infill.cpp 23 KB

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  1. #include "common.h"
  2. #include "console.h"
  3. #include "llama.h"
  4. #include <cassert>
  5. #include <cinttypes>
  6. #include <cmath>
  7. #include <cstdio>
  8. #include <cstring>
  9. #include <ctime>
  10. #include <fstream>
  11. #include <iostream>
  12. #include <sstream>
  13. #include <string>
  14. #include <vector>
  15. #if defined (__unix__) || (defined (__APPLE__) && defined (__MACH__))
  16. #include <signal.h>
  17. #include <unistd.h>
  18. #elif defined (_WIN32)
  19. #define WIN32_LEAN_AND_MEAN
  20. #ifndef NOMINMAX
  21. #define NOMINMAX
  22. #endif
  23. #include <windows.h>
  24. #include <signal.h>
  25. #endif
  26. #if defined(_MSC_VER)
  27. #pragma warning(disable: 4244 4267) // possible loss of data
  28. #endif
  29. static llama_context ** g_ctx;
  30. static llama_model ** g_model;
  31. static gpt_sampler ** g_smpl;
  32. static gpt_params * g_params;
  33. static std::vector<llama_token> * g_input_tokens;
  34. static std::ostringstream * g_output_ss;
  35. static std::vector<llama_token> * g_output_tokens;
  36. static bool is_interacting = false;
  37. static void write_logfile(
  38. const llama_context * ctx, const gpt_params & params, const llama_model * model,
  39. const std::vector<llama_token> & input_tokens, const std::string & output,
  40. const std::vector<llama_token> & output_tokens
  41. ) {
  42. if (params.logdir.empty()) {
  43. return;
  44. }
  45. const std::string timestamp = string_get_sortable_timestamp();
  46. const bool success = fs_create_directory_with_parents(params.logdir);
  47. if (!success) {
  48. fprintf(stderr, "%s: warning: failed to create logdir %s, cannot write logfile\n",
  49. __func__, params.logdir.c_str());
  50. return;
  51. }
  52. const std::string logfile_path = params.logdir + timestamp + ".yml";
  53. FILE * logfile = fopen(logfile_path.c_str(), "w");
  54. if (logfile == NULL) {
  55. fprintf(stderr, "%s: failed to open logfile %s\n", __func__, logfile_path.c_str());
  56. return;
  57. }
  58. fprintf(logfile, "binary: infill\n");
  59. char model_desc[128];
  60. llama_model_desc(model, model_desc, sizeof(model_desc));
  61. yaml_dump_non_result_info(logfile, params, ctx, timestamp, input_tokens, model_desc);
  62. fprintf(logfile, "\n");
  63. fprintf(logfile, "######################\n");
  64. fprintf(logfile, "# Generation Results #\n");
  65. fprintf(logfile, "######################\n");
  66. fprintf(logfile, "\n");
  67. yaml_dump_string_multiline(logfile, "output", output.c_str());
  68. yaml_dump_vector_int(logfile, "output_tokens", output_tokens);
  69. llama_perf_dump_yaml(logfile, ctx);
  70. fclose(logfile);
  71. }
  72. #if defined (__unix__) || (defined (__APPLE__) && defined (__MACH__)) || defined (_WIN32)
  73. static void sigint_handler(int signo) {
  74. if (signo == SIGINT) {
  75. if (!is_interacting) {
  76. is_interacting = true;
  77. } else {
  78. console::cleanup();
  79. printf("\n");
  80. gpt_perf_print(*g_ctx, *g_smpl);
  81. write_logfile(*g_ctx, *g_params, *g_model, *g_input_tokens, g_output_ss->str(), *g_output_tokens);
  82. _exit(130);
  83. }
  84. }
  85. }
  86. #endif
  87. int main(int argc, char ** argv) {
  88. gpt_params params;
  89. g_params = &params;
  90. if (!gpt_params_parse(argc, argv, params)) {
  91. gpt_params_print_usage(argc, argv, params);
  92. return 1;
  93. }
  94. auto & sparams = params.sparams;
  95. #ifndef LOG_DISABLE_LOGS
  96. log_set_target(log_filename_generator("infill", "log"));
  97. LOG_TEE("Log start\n");
  98. log_dump_cmdline(argc, argv);
  99. #endif // LOG_DISABLE_LOGS
  100. console::init(params.simple_io, params.use_color);
