Source file eqschemes.ml
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open CErrors
open Util
open Names
open Term
open Constr
open Context
open Vars
open Declarations
open Environ
open Inductive
open Termops
open Namegen
open Inductiveops
open Ind_tables
open Indrec
open Context.Rel.Declaration
module RelDecl = Context.Rel.Declaration
let hid = Id.of_string "H"
let xid = Id.of_string "X"
let default_id_of_sort = function InSProp | InProp | InSet -> hid | InType -> xid
let fresh env id avoid =
let freshid = next_global_ident_away id avoid in
freshid, Id.Set.add freshid avoid
let with_context_set ctx (b, ctx') =
(b, Univ.ContextSet.union ctx ctx')
let build_dependent_inductive ind (mib,mip) =
let realargs,_ = List.chop mip.mind_nrealdecls mip.mind_arity_ctxt in
applist
(mkIndU ind,
Context.Rel.to_extended_list mkRel mip.mind_nrealdecls mib.mind_params_ctxt
@ Context.Rel.to_extended_list mkRel 0 realargs)
let named_hd env t na = named_hd env (Evd.from_env env) (EConstr.of_constr t) na
let name_assumption env = function
| LocalAssum (na,t) -> LocalAssum (map_annot (named_hd env t) na, t)
| LocalDef (na,c,t) -> LocalDef (map_annot (named_hd env c) na, c, t)
let name_context env hyps =
snd
(List.fold_left
(fun (env,hyps) d ->
let d' = name_assumption env d in (push_rel d' env, d' :: hyps))
(env,[]) (List.rev hyps))
let my_it_mkLambda_or_LetIn s c = it_mkLambda_or_LetIn c s
let my_it_mkProd_or_LetIn s c = Term.it_mkProd_or_LetIn c s
let my_it_mkLambda_or_LetIn_name env s c =
let mkLambda_or_LetIn_name d b = mkLambda_or_LetIn (name_assumption env d) b in
List.fold_left (fun c d -> mkLambda_or_LetIn_name d c) c s
let get_coq_eq env ctx =
try
let eq = Globnames.destIndRef (Coqlib.lib_ref "core.eq.type") in
let eq, ctx = with_context_set ctx
(UnivGen.fresh_inductive_instance env eq) in
mkIndU eq, mkConstructUi (eq,1), ctx
with Not_found ->
user_err Pp.(str "eq not found.")
let univ_of_eq env eq =
let open EConstr in
let eq = of_constr eq in
let sigma = Evd.from_env env in
match kind sigma (Retyping.get_type_of env sigma eq) with
| Prod (_,t,_) -> (match kind sigma t with
Sort k ->
(match ESorts.kind sigma k with Type u -> u | _ -> assert false)
| _ -> assert false)
| _ -> assert false
let error msg = user_err Pp.(str msg)
let get_sym_eq_data env (ind,u) =
let (mib,mip as specif) = lookup_mind_specif env ind in
if not (Int.equal (Array.length mib.mind_packets) 1) ||
not (Int.equal (Array.length mip.mind_nf_lc) 1) then
error "Not an inductive type with a single constructor.";
let arityctxt = Vars.subst_instance_context u mip.mind_arity_ctxt in
let realsign,_ = List.chop mip.mind_nrealdecls arityctxt in
if List.exists is_local_def realsign then
error "Inductive equalities with local definitions in arity not supported.";
let constrsign,ccl = mip.mind_nf_lc.(0) in
let _,constrargs = decompose_app ccl in
if not (Int.equal (Context.Rel.length constrsign) (Context.Rel.length mib.mind_params_ctxt)) then
error "Constructor must have no arguments";
let params,constrargs = List.chop mib.mind_nparams constrargs in
if mip.mind_nrealargs > mib.mind_nparams then
error "Constructors arguments must repeat the parameters.";
let _,params2 = List.chop (mib.mind_nparams-mip.mind_nrealargs) params in
let paramsctxt = Vars.subst_instance_context u mib.mind_params_ctxt in
let paramsctxt1,_ =
