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MCOL-1983 Use long double for internal calculations of regr_*** functions.
This commit is contained in:
@ -39,11 +39,11 @@ static Add_corr_ToUDAFMap addToMap;
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struct corr_data
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{
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uint64_t cnt;
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double sumx;
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double sumx2; // sum of (x squared)
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double sumy;
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double sumy2; // sum of (y squared)
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double sumxy; // sum of x * y
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long double sumx;
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long double sumx2; // sum of (x squared)
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long double sumy;
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long double sumy2; // sum of (y squared)
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long double sumxy; // sum of x * y
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};
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@ -153,29 +153,29 @@ mcsv1_UDAF::ReturnCode corr::evaluate(mcsv1Context* context, static_any::any& va
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double N = data->cnt;
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if (N > 1)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumx2 = data->sumx2;
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double sumy2 = data->sumy2;
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double sumxy = data->sumxy;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumx2 = data->sumx2;
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long double sumy2 = data->sumy2;
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long double sumxy = data->sumxy;
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double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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long double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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if (var_popx == 0)
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{
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// When var_popx is 0, NULL is the result.
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return mcsv1_UDAF::SUCCESS;
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}
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double var_popy = (sumy2 - (sumy * sumy / N)) / N;
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long double var_popy = (sumy2 - (sumy * sumy / N)) / N;
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if (var_popy == 0)
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{
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// When var_popy is 0, NULL is the result
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return mcsv1_UDAF::SUCCESS;
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}
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double std_popx = sqrt(var_popx);
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double std_popy = sqrt(var_popy);
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double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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double corr = covar_pop / (std_popy * std_popx);
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valOut = corr;
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long double std_popx = sqrt(var_popx);
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long double std_popy = sqrt(var_popy);
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long double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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long double corr = covar_pop / (std_popy * std_popx);
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valOut = static_cast<double>(corr);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,9 +39,9 @@ static Add_covar_pop_ToUDAFMap addToMap;
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struct covar_pop_data
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{
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uint64_t cnt;
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double sumx;
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double sumy;
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double sumxy; // sum of x * y
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long double sumx;
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long double sumy;
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long double sumxy; // sum of x * y
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};
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@ -145,12 +145,12 @@ mcsv1_UDAF::ReturnCode covar_pop::evaluate(mcsv1Context* context, static_any::an
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double N = data->cnt;
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if (N > 0)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumxy = data->sumxy;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumxy = data->sumxy;
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double covar_pop = (sumxy - ((sumx * sumy) / N)) / N ;
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valOut = covar_pop;
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long double covar_pop = (sumxy - ((sumx * sumy) / N)) / N ;
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valOut = static_cast<double>(covar_pop);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,9 +39,9 @@ static Add_covar_samp_ToUDAFMap addToMap;
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struct covar_samp_data
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{
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uint64_t cnt;
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double sumx;
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double sumy;
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double sumxy; // sum of x * y
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long double sumx;
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long double sumy;
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long double sumxy; // sum of x * y
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};
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@ -145,12 +145,12 @@ mcsv1_UDAF::ReturnCode covar_samp::evaluate(mcsv1Context* context, static_any::a
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double N = data->cnt;
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if (N > 1)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumxy = data->sumxy;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumxy = data->sumxy;
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double covar_samp = (sumxy - ((sumx * sumy) / N)) / (N - 1);
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valOut = covar_samp;
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long double covar_samp = (sumxy - ((sumx * sumy) / N)) / (N - 1);
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valOut = static_cast<double>(covar_samp);
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}
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else
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if (N == 1)
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@ -40,7 +40,7 @@ static Add_regr_avgx_ToUDAFMap addToMap;
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// Use the simple data model
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struct regr_avgx_data
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{
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double sum;
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long double sum;
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uint64_t cnt;
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};
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@ -132,7 +132,7 @@ mcsv1_UDAF::ReturnCode regr_avgx::evaluate(mcsv1Context* context, static_any::an
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if (data->cnt > 0)
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{
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valOut = data->sum / (double)data->cnt;
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valOut = static_cast<double>(data->sum / (long double)data->cnt);
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}
