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pic.c revision 1.65
      1  1.65  jmcneill /*	$NetBSD: pic.c,v 1.65 2021/02/16 22:12:49 jmcneill Exp $	*/
      2   1.2      matt /*-
      3   1.2      matt  * Copyright (c) 2008 The NetBSD Foundation, Inc.
      4   1.2      matt  * All rights reserved.
      5   1.2      matt  *
      6   1.2      matt  * This code is derived from software contributed to The NetBSD Foundation
      7   1.2      matt  * by Matt Thomas.
      8   1.2      matt  *
      9   1.2      matt  * Redistribution and use in source and binary forms, with or without
     10   1.2      matt  * modification, are permitted provided that the following conditions
     11   1.2      matt  * are met:
     12   1.2      matt  * 1. Redistributions of source code must retain the above copyright
     13   1.2      matt  *    notice, this list of conditions and the following disclaimer.
     14   1.2      matt  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.2      matt  *    notice, this list of conditions and the following disclaimer in the
     16   1.2      matt  *    documentation and/or other materials provided with the distribution.
     17   1.2      matt  *
     18   1.2      matt  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     19   1.2      matt  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     20   1.2      matt  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     21   1.2      matt  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     22   1.2      matt  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     23   1.2      matt  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     24   1.2      matt  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     25   1.2      matt  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     26   1.2      matt  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     27   1.2      matt  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     28   1.2      matt  * POSSIBILITY OF SUCH DAMAGE.
     29   1.2      matt  */
     30  1.21      matt 
     31  1.21      matt #define _INTR_PRIVATE
     32  1.21      matt #include "opt_ddb.h"
     33  1.25     skrll #include "opt_multiprocessor.h"
     34  1.21      matt 
     35   1.2      matt #include <sys/cdefs.h>
     36  1.65  jmcneill __KERNEL_RCSID(0, "$NetBSD: pic.c,v 1.65 2021/02/16 22:12:49 jmcneill Exp $");
     37   1.2      matt 
     38   1.2      matt #include <sys/param.h>
     39  1.13      matt #include <sys/atomic.h>
     40  1.13      matt #include <sys/cpu.h>
     41   1.2      matt #include <sys/evcnt.h>
     42  1.56  riastrad #include <sys/interrupt.h>
     43  1.13      matt #include <sys/intr.h>
     44  1.56  riastrad #include <sys/ipi.h>
     45  1.13      matt #include <sys/kernel.h>
     46  1.11      matt #include <sys/kmem.h>
     47  1.35     skrll #include <sys/mutex.h>
     48  1.35     skrll #include <sys/once.h>
     49  1.13      matt #include <sys/xcall.h>
     50   1.2      matt 
     51   1.2      matt #include <arm/armreg.h>
     52   1.2      matt #include <arm/cpufunc.h>
     53  1.42       ryo #include <arm/locore.h>	/* for compat aarch64 */
     54   1.2      matt 
     55  1.21      matt #ifdef DDB
     56  1.21      matt #include <arm/db_machdep.h>
     57  1.21      matt #endif
     58  1.21      matt 
     59   1.2      matt #include <arm/pic/picvar.h>
     60   1.2      matt 
     61  1.28      matt #if defined(__HAVE_PIC_PENDING_INTRS)
     62  1.65  jmcneill 
     63  1.65  jmcneill bool pic_pending_used __read_mostly = false;
     64  1.65  jmcneill 
     65  1.29      matt /*
     66  1.29      matt  * This implementation of pending interrupts on a MULTIPROCESSOR system makes
     67  1.29      matt  * the assumption that a PIC (pic_softc) shall only have all its interrupts
     68  1.29      matt  * come from the same CPU.  In other words, interrupts from a single PIC will
     69  1.29      matt  * not be distributed among multiple CPUs.
     70  1.29      matt  */
     71  1.29      matt struct pic_pending {
     72  1.29      matt 	volatile uint32_t blocked_pics;
     73  1.29      matt 	volatile uint32_t pending_pics;
     74  1.29      matt 	volatile uint32_t pending_ipls;
     75  1.29      matt };
     76   1.2      matt static uint32_t
     77   1.2      matt 	pic_find_pending_irqs_by_ipl(struct pic_softc *, size_t, uint32_t, int);
     78   1.2      matt static struct pic_softc *
     79  1.29      matt 	pic_list_find_pic_by_pending_ipl(struct pic_pending *, uint32_t);
     80   1.2      matt static void
     81  1.29      matt 	pic_deliver_irqs(struct pic_pending *, struct pic_softc *, int, void *);
     82   1.2      matt static void
     83  1.29      matt 	pic_list_deliver_irqs(struct pic_pending *, register_t, int, void *);
     84  1.29      matt 
     85  1.29      matt #ifdef MULTIPROCESSOR
     86  1.29      matt percpu_t *pic_pending_percpu;
     87  1.55  riastrad static struct pic_pending *
     88  1.55  riastrad pic_pending_get(void)
     89  1.55  riastrad {
     90  1.55  riastrad 	return percpu_getref(pic_pending_percpu);
     91  1.55  riastrad }
     92  1.55  riastrad static void
     93  1.55  riastrad pic_pending_put(struct pic_pending *pend)
     94  1.55  riastrad {
     95  1.55  riastrad 	percpu_putref(pic_pending_percpu);
     96  1.55  riastrad }
     97  1.29      matt #else
     98  1.29      matt struct pic_pending pic_pending;
     99  1.55  riastrad #define	pic_pending_get()	(&pic_pending)
    100  1.55  riastrad #define	pic_pending_put(pend)	__nothing
    101  1.29      matt #endif /* MULTIPROCESSOR */
    102  1.28      matt #endif /* __HAVE_PIC_PENDING_INTRS */
    103   1.2      matt 
    104   1.2      matt struct pic_softc *pic_list[PIC_MAXPICS];
    105   1.2      matt #if PIC_MAXPICS > 32
    106   1.2      matt #error PIC_MAXPICS > 32 not supported
    107   1.2      matt #endif
    108   1.2      matt struct intrsource *pic_sources[PIC_MAXMAXSOURCES];
    109   1.2      matt struct intrsource *pic__iplsources[PIC_MAXMAXSOURCES];
    110   1.2      matt struct intrsource **pic_iplsource[NIPL] = {
    111   1.2      matt 	[0 ... NIPL-1] = pic__iplsources,
    112   1.2      matt };
    113   1.2      matt size_t pic_ipl_offset[NIPL+1];
    114  1.35     skrll 
    115  1.35     skrll static kmutex_t pic_lock;
    116  1.51     skrll static size_t pic_sourcebase;
    117  1.52     skrll static int pic_lastbase;
    118  1.41     skrll static struct evcnt pic_deferral_ev =
    119   1.2      matt     EVCNT_INITIALIZER(EVCNT_TYPE_MISC, NULL, "deferred", "intr");
    120   1.2      matt EVCNT_ATTACH_STATIC(pic_deferral_ev);
    121   1.2      matt 
    122  1.35     skrll static int pic_init(void);
    123  1.35     skrll 
    124  1.11      matt #ifdef __HAVE_PIC_SET_PRIORITY
    125  1.11      matt void
    126  1.11      matt pic_set_priority(struct cpu_info *ci, int newipl)
    127  1.11      matt {
    128  1.13      matt 	register_t psw = cpsid(I32_bit);
    129  1.13      matt 	if (pic_list[0] != NULL)
    130  1.13      matt 		(pic_list[0]->pic_ops->pic_set_priority)(pic_list[0], newipl);
    131  1.11      matt 	ci->ci_cpl = newipl;
    132  1.13      matt 	if ((psw & I32_bit) == 0)
    133  1.13      matt 		cpsie(I32_bit);
    134  1.13      matt }
    135  1.63  jmcneill 
    136  1.64  jmcneill void
    137  1.63  jmcneill pic_set_priority_psw(struct cpu_info *ci, register_t psw, int newipl)
    138  1.63  jmcneill {
    139  1.63  jmcneill 	if ((psw & I32_bit) == 0) {
    140  1.63  jmcneill 		DISABLE_INTERRUPT();
    141  1.63  jmcneill 	}
    142  1.63  jmcneill 	if (pic_list[0] != NULL) {
    143  1.63  jmcneill 		(pic_list[0]->pic_ops->pic_set_priority)(pic_list[0], newipl);
    144  1.63  jmcneill 	}
