unit_test.c 40 KB

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  1. /* Copyright (c) 2013-2014 the Civetweb developers
  2. * Copyright (c) 2004-2013 Sergey Lyubka
  3. *
  4. * Permission is hereby granted, free of charge, to any person obtaining a copy
  5. * of this software and associated documentation files (the "Software"), to deal
  6. * in the Software without restriction, including without limitation the rights
  7. * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  8. * copies of the Software, and to permit persons to whom the Software is
  9. * furnished to do so, subject to the following conditions:
  10. *
  11. * The above copyright notice and this permission notice shall be included in
  12. * all copies or substantial portions of the Software.
  13. *
  14. * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  15. * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  16. * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  17. * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  18. * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  19. * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
  20. * THE SOFTWARE.
  21. */
  22. /* Unit test for the civetweb web server. Tests embedded API.
  23. */
  24. #define USE_WEBSOCKET
  25. #ifndef _WIN32
  26. #define __cdecl
  27. #define USE_IPV6
  28. #endif
  29. /* USE_* definitions must be made before #include "civetweb.c" !
  30. * We include the source file so that our object file will have visibility to
  31. * all the static functions.
  32. */
  33. #include "civetweb.c"
  34. static int s_total_tests = 0;
  35. static int s_failed_tests = 0;
  36. #define FAIL(str, line) do { \
  37. printf("Fail on line %d: [%s]\n", line, str); \
  38. s_failed_tests++; \
  39. } while (0)
  40. #define ASSERT(expr) do { \
  41. s_total_tests++; \
  42. if (!(expr)) FAIL(#expr, __LINE__); \
  43. } while (0)
  44. #define HTTP_PORT "8080"
  45. #ifdef NO_SSL
  46. #define HTTPS_PORT HTTP_PORT
  47. #define LISTENING_ADDR "127.0.0.1:" HTTP_PORT
  48. #else
  49. #define HTTP_REDIRECT_PORT "8088"
  50. #define HTTPS_PORT "8443"
  51. #define LISTENING_ADDR "127.0.0.1:" HTTP_PORT ",127.0.0.1:" HTTP_REDIRECT_PORT "r" ",127.0.0.1:" HTTPS_PORT "s"
  52. #endif
  53. static void test_parse_http_message() {
  54. struct mg_request_info ri;
  55. char req1[] = "GET / HTTP/1.1\r\n\r\n";
  56. char req2[] = "BLAH / HTTP/1.1\r\n\r\n";
  57. char req3[] = "GET / HTTP/1.1\r\nBah\r\n";
  58. char req4[] = "GET / HTTP/1.1\r\nA: foo bar\r\nB: bar\r\nbaz\r\n\r\n";
  59. char req5[] = "GET / HTTP/1.1\r\n\r\n";
  60. char req6[] = "G";
  61. char req7[] = " blah ";
  62. char req8[] = " HTTP/1.1 200 OK \n\n";
  63. char req9[] = "HTTP/1.1 200 OK\r\nConnection: close\r\n\r\n";
  64. ASSERT(parse_http_message(req9, sizeof(req9), &ri) == sizeof(req9) - 1);
  65. ASSERT(ri.num_headers == 1);
  66. ASSERT(parse_http_message(req1, sizeof(req1), &ri) == sizeof(req1) - 1);
  67. ASSERT(strcmp(ri.http_version, "1.1") == 0);
  68. ASSERT(ri.num_headers == 0);
  69. ASSERT(parse_http_message(req2, sizeof(req2), &ri) == -1);
  70. ASSERT(parse_http_message(req3, sizeof(req3), &ri) == 0);
  71. ASSERT(parse_http_message(req6, sizeof(req6), &ri) == 0);
  72. ASSERT(parse_http_message(req7, sizeof(req7), &ri) == 0);
  73. ASSERT(parse_http_message("", 0, &ri) == 0);
  74. ASSERT(parse_http_message(req8, sizeof(req8), &ri) == sizeof(req8) - 1);
  75. /* TODO(lsm): Fix this. Header value may span multiple lines. */
  76. ASSERT(parse_http_message(req4, sizeof(req4), &ri) == sizeof(req4) - 1);
  77. ASSERT(strcmp(ri.http_version, "1.1") == 0);
  78. ASSERT(ri.num_headers == 3);
  79. ASSERT(strcmp(ri.http_headers[0].name, "A") == 0);
  80. ASSERT(strcmp(ri.http_headers[0].value, "foo bar") == 0);
  81. ASSERT(strcmp(ri.http_headers[1].name, "B") == 0);
  82. ASSERT(strcmp(ri.http_headers[1].value, "bar") == 0);
  83. ASSERT(strcmp(ri.http_headers[2].name, "baz\r\n\r") == 0);
  84. ASSERT(strcmp(ri.http_headers[2].value, "") == 0);
  85. ASSERT(parse_http_message(req5, sizeof(req5), &ri) == sizeof(req5) - 1);
  86. ASSERT(strcmp(ri.request_method, "GET") == 0);
  87. ASSERT(strcmp(ri.http_version, "1.1") == 0);
  88. }
  89. static void test_should_keep_alive(void) {
  90. struct mg_connection conn;
  91. struct mg_context ctx;
  92. char req1[] = "GET / HTTP/1.1\r\n\r\n";
  93. char req2[] = "GET / HTTP/1.0\r\n\r\n";
  94. char req3[] = "GET / HTTP/1.1\r\nConnection: close\r\n\r\n";
  95. char req4[] = "GET / HTTP/1.1\r\nConnection: keep-alive\r\n\r\n";
  96. memset(&conn, 0, sizeof(conn));
  97. conn.ctx = &ctx;
  98. ASSERT(parse_http_message(req1, sizeof(req1), &conn.request_info) ==
  99. sizeof(req1) - 1);
  100. ctx.config[ENABLE_KEEP_ALIVE] = "no";
  101. ASSERT(should_keep_alive(&conn) == 0);
  102. ctx.config[ENABLE_KEEP_ALIVE] = "yes";
  103. ASSERT(should_keep_alive(&conn) == 1);
  104. conn.must_close = 1;
  105. ASSERT(should_keep_alive(&conn) == 0);
  106. conn.must_close = 0;
  107. parse_http_message(req2, sizeof(req2), &conn.request_info);
  108. ASSERT(should_keep_alive(&conn) == 0);
  109. parse_http_message(req3, sizeof(req3), &conn.request_info);
  110. ASSERT(should_keep_alive(&conn) == 0);
  111. parse_http_message(req4, sizeof(req4), &conn.request_info);
  112. ASSERT(should_keep_alive(&conn) == 1);
