unit-test-master.c 17 KB

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  1. /*
  2. * Copyright © 2008 Stéphane Raimbault <stephane.raimbault@gmail.com>
  3. *
  4. * This program is free software: you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 3 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  16. */
  17. #include <stdio.h>
  18. #include <unistd.h>
  19. #include <string.h>
  20. #include <stdlib.h>
  21. #include "modbus.h"
  22. #include "unit-test.h"
  23. /* Tests based on PI-MBUS-300 documentation */
  24. #define SLAVE 0x11
  25. int main(void)
  26. {
  27. uint8_t *tab_rp_status;
  28. uint16_t *tab_rp_registers;
  29. modbus_param_t mb_param;
  30. int i;
  31. uint8_t value;
  32. int address;
  33. int nb_points;
  34. int ret;
  35. float real;
  36. /* RTU parity : none, even, odd */
  37. /* modbus_init_rtu(&mb_param, "/dev/ttyS0", 19200, "none", 8, 1, SLAVE); */
  38. /* TCP */
  39. modbus_init_tcp(&mb_param, "127.0.0.1", 1502, SLAVE);
  40. /* modbus_set_debug(&mb_param, TRUE); */
  41. if (modbus_connect(&mb_param) == -1) {
  42. printf("ERROR Connection failed\n");
  43. exit(1);
  44. }
  45. /* Allocate and initialize the memory to store the status */
  46. nb_points = (UT_COIL_STATUS_NB_POINTS > UT_INPUT_STATUS_NB_POINTS) ?
  47. UT_COIL_STATUS_NB_POINTS : UT_INPUT_STATUS_NB_POINTS;
  48. tab_rp_status = (uint8_t *) malloc(nb_points * sizeof(uint8_t));
  49. memset(tab_rp_status, 0, nb_points * sizeof(uint8_t));
  50. /* Allocate and initialize the memory to store the registers */
  51. nb_points = (UT_HOLDING_REGISTERS_NB_POINTS >
  52. UT_INPUT_REGISTERS_NB_POINTS) ?
  53. UT_HOLDING_REGISTERS_NB_POINTS : UT_INPUT_REGISTERS_NB_POINTS;
  54. tab_rp_registers = (uint16_t *) malloc(nb_points * sizeof(uint16_t));
  55. memset(tab_rp_registers, 0, nb_points * sizeof(uint16_t));
  56. printf("** UNIT TESTING **\n");
  57. printf("\nTEST WRITE/READ:\n");
  58. /** COIL STATUS **/
  59. /* Single */
  60. ret = force_single_coil(&mb_param, UT_COIL_STATUS_ADDRESS, ON);
  61. printf("1/2 force_single_coil: ");
  62. if (ret == 1) {
  63. printf("OK\n");
  64. } else {
  65. printf("FAILED\n");
  66. goto close;
  67. }
  68. ret = read_coil_status(&mb_param, UT_COIL_STATUS_ADDRESS, 1,
  69. tab_rp_status);
  70. printf("2/2 read_coil_status: ");
  71. if (ret != 1) {
  72. printf("FAILED (nb points %d)\n", ret);
  73. goto close;
  74. }
  75. if (tab_rp_status[0] != ON) {
  76. printf("FAILED (%0X = != %0X)\n", tab_rp_status[0], ON);
  77. goto close;
  78. }
  79. printf("OK\n");
  80. /* End single */
  81. /* Multiple coils */
  82. {
  83. uint8_t tab_value[UT_COIL_STATUS_NB_POINTS];
  84. set_bits_from_bytes(tab_value, 0, UT_COIL_STATUS_NB_POINTS,
  85. UT_COIL_STATUS_TAB);
  86. ret = force_multiple_coils(&mb_param,
  87. UT_COIL_STATUS_ADDRESS,
  88. UT_COIL_STATUS_NB_POINTS,
  89. tab_value);
  90. printf("1/2 force_multiple_coils: ");
  91. if (ret == UT_COIL_STATUS_NB_POINTS) {
  92. printf("OK\n");
  93. } else {
  94. printf("FAILED\n");
  95. goto close;
  96. }
  97. }
  98. ret = read_coil_status(&mb_param, UT_COIL_STATUS_ADDRESS,
  99. UT_COIL_STATUS_NB_POINTS, tab_rp_status);
  100. printf("2/2 read_coil_status: ");
  101. if (ret != UT_COIL_STATUS_NB_POINTS) {
  102. printf("FAILED (nb points %d)\n", ret);
  103. goto close;
  104. }
  105. i = 0;
  106. address = UT_COIL_STATUS_ADDRESS;
  107. nb_points = UT_COIL_STATUS_NB_POINTS;
