mirror of
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642 lines
21 KiB
C
642 lines
21 KiB
C
// Unit test for the mongoose web server.
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// g++ -W -Wall -pedantic -g unit_test.c -lssl && ./a.out
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// cl unit_test.c /MD
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#ifndef _WIN32
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#define MONGOOSE_USE_IPV6
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#define MONGOOSE_USE_SSL
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#endif
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#define MONGOOSE_USE_POST_SIZE_LIMIT 999
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// USE_* definitions must be made before #include "mongoose.c" !
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#include "mongoose.c"
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#define FAIL(str, line) do { \
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printf("Fail on line %d: [%s]\n", line, str); \
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return str; \
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} while (0)
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#define ASSERT(expr) do { \
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static_num_tests++; \
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if (!(expr)) FAIL(#expr, __LINE__); \
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} while (0)
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#define RUN_TEST(test) do { const char *msg = test(); \
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if (msg) return msg; } while (0)
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#define HTTP_PORT "45772"
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#define LISTENING_ADDR "127.0.0.1:" HTTP_PORT
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static int static_num_tests = 0;
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#if 0
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// Connects to host:port, and sends formatted request to it. Returns
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// malloc-ed reply and reply length, or NULL on error. Reply contains
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// everything including headers, not just the message body.
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static char *wget(const char *host, int port, int *len, const char *fmt, ...) {
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char buf[2000], *reply = NULL;
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int request_len, reply_size = 0, n, sock = -1;
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struct sockaddr_in sin;
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struct hostent *he = NULL;
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va_list ap;
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if (host != NULL &&
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(he = gethostbyname(host)) != NULL &&
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(sock = socket(PF_INET, SOCK_STREAM, 0)) != -1) {
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sin.sin_family = AF_INET;
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sin.sin_port = htons((uint16_t) port);
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sin.sin_addr = * (struct in_addr *) he->h_addr_list[0];
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if (connect(sock, (struct sockaddr *) &sin, sizeof(sin)) == 0) {
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// Format and send the request.
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va_start(ap, fmt);
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request_len = vsnprintf(buf, sizeof(buf), fmt, ap);
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va_end(ap);
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while (request_len > 0 && (n = send(sock, buf, request_len, 0)) > 0) {
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request_len -= n;
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}
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if (request_len == 0) {
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*len = 0;
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while ((n = recv(sock, buf, sizeof(buf), 0)) > 0) {
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if (*len + n > reply_size) {
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// Leak possible
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reply = (char *) realloc(reply, reply_size + sizeof(buf));
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reply_size += sizeof(buf);
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}
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if (reply != NULL) {
