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615 lines
21 KiB
615 lines
21 KiB
//============================================================================
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// Copyright (c) 1995, Microsoft Corporation
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//
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// File: ipriprm.h
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//
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// History:
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// Abolade Gbadegesin Aug-7-1995 Created.
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//
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// Contains type definitions and declarations for IP RIP,
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// used by the IP Router Manager.
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//============================================================================
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#ifndef _IPRIPRM_H_
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#define _IPRIPRM_H_
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//----------------------------------------------------------------------------
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// CONSTANT AND MACRO DECLARATIONS
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//----------------------------------------------------------------------------
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//----------------------------------------------------------------------------
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// constants identifying IPRIP's MIB tables
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//----------------------------------------------------------------------------
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#define IPRIP_GLOBAL_STATS_ID 0
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#define IPRIP_GLOBAL_CONFIG_ID 1
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#define IPRIP_IF_STATS_ID 2
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#define IPRIP_IF_CONFIG_ID 3
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#define IPRIP_IF_BINDING_ID 4
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#define IPRIP_PEER_STATS_ID 5
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//----------------------------------------------------------------------------
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// constants used for the field IPRIP_GLOBAL_CONFIG::GC_LoggingLevel
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//----------------------------------------------------------------------------
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#define IPRIP_LOGGING_NONE 0
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#define IPRIP_LOGGING_ERROR 1
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#define IPRIP_LOGGING_WARN 2
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#define IPRIP_LOGGING_INFO 3
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//----------------------------------------------------------------------------
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// constants used for the following fields:
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// IPRIP_GLOBAL_CONFIG::GC_PeerFilterMode,
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// IPRIP_IF_CONFIG::IC_AcceptFilterMode, and
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// IPRIP_IF_CONFIG::IC_AnnounceFilterMode
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//----------------------------------------------------------------------------
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#define IPRIP_FILTER_DISABLED 0
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#define IPRIP_FILTER_INCLUDE 1
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#define IPRIP_FILTER_EXCLUDE 2
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//----------------------------------------------------------------------------
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// constants used for the fields
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// IPRIP_IF_STATS::IS_State, IPRIP_IF_CONFIG::IC_State and
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// IPRIP_IF_BINDING::IB_State
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//----------------------------------------------------------------------------
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#define IPRIP_STATE_ENABLED 0x00000001
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#define IPRIP_STATE_BOUND 0x00000002
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//----------------------------------------------------------------------------
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// constant for the field IPRIP_IF_CONFIG::IC_AuthenticationKey;
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// defines maximum authentication key size
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//----------------------------------------------------------------------------
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#define IPRIP_MAX_AUTHKEY_SIZE 16
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//----------------------------------------------------------------------------
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// constants used to construct the field IPRIP_IF_CONFIG::IC_ProtocolFlags
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//----------------------------------------------------------------------------
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#define IPRIP_FLAG_ACCEPT_HOST_ROUTES 0x00000001
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#define IPRIP_FLAG_ANNOUNCE_HOST_ROUTES 0x00000002
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#define IPRIP_FLAG_ACCEPT_DEFAULT_ROUTES 0x00000004
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#define IPRIP_FLAG_ANNOUNCE_DEFAULT_ROUTES 0x00000008
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#define IPRIP_FLAG_SPLIT_HORIZON 0x00000010
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#define IPRIP_FLAG_POISON_REVERSE 0x00000020
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#define IPRIP_FLAG_GRACEFUL_SHUTDOWN 0x00000040
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#define IPRIP_FLAG_TRIGGERED_UPDATES 0x00000080
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#define IPRIP_FLAG_OVERWRITE_STATIC_ROUTES 0x00000100
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#define IPRIP_FLAG_NO_SUBNET_SUMMARY 0x00000200
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//----------------------------------------------------------------------------
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// constants for the field IPRIP_IF_CONFIG::IC_UpdateMode
