1 /* Copyright (c) 2014, Google Inc.
2  *
3  * Permission to use, copy, modify, and/or distribute this software for any
4  * purpose with or without fee is hereby granted, provided that the above
5  * copyright notice and this permission notice appear in all copies.
6  *
7  * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
8  * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
9  * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
10  * SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
11  * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION
12  * OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF OR IN
13  * CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. */
14 
15 #include <openssl/mem.h>
16 #include <openssl/bytestring.h>
17 
18 #include <assert.h>
19 #include <inttypes.h>
20 #include <string.h>
21 
22 #include "internal.h"
23 #include "../internal.h"
24 
25 
CBS_init(CBS * cbs,const uint8_t * data,size_t len)26 void CBS_init(CBS *cbs, const uint8_t *data, size_t len) {
27   cbs->data = data;
28   cbs->len = len;
29 }
30 
cbs_get(CBS * cbs,const uint8_t ** p,size_t n)31 static int cbs_get(CBS *cbs, const uint8_t **p, size_t n) {
32   if (cbs->len < n) {
33     return 0;
34   }
35 
36   *p = cbs->data;
37   cbs->data += n;
38   cbs->len -= n;
39   return 1;
40 }
41 
CBS_skip(CBS * cbs,size_t len)42 int CBS_skip(CBS *cbs, size_t len) {
43   const uint8_t *dummy;
44   return cbs_get(cbs, &dummy, len);
45 }
46 
CBS_data(const CBS * cbs)47 const uint8_t *CBS_data(const CBS *cbs) {
48   return cbs->data;
49 }
50 
CBS_len(const CBS * cbs)51 size_t CBS_len(const CBS *cbs) {
52   return cbs->len;
53 }
54 
CBS_stow(const CBS * cbs,uint8_t ** out_ptr,size_t * out_len)55 int CBS_stow(const CBS *cbs, uint8_t **out_ptr, size_t *out_len) {
56   OPENSSL_free(*out_ptr);
57   *out_ptr = NULL;
58   *out_len = 0;
59 
60   if (cbs->len == 0) {
61     return 1;
62   }
63   *out_ptr = OPENSSL_memdup(cbs->data, cbs->len);
64   if (*out_ptr == NULL) {
65     return 0;
66   }
67   *out_len = cbs->len;
68   return 1;
69 }
70 
CBS_strdup(const CBS * cbs,char ** out_ptr)71 int CBS_strdup(const CBS *cbs, char **out_ptr) {
72   if (*out_ptr != NULL) {
73     OPENSSL_free(*out_ptr);
74   }
75   *out_ptr = OPENSSL_strndup((const char*)cbs->data, cbs->len);
76   return (*out_ptr != NULL);
77 }
78 
CBS_contains_zero_byte(const CBS * cbs)79 int CBS_contains_zero_byte(const CBS *cbs) {
80   return OPENSSL_memchr(cbs->data, 0, cbs->len) != NULL;
81 }
82 
CBS_mem_equal(const CBS * cbs,const uint8_t * data,size_t len)83 int CBS_mem_equal(const CBS *cbs, const uint8_t *data, size_t len) {
84   if (len != cbs->len) {
85     return 0;
86   }
87   return CRYPTO_memcmp(cbs->data, data, len) == 0;
88 }
89 
cbs_get_u(CBS * cbs,uint64_t * out,size_t len)90 static int cbs_get_u(CBS *cbs, uint64_t *out, size_t len) {
91   uint64_t result = 0;
