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pci_intr_machdep.c revision 1.49
      1  1.49    cherry /*	$NetBSD: pci_intr_machdep.c,v 1.49 2019/02/11 14:59:33 cherry Exp $	*/
      2   1.1    bouyer 
      3   1.1    bouyer /*-
      4  1.13        ad  * Copyright (c) 1997, 1998, 2009 The NetBSD Foundation, Inc.
      5   1.1    bouyer  * All rights reserved.
      6   1.1    bouyer  *
      7   1.1    bouyer  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1    bouyer  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9   1.1    bouyer  * NASA Ames Research Center.
     10   1.1    bouyer  *
     11   1.1    bouyer  * Redistribution and use in source and binary forms, with or without
     12   1.1    bouyer  * modification, are permitted provided that the following conditions
     13   1.1    bouyer  * are met:
     14   1.1    bouyer  * 1. Redistributions of source code must retain the above copyright
     15   1.1    bouyer  *    notice, this list of conditions and the following disclaimer.
     16   1.1    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1    bouyer  *    notice, this list of conditions and the following disclaimer in the
     18   1.1    bouyer  *    documentation and/or other materials provided with the distribution.
     19   1.1    bouyer  *
     20   1.1    bouyer  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.1    bouyer  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.1    bouyer  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23   1.1    bouyer  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.1    bouyer  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.1    bouyer  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.1    bouyer  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.1    bouyer  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.1    bouyer  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.1    bouyer  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.1    bouyer  * POSSIBILITY OF SUCH DAMAGE.
     31   1.1    bouyer  */
     32   1.1    bouyer 
     33   1.1    bouyer /*
     34   1.1    bouyer  * Copyright (c) 1996 Christopher G. Demetriou.  All rights reserved.
     35   1.1    bouyer  * Copyright (c) 1994 Charles M. Hannum.  All rights reserved.
     36   1.1    bouyer  *
     37   1.1    bouyer  * Redistribution and use in source and binary forms, with or without
     38   1.1    bouyer  * modification, are permitted provided that the following conditions
     39   1.1    bouyer  * are met:
     40   1.1    bouyer  * 1. Redistributions of source code must retain the above copyright
     41   1.1    bouyer  *    notice, this list of conditions and the following disclaimer.
     42   1.1    bouyer  * 2. Redistributions in binary form must reproduce the above copyright
     43   1.1    bouyer  *    notice, this list of conditions and the following disclaimer in the
     44   1.1    bouyer  *    documentation and/or other materials provided with the distribution.
     45   1.1    bouyer  * 3. All advertising materials mentioning features or use of this software
     46   1.1    bouyer  *    must display the following acknowledgement:
     47   1.1    bouyer  *	This product includes software developed by Charles M. Hannum.
     48   1.1    bouyer  * 4. The name of the author may not be used to endorse or promote products
     49   1.1    bouyer  *    derived from this software without specific prior written permission.
     50   1.1    bouyer  *
     51   1.1    bouyer  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     52   1.1    bouyer  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     53   1.1    bouyer  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     54   1.1    bouyer  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     55   1.1    bouyer  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     56   1.1    bouyer  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     57   1.1    bouyer  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     58   1.1    bouyer  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     59   1.1    bouyer  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     60   1.1    bouyer  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     61   1.1    bouyer  */
     62   1.1    bouyer 
     63   1.1    bouyer /*
     64   1.1    bouyer  * Machine-specific functions for PCI autoconfiguration.
     65   1.1    bouyer  *
     66   1.1    bouyer  * On PCs, there are two methods of generating PCI configuration cycles.
     67   1.1    bouyer  * We try to detect the appropriate mechanism for this machine and set
     68   1.1    bouyer  * up a few function pointers to access the correct method directly.
     69   1.1    bouyer  *
     70   1.1    bouyer  * The configuration method can be hard-coded in the config file by
     71   1.1    bouyer  * using `options PCI_CONF_MODE=N', where `N' is the configuration mode
     72   1.1    bouyer  * as defined section 3.6.4.1, `Generating Configuration Cycles'.
