| author | wenzelm | 
| Fri, 29 Oct 2010 11:49:56 +0200 | |
| changeset 40255 | 9ffbc25e1606 | 
| parent 37936 | 1e4c5015a72e | 
| child 45605 | a89b4bc311a5 | 
| permissions | -rw-r--r-- | 
| 37936 | 1 | (* Title: HOL/Auth/OtwayRees_Bad.thy | 
| 2002 | 2 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
| 3 | Copyright 1996 University of Cambridge | |
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changeset | 4 | *) | 
| 2002 | 5 | |
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changeset | 6 | |
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changeset | 7 | header{*The Otway-Rees Protocol: The Faulty BAN Version*}
 | 
| 2002 | 8 | |
| 16417 | 9 | theory OtwayRees_Bad imports Public begin | 
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changeset | 10 | |
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changeset | 11 | text{*The FAULTY version omitting encryption of Nonce NB, as suggested on 
 | 
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changeset | 12 | page 247 of | 
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changeset | 13 | Burrows, Abadi and Needham (1988). A Logic of Authentication. | 
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changeset | 14 | Proc. Royal Soc. 426 | 
| 11251 | 15 | |
| 16 | This file illustrates the consequences of such errors. We can still prove | |
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changeset | 17 | impressive-looking properties such as @{text Spy_not_see_encrypted_key}, yet
 | 
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changeset | 18 | the protocol is open to a middleperson attack. Attempting to prove some key | 
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changeset | 19 | lemmas indicates the possibility of this attack.*} | 
| 2052 | 20 | |
| 23746 | 21 | inductive_set otway :: "event list set" | 
| 22 | where | |
| 14225 | 23 |    Nil: --{*The empty trace*}
 | 
| 24 | "[] \<in> otway" | |
| 2002 | 25 | |
| 23746 | 26 |  | Fake: --{*The Spy may say anything he can say.  The sender field is correct,
 | 
| 14225 | 27 | but agents don't use that information.*} | 
| 28 | "[| evsf \<in> otway; X \<in> synth (analz (knows Spy evsf)) |] | |
| 11251 | 29 | ==> Says Spy B X # evsf \<in> otway" | 
| 2002 | 30 | |
| 14225 | 31 | |
| 23746 | 32 |  | Reception: --{*A message that has been sent can be received by the
 | 
| 14225 | 33 | intended recipient.*} | 
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changeset | 34 | "[| evsr \<in> otway; Says A B X \<in>set evsr |] | 
| 11251 | 35 | ==> Gets B X # evsr \<in> otway" | 
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changeset | 36 | |
| 23746 | 37 |  | OR1:  --{*Alice initiates a protocol run*}
 | 
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changeset | 38 | "[| evs1 \<in> otway; Nonce NA \<notin> used evs1 |] | 
| 11251 | 39 |           ==> Says A B {|Nonce NA, Agent A, Agent B,
 | 
| 40 |                          Crypt (shrK A) {|Nonce NA, Agent A, Agent B|} |}
 | |
| 41 | # evs1 \<in> otway" | |
| 2002 | 42 | |
| 23746 | 43 |  | OR2:  --{*Bob's response to Alice's message.
