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| extern char ** environ; | |
| // read NDJSON lines from a child pipe, calling on_line per line until `running` clears, EOF/error, or on_line returns false. | |
| // polled, not blocking: a grandchild can inherit the pipe's write end and hold it open (terminate() kills only the direct child), so a blocking read would hang teardown on an EOF that never comes. | |
| static void mcp_pump_ndjson(FILE * f, std::atomic<bool> & running, | |
| const std::function<bool(std::string &&)> & on_line) { | |
| if (!f) { | |
| return; | |
| } | |
| const int poll_ms = 50; | |
| const size_t max_line = 8 * 1024 * 1024; // drop any single NDJSON line larger than this, so a child that never emits '\n' can't grow buf without bound | |
| HANDLE h = (HANDLE) _get_osfhandle(_fileno(f)); | |
| int fd = fileno(f); | |
| int fl = fcntl(fd, F_GETFL, 0); | |
| if (fl >= 0) { | |
| fcntl(fd, F_SETFL, fl | O_NONBLOCK); | |
| } | |
| std::string buf; | |
| bool skipping = false; // discarding an over-long line until its terminating newline | |
| char chunk[4096]; | |
| while (running.load()) { | |
| size_t n = 0; | |
| DWORD avail = 0; | |
| if (!PeekNamedPipe(h, NULL, 0, NULL, &avail, NULL)) { | |
| break; // pipe broken / child gone | |
| } | |
| if (avail == 0) { | |
| std::this_thread::sleep_for(std::chrono::milliseconds(poll_ms)); | |
| continue; | |
| } | |
| DWORD to_read = avail < (DWORD) sizeof(chunk) ? avail : (DWORD) sizeof(chunk); | |
| DWORD got = 0; | |
| if (!ReadFile(h, chunk, to_read, &got, NULL) || got == 0) { | |
| break; | |
| } | |
| n = (size_t) got; | |
| struct pollfd pfd; | |
| pfd.fd = fd; | |
| pfd.events = POLLIN; | |
| pfd.revents = 0; | |
| int pr = poll(&pfd, 1, poll_ms); | |
| if (pr < 0) { | |
| if (errno == EINTR) { | |
| continue; | |
| } | |
| break; | |
| } | |
| if (pr == 0) { | |
| continue; // timeout -> re-check running | |
| } | |
| if (pfd.revents & (POLLERR | POLLNVAL)) { | |
| break; | |
| } | |
| ssize_t r = read(fd, chunk, sizeof(chunk)); | |
| if (r < 0) { | |
| if (errno == EINTR || errno == EAGAIN || errno == EWOULDBLOCK) { | |
| continue; | |
| } | |
| break; | |
| } | |
| if (r == 0) { | |
| break; // EOF: child (and any pipe writers) closed the stream | |
| } | |
| n = (size_t) r; | |
| buf.append(chunk, n); | |
| // resync after an over-long, unterminated line: discard bytes until the next newline | |
| if (skipping) { | |
| size_t nl = buf.find('\n'); | |
| if (nl == std::string::npos) { | |
| if (buf.size() > max_line) { | |
| buf.clear(); // stay bounded while waiting for a terminator | |
| } | |
| continue; | |
| } | |
| buf.erase(0, nl + 1); | |
| skipping = false; | |
| } | |
| size_t pos; | |
| while ((pos = buf.find('\n')) != std::string::npos) { | |
| std::string line = buf.substr(0, pos); | |
| buf.erase(0, pos + 1); | |
| if (!line.empty() && line.back() == '\r') { | |
| line.pop_back(); | |
| } | |
| if (line.empty()) { | |
| continue; | |
| } | |
| if (!on_line(std::move(line))) { | |
| return; | |
| } | |
| } | |
| // a partial line already larger than the cap and still no newline: drop it to avoid unbounded growth | |
| if (buf.size() > max_line) { | |
| SRV_WRN("MCP: dropping oversized line (> %zu bytes) from child pipe\n", max_line); | |
| buf.clear(); | |
| skipping = true; | |
| } | |
| } | |
| } | |
| // | |
| // server_mcp_server_config | |
| // | |
| std::vector<server_mcp_server_config> server_mcp_server_config::parse_from_json(const std::string & json_str) { | |
| return parse_cursor_format(json::parse(json_str)); | |
| } | |
| std::vector<server_mcp_server_config> server_mcp_server_config::parse_cursor_format(const json & j) { | |
