Matrix B = alpha*Matrix A + Matrix B (AXPY). This will utilize the sparse vector addition routine.
Type | Intent | Optional | Attributes | Name | ||
---|---|---|---|---|---|---|
type(Matrix_lsr), | intent(in) | :: | matA |
Matrix A. |
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type(Matrix_lsr), | intent(inout) | :: | matB |
Matrix B. |
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real(kind=NTREAL), | intent(in), | optional | :: | alpha_in |
Multiplier (default = 1.0). |
|
real(kind=NTREAL), | intent(in), | optional | :: | threshold_in |
For flushing values to zero (default = 0). |
Matrix B = alpha*Matrix A + Matrix B (AXPY). This will utilize the sparse vector addition routine.
Type | Intent | Optional | Attributes | Name | ||
---|---|---|---|---|---|---|
type(Matrix_lsc), | intent(in) | :: | matA |
Matrix A. |
||
type(Matrix_lsc), | intent(inout) | :: | matB |
Matrix B. |
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real(kind=NTREAL), | intent(in), | optional | :: | alpha_in |
Multiplier (default = 1.0). |
|
real(kind=NTREAL), | intent(in), | optional | :: | threshold_in |
For flushing values to zero (default = 0). |