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acpi_machdep.c revision 1.25
      1  1.25       kre /* $NetBSD: acpi_machdep.c,v 1.25 2019/03/09 10:04:41 kre Exp $ */
      2   1.1    jruoho 
      3   1.1    jruoho /*
      4   1.1    jruoho  * Copyright 2001 Wasabi Systems, Inc.
      5   1.1    jruoho  * All rights reserved.
      6   1.1    jruoho  *
      7   1.1    jruoho  * Written by Jason R. Thorpe for Wasabi Systems, Inc.
      8   1.1    jruoho  *
      9   1.1    jruoho  * Redistribution and use in source and binary forms, with or without
     10   1.1    jruoho  * modification, are permitted provided that the following conditions
     11   1.1    jruoho  * are met:
     12   1.1    jruoho  * 1. Redistributions of source code must retain the above copyright
     13   1.1    jruoho  *    notice, this list of conditions and the following disclaimer.
     14   1.1    jruoho  * 2. Redistributions in binary form must reproduce the above copyright
     15   1.1    jruoho  *    notice, this list of conditions and the following disclaimer in the
     16   1.1    jruoho  *    documentation and/or other materials provided with the distribution.
     17   1.1    jruoho  * 3. All advertising materials mentioning features or use of this software
     18   1.1    jruoho  *    must display the following acknowledgement:
     19   1.1    jruoho  *	This product includes software developed for the NetBSD Project by
     20   1.1    jruoho  *	Wasabi Systems, Inc.
     21   1.1    jruoho  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22   1.1    jruoho  *    or promote products derived from this software without specific prior
     23   1.1    jruoho  *    written permission.
     24   1.1    jruoho  *
     25   1.1    jruoho  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26   1.1    jruoho  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27   1.1    jruoho  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28   1.1    jruoho  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29   1.1    jruoho  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30   1.1    jruoho  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31   1.1    jruoho  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32   1.1    jruoho  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33   1.1    jruoho  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34   1.1    jruoho  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35   1.1    jruoho  * POSSIBILITY OF SUCH DAMAGE.
     36   1.1    jruoho  */
     37   1.1    jruoho 
     38   1.1    jruoho /*
     39   1.1    jruoho  * Machine-dependent routines for ACPICA.
     40   1.1    jruoho  */
     41   1.1    jruoho 
     42   1.1    jruoho #include <sys/cdefs.h>
     43  1.25       kre __KERNEL_RCSID(0, "$NetBSD: acpi_machdep.c,v 1.25 2019/03/09 10:04:41 kre Exp $");
     44   1.1    jruoho 
     45   1.1    jruoho #include <sys/param.h>
     46   1.1    jruoho #include <sys/systm.h>
     47   1.2    dyoung #include <sys/bus.h>
     48   1.3     rmind #include <sys/cpu.h>
     49   1.1    jruoho #include <sys/device.h>
     50   1.1    jruoho 
     51   1.1    jruoho #include <uvm/uvm_extern.h>
     52   1.1    jruoho 
     53   1.1    jruoho #include <machine/cpufunc.h>
     54   1.9   msaitoh #include <machine/bootinfo.h>
     55  1.13  jmcneill #include <machine/autoconf.h>
     56   1.1    jruoho 
     57   1.1    jruoho #include <dev/acpi/acpica.h>
     58   1.1    jruoho #include <dev/acpi/acpivar.h>
     59   1.9   msaitoh #include <dev/acpi/acpi_mcfg.h>
     60   1.1    jruoho 
     61   1.1    jruoho #include <machine/acpi_machdep.h>
     62   1.1    jruoho #include <machine/mpbiosvar.h>
     63   1.1    jruoho #include <machine/mpacpi.h>
     64   1.1    jruoho #include <machine/i82093reg.h>
     65   1.1    jruoho #include <machine/i82093var.h>
     66   1.1    jruoho #include <machine/pic.h>
     67   1.1    jruoho 
     68  1.11  christos #include <x86/efi.h>
     69  1.11  christos 
     70   1.1    jruoho #include <dev/pci/pcivar.h>
     71   1.1    jruoho 
     72   1.1    jruoho #include <dev/isa/isareg.h>
     73   1.1    jruoho #include <dev/isa/isavar.h>
     74   1.1    jruoho 
     75   1.1    jruoho #include "ioapic.h"
     76   1.1    jruoho 
     77   1.1    jruoho #include "acpica.h"
     78   1.1    jruoho #include "opt_mpbios.h"
     79   1.1    jruoho #include "opt_acpi.h"
     80  1.13  jmcneill #include "opt_vga.h"
     81  1.13  jmcneill 
     82  1.13  jmcneill /*
     83  1.13  jmcneill  * Default VBIOS reset method for non-HW accelerated VGA drivers.