     73   1.1    bouyer  */
     74   1.1    bouyer 
     75   1.1    bouyer #include <sys/cdefs.h>
     76  1.49    cherry __KERNEL_RCSID(0, "$NetBSD: pci_intr_machdep.c,v 1.49 2019/02/11 14:59:33 cherry Exp $");
     77   1.1    bouyer 
     78   1.1    bouyer #include <sys/types.h>
     79   1.1    bouyer #include <sys/param.h>
     80   1.1    bouyer #include <sys/time.h>
     81   1.1    bouyer #include <sys/systm.h>
     82  1.28  knakahar #include <sys/cpu.h>
     83   1.1    bouyer #include <sys/errno.h>
     84   1.1    bouyer #include <sys/device.h>
     85   1.7        ad #include <sys/intr.h>
     86  1.28  knakahar #include <sys/kmem.h>
     87   1.1    bouyer 
     88   1.1    bouyer #include <dev/pci/pcivar.h>
     89   1.1    bouyer 
     90   1.1    bouyer #include "ioapic.h"
     91   1.1    bouyer #include "eisa.h"
     92  1.14  jmcneill #include "acpica.h"
     93   1.1    bouyer #include "opt_mpbios.h"
     94   1.2  christos #include "opt_acpi.h"
     95   1.1    bouyer 
     96  1.26    dyoung #include <machine/i82489reg.h>
     97  1.26    dyoung 
     98  1.14  jmcneill #if NIOAPIC > 0 || NACPICA > 0
     99  1.22    dyoung #include <machine/i82093reg.h>
    100   1.1    bouyer #include <machine/i82093var.h>
    101   1.2  christos #include <machine/mpconfig.h>
    102   1.1    bouyer #include <machine/mpbiosvar.h>
    103   1.1    bouyer #include <machine/pic.h>
    104  1.31  knakahar #include <x86/pci/pci_msi_machdep.h>
    105  1.48    cherry #else
    106  1.48    cherry #include <machine/i82093var.h>
    107   1.1    bouyer #endif
    108   1.1    bouyer 
    109   1.1    bouyer #ifdef MPBIOS
    110   1.1    bouyer #include <machine/mpbiosvar.h>
    111   1.1    bouyer #endif
    112   1.1    bouyer 
    113  1.14  jmcneill #if NACPICA > 0
    114   1.1    bouyer #include <machine/mpacpi.h>
    115   1.1    bouyer #endif
    116   1.1    bouyer 
    117   1.1    bouyer int
    118  1.19    dyoung pci_intr_map(const struct pci_attach_args *pa, pci_intr_handle_t *ihp)
    119   1.1    bouyer {
    120  1.29  knakahar 	pci_intr_pin_t pin = pa->pa_intrpin;
    121  1.29  knakahar 	pci_intr_line_t line = pa->pa_intrline;
    122  1.23    dyoung 	pci_chipset_tag_t ipc, pc = pa->pa_pc;
    123  1.14  jmcneill #if NIOAPIC > 0 || NACPICA > 0
    124  1.29  knakahar 	pci_intr_pin_t rawpin = pa->pa_rawintrpin;
    125   1.1    bouyer 	int bus, dev, func;
    126   1.1    bouyer #endif
    127   1.1    bouyer 
    128  1.23    dyoung 	for (ipc = pc; ipc != NULL; ipc = ipc->pc_super) {
    129  1.23    dyoung 		if ((ipc->pc_present & PCI_OVERRIDE_INTR_MAP) == 0)
    130  1.23    dyoung 			continue;
    131  1.23    dyoung 		return (*ipc->pc_ov->ov_intr_map)(ipc->pc_ctx, pa, ihp);
    132  1.16    dyoung 	}
    133  1.15    dyoung 
    134   1.1    bouyer 	if (pin == 0) {
    135   1.1    bouyer 		/* No IRQ used. */
    136   1.1    bouyer 		goto bad;
    137   1.1    bouyer 	}
    138   1.1    bouyer 
    139   1.2  christos 	*ihp = 0;
    140   1.2  christos 
    141   1.1    bouyer 	if (pin > PCI_INTERRUPT_PIN_MAX) {
    142  1.13        ad 		aprint_normal("pci_intr_map: bad interrupt pin %d\n", pin);
    143   1.1    bouyer 		goto bad;
    144   1.1    bouyer 	}
    145   1.1    bouyer 
    146  1.14  jmcneill #if NIOAPIC > 0 || NACPICA > 0
    147  1.24      yamt 	KASSERT(rawpin >= PCI_INTERRUPT_PIN_A);
    148  1.24      yamt 	KASSERT(rawpin <= PCI_INTERRUPT_PIN_D);
    149   1.1    bouyer 	pci_decompose_tag(pc, pa->pa_tag, &bus, &dev, &func);
    150   1.1    bouyer 	if (mp_busses != NULL) {
    151  1.25      yamt 		/*
    152  1.25      yamt 		 * Note: PCI_INTERRUPT_PIN_A == 1 where intr_find_mpmapping
    153  1.25      yamt 		 * wants pci bus_pin encoding which uses INT_A == 0.
