#[doc = "Operations and constants for `i64`"]; const min_value: i64 = -1i64 << 63i64; const max_value: i64 = (-1i64 << 63i64) - 1i64; pure fn min(x: i64, y: i64) -> i64 { if x < y { x } else { y } } pure fn max(x: i64, y: i64) -> i64 { if x > y { x } else { y } } pure fn add(x: i64, y: i64) -> i64 { x + y } pure fn sub(x: i64, y: i64) -> i64 { x - y } pure fn mul(x: i64, y: i64) -> i64 { x * y } pure fn div(x: i64, y: i64) -> i64 { x / y } pure fn rem(x: i64, y: i64) -> i64 { x % y } pure fn lt(x: i64, y: i64) -> bool { x < y } pure fn le(x: i64, y: i64) -> bool { x <= y } pure fn eq(x: i64, y: i64) -> bool { x == y } pure fn ne(x: i64, y: i64) -> bool { x != y } pure fn ge(x: i64, y: i64) -> bool { x >= y } pure fn gt(x: i64, y: i64) -> bool { x > y } pure fn positive(x: i64) -> bool { x > 0i64 } pure fn negative(x: i64) -> bool { x < 0i64 } pure fn nonpositive(x: i64) -> bool { x <= 0i64 } pure fn nonnegative(x: i64) -> bool { x >= 0i64 } #[doc = "Iterate over the range [`lo`..`hi`)"] fn range(lo: i64, hi: i64, it: fn(i64)) { let i = lo; while i < hi { it(i); i += 1i64; } } #[doc = "Computes the bitwise complement"] fn compl(i: i64) -> i64 { u64::compl(i as u64) as i64 } #[doc = "Computes the absolute value"] fn abs(i: i64) -> i64 { if negative(i) { -i } else { i } }