Nominal/Test.thy
author Christian Urban <urbanc@in.tum.de>
Tue, 02 Mar 2010 16:04:48 +0100
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theory Test
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imports "Parser"
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begin
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text {* example 1 *}
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nominal_datatype lam =
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  VAR "name"
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| APP "lam" "lam"
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| LET bp::"bp" t::"lam"   bind "bi bp" in t
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and bp = 
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  BP "name" "lam" 
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  bi::"bp \<Rightarrow> atom set"
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where
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  "bi (BP x t) = {atom x}"
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typ lam_raw
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term VAR_raw
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term APP_raw
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term LET_raw
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term Test.BP_raw
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thm bi_raw.simps
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thm permute_lam_raw_permute_bp_raw.simps
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thm alpha_lam_raw_alpha_bp_raw.intros
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thm fv_lam_raw_fv_bp_raw.simps
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thm eqvts
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print_theorems
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text {* example 2 *}
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nominal_datatype trm' =
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  Var "name"
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| App "trm'" "trm'"
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| Lam x::"name" t::"trm'"          bind x in t 
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| Let p::"pat'" "trm'" t::"trm'"   bind "f p" in t
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and pat' =
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  PN
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| PS "name"
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| PD "name" "name"
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binder
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  f::"pat' \<Rightarrow> atom set"
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where 
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  "f PN = {}"
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| "f (PS x) = {atom x}"
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| "f (PD x y) = {atom x, atom y}"
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thm f_raw.simps
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nominal_datatype trm0 =
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  Var0 "name"
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| App0 "trm0" "trm0"
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| Lam0 x::"name" t::"trm0"          bind x in t 
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| Let0 p::"pat0" "trm0" t::"trm0"   bind "f0 p" in t
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and pat0 =
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  PN0
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| PS0 "name"
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| PD0 "pat0" "pat0"
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  f0::"pat0 \<Rightarrow> atom set"
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where 
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  "f0 PN0 = {}"
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| "f0 (PS0 x) = {atom x}"
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| "f0 (PD0 p1 p2) = (f0 p1) \<union> (f0 p2)"
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thm f0_raw.simps
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text {* example type schemes *}
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(* does not work yet
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nominal_datatype t =
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  Var "name"
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| Fun "t" "t"
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nominal_datatype tyS =
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  All xs::"name list" ty::"t_raw" bind xs in ty
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*)
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nominal_datatype t = 
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  Var "name" 
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| Fun "t" "t"
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and  tyS = 
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  All xs::"name set" ty::"t" bind xs in ty
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(* example 1 from Terms.thy *)
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nominal_datatype trm1 =
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  Vr1 "name"
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| Ap1 "trm1" "trm1"
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| Lm1 x::"name" t::"trm1"       bind x in t 
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| Lt1 p::"bp1" "trm1" t::"trm1" bind "bv1 p" in t 
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and bp1 =
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  BUnit1
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| BV1 "name"
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| BP1 "bp1" "bp1"
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  bv1
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where
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  "bv1 (BUnit1) = {}"
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| "bv1 (BV1 x) = {atom x}"
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| "bv1 (BP1 bp1 bp2) = (bv1 bp1) \<union> (bv1 bp2)"
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thm bv1_raw.simps
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(* example 2 from Terms.thy *)
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nominal_datatype trm2 =
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  Vr2 "name"
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| Ap2 "trm2" "trm2"
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| Lm2 x::"name" t::"trm2"       bind x in t
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| Lt2 r::"rassign" t::"trm2"    bind "bv2 r" in t
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and rassign = 
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  As "name" "trm2"
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  bv2
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where
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  "bv2 (As x t) = {atom x}"
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(* example 3 from Terms.thy *)
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nominal_datatype trm3 =
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  Vr3 "name"
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| Ap3 "trm3" "trm3"
