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https://github.com/LCPQ/quantum_package
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Added GTOs in Ocaml
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7c8a66c6e9
commit
256efa75b8
19
ocaml/Makefile
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19
ocaml/Makefile
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@ -0,0 +1,19 @@
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LIBS=
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PKGS=
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OCAMLCFLAGS=-g
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OCAMLBUILD=ocamlbuild -cflags $(OCAMLCFLAGS) -lflags -g
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test_elements.byte:
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%.inferred.mli: $(wildcard *.ml)
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$(OCAMLBUILD) $*.inferred.mli -cflags -i -use-ocamlfind $(PKGS)
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%.byte: $(wildcard *.ml) $(wildcard *.mli)
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$(OCAMLBUILD) $*.byte -use-ocamlfind $(PKGS)
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%.native: $(wildcard *.ml) $(wildcard *.mli)
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$(OCAMLBUILD) $*.native -use-ocamlfind $(PKGS)
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clean:
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rm -rf _build
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3
ocaml/_tags
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3
ocaml/_tags
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true: package(core)
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true: thread
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@ -1,4 +1,7 @@
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exception ElementError of string
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type t =
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|X
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|H |He
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|Li|Be |B |C |N |O |F |Ne
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|Na|Mg |Al|Si|P |S |Cl|Ar
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@ -6,6 +9,7 @@ type t =
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;;
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let of_string = function
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| "X" | "Dummy" -> X
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| "H" | "Hydrogen" -> H
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| "He" | "Helium" -> He
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| "Li" | "Lithium" -> Li
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@ -42,9 +46,11 @@ let of_string = function
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| "Se" | "Selenium" -> Se
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| "Br" | "Bromine" -> Br
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| "Kr" | "Krypton" -> Kr
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| x -> raise (ElementError ("Atom "^x^" unknown"))
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;;
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let to_string = function
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| X -> "X"
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| H -> "H"
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| He -> "He"
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| Li -> "Li"
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@ -84,6 +90,7 @@ let to_string = function
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;;
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let to_long_string = function
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| X -> "Dummy"
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| H -> "Hydrogen"
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| He -> "Helium"
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| Li -> "Lithium"
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@ -121,3 +128,44 @@ let to_long_string = function
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| Br -> "Bromine"
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| Kr -> "Krypton"
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;;
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let charge = function
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| X -> 0
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| H -> 1
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| He -> 2
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| Li -> 3
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| Be -> 4
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| B -> 5
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| C -> 6
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| N -> 7
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| O -> 8
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| F -> 9
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| Ne -> 10
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| Na -> 11
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| Mg -> 12
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| Al -> 13
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| Si -> 14
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| P -> 15
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| S -> 16
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| Cl -> 17
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| Ar -> 18
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| K -> 19
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| Ca -> 20
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| Sc -> 21
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| Ti -> 22
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| V -> 23
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| Cr -> 24
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| Mn -> 25
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| Fe -> 26
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| Co -> 27
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| Ni -> 28
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| Cu -> 29
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| Zn -> 30
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| Ga -> 31
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| Ge -> 32
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| As -> 33
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| Se -> 34
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| Br -> 35
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| Kr -> 36
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;;
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71
ocaml/gto.ml
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71
ocaml/gto.ml
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@ -0,0 +1,71 @@
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open Core.Std;;
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open Qptypes;;
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exception GTO_Read_Failure of string
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type t =
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{ sym : Symmetry.t ;
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lc : ((Primitive.t * float) list)
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}
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;;
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let of_prim_coef_list pc =
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let (p,c) = List.hd_exn pc in
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let sym = p.Primitive.sym in
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let rec check = function
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| [] -> `OK
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| (p,c)::tl ->
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if p.Primitive.sym <> sym then
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`Failed
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else
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check tl
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in
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match check pc with
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| `Failed -> raise (Failure "Failed in of_prim_coef_list")
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| `OK ->
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{ sym = sym ;
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lc = pc
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}
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;;
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let read_one in_channel =
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(* Fetch number of lines to read on first line *)
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let buffer = input_line in_channel in
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let sym_str = String.sub buffer 0 2 in
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let n_str = String.sub buffer 2 ((String.length buffer)-2) in
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let sym = Symmetry.of_string (String.strip sym_str) in
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let n = Int.of_string (String.strip n_str) in
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(* Read all the primitives *)
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let rec read_lines result = function
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| 0 -> result
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| i ->
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begin
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let line_buffer = input_line in_channel in
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let buffer = line_buffer
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|> String.split ~on:' '
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|> List.filter ~f:(fun x -> x <> "")
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in
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match buffer with
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| [ j ; expo ; coef ] ->
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begin
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let p = { Primitive.sym = sym ;
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Primitive.expo = Positive_float.of_float
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(Float.of_string expo)
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}
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and c = Float.of_string coef in
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read_lines ( (p,c)::result) (i-1)
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end
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| _ -> raise (GTO_Read_Failure line_buffer)
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end
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in read_lines [] n
