Remove integration test from code coverage
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@ -1,10 +1,10 @@
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#![cfg_attr(tarpaulin, skip)]
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#[cfg_attr(tarpaulin, skip)]
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mod tests {
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use rusty_numbers::frac;
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use rusty_numbers::rational::Frac;
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use rusty_numbers::frac;
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use rusty_numbers::rational::Frac;
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#[test]
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fn mul_test() {
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#[test]
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fn mul_test() {
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let frac1 = frac!(1 / 3u8);
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let frac2 = frac!(2u8 / 3);
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@ -13,65 +13,65 @@ fn mul_test() {
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assert_eq!(frac1 * frac2, expected);
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assert_eq!(frac!(0), frac!(0) * frac!(5 / 8));
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}
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}
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#[test]
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fn div_test() {
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#[test]
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fn div_test() {
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assert_eq!(frac!(1), frac!(1 / 3) / frac!(1 / 3));
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assert_eq!(frac!(1 / 9), frac!(1 / 3) / frac!(3));
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}
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}
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#[test]
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fn add_test() {
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#[test]
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fn add_test() {
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assert_eq!(frac!(5 / 8), frac!(5 / 8) + frac!(0));
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assert_eq!(frac!(5 / 6), frac!(1 / 3) + frac!(1 / 2), "1/3 + 1/2");
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assert_eq!(frac!(1 / 3), frac!(2 / 3) + -frac!(1 / 3), "2/3 + -1/3");
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}
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}
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#[test]
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fn sub_test() {
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#[test]
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fn sub_test() {
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assert_eq!(frac!(5 / 8), frac!(5 / 8) - frac!(0));
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assert_eq!(frac!(1 / 6), frac!(1 / 2) - frac!(1 / 3), "1/2 - 1/3");
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}
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}
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#[test]
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fn cmp_test() {
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#[test]
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fn cmp_test() {
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assert!(frac!(1 / 2) <= frac!(1 / 2));
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assert!(frac!(0) < frac!(1));
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assert!(-frac!(5 / 3) < frac!(1 / 10_000));
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assert!(frac!(1 / 10_000) > -frac!(10));
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assert!(frac!(1 / 3) < frac!(1 / 2));
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assert_eq!(frac!(1 / 2), frac!(3 / 6));
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}
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}
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#[test]
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fn negative_fractions() {
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#[test]
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fn negative_fractions() {
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assert_eq!(-frac!(1 / 3), -frac!(2 / 3) + frac!(1 / 3), "-2/3 + 1/3");
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assert_eq!(frac!(1), frac!(1 / 3) - -frac!(2 / 3), "1/3 - -2/3");
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assert_eq!(-frac!(1), -frac!(2 / 3) - frac!(1 / 3), "-2/3 - +1/3");
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assert_eq!(-frac!(1), -frac!(2 / 3) + -frac!(1 / 3), "-2/3 + -1/3");
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}
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}
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#[test]
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fn negative_mul_div() {
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#[test]
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fn negative_mul_div() {
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assert_eq!(-frac!(1 / 12), -frac!(1 / 3) * frac!(1 / 4));
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assert_eq!(-frac!(1 / 12), frac!(1 / 3) * -frac!(1 / 4));
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assert_eq!(frac!(1 / 12), -frac!(1 / 3) * -frac!(1 / 4));
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}
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}
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#[test]
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#[should_panic(expected = "Fraction can not have a zero denominator")]
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fn zero_denom() {
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#[test]
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#[should_panic(expected = "Fraction can not have a zero denominator")]
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fn zero_denom() {
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frac!(1 / 0);
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}
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}
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#[test]
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fn fraction_reducing() {
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#[test]
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fn fraction_reducing() {
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assert_eq!(frac!(1u8 / 2), Frac::new_unreduced(48u8, 96u8).reduce());
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}
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}
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#[test]
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fn op_assign() {
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#[test]
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fn op_assign() {
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// Addition
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let mut quart = frac!(1 / 4);
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quart += frac!(1 / 4);
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@ -91,4 +91,5 @@ fn op_assign() {
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let mut quart = frac!(1 / 4);
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quart /= frac!(4);
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assert_eq!(frac!(1 / 16), quart);
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}
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}
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