json-lexer.c 9.5 KB

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  1. /*
  2. * JSON lexer
  3. *
  4. * Copyright IBM, Corp. 2009
  5. *
  6. * Authors:
  7. * Anthony Liguori <aliguori@us.ibm.com>
  8. *
  9. * This work is licensed under the terms of the GNU LGPL, version 2.1 or later.
  10. * See the COPYING.LIB file in the top-level directory.
  11. *
  12. */
  13. #include "qemu/osdep.h"
  14. #include "qemu-common.h"
  15. #include "qapi/qmp/json-lexer.h"
  16. #define MAX_TOKEN_SIZE (64ULL << 20)
  17. /*
  18. * \"([^\\\"]|(\\\"\\'\\\\\\/\\b\\f\\n\\r\\t\\u[0-9a-fA-F][0-9a-fA-F][0-9a-fA-F][0-9a-fA-F]))*\"
  19. * '([^\\']|(\\\"\\'\\\\\\/\\b\\f\\n\\r\\t\\u[0-9a-fA-F][0-9a-fA-F][0-9a-fA-F][0-9a-fA-F]))*'
  20. * 0|([1-9][0-9]*(.[0-9]+)?([eE]([-+])?[0-9]+))
  21. * [{}\[\],:]
  22. * [a-z]+
  23. *
  24. */
  25. enum json_lexer_state {
  26. IN_ERROR = 0, /* must really be 0, see json_lexer[] */
  27. IN_DQ_UCODE3,
  28. IN_DQ_UCODE2,
  29. IN_DQ_UCODE1,
  30. IN_DQ_UCODE0,
  31. IN_DQ_STRING_ESCAPE,
  32. IN_DQ_STRING,
  33. IN_SQ_UCODE3,
  34. IN_SQ_UCODE2,
  35. IN_SQ_UCODE1,
  36. IN_SQ_UCODE0,
  37. IN_SQ_STRING_ESCAPE,
  38. IN_SQ_STRING,
  39. IN_ZERO,
  40. IN_DIGITS,
  41. IN_DIGIT,
  42. IN_EXP_E,
  43. IN_MANTISSA,
  44. IN_MANTISSA_DIGITS,
  45. IN_NONZERO_NUMBER,
  46. IN_NEG_NONZERO_NUMBER,
  47. IN_KEYWORD,
  48. IN_ESCAPE,
  49. IN_ESCAPE_L,
  50. IN_ESCAPE_LL,
  51. IN_ESCAPE_I,
  52. IN_ESCAPE_I6,
  53. IN_ESCAPE_I64,
  54. IN_WHITESPACE,
  55. IN_START,
  56. };
  57. QEMU_BUILD_BUG_ON((int)JSON_MIN <= (int)IN_START);
  58. #define TERMINAL(state) [0 ... 0x7F] = (state)
  59. /* Return whether TERMINAL is a terminal state and the transition to it
  60. from OLD_STATE required lookahead. This happens whenever the table
  61. below uses the TERMINAL macro. */
  62. #define TERMINAL_NEEDED_LOOKAHEAD(old_state, terminal) \
  63. (json_lexer[(old_state)][0] == (terminal))
  64. static const uint8_t json_lexer[][256] = {
  65. /* Relies on default initialization to IN_ERROR! */
  66. /* double quote string */
  67. [IN_DQ_UCODE3] = {
  68. ['0' ... '9'] = IN_DQ_STRING,
  69. ['a' ... 'f'] = IN_DQ_STRING,
  70. ['A' ... 'F'] = IN_DQ_STRING,
  71. },
  72. [IN_DQ_UCODE2] = {
  73. ['0' ... '9'] = IN_DQ_UCODE3,
  74. ['a' ... 'f'] = IN_DQ_UCODE3,
  75. ['A' ... 'F'] = IN_DQ_UCODE3,
  76. },
  77. [IN_DQ_UCODE1] = {
  78. ['0' ... '9'] = IN_DQ_UCODE2,
  79. ['a' ... 'f'] = IN_DQ_UCODE2,
  80. ['A' ... 'F'] = IN_DQ_UCODE2,
  81. },
