748 lines
22 KiB
C
748 lines
22 KiB
C
/* SPDX-License-Identifier: GPL-2.0-or-later */
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/******************************************************************************
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*
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* (C)Copyright 1998,1999 SysKonnect,
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* a business unit of Schneider & Koch & Co. Datensysteme GmbH.
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*
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* The information in this file is provided "AS IS" without warranty.
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*
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******************************************************************************/
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#ifndef _CMTDEF_
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#define _CMTDEF_
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/* **************************************************************** */
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/*
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* implementation specific constants
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* MODIIFY THE FOLLOWING THREE DEFINES
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*/
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#define AMDPLC /* if Amd PLC chip used */
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#ifdef CONC
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#define NUMPHYS 12 /* 2 for SAS or DAS, more for Concentrator */
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#else
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#ifdef CONC_II
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#define NUMPHYS 24 /* 2 for SAS or DAS, more for Concentrator */
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#else
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#define NUMPHYS 2 /* 2 for SAS or DAS, more for Concentrator */
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#endif
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#endif
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#define NUMMACS 1 /* only 1 supported at the moment */
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#define NUMPATHS 2 /* primary and secondary path supported */
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/*
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* DO NOT MODIFY BEYOND THIS POINT
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*/
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/* **************************************************************** */
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#if NUMPHYS > 2
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#define CONCENTRATOR
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#endif
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/*
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* Definitions for comfortable LINT usage
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*/
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#ifdef lint
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#define LINT_USE(x) (x)=(x)
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#else
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#define LINT_USE(x)
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#endif
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#ifdef DEBUG
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#define DB_PR(flag, fmt, ...) \
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do { if (flag) printf(fmt "\n", ##__VA_ARGS__); } while (0)
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#else
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#define DB_PR(flag, fmt, ...) no_printk(fmt "\n", ##__VA_ARGS__)
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#endif
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#ifdef DEBUG_BRD
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#define DB_TEST (smc->debug)
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#else
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#define DB_TEST (debug)
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#endif
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#define DB_ECM(fmt, ...) \
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DB_PR((DB_TEST).d_smt & 1, fmt, ##__VA_ARGS__)
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#define DB_ECMN(n, fmt, ...) \
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DB_PR((DB_TEST).d_ecm >= (n), fmt, ##__VA_ARGS__)
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#define DB_RMT(fmt, ...) \
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DB_PR((DB_TEST).d_smt & 2, fmt, ##__VA_ARGS__)
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#define DB_RMTN(n, fmt, ...) \
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DB_PR((DB_TEST).d_rmt >= (n), fmt, ##__VA_ARGS__)
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#define DB_CFM(fmt, ...) \
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DB_PR((DB_TEST).d_smt & 4, fmt, ##__VA_ARGS__)
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#define DB_CFMN(n, fmt, ...) \
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DB_PR((DB_TEST).d_cfm >= (n), fmt, ##__VA_ARGS__)
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#define DB_PCM(fmt, ...) \
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DB_PR((DB_TEST).d_smt & 8, fmt, ##__VA_ARGS__)
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#define DB_PCMN(n, fmt, ...) \
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DB_PR((DB_TEST).d_pcm >= (n), fmt, ##__VA_ARGS__)
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#define DB_SMT(fmt, ...) \
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DB_PR((DB_TEST).d_smtf, fmt, ##__VA_ARGS__)
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#define DB_SMTN(n, fmt, ...) \
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DB_PR((DB_TEST).d_smtf >= (n), fmt, ##__VA_ARGS__)
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#define DB_SBA(fmt, ...) \
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DB_PR((DB_TEST).d_sba, fmt, ##__VA_ARGS__)
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#define DB_SBAN(n, fmt, ...) \
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DB_PR((DB_TEST).d_sba >= (n), fmt, ##__VA_ARGS__)
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#define DB_ESS(fmt, ...) \
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DB_PR((DB_TEST).d_ess, fmt, ##__VA_ARGS__)
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#define DB_ESSN(n, fmt, ...) \
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DB_PR((DB_TEST).d_ess >= (n), fmt, ##__VA_ARGS__)
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#ifndef SS_NOT_DS
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#define SK_LOC_DECL(type,var) type var
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#else
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#define SK_LOC_DECL(type,var) static type var
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#endif
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/*
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* PHYs and PORTS
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* Note: Don't touch the definition of PA and PB. Those might be used
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* by some "for" loops.
