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1 /* -*- Mode: C; tab-width: 4 -*-
2 *
3 * Copyright (c) 2002-2019 Apple Inc. All rights reserved.
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 */
17
18 #ifndef __DNSCOMMON_H_
19 #define __DNSCOMMON_H_
20
21 #include "mDNSEmbeddedAPI.h"
22
23 #ifdef __cplusplus
24 extern "C" {
25 #endif
26
27 //*************************************************************************************************************
28 // Macros
29
30 // Note: The C preprocessor stringify operator ('#') makes a string from its argument, without macro expansion
31 // e.g. If "version" is #define'd to be "4", then STRINGIFY_AWE(version) will return the string "version", not "4"
32 // To expand "version" to its value before making the string, use STRINGIFY(version) instead
33 #define STRINGIFY_ARGUMENT_WITHOUT_EXPANSION(s) # s
34 #define STRINGIFY(s) STRINGIFY_ARGUMENT_WITHOUT_EXPANSION(s)
35
36 // ***************************************************************************
37 #if COMPILER_LIKES_PRAGMA_MARK
38 #pragma mark - DNS Protocol Constants
39 #endif
40
41 typedef enum
42 {
43 kDNSFlag0_QR_Mask = 0x80, // Query or response?
44 kDNSFlag0_QR_Query = 0x00,
45 kDNSFlag0_QR_Response = 0x80,
46
47 kDNSFlag0_OP_Mask = 0xF << 3, // Operation type
48 kDNSFlag0_OP_StdQuery = 0x0 << 3,
49 kDNSFlag0_OP_Iquery = 0x1 << 3,
50 kDNSFlag0_OP_Status = 0x2 << 3,
51 kDNSFlag0_OP_Unused3 = 0x3 << 3,
52 kDNSFlag0_OP_Notify = 0x4 << 3,
53 kDNSFlag0_OP_Update = 0x5 << 3,
54 kDNSFlag0_OP_DSO = 0x6 << 3,
55
56 kDNSFlag0_QROP_Mask = kDNSFlag0_QR_Mask | kDNSFlag0_OP_Mask,
57
58 kDNSFlag0_AA = 0x04, // Authoritative Answer?
59 kDNSFlag0_TC = 0x02, // Truncated?
60 kDNSFlag0_RD = 0x01, // Recursion Desired?
61 kDNSFlag1_RA = 0x80, // Recursion Available?
62
63 kDNSFlag1_Zero = 0x40, // Reserved; must be zero
64 kDNSFlag1_AD = 0x20, // Authentic Data [RFC 2535]
65 kDNSFlag1_CD = 0x10, // Checking Disabled [RFC 2535]
66
67 kDNSFlag1_RC_Mask = 0x0F, // Response code
68 kDNSFlag1_RC_NoErr = 0x00,
69 kDNSFlag1_RC_FormErr = 0x01,
70 kDNSFlag1_RC_ServFail = 0x02,
71 kDNSFlag1_RC_NXDomain = 0x03,
72 kDNSFlag1_RC_NotImpl = 0x04,
73 kDNSFlag1_RC_Refused = 0x05,
74 kDNSFlag1_RC_YXDomain = 0x06,
75 kDNSFlag1_RC_YXRRSet = 0x07,
76 kDNSFlag1_RC_NXRRSet = 0x08,
77 kDNSFlag1_RC_NotAuth = 0x09,
78 kDNSFlag1_RC_NotZone = 0x0A,
79 kDNSFlag1_RC_DSOTypeNI = 0x0B
80 } DNS_Flags;
81
82 typedef enum
83 {
84 TSIG_ErrBadSig = 16,
85 TSIG_ErrBadKey = 17,
86 TSIG_ErrBadTime = 18
87 } TSIG_ErrorCode;
88
89
90 // ***************************************************************************
91 #if COMPILER_LIKES_PRAGMA_MARK
92 #pragma mark -
93 #pragma mark - General Utility Functions
94 #endif
95
96 extern NetworkInterfaceInfo *GetFirstActiveInterface(NetworkInterfaceInfo *intf);
97 extern mDNSInterfaceID GetNextActiveInterfaceID(const NetworkInterfaceInfo *intf);
98
99 extern mDNSu32 mDNSRandom(mDNSu32 max); // Returns pseudo-random result from zero to max inclusive
100
101 extern mDNSu32 mDNS_GetNextResolverGroupID(void);
102
103 // ***************************************************************************
104 #if COMPILER_LIKES_PRAGMA_MARK
105 #pragma mark -
106 #pragma mark - Domain Name Utility Functions
107 #endif
108
109 #define mDNSSubTypeLabel "\x04_sub"
110
111 #define mDNSIsDigit(X) ((X) >= '0' && (X) <= '9')
112 #define mDNSIsUpperCase(X) ((X) >= 'A' && (X) <= 'Z')
113 #define mDNSIsLowerCase(X) ((X) >= 'a' && (X) <= 'z')
114 #define mDNSIsLetter(X) (mDNSIsUpperCase(X) || mDNSIsLowerCase(X))
115
116 // We believe we have adequate safeguards to protect against cache poisoning.
