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cchksy_aa.f 18 kB

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  1. *> \brief \b CCHKSY_AA
  2. *
  3. * =========== DOCUMENTATION ===========
  4. *
  5. * Online html documentation available at
  6. * http://www.netlib.org/lapack/explore-html/
  7. *
  8. * Definition:
  9. * ===========
  10. *
  11. * SUBROUTINE CCHKSY_AA( DOTYPE, NN, NVAL, NNB, NBVAL, NNS, NSVAL,
  12. * THRESH, TSTERR, NMAX, A, AFAC, AINV, B, X,
  13. * XACT, WORK, RWORK, IWORK, NOUT )
  14. *
  15. * .. Scalar Arguments ..
  16. * LOGICAL TSTERR
  17. * INTEGER NMAX, NN, NNB, NNS, NOUT
  18. * REAL THRESH
  19. * ..
  20. * .. Array Arguments ..
  21. * LOGICAL DOTYPE( * )
  22. * INTEGER IWORK( * ), NBVAL( * ), NSVAL( * ), NVAL( * )
  23. * COMPLEX A( * ), AFAC( * ), AINV( * ), B( * ),
  24. * $ RWORK( * ), WORK( * ), X( * ), XACT( * )
  25. * ..
  26. *
  27. *
  28. *> \par Purpose:
  29. * =============
  30. *>
  31. *> \verbatim
  32. *>
  33. *> CCHKSY_AA tests CSYTRF_AA, -TRS_AA.
  34. *> \endverbatim
  35. *
  36. * Arguments:
  37. * ==========
  38. *
  39. *> \param[in] DOTYPE
  40. *> \verbatim
  41. *> DOTYPE is LOGICAL array, dimension (NTYPES)
  42. *> The matrix types to be used for testing. Matrices of type j
  43. *> (for 1 <= j <= NTYPES) are used for testing if DOTYPE(j) =
  44. *> .TRUE.; if DOTYPE(j) = .FALSE., then type j is not used.
  45. *> \endverbatim
  46. *>
  47. *> \param[in] NN
  48. *> \verbatim
  49. *> NN is INTEGER
  50. *> The number of values of N contained in the vector NVAL.
  51. *> \endverbatim
  52. *>
  53. *> \param[in] NVAL
  54. *> \verbatim
  55. *> NVAL is INTEGER array, dimension (NN)
  56. *> The values of the matrix dimension N.
  57. *> \endverbatim
  58. *>
  59. *> \param[in] NNB
  60. *> \verbatim
  61. *> NNB is INTEGER
  62. *> The number of values of NB contained in the vector NBVAL.
  63. *> \endverbatim
  64. *>
  65. *> \param[in] NBVAL
  66. *> \verbatim
  67. *> NBVAL is INTEGER array, dimension (NNB)
  68. *> The values of the blocksize NB.
  69. *> \endverbatim
  70. *>
  71. *> \param[in] NNS
  72. *> \verbatim
  73. *> NNS is INTEGER
  74. *> The number of values of NRHS contained in the vector NSVAL.
  75. *> \endverbatim
  76. *>
  77. *> \param[in] NSVAL
  78. *> \verbatim
  79. *> NSVAL is INTEGER array, dimension (NNS)
  80. *> The values of the number of right hand sides NRHS.
  81. *> \endverbatim
  82. *>
  83. *> \param[in] THRESH
  84. *> \verbatim
  85. *> THRESH is REAL
  86. *> The threshold value for the test ratios. A result is
  87. *> included in the output file if RESULT >= THRESH. To have
  88. *> every test ratio printed, use THRESH = 0.
  89. *> \endverbatim
  90. *>
  91. *> \param[in] TSTERR
  92. *> \verbatim
  93. *> TSTERR is LOGICAL
  94. *> Flag that indicates whether error exits are to be tested.
  95. *> \endverbatim
  96. *>
  97. *> \param[in] NMAX
  98. *> \verbatim
  99. *> NMAX is INTEGER
  100. *> The maximum value permitted for N, used in dimensioning the
  101. *> work arrays.
  102. *> \endverbatim
  103. *>
  104. *> \param[out] A
  105. *> \verbatim
  106. *> A is REAL array, dimension (NMAX*NMAX)
  107. *> \endverbatim
  108. *>
  109. *> \param[out] AFAC
  110. *> \verbatim
  111. *> AFAC is REAL array, dimension (NMAX*NMAX)
  112. *> \endverbatim
  113. *>
  114. *> \param[out] AINV
  115. *> \verbatim
  116. *> AINV is REAL array, dimension (NMAX*NMAX)
  117. *> \endverbatim
  118. *>
  119. *> \param[out] B
  120. *> \verbatim
  121. *> B is REAL array, dimension (NMAX*NSMAX)
  122. *> where NSMAX is the largest entry in NSVAL.