  82. [IN_DQ_UCODE0] = {
  83. ['0' ... '9'] = IN_DQ_UCODE1,
  84. ['a' ... 'f'] = IN_DQ_UCODE1,
  85. ['A' ... 'F'] = IN_DQ_UCODE1,
  86. },
  87. [IN_DQ_STRING_ESCAPE] = {
  88. ['b'] = IN_DQ_STRING,
  89. ['f'] = IN_DQ_STRING,
  90. ['n'] = IN_DQ_STRING,
  91. ['r'] = IN_DQ_STRING,
  92. ['t'] = IN_DQ_STRING,
  93. ['/'] = IN_DQ_STRING,
  94. ['\\'] = IN_DQ_STRING,
  95. ['\''] = IN_DQ_STRING,
  96. ['\"'] = IN_DQ_STRING,
  97. ['u'] = IN_DQ_UCODE0,
  98. },
  99. [IN_DQ_STRING] = {
  100. [1 ... 0xBF] = IN_DQ_STRING,
  101. [0xC2 ... 0xF4] = IN_DQ_STRING,
  102. ['\\'] = IN_DQ_STRING_ESCAPE,
  103. ['"'] = JSON_STRING,
  104. },
  105. /* single quote string */
  106. [IN_SQ_UCODE3] = {
  107. ['0' ... '9'] = IN_SQ_STRING,
  108. ['a' ... 'f'] = IN_SQ_STRING,
  109. ['A' ... 'F'] = IN_SQ_STRING,
  110. },
  111. [IN_SQ_UCODE2] = {
  112. ['0' ... '9'] = IN_SQ_UCODE3,
  113. ['a' ... 'f'] = IN_SQ_UCODE3,
  114. ['A' ... 'F'] = IN_SQ_UCODE3,
  115. },
  116. [IN_SQ_UCODE1] = {
  117. ['0' ... '9'] = IN_SQ_UCODE2,
  118. ['a' ... 'f'] = IN_SQ_UCODE2,
  119. ['A' ... 'F'] = IN_SQ_UCODE2,
  120. },
  121. [IN_SQ_UCODE0] = {
  122. ['0' ... '9'] = IN_SQ_UCODE1,
  123. ['a' ... 'f'] = IN_SQ_UCODE1,
  124. ['A' ... 'F'] = IN_SQ_UCODE1,
  125. },
  126. [IN_SQ_STRING_ESCAPE] = {
  127. ['b'] = IN_SQ_STRING,
  128. ['f'] = IN_SQ_STRING,
  129. ['n'] = IN_SQ_STRING,
  130. ['r'] = IN_SQ_STRING,
  131. ['t'] = IN_SQ_STRING,
  132. ['/'] = IN_SQ_STRING,
  133. ['\\'] = IN_SQ_STRING,
  134. ['\''] = IN_SQ_STRING,
  135. ['\"'] = IN_SQ_STRING,
  136. ['u'] = IN_SQ_UCODE0,
  137. },
  138. [IN_SQ_STRING] = {
  139. [1 ... 0xBF] = IN_SQ_STRING,
  140. [0xC2 ... 0xF4] = IN_SQ_STRING,
  141. ['\\'] = IN_SQ_STRING_ESCAPE,
  142. ['\''] = JSON_STRING,
  143. },
  144. /* Zero */
  145. [IN_ZERO] = {
  146. TERMINAL(JSON_INTEGER),
  147. ['0' ... '9'] = IN_ERROR,
  148. ['.'] = IN_MANTISSA,
  149. },
  150. /* Float */
  151. [IN_DIGITS] = {
  152. TERMINAL(JSON_FLOAT),
  153. ['0' ... '9'] = IN_DIGITS,
  154. },
  155. [IN_DIGIT] = {
  156. ['0' ... '9'] = IN_DIGITS,
  157. },
  158. [IN_EXP_E] = {
  159. ['-'] = IN_DIGIT,
  160. ['+'] = IN_DIGIT,
  161. ['0' ... '9'] = IN_DIGITS,
  162. },
  163. [IN_MANTISSA_DIGITS] = {
  164. TERMINAL(JSON_FLOAT),
  165. ['0' ... '9'] = IN_MANTISSA_DIGITS,
  166. ['e'] = IN_EXP_E,
  167. ['E'] = IN_EXP_E,
  168. },
  169. [IN_MANTISSA] = {
  170. ['0' ... '9'] = IN_MANTISSA_DIGITS,
  171. },
  172. /* Number */
  173. [IN_NONZERO_NUMBER] = {
