check_stack.c 19 KB

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  1. /*
  2. ============================================================================
  3. Name : opcuaServer.c
  4. Author :
  5. Version :
  6. Copyright : Your copyright notice
  7. Description :
  8. ============================================================================
  9. */
  10. #include <stdio.h>
  11. #include <stdlib.h>
  12. #include "../src/opcua_transportLayer.h"
  13. #include "../src/opcua_binaryEncDec.h"
  14. #include "../src/opcua_encodingLayer.h"
  15. #include "../src/opcua_advancedDatatypes.h"
  16. //#include "check_stdint.h"
  17. #include "check.h"
  18. START_TEST(test_getPacketType_validParameter)
  19. {
  20. char buf[] = {'C','L','O'};
  21. AD_RawMessage rawMessage;
  22. rawMessage.message = buf;
  23. rawMessage.length = 3;
  24. ck_assert_int_eq(TL_getPacketType(&rawMessage),packetType_CLO);
  25. }
  26. END_TEST
  27. START_TEST(encodeByte_test)
  28. {
  29. AD_RawMessage rawMessage;
  30. Int32 position = 0;
  31. //EncodeByte
  32. char *mem = malloc(sizeof(Byte));
  33. rawMessage.message = mem;
  34. Byte testByte = 0x08;
  35. rawMessage.length = 1;
  36. position = 0;
  37. encodeByte(testByte, &position, rawMessage.message);
  38. ck_assert_int_eq(rawMessage.message[0], 0x08);
  39. ck_assert_int_eq(rawMessage.length, 1);
  40. ck_assert_int_eq(position, 1);
  41. free(mem);
  42. }
  43. END_TEST
  44. /*
  45. START_TEST(decodeRequestHeader_test_validParameter)
  46. {
  47. char testMessage = {0x00,0x00,0x72,0xf1,0xdc,0xc9,0x87,0x0b,
  48. 0xcf,0x01,0x00,0x00,0x00,0x00,0x00,0x00,
  49. 0x00,0x00,0xff,0xff,0xff,0xff,0x00,0x00,
  50. 0x00,0x00,0x00,0x00,0x00};
  51. AD_RawMessage rawMessage;
  52. rawMessage.message = &testMessage;
  53. rawMessage.length = 29;
  54. Int32 position = 0;
  55. T_RequestHeader requestHeader;
  56. decodeRequestHeader(rawMessage,&position,&requestHeader);
  57. ck_assert_int_eq(requestHeader.authenticationToken.EncodingByte,0);
  58. ck_assert_int_eq(requestHeader.returnDiagnostics,0);
  59. ck_assert_int_eq(requestHeader.authenticationToken.EncodingByte,0);
  60. }
  61. END_TEST
  62. */
  63. START_TEST(decodeInt16_test)
  64. {
  65. AD_RawMessage rawMessage;
  66. Int32 position = 0;
  67. //EncodeUInt16
  68. char mem[2] = {0x01,0x00};
  69. rawMessage.message = mem;
  70. rawMessage.length = 2;
  71. //encodeUInt16(testUInt16, &position, &rawMessage);
  72. Int32 p = 0;
  73. Int16 val = decodeInt16(rawMessage.message,&p);
  74. ck_assert_int_eq(val,1);
  75. //ck_assert_int_eq(p, 2);
  76. //ck_assert_int_eq(rawMessage.message[0], 0xAB);
  77. }
  78. END_TEST
  79. START_TEST(encodeInt16_test)
  80. {
  81. AD_RawMessage rawMessage;
  82. Int32 position = 0;
  83. //EncodeUInt16
  84. char *mem = malloc(sizeof(UInt16));
  85. rawMessage.message = mem;
  86. UInt16 testUInt16 = 1;
  87. rawMessage.length = 2;
