2 * linux/net/sunrpc/gss_krb5_seal.c
4 * Adapted from MIT Kerberos 5-1.2.1 lib/gssapi/krb5/k5seal.c
6 * Copyright (c) 2000-2008 The Regents of the University of Michigan.
9 * Andy Adamson <andros@umich.edu>
10 * J. Bruce Fields <bfields@umich.edu>
14 * Copyright 1993 by OpenVision Technologies, Inc.
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61 #include <linux/types.h>
62 #include <linux/jiffies.h>
63 #include <linux/sunrpc/gss_krb5.h>
64 #include <linux/random.h>
65 #include <linux/crypto.h>
66 #include <linux/atomic.h>
68 #if IS_ENABLED(CONFIG_SUNRPC_DEBUG)
69 # define RPCDBG_FACILITY RPCDBG_AUTH
73 setup_token(struct krb5_ctx
*ctx
, struct xdr_netobj
*token
)
77 int body_size
= GSS_KRB5_TOK_HDR_LEN
+ ctx
->gk5e
->cksumlength
;
79 token
->len
= g_token_size(&ctx
->mech_used
, body_size
);
81 ptr
= (u16
*)token
->data
;
82 g_make_token_header(&ctx
->mech_used
, body_size
, (unsigned char **)&ptr
);
84 /* ptr now at start of header described in rfc 1964, section 1.2.1: */
86 *ptr
++ = KG_TOK_MIC_MSG
;
88 * signalg is stored as if it were converted from LE to host endian, even
89 * though it's an opaque pair of bytes according to the RFC.
91 *ptr
++ = (__force u16
)cpu_to_le16(ctx
->gk5e
->signalg
);
92 *ptr
++ = SEAL_ALG_NONE
;
99 setup_token_v2(struct krb5_ctx
*ctx
, struct xdr_netobj
*token
)
105 if ((ctx
->flags
& KRB5_CTX_FLAG_INITIATOR
) == 0)
107 if (ctx
->flags
& KRB5_CTX_FLAG_ACCEPTOR_SUBKEY
)
110 /* Per rfc 4121, sec 4.2.6.1, there is no header,
111 * just start the token */
112 krb5_hdr
= ptr
= (u16
*)token
->data
;
114 *ptr
++ = KG2_TOK_MIC
;
122 token
->len
= GSS_KRB5_TOK_HDR_LEN
+ ctx
->gk5e
->cksumlength
;
127 gss_get_mic_v1(struct krb5_ctx
*ctx
, struct xdr_buf
*text
,
128 struct xdr_netobj
*token
)
130 char cksumdata
[GSS_KRB5_MAX_CKSUM_LEN
];
131 struct xdr_netobj md5cksum
= {.len
= sizeof(cksumdata
),
138 dprintk("RPC: %s\n", __func__
);
141 now
= ktime_get_real_seconds();
143 ptr
= setup_token(ctx
, token
);
145 if (ctx
->gk5e
->keyed_cksum
)
146 cksumkey
= ctx
->cksum
;
150 if (make_checksum(ctx
, ptr
, 8, text
, 0, cksumkey
,
151 KG_USAGE_SIGN
, &md5cksum
))
152 return GSS_S_FAILURE
;
154 memcpy(ptr
+ GSS_KRB5_TOK_HDR_LEN
, md5cksum
.data
, md5cksum
.len
);
156 seq_send
= atomic_fetch_inc(&ctx
->seq_send
);
158 if (krb5_make_seq_num(ctx
, ctx
->seq
, ctx
->initiate
? 0 : 0xff,
159 seq_send
, ptr
+ GSS_KRB5_TOK_HDR_LEN
, ptr
+ 8))
160 return GSS_S_FAILURE
;
162 return (ctx
->endtime
< now
) ? GSS_S_CONTEXT_EXPIRED
: GSS_S_COMPLETE
;
166 gss_get_mic_v2(struct krb5_ctx
*ctx
, struct xdr_buf
*text
,
167 struct xdr_netobj
*token
)
169 char cksumdata
[GSS_KRB5_MAX_CKSUM_LEN
];
170 struct xdr_netobj cksumobj
= { .len
= sizeof(cksumdata
),
175 unsigned int cksum_usage
;
176 __be64 seq_send_be64
;
178 dprintk("RPC: %s\n", __func__
);
180 krb5_hdr
= setup_token_v2(ctx
, token
);
182 /* Set up the sequence number. Now 64-bits in clear
183 * text and w/o direction indicator */
184 seq_send_be64
= cpu_to_be64(atomic64_fetch_inc(&ctx
->seq_send64
));
185 memcpy(krb5_hdr
+ 8, (char *) &seq_send_be64
, 8);
188 cksumkey
= ctx
->initiator_sign
;
189 cksum_usage
= KG_USAGE_INITIATOR_SIGN
;
191 cksumkey
= ctx
->acceptor_sign
;
192 cksum_usage
= KG_USAGE_ACCEPTOR_SIGN
;
195 if (make_checksum_v2(ctx
, krb5_hdr
, GSS_KRB5_TOK_HDR_LEN
,
196 text
, 0, cksumkey
, cksum_usage
, &cksumobj
))
197 return GSS_S_FAILURE
;
199 memcpy(krb5_hdr
+ GSS_KRB5_TOK_HDR_LEN
, cksumobj
.data
, cksumobj
.len
);
201 now
= ktime_get_real_seconds();
203 return (ctx
->endtime
< now
) ? GSS_S_CONTEXT_EXPIRED
: GSS_S_COMPLETE
;
207 gss_get_mic_kerberos(struct gss_ctx
*gss_ctx
, struct xdr_buf
*text
,
208 struct xdr_netobj
*token
)
210 struct krb5_ctx
*ctx
= gss_ctx
->internal_ctx_id
;
212 switch (ctx
->enctype
) {
215 case ENCTYPE_DES_CBC_RAW
:
216 case ENCTYPE_DES3_CBC_RAW
:
217 return gss_get_mic_v1(ctx
, text
, token
);
218 case ENCTYPE_AES128_CTS_HMAC_SHA1_96
:
219 case ENCTYPE_AES256_CTS_HMAC_SHA1_96
:
220 return gss_get_mic_v2(ctx
, text
, token
);