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a7ab6ec83e
According to email from Wim Coekaerts.
344 lines
12 KiB
C
344 lines
12 KiB
C
/*
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* Please do not edit this file.
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* It was generated using rpcgen.
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*/
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#ifndef _KEY_PROT_H_RPCGEN
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#define _KEY_PROT_H_RPCGEN
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#include <rpc/rpc.h>
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/* Copyright (c) 2010, Oracle America, Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above
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* copyright notice, this list of conditions and the following
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* disclaimer in the documentation and/or other materials
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* provided with the distribution.
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* * Neither the name of the "Oracle America, Inc." nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
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* INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
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* GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
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* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
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* NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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/*
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* Compiled from key_prot.x using rpcgen.
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* DO NOT EDIT THIS FILE!
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* This is NOT source code!
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*/
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#define PROOT 3
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#define HEXMODULUS "d4a0ba0250b6fd2ec626e7efd637df76c716e22d0944b88b"
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#define HEXKEYBYTES 48
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#define KEYSIZE 192
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#define KEYBYTES 24
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#define KEYCHECKSUMSIZE 16
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enum keystatus {
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KEY_SUCCESS = 0,
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KEY_NOSECRET = 1,
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KEY_UNKNOWN = 2,
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KEY_SYSTEMERR = 3,
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};
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typedef enum keystatus keystatus;
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#ifdef __cplusplus
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extern "C" bool_t xdr_keystatus(XDR *, keystatus*);
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#elif __STDC__
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extern bool_t xdr_keystatus(XDR *, keystatus*);
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#else /* Old Style C */
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bool_t xdr_keystatus();
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#endif /* Old Style C */
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typedef char keybuf[HEXKEYBYTES];
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#ifdef __cplusplus
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extern "C" bool_t xdr_keybuf(XDR *, keybuf);
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#elif __STDC__
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extern bool_t xdr_keybuf(XDR *, keybuf);
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#else /* Old Style C */
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bool_t xdr_keybuf();
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#endif /* Old Style C */
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typedef char *netnamestr;
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#ifdef __cplusplus
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extern "C" bool_t xdr_netnamestr(XDR *, netnamestr*);
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#elif __STDC__
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extern bool_t xdr_netnamestr(XDR *, netnamestr*);
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#else /* Old Style C */
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bool_t xdr_netnamestr();
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#endif /* Old Style C */
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struct cryptkeyarg {
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netnamestr remotename;
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des_block deskey;
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};
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typedef struct cryptkeyarg cryptkeyarg;
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#ifdef __cplusplus
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extern "C" bool_t xdr_cryptkeyarg(XDR *, cryptkeyarg*);
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#elif __STDC__
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extern bool_t xdr_cryptkeyarg(XDR *, cryptkeyarg*);
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#else /* Old Style C */
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bool_t xdr_cryptkeyarg();
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#endif /* Old Style C */
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struct cryptkeyarg2 {
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netnamestr remotename;
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netobj remotekey;
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des_block deskey;
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};
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typedef struct cryptkeyarg2 cryptkeyarg2;
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#ifdef __cplusplus
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extern "C" bool_t xdr_cryptkeyarg2(XDR *, cryptkeyarg2*);
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#elif __STDC__
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extern bool_t xdr_cryptkeyarg2(XDR *, cryptkeyarg2*);
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#else /* Old Style C */
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bool_t xdr_cryptkeyarg2();
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#endif /* Old Style C */
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struct cryptkeyres {
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keystatus status;
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union {
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des_block deskey;
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} cryptkeyres_u;
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};
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typedef struct cryptkeyres cryptkeyres;
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#ifdef __cplusplus
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extern "C" bool_t xdr_cryptkeyres(XDR *, cryptkeyres*);
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#elif __STDC__
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extern bool_t xdr_cryptkeyres(XDR *, cryptkeyres*);
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#else /* Old Style C */
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bool_t xdr_cryptkeyres();
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#endif /* Old Style C */
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#define MAXGIDS 16
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struct unixcred {
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u_int uid;
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u_int gid;
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struct {
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u_int gids_len;
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u_int *gids_val;
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} gids;
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};
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typedef struct unixcred unixcred;