  113. conn.status_code = 401;
  114. ASSERT(should_keep_alive(&conn) == 0);
  115. conn.status_code = 200;
  116. conn.must_close = 1;
  117. ASSERT(should_keep_alive(&conn) == 0);
  118. }
  119. static void test_match_prefix(void) {
  120. ASSERT(match_prefix("/api", 4, "/api") == 4);
  121. ASSERT(match_prefix("/a/", 3, "/a/b/c") == 3);
  122. ASSERT(match_prefix("/a/", 3, "/ab/c") == -1);
  123. ASSERT(match_prefix("/*/", 3, "/ab/c") == 4);
  124. ASSERT(match_prefix("**", 2, "/a/b/c") == 6);
  125. ASSERT(match_prefix("/*", 2, "/a/b/c") == 2);
  126. ASSERT(match_prefix("*/*", 3, "/a/b/c") == 2);
  127. ASSERT(match_prefix("**/", 3, "/a/b/c") == 5);
  128. ASSERT(match_prefix("**.foo|**.bar", 13, "a.bar") == 5);
  129. ASSERT(match_prefix("a|b|cd", 6, "cdef") == 2);
  130. ASSERT(match_prefix("a|b|c?", 6, "cdef") == 2);
  131. ASSERT(match_prefix("a|?|cd", 6, "cdef") == 1);
  132. ASSERT(match_prefix("/a/**.cgi", 9, "/foo/bar/x.cgi") == -1);
  133. ASSERT(match_prefix("/a/**.cgi", 9, "/a/bar/x.cgi") == 12);
  134. ASSERT(match_prefix("**/", 3, "/a/b/c") == 5);
  135. ASSERT(match_prefix("**/$", 4, "/a/b/c") == -1);
  136. ASSERT(match_prefix("**/$", 4, "/a/b/") == 5);
  137. ASSERT(match_prefix("$", 1, "") == 0);
  138. ASSERT(match_prefix("$", 1, "x") == -1);
  139. ASSERT(match_prefix("*$", 2, "x") == 1);
  140. ASSERT(match_prefix("/$", 2, "/") == 1);
  141. ASSERT(match_prefix("**/$", 4, "/a/b/c") == -1);
  142. ASSERT(match_prefix("**/$", 4, "/a/b/") == 5);
  143. ASSERT(match_prefix("*", 1, "/hello/") == 0);
  144. ASSERT(match_prefix("**.a$|**.b$", 11, "/a/b.b/") == -1);
  145. ASSERT(match_prefix("**.a$|**.b$", 11, "/a/b.b") == 6);
  146. ASSERT(match_prefix("**.a$|**.b$", 11, "/a/B.A") == 6);
  147. ASSERT(match_prefix("**o$", 4, "HELLO") == 5);
  148. }
  149. static void test_remove_double_dots() {
  150. struct { char before[20], after[20]; } data[] = {
  151. {"////a", "/a"},
  152. {"/.....", "/."},
  153. {"/......", "/"},
  154. {"...", "..."},
  155. {"/...///", "/./"},
  156. {"/a...///", "/a.../"},
  157. {"/.x", "/.x"},
  158. {"/\\", "/"},
  159. {"/a\\", "/a\\"},
  160. {"/a\\\\...", "/a\\."},
  161. };
  162. size_t i;
  163. for (i = 0; i < ARRAY_SIZE(data); i++) {
  164. remove_double_dots_and_double_slashes(data[i].before);
  165. ASSERT(strcmp(data[i].before, data[i].after) == 0);
  166. }
  167. }
  168. static char *read_file(const char *path, int *size) {
  169. FILE *fp;
  170. struct stat st;
  171. char *data = NULL;
  172. if ((fp = fopen(path, "rb")) != NULL && !fstat(fileno(fp), &st)) {
  173. *size = (int) st.st_size;
  174. ASSERT((data = mg_malloc(*size)) != NULL);
  175. ASSERT(fread(data, 1, *size, fp) == (size_t) *size);
  176. fclose(fp);
  177. }
  178. return data;
  179. }
  180. static long fetch_data_size = 1024*1024;
  181. static char *fetch_data;
  182. static const char *inmemory_file_data = "hi there";
  183. static const char *upload_filename = "upload_test.txt";
  184. static const char *upload_filename2 = "upload_test2.txt";
  185. static const char *upload_ok_message = "upload successful";
  186. static const char *open_file_cb(const struct mg_connection *conn,
  187. const char *path, size_t *size) {
  188. (void) conn;
  189. if (!strcmp(path, "./blah")) {
  190. *size = strlen(inmemory_file_data);
  191. return inmemory_file_data;
  192. }
  193. return NULL;
  194. }
  195. static void upload_cb(struct mg_connection *conn, const char *path) {
  196. const struct mg_request_info *ri = mg_get_request_info(conn);
  197. char *p1, *p2;
  198. int len1, len2;
  199. if (atoi(ri->query_string) == 1) {
  200. ASSERT(!strcmp(path, "./upload_test.txt"));
  201. ASSERT((p1 = read_file("src/civetweb.c", &len1)) != NULL);
  202. ASSERT((p2 = read_file(path, &len2)) != NULL);
  203. ASSERT(len1 == len2);
  204. ASSERT(memcmp(p1, p2, len1) == 0);
  205. mg_free(p1), mg_free(p2);
  206. remove(upload_filename);
  207. } else if (atoi(ri->query_string) == 2) {
  208. if (!strcmp(path, "./upload_test.txt")) {
  209. ASSERT((p1 = read_file("include/civetweb.h", &len1)) != NULL);
  210. ASSERT((p2 = read_file(path, &len2)) != NULL);
  211. ASSERT(len1 == len2);
  212. ASSERT(memcmp(p1, p2, len1) == 0);
  213. mg_free(p1), mg_free(p2);
  214. remove(upload_filename);
  215. } else if (!strcmp(path, "./upload_test2.txt")) {
  216. ASSERT((p1 = read_file("README.md", &len1)) != NULL);
  217. ASSERT((p2 = read_file(path, &len2)) != NULL);
  218. ASSERT(len1 == len2);
  219. ASSERT(memcmp(p1, p2, len1) == 0);
  220. mg_free(p1), mg_free(p2);
  221. remove(upload_filename);
  222. } else {
  223. ASSERT(0);
  224. }
  225. } else {
  226. ASSERT(0);
  227. }
  228. mg_printf(conn, "HTTP/1.0 200 OK\r\nContent-Length: %d\r\n\r\n%s",
  229. (int) strlen(upload_ok_message), upload_ok_message);
  230. }
  231. static int begin_request_handler_cb(struct mg_connection *conn) {
  232. const struct mg_request_info *ri = mg_get_request_info(conn);
  233. int req_len = (int)(ri->content_length);
  234. const char * s_req_len = mg_get_header(conn, "Content-Length");
  235. char *data;
  236. long to_write, write_now;
  237. int bytes_read, bytes_written;
  238. ASSERT( ((req_len == -1) && (s_req_len==NULL)) || ((s_req_len != NULL) && (req_len = atol(s_req_len))) );
  239. if (!strncmp(ri->uri, "/data/", 6)) {
  240. if (!strcmp(ri->uri+6, "all")) {