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memcpy(reply + *len, buf, n);
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*len += n;
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}
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}
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}
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closesocket(sock);
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}
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}
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return reply;
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}
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#endif
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static char *read_file(const char *path, int *size) {
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FILE *fp;
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struct stat st;
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char *data = NULL;
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if ((fp = fopen(path, "rb")) != NULL && !fstat(fileno(fp), &st)) {
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*size = (int) st.st_size;
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data = (char *) malloc(*size);
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fread(data, 1, *size, fp);
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fclose(fp);
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}
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return data;
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}
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static const char *test_parse_http_message() {
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struct mg_connection ri;
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char req1[] = "GET / HTTP/1.1\r\n\r\n";
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char req2[] = "BLAH / HTTP/1.1\r\n\r\n";
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char req3[] = "GET / HTTP/1.1\r\nBah\r\n";
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char req4[] = "GET / HTTP/1.1\r\nA: foo bar\r\nB: bar\r\nbaz\r\n\r\n";
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char req5[] = "GET / HTTP/1.1\r\n\r\n";
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char req6[] = "G";
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char req7[] = " blah ";
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char req8[] = " HTTP/1.1 200 OK \n\n";
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char req9[] = "HTTP/1.1 200 OK\r\nConnection: close\r\n\r\n";
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ASSERT(get_request_len("\r\n", 3) == -1);
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ASSERT(get_request_len("\r\n", 2) == 0);
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ASSERT(get_request_len("GET", 3) == 0);
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ASSERT(get_request_len("\n\n", 2) == 2);
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ASSERT(get_request_len("\n\r\n", 3) == 3);
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ASSERT(get_request_len("\xdd\xdd", 2) == 0);
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ASSERT(get_request_len("\xdd\x03", 2) == -1);
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ASSERT(get_request_len(req3, sizeof(req3) - 1) == 0);
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ASSERT(get_request_len(req6, sizeof(req6) - 1) == 0);
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ASSERT(get_request_len(req7, sizeof(req7) - 1) == 0);
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ASSERT(parse_http_message(req9, sizeof(req9) - 1, &ri) == sizeof(req9) - 1);
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ASSERT(ri.num_headers == 1);
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ASSERT(parse_http_message(req1, sizeof(req1) - 1, &ri) == sizeof(req1) - 1);
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ASSERT(strcmp(ri.http_version, "1.1") == 0);
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ASSERT(ri.num_headers == 0);
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ASSERT(parse_http_message(req2, sizeof(req2) - 1, &ri) == -1);
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ASSERT(parse_http_message(req6, 0, &ri) == -1);
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ASSERT(parse_http_message(req8, sizeof(req8) - 1, &ri) == sizeof(req8) - 1);
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// TODO(lsm): Fix this. Header value may span multiple lines.
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ASSERT(parse_http_message(req4, sizeof(req4) - 1, &ri) == sizeof(req4) - 1);
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ASSERT(strcmp(ri.http_version, "1.1") == 0);
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ASSERT(ri.num_headers == 3);