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#ifdef __cplusplus
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extern "C" bool_t xdr_unixcred(XDR *, unixcred*);
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#elif __STDC__
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extern bool_t xdr_unixcred(XDR *, unixcred*);
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#else /* Old Style C */
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bool_t xdr_unixcred();
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#endif /* Old Style C */
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struct getcredres {
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keystatus status;
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union {
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unixcred cred;
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} getcredres_u;
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};
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typedef struct getcredres getcredres;
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#ifdef __cplusplus
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extern "C" bool_t xdr_getcredres(XDR *, getcredres*);
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#elif __STDC__
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extern bool_t xdr_getcredres(XDR *, getcredres*);
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#else /* Old Style C */
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bool_t xdr_getcredres();
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#endif /* Old Style C */
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struct key_netstarg {
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keybuf st_priv_key;
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keybuf st_pub_key;
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netnamestr st_netname;
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};
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typedef struct key_netstarg key_netstarg;
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#ifdef __cplusplus
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extern "C" bool_t xdr_key_netstarg(XDR *, key_netstarg*);
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#elif __STDC__
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extern bool_t xdr_key_netstarg(XDR *, key_netstarg*);
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#else /* Old Style C */
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bool_t xdr_key_netstarg();
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#endif /* Old Style C */
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struct key_netstres {
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keystatus status;
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union {
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key_netstarg knet;
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} key_netstres_u;
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};
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typedef struct key_netstres key_netstres;
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#ifdef __cplusplus
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extern "C" bool_t xdr_key_netstres(XDR *, key_netstres*);
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#elif __STDC__
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extern bool_t xdr_key_netstres(XDR *, key_netstres*);
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#else /* Old Style C */
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bool_t xdr_key_netstres();
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#endif /* Old Style C */
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#ifndef opaque
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#define opaque char
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#endif
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#define KEY_PROG ((u_long)100029)
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#define KEY_VERS ((u_long)1)
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#ifdef __cplusplus
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#define KEY_SET ((u_long)1)
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extern "C" keystatus * key_set_1(opaque *, CLIENT *);
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extern "C" keystatus * key_set_1_svc(opaque *, struct svc_req *);
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#define KEY_ENCRYPT ((u_long)2)
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extern "C" cryptkeyres * key_encrypt_1(cryptkeyarg *, CLIENT *);
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extern "C" cryptkeyres * key_encrypt_1_svc(cryptkeyarg *, struct svc_req *);
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#define KEY_DECRYPT ((u_long)3)
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extern "C" cryptkeyres * key_decrypt_1(cryptkeyarg *, CLIENT *);
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extern "C" cryptkeyres * key_decrypt_1_svc(cryptkeyarg *, struct svc_req *);
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#define KEY_GEN ((u_long)4)
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extern "C" des_block * key_gen_1(void *, CLIENT *);
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extern "C" des_block * key_gen_1_svc(void *, struct svc_req *);
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#define KEY_GETCRED ((u_long)5)
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extern "C" getcredres * key_getcred_1(netnamestr *, CLIENT *);
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extern "C" getcredres * key_getcred_1_svc(netnamestr *, struct svc_req *);
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#elif __STDC__
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#define KEY_SET ((u_long)1)
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extern keystatus * key_set_1(opaque *, CLIENT *);
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extern keystatus * key_set_1_svc(opaque *, struct svc_req *);
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#define KEY_ENCRYPT ((u_long)2)
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extern cryptkeyres * key_encrypt_1(cryptkeyarg *, CLIENT *);
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extern cryptkeyres * key_encrypt_1_svc(cryptkeyarg *, struct svc_req *);
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#define KEY_DECRYPT ((u_long)3)
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extern cryptkeyres * key_decrypt_1(cryptkeyarg *, CLIENT *);
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extern cryptkeyres * key_decrypt_1_svc(cryptkeyarg *, struct svc_req *);
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#define KEY_GEN ((u_long)4)
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extern des_block * key_gen_1(void *, CLIENT *);
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extern des_block * key_gen_1_svc(void *, struct svc_req *);
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#define KEY_GETCRED ((u_long)5)
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extern getcredres * key_getcred_1(netnamestr *, CLIENT *);
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extern getcredres * key_getcred_1_svc(netnamestr *, struct svc_req *);
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#else /* Old Style C */
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#define KEY_SET ((u_long)1)
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extern keystatus * key_set_1();
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extern keystatus * key_set_1_svc();
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#define KEY_ENCRYPT ((u_long)2)
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extern cryptkeyres * key_encrypt_1();
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extern cryptkeyres * key_encrypt_1_svc();
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#define KEY_DECRYPT ((u_long)3)
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extern cryptkeyres * key_decrypt_1();
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extern cryptkeyres * key_decrypt_1_svc();
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#define KEY_GEN ((u_long)4)
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extern des_block * key_gen_1();
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extern des_block * key_gen_1_svc();
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#define KEY_GETCRED ((u_long)5)