92   const uint8_t *data;
93 
94   if (!cbs_get(cbs, &data, len)) {
95     return 0;
96   }
97   for (size_t i = 0; i < len; i++) {
98     result <<= 8;
99     result |= data[i];
100   }
101   *out = result;
102   return 1;
103 }
104 
CBS_get_u8(CBS * cbs,uint8_t * out)105 int CBS_get_u8(CBS *cbs, uint8_t *out) {
106   const uint8_t *v;
107   if (!cbs_get(cbs, &v, 1)) {
108     return 0;
109   }
110   *out = *v;
111   return 1;
112 }
113 
CBS_get_u16(CBS * cbs,uint16_t * out)114 int CBS_get_u16(CBS *cbs, uint16_t *out) {
115   uint64_t v;
116   if (!cbs_get_u(cbs, &v, 2)) {
117     return 0;
118   }
119   *out = v;
120   return 1;
121 }
122 
CBS_get_u16le(CBS * cbs,uint16_t * out)123 int CBS_get_u16le(CBS *cbs, uint16_t *out) {
124   if (!CBS_get_u16(cbs, out)) {
125     return 0;
126   }
127   *out = CRYPTO_bswap2(*out);
128   return 1;
129 }
130 
CBS_get_u24(CBS * cbs,uint32_t * out)131 int CBS_get_u24(CBS *cbs, uint32_t *out) {
132   uint64_t v;
133   if (!cbs_get_u(cbs, &v, 3)) {
134     return 0;
135   }
136   *out = v;
137   return 1;
138 }
139 
CBS_get_u32(CBS * cbs,uint32_t * out)140 int CBS_get_u32(CBS *cbs, uint32_t *out) {
141   uint64_t v;
142   if (!cbs_get_u(cbs, &v, 4)) {
143     return 0;
144   }
145   *out = v;
146   return 1;
147 }
148 
CBS_get_u32le(CBS * cbs,uint32_t * out)149 int CBS_get_u32le(CBS *cbs, uint32_t *out) {
150   if (!CBS_get_u32(cbs, out)) {
151     return 0;
152   }
153   *out = CRYPTO_bswap4(*out);
154   return 1;
155 }
156 
CBS_get_u64(CBS * cbs,uint64_t * out)157 int CBS_get_u64(CBS *cbs, uint64_t *out) {
158   return cbs_get_u(cbs, out, 8);
159 }
160 
CBS_get_u64le(CBS * cbs,uint64_t * out)161 int CBS_get_u64le(CBS *cbs, uint64_t *out) {
162   if (!cbs_get_u(cbs, out, 8)) {
163     return 0;
164   }
165   *out = CRYPTO_bswap8(*out);
166   return 1;
167 }
168 
CBS_get_last_u8(CBS * cbs,uint8_t * out)169 int CBS_get_last_u8(CBS *cbs, uint8_t *out) {
170   if (cbs->len == 0) {
171     return 0;
172   }
173   *out = cbs->data[cbs->len - 1];
174   cbs->len--;
175   return 1;
176 }
177 
CBS_get_bytes(CBS * cbs,CBS * out,size_t len)178 int CBS_get_bytes(CBS *cbs, CBS *out, size_t len) {
179   const uint8_t *v;
180   if (!cbs_get(cbs, &v, len)) {
181     return 0;
182   }
183   CBS_init(out, v, len);
184   return 1;
185 }
186 
CBS_copy_bytes(CBS * cbs,uint8_t * out,size_t len)187 int CBS_copy_bytes(CBS *cbs, uint8_t *out, size_t len) {
188   const uint8_t *v;
189   if (!cbs_get(cbs, &v, len)) {
190     return 0;
191   }
192   OPENSSL_memcpy(out, v, len);
193   return 1;
194 }
195 
cbs_get_length_prefixed(CBS * cbs,CBS * out,size_t len_len)196 static int cbs_get_length_prefixed(CBS *cbs, CBS *out, size_t len_len) {
197   uint64_t len;
198   if (!cbs_get_u(cbs, &len, len_len)) {
199     return 0;
200   }
201   // If |len_len| <= 3 then we know that |len| will fit into a |size_t|, even on
202   // 32-bit systems.
