diff options
Diffstat (limited to '')
-rw-r--r-- | src/regress/lib/libssl/bytestring/bytestringtest.c | 1178 |
1 files changed, 596 insertions, 582 deletions
diff --git a/src/regress/lib/libssl/bytestring/bytestringtest.c b/src/regress/lib/libssl/bytestring/bytestringtest.c index 92e33c02e7..ba768e4bb0 100644 --- a/src/regress/lib/libssl/bytestring/bytestringtest.c +++ b/src/regress/lib/libssl/bytestring/bytestringtest.c | |||
@@ -1,4 +1,4 @@ | |||
1 | /* $OpenBSD: bytestringtest.c,v 1.1 2015/02/06 09:36:16 doug Exp $ */ | 1 | /* $OpenBSD: bytestringtest.c,v 1.2 2015/02/06 22:22:33 doug Exp $ */ |
2 | /* | 2 | /* |
3 | * Copyright (c) 2014, Google Inc. | 3 | * Copyright (c) 2014, Google Inc. |
4 | * | 4 | * |
@@ -25,631 +25,645 @@ | |||
25 | /* This is from <openssl/base.h> in boringssl */ | 25 | /* This is from <openssl/base.h> in boringssl */ |
26 | #define OPENSSL_U64(x) x##ULL | 26 | #define OPENSSL_U64(x) x##ULL |
27 | 27 | ||
28 | static int test_skip(void) { | 28 | static int |
29 | static const uint8_t kData[] = {1, 2, 3}; | 29 | test_skip(void) |
30 | CBS data; | 30 | { |
31 | 31 | static const uint8_t kData[] = {1, 2, 3}; | |
32 | CBS_init(&data, kData, sizeof(kData)); | 32 | CBS data; |
33 | return CBS_len(&data) == 3 && | 33 | |
34 | CBS_skip(&data, 1) && | 34 | CBS_init(&data, kData, sizeof(kData)); |
35 | CBS_len(&data) == 2 && | 35 | return CBS_len(&data) == 3 && |
36 | CBS_skip(&data, 2) && | 36 | CBS_skip(&data, 1) && |
37 | CBS_len(&data) == 0 && | 37 | CBS_len(&data) == 2 && |
38 | !CBS_skip(&data, 1); | 38 | CBS_skip(&data, 2) && |
39 | CBS_len(&data) == 0 && | ||
40 | !CBS_skip(&data, 1); | ||
39 | } | 41 | } |
40 | 42 | ||
41 | static int test_get_u(void) { | 43 | static int |
42 | static const uint8_t kData[] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10}; | 44 | test_get_u(void) |
43 | uint8_t u8; | 45 | { |
44 | uint16_t u16; | 46 | static const uint8_t kData[] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10}; |
45 | uint32_t u32; | 47 | uint8_t u8; |
46 | CBS data; | 48 | uint16_t u16; |
47 | 49 | uint32_t u32; | |
48 | CBS_init(&data, kData, sizeof(kData)); | 50 | CBS data; |
49 | return CBS_get_u8(&data, &u8) && | 51 | |
50 | u8 == 1 && | 52 | CBS_init(&data, kData, sizeof(kData)); |
51 | CBS_get_u16(&data, &u16) && | 53 | return CBS_get_u8(&data, &u8) && |
52 | u16 == 0x203 && | 54 | u8 == 1 && |
53 | CBS_get_u24(&data, &u32) && | 55 | CBS_get_u16(&data, &u16) && |
54 | u32 == 0x40506 && | 56 | u16 == 0x203 && |
55 | CBS_get_u32(&data, &u32) && | 57 | CBS_get_u24(&data, &u32) && |
56 | u32 == 0x708090a && | 58 | u32 == 0x40506 && |
57 | !CBS_get_u8(&data, &u8); | 59 | CBS_get_u32(&data, &u32) && |
60 | u32 == 0x708090a && | ||
61 | !CBS_get_u8(&data, &u8); | ||
58 | } | 62 | } |
59 | 63 | ||
60 | static int test_get_prefixed(void) { | 64 | static int |
61 | static const uint8_t kData[] = {1, 2, 0, 2, 3, 4, 0, 0, 3, 3, 2, 1}; | 65 | test_get_prefixed(void) |
62 | uint8_t u8; | 66 | { |
63 | uint16_t u16; | 67 | static const uint8_t kData[] = {1, 2, 0, 2, 3, 4, 0, 0, 3, 3, 2, 1}; |
64 | uint32_t u32; | 68 | uint8_t u8; |
65 | CBS data, prefixed; | 69 | uint16_t u16; |
66 | 70 | uint32_t u32; | |
67 | CBS_init(&data, kData, sizeof(kData)); | 71 | CBS data, prefixed; |
68 | return CBS_get_u8_length_prefixed(&data, &prefixed) && | 72 | |
69 | CBS_len(&prefixed) == 1 && | 73 | CBS_init(&data, kData, sizeof(kData)); |
70 | CBS_get_u8(&prefixed, &u8) && | 74 | return CBS_get_u8_length_prefixed(&data, &prefixed) && |
71 | u8 == 2 && | 75 | CBS_len(&prefixed) == 1 && |
72 | CBS_get_u16_length_prefixed(&data, &prefixed) && | 76 | CBS_get_u8(&prefixed, &u8) && |
73 | CBS_len(&prefixed) == 2 && | 77 | u8 == 2 && |
74 | CBS_get_u16(&prefixed, &u16) && | 78 | CBS_get_u16_length_prefixed(&data, &prefixed) && |
75 | u16 == 0x304 && | 79 | CBS_len(&prefixed) == 2 && |
76 | CBS_get_u24_length_prefixed(&data, &prefixed) && | 80 | CBS_get_u16(&prefixed, &u16) && |
77 | CBS_len(&prefixed) == 3 && | 81 | u16 == 0x304 && |
78 | CBS_get_u24(&prefixed, &u32) && | 82 | CBS_get_u24_length_prefixed(&data, &prefixed) && |
79 | u32 == 0x30201; | 83 | CBS_len(&prefixed) == 3 && |
84 | CBS_get_u24(&prefixed, &u32) && | ||
85 | u32 == 0x30201; | ||
80 | } | 86 | } |
81 | 87 | ||
82 | static int test_get_prefixed_bad(void) { | 88 | static int |
83 | static const uint8_t kData1[] = {2, 1}; | 89 | test_get_prefixed_bad(void) |
84 | static const uint8_t kData2[] = {0, 2, 1}; | 90 | { |
85 | static const uint8_t kData3[] = {0, 0, 2, 1}; | 91 | static const uint8_t kData1[] = {2, 1}; |
86 | CBS data, prefixed; | 92 | static const uint8_t kData2[] = {0, 2, 1}; |
93 | static const uint8_t kData3[] = {0, 0, 2, 1}; | ||
94 | CBS data, prefixed; | ||
87 | 95 | ||
88 | CBS_init(&data, kData1, sizeof(kData1)); | 96 | CBS_init(&data, kData1, sizeof(kData1)); |
89 | if (CBS_get_u8_length_prefixed(&data, &prefixed)) { | 97 | if (CBS_get_u8_length_prefixed(&data, &prefixed)) |
90 | return 0; | 98 | return 0; |
91 | } | ||
92 | 99 | ||
93 | CBS_init(&data, kData2, sizeof(kData2)); | 100 | CBS_init(&data, kData2, sizeof(kData2)); |
94 | if (CBS_get_u16_length_prefixed(&data, &prefixed)) { | 101 | if (CBS_get_u16_length_prefixed(&data, &prefixed)) |
