blob: 3934d9a8b65e742681f1cff1b242139bd57f40aa [file] [log] [blame]
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001/* $NetBSD: strtod.c,v 1.45.2.1 2005/04/19 13:35:54 tron Exp $ */
2
3/****************************************************************
4 *
5 * The author of this software is David M. Gay.
6 *
7 * Copyright (c) 1991 by AT&T.
8 *
9 * Permission to use, copy, modify, and distribute this software for any
10 * purpose without fee is hereby granted, provided that this entire notice
11 * is included in all copies of any software which is or includes a copy
12 * or modification of this software and in all copies of the supporting
13 * documentation for such software.
14 *
15 * THIS SOFTWARE IS BEING PROVIDED "AS IS", WITHOUT ANY EXPRESS OR IMPLIED
16 * WARRANTY. IN PARTICULAR, NEITHER THE AUTHOR NOR AT&T MAKES ANY
17 * REPRESENTATION OR WARRANTY OF ANY KIND CONCERNING THE MERCHANTABILITY
18 * OF THIS SOFTWARE OR ITS FITNESS FOR ANY PARTICULAR PURPOSE.
19 *
20 ***************************************************************/
21
22/* Please send bug reports to
23 David M. Gay
24 AT&T Bell Laboratories, Room 2C-463
25 600 Mountain Avenue
26 Murray Hill, NJ 07974-2070
27 U.S.A.
28 dmg@research.att.com or research!dmg
29 */
30
31/* strtod for IEEE-, VAX-, and IBM-arithmetic machines.
32 *
33 * This strtod returns a nearest machine number to the input decimal
34 * string (or sets errno to ERANGE). With IEEE arithmetic, ties are
35 * broken by the IEEE round-even rule. Otherwise ties are broken by
36 * biased rounding (add half and chop).
37 *
38 * Inspired loosely by William D. Clinger's paper "How to Read Floating
39 * Point Numbers Accurately" [Proc. ACM SIGPLAN '90, pp. 92-101].
40 *
41 * Modifications:
42 *
43 * 1. We only require IEEE, IBM, or VAX double-precision
44 * arithmetic (not IEEE double-extended).
45 * 2. We get by with floating-point arithmetic in a case that
46 * Clinger missed -- when we're computing d * 10^n
47 * for a small integer d and the integer n is not too
48 * much larger than 22 (the maximum integer k for which
49 * we can represent 10^k exactly), we may be able to
50 * compute (d*10^k) * 10^(e-k) with just one roundoff.
51 * 3. Rather than a bit-at-a-time adjustment of the binary
52 * result in the hard case, we use floating-point
53 * arithmetic to determine the adjustment to within
54 * one bit; only in really hard cases do we need to
55 * compute a second residual.
56 * 4. Because of 3., we don't need a large table of powers of 10
57 * for ten-to-e (just some small tables, e.g. of 10^k
58 * for 0 <= k <= 22).
59 */
60
61/*
62 * #define IEEE_LITTLE_ENDIAN for IEEE-arithmetic machines where the least
63 * significant byte has the lowest address.
64 * #define IEEE_BIG_ENDIAN for IEEE-arithmetic machines where the most
65 * significant byte has the lowest address.
66 * #define Long int on machines with 32-bit ints and 64-bit longs.
67 * #define Sudden_Underflow for IEEE-format machines without gradual
68 * underflow (i.e., that flush to zero on underflow).
69 * #define IBM for IBM mainframe-style floating-point arithmetic.
70 * #define VAX for VAX-style floating-point arithmetic.
71 * #define Unsigned_Shifts if >> does treats its left operand as unsigned.
72 * #define No_leftright to omit left-right logic in fast floating-point
73 * computation of dtoa.
74 * #define Check_FLT_ROUNDS if FLT_ROUNDS can assume the values 2 or 3.
75 * #define RND_PRODQUOT to use rnd_prod and rnd_quot (assembly routines
76 * that use extended-precision instructions to compute rounded
77 * products and quotients) with IBM.
78 * #define ROUND_BIASED for IEEE-format with biased rounding.
79 * #define Inaccurate_Divide for IEEE-format with correctly rounded
80 * products but inaccurate quotients, e.g., for Intel i860.
81 * #define Just_16 to store 16 bits per 32-bit Long when doing high-precision
82 * integer arithmetic. Whether this speeds things up or slows things
83 * down depends on the machine and the number being converted.
84 * #define KR_headers for old-style C function headers.
85 * #define Bad_float_h if your system lacks a float.h or if it does not
86 * define some or all of DBL_DIG, DBL_MAX_10_EXP, DBL_MAX_EXP,
87 * FLT_RADIX, FLT_ROUNDS, and DBL_MAX.
88 * #define MALLOC your_malloc, where your_malloc(n) acts like malloc(n)
89 * if memory is available and otherwise does something you deem
90 * appropriate. If MALLOC is undefined, malloc will be invoked
91 * directly -- and assumed always to succeed.
92 */
93
94#ifdef ANDROID_CHANGES
95#include <pthread.h>
96#define mutex_lock(x) pthread_mutex_lock(x)
97#define mutex_unlock(x) pthread_mutex_unlock(x)
98#endif
99
100#include <sys/cdefs.h>
101#if defined(LIBC_SCCS) && !defined(lint)
102__RCSID("$NetBSD: strtod.c,v 1.45.2.1 2005/04/19 13:35:54 tron Exp $");
103#endif /* LIBC_SCCS and not lint */
104
105#define Unsigned_Shifts
106#if defined(__m68k__) || defined(__sparc__) || defined(__i386__) || \
107 defined(__mips__) || defined(__ns32k__) || defined(__alpha__) || \
108 defined(__powerpc__) || defined(__sh__) || defined(__x86_64__) || \
109 defined(__hppa__) || \
Serban Constantinescu65ca2822013-10-08 19:32:36 +0100110 (defined(__arm__) && defined(__VFP_FP__)) || defined(__aarch64__)
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800111#include <endian.h>
112#if BYTE_ORDER == BIG_ENDIAN
113#define IEEE_BIG_ENDIAN
114#else
115#define IEEE_LITTLE_ENDIAN
116#endif
117#endif
118
119#if defined(__arm__) && !defined(__VFP_FP__)
120/*
121 * Although the CPU is little endian the FP has different
122 * byte and word endianness. The byte order is still little endian
123 * but the word order is big endian.
