buffer.c 15 KB

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  1. // SPDX-License-Identifier: GPL-3.0-or-later
  2. #include "../libnetdata.h"
  3. static inline void buffer_overflow_init(BUFFER *b)
  4. {
  5. b->buffer[b->size] = '\0';
  6. strcpy(&b->buffer[b->size + 1], BUFFER_OVERFLOW_EOF);
  7. }
  8. void buffer_reset(BUFFER *wb) {
  9. buffer_flush(wb);
  10. wb->content_type = CT_TEXT_PLAIN;
  11. wb->options = 0;
  12. wb->date = 0;
  13. wb->expires = 0;
  14. buffer_no_cacheable(wb);
  15. buffer_overflow_check(wb);
  16. }
  17. void buffer_char_replace(BUFFER *wb, char from, char to) {
  18. char *s = wb->buffer, *end = &wb->buffer[wb->len];
  19. while(s != end) {
  20. if(*s == from) *s = to;
  21. s++;
  22. }
  23. buffer_overflow_check(wb);
  24. }
  25. void buffer_print_sn_flags(BUFFER *wb, SN_FLAGS flags, bool send_anomaly_bit) {
  26. if(unlikely(flags == SN_EMPTY_SLOT)) {
  27. buffer_fast_strcat(wb, "E", 1);
  28. return;
  29. }
  30. size_t printed = 0;
  31. if(likely(send_anomaly_bit && (flags & SN_FLAG_NOT_ANOMALOUS))) {
  32. buffer_fast_strcat(wb, "A", 1);
  33. printed++;
  34. }
  35. if(unlikely(flags & SN_FLAG_RESET)) {
  36. buffer_fast_strcat(wb, "R", 1);
  37. printed++;
  38. }
  39. if(!printed)
  40. buffer_fast_strcat(wb, "''", 2);
  41. }
  42. void buffer_strcat_htmlescape(BUFFER *wb, const char *txt)
  43. {
  44. while(*txt) {
  45. switch(*txt) {
  46. case '&': buffer_strcat(wb, "&"); break;
  47. case '<': buffer_strcat(wb, "&lt;"); break;
  48. case '>': buffer_strcat(wb, "&gt;"); break;
  49. case '"': buffer_strcat(wb, "&quot;"); break;
  50. case '/': buffer_strcat(wb, "&#x2F;"); break;
  51. case '\'': buffer_strcat(wb, "&#x27;"); break;
  52. default: {
  53. buffer_need_bytes(wb, 1);
  54. wb->buffer[wb->len++] = *txt;
  55. }
  56. }
  57. txt++;
  58. }
  59. buffer_overflow_check(wb);
  60. }
  61. void buffer_snprintf(BUFFER *wb, size_t len, const char *fmt, ...)
  62. {
  63. if(unlikely(!fmt || !*fmt)) return;
  64. buffer_need_bytes(wb, len + 1);
  65. va_list args;
  66. va_start(args, fmt);
  67. wb->len += vsnprintfz(&wb->buffer[wb->len], len, fmt, args);
  68. va_end(args);
  69. buffer_overflow_check(wb);
  70. // the buffer is \0 terminated by vsnprintfz
  71. }
  72. void buffer_vsprintf(BUFFER *wb, const char *fmt, va_list args)
  73. {
  74. if(unlikely(!fmt || !*fmt)) return;
  75. size_t wrote = 0, need = 2, space_remaining = 0;
  76. do {
  77. need += space_remaining * 2;
  78. netdata_log_debug(D_WEB_BUFFER, "web_buffer_sprintf(): increasing web_buffer at position %zu, size = %zu, by %zu bytes (wrote = %zu)\n", wb->len, wb->size, need, wrote);
  79. buffer_need_bytes(wb, need);
  80. space_remaining = wb->size - wb->len - 1;
  81. wrote = (size_t) vsnprintfz(&wb->buffer[wb->len], space_remaining, fmt, args);
  82. } while(wrote >= space_remaining);
  83. wb->len += wrote;
  84. // the buffer is \0 terminated by vsnprintf
  85. }
  86. void buffer_sprintf(BUFFER *wb, const char *fmt, ...)