  101. atexit([]() { console::cleanup(); });
  102. if (params.logits_all) {
  103. printf("\n************\n");
  104. printf("%s: please use the 'perplexity' tool for perplexity calculations\n", __func__);
  105. printf("************\n\n");
  106. return 0;
  107. }
  108. if (params.embedding) {
  109. printf("\n************\n");
  110. printf("%s: please use the 'embedding' tool for embedding calculations\n", __func__);
  111. printf("************\n\n");
  112. return 0;
  113. }
  114. if (params.n_ctx != 0 && params.n_ctx < 8) {
  115. LOG_TEE("%s: warning: minimum context size is 8, using minimum size.\n", __func__);
  116. params.n_ctx = 8;
  117. }
  118. if (!params.interactive_first && (params.input_prefix.empty() && params.input_suffix.empty())) {
  119. printf("\n************\n");
  120. printf("%s: please use '--interactive_first' or specify '--in_prefix' and/or '--in_suffix'\n", __func__);
  121. printf("************\n\n");
  122. return 0;
  123. }
  124. if (params.rope_freq_base != 0.0) {
  125. LOG_TEE("%s: warning: changing RoPE frequency base to %g.\n", __func__, params.rope_freq_base);
  126. }
  127. if (params.rope_freq_scale != 0.0) {
  128. LOG_TEE("%s: warning: scaling RoPE frequency by %g.\n", __func__, params.rope_freq_scale);
  129. }
  130. print_build_info();
  131. LOG_TEE("%s: seed = %u\n", __func__, params.sparams.seed);
  132. LOG("%s: llama backend init\n", __func__);
  133. llama_backend_init();
  134. llama_numa_init(params.numa);
  135. llama_model * model = nullptr;
  136. llama_context * ctx = nullptr;
  137. gpt_sampler * smpl = nullptr;
  138. g_model = &model;
  139. g_ctx = &ctx;
  140. g_smpl = &smpl;
  141. // load the model and apply lora adapter, if any
  142. LOG("%s: load the model and apply lora adapter, if any\n", __func__);
  143. llama_init_result llama_init = llama_init_from_gpt_params(params);
  144. model = llama_init.model;
  145. ctx = llama_init.context;
  146. if (model == NULL) {
  147. LOG_TEE("%s: error: unable to load model\n", __func__);
  148. return 1;
  149. }
  150. const int n_ctx_train = llama_n_ctx_train(model);
  151. const int n_ctx = llama_n_ctx(ctx);
  152. LOG("n_ctx: %d\n", n_ctx);
  153. if (n_ctx > n_ctx_train) {
  154. LOG_TEE("%s: warning: model was trained on only %d context tokens (%d specified)\n",
  155. __func__, n_ctx_train, n_ctx);
  156. }
  157. // print system information
  158. {
  159. LOG_TEE("\n");
  160. LOG_TEE("%s\n", gpt_params_get_system_info(params).c_str());
  161. }
  162. const bool add_bos = llama_add_bos_token(model);
  163. GGML_ASSERT(!llama_add_eos_token(model));
  164. LOG("add_bos: %d\n", add_bos);
  165. std::vector<llama_token> embd_inp;
  166. std::vector<llama_token> embd_end;
  167. std::vector<llama_token> inp_pfx = ::llama_tokenize(ctx, params.input_prefix, false);
  168. std::vector<llama_token> inp_sfx = ::llama_tokenize(ctx, params.input_suffix, false);
  169. GGML_ASSERT(llama_token_prefix(model) >= 0);
  170. GGML_ASSERT(llama_token_suffix(model) >= 0);
  171. inp_pfx.insert(inp_pfx.begin(), llama_token_prefix(model));
  172. inp_sfx.insert(inp_sfx.begin(), llama_token_suffix(model));
  173. embd_inp = params.spm_infill ? inp_sfx : inp_pfx;
  174. embd_end = params.spm_infill ? inp_pfx : inp_sfx;
  175. if (add_bos) {
  176. embd_inp.insert(embd_inp.begin(), llama_token_bos(model));
  177. }
  178. embd_inp.insert(embd_inp.end(), embd_end.begin(), embd_end.end());
  179. const llama_token middle_token = llama_token_middle(model);
  180. if (middle_token >= 0) {
  181. embd_inp.push_back(middle_token);
  182. }
  183. LOG("prefix: \"%s\"\n", log_tostr(params.input_prefix));
  184. LOG("suffix: \"%s\"\n", log_tostr(params.input_suffix));