  174. TERMINAL(JSON_INTEGER),
  175. ['0' ... '9'] = IN_NONZERO_NUMBER,
  176. ['e'] = IN_EXP_E,
  177. ['E'] = IN_EXP_E,
  178. ['.'] = IN_MANTISSA,
  179. },
  180. [IN_NEG_NONZERO_NUMBER] = {
  181. ['0'] = IN_ZERO,
  182. ['1' ... '9'] = IN_NONZERO_NUMBER,
  183. },
  184. /* keywords */
  185. [IN_KEYWORD] = {
  186. TERMINAL(JSON_KEYWORD),
  187. ['a' ... 'z'] = IN_KEYWORD,
  188. },
  189. /* whitespace */
  190. [IN_WHITESPACE] = {
  191. TERMINAL(JSON_SKIP),
  192. [' '] = IN_WHITESPACE,
  193. ['\t'] = IN_WHITESPACE,
  194. ['\r'] = IN_WHITESPACE,
  195. ['\n'] = IN_WHITESPACE,
  196. },
  197. /* escape */
  198. [IN_ESCAPE_LL] = {
  199. ['d'] = JSON_ESCAPE,
  200. },
  201. [IN_ESCAPE_L] = {
  202. ['d'] = JSON_ESCAPE,
  203. ['l'] = IN_ESCAPE_LL,
  204. },
  205. [IN_ESCAPE_I64] = {
  206. ['d'] = JSON_ESCAPE,
  207. },
  208. [IN_ESCAPE_I6] = {
  209. ['4'] = IN_ESCAPE_I64,
  210. },
  211. [IN_ESCAPE_I] = {
  212. ['6'] = IN_ESCAPE_I6,
  213. },
  214. [IN_ESCAPE] = {
  215. ['d'] = JSON_ESCAPE,
  216. ['i'] = JSON_ESCAPE,
  217. ['p'] = JSON_ESCAPE,
  218. ['s'] = JSON_ESCAPE,
  219. ['f'] = JSON_ESCAPE,
  220. ['l'] = IN_ESCAPE_L,
  221. ['I'] = IN_ESCAPE_I,
  222. },
  223. /* top level rule */
  224. [IN_START] = {
  225. ['"'] = IN_DQ_STRING,
  226. ['\''] = IN_SQ_STRING,
  227. ['0'] = IN_ZERO,
  228. ['1' ... '9'] = IN_NONZERO_NUMBER,
  229. ['-'] = IN_NEG_NONZERO_NUMBER,
  230. ['{'] = JSON_LCURLY,
  231. ['}'] = JSON_RCURLY,
  232. ['['] = JSON_LSQUARE,
  233. [']'] = JSON_RSQUARE,
  234. [','] = JSON_COMMA,
  235. [':'] = JSON_COLON,
  236. ['a' ... 'z'] = IN_KEYWORD,
  237. ['%'] = IN_ESCAPE,
  238. [' '] = IN_WHITESPACE,
  239. ['\t'] = IN_WHITESPACE,
  240. ['\r'] = IN_WHITESPACE,
  241. ['\n'] = IN_WHITESPACE,
  242. },
  243. };
  244. void json_lexer_init(JSONLexer *lexer, JSONLexerEmitter func)
  245. {
  246. lexer->emit = func;
  247. lexer->state = IN_START;
  248. lexer->token = g_string_sized_new(3);
  249. lexer->x = lexer->y = 0;
  250. }
  251. static int json_lexer_feed_char(JSONLexer *lexer, char ch, bool flush)
  252. {
  253. int char_consumed, new_state;
  254. lexer->x++;
  255. if (ch == '\n') {
  256. lexer->x = 0;
  257. lexer->y++;
  258. }
  259. do {
  260. assert(lexer->state <= ARRAY_SIZE(json_lexer));
  261. new_state = json_lexer[lexer->state][(uint8_t)ch];
  262. char_consumed = !TERMINAL_NEEDED_LOOKAHEAD(lexer->state, new_state);
  263. if (char_consumed) {
  264. g_string_append_c(lexer->token, ch);
