server-models.cpp 37 KB

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  1. #include "server-common.h"
  2. #include "server-models.h"
  3. #include "preset.h"
  4. #include "download.h"
  5. #include <cpp-httplib/httplib.h> // TODO: remove this once we use HTTP client from download.h
  6. #include <sheredom/subprocess.h>
  7. #include <functional>
  8. #include <algorithm>
  9. #include <thread>
  10. #include <mutex>
  11. #include <condition_variable>
  12. #include <cstring>
  13. #include <atomic>
  14. #include <chrono>
  15. #include <queue>
  16. #include <filesystem>
  17. #include <cstring>
  18. #ifdef _WIN32
  19. #include <winsock2.h>
  20. #else
  21. #include <sys/socket.h>
  22. #include <netinet/in.h>
  23. #include <arpa/inet.h>
  24. #include <unistd.h>
  25. #endif
  26. #if defined(__APPLE__) && defined(__MACH__)
  27. // macOS: use _NSGetExecutablePath to get the executable path
  28. #include <mach-o/dyld.h>
  29. #include <limits.h>
  30. #endif
  31. #define CMD_ROUTER_TO_CHILD_EXIT "cmd_router_to_child:exit"
  32. #define CMD_CHILD_TO_ROUTER_READY "cmd_child_to_router:ready"
  33. // address for child process, this is needed because router may run on 0.0.0.0
  34. // ref: https://github.com/ggml-org/llama.cpp/issues/17862
  35. #define CHILD_ADDR "127.0.0.1"
  36. static std::filesystem::path get_server_exec_path() {
  37. #if defined(_WIN32)
  38. wchar_t buf[32768] = { 0 }; // Large buffer to handle long paths
  39. DWORD len = GetModuleFileNameW(nullptr, buf, _countof(buf));
  40. if (len == 0 || len >= _countof(buf)) {
  41. throw std::runtime_error("GetModuleFileNameW failed or path too long");
  42. }
  43. return std::filesystem::path(buf);
  44. #elif defined(__APPLE__) && defined(__MACH__)
  45. char small_path[PATH_MAX];
  46. uint32_t size = sizeof(small_path);
  47. if (_NSGetExecutablePath(small_path, &size) == 0) {
  48. // resolve any symlinks to get absolute path
  49. try {
  50. return std::filesystem::canonical(std::filesystem::path(small_path));
  51. } catch (...) {
  52. return std::filesystem::path(small_path);
  53. }
  54. } else {
  55. // buffer was too small, allocate required size and call again
  56. std::vector<char> buf(size);
  57. if (_NSGetExecutablePath(buf.data(), &size) == 0) {
  58. try {
  59. return std::filesystem::canonical(std::filesystem::path(buf.data()));
  60. } catch (...) {
  61. return std::filesystem::path(buf.data());
  62. }
  63. }
  64. throw std::runtime_error("_NSGetExecutablePath failed after buffer resize");
  65. }
  66. #else
  67. char path[FILENAME_MAX];
  68. ssize_t count = readlink("/proc/self/exe", path, FILENAME_MAX);
  69. if (count <= 0) {
  70. throw std::runtime_error("failed to resolve /proc/self/exe");
  71. }
  72. return std::filesystem::path(std::string(path, count));
  73. #endif
  74. }
  75. struct local_model {
  76. std::string name;
  77. std::string path;
  78. std::string path_mmproj;
  79. };
  80. static std::vector<local_model> list_local_models(const std::string & dir) {
  81. if (!std::filesystem::exists(dir) || !std::filesystem::is_directory(dir)) {
  82. throw std::runtime_error(string_format("error: '%s' does not exist or is not a directory\n", dir.c_str()));
  83. }
  84. std::vector<local_model> models;
  85. auto scan_subdir = [&models](const std::string & subdir_path, const std::string & name) {
  86. auto files = fs_list(subdir_path, false);
  87. common_file_info model_file;
  88. common_file_info first_shard_file;
  89. common_file_info mmproj_file;
  90. for (const auto & file : files) {
  91. if (string_ends_with(file.name, ".gguf")) {
  92. if (file.name.find("mmproj") != std::string::npos) {
  93. mmproj_file = file;
  94. } else if (file.name.find("-00001-of-") != std::string::npos) {
  95. first_shard_file = file;
  96. } else {
  97. model_file = file;
  98. }
  99. }
  100. }
  101. // single file model
  102. local_model model{
  103. /* name */ name,
  104. /* path */ first_shard_file.path.empty() ? model_file.path : first_shard_file.path,
  105. /* path_mmproj */ mmproj_file.path // can be empty
  106. };
  107. if (!model.path.empty()) {
  108. models.push_back(model);
  109. }
  110. };
  111. auto files = fs_list(dir, true);
  112. for (const auto & file : files) {
  113. if (file.is_dir) {
  114. scan_subdir(file.path, file.name);
  115. } else if (string_ends_with(file.name, ".gguf")) {
  116. // single file model
  117. std::string name = file.name;
  118. string_replace_all(name, ".gguf", "");
  119. local_model model{
  120. /* name */ name,
  121. /* path */ file.path,
  122. /* path_mmproj */ ""
  123. };
  124. models.push_back(model);
  125. }
  126. }
  127. return models;
  128. }
  129. //
  130. // server_presets
