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| #include "common.h" |
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| RealScalar EIGEN_BLAS_FUNC(asum)(int *n, RealScalar *px, int *incx) |
| { |
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| Scalar* x = reinterpret_cast<Scalar*>(px); |
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| if(*n<=0) return 0; |
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| if(*incx==1) return make_vector(x,*n).cwiseAbs().sum(); |
| else return make_vector(x,*n,std::abs(*incx)).cwiseAbs().sum(); |
| } |
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| Scalar EIGEN_BLAS_FUNC(dot)(int *n, RealScalar *px, int *incx, RealScalar *py, int *incy) |
| { |
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| if(*n<=0) return 0; |
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| Scalar* x = reinterpret_cast<Scalar*>(px); |
| Scalar* y = reinterpret_cast<Scalar*>(py); |
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| if(*incx==1 && *incy==1) return (make_vector(x,*n).cwiseProduct(make_vector(y,*n))).sum(); |
| else if(*incx>0 && *incy>0) return (make_vector(x,*n,*incx).cwiseProduct(make_vector(y,*n,*incy))).sum(); |
| else if(*incx<0 && *incy>0) return (make_vector(x,*n,-*incx).reverse().cwiseProduct(make_vector(y,*n,*incy))).sum(); |
| else if(*incx>0 && *incy<0) return (make_vector(x,*n,*incx).cwiseProduct(make_vector(y,*n,-*incy).reverse())).sum(); |
| else if(*incx<0 && *incy<0) return (make_vector(x,*n,-*incx).reverse().cwiseProduct(make_vector(y,*n,-*incy).reverse())).sum(); |
| else return 0; |
| } |
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| Scalar EIGEN_BLAS_FUNC(nrm2)(int *n, RealScalar *px, int *incx) |
| { |
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| if(*n<=0) return 0; |
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| Scalar* x = reinterpret_cast<Scalar*>(px); |
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| if(*incx==1) return make_vector(x,*n).stableNorm(); |
| else return make_vector(x,*n,std::abs(*incx)).stableNorm(); |
| } |
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| int EIGEN_BLAS_FUNC(rot)(int *n, RealScalar *px, int *incx, RealScalar *py, int *incy, RealScalar *pc, RealScalar *ps) |
| { |
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| if(*n<=0) return 0; |
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| Scalar* x = reinterpret_cast<Scalar*>(px); |
| Scalar* y = reinterpret_cast<Scalar*>(py); |
| Scalar c = *reinterpret_cast<Scalar*>(pc); |
| Scalar s = *reinterpret_cast<Scalar*>(ps); |
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| StridedVectorType vx(make_vector(x,*n,std::abs(*incx))); |
| StridedVectorType vy(make_vector(y,*n,std::abs(*incy))); |
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| Reverse<StridedVectorType> rvx(vx); |
| Reverse<StridedVectorType> rvy(vy); |
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| if(*incx<0 && *incy>0) internal::apply_rotation_in_the_plane(rvx, vy, JacobiRotation<Scalar>(c,s)); |
| else if(*incx>0 && *incy<0) internal::apply_rotation_in_the_plane(vx, rvy, JacobiRotation<Scalar>(c,s)); |
| else internal::apply_rotation_in_the_plane(vx, vy, JacobiRotation<Scalar>(c,s)); |
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| return 0; |
| } |
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