/external/eigen/lapack/ |
H A D | clarft.f | 21 * SUBROUTINE CLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 25 * INTEGER K, LDT, LDV, N 28 * COMPLEX T( LDT, * ), TAU( * ), V( LDV, * ) 113 *> T is COMPLEX array, dimension (LDT,K) 119 *> \param[in] LDT 121 *> LDT is INTEGER 122 *> The leading dimension of the array T. LDT >= K. 164 SUBROUTINE CLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 173 INTEGER K, LDT, LDV, N local in subroutine:CLARFT 176 COMPLEX T( LDT, * ), TA [all...] |
H A D | dlarft.f | 21 * SUBROUTINE DLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 25 * INTEGER K, LDT, LDV, N 28 * DOUBLE PRECISION T( LDT, * ), TAU( * ), V( LDV, * ) 113 *> T is DOUBLE PRECISION array, dimension (LDT,K) 119 *> \param[in] LDT 121 *> LDT is INTEGER 122 *> The leading dimension of the array T. LDT >= K. 164 SUBROUTINE DLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 173 INTEGER K, LDT, LDV, N local in subroutine:DLARFT 176 DOUBLE PRECISION T( LDT, * ), TA [all...] |
H A D | slarft.f | 21 * SUBROUTINE SLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 25 * INTEGER K, LDT, LDV, N 28 * REAL T( LDT, * ), TAU( * ), V( LDV, * ) 113 *> T is REAL array, dimension (LDT,K) 119 *> \param[in] LDT 121 *> LDT is INTEGER 122 *> The leading dimension of the array T. LDT >= K. 164 SUBROUTINE SLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 173 INTEGER K, LDT, LDV, N local in subroutine:SLARFT 176 REAL T( LDT, * ), TA [all...] |
H A D | zlarft.f | 21 * SUBROUTINE ZLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 25 * INTEGER K, LDT, LDV, N 28 * COMPLEX*16 T( LDT, * ), TAU( * ), V( LDV, * ) 113 *> T is COMPLEX*16 array, dimension (LDT,K) 119 *> \param[in] LDT 121 *> LDT is INTEGER 122 *> The leading dimension of the array T. LDT >= K. 164 SUBROUTINE ZLARFT( DIRECT, STOREV, N, K, V, LDV, TAU, T, LDT ) 173 INTEGER K, LDT, LDV, N local in subroutine:ZLARFT 176 COMPLEX*16 T( LDT, * ), TA [all...] |
H A D | clarfb.f | 22 * T, LDT, C, LDC, WORK, LDWORK ) 26 * INTEGER K, LDC, LDT, LDV, LDWORK, M, N 29 * COMPLEX C( LDC, * ), T( LDT, * ), V( LDV, * ), 117 *> T is COMPLEX array, dimension (LDT,K) 122 *> \param[in] LDT 124 *> LDT is INTEGER 125 *> The leading dimension of the array T. LDT >= K. 196 $ T, LDT, C, LDC, WORK, LDWORK ) 205 INTEGER K, LDC, LDT, LDV, LDWORK, M, N local in subroutine:CLARFB 208 COMPLEX C( LDC, * ), T( LDT, * ), [all...] |
H A D | dlarfb.f | 22 * T, LDT, C, LDC, WORK, LDWORK ) 26 * INTEGER K, LDC, LDT, LDV, LDWORK, M, N 29 * DOUBLE PRECISION C( LDC, * ), T( LDT, * ), V( LDV, * ), 117 *> T is DOUBLE PRECISION array, dimension (LDT,K) 122 *> \param[in] LDT 124 *> LDT is INTEGER 125 *> The leading dimension of the array T. LDT >= K. 196 $ T, LDT, C, LDC, WORK, LDWORK ) 205 INTEGER K, LDC, LDT, LDV, LDWORK, M, N local in subroutine:DLARFB 208 DOUBLE PRECISION C( LDC, * ), T( LDT, * ), [all...] |
H A D | slarfb.f | 22 * T, LDT, C, LDC, WORK, LDWORK ) 26 * INTEGER K, LDC, LDT, LDV, LDWORK, M, N 29 * REAL C( LDC, * ), T( LDT, * ), V( LDV, * ), 117 *> T is REAL array, dimension (LDT,K) 122 *> \param[in] LDT 124 *> LDT is INTEGER 125 *> The leading dimension of the array T. LDT >= K. 196 $ T, LDT, C, LDC, WORK, LDWORK ) 205 INTEGER K, LDC, LDT, LDV, LDWORK, M, N local in subroutine:SLARFB 208 REAL C( LDC, * ), T( LDT, * ), [all...] |
H A D | zlarfb.f | 22 * T, LDT, C, LDC, WORK, LDWORK ) 26 * INTEGER K, LDC, LDT, LDV, LDWORK, M, N 29 * COMPLEX*16 C( LDC, * ), T( LDT, * ), V( LDV, * ), 117 *> T is COMPLEX*16 array, dimension (LDT,K) 122 *> \param[in] LDT 124 *> LDT is INTEGER 125 *> The leading dimension of the array T. LDT >= K. 196 $ T, LDT, C, LDC, WORK, LDWORK ) 205 INTEGER K, LDC, LDT, LDV, LDWORK, M, N local in subroutine:ZLARFB 208 COMPLEX*16 C( LDC, * ), T( LDT, * ), [all...] |