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common.cpp 33 KB

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  1. #include "common.h"
  2. #include <cassert>
  3. #include <iostream>
  4. #include <cstring>
  5. #include <fstream>
  6. #include <string>
  7. #include <iterator>
  8. #include <algorithm>
  9. #include <sstream>
  10. #include <unordered_set>
  11. #if defined(__APPLE__) && defined(__MACH__)
  12. #include <sys/types.h>
  13. #include <sys/sysctl.h>
  14. #endif
  15. #if defined(_WIN32)
  16. #define WIN32_LEAN_AND_MEAN
  17. #define NOMINMAX
  18. #include <windows.h>
  19. #include <fcntl.h>
  20. #include <io.h>
  21. #else
  22. #include <sys/ioctl.h>
  23. #include <unistd.h>
  24. #include <wchar.h>
  25. #endif
  26. int32_t get_num_physical_cores() {
  27. #ifdef __linux__
  28. // enumerate the set of thread siblings, num entries is num cores
  29. std::unordered_set<std::string> siblings;
  30. for (uint32_t cpu=0; cpu < UINT32_MAX; ++cpu) {
  31. std::ifstream thread_siblings("/sys/devices/system/cpu"
  32. + std::to_string(cpu) + "/topology/thread_siblings");
  33. if (!thread_siblings.is_open()) {
  34. break; // no more cpus
  35. }
  36. std::string line;
  37. if (std::getline(thread_siblings, line)) {
  38. siblings.insert(line);
  39. }
  40. }
  41. if (siblings.size() > 0) {
  42. return static_cast<int32_t>(siblings.size());
  43. }
  44. #elif defined(__APPLE__) && defined(__MACH__)
  45. int32_t num_physical_cores;
  46. size_t len = sizeof(num_physical_cores);
  47. int result = sysctlbyname("hw.perflevel0.physicalcpu", &num_physical_cores, &len, NULL, 0);
  48. if (result == 0) {
  49. return num_physical_cores;
  50. }
  51. result = sysctlbyname("hw.physicalcpu", &num_physical_cores, &len, NULL, 0);
  52. if (result == 0) {
  53. return num_physical_cores;
  54. }
  55. #elif defined(_WIN32)
  56. //TODO: Implement
  57. #endif
  58. unsigned int n_threads = std::thread::hardware_concurrency();
  59. return n_threads > 0 ? (n_threads <= 4 ? n_threads : n_threads / 2) : 4;
  60. }
  61. void process_escapes(std::string& input) {
  62. std::size_t input_len = input.length();
  63. std::size_t output_idx = 0;
  64. for (std::size_t input_idx = 0; input_idx < input_len; ++input_idx) {
  65. if (input[input_idx] == '\\' && input_idx + 1 < input_len) {
  66. switch (input[++input_idx]) {
  67. case 'n': input[output_idx++] = '\n'; break;
  68. case 'r': input[output_idx++] = '\r'; break;
  69. case 't': input[output_idx++] = '\t'; break;
  70. case '\'': input[output_idx++] = '\''; break;
  71. case '\"': input[output_idx++] = '\"'; break;
  72. case '\\': input[output_idx++] = '\\'; break;
  73. default: input[output_idx++] = '\\';
  74. input[output_idx++] = input[input_idx]; break;
  75. }
  76. } else {
  77. input[output_idx++] = input[input_idx];
  78. }
  79. }
  80. input.resize(output_idx);
  81. }
  82. bool gpt_params_parse(int argc, char ** argv, gpt_params & params) {
  83. bool invalid_param = false;
  84. bool escape_prompt = false;
  85. std::string arg;
  86. gpt_params default_params;
  87. const std::string arg_prefix = "--";
  88. for (int i = 1; i < argc; i++) {
  89. arg = argv[i];
  90. if (arg.compare(0, arg_prefix.size(), arg_prefix) == 0) {
  91. std::replace(arg.begin(), arg.end(), '_', '-');
  92. }
  93. if (arg == "-s" || arg == "--seed") {
  94. #if defined(GGML_USE_CUBLAS)
  95. fprintf(stderr, "WARNING: when using cuBLAS generation results are NOT guaranteed to be reproducible.\n");
  96. #endif
  97. if (++i >= argc) {
  98. invalid_param = true;
  99. break;
  100. }
  101. params.seed = std::stoi(argv[i]);
  102. } else if (arg == "-t" || arg == "--threads") {
  103. if (++i >= argc) {
  104. invalid_param = true;
  105. break;
  106. }
  107. params.n_threads = std::stoi(argv[i]);
  108. } else if (arg == "-p" || arg == "--prompt") {
  109. if (++i >= argc) {
  110. invalid_param = true;
  111. break;
  112. }
  113. params.prompt = argv[i];
  114. } else if (arg == "-e") {
