blob: 6c1bd17ced304e3d4e0ac52c5e9c8e28f5bbbb87 [file] [log] [blame]
Brian Waters13d96012017-12-08 16:53:31 -06001/*
2* Copyright (c) 2017 Sprint
3*
4* Licensed under the Apache License, Version 2.0 (the "License");
5* you may not use this file except in compliance with the License.
6* You may obtain a copy of the License at
7*
8* http://www.apache.org/licenses/LICENSE-2.0
9*
10* Unless required by applicable law or agreed to in writing, software
11* distributed under the License is distributed on an "AS IS" BASIS,
12* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13* See the License for the specific language governing permissions and
14* limitations under the License.
15*/
16
17/****************
18 Generated By: fdtool enhancements to diafuzzer
19 License: same as freeDiameter
20****************/
21
22
23/*
24 * Dictionary definitions of objects specified in rfc7944_avps.
25 */
26#include <freeDiameter/extension.h>
27
28#define PROTO_VER "unspecified"
29#define GEN_DATE 1506697143.69
30
31const char *rfc7944_avps_proto_ver = PROTO_VER;
32const double rfc7944_avps_gen_date = GEN_DATE;
33
34/* The content of this file follows the same structure as dict_base_proto.c */
35
36#define CHECK_dict_new( _type, _data, _parent, _ref ) \
37{ \
38 int _ret = fd_dict_new( fd_g_config->cnf_dict, (_type), (_data), (_parent), (_ref) ); \
39 if ( _ret != 0 && _ret != EEXIST ) \
40 return _ret; \
41}
42
43#define CHECK_dict_search( _type, _criteria, _what, _result ) \
44 CHECK_FCT( fd_dict_search( fd_g_config->cnf_dict, (_type), (_criteria), (_what), (_result), ENOENT) );
45
46struct local_rules_definition {
47 struct dict_avp_request avp_vendor_plus_name;
48 enum rule_position position;
49 int min;
50 int max;
51};
52
53#define RULE_ORDER( _position ) ((((_position) == RULE_FIXED_HEAD) || ((_position) == RULE_FIXED_TAIL)) ? 1 : 0 )
54
55/* Attention! This version of the macro uses AVP_BY_NAME_AND_VENDOR, in contrast to most other copies! */
56#define PARSE_loc_rules( _rulearray, _parent) { \
57 int __ar; \
58 for (__ar=0; __ar < sizeof(_rulearray) / sizeof((_rulearray)[0]); __ar++) { \
59 struct dict_rule_data __data = { NULL, \
60 (_rulearray)[__ar].position, \
61 0, \
62 (_rulearray)[__ar].min, \
63 (_rulearray)[__ar].max}; \
64 __data.rule_order = RULE_ORDER(__data.rule_position); \
65 CHECK_FCT( fd_dict_search( \
66 fd_g_config->cnf_dict, \
67 DICT_AVP, \
68 AVP_BY_NAME_AND_VENDOR, \
69 &(_rulearray)[__ar].avp_vendor_plus_name, \
70 &__data.rule_avp, 0 ) ); \
71 if ( !__data.rule_avp ) { \
72 TRACE_DEBUG(INFO, "AVP Not found: '%s'", (_rulearray)[__ar].avp_vendor_plus_name.avp_name); \
73 return ENOENT; \
74 } \
75 { \
76 int _ret = fd_dict_new( fd_g_config->cnf_dict, DICT_RULE, &(__data), (_parent), NULL ); \
77 if ( _ret != 0 && _ret != EEXIST ) { \
78 TRACE_DEBUG(INFO, "Error on rule with AVP '%s'", \
79 (_rulearray)[__ar].avp_vendor_plus_name.avp_name); \
80 return EINVAL; \
81 } \
82 } \
83 } \
84}
85
86#define CHECK_vendor_new( _data ) { \
87 struct dict_object * vendor_found; \
88 if (fd_dict_search(fd_g_config->cnf_dict,DICT_VENDOR,VENDOR_BY_ID,&_data.vendor_id,&vendor_found,ENOENT) == ENOENT) { \
89 CHECK_FCT(fd_dict_new(fd_g_config->cnf_dict, DICT_VENDOR, &_data, NULL, NULL)); \
90 } \
91}
92
93#define enumval_def_u32( _val_, _str_ ) \
94 { _str_, { .u32 = _val_ }}
95
96#define enumval_def_os( _len_, _val_, _str_ ) \
97 { _str_, { .os = { .data = (unsigned char *)_val_, .len = _len_ }}}
98
99
100static int dict_rfc7944_avps_load_defs(char * conffile)
101{
102 TRACE_ENTRY("%p", conffile);
103
104 /* AVP section */
105 {
106 struct dict_object * Address_type;
107 struct dict_object * UTF8String_type;
108 struct dict_object * DiameterIdentity_type;
109 struct dict_object * DiameterURI_type;
110 struct dict_object * Time_type;
111 struct dict_object * IPFilterRule_type;