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*/
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#define PA 0
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#define PB 1
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#if defined(SUPERNET_3) || defined(CONC_II)
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/*
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* The port indices have to be different,
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* because the MAC output goes through the 2. PLC
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* Conc II: It has to be the first port in the row.
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*/
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#define PS 0 /* Internal PLC which is the same as PA */
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#else
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#define PS 1
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#endif
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#define PM 2 /* PM .. PA+NUM_PHYS-1 */
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/*
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* PHY types - as in path descriptor 'fddiPHYType'
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*/
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#define TA 0 /* A port */
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#define TB 1 /* B port */
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#define TS 2 /* S port */
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#define TM 3 /* M port */
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#define TNONE 4
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/*
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* indexes in MIB
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*/
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#define INDEX_MAC 1
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#define INDEX_PATH 1
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#define INDEX_PORT 1
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/*
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* policies
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*/
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#define POLICY_AA (1<<0) /* reject AA */
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#define POLICY_AB (1<<1) /* reject AB */
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#define POLICY_AS (1<<2) /* reject AS */
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#define POLICY_AM (1<<3) /* reject AM */
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#define POLICY_BA (1<<4) /* reject BA */
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#define POLICY_BB (1<<5) /* reject BB */
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#define POLICY_BS (1<<6) /* reject BS */
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#define POLICY_BM (1<<7) /* reject BM */
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#define POLICY_SA (1<<8) /* reject SA */
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#define POLICY_SB (1<<9) /* reject SB */
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#define POLICY_SS (1<<10) /* reject SS */
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#define POLICY_SM (1<<11) /* reject SM */
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#define POLICY_MA (1<<12) /* reject MA */
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#define POLICY_MB (1<<13) /* reject MB */
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#define POLICY_MS (1<<14) /* reject MS */
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#define POLICY_MM (1<<15) /* reject MM */
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/*
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* commands
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*/
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/*
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* EVENTS
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* event classes
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*/
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#define EVENT_ECM 1 /* event class ECM */
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#define EVENT_CFM 2 /* event class CFM */
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#define EVENT_RMT 3 /* event class RMT */
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#define EVENT_SMT 4 /* event class SMT */
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#define EVENT_PCM 5 /* event class PCM */
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#define EVENT_PCMA 5 /* event class PCMA */
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#define EVENT_PCMB 6 /* event class PCMB */
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/* WARNING :
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* EVENT_PCM* must be last in the above list
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* if more than two ports are used, EVENT_PCM .. EVENT_PCMA+NUM_PHYS-1
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* are used !