  115. escape_prompt = true;
  116. } else if (arg == "--prompt-cache") {
  117. if (++i >= argc) {
  118. invalid_param = true;
  119. break;
  120. }
  121. params.path_prompt_cache = argv[i];
  122. } else if (arg == "--prompt-cache-all") {
  123. params.prompt_cache_all = true;
  124. } else if (arg == "-f" || arg == "--file") {
  125. if (++i >= argc) {
  126. invalid_param = true;
  127. break;
  128. }
  129. std::ifstream file(argv[i]);
  130. if (!file) {
  131. fprintf(stderr, "error: failed to open file '%s'\n", argv[i]);
  132. invalid_param = true;
  133. break;
  134. }
  135. std::copy(std::istreambuf_iterator<char>(file), std::istreambuf_iterator<char>(), back_inserter(params.prompt));
  136. if (params.prompt.back() == '\n') {
  137. params.prompt.pop_back();
  138. }
  139. } else if (arg == "-n" || arg == "--n-predict") {
  140. if (++i >= argc) {
  141. invalid_param = true;
  142. break;
  143. }
  144. params.n_predict = std::stoi(argv[i]);
  145. } else if (arg == "--top-k") {
  146. if (++i >= argc) {
  147. invalid_param = true;
  148. break;
  149. }
  150. params.top_k = std::stoi(argv[i]);
  151. } else if (arg == "-c" || arg == "--ctx-size") {
  152. if (++i >= argc) {
  153. invalid_param = true;
  154. break;
  155. }
  156. params.n_ctx = std::stoi(argv[i]);
  157. } else if (arg == "--memory-f32") {
  158. params.memory_f16 = false;
  159. } else if (arg == "--top-p") {
  160. if (++i >= argc) {
  161. invalid_param = true;
  162. break;
  163. }
  164. params.top_p = std::stof(argv[i]);
  165. } else if (arg == "--temp") {
  166. if (++i >= argc) {
  167. invalid_param = true;
  168. break;
  169. }
  170. params.temp = std::stof(argv[i]);
  171. } else if (arg == "--tfs") {
  172. if (++i >= argc) {
  173. invalid_param = true;
  174. break;
  175. }
  176. params.tfs_z = std::stof(argv[i]);
  177. } else if (arg == "--typical") {
  178. if (++i >= argc) {
  179. invalid_param = true;
  180. break;
  181. }
  182. params.typical_p = std::stof(argv[i]);
  183. } else if (arg == "--repeat-last-n") {
  184. if (++i >= argc) {
  185. invalid_param = true;
  186. break;
  187. }
  188. params.repeat_last_n = std::stoi(argv[i]);
  189. } else if (arg == "--repeat-penalty") {
  190. if (++i >= argc) {
  191. invalid_param = true;
  192. break;
  193. }
  194. params.repeat_penalty = std::stof(argv[i]);
  195. } else if (arg == "--frequency-penalty") {
  196. if (++i >= argc) {
  197. invalid_param = true;
  198. break;
  199. }
  200. params.frequency_penalty = std::stof(argv[i]);
  201. } else if (arg == "--presence-penalty") {
  202. if (++i >= argc) {
  203. invalid_param = true;
  204. break;
  205. }
  206. params.presence_penalty = std::stof(argv[i]);
  207. } else if (arg == "--mirostat") {
  208. if (++i >= argc) {
  209. invalid_param = true;
  210. break;
  211. }
  212. params.mirostat = std::stoi(argv[i]);
  213. } else if (arg == "--mirostat-lr") {
  214. if (++i >= argc) {
  215. invalid_param = true;
  216. break;
  217. }
  218. params.mirostat_eta = std::stof(argv[i]);
  219. } else if (arg == "--mirostat-ent") {
  220. if (++i >= argc) {
  221. invalid_param = true;
  222. break;
  223. }
  224. params.mirostat_tau = std::stof(argv[i]);
  225. } else if (arg == "-b" || arg == "--batch-size") {
  226. if (++i >= argc) {
  227. invalid_param = true;
  228. break;
  229. }
  230. params.n_batch = std::stoi(argv[i]);
  231. params.n_batch = std::min(512, params.n_batch);
  232. } else if (arg == "--keep") {
  233. if (++i >= argc) {
  234. invalid_param = true;
  235. break;
  236. }
  237. params.n_keep = std::stoi(argv[i]);
  238. } else if (arg == "-m" || arg == "--model") {
  239. if (++i >= argc) {
  240. invalid_param = true;
  241. break;
  242. }
  243. params.model = argv[i];
  244. } else if (arg == "-a" || arg == "--alias") {
  245. if (++i >= argc) {
  246. invalid_param = true;
  247. break;
  248. }
  249. params.model_alias = argv[i];
  250. } else if (arg == "--lora") {
  251. if (++i >= argc) {
  252. invalid_param = true;
