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quantum_package/ocaml/qptypes_generator.ml

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open Core.Std;;
let input_data = "
* Positive_float : float
assert (x >= 0.) ;
* Strictly_positive_float : float
assert (x > 0.) ;
* Negative_float : float
assert (x <= 0.) ;
* Strictly_negative_float : float
assert (x < 0.) ;
* Positive_int : int
assert (x >= 0) ;
* Strictly_positive_int : int
assert (x > 0) ;
* Negative_int : int
assert (x <= 0) ;
* Strictly_negative_int : int
assert (x < 0) ;
* Non_empty_string : string
assert (x <> \"\") ;
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* Atom_number : int
assert (x > 0) ;
if (x > 1000) then
warning \"More than 1000 atoms\";
if (Ezfio.has_nuclei_nucl_num ()) then
assert (x <= (Ezfio.get_nuclei_nucl_num ()));
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* MO_number : int
assert (x > 0) ;
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if (x > 1000) then
warning \"More than 1000 MOs\";
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if (Ezfio.has_mo_basis_mo_tot_num ()) then
assert (x <= (Ezfio.get_mo_basis_mo_tot_num ()));
* AO_number : int
assert (x > 0) ;
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if (x > 1000) then
warning \"More than 1000 AOs\";
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if (Ezfio.has_ao_basis_ao_num ()) then
assert (x <= (Ezfio.get_ao_basis_ao_num ()));
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* Nucl_number : int
assert (x > 0) ;
if (x > 1000) then
warning \"More than 1000 Atoms\";
if (Ezfio.has_nuclei_nucl_num ()) then
assert (x <= (Ezfio.get_nuclei_nucl_num ()));
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* N_int_number : int
assert (x > 0) ;
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if (x > 100) then
warning \"N_int > 100\";
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if (Ezfio.has_determinants_n_int ()) then
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assert (x = (Ezfio.get_determinants_n_int ()));
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* Det_number : int
assert (x > 0) ;
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if (x > 100000000) then
warning \"More than 100 million determinants\";
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if (Ezfio.has_determinants_det_num ()) then
assert (x <= (Ezfio.get_determinants_det_num ()));
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* Bit_kind_size : int
begin match x with
| 8 | 16 | 32 | 64 -> ()
| _ -> raise (Failure \"Bit_kind_size should be (8|16|32|64).\")
end;
* Bit_kind : int
begin match x with
| 1 | 2 | 4 | 8 -> ()
| _ -> raise (Failure \"Bit_kind should be (1|2|4|8).\")
end;
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* MO_coef : float
* AO_coef : float
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"
;;
let template = format_of_string "
module %s : sig
type t
val to_%s : t -> %s
val of_%s : %s -> t
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val to_string : t -> string
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end = struct
type t = %s
let to_%s x = x
let of_%s x = ( %s x )
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let to_string x = %s.to_string x
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end
"
;;
let parse_input input=
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print_string "open Core.Std;;\nlet warning = print_string;;\n" ;
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let rec parse result = function
| [] -> result
| ( "" , "" )::tail -> parse result tail
| ( t , text )::tail ->
let name , typ = String.lsplit2_exn ~on:':' t
in
let typ = String.strip typ
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and name = String.strip name in
let typ_cap = String.capitalize typ in
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let newstring = Printf.sprintf template name typ typ typ typ typ typ typ
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( String.strip text ) typ_cap
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in
List.rev (parse (newstring::result) tail )
in
String.split ~on:'*' input
|> List.map ~f:(String.lsplit2_exn ~on:'\n')
|> parse []
|> String.concat
|> print_string
;;
let () = parse_input input_data;;