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ASSERT(strcmp(ri.http_headers[0].name, "A") == 0);
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ASSERT(strcmp(ri.http_headers[0].value, "foo bar") == 0);
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ASSERT(strcmp(ri.http_headers[1].name, "B") == 0);
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ASSERT(strcmp(ri.http_headers[1].value, "bar") == 0);
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ASSERT(strcmp(ri.http_headers[2].name, "baz\r\n\r") == 0);
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ASSERT(strcmp(ri.http_headers[2].value, "") == 0);
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ASSERT(parse_http_message(req5, sizeof(req5) - 1, &ri) == sizeof(req5) - 1);
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ASSERT(strcmp(ri.request_method, "GET") == 0);
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ASSERT(strcmp(ri.http_version, "1.1") == 0);
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return NULL;
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}
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static const char *test_should_keep_alive(void) {
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struct mg_connection conn;
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char req1[] = "GET / HTTP/1.1\r\n\r\n";
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char req2[] = "GET / HTTP/1.0\r\n\r\n";
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char req3[] = "GET / HTTP/1.1\r\nConnection: close\r\n\r\n";
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char req4[] = "GET / HTTP/1.1\r\nConnection: keep-alive\r\n\r\n";
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memset(&conn, 0, sizeof(conn));
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ASSERT(parse_http_message(req1, sizeof(req1) - 1, &conn) == sizeof(req1) - 1);
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ASSERT(should_keep_alive(&conn) != 0);
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parse_http_message(req2, sizeof(req2) - 1, &conn);
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ASSERT(should_keep_alive(&conn) == 0);
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parse_http_message(req3, sizeof(req3) - 1, &conn);
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ASSERT(should_keep_alive(&conn) == 0);
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parse_http_message(req4, sizeof(req4) - 1, &conn);
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ASSERT(should_keep_alive(&conn) != 0);
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return NULL;
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}
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static const char *test_match_prefix(void) {
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ASSERT(match_prefix("/api", 4, "/api") == 4);
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ASSERT(match_prefix("/a/", 3, "/a/b/c") == 3);
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ASSERT(match_prefix("/a/", 3, "/ab/c") == -1);
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ASSERT(match_prefix("/*/", 3, "/ab/c") == 4);
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ASSERT(match_prefix("**", 2, "/a/b/c") == 6);
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ASSERT(match_prefix("/*", 2, "/a/b/c") == 2);
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ASSERT(match_prefix("*/*", 3, "/a/b/c") == 2);
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ASSERT(match_prefix("**/", 3, "/a/b/c") == 5);
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ASSERT(match_prefix("**.foo|**.bar", 13, "a.bar") == 5);
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ASSERT(match_prefix("a|b|cd", 6, "cdef") == 2);
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ASSERT(match_prefix("a|b|c?", 6, "cdef") == 2);
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ASSERT(match_prefix("a|?|cd", 6, "cdef") == 1);
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ASSERT(match_prefix("/a/**.cgi", 9, "/foo/bar/x.cgi") == -1);
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ASSERT(match_prefix("/a/**.cgi", 9, "/a/bar/x.cgi") == 12);
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ASSERT(match_prefix("**/", 3, "/a/b/c") == 5);
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ASSERT(match_prefix("**/$", 4, "/a/b/c") == -1);
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ASSERT(match_prefix("**/$", 4, "/a/b/") == 5);
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ASSERT(match_prefix("$", 1, "") == 0);
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ASSERT(match_prefix("$", 1, "x") == -1);
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ASSERT(match_prefix("*$", 2, "x") == 1);
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ASSERT(match_prefix("/$", 2, "/") == 1);