  253. break;
  254. }
  255. params.lora_adapter = argv[i];
  256. params.use_mmap = false;
  257. } else if (arg == "--lora-base") {
  258. if (++i >= argc) {
  259. invalid_param = true;
  260. break;
  261. }
  262. params.lora_base = argv[i];
  263. } else if (arg == "-i" || arg == "--interactive") {
  264. params.interactive = true;
  265. } else if (arg == "--embedding") {
  266. params.embedding = true;
  267. } else if (arg == "--interactive-first") {
  268. params.interactive_first = true;
  269. } else if (arg == "-ins" || arg == "--instruct") {
  270. params.instruct = true;
  271. } else if (arg == "--multiline-input") {
  272. params.multiline_input = true;
  273. } else if (arg == "--color") {
  274. params.use_color = true;
  275. } else if (arg == "--mlock") {
  276. params.use_mlock = true;
  277. } else if (arg == "--gpu-layers" || arg == "-ngl" || arg == "--n-gpu-layers") {
  278. if (++i >= argc) {
  279. invalid_param = true;
  280. break;
  281. }
  282. #ifdef LLAMA_SUPPORTS_GPU_OFFLOAD
  283. params.n_gpu_layers = std::stoi(argv[i]);
  284. #else
  285. fprintf(stderr, "warning: not compiled with GPU offload support, --n-gpu-layers option will be ignored\n");
  286. fprintf(stderr, "warning: see main README.md for information on enabling GPU BLAS support\n");
  287. #endif
  288. } else if (arg == "--no-mmap") {
  289. params.use_mmap = false;
  290. } else if (arg == "--mtest") {
  291. params.mem_test = true;
  292. } else if (arg == "--verbose-prompt") {
  293. params.verbose_prompt = true;
  294. } else if (arg == "-r" || arg == "--reverse-prompt") {
  295. if (++i >= argc) {
  296. invalid_param = true;
  297. break;
  298. }
  299. params.antiprompt.push_back(argv[i]);
  300. } else if (arg == "--perplexity") {
  301. params.perplexity = true;
  302. } else if (arg == "--ignore-eos") {
  303. params.logit_bias[llama_token_eos()] = -INFINITY;
  304. } else if (arg == "--no-penalize-nl") {
  305. params.penalize_nl = false;
  306. } else if (arg == "-l" || arg == "--logit-bias") {
  307. if (++i >= argc) {
  308. invalid_param = true;
  309. break;
  310. }
  311. std::stringstream ss(argv[i]);
  312. llama_token key;
  313. char sign;
  314. std::string value_str;
  315. try {
  316. if (ss >> key && ss >> sign && std::getline(ss, value_str) && (sign == '+' || sign == '-')) {
  317. params.logit_bias[key] = std::stof(value_str) * ((sign == '-') ? -1.0f : 1.0f);
  318. } else {
  319. throw std::exception();
  320. }
  321. } catch (const std::exception &e) {
  322. invalid_param = true;
  323. break;
  324. }
  325. } else if (arg == "-h" || arg == "--help") {
  326. gpt_print_usage(argc, argv, default_params);
  327. exit(0);
  328. } else if (arg == "--random-prompt") {
  329. params.random_prompt = true;
  330. } else if (arg == "--in-prefix") {
  331. if (++i >= argc) {
  332. invalid_param = true;
  333. break;
  334. }
  335. params.input_prefix = argv[i];
  336. } else if (arg == "--in-suffix") {
  337. if (++i >= argc) {
  338. invalid_param = true;
  339. break;
  340. }
  341. params.input_suffix = argv[i];
  342. } else {
  343. fprintf(stderr, "error: unknown argument: %s\n", arg.c_str());
  344. gpt_print_usage(argc, argv, default_params);
  345. exit(1);
  346. }
  347. }
  348. if (invalid_param) {
  349. fprintf(stderr, "error: invalid parameter for argument: %s\n", arg.c_str());
  350. gpt_print_usage(argc, argv, default_params);
  351. exit(1);
  352. }
  353. if (params.prompt_cache_all &&
  354. (params.interactive || params.interactive_first ||
  355. params.instruct)) {
  356. fprintf(stderr, "error: --prompt-cache-all not supported in interactive mode yet\n");
  357. gpt_print_usage(argc, argv, default_params);
  358. exit(1);
  359. }
  360. if (escape_prompt) {
  361. process_escapes(params.prompt);
  362. }
  363. return true;
  364. }
  365. void gpt_print_usage(int /*argc*/, char ** argv, const gpt_params & params) {
  366. fprintf(stderr, "usage: %s [options]\n", argv[0]);
  367. fprintf(stderr, "\n");
  368. fprintf(stderr, "options:\n");
