven by front-ends in another domain
 *    (typically dom0).
 * 2. VIRQs, typically used for timers.  These are per-cpu events.
 * 3. IPIs.
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 * 4. PIRQs - Hardware interrupts.
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 *
 * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
 */

#include <linux/linkage.h>
#include <linux/interrupt.h>
#include <linux/irq.h>
#include <linux/module.h>
#include <linux/string.h>
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#include <linux/bootmem.h>
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#include <linux/slab.h>
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#include <linux/irqnr.h>
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#include <linux/pci.h>
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#include <asm/desc.h>
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#include <asm/ptrace.h>
#include <asm/irq.h>
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#include <asm/idle.h>
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#include <asm/io_apic.h>
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#include <asm/sync_bitops.h>
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#include <asm/xen/pci.h>
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#include <asm/xen/hypercall.h>
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#include <asm/xen/hypervisor.h>
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#include <xen/xen.h>
#include <xen/hvm.h>
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#include <xen/xen-ops.h>
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#include <xen/events.h>
#include <xen/interface/xen.h>
#include <xen/interface/event_channel.h>
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#include <xen/interface/hvm/hvm_op.h>
#include <xen/interface/hvm/params.h>
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/*
 * This lock protects updates to the following mapping and reference-count
 * arrays. The lock does not need to be acquired to read the mapping tables.
 */
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static DEFINE_MUTEX(irq_mapping_update_lock);
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static LIST_HEAD(xen_irq_list_head);

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/* IRQ <-> VIRQ mapping. */
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static DEFINE_PER_CPU(int [NR_VIRQS], virq_to_irq) = {[0 ... NR_VIRQS-1] = -1};
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/* IRQ <-> IPI mapping */
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static DEFINE_PER_CPU(int [XEN_NR_IPIS], ipi_to_irq) = {[0 ... XEN_NR_IPIS-1] = -1};
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/* Interrupt types. */
enum xen_irq_type {
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	IRQT_UNBOUND = 0,
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	IRQT_PIRQ,
	IRQT_VIRQ,
	IRQT_IPI,
	IRQT_EVTCHN
};
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/*
 * Packed IRQ information:
 * type - enum xen_irq_type
 * event channel - irq->event channel mapping
 * cpu - cpu this event channel is bound to
 * index - type-specific information:
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 *    PIRQ - vector, with MSB being "needs EIO", or physical IRQ of the HVM
 *           guest, or GSI (real passthrough IRQ) of the device.
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 *    VIRQ - virq number
 *    IPI - IPI vector
 *    EVTCHN -
 */
struct irq_info
{
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	struct list_head list;
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	enum xen_irq_type type;	/* type */
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	unsigned irq;
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	unsigned short evtchn;	/* event channel */
	unsigned short cpu;	/* cpu bound */

	union {
		unsigned short virq;
		enum ipi_vector ipi;
		struct {
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			unsigned short pirq;
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			unsigned short gsi;
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			unsigned char vector;
			unsigned char flags;
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			uint16_t domid;
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		} pirq;
	} u;
};
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#define PIRQ_NEEDS_EOI	(1 << 0)
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#define PIRQ_SHAREABLE	(1 << 1)
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static int *evtchn_to_irq;
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static DEFINE_PER_CPU(unsigned long [NR_EVENT_CHANNELS/BITS_PER_LONG],
		      cpu_evtchn_mask);
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/* Xen will never allocate port zero for any purpose. */
#define VALID_EVTCHN(chn)	((chn) != 0)

static struct irq_chip xen_dynamic_chip;
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static struct irq_chip xen_percpu_chip;
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static struct irq_chip xen_pirq_chip;
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static void enable_dynirq(struct irq_data *data);
static void disable_dynirq(struct irq_data *data);
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/* Get info for IRQ */
static struct irq_info *info_for_irq(unsigned irq)
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{
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	return irq_get_handler_data(irq);
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}

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/* Constructors for packed IRQ information. */
static void xen_irq_info_common_init(struct irq_info *info,
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				     unsigned irq,
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				     enum xen_irq_type type,
				     unsigned short evtchn,
				     unsigned short cpu)
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{
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	BUG_ON(info->type != IRQT_UNBOUND && info->type != type);

	info->type = type;
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	info->irq = irq;
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	info->evtchn = evtchn;
	info->cpu = cpu;
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	evtchn_to_irq[evtchn] = irq;
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}

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static void xen_irq_info_evtchn_init(unsigned irq,
				     unsigned short evtchn)
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{
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	struct irq_info *info = info_for_irq(irq);

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	xen_irq_info_common_init(info, irq, IRQT_EVTCHN, evtchn, 0);
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}

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static void xen_irq_info_ipi_init(unsigned cpu,
				  unsigned irq,
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				  unsigned short evtchn,
				  enum ipi_vector ipi)
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{
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	struct irq_info *info = info_for_irq(irq);

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	xen_irq_info_common_init(info, irq, IRQT_IPI, evtchn, 0);
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	info->u.ipi = ipi;
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	per_cpu(ipi_to_irq, cpu)[ipi] = irq;
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}

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static void xen_irq_info_virq_init(unsigned cpu,
				   unsigned irq,
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				   unsigned short evtchn,
				   unsigned short virq)
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{
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	struct irq_info *info = info_for_irq(irq);

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	xen_irq_info_common_init(info, irq, IRQT_VIRQ, evtchn, 0);
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	info->u.virq = virq;
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	per_cpu(virq_to_irq, cpu)[virq] = irq;
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}

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static void xen_irq_info_pirq_init(unsigned irq,
				   unsigned short evtchn,
				   unsigned short pirq,
				   unsigned short gsi,
				   unsigned short vector,
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				   uint16_t domid,
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				   unsigned char flags)
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{
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	struct irq_info *info = info_for_irq(irq);

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	xen_irq_info_common_init(info, irq, IRQT_PIRQ, evtchn, 0);
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	info->u.pirq.pirq = pirq;
	info->u.pirq.gsi = gsi;
	info->u.pirq.vector = vector;
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	info->u.pirq.domid = domid;
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	info->u.pirq.flags = flags;
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}

/*
 * Accessors for packed IRQ information.
 */
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static unsigned int evtchn_from_irq(unsigned irq)
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{
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	if (unlikely(WARN(irq < 0 || irq >= nr_irqs, "Invalid irq %d!\n", irq)))
		return 0;

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	return info_for_irq(irq)->evtchn;
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}

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unsigned irq_from_evtchn(unsigned int evtchn)
{
	return evtchn_to_irq[evtchn];
}
EXPORT_SYMBOL_GPL(irq_from_evtchn);

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static enum ipi_vector ipi_from_irq(unsigned irq)
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{
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	struct irq_info *info = info_for_irq(irq);

	BUG_ON(info == NULL);
	BUG_ON(info->type != IRQT_IPI);

	return info->u.ipi;
}

static unsigned virq_from_irq(unsigned irq)
{
	struct irq_info *info = info_for_irq(irq);

	BUG_ON(info == NULL);
	BUG_ON(info->type != IRQT_VIRQ);

	return info->u.virq;
}

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static unsigned pirq_from_irq(unsigned irq)
{
	struct irq_info *info = info_for_irq(irq);

	BUG_ON(info == NULL);
	BUG_ON(info->type != IRQT_PIRQ);

	return info->u.pirq.pirq;
}

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static enum xen_irq_type type_from_irq(unsigned irq)
{
	return info_for_irq(irq)->type;
}

static unsigned cpu_from_irq(unsigned irq)
{
	return info_for_irq(irq)->cpu;
}

static unsigned int cpu_from_evtchn(unsigned int evtchn)
{
	int irq = evtchn_to_irq[evtchn];
	unsigned ret = 0;

	if (irq != -1)
		ret = cpu_from_irq(irq);

	return ret;
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}

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static bool pirq_needs_eoi(unsigned irq)
{
	struct irq_info *info = info_for_irq(irq);