  241. to_write = fetch_data_size;
  242. } else {
  243. to_write = atol(ri->uri+6);
  244. }
  245. mg_printf(conn, "HTTP/1.1 200 OK\r\n"
  246. "Connection: close\r\n"
  247. "Content-Length: %li\r\n"
  248. "Content-Type: text/plain\r\n\r\n",
  249. to_write);
  250. while (to_write>0) {
  251. write_now = to_write > fetch_data_size ? fetch_data_size : to_write;
  252. bytes_written = mg_write(conn, fetch_data, write_now);
  253. ASSERT(bytes_written == write_now);
  254. to_write -= bytes_written;
  255. }
  256. close_connection(conn);
  257. return 1;
  258. }
  259. if (!strcmp(ri->uri, "/content_length")) {
  260. if (req_len>0) {
  261. data = mg_malloc(req_len);
  262. assert(data != NULL);
  263. bytes_read = mg_read(conn, data, req_len);
  264. ASSERT(bytes_read == req_len);
  265. mg_printf(conn, "HTTP/1.1 200 OK\r\n"
  266. "Connection: close\r\n"
  267. "Content-Length: %d\r\n" /* The official definition */
  268. "Content-Type: text/plain\r\n\r\n",
  269. bytes_read);
  270. mg_write(conn, data, bytes_read);
  271. mg_free(data);
  272. } else {
  273. data = mg_malloc(1024);
  274. assert(data != NULL);
  275. bytes_read = mg_read(conn, data, 1024);
  276. mg_printf(conn, "HTTP/1.1 200 OK\r\n"
  277. "Connection: close\r\n"
  278. "Content-Type: text/plain\r\n\r\n"
  279. );
  280. mg_write(conn, data, bytes_read);
  281. mg_free(data);
  282. }
  283. close_connection(conn);
  284. return 1;
  285. }
  286. if (!strcmp(ri->uri, "/upload")) {
  287. ASSERT(ri->query_string != NULL);
  288. ASSERT(mg_upload(conn, ".") == atoi(ri->query_string));
  289. }
  290. return 0;
  291. }
  292. static int log_message_cb(const struct mg_connection *conn, const char *msg) {
  293. (void) conn;
  294. printf("%s\n", msg);
  295. return 0;
  296. }
  297. int (*begin_request)(struct mg_connection *);
  298. void (*end_request)(const struct mg_connection *, int reply_status_code);
  299. int (*log_message)(const struct mg_connection *, const char *message);
  300. int (*init_ssl)(void *ssl_context, void *user_data);
  301. int (*websocket_connect)(const struct mg_connection *);
  302. void (*websocket_ready)(struct mg_connection *);
  303. int (*websocket_data)(struct mg_connection *, int bits,
  304. char *data, size_t data_len);
  305. void (*connection_close)(struct mg_connection *);
  306. const char * (*open_file)(const struct mg_connection *,
  307. const char *path, size_t *data_len);
  308. void (*init_lua)(struct mg_connection *, void *lua_context);
  309. void (*upload)(struct mg_connection *, const char *file_name);
  310. int (*http_error)(struct mg_connection *, int status);
  311. static struct mg_callbacks CALLBACKS = {0};
  312. static void init_CALLBACKS() {
  313. memset(&CALLBACKS, 0, sizeof(CALLBACKS));
  314. CALLBACKS.begin_request = begin_request_handler_cb;
  315. CALLBACKS.log_message = log_message_cb;
  316. CALLBACKS.open_file = open_file_cb;
  317. CALLBACKS.upload = upload_cb;
  318. };
  319. static const char *OPTIONS[] = {
  320. "document_root", ".",
  321. "listening_ports", LISTENING_ADDR,
  322. "enable_keep_alive", "yes",
  323. #ifndef NO_SSL
  324. "ssl_certificate", "../resources/ssl_cert.pem",
  325. #endif
  326. NULL,
  327. };
  328. static char *read_conn(struct mg_connection *conn, int *size) {
  329. char buf[100], *data = NULL;
  330. int len;
  331. *size = 0;
  332. while ((len = mg_read(conn, buf, sizeof(buf))) > 0) {
  333. *size += len;
  334. ASSERT((data = mg_realloc(data, *size)) != NULL);
  335. memcpy(data + *size - len, buf, len);
  336. }
  337. return data;
  338. }
  339. static void test_mg_download(int use_ssl) {
  340. const char *test_data = "123456789A123456789B";
  341. char *p1, *p2, ebuf[100];
  342. const char *h;
  343. int i, len1, len2, port;
  344. struct mg_connection *conn;
  345. struct mg_context *ctx;
  346. struct mg_request_info *ri;
  347. if (use_ssl) port = atoi(HTTPS_PORT); else port = atoi(HTTP_PORT);
  348. ASSERT((ctx = mg_start(&CALLBACKS, NULL, OPTIONS)) != NULL);
  349. ASSERT(mg_download(NULL, port, use_ssl, ebuf, sizeof(ebuf), "%s", "") == NULL);
  350. ASSERT(mg_download("localhost", 0, use_ssl, ebuf, sizeof(ebuf), "%s", "") == NULL);
  351. ASSERT(mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf), "%s", "") == NULL);
  352. /* Fetch nonexistent file, should see 404 */
  353. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf), "%s",
  354. "GET /gimbec HTTP/1.0\r\n\r\n")) != NULL);
  355. ASSERT(strcmp(conn->request_info.uri, "404") == 0);
  356. mg_close_connection(conn);
  357. if (use_ssl) {
  358. ASSERT((conn = mg_download("google.com", 443, 1, ebuf, sizeof(ebuf), "%s",
  359. "GET / HTTP/1.0\r\n\r\n")) != NULL);
  360. mg_close_connection(conn);
  361. } else {
  362. ASSERT((conn = mg_download("google.com", 80, 0, ebuf, sizeof(ebuf), "%s",
  363. "GET / HTTP/1.0\r\n\r\n")) != NULL);
  364. mg_close_connection(conn);
  365. }
  366. /* Fetch unit_test.c, should succeed */
  367. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf), "%s",
  368. "GET /unit_test.c HTTP/1.0\r\n\r\n")) != NULL);
  369. ASSERT(&conn->request_info == mg_get_request_info(conn));
  370. ASSERT(!strcmp(conn->request_info.uri, "200"));
  371. ASSERT((p1 = read_conn(conn, &len1)) != NULL);
  372. ASSERT((p2 = read_file("unit_test.c", &len2)) != NULL);
