/src/openssl31/crypto/asn1/x_int64.c
Line | Count | Source (jump to first uncovered line) |
1 | | /* |
2 | | * Copyright 2017-2022 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * |
4 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
5 | | * this file except in compliance with the License. You can obtain a copy |
6 | | * in the file LICENSE in the source distribution or at |
7 | | * https://www.openssl.org/source/license.html |
8 | | */ |
9 | | |
10 | | #include <stdio.h> |
11 | | #include "internal/cryptlib.h" |
12 | | #include "internal/numbers.h" |
13 | | #include <openssl/asn1t.h> |
14 | | #include <openssl/bn.h> |
15 | | #include "asn1_local.h" |
16 | | |
17 | | /* |
18 | | * Custom primitive types for handling int32_t, int64_t, uint32_t, uint64_t. |
19 | | * This converts between an ASN1_INTEGER and those types directly. |
20 | | * This is preferred to using the LONG / ZLONG primitives. |
21 | | */ |
22 | | |
23 | | /* |
24 | | * We abuse the ASN1_ITEM fields |size| as a flags field |
25 | | */ |
26 | 2.55M | #define INTxx_FLAG_ZERO_DEFAULT (1<<0) |
27 | 5.56M | #define INTxx_FLAG_SIGNED (1<<1) |
28 | | |
29 | | static int uint64_new(ASN1_VALUE **pval, const ASN1_ITEM *it) |
30 | 15.9k | { |
31 | 15.9k | if ((*pval = (ASN1_VALUE *)OPENSSL_zalloc(sizeof(uint64_t))) == NULL) { |
32 | 0 | ERR_raise(ERR_LIB_ASN1, ERR_R_MALLOC_FAILURE); |
33 | 0 | return 0; |
34 | 0 | } |
35 | 15.9k | return 1; |
36 | 15.9k | } |
37 | | |
38 | | static void uint64_free(ASN1_VALUE **pval, const ASN1_ITEM *it) |
39 | 211k | { |
40 | 211k | OPENSSL_free(*pval); |
41 | 211k | *pval = NULL; |
42 | 211k | } |
43 | | |
44 | | static void uint64_clear(ASN1_VALUE **pval, const ASN1_ITEM *it) |
45 | 355k | { |
46 | 355k | **(uint64_t **)pval = 0; |
47 | 355k | } |
48 | | |
49 | | static int uint64_i2c(const ASN1_VALUE **pval, unsigned char *cont, int *putype, |
50 | | const ASN1_ITEM *it) |
51 | 43.3k | { |
52 | 43.3k | uint64_t utmp; |
53 | 43.3k | int neg = 0; |
54 | | /* this exists to bypass broken gcc optimization */ |
55 | 43.3k | char *cp = (char *)*pval; |
56 | | |
57 | | /* use memcpy, because we may not be uint64_t aligned */ |
58 | 43.3k | memcpy(&utmp, cp, sizeof(utmp)); |
59 | | |
60 | 43.3k | if ((it->size & INTxx_FLAG_ZERO_DEFAULT) == INTxx_FLAG_ZERO_DEFAULT |
61 | 43.3k | && utmp == 0) |
62 | 9.73k | return -1; |
63 | 33.6k | if ((it->size & INTxx_FLAG_SIGNED) == INTxx_FLAG_SIGNED |
64 | 33.6k | && (int64_t)utmp < 0) { |
65 | | /* ossl_i2c_uint64_int() assumes positive values */ |
66 | 5.05k | utmp = 0 - utmp; |
67 | 5.05k | neg = 1; |
68 | 5.05k | } |
69 | | |
70 | 33.6k | return ossl_i2c_uint64_int(cont, utmp, neg); |
71 | 43.3k | } |
72 | | |