  369. fprintf(stderr, " -h, --help show this help message and exit\n");
  370. fprintf(stderr, " -i, --interactive run in interactive mode\n");
  371. fprintf(stderr, " --interactive-first run in interactive mode and wait for input right away\n");
  372. fprintf(stderr, " -ins, --instruct run in instruction mode (use with Alpaca models)\n");
  373. fprintf(stderr, " --multiline-input allows you to write or paste multiple lines without ending each in '\\'\n");
  374. fprintf(stderr, " -r PROMPT, --reverse-prompt PROMPT\n");
  375. fprintf(stderr, " halt generation at PROMPT, return control in interactive mode\n");
  376. fprintf(stderr, " (can be specified more than once for multiple prompts).\n");
  377. fprintf(stderr, " --color colorise output to distinguish prompt and user input from generations\n");
  378. fprintf(stderr, " -s SEED, --seed SEED RNG seed (default: -1, use random seed for < 0)\n");
  379. fprintf(stderr, " -t N, --threads N number of threads to use during computation (default: %d)\n", params.n_threads);
  380. fprintf(stderr, " -p PROMPT, --prompt PROMPT\n");
  381. fprintf(stderr, " prompt to start generation with (default: empty)\n");
  382. fprintf(stderr, " -e process prompt escapes sequences (\\n, \\r, \\t, \\', \\\", \\\\)\n");
  383. fprintf(stderr, " --prompt-cache FNAME file to cache prompt state for faster startup (default: none)\n");
  384. fprintf(stderr, " --prompt-cache-all if specified, saves user input and generations to cache as well.\n");
  385. fprintf(stderr, " not supported with --interactive or other interactive options\n");
  386. fprintf(stderr, " --random-prompt start with a randomized prompt.\n");
  387. fprintf(stderr, " --in-prefix STRING string to prefix user inputs with (default: empty)\n");
  388. fprintf(stderr, " --in-suffix STRING string to suffix after user inputs with (default: empty)\n");
  389. fprintf(stderr, " -f FNAME, --file FNAME\n");
  390. fprintf(stderr, " prompt file to start generation.\n");
  391. fprintf(stderr, " -n N, --n-predict N number of tokens to predict (default: %d, -1 = infinity)\n", params.n_predict);
  392. fprintf(stderr, " --top-k N top-k sampling (default: %d, 0 = disabled)\n", params.top_k);
  393. fprintf(stderr, " --top-p N top-p sampling (default: %.1f, 1.0 = disabled)\n", (double)params.top_p);
  394. fprintf(stderr, " --tfs N tail free sampling, parameter z (default: %.1f, 1.0 = disabled)\n", (double)params.tfs_z);
  395. fprintf(stderr, " --typical N locally typical sampling, parameter p (default: %.1f, 1.0 = disabled)\n", (double)params.typical_p);
  396. fprintf(stderr, " --repeat-last-n N last n tokens to consider for penalize (default: %d, 0 = disabled, -1 = ctx_size)\n", params.repeat_last_n);
  397. fprintf(stderr, " --repeat-penalty N penalize repeat sequence of tokens (default: %.1f, 1.0 = disabled)\n", (double)params.repeat_penalty);
  398. fprintf(stderr, " --presence-penalty N repeat alpha presence penalty (default: %.1f, 0.0 = disabled)\n", (double)params.presence_penalty);
  399. fprintf(stderr, " --frequency-penalty N repeat alpha frequency penalty (default: %.1f, 0.0 = disabled)\n", (double)params.frequency_penalty);
  400. fprintf(stderr, " --mirostat N use Mirostat sampling.\n");
  401. fprintf(stderr, " Top K, Nucleus, Tail Free and Locally Typical samplers are ignored if used.\n");
  402. fprintf(stderr, " (default: %d, 0 = disabled, 1 = Mirostat, 2 = Mirostat 2.0)\n", params.mirostat);
  403. fprintf(stderr, " --mirostat-lr N Mirostat learning rate, parameter eta (default: %.1f)\n", (double)params.mirostat_eta);
  404. fprintf(stderr, " --mirostat-ent N Mirostat target entropy, parameter tau (default: %.1f)\n", (double)params.mirostat_tau);
  405. fprintf(stderr, " -l TOKEN_ID(+/-)BIAS, --logit-bias TOKEN_ID(+/-)BIAS\n");
  406. fprintf(stderr, " modifies the likelihood of token appearing in the completion,\n");
  407. fprintf(stderr, " i.e. `--logit-bias 15043+1` to increase likelihood of token ' Hello',\n");