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*/
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#define EV_TOKEN(class,event) (((u_long)(class)<<16L)|((u_long)(event)))
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#define EV_T_CLASS(token) ((int)((token)>>16)&0xffff)
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#define EV_T_EVENT(token) ((int)(token)&0xffff)
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/*
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* ECM events
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*/
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#define EC_CONNECT 1 /* connect request */
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#define EC_DISCONNECT 2 /* disconnect request */
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#define EC_TRACE_PROP 3 /* trace propagation */
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#define EC_PATH_TEST 4 /* path test */
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#define EC_TIMEOUT_TD 5 /* timer TD_min */
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#define EC_TIMEOUT_TMAX 6 /* timer trace_max */
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#define EC_TIMEOUT_IMAX 7 /* timer I_max */
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#define EC_TIMEOUT_INMAX 8 /* timer IN_max */
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#define EC_TEST_DONE 9 /* path test done */
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/*
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* CFM events
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*/
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#define CF_LOOP 1 /* cf_loop flag from PCM */
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#define CF_LOOP_A 1 /* cf_loop flag from PCM */
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#define CF_LOOP_B 2 /* cf_loop flag from PCM */
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#define CF_JOIN 3 /* cf_join flag from PCM */
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#define CF_JOIN_A 3 /* cf_join flag from PCM */
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#define CF_JOIN_B 4 /* cf_join flag from PCM */
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/*
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* PCM events
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*/
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#define PC_START 1
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#define PC_STOP 2
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#define PC_LOOP 3
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#define PC_JOIN 4
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#define PC_SIGNAL 5
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#define PC_REJECT 6
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#define PC_MAINT 7
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#define PC_TRACE 8
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#define PC_PDR 9
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#define PC_ENABLE 10
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#define PC_DISABLE 11
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/*
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* must be ordered as in LineStateType
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*/
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#define PC_QLS 12
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#define PC_ILS 13
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#define PC_MLS 14
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#define PC_HLS 15
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#define PC_LS_PDR 16
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#define PC_LS_NONE 17
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#define LS2MIB(x) ((x)-PC_QLS)
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#define MIB2LS(x) ((x)+PC_QLS)
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#define PC_TIMEOUT_TB_MAX 18 /* timer TB_max */
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#define PC_TIMEOUT_TB_MIN 19 /* timer TB_min */
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#define PC_TIMEOUT_C_MIN 20 /* timer C_Min */
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#define PC_TIMEOUT_T_OUT 21 /* timer T_Out */
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#define PC_TIMEOUT_TL_MIN 22 /* timer TL_Min */
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#define PC_TIMEOUT_T_NEXT 23 /* timer t_next[] */
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#define PC_TIMEOUT_LCT 24
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#define PC_NSE 25 /* NOISE hardware timer */
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#define PC_LEM 26 /* LEM done */
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/*
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* RMT events meaning from
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*/
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#define RM_RING_OP 1 /* ring operational MAC */
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#define RM_RING_NON_OP 2 /* ring not operational MAC */
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#define RM_MY_BEACON 3 /* recvd my beacon MAC */
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#define RM_OTHER_BEACON 4 /* recvd other beacon MAC */