203   assert(len_len <= 3);
204   return CBS_get_bytes(cbs, out, len);
205 }
206 
CBS_get_u8_length_prefixed(CBS * cbs,CBS * out)207 int CBS_get_u8_length_prefixed(CBS *cbs, CBS *out) {
208   return cbs_get_length_prefixed(cbs, out, 1);
209 }
210 
CBS_get_u16_length_prefixed(CBS * cbs,CBS * out)211 int CBS_get_u16_length_prefixed(CBS *cbs, CBS *out) {
212   return cbs_get_length_prefixed(cbs, out, 2);
213 }
214 
CBS_get_u24_length_prefixed(CBS * cbs,CBS * out)215 int CBS_get_u24_length_prefixed(CBS *cbs, CBS *out) {
216   return cbs_get_length_prefixed(cbs, out, 3);
217 }
218 
219 // parse_base128_integer reads a big-endian base-128 integer from |cbs| and sets
220 // |*out| to the result. This is the encoding used in DER for both high tag
221 // number form and OID components.
parse_base128_integer(CBS * cbs,uint64_t * out)222 static int parse_base128_integer(CBS *cbs, uint64_t *out) {
223   uint64_t v = 0;
224   uint8_t b;
225   do {
226     if (!CBS_get_u8(cbs, &b)) {
227       return 0;
228     }
229     if ((v >> (64 - 7)) != 0) {
230       // The value is too large.
231       return 0;
232     }
233     if (v == 0 && b == 0x80) {
234       // The value must be minimally encoded.
235       return 0;
236     }
237     v = (v << 7) | (b & 0x7f);
238 
239     // Values end at an octet with the high bit cleared.
240   } while (b & 0x80);
241 
242   *out = v;
243   return 1;
244 }
245 
parse_asn1_tag(CBS * cbs,unsigned * out)246 static int parse_asn1_tag(CBS *cbs, unsigned *out) {
247   uint8_t tag_byte;
248   if (!CBS_get_u8(cbs, &tag_byte)) {
249     return 0;
250   }
251 
252   // ITU-T X.690 section 8.1.2.3 specifies the format for identifiers with a tag
253   // number no greater than 30.
254   //
255   // If the number portion is 31 (0x1f, the largest value that fits in the
256   // allotted bits), then the tag is more than one byte long and the
257   // continuation bytes contain the tag number.
258   unsigned tag = ((unsigned)tag_byte & 0xe0) << CBS_ASN1_TAG_SHIFT;
259   unsigned tag_number = tag_byte & 0x1f;
260   if (tag_number == 0x1f) {
261     uint64_t v;
262     if (!parse_base128_integer(cbs, &v) ||
263         // Check the tag number is within our supported bounds.
264         v > CBS_ASN1_TAG_NUMBER_MASK ||
265         // Small tag numbers should have used low tag number form, even in BER.
266         v < 0x1f) {
267       return 0;
268     }
269     tag_number = (unsigned)v;
270   }
271 
272   tag |= tag_number;
273 
274   *out = tag;
275   return 1;
276 }
277 
cbs_get_any_asn1_element(CBS * cbs,CBS * out,unsigned * out_tag,size_t * out_header_len,int * out_ber_found,int ber_ok)278 static int cbs_get_any_asn1_element(CBS *cbs, CBS *out, unsigned *out_tag,
279                                     size_t *out_header_len, int *out_ber_found,
280                                     int ber_ok) {
281   CBS header = *cbs;
282   CBS throwaway;
283 
284   if (out == NULL) {
285     out = &throwaway;
286   }
287   if (ber_ok) {
288     *out_ber_found = 0;
289   }
290 
291   unsigned tag;
292   if (!parse_asn1_tag(&header, &tag)) {
293     return 0;
294   }
295   if (out_tag != NULL) {
296     *out_tag = tag;
297   }
298 
299   uint8_t length_byte;
300   if (!CBS_get_u8(&header, &length_byte)) {
301     return 0;
302   }
303 
304   size_t header_len = CBS_len(cbs) - CBS_len(&header);
305 
306   size_t len;
307   // The format for the length encoding is specified in ITU-T X.690 section
308   // 8.1.3.
