grammar-parser.cpp 21 KB

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  1. #include "grammar-parser.h"
  2. #include <cstdint>
  3. #include <cwchar>
  4. #include <string>
  5. #include <utility>
  6. #include <stdexcept>
  7. #include <exception>
  8. namespace grammar_parser {
  9. // NOTE: assumes valid utf8 (but checks for overrun)
  10. // copied from llama.cpp
  11. static std::pair<uint32_t, const char *> decode_utf8(const char * src) {
  12. static const int lookup[] = { 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 2, 2, 3, 4 };
  13. uint8_t first_byte = static_cast<uint8_t>(*src);
  14. uint8_t highbits = first_byte >> 4;
  15. int len = lookup[highbits];
  16. uint8_t mask = (1 << (8 - len)) - 1;
  17. uint32_t value = first_byte & mask;
  18. const char * end = src + len; // may overrun!
  19. const char * pos = src + 1;
  20. for ( ; pos < end && *pos; pos++) {
  21. value = (value << 6) + (static_cast<uint8_t>(*pos) & 0x3F);
  22. }
  23. return std::make_pair(value, pos);
  24. }
  25. static uint32_t get_symbol_id(parse_state & state, const char * src, size_t len) {
  26. uint32_t next_id = static_cast<uint32_t>(state.symbol_ids.size());
  27. auto result = state.symbol_ids.emplace(std::string(src, len), next_id);
  28. return result.first->second;
  29. }
  30. static uint32_t generate_symbol_id(parse_state & state, const std::string & base_name) {
  31. uint32_t next_id = static_cast<uint32_t>(state.symbol_ids.size());
  32. state.symbol_ids[base_name + '_' + std::to_string(next_id)] = next_id;
  33. return next_id;
  34. }
  35. static void add_rule(
  36. parse_state & state,
  37. uint32_t rule_id,
  38. const std::vector<llama_grammar_element> & rule) {
  39. if (state.rules.size() <= rule_id) {
  40. state.rules.resize(rule_id + 1);
  41. }
  42. state.rules[rule_id] = rule;
  43. }
  44. static bool is_digit_char(char c) {
  45. return '0' <= c && c <= '9';
  46. }
  47. static bool is_word_char(char c) {
  48. return ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z') || c == '-' || is_digit_char(c);
  49. }
  50. static std::pair<uint32_t, const char *> parse_hex(const char * src, int size) {
  51. const char * pos = src;
  52. const char * end = src + size;
  53. uint32_t value = 0;
  54. for ( ; pos < end && *pos; pos++) {
  55. value <<= 4;
  56. char c = *pos;
  57. if ('a' <= c && c <= 'f') {
  58. value += c - 'a' + 10;
  59. } else if ('A' <= c && c <= 'F') {
  60. value += c - 'A' + 10;
  61. } else if ('0' <= c && c <= '9') {
  62. value += c - '0';
  63. } else {
  64. break;
  65. }
  66. }
  67. if (pos != end) {
  68. throw std::runtime_error("expecting " + std::to_string(size) + " hex chars at " + src);
  69. }
  70. return std::make_pair(value, pos);
  71. }
  72. static const char * parse_space(const char * src, bool newline_ok) {
  73. const char * pos = src;
  74. while (*pos == ' ' || *pos == '\t' || *pos == '#' ||
  75. (newline_ok && (*pos == '\r' || *pos == '\n'))) {
  76. if (*pos == '#') {
  77. while (*pos && *pos != '\r' && *pos != '\n') {
  78. pos++;
  79. }
  80. } else {
  81. pos++;
  82. }
  83. }
  84. return pos;
  85. }
  86. static const char * parse_name(const char * src) {
  87. const char * pos = src;
  88. while (is_word_char(*pos)) {
  89. pos++;
  90. }
  91. if (pos == src) {
  92. throw std::runtime_error(std::string("expecting name at ") + src);
  93. }
  94. return pos;
  95. }
  96. static const char * parse_int(const char * src) {
  97. const char * pos = src;
  98. while (is_digit_char(*pos)) {
  99. pos++;
  100. }
  101. if (pos == src) {
