+ // See if there's data from the TLS library to write.
+ if (client->tls_data_to_send == nullptr) {
+ client->tls_data_to_send = tls_get_write_buffer(client->tls_context, &client->tls_data_left_to_send);
+ if (client->tls_data_to_send == nullptr) {
+ // Really no data to send.
+ return false;
+ }
+ }
+
+send_data_again:
+ int ret;
+ do {
+ ret = write(client->sock, client->tls_data_to_send, client->tls_data_left_to_send);
+ } while (ret == -1 && errno == EINTR);
+ assert(ret < 0 || size_t(ret) <= client->tls_data_left_to_send);
+
+ if (ret == -1 && errno == EAGAIN) {
+ // We're out of socket space, so now we're at the “low edge” of epoll's
+ // edge triggering. epoll will tell us when there is more room, so for now,
+ // just return.
+ // This is postcondition #4.
+ return true;
+ }
+ if (ret == -1) {
+ // Error! Postcondition #1.
+ log_perror("write");
+ close_client(client);
+ return true;
+ }
+ if (ret > 0 && size_t(ret) == client->tls_data_left_to_send) {
+ // All data has been sent, so we don't need to go to sleep.
+ tls_buffer_clear(client->tls_context);
+ client->tls_data_to_send = nullptr;
+ return false;
+ }
+
+ // More data to send, so try again.
+ client->tls_data_to_send += ret;
+ client->tls_data_left_to_send -= ret;
+ goto send_data_again;
+}
+
+int Server::read_nontls_data(Client *client, char *buf, size_t max_size)
+{
+ int ret;
+ do {
+ ret = read(client->sock, buf, max_size);
+ } while (ret == -1 && errno == EINTR);
+
+ if (ret == -1 && errno == EAGAIN) {
+ // No more data right now. Nothing to do.
+ // This is postcondition #2.
+ return -1;
+ }
+ if (ret == -1) {
+ log_perror("read");
+ close_client(client);
+ return -1;
+ }
+ if (ret == 0) {
+ // OK, the socket is closed.
+ close_client(client);
+ return -1;
+ }
+
+ return ret;
+}
+
+int Server::read_tls_data(Client *client, char *buf, size_t max_size)
+{
+read_again:
+ int ret;
+ do {
+ ret = read(client->sock, buf, max_size);
+ } while (ret == -1 && errno == EINTR);
+
+ if (ret == -1 && errno == EAGAIN) {
+ // No more data right now. Nothing to do.
+ // This is postcondition #2.
+ return -1;
+ }
+ if (ret == -1) {
+ log_perror("read");
+ close_client(client);
+ return -1;
+ }
+ if (ret == 0) {
+ // OK, the socket is closed.
+ close_client(client);
+ return -1;
+ }
+
+ // Give it to the TLS library.
+ int err = tls_consume_stream(client->tls_context, reinterpret_cast<const unsigned char *>(buf), ret, nullptr);
+ if (err < 0) {
+ log_tls_error("tls_consume_stream", err);
+ close_client(client);
+ return -1;
+ }
+ if (err == 0) {
+ // Not consumed any data. See if we can read more.
+ goto read_again;
+ }
+
+ // Read any decrypted data available for us. (We can reuse buf, since it's free now.)
+ ret = tls_read(client->tls_context, reinterpret_cast<unsigned char *>(buf), max_size);
+ if (ret == 0) {
+ // No decrypted data for us yet, but there might be some more handshaking
+ // to send. Do that if needed, then look for more data.
+ if (send_pending_tls_data(client)) {
+ // send_pending_tls_data() hit postconditions #1 or #4.
+ return -1;
+ }
+ goto read_again;
+ }
+ if (ret < 0) {
+ log_tls_error("tls_read", ret);
+ close_client(client);
+ return -1;
+ }
+
+ assert(ret > 0);
+ return ret;
+}
+
+// See if there's some data we've lost. Ideally, we should drop to a block boundary,
+// but resync will be the mux's problem.
+void Server::skip_lost_data(Client *client)
+{
+ Stream *stream = client->stream;
+ if (stream == nullptr) {
+ return;
+ }
+ size_t bytes_to_send = stream->bytes_received - client->stream_pos;
+ if (bytes_to_send > stream->backlog_size) {
+ size_t bytes_lost = bytes_to_send - stream->backlog_size;
+ client->bytes_lost += bytes_lost;
+ ++client->num_loss_events;
+ if (!client->close_after_response) {
+ assert(client->stream_pos_end != Client::STREAM_POS_NO_END);
+
+ // We've already sent a Content-length, so we can't just skip data.
+ // Close the connection immediately and hope the other side
+ // is able to figure out that there was an error and it needs to skip.
+ client->close_after_response = true;
+ client->stream_pos = client->stream_pos_end;
+ } else {
+ client->stream_pos = stream->bytes_received - stream->backlog_size;
+ }
+ }
+}
+
+int Server::parse_request(Client *client)
+{
+ vector<string> lines = split_lines(client->request);
+ client->request.clear();
+ if (lines.empty()) {
+ return 400; // Bad request (empty).
