ce3b873954
Require the state of the configuration enable bits to be OFF assuming that the BIOS left them that way, as it should anyway to avoid bad things to happen. The tests themselves are copied from the previous release, with the exception of CONF1_ENABLE_MSK1 having the LSB set. This bit should be read back as '0', since only DWORD addresses are legal.
498 lines
11 KiB
C
498 lines
11 KiB
C
/**************************************************************************
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**
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** $Id: pcibus.c,v 1.16 1995/10/09 21:56:24 se Exp $
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**
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** pci bus subroutines for i386 architecture.
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**
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** FreeBSD
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**
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**-------------------------------------------------------------------------
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**
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** Copyright (c) 1994 Wolfgang Stanglmeier. All rights reserved.
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**
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** Redistribution and use in source and binary forms, with or without
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** modification, are permitted provided that the following conditions
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** are met:
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** 1. Redistributions of source code must retain the above copyright
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** notice, this list of conditions and the following disclaimer.
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** 2. Redistributions in binary form must reproduce the above copyright
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** notice, this list of conditions and the following disclaimer in the
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** documentation and/or other materials provided with the distribution.
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** 3. The name of the author may not be used to endorse or promote products
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** derived from this software without specific prior written permission.
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**
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** THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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** IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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** OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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** IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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** INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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** NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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** DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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** THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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** (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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** THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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**
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***************************************************************************
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*/
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#include <sys/param.h>
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#include <sys/systm.h>
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#include <sys/kernel.h>
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#include <machine/cpu.h> /* bootverbose */
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#include <i386/isa/icu.h>
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#include <i386/isa/isa.h>
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#include <i386/isa/isa_device.h>
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#include <pci/pcivar.h>
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#include <pci/pcireg.h>
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#include <pci/pcibus.h>
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/*-----------------------------------------------------------------
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**
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** The following functions are provided by the pci bios.
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** They are used only by the pci configuration.
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**
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** pcibus_setup():
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** Probes for a pci system.
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** Sets pci_maxdevice and pci_mechanism.
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**
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** pcibus_tag():
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** Creates a handle for pci configuration space access.
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** This handle is given to the read/write functions.
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**
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** pcibus_ftag():
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** Creates a modified handle.
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**
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** pcibus_read():
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** Read a long word from the pci configuration space.
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** Requires a tag (from pcitag) and the register
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** number (should be a long word alligned one).
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**
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** pcibus_write():
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** Writes a long word to the pci configuration space.
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** Requires a tag (from pcitag), the register number
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** (should be a long word alligned one), and a value.
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**
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** pcibus_regirq():
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** Register an interupt handler for a pci device.
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** Requires a tag (from pcitag), the register number
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** (should be a long word alligned one), and a value.
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**
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**-----------------------------------------------------------------
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*/
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static int
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pcibus_check (void);
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static void
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pcibus_setup (void);
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static pcici_t
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pcibus_tag (u_char bus, u_char device, u_char func);
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static pcici_t
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pcibus_ftag (pcici_t tag, u_char func);
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static u_long
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pcibus_read (pcici_t tag, u_long reg);
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static void
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pcibus_write (pcici_t tag, u_long reg, u_long data);
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static int
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pcibus_ihandler_attach (int irq, void(*ihandler)(), int arg, unsigned* maskp);
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static int
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pcibus_ihandler_detach (int irq, void(*handler)());
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static int
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pcibus_imask_include (int irq, unsigned* maskptr);
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static int
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pcibus_imask_exclude (int irq, unsigned* maskptr);
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struct pcibus i386pci = {
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"pci",
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pcibus_setup,
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pcibus_tag,
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pcibus_ftag,
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pcibus_read,
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pcibus_write,
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ICU_LEN,
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pcibus_ihandler_attach,
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pcibus_ihandler_detach,
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pcibus_imask_include,
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pcibus_imask_exclude,
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};
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/*
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** Announce structure to generic driver
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*/
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DATA_SET (pcibus_set, i386pci);
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/*--------------------------------------------------------------------
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**
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** Determine configuration mode
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**
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**--------------------------------------------------------------------
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*/
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#define CONF1_ADDR_PORT 0x0cf8
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#define CONF1_DATA_PORT 0x0cfc
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#define CONF1_ENABLE 0x80000000ul
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#define CONF1_ENABLE_CHK 0x80000000ul
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#define CONF1_ENABLE_CHK1 0xFF000001ul
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#define CONF1_ENABLE_MSK1 0x80000001ul
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#define CONF1_ENABLE_RES1 0x80000000ul
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#define CONF2_ENABLE_PORT 0x0cf8
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#define CONF2_FORWARD_PORT 0x0cfa
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#define CONF2_ENABLE_CHK 0x0e
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#define CONF2_ENABLE_RES 0x0e
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static int
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pcibus_check (void)
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{
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u_char device;
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if (bootverbose) printf ("pcibus_check:\tdevice ");
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for (device = 0; device < pci_maxdevice; device++) {
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unsigned long id;
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if (bootverbose)
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printf ("%d ", device);
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id = pcibus_read (pcibus_tag (0,device,0), 0);
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if (id != 0xfffffffful) {
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if (bootverbose) printf ("is there (id=%08lx)\n", id);
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return 1;
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}
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}
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if (bootverbose)
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printf ("-- nothing found\n");
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return 0;
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}
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static void
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pcibus_setup (void)
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{
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unsigned long mode1res,oldval1;
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unsigned char mode2res,oldval2;
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oldval1 = inl (CONF1_ADDR_PORT);
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if (bootverbose) {
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printf ("pcibus_setup(1):\tmode1 addr port (0x0cf8) is 0x%08lx\n", oldval1);
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}
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/*---------------------------------------
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** Assume configuration mechanism 1 for now ...
