Style more consistent, replace capitalization with camel case
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@ -1,35 +1,37 @@
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type variable = string
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type p_exp =
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Main of variable * variable * c_exp (* def main with input x output y as c *)
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Main of variable * variable * c_exp
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(* def main with input x output y as c *)
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and c_exp =
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Skip
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| Assignment of variable * a_exp (* x := a *)
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| Sequence of c_exp * c_exp (* c; c *)
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| If of b_exp * c_exp * c_exp (* if b then c else c *)
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| While of b_exp * c_exp (* while b do c *)
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| For of c_exp * b_exp * c_exp * c_exp (* for (c; b; c) do c *)
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| Assignment of variable * a_exp (* x := a *)
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| Sequence of c_exp * c_exp (* c; c *)
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| If of b_exp * c_exp * c_exp (* if b then c else c *)
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| While of b_exp * c_exp (* while b do c *)
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| For of c_exp * b_exp * c_exp * c_exp
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(* for (c; b; c) do c *)
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and b_exp =
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Boolean of bool (* v *)
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| BAnd of b_exp * b_exp (* b && b *)
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| BOr of b_exp * b_exp (* b || b *)
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| BNot of b_exp (* not b *)
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| BCmp of a_exp * a_exp (* a == a *)
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| BCmpLess of a_exp * a_exp (* a < a *)
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| BCmpLessEq of a_exp * a_exp (* a <= a *)
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| BCmpGreater of a_exp * a_exp (* a > a *)
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| BCmpGreaterEq of a_exp * a_exp (* a >= a *)
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Boolean of bool (* v *)
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| BAnd of b_exp * b_exp (* b && b *)
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| BOr of b_exp * b_exp (* b || b *)
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| BNot of b_exp (* not b *)
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| BCmp of a_exp * a_exp (* a == a *)
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| BCmpLess of a_exp * a_exp (* a < a *)
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| BCmpLessEq of a_exp * a_exp (* a <= a *)
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| BCmpGreater of a_exp * a_exp (* a > a *)
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| BCmpGreaterEq of a_exp * a_exp (* a >= a *)
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and a_exp =
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Variable of variable (* x *)
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| Integer of int (* n *)
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| Plus of a_exp * a_exp (* a + a *)
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| Minus of a_exp * a_exp (* a - a *)
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| Times of a_exp * a_exp (* a * a *)
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| Division of a_exp * a_exp (* a / a *)
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| Modulo of a_exp * a_exp (* a % a *)
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| Power of a_exp * a_exp (* a ^ a *)
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| PowerMod of a_exp * a_exp * a_exp (* a ^ a % a *)
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| Rand of a_exp (* rand(0, a) *)
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Variable of variable (* x *)
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| Integer of int (* n *)
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| Plus of a_exp * a_exp (* a + a *)
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| Minus of a_exp * a_exp (* a - a *)
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| Times of a_exp * a_exp (* a * a *)
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| Division of a_exp * a_exp (* a / a *)
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| Modulo of a_exp * a_exp (* a % a *)
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| Power of a_exp * a_exp (* a ^ a *)
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| PowerMod of a_exp * a_exp * a_exp (* a ^ a % a *)
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| Rand of a_exp (* rand(0, a) *)
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val pp_p_exp : Format.formatter -> p_exp -> unit
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