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c_zblat1c.c 30 kB

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  1. #include <math.h>
  2. #include <stdlib.h>
  3. #include <string.h>
  4. #include <stdio.h>
  5. #include <complex.h>
  6. #ifdef complex
  7. #undef complex
  8. #endif
  9. #ifdef I
  10. #undef I
  11. #endif
  12. #include "common.h"
  13. typedef blasint integer;
  14. typedef unsigned int uinteger;
  15. typedef char *address;
  16. typedef short int shortint;
  17. typedef float real;
  18. typedef double doublereal;
  19. typedef struct { real r, i; } complex;
  20. typedef struct { doublereal r, i; } doublecomplex;
  21. #ifdef _MSC_VER
  22. static inline _Fcomplex Cf(complex *z) {_Fcomplex zz={z->r , z->i}; return zz;}
  23. static inline _Dcomplex Cd(doublecomplex *z) {_Dcomplex zz={z->r , z->i};return zz;}
  24. static inline _Fcomplex * _pCf(complex *z) {return (_Fcomplex*)z;}
  25. static inline _Dcomplex * _pCd(doublecomplex *z) {return (_Dcomplex*)z;}
  26. #else
  27. static inline _Complex float Cf(complex *z) {return z->r + z->i*_Complex_I;}
  28. static inline _Complex double Cd(doublecomplex *z) {return z->r + z->i*_Complex_I;}
  29. static inline _Complex float * _pCf(complex *z) {return (_Complex float*)z;}
  30. static inline _Complex double * _pCd(doublecomplex *z) {return (_Complex double*)z;}
  31. #endif
  32. #define pCf(z) (*_pCf(z))
  33. #define pCd(z) (*_pCd(z))
  34. typedef int logical;
  35. typedef short int shortlogical;
  36. typedef char logical1;
  37. typedef char integer1;
  38. #define TRUE_ (1)
  39. #define FALSE_ (0)
  40. /* Extern is for use with -E */
  41. #ifndef Extern
  42. #define Extern extern
  43. #endif
  44. /* I/O stuff */
  45. typedef int flag;
  46. typedef int ftnlen;
  47. typedef int ftnint;
  48. /*external read, write*/
  49. typedef struct
  50. { flag cierr;
  51. ftnint ciunit;
  52. flag ciend;
  53. char *cifmt;
  54. ftnint cirec;
  55. } cilist;
  56. /*internal read, write*/
  57. typedef struct
  58. { flag icierr;
  59. char *iciunit;
  60. flag iciend;
  61. char *icifmt;
  62. ftnint icirlen;
  63. ftnint icirnum;
  64. } icilist;
  65. /*open*/
  66. typedef struct
  67. { flag oerr;
  68. ftnint ounit;
  69. char *ofnm;
  70. ftnlen ofnmlen;
  71. char *osta;
  72. char *oacc;
  73. char *ofm;
  74. ftnint orl;
  75. char *oblnk;
  76. } olist;
  77. /*close*/
  78. typedef struct
  79. { flag cerr;
  80. ftnint cunit;
  81. char *csta;
  82. } cllist;
  83. /*rewind, backspace, endfile*/
  84. typedef struct
  85. { flag aerr;
  86. ftnint aunit;
  87. } alist;
  88. /* inquire */
  89. typedef struct
  90. { flag inerr;
  91. ftnint inunit;
  92. char *infile;
  93. ftnlen infilen;
  94. ftnint *inex; /*parameters in standard's order*/
  95. ftnint *inopen;
  96. ftnint *innum;
  97. ftnint *innamed;
  98. char *inname;
  99. ftnlen innamlen;
  100. char *inacc;
  101. ftnlen inacclen;
  102. char *inseq;
  103. ftnlen inseqlen;
  104. char *indir;
  105. ftnlen indirlen;
  106. char *infmt;
  107. ftnlen infmtlen;
  108. char *inform;
  109. ftnint informlen;
  110. char *inunf;
  111. ftnlen inunflen;
  112. ftnint *inrecl;
  113. ftnint *innrec;
  114. char *inblank;
  115. ftnlen inblanklen;
  116. } inlist;
  117. #define VOID void
  118. union Multitype { /* for multiple entry points */
  119. integer1 g;
  120. shortint h;
  121. integer i;
  122. /* longint j; */
  123. real r;
  124. doublereal d;
  125. complex c;
  126. doublecomplex z;
  127. };
  128. typedef union Multitype Multitype;
  129. struct Vardesc { /* for Namelist */
  130. char *name;
  131. char *addr;
  132. ftnlen *dims;
  133. int type;
  134. };
  135. typedef struct Vardesc Vardesc;
  136. struct Namelist {
  137. char *name;
  138. Vardesc **vars;
  139. int nvars;
  140. };
  141. typedef struct Namelist Namelist;
  142. #define abs(x) ((x) >= 0 ? (x) : -(x))
  143. #define dabs(x) (fabs(x))
  144. #define f2cmin(a,b) ((a) <= (b) ? (a) : (b))
  145. #define f2cmax(a,b) ((a) >= (b) ? (a) : (b))
  146. #define dmin(a,b) (f2cmin(a,b))
  147. #define dmax(a,b) (f2cmax(a,b))
  148. #define bit_test(a,b) ((a) >> (b) & 1)