List.chop (mib.mind_nparams-mip.mind_nrealargs) paramsctxt in
if not (List.equal Constr.equal params2 constrargs) then
error "Constructors arguments must repeat the parameters.";
(specif,mip.mind_nrealargs,realsign,paramsctxt,paramsctxt1)
let get_non_sym_eq_data env (ind,u) =
let (mib,mip as specif) = lookup_mind_specif env ind in
if not (Int.equal (Array.length mib.mind_packets) 1) ||
not (Int.equal (Array.length mip.mind_nf_lc) 1) then
error "Not an inductive type with a single constructor.";
let arityctxt = Vars.subst_instance_context u mip.mind_arity_ctxt in
let realsign,_ = List.chop mip.mind_nrealdecls arityctxt in
if List.exists is_local_def realsign then
error "Inductive equalities with local definitions in arity not supported";
let constrsign,ccl = mip.mind_nf_lc.(0) in
let _,constrargs = decompose_app ccl in
if not (Int.equal (Context.Rel.length constrsign) (Context.Rel.length mib.mind_params_ctxt)) then
error "Constructor must have no arguments";
let _,constrargs = List.chop mib.mind_nparams constrargs in
let constrargs = List.map (Vars.subst_instance_constr u) constrargs in
let paramsctxt = Vars.subst_instance_context u mib.mind_params_ctxt in
(specif,constrargs,realsign,paramsctxt,mip.mind_nrealargs)
let build_sym_scheme env _handle ind =
let (ind,u as indu), ctx = UnivGen.fresh_inductive_instance env ind in
let (mib,mip as specif),nrealargs,realsign,paramsctxt,paramsctxt1 =
get_sym_eq_data env indu in
let cstr n =
mkApp (mkConstructUi(indu,1),Context.Rel.to_extended_vect mkRel n mib.mind_params_ctxt) in
let inds = snd (mind_arity mip) in
let varH,_ = fresh env (default_id_of_sort inds) Id.Set.empty in
let applied_ind = build_dependent_inductive indu specif in
let indr = Sorts.relevance_of_sort_family inds in
let realsign_ind =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind))::realsign) in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let c =
(my_it_mkLambda_or_LetIn paramsctxt
(my_it_mkLambda_or_LetIn_name env realsign_ind
(mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env
(lift_rel_context (nrealargs+1) realsign_ind)
(mkApp (mkIndU indu,Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+2) paramsctxt1;
rel_vect 1 nrealargs;
rel_vect (2*nrealargs+2) nrealargs])),
NoInvert,
mkRel 1 ,
[|cstr (nrealargs+1)|])))))
in c, UState.of_context_set ctx
let sym_scheme_kind =
declare_individual_scheme_object "_sym_internal"
build_sym_scheme
let const_of_scheme kind env handle ind ctx =
let sym_scheme = match local_lookup_scheme handle kind ind with Some cst -> cst | None -> assert false in
let sym, ctx = with_context_set ctx
(UnivGen.fresh_constant_instance env sym_scheme) in
mkConstU sym, ctx
let build_sym_involutive_scheme env handle ind =
let (ind,u as indu), ctx = UnivGen.fresh_inductive_instance env ind in
let (mib,mip as specif),nrealargs,realsign,paramsctxt,paramsctxt1 =
get_sym_eq_data env indu in
let eq,eqrefl,ctx = get_coq_eq env ctx in
let sym, ctx = const_of_scheme sym_scheme_kind env handle ind ctx in
let cstr n = mkApp (mkConstructUi (indu,1),Context.Rel.to_extended_vect mkRel n paramsctxt) in
let inds = snd (mind_arity mip) in
let indr = Sorts.relevance_of_sort_family inds in
let varH,_ = fresh env (default_id_of_sort inds) Id.Set.empty in
let applied_ind = build_dependent_inductive indu specif in
let applied_ind_C =
mkApp