  88. position = 0;
  89. encodeUInt16(testUInt16, &position, rawMessage.message);
  90. //encodeUInt16(testUInt16, &position, &rawMessage);
  91. ck_assert_int_eq(position, 2);
  92. Int32 p = 0;
  93. Int16 val = decodeInt16(rawMessage.message,&p);
  94. ck_assert_int_eq(val,testUInt16);
  95. //ck_assert_int_eq(rawMessage.message[0], 0xAB);
  96. }
  97. END_TEST
  98. START_TEST(decodeUInt16_test)
  99. {
  100. AD_RawMessage rawMessage;
  101. Int32 position = 0;
  102. //EncodeUInt16
  103. char mem[2] = {0x01,0x00};
  104. rawMessage.message = mem;
  105. rawMessage.length = 2;
  106. //encodeUInt16(testUInt16, &position, &rawMessage);
  107. Int32 p = 0;
  108. UInt16 val = decodeUInt16(rawMessage.message,&p);
  109. ck_assert_int_eq(val,1);
  110. //ck_assert_int_eq(p, 2);
  111. //ck_assert_int_eq(rawMessage.message[0], 0xAB);
  112. }
  113. END_TEST
  114. START_TEST(encodeUInt16_test)
  115. {
  116. AD_RawMessage rawMessage;
  117. Int32 position = 0;
  118. //EncodeUInt16
  119. char *mem = malloc(sizeof(UInt16));
  120. rawMessage.message = mem;
  121. UInt16 testUInt16 = 1;
  122. rawMessage.length = 2;
  123. position = 0;
  124. encodeUInt16(testUInt16, &position, rawMessage.message);
  125. //encodeUInt16(testUInt16, &position, &rawMessage);
  126. ck_assert_int_eq(position, 2);
  127. Int32 p = 0;
  128. UInt16 val = decodeUInt16(rawMessage.message,&p);
  129. ck_assert_int_eq(val,testUInt16);
  130. //ck_assert_int_eq(rawMessage.message[0], 0xAB);
  131. }
  132. END_TEST
  133. START_TEST(decodeUInt32_test)
  134. {
  135. AD_RawMessage rawMessage;
  136. Int32 position = 0;
  137. //EncodeUInt16
  138. char mem[4] = {0xFF,0x00,0x00,0x00};
  139. rawMessage.message = mem;
  140. rawMessage.length = 4;
  141. Int32 p = 0;
  142. UInt32 val = decodeUInt32(rawMessage.message,&p);
  143. ck_assert_uint_eq(val,255);
  144. }
  145. END_TEST
  146. START_TEST(encodeUInt32_test)
  147. {
  148. AD_RawMessage rawMessage;
  149. Int32 position = 0;
  150. UInt32 value = 0x0101FF00;
  151. //EncodeUInt16
  152. rawMessage.message = (char*)opcua_malloc(sizeof(UInt32));
  153. rawMessage.length = 4;
  154. Int32 p = 0;
  155. encodeUInt32(value, &p,rawMessage.message);
  156. ck_assert_uint_eq((Byte)rawMessage.message[0],0x00);
  157. ck_assert_uint_eq((Byte)rawMessage.message[1],0xFF);
  158. ck_assert_uint_eq((Byte)rawMessage.message[2],0x01);
  159. ck_assert_uint_eq((Byte)rawMessage.message[3],0x01);
  160. }
  161. END_TEST
  162. START_TEST(decodeInt32_test)
  163. {
  164. AD_RawMessage rawMessage;
  165. Int32 position = 0;
  166. //EncodeUInt16
  167. char mem[4] = {0x00,0xCA,0x9A,0x3B};
  168. rawMessage.message = mem;
  169. rawMessage.length = 4;
  170. Int32 p = 0;
  171. Int32 val = decodeInt32(rawMessage.message,&p);
  172. ck_assert_int_eq(val,1000000000);
  173. }
  174. END_TEST
  175. START_TEST(encodeInt32_test)
  176. {
  177. }
  178. END_TEST
