trsm(3F)
STRSM, DTRSM, CTRSM, ZTRSM - Solves a real or complex triangular system of equations with multiple right-hand sides
As shipped in IRIX 6.5.22. Last changed in IRIX 6.5.19.
NAME STRSM, DTRSM, CTRSM, ZTRSM - Solves a real or complex triangular system of equations with multiple right-hand sides SYNOPSIS Real CALL STRSM (side, uplo, transa, diag, m, n, alpha, a, lda, b, ldb) Double precision CALL DTRSM (side, uplo, transa, diag, m, n, alpha, a, lda, b, ldb) Complex CALL CTRSM (side, uplo, transa, diag, m, n, alpha, a, lda, b, ldb) Double complex CALL ZTRSM (side, uplo, transa, diag, m, n, alpha, a, lda, b, ldb) DESCRIPTION STRSM and DTRSM solve a real triangular syste m of equations with multiple right-hand sides. CTRSM and ZTRSM solve a complex triangular system of equations with multiple right-hand sides. These routines solve one of the following matrix equations, using the operation associated with each: op(A) X = alpha B B <- alpha op(A-1)B or X op(A) = alpha B B <- alpha B op(A-1) where * alpha is a scalar * X and B are m-by-n matrices * A is either a unit or nonunit upper or lower triangular matrix * A-1 is the inverse of A * op(A) is one of the following: op(A) = A op(A) = AT op(A) = AH (CTRSM and ZTRSM only) where AT is the transpose of A, and AH is the conjugate transpose of A. These routines have the following arguments: side Character*1. (input) Specifies whether op(A) appears on the left or right of X, as follows: side = 'L' or 'l': op(A)*X = alpha*B side = 'R' or 'r': X*op(A) = alpha*B uplo Character*1. (input) Specifies whether matrix A is an upper or lower triangular matrix, as follows: uplo = 'U' or 'u': A is an upper triangular matrix. uplo = 'L' or 'l': A is a lower triangular matrix. transa Character*1. (input) Specifies the form of op(A) to be used in the matrix multiplication, as follows: transa = 'N' or 'n': op(A) = A transa = 'T' or 't': op(A) = AT transa = 'C' or 'c': op(A) = AT (STRSM, DTRSM), or op(A) = AH (CTRSM, ZTRSM) diag Character*1. (input) Specifies whether A is unit triangular, as follows: diag = 'U' or 'u': A is assumed to be unit triangular. diag = 'N' or 'n': A is not assumed to be unit triangular. m Integer. (input) Specifies the number of rows in B. m must be >= 0. n Integer. (input) Specifies the number of columns in B. n must be >= 0. alpha Scalar factor. (input) STRSM: Real. DTRSM: Double precision. CTRSM: Complex. ZTRSM: Double complex. When alpha is 0, a is not referenced, and b need not be set before entry. a Array of dimension (lda,k). (input) STRSM: Real array. DTRSM: Double precision array. CTRSM: Complex array. ZTRSM: Double complex array. When side = 'L' or 'l', k is m; when side = 'R' or 'r', it is n. Contains the matrix A. Before entry with uplo = 'U' or 'u', the leading k-by-k upper triangular part of array a must contain the upper triangular matrix. The strictly lower triangular part of a is not referenced. Before entry with uplo = 'L' or 'l', the leading k-by-k lower triangular part of array a must contain the lower triangular matrix. The strictly upper triangular part of a is not referenced. When diag = 'U' or 'u', the diagonal elements of a are not referenced, but they are assumed to be unity. lda Integer. (input) Specifies the first dimension of a as declared in the calling program. When side = 'L' or 'l', lda >= MAX(1,m). When side = 'R' or 'r', lda >= MAX(1,n). b Array of dimension (ldb,n). (input) STRSM: Real array. DTRSM: Double precision array. CTRSM: Complex array. ZTRSM: Double complex array. Contains the matrix B. Before entry, the leading m-by-n part of array b must contain the right-hand side matrix B. On exit, the solution matrix X overwrites array b. ldb Integer. (input) Specifies the first dimension of b as declared in the calling program. ldb >= MAX(1,m). NOTES These routines are Level 3 Basic Linear Algebra Subprograms (Level 3 BLAS).