  108. while (nb_points > 0) {
  109. int nb_bits = (nb_points > 8) ? 8 : nb_points;
  110. value = get_byte_from_bits(tab_rp_status, i*8, nb_bits);
  111. if (value != UT_COIL_STATUS_TAB[i]) {
  112. printf("FAILED (%0X != %0X)\n",
  113. value, UT_COIL_STATUS_TAB[i]);
  114. goto close;
  115. }
  116. nb_points -= nb_bits;
  117. i++;
  118. }
  119. printf("OK\n");
  120. /* End of multiple coils */
  121. /** INPUT STATUS **/
  122. ret = read_input_status(&mb_param, UT_INPUT_STATUS_ADDRESS,
  123. UT_INPUT_STATUS_NB_POINTS, tab_rp_status);
  124. printf("1/1 read_input_status: ");
  125. if (ret != UT_INPUT_STATUS_NB_POINTS) {
  126. printf("FAILED (nb points %d)\n", ret);
  127. goto close;
  128. }
  129. i = 0;
  130. address = UT_INPUT_STATUS_ADDRESS;
  131. nb_points = UT_INPUT_STATUS_NB_POINTS;
  132. while (nb_points > 0) {
  133. int nb_bits = (nb_points > 8) ? 8 : nb_points;
  134. value = get_byte_from_bits(tab_rp_status, i*8, nb_bits);
  135. if (value != UT_INPUT_STATUS_TAB[i]) {
  136. printf("FAILED (%0X != %0X)\n",
  137. value, UT_INPUT_STATUS_TAB[i]);
  138. goto close;
  139. }
  140. nb_points -= nb_bits;
  141. i++;
  142. }
  143. printf("OK\n");
  144. /** HOLDING REGISTERS **/
  145. /* Single register */
  146. ret = preset_single_register(&mb_param,
  147. UT_HOLDING_REGISTERS_ADDRESS, 0x1234);
  148. printf("1/2 preset_single_register: ");
  149. if (ret == 1) {
  150. printf("OK\n");
  151. } else {
  152. printf("FAILED\n");
  153. goto close;
  154. }
  155. ret = read_holding_registers(&mb_param,
  156. UT_HOLDING_REGISTERS_ADDRESS,
  157. 1, tab_rp_registers);
  158. printf("2/2 read_holding_registers: ");
  159. if (ret != 1) {
  160. printf("FAILED (nb points %d)\n", ret);
  161. goto close;
  162. }
  163. if (tab_rp_registers[0] != 0x1234) {
  164. printf("FAILED (%0X != %0X)\n",
  165. tab_rp_registers[0], 0x1234);
  166. goto close;
  167. }
  168. printf("OK\n");
  169. /* End of single register */
  170. /* Many registers */
  171. ret = preset_multiple_registers(&mb_param,
  172. UT_HOLDING_REGISTERS_ADDRESS,
  173. UT_HOLDING_REGISTERS_NB_POINTS,
  174. UT_HOLDING_REGISTERS_TAB);
  175. printf("1/2 preset_multiple_registers: ");
  176. if (ret == UT_HOLDING_REGISTERS_NB_POINTS) {
  177. printf("OK\n");
  178. } else {
  179. printf("FAILED\n");
  180. goto close;
  181. }
  182. ret = read_holding_registers(&mb_param,
  183. UT_HOLDING_REGISTERS_ADDRESS,
  184. UT_HOLDING_REGISTERS_NB_POINTS,
  185. tab_rp_registers);
  186. printf("2/2 read_holding_registers: ");
  187. if (ret != UT_HOLDING_REGISTERS_NB_POINTS) {
  188. printf("FAILED (nb points %d)\n", ret);
  189. goto close;
  190. }
  191. for (i=0; i < UT_HOLDING_REGISTERS_NB_POINTS; i++) {
  192. if (tab_rp_registers[i] != UT_HOLDING_REGISTERS_TAB[i]) {
  193. printf("FAILED (%0X != %0X)\n",
  194. tab_rp_registers[i],
  195. UT_HOLDING_REGISTERS_TAB[i]);
  196. goto close;
  197. }
  198. }
  199. printf("OK\n");
  200. /* End of many registers */
  201. /** INPUT REGISTERS **/
  202. ret = read_input_registers(&mb_param,
  203. UT_INPUT_REGISTERS_ADDRESS,
  204. UT_INPUT_REGISTERS_NB_POINTS,
  205. tab_rp_registers);
  206. printf("1/1 read_input_registers: ");
  207. if (ret != UT_INPUT_REGISTERS_NB_POINTS) {
  208. printf("FAILED (nb points %d)\n", ret);
  209. goto close;
  210. }
  211. for (i=0; i < UT_INPUT_REGISTERS_NB_POINTS; i++) {
  212. if (tab_rp_registers[i] != UT_INPUT_REGISTERS_TAB[i]) {
