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							82 lines
						
					
					
						
							1.3 KiB
						
					
					
				
			
		
		
	
	
							82 lines
						
					
					
						
							1.3 KiB
						
					
					
				#define GLM_ENABLE_EXPERIMENTAL | 
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#include <glm/vec2.hpp> | 
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#include <glm/vec3.hpp> | 
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#include <glm/vec4.hpp> | 
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#include <glm/gtx/vector_query.hpp> | 
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 | 
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int test_areCollinear() | 
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{ | 
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	int Error(0); | 
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 | 
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	{ | 
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		bool TestA = glm::areCollinear(glm::vec2(-1), glm::vec2(1), 0.00001f); | 
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		Error += TestA ? 0 : 1; | 
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	} | 
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 | 
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	{ | 
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		bool TestA = glm::areCollinear(glm::vec3(-1), glm::vec3(1), 0.00001f); | 
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		Error += TestA ? 0 : 1; | 
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	} | 
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 | 
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	{ | 
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		bool TestA = glm::areCollinear(glm::vec4(-1), glm::vec4(1), 0.00001f); | 
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		Error += TestA ? 0 : 1; | 
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	} | 
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	return Error; | 
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} | 
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int test_areOrthogonal() | 
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{ | 
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	int Error(0); | 
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	 | 
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	bool TestA = glm::areOrthogonal(glm::vec2(1, 0), glm::vec2(0, 1), 0.00001f); | 
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	Error += TestA ? 0 : 1; | 
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	return Error; | 
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} | 
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int test_isNormalized() | 
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{ | 
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	int Error(0); | 
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	 | 
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	bool TestA = glm::isNormalized(glm::vec4(1, 0, 0, 0), 0.00001f); | 
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	Error += TestA ? 0 : 1; | 
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	return Error; | 
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} | 
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int test_isNull() | 
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{ | 
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	int Error(0); | 
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	 | 
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	bool TestA = glm::isNull(glm::vec4(0), 0.00001f); | 
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	Error += TestA ? 0 : 1; | 
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	return Error; | 
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} | 
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int test_areOrthonormal() | 
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{ | 
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	int Error(0); | 
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	bool TestA = glm::areOrthonormal(glm::vec2(1, 0), glm::vec2(0, 1), 0.00001f); | 
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	Error += TestA ? 0 : 1; | 
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	return Error; | 
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} | 
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int main() | 
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{ | 
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	int Error(0); | 
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	Error += test_areCollinear(); | 
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	Error += test_areOrthogonal(); | 
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	Error += test_isNormalized(); | 
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	Error += test_isNull(); | 
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	Error += test_areOrthonormal(); | 
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	return Error; | 
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} | 
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