  102. throw std::runtime_error(std::string("expecting integer at ") + src);
  103. }
  104. return pos;
  105. }
  106. static std::pair<uint32_t, const char *> parse_char(const char * src) {
  107. if (*src == '\\') {
  108. switch (src[1]) {
  109. case 'x': return parse_hex(src + 2, 2);
  110. case 'u': return parse_hex(src + 2, 4);
  111. case 'U': return parse_hex(src + 2, 8);
  112. case 't': return std::make_pair('\t', src + 2);
  113. case 'r': return std::make_pair('\r', src + 2);
  114. case 'n': return std::make_pair('\n', src + 2);
  115. case '\\':
  116. case '"':
  117. case '[':
  118. case ']':
  119. return std::make_pair(src[1], src + 2);
  120. default:
  121. throw std::runtime_error(std::string("unknown escape at ") + src);
  122. }
  123. } else if (*src) {
  124. return decode_utf8(src);
  125. }
  126. throw std::runtime_error("unexpected end of input");
  127. }
  128. const char * parse_alternates(
  129. parse_state & state,
  130. const char * src,
  131. const std::string & rule_name,
  132. uint32_t rule_id,
  133. bool is_nested);
  134. static const char * parse_sequence(
  135. parse_state & state,
  136. const char * src,
  137. const std::string & rule_name,
  138. std::vector<llama_grammar_element> & out_elements,
  139. bool is_nested) {
  140. size_t last_sym_start = out_elements.size();
  141. const char * pos = src;
  142. auto handle_repetitions = [&](int min_times, int max_times) {
  143. if (last_sym_start == out_elements.size()) {
  144. throw std::runtime_error(std::string("expecting preceding item to */+/?/{ at ") + pos);
  145. }
  146. // apply transformation to previous symbol (last_sym_start to end) according to
  147. // the following rewrite rules:
  148. // S{m,n} --> S S S (m times) S'(n-m)
  149. // S'(x) ::= S S'(x-1) |
  150. // (... n-m definitions of these S' rules ...)
  151. // S'(1) ::= S |
  152. // S{m,} --> S S S (m times) S'
  153. // S' ::= S S' |
  154. // S* --> S{0,}
  155. // --> S' ::= S S' |
  156. // S+ --> S{1,}
  157. // --> S S'
  158. // S' ::= S S' |
  159. // S? --> S{0,1}
  160. // --> S'
  161. // S' ::= S |
  162. std::vector<llama_grammar_element> previous_elements(out_elements.begin() + last_sym_start, out_elements.end());
  163. if (min_times == 0) {
  164. out_elements.resize(last_sym_start);
  165. } else {
  166. // Repeat the previous elements (min_times - 1) times
  167. for (int i = 1; i < min_times; i++) {
  168. out_elements.insert(out_elements.end(), previous_elements.begin(), previous_elements.end());
  169. }
  170. }
  171. uint32_t last_rec_rule_id = 0;
  172. auto n_opt = max_times < 0 ? 1 : max_times - min_times;
  173. std::vector<llama_grammar_element> rec_rule(previous_elements);
  174. for (int i = 0; i < n_opt; i++) {
  175. rec_rule.resize(previous_elements.size());
  176. uint32_t rec_rule_id = generate_symbol_id(state, rule_name);
  177. if (i > 0 || max_times < 0) {
  178. rec_rule.push_back({LLAMA_GRETYPE_RULE_REF, max_times < 0 ? rec_rule_id : last_rec_rule_id});
  179. }
  180. rec_rule.push_back({LLAMA_GRETYPE_ALT, 0});
  181. rec_rule.push_back({LLAMA_GRETYPE_END, 0});
  182. add_rule(state, rec_rule_id, rec_rule);
  183. last_rec_rule_id = rec_rule_id;
  184. }
  185. if (n_opt > 0) {
  186. out_elements.push_back({LLAMA_GRETYPE_RULE_REF, last_rec_rule_id});
  187. }
  188. };
  189. while (*pos) {
  190. if (*pos == '"') { // literal string
  191. pos++;
  192. last_sym_start = out_elements.size();
  193. while (*pos != '"') {
  194. if (!*pos) {
  195. throw std::runtime_error("unexpected end of input");
  196. }
  197. auto char_pair = parse_char(pos);