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//----------------------------------------------------------------------------
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#define IPRIP_UPDATE_PERIODIC 0
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#define IPRIP_UPDATE_DEMAND 1
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//----------------------------------------------------------------------------
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// constants for the field IPRIP_IF_CONFIG::IC_AcceptMode
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//----------------------------------------------------------------------------
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#define IPRIP_ACCEPT_DISABLED 0
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#define IPRIP_ACCEPT_RIP1 1
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#define IPRIP_ACCEPT_RIP1_COMPAT 2
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#define IPRIP_ACCEPT_RIP2 3
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//----------------------------------------------------------------------------
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// constants for the field IPRIP_IF_CONFIG::IC_AnnounceMode
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//----------------------------------------------------------------------------
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#define IPRIP_ANNOUNCE_DISABLED 0
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#define IPRIP_ANNOUNCE_RIP1 1
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#define IPRIP_ANNOUNCE_RIP1_COMPAT 2
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#define IPRIP_ANNOUNCE_RIP2 3
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//----------------------------------------------------------------------------
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// constants for the field IPRIP_IF_CONFIG::IC_AuthenticationType
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//----------------------------------------------------------------------------
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#define IPRIP_AUTHTYPE_NONE 1
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#define IPRIP_AUTHTYPE_SIMPLE_PASSWORD 2
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#define IPRIP_AUTHTYPE_MD5 3
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//----------------------------------------------------------------------------
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// constants for the field IPRIP_IF_CONFIG::IC_UnicastPeerMode
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//----------------------------------------------------------------------------
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#define IPRIP_PEER_DISABLED 0
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#define IPRIP_PEER_ALSO 1
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#define IPRIP_PEER_ONLY 2
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//----------------------------------------------------------------------------
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// macros for manipulating the variable length IPRIP_GLOBAL_CONFIG structure
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//
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// IPRIP_GLOBAL_CONFIG_SIZE computes the size of a global config struct
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//
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// IPRIP_GLOBAL_PEER_FILTER_TABLE computes the starting address
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// of the series of peer IP addresses which comprise
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// the peer filter table in a global config struct
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//
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// e.g.
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// PIPRIP_GLOBAL_CONFIG pigcSource, pigcDest;
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//
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// pigcDest = malloc(IPRIP_GLOBAL_CONFIG_SIZE(pigcSource));
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// memcpy(pigcDest, pigcSource, IPRIP_GLOBAL_CONFIG_SIZE(pigcSource));
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//
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// e.g.
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// DWORD i, *pdwPeer;
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// PIPRIP_GLOBAL_CONFIG pigc;
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//
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// pdwPeer = IPRIP_GLOBAL_PEER_FILTER_TABLE(pigc);
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// for (i = 0; i < pigc->GC_PeerFilterCount; i++, pdwPeer++) {
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// printf("%s\n", inet_ntoa(*(struct in_addr *)pdwPeer));
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// }
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//----------------------------------------------------------------------------
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#define IPRIP_GLOBAL_CONFIG_SIZE(cfg) \
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(sizeof(IPRIP_GLOBAL_CONFIG) + \
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(cfg)->GC_PeerFilterCount * sizeof(DWORD))
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#define IPRIP_GLOBAL_PEER_FILTER_TABLE(cfg) ((PDWORD)((cfg) + 1))
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//----------------------------------------------------------------------------
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// macros used for manipulating the field IPRIP_IF_CONFIG::IC_ProtocolFlags;
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//
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// IPRIP_FLAG_ENABLE enables a flag in a config structure
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//
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// IPRIP_FLAG_DISABLE disables a flag in a config structure
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//
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// IPRIP_FLAG_IS_ENABLED evaluates to non-zero if a given flag is enabled
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// in a config structure
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//
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// IPRIP_FLAG_IS_DISABLED evaluates to non-zero if a given flag is disabled
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// in a config structure
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//
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// e.g.