95 | return 0; | 102 | return 0; |
96 | } | ||
97 | 103 | ||
98 | CBS_init(&data, kData3, sizeof(kData3)); | 104 | CBS_init(&data, kData3, sizeof(kData3)); |
99 | if (CBS_get_u24_length_prefixed(&data, &prefixed)) { | 105 | if (CBS_get_u24_length_prefixed(&data, &prefixed)) |
100 | return 0; | 106 | return 0; |
101 | } | ||
102 | 107 | ||
103 | return 1; | 108 | return 1; |
104 | } | 109 | } |
105 | 110 | ||
106 | static int test_get_asn1(void) { | 111 | static int |
107 | static const uint8_t kData1[] = {0x30, 2, 1, 2}; | 112 | test_get_asn1(void) |
108 | static const uint8_t kData2[] = {0x30, 3, 1, 2}; | 113 | { |
109 | static const uint8_t kData3[] = {0x30, 0x80}; | 114 | static const uint8_t kData1[] = {0x30, 2, 1, 2}; |
110 | static const uint8_t kData4[] = {0x30, 0x81, 1, 1}; | 115 | static const uint8_t kData2[] = {0x30, 3, 1, 2}; |
111 | static const uint8_t kData5[] = {0x30, 0x82, 0, 1, 1}; | 116 | static const uint8_t kData3[] = {0x30, 0x80}; |
112 | static const uint8_t kData6[] = {0xa1, 3, 0x4, 1, 1}; | 117 | static const uint8_t kData4[] = {0x30, 0x81, 1, 1}; |
113 | static const uint8_t kData7[] = {0xa1, 3, 0x4, 2, 1}; | 118 | static const uint8_t kData5[] = {0x30, 0x82, 0, 1, 1}; |
114 | static const uint8_t kData8[] = {0xa1, 3, 0x2, 1, 1}; | 119 | static const uint8_t kData6[] = {0xa1, 3, 0x4, 1, 1}; |
115 | static const uint8_t kData9[] = {0xa1, 3, 0x2, 1, 0xff}; | 120 | static const uint8_t kData7[] = {0xa1, 3, 0x4, 2, 1}; |
116 | 121 | static const uint8_t kData8[] = {0xa1, 3, 0x2, 1, 1}; | |
117 | CBS data, contents; | 122 | static const uint8_t kData9[] = {0xa1, 3, 0x2, 1, 0xff}; |
118 | int present; | 123 | |
119 | uint64_t value; | 124 | CBS data, contents; |
120 | 125 | int present; | |
121 | CBS_init(&data, kData1, sizeof(kData1)); | 126 | uint64_t value; |
122 | if (CBS_peek_asn1_tag(&data, 0x1) || | 127 | |
123 | !CBS_peek_asn1_tag(&data, 0x30)) { | 128 | CBS_init(&data, kData1, sizeof(kData1)); |
124 | return 0; | 129 | if (CBS_peek_asn1_tag(&data, 0x1) || !CBS_peek_asn1_tag(&data, 0x30)) |
125 | } | 130 | return 0; |
126 | if (!CBS_get_asn1(&data, &contents, 0x30) || | 131 | |
127 | CBS_len(&contents) != 2 || | 132 | if (!CBS_get_asn1(&data, &contents, 0x30) || |
128 | memcmp(CBS_data(&contents), "\x01\x02", 2) != 0) { | 133 | CBS_len(&contents) != 2 || |
129 | return 0; | 134 | memcmp(CBS_data(&contents), "\x01\x02", 2) != 0) |
130 | } | 135 | return 0; |
131 | 136 | ||
132 | CBS_init(&data, kData2, sizeof(kData2)); | 137 | CBS_init(&data, kData2, sizeof(kData2)); |
133 | /* data is truncated */ | 138 | /* data is truncated */ |
134 | if (CBS_get_asn1(&data, &contents, 0x30)) { | 139 | if (CBS_get_asn1(&data, &contents, 0x30)) |
135 | return 0; | 140 | return 0; |
136 | } | 141 | |
137 | 142 | CBS_init(&data, kData3, sizeof(kData3)); | |
138 | CBS_init(&data, kData3, sizeof(kData3)); | 143 | /* zero byte length of length */ |
139 | /* zero byte length of length */ | 144 | if (CBS_get_asn1(&data, &contents, 0x30)) |
140 | if (CBS_get_asn1(&data, &contents, 0x30)) { | 145 | return 0; |
141 | return 0; | 146 | |
142 | } | 147 | CBS_init(&data, kData4, sizeof(kData4)); |
143 | 148 | /* long form mistakenly used. */ | |
144 | CBS_init(&data, kData4, sizeof(kData4)); | 149 | if (CBS_get_asn1(&data, &contents, 0x30)) |
145 | /* long form mistakenly used. */ | 150 | return 0; |
146 | if (CBS_get_asn1(&data, &contents, 0x30)) { | 151 | |
147 | return 0; | 152 | CBS_init(&data, kData5, sizeof(kData5)); |
148 | } | 153 | /* length takes too many bytes. */ |
149 | 154 | if (CBS_get_asn1(&data, &contents, 0x30)) | |
150 | CBS_init(&data, kData5, sizeof(kData5)); | 155 | return 0; |
151 | /* length takes too many bytes. */ | 156 | |
152 | if (CBS_get_asn1(&data, &contents, 0x30)) { | 157 | CBS_init(&data, kData1, sizeof(kData1)); |
153 | return 0; | 158 | /* wrong tag. */ |
154 | } | 159 | if (CBS_get_asn1(&data, &contents, 0x31)) |
155 | 160 | return 0; | |
156 | CBS_init(&data, kData1, sizeof(kData1)); | 161 | |
157 | /* wrong tag. */ | 162 | CBS_init(&data, NULL, 0); |
158 | if (CBS_get_asn1(&data, &contents, 0x31)) { | 163 | /* peek at empty data. */ |
159 | return 0; | 164 | if (CBS_peek_asn1_tag(&data, 0x30)) |
160 | } | 165 | return 0; |
161 | 166 | ||
162 | CBS_init(&data, NULL, 0); | 167 | CBS_init(&data, NULL, 0); |
163 | /* peek at empty data. */ | 168 | /* optional elements at empty data. */ |
164 | if (CBS_peek_asn1_tag(&data, 0x30)) { | 169 | if (!CBS_get_optional_asn1(&data, &contents, &present, 0xa0) || |
165 | return 0; | 170 | present || |
166 | } | 171 | !CBS_get_optional_asn1_octet_string(&data, &contents, &present, |
167 | 172 | 0xa0) || | |
168 | CBS_init(&data, NULL, 0); | 173 | present || |
169 | /* optional elements at empty data. */ | 174 | CBS_len(&contents) != 0 || |
170 | if (!CBS_get_optional_asn1(&data, &contents, &present, 0xa0) || | 175 | !CBS_get_optional_asn1_octet_string(&data, &contents, NULL, 0xa0) || |
171 | present || | 176 | CBS_len(&contents) != 0 || |
172 | !CBS_get_optional_asn1_octet_string(&data, &contents, &present, 0xa0) || | 177 | !CBS_get_optional_asn1_uint64(&data, &value, 0xa0, 42) || |
173 | present || | 178 | value != 42) |