     84  1.13  jmcneill  */
     85  1.13  jmcneill #ifdef VGA_POST
     86  1.13  jmcneill # define VBIOS_RESET_DEFAULT	2
     87  1.13  jmcneill #else
     88  1.13  jmcneill # define VBIOS_RESET_DEFAULT	1
     89  1.13  jmcneill #endif
     90   1.1    jruoho 
     91   1.1    jruoho ACPI_STATUS
     92   1.1    jruoho acpi_md_OsInitialize(void)
     93   1.1    jruoho {
     94   1.1    jruoho 	return AE_OK;
     95   1.1    jruoho }
     96   1.1    jruoho 
     97   1.1    jruoho ACPI_PHYSICAL_ADDRESS
     98   1.1    jruoho acpi_md_OsGetRootPointer(void)
     99   1.1    jruoho {
    100   1.1    jruoho 	ACPI_PHYSICAL_ADDRESS PhysicalAddress;
    101   1.1    jruoho 	ACPI_STATUS Status;
    102   1.1    jruoho 
    103  1.22    cherry #ifndef XENPV
    104  1.11  christos 	/* If EFI is available, attempt to use it to locate the ACPI table. */
    105  1.11  christos 	if (efi_probe()) {
    106  1.11  christos 		PhysicalAddress = efi_getcfgtblpa(&EFI_UUID_ACPI20);
    107  1.11  christos 		if (!PhysicalAddress)
    108  1.11  christos 			PhysicalAddress = efi_getcfgtblpa(&EFI_UUID_ACPI10);
    109  1.11  christos 		if (PhysicalAddress)
    110  1.11  christos 			return PhysicalAddress;
    111  1.11  christos 	}
    112  1.11  christos 
    113  1.12     htodd #endif
    114   1.1    jruoho 	Status = AcpiFindRootPointer(&PhysicalAddress);
    115   1.1    jruoho 	if (ACPI_FAILURE(Status))
    116   1.1    jruoho 		PhysicalAddress = 0;
    117   1.1    jruoho 
    118   1.1    jruoho 	return PhysicalAddress;
    119   1.1    jruoho }
    120   1.1    jruoho 
    121   1.5       chs struct acpi_md_override {
    122   1.5       chs 	int irq;
    123   1.5       chs 	int pin;
    124   1.5       chs 	int flags;
    125   1.5       chs };
    126   1.5       chs 
    127   1.8     joerg #if NIOAPIC > 0
    128   1.5       chs static ACPI_STATUS
    129   1.5       chs acpi_md_findoverride(ACPI_SUBTABLE_HEADER *hdrp, void *aux)
    130   1.5       chs {
    131   1.5       chs 	ACPI_MADT_INTERRUPT_OVERRIDE *iop;
    132   1.5       chs 	struct acpi_md_override *ovrp;
    133   1.5       chs 
    134   1.5       chs 	if (hdrp->Type != ACPI_MADT_TYPE_INTERRUPT_OVERRIDE) {
    135   1.5       chs 		return AE_OK;
    136   1.5       chs 	}
    137   1.5       chs 
    138   1.5       chs 	iop = (void *)hdrp;
    139   1.5       chs 	ovrp = aux;
    140   1.5       chs 	if (iop->SourceIrq == ovrp->irq) {
    141   1.5       chs 		ovrp->pin = iop->GlobalIrq;
    142   1.5       chs 		ovrp->flags = iop->IntiFlags;
    143   1.5       chs 	}
    144   1.5       chs 	return AE_OK;
    145   1.5       chs }
    146   1.8     joerg #endif
    147   1.5       chs 
    148   1.1    jruoho ACPI_STATUS
    149   1.1    jruoho acpi_md_OsInstallInterruptHandler(uint32_t InterruptNumber,
    150  1.19    bouyer     ACPI_OSD_HANDLER ServiceRoutine, void *Context, void **cookiep,
    151  1.19    bouyer     const char *xname)
    152   1.1    jruoho {
    153   1.1    jruoho 	void *ih;
    154  1.21  jmcneill 
    155  1.21  jmcneill 	ih = acpi_md_intr_establish(InterruptNumber, IPL_TTY, IST_LEVEL,
    156  1.21  jmcneill 	    (int (*)(void *))ServiceRoutine, Context, false, xname);
    157  1.21  jmcneill 	if (ih == NULL)
    158  1.21  jmcneill 		return AE_NO_MEMORY;