	BUG_ON(info->type != IRQT_PIRQ);

	return info->u.pirq.flags & PIRQ_NEEDS_EOI;
}

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static inline unsigned long active_evtchns(unsigned int cpu,
					   struct shared_info *sh,
					   unsigned int idx)
{
	return (sh->evtchn_pending[idx] &
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		per_cpu(cpu_evtchn_mask, cpu)[idx] &
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		~sh->evtchn_mask[idx]);
}

static void bind_evtchn_to_cpu(unsigned int chn, unsigned int cpu)
{
	int irq = evtchn_to_irq[chn];

	BUG_ON(irq == -1);
#ifdef CONFIG_SMP
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	cpumask_copy(irq_to_desc(irq)->irq_data.affinity, cpumask_of(cpu));
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#endif

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	clear_bit(chn, per_cpu(cpu_evtchn_mask, cpu_from_irq(irq)));
	set_bit(chn, per_cpu(cpu_evtchn_mask, cpu));
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	info_for_irq(irq)->cpu = cpu;
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}

static void init_evtchn_cpu_bindings(void)
{
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	int i;
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#ifdef CONFIG_SMP
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	struct irq_info *info;
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	/* By default all event channels notify CPU#0. */
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	list_for_each_entry(info, &xen_irq_list_head, list) {
		struct irq_desc *desc = irq_to_desc(info->irq);
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		cpumask_copy(desc->irq_data.affinity, cpumask_of(0));
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	}
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#endif

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	for_each_possible_cpu(i)
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		memset(per_cpu(cpu_evtchn_mask, i),
		       (i == 0) ? ~0 : 0, sizeof(*per_cpu(cpu_evtchn_mask, i)));
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}

static inline void clear_evtchn(int port)
{
	struct shared_info *s = HYPERVISOR_shared_info;
	sync_clear_bit(port, &s->evtchn_pending[0]);
}

static inline void set_evtchn(int port)
{
	struct shared_info *s = HYPERVISOR_shared_info;
	sync_set_bit(port, &s->evtchn_pending[0]);
}

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static inline int test_evtchn(int port)
{
	struct shared_info *s = HYPERVISOR_shared_info;
	return sync_test_bit(port, &s->evtchn_pending[0]);
}

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/**
 * notify_remote_via_irq - send event to remote end of event channel via irq
 * @irq: irq of event channel to send event to
 *
 * Unlike notify_remote_via_evtchn(), this is safe to use across
 * save/restore. Notifications on a broken connection are silently
 * dropped.
 */
void notify_remote_via_irq(int irq)
{
	int evtchn = evtchn_from_irq(irq);

	if (VALID_EVTCHN(evtchn))
		notify_remote_via_evtchn(evtchn);
}
EXPORT_SYMBOL_GPL(notify_remote_via_irq);

static void mask_evtchn(int port)
{
	struct shared_info *s = HYPERVISOR_shared_info;
	sync_set_bit(port, &s->evtchn_mask[0]);
}

static void unmask_evtchn(int port)
{
	struct shared_info *s = HYPERVISOR_shared_info;
	unsigned int cpu = get_cpu();

	BUG_ON(!irqs_disabled());

	/* Slow path (hypercall) if this is a non-local port. */
	if (unlikely(cpu != cpu_from_evtchn(port))) {
		struct evtchn_unmask unmask = { .port = port };
		(void)HYPERVISOR_event_channel_op(EVTCHNOP_unmask, &unmask);
	} else {
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		struct vcpu_info *vcpu_info = __this_cpu_read(xen_vcpu);
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		sync_clear_bit(port, &s->evtchn_mask[0]);

		/*
		 * The following is basically the equivalent of
		 * 'hw_resend_irq'. Just like a real IO-APIC we 'lose
		 * the interrupt edge' if the channel is masked.
		 */
		if (sync_test_bit(port, &s->evtchn_pending[0]) &&
		    !sync_test_and_set_bit(port / BITS_PER_LONG,
					   &vcpu_info->evtchn_pending_sel))
			vcpu_info->evtchn_upcall_pending = 1;
	}

	put_cpu();
}

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static void xen_irq_init(unsigned irq)
{
	struct irq_info *info;
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#ifdef CONFIG_SMP
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	struct irq_desc *desc = irq_to_desc(irq);

	/* By default all event channels notify CPU#0. */
	cpumask_copy(desc->irq_data.affinity, cpumask_of(0));
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#endif
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	info = kzalloc(sizeof(*info), GFP_KERNEL);
	if (info == NULL)
		panic("Unable to allocate metadata for IRQ%d\n", irq);
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	info->type = IRQT_UNBOUND;

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	irq_set_handler_data(irq, info);
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	list_add_tail(&info->list, &xen_irq_list_head);
}

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static int __must_check xen_allocate_irq_dynamic(void)
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{
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	int first = 0;
	int irq;
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#ifdef CONFIG_X86_IO_APIC
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	/*
	 * For an HVM guest or domain 0 which see "real" (emulated or
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	 * actual respectively) GSIs we allocate dynamic IRQs
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	 * e.g. those corresponding to event channels or MSIs
	 * etc. from the range above those "real" GSIs to avoid
	 * collisions.
	 */
	if (xen_initial_domain() || xen_hvm_domain())
		first = get_nr_irqs_gsi();
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#endif

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	irq = irq_alloc_desc_from(first, -1);
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	xen_irq_init(irq);
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	return irq;
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}

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static int __must_check xen_allocate_irq_gsi(unsigned gsi)
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{
	int irq;

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	/*
	 * A PV guest has no concept of a GSI (since it has no ACPI
	 * nor access to/knowledge of the physical APICs). Therefore
	 * all IRQs are dynamically allocated from the entire IRQ
	 * space.
	 */
	if (xen_pv_domain() && !xen_initial_domain())
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		return xen_allocate_irq_dynamic();

	/* Legacy IRQ descriptors are already allocated by the arch. */
	if (gsi < NR_IRQS_LEGACY)
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		irq = gsi;
	else
		irq = irq_alloc_desc_at(gsi, -1);
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	xen_irq_init(irq);
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	return irq;
}

static void xen_free_irq(unsigned irq)
{
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	struct irq_info *info = irq_get_handler_data(irq);
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	list_del(&info->list);
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	irq_set_handler_data(irq, NULL);
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	kfree(info);

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	/* Legacy IRQ descriptors are managed by the arch. */
	if (irq < NR_IRQS_LEGACY)
		return;

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	irq_free_desc(irq);
}

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static void pirq_query_unmask(int irq)
{
	struct physdev_irq_status_query irq_status;
	struct irq_info *info = info_for_irq(irq);

	BUG_ON(info->type != IRQT_PIRQ);