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**---------------------------------------
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*/
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if ((oldval1 & CONF1_ENABLE) == 0) {
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pci_mechanism = 1;
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pci_maxdevice = 32;
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outl (CONF1_ADDR_PORT, CONF1_ENABLE_CHK);
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outb (CONF1_ADDR_PORT +3, 0);
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mode1res = inl (CONF1_ADDR_PORT);
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outl (CONF1_ADDR_PORT, oldval1);
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if (bootverbose)
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printf ("pcibus_setup(1a):\tmode1res=0x%08lx (0x%08lx)\n",
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mode1res, CONF1_ENABLE_CHK);
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if (mode1res) {
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if (pcibus_check())
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return;
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};
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outl (CONF1_ADDR_PORT, CONF1_ENABLE_CHK1);
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mode1res = inl(CONF1_ADDR_PORT);
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outl (CONF1_ADDR_PORT, oldval1);
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if (bootverbose)
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printf ("pcibus_setup(1b):\tmode1res=0x%08lx (0x%08lx)\n",
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mode1res, CONF1_ENABLE_CHK1);
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if ((mode1res & CONF1_ENABLE_MSK1) == CONF1_ENABLE_RES1) {
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if (pcibus_check())
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return;
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};
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}
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/*---------------------------------------
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** Try configuration mechanism 2 ...
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**---------------------------------------
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*/
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oldval2 = inb (CONF2_ENABLE_PORT);
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if (bootverbose) {
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printf ("pcibus_setup(2):\tmode 2 enable port (0x0cf8) is 0x%02x\n", oldval2);
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}
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if ((oldval2 & 0xf0) == 0) {
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pci_mechanism = 2;
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pci_maxdevice = 16;
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outb (CONF2_ENABLE_PORT, CONF2_ENABLE_CHK);
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mode2res = inb(CONF2_ENABLE_PORT);
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outb (CONF2_ENABLE_PORT, oldval2);
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if (bootverbose)
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printf ("pcibus_setup(2a):\tmode2res=0x%02x (0x%02x)\n",
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mode2res, CONF2_ENABLE_CHK);
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if (mode2res == CONF2_ENABLE_RES) {
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if (bootverbose)
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printf ("pcibus_setup(2a):\tnow trying mechanism 2\n");
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if (pcibus_check())
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return;
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}
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}
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/*---------------------------------------
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** No PCI bus host bridge found
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**---------------------------------------
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*/
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pci_mechanism = 0;
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pci_maxdevice = 0;
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}
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/*--------------------------------------------------------------------
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**
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** Build a pcitag from bus, device and function number
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**
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**--------------------------------------------------------------------
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*/
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static pcici_t
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pcibus_tag (unsigned char bus, unsigned char device, unsigned char func)
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{
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pcici_t tag;
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tag.cfg1 = 0;
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if (func >= 8) return tag;
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switch (pci_mechanism) {
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case 1:
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if (device < 32) {
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tag.cfg1 = CONF1_ENABLE
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| (((u_long) bus ) << 16ul)
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| (((u_long) device) << 11ul)
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| (((u_long) func ) << 8ul);
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}
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break;
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case 2:
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if (device < 16) {
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tag.cfg2.port = 0xc000 | (device << 8ul);
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tag.cfg2.enable = 0xf0 | (func << 1ul);
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tag.cfg2.forward = bus;
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}
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break;
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};
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return tag;
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}
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static pcici_t
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pcibus_ftag (pcici_t tag, u_char func)
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{
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switch (pci_mechanism) {
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case 1:
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tag.cfg1 &= ~0x700ul;
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tag.cfg1 |= (((u_long) func) << 8ul);
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break;
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case 2:
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tag.cfg2.enable = 0xf0 | (func << 1ul);
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break;
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};
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return tag;
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}
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/*--------------------------------------------------------------------
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**
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** Read register from configuration space.