  149. #define bit_clear(a,b) ((a) & ~((uinteger)1 << (b)))
  150. #define bit_set(a,b) ((a) | ((uinteger)1 << (b)))
  151. #define abort_() { sig_die("Fortran abort routine called", 1); }
  152. #define c_abs(z) (cabsf(Cf(z)))
  153. #define c_cos(R,Z) { pCf(R)=ccos(Cf(Z)); }
  154. #ifdef _MSC_VER
  155. #define c_div(c, a, b) {Cf(c)._Val[0] = (Cf(a)._Val[0]/Cf(b)._Val[0]); Cf(c)._Val[1]=(Cf(a)._Val[1]/Cf(b)._Val[1]);}
  156. #define z_div(c, a, b) {Cd(c)._Val[0] = (Cd(a)._Val[0]/Cd(b)._Val[0]); Cd(c)._Val[1]=(Cd(a)._Val[1]/Cd(b)._Val[1]);}
  157. #else
  158. #define c_div(c, a, b) {pCf(c) = Cf(a)/Cf(b);}
  159. #define z_div(c, a, b) {pCd(c) = Cd(a)/Cd(b);}
  160. #endif
  161. #define c_exp(R, Z) {pCf(R) = cexpf(Cf(Z));}
  162. #define c_log(R, Z) {pCf(R) = clogf(Cf(Z));}
  163. #define c_sin(R, Z) {pCf(R) = csinf(Cf(Z));}
  164. //#define c_sqrt(R, Z) {*(R) = csqrtf(Cf(Z));}
  165. #define c_sqrt(R, Z) {pCf(R) = csqrtf(Cf(Z));}
  166. #define d_abs(x) (fabs(*(x)))
  167. #define d_acos(x) (acos(*(x)))
  168. #define d_asin(x) (asin(*(x)))
  169. #define d_atan(x) (atan(*(x)))
  170. #define d_atn2(x, y) (atan2(*(x),*(y)))
  171. #define d_cnjg(R, Z) { pCd(R) = conj(Cd(Z)); }
  172. #define r_cnjg(R, Z) { pCf(R) = conjf(Cf(Z)); }
  173. #define d_cos(x) (cos(*(x)))
  174. #define d_cosh(x) (cosh(*(x)))
  175. #define d_dim(__a, __b) ( *(__a) > *(__b) ? *(__a) - *(__b) : 0.0 )
  176. #define d_exp(x) (exp(*(x)))
  177. #define d_imag(z) (cimag(Cd(z)))
  178. #define r_imag(z) (cimagf(Cf(z)))
  179. #define d_int(__x) (*(__x)>0 ? floor(*(__x)) : -floor(- *(__x)))
  180. #define r_int(__x) (*(__x)>0 ? floor(*(__x)) : -floor(- *(__x)))
  181. #define d_lg10(x) ( 0.43429448190325182765 * log(*(x)) )
  182. #define r_lg10(x) ( 0.43429448190325182765 * log(*(x)) )
  183. #define d_log(x) (log(*(x)))
  184. #define d_mod(x, y) (fmod(*(x), *(y)))
  185. #define u_nint(__x) ((__x)>=0 ? floor((__x) + .5) : -floor(.5 - (__x)))
  186. #define d_nint(x) u_nint(*(x))
  187. #define u_sign(__a,__b) ((__b) >= 0 ? ((__a) >= 0 ? (__a) : -(__a)) : -((__a) >= 0 ? (__a) : -(__a)))
  188. #define d_sign(a,b) u_sign(*(a),*(b))
  189. #define r_sign(a,b) u_sign(*(a),*(b))
  190. #define d_sin(x) (sin(*(x)))
  191. #define d_sinh(x) (sinh(*(x)))
  192. #define d_sqrt(x) (sqrt(*(x)))
  193. #define d_tan(x) (tan(*(x)))
  194. #define d_tanh(x) (tanh(*(x)))
  195. #define i_abs(x) abs(*(x))
  196. #define i_dnnt(x) ((integer)u_nint(*(x)))
  197. #define i_len(s, n) (n)
  198. #define i_nint(x) ((integer)u_nint(*(x)))
  199. #define i_sign(a,b) ((integer)u_sign((integer)*(a),(integer)*(b)))
  200. #define pow_dd(ap, bp) ( pow(*(ap), *(bp)))
  201. #define pow_si(B,E) spow_ui(*(B),*(E))
  202. #define pow_ri(B,E) spow_ui(*(B),*(E))
  203. #define pow_di(B,E) dpow_ui(*(B),*(E))
  204. #define pow_zi(p, a, b) {pCd(p) = zpow_ui(Cd(a), *(b));}
  205. #define pow_ci(p, a, b) {pCf(p) = cpow_ui(Cf(a), *(b));}
  206. #define pow_zz(R,A,B) {pCd(R) = cpow(Cd(A),*(B));}
  207. #define s_cat(lpp, rpp, rnp, np, llp) { ftnlen i, nc, ll; char *f__rp, *lp; ll = (llp); lp = (lpp); for(i=0; i < (int)*(np); ++i) { nc = ll; if((rnp)[i] < nc) nc = (rnp)[i]; ll -= nc; f__rp = (rpp)[i]; while(--nc >= 0) *lp++ = *(f__rp)++; } while(--ll >= 0) *lp++ = ' '; }
  208. #define s_cmp(a,b,c,d) ((integer)strncmp((a),(b),f2cmin((c),(d))))
  209. #define s_copy(A,B,C,D) { int __i,__m; for (__i=0, __m=f2cmin((C),(D)); __i<__m && (B)[__i] != 0; ++__i) (A)[__i] = (B)[__i]; }
  210. #define sig_die(s, kill) { exit(1); }
  211. #define s_stop(s, n) {exit(0);}
  212. #define z_abs(z) (cabs(Cd(z)))
  213. #define z_exp(R, Z) {pCd(R) = cexp(Cd(Z));}
  214. #define z_sqrt(R, Z) {pCd(R) = csqrt(Cd(Z));}
  215. #define myexit_() break;
  216. #define mycycle_() continue;
  217. #define myceiling_(w) {ceil(w)}
  218. #define myhuge_(w) {HUGE_VAL}
  219. //#define mymaxloc_(w,s,e,n) {if (sizeof(*(w)) == sizeof(double)) dmaxloc_((w),*(s),*(e),n); else dmaxloc_((w),*(s),*(e),n);}
  220. #define mymaxloc_(w,s,e,n) dmaxloc_(w,*(s),*(e),n)
  221. /* procedure parameter types for -A and -C++ */
  222. #define F2C_proc_par_types 1
  223. /* Common Block Declarations */
  224. struct {