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	irq_status.irq = pirq_from_irq(irq);
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	if (HYPERVISOR_physdev_op(PHYSDEVOP_irq_status_query, &irq_status))
		irq_status.flags = 0;

	info->u.pirq.flags &= ~PIRQ_NEEDS_EOI;
	if (irq_status.flags & XENIRQSTAT_needs_eoi)
		info->u.pirq.flags |= PIRQ_NEEDS_EOI;
}

static bool probing_irq(int irq)
{
	struct irq_desc *desc = irq_to_desc(irq);

	return desc && desc->action == NULL;
}

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static void eoi_pirq(struct irq_data *data)
{
	int evtchn = evtchn_from_irq(data->irq);
	struct physdev_eoi eoi = { .irq = pirq_from_irq(data->irq) };
	int rc = 0;

	irq_move_irq(data);

	if (VALID_EVTCHN(evtchn))
		clear_evtchn(evtchn);

	if (pirq_needs_eoi(data->irq)) {
		rc = HYPERVISOR_physdev_op(PHYSDEVOP_eoi, &eoi);
		WARN_ON(rc);
	}
}

static void mask_ack_pirq(struct irq_data *data)
{
	disable_dynirq(data);
	eoi_pirq(data);
}

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static unsigned int __startup_pirq(unsigned int irq)
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{
	struct evtchn_bind_pirq bind_pirq;
	struct irq_info *info = info_for_irq(irq);
	int evtchn = evtchn_from_irq(irq);
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	int rc;
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	BUG_ON(info->type != IRQT_PIRQ);

	if (VALID_EVTCHN(evtchn))
		goto out;

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	bind_pirq.pirq = pirq_from_irq(irq);
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	/* NB. We are happy to share unless we are probing. */
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	bind_pirq.flags = info->u.pirq.flags & PIRQ_SHAREABLE ?
					BIND_PIRQ__WILL_SHARE : 0;
	rc = HYPERVISOR_event_channel_op(EVTCHNOP_bind_pirq, &bind_pirq);
	if (rc != 0) {
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		if (!probing_irq(irq))
			printk(KERN_INFO "Failed to obtain physical IRQ %d\n",
			       irq);
		return 0;
	}
	evtchn = bind_pirq.port;

	pirq_query_unmask(irq);

	evtchn_to_irq[evtchn] = irq;
	bind_evtchn_to_cpu(evtchn, 0);
	info->evtchn = evtchn;

out:
	unmask_evtchn(evtchn);
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	eoi_pirq(irq_get_irq_data(irq));
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	return 0;
}

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static unsigned int startup_pirq(struct irq_data *data)
{
	return __startup_pirq(data->irq);
}

static void shutdown_pirq(struct irq_data *data)
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{
	struct evtchn_close close;
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	unsigned int irq = data->irq;
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	struct irq_info *info = info_for_irq(irq);
	int evtchn = evtchn_from_irq(irq);

	BUG_ON(info->type != IRQT_PIRQ);

	if (!VALID_EVTCHN(evtchn))
		return;

	mask_evtchn(evtchn);

	close.port = evtchn;
	if (HYPERVISOR_event_channel_op(EVTCHNOP_close, &close) != 0)
		BUG();

	bind_evtchn_to_cpu(evtchn, 0);
	evtchn_to_irq[evtchn] = -1;
	info->evtchn = 0;
}

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static void enable_pirq(struct irq_data *data)
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{
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	startup_pirq(data);
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}

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static void disable_pirq(struct irq_data *data)
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{
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	disable_dynirq(data);
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}

static int find_irq_by_gsi(unsigned gsi)
{
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	struct irq_info *info;
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	list_for_each_entry(info, &xen_irq_list_head, list) {
		if (info->type != IRQT_PIRQ)
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			continue;

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		if (info->u.pirq.gsi == gsi)
			return info->irq;
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	}

	return -1;
}

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/*
 * Do not make any assumptions regarding the relationship between the
 * IRQ number returned here and the Xen pirq argument.
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 *
 * Note: We don't assign an event channel until the irq actually started
 * up.  Return an existing irq if we've already got one for the gsi.
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 *
 * Shareable implies level triggered, not shareable implies edge
 * triggered here.
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 */
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int xen_bind_pirq_gsi_to_irq(unsigned gsi,
			     unsigned pirq, int shareable, char *name)
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{
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	int irq = -1;
632 633
	struct physdev_irq irq_op;

634
	mutex_lock(&irq_mapping_update_lock);
635 636 637

	irq = find_irq_by_gsi(gsi);
	if (irq != -1) {
S
Stefano Stabellini 已提交
638
		printk(KERN_INFO "xen_map_pirq_gsi: returning irq %d for gsi %u\n",
639 640 641 642
		       irq, gsi);
		goto out;	/* XXX need refcount? */
	}

643
	irq = xen_allocate_irq_gsi(gsi);
644 645
	if (irq < 0)
		goto out;
646 647

	irq_op.irq = irq;
648 649 650 651 652 653 654
	irq_op.vector = 0;

	/* Only the privileged domain can do this. For non-priv, the pcifront
	 * driver provides a PCI bus that does the call to do exactly
	 * this in the priv domain. */
	if (xen_initial_domain() &&
	    HYPERVISOR_physdev_op(PHYSDEVOP_alloc_irq_vector, &irq_op)) {
655
		xen_free_irq(irq);
656 657 658 659
		irq = -ENOSPC;
		goto out;
	}

660
	xen_irq_info_pirq_init(irq, 0, pirq, gsi, irq_op.vector, DOMID_SELF,
661
			       shareable ? PIRQ_SHAREABLE : 0);
662

663 664
	pirq_query_unmask(irq);
	/* We try to use the handler with the appropriate semantic for the
665 666
	 * type of interrupt: if the interrupt is an edge triggered
	 * interrupt we use handle_edge_irq.
667
	 *
668 669
	 * On the other hand if the interrupt is level triggered we use
	 * handle_fasteoi_irq like the native code does for this kind of
670
	 * interrupts.
671
	 *
672 673 674 675 676 677 678
	 * Depending on the Xen version, pirq_needs_eoi might return true
	 * not only for level triggered interrupts but for edge triggered
	 * interrupts too. In any case Xen always honors the eoi mechanism,
	 * not injecting any more pirqs of the same kind if the first one
	 * hasn't received an eoi yet. Therefore using the fasteoi handler
	 * is the right choice either way.
	 */
679
	if (shareable)
680 681 682 683 684 685
		irq_set_chip_and_handler_name(irq, &xen_pirq_chip,
				handle_fasteoi_irq, name);
	else
		irq_set_chip_and_handler_name(irq, &xen_pirq_chip,
				handle_edge_irq, name);

686
out:
687
	mutex_unlock(&irq_mapping_update_lock);
688 689 690 691

	return irq;
}

692
#ifdef CONFIG_PCI_MSI
693
int xen_allocate_pirq_msi(struct pci_dev *dev, struct msi_desc *msidesc)
694
{
695
	int rc;
696 697
	struct physdev_get_free_pirq op_get_free_pirq;

698
	op_get_free_pirq.type = MAP_PIRQ_TYPE_MSI;
699 700
	rc = HYPERVISOR_physdev_op(PHYSDEVOP_get_free_pirq, &op_get_free_pirq);

701 702 703 704
	WARN_ONCE(rc == -ENOSYS,
		  "hypervisor does not support the PHYSDEVOP_get_free_pirq interface\n");

	return rc ? -1 : op_get_free_pirq.pirq;
705 706
}

707
int xen_bind_pirq_msi_to_irq(struct pci_dev *dev, struct msi_desc *msidesc,
708 709
			     int pirq, int vector, const char *name,
			     domid_t domid)
S
Stefano Stabellini 已提交
710
{
711
	int irq, ret;
712

713
	mutex_lock(&irq_mapping_update_lock);
S
Stefano Stabellini 已提交
714

715 716
	irq = xen_allocate_irq_dynamic();
	if (irq == -1)
717
		goto out;
S
Stefano Stabellini 已提交
718

719 720
	irq_set_chip_and_handler_name(irq, &xen_pirq_chip, handle_edge_irq,
			name);
S
Stefano Stabellini 已提交
721