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// IPRIP_IF_CONFIG iic;
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// IPRIP_FLAG_ENABLE(&iic, ACCEPT_HOST_ROUTES);
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//
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// e.g.
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// IPRIP_IF_CONFIG iic;
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// printf((IPRIP_FLAG_IS_ENABLED(&iic, SPLIT_HORIZON) ? "split" : ""));
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//----------------------------------------------------------------------------
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#define IPRIP_FLAG_ENABLE(iic, flag) \
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((iic)->IC_ProtocolFlags |= IPRIP_FLAG_ ## flag)
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#define IPRIP_FLAG_DISABLE(iic, flag) \
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((iic)->IC_ProtocolFlags &= ~ (IPRIP_FLAG_ ## flag))
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#define IPRIP_FLAG_IS_ENABLED(iic, flag) \
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((iic)->IC_ProtocolFlags & IPRIP_FLAG_ ## flag)
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#define IPRIP_FLAG_IS_DISABLED(iic, flag) \
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!IPRIP_FLAG_IS_ENABLED(iic, flag)
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//----------------------------------------------------------------------------
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// macros for manipulating the variable-length IPRIP_IF_CONFIG structure
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//
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// IPRIP_IF_CONFIG_SIZE computes the size of a config structure.
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//
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// IPRIP_IF_UNICAST_PEER_TABLE computes the starting address
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// in a config struct of the series of IP addresses for peers
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// to whom routes are to be sent by unicast.
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//
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// IPRIP_IF_CONFIG_ACCEPT_FILTER_TABLE computes the starting address
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// of the series of route-acceptance filters in a config structure.
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//
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// IPRIP_IF_CONFIG_ANNOUNCE_FILTER_TABLE computes the starting address
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// of the series of route-announcement filters in a config structure.
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//
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// e.g.
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// PIPRIP_IF_CONFIG piicSource, piicDest;
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//
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// piicDest = malloc(IPRIP_IF_CONFIG_SIZE(piicSource));
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// memcpy(piicDest, piicSource, IPRIP_IF_CONFIG_SIZE(piicSource));
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//
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// e.g.
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// DWORD i, *pdwPeer;
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// PIPRIP_IF_CONFIG piic;
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//
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// pdwPeer = IPRIP_IF_UNICAST_PEER_TABLE(piic);
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// for (i = 0; i < piic->IC_UnicastPeerCount; i++) {
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// printf("%s\n", inet_ntoa(*(struct in_addr *)pdwPeer));
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// }
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//----------------------------------------------------------------------------
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#define IPRIP_IF_CONFIG_SIZE(cfg) \
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(sizeof(IPRIP_IF_CONFIG) + \
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(cfg)->IC_UnicastPeerCount * sizeof(DWORD) + \
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(cfg)->IC_AcceptFilterCount * sizeof(IPRIP_ROUTE_FILTER) + \
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(cfg)->IC_AnnounceFilterCount * sizeof(IPRIP_ROUTE_FILTER))
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#define IPRIP_IF_UNICAST_PEER_TABLE(cfg) ((PDWORD)((cfg) + 1))
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#define IPRIP_IF_ACCEPT_FILTER_TABLE(cfg) \
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((PIPRIP_ROUTE_FILTER)( \
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IPRIP_IF_UNICAST_PEER_TABLE(cfg) + (cfg)->IC_UnicastPeerCount ))
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#define IPRIP_IF_ANNOUNCE_FILTER_TABLE(cfg) \
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((PIPRIP_ROUTE_FILTER)( \
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IPRIP_IF_ACCEPT_FILTER_TABLE(cfg) + (cfg)->IC_AcceptFilterCount ))
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//----------------------------------------------------------------------------
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// macros for manipulating the variable-length IPRIP_IF_BINDING structure
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//
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// IPRIP_IF_BINDING_SIZE computes the size of a binding structure.