  225. integer icase, n, incx, incy, mode;
  226. logical pass;
  227. } combla_;
  228. #define combla_1 combla_
  229. /* Table of constant values */
  230. static integer c__1 = 1;
  231. static integer c__5 = 5;
  232. static doublereal c_b43 = 1.;
  233. /* Main program */ int main(void)
  234. {
  235. /* Initialized data */
  236. static doublereal sfac = 9.765625e-4;
  237. /* Local variables */
  238. extern /* Subroutine */ int check1_(doublereal*), check2_(doublereal*);
  239. static integer ic;
  240. extern /* Subroutine */ int header_(void);
  241. /* Test program for the COMPLEX*16 Level 1 CBLAS. */
  242. /* Based upon the original CBLAS test routine together with: */
  243. /* F06GAF Example Program Text */
  244. /* .. Parameters .. */
  245. /* .. Scalars in Common .. */
  246. /* .. Local Scalars .. */
  247. /* .. External Subroutines .. */
  248. /* .. Common blocks .. */
  249. /* .. Data statements .. */
  250. /* .. Executable Statements .. */
  251. printf("Complex CBLAS Test Program Results\n");
  252. for (ic = 1; ic <= 10; ++ic) {
  253. combla_1.icase = ic;
  254. header_();
  255. /* Initialize PASS, INCX, INCY, and MODE for a new case. */
  256. /* The value 9999 for INCX, INCY or MODE will appear in the */
  257. /* detailed output, if any, for cases that do not involve */
  258. /* these parameters. */
  259. combla_1.pass = TRUE_;
  260. combla_1.incx = 9999;
  261. combla_1.incy = 9999;
  262. combla_1.mode = 9999;
  263. if (combla_1.icase <= 5) {
  264. check2_(&sfac);
  265. } else if (combla_1.icase >= 6) {
  266. check1_(&sfac);
  267. }
  268. /* -- Print */
  269. if (combla_1.pass) {
  270. printf(" ----- PASS -----\n");
  271. }
  272. /* L20: */
  273. }
  274. exit(0);
  275. } /* MAIN__ */
  276. /* Subroutine */ int header_(void)
  277. {
  278. /* Initialized data */
  279. static char l[15][13] = { "CBLAS_ZDOTC " , "CBLAS_ZDOTU " , "CBLAS_ZAXPY " ,
  280. "CBLAS_ZCOPY " , "CBLAS_ZSWAP " , "CBLAS_DZNRM2" , "CBLAS_DZASUM" ,
  281. "CBLAS_ZSCAL " , "CBLAS_ZDSCAL" , "CBLAS_IZAMAX" };
  282. /* .. Parameters .. */
  283. /* .. Scalars in Common .. */
  284. /* .. Local Arrays .. */
  285. /* .. Common blocks .. */
  286. /* .. Data statements .. */
  287. /* .. Executable Statements .. */
  288. printf("Test of subprogram number %3d %15s", combla_1.icase, l[combla_1.icase-1]);
  289. return 0;
  290. } /* header_ */
  291. /* Subroutine */ int check1_(doublereal* sfac)
  292. {
  293. /* Initialized data */
  294. static doublereal strue2[5] = { 0.,.5,.6,.7,.7 };
  295. static doublereal strue4[5] = { 0.,.7,1.,1.3,1.7 };
  296. static doublecomplex ctrue5[80] /* was [8][5][2] */ = { {.1,.1},{1.,
  297. 2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{-.16,-.37},{
  298. 3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{-.17,-.19}
  299. ,{.13,-.39},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{.11,
  300. -.03},{-.17,.46},{-.17,-.19},{7.,8.},{7.,8.},{7.,8.},{7.,8.},{7.,
  301. 8.},{.19,-.17},{.32,.09},{.23,-.24},{.18,.01},{2.,3.},{2.,3.},{2.,
  302. 3.},{2.,3.},{.1,.1},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{4.,
  303. 5.},{4.,5.},{-.16,-.37},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{
  304. 6.,7.},{6.,7.},{-.17,-.19},{8.,9.},{.13,-.39},{2.,5.},{2.,5.},{2.,
  305. 5.},{2.,5.},{2.,5.},{.11,-.03},{3.,6.},{-.17,.46},{4.,7.},{-.17,
  306. -.19},{7.,2.},{7.,2.},{7.,2.},{.19,-.17},{5.,8.},{.32,.09},{6.,9.}
  307. ,{.23,-.24},{8.,3.},{.18,.01},{9.,4.} };
  308. static doublecomplex ctrue6[80] /* was [8][5][2] */ = { {.1,.1},{1.,
  309. 2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{.09,-.12},{
  310. 3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{.03,-.09},
  311. {.15,-.03},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{.03,
  312. .03},{-.18,.03},{.03,-.09},{7.,8.},{7.,8.},{7.,8.},{7.,8.},{7.,8.}
  313. ,{.09,.03},{.03,.12},{.12,.03},{.03,.06},{2.,3.},{2.,3.},{2.,3.},{
  314. 2.,3.},{.1,.1},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{
  315. 4.,5.},{.09,-.12},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{6.,7.},
  316. {6.,7.},{.03,-.09},{8.,9.},{.15,-.03},{2.,5.},{2.,5.},{2.,5.},{2.,