(mkIndU indu, Array.append
(Context.Rel.to_extended_vect mkRel (nrealargs+1) mib.mind_params_ctxt)
(rel_vect (nrealargs+1) nrealargs)) in
let realsign_ind =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind))::realsign) in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let c =
(my_it_mkLambda_or_LetIn paramsctxt
(my_it_mkLambda_or_LetIn_name env realsign_ind
(mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env
(lift_rel_context (nrealargs+1) realsign_ind)
(mkApp (eq,[|
mkApp
(mkIndU indu, Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+2) paramsctxt1;
rel_vect (2*nrealargs+2) nrealargs;
rel_vect 1 nrealargs]);
mkApp (sym,Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+2) paramsctxt1;
rel_vect 1 nrealargs;
rel_vect (2*nrealargs+2) nrealargs;
[|mkApp (sym,Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+2) paramsctxt1;
rel_vect (2*nrealargs+2) nrealargs;
rel_vect 1 nrealargs;
[|mkRel 1|]])|]]);
mkRel 1|])),
NoInvert,
mkRel 1 ,
[|mkApp(eqrefl,[|applied_ind_C;cstr (nrealargs+1)|])|])))))
in (c, UState.of_context_set ctx)
let sym_involutive_scheme_kind =
declare_individual_scheme_object "_sym_involutive"
~deps:(fun _ ind -> [SchemeIndividualDep (ind, sym_scheme_kind)])
build_sym_involutive_scheme
let build_l2r_rew_scheme dep env handle ind kind =
let (ind,u as indu), ctx = UnivGen.fresh_inductive_instance env ind in
let (mib,mip as specif),nrealargs,realsign,paramsctxt,paramsctxt1 =
get_sym_eq_data env indu in
let sym, ctx = const_of_scheme sym_scheme_kind env handle ind ctx in
let sym_involutive, ctx = const_of_scheme sym_involutive_scheme_kind env handle ind ctx in
let eq,eqrefl,ctx = get_coq_eq env ctx in
let cstr n p =
mkApp (mkConstructUi(indu,1),
Array.concat [Context.Rel.to_extended_vect mkRel n paramsctxt1;
rel_vect p nrealargs]) in
let inds = snd (mind_arity mip) in
let indr = Sorts.relevance_of_sort_family inds in
let varH,avoid = fresh env (default_id_of_sort inds) Id.Set.empty in
let varHC,avoid = fresh env (Id.of_string "HC") avoid in
let varP,_ = fresh env (Id.of_string "P") avoid in
let applied_ind = build_dependent_inductive indu specif in
let applied_ind_P =
mkApp (mkIndU indu, Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs) paramsctxt1;
rel_vect 0 nrealargs;
rel_vect nrealargs nrealargs]) in
let applied_ind_G =
mkApp (mkIndU indu, Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+3) paramsctxt1;
rel_vect (nrealargs+3) nrealargs;
rel_vect 0 nrealargs]) in
let realsign_P = lift_rel_context nrealargs realsign in
let realsign_ind_P =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind_P))::realsign_P) in
let realsign_ind_G =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind_G))::
lift_rel_context (nrealargs+3) realsign) in
let applied_sym_C n =
mkApp(sym,
Array.append (Context.Rel.to_extended_vect mkRel n mip.mind_arity_ctxt) [|mkVar varH|]) in
let applied_sym_G =
mkApp(sym,
Array.concat [Context.Rel.to_extended_vect mkRel (nrealargs*3+4) paramsctxt1;
rel_vect (nrealargs+4) nrealargs;
rel_vect 1 nrealargs;
[|mkRel 1|]]) in
let s, ctx' = UnivGen.fresh_sort_in_family kind in
let ctx = Univ.ContextSet.union ctx ctx' in
let s = mkSort s in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let cieq = make_case_info env (fst (destInd eq)) rci RegularStyle in
let applied_PC =
mkApp (mkVar varP,Array.append (Context.Rel.to_extended_vect mkRel 1 realsign)