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ASSERT(match_prefix("**/$", 4, "/a/b/c") == -1);
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ASSERT(match_prefix("**/$", 4, "/a/b/") == 5);
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ASSERT(match_prefix("*", 1, "/hello/") == 0);
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ASSERT(match_prefix("**.a$|**.b$", 11, "/a/b.b/") == -1);
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ASSERT(match_prefix("**.a$|**.b$", 11, "/a/b.b") == 6);
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ASSERT(match_prefix("**.a$|**.b$", 11, "/a/B.A") == 6);
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ASSERT(match_prefix("**o$", 4, "HELLO") == 5);
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return NULL;
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}
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static const char *test_remove_double_dots() {
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struct { char before[20], after[20]; } data[] = {
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{"////a", "/a"},
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{"/.....", "/."},
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{"/......", "/"},
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{"...", "..."},
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{"/...///", "/./"},
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{"/a...///", "/a.../"},
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{"/.x", "/.x"},
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{"/\\", "/"},
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{"/a\\", "/a\\"},
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{"/a\\\\...", "/a\\."},
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};
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size_t i;
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for (i = 0; i < ARRAY_SIZE(data); i++) {
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remove_double_dots_and_double_slashes(data[i].before);
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ASSERT(strcmp(data[i].before, data[i].after) == 0);
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}
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return NULL;
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}
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static const char *test_get_var(void) {
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static const char *post[] = {
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"a=1&&b=2&d&=&c=3%20&e=",
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"q=&st=2012%2F11%2F13+17%3A05&et=&team_id=",
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NULL
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};
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char buf[20];
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ASSERT(get_var(post[0], strlen(post[0]), "a", buf, sizeof(buf)) == 1);
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ASSERT(buf[0] == '1' && buf[1] == '\0');
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ASSERT(get_var(post[0], strlen(post[0]), "b", buf, sizeof(buf)) == 1);
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ASSERT(buf[0] == '2' && buf[1] == '\0');
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ASSERT(get_var(post[0], strlen(post[0]), "c", buf, sizeof(buf)) == 2);
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ASSERT(buf[0] == '3' && buf[1] == ' ' && buf[2] == '\0');
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ASSERT(get_var(post[0], strlen(post[0]), "e", buf, sizeof(buf)) == 0);
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ASSERT(buf[0] == '\0');
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ASSERT(get_var(post[0], strlen(post[0]), "d", buf, sizeof(buf)) == -1);
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ASSERT(get_var(post[0], strlen(post[0]), "c", buf, 2) == -2);
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ASSERT(get_var(post[0], strlen(post[0]), "x", NULL, 10) == -2);
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ASSERT(get_var(post[0], strlen(post[0]), "x", buf, 0) == -2);
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ASSERT(get_var(post[1], strlen(post[1]), "st", buf, 16) == -2);
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ASSERT(get_var(post[1], strlen(post[1]), "st", buf, 17) == 16);
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return NULL;
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}
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static const char *test_url_decode(void) {
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char buf[100];
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ASSERT(mg_url_decode("foo", 3, buf, 3, 0) == -1); // No space for \0
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ASSERT(mg_url_decode("foo", 3, buf, 4, 0) == 3);
