1000 lines
31 KiB
C
1000 lines
31 KiB
C
/* $NetBSD: bus.h,v 1.15 2007/03/04 06:00:55 christos Exp $ */
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/*-
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* Copyright (c) 1996, 1997, 1998, 2001 The NetBSD Foundation, Inc.
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* All rights reserved.
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*
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* This code is derived from software contributed to The NetBSD Foundation
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* by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
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* NASA Ames Research Center.
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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. All advertising materials mentioning features or use of this software
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* must display the following acknowledgement:
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* This product includes software developed by the NetBSD
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* Foundation, Inc. and its contributors.
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* 4. Neither the name of The NetBSD Foundation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
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* ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
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* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
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* BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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/*
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* Copyright (c) 1996 Charles M. Hannum. All rights reserved.
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* Copyright (c) 1996 Christopher G. Demetriou. 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. All advertising materials mentioning features or use of this software
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* must display the following acknowledgement:
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* This product includes software developed by Christopher G. Demetriou
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* for the NetBSD Project.
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* 4. 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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#ifndef _SUN68K_BUS_H_
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#define _SUN68K_BUS_H_
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#define SUN68K_BUS_SPACE 0
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/*
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* Bus address and size types
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*/
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typedef u_long bus_space_handle_t;
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typedef u_long bus_type_t;
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typedef u_long bus_addr_t;
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typedef u_long bus_size_t;
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#define BUS_ADDR_PADDR(x) ((x) & 0xffffffff)
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/*
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* Access methods for bus resources and address space.
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*/
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typedef struct sun68k_bus_space_tag *bus_space_tag_t;
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struct sun68k_bus_space_tag {
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void *cookie;
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bus_space_tag_t parent;
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int (*sun68k_bus_map)(
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bus_space_tag_t,
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bus_type_t,
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bus_addr_t,
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bus_size_t,
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int, /*flags*/
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vaddr_t, /*preferred vaddr*/
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bus_space_handle_t *);
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int (*sun68k_bus_unmap)(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t);
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int (*sun68k_bus_subregion)(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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bus_size_t, /*size*/
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bus_space_handle_t *);
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void (*sun68k_bus_barrier)(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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bus_size_t, /*size*/
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int); /*flags*/
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paddr_t (*sun68k_bus_mmap)(
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bus_space_tag_t,
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bus_type_t, /**/
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bus_addr_t, /**/
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off_t, /*offset*/
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int, /*prot*/
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int); /*flags*/
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void *(*sun68k_intr_establish)(
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bus_space_tag_t,
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int, /*bus-specific intr*/
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int, /*device class level,
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see machine/intr.h*/
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int, /*flags*/
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int (*)(void *), /*handler*/
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void *); /*handler arg*/
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int (*sun68k_bus_peek)(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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size_t, /*probe size*/
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void *); /*result ptr*/
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int (*sun68k_bus_poke)(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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size_t, /*probe size*/
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uint32_t); /*value*/
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};
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#if 0
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/*
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* The following macro could be used to generate the bus_space*() functions
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* but it uses a gcc extension and is ANSI-only.
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#define PROTO_bus_space_xxx (bus_space_tag_t t, ...)
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#define RETURNTYPE_bus_space_xxx void *
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#define BUSFUN(name, returntype, t, args...) \
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__inline RETURNTYPE_##name \
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bus_##name PROTO_##name \
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{ \
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while (t->sun68k_##name == NULL) \
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t = t->parent; \
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return (*(t)->sun68k_##name)(t, args); \
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}
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*/
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#endif
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/*
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* Bus space function prototypes.