  87. {
  88. if(unlikely(!fmt || !*fmt)) return;
  89. va_list args;
  90. size_t wrote = 0, need = 2, space_remaining = 0;
  91. do {
  92. need += space_remaining * 2;
  93. netdata_log_debug(D_WEB_BUFFER, "web_buffer_sprintf(): increasing web_buffer at position %zu, size = %zu, by %zu bytes (wrote = %zu)\n", wb->len, wb->size, need, wrote);
  94. buffer_need_bytes(wb, need);
  95. space_remaining = wb->size - wb->len - 1;
  96. va_start(args, fmt);
  97. wrote = (size_t) vsnprintfz(&wb->buffer[wb->len], space_remaining, fmt, args);
  98. va_end(args);
  99. } while(wrote >= space_remaining);
  100. wb->len += wrote;
  101. // the buffer is \0 terminated by vsnprintf
  102. }
  103. // generate a javascript date, the fastest possible way...
  104. void buffer_jsdate(BUFFER *wb, int year, int month, int day, int hours, int minutes, int seconds)
  105. {
  106. // 10 20 30 = 35
  107. // 01234567890123456789012345678901234
  108. // Date(2014,04,01,03,28,20)
  109. buffer_need_bytes(wb, 30);
  110. char *b = &wb->buffer[wb->len], *p;
  111. unsigned int *q = (unsigned int *)b;
  112. #if __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__
  113. *q++ = 0x65746144; // "Date" backwards.
  114. #else
  115. *q++ = 0x44617465; // "Date"
  116. #endif
  117. p = (char *)q;
  118. *p++ = '(';
  119. *p++ = '0' + year / 1000; year %= 1000;
  120. *p++ = '0' + year / 100; year %= 100;
  121. *p++ = '0' + year / 10;
  122. *p++ = '0' + year % 10;
  123. *p++ = ',';
  124. *p = '0' + month / 10; if (*p != '0') p++;
  125. *p++ = '0' + month % 10;
  126. *p++ = ',';
  127. *p = '0' + day / 10; if (*p != '0') p++;
  128. *p++ = '0' + day % 10;
  129. *p++ = ',';
  130. *p = '0' + hours / 10; if (*p != '0') p++;
  131. *p++ = '0' + hours % 10;
  132. *p++ = ',';
  133. *p = '0' + minutes / 10; if (*p != '0') p++;
  134. *p++ = '0' + minutes % 10;
  135. *p++ = ',';
  136. *p = '0' + seconds / 10; if (*p != '0') p++;
  137. *p++ = '0' + seconds % 10;
  138. unsigned short *r = (unsigned short *)p;
  139. #if __BYTE_ORDER__ == __ORDER_LITTLE_ENDIAN__
  140. *r++ = 0x0029; // ")\0" backwards.
  141. #else
  142. *r++ = 0x2900; // ")\0"
  143. #endif
  144. wb->len += (size_t)((char *)r - b - 1);
  145. // terminate it
  146. wb->buffer[wb->len] = '\0';
  147. buffer_overflow_check(wb);
  148. }
  149. // generate a date, the fastest possible way...