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ASSERT(strcmp(buf, "foo") == 0);
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ASSERT(mg_url_decode("a+", 2, buf, sizeof(buf), 0) == 2);
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ASSERT(strcmp(buf, "a+") == 0);
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ASSERT(mg_url_decode("a+", 2, buf, sizeof(buf), 1) == 2);
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ASSERT(strcmp(buf, "a ") == 0);
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ASSERT(mg_url_decode("%61", 1, buf, sizeof(buf), 1) == 1);
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ASSERT(strcmp(buf, "%") == 0);
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ASSERT(mg_url_decode("%61", 2, buf, sizeof(buf), 1) == 2);
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ASSERT(strcmp(buf, "%6") == 0);
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ASSERT(mg_url_decode("%61", 3, buf, sizeof(buf), 1) == 1);
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ASSERT(strcmp(buf, "a") == 0);
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return NULL;
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}
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static const char *test_to64(void) {
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ASSERT(to64("0") == 0);
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ASSERT(to64("") == 0);
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ASSERT(to64("123") == 123);
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ASSERT(to64("-34") == -34);
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ASSERT(to64("3566626116") == 3566626116);
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return NULL;
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}
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static const char *test_parse_port_string(void) {
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static const char *valid[] = {
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"1", "1.2.3.4:1",
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#if defined(USE_IPV6)
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"[::1]:123", "[3ffe:2a00:100:7031::1]:900",
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#endif
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NULL
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};
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static const char *invalid[] = {
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"99999", "1k", "1.2.3", "1.2.3.4:", "1.2.3.4:2p", NULL
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};
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union socket_address sa;
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int i;
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for (i = 0; valid[i] != NULL; i++) {
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ASSERT(parse_port_string(valid[i], &sa) != 0);
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}
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for (i = 0; invalid[i] != NULL; i++) {
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ASSERT(parse_port_string(invalid[i], &sa) == 0);
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}
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ASSERT(parse_port_string("0", &sa) != 0);
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return NULL;
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}
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static const char *test_base64_encode(void) {
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const char *in[] = {"a", "ab", "abc", "abcd", NULL};
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const char *out[] = {"YQ==", "YWI=", "YWJj", "YWJjZA=="};
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char buf[100];
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int i;
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for (i = 0; in[i] != NULL; i++) {
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base64_encode((unsigned char *) in[i], strlen(in[i]), buf);
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ASSERT(!strcmp(buf, out[i]));
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}
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return NULL;
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}
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static const char *test_mg_parse_header(void) {
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const char *str = "xx=1 kl yy, ert=234 kl=123, "
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"ii=\"12\\\"34\" zz='aa bb', gf=\"xx d=1234";
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char buf[10];
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ASSERT(mg_parse_header(str, "yy", buf, sizeof(buf)) == 0);
