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zerrsyx.f 16 kB

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  1. *> \brief \b ZERRSYX
  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 ZERRSY( PATH, NUNIT )
  12. *
  13. * .. Scalar Arguments ..
  14. * CHARACTER*3 PATH
  15. * INTEGER NUNIT
  16. * ..
  17. *
  18. *
  19. *> \par Purpose:
  20. * =============
  21. *>
  22. *> \verbatim
  23. *>
  24. *> ZERRSY tests the error exits for the COMPLEX*16 routines
  25. *> for symmetric indefinite matrices.
  26. *>
  27. *> Note that this file is used only when the XBLAS are available,
  28. *> otherwise zerrsy.f defines this subroutine.
  29. *> \endverbatim
  30. *
  31. * Arguments:
  32. * ==========
  33. *
  34. *> \param[in] PATH
  35. *> \verbatim
  36. *> PATH is CHARACTER*3
  37. *> The LAPACK path name for the routines to be tested.
  38. *> \endverbatim
  39. *>
  40. *> \param[in] NUNIT
  41. *> \verbatim
  42. *> NUNIT is INTEGER
  43. *> The unit number for output.
  44. *> \endverbatim
  45. *
  46. * Authors:
  47. * ========
  48. *
  49. *> \author Univ. of Tennessee
  50. *> \author Univ. of California Berkeley
  51. *> \author Univ. of Colorado Denver
  52. *> \author NAG Ltd.
  53. *
  54. *> \date November 2013
  55. *
  56. *> \ingroup complex16_lin
  57. *
  58. * =====================================================================
  59. SUBROUTINE ZERRSY( PATH, NUNIT )
  60. *
  61. * -- LAPACK test routine (version 3.5.0) --
  62. * -- LAPACK is a software package provided by Univ. of Tennessee, --
  63. * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
  64. * November 2013
  65. *
  66. * .. Scalar Arguments ..
  67. CHARACTER*3 PATH
  68. INTEGER NUNIT
  69. * ..
  70. *
  71. * =====================================================================
  72. *
  73. * .. Parameters ..
  74. INTEGER NMAX
  75. PARAMETER ( NMAX = 4 )
  76. * ..
  77. * .. Local Scalars ..
  78. CHARACTER EQ
  79. CHARACTER*2 C2
  80. INTEGER I, INFO, J, N_ERR_BNDS, NPARAMS
  81. DOUBLE PRECISION ANRM, RCOND, BERR
  82. * ..
  83. * .. Local Arrays ..
  84. INTEGER IP( NMAX )
  85. DOUBLE PRECISION R( NMAX ), R1( NMAX ), R2( NMAX ),
  86. $ S( NMAX ), ERR_BNDS_N( NMAX, 3 ),
  87. $ ERR_BNDS_C( NMAX, 3 ), PARAMS( 1 )
  88. COMPLEX*16 A( NMAX, NMAX ), AF( NMAX, NMAX ), B( NMAX ),
  89. $ W( 2*NMAX ), X( NMAX )
  90. * ..
  91. * .. External Functions ..
  92. LOGICAL LSAMEN
  93. EXTERNAL LSAMEN
  94. * ..
  95. * .. External Subroutines ..
  96. EXTERNAL ALAESM, CHKXER, ZSPCON, ZSPRFS, ZSPTRF, ZSPTRI,
  97. $ ZSPTRS, ZSYCON, ZSYCON_ROOK, ZSYRFS, ZSYTF2,
  98. $ ZSYTF2_ROOK, ZSYTRF, ZSYTRF_ROOK, ZSYTRI,
  99. $ ZSYTRI_ROOK, ZSYTRI2, ZSYTRS, ZSYTRS_ROOK,
  100. $ ZSYRFSX
  101. * ..
  102. * .. Scalars in Common ..
  103. LOGICAL LERR, OK
  104. CHARACTER*32 SRNAMT
  105. INTEGER INFOT, NOUT
  106. * ..
  107. * .. Common blocks ..
  108. COMMON / INFOC / INFOT, NOUT, OK, LERR
  109. COMMON / SRNAMC / SRNAMT
  110. * ..
  111. * .. Intrinsic Functions ..
  112. INTRINSIC DBLE, DCMPLX
  113. * ..