722
	xen_irq_info_pirq_init(irq, 0, pirq, 0, vector, domid, 0);
723
	ret = irq_set_msi_desc(irq, msidesc);
724 725
	if (ret < 0)
		goto error_irq;
S
Stefano Stabellini 已提交
726
out:
727
	mutex_unlock(&irq_mapping_update_lock);
728
	return irq;
729
error_irq:
730
	mutex_unlock(&irq_mapping_update_lock);
731 732
	xen_free_irq(irq);
	return -1;
S
Stefano Stabellini 已提交
733
}
734 735
#endif

736 737 738
int xen_destroy_irq(int irq)
{
	struct irq_desc *desc;
739 740
	struct physdev_unmap_pirq unmap_irq;
	struct irq_info *info = info_for_irq(irq);
741 742
	int rc = -ENOENT;

743
	mutex_lock(&irq_mapping_update_lock);
744 745 746 747 748

	desc = irq_to_desc(irq);
	if (!desc)
		goto out;

749
	if (xen_initial_domain()) {
750
		unmap_irq.pirq = info->u.pirq.pirq;
751
		unmap_irq.domid = info->u.pirq.domid;
752
		rc = HYPERVISOR_physdev_op(PHYSDEVOP_unmap_pirq, &unmap_irq);
753 754 755 756 757 758 759 760
		/* If another domain quits without making the pci_disable_msix
		 * call, the Xen hypervisor takes care of freeing the PIRQs
		 * (free_domain_pirqs).
		 */
		if ((rc == -ESRCH && info->u.pirq.domid != DOMID_SELF))
			printk(KERN_INFO "domain %d does not have %d anymore\n",
				info->u.pirq.domid, info->u.pirq.pirq);
		else if (rc) {
761 762 763 764
			printk(KERN_WARNING "unmap irq failed %d\n", rc);
			goto out;
		}
	}
765

766
	xen_free_irq(irq);
767 768

out:
769
	mutex_unlock(&irq_mapping_update_lock);
770 771 772
	return rc;
}

773
int xen_irq_from_pirq(unsigned pirq)
774
{
775
	int irq;
776

777
	struct irq_info *info;
J
Jeremy Fitzhardinge 已提交
778

779
	mutex_lock(&irq_mapping_update_lock);
780 781 782 783 784 785 786 787 788 789

	list_for_each_entry(info, &xen_irq_list_head, list) {
		if (info == NULL || info->type != IRQT_PIRQ)
			continue;
		irq = info->irq;
		if (info->u.pirq.pirq == pirq)
			goto out;
	}
	irq = -1;
out:
790
	mutex_unlock(&irq_mapping_update_lock);
791 792

	return irq;
793 794
}

795 796 797 798 799 800

int xen_pirq_from_irq(unsigned irq)
{
	return pirq_from_irq(irq);
}
EXPORT_SYMBOL_GPL(xen_pirq_from_irq);
801
int bind_evtchn_to_irq(unsigned int evtchn)
J
Jeremy Fitzhardinge 已提交
802 803 804
{
	int irq;

805
	mutex_lock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
806 807 808 809

	irq = evtchn_to_irq[evtchn];

	if (irq == -1) {
810
		irq = xen_allocate_irq_dynamic();
811 812
		if (irq == -1)
			goto out;
J
Jeremy Fitzhardinge 已提交
813

T
Thomas Gleixner 已提交
814
		irq_set_chip_and_handler_name(irq, &xen_dynamic_chip,
815
					      handle_edge_irq, "event");
J
Jeremy Fitzhardinge 已提交
816

817
		xen_irq_info_evtchn_init(irq, evtchn);
J
Jeremy Fitzhardinge 已提交
818 819
	}

820
out:
821
	mutex_unlock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
822 823 824

	return irq;
}
825
EXPORT_SYMBOL_GPL(bind_evtchn_to_irq);
J
Jeremy Fitzhardinge 已提交
826

J
Jeremy Fitzhardinge 已提交
827 828 829 830 831
static int bind_ipi_to_irq(unsigned int ipi, unsigned int cpu)
{
	struct evtchn_bind_ipi bind_ipi;
	int evtchn, irq;

832
	mutex_lock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
833 834

	irq = per_cpu(ipi_to_irq, cpu)[ipi];
835

J
Jeremy Fitzhardinge 已提交
836
	if (irq == -1) {
837
		irq = xen_allocate_irq_dynamic();
J
Jeremy Fitzhardinge 已提交
838 839 840
		if (irq < 0)
			goto out;

T
Thomas Gleixner 已提交
841
		irq_set_chip_and_handler_name(irq, &xen_percpu_chip,
842
					      handle_percpu_irq, "ipi");
J
Jeremy Fitzhardinge 已提交
843 844 845 846 847 848 849

		bind_ipi.vcpu = cpu;
		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
						&bind_ipi) != 0)
			BUG();
		evtchn = bind_ipi.port;

850
		xen_irq_info_ipi_init(cpu, irq, evtchn, ipi);
J
Jeremy Fitzhardinge 已提交
851 852 853 854 855

		bind_evtchn_to_cpu(evtchn, cpu);
	}

 out:
856
	mutex_unlock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
857 858 859
	return irq;
}

860 861 862 863 864 865 866 867 868 869 870 871 872 873 874
static int bind_interdomain_evtchn_to_irq(unsigned int remote_domain,
					  unsigned int remote_port)
{
	struct evtchn_bind_interdomain bind_interdomain;
	int err;

	bind_interdomain.remote_dom  = remote_domain;
	bind_interdomain.remote_port = remote_port;

	err = HYPERVISOR_event_channel_op(EVTCHNOP_bind_interdomain,
					  &bind_interdomain);

	return err ? : bind_evtchn_to_irq(bind_interdomain.local_port);
}

J
Jeremy Fitzhardinge 已提交
875

876
int bind_virq_to_irq(unsigned int virq, unsigned int cpu)
J
Jeremy Fitzhardinge 已提交
877 878 879 880
{
	struct evtchn_bind_virq bind_virq;
	int evtchn, irq;

881
	mutex_lock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
882 883 884 885

	irq = per_cpu(virq_to_irq, cpu)[virq];

	if (irq == -1) {
886
		irq = xen_allocate_irq_dynamic();
887 888
		if (irq == -1)
			goto out;
889

T
Thomas Gleixner 已提交
890
		irq_set_chip_and_handler_name(irq, &xen_percpu_chip,
891 892
					      handle_percpu_irq, "virq");

J
Jeremy Fitzhardinge 已提交
893 894 895 896 897 898 899
		bind_virq.virq = virq;
		bind_virq.vcpu = cpu;
		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
						&bind_virq) != 0)
			BUG();
		evtchn = bind_virq.port;

900
		xen_irq_info_virq_init(cpu, irq, evtchn, virq);
J
Jeremy Fitzhardinge 已提交
901 902 903 904

		bind_evtchn_to_cpu(evtchn, cpu);
	}

905
out:
906
	mutex_unlock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
907 908 909 910 911 912 913 914 915

	return irq;
}

static void unbind_from_irq(unsigned int irq)
{
	struct evtchn_close close;
	int evtchn = evtchn_from_irq(irq);