  317. 5.},{2.,5.},{.03,.03},{3.,6.},{-.18,.03},{4.,7.},{.03,-.09},{7.,
  318. 2.},{7.,2.},{7.,2.},{.09,.03},{5.,8.},{.03,.12},{6.,9.},{.12,.03},
  319. {8.,3.},{.03,.06},{9.,4.} };
  320. static integer itrue3[5] = { 0,1,2,2,2 };
  321. static doublereal sa = .3;
  322. static doublecomplex ca = {.4,-.7};
  323. static doublecomplex cv[80] /* was [8][5][2] */ = { {.1,.1},{1.,2.},{1.,
  324. 2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{1.,2.},{.3,-.4},{3.,4.},{3.,
  325. 4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{3.,4.},{.1,-.3},{.5,-.1},{5.,
  326. 6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{5.,6.},{.1,.1},{-.6,.1},{.1,
  327. -.3},{7.,8.},{7.,8.},{7.,8.},{7.,8.},{7.,8.},{.3,.1},{.1,.4},{.4,
  328. .1},{.1,.2},{2.,3.},{2.,3.},{2.,3.},{2.,3.},{.1,.1},{4.,5.},{4.,
  329. 5.},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{4.,5.},{.3,-.4},{6.,7.},{6.,
  330. 7.},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{6.,7.},{.1,-.3},{8.,9.},{.5,
  331. -.1},{2.,5.},{2.,5.},{2.,5.},{2.,5.},{2.,5.},{.1,.1},{3.,6.},{-.6,
  332. .1},{4.,7.},{.1,-.3},{7.,2.},{7.,2.},{7.,2.},{.3,.1},{5.,8.},{.1,
  333. .4},{6.,9.},{.4,.1},{8.,3.},{.1,.2},{9.,4.} };
  334. /* System generated locals */
  335. integer i__1, i__2, i__3;
  336. doublereal d__1;
  337. doublecomplex z__1;
  338. /* Local variables */
  339. static integer i__;
  340. extern /* Subroutine */ int ctest_(integer*, doublecomplex*, doublecomplex*, doublecomplex*, doublereal*);
  341. static doublecomplex mwpcs[5], mwpct[5];
  342. extern /* Subroutine */ int zscaltest_(int*, doublereal*, doublecomplex*, int*), itest1_(int*, int*), stest1_(doublereal*, doublereal*, doublereal*, doublereal*);
  343. static doublecomplex cx[8];
  344. extern doublereal dznrm2test_(integer*, doublecomplex*, integer*);
  345. static integer np1;
  346. extern /* Subroutine */ int zdscaltest_(integer*, doublereal*, doublecomplex*, integer*);
  347. extern integer izamaxtest_(integer*, doublecomplex*, integer*);
  348. extern doublereal dzasumtest_(integer*, doublecomplex*, integer*);
  349. static integer len;
  350. /* .. Parameters .. */
  351. /* .. Scalar Arguments .. */
  352. /* .. Scalars in Common .. */
  353. /* .. Local Scalars .. */
  354. /* .. Local Arrays .. */
  355. /* .. External Functions .. */
  356. /* .. External Subroutines .. */
  357. /* .. Intrinsic Functions .. */
  358. /* .. Common blocks .. */
  359. /* .. Data statements .. */
  360. /* .. Executable Statements .. */
  361. for (combla_1.incx = 1; combla_1.incx <= 2; ++combla_1.incx) {
  362. for (np1 = 1; np1 <= 5; ++np1) {
  363. combla_1.n = np1 - 1;
  364. len = f2cmax(combla_1.n,1) << 1;
  365. /* .. Set vector arguments .. */
  366. i__1 = len;
  367. for (i__ = 1; i__ <= i__1; ++i__) {
  368. i__2 = i__ - 1;
  369. i__3 = i__ + (np1 + combla_1.incx * 5 << 3) - 49;
  370. cx[i__2].r = cv[i__3].r, cx[i__2].i = cv[i__3].i;
  371. /* L20: */
  372. }
  373. if (combla_1.icase == 6) {
  374. /* .. DZNRM2TEST .. */
  375. d__1 = dznrm2test_(&combla_1.n, cx, &combla_1.incx);
  376. stest1_(&d__1, &strue2[np1 - 1], &strue2[np1 - 1], sfac);
  377. } else if (combla_1.icase == 7) {
  378. /* .. DZASUMTEST .. */
  379. d__1 = dzasumtest_(&combla_1.n, cx, &combla_1.incx);
  380. stest1_(&d__1, &strue4[np1 - 1], &strue4[np1 - 1], sfac);
  381. } else if (combla_1.icase == 8) {
  382. /* .. ZSCALTEST .. */
  383. zscaltest_(&combla_1.n, &ca, cx, &combla_1.incx);
  384. ctest_(&len, cx, &ctrue5[(np1 + combla_1.incx * 5 << 3) - 48],
  385. &ctrue5[(np1 + combla_1.incx * 5 << 3) - 48], sfac);
  386. } else if (combla_1.icase == 9) {
  387. /* .. ZDSCALTEST .. */
  388. zdscaltest_(&combla_1.n, &sa, cx, &combla_1.incx);
  389. ctest_(&len, cx, &ctrue6[(np1 + combla_1.incx * 5 << 3) - 48],
  390. &ctrue6[(np1 + combla_1.incx * 5 << 3) - 48], sfac);
  391. } else if (combla_1.icase == 10) {
  392. /* .. IZAMAXTEST .. */
  393. i__1 = izamaxtest_(&combla_1.n, cx, &combla_1.incx);
  394. itest1_(&i__1, &itrue3[np1 - 1]);
  395. } else {
  396. fprintf(stderr,"Shouldn't be here in CHECK1\n");
  397. exit(0);
  398. }
  399. /* L40: */
  400. }
  401. /* L60: */
  402. }
  403. combla_1.incx = 1;
  404. if (combla_1.icase == 8) {