124 */
125#define IEEE_BIG_ENDIAN
126#endif
127
128#ifdef __vax__
129#define VAX
130#endif
131
132#if defined(__hppa__) || defined(__mips__) || defined(__sh__)
133#define NAN_WORD0 0x7ff40000
134#else
135#define NAN_WORD0 0x7ff80000
136#endif
137#define NAN_WORD1 0
138
139#define Long int32_t
140#define ULong u_int32_t
141
142#ifdef DEBUG
143#include "stdio.h"
144#define Bug(x) {fprintf(stderr, "%s\n", x); exit(1);}
145#endif
146
147#ifdef __cplusplus
148#include "malloc.h"
149#include "memory.h"
150#else
151#ifndef KR_headers
152#include "stdlib.h"
153#include "string.h"
154#ifndef ANDROID_CHANGES
155#include "locale.h"
156#endif /* ANDROID_CHANGES */
157#else
158#include "malloc.h"
159#include "memory.h"
160#endif
161#endif
162#ifndef ANDROID_CHANGES
163#include "extern.h"
164#include "reentrant.h"
165#endif /* ANDROID_CHANGES */
166
167#ifdef MALLOC
168#ifdef KR_headers
169extern char *MALLOC();
170#else
171extern void *MALLOC(size_t);
172#endif
173#else
174#define MALLOC malloc
175#endif
176
177#include "ctype.h"
178#include "errno.h"
179#include "float.h"
180
181#ifndef __MATH_H__
182#include "math.h"
183#endif
184
185#ifdef __cplusplus
186extern "C" {
187#endif
188
189#ifndef CONST
190#ifdef KR_headers
191#define CONST /* blank */
192#else
193#define CONST const
194#endif
195#endif
196
197#ifdef Unsigned_Shifts
198#define Sign_Extend(a,b) if (b < 0) a |= 0xffff0000;
199#else
200#define Sign_Extend(a,b) /*no-op*/
201#endif
202
203#if defined(IEEE_LITTLE_ENDIAN) + defined(IEEE_BIG_ENDIAN) + defined(VAX) + \
204 defined(IBM) != 1
205Exactly one of IEEE_LITTLE_ENDIAN IEEE_BIG_ENDIAN, VAX, or
206IBM should be defined.
207#endif
208
209typedef union {
210 double d;
211 ULong ul[2];
212} _double;
213#define value(x) ((x).d)
214#ifdef IEEE_LITTLE_ENDIAN
215#define word0(x) ((x).ul[1])
216#define word1(x) ((x).ul[0])
217#else
218#define word0(x) ((x).ul[0])
219#define word1(x) ((x).ul[1])
220#endif
221
222/* The following definition of Storeinc is appropriate for MIPS processors.
223 * An alternative that might be better on some machines is
224 * #define Storeinc(a,b,c) (*a++ = b << 16 | c & 0xffff)
225 */
226#if defined(IEEE_LITTLE_ENDIAN) + defined(VAX) + defined(__arm__)
227#define Storeinc(a,b,c) \
228 (((u_short *)(void *)a)[1] = \
229 (u_short)b, ((u_short *)(void *)a)[0] = (u_short)c, a++)
230#else
231#define Storeinc(a,b,c) \
232 (((u_short *)(void *)a)[0] = \
233 (u_short)b, ((u_short *)(void *)a)[1] = (u_short)c, a++)
234#endif
235
236/* #define P DBL_MANT_DIG */
237/* Ten_pmax = floor(P*log(2)/log(5)) */
238/* Bletch = (highest power of 2 < DBL_MAX_10_EXP) / 16 */
239/* Quick_max = floor((P-1)*log(FLT_RADIX)/log(10) - 1) */
240/* Int_max = floor(P*log(FLT_RADIX)/log(10) - 1) */
241
242#if defined(IEEE_LITTLE_ENDIAN) + defined(IEEE_BIG_ENDIAN)
243#define Exp_shift 20
244#define Exp_shift1 20
245#define Exp_msk1 0x100000
246#define Exp_msk11 0x100000
247#define Exp_mask 0x7ff00000
248#define P 53
249#define Bias 1023
250#define IEEE_Arith
251#define Emin (-1022)
252#define Exp_1 0x3ff00000
253#define Exp_11 0x3ff00000
254#define Ebits 11
255#define Frac_mask 0xfffff
256#define Frac_mask1 0xfffff
257#define Ten_pmax 22
258#define Bletch 0x10
259#define Bndry_mask 0xfffff
260#define Bndry_mask1 0xfffff
261#define LSB 1
262#define Sign_bit 0x80000000
263#define Log2P 1
264#define Tiny0 0
265#define Tiny1 1
266#define Quick_max 14
267#define Int_max 14
268#define Infinite(x) (word0(x) == 0x7ff00000) /* sufficient test for here */
269#else
270#undef Sudden_Underflow
271#define Sudden_Underflow
272#ifdef IBM
273#define Exp_shift 24
274#define Exp_shift1 24
275#define Exp_msk1 0x1000000
276#define Exp_msk11 0x1000000
277#define Exp_mask 0x7f000000
278#define P 14
279#define Bias 65
280#define Exp_1 0x41000000
281#define Exp_11 0x41000000
282#define Ebits 8 /* exponent has 7 bits, but 8 is the right value in b2d */
283#define Frac_mask 0xffffff
284#define Frac_mask1 0xffffff
285#define Bletch 4
286#define Ten_pmax 22
287#define Bndry_mask 0xefffff
288#define Bndry_mask1 0xffffff
289#define LSB 1
290#define Sign_bit 0x80000000
291#define Log2P 4
292#define Tiny0 0x100000
293#define Tiny1 0
294#define Quick_max 14
295#define Int_max 15
296#else /* VAX */
297#define Exp_shift 23
298#define Exp_shift1 7
299#define Exp_msk1 0x80
300#define Exp_msk11 0x800000
301#define Exp_mask 0x7f80
302#define P 56
303#define Bias 129
304#define Exp_1 0x40800000
305#define Exp_11 0x4080
306#define Ebits 8
307#define Frac_mask 0x7fffff
308#define Frac_mask1 0xffff007f
309#define Ten_pmax 24
310#define Bletch 2
311#define Bndry_mask 0xffff007f
312#define Bndry_mask1 0xffff007f
313#define LSB 0x10000
314#define Sign_bit 0x8000
315#define Log2P 1
316#define Tiny0 0x80
317#define Tiny1 0
318#define Quick_max 15
319#define Int_max 15
320#endif
321#endif
322
323#ifndef IEEE_Arith
324#define ROUND_BIASED
325#endif
326
327#ifdef RND_PRODQUOT
328#define rounded_product(a,b) a = rnd_prod(a, b)
329#define rounded_quotient(a,b) a = rnd_quot(a, b)
330#ifdef KR_headers
331extern double rnd_prod(), rnd_quot();
332#else
333extern double rnd_prod(double, double), rnd_quot(double, double);
334#endif
335#else
336#define rounded_product(a,b) a *= b
337#define rounded_quotient(a,b) a /= b
338#endif
339
340#define Big0 (Frac_mask1 | Exp_msk1*(DBL_MAX_EXP+Bias-1))
341#define Big1 0xffffffff
342
343#ifndef Just_16
344/* When Pack_32 is not defined, we store 16 bits per 32-bit Long.