916
	mutex_lock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
917

J
Jeremy Fitzhardinge 已提交
918
	if (VALID_EVTCHN(evtchn)) {
J
Jeremy Fitzhardinge 已提交
919 920 921 922 923 924 925
		close.port = evtchn;
		if (HYPERVISOR_event_channel_op(EVTCHNOP_close, &close) != 0)
			BUG();

		switch (type_from_irq(irq)) {
		case IRQT_VIRQ:
			per_cpu(virq_to_irq, cpu_from_evtchn(evtchn))
926
				[virq_from_irq(irq)] = -1;
J
Jeremy Fitzhardinge 已提交
927
			break;
A
Alex Nixon 已提交
928 929
		case IRQT_IPI:
			per_cpu(ipi_to_irq, cpu_from_evtchn(evtchn))
930
				[ipi_from_irq(irq)] = -1;
A
Alex Nixon 已提交
931
			break;
J
Jeremy Fitzhardinge 已提交
932 933 934 935 936 937 938 939
		default:
			break;
		}

		/* Closed ports are implicitly re-bound to VCPU0. */
		bind_evtchn_to_cpu(evtchn, 0);

		evtchn_to_irq[evtchn] = -1;
940 941
	}

942
	BUG_ON(info_for_irq(irq)->type == IRQT_UNBOUND);
J
Jeremy Fitzhardinge 已提交
943

944
	xen_free_irq(irq);
J
Jeremy Fitzhardinge 已提交
945

946
	mutex_unlock(&irq_mapping_update_lock);
J
Jeremy Fitzhardinge 已提交
947 948 949
}

int bind_evtchn_to_irqhandler(unsigned int evtchn,
950
			      irq_handler_t handler,
J
Jeremy Fitzhardinge 已提交
951 952 953
			      unsigned long irqflags,
			      const char *devname, void *dev_id)
{
954
	int irq, retval;
J
Jeremy Fitzhardinge 已提交
955 956

	irq = bind_evtchn_to_irq(evtchn);
957 958
	if (irq < 0)
		return irq;
J
Jeremy Fitzhardinge 已提交
959 960 961 962 963 964 965 966 967 968
	retval = request_irq(irq, handler, irqflags, devname, dev_id);
	if (retval != 0) {
		unbind_from_irq(irq);
		return retval;
	}

	return irq;
}
EXPORT_SYMBOL_GPL(bind_evtchn_to_irqhandler);

969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991
int bind_interdomain_evtchn_to_irqhandler(unsigned int remote_domain,
					  unsigned int remote_port,
					  irq_handler_t handler,
					  unsigned long irqflags,
					  const char *devname,
					  void *dev_id)
{
	int irq, retval;

	irq = bind_interdomain_evtchn_to_irq(remote_domain, remote_port);
	if (irq < 0)
		return irq;

	retval = request_irq(irq, handler, irqflags, devname, dev_id);
	if (retval != 0) {
		unbind_from_irq(irq);
		return retval;
	}

	return irq;
}
EXPORT_SYMBOL_GPL(bind_interdomain_evtchn_to_irqhandler);

J
Jeremy Fitzhardinge 已提交
992
int bind_virq_to_irqhandler(unsigned int virq, unsigned int cpu,
993
			    irq_handler_t handler,
J
Jeremy Fitzhardinge 已提交
994 995
			    unsigned long irqflags, const char *devname, void *dev_id)
{
996
	int irq, retval;
J
Jeremy Fitzhardinge 已提交
997 998

	irq = bind_virq_to_irq(virq, cpu);
999 1000
	if (irq < 0)
		return irq;
J
Jeremy Fitzhardinge 已提交
1001 1002 1003 1004 1005 1006 1007 1008 1009 1010
	retval = request_irq(irq, handler, irqflags, devname, dev_id);
	if (retval != 0) {
		unbind_from_irq(irq);
		return retval;
	}

	return irq;
}
EXPORT_SYMBOL_GPL(bind_virq_to_irqhandler);

J
Jeremy Fitzhardinge 已提交
1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023
int bind_ipi_to_irqhandler(enum ipi_vector ipi,
			   unsigned int cpu,
			   irq_handler_t handler,
			   unsigned long irqflags,
			   const char *devname,
			   void *dev_id)
{
	int irq, retval;

	irq = bind_ipi_to_irq(ipi, cpu);
	if (irq < 0)
		return irq;

T
Thomas Gleixner 已提交
1024
	irqflags |= IRQF_NO_SUSPEND | IRQF_FORCE_RESUME;
J
Jeremy Fitzhardinge 已提交
1025 1026 1027 1028 1029 1030 1031 1032 1033
	retval = request_irq(irq, handler, irqflags, devname, dev_id);
	if (retval != 0) {
		unbind_from_irq(irq);
		return retval;
	}

	return irq;
}

J
Jeremy Fitzhardinge 已提交
1034 1035 1036 1037 1038 1039 1040
void unbind_from_irqhandler(unsigned int irq, void *dev_id)
{
	free_irq(irq, dev_id);
	unbind_from_irq(irq);
}
EXPORT_SYMBOL_GPL(unbind_from_irqhandler);

J
Jeremy Fitzhardinge 已提交
1041 1042 1043 1044 1045 1046 1047
void xen_send_IPI_one(unsigned int cpu, enum ipi_vector vector)
{
	int irq = per_cpu(ipi_to_irq, cpu)[vector];
	BUG_ON(irq < 0);
	notify_remote_via_irq(irq);
}

1048 1049 1050 1051
irqreturn_t xen_debug_interrupt(int irq, void *dev_id)
{
	struct shared_info *sh = HYPERVISOR_shared_info;
	int cpu = smp_processor_id();
1052
	unsigned long *cpu_evtchn = per_cpu(cpu_evtchn_mask, cpu);
1053 1054 1055
	int i;
	unsigned long flags;
	static DEFINE_SPINLOCK(debug_lock);
1056
	struct vcpu_info *v;
1057 1058 1059

	spin_lock_irqsave(&debug_lock, flags);

1060
	printk("\nvcpu %d\n  ", cpu);
1061 1062

	for_each_online_cpu(i) {
1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105
		int pending;
		v = per_cpu(xen_vcpu, i);
		pending = (get_irq_regs() && i == cpu)
			? xen_irqs_disabled(get_irq_regs())
			: v->evtchn_upcall_mask;
		printk("%d: masked=%d pending=%d event_sel %0*lx\n  ", i,
		       pending, v->evtchn_upcall_pending,
		       (int)(sizeof(v->evtchn_pending_sel)*2),
		       v->evtchn_pending_sel);
	}
	v = per_cpu(xen_vcpu, cpu);

	printk("\npending:\n   ");
	for (i = ARRAY_SIZE(sh->evtchn_pending)-1; i >= 0; i--)
		printk("%0*lx%s", (int)sizeof(sh->evtchn_pending[0])*2,
		       sh->evtchn_pending[i],
		       i % 8 == 0 ? "\n   " : " ");
	printk("\nglobal mask:\n   ");
	for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--)
		printk("%0*lx%s",
		       (int)(sizeof(sh->evtchn_mask[0])*2),
		       sh->evtchn_mask[i],
		       i % 8 == 0 ? "\n   " : " ");

	printk("\nglobally unmasked:\n   ");
	for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--)
		printk("%0*lx%s", (int)(sizeof(sh->evtchn_mask[0])*2),
		       sh->evtchn_pending[i] & ~sh->evtchn_mask[i],
		       i % 8 == 0 ? "\n   " : " ");

	printk("\nlocal cpu%d mask:\n   ", cpu);
	for (i = (NR_EVENT_CHANNELS/BITS_PER_LONG)-1; i >= 0; i--)
		printk("%0*lx%s", (int)(sizeof(cpu_evtchn[0])*2),
		       cpu_evtchn[i],
		       i % 8 == 0 ? "\n   " : " ");

