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/contrib/exodusii/5.22b/exodus/cbind/test/testwt_nc.c

https://bitbucket.org/vijaysm/libmesh
C | 1236 lines | 853 code | 269 blank | 114 comment | 106 complexity | f2cb04ffb4960af96bbd02fa1f64d125 MD5 | raw file
Possible License(s): LGPL-2.1, BSD-3-Clause, GPL-3.0, MPL-2.0-no-copyleft-exception, GPL-2.0
  1. /*
  2. * Copyright (c) 2005 Sandia Corporation. Under the terms of Contract
  3. * DE-AC04-94AL85000 with Sandia Corporation, the U.S. Governement
  4. * retains certain rights in this software.
  5. *
  6. * Redistribution and use in source and binary forms, with or without
  7. * modification, are permitted provided that the following conditions are
  8. * met:
  9. *
  10. * * Redistributions of source code must retain the above copyright
  11. * notice, this list of conditions and the following disclaimer.
  12. *
  13. * * Redistributions in binary form must reproduce the above
  14. * copyright notice, this list of conditions and the following
  15. * disclaimer in the documentation and/or other materials provided
  16. * with the distribution.
  17. *
  18. * * Neither the name of Sandia Corporation nor the names of its
  19. * contributors may be used to endorse or promote products derived
  20. * from this software without specific prior written permission.
  21. *
  22. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  23. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  24. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  25. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  26. * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  27. * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  28. * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  29. * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  30. * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  31. * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  32. * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  33. *
  34. */
  35. /*****************************************************************************
  36. *
  37. * testwt - test write an ExodusII database file
  38. *
  39. * author - Sandia National Laboratories
  40. * Larry A. Schoof - Original
  41. * Vic Yarberry - Added headers and error logging
  42. * 7/7/93 Modified for use with Exodus 2.00
  43. *
  44. *
  45. * environment - UNIX
  46. *
  47. * entry conditions -
  48. *
  49. * exit conditions -
  50. *
  51. * revision history -
  52. *
  53. * This is a test program for the C binding of the EXODUS II
  54. * database write routines.
  55. *
  56. *
  57. *****************************************************************************/
  58. #include <stdlib.h>
  59. #include <stdio.h>
  60. /* #include "netcdf.h" */
  61. #include "exodusII.h"
  62. int main (int argc, char **argv)
  63. {
  64. int exoid, num_dim, num_nodes, num_elem, num_elem_blk;
  65. int num_elem_in_block[10], num_nodes_per_elem[10];
  66. int num_face_in_sset[10], num_nodes_in_nset[10];
  67. int num_node_sets, num_side_sets, error;
  68. int i, j, k, m, *elem_map, *connect;
  69. int node_list[100],elem_list[100],side_list[100];
  70. int ebids[10], ssids[10], nsids[10];
  71. int num_qa_rec, num_info;
  72. int num_glo_vars, num_nod_vars, num_ele_vars, num_sset_vars, num_nset_vars;
  73. int *truth_tab;
  74. int whole_time_step, num_time_steps;
  75. int CPU_word_size,IO_word_size;
  76. int prop_array[2];
  77. float *glob_var_vals, *nodal_var_vals, *elem_var_vals;
  78. float *sset_var_vals, *nset_var_vals;
  79. float time_value;
  80. float x[100], y[100], z[100];
  81. float attrib[1], dist_fact[100];
  82. char *coord_names[3], *qa_record[2][4], *info[3], *var_names[3];
  83. char *block_names[10], *nset_names[10], *sset_names[10];
  84. char *prop_names[2], *attrib_names[2];
  85. ex_opts (EX_VERBOSE | EX_ABORT );
  86. /* Specify compute and i/o word size */
  87. CPU_word_size = 0; /* sizeof(float) */
  88. IO_word_size = 4; /* (4 bytes) */
  89. /* create EXODUS II file */
  90. exoid = ex_create ("test.exo", /* filename path */
  91. EX_CLOBBER, /* create mode */
  92. &CPU_word_size, /* CPU float word size in bytes */
  93. &IO_word_size); /* I/O float word size in bytes */
  94. printf ("after ex_create for test.exo, exoid = %d\n", exoid);