| std::vector<server_mcp_server_config> result; | |
| if (!j.contains("mcpServers") || !j.at("mcpServers").is_object()) { | |
| return result; | |
| } | |
| for (const auto & [name, cfg] : j.at("mcpServers").items()) { | |
| server_mcp_server_config sc; | |
| sc.name = name; | |
| sc.command = cfg.value("command", std::string()); | |
| sc.cwd = cfg.value("cwd", std::string()); | |
| sc.timeout_ms = cfg.value("timeout_ms", sc.timeout_ms); | |
| if (cfg.contains("args") && cfg.at("args").is_array()) { | |
| for (const auto & a : cfg.at("args")) { | |
| sc.args.push_back(a.get<std::string>()); | |
| } | |
| } | |
| if (cfg.contains("env") && cfg.at("env").is_object()) { | |
| for (const auto & [k, v] : cfg.at("env").items()) { | |
| sc.env[k] = v.get<std::string>(); | |
| } | |
| } | |
| if (sc.command.empty()) { | |
| SRV_WRN("MCP server '%s' has no command, skipping\n", name.c_str()); | |
| continue; | |
| } | |
| result.push_back(std::move(sc)); | |
| } | |
| return result; | |
| } | |
| // | |
| // server_mcp_transport | |
| // | |
| static constexpr const char * MCP_PROTOCOL_VERSION = "2024-11-05"; | |
| static std::string rpc_error_message(const json & resp) { | |
| if (resp.contains("error")) { | |
| const json & e = resp.at("error"); | |
| if (e.is_object()) { | |
| return e.value("message", "unknown error"); | |
| } | |
| if (e.is_string()) { | |
| return e.get<std::string>(); | |
| } | |
| } | |
| return "unknown error"; | |
| } | |
| // normalize an MCP tools/call result to the /tools contract (see README-dev.md): | |
| // concat text parts of result.content[], and surface an isError result | |
| static json mcp_result_to_response(const json & result) { | |
| std::string text; | |
| if (result.contains("content") && result.at("content").is_array()) { | |
| for (const auto & part : result.at("content")) { | |
| if (part.is_object() && part.value("type", "") == "text") { | |
| if (!text.empty()) { | |
| text += "\n"; | |
| } | |
| text += part.value("text", ""); | |
| } | |
| } | |
| } | |
| if (result.is_object() && result.value("isError", false)) { | |
| return {{"error", text.empty() ? "MCP tool returned an error" : text}}; | |
| } | |
| return {{"plain_text_response", text}}; | |
| } | |
| json server_mcp_transport::send_rpc(const json & request, const std::function<bool()> & should_stop) { | |
| if (!to_server.write(request.dump())) { | |
| return {{"error", {{"code", -32603}, {"message", "transport closed"}}}}; | |
| } | |
| const bool has_id = request.contains("id"); | |
| const auto deadline = std::chrono::steady_clock::now() + std::chrono::milliseconds(timeout_ms); | |
| auto stop = [&]() { | |
| return (should_stop && should_stop()) || std::chrono::steady_clock::now() >= deadline; | |
| }; | |
| std::string frame; | |
| while (from_server.read(frame, stop, false)) { | |
| json reply; | |
| try { | |
| reply = json::parse(frame); | |
| } catch (...) { | |
| if (std::chrono::steady_clock::now() >= deadline) { | |
| break; | |
| } | |
| continue; // skip malformed frame | |
| } | |
| // no id: a notification. mismatched id: a stale reply from a timed-out request (ids are monotonic, never a future one) | |
| if (!has_id || (reply.contains("id") && reply.at("id") == request.at("id"))) { | |
| return reply; | |
| } | |
| if (std::chrono::steady_clock::now() >= deadline) { | |
| break; // a flood of notifications must not outrun the deadline | |
| } | |
| } | |
| if (should_stop && should_stop()) { | |
| return {{"error", {{"code", -32603}, {"message", "cancelled"}}}}; | |
| } | |
| if (std::chrono::steady_clock::now() >= deadline) { | |
| return {{"error", {{"code", -32603}, {"message", "request timed out"}}}}; | |
