fail -> panic
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6c56fe940c
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@ -372,7 +372,7 @@ impl Rem<BigUint, BigUint> for BigUint {
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impl Neg<BigUint> for BigUint {
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impl Neg<BigUint> for BigUint {
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#[inline]
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#[inline]
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fn neg(&self) -> BigUint { fail!() }
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fn neg(&self) -> BigUint { panic!() }
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}
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}
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impl CheckedAdd for BigUint {
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impl CheckedAdd for BigUint {
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@ -428,7 +428,7 @@ impl Integer for BigUint {
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}
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}
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fn div_mod_floor(&self, other: &BigUint) -> (BigUint, BigUint) {
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fn div_mod_floor(&self, other: &BigUint) -> (BigUint, BigUint) {
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if other.is_zero() { fail!() }
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if other.is_zero() { panic!() }
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if self.is_zero() { return (Zero::zero(), Zero::zero()); }
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if self.is_zero() { return (Zero::zero(), Zero::zero()); }
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if *other == One::one() { return ((*self).clone(), Zero::zero()); }
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if *other == One::one() { return ((*self).clone(), Zero::zero()); }
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@ -838,7 +838,7 @@ fn get_radix_base(radix: uint) -> (DoubleBigDigit, uint) {
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14 => (1475789056, 8),
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14 => (1475789056, 8),
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15 => (2562890625, 8),
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15 => (2562890625, 8),
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16 => (4294967296, 8),
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16 => (4294967296, 8),
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_ => fail!("The radix must be within (1, 16]")
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_ => panic!("The radix must be within (1, 16]")
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}
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}
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}
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}
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@ -1093,7 +1093,7 @@ impl Integer for BigInt {
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let d = BigInt::from_biguint(Plus, d_ui);
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let d = BigInt::from_biguint(Plus, d_ui);
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let r = BigInt::from_biguint(Plus, r_ui);
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let r = BigInt::from_biguint(Plus, r_ui);
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match (self.sign, other.sign) {
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match (self.sign, other.sign) {
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(_, NoSign) => fail!(),
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(_, NoSign) => panic!(),
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(Plus, Plus) | (NoSign, Plus) => ( d, r),
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(Plus, Plus) | (NoSign, Plus) => ( d, r),
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(Plus, Minus) | (NoSign, Minus) => (-d, r),
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(Plus, Minus) | (NoSign, Minus) => (-d, r),
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(Minus, Plus) => (-d, -r),
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(Minus, Plus) => (-d, -r),
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@ -1119,7 +1119,7 @@ impl Integer for BigInt {
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let d = BigInt::from_biguint(Plus, d_ui);
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let d = BigInt::from_biguint(Plus, d_ui);
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let m = BigInt::from_biguint(Plus, m_ui);
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let m = BigInt::from_biguint(Plus, m_ui);
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match (self.sign, other.sign) {
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match (self.sign, other.sign) {
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(_, NoSign) => fail!(),
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(_, NoSign) => panic!(),
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(Plus, Plus) | (NoSign, Plus) => (d, m),
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(Plus, Plus) | (NoSign, Plus) => (d, m),
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(Plus, Minus) | (NoSign, Minus) => if m.is_zero() {
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(Plus, Minus) | (NoSign, Minus) => if m.is_zero() {
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(-d, Zero::zero())
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(-d, Zero::zero())
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@ -2131,7 +2131,7 @@ mod biguint_tests {
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(10, match bits {
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(10, match bits {
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32 => "8589934593".to_string(),
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32 => "8589934593".to_string(),
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16 => "131073".to_string(),
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16 => "131073".to_string(),
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_ => fail!()
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_ => panic!()
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}),
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}),
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(16,
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(16,
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format!("2{}1", "0".repeat(bits / 4 - 1)))
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format!("2{}1", "0".repeat(bits / 4 - 1)))
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@ -2147,7 +2147,7 @@ mod biguint_tests {
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(10, match bits {
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(10, match bits {
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32 => "55340232229718589441".to_string(),
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32 => "55340232229718589441".to_string(),
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16 => "12885032961".to_string(),
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16 => "12885032961".to_string(),
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_ => fail!()
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_ => panic!()
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}),
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}),
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(16,
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(16,
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format!("3{}2{}1",
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format!("3{}2{}1",
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@ -2206,7 +2206,7 @@ mod biguint_tests {
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fn check(n: uint, s: &str) {
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fn check(n: uint, s: &str) {
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let n = factor(n);
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let n = factor(n);
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let ans = match FromStrRadix::from_str_radix(s, 10) {
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let ans = match FromStrRadix::from_str_radix(s, 10) {
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Some(x) => x, None => fail!()
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Some(x) => x, None => panic!()
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};
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};
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assert_eq!(n, ans);
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assert_eq!(n, ans);
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}
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}
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@ -54,7 +54,7 @@ impl<T: Clone + Integer + PartialOrd>
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#[inline]
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#[inline]
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pub fn new(numer: T, denom: T) -> Ratio<T> {
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pub fn new(numer: T, denom: T) -> Ratio<T> {
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if denom == Zero::zero() {
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if denom == Zero::zero() {
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fail!("denominator == 0");
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panic!("denominator == 0");
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}
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}
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let mut ret = Ratio::new_raw(numer, denom);
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let mut ret = Ratio::new_raw(numer, denom);
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ret.reduce();
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ret.reduce();
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