174 | CBS_len(&contents) != 0 || | 179 | return 0; |
175 | !CBS_get_optional_asn1_octet_string(&data, &contents, NULL, 0xa0) || | 180 | |
176 | CBS_len(&contents) != 0 || | 181 | CBS_init(&data, kData6, sizeof(kData6)); |
177 | !CBS_get_optional_asn1_uint64(&data, &value, 0xa0, 42) || | 182 | /* optional element. */ |
178 | value != 42) { | 183 | if (!CBS_get_optional_asn1(&data, &contents, &present, 0xa0) || |
179 | return 0; | 184 | present || |
180 | } | 185 | !CBS_get_optional_asn1(&data, &contents, &present, 0xa1) || |
181 | 186 | !present || | |
182 | CBS_init(&data, kData6, sizeof(kData6)); | 187 | CBS_len(&contents) != 3 || |
183 | /* optional element. */ | 188 | memcmp(CBS_data(&contents), "\x04\x01\x01", 3) != 0) |
184 | if (!CBS_get_optional_asn1(&data, &contents, &present, 0xa0) || | 189 | return 0; |
185 | present || | 190 | |
186 | !CBS_get_optional_asn1(&data, &contents, &present, 0xa1) || | 191 | CBS_init(&data, kData6, sizeof(kData6)); |
187 | !present || | 192 | /* optional octet string. */ |
188 | CBS_len(&contents) != 3 || | 193 | if (!CBS_get_optional_asn1_octet_string(&data, &contents, &present, |
189 | memcmp(CBS_data(&contents), "\x04\x01\x01", 3) != 0) { | 194 | 0xa0) || |
190 | return 0; | 195 | present || |
191 | } | 196 | CBS_len(&contents) != 0 || |
192 | 197 | !CBS_get_optional_asn1_octet_string(&data, &contents, &present, | |
193 | CBS_init(&data, kData6, sizeof(kData6)); | 198 | 0xa1) || |
194 | /* optional octet string. */ | 199 | !present || |
195 | if (!CBS_get_optional_asn1_octet_string(&data, &contents, &present, 0xa0) || | 200 | CBS_len(&contents) != 1 || |
196 | present || | 201 | CBS_data(&contents)[0] != 1) |
197 | CBS_len(&contents) != 0 || | 202 | return 0; |
198 | !CBS_get_optional_asn1_octet_string(&data, &contents, &present, 0xa1) || | 203 | |
199 | !present || | 204 | CBS_init(&data, kData7, sizeof(kData7)); |
200 | CBS_len(&contents) != 1 || | 205 | /* invalid optional octet string. */ |
201 | CBS_data(&contents)[0] != 1) { | 206 | if (CBS_get_optional_asn1_octet_string(&data, &contents, &present, |
202 | return 0; | 207 | 0xa1)) |
203 | } | 208 | return 0; |
204 | 209 | ||
205 | CBS_init(&data, kData7, sizeof(kData7)); | 210 | CBS_init(&data, kData8, sizeof(kData8)); |
206 | /* invalid optional octet string. */ | 211 | /* optional octet string. */ |
207 | if (CBS_get_optional_asn1_octet_string(&data, &contents, &present, 0xa1)) { | 212 | if (!CBS_get_optional_asn1_uint64(&data, &value, 0xa0, 42) || |
208 | return 0; | 213 | value != 42 || |
209 | } | 214 | !CBS_get_optional_asn1_uint64(&data, &value, 0xa1, 42) || |
210 | 215 | value != 1) | |
211 | CBS_init(&data, kData8, sizeof(kData8)); | 216 | return 0; |
212 | /* optional octet string. */ | 217 | |
213 | if (!CBS_get_optional_asn1_uint64(&data, &value, 0xa0, 42) || | 218 | CBS_init(&data, kData9, sizeof(kData9)); |
214 | value != 42 || | 219 | /* invalid optional integer. */ |
215 | !CBS_get_optional_asn1_uint64(&data, &value, 0xa1, 42) || | 220 | if (CBS_get_optional_asn1_uint64(&data, &value, 0xa1, 42)) |
216 | value != 1) { | 221 | return 0; |
217 | return 0; | 222 | |
218 | } | 223 | return 1; |
219 | |||
220 | CBS_init(&data, kData9, sizeof(kData9)); | ||
221 | /* invalid optional integer. */ | ||
222 | if (CBS_get_optional_asn1_uint64(&data, &value, 0xa1, 42)) { | ||
223 | return 0; | ||
224 | } | ||
225 | |||
226 | return 1; | ||
227 | } | 224 | } |
228 | 225 | ||
229 | static int test_get_optional_asn1_bool(void) { | 226 | static int |
230 | CBS data; | 227 | test_get_optional_asn1_bool(void) |
231 | int val; | 228 | { |
232 | 229 | CBS data; | |
233 | static const uint8_t kTrue[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0xff}; | 230 | int val; |
234 | static const uint8_t kFalse[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0x00}; | 231 | |
235 | static const uint8_t kInvalid[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0x01}; | 232 | static const uint8_t kTrue[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0xff}; |
236 | 233 | static const uint8_t kFalse[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0x00}; | |
237 | CBS_init(&data, NULL, 0); | 234 | static const uint8_t kInvalid[] = {0x0a, 3, CBS_ASN1_BOOLEAN, 1, 0x01}; |
238 | val = 2; | 235 | |
239 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 0) || | 236 | CBS_init(&data, NULL, 0); |
240 | val != 0) { | 237 | val = 2; |
241 | return 0; | 238 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 0) || val != 0) |
242 | } | 239 | return 0; |
243 | 240 | ||
244 | CBS_init(&data, kTrue, sizeof(kTrue)); | 241 | CBS_init(&data, kTrue, sizeof(kTrue)); |
245 | val = 2; | 242 | val = 2; |
246 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 0) || | 243 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 0) || val != 1) |
247 | val != 1) { | 244 | return 0; |
248 | return 0; | 245 | |
249 | } | 246 | CBS_init(&data, kFalse, sizeof(kFalse)); |
250 | 247 | val = 2; | |
251 | CBS_init(&data, kFalse, sizeof(kFalse)); | 248 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 1) || val != 0) |
252 | val = 2; | 249 | return 0; |
253 | if (!CBS_get_optional_asn1_bool(&data, &val, 0x0a, 1) || | 250 | |
254 | val != 0) { | 251 | CBS_init(&data, kInvalid, sizeof(kInvalid)); |