  373. ASSERT(len1 == len2);
  374. ASSERT(memcmp(p1, p2, len1) == 0);
  375. mg_free(p1), mg_free(p2);
  376. mg_close_connection(conn);
  377. /* Fetch in-memory file, should succeed. */
  378. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf), "%s",
  379. "GET /blah HTTP/1.1\r\n\r\n")) != NULL);
  380. ASSERT((p1 = read_conn(conn, &len1)) != NULL);
  381. ASSERT(len1 == (int) strlen(inmemory_file_data));
  382. ASSERT(memcmp(p1, inmemory_file_data, len1) == 0);
  383. mg_free(p1);
  384. mg_close_connection(conn);
  385. /* Fetch in-memory data with no Content-Length, should succeed. */
  386. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf), "%s",
  387. "GET /data/all HTTP/1.1\r\n\r\n")) != NULL);
  388. ASSERT(conn->request_info.content_length == fetch_data_size);
  389. ASSERT((p1 = read_conn(conn, &len1)) != NULL);
  390. ASSERT(len1 == (int) fetch_data_size);
  391. ASSERT(memcmp(p1, fetch_data, len1) == 0);
  392. mg_free(p1);
  393. mg_close_connection(conn);
  394. /* Fetch in-memory data with no Content-Length, should succeed. */
  395. for (i=0; i<=1024*1024*8; i += (i<2 ? 1 : i)) {
  396. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf),
  397. "GET /data/%i HTTP/1.1\r\n\r\n", i)) != NULL);
  398. ASSERT(conn->request_info.content_length == i);
  399. len1 = -1;
  400. p1 = read_conn(conn, &len1);
  401. if (i==0) {
  402. ASSERT(len1 == 0);
  403. ASSERT(p1 == 0);
  404. } else if (i<=fetch_data_size) {
  405. ASSERT(p1 != NULL);
  406. ASSERT(len1 == i);
  407. ASSERT(memcmp(p1, fetch_data, len1) == 0);
  408. } else {
  409. ASSERT(p1 != NULL);
  410. ASSERT(len1 == i);
  411. ASSERT(memcmp(p1, fetch_data, fetch_data_size) == 0);
  412. }
  413. mg_free(p1);
  414. mg_close_connection(conn);
  415. }
  416. /* Fetch data with Content-Length, should succeed and return the defined length. */
  417. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf),
  418. "POST /content_length HTTP/1.1\r\nContent-Length: %u\r\n\r\n%s",
  419. strlen(test_data), test_data)) != NULL);
  420. h = mg_get_header(conn, "Content-Length");
  421. ASSERT((h != NULL) && (atoi(h)==strlen(test_data)));
  422. ASSERT((p1 = read_conn(conn, &len1)) != NULL);
  423. ASSERT(len1 == (int) strlen(test_data));
  424. ASSERT(conn->request_info.content_length == strlen(test_data));
  425. ASSERT(memcmp(p1, test_data, len1) == 0);
  426. ASSERT(strcmp(conn->request_info.request_method, "HTTP/1.1") == 0);
  427. ASSERT(strcmp(conn->request_info.uri, "200") == 0);
  428. ASSERT(strcmp(conn->request_info.http_version, "OK") == 0);
  429. mg_free(p1);
  430. mg_close_connection(conn);
  431. /* Fetch data without Content-Length, should succeed. It has no content-length header field,
  432. but still returns the correct amount of data. It is much slower, since it needs to wait
  433. for the connection shutdown. */
  434. ASSERT((conn = mg_download("localhost", port, use_ssl, ebuf, sizeof(ebuf),
  435. "POST /content_length HTTP/1.1\r\n\r\n%s", test_data)) != NULL);
  436. h = mg_get_header(conn, "Content-Length");
  437. ASSERT(h == NULL);
  438. ASSERT(conn->request_info.content_length == -1);
  439. ASSERT((p1 = read_conn(conn, &len1)) != NULL);
  440. ASSERT(len1 == (int) strlen(test_data));
  441. ASSERT(memcmp(p1, test_data, len1) == 0);
  442. mg_free(p1);
  443. mg_close_connection(conn);
  444. /* Test non existent */
  445. ASSERT((conn = mg_download("localhost", port, use_ssl,
  446. ebuf, sizeof(ebuf), "%s",
  447. "GET /non_exist HTTP/1.1\r\n\r\n")) != NULL);
  448. ASSERT(strcmp(conn->request_info.request_method, "HTTP/1.1") == 0);
  449. ASSERT(strcmp(conn->request_info.uri, "404") == 0);
  450. ASSERT(strcmp(conn->request_info.http_version, "Not Found") == 0);
  451. mg_close_connection(conn);
  452. if (use_ssl) {
  453. /* Test SSL redirect */
  454. ASSERT((conn = mg_download("localhost", atoi(HTTP_REDIRECT_PORT), 0,
  455. ebuf, sizeof(ebuf), "%s",
  456. "GET /data/4711 HTTP/1.1\r\n\r\n")) != NULL);
  457. ASSERT(strcmp(conn->request_info.uri, "302") == 0);
  458. h = mg_get_header(conn, "Location");
  459. ASSERT(h != NULL);
  460. ASSERT(strcmp(h, "https://127.0.0.1:" HTTPS_PORT "/data/4711") == 0);
  461. mg_close_connection(conn);
  462. }
  463. /* Test new API */
  464. ebuf[0] = 1;
  465. conn = mg_connect_client("localhost", port, use_ssl, ebuf, sizeof(ebuf));
  466. ASSERT(conn != NULL);
  467. ASSERT(ebuf[0] == 0);
  468. ri = mg_get_request_info(conn);
  469. ASSERT(ri->content_length == 0);
  470. i = mg_get_response(conn, ebuf, sizeof(ebuf), 1000);
  471. ASSERT(ebuf[0] != 0);
  472. ri = mg_get_request_info(conn);
  473. ASSERT(ri->content_length == -1);
  474. mg_printf(conn, "GET /index.html HTTP/1.1\r\n");
  475. mg_printf(conn, "Host: www.example.com\r\n");
  476. mg_printf(conn, "\r\n");
  477. i = mg_get_response(conn, ebuf, sizeof(ebuf), 1000);
  478. ASSERT(ebuf[0] == 0);
  479. ri = mg_get_request_info(conn);
  480. ASSERT(ri->content_length > 0);
  481. mg_read(conn, ebuf, sizeof(ebuf));
  482. ASSERT(!strncmp(ebuf, "Error 404", 9));
  483. mg_close_connection(conn);
  484. /* Stop the test server */
  485. mg_stop(ctx);
  486. }
  487. static int websocket_data_handler(struct mg_connection *conn, int flags, char *data, size_t data_len)
  488. {
  489. return 1;
  490. }
  491. static void test_mg_websocket_client_connect(int use_ssl) {