    159  1.21  jmcneill 
    160  1.21  jmcneill 	*cookiep = ih;
    161  1.21  jmcneill 
    162  1.21  jmcneill 	return AE_OK;
    163  1.21  jmcneill }
    164  1.21  jmcneill 
    165  1.21  jmcneill void
    166  1.21  jmcneill acpi_md_OsRemoveInterruptHandler(void *cookie)
    167  1.21  jmcneill {
    168  1.21  jmcneill 	intr_disestablish(cookie);
    169  1.21  jmcneill }
    170  1.21  jmcneill 
    171  1.21  jmcneill void *
    172  1.21  jmcneill acpi_md_intr_establish(uint32_t InterruptNumber, int ipl, int type,
    173  1.21  jmcneill     int (*handler)(void *), void *arg, bool mpsafe, const char *xname)
    174  1.21  jmcneill {
    175  1.21  jmcneill 	void *ih;
    176   1.1    jruoho 	struct pic *pic;
    177  1.25       kre 	int irq, pin;
    178   1.1    jruoho #if NIOAPIC > 0
    179   1.1    jruoho 	struct ioapic_softc *sc;
    180   1.5       chs 	struct acpi_md_override ovr;
    181   1.5       chs 	struct mp_intr_map tmpmap, *mip, **mipp = NULL;
    182  1.25       kre 	int redir, mpflags;
    183   1.5       chs 
    184   1.5       chs 	/*
    185   1.5       chs 	 * ACPI interrupts default to level-triggered active-low.
    186   1.5       chs 	 */
    187   1.5       chs 
    188   1.5       chs 	mpflags = (MPS_INTTR_LEVEL << 2) | MPS_INTPO_ACTLO;
    189   1.5       chs 	redir = IOAPIC_REDLO_LEVEL | IOAPIC_REDLO_ACTLO;
    190   1.1    jruoho 
    191   1.5       chs 
    192   1.1    jruoho 	/*
    193   1.5       chs 	 * Apply any MADT override setting.
    194   1.1    jruoho 	 */
    195   1.5       chs 
    196   1.5       chs 	ovr.irq = InterruptNumber;
    197   1.5       chs 	ovr.pin = -1;
    198   1.5       chs 	if (acpi_madt_map() == AE_OK) {
    199   1.5       chs 		acpi_madt_walk(acpi_md_findoverride, &ovr);
    200   1.5       chs 		acpi_madt_unmap();
    201   1.5       chs 	} else {
    202   1.5       chs 		aprint_debug("acpi_madt_map() failed, can't check for MADT override\n");
    203   1.5       chs 	}
    204   1.5       chs 
    205   1.5       chs 	if (ovr.pin != -1) {
    206   1.5       chs 		bool sci = InterruptNumber == AcpiGbl_FADT.SciInterrupt;
    207   1.5       chs 		int polarity = ovr.flags & ACPI_MADT_POLARITY_MASK;
    208   1.5       chs 		int trigger = ovr.flags & ACPI_MADT_TRIGGER_MASK;
    209   1.5       chs 
    210   1.5       chs 		InterruptNumber = ovr.pin;
    211   1.5       chs 		if (polarity == ACPI_MADT_POLARITY_ACTIVE_HIGH ||
    212   1.5       chs 		    (!sci && polarity == ACPI_MADT_POLARITY_CONFORMS)) {
    213   1.5       chs 			mpflags &= ~MPS_INTPO_ACTLO;
    214   1.6       chs 			mpflags |= MPS_INTPO_ACTHI;
    215   1.5       chs 			redir &= ~IOAPIC_REDLO_ACTLO;
    216   1.5       chs 		}
    217   1.5       chs 		if (trigger == ACPI_MADT_TRIGGER_EDGE ||
    218   1.5       chs 		    (!sci && trigger == ACPI_MADT_TRIGGER_CONFORMS)) {
    219   1.5       chs 			type = IST_EDGE;
    220   1.5       chs 			mpflags &= ~(MPS_INTTR_LEVEL << 2);
    221   1.6       chs 			mpflags |= (MPS_INTTR_EDGE << 2);
    222   1.5       chs 			redir &= ~IOAPIC_REDLO_LEVEL;
    223   1.5       chs 		}
    224   1.1    jruoho 	}
    225   1.1    jruoho 
    226   1.1    jruoho 	/*
    227   1.5       chs 	 * If the interrupt is handled via IOAPIC, update the map.