    154  1.25      yamt 		 */
    155  1.24      yamt 		if (intr_find_mpmapping(bus,
    156  1.24      yamt 		    (dev << 2) | (rawpin - PCI_INTERRUPT_PIN_A), ihp) == 0) {
    157  1.24      yamt 			if (APIC_IRQ_LEGACY_IRQ(*ihp) == 0)
    158   1.2  christos 				*ihp |= line;
    159   1.1    bouyer 			return 0;
    160   1.1    bouyer 		}
    161   1.1    bouyer 		/*
    162   1.1    bouyer 		 * No explicit PCI mapping found. This is not fatal,
    163   1.1    bouyer 		 * we'll try the ISA (or possibly EISA) mappings next.
    164   1.1    bouyer 		 */
    165   1.1    bouyer 	}
    166   1.1    bouyer #endif
    167   1.1    bouyer 
    168   1.1    bouyer 	/*
    169   1.1    bouyer 	 * Section 6.2.4, `Miscellaneous Functions', says that 255 means
    170   1.1    bouyer 	 * `unknown' or `no connection' on a PC.  We assume that a device with
    171   1.1    bouyer 	 * `no connection' either doesn't have an interrupt (in which case the
    172   1.1    bouyer 	 * pin number should be 0, and would have been noticed above), or
    173   1.1    bouyer 	 * wasn't configured by the BIOS (in which case we punt, since there's
    174   1.1    bouyer 	 * no real way we can know how the interrupt lines are mapped in the
    175   1.1    bouyer 	 * hardware).
    176   1.1    bouyer 	 *
    177   1.1    bouyer 	 * XXX
    178   1.1    bouyer 	 * Since IRQ 0 is only used by the clock, and we can't actually be sure
    179   1.1    bouyer 	 * that the BIOS did its job, we also recognize that as meaning that
    180   1.1    bouyer 	 * the BIOS has not configured the device.
    181   1.1    bouyer 	 */
    182   1.1    bouyer 	if (line == 0 || line == X86_PCI_INTERRUPT_LINE_NO_CONNECTION) {
    183  1.13        ad 		aprint_normal("pci_intr_map: no mapping for pin %c (line=%02x)\n",
    184   1.1    bouyer 		       '@' + pin, line);
    185   1.1    bouyer 		goto bad;
    186   1.1    bouyer 	} else {
    187   1.1    bouyer 		if (line >= NUM_LEGACY_IRQS) {
    188  1.13        ad 			aprint_normal("pci_intr_map: bad interrupt line %d\n", line);
    189   1.1    bouyer 			goto bad;
    190   1.1    bouyer 		}
    191   1.1    bouyer 		if (line == 2) {
    192  1.13        ad 			aprint_normal("pci_intr_map: changed line 2 to line 9\n");
    193   1.1    bouyer 			line = 9;
    194   1.1    bouyer 		}
    195   1.1    bouyer 	}
    196  1.14  jmcneill #if NIOAPIC > 0 || NACPICA > 0
    197   1.1    bouyer 	if (mp_busses != NULL) {
    198   1.1    bouyer 		if (intr_find_mpmapping(mp_isa_bus, line, ihp) == 0) {
    199   1.2  christos 			if ((*ihp & 0xff) == 0)
    200   1.2  christos 				*ihp |= line;
    201   1.1    bouyer 			return 0;
    202   1.1    bouyer 		}
    203   1.1    bouyer #if NEISA > 0
    204   1.1    bouyer 		if (intr_find_mpmapping(mp_eisa_bus, line, ihp) == 0) {
    205   1.2  christos 			if ((*ihp & 0xff) == 0)
    206   1.2  christos 				*ihp |= line;
    207   1.1    bouyer 			return 0;
    208   1.1    bouyer 		}
    209   1.1    bouyer #endif
    210  1.13        ad 		aprint_normal("pci_intr_map: bus %d dev %d func %d pin %d; line %d\n",
    211   1.1    bouyer 		    bus, dev, func, pin, line);
    212  1.13        ad 		aprint_normal("pci_intr_map: no MP mapping found\n");
    213   1.1    bouyer 	}
    214   1.1    bouyer #endif
    215   1.1    bouyer 
    216   1.1    bouyer 	*ihp = line;
    217   1.1    bouyer 	return 0;
    218   1.1    bouyer 
    219   1.1    bouyer bad:
    220   1.1    bouyer 	*ihp = -1;
    221   1.1    bouyer 	return 1;
    222   1.1    bouyer }
    223   1.1    bouyer 
    224   1.1    bouyer const char *
    225  1.27  christos pci_intr_string(pci_chipset_tag_t pc, pci_intr_handle_t ih, char *buf,
    226  1.27  christos     size_t len)
    227   1.1    bouyer {
    228  1.23    dyoung 	pci_chipset_tag_t ipc;