  95. printf (" cpu word size: %d io word size: %d\n",CPU_word_size,IO_word_size);
  96. /* ncopts = NC_VERBOSE; */
  97. /* initialize file with parameters */
  98. num_dim = 3;
  99. num_nodes = 33;
  100. num_elem = 7;
  101. num_elem_blk = 7;
  102. num_node_sets = 2;
  103. num_side_sets = 5;
  104. error = ex_put_init (exoid, "This is a test", num_dim, num_nodes, num_elem,
  105. num_elem_blk, num_node_sets, num_side_sets);
  106. printf ("after ex_put_init, error = %d\n", error);
  107. if (error) {
  108. ex_close (exoid);
  109. exit(-1);
  110. }
  111. /* write nodal coordinates values and names to database */
  112. /* Quad #1 */
  113. x[0] = 0.0; y[0] = 0.0; z[0] = 0.0;
  114. x[1] = 1.0; y[1] = 0.0; z[1] = 0.0;
  115. x[2] = 1.0; y[2] = 1.0; z[2] = 0.0;
  116. x[3] = 0.0; y[3] = 1.0; z[3] = 0.0;
  117. /* Quad #2 */
  118. x[4] = 1.0; y[4] = 0.0; z[4] = 0.0;
  119. x[5] = 2.0; y[5] = 0.0; z[5] = 0.0;
  120. x[6] = 2.0; y[6] = 1.0; z[6] = 0.0;
  121. x[7] = 1.0; y[7] = 1.0; z[7] = 0.0;
  122. /* Hex #1 */
  123. x[8] = 0.0; y[8] = 0.0; z[8] = 0.0;
  124. x[9] = 10.0; y[9] = 0.0; z[9] = 0.0;
  125. x[10] = 10.0; y[10] = 0.0; z[10] =-10.0;
  126. x[11] = 1.0; y[11] = 0.0; z[11] =-10.0;
  127. x[12] = 1.0; y[12] = 10.0; z[12] = 0.0;
  128. x[13] = 10.0; y[13] = 10.0; z[13] = 0.0;
  129. x[14] = 10.0; y[14] = 10.0; z[14] =-10.0;
  130. x[15] = 1.0; y[15] = 10.0; z[15] =-10.0;
  131. /* Tetra #1 */
  132. x[16] = 0.0; y[16] = 0.0; z[16] = 0.0;
  133. x[17] = 1.0; y[17] = 0.0; z[17] = 5.0;
  134. x[18] = 10.0; y[18] = 0.0; z[18] = 2.0;
  135. x[19] = 7.0; y[19] = 5.0; z[19] = 3.0;
  136. /* Wedge #1 */
  137. x[20] = 3.0; y[20] = 0.0; z[20] = 6.0;
  138. x[21] = 6.0; y[21] = 0.0; z[21] = 0.0;
  139. x[22] = 0.0; y[22] = 0.0; z[22] = 0.0;
  140. x[23] = 3.0; y[23] = 2.0; z[23] = 6.0;
  141. x[24] = 6.0; y[24] = 2.0; z[24] = 2.0;
  142. x[25] = 0.0; y[25] = 2.0; z[25] = 0.0;
  143. /* Tetra #2 */
  144. x[26] = 2.7; y[26] = 1.7; z[26] = 2.7;
  145. x[27] = 6.0; y[27] = 1.7; z[27] = 3.3;
  146. x[28] = 5.7; y[28] = 1.7; z[28] = 1.7;
  147. x[29] = 3.7; y[29] = 0.0; z[29] = 2.3;
  148. /* 3d Tri */
  149. x[30] = 0.0; y[30] = 0.0; z[30] = 0.0;
  150. x[31] = 10.0; y[31] = 0.0; z[31] = 0.0;
  151. x[32] = 10.0; y[32] = 10.0; z[32] = 10.0;
  152. error = ex_put_coord (exoid, NULL, NULL, z);
  153. printf ("after ex_put_coord, error = %d\n", error);
  154. error = ex_put_coord (exoid, x, NULL, NULL);
  155. printf ("after ex_put_coord, error = %d\n", error);
  156. error = ex_put_coord (exoid, NULL, y, NULL);
  157. printf ("after ex_put_coord, error = %d\n", error);
  158. if (error) {
  159. ex_close (exoid);
  160. exit(-1);
  161. }
  162. coord_names[0] = "xcoor";
  163. coord_names[1] = "ycoor";
  164. coord_names[2] = "zcoor";
  165. error = ex_put_coord_names (exoid, coord_names);
  166. printf ("after ex_put_coord_names, error = %d\n", error);
  167. if (error) {
  168. ex_close (exoid);
  169. exit(-1);
  170. }
  171. /* Add nodal attributes */
  172. error = ex_put_attr_param(exoid, EX_NODAL, 0, 2);
  173. printf ("after ex_put_attr_param, error = %d\n", error);
  174. if (error) {
  175. ex_close (exoid);
  176. exit(-1);
  177. }
  178. error = ex_put_one_attr(exoid, EX_NODAL, 0, 1, x);
  179. if (error) {
  180. ex_close (exoid);
  181. exit(-1);
  182. }
  183. error = ex_put_one_attr(exoid, EX_NODAL, 0, 2, y);
  184. if (error) {
  185. ex_close (exoid);
  186. exit(-1);
  187. }
  188. {
  189. attrib_names[0] = "Node_attr_1";
  190. attrib_names[1] = "Node_attr_2";
  191. error = ex_put_attr_names (exoid, EX_NODAL, 0, attrib_names);
  192. if (error) {
  193. ex_close (exoid);
  194. exit(-1);
  195. }
  196. }
  197. /* write element order map */
  198. elem_map = (int *) calloc(num_elem, sizeof(int));
  199. for (i=1; i<=num_elem; i++)
  200. {
  201. elem_map[i-1] = i;
  202. }
  203. error = ex_put_map (exoid, elem_map);
  204. printf ("after ex_put_map, error = %d\n", error);
  205. if (error) {
  206. ex_close (exoid);
  207. exit(-1);
  208. }
  209. free (elem_map);
  210. /* write element block parameters */
  211. block_names[0] = "block_1";
  212. block_names[1] = "block_2";
  213. block_names[2] = "block_3";
  214. block_names[3] = "block_4";
  215. block_names[4] = "block_5";
  216. block_names[5] = "block_6";