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extern getcredres * key_getcred_1();
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extern getcredres * key_getcred_1_svc();
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#endif /* Old Style C */
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#define KEY_VERS2 ((u_long)2)
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#ifdef __cplusplus
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extern "C" keystatus * key_set_2(opaque *, CLIENT *);
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extern "C" keystatus * key_set_2_svc(opaque *, struct svc_req *);
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extern "C" cryptkeyres * key_encrypt_2(cryptkeyarg *, CLIENT *);
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extern "C" cryptkeyres * key_encrypt_2_svc(cryptkeyarg *, struct svc_req *);
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extern "C" cryptkeyres * key_decrypt_2(cryptkeyarg *, CLIENT *);
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extern "C" cryptkeyres * key_decrypt_2_svc(cryptkeyarg *, struct svc_req *);
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extern "C" des_block * key_gen_2(void *, CLIENT *);
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extern "C" des_block * key_gen_2_svc(void *, struct svc_req *);
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extern "C" getcredres * key_getcred_2(netnamestr *, CLIENT *);
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extern "C" getcredres * key_getcred_2_svc(netnamestr *, struct svc_req *);
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#define KEY_ENCRYPT_PK ((u_long)6)
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extern "C" cryptkeyres * key_encrypt_pk_2(cryptkeyarg2 *, CLIENT *);
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extern "C" cryptkeyres * key_encrypt_pk_2_svc(cryptkeyarg2 *, struct svc_req *);
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#define KEY_DECRYPT_PK ((u_long)7)
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extern "C" cryptkeyres * key_decrypt_pk_2(cryptkeyarg2 *, CLIENT *);
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extern "C" cryptkeyres * key_decrypt_pk_2_svc(cryptkeyarg2 *, struct svc_req *);
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#define KEY_NET_PUT ((u_long)8)
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extern "C" keystatus * key_net_put_2(key_netstarg *, CLIENT *);
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extern "C" keystatus * key_net_put_2_svc(key_netstarg *, struct svc_req *);
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#define KEY_NET_GET ((u_long)9)
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extern "C" key_netstres * key_net_get_2(void *, CLIENT *);
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extern "C" key_netstres * key_net_get_2_svc(void *, struct svc_req *);
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#define KEY_GET_CONV ((u_long)10)
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extern "C" cryptkeyres * key_get_conv_2(opaque *, CLIENT *);
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extern "C" cryptkeyres * key_get_conv_2_svc(opaque *, struct svc_req *);
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#elif __STDC__
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extern keystatus * key_set_2(opaque *, CLIENT *);
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extern keystatus * key_set_2_svc(opaque *, struct svc_req *);
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extern cryptkeyres * key_encrypt_2(cryptkeyarg *, CLIENT *);
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extern cryptkeyres * key_encrypt_2_svc(cryptkeyarg *, struct svc_req *);
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extern cryptkeyres * key_decrypt_2(cryptkeyarg *, CLIENT *);
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extern cryptkeyres * key_decrypt_2_svc(cryptkeyarg *, struct svc_req *);
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extern des_block * key_gen_2(void *, CLIENT *);
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extern des_block * key_gen_2_svc(void *, struct svc_req *);
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extern getcredres * key_getcred_2(netnamestr *, CLIENT *);
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extern getcredres * key_getcred_2_svc(netnamestr *, struct svc_req *);
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#define KEY_ENCRYPT_PK ((u_long)6)
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extern cryptkeyres * key_encrypt_pk_2(cryptkeyarg2 *, CLIENT *);
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extern cryptkeyres * key_encrypt_pk_2_svc(cryptkeyarg2 *, struct svc_req *);
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#define KEY_DECRYPT_PK ((u_long)7)
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extern cryptkeyres * key_decrypt_pk_2(cryptkeyarg2 *, CLIENT *);
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extern cryptkeyres * key_decrypt_pk_2_svc(cryptkeyarg2 *, struct svc_req *);
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#define KEY_NET_PUT ((u_long)8)
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extern keystatus * key_net_put_2(key_netstarg *, CLIENT *);
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extern keystatus * key_net_put_2_svc(key_netstarg *, struct svc_req *);
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#define KEY_NET_GET ((u_long)9)
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extern key_netstres * key_net_get_2(void *, CLIENT *);
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extern key_netstres * key_net_get_2_svc(void *, struct svc_req *);
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#define KEY_GET_CONV ((u_long)10)
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extern cryptkeyres * key_get_conv_2(opaque *, CLIENT *);
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extern cryptkeyres * key_get_conv_2_svc(opaque *, struct svc_req *);
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#else /* Old Style C */
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extern keystatus * key_set_2();
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extern keystatus * key_set_2_svc();
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extern cryptkeyres * key_encrypt_2();
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extern cryptkeyres * key_encrypt_2_svc();
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extern cryptkeyres * key_decrypt_2();
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extern cryptkeyres * key_decrypt_2_svc();
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extern des_block * key_gen_2();
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extern des_block * key_gen_2_svc();
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extern getcredres * key_getcred_2();
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extern getcredres * key_getcred_2_svc();
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#define KEY_ENCRYPT_PK ((u_long)6)
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extern cryptkeyres * key_encrypt_pk_2();
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extern cryptkeyres * key_encrypt_pk_2_svc();
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#define KEY_DECRYPT_PK ((u_long)7)
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extern cryptkeyres * key_decrypt_pk_2();
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extern cryptkeyres * key_decrypt_pk_2_svc();
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#define KEY_NET_PUT ((u_long)8)
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extern keystatus * key_net_put_2();
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extern keystatus * key_net_put_2_svc();
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#define KEY_NET_GET ((u_long)9)
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extern key_netstres * key_net_get_2();
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extern key_netstres * key_net_get_2_svc();
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#define KEY_GET_CONV ((u_long)10)
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extern cryptkeyres * key_get_conv_2();
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extern cryptkeyres * key_get_conv_2_svc();
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#endif /* Old Style C */
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#endif /* !_KEY_PROT_H_RPCGEN */
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