    145  1.63  jmcneill 	ci->ci_cpl = newipl;
    146  1.63  jmcneill 	if ((psw & I32_bit) == 0) {
    147  1.63  jmcneill 		ENABLE_INTERRUPT();
    148  1.63  jmcneill 	}
    149  1.63  jmcneill }
    150  1.13      matt #endif
    151  1.13      matt 
    152  1.13      matt #ifdef MULTIPROCESSOR
    153  1.13      matt int
    154  1.34      matt pic_ipi_ast(void *arg)
    155  1.34      matt {
    156  1.34      matt 	setsoftast(curcpu());
    157  1.34      matt 	return 1;
    158  1.34      matt }
    159  1.34      matt 
    160  1.34      matt int
    161  1.13      matt pic_ipi_nop(void *arg)
    162  1.13      matt {
    163  1.13      matt 	/* do nothing */
    164  1.13      matt 	return 1;
    165  1.13      matt }
    166  1.13      matt 
    167  1.13      matt int
    168  1.13      matt pic_ipi_xcall(void *arg)
    169  1.13      matt {
    170  1.13      matt 	xc_ipi_handler();
    171  1.13      matt 	return 1;
    172  1.13      matt }
    173  1.13      matt 
    174  1.22     rmind int
    175  1.22     rmind pic_ipi_generic(void *arg)
    176  1.22     rmind {
    177  1.22     rmind 	ipi_cpu_handler();
    178  1.22     rmind 	return 1;
    179  1.22     rmind }
    180  1.22     rmind 
    181  1.21      matt #ifdef DDB
    182  1.21      matt int
    183  1.21      matt pic_ipi_ddb(void *arg)
    184  1.21      matt {
    185  1.23     skrll //	printf("%s: %s: tf=%p\n", __func__, curcpu()->ci_cpuname, arg);
    186  1.21      matt 	kdb_trap(-1, arg);
    187  1.21      matt 	return 1;
    188  1.21      matt }
    189  1.39  nisimura #endif /* DDB */
    190  1.34      matt 
    191  1.34      matt #ifdef __HAVE_PREEMPTION
    192  1.34      matt int
    193  1.34      matt pic_ipi_kpreempt(void *arg)
    194  1.34      matt {
    195  1.34      matt 	atomic_or_uint(&curcpu()->ci_astpending, __BIT(1));
    196  1.34      matt 	return 1;
    197  1.34      matt }
    198  1.39  nisimura #endif /* __HAVE_PREEMPTION */
    199  1.21      matt 
    200  1.13      matt void
    201  1.13      matt intr_cpu_init(struct cpu_info *ci)
    202  1.13      matt {
    203  1.13      matt 	for (size_t slot = 0; slot < PIC_MAXPICS; slot++) {
    204  1.13      matt 		struct pic_softc * const pic = pic_list[slot];
    205  1.13      matt 		if (pic != NULL && pic->pic_ops->pic_cpu_init != NULL) {
    206  1.13      matt 			(*pic->pic_ops->pic_cpu_init)(pic, ci);
    207  1.13      matt 		}
    208  1.13      matt 	}
    209  1.13      matt }
    210  1.13      matt 
    211  1.13      matt typedef void (*pic_ipi_send_func_t)(struct pic_softc *, u_long);
    212  1.13      matt 
    213  1.13      matt void
    214  1.13      matt intr_ipi_send(const kcpuset_t *kcp, u_long ipi)
    215  1.13      matt {
    216  1.32      matt 	struct cpu_info * const ci = curcpu();
    217  1.13      matt 	KASSERT(ipi < NIPI);
    218  1.61  jmcneill 	KASSERT(kcp == NULL || kcpuset_countset(kcp) == 1);
    219  1.29      matt 	bool __diagused sent_p = false;
    220  1.29      matt 	for (size_t slot = 0; slot < PIC_MAXPICS; slot++) {
    221  1.29      matt 		struct pic_softc * const pic = pic_list[slot];
    222  1.29      matt 		if (pic == NULL || pic->pic_cpus == NULL)
    223  1.29      matt 			continue;
    224  1.30      matt 		if (kcp == NULL || kcpuset_intersecting_p(kcp, pic->pic_cpus)) {
    225  1.60     skrll 			/*
    226  1.60     skrll 			 * Never send to ourself.
    227  1.60     skrll 			 *
    228  1.60     skrll 			 * This test uses pointer comparison for systems
    229  1.60     skrll 			 * that have a pic per cpu, e.g. RPI[23].  GIC sets
    230  1.60     skrll 			 * pic_cpus to kcpuset_running and handles "not for
    231  1.60     skrll 			 * self" internally.
    232  1.60     skrll 			 */
    233  1.32      matt 			if (pic->pic_cpus == ci->ci_kcpuset)
    234  1.32      matt 				continue;
    235  1.32      matt 
    236  1.29      matt 			(*pic->pic_ops->pic_ipi_send)(pic, kcp, ipi);
    237  1.60     skrll 
    238  1.59     skrll 			/*
    239  1.59     skrll 			 * If we were targeting a single CPU or this pic
    240  1.59     skrll 			 * handles all cpus, we're done.
    241  1.59     skrll 			 */
    242  1.29      matt 			if (kcp != NULL || pic->pic_cpus == kcpuset_running)
    243  1.29      matt 				return;
    244  1.29      matt 			sent_p = true;
    245  1.29      matt 		}
    246  1.29      matt 	}
    247  1.58     skrll 	KASSERTMSG(cold || sent_p || ncpu <= 1, "cold %d sent_p %d ncpu %d",
    248  1.58     skrll 	    cold, sent_p, ncpu);
    249  1.13      matt }
    250  1.13      matt #endif /* MULTIPROCESSOR */
    251  1.13      matt 
    252  1.13      matt #ifdef __HAVE_PIC_FAST_SOFTINTS
    253  1.13      matt int
    254  1.13      matt pic_handle_softint(void *arg)
    255  1.13      matt {
    256  1.13      matt 	void softint_switch(lwp_t *, int);
    257  1.41     skrll 	struct cpu_info * const ci = curcpu();
    258  1.13      matt 	const size_t softint = (size_t) arg;
    259  1.13      matt 	int s = splhigh();
    260  1.13      matt 	ci->ci_intr_depth--;	// don't count these as interrupts
    261  1.13      matt 	softint_switch(ci->ci_softlwps[softint], s);
    262  1.13      matt 	ci->ci_intr_depth++;
    263  1.13      matt 	splx(s);
    264  1.13      matt 	return 1;
    265  1.11      matt }
    266  1.11      matt #endif
    267   1.2      matt 
    268   1.2      matt int
    269   1.2      matt pic_handle_intr(void *arg)
    270   1.2      matt {
    271   1.2      matt 	struct pic_softc * const pic = arg;
    272   1.2      matt 	int rv;
    273   1.2      matt 
    274   1.2      matt 	rv = (*pic->pic_ops->pic_find_pending_irqs)(pic);
    275   1.2      matt 
    276   1.2      matt 	return rv > 0;
    277   1.2      matt }
    278   1.2      matt 
    279  1.28      matt #if defined(__HAVE_PIC_PENDING_INTRS)
    280   1.2      matt void
    281   1.2      matt pic_mark_pending_source(struct pic_softc *pic, struct intrsource *is)
    282   1.2      matt {
    283   1.2      matt 	const uint32_t ipl_mask = __BIT(is->is_ipl);
    284   1.2      matt 
    285  1.65  jmcneill 	if (!pic_pending_used)
    286  1.65  jmcneill 		pic_pending_used = true;
    287  1.65  jmcneill 
    288   1.4      matt 	atomic_or_32(&pic->pic_pending_irqs[is->is_irq >> 5],
    289   1.4      matt 	    __BIT(is->is_irq & 0x1f));
    290   1.2      matt 
    291   1.4      matt 	atomic_or_32(&pic->pic_pending_ipls, ipl_mask);
    292  1.55  riastrad 	struct pic_pending *pend = pic_pending_get();
    293  1.29      matt 	atomic_or_32(&pend->pending_ipls, ipl_mask);
    294  1.29      matt 	atomic_or_32(&pend->pending_pics, __BIT(pic->pic_id));
    295  1.55  riastrad 	pic_pending_put(pend);
    296   1.2      matt }
    297   1.2      matt 
    298   1.2      matt void
    299   1.2      matt pic_mark_pending(struct pic_softc *pic, int irq)
    300   1.2      matt {
    301   1.2      matt 	struct intrsource * const is = pic->pic_sources[irq];
    302   1.2      matt 
    303   1.2      matt 	KASSERT(irq < pic->pic_maxsources);
    304   1.2      matt 	KASSERT(is != NULL);
    305   1.2      matt 
    306   1.2      matt 	pic_mark_pending_source(pic, is);
    307   1.2      matt }
    308   1.2      matt 
    309   1.2      matt uint32_t
    310   1.2      matt pic_mark_pending_sources(struct pic_softc *pic, size_t irq_base,
    311   1.2      matt 	uint32_t pending)
    312   1.2      matt {
    313   1.2      matt 	struct intrsource ** const isbase = &pic->pic_sources[irq_base];
    314   1.2      matt 	struct intrsource *is;
    315   1.4      matt 	volatile uint32_t *ipending = &pic->pic_pending_irqs[irq_base >> 5];
    316   1.2      matt 	uint32_t ipl_mask = 0;
    317   1.2      matt 
    318  1.65  jmcneill 	if (!pic_pending_used)