  114. * .. Executable Statements ..
  115. *
  116. NOUT = NUNIT
  117. WRITE( NOUT, FMT = * )
  118. C2 = PATH( 2: 3 )
  119. *
  120. * Set the variables to innocuous values.
  121. *
  122. DO 20 J = 1, NMAX
  123. DO 10 I = 1, NMAX
  124. A( I, J ) = DCMPLX( 1.D0 / DBLE( I+J ),
  125. $ -1.D0 / DBLE( I+J ) )
  126. AF( I, J ) = DCMPLX( 1.D0 / DBLE( I+J ),
  127. $ -1.D0 / DBLE( I+J ) )
  128. 10 CONTINUE
  129. B( J ) = 0.D0
  130. R1( J ) = 0.D0
  131. R2( J ) = 0.D0
  132. W( J ) = 0.D0
  133. X( J ) = 0.D0
  134. S( J ) = 0.D0
  135. IP( J ) = J
  136. 20 CONTINUE
  137. ANRM = 1.0D0
  138. OK = .TRUE.
  139. *
  140. * Test error exits of the routines that use factorization
  141. * of a symmetric indefinite matrix with patrial
  142. * (Bunch-Kaufman) diagonal pivoting method.
  143. *
  144. IF( LSAMEN( 2, C2, 'SY' ) ) THEN
  145. *
  146. * ZSYTRF
  147. *
  148. SRNAMT = 'ZSYTRF'
  149. INFOT = 1
  150. CALL ZSYTRF( '/', 0, A, 1, IP, W, 1, INFO )
  151. CALL CHKXER( 'ZSYTRF', INFOT, NOUT, LERR, OK )
  152. INFOT = 2
  153. CALL ZSYTRF( 'U', -1, A, 1, IP, W, 1, INFO )
  154. CALL CHKXER( 'ZSYTRF', INFOT, NOUT, LERR, OK )
  155. INFOT = 4
  156. CALL ZSYTRF( 'U', 2, A, 1, IP, W, 4, INFO )
  157. CALL CHKXER( 'ZSYTRF', INFOT, NOUT, LERR, OK )
  158. *
  159. * ZSYTF2
  160. *
  161. SRNAMT = 'ZSYTF2'
  162. INFOT = 1
  163. CALL ZSYTF2( '/', 0, A, 1, IP, INFO )
  164. CALL CHKXER( 'ZSYTF2', INFOT, NOUT, LERR, OK )
  165. INFOT = 2
  166. CALL ZSYTF2( 'U', -1, A, 1, IP, INFO )
  167. CALL CHKXER( 'ZSYTF2', INFOT, NOUT, LERR, OK )
  168. INFOT = 4
  169. CALL ZSYTF2( 'U', 2, A, 1, IP, INFO )
  170. CALL CHKXER( 'ZSYTF2', INFOT, NOUT, LERR, OK )
  171. *
  172. * ZSYTRI
  173. *
  174. SRNAMT = 'ZSYTRI'
  175. INFOT = 1
  176. CALL ZSYTRI( '/', 0, A, 1, IP, W, INFO )
  177. CALL CHKXER( 'ZSYTRI', INFOT, NOUT, LERR, OK )
  178. INFOT = 2
  179. CALL ZSYTRI( 'U', -1, A, 1, IP, W, INFO )
  180. CALL CHKXER( 'ZSYTRI', INFOT, NOUT, LERR, OK )
  181. INFOT = 4
  182. CALL ZSYTRI( 'U', 2, A, 1, IP, W, INFO )
  183. CALL CHKXER( 'ZSYTRI', INFOT, NOUT, LERR, OK )
  184. *
  185. * ZSYTRI2
  186. *
  187. SRNAMT = 'ZSYTRI2'
  188. INFOT = 1
  189. CALL ZSYTRI2( '/', 0, A, 1, IP, W, 1, INFO )
  190. CALL CHKXER( 'ZSYTRI2', INFOT, NOUT, LERR, OK )
  191. INFOT = 2
  192. CALL ZSYTRI2( 'U', -1, A, 1, IP, W, 1, INFO )
  193. CALL CHKXER( 'ZSYTRI2', INFOT, NOUT, LERR, OK )
  194. INFOT = 4
  195. CALL ZSYTRI2( 'U', 2, A, 1, IP, W, 1, INFO )
  196. CALL CHKXER( 'ZSYTRI2', INFOT, NOUT, LERR, OK )
  197. *
  198. * ZSYTRS