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*/
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static int bus_space_map(
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bus_space_tag_t,
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bus_addr_t,
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bus_size_t,
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int, /*flags*/
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bus_space_handle_t *);
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static int bus_space_map2(
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bus_space_tag_t,
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bus_type_t,
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bus_addr_t,
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bus_size_t,
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int, /*flags*/
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vaddr_t, /*preferred vaddr*/
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bus_space_handle_t *);
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static int bus_space_unmap(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t);
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static int bus_space_subregion(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t,
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bus_size_t,
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bus_space_handle_t *);
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static void bus_space_barrier(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t,
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bus_size_t,
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int);
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static paddr_t bus_space_mmap(
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bus_space_tag_t,
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bus_addr_t, /**/
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off_t, /*offset*/
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int, /*prot*/
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int); /*flags*/
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static paddr_t bus_space_mmap2(
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bus_space_tag_t,
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bus_type_t,
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bus_addr_t, /**/
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off_t, /*offset*/
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int, /*prot*/
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int); /*flags*/
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static void *bus_intr_establish(
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bus_space_tag_t,
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int, /*bus-specific intr*/
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int, /*device class level,
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see machine/intr.h*/
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int, /*flags*/
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int (*)(void *), /*handler*/
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void *); /*handler arg*/
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static int _bus_space_peek(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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size_t, /*probe size*/
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void *); /*result ptr*/
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static int _bus_space_poke(
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bus_space_tag_t,
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bus_space_handle_t,
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bus_size_t, /*offset*/
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size_t, /*probe size*/
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uint32_t); /*value*/
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/* This macro finds the first "upstream" implementation of method `f' */
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#define _BS_CALL(t,f) \
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while (t->f == NULL) \
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t = t->parent; \
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return (*(t)->f)
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__inline int
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bus_space_map(bus_space_tag_t t, bus_addr_t a, bus_size_t s, int f,
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bus_space_handle_t *hp)
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{
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_BS_CALL(t, sun68k_bus_map)((t), 0, (a), (s), (f), 0, (hp));
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}
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__inline int
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bus_space_map2(bus_space_tag_t t, bus_type_t bt, bus_addr_t a, bus_size_t s,
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int f, vaddr_t v, bus_space_handle_t *hp)
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{
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_BS_CALL(t, sun68k_bus_map)(t, bt, a, s, f, v, hp);
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}
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__inline int
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bus_space_unmap(bus_space_tag_t t, bus_space_handle_t h, bus_size_t s)
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{
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_BS_CALL(t, sun68k_bus_unmap)(t, h, s);
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}
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__inline int
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bus_space_subregion(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
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bus_size_t s, bus_space_handle_t *hp)
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{
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_BS_CALL(t, sun68k_bus_subregion)(t, h, o, s, hp);
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}
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__inline paddr_t
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bus_space_mmap(bus_space_tag_t t, bus_addr_t a, off_t o, int p, int f)
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{
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_BS_CALL(t, sun68k_bus_mmap)(t, 0, a, o, p, f);
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}
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__inline paddr_t
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bus_space_mmap2(bus_space_tag_t t, bus_type_t bt, bus_addr_t a, off_t o, int p,
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int f)
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{
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_BS_CALL(t, sun68k_bus_mmap)(t, bt, a, o, p, f);
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}
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__inline void *
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bus_intr_establish(bus_space_tag_t t, int p, int l, int f, int (*h)(void *),
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void *a)
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{
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_BS_CALL(t, sun68k_intr_establish)(t, p, l, f, h, a);
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}
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__inline void
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bus_space_barrier(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
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bus_size_t s, int f)
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{
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_BS_CALL(t, sun68k_bus_barrier)(t, h, o, s, f);
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}
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__inline int
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_bus_space_peek(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o, size_t s,
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void *vp)
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{
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_BS_CALL(t, sun68k_bus_peek)(t, h, o, s, vp);
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}
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__inline int
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_bus_space_poke(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o, size_t s,
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uint32_t v)
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{
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_BS_CALL(t, sun68k_bus_poke)(t, h, o, s, v);
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}
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#if 0
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int bus_space_alloc(bus_space_tag_t, bus_addr_t, bus_addr_t, bus_size_t,
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bus_size_t, bus_size_t, int, bus_addr_t *, bus_space_handle_t *);
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void bus_space_free(bus_space_tag_t, bus_space_handle_t, bus_size_t);
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#endif
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/*
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* void *bus_space_vaddr(bus_space_tag_t, bus_space_handle_t);
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*
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* Get the kernel virtual address for the mapped bus space.
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* Only allowed for regions mapped with BUS_SPACE_MAP_LINEAR.