    319  1.65  jmcneill 		pic_pending_used = true;
    320  1.65  jmcneill 
    321   1.2      matt 	if (pending == 0)
    322   1.2      matt 		return ipl_mask;
    323   1.2      matt 
    324   1.2      matt 	KASSERT((irq_base & 31) == 0);
    325  1.41     skrll 
    326   1.2      matt 	(*pic->pic_ops->pic_block_irqs)(pic, irq_base, pending);
    327   1.2      matt 
    328   1.4      matt 	atomic_or_32(ipending, pending);
    329  1.40     skrll 	while (pending != 0) {
    330   1.2      matt 		int n = ffs(pending);
    331   1.2      matt 		if (n-- == 0)
    332   1.2      matt 			break;
    333   1.2      matt 		is = isbase[n];
    334   1.2      matt 		KASSERT(is != NULL);
    335   1.2      matt 		KASSERT(irq_base <= is->is_irq && is->is_irq < irq_base + 32);
    336   1.2      matt 		pending &= ~__BIT(n);
    337   1.2      matt 		ipl_mask |= __BIT(is->is_ipl);
    338   1.2      matt 	}
    339   1.2      matt 
    340   1.4      matt 	atomic_or_32(&pic->pic_pending_ipls, ipl_mask);
    341  1.55  riastrad 	struct pic_pending *pend = pic_pending_get();
    342  1.29      matt 	atomic_or_32(&pend->pending_ipls, ipl_mask);
    343  1.29      matt 	atomic_or_32(&pend->pending_pics, __BIT(pic->pic_id));
    344  1.55  riastrad 	pic_pending_put(pend);
    345   1.2      matt 	return ipl_mask;
    346   1.2      matt }
    347   1.2      matt 
    348   1.2      matt uint32_t
    349   1.2      matt pic_find_pending_irqs_by_ipl(struct pic_softc *pic, size_t irq_base,
    350   1.2      matt 	uint32_t pending, int ipl)
    351   1.2      matt {
    352   1.2      matt 	uint32_t ipl_irq_mask = 0;
    353   1.2      matt 	uint32_t irq_mask;
    354   1.2      matt 
    355   1.2      matt 	for (;;) {
    356   1.2      matt 		int irq = ffs(pending);
    357   1.2      matt 		if (irq-- == 0)
    358   1.2      matt 			return ipl_irq_mask;
    359   1.2      matt 
    360   1.2      matt 		irq_mask = __BIT(irq);
    361   1.8       bsh #if 1
    362  1.10     skrll     		KASSERTMSG(pic->pic_sources[irq_base + irq] != NULL,
    363  1.10     skrll 		   "%s: irq_base %zu irq %d\n", __func__, irq_base, irq);
    364   1.8       bsh #else
    365   1.8       bsh 		if (pic->pic_sources[irq_base + irq] == NULL) {
    366   1.8       bsh 			aprint_error("stray interrupt? irq_base=%zu irq=%d\n",
    367   1.8       bsh 			    irq_base, irq);
    368   1.8       bsh 		} else
    369   1.8       bsh #endif
    370   1.2      matt 		if (pic->pic_sources[irq_base + irq]->is_ipl == ipl)
    371   1.2      matt 			ipl_irq_mask |= irq_mask;
    372   1.2      matt 
    373   1.2      matt 		pending &= ~irq_mask;
    374   1.2      matt 	}
    375   1.2      matt }
    376  1.28      matt #endif /* __HAVE_PIC_PENDING_INTRS */
    377   1.2      matt 
    378   1.2      matt void
    379   1.2      matt pic_dispatch(struct intrsource *is, void *frame)
    380   1.2      matt {
    381  1.20      matt 	int (*func)(void *) = is->is_func;
    382  1.20      matt 	void *arg = is->is_arg;
    383   1.2      matt 
    384  1.20      matt 	if (__predict_false(arg == NULL)) {
    385  1.20      matt 		if (__predict_false(frame == NULL)) {
    386  1.20      matt 			pic_deferral_ev.ev_count++;
    387  1.20      matt 			return;
    388  1.20      matt 		}
    389  1.20      matt 		arg = frame;
    390   1.2      matt 	}
    391  1.13      matt 
    392  1.20      matt #ifdef MULTIPROCESSOR
    393  1.20      matt 	if (!is->is_mpsafe) {
    394  1.20      matt 		KERNEL_LOCK(1, NULL);
    395  1.21      matt 		const u_int ci_blcnt __diagused = curcpu()->ci_biglock_count;
    396  1.21      matt 		const u_int l_blcnt __diagused = curlwp->l_blcnt;
    397  1.20      matt 		(void)(*func)(arg);
    398  1.21      matt 		KASSERT(ci_blcnt == curcpu()->ci_biglock_count);
    399  1.21      matt 		KASSERT(l_blcnt == curlwp->l_blcnt);
    400  1.20      matt 		KERNEL_UNLOCK_ONE(NULL);
    401  1.20      matt 	} else
    402  1.20      matt #endif
    403  1.20      matt 		(void)(*func)(arg);
    404  1.20      matt 
    405  1.13      matt 	struct pic_percpu * const pcpu = percpu_getref(is->is_pic->pic_percpu);
    406  1.13      matt 	KASSERT(pcpu->pcpu_magic == PICPERCPU_MAGIC);
    407  1.13      matt 	pcpu->pcpu_evs[is->is_irq].ev_count++;
    408  1.13      matt 	percpu_putref(is->is_pic->pic_percpu);
    409   1.2      matt }
    410   1.2      matt 
    411  1.28      matt #if defined(__HAVE_PIC_PENDING_INTRS)
    412   1.2      matt void
    413  1.29      matt pic_deliver_irqs(struct pic_pending *pend, struct pic_softc *pic, int ipl,
    414  1.29      matt     void *frame)
    415   1.2      matt {
    416   1.2      matt 	const uint32_t ipl_mask = __BIT(ipl);
    417   1.2      matt 	struct intrsource *is;
    418   1.4      matt 	volatile uint32_t *ipending = pic->pic_pending_irqs;
    419   1.4      matt 	volatile uint32_t *iblocked = pic->pic_blocked_irqs;
    420   1.2      matt 	size_t irq_base;
    421   1.2      matt #if PIC_MAXSOURCES > 32
    422   1.2      matt 	size_t irq_count;
    423   1.6  kiyohara 	int poi = 0;		/* Possibility of interrupting */
    424   1.2      matt #endif
    425   1.2      matt 	uint32_t pending_irqs;
    426   1.2      matt 	uint32_t blocked_irqs;
    427   1.2      matt 	int irq;
    428  1.19    martin 	bool progress __diagused = false;
    429  1.29      matt 
    430   1.2      matt 	KASSERT(pic->pic_pending_ipls & ipl_mask);
    431   1.2      matt 
    432   1.2      matt 	irq_base = 0;
    433   1.2      matt #if PIC_MAXSOURCES > 32
    434   1.2      matt 	irq_count = 0;
    435   1.2      matt #endif
    436   1.2      matt 
    437   1.2      matt 	for (;;) {
    438   1.2      matt 		pending_irqs = pic_find_pending_irqs_by_ipl(pic, irq_base,
    439   1.2      matt 		    *ipending, ipl);
    440   1.2      matt 		KASSERT((pending_irqs & *ipending) == pending_irqs);
    441   1.2      matt 		KASSERT((pending_irqs & ~(*ipending)) == 0);
    442   1.2      matt 		if (pending_irqs == 0) {
    443   1.2      matt #if PIC_MAXSOURCES > 32
    444   1.2      matt 			irq_count += 32;
    445   1.6  kiyohara 			if (__predict_true(irq_count >= pic->pic_maxsources)) {
    446   1.6  kiyohara 				if (!poi)
    447   1.6  kiyohara 					/*Interrupt at this level was handled.*/
    448   1.6  kiyohara 					break;
    449   1.6  kiyohara 				irq_base = 0;
    450   1.6  kiyohara 				irq_count = 0;
    451   1.6  kiyohara 				poi = 0;
    452   1.2      matt 				ipending = pic->pic_pending_irqs;
    453   1.2      matt 				iblocked = pic->pic_blocked_irqs;
    454   1.6  kiyohara 			} else {
    455   1.6  kiyohara 				irq_base += 32;
    456   1.6  kiyohara 				ipending++;
    457   1.6  kiyohara 				iblocked++;
    458   1.6  kiyohara 				KASSERT(irq_base <= pic->pic_maxsources);
    459   1.2      matt 			}
    460   1.2      matt 			continue;
    461   1.2      matt #else
    462   1.2      matt 			break;
    463   1.2      matt #endif
    464   1.2      matt 		}
    465   1.2      matt 		progress = true;
    466   1.5  kiyohara 		blocked_irqs = 0;
    467   1.2      matt 		do {
    468   1.2      matt 			irq = ffs(pending_irqs) - 1;
    469   1.2      matt 			KASSERT(irq >= 0);
    470   1.2      matt 
    471   1.4      matt 			atomic_and_32(ipending, ~__BIT(irq));
    472   1.2      matt 			is = pic->pic_sources[irq_base + irq];
    473   1.2      matt 			if (is != NULL) {
    474  1.62  jmcneill 				ENABLE_INTERRUPT();
    475   1.2      matt 				pic_dispatch(is, frame);
    476  1.62  jmcneill 				DISABLE_INTERRUPT();
    477   1.6  kiyohara #if PIC_MAXSOURCES > 32
    478   1.6  kiyohara 				/*
    479   1.6  kiyohara 				 * There is a possibility of interrupting
    480  1.62  jmcneill 				 * from ENABLE_INTERRUPT() to
    481  1.62  jmcneill 				 * DISABLE_INTERRUPT().
