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zlatb4.f 12 kB

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  1. *> \brief \b ZLATB4
  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 ZLATB4( PATH, IMAT, M, N, TYPE, KL, KU, ANORM, MODE,
  12. * CNDNUM, DIST )
  13. *
  14. * .. Scalar Arguments ..
  15. * CHARACTER DIST, TYPE
  16. * CHARACTER*3 PATH
  17. * INTEGER IMAT, KL, KU, M, MODE, N
  18. * DOUBLE PRECISION ANORM, CNDNUM
  19. * ..
  20. *
  21. *
  22. *> \par Purpose:
  23. * =============
  24. *>
  25. *> \verbatim
  26. *>
  27. *> ZLATB4 sets parameters for the matrix generator based on the type of
  28. *> matrix to be generated.
  29. *> \endverbatim
  30. *
  31. * Arguments:
  32. * ==========
  33. *
  34. *> \param[in] PATH
  35. *> \verbatim
  36. *> PATH is CHARACTER*3
  37. *> The LAPACK path name.
  38. *> \endverbatim
  39. *>
  40. *> \param[in] IMAT
  41. *> \verbatim
  42. *> IMAT is INTEGER
  43. *> An integer key describing which matrix to generate for this
  44. *> path.
  45. *> \endverbatim
  46. *>
  47. *> \param[in] M
  48. *> \verbatim
  49. *> M is INTEGER
  50. *> The number of rows in the matrix to be generated.
  51. *> \endverbatim
  52. *>
  53. *> \param[in] N
  54. *> \verbatim
  55. *> N is INTEGER
  56. *> The number of columns in the matrix to be generated.
  57. *> \endverbatim
  58. *>
  59. *> \param[out] TYPE
  60. *> \verbatim
  61. *> TYPE is CHARACTER*1
  62. *> The type of the matrix to be generated:
  63. *> = 'S': symmetric matrix
  64. *> = 'H': Hermitian matrix
  65. *> = 'P': Hermitian positive (semi)definite matrix
  66. *> = 'N': nonsymmetric matrix
  67. *> \endverbatim
  68. *>
  69. *> \param[out] KL
  70. *> \verbatim
  71. *> KL is INTEGER
  72. *> The lower band width of the matrix to be generated.
  73. *> \endverbatim
  74. *>
  75. *> \param[out] KU
  76. *> \verbatim
  77. *> KU is INTEGER
  78. *> The upper band width of the matrix to be generated.
  79. *> \endverbatim
  80. *>
  81. *> \param[out] ANORM
  82. *> \verbatim
  83. *> ANORM is DOUBLE PRECISION
  84. *> The desired norm of the matrix to be generated. The diagonal
  85. *> matrix of singular values or eigenvalues is scaled by this
  86. *> value.
  87. *> \endverbatim
  88. *>
  89. *> \param[out] MODE
  90. *> \verbatim
  91. *> MODE is INTEGER
  92. *> A key indicating how to choose the vector of eigenvalues.
  93. *> \endverbatim
  94. *>
  95. *> \param[out] CNDNUM
  96. *> \verbatim
  97. *> CNDNUM is DOUBLE PRECISION
  98. *> The desired condition number.
  99. *> \endverbatim
  100. *>
  101. *> \param[out] DIST
  102. *> \verbatim
  103. *> DIST is CHARACTER*1
  104. *> The type of distribution to be used by the random number
  105. *> generator.
  106. *> \endverbatim
  107. *
  108. * Authors:
  109. * ========
  110. *
  111. *> \author Univ. of Tennessee
  112. *> \author Univ. of California Berkeley
  113. *> \author Univ. of Colorado Denver
  114. *> \author NAG Ltd.
  115. *
  116. *> \date November 2013
  117. *
  118. *> \ingroup complex16_lin
  119. *
  120. * =====================================================================
  121. SUBROUTINE ZLATB4( PATH, IMAT, M, N, TYPE, KL, KU, ANORM, MODE,
  122. $ CNDNUM, DIST )
  123. *
  124. * -- LAPACK test routine (version 3.5.0) --
  125. * -- LAPACK is a software package provided by Univ. of Tennessee, --
  126. * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
  127. * November 2013
  128. *
  129. * .. Scalar Arguments ..
  130. CHARACTER DIST, TYPE
  131. CHARACTER*3 PATH
  132. INTEGER IMAT, KL, KU, M, MODE, N
  133. DOUBLE PRECISION ANORM, CNDNUM
  134. * ..
  135. *
  136. * =====================================================================
  137. *
  138. * .. Parameters ..