  405. /* ZSCALTEST */
  406. /* Add a test for alpha equal to zero. */
  407. ca.r = 0., ca.i = 0.;
  408. for (i__ = 1; i__ <= 5; ++i__) {
  409. i__1 = i__ - 1;
  410. mwpct[i__1].r = 0., mwpct[i__1].i = 0.;
  411. i__1 = i__ - 1;
  412. mwpcs[i__1].r = 1., mwpcs[i__1].i = 1.;
  413. /* L80: */
  414. }
  415. zscaltest_(&c__5, &ca, cx, &combla_1.incx);
  416. ctest_(&c__5, cx, mwpct, mwpcs, sfac);
  417. } else if (combla_1.icase == 9) {
  418. /* ZDSCALTEST */
  419. /* Add a test for alpha equal to zero. */
  420. sa = 0.;
  421. for (i__ = 1; i__ <= 5; ++i__) {
  422. i__1 = i__ - 1;
  423. mwpct[i__1].r = 0., mwpct[i__1].i = 0.;
  424. i__1 = i__ - 1;
  425. mwpcs[i__1].r = 1., mwpcs[i__1].i = 1.;
  426. /* L100: */
  427. }
  428. zdscaltest_(&c__5, &sa, cx, &combla_1.incx);
  429. ctest_(&c__5, cx, mwpct, mwpcs, sfac);
  430. /* Add a test for alpha equal to one. */
  431. sa = 1.;
  432. for (i__ = 1; i__ <= 5; ++i__) {
  433. i__1 = i__ - 1;
  434. i__2 = i__ - 1;
  435. mwpct[i__1].r = cx[i__2].r, mwpct[i__1].i = cx[i__2].i;
  436. i__1 = i__ - 1;
  437. i__2 = i__ - 1;
  438. mwpcs[i__1].r = cx[i__2].r, mwpcs[i__1].i = cx[i__2].i;
  439. /* L120: */
  440. }
  441. zdscaltest_(&c__5, &sa, cx, &combla_1.incx);
  442. ctest_(&c__5, cx, mwpct, mwpcs, sfac);
  443. /* Add a test for alpha equal to minus one. */
  444. sa = -1.;
  445. for (i__ = 1; i__ <= 5; ++i__) {
  446. i__1 = i__ - 1;
  447. i__2 = i__ - 1;
  448. z__1.r = -cx[i__2].r, z__1.i = -cx[i__2].i;
  449. mwpct[i__1].r = z__1.r, mwpct[i__1].i = z__1.i;
  450. i__1 = i__ - 1;
  451. i__2 = i__ - 1;
  452. z__1.r = -cx[i__2].r, z__1.i = -cx[i__2].i;
  453. mwpcs[i__1].r = z__1.r, mwpcs[i__1].i = z__1.i;
  454. /* L140: */
  455. }
  456. zdscaltest_(&c__5, &sa, cx, &combla_1.incx);
  457. ctest_(&c__5, cx, mwpct, mwpcs, sfac);
  458. }
  459. return 0;
  460. } /* check1_ */
  461. /* Subroutine */ int check2_(doublereal* sfac)
  462. {
  463. /* Initialized data */
  464. static doublecomplex ca = {.4,-.7};
  465. static integer incxs[4] = { 1,2,-2,-1 };
  466. static integer incys[4] = { 1,-2,1,-2 };
  467. static integer lens[8] /* was [4][2] */ = { 1,1,2,4,1,1,3,7 };
  468. static integer ns[4] = { 0,1,2,4 };
  469. static doublecomplex cx1[7] = { {.7,-.8},{-.4,-.7},{-.1,-.9},{.2,-.8},{
  470. -.9,-.4},{.1,.4},{-.6,.6} };
  471. static doublecomplex cy1[7] = { {.6,-.6},{-.9,.5},{.7,-.6},{.1,-.5},{-.1,
  472. -.2},{-.5,-.3},{.8,-.7} };
  473. static doublecomplex ct8[112] /* was [7][4][4] */ = { {.6,-.6},{0.,
  474. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{0.,0.},{
  475. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{-1.55,.5},{0.,
  476. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{-1.55,.5},{.03,
  477. -.89},{-.38,-.96},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,0.}
  478. ,{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{0.,0.},{0.,0.},{0.,
  479. 0.},{0.,0.},{0.,0.},{0.,0.},{-.07,-.89},{-.9,.5},{.42,-1.41},{0.,
  480. 0.},{0.,0.},{0.,0.},{0.,0.},{.78,.06},{-.9,.5},{.06,-.13},{.1,-.5}
  481. ,{-.77,-.49},{-.5,-.3},{.52,-1.51},{.6,-.6},{0.,0.},{0.,0.},{0.,
  482. 0.},{0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{0.,0.},{0.,0.},{0.,0.},{
  483. 0.,0.},{0.,0.},{0.,0.},{-.07,-.89},{-1.18,-.31},{0.,0.},{0.,0.},{
  484. 0.,0.},{0.,0.},{0.,0.},{.78,.06},{-1.54,.97},{.03,-.89},{-.18,
  485. -1.31},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{
  486. 0.,0.},{0.,0.},{0.,0.},{.32,-1.41},{0.,0.},{0.,0.},{0.,0.},{0.,0.}
  487. ,{0.,0.},{0.,0.},{.32,-1.41},{-.9,.5},{.05,-.6},{0.,0.},{0.,0.},{
  488. 0.,0.},{0.,0.},{.32,-1.41},{-.9,.5},{.05,-.6},{.1,-.5},{-.77,-.49}
  489. ,{-.5,-.3},{.32,-1.16} };
  490. static doublecomplex ct7[16] /* was [4][4] */ = { {0.,0.},{-.06,
  491. -.9},{.65,-.47},{-.34,-1.22},{0.,0.},{-.06,-.9},{-.59,-1.46},{
  492. -1.04,-.04},{0.,0.},{-.06,-.9},{-.83,.59},{.07,-.37},{0.,0.},{
  493. -.06,-.9},{-.76,-1.15},{-1.33,-1.82} };
  494. static doublecomplex ct6[16] /* was [4][4] */ = { {0.,0.},{.9,.06},
  495. {.91,-.77},{1.8,-.1},{0.,0.},{.9,.06},{1.45,.74},{.2,.9},{0.,0.},{
  496. .9,.06},{-.55,.23},{.83,-.39},{0.,0.},{.9,.06},{1.04,.79},{1.95,
  497. 1.22} };