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|> of_prim_coef_list
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;;
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let to_string { sym = sym ; lc = lc } =
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let f (p,c) = Printf.sprintf "( %s, %f )" (Primitive.to_string p) c
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in
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Printf.sprintf "[ %s : %s ]" (Symmetry.to_string sym)
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(String.concat (List.map ~f:f lc) ?sep:(Some ", "))
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;;
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15
ocaml/primitive.ml
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15
ocaml/primitive.ml
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open Qptypes;;
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open Core.Std;;
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type t =
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{ sym : Symmetry.t ;
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expo : Positive_float.t ;
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}
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let to_string p =
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let { sym = s ; expo = e } = p in
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Printf.sprintf "(%s, %f)"
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(Symmetry.to_string s)
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(Positive_float.to_float e)
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;;
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105
ocaml/qptypes.ml
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105
ocaml/qptypes.ml
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module Positive_float : sig
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type t
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val to_float : t -> float
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val of_float : float -> t
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end = struct
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type t = float
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let to_float x = x
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let of_float x = ( assert (x > 0.) ; x )
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end
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module Strictly_positive_float : sig
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type t
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val to_float : t ->float
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val of_float : float -> t
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end = struct
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type t =float
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let to_float x = x
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let of_float x = ( assert (x >= 0.) ; x )
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end
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module Positive_int : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x > 0) ; x )
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end
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module Strictly_positive_int : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x >= 0) ; x )
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end
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module Non_empty_string : sig
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type t
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val to_string : t -> string
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val of_string : string -> t
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end = struct
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type t = string
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let to_string x = x
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let of_string x = ( assert (x <> "") ; x )
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end
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(*
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module MO_number : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x > 0) ;
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if (Ezfio.has_mo_basis_mo_tot_num ()) then
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assert (x <= (Ezfio.get_mo_basis_mo_tot_num ())); x )
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end
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module AO_number : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x > 0) ;
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if (Ezfio.has_ao_basis_ao_num ()) then
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assert (x <= (Ezfio.get_ao_basis_ao_num ())); x )
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end
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module N_int_number : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x > 0) ;
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if (Ezfio.has_determinants_n_int ()) then
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assert (x == (Ezfio.get_determinants_n_int ())); x )
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end
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module Det_number : sig
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type t
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val to_int : t -> int
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val of_int : int -> t
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end = struct
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type t = int
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let to_int x = x
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let of_int x = ( assert (x > 0) ;
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if (Ezfio.has_determinants_det_num ()) then
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assert (x <= (Ezfio.get_determinants_det_num ())); x )
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end
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*)
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40
ocaml/symmetry.ml
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40
ocaml/symmetry.ml
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type t = S|P|D|F|G|H|I|J|K|L
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let to_string = function
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| S -> "S"
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| P -> "P"
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| D -> "D"
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| F -> "F"
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| G -> "G"
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| H -> "H"
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| I -> "I"
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| J -> "J"
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| K -> "K"
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| L -> "L"
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let of_string = function
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| "S" -> S
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| "P" -> P
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| "D" -> D
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| "F" -> F
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| "G" -> G
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| "H" -> H
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| "I" -> I
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| "J" -> J
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| "K" -> K
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| "L" -> L
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| x -> raise (Failure ("Symmetry should be S|P|D|F|G|H|I|J|K|L,
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not "^x^"."))
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let of_char = function
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| 'S' -> S
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| 'P' -> P
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| 'D' -> D
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| 'F' -> F
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| 'G' -> G
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| 'H' -> H
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| 'I' -> I
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| 'J' -> J
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| 'K' -> K
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| 'L' -> L
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| x -> raise (Failure ("Symmetry should be S|P|D|F|G|H|I|J|K|L"))
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6
ocaml/test_elements.ml
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6
ocaml/test_elements.ml
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let test_module () =
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let atom = Elements.of_string "Cobalt" in
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Printf.printf "%s %d\n" (Elements.to_string atom) (Elements.charge atom)
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;;
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test_module ();;
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25
ocaml/test_gto.ml
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25
ocaml/test_gto.ml
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open Core.Std;;
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open Qptypes;;
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let test_prim () =
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let p =
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{ Primitive.sym = Symmetry.P ;
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Primitive.expo = Positive_float.of_float 0.15} in
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Primitive.to_string p
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|> print_string
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;;
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let test_gto () =
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let in_channel = open_in "/home/scemama/quantum_package/data/basis/cc-pVDZ" in
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ignore (input_line in_channel);
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let gto = Gto.read_one in_channel in
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print_string (Gto.to_string gto);
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let gto = Gto.read_one in_channel in
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print_string (Gto.to_string gto);
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;;
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let test_module () =
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test_gto()
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;;
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test_module ();;
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