srotm(3S)
SROTM, DROTM - Applies a modified Givens plane rotation
As shipped in IRIX 6.5.22. Added in IRIX 6.5.15.
NAME SROTM, DROTM - Applies a modified Givens plane rotation SYNOPSIS Single precision Fortran: CALL SROTM (n, x, incx, y, incy, rparam) C/C++: #include <scsl_blas.h> void srotm (int n, float *x, int incx, float *y, int incy, float *rparam); Double precision Fortran: CALL DROTM (n, x, incx, y, incy, rparam) C/C++: #include <scsl_blas.h> void drotm (int n, double *x, int incx, double *y, int incy, double *rparam); IMPLEMENTATION These routines are part of the SCSL Scientific Library and can be loaded using either the -lscs or the -lscs_mp option. The -lscs_mp option directs the linker to use the multi-processor version of the library. When linking to SCSL with -lscs or -lscs_mp, the default integer size is 4 bytes (32 bits). Another version of SCSL is available in which integers are 8 bytes (64 bits). This version allows the user access to larger memory sizes and helps when porting legacy Cray codes. It can be loaded by using the -lscs_i8 option or the -lscs_i8_mp option. A program may use only one of the two versions; 4-byte integer and 8-byte integer library calls cannot be mixed. The C and C++ prototypes shown above are appropriate for the 4-byte integer version of SCSL. When using the 8-byte integer version, the variables of type int become long long and the <scsl_blas_i8.h> header file should be included. DESCRIPTION These routines apply the modified Givens plane rotation constructed by SROTMG/DROTMG. See the NOTES section of this man page for information about the interpretation of the data types described in the following arguments. These routines have the following arguments: n Integer. (input) Number of planar points to be rotated. If n <= 0, these routines return without any computation. x Array of dimension (n-1) * |incx| + 1. (input and output) SROTM: Single precision array. DROTM: Double precision array. On input, array x contains the x-coordinate of each planar point to be rotated. On output, array x contains the x-coordinate of each rotated planar point. incx Integer. (input) Increment between elements of x. If incx = 0, the results will be unpredictable. y Array of dimension (n-1) * |incy| + 1. (input and output) SROTM: Single precision array. DROTM: Double precision array. On input, array y contains the y-coordinate of each planar point to be rotated. On output, array y contains the y-coordinate of each rotated planar point. incy Integer. (input) Increment between elements of y. If incx = 0, the results will be unpredictable. rparam Array of dimension 5. (input) SROTM: Single precision array. DROTM: Double precision array. Contains rotation matrix information. These routines compute a planar rotation, with possible scaling or reflection, as follows: _ _ _ _ _ _ | x(i) | | h(1,1) h(1,2) | | x(i) | | y(i) | <-- | h(2,1) h(2,2) | | y(i) | - - - - - - for i=1 , , n where the matrix that contains the elements h(1,1), h(2,1), h(1,2), and h(2,2) is called a rotation matrix. The rparam array determines the contents of the rotation matrix, as follows: The key parameter, rparam(1), may have one of four values: 1.0, 0.0, -1.0, or -2.0 If rparam(1) = 1.0: _ _ _ _ | h(1,1) h(1,2) | = | rparam(2) 1.0 | | h(2,1) h(2,2) | | -1.0 rparam(5) | - - - - and rparam(3) and rparam(4) are ignored. If rparam(1) = 0.0: _ _ _ _ | h(1,1) h(1,2) | = | 1.0 rparam(4) | | h(2,1) h(2,2) | | rparam(3) 1.0 | - - - - and rparam(2) and rparam(5) are ignored. If rparam(1)=-1.0 (rescaling case): _ _ _ _ | h(1,1) h(1,2) | = | rparam(2) rparam(4) | | h(2,1) h(2,2) | | rparam(3) rparam(5) | - - - - This is a full matrix multiplication. If rparam(1) = -2.0: _ _ _ _ | h(1,1) h(1,2) | = | 1.0 0.0 | = I | h(2,1) h(2,2) | | 0.0 1.0 | - - - - where I is the identity matrix. In this case, rparam(2), rparam(3), rparam(4), and rparam(5) are ignored. If n <= 0, or if the rotation matrix is the identity matrix (for example, when rparam(1) = -2.0), these routines return with no operation on input arrays x and y. NOTES The following data types are described in this documentation: Term Used Data type Fortran: Array dimensioned n x(n) Integer INTEGER (INTEGER*8 for -lscs_i8[_mp]) Single precision REAL Double precision DOUBLE PRECISION C/C++: Array dimensioned n x[n] Integer int (long long for -lscs_i8[_mp]) Single precision float Double precision double SEE ALSO INTRO_SCSL(3S), INTRO_BLAS1(3S) SROTMG(3S) INTRO_CBLAS(3S) for information about using the C interface to Fortran 77 Basic Linear Algebra Subprograms (legacy BLAS) set forth by the Basic Linear Algebra Subprograms Technical Forum. SROTMG(3S) for further details about the modified Givens transformation and array rparam