| } | |
| return {{"error", {{"code", -32603}, {"message", "transport closed"}}}}; | |
| } | |
| bool server_mcp_transport::ensure_init(const std::function<bool()> & should_stop) { | |
| if (initialized) { | |
| return true; | |
| } | |
| json init_req = { | |
| {"jsonrpc", "2.0"}, | |
| {"id", next_id++}, | |
| {"method", "initialize"}, | |
| {"params", { | |
| {"protocolVersion", MCP_PROTOCOL_VERSION}, | |
| {"capabilities", json::object()}, | |
| {"clientInfo", {{"name", "llama.cpp"}, {"version", "1.0"}}}, | |
| }}, | |
| }; | |
| json resp = send_rpc(init_req, should_stop); | |
| if (!resp.contains("result")) { | |
| last_error = "initialize failed: " + rpc_error_message(resp); | |
| return false; | |
| } | |
| // notifications/initialized: no id, no reply expected | |
| json notif = {{"jsonrpc", "2.0"}, {"method", "notifications/initialized"}}; | |
| to_server.write(notif.dump()); | |
| initialized = true; | |
| return true; | |
| } | |
| std::vector<server_mcp_tool_def> server_mcp_transport::list_tools(const std::function<bool()> & should_stop) { | |
| std::lock_guard<std::mutex> lock(rpc_mutex); | |
| if (!ensure_init(should_stop)) { | |
| return {}; | |
| } | |
| if (!tools.empty()) { | |
| return tools; | |
| } | |
| json req = {{"jsonrpc", "2.0"}, {"id", next_id++}, {"method", "tools/list"}}; | |
| json resp = send_rpc(req, should_stop); | |
| if (!resp.contains("result")) { | |
| last_error = "tools/list failed: " + rpc_error_message(resp); | |
| return {}; | |
| } | |
| const json & result = resp.at("result"); | |
| if (result.contains("tools") && result.at("tools").is_array()) { | |
| for (const auto & t : result.at("tools")) { | |
| server_mcp_tool_def def; | |
| def.server_name = name; | |
| def.name = t.value("name", ""); | |
| def.description = t.value("description", ""); | |
| if (t.contains("inputSchema")) { | |
| def.input_schema = t.at("inputSchema"); | |
| } | |
| tools.push_back(std::move(def)); | |
| } | |
| } | |
| return tools; | |
| } | |
| json server_mcp_transport::call_tool(const std::string & tool_name, | |
| const json & arguments, | |
| const std::function<bool()> & should_stop) { | |
| std::lock_guard<std::mutex> lock(rpc_mutex); | |
| if (!ensure_init(should_stop)) { | |
| return {{"error", last_error}}; | |
| } | |
| json req = { | |
| {"jsonrpc", "2.0"}, | |
| {"id", next_id++}, | |
| {"method", "tools/call"}, | |
| {"params", {{"name", tool_name}, {"arguments", arguments}}}, | |
| }; | |
| json resp = send_rpc(req, should_stop); | |
| if (resp.contains("error")) { | |
| return {{"error", rpc_error_message(resp)}}; | |
| } | |
| if (resp.contains("result")) { | |
| return mcp_result_to_response(resp.at("result")); | |
| } | |
| return {{"error", "invalid response from MCP server"}}; | |
| } | |
| // | |
| // server_mcp_stdio | |
| // | |
| struct server_mcp_stdio::process_handle { | |
| common_subproc sp; | |
| FILE * in = nullptr; // child stdin | |
| FILE * out = nullptr; // child stdout | |
| FILE * err = nullptr; // child stderr | |
| }; | |
| // config strings are UTF-8 (from JSON) and subprocess.h converts them with CP_UTF8, so inputs must be UTF-8, not the active code page | |
| static std::wstring windows_utf8_to_wide(const std::string & s) { | |
| if (s.empty()) { | |
| return std::wstring(); | |
| } | |
| int n = MultiByteToWideChar(CP_UTF8, 0, s.data(), (int) s.size(), NULL, 0); | |
| if (n <= 0) { | |
| return std::wstring(); | |
| } | |
| std::wstring w((size_t) n, L'\0'); | |
| MultiByteToWideChar(CP_UTF8, 0, s.data(), (int) s.size(), &w[0], n); | |
| return w; | |
| } | |
| static std::string windows_wide_to_utf8(const wchar_t * s, int len /* -1 for NUL-terminated */) { | |