  131. //
  132. server_presets::server_presets(int argc, char ** argv, common_params & base_params, const std::string & presets_path)
  133. : ctx_params(common_params_parser_init(base_params, LLAMA_EXAMPLE_SERVER)) {
  134. if (!presets_path.empty()) {
  135. presets = common_presets_load(presets_path, ctx_params);
  136. SRV_INF("Loaded %zu presets from %s\n", presets.size(), presets_path.c_str());
  137. }
  138. // populate reserved args (will be appended by the router)
  139. for (auto & opt : ctx_params.options) {
  140. if (opt.env == nullptr) {
  141. continue;
  142. }
  143. std::string env = opt.env;
  144. if (env == "LLAMA_ARG_PORT" ||
  145. env == "LLAMA_ARG_HOST" ||
  146. env == "LLAMA_ARG_ALIAS" ||
  147. env == "LLAMA_ARG_API_KEY" ||
  148. env == "LLAMA_ARG_MODELS_DIR" ||
  149. env == "LLAMA_ARG_MODELS_MAX" ||
  150. env == "LLAMA_ARG_MODELS_PRESET" ||
  151. env == "LLAMA_ARG_MODEL" ||
  152. env == "LLAMA_ARG_MMPROJ" ||
  153. env == "LLAMA_ARG_HF_REPO" ||
  154. env == "LLAMA_ARG_NO_MODELS_AUTOLOAD" ||
  155. env == "LLAMA_ARG_SSL_KEY_FILE" ||
  156. env == "LLAMA_ARG_SSL_CERT_FILE") {
  157. control_args[env] = opt;
  158. }
  159. }
  160. // read base args from router's argv
  161. common_params_to_map(argc, argv, LLAMA_EXAMPLE_SERVER, base_args);
  162. // remove any router-controlled args from base_args
  163. for (const auto & cargs : control_args) {
  164. auto it = base_args.find(cargs.second);
  165. if (it != base_args.end()) {
  166. base_args.erase(it);
  167. }
  168. }
  169. }
  170. common_preset server_presets::get_preset(const std::string & name) {
  171. auto it = presets.find(name);
  172. if (it != presets.end()) {
  173. return it->second;
  174. }
  175. return common_preset();
  176. }
  177. void server_presets::render_args(server_model_meta & meta) {
  178. common_preset preset = meta.preset; // copy
  179. // merging 3 kinds of args:
  180. // 1. model-specific args (from preset)
  181. // force removing control args if any
  182. for (auto & cargs : control_args) {
  183. if (preset.options.find(cargs.second) != preset.options.end()) {
  184. SRV_WRN("Preset '%s' contains reserved arg '%s', removing it\n", preset.name.c_str(), cargs.second.args[0]);
  185. preset.options.erase(cargs.second);
  186. }
  187. }
  188. // 2. base args (from router)
  189. // inherit from base args
  190. for (const auto & [arg, value] : base_args) {
  191. preset.options[arg] = value;
  192. }
  193. // 3. control args (from router)
  194. // set control values
  195. preset.options[control_args["LLAMA_ARG_HOST"]] = CHILD_ADDR;
  196. preset.options[control_args["LLAMA_ARG_PORT"]] = std::to_string(meta.port);
  197. preset.options[control_args["LLAMA_ARG_ALIAS"]] = meta.name;
  198. if (meta.in_cache) {
  199. preset.options[control_args["LLAMA_ARG_HF_REPO"]] = meta.name;
  200. } else {
  201. preset.options[control_args["LLAMA_ARG_MODEL"]] = meta.path;
  202. if (!meta.path_mmproj.empty()) {
  203. preset.options[control_args["LLAMA_ARG_MMPROJ"]] = meta.path_mmproj;
  204. }
  205. }
  206. // disable SSL for child processes (HTTPS already handled by router)
  207. preset.options[control_args["LLAMA_ARG_SSL_KEY_FILE"]] = "";
  208. preset.options[control_args["LLAMA_ARG_SSL_CERT_FILE"]] = "";
  209. meta.args = preset.to_args();
  210. // add back the binary path at the front
  211. meta.args.insert(meta.args.begin(), get_server_exec_path().string());
  212. }
  213. //
  214. // server_models
  215. //
  216. server_models::server_models(
  217. const common_params & params,
  218. int argc,
  219. char ** argv,
  220. char ** envp) : base_params(params), presets(argc, argv, base_params, params.models_preset) {
  221. for (int i = 0; i < argc; i++) {
  222. base_args.push_back(std::string(argv[i]));
  223. }
  224. for (char ** env = envp; *env != nullptr; env++) {
  225. base_env.push_back(std::string(*env));
  226. }
  227. GGML_ASSERT(!base_args.empty());
  228. // set binary path
  229. try {
  230. base_args[0] = get_server_exec_path().string();
  231. } catch (const std::exception & e) {
  232. LOG_WRN("failed to get server executable path: %s\n", e.what());
  233. LOG_WRN("using original argv[0] as fallback: %s\n", base_args[0].c_str());
  234. }
  235. load_models();
  236. }
  237. void server_models::add_model(server_model_meta && meta) {
  238. if (mapping.find(meta.name) != mapping.end()) {
  239. throw std::runtime_error(string_format("model '%s' appears multiple times", meta.name.c_str()));
  240. }
  241. presets.render_args(meta); // populate meta.args
  242. std::string name = meta.name;
  243. mapping[name] = instance_t{
  244. /* subproc */ std::make_shared<subprocess_s>(),
  245. /* th */ std::thread(),