    228   1.5       chs 	 * If the map isn't set up yet, install a temporary one.
    229   1.1    jruoho 	 */
    230   1.1    jruoho 
    231   1.1    jruoho 	sc = ioapic_find_bybase(InterruptNumber);
    232   1.1    jruoho 	if (sc != NULL) {
    233   1.1    jruoho 		pic = &sc->sc_pic;
    234   1.1    jruoho 
    235   1.1    jruoho 		if (pic->pic_type == PIC_IOAPIC) {
    236   1.1    jruoho 			pin = (int)InterruptNumber - pic->pic_vecbase;
    237   1.1    jruoho 			irq = -1;
    238   1.1    jruoho 		} else {
    239   1.1    jruoho 			irq = pin = (int)InterruptNumber;
    240   1.1    jruoho 		}
    241   1.1    jruoho 
    242   1.1    jruoho 		mip = sc->sc_pins[pin].ip_map;
    243   1.1    jruoho 		if (mip) {
    244   1.5       chs 			mip->flags &= ~0xf;
    245   1.5       chs 			mip->flags |= mpflags;
    246   1.5       chs 			mip->redir &= ~(IOAPIC_REDLO_LEVEL |
    247   1.5       chs 					IOAPIC_REDLO_ACTLO);
    248   1.5       chs 			mip->redir |= redir;
    249   1.5       chs 		} else {
    250   1.5       chs 			mipp = &sc->sc_pins[pin].ip_map;
    251   1.5       chs 			*mipp = &tmpmap;
    252   1.5       chs 			tmpmap.redir = redir;
    253   1.6       chs 			tmpmap.flags = mpflags;
    254   1.1    jruoho 		}
    255   1.1    jruoho 	} else
    256   1.1    jruoho #endif
    257   1.1    jruoho 	{
    258   1.1    jruoho 		pic = &i8259_pic;
    259   1.1    jruoho 		irq = pin = (int)InterruptNumber;
    260   1.1    jruoho 	}
    261   1.1    jruoho 
    262  1.21  jmcneill 	ih = intr_establish_xname(irq, pic, pin, type, ipl,
    263  1.21  jmcneill 	    handler, arg, mpsafe, xname);
    264   1.1    jruoho 
    265   1.5       chs #if NIOAPIC > 0
    266   1.5       chs 	if (mipp) {
    267   1.5       chs 		*mipp = NULL;
    268   1.5       chs 	}
    269   1.5       chs #endif
    270   1.5       chs 
    271  1.21  jmcneill 	return ih;
    272  1.20  jmcneill }
    273  1.20  jmcneill 
    274  1.20  jmcneill void
    275  1.20  jmcneill acpi_md_intr_disestablish(void *ih)
    276  1.20  jmcneill {
    277  1.20  jmcneill 	intr_disestablish(ih);
    278  1.20  jmcneill }
    279  1.20  jmcneill 
    280   1.1    jruoho ACPI_STATUS
    281   1.1    jruoho acpi_md_OsMapMemory(ACPI_PHYSICAL_ADDRESS PhysicalAddress,
    282   1.1    jruoho     uint32_t Length, void **LogicalAddress)
    283   1.1    jruoho {
    284   1.1    jruoho 	int rv;
    285   1.1    jruoho 
    286   1.1    jruoho 	rv = _x86_memio_map(x86_bus_space_mem, PhysicalAddress,
    287   1.1    jruoho 	    Length, 0, (bus_space_handle_t *)LogicalAddress);
    288   1.1    jruoho 
    289   1.1    jruoho 	return (rv != 0) ? AE_NO_MEMORY : AE_OK;
    290   1.1    jruoho }
    291   1.1    jruoho 
    292   1.1    jruoho void
    293   1.1    jruoho acpi_md_OsUnmapMemory(void *LogicalAddress, uint32_t Length)
    294   1.1    jruoho {
    295   1.1    jruoho 	(void) _x86_memio_unmap(x86_bus_space_mem,
    296   1.1    jruoho 	    (bus_space_handle_t)LogicalAddress, Length, NULL);
    297   1.1    jruoho }
    298   1.1    jruoho 
    299   1.1    jruoho ACPI_STATUS
    300   1.1    jruoho acpi_md_OsGetPhysicalAddress(void *LogicalAddress,