  179. START_TEST(decodeUInt64_test)
  180. {
  181. AD_RawMessage rawMessage;
  182. Int32 position = 0;
  183. UInt64 expectedVal = 0xFF;
  184. expectedVal = expectedVal << 56;
  185. char mem[8] = {00,00,00,00,0x00,0x00,0x00,0xFF};
  186. rawMessage.message = mem;
  187. rawMessage.length = 8;
  188. Int32 p = 0;
  189. UInt64 val = decodeUInt64(rawMessage.message,&p);
  190. ck_assert_uint_eq(val, expectedVal);
  191. }
  192. END_TEST
  193. START_TEST(encodeUInt64_test)
  194. {
  195. AD_RawMessage rawMessage;
  196. Int32 position = 0;
  197. UInt64 value = 0x0101FF00FF00FF00;
  198. //EncodeUInt16
  199. rawMessage.message = (char*)opcua_malloc(sizeof(UInt32));
  200. rawMessage.length = 8;
  201. Int32 p = 0;
  202. encodeUInt64(value, &p,rawMessage.message);
  203. ck_assert_uint_eq((Byte)rawMessage.message[0],0x00);
  204. ck_assert_uint_eq((Byte)rawMessage.message[1],0xFF);
  205. ck_assert_uint_eq((Byte)rawMessage.message[2],0x00);
  206. ck_assert_uint_eq((Byte)rawMessage.message[3],0xFF);
  207. ck_assert_uint_eq((Byte)rawMessage.message[4],0x00);
  208. ck_assert_uint_eq((Byte)rawMessage.message[5],0xFF);
  209. ck_assert_uint_eq((Byte)rawMessage.message[6],0x01);
  210. ck_assert_uint_eq((Byte)rawMessage.message[7],0x01);
  211. }
  212. END_TEST
  213. START_TEST(decodeInt64_test)
  214. {
  215. AD_RawMessage rawMessage;
  216. Int32 position = 0;
  217. Int64 expectedVal = 0xFF;
  218. expectedVal = expectedVal << 56;
  219. char mem[8] = {00,00,00,00,0x00,0x00,0x00,0xFF};
  220. rawMessage.message = mem;
  221. rawMessage.length = 8;
  222. Int32 p = 0;
  223. Int64 val = decodeInt64(rawMessage.message,&p);
  224. ck_assert_uint_eq(val, expectedVal);
  225. }
  226. END_TEST
  227. START_TEST(encodeInt64_test)
  228. {
  229. AD_RawMessage rawMessage;
  230. Int32 position = 0;
  231. UInt64 value = 0x0101FF00FF00FF00;
  232. //EncodeUInt16
  233. rawMessage.message = (char*)opcua_malloc(sizeof(UInt32));
  234. rawMessage.length = 8;
  235. Int32 p = 0;
  236. encodeUInt64(value, &p,rawMessage.message);
  237. ck_assert_uint_eq((Byte)rawMessage.message[0],0x00);
  238. ck_assert_uint_eq((Byte)rawMessage.message[1],0xFF);
  239. ck_assert_uint_eq((Byte)rawMessage.message[2],0x00);
  240. ck_assert_uint_eq((Byte)rawMessage.message[3],0xFF);
  241. ck_assert_uint_eq((Byte)rawMessage.message[4],0x00);
  242. ck_assert_uint_eq((Byte)rawMessage.message[5],0xFF);
  243. ck_assert_uint_eq((Byte)rawMessage.message[6],0x01);
  244. ck_assert_uint_eq((Byte)rawMessage.message[7],0x01);
  245. }
  246. END_TEST
  247. START_TEST(decodeFloat_test)
  248. {
  249. Float expectedValue = -6.5;
  250. Int32 pos = 0;
  251. char buf[4] = {0x00,0x00,0xD0,0xC0};
  252. Float calcVal = decodeFloat(buf,&pos);
  253. //val should be -6.5
  254. Int32 val = (calcVal > -6.501 && calcVal < -6.499);
  255. ck_assert_int_gt(val,0);
  256. opcua_free(buf);
  257. }
  258. END_TEST
  259. START_TEST(encodeFloat_test)