  246. /* meta */ std::move(meta)
  247. };
  248. }
  249. static std::vector<local_model> list_custom_path_models(server_presets & presets) {
  250. // detect any custom-path models in presets
  251. std::vector<local_model> custom_models;
  252. for (auto & [model_name, preset] : presets.presets) {
  253. local_model model;
  254. model.name = model_name;
  255. std::vector<common_arg> to_erase;
  256. for (auto & [arg, value] : preset.options) {
  257. std::string env(arg.env ? arg.env : "");
  258. if (env == "LLAMA_ARG_MODEL") {
  259. model.path = value;
  260. to_erase.push_back(arg);
  261. }
  262. if (env == "LLAMA_ARG_MMPROJ") {
  263. model.path_mmproj = value;
  264. to_erase.push_back(arg);
  265. }
  266. }
  267. for (auto & arg : to_erase) {
  268. preset.options.erase(arg);
  269. }
  270. if (!model.name.empty() && !model.path.empty()) {
  271. custom_models.push_back(model);
  272. }
  273. }
  274. return custom_models;
  275. }
  276. // TODO: allow refreshing cached model list
  277. void server_models::load_models() {
  278. // loading models from 3 sources:
  279. // 1. cached models
  280. auto cached_models = common_list_cached_models();
  281. for (const auto & model : cached_models) {
  282. server_model_meta meta{
  283. /* preset */ presets.get_preset(model.to_string()),
  284. /* name */ model.to_string(),
  285. /* path */ model.manifest_path,
  286. /* path_mmproj */ "", // auto-detected when loading
  287. /* in_cache */ true,
  288. /* port */ 0,
  289. /* status */ SERVER_MODEL_STATUS_UNLOADED,
  290. /* last_used */ 0,
  291. /* args */ std::vector<std::string>(),
  292. /* exit_code */ 0
  293. };
  294. add_model(std::move(meta));
  295. }
  296. // 2. local models specificed via --models-dir
  297. if (!base_params.models_dir.empty()) {
  298. auto local_models = list_local_models(base_params.models_dir);
  299. for (const auto & model : local_models) {
  300. if (mapping.find(model.name) != mapping.end()) {
  301. // already exists in cached models, skip
  302. continue;
  303. }
  304. server_model_meta meta{
  305. /* preset */ presets.get_preset(model.name),
  306. /* name */ model.name,
  307. /* path */ model.path,
  308. /* path_mmproj */ model.path_mmproj,
  309. /* in_cache */ false,
  310. /* port */ 0,
  311. /* status */ SERVER_MODEL_STATUS_UNLOADED,
  312. /* last_used */ 0,
  313. /* args */ std::vector<std::string>(),
  314. /* exit_code */ 0
  315. };
  316. add_model(std::move(meta));
  317. }
  318. }
  319. // 3. custom-path models specified in presets
  320. auto custom_models = list_custom_path_models(presets);
  321. for (const auto & model : custom_models) {
  322. server_model_meta meta{
  323. /* preset */ presets.get_preset(model.name),
  324. /* name */ model.name,
  325. /* path */ model.path,
  326. /* path_mmproj */ model.path_mmproj,
  327. /* in_cache */ false,
  328. /* port */ 0,
  329. /* status */ SERVER_MODEL_STATUS_UNLOADED,
  330. /* last_used */ 0,
  331. /* args */ std::vector<std::string>(),
  332. /* exit_code */ 0
  333. };
  334. add_model(std::move(meta));
  335. }
  336. // log available models
  337. SRV_INF("Available models (%zu) (*: custom preset)\n", mapping.size());
  338. for (const auto & [name, inst] : mapping) {
  339. SRV_INF(" %c %s\n", inst.meta.preset.name.empty() ? ' ' : '*', name.c_str());
  340. }
  341. }
  342. void server_models::update_meta(const std::string & name, const server_model_meta & meta) {
  343. std::lock_guard<std::mutex> lk(mutex);
  344. auto it = mapping.find(name);
  345. if (it != mapping.end()) {
  346. it->second.meta = meta;
  347. }
  348. cv.notify_all(); // notify wait_until_loaded
  349. }
  350. bool server_models::has_model(const std::string & name) {
  351. std::lock_guard<std::mutex> lk(mutex);
  352. return mapping.find(name) != mapping.end();
  353. }
  354. std::optional<server_model_meta> server_models::get_meta(const std::string & name) {
  355. std::lock_guard<std::mutex> lk(mutex);
  356. auto it = mapping.find(name);
  357. if (it != mapping.end()) {
  358. return it->second.meta;
  359. }
  360. return std::nullopt;
  361. }
  362. static int get_free_port() {
  363. #ifdef _WIN32
  364. WSADATA wsaData;
  365. if (WSAStartup(MAKEWORD(2, 2), &wsaData) != 0) {
  366. return -1;
  367. }
  368. typedef SOCKET native_socket_t;
  369. #define INVALID_SOCKET_VAL INVALID_SOCKET
  370. #define CLOSE_SOCKET(s) closesocket(s)
  371. #else
  372. typedef int native_socket_t;
  373. #define INVALID_SOCKET_VAL -1
  374. #define CLOSE_SOCKET(s) close(s)
  375. #endif
  376. native_socket_t sock = socket(AF_INET, SOCK_STREAM, 0);
  377. if (sock == INVALID_SOCKET_VAL) {
  378. #ifdef _WIN32
  379. WSACleanup();
  380. #endif
  381. return -1;
  382. }
