1 /* irq.c: UltraSparc IRQ handling/init/registry.
3 * Copyright (C) 1997, 2007 David S. Miller (davem@davemloft.net)
4 * Copyright (C) 1998 Eddie C. Dost (ecd@skynet.be)
5 * Copyright (C) 1998 Jakub Jelinek (jj@ultra.linux.cz)
8 #include <linux/module.h>
9 #include <linux/sched.h>
10 #include <linux/ptrace.h>
11 #include <linux/errno.h>
12 #include <linux/kernel_stat.h>
13 #include <linux/signal.h>
15 #include <linux/interrupt.h>
16 #include <linux/slab.h>
17 #include <linux/random.h>
18 #include <linux/init.h>
19 #include <linux/delay.h>
20 #include <linux/proc_fs.h>
21 #include <linux/seq_file.h>
22 #include <linux/bootmem.h>
23 #include <linux/irq.h>
25 #include <asm/ptrace.h>
26 #include <asm/processor.h>
27 #include <asm/atomic.h>
28 #include <asm/system.h>
32 #include <asm/iommu.h>
34 #include <asm/oplib.h>
36 #include <asm/timer.h>
38 #include <asm/starfire.h>
39 #include <asm/uaccess.h>
40 #include <asm/cache.h>
41 #include <asm/cpudata.h>
42 #include <asm/auxio.h>
44 #include <asm/hypervisor.h>
45 #include <asm/cacheflush.h>
49 #define NUM_IVECS (IMAP_INR + 1)
51 struct ino_bucket *ivector_table;
52 unsigned long ivector_table_pa;
54 /* On several sun4u processors, it is illegal to mix bypass and
55 * non-bypass accesses. Therefore we access all INO buckets
56 * using bypass accesses only.
58 static unsigned long bucket_get_chain_pa(unsigned long bucket_pa)
62 __asm__ __volatile__("ldxa [%1] %2, %0"
65 offsetof(struct ino_bucket,
67 "i" (ASI_PHYS_USE_EC));
72 static void bucket_clear_chain_pa(unsigned long bucket_pa)
74 __asm__ __volatile__("stxa %%g0, [%0] %1"
77 offsetof(struct ino_bucket,
79 "i" (ASI_PHYS_USE_EC));
82 static unsigned int bucket_get_virt_irq(unsigned long bucket_pa)
86 __asm__ __volatile__("lduwa [%1] %2, %0"
89 offsetof(struct ino_bucket,
91 "i" (ASI_PHYS_USE_EC));
96 static void bucket_set_virt_irq(unsigned long bucket_pa,
97 unsigned int virt_irq)
99 __asm__ __volatile__("stwa %0, [%1] %2"
103 offsetof(struct ino_bucket,
105 "i" (ASI_PHYS_USE_EC));
108 #define irq_work_pa(__cpu) &(trap_block[(__cpu)].irq_worklist_pa)
111 unsigned int dev_handle;
112 unsigned int dev_ino;
114 } virt_irq_table[NR_IRQS];
115 static DEFINE_SPINLOCK(virt_irq_alloc_lock);
117 unsigned char virt_irq_alloc(unsigned int dev_handle,
118 unsigned int dev_ino)
123 BUILD_BUG_ON(NR_IRQS >= 256);
125 spin_lock_irqsave(&virt_irq_alloc_lock, flags);
127 for (ent = 1; ent < NR_IRQS; ent++) {
128 if (!virt_irq_table[ent].in_use)
131 if (ent >= NR_IRQS) {
132 printk(KERN_ERR "IRQ: Out of virtual IRQs.\n");
135 virt_irq_table[ent].dev_handle = dev_handle;
136 virt_irq_table[ent].dev_ino = dev_ino;
137 virt_irq_table[ent].in_use = 1;
140 spin_unlock_irqrestore(&virt_irq_alloc_lock, flags);
145 #ifdef CONFIG_PCI_MSI
