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suppress warnings
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@@ -802,11 +802,13 @@ TEST_IMPL(GLM_PREFIX, vec2_refract) {
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/* Air to Glass (eta = 1.0 / 1.5) */
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eta = 1.0f / 1.5f;
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r = GLM(vec2_refract)(v, N, eta, dest);
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f)); // Expect bending towards the normal
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/* Glass to Water (eta = 1.5 / 1.33) */
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eta = 1.5f / 1.33f;
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r = GLM(vec2_refract)(v, N, eta, dest);
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f)); // Expect bending towards the normal, less bending than air to glass
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/* Diamond to Air (eta = 2.42 / 1.0) */
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@@ -1908,6 +1908,7 @@ TEST_IMPL(GLM_PREFIX, vec3_refract) {
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r = GLM(vec3_refract)(v, N, eta, dest);
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/* Expect bending towards the normal */
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f));
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/* Glass to Water (eta = 1.5 / 1.33) */
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@@ -1915,6 +1916,7 @@ TEST_IMPL(GLM_PREFIX, vec3_refract) {
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r = GLM(vec3_refract)(v, N, eta, dest);
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/* Expect bending towards the normal, less bending than air to glass */
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f));
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/* Diamond to Air (eta = 2.42 / 1.0) */
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@@ -1591,11 +1591,13 @@ TEST_IMPL(GLM_PREFIX, vec4_refract) {
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/* Air to Glass (eta = 1.0 / 1.5) */
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eta = 1.0f / 1.5f;
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r = GLM(vec4_refract)(v, N, eta, dest);
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f)); // Expect bending towards the normal
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/* Glass to Water (eta = 1.5 / 1.33) */
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eta = 1.5f / 1.33f;
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r = GLM(vec4_refract)(v, N, eta, dest);
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ASSERT(r == true);
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ASSERT(dest[1] < -sqrtf(0.5f)); // Expect bending towards the normal, less bending than air to glass
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/* Diamond to Air (eta = 2.42 / 1.0) */
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