Fixed fastDistance ambiguity #215

This commit is contained in:
Christophe Riccio 2014-06-20 01:09:50 +02:00
parent 2935cdc18e
commit 7fe8a1944c
4 changed files with 51 additions and 3 deletions

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@ -92,8 +92,7 @@ namespace detail
{ {
GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'length' only accept floating-point inputs"); GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'length' only accept floating-point inputs");
genType sqr = x * x; return abs(x);
return sqrt(sqr);
} }
template <typename T, precision P> template <typename T, precision P>

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@ -108,6 +108,36 @@ namespace glm
return fastLength(y - x); return fastLength(y - x);
} }
template <typename valType, precision P>
GLM_FUNC_QUALIFIER valType fastDistance
(
detail::tvec2<valType, P> const & x,
detail::tvec2<valType, P> const & y
)
{
return fastLength(y - x);
}
template <typename valType, precision P>
GLM_FUNC_QUALIFIER valType fastDistance
(
detail::tvec3<valType, P> const & x,
detail::tvec3<valType, P> const & y
)
{
return fastLength(y - x);
}
template <typename valType, precision P>
GLM_FUNC_QUALIFIER valType fastDistance
(
detail::tvec4<valType, P> const & x,
detail::tvec4<valType, P> const & y
)
{
return fastLength(y - x);
}
// fastNormalize // fastNormalize
template <typename genType> template <typename genType>
GLM_FUNC_QUALIFIER genType fastNormalize GLM_FUNC_QUALIFIER genType fastNormalize

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@ -50,6 +50,7 @@ GLM 0.9.5.4: 2014-0X-XX
- Fixed orientate3 function #207 - Fixed orientate3 function #207
- Fixed lerp when cosTheta is close to 1 in quaternion slerp #210 - Fixed lerp when cosTheta is close to 1 in quaternion slerp #210
- Added GTX_io for io with <iostream> #144 - Added GTX_io for io with <iostream> #144
- Fixed fastDistance ambiguity #215
================================================================================ ================================================================================
GLM 0.9.5.3: 2014-04-02 GLM 0.9.5.3: 2014-04-02

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@ -27,11 +27,29 @@ int test_fastInverseSqrt()
return 0; return 0;
} }
int test_fastDistance()
{
int Error(0);
glm::mediump_f32 A = glm::fastDistance(glm::mediump_f32(0.0f), glm::mediump_f32(1.0f));
glm::mediump_f32 B = glm::fastDistance(glm::mediump_f32vec2(0.0f), glm::mediump_f32vec2(1.0f, 0.0f));
glm::mediump_f32 C = glm::fastDistance(glm::mediump_f32vec3(0.0f), glm::mediump_f32vec3(1.0f, 0.0f, 0.0f));
glm::mediump_f32 D = glm::fastDistance(glm::mediump_f32vec4(0.0f), glm::mediump_f32vec4(1.0f, 0.0f, 0.0f, 0.0f));
Error += glm::epsilonEqual(A, glm::mediump_f32(1.0f), glm::mediump_f32(0.01f)) ? 0 : 1;
Error += glm::epsilonEqual(B, glm::mediump_f32(1.0f), glm::mediump_f32(0.01f)) ? 0 : 1;
Error += glm::epsilonEqual(C, glm::mediump_f32(1.0f), glm::mediump_f32(0.01f)) ? 0 : 1;
Error += glm::epsilonEqual(D, glm::mediump_f32(1.0f), glm::mediump_f32(0.01f)) ? 0 : 1;
return Error;
}
int main() int main()
{ {
int Error(0); int Error(0);
Error += test_fastInverseSqrt(); Error += test_fastInverseSqrt();
Error += test_fastDistance();
return Error; return Error;
} }