309   if ((length_byte & 0x80) == 0) {
310     // Short form length.
311     len = ((size_t) length_byte) + header_len;
312     if (out_header_len != NULL) {
313       *out_header_len = header_len;
314     }
315   } else {
316     // The high bit indicate that this is the long form, while the next 7 bits
317     // encode the number of subsequent octets used to encode the length (ITU-T
318     // X.690 clause 8.1.3.5.b).
319     const size_t num_bytes = length_byte & 0x7f;
320     uint64_t len64;
321 
322     if (ber_ok && (tag & CBS_ASN1_CONSTRUCTED) != 0 && num_bytes == 0) {
323       // indefinite length
324       if (out_header_len != NULL) {
325         *out_header_len = header_len;
326       }
327       *out_ber_found = 1;
328       return CBS_get_bytes(cbs, out, header_len);
329     }
330 
331     // ITU-T X.690 clause 8.1.3.5.c specifies that the value 0xff shall not be
332     // used as the first byte of the length. If this parser encounters that
333     // value, num_bytes will be parsed as 127, which will fail this check.
334     if (num_bytes == 0 || num_bytes > 4) {
335       return 0;
336     }
337     if (!cbs_get_u(&header, &len64, num_bytes)) {
338       return 0;
339     }
340     // ITU-T X.690 section 10.1 (DER length forms) requires encoding the
341     // length with the minimum number of octets. BER could, technically, have
342     // 125 superfluous zero bytes. We do not attempt to handle that and still
343     // require that the length fit in a |uint32_t| for BER.
344     if (len64 < 128) {
345       // Length should have used short-form encoding.
346       if (ber_ok) {
347         *out_ber_found = 1;
348       } else {
349         return 0;
350       }
351     }
352     if ((len64 >> ((num_bytes - 1) * 8)) == 0) {
353       // Length should have been at least one byte shorter.
354       if (ber_ok) {
355         *out_ber_found = 1;
356       } else {
357         return 0;
358       }
359     }
360     len = len64;
361     if (len + header_len + num_bytes < len) {
362       // Overflow.
363       return 0;
364     }
365     len += header_len + num_bytes;
366     if (out_header_len != NULL) {
367       *out_header_len = header_len + num_bytes;
368     }
369   }
370 
371   return CBS_get_bytes(cbs, out, len);
372 }
373 
CBS_get_any_asn1(CBS * cbs,CBS * out,unsigned * out_tag)374 int CBS_get_any_asn1(CBS *cbs, CBS *out, unsigned *out_tag) {
375   size_t header_len;
376   if (!CBS_get_any_asn1_element(cbs, out, out_tag, &header_len)) {
377     return 0;
378   }
379 
380   if (!CBS_skip(out, header_len)) {
381     assert(0);
382     return 0;
383   }
384 
385   return 1;
386 }
387 
CBS_get_any_asn1_element(CBS * cbs,CBS * out,unsigned * out_tag,size_t * out_header_len)388 int CBS_get_any_asn1_element(CBS *cbs, CBS *out, unsigned *out_tag,
389                                     size_t *out_header_len) {
390   return cbs_get_any_asn1_element(cbs, out, out_tag, out_header_len,
391                                   NULL, 0 /* DER only */);