| int n = WideCharToMultiByte(CP_UTF8, 0, s, len, NULL, 0, NULL, NULL); | |
| if (n <= 0) { | |
| return std::string(); | |
| } | |
| std::string out((size_t) n, '\0'); | |
| WideCharToMultiByte(CP_UTF8, 0, s, len, &out[0], n, NULL, NULL); | |
| if (len == -1 && !out.empty() && out.back() == '\0') { | |
| out.pop_back(); // drop the terminator WideCharToMultiByte counts for -1 | |
| } | |
| return out; | |
| } | |
| static std::string mcp_resolve_command(const std::string & command) { | |
| // For Windows: make sure we handle ".exe" correctly, as well as UTF-8 | |
| std::wstring wcmd = windows_utf8_to_wide(command); | |
| wchar_t buf[MAX_PATH * 4]; | |
| const DWORD cap = (DWORD) (sizeof(buf) / sizeof(buf[0])); | |
| auto search = [&](const wchar_t * ext) -> std::string { | |
| DWORD n = SearchPathW(NULL, wcmd.c_str(), ext, cap, buf, NULL); | |
| return (n > 0 && n < cap) ? windows_wide_to_utf8(buf, (int) n) : std::string(); | |
| }; | |
| std::string found = search(NULL); // exact path / already-extensioned / .exe on PATH | |
| if (!found.empty()) { | |
| return found; | |
| } | |
| std::wstring pathext; | |
| DWORD need = GetEnvironmentVariableW(L"PATHEXT", NULL, 0); | |
| if (need > 0) { | |
| pathext.resize(need); | |
| DWORD got = GetEnvironmentVariableW(L"PATHEXT", &pathext[0], need); | |
| pathext.resize(got); | |
| } | |
| if (pathext.empty()) { | |
| pathext = L".COM;.EXE;.BAT;.CMD"; | |
| } | |
| for (size_t start = 0; start <= pathext.size();) { | |
| size_t sep = pathext.find(L';', start); | |
| std::wstring ext = pathext.substr(start, sep == std::wstring::npos ? std::wstring::npos : sep - start); | |
| if (!ext.empty()) { | |
| found = search(ext.c_str()); | |
| if (!found.empty()) { | |
| return found; | |
| } | |
| } | |
| if (sep == std::wstring::npos) { | |
| break; | |
| } | |
| start = sep + 1; | |
| } | |
| return command; // give up and let subprocess.h report the spawn error | |
| return command; | |
| } | |
| static std::vector<std::string> mcp_parent_env() { | |
| std::vector<std::string> env; | |
| LPWCH block = GetEnvironmentStringsW(); | |
| if (block) { | |
| for (LPWCH e = block; *e; e += wcslen(e) + 1) { | |
| env.emplace_back(windows_wide_to_utf8(e, -1)); | |
| } | |
| FreeEnvironmentStringsW(block); | |
| } | |
| if (environ) { | |
| for (char ** e = environ; *e; ++e) { | |
| env.emplace_back(*e); | |
| } | |
| } | |
| return env; | |
| } | |
| // parent env with the config overrides applied, in "KEY=VALUE" form | |
| static std::vector<std::string> mcp_build_env(const std::map<std::string, std::string> & overrides) { | |
| std::vector<std::string> env; | |
| for (auto & e : mcp_parent_env()) { | |
| size_t eq = e.find('='); | |
| std::string key = eq == std::string::npos ? e : e.substr(0, eq); | |
| if (overrides.find(key) == overrides.end()) { | |
| env.push_back(e); | |
| } | |
| } | |
| for (auto & [k, v] : overrides) { | |
| env.push_back(k + "=" + v); | |
| } | |
| return env; | |
| } | |
| server_mcp_stdio::server_mcp_stdio(const server_mcp_server_config & config) : config(config) { | |
| name = config.name; | |
| timeout_ms = config.timeout_ms; | |
| // bound the reply queue: send_rpc only drains during a call, so unsolicited notifications would otherwise grow it without limit | |
| from_server.max_size = 65536; | |
| } | |
| server_mcp_stdio::~server_mcp_stdio() { | |
| join_pumps(); | |
| } | |
| bool server_mcp_stdio::start() { | |
| std::vector<std::string> argv_s; | |
| argv_s.push_back(mcp_resolve_command(config.command)); | |
| argv_s.insert(argv_s.end(), config.args.begin(), config.args.end()); | |
| int options = subprocess_option_no_window | subprocess_option_search_user_path; | |