	printk("\nlocally unmasked:\n   ");
	for (i = ARRAY_SIZE(sh->evtchn_mask)-1; i >= 0; i--) {
		unsigned long pending = sh->evtchn_pending[i]
			& ~sh->evtchn_mask[i]
			& cpu_evtchn[i];
		printk("%0*lx%s", (int)(sizeof(sh->evtchn_mask[0])*2),
		       pending, i % 8 == 0 ? "\n   " : " ");
1106 1107 1108
	}

	printk("\npending list:\n");
1109
	for (i = 0; i < NR_EVENT_CHANNELS; i++) {
1110
		if (sync_test_bit(i, sh->evtchn_pending)) {
1111 1112
			int word_idx = i / BITS_PER_LONG;
			printk("  %d: event %d -> irq %d%s%s%s\n",
1113
			       cpu_from_evtchn(i), i,
1114 1115 1116 1117 1118 1119 1120
			       evtchn_to_irq[i],
			       sync_test_bit(word_idx, &v->evtchn_pending_sel)
					     ? "" : " l2-clear",
			       !sync_test_bit(i, sh->evtchn_mask)
					     ? "" : " globally-masked",
			       sync_test_bit(i, cpu_evtchn)
					     ? "" : " locally-masked");
1121 1122 1123 1124 1125 1126 1127 1128
		}
	}

	spin_unlock_irqrestore(&debug_lock, flags);

	return IRQ_HANDLED;
}

1129
static DEFINE_PER_CPU(unsigned, xed_nesting_count);
1130 1131
static DEFINE_PER_CPU(unsigned int, current_word_idx);
static DEFINE_PER_CPU(unsigned int, current_bit_idx);
1132

1133 1134 1135 1136
/*
 * Mask out the i least significant bits of w
 */
#define MASK_LSBS(w, i) (w & ((~0UL) << i))
1137

J
Jeremy Fitzhardinge 已提交
1138 1139 1140 1141 1142 1143 1144 1145 1146
/*
 * Search the CPUs pending events bitmasks.  For each one found, map
 * the event number to an irq, and feed it into do_IRQ() for
 * handling.
 *
 * Xen uses a two-level bitmap to speed searching.  The first level is
 * a bitset of words which contain pending event bits.  The second
 * level is a bitset of pending events themselves.
 */
1147
static void __xen_evtchn_do_upcall(void)
J
Jeremy Fitzhardinge 已提交
1148
{
1149
	int start_word_idx, start_bit_idx;
1150
	int word_idx, bit_idx;
1151
	int i;
J
Jeremy Fitzhardinge 已提交
1152 1153
	int cpu = get_cpu();
	struct shared_info *s = HYPERVISOR_shared_info;
C
Christoph Lameter 已提交
1154
	struct vcpu_info *vcpu_info = __this_cpu_read(xen_vcpu);
1155
 	unsigned count;
J
Jeremy Fitzhardinge 已提交
1156

1157 1158
	do {
		unsigned long pending_words;
J
Jeremy Fitzhardinge 已提交
1159

1160
		vcpu_info->evtchn_upcall_pending = 0;
J
Jeremy Fitzhardinge 已提交
1161

C
Christoph Lameter 已提交
1162
		if (__this_cpu_inc_return(xed_nesting_count) - 1)
1163
			goto out;
J
Jeremy Fitzhardinge 已提交
1164

1165 1166
#ifndef CONFIG_X86 /* No need for a barrier -- XCHG is a barrier on x86. */
		/* Clear master flag /before/ clearing selector flag. */
1167
		wmb();
1168
#endif
1169
		pending_words = xchg(&vcpu_info->evtchn_pending_sel, 0);
1170

1171 1172 1173 1174
		start_word_idx = __this_cpu_read(current_word_idx);
		start_bit_idx = __this_cpu_read(current_bit_idx);

		word_idx = start_word_idx;
1175

1176
		for (i = 0; pending_words != 0; i++) {
1177
			unsigned long pending_bits;
1178
			unsigned long words;
1179

1180 1181 1182
			words = MASK_LSBS(pending_words, word_idx);

			/*
1183
			 * If we masked out all events, wrap to beginning.
1184 1185
			 */
			if (words == 0) {
1186 1187
				word_idx = 0;
				bit_idx = 0;
1188 1189 1190
				continue;
			}
			word_idx = __ffs(words);
1191

1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203
			pending_bits = active_evtchns(cpu, s, word_idx);
			bit_idx = 0; /* usually scan entire word from start */
			if (word_idx == start_word_idx) {
				/* We scan the starting word in two parts */
				if (i == 0)
					/* 1st time: start in the middle */
					bit_idx = start_bit_idx;
				else
					/* 2nd time: mask bits done already */
					bit_idx &= (1UL << start_bit_idx) - 1;
			}

1204 1205 1206
			do {
				unsigned long bits;
				int port, irq;
1207
				struct irq_desc *desc;
1208

1209 1210 1211
				bits = MASK_LSBS(pending_bits, bit_idx);

				/* If we masked out all events, move on. */
1212
				if (bits == 0)
1213 1214 1215 1216 1217 1218 1219 1220
					break;

				bit_idx = __ffs(bits);

				/* Process port. */
				port = (word_idx * BITS_PER_LONG) + bit_idx;
				irq = evtchn_to_irq[port];

1221 1222 1223 1224 1225
				if (irq != -1) {
					desc = irq_to_desc(irq);
					if (desc)
						generic_handle_irq_desc(irq, desc);
				}
1226

1227 1228 1229 1230 1231 1232 1233 1234
				bit_idx = (bit_idx + 1) % BITS_PER_LONG;

				/* Next caller starts at last processed + 1 */
				__this_cpu_write(current_word_idx,
						 bit_idx ? word_idx :
						 (word_idx+1) % BITS_PER_LONG);
				__this_cpu_write(current_bit_idx, bit_idx);
			} while (bit_idx != 0);
1235

1236 1237
			/* Scan start_l1i twice; all others once. */
			if ((word_idx != start_word_idx) || (i != 0))
1238
				pending_words &= ~(1UL << word_idx);
1239 1240

			word_idx = (word_idx + 1) % BITS_PER_LONG;
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1241 1242
		}

1243 1244
		BUG_ON(!irqs_disabled());

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1245 1246
		count = __this_cpu_read(xed_nesting_count);
		__this_cpu_write(xed_nesting_count, 0);
1247
	} while (count != 1 || vcpu_info->evtchn_upcall_pending);
1248 1249

out:
1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262

	put_cpu();
}

void xen_evtchn_do_upcall(struct pt_regs *regs)
{
	struct pt_regs *old_regs = set_irq_regs(regs);

	exit_idle();
	irq_enter();

	__xen_evtchn_do_upcall();

1263 1264
	irq_exit();
	set_irq_regs(old_regs);
1265
}
1266

1267 1268 1269
void xen_hvm_evtchn_do_upcall(void)
{
	__xen_evtchn_do_upcall();
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}
1271
EXPORT_SYMBOL_GPL(xen_hvm_evtchn_do_upcall);
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/* Rebind a new event channel to an existing irq. */
void rebind_evtchn_irq(int evtchn, int irq)
{
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	struct irq_info *info = info_for_irq(irq);

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	/* Make sure the irq is masked, since the new event channel
	   will also be masked. */
	disable_irq(irq);

1282
	mutex_lock(&irq_mapping_update_lock);
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	/* After resume the irq<->evtchn mappings are all cleared out */
	BUG_ON(evtchn_to_irq[evtchn] != -1);
	/* Expect irq to have been bound before,
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	   so there should be a proper type */
	BUG_ON(info->type == IRQT_UNBOUND);
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1289