  260. {
  261. Float value = -6.5;
  262. Int32 pos = 0;
  263. char *buf = (char*)opcua_malloc(sizeof(Float));
  264. encodeFloat(value,&pos,buf);
  265. ck_assert_uint_eq((Byte)buf[2],0xD0);
  266. ck_assert_uint_eq((Byte)buf[3],0xC0);
  267. opcua_free(buf);
  268. }
  269. END_TEST
  270. START_TEST(decodeDouble_test)
  271. {
  272. }
  273. END_TEST
  274. START_TEST(encodeDouble_test)
  275. {
  276. Float value = -6.5;
  277. Int32 pos = 0;
  278. char *buf = (char*)opcua_malloc(sizeof(Float));
  279. encodeDouble(value,&pos,buf);
  280. ck_assert_uint_eq((Byte)buf[6],0xD0);
  281. ck_assert_uint_eq((Byte)buf[7],0xC0);
  282. opcua_free(buf);
  283. }
  284. END_TEST
  285. START_TEST(encodeUAString_test)
  286. {
  287. Int32 pos = 0;
  288. UA_String string;
  289. Int32 l = 11;
  290. char mem[11] = "ACPLT OPCUA";
  291. char *dstBuf = (char*) malloc(sizeof(Int32)+l);
  292. string.Data = mem;
  293. string.Length = 11;
  294. encodeUAString(&string, &pos, dstBuf);
  295. ck_assert_int_eq(dstBuf[0],11);
  296. ck_assert_int_eq(dstBuf[0+sizeof(Int32)],'A');
  297. }
  298. END_TEST
  299. START_TEST(decodeUAString_test)
  300. {
  301. Int32 pos = 0;
  302. UA_String string;
  303. Int32 l = 11;
  304. char binString[15] = {11,0x00,0x00,0x00,'A','C','P','L','T',' ','U','A'};
  305. char *dstBuf = (char*) malloc(l-sizeof(Int32));
  306. string.Data = dstBuf;
  307. string.Length = 0;
  308. decodeUAString(binString, &pos, &string);
  309. ck_assert_int_eq(string.Length,11);
  310. ck_assert_int_eq(string.Data[3],'L');
  311. }
  312. END_TEST
  313. START_TEST(diagnosticInfo_calcSize_test)
  314. {
  315. Int32 valreal = 0;
  316. Int32 valcalc = 0;
  317. UA_DiagnosticInfo diagnosticInfo;
  318. diagnosticInfo.EncodingMask = 0x01 | 0x02 | 0x04 | 0x08 | 0x10;
  319. diagnosticInfo.SymbolicId = 30;
  320. diagnosticInfo.NamespaceUri = 25;
  321. diagnosticInfo.LocalizedText = 22;
  322. diagnosticInfo.AdditionalInfo.Data = "OPCUA";
  323. diagnosticInfo.AdditionalInfo.Length = 5;
  324. valcalc = diagnosticInfo_calcSize(&diagnosticInfo);
  325. valreal = 26;
  326. ck_assert_int_eq(valcalc,valreal);
  327. }
  328. END_TEST
  329. START_TEST(extensionObject_calcSize_test)
  330. {
  331. Int32 valreal = 0;
  332. Int32 valcalc = 0;
  333. Byte data[3] = {1,2,3};
  334. UA_ExtensionObject extensionObject;
  335. extensionObject.TypeId.EncodingByte = NIEVT_TWO_BYTE;; // Numeric TWO BYTES
  336. extensionObject.TypeId.Identifier.Numeric = 0;
  337. extensionObject.Encoding = 0x00;
  338. extensionObject.Length = 0;
  339. //extensionObject.Body = &data;
  340. valcalc = extensionObject_calcSize(&extensionObject);
  341. valreal = 3;
  342. ck_assert_int_eq(valcalc, valreal);
  343. }
  344. END_TEST
  345. START_TEST(responseHeader_calcSize_test)
  346. {
  347. Int32 valreal = 0;
  348. Int32 valcalc = 0;
  349. T_ResponseHeader responseHeader;
  350. UA_DiagnosticInfo diagnosticInfo;