392 }
393 
CBS_get_any_ber_asn1_element(CBS * cbs,CBS * out,unsigned * out_tag,size_t * out_header_len,int * out_ber_found)394 int CBS_get_any_ber_asn1_element(CBS *cbs, CBS *out, unsigned *out_tag,
395                                  size_t *out_header_len, int *out_ber_found) {
396   int ber_found_temp;
397   return cbs_get_any_asn1_element(
398       cbs, out, out_tag, out_header_len,
399       out_ber_found ? out_ber_found : &ber_found_temp, 1 /* BER allowed */);
400 }
401 
cbs_get_asn1(CBS * cbs,CBS * out,unsigned tag_value,int skip_header)402 static int cbs_get_asn1(CBS *cbs, CBS *out, unsigned tag_value,
403                         int skip_header) {
404   size_t header_len;
405   unsigned tag;
406   CBS throwaway;
407 
408   if (out == NULL) {
409     out = &throwaway;
410   }
411 
412   if (!CBS_get_any_asn1_element(cbs, out, &tag, &header_len) ||
413       tag != tag_value) {
414     return 0;
415   }
416 
417   if (skip_header && !CBS_skip(out, header_len)) {
418     assert(0);
419     return 0;
420   }
421 
422   return 1;
423 }
424 
CBS_get_asn1(CBS * cbs,CBS * out,unsigned tag_value)425 int CBS_get_asn1(CBS *cbs, CBS *out, unsigned tag_value) {
426   return cbs_get_asn1(cbs, out, tag_value, 1 /* skip header */);
427 }
428 
CBS_get_asn1_element(CBS * cbs,CBS * out,unsigned tag_value)429 int CBS_get_asn1_element(CBS *cbs, CBS *out, unsigned tag_value) {
430   return cbs_get_asn1(cbs, out, tag_value, 0 /* include header */);
431 }
432 
CBS_peek_asn1_tag(const CBS * cbs,unsigned tag_value)433 int CBS_peek_asn1_tag(const CBS *cbs, unsigned tag_value) {
434   if (CBS_len(cbs) < 1) {
435     return 0;
436   }
437 
438   CBS copy = *cbs;
439   unsigned actual_tag;
440   return parse_asn1_tag(&copy, &actual_tag) && tag_value == actual_tag;
441 }
442 
CBS_get_asn1_uint64(CBS * cbs,uint64_t * out)443 int CBS_get_asn1_uint64(CBS *cbs, uint64_t *out) {
444   CBS bytes;
445   if (!CBS_get_asn1(cbs, &bytes, CBS_ASN1_INTEGER) ||
446       !CBS_is_unsigned_asn1_integer(&bytes)) {
447     return 0;
448   }
449 
450   *out = 0;
451   const uint8_t *data = CBS_data(&bytes);
452   size_t len = CBS_len(&bytes);
453   for (size_t i = 0; i < len; i++) {
454     if ((*out >> 56) != 0) {
455       // Too large to represent as a uint64_t.
456       return 0;
457     }
458     *out <<= 8;
459     *out |= data[i];
460   }
461 
462   return 1;
463 }
464 
CBS_get_asn1_int64(CBS * cbs,int64_t * out)465 int CBS_get_asn1_int64(CBS *cbs, int64_t *out) {
466   int is_negative;
467   CBS bytes;
468   if (!CBS_get_asn1(cbs, &bytes, CBS_ASN1_INTEGER) ||
469       !CBS_is_valid_asn1_integer(&bytes, &is_negative)) {
470     return 0;
471   }
472   const uint8_t *data = CBS_data(&bytes);
473   const size_t len = CBS_len(&bytes);
474   if (len > sizeof(int64_t)) {
475     return 0;
476   }
477   union {
478     int64_t i;
479     uint8_t bytes[sizeof(int64_t)];
480   } u;
481   memset(u.bytes, is_negative ? 0xff : 0, sizeof(u.bytes));  // Sign-extend.
