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- lambda_delta: programmed renaming to lambdadelta
[helm.git] / matita / matita / contribs / lambda_delta / apps_2 / functional / dsubst.ma
diff --git a/matita/matita/contribs/lambda_delta/apps_2/functional/dsubst.ma b/matita/matita/contribs/lambda_delta/apps_2/functional/dsubst.ma
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-(**************************************************************************)
-(*       ___                                                              *)
-(*      ||M||                                                             *)
-(*      ||A||       A project by Andrea Asperti                           *)
-(*      ||T||                                                             *)
-(*      ||I||       Developers:                                           *)
-(*      ||T||         The HELM team.                                      *)
-(*      ||A||         http://helm.cs.unibo.it                             *)
-(*      \   /                                                             *)
-(*       \ /        This file is distributed under the terms of the       *)
-(*        v         GNU General Public License Version 2                  *)
-(*                                                                        *)
-(**************************************************************************)
-
-include "basic_2/unfold/delift_lift.ma".
-include "apps_2/functional/lift.ma".
-
-(* FUNCTIONAL DELIFTING SUBSTITUTION ****************************************)
-
-let rec fdsubst W d U on U ≝ match U with
-[ TAtom I     ⇒ match I with
-  [ Sort _ ⇒ U
-  | LRef i ⇒ tri … i d (#i) (↑[0, i] W) (#(i-1))
-  | GRef _ ⇒ U
-  ]
-| TPair I V T ⇒ match I with
-  [ Bind2 a I ⇒ ⓑ{a,I} (fdsubst W d V). (fdsubst W (d+1) T)
-  | Flat2 I   ⇒ ⓕ{I} (fdsubst W d V). (fdsubst W d T)
-  ]
-].
-
-interpretation
-   "functional delifting substitution"
-   'DSubst V d T = (fdsubst V d T).
-
-(* Main properties **********************************************************)
-
-theorem fdsubst_delift: ∀K,V,T,L,d.
-                        ⇩[0, d] L ≡ K. ⓓV → L ⊢ ▼*[d, 1] T ≡ [d ⬐ V] T.
-#K #V #T elim T -T
-[ * #i #L #d #HLK normalize in ⊢ (? ? ? ? ? %); /2 width=3/
-  elim (lt_or_eq_or_gt i d) #Hid
-  [ -HLK >(tri_lt ?????? Hid) /3 width=3/
-  | destruct >tri_eq /4 width=4 by tpss_strap2, tps_subst, le_n, ex2_1_intro/ (**) (* too slow without trace *)   
-  | -HLK >(tri_gt ?????? Hid) /3 width=3/
-  ]
-| * /3 width=1/ /4 width=1/
-]
-qed.
-
-(* Main inversion properties ************************************************)
-
-theorem fdsubst_inv_delift: ∀K,V,T1,L,T2,d. ⇩[0, d] L ≡ K. ⓓV →
-                            L ⊢ ▼*[d, 1] T1 ≡ T2 → [d ⬐ V] T1 = T2.
-#K #V #T1 elim T1 -T1
-[ * #i #L #T2 #d #HLK #H
-  [ -HLK >(delift_inv_sort1 … H) -H //
-  | elim (lt_or_eq_or_gt i d) #Hid normalize
-    [ -HLK >(delift_inv_lref1_lt … H) -H // /2 width=1/
-    | destruct
-      elim (delift_inv_lref1_be … H ? ?) -H // #K0 #V0 #V2 #HLK0
-      lapply (ldrop_mono … HLK0 … HLK) -HLK0 -HLK #H >minus_plus <minus_n_n #HV2 #HVT2 destruct
-      >(delift_inv_refl_O2 … HV2) -V >(flift_inv_lift … HVT2) -V2 //
-    | -HLK >(delift_inv_lref1_ge … H) -H // /2 width=1/
-    ]
-  | -HLK >(delift_inv_gref1 … H) -H //
-  ]
-| * [ #a ] #I #V1 #T1 #IHV1 #IHT1 #L #X #d #HLK #H
-  [ elim (delift_inv_bind1 … H) -H #V2 #T2 #HV12 #HT12 #H destruct
-    <(IHV1 … HV12) -IHV1 -HV12 // <(IHT1 … HT12) -IHT1 -HT12 // /2 width=1/
-  | elim (delift_inv_flat1 … H) -H #V2 #T2 #HV12 #HT12 #H destruct
-    <(IHV1 … HV12) -IHV1 -HV12 // <(IHT1 … HT12) -IHT1 -HT12 //
-  ]
-]
-qed-.