38 lines
1.2 KiB
Text
38 lines
1.2 KiB
Text
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variable vec : Nat → Type
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variable concat {n m : Nat} (v : vec n) (w : vec m) : vec (n + m)
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infixl 65 ; : concat
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axiom concat_assoc {n1 n2 n3 : Nat} (v1 : vec n1) (v2 : vec n2) (v3 : vec n3) :
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(v1 ; v2) ; v3 = cast (congr2 vec (symm (Nat::add_assoc n1 n2 n3)))
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(v1 ; (v2 ; v3))
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variable empty : vec 0
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axiom concat_empty {n : Nat} (v : vec n) :
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v ; empty = cast (congr2 vec (symm (Nat::add_zeror n)))
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v
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rewrite_set simple
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add_rewrite Nat::add_assoc Nat::add_zeror eq_id : simple
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add_rewrite concat_assoc concat_empty Nat::add_assoc Nat::add_zeror : simple
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(*
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local opts = options({"simplifier", "heq"}, true)
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local t = parse_lean('∀ (n : Nat) (v : vec (n + 0)) (w : vec n), v = w ; empty')
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print(t)
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local t2, pr = simplify(t, "simple", heq)
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print("====>")
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print(t2)
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get_environment():type_check(pr)
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*)
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print "STEP 1"
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print "STEP 2"
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(*
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local opts = options({"simplifier", "heq"}, true)
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local t = parse_lean('λ n : Nat, ∃ (v : vec (n + 0)) (w : vec n), v ≠ w ; empty')
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print(t)
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local t2, pr = simplify(t, "simple", opts)
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print("====>")
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print(t2)
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get_environment():type_check(pr)
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*)
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