255 | return 0; | 252 | if (CBS_get_optional_asn1_bool(&data, &val, 0x0a, 1)) |
256 | } | 253 | return 0; |
257 | 254 | ||
258 | CBS_init(&data, kInvalid, sizeof(kInvalid)); | 255 | return 1; |
259 | if (CBS_get_optional_asn1_bool(&data, &val, 0x0a, 1)) { | ||
260 | return 0; | ||
261 | } | ||
262 | |||
263 | return 1; | ||
264 | } | 256 | } |
265 | 257 | ||
266 | static int test_cbb_basic(void) { | 258 | static int |
267 | static const uint8_t kExpected[] = {1, 2, 3, 4, 5, 6, 7, 8}; | 259 | test_cbb_basic(void) |
268 | uint8_t *buf; | 260 | { |
269 | size_t buf_len; | 261 | static const uint8_t kExpected[] = {1, 2, 3, 4, 5, 6, 7, 8}; |
270 | int ok; | 262 | uint8_t *buf; |
271 | CBB cbb; | 263 | size_t buf_len; |
272 | 264 | int ok; | |
273 | if (!CBB_init(&cbb, 100)) { | 265 | CBB cbb; |
274 | return 0; | 266 | |
275 | } | 267 | if (!CBB_init(&cbb, 100)) |
276 | CBB_cleanup(&cbb); | 268 | return 0; |
277 | 269 | ||
278 | if (!CBB_init(&cbb, 0) || | 270 | CBB_cleanup(&cbb); |
279 | !CBB_add_u8(&cbb, 1) || | 271 | |
280 | !CBB_add_u16(&cbb, 0x203) || | 272 | if (!CBB_init(&cbb, 0) || |
281 | !CBB_add_u24(&cbb, 0x40506) || | 273 | !CBB_add_u8(&cbb, 1) || |
282 | !CBB_add_bytes(&cbb, (const uint8_t*) "\x07\x08", 2) || | 274 | !CBB_add_u16(&cbb, 0x203) || |
283 | !CBB_finish(&cbb, &buf, &buf_len)) { | 275 | !CBB_add_u24(&cbb, 0x40506) || |
284 | return 0; | 276 | !CBB_add_bytes(&cbb, (const uint8_t*) "\x07\x08", 2) || |
285 | } | 277 | !CBB_finish(&cbb, &buf, &buf_len)) |
286 | 278 | return 0; | |
287 | ok = buf_len == sizeof(kExpected) && memcmp(buf, kExpected, buf_len) == 0; | 279 | |
288 | free(buf); | 280 | ok = buf_len == sizeof(kExpected) && memcmp(buf, kExpected, buf_len) |
289 | return ok; | 281 | == 0; |
282 | free(buf); | ||
283 | return ok; | ||
290 | } | 284 | } |
291 | 285 | ||
292 | static int test_cbb_fixed(void) { | 286 | static int |
293 | CBB cbb; | 287 | test_cbb_fixed(void) |
294 | uint8_t buf[1]; | 288 | { |
295 | uint8_t *out_buf; | 289 | CBB cbb; |
296 | size_t out_size; | 290 | uint8_t buf[1]; |
297 | 291 | uint8_t *out_buf; | |
298 | if (!CBB_init_fixed(&cbb, NULL, 0) || | 292 | size_t out_size; |
299 | CBB_add_u8(&cbb, 1) || | 293 | |
300 | !CBB_finish(&cbb, &out_buf, &out_size) || | 294 | if (!CBB_init_fixed(&cbb, NULL, 0) || |
301 | out_buf != NULL || | 295 | CBB_add_u8(&cbb, 1) || |
302 | out_size != 0) { | 296 | !CBB_finish(&cbb, &out_buf, &out_size) || |
303 | return 0; | 297 | out_buf != NULL || |
304 | } | 298 | out_size != 0) |
305 | 299 | return 0; | |
306 | if (!CBB_init_fixed(&cbb, buf, 1) || | 300 | |
307 | !CBB_add_u8(&cbb, 1) || | 301 | if (!CBB_init_fixed(&cbb, buf, 1) || |
308 | CBB_add_u8(&cbb, 2) || | 302 | !CBB_add_u8(&cbb, 1) || |
309 | !CBB_finish(&cbb, &out_buf, &out_size) || | 303 | CBB_add_u8(&cbb, 2) || |
310 | out_buf != buf || | 304 | !CBB_finish(&cbb, &out_buf, &out_size) || |
311 | out_size != 1 || | 305 | out_buf != buf || |
312 | buf[0] != 1) { | 306 | out_size != 1 || |
313 | return 0; | 307 | buf[0] != 1) |
314 | } | 308 | return 0; |
315 | 309 | ||
316 | return 1; | 310 | return 1; |
317 | } | 311 | } |
318 | 312 | ||
319 | static int test_cbb_finish_child(void) { | 313 | static int |
320 | CBB cbb, child; | 314 | test_cbb_finish_child(void) |
321 | uint8_t *out_buf; | 315 | { |
322 | size_t out_size; | 316 | CBB cbb, child; |
323 | 317 | uint8_t *out_buf; | |
324 | if (!CBB_init(&cbb, 16) || | 318 | size_t out_size; |
325 | !CBB_add_u8_length_prefixed(&cbb, &child) || | 319 | |
326 | CBB_finish(&child, &out_buf, &out_size) || | 320 | if (!CBB_init(&cbb, 16) || |
327 | !CBB_finish(&cbb, &out_buf, &out_size) || | 321 | !CBB_add_u8_length_prefixed(&cbb, &child) || |
328 | out_size != 1 || | 322 | CBB_finish(&child, &out_buf, &out_size) || |
329 | out_buf[0] != 0) { | 323 | !CBB_finish(&cbb, &out_buf, &out_size) || |
330 | return 0; | 324 | out_size != 1 || |
331 | } | 325 | out_buf[0] != 0) |
332 | 326 | return 0; | |
333 | free(out_buf); | 327 | |
334 | return 1; | 328 | free(out_buf); |
329 | return 1; | ||
335 | } | 330 | } |
336 | 331 | ||
337 | static int test_cbb_prefixed(void) { | 332 | static int |
338 | static const uint8_t kExpected[] = {0, 1, 1, 0, 2, 2, 3, 0, 0, 3, | 333 | test_cbb_prefixed(void) |
339 | 4, 5, 6, 5, 4, 1, 0, 1, 2}; | 334 | { |
340 | uint8_t *buf; | 335 | static const uint8_t kExpected[] = {0, 1, 1, 0, 2, 2, 3, 0, 0, 3, |
341 | size_t buf_len; | 336 | 4, 5, 6, 5, 4, 1, 0, 1, 2}; |
342 | CBB cbb, contents, inner_contents, inner_inner_contents; | 337 | uint8_t *buf; |
343 | int ok; | 338 | size_t buf_len; |
344 | 339 | CBB cbb, contents, inner_contents, inner_inner_contents; | |
345 | if (!CBB_init(&cbb, 0) || | 340 | int ok; |
346 | !CBB_add_u8_length_prefixed(&cbb, &contents) || | 341 | |
347 | !CBB_add_u8_length_prefixed(&cbb, &contents) || | 342 | if (!CBB_init(&cbb, 0) || |
348 | !CBB_add_u8(&contents, 1) || | 343 | !CBB_add_u8_length_prefixed(&cbb, &contents) || |
349 | !CBB_add_u16_length_prefixed(&cbb, &contents) || | 344 | !CBB_add_u8_length_prefixed(&cbb, &contents) || |
350 | !CBB_add_u16(&contents, 0x203) || | 345 | !CBB_add_u8(&contents, 1) || |
351 | !CBB_add_u24_length_prefixed(&cbb, &contents) || | 346 | !CBB_add_u16_length_prefixed(&cbb, &contents) || |
