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QCaml/Utils/Coordinate.ml

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type bohr
type angstrom
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type xyz = {
x : float ;
y : float ;
z : float ;
}
type 'a point = xyz
type t = bohr point
external make : 'a point -> t = "%identity"
external make_angstrom : 'a point -> angstrom point = "%identity"
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type axis = X | Y | Z
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let a_to_b a = Constants.a0_inv *. a
let b_to_a b = Constants.a0 *. b
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let bohr_to_angstrom { x ; y ; z } =
make
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{
x = b_to_a x ;
y = b_to_a y ;
z = b_to_a z ;
}
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let angstrom_to_bohr { x ; y ; z } =
make
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{
x = a_to_b x ;
y = a_to_b y ;
z = a_to_b z ;
}
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let zero =
make { x = 0. ; y = 0. ; z = 0. }
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(** Linear algebra *)
let ( |. ) s { x ; y ; z } =
make {
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x = s *. x ;
y = s *. y ;
z = s *. z ;
}
let ( |+ ) { x = x1 ; y = y1 ; z = z1 } { x = x2 ; y = y2 ; z = z2 } =
make {
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x = x1 +. x2 ;
y = y1 +. y2 ;
z = z1 +. z2 ;
}
let ( |- ) { x = x1 ; y = y1 ; z = z1 } { x = x2 ; y = y2 ; z = z2 } =
make {
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x = x1 -. x2 ;
y = y1 -. y2 ;
z = z1 -. z2 ;
}
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let neg a = -1. |. a
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let dot { x = x1 ; y = y1 ; z = z1 } { x = x2 ; y = y2 ; z = z2 } =
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x1 *. x2 +. y1 *. y2 +. z1 *. z2
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let norm u =
sqrt ( dot u u )
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let get axis { x ; y ; z } =
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match axis with
| X -> x
| Y -> y
| Z -> z
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open Format
let pp ppf c =
fprintf ppf "@[@[%8.4f@] @[%8.4f@] @[%8.4f@]@]" c.x c.y c.z
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let pp_bohr ppf c =
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fprintf ppf "@[(@[%10f@], @[%10f@], @[%10f@] Bohr)@]" c.x c.y c.z
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let pp_angstrom ppf c =
let c = bohr_to_angstrom c in
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fprintf ppf "@[(@[%10f@], @[%10f@], @[%10f@] Angs)@]" c.x c.y c.z