| std::vector<std::string> envp_s; | |
| if (config.env.empty()) { | |
| options |= subprocess_option_inherit_environment; | |
| } else { | |
| envp_s = mcp_build_env(config.env); | |
| } | |
| auto handle = std::make_unique<process_handle>(); | |
| bool ok = handle->sp.create(argv_s, options, envp_s, config.cwd.empty() ? nullptr : config.cwd.c_str()); | |
| if (!ok) { | |
| SRV_WRN("MCP '%s': failed to spawn '%s'\n", config.name.c_str(), config.command.c_str()); | |
| return false; | |
| } | |
| handle->in = handle->sp.stdin_file(); | |
| handle->out = handle->sp.stdout_file(); | |
| handle->err = handle->sp.stderr_file(); | |
| proc = std::move(handle); | |
| running.store(true); | |
| reader = std::thread([this] { reader_loop(); }); | |
| writer = std::thread([this] { writer_loop(); }); | |
| errlog = std::thread([this] { errlog_loop(); }); | |
| return true; | |
| } | |
| void server_mcp_stdio::close() { | |
| join_pumps(); | |
| } | |
| bool server_mcp_stdio::is_alive() const { | |
| return running.load(); | |
| } | |
| std::string server_mcp_stdio::diagnostics() { | |
| std::string out; | |
| { | |
| std::lock_guard<std::mutex> lock(rpc_mutex); // last_error is written by send_rpc's callers | |
| out = last_error; | |
| } | |
| std::lock_guard<std::mutex> lk(err_mu); | |
| if (!err_tail.empty()) { | |
| if (!out.empty()) { | |
| out += "; "; | |
| } | |
| out += "last stderr: " + err_tail; | |
| } | |
| return out; | |
| } | |
| void server_mcp_stdio::reader_loop() { | |
| mcp_pump_ndjson(proc->out, running, [this](std::string && line) { | |
| return from_server.write(std::move(line)); // false => consumer gone, stop | |
| }); | |
| running.store(false); | |
| to_server.close_write(); // stop the writer | |
| from_server.close_write(); // EOF to any waiting caller | |
| } | |
| // write all of `data` to child stdin, non-blocking and polled so teardown never hangs (a grandchild can hold the read end of a full pipe open). returns false on error/close/shutdown. | |
| static bool mcp_write_all(FILE * f, const std::string & data, std::atomic<bool> & running) { | |
| if (!f) { | |
| return false; | |
| } | |
| size_t total = 0; | |
| HANDLE h = (HANDLE) _get_osfhandle(_fileno(f)); | |
| DWORD nowait = PIPE_NOWAIT; | |
| SetNamedPipeHandleState(h, &nowait, NULL, NULL); | |
| while (total < data.size() && running.load()) { | |
| DWORD written = 0; | |
| BOOL ok = WriteFile(h, data.data() + total, (DWORD) (data.size() - total), &written, NULL); | |
| if (ok && written > 0) { | |
| total += written; | |
| continue; | |
| } | |
| if (!ok) { | |
| DWORD err = GetLastError(); | |
| if (err != ERROR_NO_DATA && err != ERROR_PIPE_BUSY) { | |
| return false; | |
| } | |
| } | |
| // backpressure (pipe full) is rare for small JSON-RPC frames; sleep rather than spin. | |
| // no writable-wait exists for a PIPE_NOWAIT anonymous pipe, so this polls like the POSIX poll() path. | |
| std::this_thread::sleep_for(std::chrono::milliseconds(10)); | |
| } | |
| int fd = fileno(f); | |
| int fl = fcntl(fd, F_GETFL, 0); | |
| if (fl >= 0) { | |
| fcntl(fd, F_SETFL, fl | O_NONBLOCK); | |
| } | |
| while (total < data.size() && running.load()) { | |
| ssize_t n = write(fd, data.data() + total, data.size() - total); | |
| if (n > 0) { | |
| total += (size_t) n; | |
| continue; | |
| } | |
| if (n == 0) { | |
| return false; | |
| } | |
| if (errno == EINTR) { | |
| continue; | |
| } | |
| if (errno != EAGAIN && errno != EWOULDBLOCK) { | |
| return false; | |
| } | |
| struct pollfd pfd; | |
| pfd.fd = fd; | |
| pfd.events = POLLOUT; | |
| pfd.revents = 0; | |
| int pr = poll(&pfd, 1, 50); | |
| if (pr < 0) { | |