  492. struct mg_connection* conn;
  493. char ebuf[100];
  494. int port;
  495. struct mg_context *ctx;
  496. if (use_ssl) port = atoi(HTTPS_PORT); else port = atoi(HTTP_PORT);
  497. ASSERT((ctx = mg_start(&CALLBACKS, NULL, OPTIONS)) != NULL);
  498. /* Try to connect to our own server */
  499. /* Invalid port test */
  500. conn = mg_connect_websocket_client("localhost", 0, use_ssl,
  501. ebuf, sizeof(ebuf),
  502. "/", "http://localhost", websocket_data_handler, NULL, NULL);
  503. ASSERT(conn == NULL);
  504. /* Should succeed, the default civetweb sever should complete the handshake */
  505. conn = mg_connect_websocket_client("localhost", port, use_ssl,
  506. ebuf, sizeof(ebuf),
  507. "/", "http://localhost", websocket_data_handler, NULL, NULL);
  508. ASSERT(conn != NULL);
  509. /* Try an external server test */
  510. port = 80;
  511. if (use_ssl) { port = 443; }
  512. /* Not a websocket server path */
  513. conn = mg_connect_websocket_client("websocket.org", port, use_ssl,
  514. ebuf, sizeof(ebuf),
  515. "/", "http://websocket.org", websocket_data_handler, NULL, NULL);
  516. ASSERT(conn == NULL);
  517. /* Invalid port test */
  518. conn = mg_connect_websocket_client("echo.websocket.org", 0, use_ssl,
  519. ebuf, sizeof(ebuf),
  520. "/", "http://websocket.org", websocket_data_handler, NULL, NULL);
  521. ASSERT(conn == NULL);
  522. /* Should succeed, echo.websocket.org echos the data back */
  523. conn = mg_connect_websocket_client("echo.websocket.org", port, use_ssl,
  524. ebuf, sizeof(ebuf),
  525. "/", "http://websocket.org", websocket_data_handler, NULL, NULL);
  526. ASSERT(conn != NULL);
  527. mg_stop(ctx);
  528. }
  529. static int alloc_printf(char **buf, size_t size, char *fmt, ...) {
  530. va_list ap;
  531. int ret = 0;
  532. va_start(ap, fmt);
  533. ret = alloc_vprintf(buf, size, fmt, ap);
  534. va_end(ap);
  535. return ret;
  536. }
  537. static void test_mg_upload(void) {
  538. static const char *boundary = "OOO___MY_BOUNDARY___OOO";
  539. struct mg_context *ctx;
  540. #if 0
  541. struct mg_connection *conn;
  542. char ebuf[100], buf[20], *file2_data;
  543. int file2_len;
  544. #endif
  545. char *file_data, *post_data;
  546. int file_len, post_data_len;
  547. ASSERT((ctx = mg_start(&CALLBACKS, NULL, OPTIONS)) != NULL);
  548. /* Upload one file */
  549. ASSERT((file_data = read_file("unit_test.c", &file_len)) != NULL);
  550. post_data = NULL;
  551. post_data_len = alloc_printf(&post_data, 0,
  552. "--%s\r\n"
  553. "Content-Disposition: form-data; "
  554. "name=\"file\"; "
  555. "filename=\"%s\"\r\n\r\n"
  556. "%.*s\r\n"
  557. "--%s--\r\n",
  558. boundary, upload_filename,
  559. file_len, file_data, boundary);
  560. ASSERT(post_data_len > 0);
  561. #if 0 /* TODO (bel): ... */
  562. ASSERT((conn = mg_download("localhost", atoi(HTTPS_PORT), 1,
  563. ebuf, sizeof(ebuf),
  564. "POST /upload?1 HTTP/1.1\r\n"
  565. "Content-Length: %d\r\n"
  566. "Content-Type: multipart/form-data; "
  567. "boundary=%s\r\n\r\n"
  568. "%.*s", post_data_len, boundary,
  569. post_data_len, post_data)) != NULL);
  570. mg_free(file_data), mg_free(post_data);
  571. ASSERT(mg_read(conn, buf, sizeof(buf)) == (int) strlen(upload_ok_message));
  572. ASSERT(memcmp(buf, upload_ok_message, strlen(upload_ok_message)) == 0);
  573. mg_close_connection(conn);
  574. /* Upload two files */
  575. ASSERT((file_data = read_file("include/civetweb.h", &file_len)) != NULL);
  576. ASSERT((file2_data = read_file("README.md", &file2_len)) != NULL);
  577. post_data = NULL;
  578. post_data_len = alloc_printf(&post_data, 0,
  579. /* First file */
  580. "--%s\r\n"
  581. "Content-Disposition: form-data; "
  582. "name=\"file\"; "
  583. "filename=\"%s\"\r\n\r\n"
  584. "%.*s\r\n"
  585. /* Second file */
  586. "--%s\r\n"
  587. "Content-Disposition: form-data; "
  588. "name=\"file\"; "
  589. "filename=\"%s\"\r\n\r\n"
  590. "%.*s\r\n"
  591. /* Final boundary */
  592. "--%s--\r\n",
  593. boundary, upload_filename,
  594. file_len, file_data,
  595. boundary, upload_filename2,
  596. file2_len, file2_data,
  597. boundary);
  598. ASSERT(post_data_len > 0);
  599. ASSERT((conn = mg_download("localhost", atoi(HTTPS_PORT), 1,
  600. ebuf, sizeof(ebuf),
  601. "POST /upload?2 HTTP/1.1\r\n"
  602. "Content-Length: %d\r\n"
  603. "Content-Type: multipart/form-data; "
  604. "boundary=%s\r\n\r\n"
  605. "%.*s", post_data_len, boundary,
  606. post_data_len, post_data)) != NULL);
  607. mg_free(file_data), mg_free(file2_data), mg_free(post_data);
  608. ASSERT(mg_read(conn, buf, sizeof(buf)) == (int) strlen(upload_ok_message));
  609. ASSERT(memcmp(buf, upload_ok_message, strlen(upload_ok_message)) == 0);
  610. mg_close_connection(conn);
  611. #endif
  612. mg_stop(ctx);
  613. }
  614. static void test_base64_encode(void) {
  615. const char *in[] = {"a", "ab", "abc", "abcd", NULL};
  616. const char *out[] = {"YQ==", "YWI=", "YWJj", "YWJjZA=="};
  617. char buf[100];
  618. int i;
  619. for (i = 0; in[i] != NULL; i++) {
  620. base64_encode((unsigned char *) in[i], strlen(in[i]), buf);
  621. ASSERT(!strcmp(buf, out[i]));
  622. }
  623. }
  624. static void test_mg_get_var(void) {
  625. static const char *post[] = {
  626. "a=1&&b=2&d&=&c=3%20&e=",
  627. "q=&st=2012%2F11%2F13+17%3A05&et=&team_id=",
  628. NULL
  629. };
  630. char buf[20];