352 | !CBB_add_u24(&contents, 0x40506) || | 347 | !CBB_add_u16(&contents, 0x203) || |
353 | !CBB_add_u8_length_prefixed(&cbb, &contents) || | 348 | !CBB_add_u24_length_prefixed(&cbb, &contents) || |
354 | !CBB_add_u8_length_prefixed(&contents, &inner_contents) || | 349 | !CBB_add_u24(&contents, 0x40506) || |
355 | !CBB_add_u8(&inner_contents, 1) || | 350 | !CBB_add_u8_length_prefixed(&cbb, &contents) || |
356 | !CBB_add_u16_length_prefixed(&inner_contents, &inner_inner_contents) || | 351 | !CBB_add_u8_length_prefixed(&contents, &inner_contents) || |
357 | !CBB_add_u8(&inner_inner_contents, 2) || | 352 | !CBB_add_u8(&inner_contents, 1) || |
358 | !CBB_finish(&cbb, &buf, &buf_len)) { | 353 | !CBB_add_u16_length_prefixed(&inner_contents, |
359 | return 0; | 354 | &inner_inner_contents) || |
360 | } | 355 | !CBB_add_u8(&inner_inner_contents, 2) || |
361 | 356 | !CBB_finish(&cbb, &buf, &buf_len)) | |
362 | ok = buf_len == sizeof(kExpected) && memcmp(buf, kExpected, buf_len) == 0; | 357 | return 0; |
363 | free(buf); | 358 | |
364 | return ok; | 359 | ok = buf_len == sizeof(kExpected) && memcmp(buf, kExpected, buf_len) |
360 | == 0; | ||
361 | free(buf); | ||
362 | return ok; | ||
365 | } | 363 | } |
366 | 364 | ||
367 | static int test_cbb_misuse(void) { | 365 | static int |
368 | CBB cbb, child, contents; | 366 | test_cbb_misuse(void) |
369 | uint8_t *buf; | 367 | { |
370 | size_t buf_len; | 368 | CBB cbb, child, contents; |
371 | 369 | uint8_t *buf; | |
372 | if (!CBB_init(&cbb, 0) || | 370 | size_t buf_len; |
373 | !CBB_add_u8_length_prefixed(&cbb, &child) || | 371 | |
374 | !CBB_add_u8(&child, 1) || | 372 | if (!CBB_init(&cbb, 0) || |
375 | !CBB_add_u8(&cbb, 2)) { | 373 | !CBB_add_u8_length_prefixed(&cbb, &child) || |
376 | return 0; | 374 | !CBB_add_u8(&child, 1) || |
377 | } | 375 | !CBB_add_u8(&cbb, 2)) |
378 | 376 | return 0; | |
379 | /* Since we wrote to |cbb|, |child| is now invalid and attempts to write to | 377 | |
380 | * it should fail. */ | 378 | /* |
381 | if (CBB_add_u8(&child, 1) || | 379 | * Since we wrote to |cbb|, |child| is now invalid and attempts to write |
382 | CBB_add_u16(&child, 1) || | 380 | * to it should fail. |
383 | CBB_add_u24(&child, 1) || | 381 | */ |
384 | CBB_add_u8_length_prefixed(&child, &contents) || | 382 | if (CBB_add_u8(&child, 1) || |
385 | CBB_add_u16_length_prefixed(&child, &contents) || | 383 | CBB_add_u16(&child, 1) || |
386 | CBB_add_asn1(&child, &contents, 1) || | 384 | CBB_add_u24(&child, 1) || |
387 | CBB_add_bytes(&child, (const uint8_t*) "a", 1)) { | 385 | CBB_add_u8_length_prefixed(&child, &contents) || |
388 | fprintf(stderr, "CBB operation on invalid CBB did not fail.\n"); | 386 | CBB_add_u16_length_prefixed(&child, &contents) || |
389 | return 0; | 387 | CBB_add_asn1(&child, &contents, 1) || |
390 | } | 388 | CBB_add_bytes(&child, (const uint8_t*) "a", 1)) { |
391 | 389 | fprintf(stderr, "CBB operation on invalid CBB did not fail.\n"); | |
392 | if (!CBB_finish(&cbb, &buf, &buf_len) || | 390 | return 0; |
393 | buf_len != 3 || | 391 | } |
394 | memcmp(buf, "\x01\x01\x02", 3) != 0) { | 392 | |
395 | return 0; | 393 | if (!CBB_finish(&cbb, &buf, &buf_len) || buf_len != 3 || |
396 | } | 394 | memcmp(buf, "\x01\x01\x02", 3) != 0) |
397 | 395 | return 0; | |
398 | free(buf); | 396 | |
399 | 397 | free(buf); | |
400 | return 1; | 398 | |
399 | return 1; | ||
401 | } | 400 | } |
402 | 401 | ||
403 | static int test_cbb_asn1(void) { | 402 | static int |
404 | static const uint8_t kExpected[] = {0x30, 3, 1, 2, 3}; | 403 | test_cbb_asn1(void) |
405 | uint8_t *buf, *test_data; | 404 | { |
406 | size_t buf_len; | 405 | static const uint8_t kExpected[] = {0x30, 3, 1, 2, 3}; |
407 | CBB cbb, contents, inner_contents; | 406 | uint8_t *buf, *test_data; |
408 | 407 | size_t buf_len; | |
409 | if (!CBB_init(&cbb, 0) || | 408 | CBB cbb, contents, inner_contents; |
410 | !CBB_add_asn1(&cbb, &contents, 0x30) || | 409 | |
411 | !CBB_add_bytes(&contents, (const uint8_t*) "\x01\x02\x03", 3) || | 410 | if (!CBB_init(&cbb, 0) || |
412 | !CBB_finish(&cbb, &buf, &buf_len)) { | 411 | !CBB_add_asn1(&cbb, &contents, 0x30) || |
413 | return 0; | 412 | !CBB_add_bytes(&contents, (const uint8_t*) "\x01\x02\x03", 3) || |
414 | } | 413 | !CBB_finish(&cbb, &buf, &buf_len)) |
415 | 414 | return 0; | |
416 | if (buf_len != sizeof(kExpected) || memcmp(buf, kExpected, buf_len) != 0) { | 415 | |
417 | return 0; | 416 | if (buf_len != sizeof(kExpected) || memcmp(buf, kExpected, buf_len) |
418 | } | 417 | != 0) |
419 | free(buf); | 418 | return 0; |
420 | 419 | ||
421 | test_data = malloc(100000); | 420 | free(buf); |
422 | memset(test_data, 0x42, 100000); | 421 | |
423 | 422 | test_data = malloc(100000); | |
424 | if (!CBB_init(&cbb, 0) || | 423 | memset(test_data, 0x42, 100000); |
425 | !CBB_add_asn1(&cbb, &contents, 0x30) || | 424 | |
426 | !CBB_add_bytes(&contents, test_data, 130) || | 425 | if (!CBB_init(&cbb, 0) || |
427 | !CBB_finish(&cbb, &buf, &buf_len)) { | 426 | !CBB_add_asn1(&cbb, &contents, 0x30) || |
428 | return 0; | 427 | !CBB_add_bytes(&contents, test_data, 130) || |
429 | } | 428 | !CBB_finish(&cbb, &buf, &buf_len)) |
430 | 429 | return 0; | |