  383. struct sockaddr_in serv_addr;
  384. std::memset(&serv_addr, 0, sizeof(serv_addr));
  385. serv_addr.sin_family = AF_INET;
  386. serv_addr.sin_addr.s_addr = htonl(INADDR_ANY);
  387. serv_addr.sin_port = htons(0);
  388. if (bind(sock, (struct sockaddr*)&serv_addr, sizeof(serv_addr)) != 0) {
  389. CLOSE_SOCKET(sock);
  390. #ifdef _WIN32
  391. WSACleanup();
  392. #endif
  393. return -1;
  394. }
  395. #ifdef _WIN32
  396. int namelen = sizeof(serv_addr);
  397. #else
  398. socklen_t namelen = sizeof(serv_addr);
  399. #endif
  400. if (getsockname(sock, (struct sockaddr*)&serv_addr, &namelen) != 0) {
  401. CLOSE_SOCKET(sock);
  402. #ifdef _WIN32
  403. WSACleanup();
  404. #endif
  405. return -1;
  406. }
  407. int port = ntohs(serv_addr.sin_port);
  408. CLOSE_SOCKET(sock);
  409. #ifdef _WIN32
  410. WSACleanup();
  411. #endif
  412. return port;
  413. }
  414. // helper to convert vector<string> to char **
  415. // pointers are only valid as long as the original vector is valid
  416. static std::vector<char *> to_char_ptr_array(const std::vector<std::string> & vec) {
  417. std::vector<char *> result;
  418. result.reserve(vec.size() + 1);
  419. for (const auto & s : vec) {
  420. result.push_back(const_cast<char*>(s.c_str()));
  421. }
  422. result.push_back(nullptr);
  423. return result;
  424. }
  425. std::vector<server_model_meta> server_models::get_all_meta() {
  426. std::lock_guard<std::mutex> lk(mutex);
  427. std::vector<server_model_meta> result;
  428. result.reserve(mapping.size());
  429. for (const auto & [name, inst] : mapping) {
  430. result.push_back(inst.meta);
  431. }
  432. return result;
  433. }
  434. void server_models::unload_lru() {
  435. if (base_params.models_max <= 0) {
  436. return; // no limit
  437. }
  438. // remove one of the servers if we passed the models_max (least recently used - LRU)
  439. std::string lru_model_name = "";
  440. int64_t lru_last_used = ggml_time_ms();
  441. size_t count_active = 0;
  442. {
  443. std::lock_guard<std::mutex> lk(mutex);
  444. for (const auto & m : mapping) {
  445. if (m.second.meta.is_active()) {
  446. count_active++;
  447. if (m.second.meta.last_used < lru_last_used) {
  448. lru_model_name = m.first;
  449. lru_last_used = m.second.meta.last_used;
  450. }
  451. }
  452. }
  453. }
  454. if (!lru_model_name.empty() && count_active >= (size_t)base_params.models_max) {
  455. SRV_INF("models_max limit reached, removing LRU name=%s\n", lru_model_name.c_str());
  456. unload(lru_model_name);
  457. }
  458. }
  459. void server_models::load(const std::string & name) {
  460. if (!has_model(name)) {
  461. throw std::runtime_error("model name=" + name + " is not found");
  462. }
  463. unload_lru();
  464. std::lock_guard<std::mutex> lk(mutex);
  465. auto meta = mapping[name].meta;
  466. if (meta.status != SERVER_MODEL_STATUS_UNLOADED) {
  467. SRV_INF("model %s is not ready\n", name.c_str());
  468. return;
  469. }
  470. // prepare new instance info
  471. instance_t inst;
  472. inst.meta = meta;
  473. inst.meta.port = get_free_port();
  474. inst.meta.status = SERVER_MODEL_STATUS_LOADING;
  475. inst.meta.last_used = ggml_time_ms();
  476. if (inst.meta.port <= 0) {
  477. throw std::runtime_error("failed to get a port number");
  478. }
  479. inst.subproc = std::make_shared<subprocess_s>();
  480. {
  481. SRV_INF("spawning server instance with name=%s on port %d\n", inst.meta.name.c_str(), inst.meta.port);
  482. presets.render_args(inst.meta); // update meta.args
  483. std::vector<std::string> child_args = inst.meta.args; // copy
  484. std::vector<std::string> child_env = base_env; // copy
  485. child_env.push_back("LLAMA_SERVER_ROUTER_PORT=" + std::to_string(base_params.port));
  486. SRV_INF("%s", "spawning server instance with args:\n");
  487. for (const auto & arg : child_args) {
  488. SRV_INF(" %s\n", arg.c_str());
  489. }
  490. inst.meta.args = child_args; // save for debugging
  491. std::vector<char *> argv = to_char_ptr_array(child_args);
  492. std::vector<char *> envp = to_char_ptr_array(child_env);
  493. // TODO @ngxson : maybe separate stdout and stderr in the future
  494. // so that we can use stdout for commands and stderr for logging
  495. int options = subprocess_option_no_window | subprocess_option_combined_stdout_stderr;
  496. int result = subprocess_create_ex(argv.data(), options, envp.data(), inst.subproc.get());
  497. if (result != 0) {
  498. throw std::runtime_error("failed to spawn server instance");
  499. }
  500. inst.stdin_file = subprocess_stdin(inst.subproc.get());
  501. }
  502. // start a thread to manage the child process
  503. // captured variables are guaranteed to be destroyed only after the thread is joined