    482   1.6  kiyohara 				 */
    483   1.6  kiyohara 				poi = 1;
    484   1.6  kiyohara #endif
    485   1.5  kiyohara 				blocked_irqs |= __BIT(irq);
    486   1.2      matt 			} else {
    487   1.2      matt 				KASSERT(0);
    488   1.2      matt 			}
    489   1.2      matt 			pending_irqs = pic_find_pending_irqs_by_ipl(pic,
    490   1.2      matt 			    irq_base, *ipending, ipl);
    491   1.2      matt 		} while (pending_irqs);
    492   1.2      matt 		if (blocked_irqs) {
    493   1.4      matt 			atomic_or_32(iblocked, blocked_irqs);
    494  1.29      matt 			atomic_or_32(&pend->blocked_pics, __BIT(pic->pic_id));
    495   1.2      matt 		}
    496   1.2      matt 	}
    497   1.2      matt 
    498   1.2      matt 	KASSERT(progress);
    499   1.2      matt 	/*
    500   1.2      matt 	 * Since interrupts are disabled, we don't have to be too careful
    501   1.2      matt 	 * about these.
    502   1.2      matt 	 */
    503   1.4      matt 	if (atomic_and_32_nv(&pic->pic_pending_ipls, ~ipl_mask) == 0)
    504  1.29      matt 		atomic_and_32(&pend->pending_pics, ~__BIT(pic->pic_id));
    505   1.2      matt }
    506   1.2      matt 
    507   1.2      matt static void
    508  1.29      matt pic_list_unblock_irqs(struct pic_pending *pend)
    509   1.2      matt {
    510  1.29      matt 	uint32_t blocked_pics = pend->blocked_pics;
    511  1.29      matt 
    512  1.29      matt 	pend->blocked_pics = 0;
    513   1.2      matt 
    514   1.2      matt 	for (;;) {
    515   1.2      matt 		struct pic_softc *pic;
    516   1.2      matt #if PIC_MAXSOURCES > 32
    517   1.4      matt 		volatile uint32_t *iblocked;
    518   1.4      matt 		uint32_t blocked;
    519   1.2      matt 		size_t irq_base;
    520   1.2      matt #endif
    521   1.2      matt 
    522   1.4      matt 		int pic_id = ffs(blocked_pics);
    523   1.2      matt 		if (pic_id-- == 0)
    524   1.2      matt 			return;
    525   1.2      matt 
    526   1.2      matt 		pic = pic_list[pic_id];
    527   1.2      matt 		KASSERT(pic != NULL);
    528   1.2      matt #if PIC_MAXSOURCES > 32
    529   1.2      matt 		for (irq_base = 0, iblocked = pic->pic_blocked_irqs;
    530   1.2      matt 		     irq_base < pic->pic_maxsources;
    531   1.2      matt 		     irq_base += 32, iblocked++) {
    532   1.4      matt 			if ((blocked = *iblocked) != 0) {
    533   1.2      matt 				(*pic->pic_ops->pic_unblock_irqs)(pic,
    534   1.4      matt 				    irq_base, blocked);
    535   1.4      matt 				atomic_and_32(iblocked, ~blocked);
    536   1.2      matt 			}
    537   1.2      matt 		}
    538   1.2      matt #else
    539   1.2      matt 		KASSERT(pic->pic_blocked_irqs[0] != 0);
    540   1.2      matt 		(*pic->pic_ops->pic_unblock_irqs)(pic,
    541   1.2      matt 		    0, pic->pic_blocked_irqs[0]);
    542   1.4      matt 		pic->pic_blocked_irqs[0] = 0;
    543   1.2      matt #endif
    544   1.4      matt 		blocked_pics &= ~__BIT(pic_id);
    545   1.2      matt 	}
    546   1.2      matt }
    547   1.2      matt 
    548   1.2      matt struct pic_softc *
    549  1.29      matt pic_list_find_pic_by_pending_ipl(struct pic_pending *pend, uint32_t ipl_mask)
    550   1.2      matt {
    551  1.29      matt 	uint32_t pending_pics = pend->pending_pics;
    552   1.2      matt 	struct pic_softc *pic;
    553   1.2      matt 
    554   1.2      matt 	for (;;) {
    555   1.4      matt 		int pic_id = ffs(pending_pics);
    556   1.2      matt 		if (pic_id-- == 0)
    557   1.2      matt 			return NULL;
    558   1.2      matt 
    559   1.2      matt 		pic = pic_list[pic_id];
    560   1.2      matt 		KASSERT(pic != NULL);
    561   1.2      matt 		if (pic->pic_pending_ipls & ipl_mask)
    562   1.2      matt 			return pic;
    563   1.4      matt 		pending_pics &= ~__BIT(pic_id);
    564   1.2      matt 	}
    565   1.2      matt }
    566   1.2      matt 
    567   1.2      matt void
    568  1.29      matt pic_list_deliver_irqs(struct pic_pending *pend, register_t psw, int ipl,
    569  1.29      matt     void *frame)
    570   1.2      matt {
    571   1.2      matt 	const uint32_t ipl_mask = __BIT(ipl);
    572   1.2      matt 	struct pic_softc *pic;
    573   1.2      matt 
    574  1.29      matt 	while ((pic = pic_list_find_pic_by_pending_ipl(pend, ipl_mask)) != NULL) {
    575  1.29      matt 		pic_deliver_irqs(pend, pic, ipl, frame);
    576   1.2      matt 		KASSERT((pic->pic_pending_ipls & ipl_mask) == 0);
    577   1.2      matt 	}
    578  1.29      matt 	atomic_and_32(&pend->pending_ipls, ~ipl_mask);
    579   1.2      matt }
    580  1.28      matt #endif /* __HAVE_PIC_PENDING_INTRS */
    581   1.2      matt 
    582   1.2      matt void
    583   1.2      matt pic_do_pending_ints(register_t psw, int newipl, void *frame)
    584   1.2      matt {
    585   1.2      matt 	struct cpu_info * const ci = curcpu();
    586  1.13      matt 	if (__predict_false(newipl == IPL_HIGH)) {
    587  1.13      matt 		KASSERTMSG(ci->ci_cpl == IPL_HIGH, "cpl %d", ci->ci_cpl);
    588   1.2      matt 		return;
    589  1.13      matt 	}
    590  1.28      matt #if defined(__HAVE_PIC_PENDING_INTRS)
    591  1.55  riastrad 	struct pic_pending *pend = pic_pending_get();
    592  1.29      matt 	while ((pend->pending_ipls & ~__BIT(newipl)) > __BIT(newipl)) {
    593  1.29      matt 		KASSERT(pend->pending_ipls < __BIT(NIPL));
    594   1.2      matt 		for (;;) {
    595  1.29      matt 			int ipl = 31 - __builtin_clz(pend->pending_ipls);
    596   1.2      matt 			KASSERT(ipl < NIPL);
    597   1.2      matt 			if (ipl <= newipl)
    598   1.2      matt 				break;
    599   1.2      matt 
    600  1.63  jmcneill 			pic_set_priority_psw(ci, psw, ipl);
    601  1.29      matt 			pic_list_deliver_irqs(pend, psw, ipl, frame);
    602  1.29      matt 			pic_list_unblock_irqs(pend);
    603   1.2      matt 		}
    604   1.2      matt 	}
    605  1.55  riastrad 	pic_pending_put(pend);
