#include #include #include #include #include #include #include #include "httpd_sim.h" #include #include #include "../version.h" #define PORTS 6 time_t last_called; uint64_t txG[PORTS], txB[PORTS], rxG[PORTS], rxB[PORTS]; char txG_buff[20], txB_buff[20], rxG_buff[20], rxB_buff[20]; char num_buff[20]; char upload_buffer[4194304]; // 4MB char *content_type = NULL; char boundary[72]; char is_word(char *c, char *d) { uint8_t i = 0; while (d[i] && (d[i] == c[i])) i++; if (d[i]) return 0; if (c[i] != ' ' && c[i] != '\t' && c[i] != ':' && c[i] != '?' && c[i] != '=' && c[i] != '\n' && c[i] != '\r' && c[i]) return 0; return 1; } int hasSuffix(const char *str, const char *suffix) { if (!str || !suffix) return 0; size_t lenstr = strlen(str); size_t lensuffix = strlen(suffix); if (lensuffix > lenstr) return 0; return strncmp(str + lenstr - lensuffix, suffix, lensuffix) == 0; } char *getMime(const char *name) { if (hasSuffix(name, ".html")) return "text/html"; else if (hasSuffix(name, ".svg")) return "image/svg+xml"; else if (hasSuffix(name, ".ico")) return "image/svg+xml"; else if (hasSuffix(name, ".png")) return "image/png"; else if (hasSuffix(name, ".js")) return "text/javascript"; else if (hasSuffix(name, ".css")) return "text/css"; return "text/plain"; } void send_basic_info(int socket) { char *response = "HTTP/1.1 200 OK\r\n" "Content-Type: application/json; charset=UTF-8\r\n\r\n" "{\"ip_address\":\"192.168.10.247\",\"ip_gateway\":\"192.168.2.22\",\"ip_netmask\":\"255.255.255.0\",\"mac_address\":\"1c:2a:a3:23:00:02\",\"sw_ver\":\"" VERSION_SW "\",\"hw_ver\":\"SWGT024-V2.0\"}"; write(socket, response, strlen(response)); } void send_vlan(int s, int vlan) { struct json_object *v; const char *jstring; char *header = "HTTP/1.1 200 OK\r\n" "Content-Type: application/json; charset=UTF-8\r\n\r\n"; v = json_object_new_object(); sprintf(num_buff, "0x%08x", 0x00060011); json_object_object_add(v, "members", json_object_new_string(num_buff)); write(s, header, strlen(header)); jstring = json_object_to_json_string_ext(v, JSON_C_TO_STRING_PLAIN); write(s, jstring, strlen(jstring)); json_object_put(v); } void send_status(int s) { struct json_object *ports, *v; const char *jstring; char *header = "HTTP/1.1 200 OK\r\n" "Content-Type: application/json; charset=UTF-8\r\n\r\n"; time_t now = time(NULL); now = last_called ? last_called + 1 : now; // Make sure we don't divide by 0 for rates ports = json_object_new_array_ext(PORTS); for (int i = 1; i <= PORTS; i++) { v = json_object_new_object(); json_object_object_add(v, "portNum", json_object_new_int(i)); json_object_object_add(v, "isSFP", json_object_new_int(i < 5 ? 0 : 1)); json_object_object_add(v, "enabled", json_object_new_int((i % 4) ? 1 : 0)); json_object_object_add(v, "link", json_object_new_int(i % 2 ? ((i == 1)? 5 : 2) : 0)); if (i % 2) { uint64_t rate = (i == 1) ? 