 | 
| 14225 | 44 | This variant of the protocol does NOT encrypt NB.*} | 
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changeset | 45 | "[| evs2 \<in> otway; Nonce NB \<notin> used evs2; | 
| 11251 | 46 |              Gets B {|Nonce NA, Agent A, Agent B, X|} \<in> set evs2 |]
 | 
| 47 | ==> Says B Server | |
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changeset | 48 |                   {|Nonce NA, Agent A, Agent B, X, Nonce NB,
 | 
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changeset | 49 |                     Crypt (shrK B) {|Nonce NA, Agent A, Agent B|}|}
 | 
| 11251 | 50 | # evs2 \<in> otway" | 
| 2002 | 51 | |
| 23746 | 52 |  | OR3:  --{*The Server receives Bob's message and checks that the three NAs
 | 
| 2002 | 53 | match. Then he sends a new session key to Bob with a packet for | 
| 14225 | 54 | forwarding to Alice.*} | 
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changeset | 55 | "[| evs3 \<in> otway; Key KAB \<notin> used evs3; | 
| 11251 | 56 | Gets Server | 
| 57 |                   {|Nonce NA, Agent A, Agent B,
 | |
| 58 |                     Crypt (shrK A) {|Nonce NA, Agent A, Agent B|},
 | |
| 59 | Nonce NB, | |
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changeset | 60 |                     Crypt (shrK B) {|Nonce NA, Agent A, Agent B|}|}
 | 
| 11251 | 61 | \<in> set evs3 |] | 
| 62 | ==> Says Server B | |
| 63 |                   {|Nonce NA,
 | |
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changeset | 64 |                     Crypt (shrK A) {|Nonce NA, Key KAB|},
 | 
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changeset | 65 |                     Crypt (shrK B) {|Nonce NB, Key KAB|}|}
 | 
| 11251 | 66 | # evs3 \<in> otway" | 
| 2002 | 67 | |
| 23746 | 68 |  | OR4:  --{*Bob receives the Server's (?) message and compares the Nonces with
 | 
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changeset | 69 | those in the message he previously sent the Server. | 
| 14225 | 70 |              Need @{term "B \<noteq> Server"} because we allow messages to self.*}
 | 
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changeset | 71 | "[| evs4 \<in> otway; B \<noteq> Server; | 
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changeset | 72 |              Says B Server {|Nonce NA, Agent A, Agent B, X', Nonce NB,
 | 
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changeset | 73 |                              Crypt (shrK B) {|Nonce NA, Agent A, Agent B|}|}
 | 
| 11251 | 74 | \<in> set evs4; | 
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changeset | 75 |              Gets B {|Nonce NA, X, Crypt (shrK B) {|Nonce NB, Key K|}|}
 | 
| 11251 | 76 | \<in> set evs4 |] | 
| 77 |           ==> Says B A {|Nonce NA, X|} # evs4 \<in> otway"
 | |
| 2002 | 78 | |
| 23746 | 79 |  | Oops: --{*This message models possible leaks of session keys.  The nonces
 | 
| 14225 | 80 | identify the protocol run.*} | 
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changeset | 81 | "[| evso \<in> otway; | 
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changeset | 82 |              Says Server B {|Nonce NA, X, Crypt (shrK B) {|Nonce NB, Key K|}|}
 | 
| 11251 | 83 | \<in> set evso |] | 
| 84 |           ==> Notes Spy {|Nonce NA, Nonce NB, Key K|} # evso \<in> otway"
 | |
| 85 | ||
| 86 | ||
| 87 | declare Says_imp_knows_Spy [THEN analz.Inj, dest] | |
| 88 | declare parts.Body [dest] | |
| 89 | declare analz_into_parts [dest] | |