146 void virt_irq_free(unsigned int virt_irq)
150 if (virt_irq >= NR_IRQS)
153 spin_lock_irqsave(&virt_irq_alloc_lock, flags);
155 virt_irq_table[virt_irq].in_use = 0;
157 spin_unlock_irqrestore(&virt_irq_alloc_lock, flags);
162 * /proc/interrupts printing:
165 int show_interrupts(struct seq_file *p, void *v)
167 int i = *(loff_t *) v, j;
168 struct irqaction * action;
173 for_each_online_cpu(j)
174 seq_printf(p, "CPU%d ",j);
179 spin_lock_irqsave(&irq_desc[i].lock, flags);
180 action = irq_desc[i].action;
183 seq_printf(p, "%3d: ",i);
185 seq_printf(p, "%10u ", kstat_irqs(i));
187 for_each_online_cpu(j)
188 seq_printf(p, "%10u ", kstat_cpu(j).irqs[i]);
190 seq_printf(p, " %9s", irq_desc[i].chip->typename);
191 seq_printf(p, " %s", action->name);
193 for (action=action->next; action; action = action->next)
194 seq_printf(p, ", %s", action->name);
198 spin_unlock_irqrestore(&irq_desc[i].lock, flags);
203 static unsigned int sun4u_compute_tid(unsigned long imap, unsigned long cpuid)
207 if (this_is_starfire) {
208 tid = starfire_translate(imap, cpuid);
209 tid <<= IMAP_TID_SHIFT;
212 if (tlb_type == cheetah || tlb_type == cheetah_plus) {
215 __asm__ ("rdpr %%ver, %0" : "=r" (ver));
216 if ((ver >> 32UL) == __JALAPENO_ID ||
217 (ver >> 32UL) == __SERRANO_ID) {
218 tid = cpuid << IMAP_TID_SHIFT;
219 tid &= IMAP_TID_JBUS;
221 unsigned int a = cpuid & 0x1f;
222 unsigned int n = (cpuid >> 5) & 0x1f;
224 tid = ((a << IMAP_AID_SHIFT) |
225 (n << IMAP_NID_SHIFT));
226 tid &= (IMAP_AID_SAFARI |
230 tid = cpuid << IMAP_TID_SHIFT;
238 struct irq_handler_data {
242 void (*pre_handler)(unsigned int, void *, void *);
248 static int irq_choose_cpu(unsigned int virt_irq)
250 cpumask_t mask = irq_desc[virt_irq].affinity;
253 if (cpus_equal(mask, CPU_MASK_ALL)) {
254 static int irq_rover;
255 static DEFINE_SPINLOCK(irq_rover_lock);
258 /* Round-robin distribution... */
260 spin_lock_irqsave(&irq_rover_lock, flags);
262 while (!cpu_online(irq_rover)) {
263 if (++irq_rover >= NR_CPUS)
268 if (++irq_rover >= NR_CPUS)
270 } while (!cpu_online(irq_rover));
272 spin_unlock_irqrestore(&irq_rover_lock, flags);
276 cpus_and(tmp, cpu_online_map, mask);
281 cpuid = first_cpu(tmp);
287 static int irq_choose_cpu(unsigned int virt_irq)
289 return real_hard_smp_processor_id();
293 static void sun4u_irq_enable(unsigned int virt_irq)
295 struct irq_handler_data *data = get_irq_chip_data(virt_irq);
298 unsigned long cpuid, imap, val;
301 cpuid = irq_choose_cpu(virt_irq);
304 tid = sun4u_compute_tid(imap, cpuid);
306 val = upa_readq(imap);
307 val &= ~(IMAP_TID_UPA | IMAP_TID_JBUS |
308 IMAP_AID_SAFARI | IMAP_NID_SAFARI);
309 val |= tid | IMAP_VALID;
310 upa_writeq(val, imap);
314 static void sun4u_set_affinity(unsigned int virt_irq, cpumask_t mask)