  139. DOUBLE PRECISION SHRINK, TENTH
  140. PARAMETER ( SHRINK = 0.25D0, TENTH = 0.1D+0 )
  141. DOUBLE PRECISION ONE
  142. PARAMETER ( ONE = 1.0D+0 )
  143. DOUBLE PRECISION TWO
  144. PARAMETER ( TWO = 2.0D+0 )
  145. * ..
  146. * .. Local Scalars ..
  147. LOGICAL FIRST
  148. CHARACTER*2 C2
  149. INTEGER MAT
  150. DOUBLE PRECISION BADC1, BADC2, EPS, LARGE, SMALL
  151. * ..
  152. * .. External Functions ..
  153. LOGICAL LSAMEN
  154. DOUBLE PRECISION DLAMCH
  155. EXTERNAL LSAMEN, DLAMCH
  156. * ..
  157. * .. Intrinsic Functions ..
  158. INTRINSIC ABS, MAX, SQRT
  159. * ..
  160. * .. External Subroutines ..
  161. EXTERNAL DLABAD
  162. * ..
  163. * .. Save statement ..
  164. SAVE EPS, SMALL, LARGE, BADC1, BADC2, FIRST
  165. * ..
  166. * .. Data statements ..
  167. DATA FIRST / .TRUE. /
  168. * ..
  169. * .. Executable Statements ..
  170. *
  171. * Set some constants for use in the subroutine.
  172. *
  173. IF( FIRST ) THEN
  174. FIRST = .FALSE.
  175. EPS = DLAMCH( 'Precision' )
  176. BADC2 = TENTH / EPS
  177. BADC1 = SQRT( BADC2 )
  178. SMALL = DLAMCH( 'Safe minimum' )
  179. LARGE = ONE / SMALL
  180. *
  181. * If it looks like we're on a Cray, take the square root of
  182. * SMALL and LARGE to avoid overflow and underflow problems.
  183. *
  184. CALL DLABAD( SMALL, LARGE )
  185. SMALL = SHRINK*( SMALL / EPS )
  186. LARGE = ONE / SMALL
  187. END IF
  188. *
  189. C2 = PATH( 2: 3 )
  190. *
  191. * Set some parameters we don't plan to change.
  192. *
  193. DIST = 'S'
  194. MODE = 3
  195. *
  196. * xQR, xLQ, xQL, xRQ: Set parameters to generate a general
  197. * M x N matrix.
  198. *
  199. IF( LSAMEN( 2, C2, 'QR' ) .OR. LSAMEN( 2, C2, 'LQ' ) .OR.
  200. $ LSAMEN( 2, C2, 'QL' ) .OR. LSAMEN( 2, C2, 'RQ' ) ) THEN
  201. *
  202. * Set TYPE, the type of matrix to be generated.
  203. *
  204. TYPE = 'N'
  205. *
  206. * Set the lower and upper bandwidths.
  207. *
  208. IF( IMAT.EQ.1 ) THEN
  209. KL = 0
  210. KU = 0
  211. ELSE IF( IMAT.EQ.2 ) THEN
  212. KL = 0
  213. KU = MAX( N-1, 0 )
  214. ELSE IF( IMAT.EQ.3 ) THEN
  215. KL = MAX( M-1, 0 )
  216. KU = 0
  217. ELSE
  218. KL = MAX( M-1, 0 )
  219. KU = MAX( N-1, 0 )
  220. END IF
  221. *
  222. * Set the condition number and norm.
  223. *
  224. IF( IMAT.EQ.5 ) THEN
  225. CNDNUM = BADC1
  226. ELSE IF( IMAT.EQ.6 ) THEN
  227. CNDNUM = BADC2
  228. ELSE
  229. CNDNUM = TWO
  230. END IF
  231. *
  232. IF( IMAT.EQ.7 ) THEN
  233. ANORM = SMALL
  234. ELSE IF( IMAT.EQ.8 ) THEN
  235. ANORM = LARGE
  236. ELSE
  237. ANORM = ONE
  238. END IF
  239. *
  240. ELSE IF( LSAMEN( 2, C2, 'GE' ) ) THEN
  241. *
  242. * xGE: Set parameters to generate a general M x N matrix.
  243. *
  244. * Set TYPE, the type of matrix to be generated.
  245. *
  246. TYPE = 'N'
  247. *
  248. * Set the lower and upper bandwidths.
  249. *
  250. IF( IMAT.EQ.1 ) THEN
  251. KL = 0
  252. KU = 0
  253. ELSE IF( IMAT.EQ.2 ) THEN
  254. KL = 0
  255. KU = MAX( N-1, 0 )
  256. ELSE IF( IMAT.EQ.3 ) THEN
  257. KL = MAX( M-1, 0 )
  258. KU = 0
  259. ELSE
  260. KL = MAX( M-1, 0 )
  261. KU = MAX( N-1, 0 )
  262. END IF
  263. *
  264. * Set the condition number and norm.
