47 #include "../mat3x3.hpp" 
   48 #include "../mat4x4.hpp" 
   49 #include "../vec3.hpp" 
   50 #include "../vec4.hpp" 
   51 #include "../gtc/constants.hpp" 
   53 #if(defined(GLM_MESSAGES) && !defined(GLM_EXT_INCLUDED)) 
   54 #       pragma message("GLM: GLM_GTC_quaternion extension included") 
   62         template <
typename T, precision P>
 
   65                 typedef tquat<T, P> type;
 
   74 #               ifdef GLM_FORCE_SIZE_FUNC 
   75                         typedef size_t size_type;
 
   77                         GLM_FUNC_DECL GLM_CONSTEXPR size_type size() 
const;
 
   79                         GLM_FUNC_DECL T & operator[](size_type i);
 
   80                         GLM_FUNC_DECL T 
const & operator[](size_type i) 
const;
 
   82                         typedef length_t length_type;
 
   84                         GLM_FUNC_DECL GLM_CONSTEXPR length_type 
length() 
const;
 
   86                         GLM_FUNC_DECL T & operator[](length_type i);
 
   87                         GLM_FUNC_DECL T 
const & operator[](length_type i) 
const;
 
   88 #               endif//GLM_FORCE_SIZE_FUNC 
   93                 GLM_FUNC_DECL tquat();
 
   94                 template <precision Q>
 
   95                 GLM_FUNC_DECL tquat(tquat<T, Q> 
const & q);
 
  100                 GLM_FUNC_DECL 
explicit tquat(ctor);
 
  101                 GLM_FUNC_DECL 
explicit tquat(T 
const & s, tvec3<T, P> 
const & v);
 
  102                 GLM_FUNC_DECL tquat(T 
const & w, T 
const & x, T 
const & y, T 
const & z);
 
  107 #               ifdef GLM_FORCE_EXPLICIT_CTOR 
  108                         template <
typename U, precision Q>
 