  198. pos = char_pair.second;
  199. out_elements.push_back({LLAMA_GRETYPE_CHAR, char_pair.first});
  200. }
  201. pos = parse_space(pos + 1, is_nested);
  202. } else if (*pos == '[') { // char range(s)
  203. pos++;
  204. enum llama_gretype start_type = LLAMA_GRETYPE_CHAR;
  205. if (*pos == '^') {
  206. pos++;
  207. start_type = LLAMA_GRETYPE_CHAR_NOT;
  208. }
  209. last_sym_start = out_elements.size();
  210. while (*pos != ']') {
  211. if (!*pos) {
  212. throw std::runtime_error("unexpected end of input");
  213. }
  214. auto char_pair = parse_char(pos);
  215. pos = char_pair.second;
  216. enum llama_gretype type = last_sym_start < out_elements.size()
  217. ? LLAMA_GRETYPE_CHAR_ALT
  218. : start_type;
  219. out_elements.push_back({type, char_pair.first});
  220. if (pos[0] == '-' && pos[1] != ']') {
  221. if (!pos[1]) {
  222. throw std::runtime_error("unexpected end of input");
  223. }
  224. auto endchar_pair = parse_char(pos + 1);
  225. pos = endchar_pair.second;
  226. out_elements.push_back({LLAMA_GRETYPE_CHAR_RNG_UPPER, endchar_pair.first});
  227. }
  228. }
  229. pos = parse_space(pos + 1, is_nested);
  230. } else if (is_word_char(*pos)) { // rule reference
  231. const char * name_end = parse_name(pos);
  232. uint32_t ref_rule_id = get_symbol_id(state, pos, name_end - pos);
  233. pos = parse_space(name_end, is_nested);
  234. last_sym_start = out_elements.size();
  235. out_elements.push_back({LLAMA_GRETYPE_RULE_REF, ref_rule_id});
  236. } else if (*pos == '(') { // grouping
  237. // parse nested alternates into synthesized rule
  238. pos = parse_space(pos + 1, true);
  239. uint32_t sub_rule_id = generate_symbol_id(state, rule_name);
  240. pos = parse_alternates(state, pos, rule_name, sub_rule_id, true);
  241. last_sym_start = out_elements.size();
  242. // output reference to synthesized rule
  243. out_elements.push_back({LLAMA_GRETYPE_RULE_REF, sub_rule_id});
  244. if (*pos != ')') {
  245. throw std::runtime_error(std::string("expecting ')' at ") + pos);
  246. }
  247. pos = parse_space(pos + 1, is_nested);
  248. } else if (*pos == '*') {
  249. pos = parse_space(pos + 1, is_nested);
  250. handle_repetitions(0, -1);
  251. } else if (*pos == '+') {
  252. pos = parse_space(pos + 1, is_nested);
  253. handle_repetitions(1, -1);
  254. } else if (*pos == '?') {
  255. pos = parse_space(pos + 1, is_nested);
  256. handle_repetitions(0, 1);
  257. } else if (*pos == '{') {
  258. pos = parse_space(pos + 1, is_nested);
  259. if (!is_digit_char(*pos)) {
  260. throw std::runtime_error(std::string("expecting an int at ") + pos);
  261. }
  262. const char * int_end = parse_int(pos);
  263. int min_times = std::stoul(std::string(pos, int_end - pos));
  264. pos = parse_space(int_end, is_nested);
  265. int max_times = -1;
  266. if (*pos == '}') {
  267. max_times = min_times;
  268. pos = parse_space(pos + 1, is_nested);
  269. } else if (*pos == ',') {
  270. pos = parse_space(pos + 1, is_nested);
  271. if (is_digit_char(*pos)) {
  272. const char * int_end = parse_int(pos);
  273. max_times = std::stoul(std::string(pos, int_end - pos));
  274. pos = parse_space(int_end, is_nested);
  275. }
  276. if (*pos != '}') {
  277. throw std::runtime_error(std::string("expecting '}' at ") + pos);
  278. }
  279. pos = parse_space(pos + 1, is_nested);
  280. } else {
  281. throw std::runtime_error(std::string("expecting ',' at ") + pos);
  282. }
  283. handle_repetitions(min_times, max_times);
  284. } else {
  285. break;
  286. }
  287. }
  288. return pos;
  289. }
  290. const char * parse_alternates(
  291. parse_state & state,
