|  | Who Cites col? | 
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| col | Def Collection(T) == T   Prop | 
 | |  | Thm*  T:Type{i'}. Collection{i}(T)  Type{i'} | 
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| dec_lookup | Def dec_lookup(ds;x) ==  < d.typ | d  < d  ds |  d.lbl =  x >  > | 
 | |  | Thm*  ds:Collection(dec()), x:Label. dec_lookup(ds;x)  Collection(SimpleType) | 
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| sts_mng | Def [[sts]] rho ==  x:{x:SimpleType| x  sts }. [[x]] rho | 
 | |  | Thm*  sts:Collection(SimpleType), rho:Decl. [[sts]] rho  Type | 
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| col_filter | Def  < x  c | P(x) > (x) == x  c  &  P(x) | 
 | |  | Thm*  T:Type, c:Collection(T), Q:(T   Prop).  < i  c | Q(i) >  Collection(T) | 
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| col_map | Def  < f(x) | x  c > (y) ==  x:T. x  c  &  y = f(x)  T' | 
 | |  | Thm*  T,T':Type, f:(T   T'), c:Collection(T).  < f(x) | x  c >  Collection(T') | 
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| col_member | Def x  c == c(x) | 
 | |  | Thm*  T:Type, x:T, c:Collection(T). x  c  Prop | 
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| dec | Def dec() == Label  SimpleType | 
 | |  | Thm* dec()  Type | 
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| dec_mng | Def [[d]] rho == Case(d) Case x : s = >   x:[[s]] rho | 
 | |  | Thm*  rho:Decl, d:dec(). [[d]] rho  Decl | 
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| decl | Def Decl == Label   Type | 
 | |  | Thm* Decl{i}  Type{i'} | 
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| st | Def SimpleType == Tree(Label+Unit) | 
 | |  | Thm* SimpleType  Type | 
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| lbl | Def Label == {p:Pattern|  ground_ptn(p) } | 
 | |  | Thm* Label  Type | 
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| dec_typ | Def t.typ == 2of(t) | 
 | |  | Thm*  t:dec(). t.typ  SimpleType | 
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| dec_lbl | Def t.lbl == 1of(t) | 
 | |  | Thm*  t:dec(). t.lbl  Label | 
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| dbase | Def  x:y(a) == if a =  x  y else Top fi | 
 | |  | Thm*  x:Label, y:Type.  x:y  Decl | 
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| eq_lbl | Def l1 =  l2
 == Case(l1)
 Case ptn_atom(x) = > 
 Case(l2)
 Case ptn_atom(y) = > 
 x=  y  Atom
 Default = >  false  Case ptn_int(x) = > 
 Case(l2)
 Case ptn_int(y) = > 
 x=  y
 Default = >  false  Case ptn_var(x) = > 
 Case(l2)
 Case ptn_var(y) = > 
 x=  y  Atom
 Default = >  false  Case ptn_pr( < x, y > ) = > 
 Case(l2)
 Case ptn_pr( < u, v > ) = > 
 x =  u   y =  v
 Default = >  false  Default = >  false  (recursive) | 
 | |  | Thm*  l1,l2:Pattern. l1 =  l2    | 
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| assert | Def  b == if b  True else False fi | 
 | |  | Thm*  b:  . b  Prop | 
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| st_mng | Def [[s]] rho == t_iterate(st_lift(rho);  x,y. x   y;s) | 
 | |  | Thm*  rho:Decl, s:SimpleType. [[s]] rho  Type | 
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| case_mk_dec | Def Case lbl : typ = >  body(lbl;typ)(x,z) == x/x2,x1. body(x2;x1) | 
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| ground_ptn | Def ground_ptn(p)
 == Case(p)
 Case ptn_var(v) = > 
 false  Case ptn_pr( < x, y > ) = > 
 ground_ptn(x)   ground_ptn(y)
 Default = >  true  (recursive) | 
 | |  | Thm*  p:Pattern. ground_ptn(p)    | 
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| t_iterate | Def t_iterate(l;n;t)
 == Case(t)
 Case x;y = > 
 n(t_iterate(l;n;x),t_iterate(l;n;y))
 Case tree_leaf(x) = > 
 l(x)
 Default = >  True
 (recursive) | 
 | |  | Thm*  E,A:Type, l:(E   A), n:(A   A   A), t:Tree(E). t_iterate(l;n;t)  A | 
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| case | Def Case(value) body == body(value,value) | 
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| ptn | Def Pattern == rec(T.ptn_con(T)) | 
 | |  | Thm* Pattern  Type | 
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| tree | Def Tree(E) == rec(T.tree_con(E;T)) | 
 | |  | Thm*  E:Type. Tree(E)  Type | 
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| pi2 | Def 2of(t) == t.2 | 
 | |  | Thm*  A:Type, B:(A   Type), p:(a:A  B(a)). 2of(p)  B(1of(p)) | 
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| pi1 | Def 1of(t) == t.1 | 
 | |  | Thm*  A:Type, B:(A   Type), p:(a:A  B(a)). 1of(p)  A | 
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| case_default | Def Default = >  body(value,value) == body | 
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| band | Def p   q == if p  q else false  fi | 
 | |  | Thm*  p,q:  . (p   q)    | 
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| case_lbl_pair | Def Case ptn_pr( < x, y > ) = >  body(x;y) cont(x1,z)
== InjCase(x1; _. cont(z,z); x2.
