_strtod.c 16 KB

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  1. /*
  2. * Copyright (C) 2000-2005 Manuel Novoa III
  3. *
  4. * Licensed under the LGPL v2.1, see the file COPYING.LIB in this tarball.
  5. */
  6. /* Notes:
  7. *
  8. * The primary objective of this implementation was minimal size and
  9. * portablility, while providing robustness and resonable accuracy.
  10. *
  11. * This implementation depends on IEEE floating point behavior and expects
  12. * to be able to generate +/- infinity as a result.
  13. *
  14. * There are a number of compile-time options below.
  15. */
  16. /* July 27, 2003
  17. *
  18. * General cleanup and some minor size optimizations.
  19. * Change implementation to support __strtofpmax() rather than strtod().
  20. * Now all the strto{floating pt}() funcs are implemented in terms of
  21. * of the internal __strtofpmax() function.
  22. * Support "nan", "inf", and "infinity" strings (case-insensitive).
  23. * Support hexadecimal floating point notation.
  24. * Support wchar variants.
  25. * Support xlocale variants.
  26. *
  27. * TODO:
  28. *
  29. * Consider accumulating blocks of digits in longs to save floating pt mults.
  30. * This would likely be much better on anything that only supported floats
  31. * where DECIMAL_DIG == 9. Actually, if floats have FLT_MAX_10_EXP == 38,
  32. * we could calculate almost all the exponent multipliers (p_base) in
  33. * long arithmetic as well.
  34. */
  35. /**********************************************************************/
  36. /* OPTIONS */
  37. /**********************************************************************/
  38. /* Defined if we want to recognize "nan", "inf", and "infinity". (C99) */
  39. #define _STRTOD_NAN_INF_STRINGS 1
  40. /* Defined if we want support hexadecimal floating point notation. (C99) */
  41. /* Note! Now controlled by uClibc configuration. See below. */
  42. #define _STRTOD_HEXADECIMAL_FLOATS 1
  43. /* Defined if we want to scale with a O(log2(exp)) multiplications.
  44. * This is generally a good thing to do unless you are really tight
  45. * on space and do not expect to convert values of large magnitude. */
  46. #define _STRTOD_LOG_SCALING 1
  47. /* WARNING!!! WARNING!!! WARNING!!! WARNING!!! WARNING!!!
  48. *
  49. * Clearing any of the options below this point is not advised (or tested).
  50. *
  51. * WARNING!!! WARNING!!! WARNING!!! WARNING!!! WARNING!!! */
  52. /* Defined if we want strtod to set errno appropriately. */
  53. /* NOTE: Implies all options below. */
  54. #define _STRTOD_ERRNO 1
  55. /* Defined if we want support for the endptr arg. */
  56. /* Implied by _STRTOD_ERRNO. */
  57. #define _STRTOD_ENDPTR 1
  58. /* Defined if we want to prevent overflow in accumulating the exponent. */
  59. /* Implied by _STRTOD_ERRNO. */
  60. #define _STRTOD_RESTRICT_EXP 1
  61. /* Defined if we want to process mantissa digits more intelligently. */
  62. /* Implied by _STRTOD_ERRNO. */
  63. #define _STRTOD_RESTRICT_DIGITS 1
  64. /* Defined if we want to skip scaling 0 for the exponent. */
  65. /* Implied by _STRTOD_ERRNO. */