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return mcsv1_UDAF::SUCCESS;
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@ -40,7 +40,7 @@ static Add_regr_avgy_ToUDAFMap addToMap;
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// Use the simple data model
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struct regr_avgy_data
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{
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double sum;
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long double sum;
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uint64_t cnt;
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};
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@ -130,7 +130,7 @@ mcsv1_UDAF::ReturnCode regr_avgy::evaluate(mcsv1Context* context, static_any::an
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if (data->cnt > 0)
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{
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valOut = data->sum / (double)data->cnt;
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valOut = static_cast<double>(data->sum / (long double)data->cnt);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,10 +39,10 @@ static Add_regr_intercept_ToUDAFMap addToMap;
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struct regr_intercept_data
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{
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uint64_t cnt;
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double sumx;
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double sumx2; // sum of (x squared)
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double sumy;
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double sumxy; // sum of (x*y)
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long double sumx;
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long double sumx2; // sum of (x squared)
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long double sumy;
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long double sumxy; // sum of x * y
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};
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@ -148,15 +148,15 @@ mcsv1_UDAF::ReturnCode regr_intercept::evaluate(mcsv1Context* context, static_an
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double N = data->cnt;
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if (N > 1)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumx2 = data->sumx2;
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double sumxy = data->sumxy;
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double numerator = sumy * sumx2 - sumx * sumxy;
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double var_pop = (N * sumx2) - (sumx * sumx);
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumx2 = data->sumx2;
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long double sumxy = data->sumxy;
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long double numerator = sumy * sumx2 - sumx * sumxy;
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long double var_pop = (N * sumx2) - (sumx * sumx);
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if (var_pop != 0)
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{
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valOut = numerator / var_pop;
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valOut = static_cast<double>(numerator / var_pop);
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}
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}
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return mcsv1_UDAF::SUCCESS;
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@ -39,11 +39,11 @@ static Add_regr_r2_ToUDAFMap addToMap;
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struct regr_r2_data
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{
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uint64_t cnt;
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double sumx;
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double sumx2; // sum of (x squared)
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double sumy;
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double sumy2; // sum of (y squared)
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double sumxy; // sum of x * y
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long double sumx;
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long double sumx2; // sum of (x squared)
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long double sumy;
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long double sumy2; // sum of (y squared)
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long double sumxy; // sum of x * y
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};
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@ -153,13 +153,13 @@ mcsv1_UDAF::ReturnCode regr_r2::evaluate(mcsv1Context* context, static_any::any&
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double N = data->cnt;
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if (N > 1)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumx2 = data->sumx2;
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double sumy2 = data->sumy2;
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double sumxy = data->sumxy;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumx2 = data->sumx2;
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long double sumy2 = data->sumy2;
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long double sumxy = data->sumxy;
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double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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long double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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if (var_popx == 0)
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{
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// When var_popx is 0, NULL is the result.
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@ -172,11 +172,11 @@ mcsv1_UDAF::ReturnCode regr_r2::evaluate(mcsv1Context* context, static_any::any&
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valOut = 1.0;
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return mcsv1_UDAF::SUCCESS;
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}
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double std_popx = sqrt(var_popx);
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double std_popy = sqrt(var_popy);
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double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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double corr = covar_pop / (std_popy * std_popx);
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valOut = corr * corr;
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long double std_popx = sqrt(var_popx);
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long double std_popy = sqrt(var_popy);
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long double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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long double corr = covar_pop / (std_popy * std_popx);
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valOut = static_cast<double>(corr * corr);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,10 +39,10 @@ static Add_regr_slope_ToUDAFMap addToMap;
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struct regr_slope_data
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{
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uint64_t cnt;
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double sumx;
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double sumx2; // sum of (x squared)
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double sumy;
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double sumxy; // sum of (x*y)
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long double sumx;
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long double sumx2; // sum of (x squared)
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long double sumy;
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long double sumxy; // sum of x * y
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};
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@ -148,16 +148,16 @@ mcsv1_UDAF::ReturnCode regr_slope::evaluate(mcsv1Context* context, static_any::a
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if (N > 1)
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{
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// COVAR_POP(y, x) / VAR_POP(x)
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumx2 = data->sumx2;