    301   1.1    jruoho     ACPI_PHYSICAL_ADDRESS *PhysicalAddress)
    302   1.1    jruoho {
    303   1.1    jruoho 	paddr_t pa;
    304   1.1    jruoho 
    305   1.1    jruoho 	if (pmap_extract(pmap_kernel(), (vaddr_t) LogicalAddress, &pa)) {
    306   1.1    jruoho 		*PhysicalAddress = pa;
    307   1.1    jruoho 		return AE_OK;
    308   1.1    jruoho 	}
    309   1.1    jruoho 
    310   1.1    jruoho 	return AE_ERROR;
    311   1.1    jruoho }
    312   1.1    jruoho 
    313   1.1    jruoho BOOLEAN
    314   1.1    jruoho acpi_md_OsReadable(void *Pointer, uint32_t Length)
    315   1.1    jruoho {
    316   1.1    jruoho 	BOOLEAN rv = TRUE;
    317   1.1    jruoho 	vaddr_t sva, eva;
    318   1.1    jruoho 	pt_entry_t *pte;
    319   1.1    jruoho 
    320   1.1    jruoho 	sva = trunc_page((vaddr_t) Pointer);
    321   1.1    jruoho 	eva = round_page((vaddr_t) Pointer + Length);
    322   1.1    jruoho 
    323   1.1    jruoho 	if (sva < VM_MIN_KERNEL_ADDRESS)
    324   1.1    jruoho 		return FALSE;
    325   1.1    jruoho 
    326   1.1    jruoho 	for (; sva < eva; sva += PAGE_SIZE) {
    327   1.1    jruoho 		pte = kvtopte(sva);
    328  1.24      maxv 		if ((*pte & PTE_P) == 0) {
    329   1.1    jruoho 			rv = FALSE;
    330   1.1    jruoho 			break;
    331   1.1    jruoho 		}
    332   1.1    jruoho 	}
    333   1.1    jruoho 
    334   1.1    jruoho 	return rv;
    335   1.1    jruoho }
    336   1.1    jruoho 
    337   1.1    jruoho BOOLEAN
    338   1.1    jruoho acpi_md_OsWritable(void *Pointer, uint32_t Length)
    339   1.1    jruoho {
    340   1.7  jakllsch 	BOOLEAN rv = TRUE;
    341   1.1    jruoho 	vaddr_t sva, eva;
    342   1.1    jruoho 	pt_entry_t *pte;
    343   1.1    jruoho 
    344   1.1    jruoho 	sva = trunc_page((vaddr_t) Pointer);
    345   1.1    jruoho 	eva = round_page((vaddr_t) Pointer + Length);
    346   1.1    jruoho 
    347   1.1    jruoho 	if (sva < VM_MIN_KERNEL_ADDRESS)
    348   1.1    jruoho 		return FALSE;
    349   1.1    jruoho 
    350   1.1    jruoho 	for (; sva < eva; sva += PAGE_SIZE) {
    351   1.1    jruoho 		pte = kvtopte(sva);
    352  1.24      maxv 		if ((*pte & (PTE_P|PTE_W)) != (PTE_P|PTE_W)) {
    353   1.1    jruoho 			rv = FALSE;
    354   1.1    jruoho 			break;
    355   1.1    jruoho 		}
    356   1.1    jruoho 	}
    357   1.1    jruoho 
    358   1.1    jruoho 	return rv;
    359   1.1    jruoho }
    360   1.1    jruoho 
    361   1.1    jruoho void
    362   1.1    jruoho acpi_md_OsDisableInterrupt(void)
    363   1.1    jruoho {
    364   1.1    jruoho 	x86_disable_intr();
    365   1.1    jruoho }
    366   1.1    jruoho 
    367   1.1    jruoho void
    368   1.1    jruoho acpi_md_OsEnableInterrupt(void)
    369   1.1    jruoho {
    370   1.1    jruoho 	x86_enable_intr();
    371   1.1    jruoho }
    372   1.1    jruoho 
    373   1.1    jruoho uint32_t
    374   1.1    jruoho acpi_md_ncpus(void)
    375   1.1    jruoho {
    376   1.3     rmind 	return kcpuset_countset(kcpuset_attached);
    377   1.1    jruoho }
    378   1.1    jruoho 
    379   1.9   msaitoh static bool