  351. UA_ExtensionObject extensionObject;
  352. //Should have the size of 16 Bytes
  353. responseHeader.timestamp = 150014;
  354. responseHeader.requestHandle = 514;
  355. responseHeader.serviceResult = 504;
  356. //Should have the size of 26 Bytes
  357. diagnosticInfo.EncodingMask = 0x01 | 0x02 | 0x04 | 0x08 | 0x10;
  358. diagnosticInfo.SymbolicId = 30;
  359. diagnosticInfo.NamespaceUri = 25;
  360. diagnosticInfo.LocalizedText = 22;
  361. diagnosticInfo.AdditionalInfo.Data = "OPCUA";
  362. diagnosticInfo.AdditionalInfo.Length = 5;
  363. responseHeader.serviceDiagnostics = &diagnosticInfo;
  364. //Should have the size of 4 Bytes
  365. responseHeader.noOfStringTable = 0;
  366. //Should have the size of 3 Bytes
  367. extensionObject.TypeId.EncodingByte = NIEVT_TWO_BYTE;
  368. extensionObject.TypeId.Identifier.Numeric = 0;
  369. extensionObject.Encoding = 0x00; //binaryBody = false, xmlBody = false
  370. responseHeader.additionalHeader = extensionObject;
  371. valcalc = responseHeader_calcSize(&responseHeader);
  372. valreal = 49;
  373. ck_assert_int_eq(valcalc,valreal);
  374. }
  375. END_TEST
  376. Suite *testSuite_getPacketType(void)
  377. {
  378. Suite *s = suite_create("getPacketType");
  379. TCase *tc_core = tcase_create("Core");
  380. tcase_add_test(tc_core,test_getPacketType_validParameter);
  381. suite_add_tcase(s,tc_core);
  382. return s;
  383. }
  384. Suite *testSuite_encodeByte(void)
  385. {
  386. Suite *s = suite_create("encodeByte_test");
  387. TCase *tc_core = tcase_create("Core");
  388. tcase_add_test(tc_core, encodeByte_test);
  389. suite_add_tcase(s,tc_core);
  390. return s;
  391. }
  392. Suite *testSuite_decodeInt16(void)
  393. {
  394. Suite *s = suite_create("decodeInt16_test");
  395. TCase *tc_core = tcase_create("Core");
  396. tcase_add_test(tc_core, decodeInt16_test);
  397. suite_add_tcase(s,tc_core);
  398. return s;
  399. }
  400. Suite*testSuite_encodeInt16(void)
  401. {
  402. Suite *s = suite_create("encodeInt16_test");
  403. TCase *tc_core = tcase_create("Core");
  404. tcase_add_test(tc_core, encodeInt16_test);
  405. suite_add_tcase(s,tc_core);
  406. return s;
  407. }
  408. Suite *testSuite_decodeUInt16(void)
  409. {
  410. Suite *s = suite_create("decodeUInt16_test");
  411. TCase *tc_core = tcase_create("Core");
  412. tcase_add_test(tc_core, decodeUInt16_test);
  413. suite_add_tcase(s,tc_core);
  414. return s;
  415. }
  416. Suite*testSuite_encodeUInt16(void)
  417. {
  418. Suite *s = suite_create("encodeUInt16_test");
  419. TCase *tc_core = tcase_create("Core");
  420. tcase_add_test(tc_core, encodeUInt16_test);
  421. suite_add_tcase(s,tc_core);
  422. return s;
  423. }
  424. Suite*testSuite_decodeUInt32(void)
  425. {
  426. Suite *s = suite_create("decodeUInt32_test");
  427. TCase *tc_core = tcase_create("Core");
  428. tcase_add_test(tc_core, decodeUInt32_test);