    229  1.17    dyoung 
    230  1.23    dyoung 	for (ipc = pc; ipc != NULL; ipc = ipc->pc_super) {
    231  1.23    dyoung 		if ((ipc->pc_present & PCI_OVERRIDE_INTR_STRING) == 0)
    232  1.23    dyoung 			continue;
    233  1.27  christos 		return (*ipc->pc_ov->ov_intr_string)(ipc->pc_ctx, pc, ih,
    234  1.27  christos 		    buf, len);
    235  1.16    dyoung 	}
    236  1.15    dyoung 
    237  1.48    cherry #if defined(__HAVE_PCI_MSI_MSIX)
    238  1.33  knakahar 	if (INT_VIA_MSI(ih))
    239  1.33  knakahar 		return x86_pci_msi_string(pc, ih, buf, len);
    240  1.48    cherry #endif
    241  1.33  knakahar 
    242  1.27  christos 	return intr_string(ih & ~MPSAFE_MASK, buf, len);
    243   1.1    bouyer }
    244   1.1    bouyer 
    245   1.1    bouyer 
    246   1.1    bouyer const struct evcnt *
    247   1.6  christos pci_intr_evcnt(pci_chipset_tag_t pc, pci_intr_handle_t ih)
    248   1.1    bouyer {
    249  1.23    dyoung 	pci_chipset_tag_t ipc;
    250   1.1    bouyer 
    251  1.23    dyoung 	for (ipc = pc; ipc != NULL; ipc = ipc->pc_super) {
    252  1.23    dyoung 		if ((ipc->pc_present & PCI_OVERRIDE_INTR_EVCNT) == 0)
    253  1.23    dyoung 			continue;
    254  1.23    dyoung 		return (*ipc->pc_ov->ov_intr_evcnt)(ipc->pc_ctx, pc, ih);
    255  1.16    dyoung 	}
    256  1.15    dyoung 
    257   1.1    bouyer 	/* XXX for now, no evcnt parent reported */
    258   1.1    bouyer 	return NULL;
    259   1.1    bouyer }
    260   1.1    bouyer 
    261  1.11        ad int
    262  1.11        ad pci_intr_setattr(pci_chipset_tag_t pc, pci_intr_handle_t *ih,
    263  1.11        ad 		 int attr, uint64_t data)
    264  1.11        ad {
    265  1.11        ad 
    266  1.11        ad 	switch (attr) {
    267  1.11        ad 	case PCI_INTR_MPSAFE:
    268  1.11        ad 		if (data) {
    269  1.11        ad 			 *ih |= MPSAFE_MASK;
    270  1.11        ad 		} else {
    271  1.11        ad 			 *ih &= ~MPSAFE_MASK;
    272  1.11        ad 		}
    273  1.11        ad 		/* XXX Set live if already mapped. */
    274  1.11        ad 		return 0;
    275  1.11        ad 	default:
    276  1.11        ad 		return ENODEV;
    277  1.11        ad 	}
    278  1.11        ad }
    279  1.11        ad 
    280  1.42  knakahar static int
    281  1.42  knakahar pci_intr_find_intx_irq(pci_intr_handle_t ih, int *irq, struct pic **pic,
    282  1.42  knakahar     int *pin)
    283  1.42  knakahar {
    284  1.42  knakahar 
    285  1.42  knakahar 	KASSERT(irq != NULL);
    286  1.42  knakahar 	KASSERT(pic != NULL);
    287  1.42  knakahar 	KASSERT(pin != NULL);
    288  1.42  knakahar 
    289  1.42  knakahar 	*pic = &i8259_pic;
    290  1.42  knakahar 	*pin = *irq = APIC_IRQ_LEGACY_IRQ(ih);
    291  1.42  knakahar 
    292  1.42  knakahar #if NIOAPIC > 0
    293  1.42  knakahar 	if (ih & APIC_INT_VIA_APIC) {
    294  1.42  knakahar 		struct ioapic_softc *ioapic;
    295  1.42  knakahar 
    296  1.42  knakahar 		ioapic = ioapic_find(APIC_IRQ_APIC(ih));
    297  1.42  knakahar 		if (ioapic == NULL)
    298  1.42  knakahar 			return ENOENT;
    299  1.42  knakahar 		*pic = &ioapic->sc_pic;
    300  1.42  knakahar 		*pin = APIC_IRQ_PIN(ih);
    301  1.45    cherry 		*irq = APIC_IRQ_LEGACY_IRQ(ih);
    302  1.45    cherry 		if (*irq < 0 || *irq >= NUM_LEGACY_IRQS)
    303  1.45    cherry 			*irq = -1;
    304  1.42  knakahar 	}
    305  1.42  knakahar #endif
    306  1.42  knakahar 
    307  1.42  knakahar 	return 0;
    308  1.42  knakahar }
    309  1.42  knakahar 
    310  1.39  knakahar static void *
    311  1.39  knakahar pci_intr_establish_xname_internal(pci_chipset_tag_t pc, pci_intr_handle_t ih,
    312  1.37  knakahar     int level, int (*func)(void *), void *arg, const char *xname)
    313   1.1    bouyer {
    314   1.1    bouyer 	int pin, irq;
