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src/ranged_int@builtin@uint64.erl
-module(ranged_int@builtin@uint64).
-compile([no_auto_import, nowarn_unused_vars, nowarn_unused_function, nowarn_nomatch]).
-export([to_bigint/1, from_bigint/1, compare/2, add/2, subtract/2, multiply/2, divide/2, divide_no_zero/2, modulo/2, modulo_no_zero/2, remainder/2, remainder_no_zero/2, power/2, overflow/1, eject/1]).
-export_type([uint64/0]).
-opaque uint64() :: {uint64, bigi:big_int()}.
-spec to_bigint(uint64()) -> bigi:big_int().
to_bigint(Uint) ->
erlang:element(2, Uint).
-spec limits() -> ranged_int@interface:limits(ranged_int@interface:overflowable()).
limits() ->
Min = bigi_ffi:zero(),
_assert_subject = bigi_ffi:power(bigi_ffi:from(2), bigi_ffi:from(64)),
{ok, B64} = case _assert_subject of
{ok, _} -> _assert_subject;
_assert_fail ->
erlang:error(#{gleam_error => let_assert,
message => <<"Assertion pattern match failed"/utf8>>,
value => _assert_fail,
module => <<"ranged_int/builtin/uint64"/utf8>>,
function => <<"limits"/utf8>>,
line => 79})
end,
Max = bigi_ffi:subtract(B64, bigi_ffi:from(1)),
ranged_int@interface:overflowable_limits(Min, Max).
-spec from_bigint_unsafe(bigi:big_int()) -> uint64().
from_bigint_unsafe(Value) ->
{uint64, Value}.
-spec from_bigint(bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
from_bigint(Value) ->
ranged_int@interface:from_bigint(
Value,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0}
).
-spec compare(uint64(), uint64()) -> gleam@order:order().
compare(A, B) ->
ranged_int@interface:compare(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0}
).
-spec add(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
add(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:add/2
).
-spec subtract(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
subtract(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:subtract/2
).
-spec multiply(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
multiply(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:multiply/2
).
-spec divide(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
divide(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:divide/2
).
-spec divide_no_zero(uint64(), bigi:big_int()) -> {ok,
{ok, uint64()} | {error, ranged_int@utils:overflow()}} |
{error, nil}.
divide_no_zero(A, B) ->
ranged_int@interface:fallible_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:divide_no_zero/2
).
-spec modulo(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
modulo(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:modulo/2
).
-spec modulo_no_zero(uint64(), bigi:big_int()) -> {ok,
{ok, uint64()} | {error, ranged_int@utils:overflow()}} |
{error, nil}.
modulo_no_zero(A, B) ->
ranged_int@interface:fallible_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:modulo_no_zero/2
).
-spec remainder(uint64(), bigi:big_int()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
remainder(A, B) ->
ranged_int@interface:math_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:remainder/2
).
-spec remainder_no_zero(uint64(), bigi:big_int()) -> {ok,
{ok, uint64()} | {error, ranged_int@utils:overflow()}} |
{error, nil}.
remainder_no_zero(A, B) ->
ranged_int@interface:fallible_op(
A,
B,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:remainder_no_zero/2
).
-spec power(uint64(), ranged_int@builtin@uint:uint()) -> {ok, uint64()} |
{error, ranged_int@utils:overflow()}.
power(A, B) ->
_assert_subject = ranged_int@interface:fallible_op(
A,
ranged_int@builtin@uint:to_bigint(B),
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0},
fun bigi_ffi:power/2
),
{ok, Result} = case _assert_subject of
{ok, _} -> _assert_subject;
_assert_fail ->
erlang:error(#{gleam_error => let_assert,
message => <<"Assertion pattern match failed"/utf8>>,
value => _assert_fail,
module => <<"ranged_int/builtin/uint64"/utf8>>,
function => <<"power"/utf8>>,
line => 64})
end,
Result.
-spec overflow({ok, uint64()} | {error, ranged_int@utils:overflow()}) -> uint64().
overflow(Op) ->
ranged_int@interface:overflow(
Op,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0}
).
-spec eject({ok, uint64()} | {error, ranged_int@utils:overflow()}) -> bigi:big_int().
eject(Op) ->
ranged_int@interface:eject(
Op,
{interface, fun to_bigint/1, fun from_bigint_unsafe/1, fun limits/0}
).