  265. *
  266. IF( IMAT.EQ.8 ) THEN
  267. CNDNUM = BADC1
  268. ELSE IF( IMAT.EQ.9 ) THEN
  269. CNDNUM = BADC2
  270. ELSE
  271. CNDNUM = TWO
  272. END IF
  273. *
  274. IF( IMAT.EQ.10 ) THEN
  275. ANORM = SMALL
  276. ELSE IF( IMAT.EQ.11 ) THEN
  277. ANORM = LARGE
  278. ELSE
  279. ANORM = ONE
  280. END IF
  281. *
  282. ELSE IF( LSAMEN( 2, C2, 'GB' ) ) THEN
  283. *
  284. * xGB: Set parameters to generate a general banded matrix.
  285. *
  286. * Set TYPE, the type of matrix to be generated.
  287. *
  288. TYPE = 'N'
  289. *
  290. * Set the condition number and norm.
  291. *
  292. IF( IMAT.EQ.5 ) THEN
  293. CNDNUM = BADC1
  294. ELSE IF( IMAT.EQ.6 ) THEN
  295. CNDNUM = TENTH*BADC2
  296. ELSE
  297. CNDNUM = TWO
  298. END IF
  299. *
  300. IF( IMAT.EQ.7 ) THEN
  301. ANORM = SMALL
  302. ELSE IF( IMAT.EQ.8 ) THEN
  303. ANORM = LARGE
  304. ELSE
  305. ANORM = ONE
  306. END IF
  307. *
  308. ELSE IF( LSAMEN( 2, C2, 'GT' ) ) THEN
  309. *
  310. * xGT: Set parameters to generate a general tridiagonal matrix.
  311. *
  312. * Set TYPE, the type of matrix to be generated.
  313. *
  314. TYPE = 'N'
  315. *
  316. * Set the lower and upper bandwidths.
  317. *
  318. IF( IMAT.EQ.1 ) THEN
  319. KL = 0
  320. ELSE
  321. KL = 1
  322. END IF
  323. KU = KL
  324. *
  325. * Set the condition number and norm.
  326. *
  327. IF( IMAT.EQ.3 ) THEN
  328. CNDNUM = BADC1
  329. ELSE IF( IMAT.EQ.4 ) THEN
  330. CNDNUM = BADC2
  331. ELSE
  332. CNDNUM = TWO
  333. END IF
  334. *
  335. IF( IMAT.EQ.5 .OR. IMAT.EQ.11 ) THEN
  336. ANORM = SMALL
  337. ELSE IF( IMAT.EQ.6 .OR. IMAT.EQ.12 ) THEN
  338. ANORM = LARGE
  339. ELSE
  340. ANORM = ONE
  341. END IF
  342. *
  343. ELSE IF( LSAMEN( 2, C2, 'PO' ) .OR. LSAMEN( 2, C2, 'PP' ) .OR.
  344. $ LSAMEN( 2, C2, 'HE' ) .OR. LSAMEN( 2, C2, 'HP' ) .OR.
  345. $ LSAMEN( 2, C2, 'SY' ) .OR. LSAMEN( 2, C2, 'SP' ) ) THEN
  346. *
  347. * xPO, xPP, xHE, xHP, xSY, xSP: Set parameters to generate a
  348. * symmetric or Hermitian matrix.
  349. *
  350. * Set TYPE, the type of matrix to be generated.
  351. *
  352. TYPE = C2( 1: 1 )
  353. *
  354. * Set the lower and upper bandwidths.
  355. *
  356. IF( IMAT.EQ.1 ) THEN
  357. KL = 0
  358. ELSE
  359. KL = MAX( N-1, 0 )
  360. END IF
  361. KU = KL
  362. *
  363. * Set the condition number and norm.
  364. *
  365. IF( IMAT.EQ.6 ) THEN
  366. CNDNUM = BADC1
  367. ELSE IF( IMAT.EQ.7 ) THEN
  368. CNDNUM = BADC2
  369. ELSE
  370. CNDNUM = TWO
  371. END IF
  372. *
  373. IF( IMAT.EQ.8 ) THEN
  374. ANORM = SMALL
  375. ELSE IF( IMAT.EQ.9 ) THEN
  376. ANORM = LARGE
  377. ELSE
  378. ANORM = ONE
  379. END IF
  380. *
  381. ELSE IF( LSAMEN( 2, C2, 'PB' ) ) THEN
  382. *
  383. * xPB: Set parameters to generate a symmetric band matrix.
