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authorGravatar Arnaud Spiwack <arnaud@spiwack.net>2015-02-19 16:35:42 +0100
committerGravatar Arnaud Spiwack <arnaud@spiwack.net>2015-02-24 16:37:04 +0100
commit2f41d8e976621b907925546a192e90e60f0e580b (patch)
treec6cad6b836d9d92cffac90058f98e500559e72da /kernel/constr.ml
parent50edb9bb8d43b190996d1d85a2bfd95f52b2db19 (diff)
Refactoring in [Constr].
[compare_head_gen] defined in terms of [compare_head_gen_leq]. Remove an unused argument from [compare_head_gen_leq].
Diffstat (limited to 'kernel/constr.ml')
-rw-r--r--kernel/constr.ml58
1 files changed, 16 insertions, 42 deletions
diff --git a/kernel/constr.ml b/kernel/constr.ml
index 49f748412..499f196b7 100644
--- a/kernel/constr.ml
+++ b/kernel/constr.ml
@@ -464,55 +464,18 @@ let map_with_binders g f l c0 = match kind c0 with
let bl' = CArray.Fun1.smartmap f l' bl in
mkCoFix (ln,(lna,tl',bl'))
-(* [compare_head_gen u s f c1 c2] compare [c1] and [c2] using [f] to compare
- the immediate subterms of [c1] of [c2] if needed, [u] to compare universe
- instances and [s] to compare sorts; Cast's,
- application associativity, binders name and Cases annotations are
- not taken into account *)
-
-let compare_head_gen eq_universes eq_sorts f t1 t2 =
- match kind t1, kind t2 with
- | Rel n1, Rel n2 -> Int.equal n1 n2
- | Meta m1, Meta m2 -> Int.equal m1 m2
- | Var id1, Var id2 -> Id.equal id1 id2
- | Sort s1, Sort s2 -> eq_sorts s1 s2
- | Cast (c1,_,_), _ -> f c1 t2
- | _, Cast (c2,_,_) -> f t1 c2
- | Prod (_,t1,c1), Prod (_,t2,c2) -> f t1 t2 && f c1 c2
- | Lambda (_,t1,c1), Lambda (_,t2,c2) -> f t1 t2 && f c1 c2
- | LetIn (_,b1,t1,c1), LetIn (_,b2,t2,c2) -> f b1 b2 && f t1 t2 && f c1 c2
- | App (Cast(c1, _, _),l1), _ -> f (mkApp (c1,l1)) t2
- | _, App (Cast (c2, _, _),l2) -> f t1 (mkApp (c2,l2))
- | App (c1,l1), App (c2,l2) ->
- Int.equal (Array.length l1) (Array.length l2) &&
- f c1 c2 && Array.equal f l1 l2
- | Evar (e1,l1), Evar (e2,l2) -> Evar.equal e1 e2 && Array.equal f l1 l2
- | Proj (p1,c1), Proj (p2,c2) -> Projection.equal p1 p2 && f c1 c2
- | Const (c1,u1), Const (c2,u2) -> eq_constant c1 c2 && eq_universes true u1 u2
- | Ind (c1,u1), Ind (c2,u2) -> eq_ind c1 c2 && eq_universes false u1 u2
- | Construct (c1,u1), Construct (c2,u2) -> eq_constructor c1 c2 && eq_universes false u1 u2
- | Case (_,p1,c1,bl1), Case (_,p2,c2,bl2) ->
- f p1 p2 && f c1 c2 && Array.equal f bl1 bl2
- | Fix ((ln1, i1),(_,tl1,bl1)), Fix ((ln2, i2),(_,tl2,bl2)) ->
- Int.equal i1 i2 && Array.equal Int.equal ln1 ln2
- && Array.equal f tl1 tl2 && Array.equal f bl1 bl2
- | CoFix(ln1,(_,tl1,bl1)), CoFix(ln2,(_,tl2,bl2)) ->
- Int.equal ln1 ln2 && Array.equal f tl1 tl2 && Array.equal f bl1 bl2
- | _ -> false
-let compare_head = compare_head_gen (fun _ -> Univ.Instance.equal) Sorts.equal
-
-(* [compare_head_gen_leq u s sl eq leq c1 c2] compare [c1] and [c2] using [eq] to compare
+(* [compare_head_gen_leq u s eq leq c1 c2] compare [c1] and [c2] using [eq] to compare
the immediate subterms of [c1] of [c2] for conversion if needed, [leq] for cumulativity,
[u] to compare universe instances and [s] to compare sorts; Cast's,
application associativity, binders name and Cases annotations are
not taken into account *)
-let compare_head_gen_leq eq_universes eq_sorts leq_sorts eq leq t1 t2 =
+let compare_head_gen_leq eq_universes leq_sorts eq leq t1 t2 =
match kind t1, kind t2 with
| Rel n1, Rel n2 -> Int.equal n1 n2
| Meta m1, Meta m2 -> Int.equal m1 m2
- | Var id1, Var id2 -> Int.equal (id_ord id1 id2) 0
+ | Var id1, Var id2 -> Id.equal id1 id2
| Sort s1, Sort s2 -> leq_sorts s1 s2
| Cast (c1,_,_), _ -> leq c1 t2
| _, Cast (c2,_,_) -> leq t1 c2
@@ -538,6 +501,17 @@ let compare_head_gen_leq eq_universes eq_sorts leq_sorts eq leq t1 t2 =
Int.equal ln1 ln2 && Array.equal eq tl1 tl2 && Array.equal eq bl1 bl2
| _ -> false
+(* [compare_head_gen u s f c1 c2] compare [c1] and [c2] using [f] to compare
+ the immediate subterms of [c1] of [c2] if needed, [u] to compare universe
+ instances and [s] to compare sorts; Cast's,
+ application associativity, binders name and Cases annotations are
+ not taken into account *)
+
+let compare_head_gen eq_universes eq_sorts eq t1 t2 =
+ compare_head_gen_leq eq_universes eq_sorts eq eq t1 t2
+
+let compare_head = compare_head_gen (fun _ -> Univ.Instance.equal) Sorts.equal
+
(*******************************)
(* alpha conversion functions *)
(*******************************)
@@ -570,7 +544,7 @@ let leq_constr_univs univs m n =
m == n || compare_head_gen eq_universes eq_sorts eq_constr' m n
in
let rec compare_leq m n =
- compare_head_gen_leq eq_universes eq_sorts leq_sorts eq_constr' leq_constr' m n
+ compare_head_gen_leq eq_universes leq_sorts eq_constr' leq_constr' m n
and leq_constr' m n = m == n || compare_leq m n in
compare_leq m n
@@ -620,7 +594,7 @@ let leq_constr_univs_infer univs m n =
m == n || compare_head_gen eq_universes eq_sorts eq_constr' m n
in
let rec compare_leq m n =
- compare_head_gen_leq eq_universes eq_sorts leq_sorts eq_constr' leq_constr' m n
+ compare_head_gen_leq eq_universes leq_sorts eq_constr' leq_constr' m n
and leq_constr' m n = m == n || compare_leq m n in
let res = compare_leq m n in
res, !cstrs