    606  1.28      matt #endif /* __HAVE_PIC_PENDING_INTRS */
    607  1.33  jmcneill #ifdef __HAVE_PREEMPTION
    608  1.27      matt 	if (newipl == IPL_NONE && (ci->ci_astpending & __BIT(1))) {
    609  1.63  jmcneill 		pic_set_priority_psw(ci, psw, IPL_SCHED);
    610  1.27      matt 		kpreempt(0);
    611  1.27      matt 	}
    612  1.27      matt #endif
    613   1.2      matt 	if (ci->ci_cpl != newipl)
    614  1.63  jmcneill 		pic_set_priority_psw(ci, psw, newipl);
    615  1.13      matt }
    616  1.13      matt 
    617  1.13      matt static void
    618  1.13      matt pic_percpu_allocate(void *v0, void *v1, struct cpu_info *ci)
    619  1.13      matt {
    620  1.13      matt 	struct pic_percpu * const pcpu = v0;
    621  1.13      matt 	struct pic_softc * const pic = v1;
    622  1.13      matt 
    623  1.13      matt 	pcpu->pcpu_evs = kmem_zalloc(pic->pic_maxsources * sizeof(pcpu->pcpu_evs[0]),
    624  1.13      matt 	    KM_SLEEP);
    625  1.13      matt 	KASSERT(pcpu->pcpu_evs != NULL);
    626  1.13      matt 
    627  1.13      matt #define	PCPU_NAMELEN	32
    628  1.14      matt #ifdef DIAGNOSTIC
    629  1.13      matt 	const size_t namelen = strlen(pic->pic_name) + 4 + strlen(ci->ci_data.cpu_name);
    630  1.14      matt #endif
    631  1.13      matt 
    632  1.13      matt 	KASSERT(namelen < PCPU_NAMELEN);
    633  1.13      matt 	pcpu->pcpu_name = kmem_alloc(PCPU_NAMELEN, KM_SLEEP);
    634  1.13      matt #ifdef MULTIPROCESSOR
    635  1.13      matt 	snprintf(pcpu->pcpu_name, PCPU_NAMELEN,
    636  1.13      matt 	    "%s (%s)", pic->pic_name, ci->ci_data.cpu_name);
    637  1.13      matt #else
    638  1.13      matt 	strlcpy(pcpu->pcpu_name, pic->pic_name, PCPU_NAMELEN);
    639  1.13      matt #endif
    640  1.13      matt 	pcpu->pcpu_magic = PICPERCPU_MAGIC;
    641  1.13      matt #if 0
    642  1.13      matt 	printf("%s: %s %s: <%s>\n",
    643  1.13      matt 	    __func__, ci->ci_data.cpu_name, pic->pic_name,
    644  1.13      matt 	    pcpu->pcpu_name);
    645   1.2      matt #endif
    646   1.2      matt }
    647   1.2      matt 
    648  1.35     skrll static int
    649  1.35     skrll pic_init(void)
    650  1.35     skrll {
    651  1.35     skrll 
    652  1.35     skrll 	mutex_init(&pic_lock, MUTEX_DEFAULT, IPL_HIGH);
    653  1.35     skrll 
    654  1.35     skrll 	return 0;
    655  1.35     skrll }
    656  1.35     skrll 
    657  1.52     skrll int
    658   1.2      matt pic_add(struct pic_softc *pic, int irqbase)
    659   1.2      matt {
    660   1.2      matt 	int slot, maybe_slot = -1;
    661  1.35     skrll 	size_t sourcebase;
    662  1.35     skrll 	static ONCE_DECL(pic_once);
    663  1.35     skrll 
    664  1.35     skrll 	RUN_ONCE(&pic_once, pic_init);
    665   1.2      matt 
    666  1.13      matt 	KASSERT(strlen(pic->pic_name) > 0);
    667  1.13      matt 
    668  1.29      matt #if defined(__HAVE_PIC_PENDING_INTRS) && defined(MULTIPROCESSOR)
    669  1.54  riastrad 	if (__predict_false(pic_pending_percpu == NULL))
    670  1.54  riastrad 		pic_pending_percpu = percpu_alloc(sizeof(struct pic_pending));
    671  1.29      matt #endif /* __HAVE_PIC_PENDING_INTRS && MULTIPROCESSOR */
    672  1.29      matt 
    673  1.35     skrll 	mutex_enter(&pic_lock);
    674  1.52     skrll 	if (irqbase == PIC_IRQBASE_ALLOC) {
    675  1.52     skrll 		irqbase = pic_lastbase;
    676  1.52     skrll 	}
    677   1.2      matt 	for (slot = 0; slot < PIC_MAXPICS; slot++) {
    678   1.2      matt 		struct pic_softc * const xpic = pic_list[slot];
    679   1.2      matt 		if (xpic == NULL) {
    680   1.2      matt 			if (maybe_slot < 0)
    681   1.2      matt 				maybe_slot = slot;
    682   1.2      matt 			if (irqbase < 0)
    683   1.2      matt 				break;
    684   1.2      matt 			continue;
    685   1.2      matt 		}
    686   1.2      matt 		if (irqbase < 0 || xpic->pic_irqbase < 0)
    687   1.2      matt 			continue;
    688   1.2      matt 		if (irqbase >= xpic->pic_irqbase + xpic->pic_maxsources)
    689   1.2      matt 			continue;
    690   1.2      matt 		if (irqbase + pic->pic_maxsources <= xpic->pic_irqbase)
    691   1.2      matt 			continue;
    692   1.2      matt 		panic("pic_add: pic %s (%zu sources @ irq %u) conflicts"
    693   1.2      matt 		    " with pic %s (%zu sources @ irq %u)",
    694   1.2      matt 		    pic->pic_name, pic->pic_maxsources, irqbase,
    695   1.2      matt 		    xpic->pic_name, xpic->pic_maxsources, xpic->pic_irqbase);
    696   1.2      matt 	}
    697   1.2      matt 	slot = maybe_slot;
    698   1.2      matt #if 0
    699   1.2      matt 	printf("%s: pic_sourcebase=%zu pic_maxsources=%zu\n",
    700   1.2      matt 	    pic->pic_name, pic_sourcebase, pic->pic_maxsources);
    701   1.2      matt #endif
    702  1.17      matt 	KASSERTMSG(pic->pic_maxsources <= PIC_MAXSOURCES, "%zu",
    703  1.17      matt 	    pic->pic_maxsources);
    704   1.2      matt 	KASSERT(pic_sourcebase + pic->pic_maxsources <= PIC_MAXMAXSOURCES);
    705  1.35     skrll 	sourcebase = pic_sourcebase;
    706  1.35     skrll 	pic_sourcebase += pic->pic_maxsources;
    707  1.52     skrll         if (pic_lastbase < irqbase + pic->pic_maxsources)
    708  1.52     skrll                 pic_lastbase = irqbase + pic->pic_maxsources;
    709  1.35     skrll 	mutex_exit(&pic_lock);
    710   1.2      matt 
    711  1.13      matt 	/*
    712  1.13      matt 	 * Allocate a pointer to each cpu's evcnts and then, for each cpu,
    713  1.13      matt 	 * allocate its evcnts and then attach an evcnt for each pin.
    714  1.13      matt 	 * We can't allocate the evcnt structures directly since
    715  1.41     skrll 	 * percpu will move the contents of percpu memory around and
    716  1.13      matt 	 * corrupt the pointers in the evcnts themselves.  Remember, any
    717  1.13      matt 	 * problem can be solved with sufficient indirection.