482   for (size_t i = 0; i < len; i++) {
483     u.bytes[i] = data[len - i - 1];
484   }
485   *out = u.i;
486   return 1;
487 }
488 
CBS_get_asn1_bool(CBS * cbs,int * out)489 int CBS_get_asn1_bool(CBS *cbs, int *out) {
490   CBS bytes;
491   if (!CBS_get_asn1(cbs, &bytes, CBS_ASN1_BOOLEAN) ||
492       CBS_len(&bytes) != 1) {
493     return 0;
494   }
495 
496   const uint8_t value = *CBS_data(&bytes);
497   if (value != 0 && value != 0xff) {
498     return 0;
499   }
500 
501   *out = !!value;
502   return 1;
503 }
504 
CBS_get_optional_asn1(CBS * cbs,CBS * out,int * out_present,unsigned tag)505 int CBS_get_optional_asn1(CBS *cbs, CBS *out, int *out_present, unsigned tag) {
506   int present = 0;
507 
508   if (CBS_peek_asn1_tag(cbs, tag)) {
509     if (!CBS_get_asn1(cbs, out, tag)) {
510       return 0;
511     }
512     present = 1;
513   }
514 
515   if (out_present != NULL) {
516     *out_present = present;
517   }
518 
519   return 1;
520 }
521 
CBS_get_optional_asn1_octet_string(CBS * cbs,CBS * out,int * out_present,unsigned tag)522 int CBS_get_optional_asn1_octet_string(CBS *cbs, CBS *out, int *out_present,
523                                        unsigned tag) {
524   CBS child;
525   int present;
526   if (!CBS_get_optional_asn1(cbs, &child, &present, tag)) {
527     return 0;
528   }
529   if (present) {
530     assert(out);
531     if (!CBS_get_asn1(&child, out, CBS_ASN1_OCTETSTRING) ||
532         CBS_len(&child) != 0) {
533       return 0;
534     }
535   } else {
536     CBS_init(out, NULL, 0);
537   }
538   if (out_present) {
539     *out_present = present;
540   }
541   return 1;
542 }
543 
CBS_get_optional_asn1_uint64(CBS * cbs,uint64_t * out,unsigned tag,uint64_t default_value)544 int CBS_get_optional_asn1_uint64(CBS *cbs, uint64_t *out, unsigned tag,
545                                  uint64_t default_value) {
546   CBS child;
547   int present;
548   if (!CBS_get_optional_asn1(cbs, &child, &present, tag)) {
549     return 0;
550   }
551   if (present) {
552     if (!CBS_get_asn1_uint64(&child, out) ||
553         CBS_len(&child) != 0) {
554       return 0;
555     }
556   } else {
557     *out = default_value;
558   }
559   return 1;
560 }
561 
CBS_get_optional_asn1_bool(CBS * cbs,int * out,unsigned tag,int default_value)562 int CBS_get_optional_asn1_bool(CBS *cbs, int *out, unsigned tag,
563                                int default_value) {
564   CBS child, child2;
565   int present;
566   if (!CBS_get_optional_asn1(cbs, &child, &present, tag)) {
567     return 0;
568   }
569   if (present) {
570     uint8_t boolean;
571 
572     if (!CBS_get_asn1(&child, &child2, CBS_ASN1_BOOLEAN) ||
573         CBS_len(&child2) != 1 ||
574         CBS_len(&child) != 0) {
575       return 0;
576     }
577 
578     boolean = CBS_data(&child2)[0];
579     if (boolean == 0) {
580       *out = 0;
581     } else if (boolean == 0xff) {
582       *out = 1;
583     } else {
584       return 0;
585     }
586   } else {
587     *out = default_value;
588   }
589   return 1;
590 }
591 
CBS_is_valid_asn1_bitstring(const CBS * cbs)592 int CBS_is_valid_asn1_bitstring(const CBS *cbs) {
593   CBS in = *cbs;
594   uint8_t num_unused_bits;
595   if (!CBS_get_u8(&in, &num_unused_bits) ||
596       num_unused_bits > 7) {
597     return 0;
598   }
599 
600   if (num_unused_bits == 0) {
601     return 1;
602   }
603 
604   // All num_unused_bits bits must exist and be zeros.