  429. suite_add_tcase(s,tc_core);
  430. return s;
  431. }
  432. Suite*testSuite_encodeUInt32(void)
  433. {
  434. Suite *s = suite_create("encodeUInt32_test");
  435. TCase *tc_core = tcase_create("Core");
  436. tcase_add_test(tc_core, encodeUInt32_test);
  437. suite_add_tcase(s,tc_core);
  438. return s;
  439. }
  440. Suite*testSuite_decodeInt32(void)
  441. {
  442. Suite *s = suite_create("decodeInt32_test");
  443. TCase *tc_core = tcase_create("Core");
  444. tcase_add_test(tc_core, decodeInt32_test);
  445. suite_add_tcase(s,tc_core);
  446. return s;
  447. }
  448. Suite*testSuite_encodeInt32(void)
  449. {
  450. Suite *s = suite_create("encodeInt32_test");
  451. TCase *tc_core = tcase_create("Core");
  452. tcase_add_test(tc_core, encodeInt32_test);
  453. suite_add_tcase(s,tc_core);
  454. return s;
  455. }
  456. Suite*testSuite_decodeUInt64(void)
  457. {
  458. Suite *s = suite_create("decodeUInt64_test");
  459. TCase *tc_core = tcase_create("Core");
  460. tcase_add_test(tc_core, decodeUInt64_test);
  461. suite_add_tcase(s,tc_core);
  462. return s;
  463. }
  464. Suite*testSuite_encodeUInt64(void)
  465. {
  466. Suite *s = suite_create("encodeUInt64_test");
  467. TCase *tc_core = tcase_create("Core");
  468. tcase_add_test(tc_core, encodeUInt64_test);
  469. suite_add_tcase(s,tc_core);
  470. return s;
  471. }
  472. Suite*testSuite_decodeInt64(void)
  473. {
  474. Suite *s = suite_create("decodeInt64_test");
  475. TCase *tc_core = tcase_create("Core");
  476. tcase_add_test(tc_core, decodeInt64_test);
  477. suite_add_tcase(s,tc_core);
  478. return s;
  479. }
  480. Suite*testSuite_encodeInt64(void)
  481. {
  482. Suite *s = suite_create("encodeInt64_test");
  483. TCase *tc_core = tcase_create("Core");
  484. tcase_add_test(tc_core, encodeInt64_test);
  485. suite_add_tcase(s,tc_core);
  486. return s;
  487. }
  488. Suite *testSuite_encodeFloat(void)
  489. {
  490. Suite *s = suite_create("encodeFloat_test");
  491. TCase *tc_core = tcase_create("Core");
  492. tcase_add_test(tc_core, encodeFloat_test);
  493. suite_add_tcase(s,tc_core);
  494. return s;
  495. }
  496. Suite *testSuite_decodeFloat(void)
  497. {
  498. Suite *s = suite_create("decodeFloat_test");
  499. TCase *tc_core = tcase_create("Core");
  500. tcase_add_test(tc_core, decodeFloat_test);
  501. suite_add_tcase(s,tc_core);
  502. return s;
  503. }
  504. Suite *testSuite_encodeDouble(void)
  505. {
  506. Suite *s = suite_create("encodeDouble_test");
  507. TCase *tc_core = tcase_create("Core");
  508. tcase_add_test(tc_core, encodeDouble_test);
  509. suite_add_tcase(s,tc_core);
  510. return s;
  511. }
  512. Suite *testSuite_decodeDouble(void)
  513. {
  514. Suite *s = suite_create("decodeDouble_test");
  515. TCase *tc_core = tcase_create("Core");
  516. tcase_add_test(tc_core, decodeDouble_test);
  517. suite_add_tcase(s,tc_core);
  518. return s;
  519. }