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* (XXX not enforced)
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*/
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#define bus_space_vaddr(t, h) ((void)(t), (void *)(h))
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/* flags for bus space map functions */
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#define BUS_SPACE_MAP_CACHEABLE 0x0001
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#define BUS_SPACE_MAP_LINEAR 0x0002
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#define BUS_SPACE_MAP_PREFETCHABLE 0x0004
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#define BUS_SPACE_MAP_BUS1 0x0100 /* placeholders for bus functions... */
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#define BUS_SPACE_MAP_BUS2 0x0200
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#define BUS_SPACE_MAP_BUS3 0x0400
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#define BUS_SPACE_MAP_BUS4 0x0800
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/* Internal flag: try to find and use a PROM maping for the device. */
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#define _SUN68K_BUS_MAP_USE_PROM BUS_SPACE_MAP_BUS1
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/* flags for intr_establish() */
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#define BUS_INTR_ESTABLISH_FASTTRAP 1
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#define BUS_INTR_ESTABLISH_SOFTINTR 2
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/* flags for bus_space_barrier() */
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#define BUS_SPACE_BARRIER_READ 0x01 /* force read barrier */
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#define BUS_SPACE_BARRIER_WRITE 0x02 /* force write barrier */
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/*
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* int bus_space_peek_N(bus_space_tag_t tag,
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* bus_space_handle_t bsh, bus_size_t offset, u_intN_t *valuep);
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*
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* Cautiously read 1, 2, 4 or 8 byte quantity from bus space described
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* by tag/handle/offset.
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* If no hardware responds to the read access, the function returns a
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* non-zero value. Otherwise the value read is placed in `valuep'.
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*/
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#define bus_space_peek_1(t, h, o, vp) \
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_bus_space_peek(t, h, o, sizeof(uint8_t), (void *)vp)
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#define bus_space_peek_2(t, h, o, vp) \
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_bus_space_peek(t, h, o, sizeof(uint16_t), (void *)vp)
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#define bus_space_peek_4(t, h, o, vp) \
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_bus_space_peek(t, h, o, sizeof(uint32_t), (void *)vp)
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/*
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* int bus_space_poke_N(bus_space_tag_t tag,
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* bus_space_handle_t bsh, bus_size_t offset, uintN_t value);
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*
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* Cautiously write 1, 2, 4 or 8 byte quantity to bus space described
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* by tag/handle/offset.
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* If no hardware responds to the write access, the function returns a
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* non-zero value.
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*/
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#define bus_space_poke_1(t, h, o, v) \
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_bus_space_poke(t, h, o, sizeof(uint8_t), v)
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#define bus_space_poke_2(t, h, o, v) \
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_bus_space_poke(t, h, o, sizeof(uint16_t), v)
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#define bus_space_poke_4(t, h, o, v) \
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_bus_space_poke(t, h, o, sizeof(uint32_t), v)
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/*
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* uintN_t bus_space_read_N(bus_space_tag_t tag,
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* bus_space_handle_t bsh, bus_size_t offset);
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*
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* Read a 1, 2, 4, or 8 byte quantity from bus space
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* described by tag/handle/offset.
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*/
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#define bus_space_read_1(t, h, o) \
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((void)t, *(volatile uint8_t *)((h) + (o)))
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#define bus_space_read_2(t, h, o) \
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((void)t, *(volatile uint16_t *)((h) + (o)))
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#define bus_space_read_4(t, h, o) \
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((void)t, *(volatile uint32_t *)((h) + (o)))
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#define bus_space_read_8(t, h, o) \
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((void)t, *(volatile uint64_t *)((h) + (o)))
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/*
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* void bus_space_write_N(bus_space_tag_t tag,
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* bus_space_handle_t bsh, bus_size_t offset,
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* uintN_t value);
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*
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* Write the 1, 2, 4, or 8 byte value `value' to bus space
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* described by tag/handle/offset.
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*/
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#define bus_space_write_1(t, h, o, v) do { \
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((void)t, (void)(*(volatile uint8_t *)((h) + (o)) = (v))); \
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} while (0)
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#define bus_space_write_2(t, h, o, v) do { \
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((void)t, (void)(*(volatile uint16_t *)((h) + (o)) = (v))); \
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} while (0)
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#define bus_space_write_4(t, h, o, v) do { \
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((void)t, (void)(*(volatile uint32_t *)((h) + (o)) = (v))); \
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} while (0)
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#define bus_space_write_8(t, h, o, v) do { \
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((void)t, (void)(*(volatile uint64_t *)((h) + (o)) = (v))); \
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} while (0)
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/*
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* void bus_space_read_multi_N(bus_space_tag_t tag,
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* bus_space_handle_t bsh, bus_size_t offset,
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* uintN_t *addr, bus_size_t count);
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*
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* Read `count' 1, 2, 4, or 8 byte quantities from bus space
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* described by tag/handle/offset and copy into buffer provided.