  217. block_names[6] = "block_7";
  218. num_elem_in_block[0] = 1;
  219. num_elem_in_block[1] = 1;
  220. num_elem_in_block[2] = 1;
  221. num_elem_in_block[3] = 1;
  222. num_elem_in_block[4] = 1;
  223. num_elem_in_block[5] = 1;
  224. num_elem_in_block[6] = 1;
  225. num_nodes_per_elem[0] = 4; /* elements in block #1 are 4-node quads */
  226. num_nodes_per_elem[1] = 4; /* elements in block #2 are 4-node quads */
  227. num_nodes_per_elem[2] = 8; /* elements in block #3 are 8-node hexes */
  228. num_nodes_per_elem[3] = 4; /* elements in block #4 are 4-node tetras */
  229. num_nodes_per_elem[4] = 6; /* elements in block #5 are 6-node wedges */
  230. num_nodes_per_elem[5] = 8; /* elements in block #6 are 8-node tetras */
  231. num_nodes_per_elem[6] = 3; /* elements in block #7 are 3-node tris */
  232. ebids[0] = 10;
  233. ebids[1] = 11;
  234. ebids[2] = 12;
  235. ebids[3] = 13;
  236. ebids[4] = 14;
  237. ebids[5] = 15;
  238. ebids[6] = 16;
  239. error = ex_put_elem_block (exoid, ebids[0], "quad", num_elem_in_block[0],
  240. num_nodes_per_elem[0], 1);
  241. printf ("after ex_put_elem_block, error = %d\n", error);
  242. if (error) {
  243. ex_close (exoid);
  244. exit(-1);
  245. }
  246. error = ex_put_elem_block (exoid, ebids[1], "quad", num_elem_in_block[1],
  247. num_nodes_per_elem[1], 1);
  248. printf ("after ex_put_elem_block, error = %d\n", error);
  249. if (error) {
  250. ex_close (exoid);
  251. exit(-1);
  252. }
  253. error = ex_put_elem_block (exoid, ebids[2], "hex", num_elem_in_block[2],
  254. num_nodes_per_elem[2], 1);
  255. printf ("after ex_put_elem_block, error = %d\n", error);
  256. if (error) {
  257. ex_close (exoid);
  258. exit(-1);
  259. }
  260. error = ex_put_elem_block (exoid, ebids[3], "tetra", num_elem_in_block[3],
  261. num_nodes_per_elem[3], 1);
  262. printf ("after ex_put_elem_block, error = %d\n", error);
  263. if (error) {
  264. ex_close (exoid);
  265. exit(-1);
  266. }
  267. error = ex_put_elem_block (exoid, ebids[4], "wedge", num_elem_in_block[4],
  268. num_nodes_per_elem[4], 1);
  269. printf ("after ex_put_elem_block, error = %d\n", error);
  270. if (error) {
  271. ex_close (exoid);
  272. exit(-1);
  273. }
  274. error = ex_put_elem_block (exoid, ebids[5], "tetra", num_elem_in_block[5],
  275. num_nodes_per_elem[5], 1);
  276. printf ("after ex_put_elem_block, error = %d\n", error);
  277. if (error) {
  278. ex_close (exoid);
  279. exit(-1);
  280. }
  281. error = ex_put_elem_block (exoid, ebids[6], "tri", num_elem_in_block[6],
  282. num_nodes_per_elem[6], 1);
  283. printf ("after ex_put_elem_block, error = %d\n", error);
  284. if (error) {
  285. ex_close (exoid);
  286. exit(-1);
  287. }
  288. /* Write element block names */
  289. error = ex_put_names(exoid, EX_ELEM_BLOCK, block_names);
  290. printf ("after ex_put_names, error = %d\n", error);
  291. if (error) {
  292. ex_close (exoid);
  293. exit(-1);
  294. }
  295. /* write element block properties */
  296. /* 12345678901234567890123456789012 */
  297. prop_names[0] = "MATERIAL_PROPERTY_LONG_NAME_32CH";
  298. prop_names[1] = "DENSITY";
  299. error = ex_put_prop_names(exoid,EX_ELEM_BLOCK,2,prop_names);
  300. printf ("after ex_put_prop_names, error = %d\n", error);
  301. if (error) {
  302. ex_close (exoid);
  303. exit(-1);
  304. }
  305. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[0], prop_names[0], 10);
  306. printf ("after ex_put_prop, error = %d\n", error);
  307. if (error) {
  308. ex_close (exoid);
  309. exit(-1);
  310. }
  311. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[1], prop_names[0], 20);
  312. printf ("after ex_put_prop, error = %d\n", error);
  313. if (error) {
  314. ex_close (exoid);
  315. exit(-1);
  316. }
  317. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[2], prop_names[0], 30);
  318. printf ("after ex_put_prop, error = %d\n", error);
  319. if (error) {
  320. ex_close (exoid);
  321. exit(-1);
  322. }
  323. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[3], prop_names[0], 40);
  324. printf ("after ex_put_prop, error = %d\n", error);
  325. if (error) {
  326. ex_close (exoid);
  327. exit(-1);
  328. }
  329. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[4], prop_names[0], 50);
  330. printf ("after ex_put_prop, error = %d\n", error);