  520. Suite * testSuite_encodeUAString(void)
  521. {
  522. Suite *s = suite_create("encodeUAString_test");
  523. TCase *tc_core = tcase_create("Core");
  524. tcase_add_test(tc_core, encodeUAString_test);
  525. suite_add_tcase(s,tc_core);
  526. return s;
  527. }
  528. Suite * testSuite_decodeUAString(void)
  529. {
  530. Suite *s = suite_create("decodeUAString_test");
  531. TCase *tc_core = tcase_create("Core");
  532. tcase_add_test(tc_core, decodeUAString_test);
  533. suite_add_tcase(s,tc_core);
  534. return s;
  535. }
  536. /*
  537. Suite* TL_<TESTSUITENAME>(void)
  538. {
  539. Suite *s = suite_create("<TESTSUITENAME>");
  540. TCase *tc_core = tcase_create("Core");
  541. tcase_add_test(tc_core,<TEST_NAME>);
  542. suite_add_tcase(s,tc_core);
  543. return s;
  544. }
  545. */
  546. Suite* testSuite_diagnosticInfo_calcSize()
  547. {
  548. Suite *s = suite_create("diagnosticInfo_calcSize");
  549. TCase *tc_core = tcase_create("Core");
  550. tcase_add_test(tc_core, diagnosticInfo_calcSize_test);
  551. suite_add_tcase(s,tc_core);
  552. return s;
  553. }
  554. Suite* testSuite_extensionObject_calcSize()
  555. {
  556. Suite *s = suite_create("extensionObject_calcSize");
  557. TCase *tc_core = tcase_create("Core");
  558. tcase_add_test(tc_core, extensionObject_calcSize_test);
  559. suite_add_tcase(s,tc_core);
  560. return s;
  561. }
  562. Suite* testSuite_responseHeader_calcSize()
  563. {
  564. Suite *s = suite_create("responseHeader_calcSize");
  565. TCase *tc_core = tcase_create("Core");
  566. tcase_add_test(tc_core, responseHeader_calcSize_test);
  567. suite_add_tcase(s,tc_core);
  568. return s;
  569. }
  570. int main (void)
  571. {
  572. int number_failed = 0;
  573. Suite *s = testSuite_getPacketType();
  574. SRunner *sr = srunner_create(s);
  575. srunner_run_all(sr,CK_NORMAL);
  576. number_failed = srunner_ntests_failed(sr);
  577. srunner_free(sr);
  578. s = testSuite_decodeInt16();
  579. sr = srunner_create(s);
  580. srunner_run_all(sr,CK_NORMAL);
  581. number_failed += srunner_ntests_failed(sr);
  582. srunner_free(sr);
  583. s = testSuite_encodeInt16();
  584. sr = srunner_create(s);
  585. srunner_run_all(sr,CK_NORMAL);
  586. number_failed += srunner_ntests_failed(sr);
  587. srunner_free(sr);
  588. s = testSuite_decodeUInt16();
  589. sr = srunner_create(s);
  590. srunner_run_all(sr,CK_NORMAL);
  591. number_failed += srunner_ntests_failed(sr);
  592. srunner_free(sr);
  593. s = testSuite_encodeUInt16();
  594. sr = srunner_create(s);
  595. srunner_run_all(sr,CK_NORMAL);
  596. number_failed += srunner_ntests_failed(sr);
  597. srunner_free(sr);
  598. s = testSuite_decodeUInt32();
  599. sr = srunner_create(s);
  600. srunner_run_all(sr,CK_NORMAL);
  601. number_failed += srunner_ntests_failed(sr);
  602. srunner_free(sr);
  603. s = testSuite_encodeUInt32();
  604. sr = srunner_create(s);
  605. srunner_run_all(sr,CK_NORMAL);