73 | | static int uint64_c2i(ASN1_VALUE **pval, const unsigned char *cont, int len, |
74 | | int utype, char *free_cont, const ASN1_ITEM *it) |
75 | 10.7k | { |
76 | 10.7k | uint64_t utmp = 0; |
77 | 10.7k | char *cp; |
78 | 10.7k | int neg = 0; |
79 | | |
80 | 10.7k | if (*pval == NULL && !uint64_new(pval, it)) |
81 | 0 | return 0; |
82 | | |
83 | 10.7k | cp = (char *)*pval; |
84 | | |
85 | | /* |
86 | | * Strictly speaking, zero length is malformed. However, long_c2i |
87 | | * (x_long.c) encodes 0 as a zero length INTEGER (wrongly, of course), |
88 | | * so for the sake of backward compatibility, we still decode zero |
89 | | * length INTEGERs as the number zero. |
90 | | */ |
91 | 10.7k | if (len == 0) |
92 | 32 | goto long_compat; |
93 | | |
94 | 10.6k | if (!ossl_c2i_uint64_int(&utmp, &neg, &cont, len)) |
95 | 2.11k | return 0; |
96 | 8.57k | if ((it->size & INTxx_FLAG_SIGNED) == 0 && neg) { |
97 | 1.08k | ERR_raise(ERR_LIB_ASN1, ASN1_R_ILLEGAL_NEGATIVE_VALUE); |
98 | 1.08k | return 0; |
99 | 1.08k | } |
100 | 7.48k | if ((it->size & INTxx_FLAG_SIGNED) == INTxx_FLAG_SIGNED |
101 | 7.48k | && !neg && utmp > INT64_MAX) { |
102 | 492 | ERR_raise(ERR_LIB_ASN1, ASN1_R_TOO_LARGE); |
103 | 492 | return 0; |
104 | 492 | } |
105 | 6.99k | if (neg) |
106 | | /* ossl_c2i_uint64_int() returns positive values */ |
107 | 1.99k | utmp = 0 - utmp; |
108 | | |
109 | 7.02k | long_compat: |
110 | 7.02k | memcpy(cp, &utmp, sizeof(utmp)); |
111 | 7.02k | return 1; |
112 | 6.99k | } |
113 | | |
114 | | static int uint64_print(BIO *out, const ASN1_VALUE **pval, const ASN1_ITEM *it, |
115 | | int indent, const ASN1_PCTX *pctx) |
116 | 4.31k | { |
117 | 4.31k | if ((it->size & INTxx_FLAG_SIGNED) == INTxx_FLAG_SIGNED) |
118 | 2.45k | return BIO_printf(out, "%jd\n", **(int64_t **)pval); |
119 | 1.86k | return BIO_printf(out, "%ju\n", **(uint64_t **)pval); |
120 | 4.31k | } |
121 | | |
122 | | /* 32-bit variants */ |
123 | | |
124 | | static int uint32_new(ASN1_VALUE **pval, const ASN1_ITEM *it) |
125 | 0 | { |
126 | 0 | if ((*pval = (ASN1_VALUE *)OPENSSL_zalloc(sizeof(uint32_t))) == NULL) { |
127 | 0 | ERR_raise(ERR_LIB_ASN1, ERR_R_MALLOC_FAILURE); |
128 | 0 | return 0; |
129 | 0 | } |
130 | 0 | return 1; |
131 | 0 | } |
132 | | |
133 | | static void uint32_free(ASN1_VALUE **pval, const ASN1_ITEM *it) |
134 | 211k | { |
135 | 211k | OPENSSL_free(*pval); |
136 | 211k | *pval = NULL; |
137 | 211k | } |
138 | | |
139 | | static void uint32_clear(ASN1_VALUE **pval, const ASN1_ITEM *it) |
140 | 1.77M | { |
141 | 1.77M | **(uint32_t **)pval = 0; |
142 | 1.77M | } |
143 | | |
144 | | static int uint32_i2c(const ASN1_VALUE **pval, unsigned char *cont, int *putype, |