  331. if (error) {
  332. ex_close (exoid);
  333. exit(-1);
  334. }
  335. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[5], prop_names[0], 60);
  336. printf ("after ex_put_prop, error = %d\n", error);
  337. if (error) {
  338. ex_close (exoid);
  339. exit(-1);
  340. }
  341. error = ex_put_prop(exoid, EX_ELEM_BLOCK, ebids[6], prop_names[0], 70);
  342. printf ("after ex_put_prop, error = %d\n", error);
  343. if (error) {
  344. ex_close (exoid);
  345. exit(-1);
  346. }
  347. /* write element connectivity */
  348. connect = (int *) calloc(8, sizeof(int));
  349. connect[0] = 1; connect[1] = 2; connect[2] = 3; connect[3] = 4;
  350. error = ex_put_elem_conn (exoid, ebids[0], connect);
  351. printf ("after ex_put_elem_conn, error = %d\n", error);
  352. if (error) {
  353. ex_close (exoid);
  354. exit(-1);
  355. }
  356. connect[0] = 5; connect[1] = 6; connect[2] = 7; connect[3] = 8;
  357. error = ex_put_elem_conn (exoid, ebids[1], connect);
  358. printf ("after ex_put_elem_conn, error = %d\n", error);
  359. if (error) {
  360. ex_close (exoid);
  361. exit(-1);
  362. }
  363. connect[0] = 9; connect[1] = 10; connect[2] = 11; connect[3] = 12;
  364. connect[4] = 13; connect[5] = 14; connect[6] = 15; connect[7] = 16;
  365. error = ex_put_elem_conn (exoid, ebids[2], connect);
  366. printf ("after ex_put_elem_conn, error = %d\n", error);
  367. if (error) {
  368. ex_close (exoid);
  369. exit(-1);
  370. }
  371. connect[0] = 17; connect[1] = 18; connect[2] = 19; connect[3] = 20;
  372. error = ex_put_elem_conn (exoid, ebids[3], connect);
  373. printf ("after ex_put_elem_conn, error = %d\n", error);
  374. if (error) {
  375. ex_close (exoid);
  376. exit(-1);
  377. }
  378. connect[0] = 21; connect[1] = 22; connect[2] = 23;
  379. connect[3] = 24; connect[4] = 25; connect[5] = 26;
  380. error = ex_put_elem_conn (exoid, ebids[4], connect);
  381. printf ("after ex_put_elem_conn, error = %d\n", error);
  382. if (error) {
  383. ex_close (exoid);
  384. exit(-1);
  385. }
  386. connect[0] = 17; connect[1] = 18; connect[2] = 19; connect[3] = 20;
  387. connect[4] = 27; connect[5] = 28; connect[6] = 30; connect[7] = 29;
  388. error = ex_put_elem_conn (exoid, ebids[5], connect);
  389. printf ("after ex_put_elem_conn, error = %d\n", error);
  390. if (error) {
  391. ex_close (exoid);
  392. exit(-1);
  393. }
  394. connect[0] = 31; connect[1] = 32; connect[2] = 33;
  395. error = ex_put_elem_conn (exoid, ebids[6], connect);
  396. printf ("after ex_put_elem_conn, error = %d\n", error);
  397. if (error) {
  398. ex_close (exoid);
  399. exit(-1);
  400. }
  401. free (connect);
  402. /* write element block attributes */
  403. attrib[0] = 3.14159;
  404. error = ex_put_elem_attr (exoid, ebids[0], attrib);
  405. printf ("after ex_put_elem_attr, error = %d\n", error);
  406. if (error) {
  407. ex_close (exoid);
  408. exit(-1);
  409. }
  410. error = ex_put_elem_attr (exoid, ebids[0], attrib);
  411. printf ("after ex_put_elem_attr, error = %d\n", error);
  412. if (error) {
  413. ex_close (exoid);
  414. exit(-1);
  415. }
  416. attrib[0] = 6.14159;
  417. error = ex_put_elem_attr (exoid, ebids[1], attrib);
  418. printf ("after ex_put_elem_attr, error = %d\n", error);
  419. if (error) {
  420. ex_close (exoid);
  421. exit(-1);
  422. }
  423. error = ex_put_elem_attr (exoid, ebids[2], attrib);
  424. printf ("after ex_put_elem_attr, error = %d\n", error);
  425. if (error) {
  426. ex_close (exoid);
  427. exit(-1);
  428. }
  429. error = ex_put_elem_attr (exoid, ebids[3], attrib);
  430. printf ("after ex_put_elem_attr, error = %d\n", error);
  431. if (error) {
  432. ex_close (exoid);
  433. exit(-1);
  434. }
  435. error = ex_put_elem_attr (exoid, ebids[4], attrib);
  436. printf ("after ex_put_elem_attr, error = %d\n", error);
  437. if (error) {
  438. ex_close (exoid);
  439. exit(-1);
  440. }
  441. error = ex_put_elem_attr (exoid, ebids[5], attrib);
  442. printf ("after ex_put_elem_attr, error = %d\n", error);
  443. if (error) {
  444. ex_close (exoid);
  445. exit(-1);
  446. }
  447. error = ex_put_elem_attr (exoid, ebids[6], attrib);
  448. printf ("after ex_put_elem_attr, error = %d\n", error);
  449. if (error) {
  450. ex_close (exoid);
  451. exit(-1);
  452. }