+ }
+
+ // Parse the headers, for logging purposes.
+ // TODO: Case-insensitivity.
+ multimap<string, string> headers = extract_headers(lines, client->remote_addr);
+ multimap<string, string>::const_iterator referer_it = headers.find("Referer");
+ if (referer_it != headers.end()) {
+ client->referer = referer_it->second;
+ }
+ multimap<string, string>::const_iterator user_agent_it = headers.find("User-Agent");
+ if (user_agent_it != headers.end()) {
+ client->user_agent = user_agent_it->second;
+ }
+
+ vector<string> request_tokens = split_tokens(lines[0]);
+ if (request_tokens.size() < 3) {
+ return 400; // Bad request (empty).
+ }
+ if (request_tokens[0] != "GET") {
+ return 400; // Should maybe be 405 instead?
+ }
+
+ string url = request_tokens[1];
+ client->url = url;
+ if (url.size() > 8 && url.find("?backlog") == url.size() - 8) {
+ client->stream_pos = Client::STREAM_POS_AT_START;
+ url = url.substr(0, url.size() - 8);
+ } else {
+ size_t pos = url.find("?frag=");
+ if (pos != string::npos) {
+ // Parse an endpoint of the type /stream.mp4?frag=1234-5678.
+ const char *ptr = url.c_str() + pos + 6;
+
+ // "?frag=header" is special.
+ if (strcmp(ptr, "header") == 0) {
+ client->stream_pos = Client::STREAM_POS_HEADER_ONLY;
+ client->stream_pos_end = -1;
+ } else {
+ char *endptr;
+ long long frag_start = strtol(ptr, &endptr, 10);
+ if (ptr == endptr || frag_start < 0 || frag_start == LLONG_MAX) {
+ return 400; // Bad request.
+ }
+ if (*endptr != '-') {
+ return 400; // Bad request.
+ }
+ ptr = endptr + 1;
+
+ long long frag_end = strtol(ptr, &endptr, 10);
+ if (ptr == endptr || frag_end < frag_start || frag_end == LLONG_MAX) {
+ return 400; // Bad request.
+ }
+
+ if (*endptr != '\0') {
+ return 400; // Bad request.
+ }
+
+ client->stream_pos = frag_start;
+ client->stream_pos_end = frag_end;
+ }
+ url = url.substr(0, pos);
+ } else {
+ client->stream_pos = -1;
+ client->stream_pos_end = -1;
+ }
+ }
+
+ // Figure out if we're supposed to close the socket after we've delivered the response.
+ string protocol = request_tokens[2];
+ if (protocol.find("HTTP/") != 0) {
+ return 400; // Bad request.
+ }
+ client->close_after_response = false;
+ client->http_11 = true;
+ if (protocol == "HTTP/1.0") {
+ // No persistent connections.
+ client->close_after_response = true;
+ client->http_11 = false;
+ } else {
+ multimap<string, string>::const_iterator connection_it = headers.find("Connection");
+ if (connection_it != headers.end() && connection_it->second == "close") {
+ client->close_after_response = true;
+ }
+ }
+
+ map<string, int>::const_iterator stream_url_map_it = stream_url_map.find(url);
+ if (stream_url_map_it == stream_url_map.end()) {
+ map<string, string>::const_iterator ping_url_map_it = ping_url_map.find(url);
+ if (ping_url_map_it == ping_url_map.end()) {
+ return 404; // Not found.
+ } else {
+ return 204; // No error.
+ }
+ }
+
+ Stream *stream = streams[stream_url_map_it->second].get();
+ if (stream->http_header.empty()) {
+ return 503; // Service unavailable.
+ }
+
+ if (client->stream_pos_end == Client::STREAM_POS_NO_END) {
+ // This stream won't end, so we don't have a content-length,
+ // and can just as well tell the client it's Connection: close
+ // (otherwise, we'd have to implement chunking TE for no good reason).
+ client->close_after_response = true;
+ } else {
+ if (stream->encoding == Stream::STREAM_ENCODING_METACUBE) {
+ // This doesn't make any sense, and is hard to implement, too.
+ return 416; // Range not satisfiable.
+ }
+
+ // Check that we have the requested fragment in our backlog.
+ size_t buffer_end = stream->bytes_received;
+ size_t buffer_start = (buffer_end <= stream->backlog_size) ? 0 : buffer_end - stream->backlog_size;
+
+ if (client->stream_pos_end > buffer_end ||
+ client->stream_pos < buffer_start) {
+ return 416; // Range not satisfiable.
+ }
+ }
+
+ client->stream = stream;
+ if (setsockopt(client->sock, SOL_SOCKET, SO_MAX_PACING_RATE, &client->stream->pacing_rate, sizeof(client->stream->pacing_rate)) == -1) {
+ if (client->stream->pacing_rate != ~0U) {
+ log_perror("setsockopt(SO_MAX_PACING_RATE)");
+ }
+ }