145 | | const ASN1_ITEM *it) |
146 | 355k | { |
147 | 355k | uint32_t utmp; |
148 | 355k | int neg = 0; |
149 | | /* this exists to bypass broken gcc optimization */ |
150 | 355k | char *cp = (char *)*pval; |
151 | | |
152 | | /* use memcpy, because we may not be uint32_t aligned */ |
153 | 355k | memcpy(&utmp, cp, sizeof(utmp)); |
154 | | |
155 | 355k | if ((it->size & INTxx_FLAG_ZERO_DEFAULT) == INTxx_FLAG_ZERO_DEFAULT |
156 | 355k | && utmp == 0) |
157 | 22.9k | return -1; |
158 | 333k | if ((it->size & INTxx_FLAG_SIGNED) == INTxx_FLAG_SIGNED |
159 | 333k | && (int32_t)utmp < 0) { |
160 | | /* ossl_i2c_uint64_int() assumes positive values */ |
161 | 80.0k | utmp = 0 - utmp; |
162 | 80.0k | neg = 1; |
163 | 80.0k | } |
164 | | |
165 | 333k | return ossl_i2c_uint64_int(cont, (uint64_t)utmp, neg); |
166 | 355k | } |
167 | | |
168 | | /* |
169 | | * Absolute value of INT32_MIN: we can't just use -INT32_MIN as it produces |
170 | | * overflow warnings. |
171 | | */ |
172 | | |
173 | 107k | #define ABS_INT32_MIN ((uint32_t)INT32_MAX + 1) |
174 | | |
175 | | static int uint32_c2i(ASN1_VALUE **pval, const unsigned char *cont, int len, |
176 | | int utype, char *free_cont, const ASN1_ITEM *it) |
177 | 621k | { |
178 | 621k | uint64_t utmp = 0; |
179 | 621k | uint32_t utmp2 = 0; |
180 | 621k | char *cp; |
181 | 621k | int neg = 0; |
182 | | |
183 | 621k | if (*pval == NULL && !uint64_new(pval, it)) |
184 | 0 | return 0; |
185 | | |
186 | 621k | cp = (char *)*pval; |
187 | | |
188 | | /* |
189 | | * Strictly speaking, zero length is malformed. However, long_c2i |
190 | | * (x_long.c) encodes 0 as a zero length INTEGER (wrongly, of course), |
191 | | * so for the sake of backward compatibility, we still decode zero |
192 | | * length INTEGERs as the number zero. |
193 | | */ |
194 | 621k | if (len == 0) |
195 | 76.5k | goto long_compat; |
196 | | |
197 | 545k | if (!ossl_c2i_uint64_int(&utmp, &neg, &cont, len)) |
198 | 23.9k | return 0; |
199 | 521k | if ((it->size & INTxx_FLAG_SIGNED) == 0 && neg) { |
200 | 4.58k | ERR_raise(ERR_LIB_ASN1, ASN1_R_ILLEGAL_NEGATIVE_VALUE); |
201 | 4.58k | return 0; |
202 | 4.58k | } |
203 | 516k | if (neg) { |
204 | 107k | if (utmp > ABS_INT32_MIN) { |
205 | 14.4k | ERR_raise(ERR_LIB_ASN1, ASN1_R_TOO_SMALL); |
206 | 14.4k | return 0; |
207 | 14.4k | } |
208 | 92.9k | utmp = 0 - utmp; |
209 | 409k | } else { |
210 | 409k | if (((it->size & INTxx_FLAG_SIGNED) != 0 && utmp > INT32_MAX) |
211 | 409k | || ((it->size & INTxx_FLAG_SIGNED) == 0 && utmp > UINT32_MAX)) { |
212 | 17.1k | ERR_raise(ERR_LIB_ASN1, ASN1_R_TOO_LARGE); |
213 | 17.1k | return 0; |
214 | 17.1k | } |
215 | 409k | } |
216 | | |
217 | 561k | long_compat: |
218 | 561k | utmp2 = (uint32_t)utmp; |