  453. attrib_names[0] = "THICKNESS";
  454. for (i=0; i < 7; i++) {
  455. error = ex_put_elem_attr_names (exoid, ebids[i], attrib_names);
  456. printf ("after ex_put_elem_attr_names, error = %d\n", error);
  457. if (error) {
  458. ex_close (exoid);
  459. exit(-1);
  460. }
  461. }
  462. /* write individual node sets */
  463. num_nodes_in_nset[0] = 5;
  464. num_nodes_in_nset[1] = 3;
  465. nsids[0] = 20;
  466. nsids[1] = 21;
  467. error = ex_put_node_set_param (exoid, nsids[0], 5, 5);
  468. printf ("after ex_put_node_set_param, error = %d\n", error);
  469. if (error) {
  470. ex_close (exoid);
  471. exit(-1);
  472. }
  473. node_list[0] = 10; node_list[1] = 11; node_list[2] = 12;
  474. node_list[3] = 13; node_list[4] = 14;
  475. dist_fact[0] = 1.0; dist_fact[1] = 2.0; dist_fact[2] = 3.0;
  476. dist_fact[3] = 4.0; dist_fact[4] = 5.0;
  477. error = ex_put_node_set (exoid, nsids[0], node_list);
  478. printf ("after ex_put_node_set, error = %d\n", error);
  479. if (error) {
  480. ex_close (exoid);
  481. exit(-1);
  482. }
  483. error = ex_put_node_set_dist_fact (exoid, nsids[0], dist_fact);
  484. printf ("after ex_put_node_set_dist_fact, error = %d\n", error);
  485. if (error) {
  486. ex_close (exoid);
  487. exit(-1);
  488. }
  489. error = ex_put_node_set_param (exoid, nsids[1], 3, 3);
  490. printf ("after ex_put_node_set_param, error = %d\n", error);
  491. if (error) {
  492. ex_close (exoid);
  493. exit(-1);
  494. }
  495. node_list[0] = 20; node_list[1] = 21; node_list[2] = 22;
  496. dist_fact[0] = 1.1; dist_fact[1] = 2.1; dist_fact[2] = 3.1;
  497. error = ex_put_node_set (exoid, nsids[1], node_list);
  498. printf ("after ex_put_node_set, error = %d\n", error);
  499. if (error) {
  500. ex_close (exoid);
  501. exit(-1);
  502. }
  503. error = ex_put_node_set_dist_fact (exoid, nsids[1], dist_fact);
  504. printf ("after ex_put_node_set_dist_fact, error = %d\n", error);
  505. if (error) {
  506. ex_close (exoid);
  507. exit(-1);
  508. }
  509. /* Write node set names */
  510. nset_names[0] = "nset_1";
  511. nset_names[1] = "nset_2";
  512. error = ex_put_names(exoid, EX_NODE_SET, nset_names);
  513. printf ("after ex_put_names, error = %d\n", error);
  514. if (error) {
  515. ex_close (exoid);
  516. exit(-1);
  517. }
  518. error = ex_put_prop(exoid, EX_NODE_SET, nsids[0], "FACE", 4);
  519. printf ("after ex_put_prop, error = %d\n", error);
  520. if (error) {
  521. ex_close (exoid);
  522. exit(-1);
  523. }
  524. error = ex_put_prop(exoid, EX_NODE_SET, nsids[1], "FACE", 5);
  525. printf ("after ex_put_prop, error = %d\n", error);
  526. if (error) {
  527. ex_close (exoid);
  528. exit(-1);
  529. }
  530. prop_array[0] = 1000;
  531. prop_array[1] = 2000;
  532. error = ex_put_prop_array(exoid, EX_NODE_SET, "VELOCITY", prop_array);
  533. printf ("after ex_put_prop_array, error = %d\n", error);
  534. if (error) {
  535. ex_close (exoid);
  536. exit(-1);
  537. }
  538. /* Add nodeset attributes */
  539. error = ex_put_attr_param(exoid, EX_NODE_SET, nsids[0], 1);
  540. printf ("after ex_put_attr_param, error = %d\n", error);
  541. if (error) {
  542. ex_close (exoid);
  543. exit(-1);
  544. }
  545. error = ex_put_attr(exoid, EX_NODE_SET, nsids[0], x);
  546. if (error) {
  547. ex_close (exoid);
  548. exit(-1);
  549. }
  550. {
  551. attrib_names[0] = "Nodeset_attribute";
  552. error = ex_put_attr_names (exoid, EX_NODE_SET, nsids[0], attrib_names);
  553. if (error) {
  554. ex_close (exoid);
  555. exit(-1);
  556. }
  557. }
  558. /* write individual side sets */
  559. num_face_in_sset[0] = 2;
  560. num_face_in_sset[1] = 2;
  561. num_face_in_sset[2] = 7;
  562. num_face_in_sset[3] = 8;
  563. num_face_in_sset[4] = 10;
  564. ssids[0] = 30;
  565. ssids[1] = 31;
  566. ssids[2] = 32;
  567. ssids[3] = 33;
  568. ssids[4] = 34;
  569. /* side set #1 - quad */
  570. error = ex_put_side_set_param (exoid, ssids[0], 2, 4);
  571. printf ("after ex_put_side_set_param, error = %d\n", error);
  572. if (error) {
  573. ex_close (exoid);
  574. exit(-1);
  575. }
  576. elem_list[0] = 2; elem_list[1] = 2;
  577. side_list[0] = 4; side_list[1] = 2;
  578. dist_fact[0] = 30.0; dist_fact[1] = 30.1; dist_fact[2] = 30.2;
  579. dist_fact[3] = 30.3;
  580. error = ex_put_side_set (exoid, 30, elem_list, side_list);
