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314 lines
9.6 KiB
C
314 lines
9.6 KiB
C
/*-
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* Copyright (c) 1997 Helmut Wirth <hfwirth@ping.at>
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* 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 immediately at the beginning of the file, witout modification,
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* 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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* $FreeBSD$
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*/
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#ifndef EMS_H
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#define EMS_H
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/* Header for ems.c, the EMS emulation */
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/* Global definitions, some of them will be configurable in the future */
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#define EMS_NUM_HANDLES 256 /* Includes OS handle 0 */
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#define EMS_MAXSIZE 10240 /* In kbytes */
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#define EMS_MAX_PHYS 4 /* Frame is 64kB */
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#define EMS_FRAME_ADDR 0xe0000
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#define EMS_VERSION 0x40 /* Version 4.0 */
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#define EMS_PAGESIZE (16 *1024) /* page size in bytes */
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#define EMS_SAVEMAGIC 0xAFFE /* magic number */
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/* These are the LIM EMS 3.0 calls */
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#define GET_MANAGER_STATUS 0x40
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#define GET_PAGE_FRAME_SEGMENT 0x41
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#define GET_PAGE_COUNTS 0x42
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#define GET_HANDLE_AND_ALLOCATE 0x43
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#define MAP_UNMAP 0x44
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#define DEALLOCATE_HANDLE 0x45
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#define GET_EMM_VERSION 0x46
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#define SAVE_PAGE_MAP 0x47
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#define RESTORE_PAGE_MAP 0x48
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#define RESERVED_1 0x49
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#define RESERVED_2 0x4a
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#define GET_HANDLE_COUNT 0x4b
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#define GET_PAGES_OWNED 0x4c
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#define GET_PAGES_FOR_ALL 0x4d
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/* LIM EMS 4.0 calls */
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/* Global subfunctions for the LIM EMS 4.0 calls */
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#define GET 0x0
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#define SET 0x1
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/* Modes for Map/Unmap and AlterandCall/AlterAndJump */
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#define PHYS_ADDR 0x0
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#define SEG_ADDR 0x0
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/* Page map functions */
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#define PAGE_MAP 0x4e
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#define PAGE_MAP_PARTIAL 0x4f
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/* Page map subfunctions */
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#define GET_SET 0x2
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#define GET_SIZE 0x3
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#define MAP_UNMAP_MULTI_HANDLE 0x50
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#define REALLOC_PAGES 0x51
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#define HANDLE_ATTRIBUTES 0x52
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/* Subfunctions */
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#define HANDLE_CAPABILITY 0x2
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#define HANDLE_NAME 0x53
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#define HANDLE_DIRECTORY 0x54
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#define HANDLE_SEARCH 0x1
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#define GET_TOTAL_HANDLES 0x2
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#define ALTER_PAGEMAP_JUMP 0x55
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#define ALTER_PAGEMAP_CALL 0x56
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/* Subfunction for call */
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#define GET_STACK_SIZE 0x2
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#define MOVE_MEMORY_REGION 0x57
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/* Subfunctions */
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#define MOVE 0x0
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#define EXCHANGE 0x1
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#define GET_MAPPABLE_PHYS_ADDR 0x58
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/* Subfunctions */
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#define GET_ARRAY 0x0
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#define GET_ARRAY_ENTRIES 0x1
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#define GET_HW_CONFIGURATION 0x59
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/* Subfunctions */
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#define GET_HW_ARRAY 0x0
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#define GET_RAW_PAGE_COUNT 0x1
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#define ALLOCATE_PAGES 0x5a
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/* Subfunctions */
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#define ALLOC_STANDARD 0x0
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#define ALLOC_RAW 0x1
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#define ALTERNATE_MAP_REGISTER 0x5b
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/* Subfunctions */
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#define GET_SAVE_ARRAY_SIZE 0x2
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#define ALLOCATE_REGISTER_SET 0x3
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#define DEALLOCATE_REGISTER_SET 0x4
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#define ALLOCATE_DMA 0x5
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#define ENABLE_DMA 0x6
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#define DISABLE_DMA 0x7
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#define DEALLOCATE_DMA 0x8
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#define PREPARE_WARMBOOT 0x5c
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#define OS_FUNCTION_SET 0x5d
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/* Subfunctions */
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#define ENABLE 0x0
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#define DISABLE 0x1
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#define RETURN_KEY 0x2
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/* End of call definitions */
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/* EMS errors */
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#define EMS_SUCCESS 0x0
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#define EMS_SW_MALFUNC 0x80
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#define EMS_HW_MALFUNC 0x81
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#define EMS_INV_HANDLE 0x83
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#define EMS_FUNC_NOSUP 0x84
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#define EMS_OUT_OF_HANDLES 0x85
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#define EMS_SAVED_MAP 0x86
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#define EMS_OUT_OF_PHYS 0x87
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#define EMS_OUT_OF_LOG 0x88
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#define EMS_ZERO_PAGES 0x89
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#define EMS_LOGPAGE_TOOBIG 0x8a
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#define EMS_ILL_PHYS 0x8b
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#define EMS_NO_ROOM_TO_SAVE 0x8c
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#define EMS_ALREADY_SAVED 0x8d
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#define EMS_NO_SAVED_CONTEXT 0x8e
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#define EMS_INVALID_SUB 0x8f
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#define EMS_INVALID_ATTR 0x90
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#define EMS_FEAT_NOSUP 0x91
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#define EMS_MOVE_OVERLAP1 0x92
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#define EMS_MOVE_OVERFLOW 0x93
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#define EMS_PAGEOFFSET 0x95
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#define EMS_MOVE_OVERLAP2 0x97
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#define EMS_HNAME_NOT_FOUND 0xa0
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#define EMS_NAME_EXISTS 0xa1
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#define EMS_SAVED_CONTEXT_BAD 0xa3
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#define EMS_FUNCTION_DISABLED 0xa4
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/*
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* EMS handles: The handle contains at its end an array of pointers to
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* its allocated pages. The array is of size npages. Handle structs are
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* malloced at runtime.