  292. const char * src,
  293. const std::string & rule_name,
  294. uint32_t rule_id,
  295. bool is_nested) {
  296. std::vector<llama_grammar_element> rule;
  297. const char * pos = parse_sequence(state, src, rule_name, rule, is_nested);
  298. while (*pos == '|') {
  299. rule.push_back({LLAMA_GRETYPE_ALT, 0});
  300. pos = parse_space(pos + 1, true);
  301. pos = parse_sequence(state, pos, rule_name, rule, is_nested);
  302. }
  303. rule.push_back({LLAMA_GRETYPE_END, 0});
  304. add_rule(state, rule_id, rule);
  305. return pos;
  306. }
  307. static const char * parse_rule(parse_state & state, const char * src) {
  308. const char * name_end = parse_name(src);
  309. const char * pos = parse_space(name_end, false);
  310. size_t name_len = name_end - src;
  311. uint32_t rule_id = get_symbol_id(state, src, name_len);
  312. const std::string name(src, name_len);
  313. if (!(pos[0] == ':' && pos[1] == ':' && pos[2] == '=')) {
  314. throw std::runtime_error(std::string("expecting ::= at ") + pos);
  315. }
  316. pos = parse_space(pos + 3, true);
  317. pos = parse_alternates(state, pos, name, rule_id, false);
  318. if (*pos == '\r') {
  319. pos += pos[1] == '\n' ? 2 : 1;
  320. } else if (*pos == '\n') {
  321. pos++;
  322. } else if (*pos) {
  323. throw std::runtime_error(std::string("expecting newline or end at ") + pos);
  324. }
  325. return parse_space(pos, true);
  326. }
  327. parse_state parse(const char * src) {
  328. try {
  329. parse_state state;
  330. const char * pos = parse_space(src, true);
  331. while (*pos) {
  332. pos = parse_rule(state, pos);
  333. }
  334. // Validate the state to ensure that all rules are defined
  335. for (const auto & rule : state.rules) {
  336. for (const auto & elem : rule) {
  337. if (elem.type == LLAMA_GRETYPE_RULE_REF) {
  338. // Ensure that the rule at that location exists
  339. if (elem.value >= state.rules.size() || state.rules[elem.value].empty()) {
  340. // Get the name of the rule that is missing
  341. for (const auto & kv : state.symbol_ids) {
  342. if (kv.second == elem.value) {
  343. throw std::runtime_error("Undefined rule identifier '" + kv.first + "'");
  344. }
  345. }
  346. }
  347. }
  348. }
  349. }
  350. return state;
  351. } catch (const std::exception & err) {
  352. fprintf(stderr, "%s: error parsing grammar: %s\n", __func__, err.what());
  353. return parse_state();
  354. }
  355. }
  356. static void print_grammar_char(FILE * file, uint32_t c) {
  357. if (0x20 <= c && c <= 0x7f) {
  358. fprintf(file, "%c", static_cast<char>(c));
  359. } else {
  360. // cop out of encoding UTF-8
  361. fprintf(file, "<U+%04X>", c);
  362. }
  363. }
  364. static bool is_char_element(llama_grammar_element elem) {
  365. switch (elem.type) {
  366. case LLAMA_GRETYPE_CHAR: return true;
  367. case LLAMA_GRETYPE_CHAR_NOT: return true;
  368. case LLAMA_GRETYPE_CHAR_ALT: return true;
  369. case LLAMA_GRETYPE_CHAR_RNG_UPPER: return true;
  370. default: return false;
  371. }
  372. }
  373. static void print_rule_binary(FILE * file, const std::vector<llama_grammar_element> & rule) {
  374. for (auto elem : rule) {
  375. switch (elem.type) {
  376. case LLAMA_GRETYPE_END: fprintf(file, "END"); break;
  377. case LLAMA_GRETYPE_ALT: fprintf(file, "ALT"); break;
  378. case LLAMA_GRETYPE_RULE_REF: fprintf(file, "RULE_REF"); break;
  379. case LLAMA_GRETYPE_CHAR: fprintf(file, "CHAR"); break;
  380. case LLAMA_GRETYPE_CHAR_NOT: fprintf(file, "CHAR_NOT"); break;
  381. case LLAMA_GRETYPE_CHAR_RNG_UPPER: fprintf(file, "CHAR_RNG_UPPER"); break;
