mte/src/amount.ml

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(* TODO
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have a currency agnostic amount_lib.ml
and specialize amount.ml to Config.currency??
have safe amount arithmetic *)
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open Syntax
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type sign =
| Sign_plus
| Sign_minus
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type t = {
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sign: sign option;
currency: string;
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value: Int64.t;
fraction: Int32.t;
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}
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let maximum_currency_length = 11
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let value_upper_bound = Int64.of_float @@ Float.pow 2. 52.
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let fraction_max_number_of_digits = 8
(* TODO choose to either include or exclude upper limit for all bounds
need a -1 here *)
let fraction_upper_bound =
Int32.of_float @@ Float.pow 10. (Int.to_float fraction_max_number_of_digits)
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let is_letter = function 'a' .. 'z' | 'A' .. 'Z' -> true | _ -> false
let is_digit = function '0' .. '9' -> true | _ -> false
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let check_currency s =
if not @@ String.for_all is_letter s then
Error "currency contains forbidden character"
else
let len = String.length s in
if len = 0 then Error "currency is empty string"
else if len > maximum_currency_length then
Fmt.error "currency is more than %d characters long"
maximum_currency_length
else Ok ()
let check_value v =
if Int64.unsigned_compare v value_upper_bound > 0 then
Error "value is greater than 2^52"
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else Ok ()
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let check_fraction v =
if Int32.unsigned_compare v fraction_upper_bound > 0 then
Fmt.error "fraction has more than %d digits" fraction_max_number_of_digits
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else Ok ()
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let make ~sign ~currency ~value ~fraction =
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let* () = check_currency currency in
let* () = check_value value in
let* () = check_fraction fraction in
let currency = String.uppercase_ascii currency in
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Ok { sign; currency; value; fraction }
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(*
let config_currency =
match check_currency Config.currency with
| Error e -> Fmt.failwith "Invalid currency name configuration: %s@." e
| Ok () -> String.uppercase_ascii Config.currency
let make_config_currency ~value ~fraction =
let* () = check_value value in
let* () = check_fraction fraction in
Ok { sign= None; currency= config_currency; value; fraction }
*)
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open Angstrom
let letters = take_while1 is_letter
let digits = take_while1 is_digit
let sign =
choice
[
char '+' *> return (Some Sign_plus);
char '-' *> return (Some Sign_minus);
return None;
]
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let value =
digits >>= fun s ->
match Int64.of_string_opt s with
| None -> fail "not a valid int64"
| Some n -> return n
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let fraction =
digits >>= fun s ->
let len = String.length s in
match len <= fraction_max_number_of_digits with
| false ->
fail
(Fmt.str "fraction has more than %d digits"
fraction_max_number_of_digits)
| true -> (
match Int32.of_string_opt s with
| None -> fail "not a valid int32"
| Some n ->
let magnitude =
let exp = Int.to_float (fraction_max_number_of_digits - len) in
Int32.of_float @@ Float.pow 10. exp
in
let n = Int32.mul n magnitude in
return n)
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let amount =
lift4
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(fun sign currency value fraction -> make ~sign ~currency ~value ~fraction)
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sign letters
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(char ':' *> value)
(option 0_l (char '.' *> fraction))
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<* end_of_input
let of_string s = parse_string ~consume:Consume.All amount s |> Result.join
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let pp =
let open Fmt in
let pp_sign ppf = function
| Sign_plus -> char ppf '+'
| Sign_minus -> char ppf '-'
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in
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fun ppf { sign; currency; value; fraction } ->
(* TODO
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depends on the currency's number of fraction digits *)
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pf ppf "%a%s:%Lu.%0*lu" (Fmt.option pp_sign) sign currency value
fraction_max_number_of_digits fraction
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let to_string = Fmt.str "%a" pp
(* - *)
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let jsont = Jsont.of_of_string ~kind:"Amount" of_string ~enc:to_string
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let currency_length = 12
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let pad_currency_string s =
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let len = String.length s in
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assert (len < currency_length);
let b = Bytes.make currency_length '\x00' in
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Bytes.blit_string s 0 b 0 len;
Bytes.to_string b
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(* binary decoding unused? *)
let make_exn value fraction currency =
match make ~sign:None ~currency ~value ~fraction with
| Error _ -> Fmt.failwith "Amount of binary data failure"
| Ok v -> v
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let bin =
let open Bin in
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record make_exn
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|+ field beint64 (fun t -> t.value)
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|+ field beint32 (fun t -> Int32.mul t.fraction 1_000_000_l)
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|+ field (bytes currency_length) (fun t -> pad_currency_string t.currency)
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|> sealr