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3 * (Royal Institute of Technology, Stockholm, Sweden).
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34 #include "kadmin_locl.h"
35 #include "kadmin-commands.h"
38 * del_enctype principal enctypes...
42 add_enctype(struct add_enctype_options
*opt
, int argc
, char **argv
)
44 kadm5_principal_ent_rec princ
;
45 krb5_principal princ_ent
= NULL
;
47 const char *princ_name
;
49 krb5_key_data
*new_key_data
;
53 if (!opt
->random_key_flag
) {
54 krb5_warnx (context
, "only random key is supported now");
58 memset (&princ
, 0, sizeof(princ
));
61 etypes
= malloc (n_etypes
* sizeof(*etypes
));
63 krb5_warnx (context
, "out of memory");
67 for (i
= 0; i
< n_etypes
; ++i
) {
68 ret
= krb5_string_to_enctype (context
, argv
[i
], &etypes
[i
]);
70 krb5_warnx (context
, "bad enctype \"%s\"", argv
[i
]);
75 ret
= krb5_parse_name(context
, princ_name
, &princ_ent
);
77 krb5_warn (context
, ret
, "krb5_parse_name %s", princ_name
);
81 /* The principal might have zero keys, but it will still have a kvno! */
82 ret
= kadm5_get_principal(kadm_handle
, princ_ent
, &princ
,
83 KADM5_KVNO
| KADM5_PRINCIPAL
| KADM5_KEY_DATA
);
85 krb5_free_principal (context
, princ_ent
);
86 krb5_warnx (context
, "no such principal: %s", princ_name
);
90 new_key_data
= malloc((princ
.n_key_data
+ n_etypes
)
91 * sizeof(*new_key_data
));
92 if (new_key_data
== NULL
) {
93 krb5_warnx (context
, "out of memory");
97 for (i
= 0; i
< princ
.n_key_data
; ++i
) {
98 krb5_key_data
*key
= &princ
.key_data
[i
];
100 for (j
= 0; j
< n_etypes
; ++j
) {
101 if (etypes
[j
] == key
->key_data_type
[0]) {
102 /* XXX Should this be an error? The admin can del_enctype... */
103 krb5_warnx(context
, "enctype %d already exists",
109 new_key_data
[i
] = *key
;
112 for (i
= 0; i
< n_etypes
; ++i
) {
113 int n
= princ
.n_key_data
+ i
;
114 krb5_keyblock keyblock
;
116 memset(&new_key_data
[n
], 0, sizeof(new_key_data
[n
]));
117 new_key_data
[n
].key_data_ver
= 2;
118 new_key_data
[n
].key_data_kvno
= princ
.kvno
;
120 ret
= krb5_generate_random_keyblock (context
, etypes
[i
], &keyblock
);
122 krb5_warnx(context
, "genernate enctype %d failed", (int)etypes
[i
]);
124 free(new_key_data
[--n
].key_data_contents
[0]);
129 new_key_data
[n
].key_data_type
[0] = etypes
[i
];
130 new_key_data
[n
].key_data_contents
[0] = malloc(keyblock
.keyvalue
.length
);
131 if (new_key_data
[n
].key_data_contents
[0] == NULL
) {
133 krb5_warn(context
, ret
, "out of memory");
135 free(new_key_data
[--n
].key_data_contents
[0]);
138 new_key_data
[n
].key_data_length
[0] = keyblock
.keyvalue
.length
;
139 memcpy(new_key_data
[n
].key_data_contents
[0],
140 keyblock
.keyvalue
.data
,
141 keyblock
.keyvalue
.length
);
142 krb5_free_keyblock_contents(context
, &keyblock
);
145 new_key_data
[n
].key_data_type
[1] = KRB5_PW_SALT
;
146 new_key_data
[n
].key_data_length
[1] = 0;
147 new_key_data
[n
].key_data_contents
[1] = NULL
;
151 free (princ
.key_data
);
152 princ
.n_key_data
+= n_etypes
;
153 princ
.key_data
= new_key_data
;
156 ret
= kadm5_modify_principal (kadm_handle
, &princ
, KADM5_KEY_DATA
);
158 krb5_warn(context
, ret
, "kadm5_modify_principal");
160 krb5_free_principal (context
, princ_ent
);
161 kadm5_free_principal_ent(kadm_handle
, &princ
);