  109                         GLM_FUNC_DECL 
explicit tquat(tquat<U, Q> 
const & q);
 
  111                         template <
typename U, precision Q>
 
  112                         GLM_FUNC_DECL tquat(tquat<U, Q> 
const & q);
 
  116                 GLM_FUNC_DECL 
explicit operator tmat3x3<T, P>();
 
  117                 GLM_FUNC_DECL 
explicit operator tmat4x4<T, P>();
 
  125                 GLM_FUNC_DECL 
explicit tquat(tvec3<T, P> 
const & u,     tvec3<T, P> 
const & v);
 
  128                 GLM_FUNC_DECL 
explicit tquat(tvec3<T, P> 
const & 
eulerAngles);
 
  129                 GLM_FUNC_DECL 
explicit tquat(tmat3x3<T, P> 
const & m);
 
  130                 GLM_FUNC_DECL 
explicit tquat(tmat4x4<T, P> 
const & m);
 
  134                 GLM_FUNC_DECL tquat<T, P> & operator+=(tquat<T, P> 
const & q);
 
  135                 GLM_FUNC_DECL tquat<T, P> & operator*=(tquat<T, P> 
const & q);
 
  136                 GLM_FUNC_DECL tquat<T, P> & operator*=(T 
const & s);
 
  137                 GLM_FUNC_DECL tquat<T, P> & operator/=(T 
const & s);
 
  140         template <
typename T, precision P>
 
  141         GLM_FUNC_DECL tquat<T, P> operator-(tquat<T, P> 
const & q);
 
  143         template <
typename T, precision P>
 
  144         GLM_FUNC_DECL tquat<T, P> operator+(tquat<T, P> 
const & q, tquat<T, P> 
const & p);
 
  146         template <
typename T, precision P>
 
  147         GLM_FUNC_DECL tquat<T, P> operator*(tquat<T, P> 
const & q, tquat<T, P> 
const & p);
 
  149         template <
typename T, precision P>
 
  150         GLM_FUNC_DECL tvec3<T, P> operator*(tquat<T, P> 
const & q, tvec3<T, P> 
const & v);
 
  152         template <
typename T, precision P>
 
  153         GLM_FUNC_DECL tvec3<T, P> operator*(tvec3<T, P> 
const & v, tquat<T, P> 
const & q);
 
  155         template <
typename T, precision P>
 
  156         GLM_FUNC_DECL tvec4<T, P> operator*(tquat<T, P> 
const & q, tvec4<T, P> 
const & v);
 
  158         template <
typename T, precision P>
 
  159         GLM_FUNC_DECL tvec4<T, P> operator*(tvec4<T, P> 
const & v, tquat<T, P> 
const & q);
 
  161         template <
typename T, precision P>
 
  162         GLM_FUNC_DECL tquat<T, P> operator*(tquat<T, P> 
const & q, T 
const & s);
 
  164         template <
typename T, precision P>
 
  165         GLM_FUNC_DECL tquat<T, P> operator*(T 
const & s, tquat<T, P> 
const & q);
 
  167         template <
typename T, precision P>
 
  168         GLM_FUNC_DECL tquat<T, P> operator/(tquat<T, P> 
const & q, T 
const & s);
 
  173         template <
typename T, precision P>
 
  174         GLM_FUNC_DECL T 
length(tquat<T, P> 
const & q);
 
  179         template <
typename T, precision P>
 
  180         GLM_FUNC_DECL tquat<T, P> 
normalize(tquat<T, P> 
const & q);
 
  185         template <
typename T, precision P, 
template <
typename, precision> 
class quatType>
 
  186         GLM_FUNC_DECL T 
dot(quatType<T, P> 
const & x, quatType<T, P> 
const & y);
 
  198         template <
typename T, precision P>
 
  199         GLM_FUNC_DECL tquat<T, P> 
mix(tquat<T, P> 
const & x, tquat<T, P> 
const & y,     T 
const & a);
 
  209         template <
typename T, precision P>
 
  210         GLM_FUNC_DECL tquat<T, P> 
lerp(tquat<T, P> 
const & x, tquat<T, P> 
const & y, T 
const & a);
 
  220         template <
typename T, precision P>
 
  221         GLM_FUNC_DECL tquat<T, P> 
slerp(tquat<T, P> 
const & x, tquat<T, P> 
const & y, T 
const & a);
 
  226         template <
typename T, precision P>
 
  227         GLM_FUNC_DECL tquat<T, P> 
conjugate(tquat<T, P> 
const & q);
 
  232         template <
typename T, precision P>
 
  233         GLM_FUNC_DECL tquat<T, P> 
inverse(tquat<T, P> 
const & q);
 
  242         template <
typename T, precision P>
 
  243         GLM_FUNC_DECL tquat<T, P> 
rotate(tquat<T, P> 
const & q, T 
const & 
angle, tvec3<T, P> 
const & 
axis);
 
  249         template <
typename T, precision P>
 
  250         GLM_FUNC_DECL tvec3<T, P> 
eulerAngles(tquat<T, P> 
const & x);
 
  255         template <
typename T, precision P>
 
  256         GLM_FUNC_DECL T 
roll(tquat<T, P> 
const & x);
 
  261         template <
typename T, precision P>
 
  262         GLM_FUNC_DECL T 
pitch(tquat<T, P> 
const & x);
 
  267         template <
typename T, precision P>
 
  268         GLM_FUNC_DECL T 
yaw(tquat<T, P> 
const & x);
 
  273         template <
typename T, precision P>
 
  274         GLM_FUNC_DECL tmat3x3<T, P> 
mat3_cast(tquat<T, P> 
const & x);
 
  279         template <
typename T, precision P>
 
  280         GLM_FUNC_DECL tmat4x4<T, P> 
mat4_cast(tquat<T, P> 
const & x);
 
  285         template <
typename T, precision P>
 
  286         GLM_FUNC_DECL tquat<T, P> 
quat_cast(tmat3x3<T, P> 
const & x);
 
  291         template <
typename T, precision P>
 
  292         GLM_FUNC_DECL tquat<T, P> 
quat_cast(tmat4x4<T, P> 
const & x);
 
  297         template <
typename T, precision P>
 
  298         GLM_FUNC_DECL T 
angle(tquat<T, P> 
const & x);
 
  303         template <
typename T, precision P>
 
  304         GLM_FUNC_DECL tvec3<T, P> 
axis(tquat<T, P> 
const & x);
 
  312         template <
typename T, precision P>
 
  320         template <
typename T, precision P>
 
  321         GLM_FUNC_DECL tvec4<bool, P> 
lessThan(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  328         template <
typename T, precision P>
 