| 90 | declare Fake_parts_insert_in_Un [dest] | |
| 91 | ||
| 14225 | 92 | text{*A "possibility property": there are traces that reach the end*}
 | 
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changeset | 93 | lemma "[| B \<noteq> Server; Key K \<notin> used [] |] | 
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changeset | 94 | ==> \<exists>NA. \<exists>evs \<in> otway. | 
| 11251 | 95 |             Says B A {|Nonce NA, Crypt (shrK A) {|Nonce NA, Key K|}|}
 | 
| 96 | \<in> set evs" | |
| 97 | apply (intro exI bexI) | |
| 98 | apply (rule_tac [2] otway.Nil | |
| 99 | [THEN otway.OR1, THEN otway.Reception, | |
| 100 | THEN otway.OR2, THEN otway.Reception, | |
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changeset | 101 | THEN otway.OR3, THEN otway.Reception, THEN otway.OR4]) | 
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changeset | 102 | apply (possibility, simp add: used_Cons) | 
| 11251 | 103 | done | 
| 104 | ||
| 105 | lemma Gets_imp_Says [dest!]: | |
| 106 | "[| Gets B X \<in> set evs; evs \<in> otway |] ==> \<exists>A. Says A B X \<in> set evs" | |
| 107 | apply (erule rev_mp) | |
| 13507 | 108 | apply (erule otway.induct, auto) | 
| 11251 | 109 | done | 
| 110 | ||
| 111 | ||
| 14225 | 112 | subsection{*For reasoning about the encrypted portion of messages *}
 | 
| 11251 | 113 | |
| 114 | lemma OR2_analz_knows_Spy: | |
| 115 |      "[| Gets B {|N, Agent A, Agent B, X|} \<in> set evs;  evs \<in> otway |]
 | |
| 116 | ==> X \<in> analz (knows Spy evs)" | |
| 117 | by blast | |
| 118 | ||
| 119 | lemma OR4_analz_knows_Spy: | |
| 120 |      "[| Gets B {|N, X, Crypt (shrK B) X'|} \<in> set evs;  evs \<in> otway |]
 | |
| 121 | ==> X \<in> analz (knows Spy evs)" | |
| 122 | by blast | |
| 123 | ||
| 124 | lemma Oops_parts_knows_Spy: | |
| 125 |      "Says Server B {|NA, X, Crypt K' {|NB,K|}|} \<in> set evs
 | |
| 126 | ==> K \<in> parts (knows Spy evs)" | |
| 127 | by blast | |
| 128 | ||
| 14225 | 129 | text{*Forwarding lemma: see comments in OtwayRees.thy*}
 | 
| 11251 | 130 | lemmas OR2_parts_knows_Spy = | 
| 131 | OR2_analz_knows_Spy [THEN analz_into_parts, standard] | |
| 132 | ||
| 133 | ||
| 14225 | 134 | text{*Theorems of the form @{term "X \<notin> parts (spies evs)"} imply that
 | 
| 135 | NOBODY sends messages containing X! *} | |
| 11251 | 136 | |
| 14225 | 137 | text{*Spy never sees a good agent's shared key!*}
 | 
| 11251 | 138 | lemma Spy_see_shrK [simp]: | 
| 139 | "evs \<in> otway ==> (Key (shrK A) \<in> parts (knows Spy evs)) = (A \<in> bad)" | |
| 14225 | 140 | by (erule otway.induct, force, | 
| 141 | drule_tac [4] OR2_parts_knows_Spy, simp_all, blast+) | |
| 142 | ||
| 11251 | 143 | |
| 144 | lemma Spy_analz_shrK [simp]: | |
| 145 | "evs \<in> otway ==> (Key (shrK A) \<in> analz (knows Spy evs)) = (A \<in> bad)" | |
| 146 | by auto | |
| 147 | ||
| 148 | lemma Spy_see_shrK_D [dest!]: | |
| 149 | "[|Key (shrK A) \<in> parts (knows Spy evs); evs \<in> otway|] ==> A \<in> bad" | |
| 150 | by (blast dest: Spy_see_shrK) | |
| 151 | ||
| 152 | ||
| 14225 | 153 | subsection{*Proofs involving analz *}
 | 
| 11251 | 154 | |
| 14225 | 155 | text{*Describes the form of K and NA when the Server sends this message.  Also
 | 
| 156 | for Oops case.*} | |
| 11251 | 157 | lemma Says_Server_message_form: | 
| 158 |      "[| Says Server B {|NA, X, Crypt (shrK B) {|NB, Key K|}|} \<in> set evs;
 | |
| 159 | evs \<in> otway |] | |
| 160 | ==> K \<notin> range shrK & (\<exists>i. NA = Nonce i) & (\<exists>j. NB = Nonce j)" | |
