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LAPACK
3.4.0
LAPACK: Linear Algebra PACKage
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00001 *> \brief \b SERRSY 00002 * 00003 * =========== DOCUMENTATION =========== 00004 * 00005 * Online html documentation available at 00006 * http://www.netlib.org/lapack/explore-html/ 00007 * 00008 * Definition: 00009 * =========== 00010 * 00011 * SUBROUTINE SERRSY( PATH, NUNIT ) 00012 * 00013 * .. Scalar Arguments .. 00014 * CHARACTER*3 PATH 00015 * INTEGER NUNIT 00016 * .. 00017 * 00018 * 00019 *> \par Purpose: 00020 * ============= 00021 *> 00022 *> \verbatim 00023 *> 00024 *> SERRSY tests the error exits for the REAL routines 00025 *> for symmetric indefinite matrices. 00026 *> \endverbatim 00027 * 00028 * Arguments: 00029 * ========== 00030 * 00031 *> \param[in] PATH 00032 *> \verbatim 00033 *> PATH is CHARACTER*3 00034 *> The LAPACK path name for the routines to be tested. 00035 *> \endverbatim 00036 *> 00037 *> \param[in] NUNIT 00038 *> \verbatim 00039 *> NUNIT is INTEGER 00040 *> The unit number for output. 00041 *> \endverbatim 00042 * 00043 * Authors: 00044 * ======== 00045 * 00046 *> \author Univ. of Tennessee 00047 *> \author Univ. of California Berkeley 00048 *> \author Univ. of Colorado Denver 00049 *> \author NAG Ltd. 00050 * 00051 *> \date November 2011 00052 * 00053 *> \ingroup single_lin 00054 * 00055 * ===================================================================== 00056 SUBROUTINE SERRSY( PATH, NUNIT ) 00057 * 00058 * -- LAPACK test routine (version 3.4.0) -- 00059 * -- LAPACK is a software package provided by Univ. of Tennessee, -- 00060 * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..-- 00061 * November 2011 00062 * 00063 * .. Scalar Arguments .. 00064 CHARACTER*3 PATH 00065 INTEGER NUNIT 00066 * .. 00067 * 00068 * ===================================================================== 00069 * 00070 * .. Parameters .. 00071 INTEGER NMAX 00072 PARAMETER ( NMAX = 4 ) 00073 * .. 00074 * .. Local Scalars .. 00075 CHARACTER*2 C2 00076 INTEGER I, INFO, J 00077 REAL ANRM, RCOND 00078 * .. 00079 * .. Local Arrays .. 00080 INTEGER IP( NMAX ), IW( NMAX ) 00081 REAL A( NMAX, NMAX ), AF( NMAX, NMAX ), B( NMAX ), 00082 $ R1( NMAX ), R2( NMAX ), W( 3*NMAX ), X( NMAX ) 00083 * .. 00084 * .. External Functions .. 00085 LOGICAL LSAMEN 00086 EXTERNAL LSAMEN 00087 * .. 00088 * .. External Subroutines .. 00089 EXTERNAL ALAESM, CHKXER, SSPCON, SSPRFS, SSPTRF, SSPTRI, 00090 $ SSPTRS, SSYCON, SSYRFS, SSYTF2, SSYTRF, SSYTRI, 00091 $ SSYTRI2, SSYTRS 00092 * .. 00093 * .. Scalars in Common .. 