431 | if (buf_len != 3 + 130 || | 430 | |
432 | memcmp(buf, "\x30\x81\x82", 3) != 0 || | 431 | if (buf_len != 3 + 130 || |
433 | memcmp(buf + 3, test_data, 130) != 0) { | 432 | memcmp(buf, "\x30\x81\x82", 3) != 0 || |
434 | return 0; | 433 | memcmp(buf + 3, test_data, 130) != 0) { |
435 | } | 434 | return 0; |
436 | free(buf); | 435 | } |
437 | 436 | free(buf); | |
438 | if (!CBB_init(&cbb, 0) || | 437 | |
439 | !CBB_add_asn1(&cbb, &contents, 0x30) || | 438 | if (!CBB_init(&cbb, 0) || |
440 | !CBB_add_bytes(&contents, test_data, 1000) || | 439 | !CBB_add_asn1(&cbb, &contents, 0x30) || |
441 | !CBB_finish(&cbb, &buf, &buf_len)) { | 440 | !CBB_add_bytes(&contents, test_data, 1000) || |
442 | return 0; | 441 | !CBB_finish(&cbb, &buf, &buf_len)) |
443 | } | 442 | return 0; |
444 | 443 | ||
445 | if (buf_len != 4 + 1000 || | 444 | if (buf_len != 4 + 1000 || |
446 | memcmp(buf, "\x30\x82\x03\xe8", 4) != 0 || | 445 | memcmp(buf, "\x30\x82\x03\xe8", 4) != 0 || |
447 | memcmp(buf + 4, test_data, 1000)) { | 446 | memcmp(buf + 4, test_data, 1000)) { |
448 | return 0; | 447 | return 0; |
449 | } | 448 | } |
450 | free(buf); | 449 | free(buf); |
451 | 450 | ||
452 | if (!CBB_init(&cbb, 0) || | 451 | if (!CBB_init(&cbb, 0) || |
453 | !CBB_add_asn1(&cbb, &contents, 0x30) || | 452 | !CBB_add_asn1(&cbb, &contents, 0x30) || |
454 | !CBB_add_asn1(&contents, &inner_contents, 0x30) || | 453 | !CBB_add_asn1(&contents, &inner_contents, 0x30) || |
455 | !CBB_add_bytes(&inner_contents, test_data, 100000) || | 454 | !CBB_add_bytes(&inner_contents, test_data, 100000) || |
456 | !CBB_finish(&cbb, &buf, &buf_len)) { | 455 | !CBB_finish(&cbb, &buf, &buf_len)) |
457 | return 0; | 456 | return 0; |
458 | } | 457 | |
459 | 458 | if (buf_len != 5 + 5 + 100000 || | |
460 | if (buf_len != 5 + 5 + 100000 || | 459 | memcmp(buf, "\x30\x83\x01\x86\xa5\x30\x83\x01\x86\xa0", 10) != 0 || |
461 | memcmp(buf, "\x30\x83\x01\x86\xa5\x30\x83\x01\x86\xa0", 10) != 0 || | 460 | memcmp(buf + 10, test_data, 100000)) |
462 | memcmp(buf + 10, test_data, 100000)) { | 461 | return 0; |
463 | return 0; | 462 | |
464 | } | 463 | free(buf); |
465 | free(buf); | 464 | free(test_data); |
466 | 465 | ||
467 | free(test_data); | 466 | return 1; |
468 | return 1; | ||
469 | } | 467 | } |
470 | 468 | ||
471 | static int do_ber_convert(const char *name, | 469 | static int |
472 | const uint8_t *der_expected, size_t der_len, | 470 | do_ber_convert(const char *name, const uint8_t *der_expected, size_t der_len, |
473 | const uint8_t *ber, size_t ber_len) { | 471 | const uint8_t *ber, size_t ber_len) |
474 | CBS in; | 472 | { |
475 | uint8_t *out; | 473 | CBS in; |
476 | size_t out_len; | 474 | uint8_t *out; |
477 | 475 | size_t out_len; | |
478 | CBS_init(&in, ber, ber_len); | 476 | |
479 | if (!CBS_asn1_ber_to_der(&in, &out, &out_len)) { | 477 | CBS_init(&in, ber, ber_len); |
480 | fprintf(stderr, "%s: CBS_asn1_ber_to_der failed.\n", name); | 478 | if (!CBS_asn1_ber_to_der(&in, &out, &out_len)) { |
481 | return 0; | 479 | fprintf(stderr, "%s: CBS_asn1_ber_to_der failed.\n", name); |
482 | } | 480 | return 0; |
483 | 481 | } | |
484 | if (out == NULL) { | 482 | |
485 | if (ber_len != der_len || | 483 | if (out == NULL) { |
486 | memcmp(der_expected, ber, ber_len) != 0) { | 484 | if (ber_len != der_len || |
487 | fprintf(stderr, "%s: incorrect unconverted result.\n", name); | 485 | memcmp(der_expected, ber, ber_len) != 0) { |
488 | return 0; | 486 | fprintf(stderr, "%s: incorrect unconverted result.\n", |
489 | } | 487 | name); |
490 | 488 | return 0; | |
491 | return 1; | 489 | } |
492 | } | 490 | |
493 | 491 | return 1; | |
494 | if (out_len != der_len || | 492 | } |
495 | memcmp(out, der_expected, der_len) != 0) { | 493 | |
496 | fprintf(stderr, "%s: incorrect converted result.\n", name); | 494 | if (out_len != der_len || memcmp(out, der_expected, der_len) != 0) { |
497 | return 0; | 495 | fprintf(stderr, "%s: incorrect converted result.\n", name); |
498 | } | 496 | return 0; |
499 | 497 | } | |
500 | free(out); | 498 | |
501 | return 1; | 499 | free(out); |
500 | return 1; | ||
502 | } | 501 | } |
503 | 502 | ||
504 | static int test_ber_convert(void) { | 503 | static int |
505 | static const uint8_t kSimpleBER[] = {0x01, 0x01, 0x00}; | 504 | test_ber_convert(void) |
506 | 505 | { | |
507 | /* kIndefBER contains a SEQUENCE with an indefinite length. */ | 506 | static const uint8_t kSimpleBER[] = {0x01, 0x01, 0x00}; |
508 | static const uint8_t kIndefBER[] = {0x30, 0x80, 0x01, 0x01, 0x02, 0x00, 0x00}; | 507 | |
509 | static const uint8_t kIndefDER[] = {0x30, 0x03, 0x01, 0x01, 0x02}; | 508 | /* kIndefBER contains a SEQUENCE with an indefinite length. */ |
510 | 509 | static const uint8_t kIndefBER[] = {0x30, 0x80, 0x01, 0x01, 0x02, 0x00, | |
511 | /* kOctetStringBER contains an indefinite length OCTETSTRING with two parts. | 510 | 0x00}; |
512 | * These parts need to be concatenated in DER form. */ | 511 | static const uint8_t kIndefDER[] = {0x30, 0x03, 0x01, 0x01, 0x02}; |
513 | static const uint8_t kOctetStringBER[] = {0x24, 0x80, 0x04, 0x02, 0, 1, | 512 | |
514 | 0x04, 0x02, 2, 3, 0x00, 0x00}; | 513 | /* |
515 | static const uint8_t kOctetStringDER[] = {0x04, 0x04, 0, 1, 2, 3}; | 514 | * kOctetStringBER contains an indefinite length OCTETSTRING with two |