  631. ASSERT(mg_get_var(post[0], strlen(post[0]), "a", buf, sizeof(buf)) == 1);
  632. ASSERT(buf[0] == '1' && buf[1] == '\0');
  633. ASSERT(mg_get_var(post[0], strlen(post[0]), "b", buf, sizeof(buf)) == 1);
  634. ASSERT(buf[0] == '2' && buf[1] == '\0');
  635. ASSERT(mg_get_var(post[0], strlen(post[0]), "c", buf, sizeof(buf)) == 2);
  636. ASSERT(buf[0] == '3' && buf[1] == ' ' && buf[2] == '\0');
  637. ASSERT(mg_get_var(post[0], strlen(post[0]), "e", buf, sizeof(buf)) == 0);
  638. ASSERT(buf[0] == '\0');
  639. ASSERT(mg_get_var(post[0], strlen(post[0]), "d", buf, sizeof(buf)) == -1);
  640. ASSERT(mg_get_var(post[0], strlen(post[0]), "c", buf, 2) == -2);
  641. ASSERT(mg_get_var(post[0], strlen(post[0]), "x", NULL, 10) == -2);
  642. ASSERT(mg_get_var(post[0], strlen(post[0]), "x", buf, 0) == -2);
  643. ASSERT(mg_get_var(post[1], strlen(post[1]), "st", buf, 16) == -2);
  644. ASSERT(mg_get_var(post[1], strlen(post[1]), "st", buf, 17) == 16);
  645. }
  646. static void test_set_throttle(void) {
  647. ASSERT(set_throttle(NULL, 0x0a000001, "/") == 0);
  648. ASSERT(set_throttle("10.0.0.0/8=20", 0x0a000001, "/") == 20);
  649. ASSERT(set_throttle("10.0.0.0/8=0.5k", 0x0a000001, "/") == 512);
  650. ASSERT(set_throttle("10.0.0.0/8=17m", 0x0a000001, "/") == 1048576 * 17);
  651. ASSERT(set_throttle("10.0.0.0/8=1x", 0x0a000001, "/") == 0);
  652. ASSERT(set_throttle("10.0.0.0/8=5,0.0.0.0/0=10", 0x0a000001, "/") == 10);
  653. ASSERT(set_throttle("10.0.0.0/8=5,/foo/**=7", 0x0a000001, "/index") == 5);
  654. ASSERT(set_throttle("10.0.0.0/8=5,/foo/**=7", 0x0a000001, "/foo/x") == 7);
  655. ASSERT(set_throttle("10.0.0.0/8=5,/foo/**=7", 0x0b000001, "/foxo/x") == 0);
  656. ASSERT(set_throttle("10.0.0.0/8=5,*=1", 0x0b000001, "/foxo/x") == 1);
  657. }
  658. static void test_next_option(void) {
  659. const char *p, *list = "x/8,/y**=1;2k,z";
  660. struct vec a, b;
  661. int i;
  662. ASSERT(next_option(NULL, &a, &b) == NULL);
  663. for (i = 0, p = list; (p = next_option(p, &a, &b)) != NULL; i++) {
  664. ASSERT(i != 0 || (a.ptr == list && a.len == 3 && b.len == 0));
  665. ASSERT(i != 1 || (a.ptr == list + 4 && a.len == 4 && b.ptr == list + 9 && b.len == 4));
  666. ASSERT(i != 2 || (a.ptr == list + 14 && a.len == 1 && b.len == 0));
  667. }
  668. }
  669. #if defined(USE_LUA)
  670. static void check_lua_expr(lua_State *L, const char *expr, const char *value) {
  671. const char *v, *var_name = "myVar";
  672. char buf[100];
  673. snprintf(buf, sizeof(buf), "%s = %s", var_name, expr);
  674. (void) luaL_dostring(L, buf);
  675. lua_getglobal(L, var_name);
  676. v = lua_tostring(L, -1);
  677. ASSERT((value == NULL && v == NULL) || (value != NULL && v != NULL && !strcmp(value, v)));
  678. }
  679. static void test_lua(void) {
  680. static struct mg_connection conn;
  681. static struct mg_context ctx;
  682. char http_request[] = "POST /foo/bar HTTP/1.1\r\n"
  683. "Content-Length: 12\r\n"
  684. "Connection: close\r\n\r\nhello world!";
  685. lua_State *L = luaL_newstate();
  686. conn.ctx = &ctx;
  687. conn.buf = http_request;
  688. conn.buf_size = conn.data_len = strlen(http_request);
  689. conn.request_len = parse_http_message(conn.buf, conn.data_len, &conn.request_info);
  690. conn.content_len = conn.data_len - conn.request_len;
  691. prepare_lua_environment(&conn, L, "unit_test", LUA_ENV_TYPE_PLAIN_LUA_PAGE);
  692. ASSERT(lua_gettop(L) == 4);
  693. check_lua_expr(L, "'hi'", "hi");
  694. check_lua_expr(L, "mg.request_info.request_method", "POST");
  695. check_lua_expr(L, "mg.request_info.uri", "/foo/bar");
  696. check_lua_expr(L, "mg.request_info.num_headers", "2");
  697. check_lua_expr(L, "mg.request_info.remote_ip", "0");
  698. check_lua_expr(L, "mg.request_info.http_headers['Content-Length']", "12");
  699. check_lua_expr(L, "mg.request_info.http_headers['Connection']", "close");
  700. (void) luaL_dostring(L, "post = mg.read()");
  701. check_lua_expr(L, "# post", "12");
  702. check_lua_expr(L, "post", "hello world!");
  703. lua_close(L);
  704. }
  705. #endif
  706. static void test_mg_stat(void) {
  707. static struct mg_context ctx;
  708. struct file file = STRUCT_FILE_INITIALIZER;
  709. ASSERT(!mg_stat(fc(&ctx), " does not exist ", &file));
  710. }
  711. static void test_skip_quoted(void) {
  712. char x[] = "a=1, b=2, c='hi \' there', d='here\\, there'", *s = x, *p;
  713. p = skip_quoted(&s, ", ", ", ", 0);
  714. ASSERT(p != NULL && !strcmp(p, "a=1"));
  715. p = skip_quoted(&s, ", ", ", ", 0);
  716. ASSERT(p != NULL && !strcmp(p, "b=2"));
  717. p = skip_quoted(&s, ",", " ", 0);
  718. ASSERT(p != NULL && !strcmp(p, "c='hi \' there'"));
  719. p = skip_quoted(&s, ",", " ", '\\');
  720. ASSERT(p != NULL && !strcmp(p, "d='here, there'"));
  721. ASSERT(*s == 0);
  722. }
  723. static void test_alloc_vprintf(void) {
  724. char buf[MG_BUF_LEN], *p = buf;
  725. ASSERT(alloc_printf(&p, sizeof(buf), "%s", "hi") == 2);
  726. ASSERT(p == buf);
  727. ASSERT(alloc_printf(&p, sizeof(buf), "%s", "") == 0);
  728. ASSERT(alloc_printf(&p, sizeof(buf), "") == 0);
  729. /* Pass small buffer, make sure alloc_printf allocates */
  730. ASSERT(alloc_printf(&p, 1, "%s", "hello") == 5);
  731. ASSERT(p != buf);
  732. mg_free(p);
  733. }
  734. static void test_request_replies(void) {
  735. char ebuf[100];
  736. int i;