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//
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// IPRIP_IF_ADDRESS_TABLE computes the starting address in a binding struct
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// of the series of IPRIP_IP_ADDRESS structures which are the bindings
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// for the interface in question.
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//
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// e.g.
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// PIPRIP_IF_BINDING piibSource, piibDest;
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//
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// piibDest = malloc(IPRIP_IF_BINDING_SIZE(piicSource));
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// memcpy(piibDest, piicSource, IPRIP_IF_BINDING_SIZE(piicSource));
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//
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// e.g.
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// DWORD i;
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// PIPRIP_IF_BINDING piib;
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// PIPRIP_IP_ADDRESS *pdwAddr;
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//
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// pdwAddr = IPRIP_IF_ADDRESS_TABLE(piib);
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// for (i = 0; i < piib->IB_AddrCount; i++) {
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// printf("%s-", inet_ntoa(*(struct in_addr *)&pdwAddr->IA_Address));
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// printf("%s\n", inet_ntoa(*(struct in_addr *)&pdwAddr->IA_Netmask));
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// }
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//----------------------------------------------------------------------------
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#define IPRIP_IF_BINDING_SIZE(bind) \
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(sizeof(IPRIP_IF_BINDING) + \
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(bind)->IB_AddrCount * sizeof(IPRIP_IP_ADDRESS))
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#define IPRIP_IF_ADDRESS_TABLE(bind) ((PIPRIP_IP_ADDRESS)((bind) + 1))
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//----------------------------------------------------------------------------
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// STRUCTURE DEFINITIONS
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//----------------------------------------------------------------------------
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//----------------------------------------------------------------------------
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// struct: IPRIP_GLOBAL_STATS
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//
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// This MIB entry stores global statistics for IPRIP;
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// There is only one instance, so this entry has no index.
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//
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// This structure is read-only.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_GLOBAL_STATS {
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DWORD GS_SystemRouteChanges;
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DWORD GS_TotalResponsesSent;
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} IPRIP_GLOBAL_STATS, *PIPRIP_GLOBAL_STATS;
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//----------------------------------------------------------------------------
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// struct: IPRIP_GLOBAL_CONFIG
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//
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// This MIB entry stores global configuration for IPRIP
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// There is only one instance, so this entry has no index.
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//
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// THIS STRUCTURE IS VARIABLE LENGTH:
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//
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// after the base structure comes an array of GC_PeerFilterCount DWORDs,
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// each of which contains an IP address which is a peer which will be
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// accepted or rejected depending on the value of GC_PeerFilterMode.
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//
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// Thus, if GC_PeerFilterMode is IPRIP_FILTER_EXCLUDE, routes will be
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// rejected which come from the routers whose addresses are in the peer array,
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// and all other routers will be accepted.
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//
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// Likewise, if GC_PeerFilterMode is IPRIP_FILTER_INCLUDE, routes will
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// be only be accepted if they are from the routers in the peer array.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_GLOBAL_CONFIG {
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DWORD GC_LoggingLevel;
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DWORD GC_MaxRecvQueueSize;
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DWORD GC_MaxSendQueueSize;
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DWORD GC_MinTriggeredUpdateInterval;
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DWORD GC_PeerFilterMode;
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DWORD GC_PeerFilterCount;
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} IPRIP_GLOBAL_CONFIG, *PIPRIP_GLOBAL_CONFIG;
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//----------------------------------------------------------------------------
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// struct: IPRIP_IF_STATS
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//
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// This MIB entry stores per-interface statistics for IPRIP.
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//
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// This structure is read-only.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_IF_STATS {
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DWORD IS_State;
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DWORD IS_SendFailures;
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DWORD IS_ReceiveFailures;
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DWORD IS_RequestsSent;
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DWORD IS_RequestsReceived;
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DWORD IS_ResponsesSent;
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DWORD IS_ResponsesReceived;
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DWORD IS_BadResponsePacketsReceived;
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DWORD IS_BadResponseEntriesReceived;
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DWORD IS_TriggeredUpdatesSent;
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} IPRIP_IF_STATS, *PIPRIP_IF_STATS;
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//----------------------------------------------------------------------------
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// struct: IPRIP_IF_CONFIG
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//
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// This MIB entry describes per-interface configuration.