  66. #define _STRTOD_ZERO_CHECK 1
  67. /**********************************************************************/
  68. /* Don't change anything that follows. */
  69. /**********************************************************************/
  70. #ifdef _STRTOD_ERRNO
  71. #undef _STRTOD_ENDPTR
  72. #undef _STRTOD_RESTRICT_EXP
  73. #undef _STRTOD_RESTRICT_DIGITS
  74. #undef _STRTOD_ZERO_CHECK
  75. #define _STRTOD_ENDPTR 1
  76. #define _STRTOD_RESTRICT_EXP 1
  77. #define _STRTOD_RESTRICT_DIGITS 1
  78. #define _STRTOD_ZERO_CHECK 1
  79. #endif
  80. /**********************************************************************/
  81. #define _ISOC99_SOURCE 1
  82. #include <stdlib.h>
  83. #include <string.h>
  84. #include <ctype.h>
  85. #include <errno.h>
  86. #include <limits.h>
  87. #include <float.h>
  88. #include <bits/uClibc_fpmax.h>
  89. #include <locale.h>
  90. #ifdef __UCLIBC_HAS_WCHAR__
  91. # include <wchar.h>
  92. # include <wctype.h>
  93. # include <bits/uClibc_uwchar.h>
  94. #endif
  95. #ifdef __UCLIBC_HAS_XLOCALE__
  96. # include <xlocale.h>
  97. #endif
  98. /* Handle _STRTOD_HEXADECIMAL_FLOATS via uClibc config now. */
  99. #undef _STRTOD_HEXADECIMAL_FLOATS
  100. #ifdef __UCLIBC_HAS_HEXADECIMAL_FLOATS__
  101. # define _STRTOD_HEXADECIMAL_FLOATS 1
  102. #endif
  103. /**********************************************************************/
  104. #undef _STRTOD_FPMAX
  105. #if FPMAX_TYPE == 3
  106. #define NEED_STRTOLD_WRAPPER
  107. #define NEED_STRTOD_WRAPPER
  108. #define NEED_STRTOF_WRAPPER
  109. #elif FPMAX_TYPE == 2
  110. #define NEED_STRTOD_WRAPPER
  111. #define NEED_STRTOF_WRAPPER
  112. #elif FPMAX_TYPE == 1
  113. #define NEED_STRTOF_WRAPPER
  114. #else
  115. #error unknown FPMAX_TYPE!
  116. #endif
  117. extern void __fp_range_check(__fpmax_t y, __fpmax_t x) attribute_hidden;
  118. /**********************************************************************/
  119. #ifdef _STRTOD_RESTRICT_DIGITS
  120. #define EXP_DENORM_ADJUST DECIMAL_DIG
  121. #define MAX_ALLOWED_EXP (DECIMAL_DIG + EXP_DENORM_ADJUST - FPMAX_MIN_10_EXP)
  122. #if MAX_ALLOWED_EXP > INT_MAX
  123. #error size assumption violated for MAX_ALLOWED_EXP
  124. #endif
  125. #else
  126. /* We want some excess if we're not restricting mantissa digits. */
  127. #define MAX_ALLOWED_EXP ((20 - FPMAX_MIN_10_EXP) * 2)
  128. #endif
  129. #if defined(_STRTOD_RESTRICT_DIGITS) || defined(_STRTOD_ENDPTR) || defined(_STRTOD_HEXADECIMAL_FLOATS)
  130. #undef _STRTOD_NEED_NUM_DIGITS
  131. #define _STRTOD_NEED_NUM_DIGITS 1
  132. #endif
  133. /**********************************************************************/
  134. #if defined(L___strtofpmax) || defined(L___strtofpmax_l) || defined(L___wcstofpmax) || defined(L___wcstofpmax_l)
  135. #ifdef __UCLIBC_HAS_XLOCALE__
  136. #elif defined __UCLIBC_HAS_CTYPE_TABLES__
  137. #endif
  138. #if defined(L___wcstofpmax) || defined(L___wcstofpmax_l)
  139. #define __strtofpmax __wcstofpmax
  140. #define __strtofpmax_l __wcstofpmax_l
  141. #define Wchar wchar_t
  142. #ifdef __UCLIBC_DO_XLOCALE
  143. #define ISSPACE(C) iswspace_l((C), locale_arg)