  737. struct mg_connection *conn;
  738. struct mg_context *ctx;
  739. static struct { const char *request, *reply_regex; } tests[] = {
  740. {
  741. "GET hello.txt HTTP/1.0\r\nRange: bytes=3-5\r\n\r\n",
  742. "^HTTP/1.1 206 Partial Content"
  743. },
  744. {NULL, NULL},
  745. };
  746. ASSERT((ctx = mg_start(&CALLBACKS, NULL, OPTIONS)) != NULL);
  747. for (i = 0; tests[i].request != NULL; i++) {
  748. ASSERT((conn = mg_download("localhost", atoi(HTTP_PORT), 0, ebuf, sizeof(ebuf), "%s",
  749. tests[i].request)) != NULL);
  750. mg_close_connection(conn);
  751. }
  752. mg_stop(ctx);
  753. #ifndef NO_SSL
  754. ASSERT((ctx = mg_start(&CALLBACKS, NULL, OPTIONS)) != NULL);
  755. for (i = 0; tests[i].request != NULL; i++) {
  756. ASSERT((conn = mg_download("localhost", atoi(HTTPS_PORT), 1, ebuf, sizeof(ebuf), "%s",
  757. tests[i].request)) != NULL);
  758. mg_close_connection(conn);
  759. }
  760. mg_stop(ctx);
  761. #endif
  762. }
  763. static int request_test_handler(struct mg_connection *conn, void *cbdata)
  764. {
  765. ASSERT(cbdata == (void*)7);
  766. return 1;
  767. }
  768. static void test_request_handlers(void) {
  769. char ebuf[100];
  770. struct mg_context *ctx;
  771. struct mg_connection *conn;
  772. char uri[64];
  773. int i;
  774. const char *request = "GET /U7 HTTP/1.0\r\n\r\n";
  775. ctx = mg_start(NULL, NULL, OPTIONS);
  776. ASSERT(ctx != NULL);
  777. for (i=0;i<1000;i++) {
  778. sprintf(uri, "/U%u", i);
  779. mg_set_request_handler(ctx, uri, request_test_handler, NULL);
  780. }
  781. for (i=500;i<800;i++) {
  782. sprintf(uri, "/U%u", i);
  783. mg_set_request_handler(ctx, uri, NULL, (void*)1);
  784. }
  785. for (i=600;i>=0;i--) {
  786. sprintf(uri, "/U%u", i);
  787. mg_set_request_handler(ctx, uri, NULL, (void*)2);
  788. }
  789. for (i=750;i<=1000;i++) {
  790. sprintf(uri, "/U%u", i);
  791. mg_set_request_handler(ctx, uri, NULL, (void*)3);
  792. }
  793. for (i=5;i<9;i++) {
  794. sprintf(uri, "/U%u", i);
  795. mg_set_request_handler(ctx, uri, request_test_handler, (void*)i);
  796. }
  797. conn = mg_download("localhost", atoi(HTTP_PORT), 0, ebuf, sizeof(ebuf), "%s", request);
  798. ASSERT((conn) != NULL);
  799. mg_sleep(1000);
  800. mg_close_connection(conn);
  801. mg_stop(ctx);
  802. }
  803. static int api_callback(struct mg_connection *conn) {
  804. struct mg_request_info *ri = mg_get_request_info(conn);
  805. char post_data[100] = "";
  806. ASSERT(ri->user_data == (void *) 123);
  807. ASSERT(ri->num_headers == 2);
  808. ASSERT(strcmp(mg_get_header(conn, "host"), "blah.com") == 0);
  809. ASSERT(mg_read(conn, post_data, sizeof(post_data)) == 3);
  810. ASSERT(memcmp(post_data, "b=1", 3) == 0);
  811. ASSERT(ri->query_string != NULL);
  812. ASSERT(ri->remote_addr[0] != 0);
  813. ASSERT(ri->remote_port > 0);
  814. ASSERT(strcmp(ri->http_version, "1.0") == 0);
  815. mg_printf(conn, "HTTP/1.0 200 OK\r\n\r\n");
  816. return 1;
  817. }
  818. static void test_api_calls(void) {
  819. char ebuf[100];
  820. struct mg_callbacks callbacks;
  821. struct mg_connection *conn;
  822. struct mg_context *ctx;
  823. static const char *request = "POST /?a=%20&b=&c=xx HTTP/1.0\r\n"
  824. "Host: blah.com\n" /* More spaces before */
  825. "content-length: 3\r\n" /* Lower case header name */
  826. "\r\nb=123456"; /* Content size > content-length, test for mg_read() */
  827. memset(&callbacks, 0, sizeof(callbacks));
  828. callbacks.begin_request = api_callback;
  829. ASSERT((ctx = mg_start(&callbacks, (void *) 123, OPTIONS)) != NULL);
  830. ASSERT((conn = mg_download("localhost", atoi(HTTP_PORT), 0,
  831. ebuf, sizeof(ebuf), "%s", request)) != NULL);
  832. mg_close_connection(conn);
  833. mg_stop(ctx);
  834. }
  835. static void test_url_decode(void) {
  836. char buf[100];
  837. ASSERT(mg_url_decode("foo", 3, buf, 3, 0) == -1); /* No space for \0 */
  838. ASSERT(mg_url_decode("foo", 3, buf, 4, 0) == 3);
  839. ASSERT(strcmp(buf, "foo") == 0);
  840. ASSERT(mg_url_decode("a+", 2, buf, sizeof(buf), 0) == 2);
  841. ASSERT(strcmp(buf, "a+") == 0);
  842. ASSERT(mg_url_decode("a+", 2, buf, sizeof(buf), 1) == 2);
  843. ASSERT(strcmp(buf, "a ") == 0);
  844. ASSERT(mg_url_decode("%61", 1, buf, sizeof(buf), 1) == 1);
  845. ASSERT(strcmp(buf, "%") == 0);
  846. ASSERT(mg_url_decode("%61", 2, buf, sizeof(buf), 1) == 2);
  847. ASSERT(strcmp(buf, "%6") == 0);
  848. ASSERT(mg_url_decode("%61", 3, buf, sizeof(buf), 1) == 1);
  849. ASSERT(strcmp(buf, "a") == 0);
  850. }
  851. static void test_mg_strcasestr(void) {
  852. static const char *big1 = "abcdef";
  853. ASSERT(mg_strcasestr("Y", "X") == NULL);
  854. ASSERT(mg_strcasestr("Y", "y") != NULL);
  855. ASSERT(mg_strcasestr(big1, "X") == NULL);
  856. ASSERT(mg_strcasestr(big1, "CD") == big1 + 2);
  857. ASSERT(mg_strcasestr("aa", "AAB") == NULL);
  858. }
  859. static void test_mg_get_cookie(void) {
  860. char buf[20];
  861. ASSERT(mg_get_cookie("", "foo", NULL, sizeof(buf)) == -2);
  862. ASSERT(mg_get_cookie("", "foo", buf, 0) == -2);
  863. ASSERT(mg_get_cookie("", "foo", buf, sizeof(buf)) == -1);
  864. ASSERT(mg_get_cookie("", NULL, buf, sizeof(buf)) == -1);
  865. ASSERT(mg_get_cookie("a=1; b=2; c; d", "a", buf, sizeof(buf)) == 1);
  866. ASSERT(strcmp(buf, "1") == 0);
  867. ASSERT(mg_get_cookie("a=1; b=2; c; d", "b", buf, sizeof(buf)) == 1);