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*/
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void bus_space_read_multi_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
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uint8_t *, bus_size_t);
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void bus_space_read_multi_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
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uint16_t *, bus_size_t);
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void bus_space_read_multi_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
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uint32_t *, bus_size_t);
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void bus_space_read_multi_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
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uint64_t *, bus_size_t);
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extern __inline void
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bus_space_read_multi_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
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uint8_t *a, bus_size_t c)
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{
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while (c-- > 0)
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*a++ = bus_space_read_1(t, h, o);
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}
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extern __inline void
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bus_space_read_multi_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
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uint16_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
*a++ = bus_space_read_2(t, h, o);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_read_multi_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint32_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
*a++ = bus_space_read_4(t, h, o);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_read_multi_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint64_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
*a++ = bus_space_read_8(t, h, o);
|
|
}
|
|
|
|
|
|
/*
|
|
* void bus_space_write_multi_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t offset,
|
|
* const u_intN_t *addr, bus_size_t count);
|
|
*
|
|
* Write `count' 1, 2, 4, or 8 byte quantities from the buffer
|
|
* provided to bus space described by tag/handle/offset.
|
|
*/
|
|
void bus_space_write_multi_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint8_t *, bus_size_t);
|
|
void bus_space_write_multi_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint16_t *, bus_size_t);
|
|
void bus_space_write_multi_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint32_t *, bus_size_t);
|
|
void bus_space_write_multi_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint64_t *, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_write_multi_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint8_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_1(t, h, o, *a++);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_multi_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint16_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_2(t, h, o, *a++);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_multi_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint32_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_4(t, h, o, *a++);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_multi_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint64_t *a, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_8(t, h, o, *a++);
|
|
}
|
|
|
|
/*
|
|
* void bus_space_set_multi_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t offset, uintN_t val,
|
|
* bus_size_t count);
|
|
*
|
|
* Write the 1, 2, 4, or 8 byte value `val' to bus space described
|
|
* by tag/handle/offset `count' times.
|
|
*/
|
|
void bus_space_set_multi_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint8_t, bus_size_t);
|
|
void bus_space_set_multi_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint16_t, bus_size_t);
|
|
void bus_space_set_multi_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint32_t, bus_size_t);
|
|
void bus_space_set_multi_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint64_t, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_set_multi_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint8_t v, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_1(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_multi_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint16_t v, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_2(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_multi_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint32_t v, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_4(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_multi_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint64_t v, bus_size_t c)
|
|
{
|
|
while (c-- > 0)
|
|
bus_space_write_8(t, h, o, v);
|
|
}
|
|
|
|
|
|
/*
|
|
* void bus_space_read_region_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t off,
|
|
* uintN_t *addr, bus_size_t count);
|
|
*
|
|
*/
|
|
void bus_space_read_region_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
uint8_t *, bus_size_t);
|
|
void bus_space_read_region_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
uint16_t *, bus_size_t);
|
|
void bus_space_read_region_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
uint32_t *, bus_size_t);
|
|
void bus_space_read_region_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
uint64_t *, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_read_region_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint8_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o++)