  144. #else
  145. #define ISSPACE(C) iswspace((C))
  146. #endif
  147. #else /* defined(L___wcstofpmax) || defined(L___wcstofpmax_l) */
  148. #define Wchar char
  149. #ifdef __UCLIBC_DO_XLOCALE
  150. #define ISSPACE(C) isspace_l((C), locale_arg)
  151. #else
  152. #define ISSPACE(C) isspace((C))
  153. #endif
  154. #endif /* defined(L___wcstofpmax) || defined(L___wcstofpmax_l) */
  155. #if defined(__UCLIBC_HAS_XLOCALE__) && !defined(__UCLIBC_DO_XLOCALE)
  156. __fpmax_t attribute_hidden __strtofpmax(const Wchar *str, Wchar **endptr, int exponent_power)
  157. {
  158. return __strtofpmax_l(str, endptr, exponent_power, __UCLIBC_CURLOCALE);
  159. }
  160. #else /* defined(__UCLIBC_HAS_XLOCALE__) && !defined(__UCLIBC_DO_XLOCALE) */
  161. __fpmax_t attribute_hidden __XL_NPP(__strtofpmax)(const Wchar *str, Wchar **endptr, int exponent_power
  162. __LOCALE_PARAM )
  163. {
  164. __fpmax_t number;
  165. __fpmax_t p_base = 10; /* Adjusted to 16 in the hex case. */
  166. Wchar *pos0;
  167. #ifdef _STRTOD_ENDPTR
  168. Wchar *pos1;
  169. #endif
  170. Wchar *pos = (Wchar *) str;
  171. int exponent_temp;
  172. int negative; /* A flag for the number, a multiplier for the exponent. */
  173. #ifdef _STRTOD_NEED_NUM_DIGITS
  174. int num_digits;
  175. #endif
  176. #ifdef __UCLIBC_HAS_LOCALE__
  177. #if defined(L___wcstofpmax) || defined(L___wcstofpmax_l)
  178. wchar_t decpt_wc = __LOCALE_PTR->decimal_point_wc;
  179. #else
  180. const char *decpt = __LOCALE_PTR->decimal_point;
  181. int decpt_len = __LOCALE_PTR->decimal_point_len;
  182. #endif
  183. #endif
  184. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  185. Wchar expchar = 'e';
  186. Wchar *poshex = NULL;
  187. __uint16_t is_mask = _ISdigit;
  188. #define EXPCHAR expchar
  189. #define IS_X_DIGIT(C) __isctype((C), is_mask)
  190. #else /* _STRTOD_HEXADECIMAL_FLOATS */
  191. #define EXPCHAR 'e'
  192. #define IS_X_DIGIT(C) isdigit((C))
  193. #endif /* _STRTOD_HEXADECIMAL_FLOATS */
  194. while (ISSPACE(*pos)) { /* Skip leading whitespace. */
  195. ++pos;
  196. }
  197. negative = 0;
  198. switch(*pos) { /* Handle optional sign. */
  199. case '-': negative = 1; /* Fall through to increment position. */
  200. case '+': ++pos;
  201. }
  202. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  203. if ((*pos == '0') && (((pos[1])|0x20) == 'x')) {
  204. poshex = ++pos; /* Save position of 'x' in case no digits */
  205. ++pos; /* and advance past it. */
  206. is_mask = _ISxdigit; /* Used by IS_X_DIGIT. */
  207. expchar = 'p'; /* Adjust exponent char. */
  208. p_base = 16; /* Adjust base multiplier. */
  209. }
  210. #endif
  211. number = 0.;
  212. #ifdef _STRTOD_NEED_NUM_DIGITS
  213. num_digits = -1;
  214. #endif
  215. /* exponent_power = 0; */
  216. pos0 = NULL;
  217. LOOP:
  218. while (IS_X_DIGIT(*pos)) { /* Process string of (hex) digits. */
  219. #ifdef _STRTOD_RESTRICT_DIGITS
  220. if (num_digits < 0) { /* First time through? */
  221. ++num_digits; /* We've now seen a digit. */
  222. }
  223. if (num_digits || (*pos != '0')) { /* Had/have nonzero. */
  224. ++num_digits;