| 161 | apply (erule rev_mp) | |
| 17778 | 162 | apply (erule otway.induct, simp_all) | 
| 11251 | 163 | done | 
| 164 | ||
| 165 | ||
| 166 | (**** | |
| 167 | The following is to prove theorems of the form | |
| 168 | ||
| 169 | Key K \<in> analz (insert (Key KAB) (knows Spy evs)) ==> | |
| 170 | Key K \<in> analz (knows Spy evs) | |
| 171 | ||
| 172 | A more general formula must be proved inductively. | |
| 173 | ****) | |
| 174 | ||
| 175 | ||
| 14225 | 176 | text{*Session keys are not used to encrypt other session keys*}
 | 
| 11251 | 177 | |
| 14225 | 178 | text{*The equality makes the induction hypothesis easier to apply*}
 | 
| 11251 | 179 | lemma analz_image_freshK [rule_format]: | 
| 180 | "evs \<in> otway ==> | |
| 181 | \<forall>K KK. KK <= -(range shrK) --> | |
| 182 | (Key K \<in> analz (Key`KK Un (knows Spy evs))) = | |
| 183 | (K \<in> KK | Key K \<in> analz (knows Spy evs))" | |
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changeset | 184 | apply (erule otway.induct) | 
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changeset | 185 | apply (frule_tac [8] Says_Server_message_form) | 
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changeset | 186 | apply (drule_tac [7] OR4_analz_knows_Spy) | 
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changeset | 187 | apply (drule_tac [5] OR2_analz_knows_Spy, analz_freshK, spy_analz, auto) | 
| 11251 | 188 | done | 
| 189 | ||
| 190 | lemma analz_insert_freshK: | |
| 191 | "[| evs \<in> otway; KAB \<notin> range shrK |] ==> | |
| 11655 | 192 | (Key K \<in> analz (insert (Key KAB) (knows Spy evs))) = | 
| 11251 | 193 | (K = KAB | Key K \<in> analz (knows Spy evs))" | 
| 194 | by (simp only: analz_image_freshK analz_image_freshK_simps) | |
| 195 | ||
| 196 | ||
| 14225 | 197 | text{*The Key K uniquely identifies the Server's  message. *}
 | 
| 11251 | 198 | lemma unique_session_keys: | 
| 199 |      "[| Says Server B {|NA, X, Crypt (shrK B) {|NB, K|}|}   \<in> set evs;
 | |
| 200 |          Says Server B' {|NA',X',Crypt (shrK B') {|NB',K|}|} \<in> set evs;
 | |
| 201 | evs \<in> otway |] ==> X=X' & B=B' & NA=NA' & NB=NB'" | |
| 202 | apply (erule rev_mp) | |
| 203 | apply (erule rev_mp) | |
| 204 | apply (erule otway.induct, simp_all) | |
| 14225 | 205 | apply blast+  --{*OR3 and OR4*}
 | 
| 11251 | 206 | done | 
| 207 | ||
| 208 | ||
| 14238 | 209 | text{*Crucial secrecy property: Spy does not see the keys sent in msg OR3
 | 
| 11251 | 210 | Does not in itself guarantee security: an attack could violate | 
| 14225 | 211 |     the premises, e.g. by having @{term "A=Spy"} *}
 | 
| 11251 | 212 | lemma secrecy_lemma: | 
| 213 | "[| A \<notin> bad; B \<notin> bad; evs \<in> otway |] | |
| 214 | ==> Says Server B | |
| 215 |         {|NA, Crypt (shrK A) {|NA, Key K|},
 | |
| 216 |           Crypt (shrK B) {|NB, Key K|}|} \<in> set evs -->
 | |
| 217 |       Notes Spy {|NA, NB, Key K|} \<notin> set evs -->
 | |
| 218 | Key K \<notin> analz (knows Spy evs)" | |
| 219 | apply (erule otway.induct, force) | |
| 220 | apply (frule_tac [7] Says_Server_message_form) | |
| 221 | apply (drule_tac [6] OR4_analz_knows_Spy) | |
| 222 | apply (drule_tac [4] OR2_analz_knows_Spy) | |
| 14225 | 223 | apply (simp_all add: analz_insert_eq analz_insert_freshK pushes) | 
| 224 | apply spy_analz  --{*Fake*}
 | |
| 225 | apply (blast dest: unique_session_keys)+  --{*OR3, OR4, Oops*}
 | |
| 11251 | 226 | done | 
| 227 | ||