  329         GLM_FUNC_DECL tvec4<bool, P> 
lessThanEqual(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  336         template <
typename T, precision P>
 
  337         GLM_FUNC_DECL tvec4<bool, P> 
greaterThan(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  344         template <
typename T, precision P>
 
  345         GLM_FUNC_DECL tvec4<bool, P> 
greaterThanEqual(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  352         template <
typename T, precision P>
 
  353         GLM_FUNC_DECL tvec4<bool, P> 
equal(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  360         template <
typename T, precision P>
 
  361         GLM_FUNC_DECL tvec4<bool, P> 
notEqual(tquat<T, P> 
const & x, tquat<T, P> 
const & y);
 
  365 #include "quaternion.inl" 
GLM_FUNC_DECL tquat< T, P > quat_cast(tmat4x4< T, P > const &x)
Converts a 4 * 4 matrix to a quaternion. 
GLM_FUNC_DECL tquat< T, P > rotate(tquat< T, P > const &q, T const &angle, tvec3< T, P > const &axis)
Rotates a quaternion from a vector of 3 components axis and an angle. 
GLM_FUNC_DECL tvec4< bool, P > lessThanEqual(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison of result x <= y. 
GLM_FUNC_DECL tvec4< bool, P > lessThan(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison result of x < y. 
GLM_FUNC_DECL tvec4< bool, P > notEqual(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison of result x != y. 
GLM_FUNC_DECL tquat< T, P > inverse(tquat< T, P > const &q)
Returns the q inverse. 
GLM_FUNC_DECL T length(tquat< T, P > const &q)
Returns the length of the quaternion. 
GLM_FUNC_DECL tvec3< T, P > axis(tquat< T, P > const &x)
Returns the q rotation axis. 
GLM_FUNC_DECL tquat< T, P > slerp(tquat< T, P > const &x, tquat< T, P > const &y, T const &a)
Spherical linear interpolation of two quaternions. 
GLM_FUNC_DECL tmat3x3< T, P > mat3_cast(tquat< T, P > const &x)
Converts a quaternion to a 3 * 3 matrix. 
GLM_FUNC_DECL T dot(quatType< T, P > const &x, quatType< T, P > const &y)
Returns dot product of q1 and q2, i.e., q1[0] * q2[0] + q1[1] * q2[1] + ... 
GLM_FUNC_DECL T angle(tquat< T, P > const &x)
Returns the quaternion rotation angle. 
GLM_FUNC_DECL tvec3< T, P > eulerAngles(tquat< T, P > const &x)
Returns euler angles, yitch as x, yaw as y, roll as z. 
GLM_FUNC_DECL tvec4< bool, P > greaterThan(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison of result x > y. 
GLM_FUNC_DECL tquat< T, P > mix(tquat< T, P > const &x, tquat< T, P > const &y, T const &a)
Spherical linear interpolation of two quaternions. 
GLM_FUNC_DECL tquat< T, P > normalize(tquat< T, P > const &q)
Returns the normalized quaternion. 
GLM_FUNC_DECL tvec4< bool, P > equal(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison of result x == y. 
GLM_FUNC_DECL T pitch(tquat< T, P > const &x)
Returns pitch value of euler angles expressed in radians. 
GLM_FUNC_DECL tvec4< bool, P > greaterThanEqual(tquat< T, P > const &x, tquat< T, P > const &y)
Returns the component-wise comparison of result x >= y. 
GLM_FUNC_DECL T roll(tquat< T, P > const &x)
Returns roll value of euler angles expressed in radians. 
GLM_FUNC_DECL tquat< T, P > conjugate(tquat< T, P > const &q)
Returns the q conjugate. 
GLM_FUNC_DECL tmat4x4< T, P > mat4_cast(tquat< T, P > const &x)
Converts a quaternion to a 4 * 4 matrix. 
GLM_FUNC_DECL tquat< T, P > angleAxis(T const &angle, tvec3< T, P > const &axis)
Build a quaternion from an angle and a normalized axis. 
GLM_FUNC_DECL T yaw(tquat< T, P > const &x)
Returns yaw value of euler angles expressed in radians. 
GLM_FUNC_DECL tquat< T, P > lerp(tquat< T, P > const &x, tquat< T, P > const &y, T const &a)
Linear interpolation of two quaternions.