  123. *> \endverbatim
  124. *>
  125. *> \param[out] X
  126. *> \verbatim
  127. *> X is REAL array, dimension (NMAX*NSMAX)
  128. *> \endverbatim
  129. *>
  130. *> \param[out] XACT
  131. *> \verbatim
  132. *> XACT is REAL array, dimension (NMAX*NSMAX)
  133. *> \endverbatim
  134. *>
  135. *> \param[out] WORK
  136. *> \verbatim
  137. *> WORK is REAL array, dimension (NMAX*max(3,NSMAX))
  138. *> \endverbatim
  139. *>
  140. *> \param[out] RWORK
  141. *> \verbatim
  142. *> RWORK is REAL array, dimension (max(NMAX,2*NSMAX))
  143. *> \endverbatim
  144. *>
  145. *> \param[out] IWORK
  146. *> \verbatim
  147. *> IWORK is INTEGER array, dimension (2*NMAX)
  148. *> \endverbatim
  149. *>
  150. *> \param[in] NOUT
  151. *> \verbatim
  152. *> NOUT is INTEGER
  153. *> The unit number for output.
  154. *> \endverbatim
  155. *
  156. * Authors:
  157. * ========
  158. *
  159. *> \author Univ. of Tennessee
  160. *> \author Univ. of California Berkeley
  161. *> \author Univ. of Colorado Denver
  162. *> \author NAG Ltd.
  163. *
  164. *> \ingroup complex_lin
  165. *
  166. * =====================================================================
  167. SUBROUTINE CCHKSY_AA( DOTYPE, NN, NVAL, NNB, NBVAL, NNS, NSVAL,
  168. $ THRESH, TSTERR, NMAX, A, AFAC, AINV, B,
  169. $ X, XACT, WORK, RWORK, IWORK, NOUT )
  170. *
  171. * -- LAPACK test routine --
  172. * -- LAPACK is a software package provided by Univ. of Tennessee, --
  173. * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
  174. *
  175. IMPLICIT NONE
  176. *
  177. * .. Scalar Arguments ..
  178. LOGICAL TSTERR
  179. INTEGER NN, NNB, NNS, NMAX, NOUT
  180. REAL THRESH
  181. * ..
  182. * .. Array Arguments ..
  183. LOGICAL DOTYPE( * )
  184. INTEGER IWORK( * ), NBVAL( * ), NSVAL( * ), NVAL( * )
  185. REAL RWORK( * )
  186. COMPLEX A( * ), AFAC( * ), AINV( * ), B( * ),
  187. $ WORK( * ), X( * ), XACT( * )
  188. * ..
  189. *
  190. * =====================================================================
  191. *
  192. * .. Parameters ..
  193. REAL ZERO
  194. PARAMETER ( ZERO = 0.0D+0 )
  195. COMPLEX CZERO
  196. PARAMETER ( CZERO = 0.0E+0 )
  197. INTEGER NTYPES
  198. PARAMETER ( NTYPES = 10 )
  199. INTEGER NTESTS
  200. PARAMETER ( NTESTS = 9 )
  201. * ..
  202. * .. Local Scalars ..
  203. LOGICAL ZEROT
  204. CHARACTER DIST, TYPE, UPLO, XTYPE
  205. CHARACTER*3 PATH, MATPATH
  206. INTEGER I, I1, I2, IMAT, IN, INB, INFO, IOFF, IRHS,
  207. $ IUPLO, IZERO, J, K, KL, KU, LDA, LWORK, MODE,
  208. $ N, NB, NERRS, NFAIL, NIMAT, NRHS, NRUN, NT
  209. REAL ANORM, CNDNUM
  210. * ..
  211. * .. Local Arrays ..
  212. CHARACTER UPLOS( 2 )
  213. INTEGER ISEED( 4 ), ISEEDY( 4 )
  214. REAL RESULT( NTESTS )
  215. * ..
  216. * .. External Subroutines ..
  217. EXTERNAL ALAERH, ALAHD, ALASUM, CERRSY, CLACPY, CLARHS,
  218. $ CLATB4, CLATMS, CSYT02, CSYT01_AA, CSYTRF_AA,
  219. $ CSYTRS_AA, XLAENV
  220. * ..
  221. * .. Intrinsic Functions ..