00094 LOGICAL LERR, OK 00095 CHARACTER*32 SRNAMT 00096 INTEGER INFOT, NOUT 00097 * .. 00098 * .. Common blocks .. 00099 COMMON / INFOC / INFOT, NOUT, OK, LERR 00100 COMMON / SRNAMC / SRNAMT 00101 * .. 00102 * .. Intrinsic Functions .. 00103 INTRINSIC REAL 00104 * .. 00105 * .. Executable Statements .. 00106 * 00107 NOUT = NUNIT 00108 WRITE( NOUT, FMT = * ) 00109 C2 = PATH( 2: 3 ) 00110 * 00111 * Set the variables to innocuous values. 00112 * 00113 DO 20 J = 1, NMAX 00114 DO 10 I = 1, NMAX 00115 A( I, J ) = 1. / REAL( I+J ) 00116 AF( I, J ) = 1. / REAL( I+J ) 00117 10 CONTINUE 00118 B( J ) = 0. 00119 R1( J ) = 0. 00120 R2( J ) = 0. 00121 W( J ) = 0. 00122 X( J ) = 0. 00123 IP( J ) = J 00124 IW( J ) = J 00125 20 CONTINUE 00126 ANRM = 1.0 00127 RCOND = 1.0 00128 OK = .TRUE. 00129 * 00130 IF( LSAMEN( 2, C2, 'SY' ) ) THEN 00131 * 00132 * Test error exits of the routines that use the Bunch-Kaufman 00133 * factorization of a symmetric indefinite matrix. 00134 * 00135 * SSYTRF 00136 * 00137 SRNAMT = 'SSYTRF' 00138 INFOT = 1 00139 CALL SSYTRF( '/', 0, A, 1, IP, W, 1, INFO ) 00140 CALL CHKXER( 'SSYTRF', INFOT, NOUT, LERR, OK ) 00141 INFOT = 2 00142 CALL SSYTRF( 'U', -1, A, 1, IP, W, 1, INFO ) 00143 CALL CHKXER( 'SSYTRF', INFOT, NOUT, LERR, OK ) 00144 INFOT = 4 00145 CALL SSYTRF( 'U', 2, A, 1, IP, W, 4, INFO ) 00146 CALL CHKXER( 'SSYTRF', INFOT, NOUT, LERR, OK ) 00147 * 00148 * SSYTF2 00149 * 00150 SRNAMT = 'SSYTF2' 00151 INFOT = 1 00152 CALL SSYTF2( '/', 0, A, 1, IP, INFO ) 00153 CALL CHKXER( 'SSYTF2', INFOT, NOUT, LERR, OK ) 00154 INFOT = 2 00155 CALL SSYTF2( 'U', -1, A, 1, IP, INFO ) 00156 CALL CHKXER( 'SSYTF2', INFOT, NOUT, LERR, OK ) 00157 INFOT = 4 00158 CALL SSYTF2( 'U', 2, A, 1, IP, INFO ) 00159 CALL CHKXER( 'SSYTF2', INFOT, NOUT, LERR, OK ) 00160 * 00161 * SSYTRI 00162 * 00163 SRNAMT = 'SSYTRI' 00164 INFOT = 1 00165 CALL SSYTRI( '/', 0, A, 1, IP, W, INFO ) 00166 CALL CHKXER( 'SSYTRI', INFOT, NOUT, LERR, OK ) 00167 INFOT = 2 00168 CALL SSYTRI( 'U', -1, A, 1, IP, W, INFO ) 00169 CALL CHKXER( 'SSYTRI', INFOT, NOUT, LERR, OK ) 00170 INFOT = 4 00171 CALL SSYTRI( 'U', 2, A, 1, IP, W, INFO ) 00172 CALL CHKXER( 'SSYTRI', INFOT, NOUT, LERR, OK ) 00173 * 00174 * SSYTRI2 00175 * 00176 SRNAMT = 'SSYTRI2' 00177 INFOT = 1 00178 CALL SSYTRI2( '/', 0, A, 1, IP, W, IW(1), INFO ) 00179 CALL CHKXER( 'SSYTRI2', INFOT, NOUT, LERR, OK ) 00180 INFOT = 2 00181 CALL SSYTRI2( 'U', -1, A, 1, IP, W, IW(1), INFO ) 00182 CALL CHKXER( 'SSYTRI2', INFOT, NOUT, LERR, OK ) 00183 INFOT = 4 00184 CALL SSYTRI2( 'U', 2, A, 1, IP, W, IW(1), INFO ) 00185 CALL CHKXER( 'SSYTRI2', INFOT, NOUT, LERR, OK ) 00186 * 