use crate::test_util::common::rug_float_significant_bits;
use core::cmp::Ordering;
use malachite_base::num::basic::traits::One;
use malachite_base::num::conversion::traits::ExactFrom;
use malachite_base::num::logic::traits::SignificantBits;
use malachite_q::Rational;
use rug::float::Round;
use rug::ops::AssignRound;
pub fn rug_acosh_prec_round(x: &rug::Float, prec: u64, rm: Round) -> (rug::Float, Ordering) {
let mut c = rug::Float::with_val(u32::exact_from(prec), 0);
let o = c.assign_round(x.acosh_ref(), rm);
(c, o)
}
pub fn rug_acosh_prec(x: &rug::Float, prec: u64) -> (rug::Float, Ordering) {
rug_acosh_prec_round(x, prec, Round::Nearest)
}
pub fn rug_acosh_round(x: &rug::Float, rm: Round) -> (rug::Float, Ordering) {
rug_acosh_prec_round(x, rug_float_significant_bits(x), rm)
}
pub fn rug_acosh(x: &rug::Float) -> rug::Float {
rug_acosh_prec_round(x, rug_float_significant_bits(x), Round::Nearest).0
}
pub fn rug_acosh_rational_prec_round(x: &Rational, prec: u64, rm: Round) -> (rug::Float, Ordering) {
let t = x - Rational::ONE;
let exponent_bits = if t <= 0u32 {
0
} else {
t.floor_log_base_2_abs().unsigned_abs()
};
let denominator_bits = x.denominator_ref().significant_bits();
let rx = rug::Float::with_val(
u32::exact_from(prec + 128 + exponent_bits + denominator_bits),
rug::Rational::exact_from(x),
);
let mut c = rug::Float::with_val(u32::exact_from(prec), 0);
let o = c.assign_round(rx.acosh_ref(), rm);
(c, o)
}
pub fn rug_acosh_rational_prec(x: &Rational, prec: u64) -> (rug::Float, Ordering) {
rug_acosh_rational_prec_round(x, prec, Round::Nearest)
}