| if (errno == EINTR) { | |
| continue; | |
| } | |
| return false; | |
| } | |
| if (pfd.revents & (POLLERR | POLLNVAL | POLLHUP)) { | |
| return false; | |
| } | |
| } | |
| return total == data.size(); | |
| } | |
| void server_mcp_stdio::writer_loop() { | |
| auto should_stop = [this] { return !running.load(); }; | |
| std::string msg; | |
| while (to_server.read(msg, should_stop)) { | |
| msg.push_back('\n'); | |
| if (!mcp_write_all(proc->in, msg, running)) { | |
| break; // child gone or shutting down | |
| } | |
| } | |
| running.store(false); | |
| to_server.close_read(); // fail fast on any further send_rpc write | |
| from_server.close_write(); // wake any caller waiting for a reply | |
| } | |
| void server_mcp_stdio::errlog_loop() { | |
| static constexpr size_t ERR_TAIL_MAX = 4096; | |
| // drain stderr (an undrained pipe blocks the child): | |
| // log it, and keep a bounded tail for reporting when the server dies | |
| mcp_pump_ndjson(proc->err, running, [this](std::string && line) { | |
| SRV_DBG("MCP '%s' stderr: %s\n", name.c_str(), line.c_str()); | |
| std::lock_guard<std::mutex> lk(err_mu); | |
| err_tail += line; | |
| err_tail += '\n'; | |
| if (err_tail.size() > ERR_TAIL_MAX) { | |
| err_tail.erase(0, err_tail.size() - ERR_TAIL_MAX); | |
| } | |
| return true; | |
| }); | |
| } | |
| void server_mcp_stdio::join_pumps() { | |
| if (!proc) { | |
| return; | |
| } | |
| running.store(false); | |
| to_server.close_write(); // wake the writer if it waits for a message | |
| from_server.close_write(); // wake any caller waiting for a reply | |
| proc->sp.terminate(); // child death unblocks the blocked fread/fwrite | |
| if (writer.joinable()) writer.join(); | |
| if (reader.joinable()) reader.join(); | |
| if (errlog.joinable()) errlog.join(); | |
| proc->sp.join(); // reap the child: never waiting would leave the pid a zombie for the process lifetime | |
| proc.reset(); | |
| } | |
| // | |
| // server_mcp | |
| // | |
| static constexpr int MCP_COOLDOWN_SECONDS = 5; | |
| static constexpr int MCP_WARMUP_TIMEOUT_SECONDS = 10; // cap per-server tool discovery at startup | |
| server_mcp::~server_mcp() { | |
| shutdown(); | |
| std::vector<std::shared_ptr<server_mcp_transport>> to_close; | |
| { | |
| std::lock_guard<std::mutex> lock(mutex); | |
| for (auto & [name, t] : transports) { | |
| to_close.push_back(std::move(t)); | |
| } | |
| transports.clear(); | |
| } | |
| for (auto & t : to_close) { | |
| t->close(); | |
| } | |
| } | |
| std::shared_ptr<server_mcp_transport> server_mcp::create_transport(const server_mcp_server_config & cfg) { | |
| return std::make_shared<server_mcp_stdio>(cfg); | |
| } | |
| void server_mcp::shutdown() { | |
| stopping.store(true); | |
| } | |
| const server_mcp_server_config * server_mcp::find_config(const std::string & name) const { | |
| for (const auto & c : configs) { | |
| if (c.name == name) { | |
| return &c; | |
| } | |
| } | |
| return nullptr; | |
| } | |
| void server_mcp::start(const common_params & params) { | |
| auto append = [this](const std::string & json_str) { | |
| try { | |
| auto parsed = server_mcp_server_config::parse_from_json(json_str); | |
| if (parsed.empty()) { | |
| SRV_WRN("%s", "MCP config: no servers found in JSON\n"); | |
| } | |
| for (auto & p : parsed) { | |
| // names must be unique across both config sources: get_or_create / find_config key on the name | |
| if (find_config(p.name)) { | |
| SRV_WRN("MCP config: duplicate server name '%s', skipping\n", p.name.c_str()); | |
| continue; | |
| } | |
| configs.push_back(std::move(p)); | |
| } | |
| } catch (const std::exception & e) { | |
| throw std::runtime_error(std::string("failed to parse MCP config JSON: ") + e.what()); | |