  498. static doublecomplex ct10x[112] /* was [7][4][4] */ = { {.7,-.8},{0.,
  499. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,
  500. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{-.9,.5},{0.,0.},{0.,
  501. 0.},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{-.9,.5},{.7,-.6},{.1,-.5},{
  502. 0.,0.},{0.,0.},{0.,0.},{.7,-.8},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{
  503. 0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{
  504. 0.,0.},{.7,-.6},{-.4,-.7},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{0.,0.}
  505. ,{.8,-.7},{-.4,-.7},{-.1,-.2},{.2,-.8},{.7,-.6},{.1,.4},{.6,-.6},{
  506. .7,-.8},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{
  507. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{-.9,.5},{-.4,-.7},
  508. {.6,-.6},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.1,-.5},{-.4,-.7},{.7,
  509. -.6},{.2,-.8},{-.9,.5},{.1,.4},{.6,-.6},{.7,-.8},{0.,0.},{0.,0.},{
  510. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{
  511. 0.,0.},{0.,0.},{0.,0.},{.6,-.6},{.7,-.6},{0.,0.},{0.,0.},{0.,0.},{
  512. 0.,0.},{0.,0.},{.6,-.6},{.7,-.6},{-.1,-.2},{.8,-.7},{0.,0.},{0.,
  513. 0.},{0.,0.} };
  514. static doublecomplex ct10y[112] /* was [7][4][4] */ = { {.6,-.6},{0.,
  515. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{0.,0.},{0.,
  516. 0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{-.4,-.7},{0.,0.},{
  517. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{-.4,-.7},{-.1,-.9},{.2,
  518. -.8},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{0.,
  519. 0.},{0.,0.},{0.,0.},{.7,-.8},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,
  520. 0.},{0.,0.},{-.1,-.9},{-.9,.5},{.7,-.8},{0.,0.},{0.,0.},{0.,0.},{
  521. 0.,0.},{-.6,.6},{-.9,.5},{-.9,-.4},{.1,-.5},{-.1,-.9},{-.5,-.3},{
  522. .7,-.8},{.6,-.6},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{
  523. .7,-.8},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{-.1,-.9},
  524. {.7,-.8},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{-.6,.6},{-.9,
  525. -.4},{-.1,-.9},{.7,-.8},{0.,0.},{0.,0.},{0.,0.},{.6,-.6},{0.,0.},{
  526. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{0.,0.},{0.,0.},{
  527. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{-.9,.5},{-.4,-.7},{0.,0.}
  528. ,{0.,0.},{0.,0.},{0.,0.},{.7,-.8},{-.9,.5},{-.4,-.7},{.1,-.5},{
  529. -.1,-.9},{-.5,-.3},{.2,-.8} };
  530. static doublecomplex csize1[4] = { {0.,0.},{.9,.9},{1.63,1.73},{2.9,2.78}
  531. };
  532. static doublecomplex csize3[14] = { {0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,
  533. 0.},{0.,0.},{0.,0.},{1.17,1.17},{1.17,1.17},{1.17,1.17},{1.17,
  534. 1.17},{1.17,1.17},{1.17,1.17},{1.17,1.17} };
  535. static doublecomplex csize2[14] /* was [7][2] */ = { {0.,0.},{0.,0.},{
  536. 0.,0.},{0.,0.},{0.,0.},{0.,0.},{0.,0.},{1.54,1.54},{1.54,1.54},{
  537. 1.54,1.54},{1.54,1.54},{1.54,1.54},{1.54,1.54},{1.54,1.54} };
  538. /* System generated locals */
  539. integer i__1, i__2;
  540. /* Local variables */
  541. static doublecomplex cdot[1];
  542. static integer lenx, leny, i__;
  543. extern /* Subroutine */ int ctest_(integer*, doublecomplex*, doublecomplex*, doublecomplex*, doublereal*);
  544. static integer ksize;
  545. static doublecomplex ztemp;
  546. extern /* Subroutine */ int zdotctest_(int*, doublecomplex*, int*, doublecomplex*, int*, doublecomplex*), zcopytest_(int*, doublecomplex*, int*, doublecomplex*, int*);
  547. static integer ki;
  548. extern /* Subroutine */ int zdotutest_(int*, doublecomplex*, int*, doublecomplex*, int*, doublecomplex*), zswaptest_(int*, doublecomplex*, int*, doublecomplex*, int*);
  549. static integer kn;
  550. extern /* Subroutine */ int zaxpytest_(int*, doublereal*, doublecomplex*, int*, doublecomplex*, int*);
  551. static doublecomplex cx[7], cy[7];
  552. static integer mx, my;
  553. /* .. Parameters .. */
  554. /* .. Scalar Arguments .. */
  555. /* .. Scalars in Common .. */
  556. /* .. Local Scalars .. */
  557. /* .. Local Arrays .. */
  558. /* .. External Functions .. */
  559. /* .. External Subroutines .. */
  560. /* .. Intrinsic Functions .. */
  561. /* .. Common blocks .. */
  562. /* .. Data statements .. */
