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[thirdparty/systemd.git] / src / resolve / resolved-dns-packet.h
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db9ecf05 1/* SPDX-License-Identifier: LGPL-2.1-or-later */
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2#pragma once
3
a0166609 4#include <netinet/ip.h>
4565863f 5#include <netinet/ip6.h>
71d35b6b 6#include <netinet/udp.h>
74b2466e 7
74b2466e 8#include "hashmap.h"
7e8e0422 9#include "in-addr-util.h"
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TA
10#include "macro.h"
11#include "sparse-endian.h"
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12
13typedef struct DnsPacketHeader DnsPacketHeader;
14typedef struct DnsPacket DnsPacket;
15
51323288 16#include "resolved-def.h"
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17#include "resolved-dns-answer.h"
18#include "resolved-dns-question.h"
19#include "resolved-dns-rr.h"
74b2466e 20
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21typedef enum DnsProtocol {
22 DNS_PROTOCOL_DNS,
23 DNS_PROTOCOL_MDNS,
24 DNS_PROTOCOL_LLMNR,
25 _DNS_PROTOCOL_MAX,
2d93c20e 26 _DNS_PROTOCOL_INVALID = -EINVAL,
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27} DnsProtocol;
28
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29struct DnsPacketHeader {
30 uint16_t id;
31 be16_t flags;
32 be16_t qdcount;
33 be16_t ancount;
34 be16_t nscount;
35 be16_t arcount;
4565863f 36} _packed_;
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37
38#define DNS_PACKET_HEADER_SIZE sizeof(DnsPacketHeader)
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39#define UDP4_PACKET_HEADER_SIZE (sizeof(struct iphdr) + sizeof(struct udphdr))
40#define UDP6_PACKET_HEADER_SIZE (sizeof(struct ip6_hdr) + sizeof(struct udphdr))
41
42assert_cc(sizeof(struct ip6_hdr) == 40);
43assert_cc(sizeof(struct iphdr) == 20);
44assert_cc(sizeof(struct udphdr) == 8);
45assert_cc(sizeof(DnsPacketHeader) == 12);
c73ce96b 46
da890466 47/* The various DNS protocols deviate in how large a packet can grow, but the TCP transport has a 16-bit size
4565863f 48 * field, hence that appears to be the absolute maximum. */
64a21fda 49#define DNS_PACKET_SIZE_MAX 0xFFFFu
e1c95994 50
86d06089
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51/* The default size to use for allocation when we don't know how large
52 * the packet will turn out to be. */
53#define DNS_PACKET_SIZE_START 512u
54
e1c95994 55/* RFC 1035 say 512 is the maximum, for classic unicast DNS */
64a21fda 56#define DNS_PACKET_UNICAST_SIZE_MAX 512u
e1c95994 57
e144a263
CR
58/* With EDNS0 we can use larger packets, default to 1232, which is what is commonly used */
59#define DNS_PACKET_UNICAST_SIZE_LARGE_MAX 1232u
d74fb368 60
74b2466e 61struct DnsPacket {
cf4b2f99 62 unsigned n_ref;
1716f6dc 63 DnsProtocol protocol;
20a001bd 64 size_t size, allocated, rindex, max_size, fragsize;
faa133f3 65 void *_data; /* don't access directly, use DNS_PACKET_DATA()! */
74b2466e 66 Hashmap *names; /* For name compression */
519ef046 67 size_t opt_start, opt_size;
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68
69 /* Parsed data */
70 DnsQuestion *question;
71 DnsAnswer *answer;
d75acfb0 72 DnsResourceRecord *opt;
1716f6dc 73
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74 /* For support of truncated packets */
75 DnsPacket *more;
76
dc61b7e4 77 /* Packet reception metadata */