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| Lm3 x::"name" t::"trm3"        bind x in t
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| Lt3 r::"rassigns3" t::"trm3"   bind "bv3 r" in t
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and rassigns3 =
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  ANil
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| ACons "name" "trm3" "rassigns3"
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binder
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  bv3
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where
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  "bv3 ANil = {}"
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| "bv3 (ACons x t as) = {atom x} \<union> (bv3 as)"
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(* example 4 from Terms.thy *)
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1302
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nominal_datatype trm4 =
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  Vr4 "name"
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| Ap4 "trm4" "trm4 list"
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| Lm4 x::"name" t::"trm4"  bind x in t
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(* example 5 from Terms.thy *)
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nominal_datatype trm5 =
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  Vr5 "name"
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| Ap5 "trm5" "trm5"
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| Lt5 l::"lts" t::"trm5"  bind "bv5 l" in t
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and lts =
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  Lnil
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| Lcons "name" "trm5" "lts"
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binder
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  bv5
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where
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  "bv5 Lnil = {}"
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| "bv5 (Lcons n t ltl) = {atom n} \<union> (bv5 ltl)"
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(* example 6 from Terms.thy *)
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nominal_datatype trm6 =
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  Vr6 "name"
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| Lm6 x::"name" t::"trm6"         bind x in t
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| Lt6 left::"trm6" right::"trm6"  bind "bv6 left" in right
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binder
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  bv6
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where
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  "bv6 (Vr6 n) = {}"
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| "bv6 (Lm6 n t) = {atom n} \<union> bv6 t"
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| "bv6 (Lt6 l r) = bv6 l \<union> bv6 r"
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(* example 7 from Terms.thy *)
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nominal_datatype trm7 =
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  Vr7 "name"
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| Lm7 l::"name" r::"trm7"   bind l in r
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| Lt7 l::"trm7" r::"trm7"   bind "bv7 l" in r
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binder 
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  bv7 
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where
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  "bv7 (Vr7 n) = {atom n}"
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| "bv7 (Lm7 n t) = bv7 t - {atom n}"
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| "bv7 (Lt7 l r) = bv7 l \<union> bv7 r"
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(* example 8 from Terms.thy *)
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nominal_datatype foo8 =
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  Foo0 "name"
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| Foo1 b::"bar8" f::"foo8" bind "bv8 b" in f --"check fo error if this is called foo"
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and bar8 =
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  Bar0 "name"
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| Bar1 "name" s::"name" b::"bar8" bind s in b
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binder 
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  bv8
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where
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  "bv8 (Bar0 x) = {}"
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| "bv8 (Bar1 v x b) = {atom v}"
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(* example 9 from Terms.thy *)
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nominal_datatype lam9 =
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  Var9 "name"
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| Lam9 n::"name" l::"lam9" bind n in l
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and bla9 =
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  Bla9 f::"lam9" s::"lam9" bind "bv9 f" in s
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binder
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  bv9
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where
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  "bv9 (Var9 x) = {}"
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| "bv9 (Lam9 x b) = {atom x}"
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(* example from my PHD *)
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atom_decl coname
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nominal_datatype phd =
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   Ax "name" "coname"
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|  Cut n::"coname" t1::"phd" c::"coname" t2::"phd"              bind n in t1, bind c in t2
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|  AndR c1::"coname" t1::"phd" c2::"coname" t2::"phd" "coname"  bind c1 in t1, bind c2 in t2
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|  AndL1 n::"name" t::"phd" "name"                              bind n in t
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|  AndL2 n::"name" t::"phd" "name"                              bind n in t
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|  ImpL c::"coname" t1::"phd" n::"name" t2::"phd" "name"        bind c in t1, bind n in t2
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|  ImpR c::"coname" n::"name" t::"phd" "coname"                 bind n in 1, bind c in t
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(* example form Leroy 96 about modules; OTT *)
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nominal_datatype mexp =
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  Acc "path"
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| Stru "body"
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| Funct x::"name" "sexp" m::"mexp"    bind x in m
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| FApp "mexp" "path"
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| Ascr "mexp" "sexp"
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and body =
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  Empty
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| Seq c::defn d::"body"     bind "cbinders c" in d