  199. *
  200. SRNAMT = 'ZSYTRS'
  201. INFOT = 1
  202. CALL ZSYTRS( '/', 0, 0, A, 1, IP, B, 1, INFO )
  203. CALL CHKXER( 'ZSYTRS', INFOT, NOUT, LERR, OK )
  204. INFOT = 2
  205. CALL ZSYTRS( 'U', -1, 0, A, 1, IP, B, 1, INFO )
  206. CALL CHKXER( 'ZSYTRS', INFOT, NOUT, LERR, OK )
  207. INFOT = 3
  208. CALL ZSYTRS( 'U', 0, -1, A, 1, IP, B, 1, INFO )
  209. CALL CHKXER( 'ZSYTRS', INFOT, NOUT, LERR, OK )
  210. INFOT = 5
  211. CALL ZSYTRS( 'U', 2, 1, A, 1, IP, B, 2, INFO )
  212. CALL CHKXER( 'ZSYTRS', INFOT, NOUT, LERR, OK )
  213. INFOT = 8
  214. CALL ZSYTRS( 'U', 2, 1, A, 2, IP, B, 1, INFO )
  215. CALL CHKXER( 'ZSYTRS', INFOT, NOUT, LERR, OK )
  216. *
  217. * ZSYRFS
  218. *
  219. SRNAMT = 'ZSYRFS'
  220. INFOT = 1
  221. CALL ZSYRFS( '/', 0, 0, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2, W,
  222. $ R, INFO )
  223. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  224. INFOT = 2
  225. CALL ZSYRFS( 'U', -1, 0, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2,
  226. $ W, R, INFO )
  227. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  228. INFOT = 3
  229. CALL ZSYRFS( 'U', 0, -1, A, 1, AF, 1, IP, B, 1, X, 1, R1, R2,
  230. $ W, R, INFO )
  231. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  232. INFOT = 5
  233. CALL ZSYRFS( 'U', 2, 1, A, 1, AF, 2, IP, B, 2, X, 2, R1, R2, W,
  234. $ R, INFO )
  235. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  236. INFOT = 7
  237. CALL ZSYRFS( 'U', 2, 1, A, 2, AF, 1, IP, B, 2, X, 2, R1, R2, W,
  238. $ R, INFO )
  239. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  240. INFOT = 10
  241. CALL ZSYRFS( 'U', 2, 1, A, 2, AF, 2, IP, B, 1, X, 2, R1, R2, W,
  242. $ R, INFO )
  243. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  244. INFOT = 12
  245. CALL ZSYRFS( 'U', 2, 1, A, 2, AF, 2, IP, B, 2, X, 1, R1, R2, W,
  246. $ R, INFO )
  247. CALL CHKXER( 'ZSYRFS', INFOT, NOUT, LERR, OK )
  248. *
  249. * ZSYRFSX
  250. *
  251. N_ERR_BNDS = 3
  252. NPARAMS = 0
  253. SRNAMT = 'ZSYRFSX'
  254. INFOT = 1
  255. CALL ZSYRFSX( '/', EQ, 0, 0, A, 1, AF, 1, IP, S, B, 1, X, 1,
  256. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  257. $ PARAMS, W, R, INFO )
  258. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  259. INFOT = 2
  260. CALL ZSYRFSX( 'U', EQ, -1, 0, A, 1, AF, 1, IP, S, B, 1, X, 1,
  261. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  262. $ PARAMS, W, R, INFO )
  263. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  264. EQ = 'N'
  265. INFOT = 3
  266. CALL ZSYRFSX( 'U', EQ, -1, 0, A, 1, AF, 1, IP, S, B, 1, X, 1,