  150. void buffer_date(BUFFER *wb, int year, int month, int day, int hours, int minutes, int seconds)
  151. {
  152. // 10 20 30 = 35
  153. // 01234567890123456789012345678901234
  154. // 2014-04-01 03:28:20
  155. buffer_need_bytes(wb, 36);
  156. char *b = &wb->buffer[wb->len];
  157. char *p = b;
  158. *p++ = '0' + year / 1000; year %= 1000;
  159. *p++ = '0' + year / 100; year %= 100;
  160. *p++ = '0' + year / 10;
  161. *p++ = '0' + year % 10;
  162. *p++ = '-';
  163. *p++ = '0' + month / 10;
  164. *p++ = '0' + month % 10;
  165. *p++ = '-';
  166. *p++ = '0' + day / 10;
  167. *p++ = '0' + day % 10;
  168. *p++ = ' ';
  169. *p++ = '0' + hours / 10;
  170. *p++ = '0' + hours % 10;
  171. *p++ = ':';
  172. *p++ = '0' + minutes / 10;
  173. *p++ = '0' + minutes % 10;
  174. *p++ = ':';
  175. *p++ = '0' + seconds / 10;
  176. *p++ = '0' + seconds % 10;
  177. *p = '\0';
  178. wb->len += (size_t)(p - b);
  179. // terminate it
  180. wb->buffer[wb->len] = '\0';
  181. buffer_overflow_check(wb);
  182. }
  183. BUFFER *buffer_create(size_t size, size_t *statistics)
  184. {
  185. BUFFER *b;
  186. netdata_log_debug(D_WEB_BUFFER, "Creating new web buffer of size %zu.", size);
  187. b = callocz(1, sizeof(BUFFER));
  188. b->buffer = mallocz(size + sizeof(BUFFER_OVERFLOW_EOF) + 2);
  189. b->buffer[0] = '\0';
  190. b->size = size;
  191. b->content_type = CT_TEXT_PLAIN;
  192. b->statistics = statistics;
  193. buffer_no_cacheable(b);
  194. buffer_overflow_init(b);
  195. buffer_overflow_check(b);
  196. if(b->statistics)
  197. __atomic_add_fetch(b->statistics, b->size + sizeof(BUFFER) + sizeof(BUFFER_OVERFLOW_EOF) + 2, __ATOMIC_RELAXED);
  198. return(b);
  199. }
  200. void buffer_free(BUFFER *b) {
  201. if(unlikely(!b)) return;
  202. buffer_overflow_check(b);
  203. netdata_log_debug(D_WEB_BUFFER, "Freeing web buffer of size %zu.", b->size);
  204. if(b->statistics)
  205. __atomic_sub_fetch(b->statistics, b->size + sizeof(BUFFER) + sizeof(BUFFER_OVERFLOW_EOF) + 2, __ATOMIC_RELAXED);
  206. freez(b->buffer);
  207. freez(b);
  208. }
  209. void buffer_increase(BUFFER *b, size_t free_size_required) {
  210. buffer_overflow_check(b);
  211. size_t left = b->size - b->len;
  212. if(left >= free_size_required) return;
  213. size_t wanted = free_size_required - left;
  214. size_t minimum = WEB_DATA_LENGTH_INCREASE_STEP;
  215. if(minimum > wanted) wanted = minimum;
  216. size_t optimal = (b->size > 5*1024*1024) ? b->size / 2 : b->size;
  217. if(optimal > wanted) wanted = optimal;
  218. netdata_log_debug(D_WEB_BUFFER, "Increasing data buffer from size %zu to %zu.", b->size, b->size + wanted);
  219. b->buffer = reallocz(b->buffer, b->size + wanted + sizeof(BUFFER_OVERFLOW_EOF) + 2);
  220. b->size += wanted;
  221. if(b->statistics)
  222. __atomic_add_fetch(b->statistics, wanted, __ATOMIC_RELAXED);
  223. buffer_overflow_init(b);
  224. buffer_overflow_check(b);
  225. }
  226. // ----------------------------------------------------------------------------
  227. void buffer_json_initialize(BUFFER *wb, const char *key_quote, const char *value_quote, int depth,
  228. bool add_anonymous_object, BUFFER_JSON_OPTIONS options) {
  229. strncpyz(wb->json.key_quote, key_quote, BUFFER_QUOTE_MAX_SIZE);
  230. strncpyz(wb->json.value_quote, value_quote, BUFFER_QUOTE_MAX_SIZE);
  231. wb->json.options = options;
  232. wb->json.depth = (int8_t)(depth - 1);
  233. _buffer_json_depth_push(wb, BUFFER_JSON_OBJECT);
  234. if(add_anonymous_object)
  235. buffer_fast_strcat(wb, "{", 1);
  236. wb->content_type = CT_APPLICATION_JSON;
  237. buffer_no_cacheable(wb);
  238. }
  239. void buffer_json_finalize(BUFFER *wb) {
  240. while(wb->json.depth >= 0) {