117 // In the event that someone does find a workable cache poisoning attack, we want to limit the lifetime of the poisoned entry.
118 // We set the maximum allowable TTL to one hour.
119 // With the 25% correction factor to avoid the DNS Zeno's paradox bug, that gives us an actual maximum lifetime of 75 minutes.
120
121 #define mDNSMaximumMulticastTTLSeconds (mDNSu32)4500
122 #define mDNSMaximumUnicastTTLSeconds (mDNSu32)3600
123
124 #define mDNSValidHostChar(X, notfirst, notlast) (mDNSIsLetter(X) || mDNSIsDigit(X) || ((notfirst) && (notlast) && (X) == '-') )
125
126 extern mDNSu16 CompressedDomainNameLength(const domainname *const name, const domainname *parent);
127 extern int CountLabels(const domainname *d);
128 extern const domainname *SkipLeadingLabels(const domainname *d, int skip);
129
130 extern mDNSu32 TruncateUTF8ToLength(mDNSu8 *string, mDNSu32 length, mDNSu32 max);
131 extern mDNSBool LabelContainsSuffix(const domainlabel *const name, const mDNSBool RichText);
132 extern mDNSu32 RemoveLabelSuffix(domainlabel *name, mDNSBool RichText);
133 extern void AppendLabelSuffix(domainlabel *const name, mDNSu32 val, const mDNSBool RichText);
134 #define ValidateDomainName(N) (DomainNameLength(N) <= MAX_DOMAIN_NAME)
135
136 // ***************************************************************************
137 #if COMPILER_LIKES_PRAGMA_MARK
138 #pragma mark -
139 #pragma mark - Resource Record Utility Functions
140 #endif
141
142 // IdenticalResourceRecord returns true if two resources records have
143 // the same name, type, class, and identical rdata (InterfaceID and TTL may differ)
144
145 // IdenticalSameNameRecord is the same, except it skips the expensive SameDomainName() check,
146 // which is at its most expensive and least useful in cases where we know in advance that the names match
147
148 // Note: The dominant use of IdenticalResourceRecord is from ProcessQuery(), handling known-answer lists. In this case
149 // it's common to have a whole bunch or records with exactly the same name (e.g. "_http._tcp.local") but different RDATA.
150 // The SameDomainName() check is expensive when the names match, and in this case *all* the names match, so we
151 // used to waste a lot of CPU time verifying that the names match, only then to find that the RDATA is different.
152 // We observed mDNSResponder spending 30% of its total CPU time on this single task alone.
153 // By swapping the checks so that we check the RDATA first, we can quickly detect when it's different
154 // (99% of the time) and then bail out before we waste time on the expensive SameDomainName() check.