(if dep then [|cstr (2*nrealargs+1) 1|] else [||])) in
let applied_PG =
mkApp (mkVar varP,Array.append (rel_vect 1 nrealargs)
(if dep then [|applied_sym_G|] else [||])) in
let applied_PR =
mkApp (mkVar varP,Array.append (rel_vect (nrealargs+5) nrealargs)
(if dep then [|mkRel 2|] else [||])) in
let applied_sym_sym =
mkApp (sym,Array.concat
[Context.Rel.to_extended_vect mkRel (2*nrealargs+4) paramsctxt1;
rel_vect 4 nrealargs;
rel_vect (nrealargs+4) nrealargs;
[|mkApp (sym,Array.concat
[Context.Rel.to_extended_vect mkRel (2*nrealargs+4) paramsctxt1;
rel_vect (nrealargs+4) nrealargs;
rel_vect 4 nrealargs;
[|mkRel 2|]])|]]) in
let main_body =
mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env realsign_ind_G applied_PG,
NoInvert,
applied_sym_C 3,
[|mkVar varHC|]))
in
let c =
(my_it_mkLambda_or_LetIn paramsctxt
(my_it_mkLambda_or_LetIn_name env realsign
(mkNamedLambda (make_annot varP indr)
(my_it_mkProd_or_LetIn (if dep then realsign_ind_P else realsign_P) s)
(mkNamedLambda (make_annot varHC indr) applied_PC
(mkNamedLambda (make_annot varH indr) (lift 2 applied_ind)
(if dep then
mkCase (Inductive.contract_case env (cieq,
mkLambda (make_annot (Name varH) indr,lift 3 applied_ind,
mkLambda (make_annot Anonymous indr,
mkApp (eq,[|lift 4 applied_ind;applied_sym_sym;mkRel 1|]),
applied_PR)),
NoInvert,
mkApp (sym_involutive,
Array.append (Context.Rel.to_extended_vect mkRel 3 mip.mind_arity_ctxt) [|mkVar varH|]),
[|main_body|]))
else
main_body))))))
in (c, UState.of_context_set ctx)
let build_l2r_forward_rew_scheme dep env ind kind =
let (ind,u as indu), ctx = UnivGen.fresh_inductive_instance env ind in
let (mib,mip as specif),nrealargs,realsign,paramsctxt,paramsctxt1 =
get_sym_eq_data env indu in
let cstr n p =
mkApp (mkConstructUi(indu,1),
Array.concat [Context.Rel.to_extended_vect mkRel n paramsctxt1;
rel_vect p nrealargs]) in
let inds = snd (mind_arity mip) in
let indr = Sorts.relevance_of_sort_family inds in
let varH,avoid = fresh env (default_id_of_sort inds) Id.Set.empty in
let varHC,avoid = fresh env (Id.of_string "HC") avoid in
let varP,_ = fresh env (Id.of_string "P") avoid in
let applied_ind = build_dependent_inductive indu specif in
let applied_ind_P =
mkApp (mkIndU indu, Array.concat
[Context.Rel.to_extended_vect mkRel (4*nrealargs+2) paramsctxt1;
rel_vect 0 nrealargs;
rel_vect (nrealargs+1) nrealargs]) in
let applied_ind_P' =
mkApp (mkIndU indu, Array.concat
[Context.Rel.to_extended_vect mkRel (3*nrealargs+1) paramsctxt1;
rel_vect 0 nrealargs;
rel_vect (2*nrealargs+1) nrealargs]) in
let realsign_P n = lift_rel_context (nrealargs*n+n) realsign in
let realsign_ind =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind))::realsign) in
let realsign_ind_P n aP =
name_context env ((LocalAssum (make_annot (Name varH) indr,aP))::realsign_P n) in
let s, ctx' = UnivGen.fresh_sort_in_family kind in
let ctx = Univ.ContextSet.union ctx ctx' in
let s = mkSort s in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let applied_PC =
mkApp (mkVar varP,Array.append
(rel_vect (nrealargs*2+3) nrealargs)
(if dep then [|mkRel 2|] else [||])) in
let applied_PC' =
mkApp (mkVar varP,Array.append
(rel_vect (nrealargs+2) nrealargs)
(if dep then [|cstr (2*nrealargs+2) (nrealargs+2)|]
else [||])) in
let applied_PG =
mkApp (mkVar varP,Array.append (rel_vect 3 nrealargs)