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and defn =  
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  Type "name" "tyty"
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| Dty "name"
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| DStru "name" "mexp"
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| Val "name" "trmtrm"
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and sexp =
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  Sig sbody
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| SFunc "name" "sexp" "sexp"
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and sbody = 
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  SEmpty
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| SSeq C::spec D::sbody    bind "Cbinders C" in D
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and spec =
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  Type1 "name" 
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| Type2 "name" "tyty"
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| SStru "name" "sexp"
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| SVal "name" "tyty"
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and tyty =
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  Tyref1 "name"
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| Tyref2 "path" "tyty"
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| Fun "tyty" "tyty"
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and path =
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  Sref1 "name"
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| Sref2 "path" "name"
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and trmtrm =
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  Tref1 "name"
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| Tref2 "path" "name"
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| Lam v::"name" "tyty" M::"trmtrm"  bind v in M
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| App "trmtrm" "trmtrm"
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| Let "body" "trmtrm"
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binder
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    cbinders :: "defn \<Rightarrow> atom set"
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and Cbinders :: "spec \<Rightarrow> atom set"
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where
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  "cbinders (Type t T) = {atom t}"
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| "cbinders (Dty t) = {atom t}"
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| "cbinders (DStru x s) = {atom x}"
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| "cbinders (Val v M) = {atom v}"
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| "Cbinders (Type1 t) = {atom t}"
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| "Cbinders (Type2 t T) = {atom t}"
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| "Cbinders (SStru x S) = {atom x}"
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| "Cbinders (SVal v T) = {atom v}"  
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(* core haskell *)
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atom_decl var
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atom_decl tvar
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atom_decl co
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datatype sort = 
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  TY tvar
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| CO co
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nominal_datatype kind = 
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  KStar
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| KFun kind kind
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| KEq kind kind
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(* there are types, coercion types and regular types *)
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(*
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nominal_datatype ty =
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  TVar tvar
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| TFun string "ty list"
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| TAll tvar kind_raw ty --"some binding"
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| TSym ty
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| TCir ty ty
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| TApp ty ty
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| TLeft ty
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| TRight ty
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| TEq ty
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| TRightc ty
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| TLeftc ty
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| TCoe ty ty
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*)
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typedecl ty --"hack since ty is not yet defined"
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abbreviation 
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  "atoms A \<equiv> atom ` A"
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(* does not work yet
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nominal_datatype trm =
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  Var var
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| LAM tv::tvar kind_raw t::trm   bind tv in t 
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| APP trm ty
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| Lam v::var ty t::trm       bind v in t
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| App trm trm
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| Let x::var ty trm t::trm   bind x in t
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| Case trm "assoc list"
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| Cast trm ty   --"ty is supposed to be a coercion type only"
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and assoc = 
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  A p::pat t::trm bind "bv p" in t 
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and pat = 
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  K string "(tvar \<times> kind_raw) list" "(var \<times> ty) list"
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binder
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 bv :: "pat \<Rightarrow> atom set"
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where
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 "bv (K s ts vs) = (atoms (set (map fst ts))) \<union> (atoms (set (map fst vs)))"
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*)
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1312
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(*thm bv_raw.simps*)
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(* example 3 from Peter Sewell's bestiary *)
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nominal_datatype exp =
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  Var name
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| App exp exp
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| Lam x::name e::exp bind x in e
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| Let x::name p::pat e1::exp e2::exp bind x in e2, bind "bp p" in e1
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and pat =
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  PVar name