  504. inst.th = std::thread([this, name, child_proc = inst.subproc, port = inst.meta.port]() {
  505. // read stdout/stderr and forward to main server log
  506. bool state_received = false; // true if child state received
  507. FILE * p_stdout_stderr = subprocess_stdout(child_proc.get());
  508. if (p_stdout_stderr) {
  509. char buffer[4096];
  510. while (fgets(buffer, sizeof(buffer), p_stdout_stderr) != nullptr) {
  511. LOG("[%5d] %s", port, buffer);
  512. if (!state_received && std::strstr(buffer, CMD_CHILD_TO_ROUTER_READY) != nullptr) {
  513. // child process is ready
  514. this->update_status(name, SERVER_MODEL_STATUS_LOADED);
  515. state_received = true;
  516. }
  517. }
  518. } else {
  519. SRV_ERR("failed to get stdout/stderr of child process for name=%s\n", name.c_str());
  520. }
  521. // we reach here when the child process exits
  522. int exit_code = 0;
  523. subprocess_join(child_proc.get(), &exit_code);
  524. subprocess_destroy(child_proc.get());
  525. // update PID and status
  526. {
  527. std::lock_guard<std::mutex> lk(mutex);
  528. auto it = mapping.find(name);
  529. if (it != mapping.end()) {
  530. auto & meta = it->second.meta;
  531. meta.exit_code = exit_code;
  532. meta.status = SERVER_MODEL_STATUS_UNLOADED;
  533. }
  534. cv.notify_all();
  535. }
  536. SRV_INF("instance name=%s exited with status %d\n", name.c_str(), exit_code);
  537. });
  538. // clean up old process/thread if exists
  539. {
  540. auto & old_instance = mapping[name];
  541. // old process should have exited already, but just in case, we clean it up here
  542. if (subprocess_alive(old_instance.subproc.get())) {
  543. SRV_WRN("old process for model name=%s is still alive, this is unexpected\n", name.c_str());
  544. subprocess_terminate(old_instance.subproc.get()); // force kill
  545. }
  546. if (old_instance.th.joinable()) {
  547. old_instance.th.join();
  548. }
  549. }
  550. mapping[name] = std::move(inst);
  551. cv.notify_all();
  552. }
  553. static void interrupt_subprocess(FILE * stdin_file) {
  554. // because subprocess.h does not provide a way to send SIGINT,
  555. // we will send a command to the child process to exit gracefully
  556. if (stdin_file) {
  557. fprintf(stdin_file, "%s\n", CMD_ROUTER_TO_CHILD_EXIT);
  558. fflush(stdin_file);
  559. }
  560. }
  561. void server_models::unload(const std::string & name) {
  562. std::lock_guard<std::mutex> lk(mutex);
  563. auto it = mapping.find(name);
  564. if (it != mapping.end()) {
  565. if (it->second.meta.is_active()) {
  566. SRV_INF("unloading model instance name=%s\n", name.c_str());
  567. interrupt_subprocess(it->second.stdin_file);
  568. // status change will be handled by the managing thread
  569. } else {
  570. SRV_WRN("model instance name=%s is not loaded\n", name.c_str());
  571. }
  572. }
  573. }
  574. void server_models::unload_all() {
  575. std::vector<std::thread> to_join;
  576. {
  577. std::lock_guard<std::mutex> lk(mutex);
  578. for (auto & [name, inst] : mapping) {
  579. if (inst.meta.is_active()) {
  580. SRV_INF("unloading model instance name=%s\n", name.c_str());
  581. interrupt_subprocess(inst.stdin_file);
  582. // status change will be handled by the managing thread
  583. }
  584. // moving the thread to join list to avoid deadlock
  585. to_join.push_back(std::move(inst.th));
  586. }
  587. }
  588. for (auto & th : to_join) {
  589. if (th.joinable()) {
  590. th.join();
  591. }
  592. }
  593. }
  594. void server_models::update_status(const std::string & name, server_model_status status) {
  595. // for now, we only allow updating to LOADED status
  596. if (status != SERVER_MODEL_STATUS_LOADED) {
  597. throw std::runtime_error("invalid status value");
  598. }
  599. auto meta = get_meta(name);
  600. if (meta.has_value()) {
  601. meta->status = status;
  602. update_meta(name, meta.value());
  603. }
  604. }
  605. void server_models::wait_until_loaded(const std::string & name) {
  606. std::unique_lock<std::mutex> lk(mutex);
  607. cv.wait(lk, [this, &name]() {
  608. auto it = mapping.find(name);
  609. if (it != mapping.end()) {
  610. return it->second.meta.status != SERVER_MODEL_STATUS_LOADING;
  611. }
  612. return false;
  613. });
  614. }
  615. bool server_models::ensure_model_loaded(const std::string & name) {
  616. auto meta = get_meta(name);
  617. if (!meta.has_value()) {
  618. throw std::runtime_error("model name=" + name + " is not found");
  619. }
  620. if (meta->status == SERVER_MODEL_STATUS_LOADED) {
  621. return false; // already loaded
  622. }
  623. if (meta->status == SERVER_MODEL_STATUS_UNLOADED) {
  624. SRV_INF("model name=%s is not loaded, loading...\n", name.c_str());
  625. load(name);