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ASSERT(mg_parse_header(str, "ert", buf, sizeof(buf)) == 3);
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ASSERT(strcmp(buf, "234") == 0);
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ASSERT(mg_parse_header(str, "ert", buf, 2) == 0);
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ASSERT(mg_parse_header(str, "ert", buf, 3) == 0);
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ASSERT(mg_parse_header(str, "ert", buf, 4) == 3);
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ASSERT(mg_parse_header(str, "gf", buf, sizeof(buf)) == 0);
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ASSERT(mg_parse_header(str, "zz", buf, sizeof(buf)) == 5);
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ASSERT(strcmp(buf, "aa bb") == 0);
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ASSERT(mg_parse_header(str, "d", buf, sizeof(buf)) == 4);
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ASSERT(strcmp(buf, "1234") == 0);
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buf[0] = 'x';
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ASSERT(mg_parse_header(str, "MMM", buf, sizeof(buf)) == 0);
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ASSERT(buf[0] == '\0');
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ASSERT(mg_parse_header(str, "kl", buf, sizeof(buf)) == 3);
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ASSERT(strcmp(buf, "123") == 0);
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ASSERT(mg_parse_header(str, "xx", buf, sizeof(buf)) == 1);
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ASSERT(strcmp(buf, "1") == 0);
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ASSERT(mg_parse_header(str, "ii", buf, sizeof(buf)) == 5);
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ASSERT(strcmp(buf, "12\"34") == 0);
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return NULL;
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}
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static const char *test_next_option(void) {
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const char *p, *list = "x/8,/y**=1;2k,z";
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struct vec a, b;
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int i;
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ASSERT(next_option(NULL, &a, &b) == NULL);
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for (i = 0, p = list; (p = next_option(p, &a, &b)) != NULL; i++) {
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ASSERT(i != 0 || (a.ptr == list && a.len == 3 && b.len == 0));
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ASSERT(i != 1 || (a.ptr == list + 4 && a.len == 4 && b.ptr == list + 9 &&
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b.len == 4));
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ASSERT(i != 2 || (a.ptr == list + 14 && a.len == 1 && b.len == 0));
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}
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return NULL;
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}
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static int cb1(struct mg_connection *conn) {
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int result = MG_REQUEST_NOT_PROCESSED;
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if (!strcmp(conn->uri, "/cb1")) {
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mg_printf(conn, "%s %s %s",
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conn->server_param == NULL ? "?" : (char *) conn->server_param,
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conn->connection_param == NULL ? "?" : "!", conn->remote_ip);
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result = MG_REQUEST_PROCESSED;
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}
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return result;
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}
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static int error_handler(struct mg_connection *conn) {
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mg_printf(conn, "HTTP/1.0 404 NF\r\n\r\nERR: %d", conn->status_code);
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return MG_ERROR_PROCESSED;
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}
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static int ts1(struct mg_connection *conn) {
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if (conn->status_code == MG_CONNECT_SUCCESS) {
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mg_printf(conn, "%s", "GET /cb1 HTTP/1.0\r\n\r\n");
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return MG_CLIENT_CONTINUE;
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} else if (conn->status_code == MG_DOWNLOAD_SUCCESS) {
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sprintf((char *) conn->connection_param, "%.*s",
