156
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val impl_ioas =
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[Impl.impl_def,
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Sender.sender_ioa_def,
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Receiver.receiver_ioa_def,
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Channels.srch_ioa_def,
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Channels.rsch_ioa_def];
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val transitions = [Sender.sender_trans_def, Receiver.receiver_trans_def,
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Channels.srch_trans_def, Channels.rsch_trans_def];
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val impl_ss = merge_ss(action_ss,list_ss)
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addcongs [let_weak_cong]
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addsimps [Let_def, ioa_triple_proj, starts_of_par, trans_of_par4,
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in_sender_asig, in_receiver_asig, in_srch_asig,
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in_rsch_asig, count_addm_simp, count_delm_simp,
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Multiset.countm_empty_def, Multiset.delm_empty_def,
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(* Multiset.count_def, *) count_empty,
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Packet.hdr_def, Packet.msg_def];
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goal Impl.thy
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"fst(x) = sen(x) & \
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\ fst(snd(x)) = rec(x) & \
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\ fst(snd(snd(x))) = srch(x) & \
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\ snd(snd(snd(x))) = rsch(x)";
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by(simp_tac (HOL_ss addsimps
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[Impl.sen_def,Impl.rec_def,Impl.srch_def,Impl.rsch_def]) 1);
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val impl_ss = impl_ss addsimps [result()];
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goal Impl.thy "a:actions(sender_asig) \
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\ | a:actions(receiver_asig) \
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\ | a:actions(srch_asig) \
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\ | a:actions(rsch_asig)";
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by(Action.action.induct_tac "a" 1);
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by(ALLGOALS(simp_tac impl_ss));
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val impl_ss = impl_ss addsimps [result()];
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(* Instantiation of a tautology? *)
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goal Packet.thy "!x. x = packet --> hdr(x) = hdr(packet)";
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by (simp_tac (HOL_ss addsimps [Packet.hdr_def]) 1);
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val eq_packet_imp_eq_hdr = result();
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(* INVARIANT 1 *)
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val ss = impl_ss addcongs [if_weak_cong] addsimps transitions;
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goalw Impl.thy impl_ioas "invariant(impl_ioa,inv1)";
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br invariantI 1;
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by(asm_full_simp_tac (impl_ss addsimps
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[Impl.inv1_def, Impl.hdr_sum_def,
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Sender.srcvd_def, Sender.ssent_def,
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Receiver.rsent_def,Receiver.rrcvd_def]) 1);
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by(simp_tac (HOL_ss addsimps [fork_lemma,Impl.inv1_def]) 1);
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(* Split proof in two *)
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by (rtac conjI 1);
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(* First half *)
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by(asm_full_simp_tac (impl_ss addsimps [Impl.inv1_def]) 1);
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br Action.action.induct 1;
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val tac = asm_simp_tac (ss addcongs [conj_cong]
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addsimps [Suc_pred_lemma]
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setloop (split_tac [expand_if]));
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by(EVERY1[tac, tac, tac, tac, tac, tac, tac, tac, tac, tac]);
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(* Now the other half *)
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by(asm_full_simp_tac (impl_ss addsimps [Impl.inv1_def]) 1);
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br Action.action.induct 1;
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by(EVERY1[tac, tac]);
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(* detour 1 *)
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by (tac 1);
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by (rtac impI 1);
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by (REPEAT (etac conjE 1));
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by (asm_simp_tac (impl_ss addsimps [Impl.hdr_sum_def, Multiset.count_def,
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Multiset.countm_nonempty_def]
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setloop (split_tac [expand_if])) 1);
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(* detour 2 *)
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by (tac 1);
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by (rtac impI 1);
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by (REPEAT (etac conjE 1));
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by (asm_full_simp_tac (impl_ss addsimps
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[Impl.hdr_sum_def,
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Multiset.count_def,
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Multiset.countm_nonempty_def,
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Multiset.delm_nonempty_def,
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left_plus_cancel,left_plus_cancel_inside_succ,