316 sun4u_irq_enable(virt_irq);
319 static void sun4u_irq_disable(unsigned int virt_irq)
321 struct irq_handler_data *data = get_irq_chip_data(virt_irq);
324 unsigned long imap = data->imap;
325 unsigned long tmp = upa_readq(imap);
328 upa_writeq(tmp, imap);
332 static void sun4u_irq_eoi(unsigned int virt_irq)
334 struct irq_handler_data *data = get_irq_chip_data(virt_irq);
335 struct irq_desc *desc = irq_desc + virt_irq;
337 if (unlikely(desc->status & (IRQ_DISABLED|IRQ_INPROGRESS)))
341 upa_writeq(ICLR_IDLE, data->iclr);
344 static void sun4v_irq_enable(unsigned int virt_irq)
346 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
347 unsigned long cpuid = irq_choose_cpu(virt_irq);
350 err = sun4v_intr_settarget(ino, cpuid);
352 printk(KERN_ERR "sun4v_intr_settarget(%x,%lu): "
353 "err(%d)\n", ino, cpuid, err);
354 err = sun4v_intr_setstate(ino, HV_INTR_STATE_IDLE);
356 printk(KERN_ERR "sun4v_intr_setstate(%x): "
357 "err(%d)\n", ino, err);
358 err = sun4v_intr_setenabled(ino, HV_INTR_ENABLED);
360 printk(KERN_ERR "sun4v_intr_setenabled(%x): err(%d)\n",
364 static void sun4v_set_affinity(unsigned int virt_irq, cpumask_t mask)
366 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
367 unsigned long cpuid = irq_choose_cpu(virt_irq);
370 err = sun4v_intr_settarget(ino, cpuid);
372 printk(KERN_ERR "sun4v_intr_settarget(%x,%lu): "
373 "err(%d)\n", ino, cpuid, err);
376 static void sun4v_irq_disable(unsigned int virt_irq)
378 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
381 err = sun4v_intr_setenabled(ino, HV_INTR_DISABLED);
383 printk(KERN_ERR "sun4v_intr_setenabled(%x): "
384 "err(%d)\n", ino, err);
387 static void sun4v_irq_eoi(unsigned int virt_irq)
389 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
390 struct irq_desc *desc = irq_desc + virt_irq;
393 if (unlikely(desc->status & (IRQ_DISABLED|IRQ_INPROGRESS)))
396 err = sun4v_intr_setstate(ino, HV_INTR_STATE_IDLE);
398 printk(KERN_ERR "sun4v_intr_setstate(%x): "
399 "err(%d)\n", ino, err);
402 static void sun4v_virq_enable(unsigned int virt_irq)
404 unsigned long cpuid, dev_handle, dev_ino;
407 cpuid = irq_choose_cpu(virt_irq);
409 dev_handle = virt_irq_table[virt_irq].dev_handle;
410 dev_ino = virt_irq_table[virt_irq].dev_ino;
412 err = sun4v_vintr_set_target(dev_handle, dev_ino, cpuid);
414 printk(KERN_ERR "sun4v_vintr_set_target(%lx,%lx,%lu): "
416 dev_handle, dev_ino, cpuid, err);
417 err = sun4v_vintr_set_state(dev_handle, dev_ino,
420 printk(KERN_ERR "sun4v_vintr_set_state(%lx,%lx,"
421 "HV_INTR_STATE_IDLE): err(%d)\n",
422 dev_handle, dev_ino, err);
423 err = sun4v_vintr_set_valid(dev_handle, dev_ino,
426 printk(KERN_ERR "sun4v_vintr_set_state(%lx,%lx,"
427 "HV_INTR_ENABLED): err(%d)\n",
428 dev_handle, dev_ino, err);