 InjCase(x2; _. cont(z,z); x2@0. InjCase(x2@0; _. cont(z,z); x2@1. x2@1/x3,x2@2. body(x3;x2@2)))) | 
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| eq_atom | Def x=  y  Atom == if x=y  Atom  true  ; false  fi | 
 | |  | Thm*  x,y:Atom. x=  y  Atom    | 
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| case_ptn_var | Def Case ptn_var(x) = >  body(x) cont(x1,z)
== (  x1.inr(x2) = > 
 (  x1.inr(x2) = > 
 (  x1.inl(x2) = >  body(hd([x2 / tl(x1)])) cont(hd(x1),z))([x2 / tl(x1)])
 cont
 (hd(x1)
 ,z))
 ([x2 / tl(x1)])
 cont
 (hd(x1)
 ,z))
 ([x1]) | 
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| eq_int | Def i=  j == if i=j  true  ; false  fi | 
 | |  | Thm*  i,j:  . (i=  j)    | 
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| case_ptn_int | Def Case ptn_int(x) = >  body(x) cont(x1,z)
== (  x1.inr(x2) = > 
 (  x1.inl(x2) = >  body(hd([x2 / tl(x1)])) cont(hd(x1),z))([x2 / tl(x1)])
 cont
 (hd(x1)
 ,z))
 ([x1]) | 
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| case_ptn_atom | Def Case ptn_atom(x) = >  body(x) cont(x1,z)
== InjCase(x1; x2. body(x2); _. cont(z,z)) | 
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| st_lift | Def st_lift(rho)(x) == InjCase(x; x'. rho(x'); a. Top) | 
 | |  | Thm*  rho:(Label   Type). st_lift(rho)  (Label+Unit)   Type | 
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| top | Def Top == Void given Void | 
 | |  | Thm* Top  Type | 
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| ptn_con | Def ptn_con(T) == Atom+  +Atom+(T  T) | 
 | |  | Thm*  T:Type. ptn_con(T)  Type | 
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| tree_con | Def tree_con(E;T) == E+(T  T) | 
 | |  | Thm*  E,T:Type. tree_con(E;T)  Type | 
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| hd | Def hd(l) == Case of l; nil  "?" ; h.t  h | 
 | |  | Thm*  A:Type, l:A List. ||l||  1   hd(l)  A | 
 | |  | Thm*  A:Type, l:A List  . hd(l)  A | 
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| tl | Def tl(l) == Case of l; nil  nil ; h.t  t | 
 | |  | Thm*  A:Type, l:A List. tl(l)  A List | 
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| case_inl | Def inl(x) = >  body(x) cont(value,contvalue)
== InjCase(value; x. body(x); _. cont(contvalue,contvalue)) | 
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| case_inr | Def inr(x) = >  body(x) cont(value,contvalue)
== InjCase(value; _. cont(contvalue,contvalue); x. body(x)) | 
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| case_tree_leaf | Def Case tree_leaf(x) = >  body(x) cont(x1,z)
== InjCase(x1; x2. body(x2); _. cont(z,z)) | 
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| case_node | Def Case x;y = >  body(x;y) cont(x1,z)
== InjCase(x1; _. cont(z,z); x2. x2/x3,x2@0. body(x3;x2@0)) |