    718  1.13      matt 	 */
    719  1.53  riastrad 	pic->pic_percpu = percpu_create(sizeof(struct pic_percpu),
    720  1.53  riastrad 	    pic_percpu_allocate, NULL, pic);
    721  1.13      matt 
    722  1.35     skrll 	pic->pic_sources = &pic_sources[sourcebase];
    723   1.2      matt 	pic->pic_irqbase = irqbase;
    724   1.2      matt 	pic->pic_id = slot;
    725  1.13      matt #ifdef __HAVE_PIC_SET_PRIORITY
    726  1.13      matt 	KASSERT((slot == 0) == (pic->pic_ops->pic_set_priority != NULL));
    727  1.13      matt #endif
    728  1.13      matt #ifdef MULTIPROCESSOR
    729  1.29      matt 	KASSERT((pic->pic_cpus != NULL) == (pic->pic_ops->pic_ipi_send != NULL));
    730  1.13      matt #endif
    731   1.2      matt 	pic_list[slot] = pic;
    732  1.57     skrll 
    733  1.52     skrll 	return irqbase;
    734   1.2      matt }
    735   1.2      matt 
    736   1.2      matt int
    737   1.2      matt pic_alloc_irq(struct pic_softc *pic)
    738   1.2      matt {
    739   1.2      matt 	int irq;
    740   1.2      matt 
    741   1.2      matt 	for (irq = 0; irq < pic->pic_maxsources; irq++) {
    742   1.2      matt 		if (pic->pic_sources[irq] == NULL)
    743   1.2      matt 			return irq;
    744   1.2      matt 	}
    745   1.2      matt 
    746   1.2      matt 	return -1;
    747   1.2      matt }
    748   1.2      matt 
    749  1.13      matt static void
    750  1.13      matt pic_percpu_evcnt_attach(void *v0, void *v1, struct cpu_info *ci)
    751  1.13      matt {
    752  1.13      matt 	struct pic_percpu * const pcpu = v0;
    753  1.13      matt 	struct intrsource * const is = v1;
    754  1.13      matt 
    755  1.13      matt 	KASSERT(pcpu->pcpu_magic == PICPERCPU_MAGIC);
    756  1.13      matt 	evcnt_attach_dynamic(&pcpu->pcpu_evs[is->is_irq], EVCNT_TYPE_INTR, NULL,
    757  1.13      matt 	    pcpu->pcpu_name, is->is_source);
    758  1.13      matt }
    759  1.13      matt 
    760   1.2      matt void *
    761   1.2      matt pic_establish_intr(struct pic_softc *pic, int irq, int ipl, int type,
    762  1.48  jmcneill 	int (*func)(void *), void *arg, const char *xname)
    763   1.2      matt {
    764   1.2      matt 	struct intrsource *is;
    765   1.2      matt 	int off, nipl;
    766   1.2      matt 
    767   1.2      matt 	if (pic->pic_sources[irq]) {
    768   1.2      matt 		printf("pic_establish_intr: pic %s irq %d already present\n",
    769   1.2      matt 		    pic->pic_name, irq);
    770   1.2      matt 		return NULL;
    771   1.2      matt 	}
    772   1.2      matt 
    773  1.11      matt 	is = kmem_zalloc(sizeof(*is), KM_SLEEP);
    774   1.2      matt 	is->is_pic = pic;
    775   1.2      matt 	is->is_irq = irq;
    776   1.2      matt 	is->is_ipl = ipl;
    777  1.21      matt 	is->is_type = type & 0xff;
    778   1.2      matt 	is->is_func = func;
    779   1.2      matt 	is->is_arg = arg;
    780  1.20      matt #ifdef MULTIPROCESSOR
    781  1.24     skrll 	is->is_mpsafe = (type & IST_MPSAFE) || ipl != IPL_VM;
    782  1.20      matt #endif
    783  1.13      matt 
    784   1.2      matt 	if (pic->pic_ops->pic_source_name)
    785   1.2      matt 		(*pic->pic_ops->pic_source_name)(pic, irq, is->is_source,
    786   1.2      matt 		    sizeof(is->is_source));
    787   1.2      matt 	else
    788   1.2      matt 		snprintf(is->is_source, sizeof(is->is_source), "irq %d", irq);
    789   1.2      matt 
    790  1.13      matt 	/*
    791  1.13      matt 	 * Now attach the per-cpu evcnts.
    792  1.13      matt 	 */
    793  1.13      matt 	percpu_foreach(pic->pic_percpu, pic_percpu_evcnt_attach, is);
    794   1.2      matt 
    795   1.2      matt 	pic->pic_sources[irq] = is;
    796   1.2      matt 
    797   1.2      matt 	/*
    798   1.2      matt 	 * First try to use an existing slot which is empty.
    799   1.2      matt 	 */
    800   1.2      matt 	for (off = pic_ipl_offset[ipl]; off < pic_ipl_offset[ipl+1]; off++) {
    801   1.2      matt 		if (pic__iplsources[off] == NULL) {
    802   1.2      matt 			is->is_iplidx = off - pic_ipl_offset[ipl];
    803   1.2      matt 			pic__iplsources[off] = is;
    804  1.36   mlelstv 			goto unblock;
    805   1.2      matt 		}
    806   1.2      matt 	}
    807   1.2      matt 
    808   1.2      matt 	/*
    809   1.2      matt 	 * Move up all the sources by one.
    810   1.2      matt  	 */
    811   1.2      matt 	if (ipl < NIPL) {
    812   1.2      matt 		off = pic_ipl_offset[ipl+1];
    813   1.2      matt 		memmove(&pic__iplsources[off+1], &pic__iplsources[off],
    814   1.2      matt 		    sizeof(pic__iplsources[0]) * (pic_ipl_offset[NIPL] - off));
    815   1.2      matt 	}
    816   1.2      matt 
    817   1.2      matt 	/*
    818   1.2      matt 	 * Advance the offset of all IPLs higher than this.  Include an
    819   1.2      matt 	 * extra one as well.  Thus the number of sources per ipl is
    820   1.2      matt 	 * pic_ipl_offset[ipl+1] - pic_ipl_offset[ipl].
    821   1.2      matt 	 */
    822   1.2      matt 	for (nipl = ipl + 1; nipl <= NIPL; nipl++)
    823   1.2      matt 		pic_ipl_offset[nipl]++;
    824   1.2      matt 
    825   1.2      matt 	/*
    826   1.2      matt 	 * Insert into the previously made position at the end of this IPL's
    827   1.2      matt 	 * sources.
    828   1.2      matt 	 */
    829   1.2      matt 	off = pic_ipl_offset[ipl + 1] - 1;
    830   1.2      matt 	is->is_iplidx = off - pic_ipl_offset[ipl];
    831   1.2      matt 	pic__iplsources[off] = is;
    832   1.2      matt 
    833   1.2      matt 	(*pic->pic_ops->pic_establish_irq)(pic, is);
    834   1.2      matt 
    835  1.36   mlelstv unblock:
    836   1.2      matt 	(*pic->pic_ops->pic_unblock_irqs)(pic, is->is_irq & ~0x1f,
    837   1.2      matt 	    __BIT(is->is_irq & 0x1f));
    838  1.41     skrll 
    839  1.48  jmcneill 	if (xname) {
    840  1.48  jmcneill 		if (is->is_xname == NULL)
    841  1.48  jmcneill 			is->is_xname = kmem_zalloc(INTRDEVNAMEBUF, KM_SLEEP);
    842  1.48  jmcneill 		if (is->is_xname[0] != '\0')
    843  1.48  jmcneill 			strlcat(is->is_xname, ", ", INTRDEVNAMEBUF);
    844  1.48  jmcneill 		strlcat(is->is_xname, xname, INTRDEVNAMEBUF);
    845  1.48  jmcneill 	}
    846  1.48  jmcneill 
    847   1.2      matt 	/* We're done. */
    848   1.2      matt 	return is;
    849   1.2      matt }
    850   1.2      matt 
    851  1.13      matt static void
    852  1.13      matt pic_percpu_evcnt_deattach(void *v0, void *v1, struct cpu_info *ci)
    853  1.13      matt {
    854  1.13      matt 	struct pic_percpu * const pcpu = v0;
    855  1.13      matt 	struct intrsource * const is = v1;
    856  1.13      matt 
    857  1.13      matt 	KASSERT(pcpu->pcpu_magic == PICPERCPU_MAGIC);
    858  1.13      matt 	evcnt_detach(&pcpu->pcpu_evs[is->is_irq]);
    859  1.13      matt }
    860  1.13      matt 
    861   1.2      matt void
    862   1.2      matt pic_disestablish_source(struct intrsource *is)
    863   1.2      matt {
    864   1.2      matt 	struct pic_softc * const pic = is->is_pic;
    865   1.2      matt 	const int irq = is->is_irq;
    866   1.2      matt 
    867  1.13      matt 	KASSERT(is == pic->pic_sources[irq]);
    868  1.13      matt 
    869  1.15   msaitoh 	(*pic->pic_ops->pic_block_irqs)(pic, irq & ~0x1f, __BIT(irq & 0x1f));
    870   1.2      matt 	pic->pic_sources[irq] = NULL;
    871   1.2      matt 	pic__iplsources[pic_ipl_offset[is->is_ipl] + is->is_iplidx] = NULL;
    872  1.48  jmcneill 	if (is->is_xname != NULL) {
    873  1.48  jmcneill 		kmem_free(is->is_xname, INTRDEVNAMEBUF);
    874  1.48  jmcneill 		is->is_xname = NULL;
    875  1.48  jmcneill 	}
    876  1.13      matt 	/*
    877  1.13      matt 	 * Now detach the per-cpu evcnts.