155
156 #define IdenticalResourceRecord(r1,r2) ( \
157 (r1)->rrtype == (r2)->rrtype && \
158 (r1)->rrclass == (r2)->rrclass && \
159 (r1)->namehash == (r2)->namehash && \
160 (r1)->rdlength == (r2)->rdlength && \
161 (r1)->rdatahash == (r2)->rdatahash && \
162 SameRDataBody((r1), &(r2)->rdata->u, SameDomainName) && \
163 SameDomainName((r1)->name, (r2)->name))
164
165 #define IdenticalSameNameRecord(r1,r2) ( \
166 (r1)->rrtype == (r2)->rrtype && \
167 (r1)->rrclass == (r2)->rrclass && \
168 (r1)->rdlength == (r2)->rdlength && \
169 (r1)->rdatahash == (r2)->rdatahash && \
170 SameRDataBody((r1), &(r2)->rdata->u, SameDomainName))
171
172 // A given RRType answers a QuestionType if RRType is CNAME, or types match, or QuestionType is ANY,
173 // or the RRType is NSEC and positively asserts the nonexistence of the type being requested
174 #define RRTypeAnswersQuestionType(R,Q) ((R)->rrtype == kDNSType_CNAME || (R)->rrtype == (Q) || (Q) == kDNSQType_ANY || RRAssertsNonexistence((R),(Q)))
175 // Unicast NSEC records have the NSEC bit set whereas the multicast NSEC ones don't
176 #define UNICAST_NSEC(rr) ((rr)->rrtype == kDNSType_NSEC && RRAssertsExistence((rr), kDNSType_NSEC))
177
178 extern mDNSu32 RDataHashValue(const ResourceRecord *const rr);
179 extern mDNSBool SameRDataBody(const ResourceRecord *const r1, const RDataBody *const r2, DomainNameComparisonFn *samename);
180 extern mDNSBool SameNameCacheRecordAnswersQuestion(const CacheRecord *const cr, const DNSQuestion *const q);
181 extern mDNSBool ResourceRecordAnswersQuestion(const ResourceRecord *const rr, const DNSQuestion *const q);
182 extern mDNSBool AuthRecordAnswersQuestion(const AuthRecord *const ar, const DNSQuestion *const q);
183 extern mDNSBool CacheRecordAnswersQuestion(const CacheRecord *const cr, const DNSQuestion *const q);
184 extern mDNSBool AnyTypeRecordAnswersQuestion (const AuthRecord *const ar, const DNSQuestion *const q);
185 extern mDNSBool ResourceRecordAnswersUnicastResponse(const ResourceRecord *const rr, const DNSQuestion *const q);
186 extern mDNSBool LocalOnlyRecordAnswersQuestion(AuthRecord *const rr, const DNSQuestion *const q);
187 extern mDNSu16 GetRDLength(const ResourceRecord *const rr, mDNSBool estimate);
188 extern mDNSBool ValidateRData(const mDNSu16 rrtype, const mDNSu16 rdlength, const RData *const rd);
189 extern mStatus DNSNameToLowerCase(domainname *d, domainname *result);
190
191 #define GetRRDomainNameTarget(RR) ( \
192 ((RR)->rrtype == kDNSType_NS || (RR)->rrtype == kDNSType_CNAME || (RR)->rrtype == kDNSType_PTR || (RR)->rrtype == kDNSType_DNAME) ? &(RR)->rdata->u.name : \
193 ((RR)->rrtype == kDNSType_MX || (RR)->rrtype == kDNSType_AFSDB || (RR)->rrtype == kDNSType_RT || (RR)->rrtype == kDNSType_KX ) ? &(RR)->rdata->u.mx.exchange : \
194 ((RR)->rrtype == kDNSType_SRV ) ? &(RR)->rdata->u.srv.target : mDNSNULL )
195
196 #define LocalRecordReady(X) ((X)->resrec.RecordType != kDNSRecordTypeUnique)
197
198 // ***************************************************************************
199 #if COMPILER_LIKES_PRAGMA_MARK
200 #pragma mark -
201 #pragma mark - DNS Message Creation Functions
202 #endif
203
204 extern void InitializeDNSMessage(DNSMessageHeader *h, mDNSOpaque16 id, mDNSOpaque16 flags);
205 extern const mDNSu8 *FindCompressionPointer(const mDNSu8 *const base, const mDNSu8 *const end, const mDNSu8 *const domname);
206 extern mDNSu8 *putDomainNameAsLabels(const DNSMessage *const msg, mDNSu8 *ptr, const mDNSu8 *const limit, const domainname *const name);
207 extern mDNSu8 *putRData(const DNSMessage *const msg, mDNSu8 *ptr, const mDNSu8 *const limit, const ResourceRecord *const rr);
208