605   uint8_t last;
606   if (!CBS_get_last_u8(&in, &last) ||
607       (last & ((1 << num_unused_bits) - 1)) != 0) {
608     return 0;
609   }
610 
611   return 1;
612 }
613 
CBS_asn1_bitstring_has_bit(const CBS * cbs,unsigned bit)614 int CBS_asn1_bitstring_has_bit(const CBS *cbs, unsigned bit) {
615   if (!CBS_is_valid_asn1_bitstring(cbs)) {
616     return 0;
617   }
618 
619   const unsigned byte_num = (bit >> 3) + 1;
620   const unsigned bit_num = 7 - (bit & 7);
621 
622   // Unused bits are zero, and this function does not distinguish between
623   // missing and unset bits. Thus it is sufficient to do a byte-level length
624   // check.
625   return byte_num < CBS_len(cbs) &&
626          (CBS_data(cbs)[byte_num] & (1 << bit_num)) != 0;
627 }
628 
CBS_is_valid_asn1_integer(const CBS * cbs,int * out_is_negative)629 int CBS_is_valid_asn1_integer(const CBS *cbs, int *out_is_negative) {
630   CBS copy = *cbs;
631   uint8_t first_byte, second_byte;
632   if (!CBS_get_u8(&copy, &first_byte)) {
633     return 0;  // INTEGERs may not be empty.
634   }
635   if (out_is_negative != NULL) {
636     *out_is_negative = (first_byte & 0x80) != 0;
637   }
638   if (!CBS_get_u8(&copy, &second_byte)) {
639     return 1;  // One byte INTEGERs are always minimal.
640   }
641   if ((first_byte == 0x00 && (second_byte & 0x80) == 0) ||
642       (first_byte == 0xff && (second_byte & 0x80) != 0)) {
643     return 0;  // The value is minimal iff the first 9 bits are not all equal.
644   }
645   return 1;
646 }
647 
CBS_is_unsigned_asn1_integer(const CBS * cbs)648 int CBS_is_unsigned_asn1_integer(const CBS *cbs) {
649   int is_negative;
650   return CBS_is_valid_asn1_integer(cbs, &is_negative) && !is_negative;
651 }
652 
add_decimal(CBB * out,uint64_t v)653 static int add_decimal(CBB *out, uint64_t v) {
654   char buf[DECIMAL_SIZE(uint64_t) + 1];
655   BIO_snprintf(buf, sizeof(buf), "%" PRIu64, v);
656   return CBB_add_bytes(out, (const uint8_t *)buf, strlen(buf));
657 }
658 
CBS_asn1_oid_to_text(const CBS * cbs)659 char *CBS_asn1_oid_to_text(const CBS *cbs) {
660   CBB cbb;
661   if (!CBB_init(&cbb, 32)) {
662     goto err;
663   }
664 
665   CBS copy = *cbs;
666   // The first component is 40 * value1 + value2, where value1 is 0, 1, or 2.
667   uint64_t v;
668   if (!parse_base128_integer(&copy, &v)) {
669     goto err;
670   }
671 
672   if (v >= 80) {
673     if (!CBB_add_bytes(&cbb, (const uint8_t *)"2.", 2) ||
674         !add_decimal(&cbb, v - 80)) {
675       goto err;
676     }
677   } else if (!add_decimal(&cbb, v / 40) ||
678              !CBB_add_u8(&cbb, '.') ||
679              !add_decimal(&cbb, v % 40)) {
680     goto err;
681   }
682 
683   while (CBS_len(&copy) != 0) {
684     if (!parse_base128_integer(&copy, &v) ||
685         !CBB_add_u8(&cbb, '.') ||
686         !add_decimal(&cbb, v)) {
687       goto err;
688     }
689   }
690 
691   uint8_t *txt;
692   size_t txt_len;
693   if (!CBB_add_u8(&cbb, '\0') ||
694       !CBB_finish(&cbb, &txt, &txt_len)) {
695     goto err;
696   }
697 
698   return (char *)txt;
699 
700 err:
701   CBB_cleanup(&cbb);
702   return NULL;
703 }
704