  563. /* .. Executable Statements .. */
  564. for (ki = 1; ki <= 4; ++ki) {
  565. combla_1.incx = incxs[ki - 1];
  566. combla_1.incy = incys[ki - 1];
  567. mx = abs(combla_1.incx);
  568. my = abs(combla_1.incy);
  569. for (kn = 1; kn <= 4; ++kn) {
  570. combla_1.n = ns[kn - 1];
  571. ksize = f2cmin(2,kn);
  572. lenx = lens[kn + (mx << 2) - 5];
  573. leny = lens[kn + (my << 2) - 5];
  574. /* .. initialize all argument arrays .. */
  575. for (i__ = 1; i__ <= 7; ++i__) {
  576. i__1 = i__ - 1;
  577. i__2 = i__ - 1;
  578. cx[i__1].r = cx1[i__2].r, cx[i__1].i = cx1[i__2].i;
  579. i__1 = i__ - 1;
  580. i__2 = i__ - 1;
  581. cy[i__1].r = cy1[i__2].r, cy[i__1].i = cy1[i__2].i;
  582. /* L20: */
  583. }
  584. if (combla_1.icase == 1) {
  585. /* .. ZDOTCTEST .. */
  586. zdotctest_(&combla_1.n, cx, &combla_1.incx, cy, &
  587. combla_1.incy, &ztemp);
  588. cdot[0].r = ztemp.r, cdot[0].i = ztemp.i;
  589. ctest_(&c__1, cdot, &ct6[kn + (ki << 2) - 5], &csize1[kn - 1],
  590. sfac);
  591. } else if (combla_1.icase == 2) {
  592. /* .. ZDOTUTEST .. */
  593. zdotutest_(&combla_1.n, cx, &combla_1.incx, cy, &
  594. combla_1.incy, &ztemp);
  595. cdot[0].r = ztemp.r, cdot[0].i = ztemp.i;
  596. ctest_(&c__1, cdot, &ct7[kn + (ki << 2) - 5], &csize1[kn - 1],
  597. sfac);
  598. } else if (combla_1.icase == 3) {
  599. /* .. ZAXPYTEST .. */
  600. zaxpytest_(&combla_1.n, &ca, cx, &combla_1.incx, cy, &
  601. combla_1.incy);
  602. ctest_(&leny, cy, &ct8[(kn + (ki << 2)) * 7 - 35], &csize2[
  603. ksize * 7 - 7], sfac);
  604. } else if (combla_1.icase == 4) {
  605. /* .. ZCOPYTEST .. */
  606. zcopytest_(&combla_1.n, cx, &combla_1.incx, cy, &
  607. combla_1.incy);
  608. ctest_(&leny, cy, &ct10y[(kn + (ki << 2)) * 7 - 35], csize3, &
  609. c_b43);
  610. } else if (combla_1.icase == 5) {
  611. /* .. ZSWAPTEST .. */
  612. zswaptest_(&combla_1.n, cx, &combla_1.incx, cy, &
  613. combla_1.incy);
  614. ctest_(&lenx, cx, &ct10x[(kn + (ki << 2)) * 7 - 35], csize3, &
  615. c_b43);
  616. ctest_(&leny, cy, &ct10y[(kn + (ki << 2)) * 7 - 35], csize3, &
  617. c_b43);
  618. } else {
  619. fprintf(stderr,"Shouldn't be here in CHECK2\n");
  620. exit(0);
  621. }
  622. /* L40: */
  623. }
  624. /* L60: */
  625. }
  626. return 0;
  627. } /* check2_ */
  628. /* Subroutine */ int stest_(integer* len, doublereal* scomp, doublereal* strue, doublereal* ssize, doublereal* sfac)
  629. {
  630. /* System generated locals */
  631. integer i__1;
  632. doublereal d__1, d__2, d__3, d__4, d__5;
  633. /* Builtin functions */
  634. integer s_wsfe(void), e_wsfe(void), do_fio(void);
  635. /* Local variables */
  636. static integer i__;
  637. extern doublereal sdiff_(doublereal*, doublereal*);
  638. static doublereal sd;
  639. /* ********************************* STEST ************************** */
  640. /* THIS SUBR COMPARES ARRAYS SCOMP() AND STRUE() OF LENGTH LEN TO */
  641. /* SEE IF THE TERM BY TERM DIFFERENCES, MULTIPLIED BY SFAC, ARE */
  642. /* NEGLIGIBLE. */
  643. /* C. L. LAWSON, JPL, 1974 DEC 10 */
  644. /* .. Parameters .. */
  645. /* .. Scalar Arguments .. */
  646. /* .. Array Arguments .. */
  647. /* .. Scalars in Common .. */
  648. /* .. Local Scalars .. */
  649. /* .. External Functions .. */
  650. /* .. Intrinsic Functions .. */
  651. /* .. Common blocks .. */
  652. /* .. Executable Statements .. */
  653. /* Parameter adjustments */
  654. --ssize;
  655. --strue;
  656. --scomp;
  657. /* Function Body */
  658. i__1 = *len;
  659. for (i__ = 1; i__ <= i__1; ++i__) {
  660. sd = scomp[i__] - strue[i__];
  661. d__4 = (d__1 = ssize[i__], abs(d__1)) + (d__2 = *sfac * sd, abs(d__2))
  662. ;
  663. d__5 = (d__3 = ssize[i__], abs(d__3));
  664. if (sdiff_(&d__4, &d__5) == 0.) {
  665. goto L40;
  666. }
  667. /* HERE SCOMP(I) IS NOT CLOSE TO STRUE(I). */
  668. if (! combla_1.pass) {
  669. goto L20;
  670. }
  671. /* PRINT FAIL MESSAGE AND HEADER. */
  672. combla_1.pass = FALSE_;
  673. printf(" FAIL\n");
  674. printf("CASE N INCX INCY MODE I COMP(I) TRUE(I) DIFFERENCE SIZE(I)\n");
  675. L20:
  676. printf("%4d %3d %5d %5d %5d %3d %36.8f %36.8f %12.4f %12.4f\n",combla_1.icase, combla_1.n, combla_1.incx, combla_1.incy,