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#define RM_MY_CLAIM 5 /* recvd my claim MAC */
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#define RM_TRT_EXP 6 /* TRT exp MAC */
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#define RM_VALID_CLAIM 7 /* claim from dup addr MAC */
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#define RM_JOIN 8 /* signal rm_join CFM */
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#define RM_LOOP 9 /* signal rm_loop CFM */
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#define RM_DUP_ADDR 10 /* dup_addr_test hange SMT-NIF */
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#define RM_ENABLE_FLAG 11 /* enable flag */
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#define RM_TIMEOUT_NON_OP 12 /* timeout T_Non_OP */
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#define RM_TIMEOUT_T_STUCK 13 /* timeout T_Stuck */
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#define RM_TIMEOUT_ANNOUNCE 14 /* timeout T_Announce */
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#define RM_TIMEOUT_T_DIRECT 15 /* timeout T_Direct */
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#define RM_TIMEOUT_D_MAX 16 /* timeout D_Max */
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#define RM_TIMEOUT_POLL 17 /* claim/beacon poller */
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#define RM_TX_STATE_CHANGE 18 /* To restart timer for D_Max */
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/*
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* SMT events
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*/
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#define SM_TIMER 1 /* timer */
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#define SM_FAST 2 /* smt_force_irq */
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/* PC modes */
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#define PM_NONE 0
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#define PM_PEER 1
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#define PM_TREE 2
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/*
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* PCM withhold codes
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* MIB PC-WithholdType ENUM
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*/
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#define PC_WH_NONE 0 /* ok */
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#define PC_WH_M_M 1 /* M to M */
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#define PC_WH_OTHER 2 /* other incompatible phys */
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#define PC_WH_PATH 3 /* path not available */
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/*
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* LCT duration
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*/
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#define LC_SHORT 1 /* short LCT */
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#define LC_MEDIUM 2 /* medium LCT */
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#define LC_LONG 3 /* long LCT */
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#define LC_EXTENDED 4 /* extended LCT */
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/*
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* path_test values
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*/
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#define PT_NONE 0
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#define PT_TESTING 1 /* test is running */
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#define PT_PASSED 2 /* test passed */
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#define PT_FAILED 3 /* test failed */
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#define PT_PENDING 4 /* path test follows */
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#define PT_EXITING 5 /* disconnected while in trace/leave */
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/*
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* duplicate address test
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* MIB DupAddressTest ENUM
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*/
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#define DA_NONE 0 /* */
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#define DA_PASSED 1 /* test passed */
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#define DA_FAILED 2 /* test failed */
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/*
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* optical bypass
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*/
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#define BP_DEINSERT 0 /* disable bypass */
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#define BP_INSERT 1 /* enable bypass */
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/*
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* ODL enable/disable
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*/
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#define PM_TRANSMIT_DISABLE 0 /* disable xmit */
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#define PM_TRANSMIT_ENABLE 1 /* enable xmit */
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/*
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* parameter for config_mux
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* note : number is index in config_endec table !