|
|
*a = bus_space_read_1(t, h, o);
|
|
}
|
|
extern __inline void
|
|
bus_space_read_region_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint16_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 2)
|
|
*a = bus_space_read_2(t, h, o);
|
|
}
|
|
extern __inline void
|
|
bus_space_read_region_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint32_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 4)
|
|
*a = bus_space_read_4(t, h, o);
|
|
}
|
|
extern __inline void
|
|
bus_space_read_region_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
uint64_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 8)
|
|
*a = bus_space_read_8(t, h, o);
|
|
}
|
|
|
|
/*
|
|
* void bus_space_write_region_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t off,
|
|
* uintN_t *addr, bus_size_t count);
|
|
*
|
|
*/
|
|
void bus_space_write_region_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint8_t *, bus_size_t);
|
|
void bus_space_write_region_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint16_t *, bus_size_t);
|
|
void bus_space_write_region_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint32_t *, bus_size_t);
|
|
void bus_space_write_region_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint64_t *, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_write_region_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint8_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o++)
|
|
bus_space_write_1(t, h, o, *a);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_region_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint16_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 2)
|
|
bus_space_write_2(t, h, o, *a);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_region_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint32_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 4)
|
|
bus_space_write_4(t, h, o, *a);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_write_region_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint64_t *a, bus_size_t c)
|
|
{
|
|
for (; c; a++, c--, o += 8)
|
|
bus_space_write_8(t, h, o, *a);
|
|
}
|
|
|
|
|
|
/*
|
|
* void bus_space_set_region_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t off,
|
|
* uintN_t *addr, bus_size_t count);
|
|
*
|
|
*/
|
|
void bus_space_set_region_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint8_t, bus_size_t);
|
|
void bus_space_set_region_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint16_t, bus_size_t);
|
|
void bus_space_set_region_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint32_t, bus_size_t);
|
|
void bus_space_set_region_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
const uint64_t, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_set_region_1(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint8_t v, bus_size_t c)
|
|
{
|
|
for (; c; c--, o++)
|
|
bus_space_write_1(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_region_2(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint16_t v, bus_size_t c)
|
|
{
|
|
for (; c; c--, o += 2)
|
|
bus_space_write_2(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_region_4(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint32_t v, bus_size_t c)
|
|
{
|
|
for (; c; c--, o += 4)
|
|
bus_space_write_4(t, h, o, v);
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_set_region_8(bus_space_tag_t t, bus_space_handle_t h, bus_size_t o,
|
|
const uint64_t v, bus_size_t c)
|
|
{
|
|
for (; c; c--, o += 8)
|
|
bus_space_write_8(t, h, o, v);
|
|
}
|
|
|
|
|
|
/*
|
|
* void bus_space_copy_region_N(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh1, bus_size_t off1,
|
|
* bus_space_handle_t bsh2, bus_size_t off2,
|
|
* bus_size_t count);
|
|
*
|
|
* Copy `count' 1, 2, 4, or 8 byte values from bus space starting
|
|
* at tag/bsh1/off1 to bus space starting at tag/bsh2/off2.
|
|
*/
|
|
void bus_space_copy_region_1(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
bus_space_handle_t, bus_size_t, bus_size_t);
|
|
void bus_space_copy_region_2(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
bus_space_handle_t, bus_size_t, bus_size_t);
|
|
void bus_space_copy_region_4(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
bus_space_handle_t, bus_size_t, bus_size_t);
|
|
void bus_space_copy_region_8(bus_space_tag_t, bus_space_handle_t, bus_size_t,
|
|
bus_space_handle_t, bus_size_t, bus_size_t);
|
|
|
|
extern __inline void
|
|
bus_space_copy_region_1(bus_space_tag_t t, bus_space_handle_t h1, bus_size_t o1,
|
|
bus_space_handle_t h2, bus_size_t o2, bus_size_t c)
|
|
{
|
|
for (; c; c--, o1++, o2++)
|
|
bus_space_write_1(t, h1, o1, bus_space_read_1(t, h2, o2));
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_copy_region_2(bus_space_tag_t t, bus_space_handle_t h1, bus_size_t o1,
|
|
bus_space_handle_t h2, bus_size_t o2, bus_size_t c)
|
|
{
|
|
for (; c; c--, o1 += 2, o2 += 2)
|
|
bus_space_write_2(t, h1, o1, bus_space_read_2(t, h2, o2));
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_copy_region_4(bus_space_tag_t t, bus_space_handle_t h1, bus_size_t o1,
|
|
bus_space_handle_t h2, bus_size_t o2, bus_size_t c)
|
|
{
|
|
for (; c; c--, o1 += 4, o2 += 4)
|
|
bus_space_write_4(t, h1, o1, bus_space_read_4(t, h2, o2));
|
|
}
|
|
|
|
extern __inline void
|
|
bus_space_copy_region_8(bus_space_tag_t t, bus_space_handle_t h1, bus_size_t o1,
|
|
bus_space_handle_t h2, bus_size_t o2, bus_size_t c)
|
|
{
|
|
for (; c; c--, o1 += 8, o2 += 8)
|
|
bus_space_write_8(t, h1, o1, bus_space_read_8(t, h2, o2));
|
|
}
|
|
|
|
/*
|
|
* void bus_space_copyin(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t off,
|
|
* void *addr, bus_size_t count);
|
|
*
|
|
* Copy `count' bytes from bus space starting at tag/bsh/off
|
|
* to kernel memory at addr using the most optimized transfer
|
|
* possible for the bus.