  382. case LLAMA_GRETYPE_CHAR_ALT: fprintf(file, "CHAR_ALT"); break;
  383. }
  384. switch (elem.type) {
  385. case LLAMA_GRETYPE_END:
  386. case LLAMA_GRETYPE_ALT:
  387. case LLAMA_GRETYPE_RULE_REF:
  388. fprintf(file, "(%u) ", elem.value);
  389. break;
  390. case LLAMA_GRETYPE_CHAR:
  391. case LLAMA_GRETYPE_CHAR_NOT:
  392. case LLAMA_GRETYPE_CHAR_RNG_UPPER:
  393. case LLAMA_GRETYPE_CHAR_ALT:
  394. fprintf(file, "(\"");
  395. print_grammar_char(file, elem.value);
  396. fprintf(file, "\") ");
  397. break;
  398. }
  399. }
  400. fprintf(file, "\n");
  401. }
  402. static void print_rule(
  403. FILE * file,
  404. uint32_t rule_id,
  405. const std::vector<llama_grammar_element> & rule,
  406. const std::map<uint32_t, std::string> & symbol_id_names) {
  407. if (rule.empty() || rule.back().type != LLAMA_GRETYPE_END) {
  408. throw std::runtime_error(
  409. "malformed rule, does not end with LLAMA_GRETYPE_END: " + std::to_string(rule_id));
  410. }
  411. fprintf(file, "%s ::= ", symbol_id_names.at(rule_id).c_str());
  412. for (size_t i = 0, end = rule.size() - 1; i < end; i++) {
  413. llama_grammar_element elem = rule[i];
  414. switch (elem.type) {
  415. case LLAMA_GRETYPE_END:
  416. throw std::runtime_error(
  417. "unexpected end of rule: " + std::to_string(rule_id) + "," +
  418. std::to_string(i));
  419. case LLAMA_GRETYPE_ALT:
  420. fprintf(file, "| ");
  421. break;
  422. case LLAMA_GRETYPE_RULE_REF:
  423. fprintf(file, "%s ", symbol_id_names.at(elem.value).c_str());
  424. break;
  425. case LLAMA_GRETYPE_CHAR:
  426. fprintf(file, "[");
  427. print_grammar_char(file, elem.value);
  428. break;
  429. case LLAMA_GRETYPE_CHAR_NOT:
  430. fprintf(file, "[^");
  431. print_grammar_char(file, elem.value);
  432. break;
  433. case LLAMA_GRETYPE_CHAR_RNG_UPPER:
  434. if (i == 0 || !is_char_element(rule[i - 1])) {
  435. throw std::runtime_error(
  436. "LLAMA_GRETYPE_CHAR_RNG_UPPER without preceding char: " +
  437. std::to_string(rule_id) + "," + std::to_string(i));
  438. }
  439. fprintf(file, "-");
  440. print_grammar_char(file, elem.value);
  441. break;
  442. case LLAMA_GRETYPE_CHAR_ALT:
  443. if (i == 0 || !is_char_element(rule[i - 1])) {
  444. throw std::runtime_error(
  445. "LLAMA_GRETYPE_CHAR_ALT without preceding char: " +
  446. std::to_string(rule_id) + "," + std::to_string(i));
  447. }
  448. print_grammar_char(file, elem.value);
  449. break;
  450. }
  451. if (is_char_element(elem)) {
  452. switch (rule[i + 1].type) {
  453. case LLAMA_GRETYPE_CHAR_ALT:
  454. case LLAMA_GRETYPE_CHAR_RNG_UPPER:
  455. break;
  456. default:
  457. fprintf(file, "] ");
  458. }
  459. }
  460. }
  461. fprintf(file, "\n");
  462. }
  463. void print_grammar(FILE * file, const parse_state & state) {
  464. try {
  465. std::map<uint32_t, std::string> symbol_id_names;
  466. for (const auto & kv : state.symbol_ids) {
  467. symbol_id_names[kv.second] = kv.first;
  468. }
  469. for (size_t i = 0, end = state.rules.size(); i < end; i++) {
  470. // fprintf(file, "%zu: ", i);
  471. // print_rule_binary(file, state.rules[i]);
  472. print_rule(file, uint32_t(i), state.rules[i], symbol_id_names);
  473. // fprintf(file, "\n");
  474. }
  475. } catch (const std::exception & err) {
  476. fprintf(stderr, "\n%s: error printing grammar: %s\n", __func__, err.what());
  477. }
  478. }
  479. std::vector<const llama_grammar_element *> parse_state::c_rules() {
  480. std::vector<const llama_grammar_element *> ret;
  481. ret.reserve(rules.size());
  482. for (const auto & rule : rules) {
  483. ret.push_back(rule.data());
  484. }
  485. return ret;
  486. }
  487. }