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(int) conn->content_len, conn->content);
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}
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return MG_CLIENT_CLOSE;
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}
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static int ts2(struct mg_connection *conn) {
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if (conn->status_code == MG_CONNECT_SUCCESS) {
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mg_printf(conn, "%s", "GET /non_exist HTTP/1.0\r\n\r\n");
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return MG_CLIENT_CONTINUE;
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} else if (conn->status_code == MG_DOWNLOAD_SUCCESS) {
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sprintf((char *) conn->connection_param, "%s %.*s",
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conn->uri, (int) conn->content_len, conn->content);
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}
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return MG_CLIENT_CLOSE;
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}
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static const char *test_server(void) {
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char buf1[100] = "", buf2[100] = "";
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struct mg_server *server = mg_create_server((void *) "foo");
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ASSERT(server != NULL);
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ASSERT(mg_set_option(server, "listening_port", LISTENING_ADDR) == NULL);
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ASSERT(mg_set_option(server, "document_root", ".") == NULL);
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mg_set_request_handler(server, cb1);
|
|
mg_set_http_error_handler(server, error_handler);
|
|
|
|
ASSERT(mg_connect(server, "127.0.0.1", atoi(HTTP_PORT), 0, ts1, buf1) == 1);
|
|
ASSERT(mg_connect(server, "127.0.0.1", atoi(HTTP_PORT), 0, ts2, buf2) == 1);
|
|
|
|
{ int i; for (i = 0; i < 50; i++) mg_poll_server(server, 1); }
|
|
ASSERT(strcmp(buf1, "foo ? 127.0.0.1") == 0);
|
|
ASSERT(strcmp(buf2, "404 ERR: 404") == 0);
|
|
|
|
ASSERT(strcmp(static_config_options[URL_REWRITES * 2], "url_rewrites") == 0);
|
|
mg_destroy_server(&server);
|
|
ASSERT(server == NULL);
|
|
return NULL;
|
|
}
|
|
|
|
// This http client sends two requests using one connection
|
|
static int cb2(struct mg_connection *conn) {
|
|
const char *file1 = "mongoose.h", *file2 = "mongoose.c", *file_name = file2;
|
|
char *buf = (char *) conn->connection_param, *file_data;
|
|
int file_len, ret_val = 1;
|
|
|
|
switch (conn->status_code) {
|
|
case MG_CONNECT_SUCCESS:
|
|
mg_printf(conn, "GET /%s HTTP/1.1\r\n\r\n", file1);
|
|
strcat(buf, "a");
|
|
ret_val = 0;
|
|
break;
|
|
case MG_CONNECT_FAILURE: strcat(buf, "b"); break;
|
|
case MG_DOWNLOAD_FAILURE: strcat(buf, "c"); break;
|
|
case MG_DOWNLOAD_SUCCESS:
|
|
if (!strcmp(buf, "a")) {
|
|
// Send second request
|
|
mg_printf(conn, "GET /%s HTTP/1.1\r\n\r\n", file2);
|
|
file_name = file1;
|
|
}
|
|
if ((file_data = read_file(file_name, &file_len)) != NULL) {
|
|
if ((size_t) file_len == conn->content_len &&
|
|
memcmp(file_data, conn->content, file_len) == 0) {
|
|
strcat(buf, "d");
|
|
} else {
|
|
strcat(buf, "f");
|
|
}
|
|
free(file_data);
|
|
}
|
|
ret_val = !strcmp(buf, "ad") ? 0 : 1;
|
|
break;
|
|
default: strcat(buf, "e"); break;
|
|
}
|
|
|
|
return ret_val;
|
|
}
|
|
|
|
static int cb4h(struct mg_connection *conn) {
|
|
int result = MG_REQUEST_NOT_PROCESSED;
|
|
if (!strcmp(conn->uri, "/x")) {
|
|
mg_send_data(conn, ":-)", 3);
|
|
result = MG_REQUEST_PROCESSED;
|
|
}
|
|
return result;
|
|
}
|
|
|
|
static int cb4(struct mg_connection *conn) {
|
|
if (conn->status_code == MG_CONNECT_SUCCESS) {
|
|
mg_printf(conn, "%s", "POST /x HTTP/1.0\r\nContent-Length: 999999\r\n\r\n");
|
|
return MG_CLIENT_CONTINUE;
|
|
} else {
|
|
sprintf((char *) conn->connection_param, "%.*s",
|
|
(int) conn->content_len, conn->content);
|
|
}
|
|
return MG_CLIENT_CLOSE;
|
|
}
|
|
|
|
static int cb3(struct mg_connection *conn) {
|
|
sprintf((char *) conn->connection_param, "%d", conn->status_code);
|
|
return MG_CLIENT_CLOSE;
|
|
}
|
|
|
|
static const char *test_mg_connect(void) {
|
|
char buf2[40] = "", buf3[40] = "", buf4[40] = "";
|
|
struct mg_server *server = mg_create_server(NULL);
|
|
|
|
ASSERT(mg_set_option(server, "listening_port", LISTENING_ADDR) == NULL);
|
|
ASSERT(mg_set_option(server, "document_root", ".") == NULL);
|
|
mg_set_request_handler(server, cb4h);
|
|
ASSERT(mg_connect(server, "", 0, 0, NULL, NULL) == 0);
|
|
ASSERT(mg_connect(server, "127.0.0.1", atoi(HTTP_PORT), 0, cb2, buf2) == 1);
|
|
ASSERT(mg_connect(server, "127.0.0.1", 29, 0, cb3, buf3) == 1);
|
|
ASSERT(mg_connect(server, "127.0.0.1", atoi(HTTP_PORT), 0, cb4, buf4) == 1);