|
|
*/
|
|
|
|
#define bus_space_copyin(t, h, o, a, c) \
|
|
((void)t, w16copy((uint8_t *)((h) + (o)), (a), (c)))
|
|
|
|
/*
|
|
* void bus_space_copyout(bus_space_tag_t tag,
|
|
* bus_space_handle_t bsh, bus_size_t off,
|
|
* const void *addr, bus_size_t count);
|
|
*
|
|
* Copy `count' bytes to bus space starting at tag/bsh/off
|
|
* from kernel memory at addr using the most optimized transfer
|
|
* possible for the bus.
|
|
*/
|
|
|
|
#define bus_space_copyout(t, h, o, a, c) \
|
|
((void)t, w16copy((a), (uint8_t *)((h) + (o)), (c)))
|
|
|
|
#define BUS_SPACE_ALIGNED_POINTER(p, t) ALIGNED_POINTER(p, t)
|
|
|
|
int find_prom_map(paddr_t, bus_type_t, int, vaddr_t *);
|
|
|
|
/*--------------------------------*/
|
|
|
|
/*
|
|
* Flags used in various bus DMA methods.
|
|
*/
|
|
#define BUS_DMA_WAITOK 0x000 /* safe to sleep (pseudo-flag) */
|
|
#define BUS_DMA_NOWAIT 0x001 /* not safe to sleep */
|
|
#define BUS_DMA_ALLOCNOW 0x002 /* perform resource allocation now */
|
|
#define BUS_DMA_COHERENT 0x004 /* hint: map memory DMA coherent */
|
|
#define BUS_DMA_BUS1 0x010 /* placeholders for bus functions... */
|
|
#define BUS_DMA_BUS2 0x020
|
|
#define BUS_DMA_BUS3 0x040
|
|
#define BUS_DMA_BUS4 0x080
|
|
#define BUS_DMA_READ 0x100 /* mapping is device -> memory only */
|
|
#define BUS_DMA_WRITE 0x200 /* mapping is memory -> device only */
|
|
#define BUS_DMA_NOCACHE 0x400 /* hint: map non-cached memory */
|
|
|
|
/* For devices that have a 24-bit address space */
|
|
#define BUS_DMA_24BIT BUS_DMA_BUS1
|
|
|
|
/* Internal flag: current DVMA address is equal to the KVA buffer address */
|
|
#define _BUS_DMA_DIRECTMAP BUS_DMA_BUS2
|
|
|
|
/*
|
|
* Internal flag: current DVMA address has been double-mapped by hand
|
|
* to the KVA buffer address (without the pmap's help).
|
|
*/
|
|
#define _BUS_DMA_NOPMAP BUS_DMA_BUS3
|
|
|
|
/* Forwards needed by prototypes below. */
|
|
struct mbuf;
|
|
struct uio;
|
|
|
|
/*
|
|
* Operations performed by bus_dmamap_sync().
|
|
*/
|
|
#define BUS_DMASYNC_PREREAD 0x01 /* pre-read synchronization */
|
|
#define BUS_DMASYNC_POSTREAD 0x02 /* post-read synchronization */
|
|
#define BUS_DMASYNC_PREWRITE 0x04 /* pre-write synchronization */
|
|
#define BUS_DMASYNC_POSTWRITE 0x08 /* post-write synchronization */
|
|
|
|
typedef struct sun68k_bus_dma_tag *bus_dma_tag_t;
|
|
typedef struct sun68k_bus_dmamap *bus_dmamap_t;
|
|
|
|
#define BUS_DMA_TAG_VALID(t) ((t) != NULL)
|
|
|
|
/*
|
|
* bus_dma_segment_t
|
|
*
|
|
* Describes a single contiguous DMA transaction. Values
|
|
* are suitable for programming into DMA registers.
|
|
*/
|
|
struct sun68k_bus_dma_segment {
|
|
bus_addr_t ds_addr; /* DVMA address */
|
|
bus_size_t ds_len; /* length of transfer */
|
|
bus_size_t _ds_sgsize; /* size of allocated DVMA segment */
|
|
void *_ds_mlist; /* page list when dmamem_alloc'ed */
|
|
vaddr_t _ds_va; /* VA when dmamem_map'ed */
|
|
};
|
|
typedef struct sun68k_bus_dma_segment bus_dma_segment_t;
|
|
|
|
|
|
/*
|
|
* bus_dma_tag_t
|
|
*
|
|
* A machine-dependent opaque type describing the implementation of
|
|
* DMA for a given bus.
