performance test for fast_trigonometry #265
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@@ -79,6 +79,7 @@ Improvements:
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- Optimized bitfieldReverse and bitCount functions
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- Optimized bitfieldReverse and bitCount functions
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- Optimized matrix-vector multiple performance with Cuda #257, #258
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- Optimized matrix-vector multiple performance with Cuda #257, #258
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- Reduced integer type redifinitions #233
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- Reduced integer type redifinitions #233
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- Rewrite of GTX_fast_trigonometry #264 #265
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Fixes:
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Fixes:
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- Fixed std::nextafter not supported with C++11 on Android #217
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- Fixed std::nextafter not supported with C++11 on Android #217
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@@ -10,28 +10,151 @@
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#include <glm/gtc/type_precision.hpp>
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#include <glm/gtc/type_precision.hpp>
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#include <glm/gtx/fast_trigonometry.hpp>
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#include <glm/gtx/fast_trigonometry.hpp>
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#include <glm/gtc/constants.hpp>
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#include <glm/gtc/constants.hpp>
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#include <ctime>
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#include <cstdio>
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int test_fastSin()
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namespace fastCos
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{
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{
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int Error(0);
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int perf()
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float DiffMax = 0.0f;
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for(std::size_t i = 0; i < 10000; ++i)
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{
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{
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float angle = glm::pi<float>() * 2.0f / static_cast<float>(i + 1);
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const float begin = -glm::pi<float>();
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float A = glm::sin(angle);
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const float end = glm::pi<float>();
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float B = glm::fastSin(angle);
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float result = 0.f;
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DiffMax = glm::max(DiffMax, glm::abs(B - A));
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const std::clock_t timestamp1 = std::clock();
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for(float i=begin; i<end; i = nextafterf(i, end))
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result = glm::fastCos(i);
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const std::clock_t timestamp2 = std::clock();
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for(float i=begin; i<end; i = nextafterf(i, end))
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result = glm::cos(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastCos Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("cos Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}
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}//namespace fastCos
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return Error;
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namespace fastSin
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{
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int perf()
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{
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const float begin = -glm::pi<float>();
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const float end = glm::pi<float>();
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float result = 0.f;
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const std::clock_t timestamp1 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::fastSin(i);
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const std::clock_t timestamp2 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::sin(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastSin Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("sin Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}
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}//namespace fastSin
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namespace fastTan
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{
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int perf()
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{
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const float begin = -glm::pi<float>();
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const float end = glm::pi<float>();
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float result = 0.f;
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const std::clock_t timestamp1 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::fastTan(i);
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const std::clock_t timestamp2 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::tan(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastTan Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("tan Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}//namespace fastTan
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namespace fastAcos
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{
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int perf()
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{
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const float begin = -glm::pi<float>();
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const float end = glm::pi<float>();
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float result = 0.f;
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const std::clock_t timestamp1 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::fastAcos(i);
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const std::clock_t timestamp2 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::acos(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastAcos Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("acos Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}//namespace fastAcos
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namespace fastAsin
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{
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int perf()
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{
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const float begin = -glm::pi<float>();
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const float end = glm::pi<float>();
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float result = 0.f;
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const std::clock_t timestamp1 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::fastAsin(i);
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const std::clock_t timestamp2 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::asin(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastAsin Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("asin Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}//namespace fastAsin
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namespace fastAtan
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{
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int perf()
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{
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const float begin = -glm::pi<float>();
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const float end = glm::pi<float>();
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float result = 0.f;
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const std::clock_t timestamp1 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::fastAtan(i);
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const std::clock_t timestamp2 = std::clock();
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for (float i = begin; i<end; i = nextafterf(i, end))
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result = glm::atan(i);
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const std::clock_t timestamp3 = std::clock();
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const std::clock_t time_fast = timestamp2 - timestamp1;
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const std::clock_t time_default = timestamp3 - timestamp2;
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std::printf("fastAtan Time %d clocks\n", static_cast<unsigned int>(time_fast));
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std::printf("atan Time %d clocks\n", static_cast<unsigned int>(time_default));
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return time_fast < time_default ? 0 : 1;
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}
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}//namespace fastAtan
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int main()
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int main()
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{
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{
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int Error(0);
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int Error(0);
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Error += test_fastSin();
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Error += ::fastCos::perf();
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Error += ::fastSin::perf();
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Error += ::fastTan::perf();
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Error += ::fastAcos::perf();
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Error += ::fastAsin::perf();
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Error += ::fastAtan::perf();
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return Error;
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return Error;
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}
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}
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