  225. if (num_digits <= DECIMAL_DIG) { /* Is digit significant? */
  226. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  227. number = number * p_base
  228. + (isdigit(*pos)
  229. ? (*pos - '0')
  230. : (((*pos)|0x20) - ('a' - 10)));
  231. #else /* _STRTOD_HEXADECIMAL_FLOATS */
  232. number = number * p_base + (*pos - '0');
  233. #endif /* _STRTOD_HEXADECIMAL_FLOATS */
  234. }
  235. }
  236. #else /* _STRTOD_RESTRICT_DIGITS */
  237. #ifdef _STRTOD_NEED_NUM_DIGITS
  238. ++num_digits;
  239. #endif
  240. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  241. number = number * p_base
  242. + (isdigit(*pos)
  243. ? (*pos - '0')
  244. : (((*pos)|0x20) - ('a' - 10)));
  245. #else /* _STRTOD_HEXADECIMAL_FLOATS */
  246. number = number * p_base + (*pos - '0');
  247. #endif /* _STRTOD_HEXADECIMAL_FLOATS */
  248. #endif /* _STRTOD_RESTRICT_DIGITS */
  249. ++pos;
  250. }
  251. #ifdef __UCLIBC_HAS_LOCALE__
  252. #if defined(L___wcstofpmax) || defined(L___wcstofpmax_l)
  253. if (!pos0 && (*pos == decpt_wc)) { /* First decimal point? */
  254. pos0 = ++pos;
  255. goto LOOP;
  256. }
  257. #else
  258. if (!pos0 && !memcmp(pos, decpt, decpt_len)) { /* First decimal point? */
  259. pos0 = (pos += decpt_len);
  260. goto LOOP;
  261. }
  262. #endif
  263. #else /* __UCLIBC_HAS_LOCALE__ */
  264. if ((*pos == '.') && !pos0) { /* First decimal point? */
  265. pos0 = ++pos; /* Save position of decimal point */
  266. goto LOOP; /* and process rest of digits. */
  267. }
  268. #endif /* __UCLIBC_HAS_LOCALE__ */
  269. #ifdef _STRTOD_NEED_NUM_DIGITS
  270. if (num_digits<0) { /* Must have at least one digit. */
  271. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  272. if (poshex) { /* Back up to '0' in '0x' prefix. */
  273. pos = poshex;
  274. goto DONE;
  275. }
  276. #endif /* _STRTOD_HEXADECIMAL_FLOATS */
  277. #ifdef _STRTOD_NAN_INF_STRINGS
  278. if (!pos0) { /* No decimal point, so check for inf/nan. */
  279. /* Note: nan is the first string so 'number = i/0.;' works. */
  280. static const char nan_inf_str[] = "\05nan\0\012infinity\0\05inf\0";
  281. int i = 0;
  282. do {
  283. /* Unfortunately, we have no memcasecmp(). */
  284. int j = 0;
  285. /* | 0x20 is a cheap lowercasing (valid for ASCII letters and numbers only) */
  286. while ((pos[j] | 0x20) == nan_inf_str[i+1+j]) {
  287. ++j;
  288. if (!nan_inf_str[i+1+j]) {
  289. number = i / 0.;
  290. if (negative) { /* Correct for sign. */
  291. number = -number;
  292. }
  293. pos += nan_inf_str[i] - 2;
  294. goto DONE;
  295. }
  296. }
  297. i += nan_inf_str[i];
  298. } while (nan_inf_str[i]);
  299. }
  300. #endif /* STRTOD_NAN_INF_STRINGS */
  301. #ifdef _STRTOD_ENDPTR
  302. pos = (Wchar *) str;
  303. #endif
  304. goto DONE;
  305. }
  306. #endif /* _STRTOD_NEED_NUM_DIGITS */
  307. #ifdef _STRTOD_RESTRICT_DIGITS
  308. if (num_digits > DECIMAL_DIG) { /* Adjust exponent for skipped digits. */
  309. exponent_power += num_digits - DECIMAL_DIG;
  310. }
  311. #endif
  312. if (pos0) {
  313. exponent_power += pos0 - pos; /* Adjust exponent for decimal point. */
  314. }