2400000000 : 950000000; txG[i-1] += rate * (now - last_called); rxG[i-1] += rate * (now - last_called); txB[i-1] += rate * (now - last_called) / 10000000; rxB[i-1] += rate * (now - last_called) / 10000000; } sprintf(txG_buff, "0x%016lx", txG[i-1]); sprintf(txB_buff, "0x%016lx", txB[i-1]); sprintf(rxG_buff, "0x%016lx", rxG[i-1]); sprintf(rxB_buff, "0x%016lx", rxB[i-1]); json_object_object_add(v, "txG", json_object_new_string(txG_buff)); json_object_object_add(v, "txB", json_object_new_string(txB_buff)); json_object_object_add(v, "rxG", json_object_new_string(rxG_buff)); json_object_object_add(v, "rxB", json_object_new_string(rxB_buff)); json_object_array_add(ports, v); } last_called = now; write(s, header, strlen(header)); jstring = json_object_to_json_string_ext(ports, JSON_C_TO_STRING_PLAIN); write(s, jstring, strlen(jstring)); json_object_put(v); } void send_eee(int s) { struct json_object *ports, *v; const char *jstring; char *header = "HTTP/1.1 200 OK\r\n" "Content-Type: application/json; charset=UTF-8\r\n\r\n"; ports = json_object_new_array_ext(PORTS); for (int i = 1; i <= PORTS; i++) { v = json_object_new_object(); json_object_object_add(v, "portNum", json_object_new_int(i)); json_object_object_add(v, "isSFP", json_object_new_int(i < 5 ? 0 : 1)); uint8_t eee = 0; eee |= 0x02; char eee_buf[20]; sprintf(eee_buf, "%08b", eee); json_object_object_add(v, "eee", json_object_new_string(eee_buf)); uint8_t eee_lp = 0; eee_lp |= 0x04; sprintf(eee_buf, "%08b", eee_lp); json_object_object_add(v, "eee_lp", json_object_new_string(eee_buf)); json_object_object_add(v, "active", json_object_new_int((i % 2) ? 1 : 0)); json_object_array_add(ports, v); } write(s, header, strlen(header)); jstring = json_object_to_json_string_ext(ports, JSON_C_TO_STRING_PLAIN); write(s, jstring, strlen(jstring)); json_object_put(ports); } void send_mirror(int s) { uint16_t mirror_tx, mirror_rx = 0; char mirror_tx_buf[20]; char mirror_rx_buf[20]; struct json_object *mirror; const char *jstring; char *header = "HTTP/1.1 200 OK\r\n" "Content-Type: application/json; charset=UTF-8\r\n\r\n"; mirror = json_object_new_object(); json_object_object_add(mirror, "mPort", json_object_new_int(1)); json_object_object_add(mirror, "enabled", json_object_new_int(1)); mirror_tx = 0b000110; mirror_rx = 0b000010; sprintf(mirror_tx_buf, "%016b", mirror_tx); sprintf(mirror_rx_buf, "%016b", mirror_rx); json_object_object_add(mirror, "mirror_tx", json_object_new_string(mirror_tx_buf)); json_object_object_add(mirror, "mirror_rx", json_object_new_string(mirror_rx_buf)); write(s, header, strlen(header)); jstring = json_object_to_json_string_ext(mirror, JSON_C_TO_STRING_PLAIN); write(s, jstring, strlen(jstring)); json_object_put(mirror); } struct Server serverConstructor(int port, void (*launch)(struct Server *server)) { struct Server server; server.domain = AF_INET; server.service = SOCK_STREAM; server.port = port; server.protocol = 0; server.backlog = 10; server.address.sin_family = server.domain; server.address.sin_port = htons(port); server.address.sin_addr.s_addr = htonl(INADDR_ANY); server.socket = socket(server.domain, server.service, server.protocol); if (server.socket < 0) { perror("Failed to initialize/connect to socket...\n"); exit(EXIT_FAILURE); } if (bind(server.socket, (struct sockaddr*)&server.address, sizeof(server.address)) < 0) { perror("Failed to bind socket...\n"); exit(EXIT_FAILURE); } if (listen(server.socket, server.backlog) < 0) { perror("Failed to start listening...\n"); exit(EXIT_FAILURE); } server.launch = launch; return server; } void send_not_found(int socket) { char *response = "HTTP/1.1 404 Not found\r\n" "Content-Type: text/html\r\n\r\n" " Not Found" "

