return qemu_extend_irqs(NULL, 0, handler, opaque, n);
}
+qemu_irq qemu_allocate_irq(qemu_irq_handler handler, void *opaque, int n)
+{
+ struct IRQState *irq;
+
+ irq = g_new(struct IRQState, 1);
+ irq->handler = handler;
+ irq->opaque = opaque;
+ irq->n = n;
+
+ return irq;
+}
void qemu_free_irqs(qemu_irq *s)
{
g_free(s);
}
+void qemu_free_irq(qemu_irq irq)
+{
+ g_free(irq);
+}
+
static void qemu_notirq(void *opaque, int line, int level)
{
struct IRQState *irq = opaque;
*/
qemu_irq *qemu_allocate_irqs(qemu_irq_handler handler, void *opaque, int n);
+/*
+ * Allocates a single IRQ. The irq is assigned with a handler, an opaque
+ * data and the interrupt number.
+ */
+qemu_irq qemu_allocate_irq(qemu_irq_handler handler, void *opaque, int n);
+
/* Extends an Array of IRQs. Old IRQs have their handlers and opaque data
* preserved. New IRQs are assigned the argument handler and opaque data.
*/
void *opaque, int n);
void qemu_free_irqs(qemu_irq *s);
+void qemu_free_irq(qemu_irq irq);
/* Returns a new IRQ with opposite polarity. */
qemu_irq qemu_irq_invert(qemu_irq irq);