  222. INTRINSIC MAX, MIN
  223. * ..
  224. * .. Scalars in Common ..
  225. LOGICAL LERR, OK
  226. CHARACTER*32 SRNAMT
  227. INTEGER INFOT, NUNIT
  228. * ..
  229. * .. Common blocks ..
  230. COMMON / INFOC / INFOT, NUNIT, OK, LERR
  231. COMMON / SRNAMC / SRNAMT
  232. * ..
  233. * .. Data statements ..
  234. DATA ISEEDY / 1988, 1989, 1990, 1991 /
  235. DATA UPLOS / 'U', 'L' /
  236. * ..
  237. * .. Executable Statements ..
  238. *
  239. * Initialize constants and the random number seed.
  240. *
  241. * Test path
  242. *
  243. PATH( 1: 1 ) = 'Complex precision'
  244. PATH( 2: 3 ) = 'SA'
  245. *
  246. * Path to generate matrices
  247. *
  248. MATPATH( 1: 1 ) = 'Complex precision'
  249. MATPATH( 2: 3 ) = 'SY'
  250. NRUN = 0
  251. NFAIL = 0
  252. NERRS = 0
  253. DO 10 I = 1, 4
  254. ISEED( I ) = ISEEDY( I )
  255. 10 CONTINUE
  256. *
  257. * Test the error exits
  258. *
  259. IF( TSTERR )
  260. $ CALL CERRSY( PATH, NOUT )
  261. INFOT = 0
  262. *
  263. * Set the minimum block size for which the block routine should
  264. * be used, which will be later returned by ILAENV
  265. *
  266. CALL XLAENV( 2, 2 )
  267. *
  268. * Do for each value of N in NVAL
  269. *
  270. DO 180 IN = 1, NN
  271. N = NVAL( IN )
  272. IF( N .GT. NMAX ) THEN
  273. NFAIL = NFAIL + 1
  274. WRITE(NOUT, 9995) 'M ', N, NMAX
  275. GO TO 180
  276. END IF
  277. LDA = MAX( N, 1 )
  278. XTYPE = 'N'
  279. NIMAT = NTYPES
  280. IF( N.LE.0 )
  281. $ NIMAT = 1
  282. *
  283. IZERO = 0
  284. *
  285. * Do for each value of matrix type IMAT
  286. *
  287. DO 170 IMAT = 1, NIMAT
  288. *
  289. * Do the tests only if DOTYPE( IMAT ) is true.
  290. *
  291. IF( .NOT.DOTYPE( IMAT ) )
  292. $ GO TO 170
  293. *
  294. * Skip types 3, 4, 5, or 6 if the matrix size is too small.
  295. *
  296. ZEROT = IMAT.GE.3 .AND. IMAT.LE.6
  297. IF( ZEROT .AND. N.LT.IMAT-2 )
  298. $ GO TO 170
  299. *
  300. * Do first for UPLO = 'U', then for UPLO = 'L'
  301. *
  302. DO 160 IUPLO = 1, 2
  303. UPLO = UPLOS( IUPLO )
  304. *
  305. * Begin generate the test matrix A.
  306. *
  307. *
  308. * Set up parameters with CLATB4 for the matrix generator
  309. * based on the type of matrix to be generated.
  310. *
  311. CALL CLATB4( MATPATH, IMAT, N, N, TYPE, KL, KU,
  312. $ ANORM, MODE, CNDNUM, DIST )
  313. *
  314. * Generate a matrix with CLATMS.
  315. *
  316. SRNAMT = 'CLATMS'
  317. CALL CLATMS( N, N, DIST, ISEED, TYPE, RWORK, MODE,
  318. $ CNDNUM, ANORM, KL, KU, UPLO, A, LDA, WORK,
  319. $ INFO )
  320. *
  321. * Check error code from CLATMS and handle error.
  322. *
  323. IF( INFO.NE.0 ) THEN
  324. CALL ALAERH( PATH, 'CLATMS', INFO, 0, UPLO, N, N, -1,
  325. $ -1, -1, IMAT, NFAIL, NERRS, NOUT )
  326. *
  327. * Skip all tests for this generated matrix
  328. *
  329. GO TO 160
  330. END IF
  331. *
  332. * For matrix types 3-6, zero one or more rows and
  333. * columns of the matrix to test that INFO is returned
  334. * correctly.