345 * This makes some inner loops simpler and sometimes saves work
346 * during multiplications, but it often seems to make things slightly
347 * slower. Hence the default is now to store 32 bits per Long.
348 */
349#ifndef Pack_32
350#define Pack_32
351#endif
352#endif
353
354#define Kmax 15
355
356#ifdef __cplusplus
357extern "C" double strtod(const char *s00, char **se);
358extern "C" char *__dtoa(double d, int mode, int ndigits,
359 int *decpt, int *sign, char **rve);
360#endif
361
362 struct
363Bigint {
364 struct Bigint *next;
365 int k, maxwds, sign, wds;
366 ULong x[1];
André Goddard Rosae7347692010-02-05 18:32:52 -0200367};
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800368
369 typedef struct Bigint Bigint;
370
371 static Bigint *freelist[Kmax+1];
372
373#ifdef ANDROID_CHANGES
374 static pthread_mutex_t freelist_mutex = PTHREAD_MUTEX_INITIALIZER;
375#else
376#ifdef _REENTRANT
377 static mutex_t freelist_mutex = MUTEX_INITIALIZER;
378#endif
379#endif
380
David 'Digit' Turner81326262010-03-04 11:51:42 -0800381/* Special value used to indicate an invalid Bigint value,
382 * e.g. when a memory allocation fails. The idea is that we
383 * want to avoid introducing NULL checks everytime a bigint
384 * computation is performed. Also the NULL value can also be
385 * already used to indicate "value not initialized yet" and
386 * returning NULL might alter the execution code path in
387 * case of OOM.
388 */
389#define BIGINT_INVALID ((Bigint *)&bigint_invalid_value)
390
391static const Bigint bigint_invalid_value;
392
393
394/* Return BIGINT_INVALID on allocation failure.
395 *
396 * Most of the code here depends on the fact that this function
397 * never returns NULL.
398 */
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800399 static Bigint *
400Balloc
401#ifdef KR_headers
402 (k) int k;
403#else
404 (int k)
405#endif
406{
407 int x;
408 Bigint *rv;
409
410 mutex_lock(&freelist_mutex);
411
412 if ((rv = freelist[k]) != NULL) {
413 freelist[k] = rv->next;
André Goddard Rosae7347692010-02-05 18:32:52 -0200414 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800415 else {
416 x = 1 << k;
417 rv = (Bigint *)MALLOC(sizeof(Bigint) + (x-1)*sizeof(Long));
David 'Digit' Turner81326262010-03-04 11:51:42 -0800418 if (rv == NULL) {
419 rv = BIGINT_INVALID;
420 goto EXIT;
421 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800422 rv->k = k;
423 rv->maxwds = x;
André Goddard Rosae7347692010-02-05 18:32:52 -0200424 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800425 rv->sign = rv->wds = 0;
David 'Digit' Turner81326262010-03-04 11:51:42 -0800426EXIT:
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800427 mutex_unlock(&freelist_mutex);
428
429 return rv;
André Goddard Rosae7347692010-02-05 18:32:52 -0200430}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800431
432 static void
433Bfree
434#ifdef KR_headers
435 (v) Bigint *v;
436#else
437 (Bigint *v)
438#endif
439{
David 'Digit' Turner81326262010-03-04 11:51:42 -0800440 if (v && v != BIGINT_INVALID) {
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800441 mutex_lock(&freelist_mutex);
442
443 v->next = freelist[v->k];
444 freelist[v->k] = v;
445
446 mutex_unlock(&freelist_mutex);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800447 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200448}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800449
David 'Digit' Turner81326262010-03-04 11:51:42 -0800450#define Bcopy_valid(x,y) memcpy(&(x)->sign, &(y)->sign, \
451 (y)->wds*sizeof(Long) + 2*sizeof(int))
452
453#define Bcopy(x,y) Bcopy_ptr(&(x),(y))
454
455 static void
456Bcopy_ptr(Bigint **px, Bigint *y)
457{
458 if (*px == BIGINT_INVALID)
459 return; /* no space to store copy */
460 if (y == BIGINT_INVALID) {
461 Bfree(*px); /* invalid input */
462 *px = BIGINT_INVALID;
463 } else {
464 Bcopy_valid(*px,y);
465 }
466}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800467
468 static Bigint *
469multadd
470#ifdef KR_headers
471 (b, m, a) Bigint *b; int m, a;
472#else
473 (Bigint *b, int m, int a) /* multiply by m and add a */
474#endif
475{
476 int i, wds;
477 ULong *x, y;
478#ifdef Pack_32
479 ULong xi, z;
480#endif
481 Bigint *b1;
482
David 'Digit' Turner81326262010-03-04 11:51:42 -0800483 if (b == BIGINT_INVALID)
484 return b;
485
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800486 wds = b->wds;
487 x = b->x;
488 i = 0;
489 do {
490#ifdef Pack_32
491 xi = *x;
492 y = (xi & 0xffff) * m + a;
493 z = (xi >> 16) * m + (y >> 16);
494 a = (int)(z >> 16);
495 *x++ = (z << 16) + (y & 0xffff);
496#else
497 y = *x * m + a;
498 a = (int)(y >> 16);
499 *x++ = y & 0xffff;
500#endif
André Goddard Rosae7347692010-02-05 18:32:52 -0200501 }
502 while(++i < wds);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800503 if (a) {
504 if (wds >= b->maxwds) {
505 b1 = Balloc(b->k+1);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800506 if (b1 == BIGINT_INVALID) {
507 Bfree(b);
508 return b1;
509 }
510 Bcopy_valid(b1, b);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800511 Bfree(b);