Not found!

"; write(socket, response, strlen(response)); } void send_bad_request(int socket) { char *response = "HTTP/1.1 400 Bad Request\r\n" "Content-Type: text/html\r\n\r\n" " Bad Request" "

Bad Request!

"; write(socket, response, strlen(response)); } char *scan_header(char *p) { while (*p != '\r' || *(p + 1) != '\n' || *(p + 2) != '\r' || *(p + 3) != '\n') { if (!*p++) break; if (*p == '\n' && is_word(p + 1, "Content-Type:")) content_type = p + 15; } if (content_type && is_word(content_type, "multipart/form-data; boundary")) { printf("Found multiplart\n"); content_type += 30; uint8_t i = 0; while (content_type[i] != '\r' && content_type[i] != '\n') { boundary[i + 2] = content_type[i]; i++; } // The boundary between parts is "--" + the boundary given in the header boundary[0] = '-'; boundary[1] = '-'; boundary[i + 2] = 0; } return p; } char *skip_boundary(char *p) { while (*p) { if (is_word(p, boundary)) return p + strlen(boundary); p++; } return p; } void launch(struct Server *server) { char buffer[BUFFER_SIZE]; FILE *inptr; last_called = time(NULL); for (int i=0; i < PORTS; i++) txG[i] = txB[i] = rxG[i] = rxB[i] = 0; while (1) { printf("=== Waiting for connection on port %d === \n", server->port); int addrlen = sizeof(server->address); int new_socket = accept(server->socket, (struct sockaddr*)&server->address, (socklen_t*)&addrlen); ssize_t bytesRead = read(new_socket, buffer, BUFFER_SIZE - 1); printf("bytesRead: %ld\n", bytesRead); int filesize = 0; char *mime; if (bytesRead > 0) { buffer[bytesRead] = '\0'; // Null terminate the string puts(buffer); if (is_word(buffer, "GET")) { printf("GET request\n"); if (!strncmp(&buffer[4], "/status.json", 12)) { printf("Status request\n"); send_status(new_socket); goto done; } if (!strncmp(&buffer[4], "/eee.json", 9)) { printf("EEE request\n"); send_eee(new_socket); goto done; } if (!strncmp(&buffer[4], "/information.json", 12)) { printf("Status request\n"); send_basic_info(new_socket); goto done; } if (!strncmp(&buffer[4], "/mirror.json", 12)) { printf("Mirror request\n"); send_mirror(new_socket); goto done; } if (!strncmp(&buffer[4], "/vlan.json?vid=", 15)) { int vlan = atoi(&buffer[19]); printf("VLAN request for %d\n", vlan); send_vlan(new_socket, vlan); goto done; } int i = 0; while (!isspace(buffer[4 + i])) i++; buffer[4+i] = '\0'; printf("Serving file: >%s<, name length %d\n", &buffer[5], i); if (i > 1) inptr = fopen(&buffer[5], "rb"); else inptr = fopen("/index.html", "rb"); if (inptr == NULL) { printf("Cannot open input file %s\n", &buffer[5]); send_not_found(new_socket); goto done; } mime = getMime(&buffer[5]); printf("MIME type: %s\n", mime); fseek(inptr, 0L, SEEK_END); filesize = ftell(inptr); printf("Filesize: %d\n", filesize); rewind(inptr); printf("Input file size: %d\n", filesize); if (filesize > BUFFER_SIZE) { printf("File too large.\n"); goto done; } size_t bytes_read = fread(buffer, 1, sizeof(buffer), inptr); printf("Bytes read: %ld\n", bytes_read); if (bytes_read != filesize) { printf("Error reading input file.\n"); goto done; } fclose(inptr); } else if (is_word(buffer, "POST")) { printf("POST request\n"); // Find end of request header char *p = buffer; boundary[0] ='\0'; p = scan_header(p); printf("Boundary: >%s<\n", boundary); if (!*p || !content_type) { printf("Bad request, no content type!\n"); send_bad_request(new_socket); goto done; } printf("Bytes read %ld\n", bytesRead); if (is_word(&buffer[5], "/upload")) { printf("POST upload request\n"); if (!boundary[0]) { printf("Bad request, no boundary!\n"); send_bad_request(new_socket); goto done; } // We skip the intial parts as part of the header do { p = skip_boundary(p); if (!*p) goto bad_request; p = scan_header(p); if (!*p || !content_type) goto bad_request; } while (!is_word(content_type, "application/octet-stream")); printf("Have content: >%s<\n", content_type); char *uptr = upload_buffer; int bindex = 0; int bptr = p - buffer; do { if (bptr >= bytesRead) { bptr = 0; bytesRead = read(new_socket, buffer, BUFFER_SIZE - 1); printf("bytesRead: %ld\n", bytesRead); if (!bytesRead) break; } if (!boundary[bindex]) break; if (buffer[bptr] == boundary[bindex]) { bptr++; bindex++; } else { for (int i = 0; i < bindex; i++) *uptr++ = boundary[i]; *uptr++ = buffer[bptr++]; bindex = 0; } } while(1); printf("Done reading\n"); printf("%s", upload_buffer); if (!bindex || boundary[bindex]) goto bad_request; char *response = "HTTP/1.1 200 OK\r\n" "Content-Type: text/html\r\n\r\n" " Upload OK" "

File uploaded successully

"; write(new_socket, response, strlen(response)); goto done; } } char *response = "HTTP/1.1 200 OK\r\n" "Content-Type: "; write(new_socket, response, strlen(response)); write(new_socket, mime, strlen(mime)); response = "; charset=UTF-8\r\n\r\n"; write(new_socket, response, strlen(response)); if (filesize) write(new_socket, buffer, filesize); } else if (bytesRead == 0) { printf("EOF\n"); continue; } else { perror("Error reading buffer, nothing read...\n"); } done: close(new_socket); continue; bad_request: printf("Bad request!\n"); send_bad_request(new_socket); close(new_socket); } } int main() { // Make sure we can handle writes to a dead client without a signal handler signal(SIGPIPE, SIG_IGN); struct Server server = serverConstructor(8080, launch); server.launch(&server); return 0; }