  315. #ifdef _STRTOD_HEXADECIMAL_FLOATS
  316. if (poshex) {
  317. exponent_power *= 4; /* Above is 2**4, but below is 2. */
  318. p_base = 2;
  319. }
  320. #endif /* _STRTOD_HEXADECIMAL_FLOATS */
  321. if (negative) { /* Correct for sign. */
  322. number = -number;
  323. }
  324. /* process an exponent string */
  325. if (((*pos)|0x20) == EXPCHAR) {
  326. #ifdef _STRTOD_ENDPTR
  327. pos1 = pos;
  328. #endif
  329. negative = 1;
  330. switch(*++pos) { /* Handle optional sign. */
  331. case '-': negative = -1; /* Fall through to increment pos. */
  332. case '+': ++pos;
  333. }
  334. pos0 = pos;
  335. exponent_temp = 0;
  336. while (isdigit(*pos)) { /* Process string of digits. */
  337. #ifdef _STRTOD_RESTRICT_EXP
  338. if (exponent_temp < MAX_ALLOWED_EXP) { /* Avoid overflow. */
  339. exponent_temp = exponent_temp * 10 + (*pos - '0');
  340. }
  341. #else
  342. exponent_temp = exponent_temp * 10 + (*pos - '0');
  343. #endif
  344. ++pos;
  345. }
  346. #ifdef _STRTOD_ENDPTR
  347. if (pos == pos0) { /* No digits? */
  348. pos = pos1; /* Back up to {e|E}/{p|P}. */
  349. } /* else */
  350. #endif
  351. exponent_power += negative * exponent_temp;
  352. }
  353. #ifdef _STRTOD_ZERO_CHECK
  354. if (number == 0.) {
  355. goto DONE;
  356. }
  357. #endif
  358. /* scale the result */
  359. #ifdef _STRTOD_LOG_SCALING
  360. exponent_temp = exponent_power;
  361. if (exponent_temp < 0) {
  362. exponent_temp = -exponent_temp;
  363. }
  364. while (exponent_temp) {
  365. if (exponent_temp & 1) {
  366. if (exponent_power < 0) {
  367. /* Warning... caluclating a factor for the exponent and
  368. * then dividing could easily be faster. But doing so
  369. * might cause problems when dealing with denormals. */
  370. number /= p_base;
  371. } else {
  372. number *= p_base;
  373. }
  374. }
  375. exponent_temp >>= 1;
  376. p_base *= p_base;
  377. }
  378. #else /* _STRTOD_LOG_SCALING */
  379. while (exponent_power) {
  380. if (exponent_power < 0) {
  381. number /= p_base;
  382. exponent_power++;
  383. } else {
  384. number *= p_base;
  385. exponent_power--;
  386. }
  387. }
  388. #endif /* _STRTOD_LOG_SCALING */
  389. #ifdef _STRTOD_ERRNO
  390. if (__FPMAX_ZERO_OR_INF_CHECK(number)) {
  391. __set_errno(ERANGE);
  392. }
  393. #endif
  394. DONE:
  395. #ifdef _STRTOD_ENDPTR
  396. if (endptr) {
  397. *endptr = pos;
  398. }
  399. #endif
  400. return number;
  401. }
  402. #endif /* defined(__UCLIBC_HAS_XLOCALE__) && !defined(__UCLIBC_DO_XLOCALE) */
  403. #endif
  404. /**********************************************************************/
  405. #ifdef L___fp_range_check
  406. #if defined(NEED_STRTOF_WRAPPER) || defined(NEED_STRTOD_WRAPPER)
  407. void attribute_hidden __fp_range_check(__fpmax_t y, __fpmax_t x)
  408. {
  409. if (__FPMAX_ZERO_OR_INF_CHECK(y) /* y is 0 or +/- infinity */
  410. && (y != 0) /* y is not 0 (could have x>0, y==0 if underflow) */
  411. && !__FPMAX_ZERO_OR_INF_CHECK(x) /* x is not 0 or +/- infinity */
  412. ) {
  413. __set_errno(ERANGE); /* Then x is not in y's range. */
  414. }
  415. }
  416. #endif
  417. #endif