  626. }
  627. SRV_INF("waiting until model name=%s is fully loaded...\n", name.c_str());
  628. wait_until_loaded(name);
  629. // check final status
  630. meta = get_meta(name);
  631. if (!meta.has_value() || meta->is_failed()) {
  632. throw std::runtime_error("model name=" + name + " failed to load");
  633. }
  634. return true;
  635. }
  636. server_http_res_ptr server_models::proxy_request(const server_http_req & req, const std::string & method, const std::string & name, bool update_last_used) {
  637. auto meta = get_meta(name);
  638. if (!meta.has_value()) {
  639. throw std::runtime_error("model name=" + name + " is not found");
  640. }
  641. if (meta->status != SERVER_MODEL_STATUS_LOADED) {
  642. throw std::invalid_argument("model name=" + name + " is not loaded");
  643. }
  644. if (update_last_used) {
  645. std::unique_lock<std::mutex> lk(mutex);
  646. mapping[name].meta.last_used = ggml_time_ms();
  647. }
  648. SRV_INF("proxying request to model %s on port %d\n", name.c_str(), meta->port);
  649. auto proxy = std::make_unique<server_http_proxy>(
  650. method,
  651. CHILD_ADDR,
  652. meta->port,
  653. req.path,
  654. req.headers,
  655. req.body,
  656. req.should_stop);
  657. return proxy;
  658. }
  659. std::thread server_models::setup_child_server(const std::function<void(int)> & shutdown_handler) {
  660. // send a notification to the router server that a model instance is ready
  661. common_log_pause(common_log_main());
  662. fflush(stdout);
  663. fprintf(stdout, "%s\n", CMD_CHILD_TO_ROUTER_READY);
  664. fflush(stdout);
  665. common_log_resume(common_log_main());
  666. // setup thread for monitoring stdin
  667. return std::thread([shutdown_handler]() {
  668. // wait for EOF on stdin
  669. SRV_INF("%s", "child server monitoring thread started, waiting for EOF on stdin...\n");
  670. bool eof = false;
  671. while (true) {
  672. std::string line;
  673. if (!std::getline(std::cin, line)) {
  674. // EOF detected, that means the router server is unexpectedly exit or killed
  675. eof = true;
  676. break;
  677. }
  678. if (line.find(CMD_ROUTER_TO_CHILD_EXIT) != std::string::npos) {
  679. SRV_INF("%s", "exit command received, exiting...\n");
  680. shutdown_handler(0);
  681. break;
  682. }
  683. }
  684. if (eof) {
  685. SRV_INF("%s", "EOF on stdin detected, forcing shutdown...\n");
  686. exit(1);
  687. }
  688. });
  689. }
  690. //
  691. // server_models_routes
  692. //
  693. static void res_ok(std::unique_ptr<server_http_res> & res, const json & response_data) {
  694. res->status = 200;
  695. res->data = safe_json_to_str(response_data);
  696. }
  697. static void res_err(std::unique_ptr<server_http_res> & res, const json & error_data) {
  698. res->status = json_value(error_data, "code", 500);
  699. res->data = safe_json_to_str({{ "error", error_data }});
  700. }
  701. static bool router_validate_model(const std::string & name, server_models & models, bool models_autoload, std::unique_ptr<server_http_res> & res) {
  702. if (name.empty()) {
  703. res_err(res, format_error_response("model name is missing from the request", ERROR_TYPE_INVALID_REQUEST));
  704. return false;
  705. }
  706. auto meta = models.get_meta(name);
  707. if (!meta.has_value()) {
  708. res_err(res, format_error_response("model not found", ERROR_TYPE_INVALID_REQUEST));
  709. return false;
  710. }
  711. if (models_autoload) {
  712. models.ensure_model_loaded(name);
  713. } else {
  714. if (meta->status != SERVER_MODEL_STATUS_LOADED) {
  715. res_err(res, format_error_response("model is not loaded", ERROR_TYPE_INVALID_REQUEST));
  716. return false;
  717. }
  718. }
  719. return true;
  720. }
  721. static bool is_autoload(const common_params & params, const server_http_req & req) {
  722. std::string autoload = req.get_param("autoload");
  723. if (autoload.empty()) {
  724. return params.models_autoload;
  725. } else {
  726. return autoload == "true" || autoload == "1";
  727. }
  728. }
  729. void server_models_routes::init_routes() {
  730. this->get_router_props = [this](const server_http_req & req) {
  731. std::string name = req.get_param("model");
  732. if (name.empty()) {
  733. // main instance
  734. auto res = std::make_unique<server_http_res>();
  735. res_ok(res, {
  736. // TODO: add support for this on web UI
  737. {"role", "router"},
  738. {"max_instances", 4}, // dummy value for testing
  739. // this is a dummy response to make sure webui doesn't break
  740. {"model_alias", "llama-server"},
  741. {"model_path", "none"},
  742. {"default_generation_settings", {
  743. {"params", json{}},
  744. {"n_ctx", 0},
  745. }},
  746. {"webui_settings", webui_settings},
  747. });
  748. return res;
  749. }