    878  1.13      matt 	 */
    879  1.13      matt 	percpu_foreach(pic->pic_percpu, pic_percpu_evcnt_deattach, is);
    880   1.2      matt 
    881  1.11      matt 	kmem_free(is, sizeof(*is));
    882   1.2      matt }
    883   1.2      matt 
    884   1.2      matt void *
    885   1.2      matt intr_establish(int irq, int ipl, int type, int (*func)(void *), void *arg)
    886   1.2      matt {
    887  1.48  jmcneill 	return intr_establish_xname(irq, ipl, type, func, arg, NULL);
    888  1.48  jmcneill }
    889  1.48  jmcneill 
    890  1.48  jmcneill void *
    891  1.48  jmcneill intr_establish_xname(int irq, int ipl, int type, int (*func)(void *), void *arg,
    892  1.48  jmcneill     const char *xname)
    893  1.48  jmcneill {
    894  1.11      matt 	KASSERT(!cpu_intr_p());
    895  1.11      matt 	KASSERT(!cpu_softintr_p());
    896  1.11      matt 
    897  1.13      matt 	for (size_t slot = 0; slot < PIC_MAXPICS; slot++) {
    898   1.2      matt 		struct pic_softc * const pic = pic_list[slot];
    899   1.2      matt 		if (pic == NULL || pic->pic_irqbase < 0)
    900   1.2      matt 			continue;
    901   1.2      matt 		if (pic->pic_irqbase <= irq
    902   1.2      matt 		    && irq < pic->pic_irqbase + pic->pic_maxsources) {
    903   1.2      matt 			return pic_establish_intr(pic, irq - pic->pic_irqbase,
    904  1.48  jmcneill 			    ipl, type, func, arg, xname);
    905   1.2      matt 		}
    906   1.2      matt 	}
    907   1.2      matt 
    908   1.2      matt 	return NULL;
    909   1.2      matt }
    910   1.2      matt 
    911   1.2      matt void
    912   1.2      matt intr_disestablish(void *ih)
    913   1.2      matt {
    914   1.2      matt 	struct intrsource * const is = ih;
    915  1.13      matt 
    916  1.13      matt 	KASSERT(!cpu_intr_p());
    917  1.13      matt 	KASSERT(!cpu_softintr_p());
    918  1.13      matt 
    919   1.2      matt 	pic_disestablish_source(is);
    920   1.2      matt }
    921  1.44  jmcneill 
    922  1.49  jmcneill void
    923  1.49  jmcneill intr_mask(void *ih)
    924  1.49  jmcneill {
    925  1.49  jmcneill 	struct intrsource * const is = ih;
    926  1.49  jmcneill 	struct pic_softc * const pic = is->is_pic;
    927  1.49  jmcneill 	const int irq = is->is_irq;
    928  1.49  jmcneill 
    929  1.50  jmcneill 	if (atomic_inc_32_nv(&is->is_mask_count) == 1)
    930  1.50  jmcneill 		(*pic->pic_ops->pic_block_irqs)(pic, irq & ~0x1f, __BIT(irq & 0x1f));
    931  1.49  jmcneill }
    932  1.49  jmcneill 
    933  1.49  jmcneill void
    934  1.49  jmcneill intr_unmask(void *ih)
    935  1.49  jmcneill {
    936  1.49  jmcneill 	struct intrsource * const is = ih;
    937  1.49  jmcneill 	struct pic_softc * const pic = is->is_pic;
    938  1.49  jmcneill 	const int irq = is->is_irq;
    939  1.49  jmcneill 
    940  1.50  jmcneill 	if (atomic_dec_32_nv(&is->is_mask_count) == 0)
    941  1.50  jmcneill 		(*pic->pic_ops->pic_unblock_irqs)(pic, irq & ~0x1f, __BIT(irq & 0x1f));
    942  1.49  jmcneill }
    943  1.49  jmcneill 
    944  1.45  jmcneill const char *
    945  1.45  jmcneill intr_string(intr_handle_t irq, char *buf, size_t len)
    946  1.45  jmcneill {
    947  1.45  jmcneill 	for (size_t slot = 0; slot < PIC_MAXPICS; slot++) {
    948  1.45  jmcneill 		struct pic_softc * const pic = pic_list[slot];
    949  1.45  jmcneill 		if (pic == NULL || pic->pic_irqbase < 0)
    950  1.45  jmcneill 			continue;
    951  1.45  jmcneill 		if (pic->pic_irqbase <= irq
    952  1.45  jmcneill 		    && irq < pic->pic_irqbase + pic->pic_maxsources) {
    953  1.45  jmcneill 			struct intrsource * const is = pic->pic_sources[irq - pic->pic_irqbase];
    954  1.45  jmcneill 			snprintf(buf, len, "%s %s", pic->pic_name, is->is_source);
    955  1.45  jmcneill 			return buf;
    956  1.45  jmcneill 		}
    957  1.45  jmcneill 	}
    958  1.45  jmcneill 
    959  1.45  jmcneill 	return NULL;
    960  1.45  jmcneill }
    961  1.45  jmcneill 
    962  1.46  jmcneill static struct intrsource *
    963  1.46  jmcneill intr_get_source(const char *intrid)
    964  1.46  jmcneill {
    965  1.46  jmcneill 	struct intrsource *is;
    966  1.46  jmcneill 	intrid_t buf;
    967  1.46  jmcneill 	size_t slot;
    968  1.46  jmcneill 	int irq;
    969  1.46  jmcneill 
    970  1.46  jmcneill 	KASSERT(mutex_owned(&cpu_lock));
    971  1.46  jmcneill 
    972  1.46  jmcneill 	for (slot = 0; slot < PIC_MAXPICS; slot++) {
    973  1.46  jmcneill 		struct pic_softc * const pic = pic_list[slot];
    974  1.46  jmcneill 		if (pic == NULL || pic->pic_irqbase < 0)
    975  1.46  jmcneill 			continue;
    976  1.46  jmcneill 		for (irq = 0; irq < pic->pic_maxsources; irq++) {
    977  1.47  jmcneill 			is = pic->pic_sources[irq];
    978  1.46  jmcneill 			if (is == NULL || is->is_source[0] == '\0')
    979  1.46  jmcneill 				continue;
    980  1.46  jmcneill 
    981  1.46  jmcneill 			snprintf(buf, sizeof(buf), "%s %s", pic->pic_name, is->is_source);
    982  1.46  jmcneill 			if (strcmp(buf, intrid) == 0)
    983  1.46  jmcneill 				return is;
    984  1.46  jmcneill 		}
    985  1.46  jmcneill 	}
    986  1.46  jmcneill 
    987  1.46  jmcneill 	return NULL;
    988  1.46  jmcneill }
    989  1.46  jmcneill 
    990  1.46  jmcneill struct intrids_handler *
    991  1.46  jmcneill interrupt_construct_intrids(const kcpuset_t *cpuset)
    992  1.46  jmcneill {
    993  1.46  jmcneill 	struct intrids_handler *iih;
    994  1.46  jmcneill 	struct intrsource *is;
    995  1.46  jmcneill 	int count, irq, n;
    996  1.46  jmcneill 	size_t slot;
    997  1.46  jmcneill 
    998  1.46  jmcneill 	if (kcpuset_iszero(cpuset))
    999  1.46  jmcneill 		return NULL;
   1000  1.46  jmcneill 
   1001  1.46  jmcneill 	count = 0;
   1002  1.46  jmcneill 	for (slot = 0; slot < PIC_MAXPICS; slot++) {
   1003  1.46  jmcneill 		struct pic_softc * const pic = pic_list[slot];
   1004  1.46  jmcneill 		if (pic != NULL && pic->pic_irqbase >= 0) {
   1005  1.46  jmcneill 			for (irq = 0; irq < pic->pic_maxsources; irq++) {
   1006  1.47  jmcneill 				is = pic->pic_sources[irq];
   1007  1.46  jmcneill 				if (is && is->is_source[0] != '\0')
   1008  1.46  jmcneill 					count++;
   1009  1.46  jmcneill 			}
   1010  1.46  jmcneill 		}
   1011  1.46  jmcneill 	}
   1012  1.46  jmcneill 
   1013  1.46  jmcneill 	iih = kmem_zalloc(sizeof(int) + sizeof(intrid_t) * count, KM_SLEEP);
   1014  1.46  jmcneill 	iih->iih_nids = count;
   1015  1.46  jmcneill 
   1016  1.46  jmcneill 	for (n = 0, slot = 0; n < count && slot < PIC_MAXPICS; slot++) {
   1017  1.46  jmcneill 		struct pic_softc * const pic = pic_list[slot];
   1018  1.46  jmcneill 		if (pic == NULL || pic->pic_irqbase < 0)
   1019  1.46  jmcneill 			continue;