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// All IP address fields must be in network order.
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//
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// Note:
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// The field IC_State is read-only.
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// The field IC_AuthenticationKey is write-only.
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//
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// THIS STRUCTURE IS VARIABLE LENGTH:
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//
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// after the base structure comes
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//
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// 1. the table of unicast peers configured for this interface,
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// with each entry being a DWORD containing an IP address, where a
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// unicast peer is a router to which updates will be unicast;
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// if IC_UnicastPeerMode is IPRIP_PEER_ONLY, RIP packets will only
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// be sent to these peers; if IC_UnicastPeerMode is IPRIP_PEER_ALSO,
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// RIP packets will be sent to these peers as well as being sent
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// via broadcast/multicast.
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//
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// 2. the table of filters used to filter routes before accepting them,
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// with each entry being of type IPRIP_ROUTE_FILTER.
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// The use of these depends on the rule in IC_AcceptFilterMode. Thus
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// if IC_AcceptFilterMode is IPRIP_FILTER_INCLUDE, these filters specify
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// which routes to include, and all other routes are excluded.
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//
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// 3. the table of filters used to filter routes before announcing them,
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// with each entry being of type IPRIP_ROUTE_FILTER;
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// The use of these depend on the rule in IC_AnnounceFilterMode. Thus
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// if IC_AnnounceFilterMode is IPRIP_FILTER_INCLUDE, these filters
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// specify which routes to include, and all other routes are excluded.
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//
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// IC_UnicastPeerCount, IC_AcceptFilterCount, and IC_AnnounceFilterCount
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// give the counts of entries in each of the above tables.
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//
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// If the interface type is PERMANENT, then routing information will
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// be broadcast AND sent by unicast to the routers in the unicast peer table.
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// Otherwise, routing information will only be unicast to the routers in the
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// unicast peer table.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_IF_CONFIG {
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DWORD IC_State;
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DWORD IC_Metric;
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DWORD IC_UpdateMode;
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DWORD IC_AcceptMode;
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DWORD IC_AnnounceMode;
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DWORD IC_ProtocolFlags;
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DWORD IC_RouteExpirationInterval;
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DWORD IC_RouteRemovalInterval;
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DWORD IC_FullUpdateInterval;
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DWORD IC_AuthenticationType;
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BYTE IC_AuthenticationKey[IPRIP_MAX_AUTHKEY_SIZE];
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WORD IC_RouteTag;
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DWORD IC_UnicastPeerMode;
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DWORD IC_AcceptFilterMode;
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DWORD IC_AnnounceFilterMode;
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DWORD IC_UnicastPeerCount;
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DWORD IC_AcceptFilterCount;
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DWORD IC_AnnounceFilterCount;
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} IPRIP_IF_CONFIG, *PIPRIP_IF_CONFIG;
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//----------------------------------------------------------------------------
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// struct: IPRIP_ROUTE_FILTER
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//
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// This is used for per-interface filters in the structure IPRIP_IF_CONFIG
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//
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// Each filter describes an instance of the default filter action;
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// if the default accept filter action is IPRIP_FILTER_INCLUDE,
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// then each of the accept filters in the filter table will be treated
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// as an inclusion range. If an interface's default announce filter action is
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// IPRIP_FILTER_EXCLUDE, then each of that interface's announce filters
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// will be treated as an exclusion range.
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//
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// Both the low and high IP addresses must be in network order.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_ROUTE_FILTER {
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DWORD RF_LoAddress;
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DWORD RF_HiAddress;
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} IPRIP_ROUTE_FILTER, *PIPRIP_ROUTE_FILTER;
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//----------------------------------------------------------------------------
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// struct: IPRIP_IF_BINDING
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//
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// This MIB entry contains the table of IP addresses to which each interface
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// is bound.
