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Merge branch 'master' into feature/glm_vec3_make
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@@ -426,7 +426,7 @@ Functions documentation
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Create quaternion from pointer
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| NOTE: **@src** must contain 4 elements. cglm store quaternions as [x, y, z, w].
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| NOTE: **@src** must contain at least 4 elements. cglm store quaternions as [x, y, z, w].
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Parameters:
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| *[in]* **src** pointer to an array of floats
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@@ -44,7 +44,7 @@
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CGLM_INLINE mat4s glms_quat_rotate(mat4s m, versors q)
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CGLM_INLINE mat4s glms_quat_rotate_at(mat4s m, versors q, vec3s pivot)
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CGLM_INLINE mat4s glms_quat_rotate_atm(versors q, vec3s pivot)
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CGLM_INLINE void glms_quat_make(float * restrict src)
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CGLM_INLINE versors glms_quat_make(float * restrict src)
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*/
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#ifndef cglms_quat_h
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@@ -1086,12 +1086,22 @@ TEST_IMPL(GLM_PREFIX, quat_rotate_atm) {
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}
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TEST_IMPL(GLM_PREFIX, quat_make) {
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versor dest;
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float src[4] = {7.2f, 1.0f, 2.5f, 6.1f};
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versor dest[3];
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float src[12] = {
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7.2f, 1.0f, 2.5f, 6.1f,
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0.2f, 2.8f, 17.3f, 5.1f,
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4.2f, 7.3f, 6.6f, 8.8f
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};
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GLM(quat_make)(src, dest);
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for (unsigned int i = 0; i < sizeof(src) / sizeof(float); i++) {
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ASSERT(test_eq(src[i], dest[i]));
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float *srcp = src;
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unsigned int i, j;
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for (i = 0, j = 0; i < sizeof(src) / sizeof(float); i+=4,j++) {
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GLM(quat_make)(srcp + i, dest[j]);
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ASSERT(test_eq(src[ i ], dest[j][0]));
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ASSERT(test_eq(src[i+1], dest[j][1]));
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ASSERT(test_eq(src[i+2], dest[j][2]));
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ASSERT(test_eq(src[i+3], dest[j][3]));
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}
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TEST_SUCCESS
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