  265. }
  266. switch (new_state) {
  267. case JSON_LCURLY:
  268. case JSON_RCURLY:
  269. case JSON_LSQUARE:
  270. case JSON_RSQUARE:
  271. case JSON_COLON:
  272. case JSON_COMMA:
  273. case JSON_ESCAPE:
  274. case JSON_INTEGER:
  275. case JSON_FLOAT:
  276. case JSON_KEYWORD:
  277. case JSON_STRING:
  278. lexer->emit(lexer, lexer->token, new_state, lexer->x, lexer->y);
  279. /* fall through */
  280. case JSON_SKIP:
  281. g_string_truncate(lexer->token, 0);
  282. new_state = IN_START;
  283. break;
  284. case IN_ERROR:
  285. /* XXX: To avoid having previous bad input leaving the parser in an
  286. * unresponsive state where we consume unpredictable amounts of
  287. * subsequent "good" input, percolate this error state up to the
  288. * tokenizer/parser by forcing a NULL object to be emitted, then
  289. * reset state.
  290. *
  291. * Also note that this handling is required for reliable channel
  292. * negotiation between QMP and the guest agent, since chr(0xFF)
  293. * is placed at the beginning of certain events to ensure proper
  294. * delivery when the channel is in an unknown state. chr(0xFF) is
  295. * never a valid ASCII/UTF-8 sequence, so this should reliably
  296. * induce an error/flush state.
  297. */
  298. lexer->emit(lexer, lexer->token, JSON_ERROR, lexer->x, lexer->y);
  299. g_string_truncate(lexer->token, 0);
  300. new_state = IN_START;
  301. lexer->state = new_state;
  302. return 0;
  303. default:
  304. break;
  305. }
  306. lexer->state = new_state;
  307. } while (!char_consumed && !flush);
  308. /* Do not let a single token grow to an arbitrarily large size,
  309. * this is a security consideration.
  310. */
  311. if (lexer->token->len > MAX_TOKEN_SIZE) {
  312. lexer->emit(lexer, lexer->token, lexer->state, lexer->x, lexer->y);
  313. g_string_truncate(lexer->token, 0);
  314. lexer->state = IN_START;
  315. }
  316. return 0;
  317. }
  318. int json_lexer_feed(JSONLexer *lexer, const char *buffer, size_t size)
  319. {
  320. size_t i;
  321. for (i = 0; i < size; i++) {
  322. int err;
  323. err = json_lexer_feed_char(lexer, buffer[i], false);
  324. if (err < 0) {
  325. return err;
  326. }
  327. }
  328. return 0;
  329. }
  330. int json_lexer_flush(JSONLexer *lexer)
  331. {
  332. return lexer->state == IN_START ? 0 : json_lexer_feed_char(lexer, 0, true);
  333. }
  334. void json_lexer_destroy(JSONLexer *lexer)
  335. {
  336. g_string_free(lexer->token, true);
  337. }