431 static void sun4v_virt_set_affinity(unsigned int virt_irq, cpumask_t mask)
433 unsigned long cpuid, dev_handle, dev_ino;
436 cpuid = irq_choose_cpu(virt_irq);
438 dev_handle = virt_irq_table[virt_irq].dev_handle;
439 dev_ino = virt_irq_table[virt_irq].dev_ino;
441 err = sun4v_vintr_set_target(dev_handle, dev_ino, cpuid);
443 printk(KERN_ERR "sun4v_vintr_set_target(%lx,%lx,%lu): "
445 dev_handle, dev_ino, cpuid, err);
448 static void sun4v_virq_disable(unsigned int virt_irq)
450 unsigned long dev_handle, dev_ino;
453 dev_handle = virt_irq_table[virt_irq].dev_handle;
454 dev_ino = virt_irq_table[virt_irq].dev_ino;
456 err = sun4v_vintr_set_valid(dev_handle, dev_ino,
459 printk(KERN_ERR "sun4v_vintr_set_state(%lx,%lx,"
460 "HV_INTR_DISABLED): err(%d)\n",
461 dev_handle, dev_ino, err);
464 static void sun4v_virq_eoi(unsigned int virt_irq)
466 struct irq_desc *desc = irq_desc + virt_irq;
467 unsigned long dev_handle, dev_ino;
470 if (unlikely(desc->status & (IRQ_DISABLED|IRQ_INPROGRESS)))
473 dev_handle = virt_irq_table[virt_irq].dev_handle;
474 dev_ino = virt_irq_table[virt_irq].dev_ino;
476 err = sun4v_vintr_set_state(dev_handle, dev_ino,
479 printk(KERN_ERR "sun4v_vintr_set_state(%lx,%lx,"
480 "HV_INTR_STATE_IDLE): err(%d)\n",
481 dev_handle, dev_ino, err);
484 static struct irq_chip sun4u_irq = {
486 .enable = sun4u_irq_enable,
487 .disable = sun4u_irq_disable,
488 .eoi = sun4u_irq_eoi,
489 .set_affinity = sun4u_set_affinity,
492 static struct irq_chip sun4v_irq = {
494 .enable = sun4v_irq_enable,
495 .disable = sun4v_irq_disable,
496 .eoi = sun4v_irq_eoi,
497 .set_affinity = sun4v_set_affinity,
500 static struct irq_chip sun4v_virq = {
501 .typename = "vsun4v",
502 .enable = sun4v_virq_enable,
503 .disable = sun4v_virq_disable,
504 .eoi = sun4v_virq_eoi,
505 .set_affinity = sun4v_virt_set_affinity,
508 static void pre_flow_handler(unsigned int virt_irq,
509 struct irq_desc *desc)
511 struct irq_handler_data *data = get_irq_chip_data(virt_irq);
512 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
514 data->pre_handler(ino, data->arg1, data->arg2);
516 handle_fasteoi_irq(virt_irq, desc);
519 void irq_install_pre_handler(int virt_irq,
520 void (*func)(unsigned int, void *, void *),
521 void *arg1, void *arg2)
523 struct irq_handler_data *data = get_irq_chip_data(virt_irq);
524 struct irq_desc *desc = irq_desc + virt_irq;
526 data->pre_handler = func;
530 desc->handle_irq = pre_flow_handler;
533 unsigned int build_irq(int inofixup, unsigned long iclr, unsigned long imap)
535 struct ino_bucket *bucket;
536 struct irq_handler_data *data;
537 unsigned int virt_irq;
540 BUG_ON(tlb_type == hypervisor);
542 ino = (upa_readq(imap) & (IMAP_IGN | IMAP_INO)) + inofixup;
543 bucket = &ivector_table[ino];
544 virt_irq = bucket_get_virt_irq(__pa(bucket));