  241. switch(wb->json.stack[wb->json.depth].type) {
  242. case BUFFER_JSON_OBJECT:
  243. buffer_json_object_close(wb);
  244. break;
  245. case BUFFER_JSON_ARRAY:
  246. buffer_json_array_close(wb);
  247. break;
  248. default:
  249. internal_fatal(true, "BUFFER: unknown json member type in stack");
  250. break;
  251. }
  252. }
  253. if(!(wb->json.options & BUFFER_JSON_OPTIONS_MINIFY))
  254. buffer_fast_strcat(wb, "\n", 1);
  255. }
  256. // ----------------------------------------------------------------------------
  257. const char hex_digits[16] = "0123456789ABCDEF";
  258. const char base64_digits[64] = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
  259. unsigned char hex_value_from_ascii[256];
  260. unsigned char base64_value_from_ascii[256];
  261. __attribute__((constructor)) void initialize_ascii_maps(void) {
  262. for(size_t i = 0 ; i < 256 ; i++) {
  263. hex_value_from_ascii[i] = 255;
  264. base64_value_from_ascii[i] = 255;
  265. }
  266. for(size_t i = 0; i < 16 ; i++)
  267. hex_value_from_ascii[(int)hex_digits[i]] = i;
  268. for(size_t i = 0; i < 64 ; i++)
  269. base64_value_from_ascii[(int)base64_digits[i]] = i;
  270. }
  271. // ----------------------------------------------------------------------------
  272. // unit test
  273. static int buffer_expect(BUFFER *wb, const char *expected) {
  274. const char *generated = buffer_tostring(wb);
  275. if(strcmp(generated, expected) != 0) {
  276. netdata_log_error("BUFFER: mismatch.\nGenerated:\n%s\nExpected:\n%s\n",
  277. generated, expected);
  278. return 1;
  279. }
  280. return 0;
  281. }
  282. static int buffer_uint64_roundtrip(BUFFER *wb, NUMBER_ENCODING encoding, uint64_t value, const char *expected) {
  283. int errors = 0;
  284. buffer_flush(wb);
  285. buffer_print_uint64_encoded(wb, encoding, value);
  286. if(expected)
  287. errors += buffer_expect(wb, expected);
  288. uint64_t v = str2ull_encoded(buffer_tostring(wb));
  289. if(v != value) {
  290. netdata_log_error("BUFFER: string '%s' does resolves to %llu, expected %llu",
  291. buffer_tostring(wb), (unsigned long long)v, (unsigned long long)value);
  292. errors++;
  293. }
  294. buffer_flush(wb);
  295. return errors;
  296. }
  297. static int buffer_int64_roundtrip(BUFFER *wb, NUMBER_ENCODING encoding, int64_t value, const char *expected) {
  298. int errors = 0;
  299. buffer_flush(wb);
  300. buffer_print_int64_encoded(wb, encoding, value);
  301. if(expected)
  302. errors += buffer_expect(wb, expected);
  303. int64_t v = str2ll_encoded(buffer_tostring(wb));
  304. if(v != value) {
  305. netdata_log_error("BUFFER: string '%s' does resolves to %lld, expected %lld",
  306. buffer_tostring(wb), (long long)v, (long long)value);
  307. errors++;
  308. }
  309. buffer_flush(wb);
  310. return errors;
  311. }
  312. static int buffer_double_roundtrip(BUFFER *wb, NUMBER_ENCODING encoding, NETDATA_DOUBLE value, const char *expected) {
  313. int errors = 0;
  314. buffer_flush(wb);
  315. buffer_print_netdata_double_encoded(wb, encoding, value);
  316. if(expected)
  317. errors += buffer_expect(wb, expected);
  318. NETDATA_DOUBLE v = str2ndd_encoded(buffer_tostring(wb), NULL);
  319. if(v != value) {
  320. netdata_log_error("BUFFER: string '%s' does resolves to %.12f, expected %.12f",
  321. buffer_tostring(wb), v, value);
  322. errors++;
  323. }
  324. buffer_flush(wb);
  325. return errors;
  326. }
  327. int buffer_unittest(void) {
  328. int errors = 0;
  329. BUFFER *wb = buffer_create(0, NULL);
  330. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 0, "0");
  331. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_HEX, 0, "0x0");
  332. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_BASE64, 0, "#A");