112
113 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "Address", &Address_type);
114 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "UTF8String", &UTF8String_type);
115 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "DiameterIdentity", &DiameterIdentity_type);
116 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "DiameterURI", &DiameterURI_type);
117 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "Time", &Time_type);
118 CHECK_dict_search( DICT_TYPE, TYPE_BY_NAME, "IPFilterRule", &IPFilterRule_type);
119 /* DRMP */
120 {
121 struct dict_avp_data data = {
122 301, /* Code */
123 0, /* Vendor */
124 "DRMP", /* Name */
125 AVP_FLAG_VENDOR, /* Fixed flags */
126 AVP_FLAG_VENDOR, /* Fixed flag values */
127 AVP_TYPE_INTEGER32 /* base type of data */
128 };
129 struct dict_object *type;
130 struct dict_type_data tdata = { AVP_TYPE_INTEGER32, "Enumerated(DRMP)", NULL, NULL, NULL };
131 struct dict_enumval_data t_1 = { "PRIORITY_15", { .i32=15 }};
132 struct dict_enumval_data t_2 = { "PRIORITY_14", { .i32=14 }};
133 struct dict_enumval_data t_3 = { "PRIORITY_13", { .i32=13 }};
134 struct dict_enumval_data t_4 = { "PRIORITY_12", { .i32=12 }};
135 struct dict_enumval_data t_5 = { "PRIORITY_11", { .i32=11 }};
136 struct dict_enumval_data t_6 = { "PRIORITY_10", { .i32=10 }};
137 struct dict_enumval_data t_7 = { "PRIORITY_9", { .i32=9 }};
138 struct dict_enumval_data t_8 = { "PRIORITY_8", { .i32=8 }};
139 struct dict_enumval_data t_9 = { "PRIORITY_7", { .i32=7 }};
140 struct dict_enumval_data t_10 = { "PRIORITY_6", { .i32=6 }};
141 struct dict_enumval_data t_11 = { "PRIORITY_5", { .i32=5 }};
142 struct dict_enumval_data t_12 = { "PRIORITY_4", { .i32=4 }};
143 struct dict_enumval_data t_13 = { "PRIORITY_3", { .i32=3 }};
144 struct dict_enumval_data t_14 = { "PRIORITY_2", { .i32=2 }};
145 struct dict_enumval_data t_15 = { "PRIORITY_1", { .i32=1 }};
146 struct dict_enumval_data t_16 = { "PRIORITY_0", { .i32=0 }};
147 /* Create the Enumerated type, and then the AVP */
148 CHECK_dict_new( DICT_TYPE, &tdata, NULL, &type);
149 CHECK_dict_new( DICT_ENUMVAL, &t_1, type, NULL);
150 CHECK_dict_new( DICT_ENUMVAL, &t_2, type, NULL);
151 CHECK_dict_new( DICT_ENUMVAL, &t_3, type, NULL);
152 CHECK_dict_new( DICT_ENUMVAL, &t_4, type, NULL);
153 CHECK_dict_new( DICT_ENUMVAL, &t_5, type, NULL);
154 CHECK_dict_new( DICT_ENUMVAL, &t_6, type, NULL);
155 CHECK_dict_new( DICT_ENUMVAL, &t_7, type, NULL);
156 CHECK_dict_new( DICT_ENUMVAL, &t_8, type, NULL);
157 CHECK_dict_new( DICT_ENUMVAL, &t_9, type, NULL);
158 CHECK_dict_new( DICT_ENUMVAL, &t_10, type, NULL);
159 CHECK_dict_new( DICT_ENUMVAL, &t_11, type, NULL);
160 CHECK_dict_new( DICT_ENUMVAL, &t_12, type, NULL);
161 CHECK_dict_new( DICT_ENUMVAL, &t_13, type, NULL);
162 CHECK_dict_new( DICT_ENUMVAL, &t_14, type, NULL);
163 CHECK_dict_new( DICT_ENUMVAL, &t_15, type, NULL);
164 CHECK_dict_new( DICT_ENUMVAL, &t_16, type, NULL);
165 CHECK_dict_new( DICT_AVP, &data, type, NULL);
166 };
167
168
169 }
170
171 /* Commands section */
172 {
173
174 }
175
176 return 0;
177}
178
179static int dict_rfc7944_avps_load_rules(char * conffile)
180{
181 /* Grouped AVP section */
182 {
183
184 }
185
186 /* Commands section */
187 {
188
189 }
190
191 LOG_D( "Extension 'Dictionary definitions for rfc7944_avps (None)' initialized");
192 return 0;
193}
194
195int dict_entry(char * conffile)
196{
197 dict_rfc7944_avps_load_defs(conffile);
198 return dict_rfc7944_avps_load_rules(conffile);
199}
200
201const char* dict_rfc7944_avps_proto_ver(char * conffile) {
202 return rfc7944_avps_proto_ver;
203}
204
205const double dict_rfc7944_avps_gen_ts(char * conffile) {
206 return rfc7944_avps_gen_date;
207}
208
209EXTENSION_ENTRY2("dict_rfc7944_avps", dict_rfc7944_avps_load_defs, dict_rfc7944_avps_load_rules);
210
211
212