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*/
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#define MUX_THRUA 0 /* through A */
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#define MUX_THRUB 1 /* through B */
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#define MUX_WRAPA 2 /* wrap A */
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#define MUX_WRAPB 3 /* wrap B */
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#define MUX_ISOLATE 4 /* isolated */
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#define MUX_WRAPS 5 /* SAS */
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/*
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* MAC control
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*/
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#define MA_RESET 0
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#define MA_BEACON 1
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#define MA_CLAIM 2
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#define MA_DIRECTED 3 /* directed beacon */
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#define MA_TREQ 4 /* change T_Req */
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#define MA_OFFLINE 5 /* switch MAC to offline */
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/*
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* trace prop
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* bit map for trace propagation
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*/
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#define ENTITY_MAC (NUMPHYS)
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#define ENTITY_PHY(p) (p)
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#define ENTITY_BIT(m) (1<<(m))
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/*
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* Resource Tag Types
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*/
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#define PATH_ISO 0 /* isolated */
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#define PATH_PRIM 3 /* primary path */
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#define PATH_THRU 5 /* through path */
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#define RES_MAC 2 /* resource type MAC */
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#define RES_PORT 4 /* resource type PORT */
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/*
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* CFM state
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* oops: MUST MATCH CF-StateType in SMT7.2 !
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*/
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#define SC0_ISOLATED 0 /* isolated */
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#define SC1_WRAP_A 5 /* wrap A (not used) */
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#define SC2_WRAP_B 6 /* wrap B (not used) */
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#define SC4_THRU_A 12 /* through A */
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#define SC5_THRU_B 7 /* through B (used in SMT 6.2) */
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#define SC7_WRAP_S 8 /* SAS (not used) */
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#define SC9_C_WRAP_A 9 /* c wrap A */
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#define SC10_C_WRAP_B 10 /* c wrap B */
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#define SC11_C_WRAP_S 11 /* c wrap S */
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/*
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* convert MIB time in units of 80nS to uS
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*/
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#define MIB2US(t) ((t)/12)
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#define SEC2MIB(s) ((s)*12500000L)
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/*
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* SMT timer
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*/
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struct smt_timer {
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struct smt_timer *tm_next ; /* linked list */
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struct s_smc *tm_smc ; /* pointer to context */
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u_long tm_delta ; /* delta time */
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u_long tm_token ; /* token value */
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u_short tm_active ; /* flag : active/inactive */
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u_short tm_pad ; /* pad field */
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} ;
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/*
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* communication structures
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*/
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struct mac_parameter {
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u_long t_neg ; /* T_Neg parameter */
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u_long t_pri ; /* T_Pri register in MAC */
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} ;
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/*
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* MAC counters
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*/
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struct mac_counter {
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u_long mac_nobuf_counter ; /* MAC SW counter: no buffer */
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u_long mac_r_restart_counter ; /* MAC SW counter: rx restarted */
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} ;
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/*
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* para struct context for SMT parameters
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*/
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struct s_pcon {
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int pc_len ;
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int pc_err ;
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int pc_badset ;
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void *pc_p ;
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} ;
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/*
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* link error monitor
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*/
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#define LEM_AVG 5
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struct lem_counter {
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#ifdef AM29K
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int lem_on ;
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u_long lem_errors ;
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u_long lem_symbols ;
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u_long lem_tsymbols ;
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int lem_s_count ;
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int lem_n_s ;
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int lem_values ;
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int lem_index ;
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int lem_avg_ber[LEM_AVG] ;
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int lem_sum ;
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#else
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u_short lem_float_ber ; /* 10E-nn bit error rate */
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u_long lem_errors ; /* accumulated error count */
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u_short lem_on ;
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#endif
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} ;
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#define NUMBITS 10
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#ifdef AMDPLC
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/*
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* PLC state table
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*/
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struct s_plc {
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u_short p_state ; /* current state */
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u_short p_bits ; /* number of bits to send */
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u_short p_start ; /* first bit pos */
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u_short p_pad ; /* padding for alignment */