00187 * SSYTRS 00188 * 00189 SRNAMT = 'SSYTRS' 00190 INFOT = 1 00191 CALL SSYTRS( '/', 0, 0, A, 1, IP, B, 1, INFO ) 00192 CALL CHKXER( 'SSYTRS', INFOT, NOUT, LERR, OK ) 00193 INFOT = 2 00194 CALL SSYTRS( 'U', -1, 0, A, 1, IP, B, 1, INFO ) 00195 CALL CHKXER( 'SSYTRS', INFOT, NOUT, LERR, OK ) 00196 INFOT = 3 00197 CALL SSYTRS( 'U', 0, -1, A, 1, IP, B, 1, INFO ) 00198 CALL CHKXER( 'SSYTRS', INFOT, NOUT, LERR, OK ) 00199 INFOT = 5 00200 CALL SSYTRS( 'U', 2, 1, A, 1, IP, B, 2, INFO ) 00201 CALL CHKXER( 'SSYTRS', INFOT, NOUT, LERR, OK ) 00202 INFOT = 8 00203 CALL SSYTRS( 'U', 2, 1, A, 2, IP, B, 1, INFO ) 00204 CALL CHKXER( 'SSYTRS', INFOT, NOUT, LERR, OK ) 00205 * 00206 * SSYRFS 00207 * 00208 SRNAMT = 'SSYRFS' 00209 INFOT = 1 00210 CALL SSYRFS( '/', 0, 0, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2, W, 00211 $ IW, INFO ) 00212 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00213 INFOT = 2 00214 CALL SSYRFS( 'U', -1, 0, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2, 00215 $ W, IW, INFO ) 00216 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00217 INFOT = 3 00218 CALL SSYRFS( 'U', 0, -1, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2, 00219 $ W, IW, INFO ) 00220 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00221 INFOT = 5 00222 CALL SSYRFS( 'U', 2, 1, A, 1, AF, 2, IP, B, 2, X, 2, R1, R2, W, 00223 $ IW, INFO ) 00224 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00225 INFOT = 7 00226 CALL SSYRFS( 'U', 2, 1, A, 2, AF, 1, IP, B, 2, X, 2, R1, R2, W, 00227 $ IW, INFO ) 00228 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00229 INFOT = 10 00230 CALL SSYRFS( 'U', 2, 1, A, 2, AF, 2, IP, B, 1, X, 2, R1, R2, W, 00231 $ IW, INFO ) 00232 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00233 INFOT = 12 00234 CALL SSYRFS( 'U', 2, 1, A, 2, AF, 2, IP, B, 2, X, 1, R1, R2, W, 00235 $ IW, INFO ) 00236 CALL CHKXER( 'SSYRFS', INFOT, NOUT, LERR, OK ) 00237 * 00238 * SSYCON 00239 * 00240 SRNAMT = 'SSYCON' 00241 INFOT = 1 00242 CALL SSYCON( '/', 0, A, 1, IP, ANRM, RCOND, W, IW, INFO ) 00243 CALL CHKXER( 'SSYCON', INFOT, NOUT, LERR, OK ) 00244 INFOT = 2 00245 CALL SSYCON( 'U', -1, A, 1, IP, ANRM, RCOND, W, IW, INFO ) 00246 CALL CHKXER( 'SSYCON', INFOT, NOUT, LERR, OK ) 00247 INFOT = 4 00248 CALL SSYCON( 'U', 2, A, 1, IP, ANRM, RCOND, W, IW, INFO ) 00249 CALL CHKXER( 'SSYCON', INFOT, NOUT, LERR, OK ) 00250 INFOT = 6 00251 CALL SSYCON( 'U', 1, A, 1, IP, -1.0, RCOND, W, IW, INFO ) 00252 CALL CHKXER( 'SSYCON', INFOT, NOUT, LERR, OK ) 00253 * 00254 ELSE IF( LSAMEN( 2, C2, 'SP' ) ) THEN 00255 * 00256 * Test error exits of the routines that use the Bunch-Kaufman 00257 * factorization of a symmetric indefinite packed matrix. 