  408. fprintf(stderr, " or `--logit-bias 15043-1` to decrease likelihood of token ' Hello'\n");
  409. fprintf(stderr, " -c N, --ctx-size N size of the prompt context (default: %d)\n", params.n_ctx);
  410. fprintf(stderr, " --ignore-eos ignore end of stream token and continue generating (implies --logit-bias 2-inf)\n");
  411. fprintf(stderr, " --no-penalize-nl do not penalize newline token\n");
  412. fprintf(stderr, " --memory-f32 use f32 instead of f16 for memory key+value (default: disabled)\n");
  413. fprintf(stderr, " not recommended: doubles context memory required and no measurable increase in quality\n");
  414. fprintf(stderr, " --temp N temperature (default: %.1f)\n", (double)params.temp);
  415. fprintf(stderr, " -b N, --batch-size N batch size for prompt processing (default: %d)\n", params.n_batch);
  416. fprintf(stderr, " --perplexity compute perplexity over the prompt\n");
  417. fprintf(stderr, " --keep number of tokens to keep from the initial prompt (default: %d, -1 = all)\n", params.n_keep);
  418. if (llama_mlock_supported()) {
  419. fprintf(stderr, " --mlock force system to keep model in RAM rather than swapping or compressing\n");
  420. }
  421. if (llama_mmap_supported()) {
  422. fprintf(stderr, " --no-mmap do not memory-map model (slower load but may reduce pageouts if not using mlock)\n");
  423. }
  424. #ifdef LLAMA_SUPPORTS_GPU_OFFLOAD
  425. fprintf(stderr, " -ngl N, --n-gpu-layers N\n");
  426. fprintf(stderr, " number of layers to store in VRAM\n");
  427. #endif
  428. fprintf(stderr, " --mtest compute maximum memory usage\n");
  429. fprintf(stderr, " --verbose-prompt print prompt before generation\n");
  430. fprintf(stderr, " --lora FNAME apply LoRA adapter (implies --no-mmap)\n");
  431. fprintf(stderr, " --lora-base FNAME optional model to use as a base for the layers modified by the LoRA adapter\n");
  432. fprintf(stderr, " -m FNAME, --model FNAME\n");
  433. fprintf(stderr, " model path (default: %s)\n", params.model.c_str());
  434. fprintf(stderr, "\n");
  435. }
  436. std::string gpt_random_prompt(std::mt19937 & rng) {
  437. const int r = rng() % 10;
  438. switch (r) {
  439. case 0: return "So";
  440. case 1: return "Once upon a time";
  441. case 2: return "When";
  442. case 3: return "The";
  443. case 4: return "After";
  444. case 5: return "If";
  445. case 6: return "import";
  446. case 7: return "He";
  447. case 8: return "She";
  448. case 9: return "They";
  449. default: return "To";
  450. }
  451. return "The";
  452. }
  453. // TODO: not great allocating this every time
  454. std::vector<llama_token> llama_tokenize(struct llama_context * ctx, const std::string & text, bool add_bos) {
  455. // initialize to prompt numer of chars, since n_tokens <= n_prompt_chars
  456. std::vector<llama_token> res(text.size() + (int) add_bos);
  457. const int n = llama_tokenize(ctx, text.c_str(), res.data(), res.size(), add_bos);
  458. assert(n >= 0);
  459. res.resize(n);
  460. return res;
  461. }
  462. struct llama_context * llama_init_from_gpt_params(const gpt_params & params) {
  463. auto lparams = llama_context_default_params();
  464. lparams.n_ctx = params.n_ctx;
  465. lparams.n_gpu_layers = params.n_gpu_layers;
  466. lparams.seed = params.seed;
  467. lparams.f16_kv = params.memory_f16;
  468. lparams.use_mmap = params.use_mmap;
  469. lparams.use_mlock = params.use_mlock;
  470. lparams.logits_all = params.perplexity;
  471. lparams.embedding = params.embedding;
  472. llama_context * lctx = llama_init_from_file(params.model.c_str(), lparams);
  473. if (lctx == NULL) {
  474. fprintf(stderr, "%s: error: failed to load model '%s'\n", __func__, params.model.c_str());
  475. return NULL;
  476. }
  477. if (!params.lora_adapter.empty()) {
  478. int err = llama_apply_lora_from_file(lctx,
  479. params.lora_adapter.c_str(),
  480. params.lora_base.empty() ? NULL : params.lora_base.c_str(),
  481. params.n_threads);
  482. if (err != 0) {
  483. fprintf(stderr, "%s: error: failed to apply lora adapter\n", __func__);
  484. return NULL;
  485. }