  267. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  268. $ PARAMS, W, R, INFO )
  269. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  270. INFOT = 4
  271. CALL ZSYRFSX( 'U', EQ, 0, -1, A, 1, AF, 1, IP, S, B, 1, X, 1,
  272. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  273. $ PARAMS, W, R, INFO )
  274. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  275. INFOT = 6
  276. CALL ZSYRFSX( 'U', EQ, 2, 1, A, 1, AF, 2, IP, S, B, 2, X, 2,
  277. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  278. $ PARAMS, W, R, INFO )
  279. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  280. INFOT = 8
  281. CALL ZSYRFSX( 'U', EQ, 2, 1, A, 2, AF, 1, IP, S, B, 2, X, 2,
  282. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  283. $ PARAMS, W, R, INFO )
  284. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  285. INFOT = 12
  286. CALL ZSYRFSX( 'U', EQ, 2, 1, A, 2, AF, 2, IP, S, B, 1, X, 2,
  287. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  288. $ PARAMS, W, R, INFO )
  289. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  290. INFOT = 14
  291. CALL ZSYRFSX( 'U', EQ, 2, 1, A, 2, AF, 2, IP, S, B, 2, X, 1,
  292. $ RCOND, BERR, N_ERR_BNDS, ERR_BNDS_N, ERR_BNDS_C, NPARAMS,
  293. $ PARAMS, W, R, INFO )
  294. CALL CHKXER( 'ZSYRFSX', INFOT, NOUT, LERR, OK )
  295. *
  296. * ZSYCON
  297. *
  298. SRNAMT = 'ZSYCON'
  299. INFOT = 1
  300. CALL ZSYCON( '/', 0, A, 1, IP, ANRM, RCOND, W, INFO )
  301. CALL CHKXER( 'ZSYCON', INFOT, NOUT, LERR, OK )
  302. INFOT = 2
  303. CALL ZSYCON( 'U', -1, A, 1, IP, ANRM, RCOND, W, INFO )
  304. CALL CHKXER( 'ZSYCON', INFOT, NOUT, LERR, OK )
  305. INFOT = 4
  306. CALL ZSYCON( 'U', 2, A, 1, IP, ANRM, RCOND, W, INFO )
  307. CALL CHKXER( 'ZSYCON', INFOT, NOUT, LERR, OK )
  308. INFOT = 6
  309. CALL ZSYCON( 'U', 1, A, 1, IP, -ANRM, RCOND, W, INFO )
  310. CALL CHKXER( 'ZSYCON', INFOT, NOUT, LERR, OK )
  311. *
  312. * Test error exits of the routines that use factorization
  313. * of a symmetric indefinite matrix with "rook"
  314. * (bounded Bunch-Kaufman) diagonal pivoting method.
  315. *
  316. ELSE IF( LSAMEN( 2, C2, 'SR' ) ) THEN
  317. *
  318. * ZSYTRF_ROOK
  319. *
  320. SRNAMT = 'ZSYTRF_ROOK'
  321. INFOT = 1
  322. CALL ZSYTRF_ROOK( '/', 0, A, 1, IP, W, 1, INFO )
  323. CALL CHKXER( 'ZSYTRF_ROOK', INFOT, NOUT, LERR, OK )
  324. INFOT = 2
  325. CALL ZSYTRF_ROOK( 'U', -1, A, 1, IP, W, 1, INFO )
  326. CALL CHKXER( 'ZSYTRF_ROOK', INFOT, NOUT, LERR, OK )
  327. INFOT = 4