219 | 561k | memcpy(cp, &utmp2, sizeof(utmp2)); |
220 | 561k | return 1; |
221 | 516k | } |
222 | | |
223 | | static int uint32_print(BIO *out, const ASN1_VALUE **pval, const ASN1_ITEM *it, |
224 | | int indent, const ASN1_PCTX *pctx) |
225 | 12.0k | { |
226 | 12.0k | if ((it->size & INTxx_FLAG_SIGNED) == INTxx_FLAG_SIGNED) |
227 | 11.2k | return BIO_printf(out, "%d\n", (int)**(int32_t **)pval); |
228 | 774 | return BIO_printf(out, "%u\n", (unsigned int)**(uint32_t **)pval); |
229 | 12.0k | } |
230 | | |
231 | | |
232 | | /* Define the primitives themselves */ |
233 | | |
234 | | static ASN1_PRIMITIVE_FUNCS uint32_pf = { |
235 | | NULL, 0, |
236 | | uint32_new, |
237 | | uint32_free, |
238 | | uint32_clear, |
239 | | uint32_c2i, |
240 | | uint32_i2c, |
241 | | uint32_print |
242 | | }; |
243 | | |
244 | | static ASN1_PRIMITIVE_FUNCS uint64_pf = { |
245 | | NULL, 0, |
246 | | uint64_new, |
247 | | uint64_free, |
248 | | uint64_clear, |
249 | | uint64_c2i, |
250 | | uint64_i2c, |
251 | | uint64_print |
252 | | }; |
253 | | |
254 | 2.46M | ASN1_ITEM_start(INT32) |
255 | 2.46M | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint32_pf, |
256 | 2.46M | INTxx_FLAG_SIGNED, "INT32" |
257 | 2.46M | ASN1_ITEM_end(INT32) |
258 | | |
259 | 329k | ASN1_ITEM_start(UINT32) |
260 | 329k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint32_pf, 0, "UINT32" |
261 | 329k | ASN1_ITEM_end(UINT32) |
262 | | |
263 | 52.9k | ASN1_ITEM_start(INT64) |
264 | 52.9k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint64_pf, |
265 | 52.9k | INTxx_FLAG_SIGNED, "INT64" |
266 | 52.9k | ASN1_ITEM_end(INT64) |
267 | | |
268 | 52.9k | ASN1_ITEM_start(UINT64) |
269 | 52.9k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint64_pf, 0, "UINT64" |
270 | 52.9k | ASN1_ITEM_end(UINT64) |
271 | | |
272 | 224k | ASN1_ITEM_start(ZINT32) |
273 | 224k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint32_pf, |
274 | 224k | INTxx_FLAG_ZERO_DEFAULT|INTxx_FLAG_SIGNED, "ZINT32" |
275 | 224k | ASN1_ITEM_end(ZINT32) |
276 | | |
277 | 468k | ASN1_ITEM_start(ZUINT32) |
278 | 468k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint32_pf, |
279 | 468k | INTxx_FLAG_ZERO_DEFAULT, "ZUINT32" |
280 | 468k | ASN1_ITEM_end(ZUINT32) |
281 | | |
282 | 334k | ASN1_ITEM_start(ZINT64) |
283 | 334k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint64_pf, |
284 | 334k | INTxx_FLAG_ZERO_DEFAULT|INTxx_FLAG_SIGNED, "ZINT64" |
285 | 334k | ASN1_ITEM_end(ZINT64) |
286 | | |
287 | 330k | ASN1_ITEM_start(ZUINT64) |
288 | 330k | ASN1_ITYPE_PRIMITIVE, V_ASN1_INTEGER, NULL, 0, &uint64_pf, |
289 | 330k | INTxx_FLAG_ZERO_DEFAULT, "ZUINT64" |
290 | 330k | ASN1_ITEM_end(ZUINT64) |
291 | | |