  486. }
  487. return lctx;
  488. }
  489. void console_init(console_state & con_st) {
  490. #if defined(_WIN32)
  491. // Windows-specific console initialization
  492. DWORD dwMode = 0;
  493. con_st.hConsole = GetStdHandle(STD_OUTPUT_HANDLE);
  494. if (con_st.hConsole == INVALID_HANDLE_VALUE || !GetConsoleMode(con_st.hConsole, &dwMode)) {
  495. con_st.hConsole = GetStdHandle(STD_ERROR_HANDLE);
  496. if (con_st.hConsole != INVALID_HANDLE_VALUE && (!GetConsoleMode(con_st.hConsole, &dwMode))) {
  497. con_st.hConsole = NULL;
  498. }
  499. }
  500. if (con_st.hConsole) {
  501. // Enable ANSI colors on Windows 10+
  502. if (con_st.use_color && !(dwMode & ENABLE_VIRTUAL_TERMINAL_PROCESSING)) {
  503. SetConsoleMode(con_st.hConsole, dwMode | ENABLE_VIRTUAL_TERMINAL_PROCESSING);
  504. }
  505. // Set console output codepage to UTF8
  506. SetConsoleOutputCP(CP_UTF8);
  507. }
  508. HANDLE hConIn = GetStdHandle(STD_INPUT_HANDLE);
  509. if (hConIn != INVALID_HANDLE_VALUE && GetConsoleMode(hConIn, &dwMode)) {
  510. // Set console input codepage to UTF16
  511. _setmode(_fileno(stdin), _O_WTEXT);
  512. // Turn off ICANON (ENABLE_LINE_INPUT) and ECHO (ENABLE_ECHO_INPUT)
  513. dwMode &= ~(ENABLE_LINE_INPUT | ENABLE_ECHO_INPUT);
  514. SetConsoleMode(hConIn, dwMode);
  515. }
  516. #else
  517. // POSIX-specific console initialization
  518. struct termios new_termios;
  519. tcgetattr(STDIN_FILENO, &con_st.prev_state);
  520. new_termios = con_st.prev_state;
  521. new_termios.c_lflag &= ~(ICANON | ECHO);
  522. new_termios.c_cc[VMIN] = 1;
  523. new_termios.c_cc[VTIME] = 0;
  524. tcsetattr(STDIN_FILENO, TCSANOW, &new_termios);
  525. con_st.tty = fopen("/dev/tty", "w+");
  526. if (con_st.tty != nullptr) {
  527. con_st.out = con_st.tty;
  528. }
  529. setlocale(LC_ALL, "");
  530. #endif
  531. }
  532. void console_cleanup(console_state & con_st) {
  533. // Reset console color
  534. console_set_color(con_st, CONSOLE_COLOR_DEFAULT);
  535. #if !defined(_WIN32)
  536. if (con_st.tty != nullptr) {
  537. con_st.out = stdout;
  538. fclose(con_st.tty);
  539. con_st.tty = nullptr;
  540. }
  541. // Restore the terminal settings on POSIX systems
  542. tcsetattr(STDIN_FILENO, TCSANOW, &con_st.prev_state);
  543. #endif
  544. }
  545. /* Keep track of current color of output, and emit ANSI code if it changes. */
  546. void console_set_color(console_state & con_st, console_color_t color) {
  547. if (con_st.use_color && con_st.color != color) {
  548. fflush(stdout);
  549. switch(color) {
  550. case CONSOLE_COLOR_DEFAULT:
  551. fprintf(con_st.out, ANSI_COLOR_RESET);
  552. break;
  553. case CONSOLE_COLOR_PROMPT:
  554. fprintf(con_st.out, ANSI_COLOR_YELLOW);
  555. break;
  556. case CONSOLE_COLOR_USER_INPUT:
  557. fprintf(con_st.out, ANSI_BOLD ANSI_COLOR_GREEN);
  558. break;
  559. }
  560. con_st.color = color;
  561. fflush(con_st.out);
  562. }
  563. }
  564. char32_t getchar32() {
  565. #if defined(_WIN32)
  566. HANDLE hConsole = GetStdHandle(STD_INPUT_HANDLE);
  567. wchar_t high_surrogate = 0;
  568. while (true) {
  569. INPUT_RECORD record;
  570. DWORD count;
  571. if (!ReadConsoleInputW(hConsole, &record, 1, &count) || count == 0) {
  572. return WEOF;
  573. }
  574. if (record.EventType == KEY_EVENT && record.Event.KeyEvent.bKeyDown) {
  575. wchar_t wc = record.Event.KeyEvent.uChar.UnicodeChar;
  576. if (wc == 0) {
  577. continue;
  578. }
  579. if ((wc >= 0xD800) && (wc <= 0xDBFF)) { // Check if wc is a high surrogate
  580. high_surrogate = wc;
  581. continue;
  582. } else if ((wc >= 0xDC00) && (wc <= 0xDFFF)) { // Check if wc is a low surrogate
  583. if (high_surrogate != 0) { // Check if we have a high surrogate
  584. return ((high_surrogate - 0xD800) << 10) + (wc - 0xDC00) + 0x10000;
  585. }
  586. }
  587. high_surrogate = 0; // Reset the high surrogate
  588. return static_cast<char32_t>(wc);
  589. }
  590. }
  591. #else
  592. wchar_t wc = getwchar();
  593. if (static_cast<wint_t>(wc) == WEOF) {
  594. return WEOF;
  595. }
