blob: 6d85c1111c5bd323cf8141686d2da73c8fe5daf5 [file] [log] [blame]
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +00001=pod
2
3=head1 NAME
4
Rich Salzc9527802016-06-21 07:03:34 -04005i2t_ASN1_OBJECT,
6OBJ_length, OBJ_get0_data, OBJ_nid2obj, OBJ_nid2ln,
7OBJ_nid2sn, OBJ_obj2nid, OBJ_txt2nid, OBJ_ln2nid, OBJ_sn2nid, OBJ_cmp,
8OBJ_dup, OBJ_txt2obj, OBJ_obj2txt, OBJ_create, OBJ_cleanup
9- ASN1 object utility functions
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000010
11=head1 SYNOPSIS
12
Ulf Möllerc2645922006-05-14 11:28:00 +000013 #include <openssl/objects.h>
14
Rich Salzc9527802016-06-21 07:03:34 -040015 ASN1_OBJECT *OBJ_nid2obj(int n);
16 const char *OBJ_nid2ln(int n);
17 const char *OBJ_nid2sn(int n);
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000018
19 int OBJ_obj2nid(const ASN1_OBJECT *o);
20 int OBJ_ln2nid(const char *ln);
21 int OBJ_sn2nid(const char *sn);
22
23 int OBJ_txt2nid(const char *s);
24
Rich Salzc9527802016-06-21 07:03:34 -040025 ASN1_OBJECT *OBJ_txt2obj(const char *s, int no_name);
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000026 int OBJ_obj2txt(char *buf, int buf_len, const ASN1_OBJECT *a, int no_name);
27
FdaSilvaYYe83f1542016-07-08 00:37:43 +020028 int i2t_ASN1_OBJECT(char *buf, int buf_len, const ASN1_OBJECT *a);
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000029
Rich Salzc9527802016-06-21 07:03:34 -040030 int OBJ_cmp(const ASN1_OBJECT *a, const ASN1_OBJECT *b);
31 ASN1_OBJECT *OBJ_dup(const ASN1_OBJECT *o);
32
33 int OBJ_create(const char *oid, const char *sn, const char *ln);
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000034
Dr. Stephen Henson2e430272015-03-15 16:26:04 +000035 size_t OBJ_length(const ASN1_OBJECT *obj);
36 const unsigned char *OBJ_get0_data(const ASN1_OBJECT *obj);
37
Matt Caswell7b8cc9b2016-04-04 15:49:21 +010038Deprecated:
39
40 #if OPENSSL_API_COMPAT < 0x10100000L
Matt Caswell1d5099d2016-04-06 11:13:25 +010041 void OBJ_cleanup(void)
Matt Caswell7b8cc9b2016-04-04 15:49:21 +010042 #endif
43
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000044=head1 DESCRIPTION
45
46The ASN1 object utility functions process ASN1_OBJECT structures which are
47a representation of the ASN1 OBJECT IDENTIFIER (OID) type.
Rich Salz5d28ff32016-06-26 09:24:49 -040048For convenience, OIDs are usually represented in source code as numeric
49identifiers, or B<NID>s. OpenSSL has an internal table of OIDs that
50are generated when the library is built, and their corresponding NIDs
51are available as defined constants. For the functions below, application
52code should treat all returned values -- OIDs, NIDs, or names -- as
53constants.
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000054
Rich Salz1bc74512016-05-20 08:11:46 -040055OBJ_nid2obj(), OBJ_nid2ln() and OBJ_nid2sn() convert the NID B<n> to
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000056an ASN1_OBJECT structure, its long name and its short name respectively,
Dr. Matthias St. Pierre34e4a962018-05-11 16:54:43 +020057or B<NULL> if an error occurred.
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000058
59OBJ_obj2nid(), OBJ_ln2nid(), OBJ_sn2nid() return the corresponding NID
60for the object B<o>, the long name <ln> or the short name <sn> respectively
61or NID_undef if an error occurred.
62
63OBJ_txt2nid() returns NID corresponding to text string <s>. B<s> can be
Alok Menghrajani186bb902015-04-13 11:05:13 -070064a long name, a short name or the numerical representation of an object.
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000065
66OBJ_txt2obj() converts the text string B<s> into an ASN1_OBJECT structure.
67If B<no_name> is 0 then long names and short names will be interpreted
68as well as numerical forms. If B<no_name> is 1 only the numerical form
69is acceptable.
70
71OBJ_obj2txt() converts the B<ASN1_OBJECT> B<a> into a textual representation.
72The representation is written as a null terminated string to B<buf>
73at most B<buf_len> bytes are written, truncating the result if necessary.
74The total amount of space required is returned. If B<no_name> is 0 then
75if the object has a long or short name then that will be used, otherwise
76the numerical form will be used. If B<no_name> is 1 then the numerical
77form will always be used.
78
Rich Salzc9527802016-06-21 07:03:34 -040079i2t_ASN1_OBJECT() is the same as OBJ_obj2txt() with the B<no_name> set to zero.
80
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000081OBJ_cmp() compares B<a> to B<b>. If the two are identical 0 is returned.
82
83OBJ_dup() returns a copy of B<o>.