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**
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**--------------------------------------------------------------------
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*/
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static u_long
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pcibus_read (pcici_t tag, u_long reg)
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{
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u_long addr, data = 0;
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if (!tag.cfg1) return (0xfffffffful);
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switch (pci_mechanism) {
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case 1:
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addr = tag.cfg1 | (reg & 0xfc);
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#ifdef PCI_DEBUG
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printf ("pci_conf_read(1): addr=%x ", addr);
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#endif
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outl (CONF1_ADDR_PORT, addr);
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data = inl (CONF1_DATA_PORT);
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outl (CONF1_ADDR_PORT, 0 );
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break;
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case 2:
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addr = tag.cfg2.port | (reg & 0xfc);
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#ifdef PCI_DEBUG
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printf ("pci_conf_read(2): addr=%x ", addr);
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#endif
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outb (CONF2_ENABLE_PORT , tag.cfg2.enable );
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outb (CONF2_FORWARD_PORT, tag.cfg2.forward);
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data = inl ((u_short) addr);
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outb (CONF2_ENABLE_PORT, 0);
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outb (CONF2_FORWARD_PORT, 0);
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break;
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};
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#ifdef PCI_DEBUG
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printf ("data=%x\n", data);
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#endif
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return (data);
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}
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/*--------------------------------------------------------------------
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**
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** Write register into configuration space.
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**
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**--------------------------------------------------------------------
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*/
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static void
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pcibus_write (pcici_t tag, u_long reg, u_long data)
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{
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u_long addr;
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if (!tag.cfg1) return;
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switch (pci_mechanism) {
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case 1:
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addr = tag.cfg1 | (reg & 0xfc);
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#ifdef PCI_DEBUG
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printf ("pci_conf_write(1): addr=%x data=%x\n",
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addr, data);
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#endif
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outl (CONF1_ADDR_PORT, addr);
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outl (CONF1_DATA_PORT, data);
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outl (CONF1_ADDR_PORT, 0 );
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break;
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case 2:
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addr = tag.cfg2.port | (reg & 0xfc);
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#ifdef PCI_DEBUG
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printf ("pci_conf_write(2): addr=%x data=%x\n",
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addr, data);
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#endif
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outb (CONF2_ENABLE_PORT, tag.cfg2.enable);
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outb (CONF2_FORWARD_PORT, tag.cfg2.forward);
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outl ((u_short) addr, data);
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outb (CONF2_ENABLE_PORT, 0);
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outb (CONF2_FORWARD_PORT, 0);
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break;
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};
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}
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/*-----------------------------------------------------------------------
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**
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** Register an interupt handler for a pci device.
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**
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**-----------------------------------------------------------------------
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*/
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static int
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pcibus_ihandler_attach (int irq, void(*func)(), int arg, unsigned * maskptr)
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{
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int result;
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result = register_intr(
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irq, /* isa irq */
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0, /* deviced?? */
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0, /* flags? */
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(inthand2_t*) func, /* handler */
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maskptr, /* mask pointer */
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arg); /* handler arg */
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if (result) {
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printf ("@@@ pcibus_ihandler_attach: result=%d\n", result);
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return (result);
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};
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update_intr_masks();
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INTREN ((1ul<<irq));
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return (0);
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}
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static int
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pcibus_ihandler_detach (int irq, void(*func)())
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{
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int result;
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INTRDIS ((1ul<<irq));
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result = unregister_intr (irq, (inthand2_t*) func);
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if (result)
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printf ("@@@ pcibus_ihandler_detach: result=%d\n", result);
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update_intr_masks();
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return (result);
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}
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static int
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pcibus_imask_include (int irq, unsigned* maskptr)
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{
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unsigned mask;
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if (!maskptr) return (0);
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mask = 1ul << irq;
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if (*maskptr & mask)
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return (-1);
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INTRMASK (*maskptr, mask);
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update_intr_masks();
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return (0);
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}
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static int
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pcibus_imask_exclude (int irq, unsigned* maskptr)
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{
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unsigned mask;
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if (!maskptr) return (0);
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mask = 1ul << irq;
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if (! (*maskptr & mask))
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return (-1);
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*maskptr &= ~mask;
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update_intr_masks();
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return (0);
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}
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