|
|
*/
|
|
struct sun68k_bus_dma_tag {
|
|
void *_cookie; /* cookie used in the guts */
|
|
|
|
/*
|
|
* DMA mapping methods.
|
|
*/
|
|
int (*_dmamap_create)(bus_dma_tag_t, bus_size_t, int, bus_size_t,
|
|
bus_size_t, int, bus_dmamap_t *);
|
|
void (*_dmamap_destroy)(bus_dma_tag_t, bus_dmamap_t);
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int (*_dmamap_load)(bus_dma_tag_t, bus_dmamap_t, void *, bus_size_t,
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|
struct proc *, int);
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|
int (*_dmamap_load_mbuf)(bus_dma_tag_t, bus_dmamap_t, struct mbuf *,
|
|
int);
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|
int (*_dmamap_load_uio)(bus_dma_tag_t, bus_dmamap_t, struct uio *,
|
|
int);
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|
int (*_dmamap_load_raw)(bus_dma_tag_t, bus_dmamap_t,
|
|
bus_dma_segment_t *, int, bus_size_t, int);
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|
void (*_dmamap_unload)(bus_dma_tag_t, bus_dmamap_t);
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|
void (*_dmamap_sync)(bus_dma_tag_t, bus_dmamap_t, bus_addr_t,
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|
bus_size_t, int);
|
|
|
|
/*
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|
* DMA memory utility functions.
|
|
*/
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|
int (*_dmamem_alloc)(bus_dma_tag_t, bus_size_t, bus_size_t,
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|
bus_size_t, bus_dma_segment_t *, int, int *, int);
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|
void (*_dmamem_free)(bus_dma_tag_t, bus_dma_segment_t *, int);
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|
int (*_dmamem_map)(bus_dma_tag_t, bus_dma_segment_t *, int, size_t,
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|
void **, int);
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|
void (*_dmamem_unmap)(bus_dma_tag_t, void *, size_t);
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|
paddr_t (*_dmamem_mmap)(bus_dma_tag_t, bus_dma_segment_t *, int, off_t,
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|
int, int);
|
|
};
|
|
|
|
#define bus_dmamap_create(t, s, n, m, b, f, p) \
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(*(t)->_dmamap_create)((t), (s), (n), (m), (b), (f), (p))
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|
#define bus_dmamap_destroy(t, p) \
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|
(*(t)->_dmamap_destroy)((t), (p))
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|
#define bus_dmamap_load(t, m, b, s, p, f) \
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|
(*(t)->_dmamap_load)((t), (m), (b), (s), (p), (f))
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|
#define bus_dmamap_load_mbuf(t, m, b, f) \
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|
(*(t)->_dmamap_load_mbuf)((t), (m), (b), (f))
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|
#define bus_dmamap_load_uio(t, m, u, f) \
|
|
(*(t)->_dmamap_load_uio)((t), (m), (u), (f))
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|
#define bus_dmamap_load_raw(t, m, sg, n, s, f) \
|
|
(*(t)->_dmamap_load_raw)((t), (m), (sg), (n), (s), (f))
|
|
#define bus_dmamap_unload(t, p) \
|
|
(*(t)->_dmamap_unload)((t), (p))
|
|
#define bus_dmamap_sync(t, p, o, l, ops) \
|
|
(void)((t)->_dmamap_sync ? \
|
|
(*(t)->_dmamap_sync)((t), (p), (o), (l), (ops)) : (void)0)
|
|
|
|
#define bus_dmamem_alloc(t, s, a, b, sg, n, r, f) \
|
|
(*(t)->_dmamem_alloc)((t), (s), (a), (b), (sg), (n), (r), (f))
|
|
#define bus_dmamem_free(t, sg, n) \
|
|
(*(t)->_dmamem_free)((t), (sg), (n))
|
|
#define bus_dmamem_map(t, sg, n, s, k, f) \
|
|
(*(t)->_dmamem_map)((t), (sg), (n), (s), (k), (f))
|
|
#define bus_dmamem_unmap(t, k, s) \
|
|
(*(t)->_dmamem_unmap)((t), (k), (s))
|
|
#define bus_dmamem_mmap(t, sg, n, o, p, f) \
|
|
(*(t)->_dmamem_mmap)((t), (sg), (n), (o), (p), (f))
|
|
|
|
#define bus_dmatag_subregion(t, mna, mxa, nt, f) EOPNOTSUPP
|
|
#define bus_dmatag_destroy(t)
|
|
|
|
/*
|
|
* bus_dmamap_t
|
|
*
|
|
* Describes a DMA mapping.