   1020  1.46  jmcneill 		for (irq = 0; irq < pic->pic_maxsources; irq++) {
   1021  1.47  jmcneill 			is = pic->pic_sources[irq];
   1022  1.46  jmcneill 			if (is == NULL || is->is_source[0] == '\0')
   1023  1.46  jmcneill 				continue;
   1024  1.46  jmcneill 
   1025  1.46  jmcneill 			snprintf(iih->iih_intrids[n++], sizeof(intrid_t), "%s %s",
   1026  1.46  jmcneill 			    pic->pic_name, is->is_source);
   1027  1.46  jmcneill 		}
   1028  1.46  jmcneill 	}
   1029  1.46  jmcneill 
   1030  1.46  jmcneill 	return iih;
   1031  1.46  jmcneill }
   1032  1.46  jmcneill 
   1033  1.46  jmcneill void
   1034  1.46  jmcneill interrupt_destruct_intrids(struct intrids_handler *iih)
   1035  1.46  jmcneill {
   1036  1.46  jmcneill 	if (iih == NULL)
   1037  1.46  jmcneill 		return;
   1038  1.46  jmcneill 
   1039  1.46  jmcneill 	kmem_free(iih, sizeof(int) + sizeof(intrid_t) * iih->iih_nids);
   1040  1.46  jmcneill }
   1041  1.46  jmcneill 
   1042  1.46  jmcneill void
   1043  1.46  jmcneill interrupt_get_available(kcpuset_t *cpuset)
   1044  1.46  jmcneill {
   1045  1.46  jmcneill 	CPU_INFO_ITERATOR cii;
   1046  1.46  jmcneill 	struct cpu_info *ci;
   1047  1.46  jmcneill 
   1048  1.46  jmcneill 	kcpuset_zero(cpuset);
   1049  1.46  jmcneill 
   1050  1.46  jmcneill 	mutex_enter(&cpu_lock);
   1051  1.46  jmcneill 	for (CPU_INFO_FOREACH(cii, ci)) {
   1052  1.46  jmcneill 		if ((ci->ci_schedstate.spc_flags & SPCF_NOINTR) == 0)
   1053  1.46  jmcneill 			kcpuset_set(cpuset, cpu_index(ci));
   1054  1.46  jmcneill 	}
   1055  1.46  jmcneill 	mutex_exit(&cpu_lock);
   1056  1.46  jmcneill }
   1057  1.46  jmcneill 
   1058  1.46  jmcneill void
   1059  1.46  jmcneill interrupt_get_devname(const char *intrid, char *buf, size_t len)
   1060  1.46  jmcneill {
   1061  1.48  jmcneill 	struct intrsource *is;
   1062  1.48  jmcneill 
   1063  1.48  jmcneill 	mutex_enter(&cpu_lock);
   1064  1.48  jmcneill 	is = intr_get_source(intrid);
   1065  1.48  jmcneill 	if (is == NULL || is->is_xname == NULL)
   1066  1.48  jmcneill 		buf[0] = '\0';
   1067  1.48  jmcneill 	else
   1068  1.48  jmcneill 		strlcpy(buf, is->is_xname, len);
   1069  1.48  jmcneill 	mutex_exit(&cpu_lock);
   1070  1.46  jmcneill }
   1071  1.46  jmcneill 
   1072  1.46  jmcneill struct interrupt_get_count_arg {
   1073  1.46  jmcneill 	struct intrsource *is;
   1074  1.46  jmcneill 	uint64_t count;
   1075  1.46  jmcneill 	u_int cpu_idx;
   1076  1.46  jmcneill };
   1077  1.46  jmcneill 
   1078  1.46  jmcneill static void
   1079  1.46  jmcneill interrupt_get_count_cb(void *v0, void *v1, struct cpu_info *ci)
   1080  1.46  jmcneill {
   1081  1.46  jmcneill 	struct pic_percpu * const pcpu = v0;
   1082  1.46  jmcneill 	struct interrupt_get_count_arg * const arg = v1;
   1083  1.46  jmcneill 
   1084  1.46  jmcneill 	if (arg->cpu_idx != cpu_index(ci))
   1085  1.46  jmcneill 		return;
   1086  1.46  jmcneill 
   1087  1.46  jmcneill 	arg->count = pcpu->pcpu_evs[arg->is->is_irq].ev_count;
   1088  1.46  jmcneill }
   1089  1.46  jmcneill 
   1090  1.46  jmcneill uint64_t
   1091  1.46  jmcneill interrupt_get_count(const char *intrid, u_int cpu_idx)
   1092  1.46  jmcneill {
   1093  1.46  jmcneill 	struct interrupt_get_count_arg arg;
   1094  1.46  jmcneill 	struct intrsource *is;
   1095  1.46  jmcneill 	uint64_t count;
   1096  1.46  jmcneill 
   1097  1.46  jmcneill 	count = 0;
   1098  1.46  jmcneill 
   1099  1.46  jmcneill 	mutex_enter(&cpu_lock);
   1100  1.46  jmcneill 	is = intr_get_source(intrid);
   1101  1.46  jmcneill 	if (is != NULL && is->is_pic != NULL) {
   1102  1.46  jmcneill 		arg.is = is;
   1103  1.46  jmcneill 		arg.count = 0;
   1104  1.46  jmcneill 		arg.cpu_idx = cpu_idx;
   1105  1.46  jmcneill 		percpu_foreach(is->is_pic->pic_percpu, interrupt_get_count_cb, &arg);
   1106  1.46  jmcneill 		count = arg.count;
   1107  1.46  jmcneill 	}
   1108  1.46  jmcneill 	mutex_exit(&cpu_lock);
   1109  1.46  jmcneill 
   1110  1.46  jmcneill 	return count;
   1111  1.46  jmcneill }
   1112  1.46  jmcneill 
   1113  1.44  jmcneill #ifdef MULTIPROCESSOR
   1114  1.46  jmcneill void
   1115  1.46  jmcneill interrupt_get_assigned(const char *intrid, kcpuset_t *cpuset)
   1116  1.46  jmcneill {
   1117  1.46  jmcneill 	struct intrsource *is;
   1118  1.46  jmcneill 	struct pic_softc *pic;
   1119  1.46  jmcneill 
   1120  1.46  jmcneill 	kcpuset_zero(cpuset);
   1121  1.46  jmcneill 
   1122  1.46  jmcneill 	mutex_enter(&cpu_lock);
   1123  1.46  jmcneill 	is = intr_get_source(intrid);
   1124  1.46  jmcneill 	if (is != NULL) {
   1125  1.46  jmcneill 		pic = is->is_pic;
   1126  1.46  jmcneill 		if (pic && pic->pic_ops->pic_get_affinity)
   1127  1.46  jmcneill 			pic->pic_ops->pic_get_affinity(pic, is->is_irq, cpuset);
   1128  1.46  jmcneill 	}
   1129  1.46  jmcneill 	mutex_exit(&cpu_lock);
   1130  1.46  jmcneill }
   1131  1.46  jmcneill 
   1132  1.46  jmcneill int
   1133  1.46  jmcneill interrupt_distribute_handler(const char *intrid, const kcpuset_t *newset,
   1134  1.46  jmcneill     kcpuset_t *oldset)
   1135  1.46  jmcneill {
   1136  1.46  jmcneill 	struct intrsource *is;
   1137  1.46  jmcneill 	int error;
   1138  1.46  jmcneill 
   1139  1.46  jmcneill 	mutex_enter(&cpu_lock);
   1140  1.46  jmcneill 	is = intr_get_source(intrid);
   1141  1.46  jmcneill 	if (is == NULL) {
   1142  1.46  jmcneill 		error = ENOENT;
   1143  1.46  jmcneill 	} else {
   1144  1.46  jmcneill 		error = interrupt_distribute(is, newset, oldset);
   1145  1.46  jmcneill 	}
   1146  1.46  jmcneill 	mutex_exit(&cpu_lock);
   1147  1.46  jmcneill 
   1148  1.46  jmcneill 	return error;
   1149  1.46  jmcneill }
   1150  1.46  jmcneill 
   1151  1.44  jmcneill int
   1152  1.44  jmcneill interrupt_distribute(void *ih, const kcpuset_t *newset, kcpuset_t *oldset)
   1153  1.44  jmcneill {
   1154  1.44  jmcneill 	struct intrsource * const is = ih;
   1155  1.44  jmcneill 	struct pic_softc * const pic = is->is_pic;
   1156  1.44  jmcneill 
   1157  1.44  jmcneill 	if (pic == NULL)
   1158  1.44  jmcneill 		return EOPNOTSUPP;
   1159  1.44  jmcneill 	if (pic->pic_ops->pic_set_affinity == NULL ||
   1160  1.44  jmcneill 	    pic->pic_ops->pic_get_affinity == NULL)
   1161  1.44  jmcneill 		return EOPNOTSUPP;
   1162  1.44  jmcneill 
   1163  1.44  jmcneill 	if (!is->is_mpsafe)
   1164  1.44  jmcneill 		return EINVAL;
   1165  1.44  jmcneill 
   1166  1.44  jmcneill 	if (oldset != NULL)
   1167  1.44  jmcneill 		pic->pic_ops->pic_get_affinity(pic, is->is_irq, oldset);
   1168  1.44  jmcneill 
   1169  1.44  jmcneill 	return pic->pic_ops->pic_set_affinity(pic, is->is_irq, newset);
   1170  1.44  jmcneill }
   1171  1.44  jmcneill #endif
   1172