(if dep then [|cstr (3*nrealargs+4) 3|] else [||])) in
let c =
(my_it_mkLambda_or_LetIn paramsctxt
(my_it_mkLambda_or_LetIn_name env realsign
(mkNamedLambda (make_annot varH indr) applied_ind
(mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env
(lift_rel_context (nrealargs+1) realsign_ind)
(mkNamedProd (make_annot varP indr)
(my_it_mkProd_or_LetIn
(if dep then realsign_ind_P 2 applied_ind_P else realsign_P 2) s)
(mkNamedProd (make_annot varHC indr) applied_PC applied_PG)),
NoInvert,
(mkVar varH),
[|mkNamedLambda (make_annot varP indr)
(my_it_mkProd_or_LetIn
(if dep then realsign_ind_P 1 applied_ind_P' else realsign_P 2) s)
(mkNamedLambda (make_annot varHC indr) applied_PC'
(mkVar varHC))|]))))))
in c, UState.of_context_set ctx
let build_r2l_forward_rew_scheme dep env ind kind =
let (ind,u as indu), ctx = UnivGen.fresh_inductive_instance env ind in
let ((mib,mip as specif),constrargs,realsign,paramsctxt,nrealargs) =
get_non_sym_eq_data env indu in
let cstr n =
mkApp (mkConstructUi(indu,1),Context.Rel.to_extended_vect mkRel n mib.mind_params_ctxt) in
let constrargs_cstr = constrargs@[cstr 0] in
let inds = snd (mind_arity mip) in
let indr = Sorts.relevance_of_sort_family inds in
let varH,avoid = fresh env (default_id_of_sort inds) Id.Set.empty in
let varHC,avoid = fresh env (Id.of_string "HC") avoid in
let varP,_ = fresh env (Id.of_string "P") avoid in
let applied_ind = build_dependent_inductive indu specif in
let realsign_ind =
name_context env ((LocalAssum (make_annot (Name varH) indr,applied_ind))::realsign) in
let s, ctx' = UnivGen.fresh_sort_in_family kind in
let ctx = Univ.ContextSet.union ctx ctx' in
let s = mkSort s in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let applied_PC =
applist (mkVar varP,if dep then constrargs_cstr else constrargs) in
let applied_PG =
mkApp (mkVar varP,
if dep then Context.Rel.to_extended_vect mkRel 0 realsign_ind
else Context.Rel.to_extended_vect mkRel 1 realsign) in
let c =
(my_it_mkLambda_or_LetIn paramsctxt
(my_it_mkLambda_or_LetIn_name env realsign_ind
(mkNamedLambda (make_annot varP indr)
(my_it_mkProd_or_LetIn (lift_rel_context (nrealargs+1)
(if dep then realsign_ind else realsign)) s)
(mkNamedLambda (make_annot varHC indr) (lift 1 applied_PG)
(mkApp
(mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env
(lift_rel_context (nrealargs+3) realsign_ind)
(mkArrow applied_PG indr (lift (2*nrealargs+5) applied_PC)),
NoInvert,
mkRel 3 ,
[|mkLambda
(make_annot (Name varHC) indr,
lift (nrealargs+3) applied_PC,
mkRel 1)|])),
[|mkVar varHC|]))))))
in c, UState.of_context_set ctx
let fix_r2l_forward_rew_scheme env (c, ctx') =
let sigma = Evd.from_env env in
let t = Retyping.get_type_of env sigma (EConstr.of_constr c) in
let t = EConstr.Unsafe.to_constr t in
let ctx,_ = decompose_prod_assum t in
match ctx with
| hp :: p :: ind :: indargs ->
let c' =
my_it_mkLambda_or_LetIn indargs
(mkLambda_or_LetIn (RelDecl.map_constr (liftn (-1) 1) p)
(mkLambda_or_LetIn (RelDecl.map_constr (liftn (-1) 2) hp)
(mkLambda_or_LetIn (RelDecl.map_constr (lift 2) ind)
(EConstr.Unsafe.to_constr (Reductionops.whd_beta env sigma
(EConstr.of_constr (applist (c,
Context.Rel.to_extended_list mkRel 3 indargs @ [mkRel 1;mkRel 3;mkRel 2]))))))))
in c', ctx'
| _ -> anomaly (Pp.str "Ill-formed non-dependent left-to-right rewriting scheme.")