  596. #if WCHAR_MAX == 0xFFFF
  597. if ((wc >= 0xD800) && (wc <= 0xDBFF)) { // Check if wc is a high surrogate
  598. wchar_t low_surrogate = getwchar();
  599. if ((low_surrogate >= 0xDC00) && (low_surrogate <= 0xDFFF)) { // Check if the next wchar is a low surrogate
  600. return (static_cast<char32_t>(wc & 0x03FF) << 10) + (low_surrogate & 0x03FF) + 0x10000;
  601. }
  602. }
  603. if ((wc >= 0xD800) && (wc <= 0xDFFF)) { // Invalid surrogate pair
  604. return 0xFFFD; // Return the replacement character U+FFFD
  605. }
  606. #endif
  607. return static_cast<char32_t>(wc);
  608. #endif
  609. }
  610. void pop_cursor(console_state & con_st) {
  611. #if defined(_WIN32)
  612. if (con_st.hConsole != NULL) {
  613. CONSOLE_SCREEN_BUFFER_INFO bufferInfo;
  614. GetConsoleScreenBufferInfo(con_st.hConsole, &bufferInfo);
  615. COORD newCursorPosition = bufferInfo.dwCursorPosition;
  616. if (newCursorPosition.X == 0) {
  617. newCursorPosition.X = bufferInfo.dwSize.X - 1;
  618. newCursorPosition.Y -= 1;
  619. } else {
  620. newCursorPosition.X -= 1;
  621. }
  622. SetConsoleCursorPosition(con_st.hConsole, newCursorPosition);
  623. return;
  624. }
  625. #endif
  626. putc('\b', con_st.out);
  627. }
  628. int estimateWidth(char32_t codepoint) {
  629. #if defined(_WIN32)
  630. return 1;
  631. #else
  632. return wcwidth(codepoint);
  633. #endif
  634. }
  635. int put_codepoint(console_state & con_st, const char* utf8_codepoint, size_t length, int expectedWidth) {
  636. #if defined(_WIN32)
  637. CONSOLE_SCREEN_BUFFER_INFO bufferInfo;
  638. if (!GetConsoleScreenBufferInfo(con_st.hConsole, &bufferInfo)) {
  639. // go with the default
  640. return expectedWidth;
  641. }
  642. COORD initialPosition = bufferInfo.dwCursorPosition;
  643. DWORD nNumberOfChars = length;
  644. WriteConsole(con_st.hConsole, utf8_codepoint, nNumberOfChars, &nNumberOfChars, NULL);
  645. CONSOLE_SCREEN_BUFFER_INFO newBufferInfo;
  646. GetConsoleScreenBufferInfo(con_st.hConsole, &newBufferInfo);
  647. // Figure out our real position if we're in the last column
  648. if (utf8_codepoint[0] != 0x09 && initialPosition.X == newBufferInfo.dwSize.X - 1) {
  649. DWORD nNumberOfChars;
  650. WriteConsole(con_st.hConsole, &" \b", 2, &nNumberOfChars, NULL);
  651. GetConsoleScreenBufferInfo(con_st.hConsole, &newBufferInfo);
  652. }
  653. int width = newBufferInfo.dwCursorPosition.X - initialPosition.X;
  654. if (width < 0) {
  655. width += newBufferInfo.dwSize.X;
  656. }
  657. return width;
  658. #else
  659. // we can trust expectedWidth if we've got one
  660. if (expectedWidth >= 0 || con_st.tty == nullptr) {
  661. fwrite(utf8_codepoint, length, 1, con_st.out);
  662. return expectedWidth;
  663. }
  664. fputs("\033[6n", con_st.tty); // Query cursor position
  665. int x1, x2, y1, y2;
  666. int results = 0;
  667. results = fscanf(con_st.tty, "\033[%d;%dR", &y1, &x1);
  668. fwrite(utf8_codepoint, length, 1, con_st.tty);
  669. fputs("\033[6n", con_st.tty); // Query cursor position
  670. results += fscanf(con_st.tty, "\033[%d;%dR", &y2, &x2);
  671. if (results != 4) {
  672. return expectedWidth;
  673. }
  674. int width = x2 - x1;
  675. if (width < 0) {
  676. // Calculate the width considering text wrapping
  677. struct winsize w;
  678. ioctl(STDOUT_FILENO, TIOCGWINSZ, &w);
  679. width += w.ws_col;
  680. }
  681. return width;
  682. #endif
  683. }
  684. void replace_last(console_state & con_st, char ch) {
  685. #if defined(_WIN32)
  686. pop_cursor(con_st);
  687. put_codepoint(con_st, &ch, 1, 1);
  688. #else
  689. fprintf(con_st.out, "\b%c", ch);
  690. #endif
  691. }
  692. void append_utf8(char32_t ch, std::string & out) {
  693. if (ch <= 0x7F) {
  694. out.push_back(static_cast<unsigned char>(ch));
  695. } else if (ch <= 0x7FF) {
  696. out.push_back(static_cast<unsigned char>(0xC0 | ((ch >> 6) & 0x1F)));
  697. out.push_back(static_cast<unsigned char>(0x80 | (ch & 0x3F)));
  698. } else if (ch <= 0xFFFF) {
  699. out.push_back(static_cast<unsigned char>(0xE0 | ((ch >> 12) & 0x0F)));