512 b = b1;
513 }
514 b->x[wds++] = a;
515 b->wds = wds;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800516 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200517 return b;
518}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800519
520 static Bigint *
521s2b
522#ifdef KR_headers
523 (s, nd0, nd, y9) CONST char *s; int nd0, nd; ULong y9;
524#else
525 (CONST char *s, int nd0, int nd, ULong y9)
526#endif
527{
528 Bigint *b;
529 int i, k;
530 Long x, y;
531
532 x = (nd + 8) / 9;
533 for(k = 0, y = 1; x > y; y <<= 1, k++) ;
534#ifdef Pack_32
535 b = Balloc(k);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800536 if (b == BIGINT_INVALID)
537 return b;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800538 b->x[0] = y9;
539 b->wds = 1;
540#else
541 b = Balloc(k+1);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800542 if (b == BIGINT_INVALID)
543 return b;
544
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800545 b->x[0] = y9 & 0xffff;
546 b->wds = (b->x[1] = y9 >> 16) ? 2 : 1;
547#endif
548
549 i = 9;
550 if (9 < nd0) {
551 s += 9;
552 do b = multadd(b, 10, *s++ - '0');
553 while(++i < nd0);
554 s++;
André Goddard Rosae7347692010-02-05 18:32:52 -0200555 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800556 else
557 s += 10;
558 for(; i < nd; i++)
559 b = multadd(b, 10, *s++ - '0');
560 return b;
André Goddard Rosae7347692010-02-05 18:32:52 -0200561}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800562
563 static int
564hi0bits
565#ifdef KR_headers
566 (x) ULong x;
567#else
568 (ULong x)
569#endif
570{
571 int k = 0;
572
573 if (!(x & 0xffff0000)) {
574 k = 16;
575 x <<= 16;
André Goddard Rosae7347692010-02-05 18:32:52 -0200576 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800577 if (!(x & 0xff000000)) {
578 k += 8;
579 x <<= 8;
André Goddard Rosae7347692010-02-05 18:32:52 -0200580 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800581 if (!(x & 0xf0000000)) {
582 k += 4;
583 x <<= 4;
André Goddard Rosae7347692010-02-05 18:32:52 -0200584 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800585 if (!(x & 0xc0000000)) {
586 k += 2;
587 x <<= 2;
André Goddard Rosae7347692010-02-05 18:32:52 -0200588 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800589 if (!(x & 0x80000000)) {
590 k++;
591 if (!(x & 0x40000000))
592 return 32;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800593 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200594 return k;
595}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800596
597 static int
598lo0bits
599#ifdef KR_headers
600 (y) ULong *y;
601#else
602 (ULong *y)
603#endif
604{
605 int k;
606 ULong x = *y;
607
608 if (x & 7) {
609 if (x & 1)
610 return 0;
611 if (x & 2) {
612 *y = x >> 1;
613 return 1;
614 }
615 *y = x >> 2;
616 return 2;
André Goddard Rosae7347692010-02-05 18:32:52 -0200617 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800618 k = 0;
619 if (!(x & 0xffff)) {
620 k = 16;
621 x >>= 16;
André Goddard Rosae7347692010-02-05 18:32:52 -0200622 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800623 if (!(x & 0xff)) {
624 k += 8;
625 x >>= 8;
André Goddard Rosae7347692010-02-05 18:32:52 -0200626 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800627 if (!(x & 0xf)) {
628 k += 4;
629 x >>= 4;
André Goddard Rosae7347692010-02-05 18:32:52 -0200630 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800631 if (!(x & 0x3)) {
632 k += 2;
633 x >>= 2;
André Goddard Rosae7347692010-02-05 18:32:52 -0200634 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800635 if (!(x & 1)) {
636 k++;
637 x >>= 1;
638 if (!x & 1)
639 return 32;
André Goddard Rosae7347692010-02-05 18:32:52 -0200640 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800641 *y = x;
642 return k;
André Goddard Rosae7347692010-02-05 18:32:52 -0200643}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800644
645 static Bigint *
646i2b
647#ifdef KR_headers
648 (i) int i;
649#else
650 (int i)
651#endif
652{
653 Bigint *b;
654
655 b = Balloc(1);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800656 if (b != BIGINT_INVALID) {
657 b->x[0] = i;
658 b->wds = 1;
659 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800660 return b;
André Goddard Rosae7347692010-02-05 18:32:52 -0200661}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800662
663 static Bigint *
664mult
665#ifdef KR_headers
666 (a, b) Bigint *a, *b;
667#else
668 (Bigint *a, Bigint *b)
669#endif
670{
671 Bigint *c;
672 int k, wa, wb, wc;
673 ULong carry, y, z;
674 ULong *x, *xa, *xae, *xb, *xbe, *xc, *xc0;
675#ifdef Pack_32
676 ULong z2;
677#endif
678
David 'Digit' Turner81326262010-03-04 11:51:42 -0800679 if (a == BIGINT_INVALID || b == BIGINT_INVALID)
680 return BIGINT_INVALID;
681
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800682 if (a->wds < b->wds) {
683 c = a;
684 a = b;
685 b = c;
André Goddard Rosae7347692010-02-05 18:32:52 -0200686 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800687 k = a->k;
688 wa = a->wds;
689 wb = b->wds;
690 wc = wa + wb;
691 if (wc > a->maxwds)