  418. /**********************************************************************/
  419. #if defined(L_strtof) || defined(L_strtof_l) || defined(L_wcstof) || defined(L_wcstof_l)
  420. #if defined(NEED_STRTOF_WRAPPER)
  421. #if defined(L_wcstof) || defined(L_wcstof_l)
  422. #define strtof wcstof
  423. #define strtof_l wcstof_l
  424. #define __strtofpmax __wcstofpmax
  425. #define __strtofpmax_l __wcstofpmax_l
  426. #define Wchar wchar_t
  427. #else
  428. #define Wchar char
  429. #endif
  430. libc_hidden_proto(__XL_NPP(strtof))
  431. float __XL_NPP(strtof)(const Wchar *str, Wchar **endptr __LOCALE_PARAM )
  432. {
  433. #if FPMAX_TYPE == 1
  434. return __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  435. #else
  436. __fpmax_t x;
  437. float y;
  438. x = __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  439. y = (float) x;
  440. __fp_range_check(y, x);
  441. return y;
  442. #endif
  443. }
  444. libc_hidden_def(__XL_NPP(strtof))
  445. #endif
  446. #endif
  447. /**********************************************************************/
  448. #if defined(L_strtod) || defined(L_strtod_l) || defined(L_wcstod) || defined(L_wcstod_l)
  449. #if defined(NEED_STRTOD_WRAPPER)
  450. #if defined(L_wcstod) || defined(L_wcstod_l)
  451. #define strtod wcstod
  452. #define strtod_l wcstod_l
  453. #define __strtofpmax __wcstofpmax
  454. #define __strtofpmax_l __wcstofpmax_l
  455. #define Wchar wchar_t
  456. #else
  457. #define Wchar char
  458. #endif
  459. libc_hidden_proto(__XL_NPP(strtod))
  460. double __XL_NPP(strtod)(const Wchar *__restrict str,
  461. Wchar **__restrict endptr __LOCALE_PARAM )
  462. {
  463. #if FPMAX_TYPE == 2
  464. return __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  465. #else
  466. __fpmax_t x;
  467. double y;
  468. x = __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  469. y = (double) x;
  470. __fp_range_check(y, x);
  471. return y;
  472. #endif
  473. }
  474. libc_hidden_def(__XL_NPP(strtod))
  475. #endif
  476. #endif
  477. /**********************************************************************/
  478. #if defined(L_strtold) || defined(L_strtold_l) || defined(L_wcstold) || defined(L_wcstold_l)
  479. #if defined(NEED_STRTOLD_WRAPPER)
  480. #if defined(L_wcstold) || defined(L_wcstold_l)
  481. #define strtold wcstold
  482. #define strtold_l wcstold_l
  483. #define __strtofpmax __wcstofpmax
  484. #define __strtofpmax_l __wcstofpmax_l
  485. #define Wchar wchar_t
  486. #else
  487. #define Wchar char
  488. #endif
  489. libc_hidden_proto(__XL_NPP(strtold))
  490. long double __XL_NPP(strtold) (const Wchar *str, Wchar **endptr __LOCALE_PARAM )
  491. {
  492. #if FPMAX_TYPE == 3
  493. return __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  494. #else
  495. __fpmax_t x;
  496. long double y;
  497. x = __XL_NPP(__strtofpmax)(str, endptr, 0 __LOCALE_ARG );
  498. y = (long double) x;
  499. __fp_range_check(y, x);
  500. return y;
  501. #endif
  502. }
  503. libc_hidden_def(__XL_NPP(strtold))
  504. #endif
  505. #endif
  506. /**********************************************************************/