    315   1.1    bouyer 	struct pic *pic;
    316  1.11        ad 	bool mpsafe;
    317  1.23    dyoung 	pci_chipset_tag_t ipc;
    318   1.1    bouyer 
    319  1.23    dyoung 	for (ipc = pc; ipc != NULL; ipc = ipc->pc_super) {
    320  1.23    dyoung 		if ((ipc->pc_present & PCI_OVERRIDE_INTR_ESTABLISH) == 0)
    321  1.23    dyoung 			continue;
    322  1.23    dyoung 		return (*ipc->pc_ov->ov_intr_establish)(ipc->pc_ctx,
    323  1.23    dyoung 		    pc, ih, level, func, arg);
    324  1.16    dyoung 	}
    325  1.15    dyoung 
    326  1.48    cherry 
    327  1.48    cherry #ifdef __HAVE_PCI_MSI_MSIX
    328  1.31  knakahar 	if (INT_VIA_MSI(ih)) {
    329  1.31  knakahar 		if (MSI_INT_IS_MSIX(ih))
    330  1.37  knakahar 			return x86_pci_msix_establish(pc, ih, level, func, arg,
    331  1.37  knakahar 			    xname);
    332  1.31  knakahar 		else
    333  1.37  knakahar 			return x86_pci_msi_establish(pc, ih, level, func, arg,
    334  1.37  knakahar 			    xname);
    335  1.31  knakahar 	}
    336  1.48    cherry #endif
    337  1.42  knakahar 	if (pci_intr_find_intx_irq(ih, &irq, &pic, &pin)) {
    338  1.42  knakahar 		aprint_normal("%s: bad pic %d\n", __func__,
    339  1.42  knakahar 		    APIC_IRQ_APIC(ih));
    340  1.42  knakahar 		return NULL;
    341  1.42  knakahar 	}
    342  1.42  knakahar 
    343  1.11        ad 	mpsafe = ((ih & MPSAFE_MASK) != 0);
    344   1.1    bouyer 
    345  1.37  knakahar 	return intr_establish_xname(irq, pic, pin, IST_LEVEL, level, func, arg,
    346  1.37  knakahar 	    mpsafe, xname);
    347  1.37  knakahar }
    348  1.37  knakahar 
    349  1.37  knakahar void *
    350  1.37  knakahar pci_intr_establish(pci_chipset_tag_t pc, pci_intr_handle_t ih,
    351  1.37  knakahar     int level, int (*func)(void *), void *arg)
    352  1.37  knakahar {
    353  1.37  knakahar 
    354  1.39  knakahar 	return pci_intr_establish_xname_internal(pc, ih, level, func, arg, "unknown");
    355  1.39  knakahar }
    356  1.39  knakahar 
    357  1.39  knakahar void *
    358  1.39  knakahar pci_intr_establish_xname(pci_chipset_tag_t pc, pci_intr_handle_t ih,
    359  1.39  knakahar     int level, int (*func)(void *), void *arg, const char *xname)
    360  1.39  knakahar {
    361  1.39  knakahar 
    362  1.39  knakahar 	return pci_intr_establish_xname_internal(pc, ih, level, func, arg, xname);
    363   1.1    bouyer }
    364  1.39  knakahar 
    365   1.1    bouyer 
    366   1.1    bouyer void
    367   1.6  christos pci_intr_disestablish(pci_chipset_tag_t pc, void *cookie)
    368   1.1    bouyer {
    369  1.23    dyoung 	pci_chipset_tag_t ipc;
    370   1.1    bouyer 
    371  1.23    dyoung 	for (ipc = pc; ipc != NULL; ipc = ipc->pc_super) {
    372  1.23    dyoung 		if ((ipc->pc_present & PCI_OVERRIDE_INTR_DISESTABLISH) == 0)
    373  1.23    dyoung 			continue;
    374  1.23    dyoung 		(*ipc->pc_ov->ov_intr_disestablish)(ipc->pc_ctx, pc, cookie);
    375  1.23    dyoung 		return;
    376  1.15    dyoung 	}
    377  1.15    dyoung 
    378  1.31  knakahar 	/* MSI/MSI-X processing is switched in intr_disestablish(). */
    379   1.1    bouyer 	intr_disestablish(cookie);
    380   1.1    bouyer }
    381  1.20  drochner 
    382  1.20  drochner #if NIOAPIC > 0
    383  1.39  knakahar #ifdef __HAVE_PCI_MSI_MSIX
    384  1.34  knakahar pci_intr_type_t
    385  1.38  knakahar pci_intr_type(pci_chipset_tag_t pc, pci_intr_handle_t ih)
    386  1.34  knakahar {
    387  1.34  knakahar 
    388  1.34  knakahar 	if (INT_VIA_MSI(ih)) {
    389  1.34  knakahar 		if (MSI_INT_IS_MSIX(ih))
    390  1.34  knakahar 			return PCI_INTR_TYPE_MSIX;
    391  1.34  knakahar 		else
    392  1.34  knakahar 			return PCI_INTR_TYPE_MSI;
    393  1.34  knakahar 	} else {
    394  1.34  knakahar 		return PCI_INTR_TYPE_INTX;