84
Rich Salz1bc74512016-05-20 08:11:46 -040085OBJ_create() adds a new object to the internal table. B<oid> is the
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000086numerical form of the object, B<sn> the short name and B<ln> the
87long name. A new NID is returned for the created object.
88
Dr. Stephen Henson2e430272015-03-15 16:26:04 +000089OBJ_length() returns the size of the content octets of B<obj>.
90
91OBJ_get0_data() returns a pointer to the content octets of B<obj>.
92The returned pointer is an internal pointer which B<must not> be freed.
93
Rich Salzb3696a52017-09-02 09:35:50 -040094OBJ_cleanup() releases any resources allocated by creating new objects.
Matt Caswell7b8cc9b2016-04-04 15:49:21 +010095
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +000096=head1 NOTES
97
98Objects in OpenSSL can have a short name, a long name and a numerical
99identifier (NID) associated with them. A standard set of objects is
100represented in an internal table. The appropriate values are defined
101in the header file B<objects.h>.
102
103For example the OID for commonName has the following definitions:
104
105 #define SN_commonName "CN"
106 #define LN_commonName "commonName"
107 #define NID_commonName 13
108
109New objects can be added by calling OBJ_create().
110
111Table objects have certain advantages over other objects: for example
112their NIDs can be used in a C language switch statement. They are
113also static constant structures which are shared: that is there
114is only a single constant structure for each table object.
115
116Objects which are not in the table have the NID value NID_undef.
117
118Objects do not need to be in the internal tables to be processed,
119the functions OBJ_txt2obj() and OBJ_obj2txt() can process the numerical
120form of an OID.
121
Alok Menghrajani186bb902015-04-13 11:05:13 -0700122Some objects are used to represent algorithms which do not have a
Dr. Stephen Henson2e430272015-03-15 16:26:04 +0000123corresponding ASN.1 OBJECT IDENTIFIER encoding (for example no OID currently
124exists for a particular algorithm). As a result they B<cannot> be encoded or
125decoded as part of ASN.1 structures. Applications can determine if there
126is a corresponding OBJECT IDENTIFIER by checking OBJ_length() is not zero.
127
Rich Salz5d28ff32016-06-26 09:24:49 -0400128These functions cannot return B<const> because an B<ASN1_OBJECT> can
129represent both an internal, constant, OID and a dynamically-created one.
130The latter cannot be constant because it needs to be freed after use.
131
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000132=head1 EXAMPLES
133
134Create an object for B<commonName>:
135
Beat Bollie9b77242017-01-20 19:58:49 +0100136 ASN1_OBJECT *o = OBJ_nid2obj(NID_commonName);
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000137
Dr. Stephen Henson0711be12002-10-20 13:20:57 +0000138Check if an object is B<commonName>
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000139
140 if (OBJ_obj2nid(obj) == NID_commonName)
Beat Bolli2947af32016-11-19 00:10:05 +0100141 /* Do something */
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000142
143Create a new NID and initialize an object from it:
144
Beat Bollie9b77242017-01-20 19:58:49 +0100145 int new_nid = OBJ_create("1.2.3.4", "NewOID", "New Object Identifier");
146 ASN1_OBJECT *obj = OBJ_nid2obj(new_nid);
Rich Salz1bc74512016-05-20 08:11:46 -0400147
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000148Create a new object directly:
149
150 obj = OBJ_txt2obj("1.2.3.4", 1);
151
152=head1 BUGS
153
Rich Salz1bc74512016-05-20 08:11:46 -0400154OBJ_obj2txt() is awkward and messy to use: it doesn't follow the
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000155convention of other OpenSSL functions where the buffer can be set
156to B<NULL> to determine the amount of data that should be written.
157Instead B<buf> must point to a valid buffer and B<buf_len> should
158be set to a positive value. A buffer length of 80 should be more
159than enough to handle any OID encountered in practice.
160
161=head1 RETURN VALUES
162
Dr. Stephen Henson0711be12002-10-20 13:20:57 +0000163OBJ_nid2obj() returns an B<ASN1_OBJECT> structure or B<NULL> is an
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000164error occurred.
165
166OBJ_nid2ln() and OBJ_nid2sn() returns a valid string or B<NULL>
167on error.
168
169OBJ_obj2nid(), OBJ_ln2nid(), OBJ_sn2nid() and OBJ_txt2nid() return
Dr. Stephen Henson0711be12002-10-20 13:20:57 +0000170a NID or B<NID_undef> on error.
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000171
172=head1 SEE ALSO
173
Rich Salz9b869742015-08-17 15:21:33 -0400174L<ERR_get_error(3)>
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000175
176=head1 HISTORY
177
Rich Salzb3696a52017-09-02 09:35:50 -0400178OBJ_cleanup() was deprecated in OpenSSL 1.1.0 by L<OPENSSL_init_crypto(3)>
179and should not be used.
Dr. Stephen Henson4e1b50e2002-10-09 12:06:12 +0000180
Rich Salze2f92612016-05-18 11:44:05 -0400181=head1 COPYRIGHT
182
183Copyright 2002-2016 The OpenSSL Project Authors. All Rights Reserved.
184
185Licensed under the OpenSSL license (the "License"). You may not use
186this file except in compliance with the License. You can obtain a copy
187in the file LICENSE in the source distribution or at
188L<https://www.openssl.org/source/license.html>.
189
190=cut