1290
	xen_irq_info_evtchn_init(irq, evtchn);
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1291

1292
	mutex_unlock(&irq_mapping_update_lock);
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1293 1294

	/* new event channels are always bound to cpu 0 */
1295
	irq_set_affinity(irq, cpumask_of(0));
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1296 1297 1298 1299 1300

	/* Unmask the event channel. */
	enable_irq(irq);
}

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/* Rebind an evtchn so that it gets delivered to a specific cpu */
1302
static int rebind_irq_to_cpu(unsigned irq, unsigned tcpu)
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{
	struct evtchn_bind_vcpu bind_vcpu;
	int evtchn = evtchn_from_irq(irq);

1307 1308 1309 1310 1311 1312 1313 1314
	if (!VALID_EVTCHN(evtchn))
		return -1;

	/*
	 * Events delivered via platform PCI interrupts are always
	 * routed to vcpu 0 and hence cannot be rebound.
	 */
	if (xen_hvm_domain() && !xen_have_vector_callback)
1315
		return -1;
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	/* Send future instances of this interrupt to other vcpu. */
	bind_vcpu.port = evtchn;
	bind_vcpu.vcpu = tcpu;

	/*
	 * If this fails, it usually just indicates that we're dealing with a
	 * virq or IPI channel, which don't actually need to be rebound. Ignore
	 * it, but don't do the xenlinux-level rebind in that case.
	 */
	if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_vcpu, &bind_vcpu) >= 0)
		bind_evtchn_to_cpu(evtchn, tcpu);

1329 1330
	return 0;
}
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1332 1333
static int set_affinity_irq(struct irq_data *data, const struct cpumask *dest,
			    bool force)
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{
1335
	unsigned tcpu = cpumask_first(dest);
1336

1337
	return rebind_irq_to_cpu(data->irq, tcpu);
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}

1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355
int resend_irq_on_evtchn(unsigned int irq)
{
	int masked, evtchn = evtchn_from_irq(irq);
	struct shared_info *s = HYPERVISOR_shared_info;

	if (!VALID_EVTCHN(evtchn))
		return 1;

	masked = sync_test_and_set_bit(evtchn, s->evtchn_mask);
	sync_set_bit(evtchn, s->evtchn_pending);
	if (!masked)
		unmask_evtchn(evtchn);

	return 1;
}

1356
static void enable_dynirq(struct irq_data *data)
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1357
{
1358
	int evtchn = evtchn_from_irq(data->irq);
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1359 1360 1361 1362 1363

	if (VALID_EVTCHN(evtchn))
		unmask_evtchn(evtchn);
}

1364
static void disable_dynirq(struct irq_data *data)
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1365
{
1366
	int evtchn = evtchn_from_irq(data->irq);
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	if (VALID_EVTCHN(evtchn))
		mask_evtchn(evtchn);
}

1372
static void ack_dynirq(struct irq_data *data)
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1373
{
1374
	int evtchn = evtchn_from_irq(data->irq);
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1375

1376
	irq_move_irq(data);
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1377 1378

	if (VALID_EVTCHN(evtchn))
1379 1380 1381 1382 1383 1384 1385
		clear_evtchn(evtchn);
}

static void mask_ack_dynirq(struct irq_data *data)
{
	disable_dynirq(data);
	ack_dynirq(data);
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1386 1387
}

1388
static int retrigger_dynirq(struct irq_data *data)
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1389
{
1390
	int evtchn = evtchn_from_irq(data->irq);
1391
	struct shared_info *sh = HYPERVISOR_shared_info;
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1392 1393 1394
	int ret = 0;

	if (VALID_EVTCHN(evtchn)) {
1395 1396 1397 1398 1399 1400
		int masked;

		masked = sync_test_and_set_bit(evtchn, sh->evtchn_mask);
		sync_set_bit(evtchn, sh->evtchn_pending);
		if (!masked)
			unmask_evtchn(evtchn);
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		ret = 1;
	}

	return ret;
}

1407
static void restore_pirqs(void)
1408 1409 1410
{
	int pirq, rc, irq, gsi;
	struct physdev_map_pirq map_irq;
1411
	struct irq_info *info;
1412

1413 1414
	list_for_each_entry(info, &xen_irq_list_head, list) {
		if (info->type != IRQT_PIRQ)
1415 1416
			continue;

1417 1418 1419 1420
		pirq = info->u.pirq.pirq;
		gsi = info->u.pirq.gsi;
		irq = info->irq;

1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434
		/* save/restore of PT devices doesn't work, so at this point the
		 * only devices present are GSI based emulated devices */
		if (!gsi)
			continue;

		map_irq.domid = DOMID_SELF;
		map_irq.type = MAP_PIRQ_TYPE_GSI;
		map_irq.index = gsi;
		map_irq.pirq = pirq;

		rc = HYPERVISOR_physdev_op(PHYSDEVOP_map_pirq, &map_irq);
		if (rc) {
			printk(KERN_WARNING "xen map irq failed gsi=%d irq=%d pirq=%d rc=%d\n",
					gsi, irq, pirq, rc);
1435
			xen_free_irq(irq);
1436 1437 1438 1439 1440
			continue;
		}

		printk(KERN_DEBUG "xen: --> irq=%d, pirq=%d\n", irq, map_irq.pirq);

1441
		__startup_pirq(irq);
1442 1443 1444
	}
}

1445 1446 1447 1448 1449 1450 1451 1452 1453
static void restore_cpu_virqs(unsigned int cpu)
{
	struct evtchn_bind_virq bind_virq;
	int virq, irq, evtchn;

	for (virq = 0; virq < NR_VIRQS; virq++) {
		if ((irq = per_cpu(virq_to_irq, cpu)[virq]) == -1)
			continue;

1454
		BUG_ON(virq_from_irq(irq) != virq);
1455 1456 1457 1458 1459 1460 1461 1462 1463 1464

		/* Get a new binding from Xen. */
		bind_virq.virq = virq;
		bind_virq.vcpu = cpu;
		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_virq,
						&bind_virq) != 0)
			BUG();
		evtchn = bind_virq.port;

		/* Record the new mapping. */
1465
		xen_irq_info_virq_init(cpu, irq, evtchn, virq);
1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478
		bind_evtchn_to_cpu(evtchn, cpu);
	}
}

static void restore_cpu_ipis(unsigned int cpu)
{
	struct evtchn_bind_ipi bind_ipi;
	int ipi, irq, evtchn;

	for (ipi = 0; ipi < XEN_NR_IPIS; ipi++) {
		if ((irq = per_cpu(ipi_to_irq, cpu)[ipi]) == -1)
			continue;

1479
		BUG_ON(ipi_from_irq(irq) != ipi);
1480 1481 1482 1483 1484 1485 1486 1487 1488

		/* Get a new binding from Xen. */
		bind_ipi.vcpu = cpu;
		if (HYPERVISOR_event_channel_op(EVTCHNOP_bind_ipi,
						&bind_ipi) != 0)
			BUG();
		evtchn = bind_ipi.port;

		/* Record the new mapping. */
1489
		xen_irq_info_ipi_init(cpu, irq, evtchn, ipi);
1490 1491 1492 1493
		bind_evtchn_to_cpu(evtchn, cpu);
	}
}