516 | 515 | * parts. These parts need to be concatenated in DER form. | |
517 | /* kNSSBER is part of a PKCS#12 message generated by NSS that uses indefinite | 516 | */ |
518 | * length elements extensively. */ | 517 | static const uint8_t kOctetStringBER[] = {0x24, 0x80, 0x04, 0x02, 0, |
519 | static const uint8_t kNSSBER[] = { | 518 | 1, 0x04, 0x02, 2, 3, 0x00, 0x00}; |
520 | 0x30, 0x80, 0x02, 0x01, 0x03, 0x30, 0x80, 0x06, 0x09, 0x2a, 0x86, 0x48, | 519 | static const uint8_t kOctetStringDER[] = {0x04, 0x04, 0, 1, 2, 3}; |
521 | 0x86, 0xf7, 0x0d, 0x01, 0x07, 0x01, 0xa0, 0x80, 0x24, 0x80, 0x04, 0x04, | 520 | |
522 | 0x01, 0x02, 0x03, 0x04, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x30, 0x39, | 521 | /* |
523 | 0x30, 0x21, 0x30, 0x09, 0x06, 0x05, 0x2b, 0x0e, 0x03, 0x02, 0x1a, 0x05, | 522 | * kNSSBER is part of a PKCS#12 message generated by NSS that uses |
524 | 0x00, 0x04, 0x14, 0x84, 0x98, 0xfc, 0x66, 0x33, 0xee, 0xba, 0xe7, 0x90, | 523 | * indefinite length elements extensively. |
525 | 0xc1, 0xb6, 0xe8, 0x8f, 0xfe, 0x1d, 0xc5, 0xa5, 0x97, 0x93, 0x3e, 0x04, | 524 | */ |
526 | 0x10, 0x38, 0x62, 0xc6, 0x44, 0x12, 0xd5, 0x30, 0x00, 0xf8, 0xf2, 0x1b, | 525 | static const uint8_t kNSSBER[] = { |
527 | 0xf0, 0x6e, 0x10, 0x9b, 0xb8, 0x02, 0x02, 0x07, 0xd0, 0x00, 0x00, | 526 | 0x30, 0x80, 0x02, 0x01, 0x03, 0x30, 0x80, 0x06, 0x09, 0x2a, 0x86, |
528 | }; | 527 | 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x07, 0x01, 0xa0, 0x80, 0x24, 0x80, |
529 | 528 | 0x04, 0x04, 0x01, 0x02, 0x03, 0x04, 0x00, 0x00, 0x00, 0x00, 0x00, | |
530 | static const uint8_t kNSSDER[] = { | 529 | 0x00, 0x30, 0x39, 0x30, 0x21, 0x30, 0x09, 0x06, 0x05, 0x2b, 0x0e, |
531 | 0x30, 0x53, 0x02, 0x01, 0x03, 0x30, 0x13, 0x06, 0x09, 0x2a, 0x86, | 530 | 0x03, 0x02, 0x1a, 0x05, 0x00, 0x04, 0x14, 0x84, 0x98, 0xfc, 0x66, |
532 | 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x07, 0x01, 0xa0, 0x06, 0x04, 0x04, | 531 | 0x33, 0xee, 0xba, 0xe7, 0x90, 0xc1, 0xb6, 0xe8, 0x8f, 0xfe, 0x1d, |
533 | 0x01, 0x02, 0x03, 0x04, 0x30, 0x39, 0x30, 0x21, 0x30, 0x09, 0x06, | 532 | 0xc5, 0xa5, 0x97, 0x93, 0x3e, 0x04, 0x10, 0x38, 0x62, 0xc6, 0x44, |
534 | 0x05, 0x2b, 0x0e, 0x03, 0x02, 0x1a, 0x05, 0x00, 0x04, 0x14, 0x84, | 533 | 0x12, 0xd5, 0x30, 0x00, 0xf8, 0xf2, 0x1b, 0xf0, 0x6e, 0x10, 0x9b, |
535 | 0x98, 0xfc, 0x66, 0x33, 0xee, 0xba, 0xe7, 0x90, 0xc1, 0xb6, 0xe8, | 534 | 0xb8, 0x02, 0x02, 0x07, 0xd0, 0x00, 0x00, |
536 | 0x8f, 0xfe, 0x1d, 0xc5, 0xa5, 0x97, 0x93, 0x3e, 0x04, 0x10, 0x38, | 535 | }; |
537 | 0x62, 0xc6, 0x44, 0x12, 0xd5, 0x30, 0x00, 0xf8, 0xf2, 0x1b, 0xf0, | 536 | |
538 | 0x6e, 0x10, 0x9b, 0xb8, 0x02, 0x02, 0x07, 0xd0, | 537 | static const uint8_t kNSSDER[] = { |
539 | }; | 538 | 0x30, 0x53, 0x02, 0x01, 0x03, 0x30, 0x13, 0x06, 0x09, 0x2a, 0x86, |
540 | 539 | 0x48, 0x86, 0xf7, 0x0d, 0x01, 0x07, 0x01, 0xa0, 0x06, 0x04, 0x04, | |
541 | return do_ber_convert("kSimpleBER", kSimpleBER, sizeof(kSimpleBER), | 540 | 0x01, 0x02, 0x03, 0x04, 0x30, 0x39, 0x30, 0x21, 0x30, 0x09, 0x06, |
542 | kSimpleBER, sizeof(kSimpleBER)) && | 541 | 0x05, 0x2b, 0x0e, 0x03, 0x02, 0x1a, 0x05, 0x00, 0x04, 0x14, 0x84, |
543 | do_ber_convert("kIndefBER", kIndefDER, sizeof(kIndefDER), kIndefBER, | 542 | 0x98, 0xfc, 0x66, 0x33, 0xee, 0xba, 0xe7, 0x90, 0xc1, 0xb6, 0xe8, |
544 | sizeof(kIndefBER)) && | 543 | 0x8f, 0xfe, 0x1d, 0xc5, 0xa5, 0x97, 0x93, 0x3e, 0x04, 0x10, 0x38, |
545 | do_ber_convert("kOctetStringBER", kOctetStringDER, | 544 | 0x62, 0xc6, 0x44, 0x12, 0xd5, 0x30, 0x00, 0xf8, 0xf2, 0x1b, 0xf0, |
546 | sizeof(kOctetStringDER), kOctetStringBER, | 545 | 0x6e, 0x10, 0x9b, 0xb8, 0x02, 0x02, 0x07, 0xd0, |
547 | sizeof(kOctetStringBER)) && | 546 | }; |
548 | do_ber_convert("kNSSBER", kNSSDER, sizeof(kNSSDER), kNSSBER, | 547 | |
549 | sizeof(kNSSBER)); | 548 | return do_ber_convert("kSimpleBER", kSimpleBER, sizeof(kSimpleBER), |
549 | kSimpleBER, sizeof(kSimpleBER)) && | ||
550 | do_ber_convert("kIndefBER", kIndefDER, sizeof(kIndefDER), kIndefBER, | ||
551 | sizeof(kIndefBER)) && | ||
552 | do_ber_convert("kOctetStringBER", kOctetStringDER, | ||
553 | sizeof(kOctetStringDER), kOctetStringBER, | ||
554 | sizeof(kOctetStringBER)) && | ||
555 | do_ber_convert("kNSSBER", kNSSDER, sizeof(kNSSDER), kNSSBER, | ||
556 | sizeof(kNSSBER)); | ||
550 | } | 557 | } |
551 | 558 | ||
552 | typedef struct { | 559 | typedef struct { |
553 | uint64_t value; | 560 | uint64_t value; |
554 | const char *encoding; | 561 | const char *encoding; |
555 | size_t encoding_len; | 562 | size_t encoding_len; |
556 | } ASN1_UINT64_TEST; | 563 | } ASN1_UINT64_TEST; |
557 | 564 | ||
558 | static const ASN1_UINT64_TEST kAsn1Uint64Tests[] = { | 565 | static const ASN1_UINT64_TEST kAsn1Uint64Tests[] = { |
559 | {0, "\x02\x01\x00", 3}, | 566 | {0, "\x02\x01\x00", 3}, |
560 | {1, "\x02\x01\x01", 3}, | 567 | {1, "\x02\x01\x01", 3}, |
561 | {127, "\x02\x01\x7f", 3}, | 568 | {127, "\x02\x01\x7f", 3}, |
562 | {128, "\x02\x02\x00\x80", 4}, | 569 | {128, "\x02\x02\x00\x80", 4}, |
563 | {0xdeadbeef, "\x02\x05\x00\xde\xad\xbe\xef", 7}, | 570 | {0xdeadbeef, "\x02\x05\x00\xde\xad\xbe\xef", 7}, |
564 | {OPENSSL_U64(0x0102030405060708), | 571 | {OPENSSL_U64(0x0102030405060708), |