  700. out.push_back(static_cast<unsigned char>(0x80 | ((ch >> 6) & 0x3F)));
  701. out.push_back(static_cast<unsigned char>(0x80 | (ch & 0x3F)));
  702. } else if (ch <= 0x10FFFF) {
  703. out.push_back(static_cast<unsigned char>(0xF0 | ((ch >> 18) & 0x07)));
  704. out.push_back(static_cast<unsigned char>(0x80 | ((ch >> 12) & 0x3F)));
  705. out.push_back(static_cast<unsigned char>(0x80 | ((ch >> 6) & 0x3F)));
  706. out.push_back(static_cast<unsigned char>(0x80 | (ch & 0x3F)));
  707. } else {
  708. // Invalid Unicode code point
  709. }
  710. }
  711. // Helper function to remove the last UTF-8 character from a string
  712. void pop_back_utf8_char(std::string & line) {
  713. if (line.empty()) {
  714. return;
  715. }
  716. size_t pos = line.length() - 1;
  717. // Find the start of the last UTF-8 character (checking up to 4 bytes back)
  718. for (size_t i = 0; i < 3 && pos > 0; ++i, --pos) {
  719. if ((line[pos] & 0xC0) != 0x80) break; // Found the start of the character
  720. }
  721. line.erase(pos);
  722. }
  723. bool console_readline(console_state & con_st, std::string & line) {
  724. console_set_color(con_st, CONSOLE_COLOR_USER_INPUT);
  725. if (con_st.out != stdout) {
  726. fflush(stdout);
  727. }
  728. line.clear();
  729. std::vector<int> widths;
  730. bool is_special_char = false;
  731. bool end_of_stream = false;
  732. char32_t input_char;
  733. while (true) {
  734. fflush(con_st.out); // Ensure all output is displayed before waiting for input
  735. input_char = getchar32();
  736. if (input_char == '\r' || input_char == '\n') {
  737. break;
  738. }
  739. if (input_char == (char32_t) WEOF || input_char == 0x04 /* Ctrl+D*/) {
  740. end_of_stream = true;
  741. break;
  742. }
  743. if (is_special_char) {
  744. console_set_color(con_st, CONSOLE_COLOR_USER_INPUT);
  745. replace_last(con_st, line.back());
  746. is_special_char = false;
  747. }
  748. if (input_char == '\033') { // Escape sequence
  749. char32_t code = getchar32();
  750. if (code == '[' || code == 0x1B) {
  751. // Discard the rest of the escape sequence
  752. while ((code = getchar32()) != (char32_t) WEOF) {
  753. if ((code >= 'A' && code <= 'Z') || (code >= 'a' && code <= 'z') || code == '~') {
  754. break;
  755. }
  756. }
  757. }
  758. } else if (input_char == 0x08 || input_char == 0x7F) { // Backspace
  759. if (!widths.empty()) {
  760. int count;
  761. do {
  762. count = widths.back();
  763. widths.pop_back();
  764. // Move cursor back, print space, and move cursor back again
  765. for (int i = 0; i < count; i++) {
  766. replace_last(con_st, ' ');
  767. pop_cursor(con_st);
  768. }
  769. pop_back_utf8_char(line);
  770. } while (count == 0 && !widths.empty());
  771. }
  772. } else {
  773. int offset = line.length();
  774. append_utf8(input_char, line);
  775. int width = put_codepoint(con_st, line.c_str() + offset, line.length() - offset, estimateWidth(input_char));
  776. if (width < 0) {
  777. width = 0;
  778. }
  779. widths.push_back(width);
  780. }
  781. if (!line.empty() && (line.back() == '\\' || line.back() == '/')) {
  782. console_set_color(con_st, CONSOLE_COLOR_PROMPT);
  783. replace_last(con_st, line.back());
  784. is_special_char = true;
  785. }
  786. }
  787. bool has_more = con_st.multiline_input;
  788. if (is_special_char) {
  789. replace_last(con_st, ' ');
  790. pop_cursor(con_st);
  791. char last = line.back();
  792. line.pop_back();
  793. if (last == '\\') {
  794. line += '\n';
  795. fputc('\n', con_st.out);
  796. has_more = !has_more;
  797. } else {
  798. // llama will just eat the single space, it won't act as a space
  799. if (line.length() == 1 && line.back() == ' ') {
  800. line.clear();
  801. pop_cursor(con_st);
  802. }
  803. has_more = false;
  804. }
  805. } else {
  806. if (end_of_stream) {
  807. has_more = false;
  808. } else {
  809. line += '\n';
  810. fputc('\n', con_st.out);
  811. }
  812. }
  813. fflush(con_st.out);
  814. return has_more;
  815. }