|
|
*/
|
|
struct sun68k_bus_dmamap {
|
|
/*
|
|
* PRIVATE MEMBERS: not for use by machine-independent code.
|
|
*/
|
|
bus_size_t _dm_size; /* largest DMA transfer mappable */
|
|
int _dm_segcnt; /* number of segs this map can map */
|
|
bus_size_t _dm_maxmaxsegsz; /* fixed largest possible segment */
|
|
bus_size_t _dm_boundary; /* don't cross this */
|
|
int _dm_flags; /* misc. flags */
|
|
|
|
void *_dm_cookie; /* cookie for bus-specific functions */
|
|
|
|
u_long _dm_align; /* DVMA alignment; must be a
|
|
multiple of the page size */
|
|
u_long _dm_ex_start; /* constraints on DVMA map */
|
|
u_long _dm_ex_end; /* allocations; used by the VME bus
|
|
driver and by the IOMMU driver
|
|
when mapping 24-bit devices */
|
|
|
|
/*
|
|
* PUBLIC MEMBERS: these are used by machine-independent code.
|
|
*/
|
|
bus_size_t dm_maxsegsz; /* largest possible segment */
|
|
bus_size_t dm_mapsize; /* size of the mapping */
|
|
int dm_nsegs; /* # valid segments in mapping */
|
|
bus_dma_segment_t dm_segs[1]; /* segments; variable length */
|
|
};
|
|
|
|
#ifdef _SUN68K_BUS_DMA_PRIVATE
|
|
int _bus_dmamap_create(bus_dma_tag_t, bus_size_t, int, bus_size_t,
|
|
bus_size_t, int, bus_dmamap_t *);
|
|
void _bus_dmamap_destroy(bus_dma_tag_t, bus_dmamap_t);
|
|
int _bus_dmamap_load_mbuf(bus_dma_tag_t, bus_dmamap_t, struct mbuf *, int);
|
|
int _bus_dmamap_load_uio(bus_dma_tag_t, bus_dmamap_t, struct uio *, int);
|
|
int _bus_dmamap_load_raw(bus_dma_tag_t, bus_dmamap_t, bus_dma_segment_t *,
|
|
int, bus_size_t, int);
|
|
int _bus_dmamap_load(bus_dma_tag_t, bus_dmamap_t, void *, bus_size_t,
|
|
struct proc *, int);
|
|
void _bus_dmamap_unload(bus_dma_tag_t, bus_dmamap_t);
|
|
void _bus_dmamap_sync(bus_dma_tag_t, bus_dmamap_t, bus_addr_t, bus_size_t,
|
|
int);
|
|
|
|
int _bus_dmamem_alloc(bus_dma_tag_t, bus_size_t, bus_size_t, bus_size_t,
|
|
bus_dma_segment_t *, int, int *, int);
|
|
void _bus_dmamem_free(bus_dma_tag_t, bus_dma_segment_t *, int);
|
|
int _bus_dmamem_map(bus_dma_tag_t, bus_dma_segment_t *, int, size_t,
|
|
void **, int);
|
|
void _bus_dmamem_unmap(bus_dma_tag_t, void *, size_t);
|
|
paddr_t _bus_dmamem_mmap(bus_dma_tag_t, bus_dma_segment_t *, int, off_t, int,
|
|
int);
|
|
|
|
int _bus_dmamem_alloc_range(bus_dma_tag_t, bus_size_t, bus_size_t,
|
|
bus_size_t, bus_dma_segment_t *, int, int *, int, vaddr_t, vaddr_t);
|
|
|
|
vaddr_t _bus_dma_valloc_skewed(size_t, u_long, u_long, u_long);
|
|
#endif /* _SUN68K_BUS_DMA_PRIVATE */
|
|
|
|
#endif /* _SUN68K_BUS_H_ */
|