  213. printf("FAILED (%0X != %0X)\n",
  214. tab_rp_registers[i], UT_INPUT_REGISTERS_TAB[i]);
  215. goto close;
  216. }
  217. }
  218. printf("OK\n");
  219. printf("\nTEST FLOATS\n");
  220. /** FLOAT **/
  221. printf("1/2 Write float: ");
  222. modbus_write_float(UT_REAL, tab_rp_registers);
  223. if (tab_rp_registers[1] == (UT_IREAL >> 16) &&
  224. tab_rp_registers[0] == (UT_IREAL & 0xFFFF)) {
  225. printf("OK\n");
  226. } else {
  227. printf("FAILED (%x != %x)\n",
  228. *((uint32_t *)tab_rp_registers), UT_IREAL);
  229. goto close;
  230. }
  231. printf("2/2 Read float: ");
  232. real = modbus_read_float(tab_rp_registers);
  233. if (real == UT_REAL) {
  234. printf("OK\n");
  235. } else {
  236. printf("FAILED (%f != %f)\n", real, UT_REAL);
  237. goto close;
  238. }
  239. printf("\nAt this point, error messages doesn't mean the test has failed\n");
  240. /** ILLEGAL DATA ADDRESS **/
  241. printf("\nTEST ILLEGAL DATA ADDRESS:\n");
  242. /* The mapping begins at 0 and ending at address + nb_points so
  243. * the addresses below are not valid. */
  244. ret = read_coil_status(&mb_param,
  245. UT_COIL_STATUS_ADDRESS,
  246. UT_COIL_STATUS_NB_POINTS + 1,
  247. tab_rp_status);
  248. printf("* read_coil_status: ");
  249. if (ret == ILLEGAL_DATA_ADDRESS)
  250. printf("OK\n");
  251. else {
  252. printf("FAILED\n");
  253. goto close;
  254. }
  255. ret = read_input_status(&mb_param,
  256. UT_INPUT_STATUS_ADDRESS,
  257. UT_INPUT_STATUS_NB_POINTS + 1,
  258. tab_rp_status);
  259. printf("* read_input_status: ");
  260. if (ret == ILLEGAL_DATA_ADDRESS)
  261. printf("OK\n");
  262. else {
  263. printf("FAILED\n");
  264. goto close;
  265. }
  266. ret = read_holding_registers(&mb_param,
  267. UT_HOLDING_REGISTERS_ADDRESS,
  268. UT_HOLDING_REGISTERS_NB_POINTS + 1,
  269. tab_rp_registers);
  270. printf("* read_holding_registers: ");
  271. if (ret == ILLEGAL_DATA_ADDRESS)
  272. printf("OK\n");
  273. else {
  274. printf("FAILED\n");
  275. goto close;
  276. }
  277. ret = read_input_registers(&mb_param,
  278. UT_INPUT_REGISTERS_ADDRESS,
  279. UT_INPUT_REGISTERS_NB_POINTS + 1,
  280. tab_rp_registers);
  281. printf("* read_input_registers: ");
  282. if (ret == ILLEGAL_DATA_ADDRESS)
  283. printf("OK\n");
  284. else {
  285. printf("FAILED\n");
  286. goto close;
  287. }
  288. ret = force_single_coil(&mb_param,
  289. UT_COIL_STATUS_ADDRESS + UT_COIL_STATUS_NB_POINTS,
  290. ON);
  291. printf("* force_single_coil: ");
  292. if (ret == ILLEGAL_DATA_ADDRESS) {
  293. printf("OK\n");
  294. } else {
  295. printf("FAILED\n");
  296. goto close;
  297. }
  298. ret = force_multiple_coils(&mb_param,
  299. UT_COIL_STATUS_ADDRESS + UT_COIL_STATUS_NB_POINTS,
  300. UT_COIL_STATUS_NB_POINTS,
  301. tab_rp_status);
  302. printf("* force_multiple_coils: ");
  303. if (ret == ILLEGAL_DATA_ADDRESS) {
  304. printf("OK\n");
  305. } else {
  306. printf("FAILED\n");
  307. goto close;
  308. }
  309. ret = preset_multiple_registers(&mb_param,
  310. UT_HOLDING_REGISTERS_ADDRESS + UT_HOLDING_REGISTERS_NB_POINTS,
  311. UT_HOLDING_REGISTERS_NB_POINTS,
  312. tab_rp_registers);
  313. printf("* preset_multiple_registers: ");
  314. if (ret == ILLEGAL_DATA_ADDRESS) {
  315. printf("OK\n");
  316. } else {
  317. printf("FAILED\n");
  318. goto close;
  319. }
  320. /** TOO MANY DATA **/
  321. printf("\nTEST TOO MANY DATA ERROR:\n");
  322. ret = read_coil_status(&mb_param,