  606. number_failed += srunner_ntests_failed(sr);
  607. srunner_free(sr);
  608. s = testSuite_decodeInt32();
  609. sr = srunner_create(s);
  610. srunner_run_all(sr,CK_NORMAL);
  611. number_failed += srunner_ntests_failed(sr);
  612. srunner_free(sr);
  613. s = testSuite_encodeInt32();
  614. sr = srunner_create(s);
  615. srunner_run_all(sr,CK_NORMAL);
  616. number_failed += srunner_ntests_failed(sr);
  617. srunner_free(sr);
  618. s = testSuite_decodeUInt64();
  619. sr = srunner_create(s);
  620. srunner_run_all(sr,CK_NORMAL);
  621. number_failed += srunner_ntests_failed(sr);
  622. srunner_free(sr);
  623. s = testSuite_encodeUInt64();
  624. sr = srunner_create(s);
  625. srunner_run_all(sr,CK_NORMAL);
  626. number_failed += srunner_ntests_failed(sr);
  627. srunner_free(sr);
  628. s = testSuite_decodeInt64();
  629. sr = srunner_create(s);
  630. srunner_run_all(sr,CK_NORMAL);
  631. number_failed += srunner_ntests_failed(sr);
  632. srunner_free(sr);
  633. s = testSuite_encodeInt64();
  634. sr = srunner_create(s);
  635. srunner_run_all(sr,CK_NORMAL);
  636. number_failed += srunner_ntests_failed(sr);
  637. srunner_free(sr);
  638. s = testSuite_encodeFloat();
  639. sr = srunner_create(s);
  640. srunner_run_all(sr,CK_NORMAL);
  641. number_failed += srunner_ntests_failed(sr);
  642. srunner_free(sr);
  643. s = testSuite_encodeDouble();
  644. sr = srunner_create(s);
  645. srunner_run_all(sr,CK_NORMAL);
  646. number_failed += srunner_ntests_failed(sr);
  647. srunner_free(sr);
  648. s = testSuite_encodeByte();
  649. sr = srunner_create(s);
  650. srunner_run_all(sr,CK_NORMAL);
  651. number_failed += srunner_ntests_failed(sr);
  652. srunner_free(sr);
  653. s = testSuite_encodeUAString();
  654. sr = srunner_create(s);
  655. srunner_run_all(sr,CK_NORMAL);
  656. number_failed += srunner_ntests_failed(sr);
  657. srunner_free(sr);
  658. s = testSuite_decodeUAString();
  659. sr = srunner_create(s);
  660. srunner_run_all(sr,CK_NORMAL);
  661. number_failed += srunner_ntests_failed(sr);
  662. srunner_free(sr);
  663. s = testSuite_diagnosticInfo_calcSize();
  664. sr = srunner_create(s);
  665. srunner_run_all(sr,CK_NORMAL);
  666. number_failed += srunner_ntests_failed(sr);
  667. srunner_free(sr);
  668. s = testSuite_extensionObject_calcSize();
  669. sr = srunner_create(s);
  670. srunner_run_all(sr,CK_NORMAL);
  671. number_failed += srunner_ntests_failed(sr);
  672. srunner_free(sr);
  673. s = testSuite_responseHeader_calcSize();
  674. sr = srunner_create(s);
  675. srunner_run_all(sr,CK_NORMAL);
  676. number_failed += srunner_ntests_failed(sr);
  677. srunner_free(sr);
  678. /* <TESTSUITE_TEMPLATE>
  679. s = <TESTSUITENAME>;
  680. sr = srunner_create(s);
  681. srunner_run_all(sr,CK_NORMAL);
  682. number_failed += srunner_ntests_failed(sr);
  683. srunner_free(sr);
  684. */
  685. return (number_failed == 0) ? EXIT_SUCCESS : EXIT_FAILURE;
  686. }