  328. CALL ZSYTRF_ROOK( 'U', 2, A, 1, IP, W, 4, INFO )
  329. CALL CHKXER( 'ZSYTRF_ROOK', INFOT, NOUT, LERR, OK )
  330. *
  331. * ZSYTF2_ROOK
  332. *
  333. SRNAMT = 'ZSYTF2_ROOK'
  334. INFOT = 1
  335. CALL ZSYTF2_ROOK( '/', 0, A, 1, IP, INFO )
  336. CALL CHKXER( 'ZSYTF2_ROOK', INFOT, NOUT, LERR, OK )
  337. INFOT = 2
  338. CALL ZSYTF2_ROOK( 'U', -1, A, 1, IP, INFO )
  339. CALL CHKXER( 'ZSYTF2_ROOK', INFOT, NOUT, LERR, OK )
  340. INFOT = 4
  341. CALL ZSYTF2_ROOK( 'U', 2, A, 1, IP, INFO )
  342. CALL CHKXER( 'ZSYTF2_ROOK', INFOT, NOUT, LERR, OK )
  343. *
  344. * ZSYTRI_ROOK
  345. *
  346. SRNAMT = 'ZSYTRI_ROOK'
  347. INFOT = 1
  348. CALL ZSYTRI_ROOK( '/', 0, A, 1, IP, W, INFO )
  349. CALL CHKXER( 'ZSYTRI_ROOK', INFOT, NOUT, LERR, OK )
  350. INFOT = 2
  351. CALL ZSYTRI_ROOK( 'U', -1, A, 1, IP, W, INFO )
  352. CALL CHKXER( 'ZSYTRI_ROOK', INFOT, NOUT, LERR, OK )
  353. INFOT = 4
  354. CALL ZSYTRI_ROOK( 'U', 2, A, 1, IP, W, INFO )
  355. CALL CHKXER( 'ZSYTRI_ROOK', INFOT, NOUT, LERR, OK )
  356. *
  357. * ZSYTRS_ROOK
  358. *
  359. SRNAMT = 'ZSYTRS_ROOK'
  360. INFOT = 1
  361. CALL ZSYTRS_ROOK( '/', 0, 0, A, 1, IP, B, 1, INFO )
  362. CALL CHKXER( 'ZSYTRS_ROOK', INFOT, NOUT, LERR, OK )
  363. INFOT = 2
  364. CALL ZSYTRS_ROOK( 'U', -1, 0, A, 1, IP, B, 1, INFO )
  365. CALL CHKXER( 'ZSYTRS_ROOK', INFOT, NOUT, LERR, OK )
  366. INFOT = 3
  367. CALL ZSYTRS_ROOK( 'U', 0, -1, A, 1, IP, B, 1, INFO )
  368. CALL CHKXER( 'ZSYTRS_ROOK', INFOT, NOUT, LERR, OK )
  369. INFOT = 5
  370. CALL ZSYTRS_ROOK( 'U', 2, 1, A, 1, IP, B, 2, INFO )
  371. CALL CHKXER( 'ZSYTRS_ROOK', INFOT, NOUT, LERR, OK )
  372. INFOT = 8
  373. CALL ZSYTRS_ROOK( 'U', 2, 1, A, 2, IP, B, 1, INFO )
  374. CALL CHKXER( 'ZSYTRS_ROOK', INFOT, NOUT, LERR, OK )
  375. *
  376. * ZSYCON_ROOK
  377. *
  378. SRNAMT = 'ZSYCON_ROOK'
  379. INFOT = 1
  380. CALL ZSYCON_ROOK( '/', 0, A, 1, IP, ANRM, RCOND, W, INFO )
  381. CALL CHKXER( 'ZSYCON_ROOK', INFOT, NOUT, LERR, OK )
  382. INFOT = 2
  383. CALL ZSYCON_ROOK( 'U', -1, A, 1, IP, ANRM, RCOND, W, INFO )
  384. CALL CHKXER( 'ZSYCON_ROOK', INFOT, NOUT, LERR, OK )
  385. INFOT = 4
  386. CALL ZSYCON_ROOK( 'U', 2, A, 1, IP, ANRM, RCOND, W, INFO )
  387. CALL CHKXER( 'ZSYCON_ROOK', INFOT, NOUT, LERR, OK )
  388. INFOT = 6
  389. CALL ZSYCON_ROOK( 'U', 1, A, 1, IP, -ANRM, RCOND, W, INFO )
  390. CALL CHKXER( 'ZSYCON_ROOK', INFOT, NOUT, LERR, OK )
  391. *
  392. * Test error exits of the routines that use factorization
  393. * of a symmetric indefinite packed matrix with patrial
  394. * (Bunch-Kaufman) pivoting.