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* Page numbering: Every page is 16kB, always. The pages are numbered
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* from 0 to highest page, depending on total EMS memory. Every handle
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* has pages allocated and this pages too are numbered from 0 to highest
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* page allocated. This are *not* the same numbers, because there may be
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* holes in the allocation.
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* Page numbers are unsigned short, which will give us 65536 * 16 kB (1GB)
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* pages to handle at maximum. This should be enough for the next years.
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*/
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typedef struct {
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short handle[4]; /* Handle for each mapping */
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u_char pos_mapped[4]; /* Boolean value, 1 if something is mapped */
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u_char pos_pagenum[4]; /* Page number currently mapped into position */
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} EMS_mapping_context;
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/* This union is for copying operations of the handle name only */
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typedef union {
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u_char uc_hn[8];
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u_long ul_hn[2];
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} Hname;
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typedef struct {
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Hname hname;
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u_long npages;
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/* The mapping context for save/restore page map */
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EMS_mapping_context *mcontext;
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/* The pagenum here is the number in the system page array. The
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* logical page number connected with this handle is the index into
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* this array.
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*/
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u_short pagenum[0];
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/* Will grow here, depending on allocation */
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} EMS_handle;
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/*
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* The connection between every page in the system and the handles is
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* maintained by an array of these structs. The array is indexed by the
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* page numbers.
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*/
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typedef struct {
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short handle; /* The handle this page belongs to */
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#define EMS_FREE 0
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#define EMS_ALLOCED 1
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#define EMS_MAPPED 2
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u_short status; /* room for misc information */
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} EMS_page;
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/*
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* The combined pointer into EMS memory: offs is the offset into an EMS
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* page, page is the page index inside the region allocated to a handle.
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* This depends on EMS_PAGESIZE.
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* This is used for copy and move operations.
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*/
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typedef struct {
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u_long offs:14;
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u_long page:18;
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} EMS_combi;
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typedef union {
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u_long ua_addr; /* Conventional address pointer */
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EMS_combi ua_emsaddr; /* EMS address pointer */
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} EMS_addr;
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#define EMS_OFFS(u) u.ua_emsaddr.offs
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#define EMS_PAGE(u) u.ua_emsaddr.page
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#define EMS_PTR(u) u.ua_addr
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/*
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* EMS info structure, only used to pass information to and from
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* DOS
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*/
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typedef struct {
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u_short handle __attribute__ ((packed)); /* handle */
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u_short npages __attribute__ ((packed)); /* pages allocated */
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} EMShandlepage;
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/*
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* EMS map/unmap multiple, only used to pass information to and from
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* DOS
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*/
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typedef struct {
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u_short log __attribute__ ((packed)); /* logical page number */
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u_short phys __attribute__ ((packed)); /* physical page (position) or
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segment address inside frame */
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} EMSmapunmap;
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/*
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* EMS handle directory, only used to pass information to and from
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* DOS
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*/
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typedef struct {
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u_short log __attribute__ ((packed)); /* logical page number */
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Hname name __attribute__ ((packed)); /* Handle name */
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} EMShandledir;
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/*
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* Structure for get/set page map: This structure is used to save and
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* restore the page map from DOS memory. A program can get the mapping
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* context and later set (restore) it. To avoid errors we add a magic
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* number and a checksum.
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*/
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typedef struct {
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u_short magic; /* Magic number */
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u_short checksum; /* Checksum over entire structure */
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EMS_mapping_context ems_saved_context;
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} EMScontext;
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/*
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* EMS physical address array, only used to pass information to and from
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* DOS
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*/
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typedef struct {
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u_short segm __attribute__ ((packed)); /* segment address inside frame */
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u_short phys __attribute__ ((packed)); /* physical page (position) */
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} EMSaddrarray;
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/*
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* EMS move memory call structure, only used to pass information to and from
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* DOS
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*/
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typedef struct {
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u_long length __attribute__ ((packed)); /* length of region */
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#define EMS_MOVE_CONV 0
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#define EMS_MOVE_EMS 1
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u_char src_type __attribute__ ((packed)); /* source type (0,1) */
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u_short src_handle __attribute__ ((packed)); /* source handle */
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u_short src_offset __attribute__ ((packed)); /* source offset */
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u_short src_seg __attribute__ ((packed)); /* source type */
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u_char dst_type __attribute__ ((packed)); /* destination type (0,1) */
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u_short dst_handle __attribute__ ((packed)); /* destination handle */
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u_short dst_offset __attribute__ ((packed)); /* destination offset */
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u_short dst_seg __attribute__ ((packed)); /* destination type */
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} EMSmovemem;
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#endif /* EMS_H */
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