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u_long soft_err ; /* error counter */
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u_long parity_err ; /* error counter */
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u_long ebuf_err ; /* error counter */
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u_long ebuf_cont ; /* continuous error counter */
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u_long phyinv ; /* error counter */
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u_long vsym_ctr ; /* error counter */
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u_long mini_ctr ; /* error counter */
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u_long tpc_exp ; /* error counter */
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u_long np_err ; /* error counter */
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u_long b_pcs ; /* error counter */
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u_long b_tpc ; /* error counter */
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u_long b_tne ; /* error counter */
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u_long b_qls ; /* error counter */
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u_long b_ils ; /* error counter */
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u_long b_hls ; /* error counter */
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} ;
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#endif
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#ifdef PROTOTYP_INC
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#include "fddi/driver.pro"
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#else /* PROTOTYP_INC */
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/*
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* function prototypes
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*/
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#include "mbuf.h" /* Type definitions for MBUFs */
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#include "smtstate.h" /* struct smt_state */
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void hwt_restart(struct s_smc *smc); /* hwt.c */
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SMbuf *smt_build_frame(struct s_smc *smc, int class, int type,
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int length); /* smt.c */
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SMbuf *smt_get_mbuf(struct s_smc *smc); /* drvsr.c */
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void *sm_to_para(struct s_smc *smc, struct smt_header *sm,
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int para); /* smt.c */
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#ifndef SK_UNUSED
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#define SK_UNUSED(var) (void)(var)
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#endif
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void queue_event(struct s_smc *smc, int class, int event);
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void ecm(struct s_smc *smc, int event);
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void ecm_init(struct s_smc *smc);
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void rmt(struct s_smc *smc, int event);
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void rmt_init(struct s_smc *smc);
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void pcm(struct s_smc *smc, const int np, int event);
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void pcm_init(struct s_smc *smc);
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void cfm(struct s_smc *smc, int event);
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void cfm_init(struct s_smc *smc);
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void smt_timer_start(struct s_smc *smc, struct smt_timer *timer, u_long time,
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u_long token);
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void smt_timer_stop(struct s_smc *smc, struct smt_timer *timer);
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void pcm_status_state(struct s_smc *smc, int np, int *type, int *state,
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int *remote, int *mac);
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void plc_config_mux(struct s_smc *smc, int mux);
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void sm_lem_evaluate(struct s_smc *smc);
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void mac_update_counter(struct s_smc *smc);
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void sm_ma_control(struct s_smc *smc, int mode);
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void sm_mac_check_beacon_claim(struct s_smc *smc);
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void config_mux(struct s_smc *smc, int mux);
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void smt_agent_init(struct s_smc *smc);
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void smt_timer_init(struct s_smc *smc);
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void smt_received_pack(struct s_smc *smc, SMbuf *mb, int fs);
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void smt_add_para(struct s_smc *smc, struct s_pcon *pcon, u_short para,
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int index, int local);
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void smt_swap_para(struct smt_header *sm, int len, int direction);
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void ev_init(struct s_smc *smc);
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void hwt_init(struct s_smc *smc);
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u_long hwt_read(struct s_smc *smc);
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void hwt_stop(struct s_smc *smc);
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void hwt_start(struct s_smc *smc, u_long time);
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void smt_send_mbuf(struct s_smc *smc, SMbuf *mb, int fc);
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void smt_free_mbuf(struct s_smc *smc, SMbuf *mb);
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void sm_pm_bypass_req(struct s_smc *smc, int mode);
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void rmt_indication(struct s_smc *smc, int i);
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void cfm_state_change(struct s_smc *smc, int c_state);
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#if defined(DEBUG) || !defined(NO_SMT_PANIC)
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void smt_panic(struct s_smc *smc, char *text);
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#else
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#define smt_panic(smc,text)
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#endif /* DEBUG || !NO_SMT_PANIC */
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void smt_stat_counter(struct s_smc *smc, int stat);
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void smt_timer_poll(struct s_smc *smc);
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u_long smt_get_time(void);
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u_long smt_get_tid(struct s_smc *smc);
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void smt_timer_done(struct s_smc *smc);
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void smt_fixup_mib(struct s_smc *smc);
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void smt_reset_defaults(struct s_smc *smc, int level);
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void smt_agent_task(struct s_smc *smc);
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int smt_check_para(struct s_smc *smc, struct smt_header *sm,
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const u_short list[]);
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void driver_get_bia(struct s_smc *smc, struct fddi_addr *bia_addr);
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#ifdef SUPERNET_3
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void drv_reset_indication(struct s_smc *smc);
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#endif /* SUPERNET_3 */
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void smt_start_watchdog(struct s_smc *smc);
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void smt_event(struct s_smc *smc, int event);
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void timer_event(struct s_smc *smc, u_long token);
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void ev_dispatcher(struct s_smc *smc);
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void pcm_get_state(struct s_smc *smc, struct smt_state *state);