  581. printf ("after ex_put_side_set, error = %d\n", error);
  582. if (error) {
  583. ex_close (exoid);
  584. exit(-1);
  585. }
  586. error = ex_put_side_set_dist_fact (exoid, 30, dist_fact);
  587. printf ("after ex_put_side_set_dist_fact, error = %d\n", error);
  588. if (error) {
  589. ex_close (exoid);
  590. exit(-1);
  591. }
  592. /* side set #2 - quad, spanning 2 elements */
  593. error = ex_put_side_set_param (exoid, 31, 2, 4);
  594. printf ("after ex_put_side_set_param, error = %d\n", error);
  595. if (error) {
  596. ex_close (exoid);
  597. exit(-1);
  598. }
  599. elem_list[0] = 1; elem_list[1] = 2;
  600. side_list[0] = 2; side_list[1] = 3;
  601. dist_fact[0] = 31.0; dist_fact[1] = 31.1; dist_fact[2] = 31.2;
  602. dist_fact[3] = 31.3;
  603. error = ex_put_side_set (exoid, 31, elem_list, side_list);
  604. printf ("after ex_put_side_set, error = %d\n", error);
  605. if (error) {
  606. ex_close (exoid);
  607. exit(-1);
  608. }
  609. error = ex_put_side_set_dist_fact (exoid, 31, dist_fact);
  610. printf ("after ex_put_side_set_dist_fact, error = %d\n", error);
  611. if (error) {
  612. ex_close (exoid);
  613. exit(-1);
  614. }
  615. /* side set #3 - hex */
  616. error = ex_put_side_set_param (exoid, 32, 7, 0);
  617. printf ("after ex_put_side_set_param, error = %d\n", error);
  618. if (error) {
  619. ex_close (exoid);
  620. exit(-1);
  621. }
  622. elem_list[0] = 3; elem_list[1] = 3;
  623. elem_list[2] = 3; elem_list[3] = 3;
  624. elem_list[4] = 3; elem_list[5] = 3;
  625. elem_list[6] = 3;
  626. side_list[0] = 5; side_list[1] = 3;
  627. side_list[2] = 3; side_list[3] = 2;
  628. side_list[4] = 4; side_list[5] = 1;
  629. side_list[6] = 6;
  630. error = ex_put_side_set (exoid, 32, elem_list, side_list);
  631. printf ("after ex_put_side_set, error = %d\n", error);
  632. if (error) {
  633. ex_close (exoid);
  634. exit(-1);
  635. }
  636. /* side set #4 - tetras */
  637. error = ex_put_side_set_param (exoid, 33, 8, 0);
  638. printf ("after ex_put_side_set_param, error = %d\n", error);
  639. if (error) {
  640. ex_close (exoid);
  641. exit(-1);
  642. }
  643. elem_list[0] = 4; elem_list[1] = 4;
  644. elem_list[2] = 4; elem_list[3] = 4;
  645. elem_list[4] = 6; elem_list[5] = 6;
  646. elem_list[6] = 6; elem_list[7] = 6;
  647. side_list[0] = 1; side_list[1] = 2;
  648. side_list[2] = 3; side_list[3] = 4;
  649. side_list[4] = 1; side_list[5] = 2;
  650. side_list[6] = 3; side_list[7] = 4;
  651. error = ex_put_side_set (exoid, 33, elem_list, side_list);
  652. printf ("after ex_put_side_set, error = %d\n", error);
  653. if (error) {
  654. ex_close (exoid);
  655. exit(-1);
  656. }
  657. /* side set #5 - wedges and tris */
  658. error = ex_put_side_set_param (exoid, 34, 10, 0);
  659. printf ("after ex_put_side_set_param, error = %d\n", error);
  660. if (error) {
  661. ex_close (exoid);
  662. exit(-1);
  663. }
  664. elem_list[0] = 5; elem_list[1] = 5;
  665. elem_list[2] = 5; elem_list[3] = 5;
  666. elem_list[4] = 5; elem_list[5] = 7;
  667. elem_list[6] = 7; elem_list[7] = 7;
  668. elem_list[8] = 7; elem_list[9] = 7;
  669. side_list[0] = 1; side_list[1] = 2;
  670. side_list[2] = 3; side_list[3] = 4;
  671. side_list[4] = 5; side_list[5] = 1;
  672. side_list[6] = 2; side_list[7] = 3;
  673. side_list[8] = 4; side_list[9] = 5;
  674. error = ex_put_side_set (exoid, 34, elem_list, side_list);
  675. printf ("after ex_put_side_set, error = %d\n", error);
  676. if (error) {
  677. ex_close (exoid);
  678. exit(-1);
  679. }
  680. /* Write side set names */
  681. sset_names[0] = "sset_1";
  682. sset_names[1] = "sset_2";
  683. sset_names[2] = "sset_3";
  684. sset_names[3] = "sset_4";
  685. sset_names[4] = "sset_5";
  686. error = ex_put_names(exoid, EX_SIDE_SET, sset_names);
  687. printf ("after ex_put_names, error = %d\n", error);
  688. if (error) {
  689. ex_close (exoid);
  690. exit(-1);
  691. }
  692. error = ex_put_prop(exoid, EX_SIDE_SET, 30, "COLOR", 100);
  693. printf ("after ex_put_prop, error = %d\n", error);
  694. if (error) {
  695. ex_close (exoid);
  696. exit(-1);
  697. }
  698. error = ex_put_prop(exoid, EX_SIDE_SET, 31, "COLOR", 101);
  699. printf ("after ex_put_prop, error = %d\n", error);
  700. if (error) {
  701. ex_close (exoid);