565 | "\x02\x08\x01\x02\x03\x04\x05\x06\x07\x08", 10}, | 572 | "\x02\x08\x01\x02\x03\x04\x05\x06\x07\x08", 10}, |
566 | {OPENSSL_U64(0xffffffffffffffff), | 573 | {OPENSSL_U64(0xffffffffffffffff), |
567 | "\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff", 11}, | 574 | "\x02\x09\x00\xff\xff\xff\xff\xff\xff\xff\xff", 11}, |
568 | }; | 575 | }; |
569 | 576 | ||
570 | typedef struct { | 577 | typedef struct { |
571 | const char *encoding; | 578 | const char *encoding; |
572 | size_t encoding_len; | 579 | size_t encoding_len; |
573 | } ASN1_INVALID_UINT64_TEST; | 580 | } ASN1_INVALID_UINT64_TEST; |
574 | 581 | ||
575 | static const ASN1_INVALID_UINT64_TEST kAsn1InvalidUint64Tests[] = { | 582 | static const ASN1_INVALID_UINT64_TEST kAsn1InvalidUint64Tests[] = { |
576 | /* Bad tag. */ | 583 | /* Bad tag. */ |
577 | {"\x03\x01\x00", 3}, | 584 | {"\x03\x01\x00", 3}, |
578 | /* Empty contents. */ | 585 | /* Empty contents. */ |
579 | {"\x02\x00", 2}, | 586 | {"\x02\x00", 2}, |
580 | /* Negative number. */ | 587 | /* Negative number. */ |
581 | {"\x02\x01\x80", 3}, | 588 | {"\x02\x01\x80", 3}, |
582 | /* Overflow */ | 589 | /* Overflow */ |
583 | {"\x02\x09\x01\x00\x00\x00\x00\x00\x00\x00\x00", 11}, | 590 | {"\x02\x09\x01\x00\x00\x00\x00\x00\x00\x00\x00", 11}, |
584 | }; | 591 | }; |
585 | 592 | ||
586 | static int test_asn1_uint64(void) { | 593 | static int |
587 | size_t i; | 594 | test_asn1_uint64(void) |
588 | 595 | { | |
589 | for (i = 0; i < sizeof(kAsn1Uint64Tests) / sizeof(kAsn1Uint64Tests[0]); i++) { | 596 | size_t i; |
590 | const ASN1_UINT64_TEST *test = &kAsn1Uint64Tests[i]; | 597 | |
591 | CBS cbs; | 598 | for (i = 0; i < sizeof(kAsn1Uint64Tests) / sizeof(kAsn1Uint64Tests[0]); |
592 | uint64_t value; | 599 | i++) { |
593 | CBB cbb; | 600 | const ASN1_UINT64_TEST *test = &kAsn1Uint64Tests[i]; |
594 | uint8_t *out; | 601 | CBS cbs; |
595 | size_t len; | 602 | uint64_t value; |
596 | 603 | CBB cbb; | |
597 | CBS_init(&cbs, (const uint8_t *)test->encoding, test->encoding_len); | 604 | uint8_t *out; |
598 | if (!CBS_get_asn1_uint64(&cbs, &value) || | 605 | size_t len; |
599 | CBS_len(&cbs) != 0 || | 606 | |
600 | value != test->value) { | 607 | CBS_init(&cbs, (const uint8_t *)test->encoding, |
601 | return 0; | 608 | test->encoding_len); |
602 | } | 609 | |
603 | 610 | if (!CBS_get_asn1_uint64(&cbs, &value) || | |
604 | if (!CBB_init(&cbb, 0)) { | 611 | CBS_len(&cbs) != 0 || |
605 | return 0; | 612 | value != test->value) |
606 | } | 613 | return 0; |
607 | if (!CBB_add_asn1_uint64(&cbb, test->value) || | 614 | |
608 | !CBB_finish(&cbb, &out, &len)) { | 615 | if (!CBB_init(&cbb, 0)) |
609 | CBB_cleanup(&cbb); | 616 | return 0; |
610 | return 0; | 617 | |
611 | } | 618 | if (!CBB_add_asn1_uint64(&cbb, test->value) || |
612 | if (len != test->encoding_len || memcmp(out, test->encoding, len) != 0) { | 619 | !CBB_finish(&cbb, &out, &len)) { |
613 | free(out); | 620 | CBB_cleanup(&cbb); |
614 | return 0; | 621 | return 0; |
615 | } | 622 | } |
616 | free(out); | 623 | |
617 | } | 624 | if (len != test->encoding_len || memcmp(out, test->encoding, |
618 | 625 | len) != 0) { | |
619 | for (i = 0; | 626 | free(out); |
620 | i < sizeof(kAsn1InvalidUint64Tests) / sizeof(kAsn1InvalidUint64Tests[0]); | 627 | return 0; |
621 | i++) { | 628 | } |
622 | const ASN1_INVALID_UINT64_TEST *test = &kAsn1InvalidUint64Tests[i]; | 629 | free(out); |
623 | CBS cbs; | 630 | } |
624 | uint64_t value; | 631 | |
625 | 632 | for (i = 0; i < sizeof(kAsn1InvalidUint64Tests) | |
626 | CBS_init(&cbs, (const uint8_t *)test->encoding, test->encoding_len); | 633 | / sizeof(kAsn1InvalidUint64Tests[0]); i++) { |
627 | if (CBS_get_asn1_uint64(&cbs, &value)) { | 634 | const ASN1_INVALID_UINT64_TEST *test = |
628 | return 0; | 635 | &kAsn1InvalidUint64Tests[i]; |
629 | } | 636 | CBS cbs; |
630 | } | 637 | uint64_t value; |
631 | 638 | ||
632 | return 1; | 639 | CBS_init(&cbs, (const uint8_t *)test->encoding, |
640 | test->encoding_len); | ||
641 | if (CBS_get_asn1_uint64(&cbs, &value)) | ||
642 | return 0; | ||
643 | } | ||
644 | |||
645 | return 1; | ||
633 | } | 646 | } |
634 | 647 | ||
635 | int main(void) { | 648 | int |
636 | if (!test_skip() || | 649 | main(void) |
637 | !test_get_u() || | 650 | { |
638 | !test_get_prefixed() || | 651 | if (!test_skip() || |
639 | !test_get_prefixed_bad() || | 652 | !test_get_u() || |
640 | !test_get_asn1() || | 653 | !test_get_prefixed() || |
641 | !test_cbb_basic() || | 654 | !test_get_prefixed_bad() || |
642 | !test_cbb_fixed() || | 655 | !test_get_asn1() || |
643 | !test_cbb_finish_child() || | 656 | !test_cbb_basic() || |
644 | !test_cbb_misuse() || | 657 | !test_cbb_fixed() || |
645 | !test_cbb_prefixed() || | 658 | !test_cbb_finish_child() || |
646 | !test_cbb_asn1() || | 659 | !test_cbb_misuse() || |
647 | !test_ber_convert() || | 660 | !test_cbb_prefixed() || |
648 | !test_asn1_uint64() || | 661 | !test_cbb_asn1() || |
649 | !test_get_optional_asn1_bool()) { | 662 | !test_ber_convert() || |
650 | return 1; | 663 | !test_asn1_uint64() || |
651 | } | 664 | !test_get_optional_asn1_bool()) |
652 | 665 | return 1; | |
653 | printf("PASS\n"); | 666 | |
654 | return 0; | 667 | printf("PASS\n"); |
668 | return 0; | ||
655 | } | 669 | } |