546 virt_irq = virt_irq_alloc(0, ino);
547 bucket_set_virt_irq(__pa(bucket), virt_irq);
548 set_irq_chip_and_handler_name(virt_irq,
554 data = get_irq_chip_data(virt_irq);
558 data = kzalloc(sizeof(struct irq_handler_data), GFP_ATOMIC);
559 if (unlikely(!data)) {
560 prom_printf("IRQ: kzalloc(irq_handler_data) failed.\n");
563 set_irq_chip_data(virt_irq, data);
572 static unsigned int sun4v_build_common(unsigned long sysino,
573 struct irq_chip *chip)
575 struct ino_bucket *bucket;
576 struct irq_handler_data *data;
577 unsigned int virt_irq;
579 BUG_ON(tlb_type != hypervisor);
581 bucket = &ivector_table[sysino];
582 virt_irq = bucket_get_virt_irq(__pa(bucket));
584 virt_irq = virt_irq_alloc(0, sysino);
585 bucket_set_virt_irq(__pa(bucket), virt_irq);
586 set_irq_chip_and_handler_name(virt_irq, chip,
591 data = get_irq_chip_data(virt_irq);
595 data = kzalloc(sizeof(struct irq_handler_data), GFP_ATOMIC);
596 if (unlikely(!data)) {
597 prom_printf("IRQ: kzalloc(irq_handler_data) failed.\n");
600 set_irq_chip_data(virt_irq, data);
602 /* Catch accidental accesses to these things. IMAP/ICLR handling
603 * is done by hypervisor calls on sun4v platforms, not by direct
613 unsigned int sun4v_build_irq(u32 devhandle, unsigned int devino)
615 unsigned long sysino = sun4v_devino_to_sysino(devhandle, devino);
617 return sun4v_build_common(sysino, &sun4v_irq);
620 unsigned int sun4v_build_virq(u32 devhandle, unsigned int devino)
622 struct irq_handler_data *data;
623 struct ino_bucket *bucket;
624 unsigned long hv_err, cookie;
625 unsigned int virt_irq;
627 bucket = kzalloc(sizeof(struct ino_bucket), GFP_ATOMIC);
628 if (unlikely(!bucket))
630 __flush_dcache_range((unsigned long) bucket,
631 ((unsigned long) bucket +
632 sizeof(struct ino_bucket)));
634 virt_irq = virt_irq_alloc(devhandle, devino);
635 bucket_set_virt_irq(__pa(bucket), virt_irq);
637 set_irq_chip_and_handler_name(virt_irq, &sun4v_virq,
641 data = kzalloc(sizeof(struct irq_handler_data), GFP_ATOMIC);
645 set_irq_chip_data(virt_irq, data);
647 /* Catch accidental accesses to these things. IMAP/ICLR handling
648 * is done by hypervisor calls on sun4v platforms, not by direct
654 cookie = ~__pa(bucket);
655 hv_err = sun4v_vintr_set_cookie(devhandle, devino, cookie);
657 prom_printf("IRQ: Fatal, cannot set cookie for [%x:%x] "
658 "err=%lu\n", devhandle, devino, hv_err);
665 void ack_bad_irq(unsigned int virt_irq)
667 unsigned int ino = virt_irq_table[virt_irq].dev_ino;
672 printk(KERN_CRIT "Unexpected IRQ from ino[%x] virt_irq[%u]\n",
676 void handler_irq(int irq, struct pt_regs *regs)
678 unsigned long pstate, bucket_pa;
679 struct pt_regs *old_regs;
681 clear_softint(1 << irq);
683 old_regs = set_irq_regs(regs);
686 /* Grab an atomic snapshot of the pending IVECs. */