  750. return proxy_get(req);
  751. };
  752. this->proxy_get = [this](const server_http_req & req) {
  753. std::string method = "GET";
  754. std::string name = req.get_param("model");
  755. bool autoload = is_autoload(params, req);
  756. auto error_res = std::make_unique<server_http_res>();
  757. if (!router_validate_model(name, models, autoload, error_res)) {
  758. return error_res;
  759. }
  760. return models.proxy_request(req, method, name, false);
  761. };
  762. this->proxy_post = [this](const server_http_req & req) {
  763. std::string method = "POST";
  764. json body = json::parse(req.body);
  765. std::string name = json_value(body, "model", std::string());
  766. bool autoload = is_autoload(params, req);
  767. auto error_res = std::make_unique<server_http_res>();
  768. if (!router_validate_model(name, models, autoload, error_res)) {
  769. return error_res;
  770. }
  771. return models.proxy_request(req, method, name, true); // update last usage for POST request only
  772. };
  773. this->post_router_models_load = [this](const server_http_req & req) {
  774. auto res = std::make_unique<server_http_res>();
  775. json body = json::parse(req.body);
  776. std::string name = json_value(body, "model", std::string());
  777. auto model = models.get_meta(name);
  778. if (!model.has_value()) {
  779. res_err(res, format_error_response("model is not found", ERROR_TYPE_NOT_FOUND));
  780. return res;
  781. }
  782. if (model->status == SERVER_MODEL_STATUS_LOADED) {
  783. res_err(res, format_error_response("model is already loaded", ERROR_TYPE_INVALID_REQUEST));
  784. return res;
  785. }
  786. models.load(name);
  787. res_ok(res, {{"success", true}});
  788. return res;
  789. };
  790. this->get_router_models = [this](const server_http_req &) {
  791. auto res = std::make_unique<server_http_res>();
  792. json models_json = json::array();
  793. auto all_models = models.get_all_meta();
  794. std::time_t t = std::time(0);
  795. for (const auto & meta : all_models) {
  796. json status {
  797. {"value", server_model_status_to_string(meta.status)},
  798. {"args", meta.args},
  799. };
  800. if (!meta.preset.name.empty()) {
  801. status["preset"] = meta.preset.to_ini();
  802. }
  803. if (meta.is_failed()) {
  804. status["exit_code"] = meta.exit_code;
  805. status["failed"] = true;
  806. }
  807. models_json.push_back(json {
  808. {"id", meta.name},
  809. {"object", "model"}, // for OAI-compat
  810. {"owned_by", "llamacpp"}, // for OAI-compat
  811. {"created", t}, // for OAI-compat
  812. {"in_cache", meta.in_cache},
  813. {"path", meta.path},
  814. {"status", status},
  815. // TODO: add other fields, may require reading GGUF metadata
  816. });
  817. }
  818. res_ok(res, {
  819. {"data", models_json},
  820. {"object", "list"},
  821. });
  822. return res;
  823. };
  824. this->post_router_models_unload = [this](const server_http_req & req) {
  825. auto res = std::make_unique<server_http_res>();
  826. json body = json::parse(req.body);
  827. std::string name = json_value(body, "model", std::string());
  828. auto model = models.get_meta(name);
  829. if (!model.has_value()) {
  830. res_err(res, format_error_response("model is not found", ERROR_TYPE_INVALID_REQUEST));
  831. return res;
  832. }
  833. if (model->status != SERVER_MODEL_STATUS_LOADED) {
  834. res_err(res, format_error_response("model is not loaded", ERROR_TYPE_INVALID_REQUEST));
  835. return res;
  836. }
  837. models.unload(name);
  838. res_ok(res, {{"success", true}});
  839. return res;
  840. };
  841. }
  842. //
  843. // server_http_proxy
  844. //
  845. // simple implementation of a pipe
  846. // used for streaming data between threads
  847. template<typename T>
  848. struct pipe_t {
  849. std::mutex mutex;
  850. std::condition_variable cv;
  851. std::queue<T> queue;
  852. std::atomic<bool> writer_closed{false};
  853. std::atomic<bool> reader_closed{false};
  854. void close_write() {
  855. writer_closed.store(true, std::memory_order_relaxed);
  856. cv.notify_all();
  857. }
  858. void close_read() {
  859. reader_closed.store(true, std::memory_order_relaxed);
  860. cv.notify_all();
  861. }
  862. bool read(T & output, const std::function<bool()> & should_stop) {
  863. std::unique_lock<std::mutex> lk(mutex);
  864. constexpr auto poll_interval = std::chrono::milliseconds(500);
  865. while (true) {
  866. if (!queue.empty()) {
  867. output = std::move(queue.front());
  868. queue.pop();
  869. return true;
  870. }
  871. if (writer_closed.load()) {
  872. return false; // clean EOF
  873. }
  874. if (should_stop()) {
  875. close_read(); // signal broken pipe to writer
  876. return false; // cancelled / reader no longer alive
