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4 (* ||A|| A project by Andrea Asperti *)
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15 include "static_2/s_transition/fqu_teqx.ma".
16 include "static_2/static/feqx.ma".
17 include "basic_2/rt_transition/fpb_reqx.ma".
19 (* PROPER PARALLEL RST-TRANSITION FOR CLOSURES ******************************)
21 (* Properties with degree-based equivalence for closures ********************)
23 (* Basic_2A1: uses: fleq_fpb_trans *)
24 lemma feqx_fpb_trans: ∀h,F1,F2,K1,K2,T1,T2. ❪F1,K1,T1❫ ≛ ❪F2,K2,T2❫ →
25 ∀G2,L2,U2. ❪F2,K2,T2❫ ≻[h] ❪G2,L2,U2❫ →
26 ∃∃G1,L1,U1. ❪F1,K1,T1❫ ≻[h] ❪G1,L1,U1❫ & ❪G1,L1,U1❫ ≛ ❪G2,L2,U2❫.
27 #h #F1 #F2 #K1 #K2 #T1 #T2 * -F2 -K2 -T2
28 #K2 #T2 #HK12 #HT12 #G2 #L2 #U2 #H12
29 elim (teqx_fpb_trans … HT12 … H12) -T2 #K0 #T0 #H #HT0 #HK0
30 elim (reqx_fpb_trans … HK12 … H) -K2 #L0 #U0 #H #HUT0 #HLK0
31 @(ex2_3_intro … H) -H (**) (* full auto too slow *)
32 /4 width=3 by feqx_intro_dx, reqx_trans, teqx_reqx_conf, teqx_trans/
35 (* Inversion lemmas with degree-based equivalence for closures **************)
37 (* Basic_2A1: uses: fpb_inv_fleq *)
38 lemma fpb_inv_feqx: ∀h,G1,G2,L1,L2,T1,T2. ❪G1,L1,T1❫ ≻[h] ❪G2,L2,T2❫ →
39 ❪G1,L1,T1❫ ≛ ❪G2,L2,T2❫ → ⊥.
40 #h #G1 #G2 #L1 #L2 #T1 #T2 * -G2 -L2 -T2
41 [ #G2 #L2 #T2 #H12 #H elim (feqx_inv_gen_sn … H) -H
42 /3 width=11 by reqx_fwd_length, fqu_inv_teqx/
43 | #T2 #_ #HnT #H elim (feqx_inv_gen_sn … H) -H /2 width=1 by/
44 | #L2 #_ #HnL #H elim (feqx_inv_gen_sn … H) -H /2 width=1 by/