    395  1.34  knakahar 	}
    396  1.34  knakahar }
    397  1.34  knakahar 
    398  1.42  knakahar static const char *
    399  1.42  knakahar x86_pci_intx_create_intrid(pci_chipset_tag_t pc, pci_intr_handle_t ih, char *buf,
    400  1.42  knakahar     size_t len)
    401  1.42  knakahar {
    402  1.49    cherry #if !defined(XENPV)
    403  1.42  knakahar 	int pin, irq;
    404  1.42  knakahar 	struct pic *pic;
    405  1.42  knakahar 
    406  1.42  knakahar 	KASSERT(!INT_VIA_MSI(ih));
    407  1.42  knakahar 
    408  1.42  knakahar 	pic = &i8259_pic;
    409  1.42  knakahar 	pin = irq = APIC_IRQ_LEGACY_IRQ(ih);
    410  1.42  knakahar 
    411  1.42  knakahar 	if (pci_intr_find_intx_irq(ih, &irq, &pic, &pin)) {
    412  1.42  knakahar 		aprint_normal("%s: bad pic %d\n", __func__,
    413  1.42  knakahar 		    APIC_IRQ_APIC(ih));
    414  1.42  knakahar 		return NULL;
    415  1.42  knakahar 	}
    416  1.42  knakahar 
    417  1.42  knakahar 	return intr_create_intrid(irq, pic, pin, buf, len);
    418  1.42  knakahar #else
    419  1.42  knakahar 	return pci_intr_string(pc, ih, buf, len);
    420  1.49    cherry #endif /* !XENPV */
    421  1.42  knakahar }
    422  1.42  knakahar 
    423  1.32  knakahar static void
    424  1.32  knakahar x86_pci_intx_release(pci_chipset_tag_t pc, pci_intr_handle_t *pih)
    425  1.32  knakahar {
    426  1.32  knakahar 	char intrstr_buf[INTRIDBUF];
    427  1.32  knakahar 	const char *intrstr;
    428  1.32  knakahar 
    429  1.32  knakahar 	intrstr = pci_intr_string(NULL, *pih, intrstr_buf, sizeof(intrstr_buf));
    430  1.32  knakahar 	mutex_enter(&cpu_lock);
    431  1.32  knakahar 	intr_free_io_intrsource(intrstr);
    432  1.32  knakahar 	mutex_exit(&cpu_lock);
    433  1.32  knakahar 
    434  1.32  knakahar 	kmem_free(pih, sizeof(*pih));
    435  1.32  knakahar }
    436  1.32  knakahar 
    437  1.30  knakahar int
    438  1.30  knakahar pci_intx_alloc(const struct pci_attach_args *pa, pci_intr_handle_t **pih)
    439  1.20  drochner {
    440  1.30  knakahar 	struct intrsource *isp;
    441  1.30  knakahar 	pci_intr_handle_t *handle;
    442  1.30  knakahar 	int error;
    443  1.30  knakahar 	char intrstr_buf[INTRIDBUF];
    444  1.30  knakahar 	const char *intrstr;
    445  1.30  knakahar 
    446  1.30  knakahar 	handle = kmem_zalloc(sizeof(*handle), KM_SLEEP);
    447  1.30  knakahar 	if (pci_intr_map(pa, handle) != 0) {
    448  1.30  knakahar 		aprint_normal("cannot set up pci_intr_handle_t\n");
    449  1.30  knakahar 		error = EINVAL;
    450  1.30  knakahar 		goto error;
    451  1.30  knakahar 	}
    452  1.30  knakahar 
    453  1.42  knakahar 	/*
    454  1.42  knakahar 	 * must be the same intrstr as intr_establish_xname()
    455  1.42  knakahar 	 */
    456  1.42  knakahar 	intrstr = x86_pci_intx_create_intrid(pa->pa_pc, *handle, intrstr_buf,
    457  1.42  knakahar 	    sizeof(intrstr_buf));
    458  1.30  knakahar 	mutex_enter(&cpu_lock);
    459  1.30  knakahar 	isp = intr_allocate_io_intrsource(intrstr);
    460  1.30  knakahar 	mutex_exit(&cpu_lock);
    461  1.30  knakahar 	if (isp == NULL) {
    462  1.30  knakahar 		aprint_normal("can't allocate io_intersource\n");
    463  1.30  knakahar 		error = ENOMEM;
    464  1.30  knakahar 		goto error;
    465  1.30  knakahar 	}
    466  1.20  drochner 
    467  1.30  knakahar 	*pih = handle;
    468  1.30  knakahar 	return 0;
    469  1.20  drochner 
    470  1.30  knakahar error:
    471  1.30  knakahar 	kmem_free(handle, sizeof(*handle));
    472  1.30  knakahar 	return error;
    473  1.20  drochner }
    474  1.20  drochner 
    475  1.34  knakahar /*
    476  1.34  knakahar  * Interrupt handler allocation utility. This function calls each allocation
    477  1.34  knakahar  * function as specified by arguments.