  185. LOG("tokens: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, embd_inp).c_str());
  186. // Should not run without any tokens
  187. if (embd_inp.empty()) {
  188. embd_inp.push_back(llama_token_bos(model));
  189. LOG("embd_inp was considered empty and bos was added: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, embd_inp).c_str());
  190. }
  191. if ((int) embd_inp.size() > n_ctx - 4) {
  192. LOG_TEE("%s: error: prompt is too long (%d tokens, max %d)\n", __func__, (int) embd_inp.size(), n_ctx - 4);
  193. return 1;
  194. }
  195. // number of tokens to keep when resetting context
  196. if (params.n_keep < 0 || params.n_keep > (int) embd_inp.size()) {
  197. params.n_keep = (int)embd_inp.size();
  198. }
  199. LOG("inp_pfx: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, inp_pfx).c_str());
  200. LOG("inp_sfx: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, inp_sfx).c_str());
  201. // enable interactive mode if interactive start is specified
  202. if (params.interactive_first) {
  203. params.interactive = true;
  204. }
  205. if (params.verbose_prompt) {
  206. LOG_TEE("\n");
  207. LOG_TEE("%s: prompt: '%s'\n", __func__, params.prompt.c_str());
  208. LOG_TEE("%s: number of tokens in prompt = %zu\n", __func__, embd_inp.size());
  209. for (int i = 0; i < (int) embd_inp.size(); i++) {
  210. LOG_TEE("%6d -> '%s'\n", embd_inp[i], llama_token_to_piece(ctx, embd_inp[i]).c_str());
  211. }
  212. if (params.n_keep > 0) {
  213. LOG_TEE("%s: static prompt based on n_keep: '", __func__);
  214. for (int i = 0; i < params.n_keep; i++) {
  215. LOG_TEE("%s", llama_token_to_piece(ctx, embd_inp[i]).c_str());
  216. }
  217. LOG_TEE("'\n");
  218. }
  219. LOG_TEE("\n");
  220. }
  221. if (params.interactive) {
  222. #if defined (__unix__) || (defined (__APPLE__) && defined (__MACH__))
  223. struct sigaction sigint_action;
  224. sigint_action.sa_handler = sigint_handler;
  225. sigemptyset (&sigint_action.sa_mask);
  226. sigint_action.sa_flags = 0;
  227. sigaction(SIGINT, &sigint_action, NULL);
  228. #elif defined (_WIN32)
  229. auto console_ctrl_handler = +[](DWORD ctrl_type) -> BOOL {
  230. return (ctrl_type == CTRL_C_EVENT) ? (sigint_handler(SIGINT), true) : false;
  231. };
  232. SetConsoleCtrlHandler(reinterpret_cast<PHANDLER_ROUTINE>(console_ctrl_handler), true);
  233. #endif
  234. LOG_TEE("%s: interactive mode on.\n", __func__);
  235. if (params.input_prefix_bos) {
  236. LOG_TEE("Input prefix with BOS\n");
  237. }
  238. if (!params.input_prefix.empty()) {
  239. LOG_TEE("Input prefix: '%s'\n", params.input_prefix.c_str());
  240. }
  241. if (!params.input_suffix.empty()) {
  242. LOG_TEE("Input suffix: '%s'\n", params.input_suffix.c_str());
  243. }
  244. }
  245. LOG_TEE("sampling: \n%s\n", sparams.print().c_str());
  246. LOG_TEE("generate: n_ctx = %d, n_batch = %d, n_predict = %d, n_keep = %d\n", n_ctx, params.n_batch, params.n_predict, params.n_keep);
  247. LOG_TEE("\n\n");
  248. LOG_TEE("\n##### Infill mode #####\n\n");
  249. if (params.infill) {
  250. printf("\n************\n");
  251. printf("no need to specify '--infill', always running infill\n");
  252. printf("************\n\n");
  253. }
  254. if (params.interactive) {
  255. const char *control_message;
  256. if (params.multiline_input) {
  257. control_message = " - To return control to LLaMA, end your input with '\\'.\n"
  258. " - To return control without starting a new line, end your input with '/'.\n";
  259. } else {
  260. control_message = " - Press Return to return control to LLaMA.\n"
  261. " - To return control without starting a new line, end your input with '/'.\n"
  262. " - If you want to submit another line, end your input with '\\'.\n";