|
|
|
|
{ int i; for (i = 0; i < 50; i++) mg_poll_server(server, 1); }
|
|
|
|
ASSERT(strcmp(buf2, "add") == 0);
|
|
ASSERT(strcmp(buf3, "1") == 0);
|
|
ASSERT(strcmp(buf4, "500 Server Error\nPOST size > 999") == 0);
|
|
mg_destroy_server(&server);
|
|
|
|
return NULL;
|
|
}
|
|
|
|
#define DISP "Content-Disposition: form/data; "
|
|
#define CRLF "\r\n"
|
|
#define BOUNDARY "--xyz"
|
|
static const char *test_parse_multipart(void) {
|
|
char a[100], b[100];
|
|
const char *p;
|
|
static const char f1[] = BOUNDARY CRLF DISP "name=f1" CRLF CRLF
|
|
"some_content" CRLF BOUNDARY CRLF
|
|
BOUNDARY CRLF DISP "name=f2; filename=\"foo bar.txt\"" CRLF CRLF
|
|
"another_content" CRLF BOUNDARY CRLF
|
|
"--" CRLF;
|
|
int n, n2, len, f1_len = sizeof(f1) - 1;
|
|
|
|
ASSERT(mg_parse_multipart("", 0, a, sizeof(a), b, sizeof(b), &p, &len) == 0);
|
|
ASSERT(mg_parse_multipart("a", 1, a, sizeof(a), b, sizeof(b), &p, &len) == 0);
|
|
ASSERT((n = mg_parse_multipart(f1, f1_len, a, sizeof(a),
|
|
b, sizeof(b), &p, &len)) > 0);
|
|
ASSERT(len == 12);
|
|
ASSERT(memcmp(p, "some_content", len) == 0);
|
|
ASSERT(strcmp(a, "f1") == 0);
|
|
ASSERT(b[0] == '\0');
|
|
|
|
ASSERT((n2 = mg_parse_multipart(f1 + n, f1_len - n, a, sizeof(a),
|
|
b, sizeof(b), &p, &len)) > 0);
|
|
ASSERT(len == 15);
|
|
ASSERT(memcmp(p, "another_content", len) == 0);
|
|
ASSERT(strcmp(a, "f2") == 0);
|
|
ASSERT(strcmp(b, "foo bar.txt") == 0);
|
|
|
|
ASSERT((n2 = mg_parse_multipart(f1 + n + n2, f1_len - (n + n2), a, sizeof(a),
|
|
b, sizeof(b), &p, &len)) == 0);
|
|
|
|
return NULL;
|
|
}
|
|
|
|
static int us1(struct mg_connection *conn) {
|
|
static const char *file_name = "mongoose.h";
|
|
char *cp = (char *) conn->connection_param;
|
|
int file_size;
|
|
|
|
if (conn->status_code == MG_CONNECT_SUCCESS) {
|
|
mg_printf(conn, "GET /%s HTTP/1.0\r\n\r\n", cp);
|
|
return 0;
|
|
} else if (conn->status_code == MG_DOWNLOAD_SUCCESS) {
|
|
char *file_data = read_file(file_name, &file_size);
|
|
sprintf(cp, "%d %s", (size_t) file_size == conn->content_len &&
|
|
memcmp(file_data, conn->content, file_size) == 0 ? 1 : 0,
|
|
conn->query_string == NULL ? "?" : conn->query_string);
|
|
free(file_data);
|
|
} else if (conn->status_code == MG_CONNECT_FAILURE) {
|
|
sprintf(cp, "%s", "cf");
|
|
} else {
|
|
sprintf(cp, "%s", "df");
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
#ifdef MONGOOSE_USE_SSL
|
|
static const char *test_ssl(void) {
|
|
static const char *ssl_cert = "examples/ssl_cert.pem";
|
|
char buf1[100] = "mongoose.h";
|
|
struct mg_server *server = mg_create_server(NULL);
|
|
|
|
ASSERT(mg_set_option(server, "listening_port", LISTENING_ADDR) == NULL);
|
|
ASSERT(mg_set_option(server, "document_root", ".") == NULL);
|
|
ASSERT(mg_set_option(server, "ssl_certificate", ssl_cert) == NULL);
|
|
|
|
ASSERT(mg_connect(server, "127.0.0.1", atoi(HTTP_PORT), 1, us1, buf1) == 1);
|
|
|
|
{ int i; for (i = 0; i < 50; i++) mg_poll_server(server, 1); }
|
|
ASSERT(strcmp(buf1, "1 ?") == 0);
|
|
mg_destroy_server(&server);
|
|
return NULL;
|
|
}
|
|
#endif
|
|
|
|
static const char *test_mg_set_option(void) {
|
|
struct mg_server *server = mg_create_server(NULL);
|
|
ASSERT(mg_set_option(server, "listening_port", "0") == NULL);
|
|
ASSERT(mg_get_option(server, "listening_port")[0] != '\0');
|
|
mg_destroy_server(&server);
|
|
return NULL;
|
|
}
|
|
|
|
static const char *test_rewrites(void) {
|
|
char buf1[100] = "xx";
|
|
struct mg_server *server = mg_create_server(NULL);
|
|
|
|
ASSERT(mg_set_option(server, "listening_port", "0") == NULL);
|
|
ASSERT(mg_set_option(server, "document_root", ".") == NULL);
|
|
ASSERT(mg_set_option(server, "url_rewrites", "/xx=./mongoose.h") == NULL);
|
|
|
|
ASSERT(mg_connect(server, "127.0.0.1",
|
|
atoi(mg_get_option(server, "listening_port")),
|
|
0, us1, buf1) == 1);
|
|
|
|
{ int i; for (i = 0; i < 50; i++) mg_poll_server(server, 1); }
|
|
//printf("[%s]\n", buf1);
|
|
ASSERT(strcmp(buf1, "1 ?") == 0);
|
|
mg_destroy_server(&server);
|
|
return NULL;
|
|
}
|
|
|
|
static const char *run_all_tests(void) {
|
|
RUN_TEST(test_should_keep_alive);
|
|
RUN_TEST(test_match_prefix);
|
|
RUN_TEST(test_remove_double_dots);
|
|
RUN_TEST(test_parse_http_message);
|
|
RUN_TEST(test_parse_port_string);
|
|
RUN_TEST(test_to64);
|
|
RUN_TEST(test_url_decode);
|
|
RUN_TEST(test_base64_encode);
|
|
RUN_TEST(test_mg_parse_header);
|
|
RUN_TEST(test_get_var);
|
|
RUN_TEST(test_next_option);
|
|
RUN_TEST(test_parse_multipart);
|
|
RUN_TEST(test_server);
|
|
RUN_TEST(test_mg_connect);
|
|
RUN_TEST(test_mg_set_option);
|
|
RUN_TEST(test_rewrites);
|
|
#ifdef MONGOOSE_USE_SSL
|
|
RUN_TEST(test_ssl);
|
|
#endif
|
|
return NULL;
|
|
}
|
|
|
|
int __cdecl main(void) {
|
|
const char *fail_msg = run_all_tests();
|
|
printf("%s, tests run: %d\n", fail_msg ? "FAIL" : "PASS", static_num_tests);
|
|
return fail_msg == NULL ? EXIT_SUCCESS : EXIT_FAILURE;
|
|
}
|