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void ecm_state_change(struct s_smc *smc, int e_state);
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int sm_pm_bypass_present(struct s_smc *smc);
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void pcm_state_change(struct s_smc *smc, int plc, int p_state);
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void rmt_state_change(struct s_smc *smc, int r_state);
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int sm_pm_get_ls(struct s_smc *smc, int phy);
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int pcm_get_s_port(struct s_smc *smc);
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int pcm_rooted_station(struct s_smc *smc);
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int cfm_get_mac_input(struct s_smc *smc);
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int cfm_get_mac_output(struct s_smc *smc);
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int cem_build_path(struct s_smc *smc, char *to, int path_index);
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int sm_mac_get_tx_state(struct s_smc *smc);
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char *get_pcmstate(struct s_smc *smc, int np);
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int smt_action(struct s_smc *smc, int class, int code, int index);
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u_short smt_online(struct s_smc *smc, int on);
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void smt_force_irq(struct s_smc *smc);
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void smt_pmf_received_pack(struct s_smc *smc, SMbuf *mb, int local);
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void smt_send_frame(struct s_smc *smc, SMbuf *mb, int fc, int local);
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void smt_set_timestamp(struct s_smc *smc, u_char *p);
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void mac_set_rx_mode(struct s_smc *smc, int mode);
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int mac_add_multicast(struct s_smc *smc, struct fddi_addr *addr, int can);
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void mac_update_multicast(struct s_smc *smc);
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void mac_clear_multicast(struct s_smc *smc);
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void set_formac_tsync(struct s_smc *smc, long sync_bw);
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void formac_reinit_tx(struct s_smc *smc);
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void formac_tx_restart(struct s_smc *smc);
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void process_receive(struct s_smc *smc);
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void init_driver_fplus(struct s_smc *smc);
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void rtm_irq(struct s_smc *smc);
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void rtm_set_timer(struct s_smc *smc);
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void ring_status_indication(struct s_smc *smc, u_long status);
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void llc_recover_tx(struct s_smc *smc);
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void llc_restart_tx(struct s_smc *smc);
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void plc_clear_irq(struct s_smc *smc, int p);
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void plc_irq(struct s_smc *smc, int np, unsigned int cmd);
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int smt_set_mac_opvalues(struct s_smc *smc);
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#ifdef TAG_MODE
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void mac_do_pci_fix(struct s_smc *smc);
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void mac_drv_clear_tx_queue(struct s_smc *smc);
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void mac_drv_repair_descr(struct s_smc *smc);
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u_long hwt_quick_read(struct s_smc *smc);
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void hwt_wait_time(struct s_smc *smc, u_long start, long duration);
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#endif
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#ifdef SMT_PNMI
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int pnmi_init(struct s_smc* smc);
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int pnmi_process_ndis_id(struct s_smc *smc, u_long ndis_oid, void *buf, int len,
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int *BytesAccessed, int *BytesNeeded, u_char action);
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#endif
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#ifdef SBA
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#ifndef _H2INC
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void sba();
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#endif
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void sba_raf_received_pack();
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void sba_timer_poll();
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void smt_init_sba();
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#endif
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#ifdef ESS
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int ess_raf_received_pack(struct s_smc *smc, SMbuf *mb, struct smt_header *sm,
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int fs);
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void ess_timer_poll(struct s_smc *smc);
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void ess_para_change(struct s_smc *smc);
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#endif
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#ifndef BOOT
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void smt_init_evc(struct s_smc *smc);
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void smt_srf_event(struct s_smc *smc, int code, int index, int cond);
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#else
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#define smt_init_evc(smc)
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#define smt_srf_event(smc,code,index,cond)
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#endif
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#ifndef SMT_REAL_TOKEN_CT
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void smt_emulate_token_ct(struct s_smc *smc, int mac_index);
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#endif
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#if defined(DEBUG) && !defined(BOOT)
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void dump_smt(struct s_smc *smc, struct smt_header *sm, char *text);
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#else
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#define dump_smt(smc,sm,text)
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#endif
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#ifdef DEBUG
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void dump_hex(char *p, int len);
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#endif
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#endif /* PROTOTYP_INC */
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/* PNMI default defines */
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#ifndef PNMI_INIT
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#define PNMI_INIT(smc) /* Nothing */
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#endif
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/*
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* SMT_PANIC defines
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*/
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#ifndef SMT_PANIC
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#define SMT_PANIC(smc,nr,msg) smt_panic (smc, msg)
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#endif
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#ifndef SMT_ERR_LOG
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#define SMT_ERR_LOG(smc,nr,msg) SMT_PANIC (smc, nr, msg)
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#endif
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#ifndef SMT_EBASE
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#define SMT_EBASE 100
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#endif
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#define SMT_E0100 SMT_EBASE + 0
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#define SMT_E0100_MSG "cfm FSM: invalid ce_type"
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#define SMT_E0101 SMT_EBASE + 1
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#define SMT_E0101_MSG "CEM: case ???"