692 k++;
693 c = Balloc(k);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800694 if (c == BIGINT_INVALID)
695 return c;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800696 for(x = c->x, xa = x + wc; x < xa; x++)
697 *x = 0;
698 xa = a->x;
699 xae = xa + wa;
700 xb = b->x;
701 xbe = xb + wb;
702 xc0 = c->x;
703#ifdef Pack_32
704 for(; xb < xbe; xb++, xc0++) {
705 if ((y = *xb & 0xffff) != 0) {
706 x = xa;
707 xc = xc0;
708 carry = 0;
709 do {
710 z = (*x & 0xffff) * y + (*xc & 0xffff) + carry;
711 carry = z >> 16;
712 z2 = (*x++ >> 16) * y + (*xc >> 16) + carry;
713 carry = z2 >> 16;
714 Storeinc(xc, z2, z);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800715 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200716 while(x < xae);
717 *xc = carry;
718 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800719 if ((y = *xb >> 16) != 0) {
720 x = xa;
721 xc = xc0;
722 carry = 0;
723 z2 = *xc;
724 do {
725 z = (*x & 0xffff) * y + (*xc >> 16) + carry;
726 carry = z >> 16;
727 Storeinc(xc, z, z2);
728 z2 = (*x++ >> 16) * y + (*xc & 0xffff) + carry;
729 carry = z2 >> 16;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800730 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200731 while(x < xae);
732 *xc = z2;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800733 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200734 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800735#else
736 for(; xb < xbe; xc0++) {
737 if (y = *xb++) {
738 x = xa;
739 xc = xc0;
740 carry = 0;
741 do {
742 z = *x++ * y + *xc + carry;
743 carry = z >> 16;
744 *xc++ = z & 0xffff;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800745 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200746 while(x < xae);
747 *xc = carry;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800748 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200749 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800750#endif
751 for(xc0 = c->x, xc = xc0 + wc; wc > 0 && !*--xc; --wc) ;
752 c->wds = wc;
753 return c;
André Goddard Rosae7347692010-02-05 18:32:52 -0200754}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800755
756 static Bigint *p5s;
Glenn Kasten144a5d32011-01-09 09:50:10 -0800757 static pthread_mutex_t p5s_mutex = PTHREAD_MUTEX_INITIALIZER;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800758
759 static Bigint *
760pow5mult
761#ifdef KR_headers
762 (b, k) Bigint *b; int k;
763#else
764 (Bigint *b, int k)
765#endif
766{
767 Bigint *b1, *p5, *p51;
768 int i;
769 static const int p05[3] = { 5, 25, 125 };
770
David 'Digit' Turner81326262010-03-04 11:51:42 -0800771 if (b == BIGINT_INVALID)
772 return b;
773
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800774 if ((i = k & 3) != 0)
775 b = multadd(b, p05[i-1], 0);
776
777 if (!(k = (unsigned int) k >> 2))
778 return b;
Glenn Kasten144a5d32011-01-09 09:50:10 -0800779 mutex_lock(&p5s_mutex);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800780 if (!(p5 = p5s)) {
781 /* first time */
David 'Digit' Turner81326262010-03-04 11:51:42 -0800782 p5 = i2b(625);
783 if (p5 == BIGINT_INVALID) {
784 Bfree(b);
Glenn Kasten144a5d32011-01-09 09:50:10 -0800785 mutex_unlock(&p5s_mutex);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800786 return p5;
787 }
788 p5s = p5;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800789 p5->next = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -0200790 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800791 for(;;) {
792 if (k & 1) {
793 b1 = mult(b, p5);
794 Bfree(b);
795 b = b1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200796 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800797 if (!(k = (unsigned int) k >> 1))
798 break;
799 if (!(p51 = p5->next)) {
David 'Digit' Turner81326262010-03-04 11:51:42 -0800800 p51 = mult(p5,p5);
801 if (p51 == BIGINT_INVALID) {
802 Bfree(b);
Glenn Kasten144a5d32011-01-09 09:50:10 -0800803 mutex_unlock(&p5s_mutex);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800804 return p51;
805 }
806 p5->next = p51;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800807 p51->next = 0;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800808 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200809 p5 = p51;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800810 }
Glenn Kasten144a5d32011-01-09 09:50:10 -0800811 mutex_unlock(&p5s_mutex);
André Goddard Rosae7347692010-02-05 18:32:52 -0200812 return b;
813}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800814
815 static Bigint *
816lshift
817#ifdef KR_headers
818 (b, k) Bigint *b; int k;
819#else
820 (Bigint *b, int k)
821#endif
822{
823 int i, k1, n, n1;
824 Bigint *b1;
825 ULong *x, *x1, *xe, z;
826
David 'Digit' Turner81326262010-03-04 11:51:42 -0800827 if (b == BIGINT_INVALID)
828 return b;
829
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800830#ifdef Pack_32
831 n = (unsigned int)k >> 5;
832#else
833 n = (unsigned int)k >> 4;
834#endif
835 k1 = b->k;
836 n1 = n + b->wds + 1;
837 for(i = b->maxwds; n1 > i; i <<= 1)
838 k1++;