  868. ASSERT(strcmp(buf, "2") == 0);
  869. ASSERT(mg_get_cookie("a=1; b=123", "b", buf, sizeof(buf)) == 3);
  870. ASSERT(strcmp(buf, "123") == 0);
  871. ASSERT(mg_get_cookie("a=1; b=2; c; d", "c", buf, sizeof(buf)) == -1);
  872. }
  873. static void test_strtoll(void) {
  874. ASSERT(strtoll("0", NULL, 10) == 0);
  875. ASSERT(strtoll("123", NULL, 10) == 123);
  876. ASSERT(strtoll("-34", NULL, 10) == -34);
  877. ASSERT(strtoll("3566626116", NULL, 10) == 3566626116);
  878. }
  879. static void test_parse_port_string(void) {
  880. static const char *valid[] = {
  881. "0", "1", "1s", "1r", "1.2.3.4:1", "1.2.3.4:1s", "1.2.3.4:1r",
  882. #if defined(USE_IPV6)
  883. "[::1]:123", "[3ffe:2a00:100:7031::1]:900",
  884. #endif
  885. NULL
  886. };
  887. static const char *invalid[] = {
  888. "99999", "1k", "1.2.3", "1.2.3.4:", "1.2.3.4:2p",
  889. NULL
  890. };
  891. struct socket so;
  892. struct vec vec;
  893. int i;
  894. for (i = 0; valid[i] != NULL; i++) {
  895. vec.ptr = valid[i];
  896. vec.len = strlen(vec.ptr);
  897. ASSERT(parse_port_string(&vec, &so) != 0);
  898. }
  899. for (i = 0; invalid[i] != NULL; i++) {
  900. vec.ptr = invalid[i];
  901. vec.len = strlen(vec.ptr);
  902. ASSERT(parse_port_string(&vec, &so) == 0);
  903. }
  904. }
  905. static void test_md5(void) {
  906. md5_state_t md5_state;
  907. unsigned char md5_val[16+1];
  908. char md5_str[32+1];
  909. const char *test_str = "The quick brown fox jumps over the lazy dog";
  910. md5_val[16]=0;
  911. md5_init(&md5_state);
  912. md5_finish(&md5_state, md5_val);
  913. ASSERT(strcmp(md5_val, "\xd4\x1d\x8c\xd9\x8f\x00\xb2\x04\xe9\x80\x09\x98\xec\xf8\x42\x7e")==0);
  914. sprintf(md5_str, "%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x",
  915. md5_val[0], md5_val[1], md5_val[2], md5_val[3],
  916. md5_val[4], md5_val[5], md5_val[6], md5_val[7],
  917. md5_val[8], md5_val[9], md5_val[10], md5_val[11],
  918. md5_val[12], md5_val[13], md5_val[14], md5_val[15]);
  919. ASSERT(strcmp(md5_str, "d41d8cd98f00b204e9800998ecf8427e")==0);
  920. mg_md5(md5_str, "", NULL);
  921. ASSERT(strcmp(md5_str, "d41d8cd98f00b204e9800998ecf8427e")==0);
  922. md5_init(&md5_state);
  923. md5_append(&md5_state, test_str, strlen(test_str));
  924. md5_finish(&md5_state, md5_val);
  925. sprintf(md5_str, "%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x",
  926. md5_val[0], md5_val[1], md5_val[2], md5_val[3],
  927. md5_val[4], md5_val[5], md5_val[6], md5_val[7],
  928. md5_val[8], md5_val[9], md5_val[10], md5_val[11],
  929. md5_val[12], md5_val[13], md5_val[14], md5_val[15]);
  930. ASSERT(strcmp(md5_str, "9e107d9d372bb6826bd81d3542a419d6")==0);
  931. mg_md5(md5_str, test_str, NULL);
  932. ASSERT(strcmp(md5_str, "9e107d9d372bb6826bd81d3542a419d6")==0);
  933. mg_md5(md5_str, "The", " ", "quick brown fox", "", " jumps ", "over the lazy dog", "", "", NULL);
  934. ASSERT(strcmp(md5_str, "9e107d9d372bb6826bd81d3542a419d6")==0);
  935. mg_md5(md5_str, "civetweb", NULL);
  936. ASSERT(strcmp(md5_str, "95c098bd85b619b24a83d9cea5e8ba54")==0);
  937. }
  938. int __cdecl main(void) {
  939. char buffer[512];
  940. FILE * f;
  941. struct mg_context *ctx;
  942. int i;
  943. /* print headline */
  944. printf("Civetweb %s unit test\n", mg_version());
  945. #if defined(_WIN32)
  946. GetCurrentDirectoryA(sizeof(buffer), buffer);
  947. #else
  948. getcwd(buffer, sizeof(buffer));
  949. #endif
  950. printf("Test directory is \"%s\"\n", buffer); /* should be the "test" directory */
  951. f = fopen("hello.txt", "r");
  952. if (f) {
  953. fclose(f);
  954. } else {
  955. printf("Error: Test directory does not contain hello.txt\n");
  956. }
  957. f = fopen("unit_test.c", "r");
  958. if (f) {
  959. fclose(f);
  960. } else {
  961. printf("Error: Test directory does not contain unit_test.c\n");
  962. }
  963. /* test local functions */
  964. test_parse_port_string();
  965. test_mg_strcasestr();
  966. test_alloc_vprintf();
  967. test_base64_encode();
  968. test_match_prefix();
  969. test_remove_double_dots();
  970. test_should_keep_alive();
  971. test_parse_http_message();
  972. test_mg_get_var();
  973. test_set_throttle();
  974. test_next_option();
  975. test_mg_stat();
  976. test_skip_quoted();
  977. test_url_decode();
  978. test_mg_get_cookie();
  979. test_strtoll();
  980. test_md5();
  981. /* start stop server */
  982. ctx = mg_start(NULL, NULL, OPTIONS);
  983. ASSERT(ctx != NULL);
  984. mg_sleep(1000);
  985. mg_stop(ctx);
  986. /* create test data */
  987. fetch_data = (char *) mg_malloc(fetch_data_size);
  988. for (i=0; i<fetch_data_size; i++) {
  989. fetch_data[i] = 'a' + i%10;
  990. }
  991. /* tests with network access */
  992. init_CALLBACKS();
  993. test_mg_download(0);
  994. #ifndef NO_SSL
  995. test_mg_download(1);
  996. #endif
  997. test_mg_websocket_client_connect(0);
  998. #ifndef NO_SSL
  999. test_mg_websocket_client_connect(1);
  1000. #endif
  1001. test_mg_upload();
  1002. test_request_replies();
  1003. test_api_calls();
  1004. test_request_handlers();
  1005. #if defined(USE_LUA)
  1006. test_lua();
  1007. #endif
  1008. /* test completed */
  1009. mg_free(fetch_data);
  1010. printf("TOTAL TESTS: %d, FAILED: %d\n", s_total_tests, s_failed_tests);
  1011. return s_failed_tests == 0 ? EXIT_SUCCESS : EXIT_FAILURE;
  1012. }