209 // If we have a single large record to put in the packet, then we allow the packet to be up to 9K bytes,
210 // but in the normal case we try to keep the packets below 1500 to avoid IP fragmentation on standard Ethernet
211
212 #define AllowedRRSpace(msg) (((msg)->h.numAnswers || (msg)->h.numAuthorities || (msg)->h.numAdditionals) ? NormalMaxDNSMessageData : AbsoluteMaxDNSMessageData)
213
214 extern mDNSu8 *PutResourceRecordTTLWithLimit(DNSMessage *const msg, mDNSu8 *ptr, mDNSu16 *count, ResourceRecord *rr, mDNSu32 ttl, const mDNSu8 *limit);
215
216 #define PutResourceRecordTTL(msg, ptr, count, rr, ttl) \
217 PutResourceRecordTTLWithLimit((msg), (ptr), (count), (rr), (ttl), (msg)->data + AllowedRRSpace(msg))
218
219 #define PutResourceRecordTTLJumbo(msg, ptr, count, rr, ttl) \
220 PutResourceRecordTTLWithLimit((msg), (ptr), (count), (rr), (ttl), (msg)->data + AbsoluteMaxDNSMessageData)
221
222 #define PutResourceRecord(MSG, P, C, RR) PutResourceRecordTTL((MSG), (P), (C), (RR), (RR)->rroriginalttl)
223
224 // The PutRR_OS variants assume a local variable 'm', put build the packet at m->omsg,
225 // and assume local variables 'OwnerRecordSpace' & 'TraceRecordSpace' indicating how many bytes (if any) to reserve to add an OWNER/TRACER option at the end
226 #define PutRR_OS_TTL(ptr, count, rr, ttl) \
227 PutResourceRecordTTLWithLimit(&m->omsg, (ptr), (count), (rr), (ttl), m->omsg.data + AllowedRRSpace(&m->omsg) - OwnerRecordSpace - TraceRecordSpace)
228
229 #define PutRR_OS(P, C, RR) PutRR_OS_TTL((P), (C), (RR), (RR)->rroriginalttl)
230
231 extern mDNSu8 *putQuestion(DNSMessage *const msg, mDNSu8 *ptr, const mDNSu8 *const limit, const domainname *const name, mDNSu16 rrtype, mDNSu16 rrclass);
232 extern mDNSu8 *putZone(DNSMessage *const msg, mDNSu8 *ptr, mDNSu8 *limit, const domainname *zone, mDNSOpaque16 zoneClass);
233 extern mDNSu8 *putPrereqNameNotInUse(const domainname *const name, DNSMessage *const msg, mDNSu8 *const ptr, mDNSu8 *const end);
234 extern mDNSu8 *putDeletionRecord(DNSMessage *msg, mDNSu8 *ptr, ResourceRecord *rr);
235 extern mDNSu8 *putDeletionRecordWithLimit(DNSMessage *msg, mDNSu8 *ptr, ResourceRecord *rr, mDNSu8 *limit);
236 extern mDNSu8 *putDeleteRRSetWithLimit(DNSMessage *msg, mDNSu8 *ptr, const domainname *name, mDNSu16 rrtype, mDNSu8 *limit);
237 extern mDNSu8 *putDeleteAllRRSets(DNSMessage *msg, mDNSu8 *ptr, const domainname *name);
238 extern mDNSu8 *putUpdateLease(DNSMessage *msg, mDNSu8 *ptr, mDNSu32 lease);
239 extern mDNSu8 *putUpdateLeaseWithLimit(DNSMessage *msg, mDNSu8 *ptr, mDNSu32 lease, mDNSu8 *limit);
240
241 extern mDNSu8 *putDNSSECOption(DNSMessage *msg, mDNSu8 *end, mDNSu8 *limit);
242 extern int baseEncode(char *buffer, int blen, const mDNSu8 *data, int len, int encAlg);
243 extern void NSEC3Parse(const ResourceRecord *const rr, mDNSu8 **salt, int *hashLength, mDNSu8 **nxtName, int *bitmaplen, mDNSu8 **bitmap);
244
245 // ***************************************************************************
246 #if COMPILER_LIKES_PRAGMA_MARK
247 #pragma mark -
248 #pragma mark - DNS Message Parsing Functions
249 #endif
250
251 #define HashSlotFromNameHash(X) ((X) % CACHE_HASH_SLOTS)
252 extern mDNSu32 DomainNameHashValue(const domainname *const name);
253 extern void SetNewRData(ResourceRecord *const rr, RData *NewRData, mDNSu16 rdlength);
254 extern const mDNSu8 *skipDomainName(const DNSMessage *const msg, const mDNSu8 *ptr, const mDNSu8 *const end);
255 extern const mDNSu8 *getDomainName(const DNSMessage *const msg, const mDNSu8 *ptr, const mDNSu8 *const end,
256 domainname *const name);
257 extern const mDNSu8 *skipResourceRecord(const DNSMessage *msg, const mDNSu8 *ptr, const mDNSu8 *end);