421b1f0a 78 usec_t timestamp; /* CLOCK_BOOTTIME (or CLOCK_MONOTONIC if the former doesn't exist) */
1716f6dc 79 int ifindex;
623a4c97 80 int family, ipproto;
1716f6dc 81 union in_addr_union sender, destination;
623a4c97 82 uint16_t sender_port, destination_port;
0dd25fb9 83 uint32_t ttl;
a4076574 84
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85 bool on_stack;
86 bool extracted;
87 bool refuse_compression;
88 bool canonical_form;
9c491563 89
421b1f0a 90 /* Note: fields should be ordered to minimize alignment gaps. Use pahole! */
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91};
92
7130db91 93static inline uint8_t* DNS_PACKET_DATA(const DnsPacket *p) {
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94 if (_unlikely_(!p))
95 return NULL;
96
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97 if (p->_data)
98 return p->_data;
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99
100 return ((uint8_t*) p) + ALIGN(sizeof(DnsPacket));
101}
102
103#define DNS_PACKET_HEADER(p) ((DnsPacketHeader*) DNS_PACKET_DATA(p))
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104#define DNS_PACKET_ID(p) DNS_PACKET_HEADER(p)->id
105#define DNS_PACKET_QR(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 15) & 1)
106#define DNS_PACKET_OPCODE(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 11) & 15)
8b757a38 107#define DNS_PACKET_AA(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 10) & 1)
ad867662 108#define DNS_PACKET_TC(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 9) & 1)
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109#define DNS_PACKET_RD(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 8) & 1)
110#define DNS_PACKET_RA(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 7) & 1)
111#define DNS_PACKET_AD(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 5) & 1)
112#define DNS_PACKET_CD(p) ((be16toh(DNS_PACKET_HEADER(p)->flags) >> 4) & 1)
f3abbe25 113
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114#define DNS_PACKET_FLAG_TC (UINT16_C(1) << 9)
115
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116static inline uint16_t DNS_PACKET_RCODE(DnsPacket *p) {
117 uint16_t rcode;
118
119 if (p->opt)
120 rcode = (uint16_t) (p->opt->ttl >> 24);
121 else
122 rcode = 0;
123
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124 return rcode | (be16toh(DNS_PACKET_HEADER(p)->flags) & 0xF);
125}
126
127static inline uint16_t DNS_PACKET_PAYLOAD_SIZE_MAX(DnsPacket *p) {
128
e6eed944 129 /* Returns the advertised maximum size for replies, or the DNS default if there's nothing defined. */
b30bf55d 130
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131 if (p->ipproto == IPPROTO_TCP) /* we ignore EDNS(0) size data on TCP, like everybody else */
132 return DNS_PACKET_SIZE_MAX;
133
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134 if (p->opt)
135 return MAX(DNS_PACKET_UNICAST_SIZE_MAX, p->opt->key->class);
136
137 return DNS_PACKET_UNICAST_SIZE_MAX;
138}
139
140static inline bool DNS_PACKET_DO(DnsPacket *p) {
141 if (!p->opt)
142 return false;
143
144 return !!(p->opt->ttl & (1U << 15));
145}
146
147static inline bool DNS_PACKET_VERSION_SUPPORTED(DnsPacket *p) {
148 /* Returns true if this packet is in a version we support. Which means either non-EDNS or EDNS(0), but not EDNS
149 * of any newer versions */
150
151 if (!p->opt)
152 return true;
153
154 return DNS_RESOURCE_RECORD_OPT_VERSION_SUPPORTED(p->opt);
f3abbe25 155}
