#include #include static void fxdiv_divide_uint32_t(benchmark::State& state) { const fxdiv_divisor_uint32_t divisor = fxdiv_init_uint32_t(UINT32_C(65537)); uint32_t x = 0; while (state.KeepRunning()) { const fxdiv_result_uint32_t result = fxdiv_divide_uint32_t(x++, divisor); benchmark::DoNotOptimize(result); } } BENCHMARK(fxdiv_divide_uint32_t); static void fxdiv_divide_uint64_t(benchmark::State& state) { const fxdiv_divisor_uint64_t divisor = fxdiv_init_uint64_t(UINT64_C(4294967311)); uint64_t x = 0; while (state.KeepRunning()) { const fxdiv_result_uint64_t result = fxdiv_divide_uint64_t(x++, divisor); benchmark::DoNotOptimize(result); } } BENCHMARK(fxdiv_divide_uint64_t); static void native_divide_uint32_t(benchmark::State& state) { uint32_t divisor = UINT32_C(65537); benchmark::DoNotOptimize(&divisor); uint32_t x = 0; while (state.KeepRunning()) { const uint32_t quotient = x / divisor; const uint32_t remainder = x++ % divisor; benchmark::DoNotOptimize(quotient); benchmark::DoNotOptimize(remainder); } } BENCHMARK(native_divide_uint32_t); static void native_divide_uint64_t(benchmark::State& state) { uint64_t divisor = UINT64_C(4294967311); benchmark::DoNotOptimize(&divisor); uint64_t x = 0; while (state.KeepRunning()) { const uint64_t quotient = x / divisor; const uint64_t remainder = x++ % divisor; benchmark::DoNotOptimize(quotient); benchmark::DoNotOptimize(remainder); } } BENCHMARK(native_divide_uint64_t); BENCHMARK_MAIN();