| 228 | ||
| 229 | lemma Spy_not_see_encrypted_key: | |
| 230 | "[| Says Server B | |
| 231 |           {|NA, Crypt (shrK A) {|NA, Key K|},
 | |
| 232 |                 Crypt (shrK B) {|NB, Key K|}|} \<in> set evs;
 | |
| 233 |          Notes Spy {|NA, NB, Key K|} \<notin> set evs;
 | |
| 234 | A \<notin> bad; B \<notin> bad; evs \<in> otway |] | |
| 235 | ==> Key K \<notin> analz (knows Spy evs)" | |
| 236 | by (blast dest: Says_Server_message_form secrecy_lemma) | |
| 237 | ||
| 238 | ||
| 14225 | 239 | subsection{*Attempting to prove stronger properties *}
 | 
| 11251 | 240 | |
| 14225 | 241 | text{*Only OR1 can have caused such a part of a message to appear. The premise
 | 
| 242 |   @{term "A \<noteq> B"} prevents OR2's similar-looking cryptogram from being picked 
 | |
| 243 | up. Original Otway-Rees doesn't need it.*} | |
| 11251 | 244 | lemma Crypt_imp_OR1 [rule_format]: | 
| 245 | "[| A \<notin> bad; A \<noteq> B; evs \<in> otway |] | |
| 246 |       ==> Crypt (shrK A) {|NA, Agent A, Agent B|} \<in> parts (knows Spy evs) -->
 | |
| 247 |           Says A B {|NA, Agent A, Agent B,
 | |
| 248 |                      Crypt (shrK A) {|NA, Agent A, Agent B|}|}  \<in> set evs"
 | |
| 14225 | 249 | by (erule otway.induct, force, | 
| 250 | drule_tac [4] OR2_parts_knows_Spy, simp_all, blast+) | |
| 11251 | 251 | |
| 252 | ||
| 14225 | 253 | text{*Crucial property: If the encrypted message appears, and A has used NA
 | 
| 11251 | 254 | to start a run, then it originated with the Server! | 
| 14225 | 255 |   The premise @{term "A \<noteq> B"} allows use of @{text Crypt_imp_OR1}*}
 | 
| 256 | text{*Only it is FALSE.  Somebody could make a fake message to Server
 | |
| 257 | substituting some other nonce NA' for NB.*} | |
| 11251 | 258 | lemma "[| A \<notin> bad; A \<noteq> B; evs \<in> otway |] | 
| 259 |        ==> Crypt (shrK A) {|NA, Key K|} \<in> parts (knows Spy evs) -->
 | |
| 260 |            Says A B {|NA, Agent A, Agent B,
 | |
| 261 |                       Crypt (shrK A) {|NA, Agent A, Agent B|}|}
 | |
| 262 | \<in> set evs --> | |
| 263 | (\<exists>B NB. Says Server B | |
| 264 |                 {|NA,
 | |
| 265 |                   Crypt (shrK A) {|NA, Key K|},
 | |
| 266 |                   Crypt (shrK B) {|NB, Key K|}|}  \<in> set evs)"
 | |
| 267 | apply (erule otway.induct, force, | |
| 13507 | 268 | drule_tac [4] OR2_parts_knows_Spy, simp_all) | 
| 14225 | 269 | apply blast  --{*Fake*}
 | 
| 270 | apply blast  --{*OR1: it cannot be a new Nonce, contradiction.*}
 | |
| 271 | txt{*OR3 and OR4*}
 | |
| 11251 | 272 | apply (simp_all add: ex_disj_distrib) | 
| 14225 | 273 |  prefer 2 apply (blast intro!: Crypt_imp_OR1)  --{*OR4*}
 | 
| 274 | txt{*OR3*}
 | |
| 11251 | 275 | apply clarify | 
| 276 | (*The hypotheses at this point suggest an attack in which nonce NB is used | |
| 277 | in two different roles: | |
| 278 | Gets Server | |
| 279 |            {|Nonce NA, Agent Aa, Agent A,
 | |
| 280 |              Crypt (shrK Aa) {|Nonce NA, Agent Aa, Agent A|}, Nonce NB,
 | |
| 281 |              Crypt (shrK A) {|Nonce NA, Agent Aa, Agent A|}|}
 | |
| 282 | \<in> set evs3 | |
| 283 | Says A B | |
| 284 |            {|Nonce NB, Agent A, Agent B,
 | |
| 285 |              Crypt (shrK A) {|Nonce NB, Agent A, Agent B|}|}
 | |
| 286 | \<in> set evs3; | |
| 287 | *) | |
| 288 | ||
| 289 | ||
| 290 | (*Thus the key property A_can_trust probably fails too.*) | |
| 291 | oops | |
| 2002 | 292 | |
| 293 | end |