687 __asm__ __volatile__("rdpr %%pstate, %0\n\t"
688 "wrpr %0, %3, %%pstate\n\t"
691 "wrpr %0, 0x0, %%pstate\n\t"
692 : "=&r" (pstate), "=&r" (bucket_pa)
693 : "r" (irq_work_pa(smp_processor_id())),
698 struct irq_desc *desc;
699 unsigned long next_pa;
700 unsigned int virt_irq;
702 next_pa = bucket_get_chain_pa(bucket_pa);
703 virt_irq = bucket_get_virt_irq(bucket_pa);
704 bucket_clear_chain_pa(bucket_pa);
706 desc = irq_desc + virt_irq;
708 desc->handle_irq(virt_irq, desc);
714 set_irq_regs(old_regs);
717 #ifdef CONFIG_HOTPLUG_CPU
718 void fixup_irqs(void)
722 for (irq = 0; irq < NR_IRQS; irq++) {
725 spin_lock_irqsave(&irq_desc[irq].lock, flags);
726 if (irq_desc[irq].action &&
727 !(irq_desc[irq].status & IRQ_PER_CPU)) {
728 if (irq_desc[irq].chip->set_affinity)
729 irq_desc[irq].chip->set_affinity(irq,
730 irq_desc[irq].affinity);
732 spin_unlock_irqrestore(&irq_desc[irq].lock, flags);
744 static struct sun5_timer *prom_timers;
745 static u64 prom_limit0, prom_limit1;
747 static void map_prom_timers(void)
749 struct device_node *dp;
750 const unsigned int *addr;
752 /* PROM timer node hangs out in the top level of device siblings... */
753 dp = of_find_node_by_path("/");
756 if (!strcmp(dp->name, "counter-timer"))
761 /* Assume if node is not present, PROM uses different tick mechanism
762 * which we should not care about.
765 prom_timers = (struct sun5_timer *) 0;
769 /* If PROM is really using this, it must be mapped by him. */
770 addr = of_get_property(dp, "address", NULL);
772 prom_printf("PROM does not have timer mapped, trying to continue.\n");
773 prom_timers = (struct sun5_timer *) 0;
776 prom_timers = (struct sun5_timer *) ((unsigned long)addr[0]);
779 static void kill_prom_timer(void)
784 /* Save them away for later. */
785 prom_limit0 = prom_timers->limit0;
786 prom_limit1 = prom_timers->limit1;
788 /* Just as in sun4c/sun4m PROM uses timer which ticks at IRQ 14.
789 * We turn both off here just to be paranoid.
791 prom_timers->limit0 = 0;
792 prom_timers->limit1 = 0;
794 /* Wheee, eat the interrupt packet too... */
795 __asm__ __volatile__(
797 " ldxa [%%g0] %0, %%g1\n"
798 " ldxa [%%g2] %1, %%g1\n"
799 " stxa %%g0, [%%g0] %0\n"
802 : "i" (ASI_INTR_RECEIVE), "i" (ASI_INTR_R)
806 void init_irqwork_curcpu(void)
808 int cpu = hard_smp_processor_id();
810 trap_block[cpu].irq_worklist_pa = 0UL;
813 /* Please be very careful with register_one_mondo() and
814 * sun4v_register_mondo_queues().
816 * On SMP this gets invoked from the CPU trampoline before
817 * the cpu has fully taken over the trap table from OBP,
818 * and it's kernel stack + %g6 thread register state is
819 * not fully cooked yet.
821 * Therefore you cannot make any OBP calls, not even prom_printf,
822 * from these two routines.
