13template <
typename T, 
size_t N>
 
   18    template <
typename... Args>
 
   22    template <
typename Compare>
 
 
   47template <
typename T, 
size_t N>
 
   52template <
typename T, 
size_t N>
 
   57template <
typename T, 
size_t N>
 
   62template <
typename T, 
size_t N>
 
   67template <
typename T, 
size_t N>
 
   72template <
typename T, 
size_t N>
 
   77template <
typename T, 
size_t N>
 
   82template <
typename T, 
size_t N>
 
   87template <
typename T, 
size_t N>
 
   92template <
typename T, 
size_t N>
 
   97template <
typename T, 
size_t N>
 
  100    return std::inner_product(
a.values, 
a.values + 
N, 
b.values, T(0));
 
 
  106        a[1] * 
b[2] - 
a[2] * 
b[1],
 
  107        a[2] * 
b[0] - 
a[0] * 
b[2],
 
  108        a[0] * 
b[1] - 
a[1] * 
b[0]);
 
 
  111template <
typename T, 
size_t N>
 
  116template <
typename T, 
size_t N>
 
  121template <
typename T, 
size_t N>
 
  123    return std::sqrt(
dot(
v, 
v));
 
 
  126template <
typename T, 
size_t N>
 
  128    return v * (
static_cast<T
>(1.) / 
length(
v));
 
 
ROOT::Detail::TRangeCast< T, true > TRangeDynCast
TRangeDynCast is an adapter class that allows the typed iteration through a TCollection.
 
Int_t Compare(const void *item1, const void *item2)
 
Option_t Option_t TPoint TPoint const char GetTextMagnitude GetFillStyle GetLineColor GetLineWidth GetMarkerStyle GetTextAlign GetTextColor GetTextSize void char Point_t Rectangle_t WindowAttributes_t Float_t Float_t Float_t Int_t Int_t UInt_t UInt_t Rectangle_t Int_t Int_t Window_t TString Int_t GCValues_t GetPrimarySelectionOwner GetDisplay GetScreen GetColormap GetNativeEvent const char const char dpyName wid window const char font_name cursor keysym reg const char only_if_exist regb h Point_t winding char text const char depth char const char Int_t count const char ColorStruct_t color const char Pixmap_t Pixmap_t PictureAttributes_t attr const char char ret_data h unsigned char height h length
 
BVH_ALWAYS_INLINE Vec< T, N > operator-(const Vec< T, N > &a, const Vec< T, N > &b)
 
BVH_ALWAYS_INLINE Vec< T, N > operator*(const Vec< T, N > &a, const Vec< T, N > &b)
 
BVH_ALWAYS_INLINE T safe_inverse(T x)
Computes the inverse of the given value, always returning a finite value.
 
BVH_ALWAYS_INLINE Vec< T, N > normalize(const Vec< T, N > &v)
 
BVH_ALWAYS_INLINE Vec< T, N > operator/(const Vec< T, N > &a, const Vec< T, N > &b)
 
BVH_ALWAYS_INLINE Vec< T, 3 > cross(const Vec< T, 3 > &a, const Vec< T, 3 > &b)
 
BVH_ALWAYS_INLINE T robust_max(T a, T b)
 
BVH_ALWAYS_INLINE T fast_mul_add(T a, T b, T c)
Fast multiply-add operation.
 
BVH_ALWAYS_INLINE T robust_min(T a, T b)
 
BVH_ALWAYS_INLINE T dot(const Vec< T, N > &a, const Vec< T, N > &b)
 
BVH_ALWAYS_INLINE Vec< T, N > operator+(const Vec< T, N > &a, const Vec< T, N > &b)
 
BVH_ALWAYS_INLINE Vec(T x, T y, Args &&... args)
 
BVH_ALWAYS_INLINE Vec(T x)
 
BVH_ALWAYS_INLINE size_t get_smallest_axis() const
 
BVH_ALWAYS_INLINE size_t get_largest_axis() const
 
static BVH_ALWAYS_INLINE Vec< T, N > generate(F &&f)
 
BVH_ALWAYS_INLINE size_t get_best_axis(Compare &&compare) const
 
BVH_ALWAYS_INLINE T & operator[](size_t i)