  335. *
  336. IF( ZEROT ) THEN
  337. IF( IMAT.EQ.3 ) THEN
  338. IZERO = 1
  339. ELSE IF( IMAT.EQ.4 ) THEN
  340. IZERO = N
  341. ELSE
  342. IZERO = N / 2 + 1
  343. END IF
  344. *
  345. IF( IMAT.LT.6 ) THEN
  346. *
  347. * Set row and column IZERO to zero.
  348. *
  349. IF( IUPLO.EQ.1 ) THEN
  350. IOFF = ( IZERO-1 )*LDA
  351. DO 20 I = 1, IZERO - 1
  352. A( IOFF+I ) = CZERO
  353. 20 CONTINUE
  354. IOFF = IOFF + IZERO
  355. DO 30 I = IZERO, N
  356. A( IOFF ) = CZERO
  357. IOFF = IOFF + LDA
  358. 30 CONTINUE
  359. ELSE
  360. IOFF = IZERO
  361. DO 40 I = 1, IZERO - 1
  362. A( IOFF ) = CZERO
  363. IOFF = IOFF + LDA
  364. 40 CONTINUE
  365. IOFF = IOFF - IZERO
  366. DO 50 I = IZERO, N
  367. A( IOFF+I ) = CZERO
  368. 50 CONTINUE
  369. END IF
  370. ELSE
  371. IF( IUPLO.EQ.1 ) THEN
  372. *
  373. * Set the first IZERO rows and columns to zero.
  374. *
  375. IOFF = 0
  376. DO 70 J = 1, N
  377. I2 = MIN( J, IZERO )
  378. DO 60 I = 1, I2
  379. A( IOFF+I ) = CZERO
  380. 60 CONTINUE
  381. IOFF = IOFF + LDA
  382. 70 CONTINUE
  383. IZERO = 1
  384. ELSE
  385. *
  386. * Set the last IZERO rows and columns to zero.
  387. *
  388. IOFF = 0
  389. DO 90 J = 1, N
  390. I1 = MAX( J, IZERO )
  391. DO 80 I = I1, N
  392. A( IOFF+I ) = CZERO
  393. 80 CONTINUE
  394. IOFF = IOFF + LDA
  395. 90 CONTINUE
  396. END IF
  397. END IF
  398. ELSE
  399. IZERO = 0
  400. END IF
  401. *
  402. * End generate the test matrix A.
  403. *
  404. * Do for each value of NB in NBVAL
  405. *
  406. DO 150 INB = 1, NNB
  407. *
  408. * Set the optimal blocksize, which will be later
  409. * returned by ILAENV.
  410. *
  411. NB = NBVAL( INB )
  412. CALL XLAENV( 1, NB )
  413. *
  414. * Copy the test matrix A into matrix AFAC which
  415. * will be factorized in place. This is needed to
  416. * preserve the test matrix A for subsequent tests.
  417. *
  418. CALL CLACPY( UPLO, N, N, A, LDA, AFAC, LDA )
  419. *
  420. * Compute the L*D*L**T or U*D*U**T factorization of the
  421. * matrix. IWORK stores details of the interchanges and
  422. * the block structure of D. AINV is a work array for
  423. * block factorization, LWORK is the length of AINV.
  424. *
  425. SRNAMT = 'CSYTRF_AA'
  426. LWORK = MAX( 1, N*NB + N )
  427. CALL CSYTRF_AA( UPLO, N, AFAC, LDA, IWORK, AINV,
  428. $ LWORK, INFO )
  429. *
  430. * Adjust the expected value of INFO to account for
  431. * pivoting.
  432. *
  433. c IF( IZERO.GT.0 ) THEN
  434. c J = 1
  435. c K = IZERO
  436. c 100 CONTINUE
  437. c IF( J.EQ.K ) THEN
  438. c K = IWORK( J )
  439. c ELSE IF( IWORK( J ).EQ.K ) THEN
  440. c K = J
  441. c END IF
  442. c IF( J.LT.K ) THEN
  443. c J = J + 1
  444. c GO TO 100
  445. c END IF
  446. c ELSE
  447. K = 0
  448. c END IF
  449. *
  450. * Check error code from CSYTRF and handle error.
  451. *
  452. IF( INFO.NE.K ) THEN
  453. CALL ALAERH( PATH, 'CSYTRF_AA', INFO, K, UPLO,
  454. $ N, N, -1, -1, NB, IMAT, NFAIL, NERRS,
  455. $ NOUT )
  456. END IF
  457. *
  458. *+ TEST 1
  459. * Reconstruct matrix from factors and compute residual.