  263. }
  264. LOG_TEE("== Running in interactive mode. ==\n");
  265. #if defined (__unix__) || (defined (__APPLE__) && defined (__MACH__)) || defined (_WIN32)
  266. LOG_TEE( " - Press Ctrl+C to interject at any time.\n");
  267. #endif
  268. LOG_TEE( "%s\n", control_message);
  269. is_interacting = params.interactive_first;
  270. }
  271. bool input_echo = true;
  272. int n_past = 0;
  273. int n_remain = params.n_predict;
  274. int n_consumed = 0;
  275. std::vector<int> input_tokens; g_input_tokens = &input_tokens;
  276. std::vector<int> output_tokens; g_output_tokens = &output_tokens;
  277. std::ostringstream output_ss; g_output_ss = &output_ss;
  278. // the first thing we will do is to output the prompt, so set color accordingly
  279. console::set_display(console::prompt);
  280. std::vector<llama_token> embd;
  281. smpl = gpt_sampler_init(model, sparams);
  282. while (n_remain != 0 || params.interactive) {
  283. // predict
  284. if (!embd.empty()) {
  285. // Note: n_ctx - 4 here is to match the logic for commandline prompt handling via
  286. // --prompt or --file which uses the same value.
  287. int max_embd_size = n_ctx - 4;
  288. // Ensure the input doesn't exceed the context size by truncating embd if necessary.
  289. if ((int) embd.size() > max_embd_size) {
  290. const int skipped_tokens = (int) embd.size() - max_embd_size;
  291. embd.resize(max_embd_size);
  292. console::set_display(console::error);
  293. printf("<<input too long: skipped %d token%s>>", skipped_tokens, skipped_tokens != 1 ? "s" : "");
  294. console::set_display(console::reset);
  295. fflush(stdout);
  296. }
  297. // infinite text generation via context swapping
  298. // if we run out of context:
  299. // - take the n_keep first tokens from the original prompt (via n_past)
  300. // - take half of the last (n_ctx - n_keep) tokens and recompute the logits in batches
  301. if (n_past + (int) embd.size() > n_ctx) {
  302. if (params.n_predict == -2) {
  303. LOG_TEE("\n\n%s: context full and n_predict == -%d => stopping\n", __func__, params.n_predict);
  304. break;
  305. }
  306. const int n_left = n_past - params.n_keep - 1;
  307. const int n_discard = n_left/2;
  308. LOG("context full, swapping: n_past = %d, n_left = %d, n_ctx = %d, n_keep = %d, n_discard = %d\n",
  309. n_past, n_left, n_ctx, params.n_keep, n_discard);
  310. llama_kv_cache_seq_rm (ctx, 0, params.n_keep + 1 , params.n_keep + n_discard + 1);
  311. llama_kv_cache_seq_add(ctx, 0, params.n_keep + 1 + n_discard, n_past, -n_discard);
  312. n_past -= n_discard;
  313. LOG("after swap: n_past = %d\n", n_past);
  314. LOG("embd: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, embd).c_str());
  315. }
  316. // evaluate tokens in batches
  317. // embd is typically prepared beforehand to fit within a batch, but not always
  318. for (int i = 0; i < (int) embd.size(); i += params.n_batch) {
  319. int n_eval = (int) embd.size() - i;
  320. if (n_eval > params.n_batch) {
  321. n_eval = params.n_batch;
  322. }
  323. LOG("eval: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, embd).c_str());
  324. if (llama_decode(ctx, llama_batch_get_one(&embd[i], n_eval, n_past, 0))) {
  325. LOG_TEE("%s : failed to eval\n", __func__);
  326. return 1;
  327. }
  328. n_past += n_eval;
  329. LOG("n_past = %d\n", n_past);
  330. }
  331. }
  332. embd.clear();
  333. if ((int) embd_inp.size() <= n_consumed && !is_interacting) {
  334. const llama_token id = gpt_sampler_sample(smpl, ctx, -1);
  335. gpt_sampler_accept(smpl, id, true);
  336. // LOG("last: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, smpl->prev.to_vector()).c_str());
  337. embd.push_back(id);