    380   1.9   msaitoh acpi_md_mcfg_validate(uint64_t addr, int bus_start, int *bus_end)
    381   1.9   msaitoh {
    382  1.17    nonaka 	struct btinfo_memmap *bim;
    383   1.9   msaitoh 	uint64_t size, mapaddr, mapsize;
    384   1.9   msaitoh 	uint32_t type;
    385  1.17    nonaka 	int i, n;
    386   1.9   msaitoh 
    387  1.22    cherry #ifndef XENPV
    388  1.17    nonaka 	if (lookup_bootinfo(BTINFO_EFIMEMMAP) != NULL)
    389  1.17    nonaka 		bim = efi_get_e820memmap();
    390  1.17    nonaka 	else
    391  1.17    nonaka #endif
    392  1.17    nonaka 		bim = lookup_bootinfo(BTINFO_MEMMAP);
    393  1.17    nonaka 	if (bim == NULL)
    394  1.17    nonaka 		return false;
    395   1.9   msaitoh 
    396  1.10  christos 	size = *bus_end - bus_start + 1;
    397  1.10  christos 	size *= ACPIMCFG_SIZE_PER_BUS;
    398  1.17    nonaka 	for (i = 0; i < bim->num; i++) {
    399  1.17    nonaka 		mapaddr = bim->entry[i].addr;
    400  1.17    nonaka 		mapsize = bim->entry[i].size;
    401  1.17    nonaka 		type = bim->entry[i].type;
    402  1.17    nonaka 
    403  1.17    nonaka 		aprint_debug("MCFG: MEMMAP: 0x%016" PRIx64
    404  1.17    nonaka 		    "-0x%016" PRIx64 ", size=0x%016" PRIx64
    405  1.17    nonaka 		    ", type=%d(%s)\n",
    406  1.17    nonaka 		    mapaddr, mapaddr + mapsize - 1, mapsize, type,
    407  1.17    nonaka 		    (type == BIM_Memory) ?  "Memory" :
    408  1.17    nonaka 		    (type == BIM_Reserved) ?  "Reserved" :
    409  1.17    nonaka 		    (type == BIM_ACPI) ? "ACPI" :
    410  1.17    nonaka 		    (type == BIM_NVS) ? "NVS" :
    411  1.18    nonaka 		    (type == BIM_PMEM) ? "Persistent" :
    412  1.18    nonaka 		    (type == BIM_PRAM) ? "Persistent (Legacy)" :
    413  1.17    nonaka 		    "unknown");
    414   1.9   msaitoh 
    415   1.9   msaitoh 		switch (type) {
    416   1.9   msaitoh 		case BIM_ACPI:
    417   1.9   msaitoh 		case BIM_Reserved:
    418   1.9   msaitoh 			if (addr < mapaddr || addr >= mapaddr + mapsize)
    419   1.9   msaitoh 				break;
    420   1.9   msaitoh 
    421   1.9   msaitoh 			/* full map */
    422   1.9   msaitoh 			if (addr + size <= mapaddr + mapsize)
    423   1.9   msaitoh 				return true;
    424   1.9   msaitoh 
    425   1.9   msaitoh 			/* partial map */
    426   1.9   msaitoh 			n = (mapsize - (addr - mapaddr)) /
    427   1.9   msaitoh 			    ACPIMCFG_SIZE_PER_BUS;
    428   1.9   msaitoh 			/* bus_start == bus_end is not allowed. */
    429   1.9   msaitoh 			if (n > 1) {
    430   1.9   msaitoh 				*bus_end = bus_start + n - 1;
    431   1.9   msaitoh 				return true;
    432   1.9   msaitoh 			}
    433   1.9   msaitoh 			aprint_debug("MCFG: bus %d-%d, address 0x%016" PRIx64
    434   1.9   msaitoh 			    ": invalid size: request 0x%016" PRIx64 ", "
    435   1.9   msaitoh 			    "actual 0x%016" PRIx64 "\n",
    436   1.9   msaitoh 			    bus_start, *bus_end, addr, size, mapsize);
    437   1.9   msaitoh 			break;
    438   1.9   msaitoh 		}
    439   1.9   msaitoh 	}
    440   1.9   msaitoh 	aprint_debug("MCFG: bus %d-%d, address 0x%016" PRIx64 ": "
    441   1.9   msaitoh 	    "no valid region\n", bus_start, *bus_end, addr);