00258 * 00259 * SSPTRF 00260 * 00261 SRNAMT = 'SSPTRF' 00262 INFOT = 1 00263 CALL SSPTRF( '/', 0, A, IP, INFO ) 00264 CALL CHKXER( 'SSPTRF', INFOT, NOUT, LERR, OK ) 00265 INFOT = 2 00266 CALL SSPTRF( 'U', -1, A, IP, INFO ) 00267 CALL CHKXER( 'SSPTRF', INFOT, NOUT, LERR, OK ) 00268 * 00269 * SSPTRI 00270 * 00271 SRNAMT = 'SSPTRI' 00272 INFOT = 1 00273 CALL SSPTRI( '/', 0, A, IP, W, INFO ) 00274 CALL CHKXER( 'SSPTRI', INFOT, NOUT, LERR, OK ) 00275 INFOT = 2 00276 CALL SSPTRI( 'U', -1, A, IP, W, INFO ) 00277 CALL CHKXER( 'SSPTRI', INFOT, NOUT, LERR, OK ) 00278 * 00279 * SSPTRS 00280 * 00281 SRNAMT = 'SSPTRS' 00282 INFOT = 1 00283 CALL SSPTRS( '/', 0, 0, A, IP, B, 1, INFO ) 00284 CALL CHKXER( 'SSPTRS', INFOT, NOUT, LERR, OK ) 00285 INFOT = 2 00286 CALL SSPTRS( 'U', -1, 0, A, IP, B, 1, INFO ) 00287 CALL CHKXER( 'SSPTRS', INFOT, NOUT, LERR, OK ) 00288 INFOT = 3 00289 CALL SSPTRS( 'U', 0, -1, A, IP, B, 1, INFO ) 00290 CALL CHKXER( 'SSPTRS', INFOT, NOUT, LERR, OK ) 00291 INFOT = 7 00292 CALL SSPTRS( 'U', 2, 1, A, IP, B, 1, INFO ) 00293 CALL CHKXER( 'SSPTRS', INFOT, NOUT, LERR, OK ) 00294 * 00295 * SSPRFS 00296 * 00297 SRNAMT = 'SSPRFS' 00298 INFOT = 1 00299 CALL SSPRFS( '/', 0, 0, A, AF, IP, B, 1, X, 1, R1, R2, W, IW, 00300 $ INFO ) 00301 CALL CHKXER( 'SSPRFS', INFOT, NOUT, LERR, OK ) 00302 INFOT = 2 00303 CALL SSPRFS( 'U', -1, 0, A, AF, IP, B, 1, X, 1, R1, R2, W, IW, 00304 $ INFO ) 00305 CALL CHKXER( 'SSPRFS', INFOT, NOUT, LERR, OK ) 00306 INFOT = 3 00307 CALL SSPRFS( 'U', 0, -1, A, AF, IP, B, 1, X, 1, R1, R2, W, IW, 00308 $ INFO ) 00309 CALL CHKXER( 'SSPRFS', INFOT, NOUT, LERR, OK ) 00310 INFOT = 8 00311 CALL SSPRFS( 'U', 2, 1, A, AF, IP, B, 1, X, 2, R1, R2, W, IW, 00312 $ INFO ) 00313 CALL CHKXER( 'SSPRFS', INFOT, NOUT, LERR, OK ) 00314 INFOT = 10 00315 CALL SSPRFS( 'U', 2, 1, A, AF, IP, B, 2, X, 1, R1, R2, W, IW, 00316 $ INFO ) 00317 CALL CHKXER( 'SSPRFS', INFOT, NOUT, LERR, OK ) 00318 * 00319 * SSPCON 00320 * 00321 SRNAMT = 'SSPCON' 00322 INFOT = 1 00323 CALL SSPCON( '/', 0, A, IP, ANRM, RCOND, W, IW, INFO ) 00324 CALL CHKXER( 'SSPCON', INFOT, NOUT, LERR, OK ) 00325 INFOT = 2 00326 CALL SSPCON( 'U', -1, A, IP, ANRM, RCOND, W, IW, INFO ) 00327 CALL CHKXER( 'SSPCON', INFOT, NOUT, LERR, OK ) 00328 INFOT = 5 00329 CALL SSPCON( 'U', 1, A, IP, -1.0, RCOND, W, IW, INFO ) 00330 CALL CHKXER( 'SSPCON', INFOT, NOUT, LERR, OK ) 00331 END IF 00332 * 00333 * Print a summary line. 00334 * 00335 CALL ALAESM( PATH, OK, NOUT ) 00336 * 00337 RETURN 00338 * 00339 * End of SERRSY 00340 * 00341 END