Imports name this capability’s declared dependencies, which fune builds next to it in your project; each one links to its page.
use super::funejson::Value; ← the fune runtime: the JSON value the test vectors use; fune build keeps it only where a signature takes one
const MAX_SAFE: i64 = 9_007_199_254_740_991;
fn check_safe(name: &str, value: i64) {
// i64 could go further, but TypeScript cannot, and the three languages
// must give the same answer or the same error.
if !(-MAX_SAFE..=MAX_SAFE).contains(&value) {
panic!("{} is outside the safe integer range (±9007199254740991)", name);
}
}
/// Euclid's algorithm on wide integers. Never negative; `gcd_wide(0, 0)` is 0.
pub fn gcd_wide(a: i128, b: i128) -> i128 {
let mut x = a.abs();
let mut y = b.abs();
while y != 0 {
let r = x % y;
x = y;
y = r;
}
x
}
/// # Panics
/// Panics if either input is outside ±(2^53 - 1).
pub fn gcd(a: i64, b: i64) -> i64 {
check_safe("a", a);
check_safe("b", b);
gcd_wide(a as i128, b as i128) as i64
}
/// # Panics
/// Panics if either input is outside ±(2^53 - 1), or the lcm is.
pub fn lcm(a: i64, b: i64) -> i64 {
let g = gcd(a, b);
if g == 0 {
return 0;
}
// Divide before multiplying: a * b overflows long before the lcm does.
let result = (a as i128).abs() / (g as i128) * (b as i128).abs();
if result > MAX_SAFE as i128 {
panic!("the lcm of {} and {} exceeds 2^53 - 1", a, b);
}
result as i64
}
/// Greatest common divisor and least common multiple of two integers.
///
/// Both are returned together because a caller needing one nearly always
/// needs the other (common denominators, repeating schedules).
///
/// # Panics
/// Panics if either input is outside ±(2^53 - 1), or the lcm is.
pub fn gcd_lcm(a: i64, b: i64) -> GcdLcm {
GcdLcm {
gcd: gcd(a, b),
lcm: lcm(a, b),
}
}
pub fn gcd_lcm_to_value(result: &GcdLcm) -> Value {
Value::obj(vec![
("gcd", Value::Int(result.gcd)),
("lcm", Value::Int(result.lcm)),
])
}
pub fn fune_vector(args: &[Value]) -> Value {
// Refuse what the typed signature cannot hold, with the wording TypeScript
// and Python use, rather than let the conversion below quietly change it.
if let Value::Float(f) = args[0] {
if f.fract() != 0.0 {
panic!("a must be an integer, received {}", f);
}
}
if let Value::Float(f) = args[1] {
if f.fract() != 0.0 {
panic!("b must be an integer, received {}", f);
}
}
gcd_lcm_to_value(&gcd_lcm(args[0].as_i64(), args[1].as_i64()))
}