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unzero_less]
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setloop (split_tac [expand_if])) 1);
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by (rtac allI 1);
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by (rtac conjI 1);
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by (rtac impI 1);
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by (hyp_subst_tac 1);
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by (rtac (pred_suc RS mp RS sym RS iffD2) 1);
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by (dmatch_tac [less_leq_less RS mp] 1);
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by (cut_facts_tac [rewrite_rule[Packet.hdr_def]
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eq_packet_imp_eq_hdr RS countm_props] 1);;
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by (dtac mp 1);
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by (assume_tac 1);
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by (assume_tac 1);
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by (rtac (countm_done_delm RS mp RS sym) 1);
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by (rtac refl 1);
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by (asm_simp_tac (HOL_ss addsimps [Multiset.count_def]) 1);
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by (rtac impI 1);
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by (asm_full_simp_tac (HOL_ss addsimps [neg_flip]) 1);
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by (hyp_subst_tac 1);
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by (rtac countm_spurious_delm 1);
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by (simp_tac HOL_ss 1);
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by (EVERY1[tac, tac, tac, tac, tac, tac]);
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val inv1 = result();
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(* INVARIANT 2 *)
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goal Impl.thy "invariant(impl_ioa, inv2)";
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by (rtac invariantI1 1);
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(* Base case *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv2_def :: (receiver_projections
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@ sender_projections @ impl_ioas))) 1);
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by (asm_simp_tac (impl_ss addsimps impl_ioas) 1);
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by (Action.action.induct_tac "a" 1);
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(* 10 cases. First 4 are simple, since state doesn't change wrt. invariant *)
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(* 10 *)
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by (asm_simp_tac (impl_ss addsimps (Impl.inv2_def::transitions)) 1);
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(* 9 *)
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by (asm_simp_tac (impl_ss addsimps (Impl.inv2_def::transitions)) 1);
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(* 8 *)
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by (asm_simp_tac (impl_ss addsimps (Impl.inv2_def::transitions)) 2);
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(* 7 *)
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by (asm_simp_tac (impl_ss addsimps (Impl.inv2_def::transitions)) 3);
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(* 6 *)
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by(forward_tac [rewrite_rule [Impl.inv1_def]
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(inv1 RS invariantE) RS conjunct1] 1);
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by (asm_full_simp_tac (impl_ss addsimps [leq_imp_leq_suc,Impl.inv2_def]
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addsimps transitions) 1);
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(* 5 *)
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by (asm_full_simp_tac (impl_ss addsimps [leq_imp_leq_suc,Impl.inv2_def]
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addsimps transitions) 1);
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(* 4 *)
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by (forward_tac [rewrite_rule [Impl.inv1_def]
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(inv1 RS invariantE) RS conjunct1] 1);
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by (asm_full_simp_tac (impl_ss addsimps [Impl.inv2_def]
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addsimps transitions) 1);
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by (fast_tac (HOL_cs addDs [plus_leD1,leD]) 1);
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(* 3 *)
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by (forward_tac [rewrite_rule [Impl.inv1_def] (inv1 RS invariantE)] 1);
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv2_def::transitions)) 1);
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by (fold_tac [rewrite_rule [Packet.hdr_def]Impl.hdr_sum_def]);
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by (fast_tac (HOL_cs addDs [plus_leD1,leD]) 1);
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(* 2 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv2_def::transitions)) 1);
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by(forward_tac [rewrite_rule [Impl.inv1_def]
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(inv1 RS invariantE) RS conjunct1] 1);
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by (rtac impI 1);
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by (rtac impI 1);
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by (REPEAT (etac conjE 1));
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by (dres_inst_tac [("k","count(rsch(s), ~ sbit(sen(s)))")]
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(standard(leq_add_leq RS mp)) 1);
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by (asm_full_simp_tac HOL_ss 1);
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(* 1 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv2_def::transitions)) 1);
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by(forward_tac [rewrite_rule [Impl.inv1_def]
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(inv1 RS invariantE) RS conjunct2] 1);
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by (rtac impI 1);