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double sumxy = data->sumxy;
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double covar_pop = N * sumxy - sumx * sumy;
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double var_pop = N * sumx2 - sumx * sumx;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumx2 = data->sumx2;
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long double sumxy = data->sumxy;
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long double covar_pop = N * sumxy - sumx * sumy;
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long double var_pop = N * sumx2 - sumx * sumx;
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if (var_pop != 0)
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{
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double slope = covar_pop / var_pop;
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valOut = slope;
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long double slope = covar_pop / var_pop;
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valOut = static_cast<double>(slope);
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}
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}
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return mcsv1_UDAF::SUCCESS;
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@ -39,8 +39,8 @@ static Add_regr_sxx_ToUDAFMap addToMap;
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struct regr_sxx_data
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{
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uint64_t cnt;
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double sumx;
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double sumx2; // sum of (x squared)
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long double sumx;
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long double sumx2; // sum of (x squared)
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};
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@ -128,11 +128,11 @@ mcsv1_UDAF::ReturnCode regr_sxx::evaluate(mcsv1Context* context, static_any::any
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double N = data->cnt;
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if (N > 0)
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{
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double sumx = data->sumx;
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double sumx2 = data->sumx2;
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long double sumx = data->sumx;
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long double sumx2 = data->sumx2;
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double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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valOut = data->cnt * var_popx;
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long double var_popx = (sumx2 - (sumx * sumx / N)) / N;
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valOut = static_cast<double>(data->cnt * var_popx);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,9 +39,9 @@ static Add_regr_sxy_ToUDAFMap addToMap;
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struct regr_sxy_data
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{
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uint64_t cnt;
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double sumx;
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double sumy;
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double sumxy; // sum of x * y
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long double sumx;
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long double sumy;
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long double sumxy; // sum of x * y
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};
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@ -88,8 +88,8 @@ mcsv1_UDAF::ReturnCode regr_sxy::nextValue(mcsv1Context* context, ColumnDatum* v
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static_any::any& valIn_y = valsIn[0].columnData;
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static_any::any& valIn_x = valsIn[1].columnData;
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struct regr_sxy_data* data = (struct regr_sxy_data*)context->getUserData()->data;
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double valx = 0.0;
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double valy = 0.0;
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long double valx = 0.0;
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long double valy = 0.0;
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valx = convertAnyTo<double>(valIn_x);
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valy = convertAnyTo<double>(valIn_y);
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@ -145,13 +145,13 @@ mcsv1_UDAF::ReturnCode regr_sxy::evaluate(mcsv1Context* context, static_any::any
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double N = data->cnt;
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if (N > 0)
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{
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double sumx = data->sumx;
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double sumy = data->sumy;
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double sumxy = data->sumxy;
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long double sumx = data->sumx;
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long double sumy = data->sumy;
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long double sumxy = data->sumxy;
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double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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double regr_sxy = data->cnt * covar_pop;
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valOut = regr_sxy;
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long double covar_pop = (sumxy - ((sumx * sumy) / N)) / N;
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long double regr_sxy = data->cnt * covar_pop;
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valOut = static_cast<double>(regr_sxy);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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@ -39,8 +39,8 @@ static Add_regr_syy_ToUDAFMap addToMap;
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struct regr_syy_data
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{
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uint64_t cnt;
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double sumy;
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double sumy2; // sum of (y squared)
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long double sumy;
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long double sumy2; // sum of (y squared)
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};
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@ -125,14 +125,14 @@ mcsv1_UDAF::ReturnCode regr_syy::subEvaluate(mcsv1Context* context, const UserDa
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mcsv1_UDAF::ReturnCode regr_syy::evaluate(mcsv1Context* context, static_any::any& valOut)
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{
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struct regr_syy_data* data = (struct regr_syy_data*)context->getUserData()->data;
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double N = data->cnt;
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long double N = data->cnt;
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if (N > 0)
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{
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double sumy = data->sumy;
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double sumy2 = data->sumy2;
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long double sumy = data->sumy;
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long double sumy2 = data->sumy2;
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double var_popy = (sumy2 - (sumy * sumy / N)) / N;
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valOut = data->cnt * var_popy;
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long double var_popy = (sumy2 - (sumy * sumy / N)) / N;
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valOut = static_cast<double>(data->cnt * var_popy);
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}
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return mcsv1_UDAF::SUCCESS;
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}
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