824 static void __cpuinit register_one_mondo(unsigned long paddr, unsigned long type, unsigned long qmask)
826 unsigned long num_entries = (qmask + 1) / 64;
827 unsigned long status;
829 status = sun4v_cpu_qconf(type, paddr, num_entries);
830 if (status != HV_EOK) {
831 prom_printf("SUN4V: sun4v_cpu_qconf(%lu:%lx:%lu) failed, "
832 "err %lu\n", type, paddr, num_entries, status);
837 void __cpuinit sun4v_register_mondo_queues(int this_cpu)
839 struct trap_per_cpu *tb = &trap_block[this_cpu];
841 register_one_mondo(tb->cpu_mondo_pa, HV_CPU_QUEUE_CPU_MONDO,
842 tb->cpu_mondo_qmask);
843 register_one_mondo(tb->dev_mondo_pa, HV_CPU_QUEUE_DEVICE_MONDO,
844 tb->dev_mondo_qmask);
845 register_one_mondo(tb->resum_mondo_pa, HV_CPU_QUEUE_RES_ERROR,
847 register_one_mondo(tb->nonresum_mondo_pa, HV_CPU_QUEUE_NONRES_ERROR,
851 static void __init alloc_one_mondo(unsigned long *pa_ptr, unsigned long qmask)
853 unsigned long size = PAGE_ALIGN(qmask + 1);
854 void *p = __alloc_bootmem(size, size, 0);
856 prom_printf("SUN4V: Error, cannot allocate mondo queue.\n");
863 static void __init alloc_one_kbuf(unsigned long *pa_ptr, unsigned long qmask)
865 unsigned long size = PAGE_ALIGN(qmask + 1);
866 void *p = __alloc_bootmem(size, size, 0);
869 prom_printf("SUN4V: Error, cannot allocate kbuf page.\n");
876 static void __init init_cpu_send_mondo_info(struct trap_per_cpu *tb)
881 BUILD_BUG_ON((NR_CPUS * sizeof(u16)) > (PAGE_SIZE - 64));
883 page = alloc_bootmem_pages(PAGE_SIZE);
885 prom_printf("SUN4V: Error, cannot allocate cpu mondo page.\n");
889 tb->cpu_mondo_block_pa = __pa(page);
890 tb->cpu_list_pa = __pa(page + 64);
894 /* Allocate mondo and error queues for all possible cpus. */
895 static void __init sun4v_init_mondo_queues(void)
899 for_each_possible_cpu(cpu) {
900 struct trap_per_cpu *tb = &trap_block[cpu];
902 alloc_one_mondo(&tb->cpu_mondo_pa, tb->cpu_mondo_qmask);
903 alloc_one_mondo(&tb->dev_mondo_pa, tb->dev_mondo_qmask);
904 alloc_one_mondo(&tb->resum_mondo_pa, tb->resum_qmask);
905 alloc_one_kbuf(&tb->resum_kernel_buf_pa, tb->resum_qmask);
906 alloc_one_mondo(&tb->nonresum_mondo_pa, tb->nonresum_qmask);
907 alloc_one_kbuf(&tb->nonresum_kernel_buf_pa,
910 init_cpu_send_mondo_info(tb);
913 /* Load up the boot cpu's entries. */
914 sun4v_register_mondo_queues(hard_smp_processor_id());
917 static struct irqaction timer_irq_action = {
921 /* Only invoked on boot processor. */
922 void __init init_IRQ(void)
929 size = sizeof(struct ino_bucket) * NUM_IVECS;
930 ivector_table = alloc_bootmem(size);
931 if (!ivector_table) {
932 prom_printf("Fatal error, cannot allocate ivector_table\n");
935 __flush_dcache_range((unsigned long) ivector_table,
936 ((unsigned long) ivector_table) + size);
938 ivector_table_pa = __pa(ivector_table);
940 if (tlb_type == hypervisor)
941 sun4v_init_mondo_queues();
943 /* We need to clear any IRQ's pending in the soft interrupt
944 * registers, a spurious one could be left around from the
945 * PROM timer which we just disabled.
947 clear_softint(get_softint());
949 /* Now that ivector table is initialized, it is safe
950 * to receive IRQ vector traps. We will normally take
951 * one or two right now, in case some device PROM used
952 * to boot us wants to speak to us. We just ignore them.
954 __asm__ __volatile__("rdpr %%pstate, %%g1\n\t"
955 "or %%g1, %0, %%g1\n\t"
956 "wrpr %%g1, 0x0, %%pstate"
961 irq_desc[0].action = &timer_irq_action;