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// All IP addresses are in network order.
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//
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// THIS STRUCTURE IS VARIABLE LENGTH:
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//
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// The base structure contains of the field IB_AddrCount, which gives
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// the number of IP addresses to which the indexed interface is bound.
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// The IP addresses themselves follow the base structure, and are given
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// as IPRIP_IP_ADDRESS structures.
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//
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// This MIB entry is read-only.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_IF_BINDING {
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DWORD IB_State;
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DWORD IB_AddrCount;
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} IPRIP_IF_BINDING, *PIPRIP_IF_BINDING;
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//----------------------------------------------------------------------------
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// struct: IPRIP_IP_ADDRESS
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//
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// This structure is used for storing interface bindings.
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// A series of structures of this type follows the IPRIP_IF_BINDING
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// structure (described above).
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//
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// Both fields are IP address fields in network-order.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_IP_ADDRESS {
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DWORD IA_Address;
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DWORD IA_Netmask;
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} IPRIP_IP_ADDRESS, *PIPRIP_IP_ADDRESS;
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//----------------------------------------------------------------------------
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// struct: IPRIP_PEER_STATS
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//
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// This MIB entry describes statistics kept about neighboring routers.
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// All IP addresses are in network order.
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//
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// This structure is read-only.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_PEER_STATS {
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DWORD PS_LastPeerRouteTag;
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DWORD PS_LastPeerUpdateTickCount;
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DWORD PS_LastPeerUpdateVersion;
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DWORD PS_BadResponsePacketsFromPeer;
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DWORD PS_BadResponseEntriesFromPeer;
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} IPRIP_PEER_STATS, *PIPRIP_PEER_STATS;
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//----------------------------------------------------------------------------
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// struct: IPRIP_MIB_SET_INPUT_DATA
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//
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// This is passed as input data for MibSet.
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// Note that only global config and interface config can be set.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_MIB_SET_INPUT_DATA {
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DWORD IMSID_TypeID;
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DWORD IMSID_IfIndex;
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DWORD IMSID_BufferSize;
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BYTE IMSID_Buffer[1];
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} IPRIP_MIB_SET_INPUT_DATA, *PIPRIP_MIB_SET_INPUT_DATA;
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//----------------------------------------------------------------------------
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// struct: IPRIP_MIB_GET_INPUT_DATA
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//
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// This is passed as input data for MibGet, MibGetFirst, MibGetNext.
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// All tables are readable.
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// These and all other IP addresses must be in network order.
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//----------------------------------------------------------------------------
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typedef struct _IPRIP_MIB_GET_INPUT_DATA {
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|
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DWORD IMGID_TypeID;
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union {
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DWORD IMGID_IfIndex;
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DWORD IMGID_PeerAddress;
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};
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} IPRIP_MIB_GET_INPUT_DATA, *PIPRIP_MIB_GET_INPUT_DATA;
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//----------------------------------------------------------------------------
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// struct: IPRIP_MIB_GET_OUTPUT_DATA
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//
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|
// This is written into the output data by MibGet, MibGetFirst, MibGetNext.
|
|
// Note that at the end of a table MibGetNext wraps to the next table,
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|
// and therefore the value IMGOD_TypeID should be examined to see the
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|
// type of the data returned in the output buffer.
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|
//----------------------------------------------------------------------------
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|
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typedef struct _IPRIP_MIB_GET_OUTPUT_DATA {
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|
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DWORD IMGOD_TypeID;
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union {
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|
DWORD IMGOD_IfIndex;
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|
DWORD IMGOD_PeerAddress;
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};
|
|
BYTE IMGOD_Buffer[1];
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|
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} IPRIP_MIB_GET_OUTPUT_DATA, *PIPRIP_MIB_GET_OUTPUT_DATA;
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#endif // _IPRIPRM_H_
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