@@ -236,7 +236,7 @@ impl f32 {
236236 /// let b = 60.0_f32;
237237 ///
238238 /// // 100.0
239- /// let abs_difference = (m.mul_add(x, b) - (m*x + b)).abs();
239+ /// let abs_difference = (m.mul_add(x, b) - ((m * x) + b)).abs();
240240 ///
241241 /// assert!(abs_difference <= f32::EPSILON);
242242 /// ```
@@ -318,7 +318,7 @@ impl f32 {
318318 /// use std::f32;
319319 ///
320320 /// let x = 2.0_f32;
321- /// let abs_difference = (x.powi(2) - x*x ).abs();
321+ /// let abs_difference = (x.powi(2) - (x * x) ).abs();
322322 ///
323323 /// assert!(abs_difference <= f32::EPSILON);
324324 /// ```
@@ -336,7 +336,7 @@ impl f32 {
336336 /// use std::f32;
337337 ///
338338 /// let x = 2.0_f32;
339- /// let abs_difference = (x.powf(2.0) - x*x ).abs();
339+ /// let abs_difference = (x.powf(2.0) - (x * x) ).abs();
340340 ///
341341 /// assert!(abs_difference <= f32::EPSILON);
342342 /// ```
@@ -600,7 +600,7 @@ impl f32 {
600600 /// ```
601601 /// use std::f32;
602602 ///
603- /// let x = f32::consts::PI/2.0 ;
603+ /// let x = f32::consts::FRAC_PI_2 ;
604604 ///
605605 /// let abs_difference = (x.sin() - 1.0).abs();
606606 ///
@@ -623,7 +623,7 @@ impl f32 {
623623 /// ```
624624 /// use std::f32;
625625 ///
626- /// let x = 2.0* f32::consts::PI;
626+ /// let x = 2.0 * f32::consts::PI;
627627 ///
628628 /// let abs_difference = (x.cos() - 1.0).abs();
629629 ///
@@ -646,7 +646,7 @@ impl f32 {
646646 /// ```
647647 /// use std::f32;
648648 ///
649- /// let x = f32::consts::PI / 4.0 ;
649+ /// let x = f32::consts::FRAC_PI_4 ;
650650 /// let abs_difference = (x.tan() - 1.0).abs();
651651 ///
652652 /// assert!(abs_difference <= f32::EPSILON);
@@ -666,10 +666,10 @@ impl f32 {
666666 /// ```
667667 /// use std::f32;
668668 ///
669- /// let f = f32::consts::PI / 2.0 ;
669+ /// let f = f32::consts::FRAC_PI_2 ;
670670 ///
671671 /// // asin(sin(pi/2))
672- /// let abs_difference = (f.sin().asin() - f32::consts::PI / 2.0 ).abs();
672+ /// let abs_difference = (f.sin().asin() - f32::consts::FRAC_PI_2 ).abs();
673673 ///
674674 /// assert!(abs_difference <= f32::EPSILON);
675675 /// ```
@@ -688,10 +688,10 @@ impl f32 {
688688 /// ```
689689 /// use std::f32;
690690 ///
691- /// let f = f32::consts::PI / 4.0 ;
691+ /// let f = f32::consts::FRAC_PI_4 ;
692692 ///
693693 /// // acos(cos(pi/4))
694- /// let abs_difference = (f.cos().acos() - f32::consts::PI / 4.0 ).abs();
694+ /// let abs_difference = (f.cos().acos() - f32::consts::FRAC_PI_4 ).abs();
695695 ///
696696 /// assert!(abs_difference <= f32::EPSILON);
697697 /// ```
@@ -734,7 +734,6 @@ impl f32 {
734734 /// ```
735735 /// use std::f32;
736736 ///
737- /// let pi = f32::consts::PI;
738737 /// // Positive angles measured counter-clockwise
739738 /// // from positive x axis
740739 /// // -pi/4 radians (45 deg clockwise)
@@ -745,8 +744,8 @@ impl f32 {
745744 /// let x2 = -3.0f32;
746745 /// let y2 = 3.0f32;
747746 ///
748- /// let abs_difference_1 = (y1.atan2(x1) - (-pi/4.0 )).abs();
749- /// let abs_difference_2 = (y2.atan2(x2) - 3.0*pi/4.0 ).abs();
747+ /// let abs_difference_1 = (y1.atan2(x1) - (-f32::consts::FRAC_PI_4 )).abs();
748+ /// let abs_difference_2 = (y2.atan2(x2) - ( 3.0 * f32::consts::FRAC_PI_4) ).abs();
750749 ///
751750 /// assert!(abs_difference_1 <= f32::EPSILON);
752751 /// assert!(abs_difference_2 <= f32::EPSILON);
@@ -765,7 +764,7 @@ impl f32 {
765764 /// ```
766765 /// use std::f32;
767766 ///
768- /// let x = f32::consts::PI/4.0 ;
767+ /// let x = f32::consts::FRAC_PI_4 ;
769768 /// let f = x.sin_cos();
770769 ///
771770 /// let abs_difference_0 = (f.0 - x.sin()).abs();
@@ -834,7 +833,7 @@ impl f32 {
834833 ///
835834 /// let f = x.sinh();
836835 /// // Solving sinh() at 1 gives `(e^2-1)/(2e)`
837- /// let g = (e*e - 1.0)/ (2.0* e);
836+ /// let g = ((e * e) - 1.0) / (2.0 * e);
838837 /// let abs_difference = (f - g).abs();
839838 ///
840839 /// assert!(abs_difference <= f32::EPSILON);
@@ -856,7 +855,7 @@ impl f32 {
856855 /// let x = 1.0f32;
857856 /// let f = x.cosh();
858857 /// // Solving cosh() at 1 gives this result
859- /// let g = (e*e + 1.0)/ (2.0* e);
858+ /// let g = ((e * e) + 1.0) / (2.0 * e);
860859 /// let abs_difference = (f - g).abs();
861860 ///
862861 /// // Same result
@@ -880,7 +879,7 @@ impl f32 {
880879 ///
881880 /// let f = x.tanh();
882881 /// // Solving tanh() at 1 gives `(1 - e^(-2))/(1 + e^(-2))`
883- /// let g = (1.0 - e.powi(-2))/ (1.0 + e.powi(-2));
882+ /// let g = (1.0 - e.powi(-2)) / (1.0 + e.powi(-2));
884883 /// let abs_difference = (f - g).abs();
885884 ///
886885 /// assert!(abs_difference <= f32::EPSILON);
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