let build_r2l_rew_scheme dep env ind k =
let sigma = Evd.from_env env in
let (sigma, indu) = Evd.fresh_inductive_instance env sigma ind in
let (sigma, c) = build_case_analysis_scheme env sigma indu dep k in
c, Evd.evar_universe_context sigma
let rew_l2r_dep_scheme_kind =
declare_individual_scheme_object "_rew_r_dep"
~deps:(fun _ ind -> [
SchemeIndividualDep (ind, sym_scheme_kind);
SchemeIndividualDep (ind, sym_involutive_scheme_kind);
])
(fun env handle ind -> build_l2r_rew_scheme true env handle ind InType)
let rew_r2l_dep_scheme_kind =
declare_individual_scheme_object "_rew_dep"
(fun env _ ind -> build_r2l_rew_scheme true env ind InType)
let rew_r2l_forward_dep_scheme_kind =
declare_individual_scheme_object "_rew_fwd_dep"
(fun env _ ind -> build_r2l_forward_rew_scheme true env ind InType)
let rew_l2r_forward_dep_scheme_kind =
declare_individual_scheme_object "_rew_fwd_r_dep"
(fun env _ ind -> build_l2r_forward_rew_scheme true env ind InType)
let rew_l2r_scheme_kind =
declare_individual_scheme_object "_rew_r"
(fun env _ ind -> fix_r2l_forward_rew_scheme env
(build_r2l_forward_rew_scheme false env ind InType))
let rew_r2l_scheme_kind =
declare_individual_scheme_object "_rew"
(fun env _ ind -> build_r2l_rew_scheme false env ind InType)
let build_congr env (eq,refl,ctx) ind =
let (ind,u as indu), ctx = with_context_set ctx
(UnivGen.fresh_inductive_instance env ind) in
let (mib,mip) = lookup_mind_specif env ind in
if not (Int.equal (Array.length mib.mind_packets) 1) || not (Int.equal (Array.length mip.mind_nf_lc) 1) then
error "Not an inductive type with a single constructor.";
if not (Int.equal mip.mind_nrealargs 1) then
error "Expect an inductive type with one predicate parameter.";
let i = 1 in
let arityctxt = Vars.subst_instance_context u mip.mind_arity_ctxt in
let paramsctxt = Vars.subst_instance_context u mib.mind_params_ctxt in
let realsign,_ = List.chop mip.mind_nrealdecls arityctxt in
if List.exists is_local_def realsign then
error "Inductive equalities with local definitions in arity not supported.";
let env_with_arity = push_rel_context arityctxt env in
let ty, tyr =
let decl = lookup_rel (mip.mind_nrealargs - i + 1) env_with_arity in
RelDecl.get_type decl, RelDecl.get_relevance decl
in
let constrsign,ccl = mip.mind_nf_lc.(0) in
let _,constrargs = decompose_app ccl in
if not (Int.equal (Context.Rel.length constrsign) (Context.Rel.length mib.mind_params_ctxt)) then
error "Constructor must have no arguments";
let b = List.nth constrargs (i + mib.mind_nparams - 1) in
let varB,avoid = fresh env (Id.of_string "B") Id.Set.empty in
let varH,avoid = fresh env (Id.of_string "H") avoid in
let varf,avoid = fresh env (Id.of_string "f") avoid in
let rci = Sorts.Relevant in
let ci = make_case_info env ind rci RegularStyle in
let uni, ctx = Univ.extend_in_context_set (UnivGen.new_global_univ ()) ctx in
let ctx = (fst ctx, Univ.enforce_leq uni (univ_of_eq env eq) (snd ctx)) in
let c =
my_it_mkLambda_or_LetIn paramsctxt
(mkNamedLambda (make_annot varB Sorts.Relevant) (mkType uni)
(mkNamedLambda (make_annot varf Sorts.Relevant) (mkArrow (lift 1 ty) tyr (mkVar varB))
(my_it_mkLambda_or_LetIn_name env (lift_rel_context 2 realsign)
(mkNamedLambda (make_annot varH Sorts.Relevant)
(applist
(mkIndU indu,
Context.Rel.to_extended_list mkRel (mip.mind_nrealargs+2) paramsctxt @
Context.Rel.to_extended_list mkRel 0 realsign))
(mkCase (Inductive.contract_case env (ci,
my_it_mkLambda_or_LetIn_name env
(lift_rel_context (mip.mind_nrealargs+3) realsign)
(mkLambda
(make_annot Anonymous Sorts.Relevant,
applist
(mkIndU indu,
Context.Rel.to_extended_list mkRel (2*mip.mind_nrealdecls+3)
paramsctxt
@ Context.Rel.to_extended_list mkRel 0 realsign),
mkApp (eq,
[|mkVar varB;
mkApp (mkVar varf, [|lift (2*mip.mind_nrealdecls+4) b|]);
mkApp (mkVar varf, [|mkRel (mip.mind_nrealargs - i + 2)|])|]))),
NoInvert,
mkVar varH,
[|mkApp (refl,
[|mkVar varB;
mkApp (mkVar varf, [|lift (mip.mind_nrealargs+3) b|])|])|])))))))
in c, UState.of_context_set ctx
let congr_scheme_kind = declare_individual_scheme_object "_congr"
(fun env _ ind ->
build_congr env (get_coq_eq env Univ.ContextSet.empty) ind)