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| PUnit
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| PPair pat pat
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binder
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  bp :: "pat \<Rightarrow> atom set"
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where
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  "bp (PVar x) = {atom x}"
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| "bp (PUnit) = {}"
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| "bp (PPair p1 p2) = bp p1 \<union> bp p2"
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(* example 6 from Peter Sewell's bestiary *)
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nominal_datatype exp6 =
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  EVar name
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| EPair exp6 exp6
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| ELetRec x::name p::pat6 e1::exp6 e2::exp6 bind x in e1, bind x in e2, bind "bp6 p" in e1
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and pat6 =
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  PVar name
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| PUnit
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| PPair pat6 pat6
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binder
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  bp6 :: "pat6 \<Rightarrow> atom set"
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where
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  "bp6 (PVar x) = {atom x}"
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| "bp6 (PUnit) = {}"
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| "bp6 (PPair p1 p2) = bp6 p1 \<union> bp6 p2"
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(* example 7 from Peter Sewell's bestiary *)
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nominal_datatype exp7 =
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  EVar name
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| EUnit
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| EPair exp7 exp7
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| ELetRec l::lrbs e::exp7 bind "b7s l" in e, bind "b7s l" in l
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and lrb =
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  Assign name exp7
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and lrbs =
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  Single lrb
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| More lrb lrbs
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binder
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  b7 :: "lrb \<Rightarrow> atom set" and
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   383
  b7s :: "lrbs \<Rightarrow> atom set"
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   384
where
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   385
  "b7 (Assign x e) = {atom x}"
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   386
| "b7s (Single a) = b7 a"
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   387
| "b7s (More a as) = (b7 a) \<union> (b7s as)"
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   388
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   389
(* example 8 from Peter Sewell's bestiary *)
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   390
nominal_datatype exp8 =
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   391
  EVar name
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   392
| EUnit
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   393
| EPair exp8 exp8
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   394
| ELetRec l::lrbs8 e::exp8 bind "b_lrbs8 l" in e, bind "b_lrbs8 l" in l
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   395
and fnclause =
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   396
  K x::name p::pat8 e::exp8 bind "b_pat p" in e
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   397
and fnclauses =
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   398
  S fnclause
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   399
| ORs fnclause fnclauses
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   400
and lrb8 =
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   401
  Clause fnclauses
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   402
and lrbs8 =
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   403
  Single lrb8
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   404
| More lrb8 lrbs8
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   405
and pat8 =
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   406
  PVar name
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   407
| PUnit
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   408
| PPair pat8 pat8
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   409
binder
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   410
  b_lrbs8 :: "lrbs8 \<Rightarrow> atom set" and
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   411
  b_pat :: "pat8 \<Rightarrow> atom set" and
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   412
  b_fnclauses :: "fnclauses \<Rightarrow> atom set" and
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   413
  b_fnclause :: "fnclause \<Rightarrow> atom set" and
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   414
  b_lrb8 :: "lrb8 \<Rightarrow> atom set"
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   415
where
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   416
  "b_lrbs8 (Single l) = b_lrb8 l"
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   417
| "b_lrbs8 (More l ls) = b_lrb8 l \<union> b_lrbs8 ls"
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   418
| "b_pat (PVar x) = {atom x}"
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   419
| "b_pat (PUnit) = {}"
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   420
| "b_pat (PPair p1 p2) = b_pat p1 \<union> b_pat p2"
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   421
| "b_fnclauses (S fc) = (b_fnclause fc)"
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   422
| "b_fnclauses (ORs fc fcs) = (b_fnclause fc) \<union> (b_fnclauses fcs)"
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   423
| "b_lrb8 (Clause fcs) = (b_fnclauses fcs)"
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   424
| "b_fnclause (K x pat exp8) = {atom x}"
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   425
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   426
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   427
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   428
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   429
(* example 9 from Peter Sewell's bestiary *)
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   430
(* run out of steam at the moment *)
1265
fc8f5897b00a first attempt to make sense out of the core-haskell definition
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   431
961
0f88e04eb486 Variable takes a 'name'.
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   432
end
1223
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   433
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   434
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c179ad9d2446 declarartion of the raw datatype already works; raw binding functions throw an exception about mutual recursive types
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   435