  384. *
  385. * Set TYPE, the type of matrix to be generated.
  386. *
  387. TYPE = 'P'
  388. *
  389. * Set the norm and condition number.
  390. *
  391. IF( IMAT.EQ.5 ) THEN
  392. CNDNUM = BADC1
  393. ELSE IF( IMAT.EQ.6 ) THEN
  394. CNDNUM = BADC2
  395. ELSE
  396. CNDNUM = TWO
  397. END IF
  398. *
  399. IF( IMAT.EQ.7 ) THEN
  400. ANORM = SMALL
  401. ELSE IF( IMAT.EQ.8 ) THEN
  402. ANORM = LARGE
  403. ELSE
  404. ANORM = ONE
  405. END IF
  406. *
  407. ELSE IF( LSAMEN( 2, C2, 'PT' ) ) THEN
  408. *
  409. * xPT: Set parameters to generate a symmetric positive definite
  410. * tridiagonal matrix.
  411. *
  412. TYPE = 'P'
  413. IF( IMAT.EQ.1 ) THEN
  414. KL = 0
  415. ELSE
  416. KL = 1
  417. END IF
  418. KU = KL
  419. *
  420. * Set the condition number and norm.
  421. *
  422. IF( IMAT.EQ.3 ) THEN
  423. CNDNUM = BADC1
  424. ELSE IF( IMAT.EQ.4 ) THEN
  425. CNDNUM = BADC2
  426. ELSE
  427. CNDNUM = TWO
  428. END IF
  429. *
  430. IF( IMAT.EQ.5 .OR. IMAT.EQ.11 ) THEN
  431. ANORM = SMALL
  432. ELSE IF( IMAT.EQ.6 .OR. IMAT.EQ.12 ) THEN
  433. ANORM = LARGE
  434. ELSE
  435. ANORM = ONE
  436. END IF
  437. *
  438. ELSE IF( LSAMEN( 2, C2, 'TR' ) .OR. LSAMEN( 2, C2, 'TP' ) ) THEN
  439. *
  440. * xTR, xTP: Set parameters to generate a triangular matrix
  441. *
  442. * Set TYPE, the type of matrix to be generated.
  443. *
  444. TYPE = 'N'
  445. *
  446. * Set the lower and upper bandwidths.
  447. *
  448. MAT = ABS( IMAT )
  449. IF( MAT.EQ.1 .OR. MAT.EQ.7 ) THEN
  450. KL = 0
  451. KU = 0
  452. ELSE IF( IMAT.LT.0 ) THEN
  453. KL = MAX( N-1, 0 )
  454. KU = 0
  455. ELSE
  456. KL = 0
  457. KU = MAX( N-1, 0 )
  458. END IF
  459. *
  460. * Set the condition number and norm.
  461. *
  462. IF( MAT.EQ.3 .OR. MAT.EQ.9 ) THEN
  463. CNDNUM = BADC1
  464. ELSE IF( MAT.EQ.4 .OR. MAT.EQ.10 ) THEN
  465. CNDNUM = BADC2
  466. ELSE
  467. CNDNUM = TWO
  468. END IF
  469. *
  470. IF( MAT.EQ.5 ) THEN
  471. ANORM = SMALL
  472. ELSE IF( MAT.EQ.6 ) THEN
  473. ANORM = LARGE
  474. ELSE
  475. ANORM = ONE
  476. END IF
  477. *
  478. ELSE IF( LSAMEN( 2, C2, 'TB' ) ) THEN
  479. *
  480. * xTB: Set parameters to generate a triangular band matrix.
  481. *
  482. * Set TYPE, the type of matrix to be generated.
  483. *
  484. TYPE = 'N'
  485. *
  486. * Set the norm and condition number.
  487. *
  488. IF( IMAT.EQ.2 .OR. IMAT.EQ.8 ) THEN
  489. CNDNUM = BADC1
  490. ELSE IF( IMAT.EQ.3 .OR. IMAT.EQ.9 ) THEN
  491. CNDNUM = BADC2
  492. ELSE
  493. CNDNUM = TWO
  494. END IF
  495. *
  496. IF( IMAT.EQ.4 ) THEN
  497. ANORM = SMALL
  498. ELSE IF( IMAT.EQ.5 ) THEN
  499. ANORM = LARGE
  500. ELSE
  501. ANORM = ONE
  502. END IF
  503. END IF
  504. IF( N.LE.1 )
  505. $ CNDNUM = ONE
  506. *
  507. RETURN
  508. *
  509. * End of ZLATB4
  510. *
  511. END