blob: 0e98cd53dc25d10fec48eec6f59425b86ddc12e4 (
plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
|
#define GLM_ENABLE_EXPERIMENTAL
#include <glm/glm.hpp>
#include <glm/gtx/quaternion.hpp>
#include <glm/gtx/easing.hpp>
namespace
{
template<typename T>
void _test_easing()
{
T a = static_cast<T>(0.5);
T r;
r = glm::linearInterpolation(a);
r = glm::quadraticEaseIn(a);
r = glm::quadraticEaseOut(a);
r = glm::quadraticEaseInOut(a);
r = glm::cubicEaseIn(a);
r = glm::cubicEaseOut(a);
r = glm::cubicEaseInOut(a);
r = glm::quarticEaseIn(a);
r = glm::quarticEaseOut(a);
r = glm::quinticEaseInOut(a);
r = glm::sineEaseIn(a);
r = glm::sineEaseOut(a);
r = glm::sineEaseInOut(a);
r = glm::circularEaseIn(a);
r = glm::circularEaseOut(a);
r = glm::circularEaseInOut(a);
r = glm::exponentialEaseIn(a);
r = glm::exponentialEaseOut(a);
r = glm::exponentialEaseInOut(a);
r = glm::elasticEaseIn(a);
r = glm::elasticEaseOut(a);
r = glm::elasticEaseInOut(a);
r = glm::backEaseIn(a);
r = glm::backEaseOut(a);
r = glm::backEaseInOut(a);
r = glm::bounceEaseIn(a);
r = glm::bounceEaseOut(a);
r = glm::bounceEaseInOut(a);
}
}
int main()
{
int Error = 0;
_test_easing<float>();
_test_easing<double>();
return Error;
}
|