8b757a38 156
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157static inline bool DNS_PACKET_IS_FRAGMENTED(DnsPacket *p) {
158 assert(p);
159
160 /* For ingress packets: was this packet fragmented according to our knowledge? */
161
162 return p->fragsize != 0;
163}
164
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165/* LLMNR defines some bits differently */
166#define DNS_PACKET_LLMNR_C(p) DNS_PACKET_AA(p)
167#define DNS_PACKET_LLMNR_T(p) DNS_PACKET_RD(p)
168
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169#define DNS_PACKET_QDCOUNT(p) be16toh(DNS_PACKET_HEADER(p)->qdcount)
170#define DNS_PACKET_ANCOUNT(p) be16toh(DNS_PACKET_HEADER(p)->ancount)
171#define DNS_PACKET_NSCOUNT(p) be16toh(DNS_PACKET_HEADER(p)->nscount)
172#define DNS_PACKET_ARCOUNT(p) be16toh(DNS_PACKET_HEADER(p)->arcount)
173
174#define DNS_PACKET_MAKE_FLAGS(qr, opcode, aa, tc, rd, ra, ad, cd, rcode) \
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175 (((uint16_t) !!(qr) << 15) | \
176 ((uint16_t) ((opcode) & 15) << 11) | \
177 ((uint16_t) !!(aa) << 10) | /* on LLMNR: c */ \
178 ((uint16_t) !!(tc) << 9) | \
179 ((uint16_t) !!(rd) << 8) | /* on LLMNR: t */ \
180 ((uint16_t) !!(ra) << 7) | \
181 ((uint16_t) !!(ad) << 5) | \
182 ((uint16_t) !!(cd) << 4) | \
183 ((uint16_t) ((rcode) & 15)))
3cb10d3a 184
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185static inline unsigned DNS_PACKET_RRCOUNT(DnsPacket *p) {
186 return
187 (unsigned) DNS_PACKET_ANCOUNT(p) +
188 (unsigned) DNS_PACKET_NSCOUNT(p) +
189 (unsigned) DNS_PACKET_ARCOUNT(p);
190}
74b2466e 191
51027656 192int dns_packet_new(DnsPacket **p, DnsProtocol protocol, size_t min_alloc_dsize, size_t max_size);
46a58596 193int dns_packet_new_query(DnsPacket **p, DnsProtocol protocol, size_t min_alloc_dsize, bool dnssec_checking_disabled);
74b2466e 194
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195int dns_packet_dup(DnsPacket **ret, DnsPacket *p);
196
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197void dns_packet_set_flags(DnsPacket *p, bool dnssec_checking_disabled, bool truncated);
198
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199DnsPacket *dns_packet_ref(DnsPacket *p);
200DnsPacket *dns_packet_unref(DnsPacket *p);
201
202DEFINE_TRIVIAL_CLEANUP_FUNC(DnsPacket*, dns_packet_unref);
203
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204#define DNS_PACKET_REPLACE(a, b) \
205 do { \
206 typeof(a)* _a = &(a); \
207 typeof(b) _b = (b); \
208 dns_packet_unref(*_a); \
209 *_a = _b; \
210 } while(0)
211
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212int dns_packet_validate(DnsPacket *p);
213int dns_packet_validate_reply(DnsPacket *p);
623a4c97 214int dns_packet_validate_query(DnsPacket *p);
74b2466e 215
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216int dns_packet_is_reply_for(DnsPacket *p, const DnsResourceKey *key);
217
623a4c97 218int dns_packet_append_blob(DnsPacket *p, const void *d, size_t sz, size_t *start);
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219int dns_packet_append_uint8(DnsPacket *p, uint8_t v, size_t *start);
220int dns_packet_append_uint16(DnsPacket *p, uint16_t v, size_t *start);
623a4c97 221int dns_packet_append_uint32(DnsPacket *p, uint32_t v, size_t *start);
74b2466e 222int dns_packet_append_string(DnsPacket *p, const char *s, size_t *start);
2001c805 223int dns_packet_append_raw_string(DnsPacket *p, const void *s, size_t size, size_t *start);