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by (rtac impI 1);
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by (REPEAT (etac conjE 1));
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by (fold_tac [rewrite_rule[Packet.hdr_def]Impl.hdr_sum_def]);
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by (dres_inst_tac [("k","hdr_sum(srch(s), sbit(sen(s)))")]
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(standard(leq_add_leq RS mp)) 1);
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by (asm_full_simp_tac HOL_ss 1);
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val inv2 = result();
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(* INVARIANT 3 *)
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goal Impl.thy "invariant(impl_ioa, inv3)";
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by (rtac invariantI 1);
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(* Base case *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv3_def :: (receiver_projections
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@ sender_projections @ impl_ioas))) 1);
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by (asm_simp_tac (impl_ss addsimps impl_ioas) 1);
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by (Action.action.induct_tac "a" 1);
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(* 10 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 9 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 8 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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by (strip_tac 1 THEN REPEAT (etac conjE 1));
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by (asm_full_simp_tac (HOL_ss addsimps [cons_imp_not_null]) 1);
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by (hyp_subst_tac 1);
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by (etac exE 1);
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by (asm_full_simp_tac list_ss 1);
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(* 7 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Suc_pred_lemma::append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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by (fast_tac HOL_cs 1);
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(* 6 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 5 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 4 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 3 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 2 *)
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by (asm_full_simp_tac (impl_ss addsimps transitions) 1);
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by (simp_tac (HOL_ss addsimps [Impl.inv3_def]) 1);
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by (strip_tac 1 THEN REPEAT (etac conjE 1));
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by (rtac (imp_or_lem RS iffD2) 1);
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by (rtac impI 1);
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by (forward_tac [rewrite_rule [Impl.inv2_def] (inv2 RS invariantE)] 1);
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by (asm_full_simp_tac list_ss 1);
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by (REPEAT (etac conjE 1));
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by (res_inst_tac [("j","count(ssent(sen(s)),~ sbit(sen(s)))"),
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("k","count(rsent(rec(s)), sbit(sen(s)))")] le_trans 1);
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by (forward_tac [rewrite_rule [Impl.inv1_def]
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(inv1 RS invariantE) RS conjunct2] 1);
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by (asm_full_simp_tac (list_ss addsimps
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[Impl.hdr_sum_def, Multiset.count_def]) 1);
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by (rtac (less_eq_add_cong RS mp RS mp) 1);
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by (rtac countm_props 1);
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by (simp_tac (list_ss addsimps [Packet.hdr_def]) 1);
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by (rtac countm_props 1);
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by (simp_tac (list_ss addsimps [Packet.hdr_def]) 1);
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by (assume_tac 1);
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(* 1 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::not_hd_append::Impl.inv3_def::transitions)
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setloop (split_tac [expand_if])) 1);
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by (strip_tac 1 THEN REPEAT (etac conjE 1));
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by (rtac (imp_or_lem RS iffD2) 1);
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by (rtac impI 1);
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by (forward_tac [rewrite_rule [Impl.inv2_def] (inv2 RS invariantE)] 1);
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by (asm_full_simp_tac list_ss 1);
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by (REPEAT (etac conjE 1));
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by (dtac mp 1);
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by (assume_tac 1);
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by (etac allE 1);
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by (dtac (imp_or_lem RS iffD1) 1);
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by (dtac mp 1);
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by (assume_tac 1);
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by (assume_tac 1);
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val inv3 = result();
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(* INVARIANT 4 *)
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297 |
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goal Impl.thy "invariant(impl_ioa, inv4)";
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299 |
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by (rtac invariantI 1);
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301 |
(* Base case *)
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by (asm_full_simp_tac (impl_ss addsimps
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(Impl.inv4_def :: (receiver_projections
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@ sender_projections @ impl_ioas))) 1);