258 extern const mDNSu8 *GetLargeResourceRecord(mDNS *const m, const DNSMessage * const msg, const mDNSu8 *ptr,
259 const mDNSu8 * end, const mDNSInterfaceID InterfaceID, mDNSu8 RecordType, LargeCacheRecord *const largecr);
260 extern mDNSBool SetRData(const DNSMessage *const msg, const mDNSu8 *ptr, const mDNSu8 *end,
261 LargeCacheRecord *const largecr, mDNSu16 rdlength);
262 extern const mDNSu8 *skipQuestion(const DNSMessage *msg, const mDNSu8 *ptr, const mDNSu8 *end);
263 extern const mDNSu8 *getQuestion(const DNSMessage *msg, const mDNSu8 *ptr, const mDNSu8 *end, const mDNSInterfaceID InterfaceID,
264 DNSQuestion *question);
265 extern const mDNSu8 *LocateAnswers(const DNSMessage *const msg, const mDNSu8 *const end);
266 extern const mDNSu8 *LocateAuthorities(const DNSMessage *const msg, const mDNSu8 *const end);
267 extern const mDNSu8 *LocateAdditionals(const DNSMessage *const msg, const mDNSu8 *const end);
268 extern const mDNSu8 *LocateOptRR(const DNSMessage *const msg, const mDNSu8 *const end, int minsize);
269 extern const rdataOPT *GetLLQOptData(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end);
270 extern mDNSBool GetPktLease(mDNS *const m, const DNSMessage *const msg, const mDNSu8 *const end, mDNSu32 *const lease);
271 extern void DumpPacket(mStatus status, mDNSBool sent, const char *transport, const mDNSAddr *srcaddr, mDNSIPPort srcport,
272 const mDNSAddr *dstaddr, mDNSIPPort dstport, const DNSMessage *const msg, const mDNSu8 *const end,
273 mDNSInterfaceID interfaceID);
274 extern mDNSBool RRAssertsNonexistence(const ResourceRecord *const rr, mDNSu16 type);
275 extern mDNSBool RRAssertsExistence(const ResourceRecord *const rr, mDNSu16 type);
276 extern mDNSBool BitmapTypeCheck(mDNSu8 *bmap, int bitmaplen, mDNSu16 type);
277
278 extern mDNSu16 swap16(mDNSu16 x);
279 extern mDNSu32 swap32(mDNSu32 x);
280
281 // ***************************************************************************
282 #if COMPILER_LIKES_PRAGMA_MARK
283 #pragma mark -
284 #pragma mark - Packet Sending Functions
285 #endif
286 extern mStatus mDNSSendDNSMessage(mDNS *const m, DNSMessage *const msg, mDNSu8 *end,
287 mDNSInterfaceID InterfaceID, TCPSocket *tcpSrc, UDPSocket *udpSrc, const mDNSAddr *dst,
288 mDNSIPPort dstport, DomainAuthInfo *authInfo, mDNSBool useBackgroundTrafficClass);
289
290 // ***************************************************************************
291 #if COMPILER_LIKES_PRAGMA_MARK
292 #pragma mark -
293 #pragma mark - RR List Management & Task Management
294 #endif
295
296 extern void ShowTaskSchedulingError(mDNS *const m);
297 extern void mDNS_Lock_(mDNS *const m, const char * const functionname);
298 extern void mDNS_Unlock_(mDNS *const m, const char * const functionname);
299
300 #if defined(_WIN32)
301 #define __func__ __FUNCTION__
302 #endif
303
304 #define mDNS_Lock(X) mDNS_Lock_((X), __func__)
305
306 #define mDNS_Unlock(X) mDNS_Unlock_((X), __func__)
307
308 #define mDNS_CheckLock(X) \
309 if ((X)->mDNS_busy != (X)->mDNS_reentrancy+1) LogMsg("%s: Lock not held! mDNS_busy (%ld) mDNS_reentrancy (%ld)", __func__, (X)->mDNS_busy, (X)->mDNS_reentrancy)
310
311 #define mDNS_DropLockBeforeCallback() do { m->mDNS_reentrancy++; \
312 if (m->mDNS_busy != m->mDNS_reentrancy) LogMsg("%s: Locking Failure! mDNS_busy (%ld) != mDNS_reentrancy (%ld)", __func__, m->mDNS_busy, m->mDNS_reentrancy); \
313 } while (0)
314
315 #define mDNS_ReclaimLockAfterCallback() do { \
316 if (m->mDNS_busy != m->mDNS_reentrancy) LogMsg("%s: Unlocking Failure! mDNS_busy (%ld) != mDNS_reentrancy (%ld)", __func__, m->mDNS_busy, m->mDNS_reentrancy); \
317 m->mDNS_reentrancy--; } while (0)
318
319 #ifdef __cplusplus
320 }
321 #endif
322
323 #endif // __DNSCOMMON_H_