  877. }
  878. cv.wait_for(lk, poll_interval);
  879. }
  880. }
  881. bool write(T && data) {
  882. std::lock_guard<std::mutex> lk(mutex);
  883. if (reader_closed.load()) {
  884. return false; // broken pipe
  885. }
  886. queue.push(std::move(data));
  887. cv.notify_one();
  888. return true;
  889. }
  890. };
  891. static std::string to_lower_copy(const std::string & value) {
  892. std::string lowered(value.size(), '\0');
  893. std::transform(value.begin(), value.end(), lowered.begin(), [](unsigned char c) { return std::tolower(c); });
  894. return lowered;
  895. }
  896. static bool should_strip_proxy_header(const std::string & header_name) {
  897. // Headers that get duplicated when router forwards child responses
  898. if (header_name == "server" ||
  899. header_name == "transfer-encoding" ||
  900. header_name == "content-length" || // quick fix for https://github.com/ggml-org/llama.cpp/issues/17710
  901. header_name == "keep-alive") {
  902. return true;
  903. }
  904. // Router injects CORS, child also sends them: duplicate
  905. if (header_name.rfind("access-control-", 0) == 0) {
  906. return true;
  907. }
  908. return false;
  909. }
  910. server_http_proxy::server_http_proxy(
  911. const std::string & method,
  912. const std::string & host,
  913. int port,
  914. const std::string & path,
  915. const std::map<std::string, std::string> & headers,
  916. const std::string & body,
  917. const std::function<bool()> should_stop) {
  918. // shared between reader and writer threads
  919. auto cli = std::make_shared<httplib::Client>(host, port);
  920. auto pipe = std::make_shared<pipe_t<msg_t>>();
  921. // setup Client
  922. cli->set_connection_timeout(0, 200000); // 200 milliseconds
  923. this->status = 500; // to be overwritten upon response
  924. this->cleanup = [pipe]() {
  925. pipe->close_read();
  926. pipe->close_write();
  927. };
  928. // wire up the receive end of the pipe
  929. this->next = [pipe, should_stop](std::string & out) -> bool {
  930. msg_t msg;
  931. bool has_next = pipe->read(msg, should_stop);
  932. if (!msg.data.empty()) {
  933. out = std::move(msg.data);
  934. }
  935. return has_next; // false if EOF or pipe broken
  936. };
  937. // wire up the HTTP client
  938. // note: do NOT capture `this` pointer, as it may be destroyed before the thread ends
  939. httplib::ResponseHandler response_handler = [pipe, cli](const httplib::Response & response) {
  940. msg_t msg;
  941. msg.status = response.status;
  942. for (const auto & [key, value] : response.headers) {
  943. const auto lowered = to_lower_copy(key);
  944. if (should_strip_proxy_header(lowered)) {
  945. continue;
  946. }
  947. if (lowered == "content-type") {
  948. msg.content_type = value;
  949. continue;
  950. }
  951. msg.headers[key] = value;
  952. }
  953. return pipe->write(std::move(msg)); // send headers first
  954. };
  955. httplib::ContentReceiverWithProgress content_receiver = [pipe](const char * data, size_t data_length, size_t, size_t) {
  956. // send data chunks
  957. // returns false if pipe is closed / broken (signal to stop receiving)
  958. return pipe->write({{}, 0, std::string(data, data_length), ""});
  959. };
  960. // prepare the request to destination server
  961. httplib::Request req;
  962. {
  963. req.method = method;
  964. req.path = path;
  965. for (const auto & [key, value] : headers) {
  966. req.set_header(key, value);
  967. }
  968. req.body = body;
  969. req.response_handler = response_handler;
  970. req.content_receiver = content_receiver;
  971. }
  972. // start the proxy thread
  973. SRV_DBG("start proxy thread %s %s\n", req.method.c_str(), req.path.c_str());
  974. this->thread = std::thread([cli, pipe, req]() {
  975. auto result = cli->send(std::move(req));
  976. if (result.error() != httplib::Error::Success) {
  977. auto err_str = httplib::to_string(result.error());
  978. SRV_ERR("http client error: %s\n", err_str.c_str());
  979. pipe->write({{}, 500, "", ""}); // header
  980. pipe->write({{}, 0, "proxy error: " + err_str, ""}); // body
  981. }
  982. pipe->close_write(); // signal EOF to reader
  983. SRV_DBG("%s", "client request thread ended\n");
  984. });
  985. this->thread.detach();
  986. // wait for the first chunk (headers)
  987. {
  988. msg_t header;
  989. if (pipe->read(header, should_stop)) {
  990. SRV_DBG("%s", "received response headers\n");
  991. this->status = header.status;
  992. this->headers = std::move(header.headers);
  993. if (!header.content_type.empty()) {
  994. this->content_type = std::move(header.content_type);
  995. }
  996. } else {
  997. SRV_DBG("%s", "no response headers received (request cancelled?)\n");
  998. }
  999. }
  1000. }