  395. *
  396. ELSE IF( LSAMEN( 2, C2, 'SP' ) ) THEN
  397. *
  398. * ZSPTRF
  399. *
  400. SRNAMT = 'ZSPTRF'
  401. INFOT = 1
  402. CALL ZSPTRF( '/', 0, A, IP, INFO )
  403. CALL CHKXER( 'ZSPTRF', INFOT, NOUT, LERR, OK )
  404. INFOT = 2
  405. CALL ZSPTRF( 'U', -1, A, IP, INFO )
  406. CALL CHKXER( 'ZSPTRF', INFOT, NOUT, LERR, OK )
  407. *
  408. * ZSPTRI
  409. *
  410. SRNAMT = 'ZSPTRI'
  411. INFOT = 1
  412. CALL ZSPTRI( '/', 0, A, IP, W, INFO )
  413. CALL CHKXER( 'ZSPTRI', INFOT, NOUT, LERR, OK )
  414. INFOT = 2
  415. CALL ZSPTRI( 'U', -1, A, IP, W, INFO )
  416. CALL CHKXER( 'ZSPTRI', INFOT, NOUT, LERR, OK )
  417. *
  418. * ZSPTRS
  419. *
  420. SRNAMT = 'ZSPTRS'
  421. INFOT = 1
  422. CALL ZSPTRS( '/', 0, 0, A, IP, B, 1, INFO )
  423. CALL CHKXER( 'ZSPTRS', INFOT, NOUT, LERR, OK )
  424. INFOT = 2
  425. CALL ZSPTRS( 'U', -1, 0, A, IP, B, 1, INFO )
  426. CALL CHKXER( 'ZSPTRS', INFOT, NOUT, LERR, OK )
  427. INFOT = 3
  428. CALL ZSPTRS( 'U', 0, -1, A, IP, B, 1, INFO )
  429. CALL CHKXER( 'ZSPTRS', INFOT, NOUT, LERR, OK )
  430. INFOT = 7
  431. CALL ZSPTRS( 'U', 2, 1, A, IP, B, 1, INFO )
  432. CALL CHKXER( 'ZSPTRS', INFOT, NOUT, LERR, OK )
  433. *
  434. * ZSPRFS
  435. *
  436. SRNAMT = 'ZSPRFS'
  437. INFOT = 1
  438. CALL ZSPRFS( '/', 0, 0, A, AF, IP, B, 1, X, 1, R1, R2, W, R,
  439. $ INFO )
  440. CALL CHKXER( 'ZSPRFS', INFOT, NOUT, LERR, OK )
  441. INFOT = 2
  442. CALL ZSPRFS( 'U', -1, 0, A, AF, IP, B, 1, X, 1, R1, R2, W, R,
  443. $ INFO )
  444. CALL CHKXER( 'ZSPRFS', INFOT, NOUT, LERR, OK )
  445. INFOT = 3
  446. CALL ZSPRFS( 'U', 0, -1, A, AF, IP, B, 1, X, 1, R1, R2, W, R,
  447. $ INFO )
  448. CALL CHKXER( 'ZSPRFS', INFOT, NOUT, LERR, OK )
  449. INFOT = 8
  450. CALL ZSPRFS( 'U', 2, 1, A, AF, IP, B, 1, X, 2, R1, R2, W, R,
  451. $ INFO )
  452. CALL CHKXER( 'ZSPRFS', INFOT, NOUT, LERR, OK )
  453. INFOT = 10
  454. CALL ZSPRFS( 'U', 2, 1, A, AF, IP, B, 2, X, 1, R1, R2, W, R,
  455. $ INFO )
  456. CALL CHKXER( 'ZSPRFS', INFOT, NOUT, LERR, OK )
  457. *
  458. * ZSPCON
  459. *
  460. SRNAMT = 'ZSPCON'
  461. INFOT = 1
  462. CALL ZSPCON( '/', 0, A, IP, ANRM, RCOND, W, INFO )
  463. CALL CHKXER( 'ZSPCON', INFOT, NOUT, LERR, OK )
  464. INFOT = 2
  465. CALL ZSPCON( 'U', -1, A, IP, ANRM, RCOND, W, INFO )
  466. CALL CHKXER( 'ZSPCON', INFOT, NOUT, LERR, OK )
  467. INFOT = 5
  468. CALL ZSPCON( 'U', 1, A, IP, -ANRM, RCOND, W, INFO )
  469. CALL CHKXER( 'ZSPCON', INFOT, NOUT, LERR, OK )
  470. END IF
  471. *
  472. * Print a summary line.
  473. *
  474. CALL ALAESM( PATH, OK, NOUT )
  475. *
  476. RETURN
  477. *
  478. * End of ZERRSY
  479. *
  480. END