1494 1495 1496 1497 1498 1499 1500 1501
/* Clear an irq's pending state, in preparation for polling on it */
void xen_clear_irq_pending(int irq)
{
	int evtchn = evtchn_from_irq(irq);

	if (VALID_EVTCHN(evtchn))
		clear_evtchn(evtchn);
}
1502
EXPORT_SYMBOL(xen_clear_irq_pending);
1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521
void xen_set_irq_pending(int irq)
{
	int evtchn = evtchn_from_irq(irq);

	if (VALID_EVTCHN(evtchn))
		set_evtchn(evtchn);
}

bool xen_test_irq_pending(int irq)
{
	int evtchn = evtchn_from_irq(irq);
	bool ret = false;

	if (VALID_EVTCHN(evtchn))
		ret = test_evtchn(evtchn);

	return ret;
}

1522 1523 1524
/* Poll waiting for an irq to become pending with timeout.  In the usual case,
 * the irq will be disabled so it won't deliver an interrupt. */
void xen_poll_irq_timeout(int irq, u64 timeout)
1525 1526 1527 1528 1529 1530 1531
{
	evtchn_port_t evtchn = evtchn_from_irq(irq);

	if (VALID_EVTCHN(evtchn)) {
		struct sched_poll poll;

		poll.nr_ports = 1;
1532
		poll.timeout = timeout;
1533
		set_xen_guest_handle(poll.ports, &evtchn);
1534 1535 1536 1537 1538

		if (HYPERVISOR_sched_op(SCHEDOP_poll, &poll) != 0)
			BUG();
	}
}
1539 1540 1541 1542 1543 1544 1545
EXPORT_SYMBOL(xen_poll_irq_timeout);
/* Poll waiting for an irq to become pending.  In the usual case, the
 * irq will be disabled so it won't deliver an interrupt. */
void xen_poll_irq(int irq)
{
	xen_poll_irq_timeout(irq, 0 /* no timeout */);
}
1546

1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558
/* Check whether the IRQ line is shared with other guests. */
int xen_test_irq_shared(int irq)
{
	struct irq_info *info = info_for_irq(irq);
	struct physdev_irq_status_query irq_status = { .irq = info->u.pirq.pirq };

	if (HYPERVISOR_physdev_op(PHYSDEVOP_irq_status_query, &irq_status))
		return 0;
	return !(irq_status.flags & XENIRQSTAT_shared);
}
EXPORT_SYMBOL_GPL(xen_test_irq_shared);

1559 1560
void xen_irq_resume(void)
{
1561 1562
	unsigned int cpu, evtchn;
	struct irq_info *info;
1563 1564 1565 1566 1567 1568 1569 1570

	init_evtchn_cpu_bindings();

	/* New event-channel space is not 'live' yet. */
	for (evtchn = 0; evtchn < NR_EVENT_CHANNELS; evtchn++)
		mask_evtchn(evtchn);

	/* No IRQ <-> event-channel mappings. */
1571 1572
	list_for_each_entry(info, &xen_irq_list_head, list)
		info->evtchn = 0; /* zap event-channel binding */
1573 1574 1575 1576 1577 1578 1579 1580

	for (evtchn = 0; evtchn < NR_EVENT_CHANNELS; evtchn++)
		evtchn_to_irq[evtchn] = -1;

	for_each_possible_cpu(cpu) {
		restore_cpu_virqs(cpu);
		restore_cpu_ipis(cpu);
	}
1581

1582
	restore_pirqs();
1583 1584
}

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1585
static struct irq_chip xen_dynamic_chip __read_mostly = {
1586
	.name			= "xen-dyn",
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1587

1588 1589 1590
	.irq_disable		= disable_dynirq,
	.irq_mask		= disable_dynirq,
	.irq_unmask		= enable_dynirq,
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1591

1592 1593 1594
	.irq_ack		= ack_dynirq,
	.irq_mask_ack		= mask_ack_dynirq,

1595 1596
	.irq_set_affinity	= set_affinity_irq,
	.irq_retrigger		= retrigger_dynirq,
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1597 1598
};

1599
static struct irq_chip xen_pirq_chip __read_mostly = {
1600
	.name			= "xen-pirq",
1601

1602 1603 1604 1605
	.irq_startup		= startup_pirq,
	.irq_shutdown		= shutdown_pirq,
	.irq_enable		= enable_pirq,
	.irq_disable		= disable_pirq,
1606

1607 1608 1609 1610 1611 1612
	.irq_mask		= disable_dynirq,
	.irq_unmask		= enable_dynirq,

	.irq_ack		= eoi_pirq,
	.irq_eoi		= eoi_pirq,
	.irq_mask_ack		= mask_ack_pirq,
1613

1614
	.irq_set_affinity	= set_affinity_irq,
1615

1616
	.irq_retrigger		= retrigger_dynirq,
1617 1618
};

1619
static struct irq_chip xen_percpu_chip __read_mostly = {
1620
	.name			= "xen-percpu",
1621

1622 1623 1624
	.irq_disable		= disable_dynirq,
	.irq_mask		= disable_dynirq,
	.irq_unmask		= enable_dynirq,
1625

1626
	.irq_ack		= ack_dynirq,
1627 1628
};

1629 1630 1631 1632 1633 1634 1635 1636 1637 1638
int xen_set_callback_via(uint64_t via)
{
	struct xen_hvm_param a;
	a.domid = DOMID_SELF;
	a.index = HVM_PARAM_CALLBACK_IRQ;
	a.value = via;
	return HYPERVISOR_hvm_op(HVMOP_set_param, &a);
}
EXPORT_SYMBOL_GPL(xen_set_callback_via);

1639
#ifdef CONFIG_XEN_PVHVM
1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662
/* Vector callbacks are better than PCI interrupts to receive event
 * channel notifications because we can receive vector callbacks on any
 * vcpu and we don't need PCI support or APIC interactions. */
void xen_callback_vector(void)
{
	int rc;
	uint64_t callback_via;
	if (xen_have_vector_callback) {
		callback_via = HVM_CALLBACK_VECTOR(XEN_HVM_EVTCHN_CALLBACK);
		rc = xen_set_callback_via(callback_via);
		if (rc) {
			printk(KERN_ERR "Request for Xen HVM callback vector"
					" failed.\n");
			xen_have_vector_callback = 0;
			return;
		}
		printk(KERN_INFO "Xen HVM callback vector for event delivery is "
				"enabled\n");
		/* in the restore case the vector has already been allocated */
		if (!test_bit(XEN_HVM_EVTCHN_CALLBACK, used_vectors))
			alloc_intr_gate(XEN_HVM_EVTCHN_CALLBACK, xen_hvm_callback_vector);
	}
}
1663 1664 1665
#else
void xen_callback_vector(void) {}
#endif
1666

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1667 1668
void __init xen_init_IRQ(void)
{
1669
	int i;
1670

1671 1672 1673 1674
	evtchn_to_irq = kcalloc(NR_EVENT_CHANNELS, sizeof(*evtchn_to_irq),
				    GFP_KERNEL);
	for (i = 0; i < NR_EVENT_CHANNELS; i++)
		evtchn_to_irq[i] = -1;
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1675 1676 1677 1678 1679 1680 1681

	init_evtchn_cpu_bindings();

	/* No event channels are 'live' right now. */
	for (i = 0; i < NR_EVENT_CHANNELS; i++)
		mask_evtchn(i);

1682 1683 1684
	if (xen_hvm_domain()) {
		xen_callback_vector();
		native_init_IRQ();
1685 1686 1687
		/* pci_xen_hvm_init must be called after native_init_IRQ so that
		 * __acpi_register_gsi can point at the right function */
		pci_xen_hvm_init();
1688 1689
	} else {
		irq_ctx_init(smp_processor_id());
1690
		if (xen_initial_domain())
1691
			pci_xen_initial_domain();
1692
	}
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1693
}