  460. *
  461. CALL CSYT01_AA( UPLO, N, A, LDA, AFAC, LDA, IWORK,
  462. $ AINV, LDA, RWORK, RESULT( 1 ) )
  463. NT = 1
  464. *
  465. *
  466. * Print information about the tests that did not pass
  467. * the threshold.
  468. *
  469. DO 110 K = 1, NT
  470. IF( RESULT( K ).GE.THRESH ) THEN
  471. IF( NFAIL.EQ.0 .AND. NERRS.EQ.0 )
  472. $ CALL ALAHD( NOUT, PATH )
  473. WRITE( NOUT, FMT = 9999 )UPLO, N, NB, IMAT, K,
  474. $ RESULT( K )
  475. NFAIL = NFAIL + 1
  476. END IF
  477. 110 CONTINUE
  478. NRUN = NRUN + NT
  479. *
  480. * Skip solver test if INFO is not 0.
  481. *
  482. IF( INFO.NE.0 ) THEN
  483. GO TO 140
  484. END IF
  485. *
  486. * Do for each value of NRHS in NSVAL.
  487. *
  488. DO 130 IRHS = 1, NNS
  489. NRHS = NSVAL( IRHS )
  490. *
  491. *+ TEST 2 (Using TRS)
  492. * Solve and compute residual for A * X = B.
  493. *
  494. * Choose a set of NRHS random solution vectors
  495. * stored in XACT and set up the right hand side B
  496. *
  497. SRNAMT = 'CLARHS'
  498. CALL CLARHS( MATPATH, XTYPE, UPLO, ' ', N, N,
  499. $ KL, KU, NRHS, A, LDA, XACT, LDA,
  500. $ B, LDA, ISEED, INFO )
  501. CALL CLACPY( 'Full', N, NRHS, B, LDA, X, LDA )
  502. *
  503. SRNAMT = 'CSYTRS_AA'
  504. LWORK = MAX( 1, 3*N-2 )
  505. CALL CSYTRS_AA( UPLO, N, NRHS, AFAC, LDA,
  506. $ IWORK, X, LDA, WORK, LWORK,
  507. $ INFO )
  508. *
  509. * Check error code from CSYTRS and handle error.
  510. *
  511. IF( INFO.NE.0 ) THEN
  512. IF( IZERO.EQ.0 ) THEN
  513. CALL ALAERH( PATH, 'CSYTRS_AA', INFO, 0,
  514. $ UPLO, N, N, -1, -1, NRHS, IMAT,
  515. $ NFAIL, NERRS, NOUT )
  516. END IF
  517. ELSE
  518. CALL CLACPY( 'Full', N, NRHS, B, LDA, WORK, LDA
  519. $ )
  520. *
  521. * Compute the residual for the solution
  522. *
  523. CALL CSYT02( UPLO, N, NRHS, A, LDA, X, LDA,
  524. $ WORK, LDA, RWORK, RESULT( 2 ) )
  525. *
  526. *
  527. * Print information about the tests that did not pass
  528. * the threshold.
  529. *
  530. DO 120 K = 2, 2
  531. IF( RESULT( K ).GE.THRESH ) THEN
  532. IF( NFAIL.EQ.0 .AND. NERRS.EQ.0 )
  533. $ CALL ALAHD( NOUT, PATH )
  534. WRITE( NOUT, FMT = 9998 )UPLO, N, NRHS,
  535. $ IMAT, K, RESULT( K )
  536. NFAIL = NFAIL + 1
  537. END IF
  538. 120 CONTINUE
  539. END IF
  540. NRUN = NRUN + 1
  541. *
  542. * End do for each value of NRHS in NSVAL.
  543. *
  544. 130 CONTINUE
  545. 140 CONTINUE
  546. 150 CONTINUE
  547. 160 CONTINUE
  548. 170 CONTINUE
  549. 180 CONTINUE
  550. *
  551. * Print a summary of the results.
  552. *
  553. CALL ALASUM( PATH, NOUT, NFAIL, NRUN, NERRS )
  554. *
  555. 9999 FORMAT( ' UPLO = ''', A1, ''', N =', I5, ', NB =', I4, ', type ',
  556. $ I2, ', test ', I2, ', ratio =', G12.5 )
  557. 9998 FORMAT( ' UPLO = ''', A1, ''', N =', I5, ', NRHS=', I3, ', type ',
  558. $ I2, ', test(', I2, ') =', G12.5 )
  559. 9995 FORMAT( ' Invalid input value: ', A4, '=', I6, '; must be <=',
  560. $ I6 )
  561. RETURN
  562. *
  563. * End of CCHKSY_AA
  564. *
  565. END