839 b1 = Balloc(k1);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800840 if (b1 == BIGINT_INVALID) {
841 Bfree(b);
842 return b1;
843 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800844 x1 = b1->x;
845 for(i = 0; i < n; i++)
846 *x1++ = 0;
847 x = b->x;
848 xe = x + b->wds;
849#ifdef Pack_32
850 if (k &= 0x1f) {
851 k1 = 32 - k;
852 z = 0;
853 do {
854 *x1++ = *x << k | z;
855 z = *x++ >> k1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200856 }
857 while(x < xe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800858 if ((*x1 = z) != 0)
859 ++n1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200860 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800861#else
862 if (k &= 0xf) {
863 k1 = 16 - k;
864 z = 0;
865 do {
866 *x1++ = *x << k & 0xffff | z;
867 z = *x++ >> k1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200868 }
869 while(x < xe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800870 if (*x1 = z)
871 ++n1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200872 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800873#endif
874 else do
875 *x1++ = *x++;
876 while(x < xe);
877 b1->wds = n1 - 1;
878 Bfree(b);
879 return b1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200880}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800881
882 static int
883cmp
884#ifdef KR_headers
885 (a, b) Bigint *a, *b;
886#else
887 (Bigint *a, Bigint *b)
888#endif
889{
890 ULong *xa, *xa0, *xb, *xb0;
891 int i, j;
892
David 'Digit' Turner81326262010-03-04 11:51:42 -0800893 if (a == BIGINT_INVALID || b == BIGINT_INVALID)
894#ifdef DEBUG
895 Bug("cmp called with a or b invalid");
896#else
897 return 0; /* equal - the best we can do right now */
898#endif
899
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800900 i = a->wds;
901 j = b->wds;
902#ifdef DEBUG
903 if (i > 1 && !a->x[i-1])
904 Bug("cmp called with a->x[a->wds-1] == 0");
905 if (j > 1 && !b->x[j-1])
906 Bug("cmp called with b->x[b->wds-1] == 0");
907#endif
908 if (i -= j)
909 return i;
910 xa0 = a->x;
911 xa = xa0 + j;
912 xb0 = b->x;
913 xb = xb0 + j;
914 for(;;) {
915 if (*--xa != *--xb)
916 return *xa < *xb ? -1 : 1;
917 if (xa <= xa0)
918 break;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800919 }
André Goddard Rosae7347692010-02-05 18:32:52 -0200920 return 0;
921}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800922
923 static Bigint *
924diff
925#ifdef KR_headers
926 (a, b) Bigint *a, *b;
927#else
928 (Bigint *a, Bigint *b)
929#endif
930{
931 Bigint *c;
932 int i, wa, wb;
933 Long borrow, y; /* We need signed shifts here. */
934 ULong *xa, *xae, *xb, *xbe, *xc;
935#ifdef Pack_32
936 Long z;
937#endif
938
David 'Digit' Turner81326262010-03-04 11:51:42 -0800939 if (a == BIGINT_INVALID || b == BIGINT_INVALID)
940 return BIGINT_INVALID;
941
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800942 i = cmp(a,b);
943 if (!i) {
944 c = Balloc(0);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800945 if (c != BIGINT_INVALID) {
946 c->wds = 1;
947 c->x[0] = 0;
948 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800949 return c;
André Goddard Rosae7347692010-02-05 18:32:52 -0200950 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800951 if (i < 0) {
952 c = a;
953 a = b;
954 b = c;
955 i = 1;
André Goddard Rosae7347692010-02-05 18:32:52 -0200956 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800957 else
958 i = 0;
959 c = Balloc(a->k);
David 'Digit' Turner81326262010-03-04 11:51:42 -0800960 if (c == BIGINT_INVALID)
961 return c;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800962 c->sign = i;
963 wa = a->wds;
964 xa = a->x;
965 xae = xa + wa;
966 wb = b->wds;
967 xb = b->x;
968 xbe = xb + wb;
969 xc = c->x;
970 borrow = 0;
971#ifdef Pack_32
972 do {
973 y = (*xa & 0xffff) - (*xb & 0xffff) + borrow;
974 borrow = (ULong)y >> 16;
975 Sign_Extend(borrow, y);
976 z = (*xa++ >> 16) - (*xb++ >> 16) + borrow;
977 borrow = (ULong)z >> 16;
978 Sign_Extend(borrow, z);
979 Storeinc(xc, z, y);
André Goddard Rosae7347692010-02-05 18:32:52 -0200980 }
981 while(xb < xbe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800982 while(xa < xae) {
983 y = (*xa & 0xffff) + borrow;
984 borrow = (ULong)y >> 16;
985 Sign_Extend(borrow, y);
986 z = (*xa++ >> 16) + borrow;
987 borrow = (ULong)z >> 16;
988 Sign_Extend(borrow, z);
989 Storeinc(xc, z, y);
André Goddard Rosae7347692010-02-05 18:32:52 -0200990 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800991#else
992 do {
993 y = *xa++ - *xb++ + borrow;
994 borrow = y >> 16;
995 Sign_Extend(borrow, y);
996 *xc++ = y & 0xffff;
André Goddard Rosae7347692010-02-05 18:32:52 -0200997 }
998 while(xb < xbe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -0800999 while(xa < xae) {
1000 y = *xa++ + borrow;
1001 borrow = y >> 16;
1002 Sign_Extend(borrow, y);
1003 *xc++ = y & 0xffff;
André Goddard Rosae7347692010-02-05 18:32:52 -02001004 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001005#endif
1006 while(!*--xc)
1007 wa--;
1008 c->wds = wa;
1009 return c;