  333. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 1676071986, "1676071986");
  334. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_HEX, 1676071986, "0x63E6D432");
  335. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_BASE64, 1676071986, "#Bj5tQy");
  336. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 18446744073709551615ULL, "18446744073709551615");
  337. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_HEX, 18446744073709551615ULL, "0xFFFFFFFFFFFFFFFF");
  338. buffer_uint64_roundtrip(wb, NUMBER_ENCODING_BASE64, 18446744073709551615ULL, "#P//////////");
  339. buffer_int64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 0, "0");
  340. buffer_int64_roundtrip(wb, NUMBER_ENCODING_HEX, 0, "0x0");
  341. buffer_int64_roundtrip(wb, NUMBER_ENCODING_BASE64, 0, "#A");
  342. buffer_int64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, -1676071986, "-1676071986");
  343. buffer_int64_roundtrip(wb, NUMBER_ENCODING_HEX, -1676071986, "-0x63E6D432");
  344. buffer_int64_roundtrip(wb, NUMBER_ENCODING_BASE64, -1676071986, "-#Bj5tQy");
  345. buffer_int64_roundtrip(wb, NUMBER_ENCODING_DECIMAL, (int64_t)-9223372036854775807ULL, "-9223372036854775807");
  346. buffer_int64_roundtrip(wb, NUMBER_ENCODING_HEX, (int64_t)-9223372036854775807ULL, "-0x7FFFFFFFFFFFFFFF");
  347. buffer_int64_roundtrip(wb, NUMBER_ENCODING_BASE64, (int64_t)-9223372036854775807ULL, "-#H//////////");
  348. buffer_double_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 0, "0");
  349. buffer_double_roundtrip(wb, NUMBER_ENCODING_HEX, 0, "%0");
  350. buffer_double_roundtrip(wb, NUMBER_ENCODING_BASE64, 0, "@A");
  351. buffer_double_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 1.5, "1.5");
  352. buffer_double_roundtrip(wb, NUMBER_ENCODING_HEX, 1.5, "%3FF8000000000000");
  353. buffer_double_roundtrip(wb, NUMBER_ENCODING_BASE64, 1.5, "@D/4AAAAAAAA");
  354. buffer_double_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 1.23e+14, "123000000000000");
  355. buffer_double_roundtrip(wb, NUMBER_ENCODING_HEX, 1.23e+14, "%42DBF78AD3AC0000");
  356. buffer_double_roundtrip(wb, NUMBER_ENCODING_BASE64, 1.23e+14, "@ELb94rTrAAA");
  357. buffer_double_roundtrip(wb, NUMBER_ENCODING_DECIMAL, 9.12345678901234567890123456789e+45, "9.123456789012346128e+45");
  358. buffer_double_roundtrip(wb, NUMBER_ENCODING_HEX, 9.12345678901234567890123456789e+45, "%497991C25C9E4309");
  359. buffer_double_roundtrip(wb, NUMBER_ENCODING_BASE64, 9.12345678901234567890123456789e+45, "@El5kcJcnkMJ");
  360. buffer_flush(wb);
  361. {
  362. char buf[1024 + 1];
  363. for(size_t i = 0; i < 1024 ;i++)
  364. buf[i] = (char)(i % 26) + 'A';
  365. buf[1024] = '\0';
  366. buffer_strcat(wb, buf);
  367. errors += buffer_expect(wb, buf);
  368. }
  369. buffer_flush(wb);
  370. buffer_json_initialize(wb, "\"", "\"", 0, true, BUFFER_JSON_OPTIONS_DEFAULT);
  371. buffer_json_finalize(wb);
  372. errors += buffer_expect(wb, "{\n}\n");
  373. buffer_flush(wb);
  374. buffer_json_initialize(wb, "\"", "\"", 0, true, BUFFER_JSON_OPTIONS_DEFAULT);
  375. buffer_json_member_add_string(wb, "hello", "world");
  376. buffer_json_member_add_string(wb, "alpha", "this: \" is a double quote");
  377. buffer_json_member_add_object(wb, "object1");
  378. buffer_json_member_add_string(wb, "hello", "world");
  379. buffer_json_finalize(wb);
  380. errors += buffer_expect(wb, "{\n \"hello\":\"world\",\n \"alpha\":\"this: \\\" is a double quote\",\n \"object1\":{\n \"hello\":\"world\"\n }\n}\n");
  381. buffer_free(wb);
  382. return errors;
  383. }
  384. #ifdef ENABLE_H2O
  385. h2o_iovec_t buffer_to_h2o_iovec(BUFFER *wb) {
  386. h2o_iovec_t ret;
  387. ret.base = wb->buffer;
  388. ret.len = wb->len;
  389. return ret;
  390. }
  391. #endif