    478  1.34  knakahar  * Currently callee functions are pci_intx_alloc(), pci_msi_alloc_exact(),
    479  1.34  knakahar  * and pci_msix_alloc_exact().
    480  1.34  knakahar  * pa       : pci_attach_args
    481  1.34  knakahar  * ihps     : interrupt handlers
    482  1.34  knakahar  * counts   : The array of number of required interrupt handlers.
    483  1.34  knakahar  *            It is overwritten by allocated the number of handlers.
    484  1.34  knakahar  *            CAUTION: The size of counts[] must be PCI_INTR_TYPE_SIZE.
    485  1.34  knakahar  * max_type : "max" type of using interrupts. See below.
    486  1.34  knakahar  *     e.g.
    487  1.34  knakahar  *         If you want to use 5 MSI-X, 1 MSI, or INTx, you use "counts" as
    488  1.34  knakahar  *             int counts[PCI_INTR_TYPE_SIZE];
    489  1.34  knakahar  *             counts[PCI_INTR_TYPE_MSIX] = 5;
    490  1.34  knakahar  *             counts[PCI_INTR_TYPE_MSI] = 1;
    491  1.34  knakahar  *             counts[PCI_INTR_TYPE_INTX] = 1;
    492  1.34  knakahar  *             error = pci_intr_alloc(pa, ihps, counts, PCI_INTR_TYPE_MSIX);
    493  1.34  knakahar  *
    494  1.34  knakahar  *         If you want to use hardware max number MSI-X or 1 MSI,
    495  1.34  knakahar  *         and not to use INTx, you use "counts" as
    496  1.34  knakahar  *             int counts[PCI_INTR_TYPE_SIZE];
    497  1.34  knakahar  *             counts[PCI_INTR_TYPE_MSIX] = -1;
    498  1.34  knakahar  *             counts[PCI_INTR_TYPE_MSI] = 1;
    499  1.34  knakahar  *             counts[PCI_INTR_TYPE_INTX] = 0;
    500  1.34  knakahar  *             error = pci_intr_alloc(pa, ihps, counts, PCI_INTR_TYPE_MSIX);
    501  1.34  knakahar  *
    502  1.34  knakahar  *         If you want to use 3 MSI or INTx, you can use "counts" as
    503  1.34  knakahar  *             int counts[PCI_INTR_TYPE_SIZE];
    504  1.34  knakahar  *             counts[PCI_INTR_TYPE_MSI] = 3;
    505  1.34  knakahar  *             counts[PCI_INTR_TYPE_INTX] = 1;
    506  1.34  knakahar  *             error = pci_intr_alloc(pa, ihps, counts, PCI_INTR_TYPE_MSI);
    507  1.34  knakahar  *
    508  1.34  knakahar  *         If you want to use 1 MSI or INTx (probably most general usage),
    509  1.34  knakahar  *         you can simply use this API like
    510  1.34  knakahar  *         below
    511  1.34  knakahar  *             error = pci_intr_alloc(pa, ihps, NULL, 0);
    512  1.34  knakahar  *                                                    ^ ignored
    513  1.34  knakahar  */
    514  1.34  knakahar int
    515  1.34  knakahar pci_intr_alloc(const struct pci_attach_args *pa, pci_intr_handle_t **ihps,
    516  1.34  knakahar     int *counts, pci_intr_type_t max_type)
    517  1.34  knakahar {
    518  1.34  knakahar 	int error;
    519  1.34  knakahar 	int intx_count, msi_count, msix_count;
    520  1.34  knakahar 
    521  1.34  knakahar 	intx_count = msi_count = msix_count = 0;
    522  1.34  knakahar 	if (counts == NULL) { /* simple pattern */
    523  1.46  jdolecek 		msix_count = 1;
    524  1.34  knakahar 		msi_count = 1;
    525  1.34  knakahar 		intx_count = 1;
    526  1.34  knakahar 	} else {
    527  1.34  knakahar 		switch(max_type) {
    528  1.34  knakahar 		case PCI_INTR_TYPE_MSIX:
    529  1.34  knakahar 			msix_count = counts[PCI_INTR_TYPE_MSIX];
    530  1.34  knakahar 			/* FALLTHROUGH */
    531  1.34  knakahar 		case PCI_INTR_TYPE_MSI:
    532  1.34  knakahar 			msi_count = counts[PCI_INTR_TYPE_MSI];
    533  1.34  knakahar 			/* FALLTHROUGH */
    534  1.34  knakahar 		case PCI_INTR_TYPE_INTX:
    535  1.34  knakahar 			intx_count = counts[PCI_INTR_TYPE_INTX];
    536  1.34  knakahar 			break;
    537  1.34  knakahar 		default:
    538  1.34  knakahar 			return EINVAL;
    539  1.34  knakahar 		}
    540  1.34  knakahar 	}
    541  1.34  knakahar 
    542  1.35  knakahar 	if (counts != NULL)
    543  1.35  knakahar 		memset(counts, 0, sizeof(counts[0]) * PCI_INTR_TYPE_SIZE);
    544  1.34  knakahar 	error = EINVAL;
    545  1.34  knakahar 
    546  1.34  knakahar 	/* try MSI-X */
    547  1.34  knakahar 	if (msix_count == -1) /* use hardware max */
    548  1.36   msaitoh 		msix_count = pci_msix_count(pa->pa_pc, pa->pa_tag);
    549  1.34  knakahar 	if (msix_count > 0) {
    550  1.34  knakahar 		error = pci_msix_alloc_exact(pa, ihps, msix_count);
    551  1.34  knakahar 		if (error == 0) {
    552  1.47  jdolecek 			if (counts != NULL)
    553  1.47  jdolecek 				counts[PCI_INTR_TYPE_MSIX] = msix_count;
    554  1.34  knakahar 			goto out;
    555  1.34  knakahar 		}
    556  1.34  knakahar 	}
    557  1.34  knakahar 
    558  1.34  knakahar 	/* try MSI */
    559  1.34  knakahar 	if (msi_count == -1) /* use hardware max */
    560  1.36   msaitoh 		msi_count = pci_msi_count(pa->pa_pc, pa->pa_tag);
    561  1.34  knakahar 	if (msi_count > 0) {
    562  1.34  knakahar 		error = pci_msi_alloc_exact(pa, ihps, msi_count);
    563  1.34  knakahar 		if (error == 0) {
    564  1.35  knakahar 			if (counts != NULL)
    565  1.34  knakahar 				counts[PCI_INTR_TYPE_MSI] = msi_count;
    566  1.35  knakahar 			goto out;
    567  1.34  knakahar 		}
    568  1.34  knakahar 	}
    569  1.34  knakahar 
    570  1.34  knakahar 	/* try INTx */
    571  1.34  knakahar 	if (intx_count != 0) { /* The number of INTx is always 1. */
    572  1.34  knakahar 		error = pci_intx_alloc(pa, ihps);
    573  1.34  knakahar 		if (error == 0) {
    574  1.34  knakahar 			if (counts != NULL)
    575  1.34  knakahar 				counts[PCI_INTR_TYPE_INTX] = 1;
    576  1.34  knakahar 		}
    577  1.34  knakahar 	}
    578  1.34  knakahar 
    579  1.34  knakahar  out:
    580  1.34  knakahar 	return error;
    581  1.34  knakahar }
    582  1.34  knakahar 
    583  1.31  knakahar void
    584  1.31  knakahar pci_intr_release(pci_chipset_tag_t pc, pci_intr_handle_t *pih, int count)
    585  1.31  knakahar {
    586  1.31  knakahar 	if (pih == NULL)
    587  1.31  knakahar 		return;
    588  1.31  knakahar 
    589  1.31  knakahar 	if (INT_VIA_MSI(*pih)) {
    590  1.31  knakahar 		if (MSI_INT_IS_MSIX(*pih))
    591  1.31  knakahar 			return x86_pci_msix_release(pc, pih, count);
    592  1.31  knakahar 		else
    593  1.31  knakahar 			return x86_pci_msi_release(pc, pih, count);
    594  1.31  knakahar 	} else {
    595  1.31  knakahar 		KASSERT(count == 1);
    596  1.31  knakahar 		return x86_pci_intx_release(pc, pih);
    597  1.31  knakahar 	}
    598  1.31  knakahar 
    599  1.31  knakahar }
    600  1.39  knakahar #endif /* __HAVE_PCI_MSI_MSIX */
    601  1.39  knakahar #endif /*  NIOAPIC > 0 */
    602