  677. combla_1.mode, i__, scomp[i__], strue[i__], sd, ssize[i__]);
  678. L40:
  679. ;
  680. }
  681. return 0;
  682. } /* stest_ */
  683. /* Subroutine */ int stest1_(doublereal* scomp1, doublereal* strue1, doublereal* ssize, doublereal* sfac)
  684. {
  685. static doublereal scomp[1], strue[1];
  686. extern /* Subroutine */ integer stest_(int*,doublereal*, doublereal*, doublereal*, doublereal*);
  687. /* ************************* STEST1 ***************************** */
  688. /* THIS IS AN INTERFACE SUBROUTINE TO ACCOMMODATE THE FORTRAN */
  689. /* REQUIREMENT THAT WHEN A DUMMY ARGUMENT IS AN ARRAY, THE */
  690. /* ACTUAL ARGUMENT MUST ALSO BE AN ARRAY OR AN ARRAY ELEMENT. */
  691. /* C.L. LAWSON, JPL, 1978 DEC 6 */
  692. /* .. Scalar Arguments .. */
  693. /* .. Array Arguments .. */
  694. /* .. Local Arrays .. */
  695. /* .. External Subroutines .. */
  696. /* .. Executable Statements .. */
  697. /* Parameter adjustments */
  698. --ssize;
  699. /* Function Body */
  700. scomp[0] = *scomp1;
  701. strue[0] = *strue1;
  702. stest_(&c__1, scomp, strue, &ssize[1], sfac);
  703. return 0;
  704. } /* stest1_ */
  705. doublereal sdiff_(doublereal* sa, doublereal* sb)
  706. {
  707. /* System generated locals */
  708. doublereal ret_val;
  709. /* ********************************* SDIFF ************************** */
  710. /* COMPUTES DIFFERENCE OF TWO NUMBERS. C. L. LAWSON, JPL 1974 FEB 15 */
  711. /* .. Scalar Arguments .. */
  712. /* .. Executable Statements .. */
  713. ret_val = *sa - *sb;
  714. return ret_val;
  715. } /* sdiff_ */
  716. /* Subroutine */ int ctest_(integer* len, doublecomplex* ccomp, doublecomplex* ctrue, doublecomplex* csize, doublereal* sfac)
  717. {
  718. /* System generated locals */
  719. integer i__1, i__2;
  720. /* Local variables */
  721. static integer i__;
  722. static doublereal scomp[20], ssize[20], strue[20];
  723. extern /* Subroutine */ int stest_(integer*, doublereal*, doublereal*, doublereal*, doublereal*);
  724. /* **************************** CTEST ***************************** */
  725. /* C.L. LAWSON, JPL, 1978 DEC 6 */
  726. /* .. Scalar Arguments .. */
  727. /* .. Array Arguments .. */
  728. /* .. Local Scalars .. */
  729. /* .. Local Arrays .. */
  730. /* .. External Subroutines .. */
  731. /* .. Intrinsic Functions .. */
  732. /* .. Executable Statements .. */
  733. /* Parameter adjustments */
  734. --csize;
  735. --ctrue;
  736. --ccomp;
  737. /* Function Body */
  738. i__1 = *len;
  739. for (i__ = 1; i__ <= i__1; ++i__) {
  740. i__2 = i__;
  741. scomp[(i__ << 1) - 2] = ccomp[i__2].r;
  742. scomp[(i__ << 1) - 1] = d_imag(&ccomp[i__]);
  743. i__2 = i__;
  744. strue[(i__ << 1) - 2] = ctrue[i__2].r;
  745. strue[(i__ << 1) - 1] = d_imag(&ctrue[i__]);
  746. i__2 = i__;
  747. ssize[(i__ << 1) - 2] = csize[i__2].r;
  748. ssize[(i__ << 1) - 1] = d_imag(&csize[i__]);
  749. /* L20: */
  750. }
  751. i__1 = *len << 1;
  752. stest_(&i__1, scomp, strue, ssize, sfac);
  753. return 0;
  754. } /* ctest_ */
  755. /* Subroutine */ int itest1_(integer* icomp, integer* itrue)
  756. {
  757. static integer id;
  758. /* ********************************* ITEST1 ************************* */
  759. /* THIS SUBROUTINE COMPARES THE VARIABLES ICOMP AND ITRUE FOR */
  760. /* EQUALITY. */
  761. /* C. L. LAWSON, JPL, 1974 DEC 10 */
  762. /* .. Parameters .. */
  763. /* .. Scalar Arguments .. */
  764. /* .. Scalars in Common .. */
  765. /* .. Local Scalars .. */
  766. /* .. Common blocks .. */
  767. /* .. Executable Statements .. */
  768. if (*icomp == *itrue) {
  769. goto L40;
  770. }
  771. /* HERE ICOMP IS NOT EQUAL TO ITRUE. */
  772. if (! combla_1.pass) {
  773. goto L20;
  774. }
  775. /* PRINT FAIL MESSAGE AND HEADER. */
  776. combla_1.pass = FALSE_;
  777. printf(" FAIL\n");
  778. printf("CASE N INCX INCY MODE COMP TRUE DIFFERENCE\n");
  779. L20:
  780. id = *icomp - *itrue;
  781. printf("%4d %3d %5d %5d %5d %36d %36d %12d\n",combla_1.icase, combla_1.n, combla_1.incx, combla_1.incy,
  782. combla_1.mode, *icomp, *itrue, id);
  783. L40:
  784. return 0;
  785. } /* itest1_ */