Generate random big integers within a range
Thanks to @huonw for feedback
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@ -697,6 +697,13 @@ fn shr_bits(&self, n_bits: uint) -> BigUint {
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}
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return BigUint::new(shifted);
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}
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/// Determines the fewest bits necessary to express the BigUint.
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pub fn bits(&self) -> uint {
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if self.is_zero() { return 0; }
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let zeros = self.data.last().leading_zeros();
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return self.data.len()*BigDigit::bits - (zeros as uint);
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}
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}
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#[cfg(target_word_size = "64")]
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@ -1115,10 +1122,23 @@ trait RandBigInt {
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/// Generate a random BigInt of the given bit size.
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fn gen_bigint(&mut self, bit_size: uint) -> BigInt;
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/// Generate a random BigUint less than the given bound. Fails
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/// when the bound is zero.
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fn gen_biguint_below(&mut self, bound: &BigUint) -> BigUint;
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/// Generate a random BigUint within the given range. The lower
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/// bound is inclusive; the upper bound is exclusive. Fails when
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/// the upper bound is not greater than the lower bound.
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fn gen_biguint_range(&mut self, lbound: &BigUint, ubound: &BigUint) -> BigUint;
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/// Generate a random BigInt within the given range. The lower
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/// bound is inclusive; the upper bound is exclusive. Fails when
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/// the upper bound is not greater than the lower bound.
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fn gen_bigint_range(&mut self, lbound: &BigInt, ubound: &BigInt) -> BigInt;
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}
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impl<R: Rng> RandBigInt for R {
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/// Generate a random BigUint of the given bit size.
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fn gen_biguint(&mut self, bit_size: uint) -> BigUint {
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let (digits, rem) = bit_size.div_rem(&BigDigit::bits);
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let mut data = vec::with_capacity(digits+1);
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@ -1132,7 +1152,6 @@ fn gen_biguint(&mut self, bit_size: uint) -> BigUint {
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return BigUint::new(data);
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}
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/// Generate a random BigInt of the given bit size.
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fn gen_bigint(&mut self, bit_size: uint) -> BigInt {
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// Generate a random BigUint...
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let biguint = self.gen_biguint(bit_size);
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@ -1154,6 +1173,32 @@ fn gen_bigint(&mut self, bit_size: uint) -> BigInt {
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};
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return BigInt::from_biguint(sign, biguint);
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}
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fn gen_biguint_below(&mut self, bound: &BigUint) -> BigUint {
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assert!(!bound.is_zero());
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let bits = bound.bits();
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loop {
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let n = self.gen_biguint(bits);
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if n < *bound { return n; }
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}
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}
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fn gen_biguint_range(&mut self,
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lbound: &BigUint,
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ubound: &BigUint)
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-> BigUint {
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assert!(*lbound < *ubound);
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return *lbound + self.gen_biguint_below(&(*ubound - *lbound));
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}
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fn gen_bigint_range(&mut self,
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lbound: &BigInt,
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ubound: &BigInt)
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-> BigInt {
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assert!(*lbound < *ubound);
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let delta = (*ubound - *lbound).to_biguint();
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return *lbound + self.gen_biguint_below(&delta).to_bigint();
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}
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}
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impl BigInt {
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@ -1780,12 +1825,63 @@ fn check(n: uint, s: &str) {
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check(30, "265252859812191058636308480000000");
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}
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#[test]
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fn test_bits() {
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assert_eq!(BigUint::new(~[0,0,0,0]).bits(), 0);
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assert_eq!(BigUint::from_uint(0).bits(), 0);
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assert_eq!(BigUint::from_uint(1).bits(), 1);
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assert_eq!(BigUint::from_uint(3).bits(), 2);
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let n: BigUint = FromStrRadix::from_str_radix("4000000000", 16).unwrap();
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assert_eq!(n.bits(), 39);
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let one: BigUint = One::one();
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assert_eq!((one << 426).bits(), 427);
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}
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#[test]
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fn test_rand() {
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let mut rng = task_rng();
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let _n: BigUint = rng.gen_biguint(137);
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assert!(rng.gen_biguint(0).is_zero());
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}
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#[test]
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fn test_rand_range() {
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let mut rng = task_rng();
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do 10.times {
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assert_eq!(rng.gen_bigint_range(&BigInt::from_uint(236),
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&BigInt::from_uint(237)),
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BigInt::from_uint(236));
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}
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let l = BigUint::from_uint(403469000 + 2352);
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let u = BigUint::from_uint(403469000 + 3513);
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do 1000.times {
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let n: BigUint = rng.gen_biguint_below(&u);
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assert!(n < u);
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let n: BigUint = rng.gen_biguint_range(&l, &u);
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assert!(n >= l);
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assert!(n < u);
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}
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}
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#[test]
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#[should_fail]
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fn test_zero_rand_range() {
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task_rng().gen_biguint_range(&BigUint::from_uint(54),
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&BigUint::from_uint(54));
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}
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#[test]
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#[should_fail]
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fn test_negative_rand_range() {
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let mut rng = task_rng();
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let l = BigUint::from_uint(2352);
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let u = BigUint::from_uint(3513);
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// Switching u and l should fail:
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let _n: BigUint = rng.gen_biguint_range(&u, &l);
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}
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}
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#[cfg(test)]
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@ -2237,6 +2333,48 @@ fn test_rand() {
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let _n: BigInt = rng.gen_bigint(137);
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assert!(rng.gen_bigint(0).is_zero());
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}
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#[test]
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fn test_rand_range() {
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let mut rng = task_rng();
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do 10.times {
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assert_eq!(rng.gen_bigint_range(&BigInt::from_uint(236),
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&BigInt::from_uint(237)),
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BigInt::from_uint(236));
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}
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fn check(l: BigInt, u: BigInt) {
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let mut rng = task_rng();
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do 1000.times {
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let n: BigInt = rng.gen_bigint_range(&l, &u);
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assert!(n >= l);
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assert!(n < u);
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}
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}
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let l = BigInt::from_uint(403469000 + 2352);
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let u = BigInt::from_uint(403469000 + 3513);
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check( l.clone(), u.clone());
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check(-l.clone(), u.clone());
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check(-u.clone(), -l.clone());
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}
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#[test]
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#[should_fail]
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fn test_zero_rand_range() {
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task_rng().gen_bigint_range(&IntConvertible::from_int(54),
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&IntConvertible::from_int(54));
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}
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#[test]
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#[should_fail]
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fn test_negative_rand_range() {
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let mut rng = task_rng();
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let l = BigInt::from_uint(2352);
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let u = BigInt::from_uint(3513);
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// Switching u and l should fail:
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let _n: BigInt = rng.gen_bigint_range(&u, &l);
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}
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}
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#[cfg(test)]
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