André Goddard Rosae7347692010-02-05 18:32:52 -02001010}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001011
1012 static double
1013ulp
1014#ifdef KR_headers
1015 (_x) double _x;
1016#else
1017 (double _x)
1018#endif
1019{
1020 _double x;
1021 Long L;
1022 _double a;
1023
1024 value(x) = _x;
1025 L = (word0(x) & Exp_mask) - (P-1)*Exp_msk1;
1026#ifndef Sudden_Underflow
1027 if (L > 0) {
1028#endif
1029#ifdef IBM
1030 L |= Exp_msk1 >> 4;
1031#endif
1032 word0(a) = L;
1033 word1(a) = 0;
1034#ifndef Sudden_Underflow
André Goddard Rosae7347692010-02-05 18:32:52 -02001035 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001036 else {
1037 L = (ULong)-L >> Exp_shift;
1038 if (L < Exp_shift) {
1039 word0(a) = 0x80000 >> L;
1040 word1(a) = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02001041 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001042 else {
1043 word0(a) = 0;
1044 L -= Exp_shift;
1045 word1(a) = L >= 31 ? 1 : 1 << (31 - L);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001046 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001047 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001048#endif
1049 return value(a);
André Goddard Rosae7347692010-02-05 18:32:52 -02001050}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001051
1052 static double
1053b2d
1054#ifdef KR_headers
1055 (a, e) Bigint *a; int *e;
1056#else
1057 (Bigint *a, int *e)
1058#endif
1059{
1060 ULong *xa, *xa0, w, y, z;
1061 int k;
1062 _double d;
1063#ifdef VAX
1064 ULong d0, d1;
1065#else
1066#define d0 word0(d)
1067#define d1 word1(d)
1068#endif
1069
David 'Digit' Turner81326262010-03-04 11:51:42 -08001070 if (a == BIGINT_INVALID)
1071 return NAN;
1072
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001073 xa0 = a->x;
1074 xa = xa0 + a->wds;
1075 y = *--xa;
1076#ifdef DEBUG
1077 if (!y) Bug("zero y in b2d");
1078#endif
1079 k = hi0bits(y);
1080 *e = 32 - k;
1081#ifdef Pack_32
1082 if (k < Ebits) {
1083 d0 = Exp_1 | y >> (Ebits - k);
1084 w = xa > xa0 ? *--xa : 0;
1085 d1 = y << ((32-Ebits) + k) | w >> (Ebits - k);
1086 goto ret_d;
André Goddard Rosae7347692010-02-05 18:32:52 -02001087 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001088 z = xa > xa0 ? *--xa : 0;
1089 if (k -= Ebits) {
1090 d0 = Exp_1 | y << k | z >> (32 - k);
1091 y = xa > xa0 ? *--xa : 0;
1092 d1 = z << k | y >> (32 - k);
André Goddard Rosae7347692010-02-05 18:32:52 -02001093 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001094 else {
1095 d0 = Exp_1 | y;
1096 d1 = z;
André Goddard Rosae7347692010-02-05 18:32:52 -02001097 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001098#else
1099 if (k < Ebits + 16) {
1100 z = xa > xa0 ? *--xa : 0;
1101 d0 = Exp_1 | y << k - Ebits | z >> Ebits + 16 - k;
1102 w = xa > xa0 ? *--xa : 0;
1103 y = xa > xa0 ? *--xa : 0;
1104 d1 = z << k + 16 - Ebits | w << k - Ebits | y >> 16 + Ebits - k;
1105 goto ret_d;
André Goddard Rosae7347692010-02-05 18:32:52 -02001106 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001107 z = xa > xa0 ? *--xa : 0;
1108 w = xa > xa0 ? *--xa : 0;
1109 k -= Ebits + 16;
1110 d0 = Exp_1 | y << k + 16 | z << k | w >> 16 - k;
1111 y = xa > xa0 ? *--xa : 0;
1112 d1 = w << k + 16 | y << k;
1113#endif
1114 ret_d:
1115#ifdef VAX
1116 word0(d) = d0 >> 16 | d0 << 16;
1117 word1(d) = d1 >> 16 | d1 << 16;
1118#else
1119#undef d0
1120#undef d1
1121#endif
1122 return value(d);
André Goddard Rosae7347692010-02-05 18:32:52 -02001123}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001124
1125 static Bigint *
1126d2b
1127#ifdef KR_headers
1128 (_d, e, bits) double d; int *e, *bits;
1129#else
1130 (double _d, int *e, int *bits)
1131#endif
1132{
1133 Bigint *b;
1134 int de, i, k;
1135 ULong *x, y, z;
1136 _double d;
1137#ifdef VAX
1138 ULong d0, d1;
1139#endif
1140
1141 value(d) = _d;
1142#ifdef VAX
1143 d0 = word0(d) >> 16 | word0(d) << 16;
1144 d1 = word1(d) >> 16 | word1(d) << 16;
1145#else
1146#define d0 word0(d)
1147#define d1 word1(d)
1148#endif
1149
1150#ifdef Pack_32
1151 b = Balloc(1);
1152#else
1153 b = Balloc(2);
1154#endif
David 'Digit' Turner81326262010-03-04 11:51:42 -08001155 if (b == BIGINT_INVALID)
1156 return b;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001157 x = b->x;
1158
1159 z = d0 & Frac_mask;
1160 d0 &= 0x7fffffff; /* clear sign bit, which we ignore */
1161#ifdef Sudden_Underflow
1162 de = (int)(d0 >> Exp_shift);
1163#ifndef IBM
1164 z |= Exp_msk11;
1165#endif
1166#else
1167 if ((de = (int)(d0 >> Exp_shift)) != 0)
1168 z |= Exp_msk1;
1169#endif
1170#ifdef Pack_32
1171 if ((y = d1) != 0) {
1172 if ((k = lo0bits(&y)) != 0) {
1173 x[0] = y | z << (32 - k);
1174 z >>= k;
André Goddard Rosae7347692010-02-05 18:32:52 -02001175 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001176 else
1177 x[0] = y;
1178 i = b->wds = (x[1] = z) ? 2 : 1;
André Goddard Rosae7347692010-02-05 18:32:52 -02001179 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001180 else {
1181#ifdef DEBUG
1182 if (!z)
1183 Bug("Zero passed to d2b");
1184#endif
1185 k = lo0bits(&z);
1186 x[0] = z;
1187 i = b->wds = 1;
1188 k += 32;