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#define SMT_E0102 SMT_EBASE + 2
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#define SMT_E0102_MSG "CEM A: invalid state"
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#define SMT_E0103 SMT_EBASE + 3
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#define SMT_E0103_MSG "CEM B: invalid state"
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#define SMT_E0104 SMT_EBASE + 4
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#define SMT_E0104_MSG "CEM M: invalid state"
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#define SMT_E0105 SMT_EBASE + 5
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#define SMT_E0105_MSG "CEM S: invalid state"
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#define SMT_E0106 SMT_EBASE + 6
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#define SMT_E0106_MSG "CFM : invalid state"
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#define SMT_E0107 SMT_EBASE + 7
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#define SMT_E0107_MSG "ECM : invalid state"
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#define SMT_E0108 SMT_EBASE + 8
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#define SMT_E0108_MSG "prop_actions : NAC in DAS CFM"
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#define SMT_E0109 SMT_EBASE + 9
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#define SMT_E0109_MSG "ST2U.FM_SERRSF error in special frame"
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#define SMT_E0110 SMT_EBASE + 10
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#define SMT_E0110_MSG "ST2U.FM_SRFRCTOV recv. count. overflow"
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#define SMT_E0111 SMT_EBASE + 11
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#define SMT_E0111_MSG "ST2U.FM_SNFSLD NP & FORMAC simult. load"
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#define SMT_E0112 SMT_EBASE + 12
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#define SMT_E0112_MSG "ST2U.FM_SRCVFRM single-frame recv.-mode"
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#define SMT_E0113 SMT_EBASE + 13
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#define SMT_E0113_MSG "FPLUS: Buffer Memory Error"
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#define SMT_E0114 SMT_EBASE + 14
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#define SMT_E0114_MSG "ST2U.FM_SERRSF error in special frame"
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#define SMT_E0115 SMT_EBASE + 15
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#define SMT_E0115_MSG "ST3L: parity error in receive queue 2"
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#define SMT_E0116 SMT_EBASE + 16
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#define SMT_E0116_MSG "ST3L: parity error in receive queue 1"
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#define SMT_E0117 SMT_EBASE + 17
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#define SMT_E0117_MSG "E_SMT_001: RxD count for receive queue 1 = 0"
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#define SMT_E0118 SMT_EBASE + 18
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#define SMT_E0118_MSG "PCM : invalid state"
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#define SMT_E0119 SMT_EBASE + 19
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#define SMT_E0119_MSG "smt_add_para"
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#define SMT_E0120 SMT_EBASE + 20
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#define SMT_E0120_MSG "smt_set_para"
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#define SMT_E0121 SMT_EBASE + 21
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#define SMT_E0121_MSG "invalid event in dispatcher"
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#define SMT_E0122 SMT_EBASE + 22
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#define SMT_E0122_MSG "RMT : invalid state"
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#define SMT_E0123 SMT_EBASE + 23
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#define SMT_E0123_MSG "SBA: state machine has invalid state"
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#define SMT_E0124 SMT_EBASE + 24
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#define SMT_E0124_MSG "sba_free_session() called with NULL pointer"
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#define SMT_E0125 SMT_EBASE + 25
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#define SMT_E0125_MSG "SBA : invalid session pointer"
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#define SMT_E0126 SMT_EBASE + 26
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#define SMT_E0126_MSG "smt_free_mbuf() called with NULL pointer\n"
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#define SMT_E0127 SMT_EBASE + 27
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#define SMT_E0127_MSG "sizeof evcs"
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#define SMT_E0128 SMT_EBASE + 28
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#define SMT_E0128_MSG "evc->evc_cond_state = 0"
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#define SMT_E0129 SMT_EBASE + 29
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#define SMT_E0129_MSG "evc->evc_multiple = 0"
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#define SMT_E0130 SMT_EBASE + 30
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#define SMT_E0130_MSG write_mdr_warning
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#define SMT_E0131 SMT_EBASE + 31
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#define SMT_E0131_MSG cam_warning
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#define SMT_E0132 SMT_EBASE + 32
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#define SMT_E0132_MSG "ST1L.FM_SPCEPDx parity/coding error"
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#define SMT_E0133 SMT_EBASE + 33
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#define SMT_E0133_MSG "ST1L.FM_STBURx tx buffer underrun"
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#define SMT_E0134 SMT_EBASE + 34
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#define SMT_E0134_MSG "ST1L.FM_SPCEPDx parity error"
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#define SMT_E0135 SMT_EBASE + 35
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#define SMT_E0135_MSG "RMT: duplicate MAC address detected. Ring left!"
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#define SMT_E0136 SMT_EBASE + 36
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#define SMT_E0136_MSG "Elasticity Buffer hang-up"
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#define SMT_E0137 SMT_EBASE + 37
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#define SMT_E0137_MSG "SMT: queue overrun"
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#define SMT_E0138 SMT_EBASE + 38
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#define SMT_E0138_MSG "RMT: duplicate MAC address detected. Ring NOT left!"
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#endif /* _CMTDEF_ */
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