  702. exit(-1);
  703. }
  704. /* write QA records; test empty and just blank-filled records */
  705. num_qa_rec = 2;
  706. qa_record[0][0] = "TESTWT";
  707. qa_record[0][1] = "testwt";
  708. qa_record[0][2] = "07/07/93";
  709. qa_record[0][3] = "15:41:33";
  710. qa_record[1][0] = "";
  711. qa_record[1][1] = " ";
  712. qa_record[1][2] = "";
  713. qa_record[1][3] = " ";
  714. error = ex_put_qa (exoid, num_qa_rec, qa_record);
  715. printf ("after ex_put_qa, error = %d\n", error);
  716. if (error) {
  717. ex_close (exoid);
  718. exit(-1);
  719. }
  720. /* write information records; test empty and just blank-filled records */
  721. num_info = 3;
  722. info[0] = "This is the first information record.";
  723. info[1] = "";
  724. info[2] = " ";
  725. error = ex_put_info (exoid, num_info, info);
  726. printf ("after ex_put_info, error = %d\n", error);
  727. if (error) {
  728. ex_close (exoid);
  729. exit(-1);
  730. }
  731. /* write results variables parameters and names */
  732. num_glo_vars = 1;
  733. var_names[0] = "glo_vars";
  734. error = ex_put_var_param (exoid, "g", num_glo_vars);
  735. printf ("after ex_put_var_param, error = %d\n", error);
  736. if (error) {
  737. ex_close (exoid);
  738. exit(-1);
  739. }
  740. error = ex_put_var_names (exoid, "g", num_glo_vars, var_names);
  741. printf ("after ex_put_var_names, error = %d\n", error);
  742. if (error) {
  743. ex_close (exoid);
  744. exit(-1);
  745. }
  746. num_nod_vars = 2;
  747. /* 12345678901234567890123456789012 */
  748. var_names[0] = "node_variable_a_very_long_name_0";
  749. var_names[1] = "nod_var1";
  750. error = ex_put_var_param (exoid, "n", num_nod_vars);
  751. printf ("after ex_put_var_param, error = %d\n", error);
  752. if (error) {
  753. ex_close (exoid);
  754. exit(-1);
  755. }
  756. error = ex_put_var_names (exoid, "n", num_nod_vars, var_names);
  757. printf ("after ex_put_var_names, error = %d\n", error);
  758. if (error) {
  759. ex_close (exoid);
  760. exit(-1);
  761. }
  762. num_ele_vars = 3;
  763. /* 0 1 2 3 */
  764. /* 12345678901234567890123456789012 */
  765. var_names[0] = "this_variable_name_is_short";
  766. var_names[1] = "this_variable_name_is_just_right";
  767. var_names[2] = "this_variable_name_is_tooooo_long";
  768. error = ex_put_var_param (exoid, "e", num_ele_vars);
  769. printf ("after ex_put_var_param, error = %d\n", error);
  770. if (error) {
  771. ex_close (exoid);
  772. exit(-1);
  773. }
  774. error = ex_put_var_names (exoid, "e", num_ele_vars, var_names);
  775. printf ("after ex_put_var_names, error = %d\n", error);
  776. if (error) {
  777. ex_close (exoid);
  778. exit(-1);
  779. }
  780. {
  781. num_nset_vars = 3;
  782. var_names[0] = "ns_var0";
  783. var_names[1] = "ns_var1";
  784. var_names[2] = "ns_var2";
  785. error = ex_put_var_param (exoid, "m", num_nset_vars);
  786. printf ("after ex_put_var_param, error = %d\n", error);
  787. if (error) {
  788. ex_close (exoid);
  789. exit(-1);
  790. }
  791. error = ex_put_var_names (exoid, "m", num_nset_vars, var_names);
  792. printf ("after ex_put_var_names, error = %d\n", error);
  793. if (error) {
  794. ex_close (exoid);
  795. exit(-1);
  796. }
  797. }
  798. {
  799. num_sset_vars = 3;
  800. var_names[0] = "ss_var0";
  801. var_names[1] = "ss_var1";
  802. var_names[2] = "ss_var2";
  803. error = ex_put_var_param (exoid, "s", num_sset_vars);
  804. printf ("after ex_put_var_param, error = %d\n", error);
  805. if (error) {
  806. ex_close (exoid);
  807. exit(-1);
  808. }
  809. error = ex_put_var_names (exoid, "s", num_sset_vars, var_names);
  810. printf ("after ex_put_var_names, error = %d\n", error);
  811. if (error) {
  812. ex_close (exoid);
  813. exit(-1);
  814. }
  815. }
  816. /* write element variable truth table */
  817. truth_tab = (int *) calloc ((num_elem_blk*num_ele_vars), sizeof(int));
  818. k = 0;
  819. for (i=0; i<num_elem_blk; i++)
  820. {
  821. for (j=0; j<num_ele_vars; j++)
  822. {
  823. truth_tab[k++] = 1;
  824. }
  825. }
  826. error = ex_put_elem_var_tab (exoid, num_elem_blk, num_ele_vars, truth_tab);
  827. printf ("after ex_put_elem_var_tab, error = %d\n", error);
  828. if (error) {
  829. ex_close (exoid);
  830. exit(-1);
  831. }
  832. free (truth_tab);