    442   1.9   msaitoh 	return false;
    443   1.9   msaitoh }
    444   1.9   msaitoh 
    445   1.9   msaitoh static uint32_t
    446   1.9   msaitoh acpi_md_mcfg_read(bus_space_tag_t bst, bus_space_handle_t bsh, bus_addr_t addr)
    447   1.9   msaitoh {
    448   1.9   msaitoh 	vaddr_t va = bsh + addr;
    449   1.9   msaitoh 	uint32_t data = (uint32_t) -1;
    450   1.9   msaitoh 
    451   1.9   msaitoh 	KASSERT(bst == x86_bus_space_mem);
    452   1.9   msaitoh 
    453   1.9   msaitoh 	__asm("movl %1, %0" : "=a" (data) : "m" (*(volatile uint32_t *)va));
    454   1.9   msaitoh 
    455   1.9   msaitoh 	return data;
    456   1.9   msaitoh }
    457   1.9   msaitoh 
    458   1.9   msaitoh static void
    459   1.9   msaitoh acpi_md_mcfg_write(bus_space_tag_t bst, bus_space_handle_t bsh, bus_addr_t addr,
    460   1.9   msaitoh     uint32_t data)
    461   1.9   msaitoh {
    462   1.9   msaitoh 	vaddr_t va = bsh + addr;
    463   1.9   msaitoh 
    464   1.9   msaitoh 	KASSERT(bst == x86_bus_space_mem);
    465   1.9   msaitoh 
    466   1.9   msaitoh 	__asm("movl %1, %0" : "=m" (*(volatile uint32_t *)va) : "a" (data));
    467   1.9   msaitoh }
    468   1.9   msaitoh 
    469   1.9   msaitoh static const struct acpimcfg_ops acpi_md_mcfg_ops = {
    470   1.9   msaitoh 	.ao_validate = acpi_md_mcfg_validate,
    471   1.9   msaitoh 
    472   1.9   msaitoh 	.ao_read = acpi_md_mcfg_read,
    473   1.9   msaitoh 	.ao_write = acpi_md_mcfg_write,
    474   1.9   msaitoh };
    475   1.9   msaitoh 
    476   1.1    jruoho void
    477   1.4       chs acpi_md_callback(struct acpi_softc *sc)
    478   1.1    jruoho {
    479   1.1    jruoho #ifdef MPBIOS
    480   1.1    jruoho 	if (!mpbios_scanned)
    481   1.1    jruoho #endif
    482   1.4       chs 	mpacpi_find_interrupts(sc);
    483   1.1    jruoho 
    484  1.22    cherry #ifndef XENPV
    485   1.1    jruoho 	acpi_md_sleep_init();
    486   1.1    jruoho #endif
    487   1.9   msaitoh 
    488   1.9   msaitoh 	acpimcfg_init(x86_bus_space_mem, &acpi_md_mcfg_ops);
    489   1.1    jruoho }
    490  1.13  jmcneill 
    491  1.22    cherry #ifndef XENPV
    492  1.13  jmcneill void
    493  1.13  jmcneill device_acpi_register(device_t dev, void *aux)
    494  1.13  jmcneill {
    495  1.13  jmcneill 	device_t parent;
    496  1.13  jmcneill 	bool device_is_vga, device_is_pci, device_is_isa;
    497  1.13  jmcneill 
    498  1.13  jmcneill 	parent = device_parent(dev);
    499  1.13  jmcneill 	if (parent == NULL)
    500  1.13  jmcneill 		return;
    501  1.13  jmcneill 
    502  1.13  jmcneill 	device_is_vga = device_is_a(dev, "vga") || device_is_a(dev, "genfb");
    503  1.13  jmcneill 	device_is_pci = device_is_a(parent, "pci");
    504  1.13  jmcneill 	device_is_isa = device_is_a(parent, "isa");
    505  1.13  jmcneill 
    506  1.13  jmcneill 	if (device_is_vga && (device_is_pci || device_is_isa)) {
    507  1.13  jmcneill 		extern int acpi_md_vbios_reset;
    508  1.13  jmcneill 
    509  1.13  jmcneill 		acpi_md_vbios_reset = VBIOS_RESET_DEFAULT;
    510  1.13  jmcneill 	}
    511  1.13  jmcneill }
    512  1.13  jmcneill #endif
    513