  338. // echo this to console
  339. input_echo = true;
  340. // decrement remaining sampling budget
  341. --n_remain;
  342. LOG("n_remain: %d\n", n_remain);
  343. } else {
  344. // some user input remains from prompt or interaction, forward it to processing
  345. LOG("embd_inp.size(): %d, n_consumed: %d\n", (int) embd_inp.size(), n_consumed);
  346. while ((int) embd_inp.size() > n_consumed) {
  347. embd.push_back(embd_inp[n_consumed]);
  348. // push the prompt in the sampling context in order to apply repetition penalties later
  349. // for the prompt, we don't apply grammar rules
  350. gpt_sampler_accept(smpl, embd_inp[n_consumed], false);
  351. ++n_consumed;
  352. if ((int) embd.size() >= params.n_batch) {
  353. break;
  354. }
  355. }
  356. }
  357. // display text
  358. if (input_echo) {
  359. for (auto id : embd) {
  360. const std::string token_str = llama_token_to_piece(ctx, id);
  361. printf("%s", token_str.c_str());
  362. if (embd.size() > 1) {
  363. input_tokens.push_back(id);
  364. } else {
  365. output_tokens.push_back(id);
  366. output_ss << token_str;
  367. }
  368. }
  369. fflush(stdout);
  370. }
  371. // reset color to default if we there is no pending user input
  372. if (input_echo && (int) embd_inp.size() == n_consumed) {
  373. console::set_display(console::reset);
  374. }
  375. // if not currently processing queued inputs;
  376. if ((int) embd_inp.size() <= n_consumed) {
  377. // deal with eot token in infill mode
  378. if ((gpt_sampler_last(smpl) == llama_token_eot(model) || is_interacting) && params.interactive){
  379. if (is_interacting && !params.interactive_first) {
  380. // print an eot token
  381. printf("%s", llama_token_to_piece(ctx, llama_token_eot(model)).c_str());
  382. }
  383. fflush(stdout);
  384. printf("\n");
  385. console::set_display(console::user_input);
  386. std::string buffer;
  387. std::string line;
  388. bool another_line=true;
  389. // set a new prefix via stdin
  390. do {
  391. another_line = console::readline(line, params.multiline_input);
  392. buffer += line;
  393. } while (another_line);
  394. // check if we got an empty line, if so we use the old input
  395. if (!buffer.empty() && !(buffer.length() == 1 && buffer[0] == '\n')) {
  396. params.input_prefix = buffer;
  397. }
  398. buffer.clear();
  399. // set a new suffix via stdin
  400. do {
  401. another_line = console::readline(line, params.multiline_input);
  402. buffer += line;
  403. } while (another_line);
  404. // check if we got an empty line
  405. if (!buffer.empty() && !(buffer.length() == 1 && buffer[0] == '\n')) {
  406. params.input_suffix = buffer;
  407. }
  408. buffer.clear();
  409. // done taking input, reset color
  410. console::set_display(console::reset);
  411. if (params.escape) {
  412. //process escape sequences, for the initial prompt this is done in common.cpp when we load the params, but for the interactive mode we need to do it here
  413. string_process_escapes(params.input_prefix);
  414. string_process_escapes(params.input_suffix);
  415. }
  416. // tokenize new prefix and suffix
  417. std::vector<llama_token> inp_pfx = ::llama_tokenize(ctx, params.input_prefix, false);
  418. std::vector<llama_token> inp_sfx = ::llama_tokenize(ctx, params.input_suffix, false);
  419. inp_pfx.insert(inp_pfx.begin(), llama_token_prefix(model));
  420. inp_sfx.insert(inp_sfx.begin(), llama_token_suffix(model));
  421. embd_inp = params.spm_infill ? inp_sfx : inp_pfx;
  422. embd_end = params.spm_infill ? inp_pfx : inp_sfx;
  423. if (add_bos) {
  424. embd_inp.insert(embd_inp.begin(), llama_token_bos(model));
  425. }
  426. embd_inp.insert(embd_inp.end(), embd_end.begin(), embd_end.end());