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LP
224int dns_packet_append_label(DnsPacket *p, const char *s, size_t l, bool canonical_candidate, size_t *start);
225int dns_packet_append_name(DnsPacket *p, const char *name, bool allow_compression, bool canonical_candidate, size_t *start);
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DR
226int dns_packet_append_key(DnsPacket *p, const DnsResourceKey *key, const DnsAnswerFlags flags, size_t *start);
227int dns_packet_append_rr(DnsPacket *p, const DnsResourceRecord *rr, const DnsAnswerFlags flags, size_t *start, size_t *rdata_start);
4a6eb824 228int dns_packet_append_opt(DnsPacket *p, uint16_t max_udp_size, bool edns0_do, bool include_rfc6975, const char *nsid, int rcode, size_t *ret_start);
f471bc11 229int dns_packet_append_question(DnsPacket *p, DnsQuestion *q);
6f76e68a 230int dns_packet_append_answer(DnsPacket *p, DnsAnswer *a, unsigned *completed);
74b2466e 231
93748b26 232int dns_packet_patch_max_udp_size(DnsPacket *p, uint16_t max_udp_size);
81b4d94d 233int dns_packet_patch_ttls(DnsPacket *p, usec_t timestamp);
74b2466e 234
9c5e12a4 235void dns_packet_truncate(DnsPacket *p, size_t sz);
519ef046 236int dns_packet_truncate_opt(DnsPacket *p);
9c5e12a4 237
74b2466e 238int dns_packet_read(DnsPacket *p, size_t sz, const void **ret, size_t *start);
623a4c97 239int dns_packet_read_blob(DnsPacket *p, void *d, size_t sz, size_t *start);
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240int dns_packet_read_uint8(DnsPacket *p, uint8_t *ret, size_t *start);
241int dns_packet_read_uint16(DnsPacket *p, uint16_t *ret, size_t *start);
242int dns_packet_read_uint32(DnsPacket *p, uint32_t *ret, size_t *start);
243int dns_packet_read_string(DnsPacket *p, char **ret, size_t *start);
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LP
244int dns_packet_read_raw_string(DnsPacket *p, const void **ret, size_t *size, size_t *start);
245int dns_packet_read_name(DnsPacket *p, char **ret, bool allow_compression, size_t *start);
82d39576 246int dns_packet_read_key(DnsPacket *p, DnsResourceKey **ret, bool *ret_cache_flush_or_qu, size_t *start);
d2579eec 247int dns_packet_read_rr(DnsPacket *p, DnsResourceRecord **ret, bool *ret_cache_flush, size_t *start);
74b2466e 248
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249void dns_packet_rewind(DnsPacket *p, size_t idx);
250
74b2466e 251int dns_packet_skip_question(DnsPacket *p);
faa133f3 252int dns_packet_extract(DnsPacket *p);
74b2466e 253
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254bool dns_packet_equal(const DnsPacket *a, const DnsPacket *b);
255
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256int dns_packet_has_nsid_request(DnsPacket *p);
257
f3abbe25 258/* https://www.iana.org/assignments/dns-parameters/dns-parameters.xhtml#dns-parameters-6 */
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259enum {
260 DNS_RCODE_SUCCESS = 0,
261 DNS_RCODE_FORMERR = 1,
262 DNS_RCODE_SERVFAIL = 2,
263 DNS_RCODE_NXDOMAIN = 3,
264 DNS_RCODE_NOTIMP = 4,
265 DNS_RCODE_REFUSED = 5,
266 DNS_RCODE_YXDOMAIN = 6,
267 DNS_RCODE_YXRRSET = 7,
268 DNS_RCODE_NXRRSET = 8,
269 DNS_RCODE_NOTAUTH = 9,
270 DNS_RCODE_NOTZONE = 10,
271 DNS_RCODE_BADVERS = 16,
272 DNS_RCODE_BADSIG = 16, /* duplicate value! */
273 DNS_RCODE_BADKEY = 17,
274 DNS_RCODE_BADTIME = 18,
275 DNS_RCODE_BADMODE = 19,
276 DNS_RCODE_BADNAME = 20,
277 DNS_RCODE_BADALG = 21,