| } | |
| }; | |
| if (!params.mcp_servers_config.empty()) { | |
| std::ifstream f = fs_open_ifstream(params.mcp_servers_config, std::ios::in); | |
| if (!f) { | |
| throw std::runtime_error("failed to open MCP config file: " + params.mcp_servers_config); | |
| } | |
| std::stringstream ss; | |
| ss << f.rdbuf(); | |
| append(ss.str()); | |
| } | |
| if (!params.mcp_servers_json.empty()) { | |
| append(params.mcp_servers_json); | |
| } | |
| if (configs.empty()) { | |
| return; | |
| } | |
| std::vector<server_mcp_tool_def> discovered; | |
| for (const auto & cfg : configs) { | |
| auto t = create_transport(cfg); | |
| if (!t->start()) { | |
| SRV_WRN("MCP warmup: failed to spawn '%s': %s\n", cfg.name.c_str(), t->diagnostics().c_str()); | |
| continue; | |
| } | |
| // bound warmup per server so an unresponsive one can't stall startup for the full per-call timeout | |
| const auto deadline = std::chrono::steady_clock::now() + std::chrono::seconds(MCP_WARMUP_TIMEOUT_SECONDS); | |
| auto should_stop = [this, deadline]() { | |
| return stopping.load() || std::chrono::steady_clock::now() >= deadline; | |
| }; | |
| auto tools = t->list_tools(should_stop); | |
| SRV_INF("MCP warmup: '%s' discovered %zu tools\n", cfg.name.c_str(), tools.size()); | |
| discovered.insert(discovered.end(), tools.begin(), tools.end()); | |
| t->close(); | |
| } | |
| std::lock_guard<std::mutex> lock(mutex); | |
| registry.swap(discovered); | |
| } | |
| std::vector<server_mcp_tool_def> server_mcp::list_tools() const { | |
| std::lock_guard<std::mutex> lock(mutex); | |
| return registry; | |
| } | |
| json server_mcp::call_tool(const std::string & server_name, | |
| const std::string & tool_name, | |
| const json & arguments, | |
| const std::function<bool()> & should_stop) { | |
| auto transport = get_or_create(server_name); | |
| if (!transport) { | |
| return {{"error", "MCP server unavailable: " + server_name}}; | |
| } | |
| auto stop = [this, &should_stop]() { | |
| return stopping.load() || (should_stop && should_stop()); | |
| }; | |
| return transport->call_tool(tool_name, arguments, stop); | |
| } | |
| std::shared_ptr<server_mcp_transport> server_mcp::get_or_create(const std::string & name) { | |
| std::vector<std::shared_ptr<server_mcp_transport>> to_close; // closed after unlock | |
| std::shared_ptr<server_mcp_transport> result; | |
| { | |
| std::lock_guard<std::mutex> lock(mutex); | |
| if (stopping.load()) { | |
| return nullptr; | |
| } | |
| auto now = std::chrono::steady_clock::now(); | |
| auto dead_it = dead_servers.find(name); | |
| if (dead_it != dead_servers.end()) { | |
| if (now < dead_it->second) { | |
| return nullptr; | |
| } | |
| dead_servers.erase(dead_it); | |
| } | |
| auto it = transports.find(name); | |
| if (it != transports.end()) { | |
| if (it->second->is_alive()) { | |
| return it->second; | |
| } | |
| SRV_WRN("MCP '%s' is no longer alive: %s\n", name.c_str(), it->second->diagnostics().c_str()); | |
| to_close.push_back(std::move(it->second)); | |
| transports.erase(it); | |
| } | |
| const server_mcp_server_config * cfg = find_config(name); | |
| if (cfg) { | |
| auto fresh = create_transport(*cfg); | |
| if (fresh->start() && fresh->is_alive()) { | |
| transports[name] = fresh; | |
| result = fresh; | |
| } else { | |
| SRV_WRN("MCP '%s': failed to start: %s\n", name.c_str(), fresh->diagnostics().c_str()); | |
| to_close.push_back(std::move(fresh)); | |
| dead_servers[name] = now + std::chrono::seconds(MCP_COOLDOWN_SECONDS); | |
| } | |
| } | |
| } | |
| for (auto & t : to_close) { | |
| t->close(); // blocking call, no leaks | |
| } | |
| return result; | |
| } | |