  833. /* for each time step, write the analysis results;
  834. * the code below fills the arrays glob_var_vals,
  835. * nodal_var_vals, and elem_var_vals with values for debugging purposes;
  836. * obviously the analysis code will populate these arrays
  837. */
  838. whole_time_step = 1;
  839. num_time_steps = 10;
  840. glob_var_vals = (float *) calloc (num_glo_vars, CPU_word_size);
  841. nodal_var_vals = (float *) calloc (num_nodes, CPU_word_size);
  842. elem_var_vals = (float *) calloc (4, CPU_word_size);
  843. sset_var_vals = (float *) calloc (10, CPU_word_size);
  844. nset_var_vals = (float *) calloc (10, CPU_word_size);
  845. for (i=0; i<num_time_steps; i++)
  846. {
  847. time_value = (float)(i+1)/100.;
  848. /* write time value */
  849. error = ex_put_time (exoid, whole_time_step, &time_value);
  850. printf ("after ex_put_time, error = %d\n", error);
  851. if (error) {
  852. ex_close (exoid);
  853. exit(-1);
  854. }
  855. /* write global variables */
  856. for (j=0; j<num_glo_vars; j++)
  857. {
  858. glob_var_vals[j] = (float)(j+2) * time_value;
  859. }
  860. error = ex_put_glob_vars (exoid, whole_time_step, num_glo_vars,
  861. glob_var_vals);
  862. printf ("after ex_put_glob_vars, error = %d\n", error);
  863. if (error) {
  864. ex_close (exoid);
  865. exit(-1);
  866. }
  867. /* write nodal variables */
  868. for (k=1; k<=num_nod_vars; k++)
  869. {
  870. for (j=0; j<num_nodes; j++)
  871. {
  872. nodal_var_vals[j] = (float)k + ((float)(j+1) * time_value);
  873. }
  874. error = ex_put_nodal_var (exoid, whole_time_step, k, num_nodes,
  875. nodal_var_vals);
  876. printf ("after ex_put_nodal_var, error = %d\n", error);
  877. if (error) {
  878. ex_close (exoid);
  879. exit(-1);
  880. }
  881. }
  882. /* write element variables */
  883. for (k=1; k<=num_ele_vars; k++)
  884. {
  885. for (j=0; j<num_elem_blk; j++)
  886. {
  887. for (m=0; m<num_elem_in_block[j]; m++)
  888. {
  889. elem_var_vals[m] = (float)(k+1) + (float)(j+2) +
  890. ((float)(m+1)*time_value);
  891. /* printf("elem_var_vals[%d]: %f\n",m,elem_var_vals[m]); */
  892. }
  893. error = ex_put_elem_var (exoid, whole_time_step, k, ebids[j],
  894. num_elem_in_block[j], elem_var_vals);
  895. printf ("after ex_put_elem_var, error = %d\n", error);
  896. if (error) {
  897. ex_close (exoid);
  898. exit(-1);
  899. }
  900. }
  901. }
  902. /* write sideset variables */
  903. for (k=1; k<=num_sset_vars; k++)
  904. {
  905. for (j=0; j<num_side_sets; j++)
  906. {
  907. for (m=0; m<num_face_in_sset[j]; m++)
  908. {
  909. sset_var_vals[m] = (float)(k+2) + (float)(j+3) +
  910. ((float)(m+1)*time_value);
  911. /* printf("sset_var_vals[%d]: %f\n",m,sset_var_vals[m]); */
  912. }
  913. error = ex_put_sset_var (exoid, whole_time_step, k, ssids[j],
  914. num_face_in_sset[j], sset_var_vals);
  915. printf ("after ex_put_sset_var, error = %d\n", error);
  916. if (error) {
  917. ex_close (exoid);
  918. exit(-1);
  919. }
  920. }
  921. }
  922. /* write nodeset variables */
  923. for (k=1; k<=num_nset_vars; k++)
  924. {
  925. for (j=0; j<num_node_sets; j++)
  926. {
  927. for (m=0; m<num_nodes_in_nset[j]; m++)
  928. {
  929. nset_var_vals[m] = (float)(k+3) + (float)(j+4) +
  930. ((float)(m+1)*time_value);
  931. /* printf("nset_var_vals[%d]: %f\n",m,nset_var_vals[m]); */
  932. }
  933. error = ex_put_nset_var (exoid, whole_time_step, k, nsids[j],
  934. num_nodes_in_nset[j], nset_var_vals);
  935. printf ("after ex_put_nset_var, error = %d\n", error);
  936. if (error) {
  937. ex_close (exoid);
  938. exit(-1);
  939. }
  940. }
  941. }
  942. whole_time_step++;
  943. /* update the data file; this should be done at the end of every time step
  944. * to ensure that no data is lost if the analysis dies
  945. */
  946. error = ex_update (exoid);
  947. printf ("after ex_update, error = %d\n", error);
  948. if (error) {
  949. ex_close (exoid);
  950. exit(-1);
  951. }
  952. }
  953. free(glob_var_vals);
  954. free(nodal_var_vals);
  955. free(elem_var_vals);
  956. free(sset_var_vals);
  957. free(nset_var_vals);
  958. /* close the EXODUS files
  959. */
  960. error = ex_close (exoid);
  961. printf ("after ex_close, error = %d\n", error);
  962. if (error) {
  963. ex_close (exoid);
  964. exit(-1);
  965. }
  966. return 0;
  967. }