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305 |
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by (asm_simp_tac (impl_ss addsimps impl_ioas) 1);
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by (Action.action.induct_tac "a" 1);
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308 |
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309 |
(* 10 *)
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310 |
by (asm_full_simp_tac (impl_ss addsimps
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311 |
(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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313 |
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314 |
(* 9 *)
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by (asm_full_simp_tac (impl_ss addsimps
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316 |
(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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319 |
(* 8 *)
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by (asm_full_simp_tac (impl_ss addsimps
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(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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(* 7 *)
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by (asm_full_simp_tac (impl_ss addsimps
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325 |
(append_cons::Impl.inv4_def::transitions)
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326 |
setloop (split_tac [expand_if])) 1);
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327 |
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328 |
(* 6 *)
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329 |
by (asm_full_simp_tac (impl_ss addsimps
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330 |
(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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332 |
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333 |
(* 5 *)
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by (asm_full_simp_tac (impl_ss addsimps
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335 |
(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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337 |
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338 |
(* 4 *)
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339 |
by (asm_full_simp_tac (impl_ss addsimps
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340 |
(append_cons::Impl.inv4_def::transitions)
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341 |
setloop (split_tac [expand_if])) 1);
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342 |
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343 |
(* 3 *)
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344 |
by (asm_full_simp_tac (impl_ss addsimps
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345 |
(append_cons::Impl.inv4_def::transitions)
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setloop (split_tac [expand_if])) 1);
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347 |
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348 |
(* 2 *)
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349 |
by (asm_full_simp_tac (impl_ss addsimps
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350 |
(append_cons::Impl.inv4_def::transitions)
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|
351 |
setloop (split_tac [expand_if])) 1);
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352 |
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353 |
by (strip_tac 1 THEN REPEAT (etac conjE 1));
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354 |
by(forward_tac [rewrite_rule [Impl.inv2_def]
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|
355 |
(inv2 RS invariantE)] 1);
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356 |
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357 |
by (asm_full_simp_tac list_ss 1);
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358 |
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359 |
(* 1 *)
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|
360 |
by (asm_full_simp_tac (impl_ss addsimps
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|
361 |
(append_cons::Impl.inv4_def::transitions)
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|
362 |
setloop (split_tac [expand_if])) 1);
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|
363 |
by (strip_tac 1 THEN REPEAT (etac conjE 1));
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|
364 |
by (rtac ccontr 1);
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|
365 |
by(forward_tac [rewrite_rule [Impl.inv2_def]
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|
366 |
(inv2 RS invariantE)] 1);
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|
367 |
by(forward_tac [rewrite_rule [Impl.inv3_def]
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|
368 |
(inv3 RS invariantE)] 1);
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|
369 |
by (asm_full_simp_tac list_ss 1);
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|
370 |
by (eres_inst_tac [("x","m")] allE 1);
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|
371 |
by (dtac (less_leq_less RS mp RS mp) 1);
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|
372 |
by (dtac (left_add_leq RS mp) 1);
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|
373 |
by (asm_full_simp_tac list_ss 1);
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|
374 |
by (asm_full_simp_tac arith_ss 1);
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|
375 |
val inv4 = result();
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|
376 |
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|
377 |
|
|
378 |
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|
379 |
(* rebind them *)
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|
380 |
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|
381 |
val inv1 = rewrite_rule [Impl.inv1_def] (inv1 RS invariantE);
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|
382 |
val inv2 = rewrite_rule [Impl.inv2_def] (inv2 RS invariantE);
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|
383 |
val inv3 = rewrite_rule [Impl.inv3_def] (inv3 RS invariantE);
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|
384 |
val inv4 = rewrite_rule [Impl.inv4_def] (inv4 RS invariantE);
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|
385 |
|