278 DNS_RCODE_BADTRUNC = 22,
6f21e066 279 DNS_RCODE_BADCOOKIE = 23,
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280 _DNS_RCODE_MAX_DEFINED,
281 _DNS_RCODE_MAX = 4095 /* 4 bit rcode in the header plus 8 bit rcode in OPT, makes 12 bit */
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282};
283
284const char* dns_rcode_to_string(int i) _const_;
285int dns_rcode_from_string(const char *s) _pure_;
0d609349
YW
286const char *format_dns_rcode(int i, char buf[static DECIMAL_STR_MAX(int)]);
287#define FORMAT_DNS_RCODE(i) format_dns_rcode(i, (char [DECIMAL_STR_MAX(int)]) {})
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LP
288
289const char* dns_protocol_to_string(DnsProtocol p) _const_;
290DnsProtocol dns_protocol_from_string(const char *s) _pure_;
291
292#define LLMNR_MULTICAST_IPV4_ADDRESS ((struct in_addr) { .s_addr = htobe32(224U << 24 | 252U) })
293#define LLMNR_MULTICAST_IPV6_ADDRESS ((struct in6_addr) { .s6_addr = { 0xFF, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, 0x03 } })
8db0d2f5 294
0db4c90a 295#define MDNS_MULTICAST_IPV4_ADDRESS ((struct in_addr) { .s_addr = htobe32(224U << 24 | 251U) })
b6c5d46b 296#define MDNS_MULTICAST_IPV6_ADDRESS ((struct in6_addr) { .s6_addr = { 0xFF, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xfb } })
0db4c90a 297
98767d75
IT
298extern const struct hash_ops dns_packet_hash_ops;
299
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LP
300static inline uint64_t SD_RESOLVED_FLAGS_MAKE(
301 DnsProtocol protocol,
302 int family,
303 bool authenticated,
304 bool confidential) {
931851e8 305 uint64_t f;
51323288 306
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LP
307 /* Converts a protocol + family into a flags field as used in queries and responses */
308
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309 f = (authenticated ? SD_RESOLVED_AUTHENTICATED : 0) |
310 (confidential ? SD_RESOLVED_CONFIDENTIAL : 0);
51323288 311
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DM
312 switch (protocol) {
313 case DNS_PROTOCOL_DNS:
931851e8 314 return f|SD_RESOLVED_DNS;
51323288 315
106784eb 316 case DNS_PROTOCOL_LLMNR:
931851e8 317 return f|(family == AF_INET6 ? SD_RESOLVED_LLMNR_IPV6 : SD_RESOLVED_LLMNR_IPV4);
51323288 318
4e5bf5e1 319 case DNS_PROTOCOL_MDNS:
12e1893a 320 return f|(family == AF_INET6 ? SD_RESOLVED_MDNS_IPV6 : SD_RESOLVED_MDNS_IPV4);
4e5bf5e1 321
106784eb 322 default:
12e1893a 323 return f;
106784eb 324 }
51323288 325}
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LP
326
327static inline size_t dns_packet_size_max(DnsPacket *p) {
328 assert(p);
329
330 /* Why not insist on a fully initialized max_size during DnsPacket construction? Well, this way it's easy to
331 * allocate a transient, throw-away DnsPacket on the stack by simple zero initialization, without having to
332 * deal with explicit field initialization. */
333
334 return p->max_size != 0 ? p->max_size : DNS_PACKET_SIZE_MAX;
335}
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LP
336
337static inline size_t udp_header_size(int af) {
338
339 switch (af) {
340 case AF_INET:
341 return UDP4_PACKET_HEADER_SIZE;
342 case AF_INET6:
343 return UDP6_PACKET_HEADER_SIZE;
344 default:
04499a70 345 assert_not_reached();
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LP
346 }
347}
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348
349size_t dns_packet_size_unfragmented(DnsPacket *p);