  323. UT_COIL_STATUS_ADDRESS,
  324. MAX_STATUS + 1,
  325. tab_rp_status);
  326. printf("* read_coil_status: ");
  327. if (ret == INVALID_DATA) {
  328. printf("OK\n");
  329. } else {
  330. printf("FAILED\n");
  331. goto close;
  332. }
  333. ret = read_input_status(&mb_param,
  334. UT_INPUT_STATUS_ADDRESS,
  335. MAX_STATUS + 1,
  336. tab_rp_status);
  337. printf("* read_input_status: ");
  338. if (ret == INVALID_DATA) {
  339. printf("OK\n");
  340. } else {
  341. printf("FAILED\n");
  342. goto close;
  343. }
  344. ret = read_holding_registers(&mb_param,
  345. UT_HOLDING_REGISTERS_ADDRESS,
  346. MAX_REGISTERS + 1,
  347. tab_rp_registers);
  348. printf("* read_holding_registers: ");
  349. if (ret == INVALID_DATA) {
  350. printf("OK\n");
  351. } else {
  352. printf("FAILED\n");
  353. goto close;
  354. }
  355. ret = read_input_registers(&mb_param,
  356. UT_INPUT_REGISTERS_ADDRESS,
  357. MAX_REGISTERS + 1,
  358. tab_rp_registers);
  359. printf("* read_input_registers: ");
  360. if (ret == INVALID_DATA) {
  361. printf("OK\n");
  362. } else {
  363. printf("FAILED\n");
  364. goto close;
  365. }
  366. ret = force_multiple_coils(&mb_param,
  367. UT_COIL_STATUS_ADDRESS,
  368. MAX_STATUS + 1,
  369. tab_rp_status);
  370. printf("* force_multiple_coils: ");
  371. if (ret == INVALID_DATA) {
  372. printf("OK\n");
  373. } else {
  374. goto close;
  375. printf("FAILED\n");
  376. }
  377. ret = preset_multiple_registers(&mb_param,
  378. UT_HOLDING_REGISTERS_ADDRESS,
  379. MAX_REGISTERS + 1,
  380. tab_rp_registers);
  381. printf("* preset_multiple_registers: ");
  382. if (ret == INVALID_DATA) {
  383. printf("OK\n");
  384. } else {
  385. printf("FAILED\n");
  386. goto close;
  387. }
  388. /** SLAVE REPLY **/
  389. printf("\nTEST SLAVE REPLY:\n");
  390. modbus_set_slave(&mb_param, 18);
  391. ret = read_holding_registers(&mb_param,
  392. UT_HOLDING_REGISTERS_ADDRESS+1,
  393. UT_HOLDING_REGISTERS_NB_POINTS,
  394. tab_rp_registers);
  395. printf("1/2 No reply from slave %d: ", mb_param.slave);
  396. if (ret == SELECT_TIMEOUT) {
  397. printf("OK\n");
  398. } else {
  399. printf("FAILED\n");
  400. goto close;
  401. }
  402. modbus_set_slave(&mb_param, MODBUS_BROADCAST_ADDRESS);
  403. ret = read_holding_registers(&mb_param,
  404. UT_HOLDING_REGISTERS_ADDRESS,
  405. UT_HOLDING_REGISTERS_NB_POINTS,
  406. tab_rp_registers);
  407. printf("2/2 Reply after a broadcast query: ");
  408. if (ret == UT_HOLDING_REGISTERS_NB_POINTS) {
  409. printf("OK\n");
  410. } else {
  411. goto close;
  412. printf("FAILED\n");
  413. }
  414. /** BAD RESPONSE **/
  415. printf("\nTEST BAD RESPONSE ERROR:\n");
  416. /* Allocate only the required space */
  417. uint16_t *tab_rp_registers_bad = (uint16_t *) malloc(
  418. UT_HOLDING_REGISTERS_NB_POINTS_SPECIAL * sizeof(uint16_t));
  419. ret = read_holding_registers(&mb_param,
  420. UT_HOLDING_REGISTERS_ADDRESS,
  421. UT_HOLDING_REGISTERS_NB_POINTS_SPECIAL,
  422. tab_rp_registers_bad);
  423. printf("* read_holding_registers: ");
  424. if (ret == INVALID_DATA) {
  425. printf("OK\n");
  426. } else {
  427. printf("FAILED\n");
  428. goto close;
  429. }
  430. free(tab_rp_registers_bad);
  431. printf("\nALL TESTS PASS WITH SUCCESS.\n");
  432. close:
  433. /* Free the memory */
  434. free(tab_rp_status);
  435. free(tab_rp_registers);
  436. /* Close the connection */
  437. modbus_close(&mb_param);
  438. return 0;
  439. }