  427. if (middle_token >= 0) {
  428. embd_inp.push_back(middle_token);
  429. }
  430. embd.clear();
  431. n_remain = params.n_predict;
  432. n_past = 0;
  433. n_consumed = 0;
  434. // LOG_TEE("took new input\n");
  435. is_interacting = false;
  436. }
  437. // deal with end of generation tokens in interactive mode
  438. else if (llama_token_is_eog(model, gpt_sampler_last(smpl))) {
  439. LOG("found EOS token\n");
  440. if (params.interactive) {
  441. is_interacting = true;
  442. printf("\n");
  443. console::set_display(console::user_input);
  444. fflush(stdout);
  445. }
  446. }
  447. if (n_past > 0 && is_interacting && !params.interactive) {
  448. LOG("waiting for user input\n");
  449. if (params.input_prefix_bos) {
  450. LOG("adding input prefix BOS token\n");
  451. embd_inp.push_back(llama_token_bos(model));
  452. }
  453. std::string buffer;
  454. if (!params.input_prefix.empty()) {
  455. LOG("appending input prefix: '%s'\n", params.input_prefix.c_str());
  456. buffer += params.input_prefix;
  457. printf("%s", buffer.c_str());
  458. }
  459. std::string line;
  460. bool another_line = true;
  461. do {
  462. another_line = console::readline(line, params.multiline_input);
  463. buffer += line;
  464. } while (another_line);
  465. // done taking input, reset color
  466. console::set_display(console::reset);
  467. // Add tokens to embd only if the input buffer is non-empty
  468. // Entering a empty line lets the user pass control back
  469. if (buffer.length() > 1) {
  470. // append input suffix if any
  471. if (!params.input_suffix.empty()) {
  472. LOG("appending input suffix: '%s'\n", params.input_suffix.c_str());
  473. buffer += params.input_suffix;
  474. printf("%s", params.input_suffix.c_str());
  475. }
  476. LOG("buffer: '%s'\n", buffer.c_str());
  477. const size_t original_size = embd_inp.size();
  478. const auto line_inp = ::llama_tokenize(ctx, buffer, false);
  479. LOG("input tokens: %s\n", LOG_TOKENS_TOSTR_PRETTY(ctx, line_inp).c_str());
  480. embd_inp.insert(embd_inp.end(), line_inp.begin(), line_inp.end());
  481. for (size_t i = original_size; i < embd_inp.size(); ++i) {
  482. const llama_token token = embd_inp[i];
  483. output_tokens.push_back(token);
  484. output_ss << llama_token_to_piece(ctx, token);
  485. }
  486. n_remain -= line_inp.size();
  487. LOG("n_remain: %d\n", n_remain);
  488. } else {
  489. LOG("empty line, passing control back\n");
  490. }
  491. input_echo = false; // do not echo this again
  492. }
  493. if (n_past > 0) {
  494. if (is_interacting) {
  495. gpt_sampler_reset(smpl);
  496. }
  497. is_interacting = false;
  498. }
  499. }
  500. // end of generation
  501. if (!embd.empty() && llama_token_is_eog(model, embd.back()) && !params.interactive) {
  502. break;
  503. }
  504. // In interactive mode, respect the maximum number of tokens and drop back to user input when reached.
  505. // We skip this logic when n_predict == -1 (infinite) or -2 (stop at context size).
  506. if (params.interactive && n_remain <= 0 && params.n_predict >= 0) {
  507. n_remain = params.n_predict;
  508. is_interacting = true;
  509. }
  510. }
  511. if (!params.interactive && n_remain <= 0) {
  512. printf("%s", llama_token_to_piece(ctx, llama_token_eot(model)).c_str());
  513. fflush(stdout);
  514. }
  515. LOG_TEE("\n");
  516. gpt_perf_print(ctx, smpl);
  517. write_logfile(ctx, params, model, input_tokens, output_ss.str(), output_tokens);
  518. llama_free(ctx);
  519. llama_free_model(model);
  520. gpt_sampler_free(smpl);
  521. llama_backend_free();
  522. #ifndef LOG_DISABLE_LOGS
  523. LOG_TEE("Log end\n");
  524. #endif // LOG_DISABLE_LOGS
  525. return 0;
  526. }