André Goddard Rosae7347692010-02-05 18:32:52 -02001189 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001190#else
1191 if (y = d1) {
1192 if (k = lo0bits(&y))
1193 if (k >= 16) {
1194 x[0] = y | z << 32 - k & 0xffff;
1195 x[1] = z >> k - 16 & 0xffff;
1196 x[2] = z >> k;
1197 i = 2;
André Goddard Rosae7347692010-02-05 18:32:52 -02001198 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001199 else {
1200 x[0] = y & 0xffff;
1201 x[1] = y >> 16 | z << 16 - k & 0xffff;
1202 x[2] = z >> k & 0xffff;
1203 x[3] = z >> k+16;
1204 i = 3;
André Goddard Rosae7347692010-02-05 18:32:52 -02001205 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001206 else {
1207 x[0] = y & 0xffff;
1208 x[1] = y >> 16;
1209 x[2] = z & 0xffff;
1210 x[3] = z >> 16;
1211 i = 3;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001212 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001213 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001214 else {
1215#ifdef DEBUG
1216 if (!z)
1217 Bug("Zero passed to d2b");
1218#endif
1219 k = lo0bits(&z);
1220 if (k >= 16) {
1221 x[0] = z;
1222 i = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02001223 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001224 else {
1225 x[0] = z & 0xffff;
1226 x[1] = z >> 16;
1227 i = 1;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001228 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001229 k += 32;
1230 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001231 while(!x[i])
1232 --i;
1233 b->wds = i + 1;
1234#endif
1235#ifndef Sudden_Underflow
1236 if (de) {
1237#endif
1238#ifdef IBM
1239 *e = (de - Bias - (P-1) << 2) + k;
1240 *bits = 4*P + 8 - k - hi0bits(word0(d) & Frac_mask);
1241#else
1242 *e = de - Bias - (P-1) + k;
1243 *bits = P - k;
1244#endif
1245#ifndef Sudden_Underflow
André Goddard Rosae7347692010-02-05 18:32:52 -02001246 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001247 else {
1248 *e = de - Bias - (P-1) + 1 + k;
1249#ifdef Pack_32
1250 *bits = 32*i - hi0bits(x[i-1]);
1251#else
1252 *bits = (i+2)*16 - hi0bits(x[i]);
1253#endif
1254 }
1255#endif
1256 return b;
André Goddard Rosae7347692010-02-05 18:32:52 -02001257}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001258#undef d0
1259#undef d1
1260
1261 static double
1262ratio
1263#ifdef KR_headers
1264 (a, b) Bigint *a, *b;
1265#else
1266 (Bigint *a, Bigint *b)
1267#endif
1268{
1269 _double da, db;
1270 int k, ka, kb;
1271
David 'Digit' Turner81326262010-03-04 11:51:42 -08001272 if (a == BIGINT_INVALID || b == BIGINT_INVALID)
1273 return NAN; /* for lack of better value ? */
1274
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001275 value(da) = b2d(a, &ka);
1276 value(db) = b2d(b, &kb);
1277#ifdef Pack_32
1278 k = ka - kb + 32*(a->wds - b->wds);
1279#else
1280 k = ka - kb + 16*(a->wds - b->wds);
1281#endif
1282#ifdef IBM
1283 if (k > 0) {
1284 word0(da) += (k >> 2)*Exp_msk1;
1285 if (k &= 3)
1286 da *= 1 << k;
André Goddard Rosae7347692010-02-05 18:32:52 -02001287 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001288 else {
1289 k = -k;
1290 word0(db) += (k >> 2)*Exp_msk1;
1291 if (k &= 3)
1292 db *= 1 << k;
André Goddard Rosae7347692010-02-05 18:32:52 -02001293 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001294#else
1295 if (k > 0)
1296 word0(da) += k*Exp_msk1;
1297 else {
1298 k = -k;
1299 word0(db) += k*Exp_msk1;
André Goddard Rosae7347692010-02-05 18:32:52 -02001300 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001301#endif
1302 return value(da) / value(db);
André Goddard Rosae7347692010-02-05 18:32:52 -02001303}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001304
1305static CONST double
1306tens[] = {
1307 1e0, 1e1, 1e2, 1e3, 1e4, 1e5, 1e6, 1e7, 1e8, 1e9,
1308 1e10, 1e11, 1e12, 1e13, 1e14, 1e15, 1e16, 1e17, 1e18, 1e19,
1309 1e20, 1e21, 1e22
1310#ifdef VAX
1311 , 1e23, 1e24
1312#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001313};
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001314
1315#ifdef IEEE_Arith
1316static CONST double bigtens[] = { 1e16, 1e32, 1e64, 1e128, 1e256 };
1317static CONST double tinytens[] = { 1e-16, 1e-32, 1e-64, 1e-128, 1e-256 };
1318#define n_bigtens 5
1319#else
1320#ifdef IBM
1321static CONST double bigtens[] = { 1e16, 1e32, 1e64 };
1322static CONST double tinytens[] = { 1e-16, 1e-32, 1e-64 };
1323#define n_bigtens 3
1324#else
1325static CONST double bigtens[] = { 1e16, 1e32 };
1326static CONST double tinytens[] = { 1e-16, 1e-32 };
1327#define n_bigtens 2
1328#endif
1329#endif
1330
1331 double
1332strtod
1333#ifdef KR_headers
1334 (s00, se) CONST char *s00; char **se;
1335#else
1336 (CONST char *s00, char **se)
1337#endif
1338{
1339 int bb2, bb5, bbe, bd2, bd5, bbbits, bs2, c, dsign,
1340 e, e1, esign, i, j, k, nd, nd0, nf, nz, nz0, sign;
1341 CONST char *s, *s0, *s1;
1342 double aadj, aadj1, adj;
1343 _double rv, rv0;
1344 Long L;
1345 ULong y, z;
1346 Bigint *bb1, *bd0;
1347 Bigint *bb = NULL, *bd = NULL, *bs = NULL, *delta = NULL;/* pacify gcc */
1348
1349#ifdef ANDROID_CHANGES
1350 CONST char decimal_point = '.';
1351#else /* ANDROID_CHANGES */
1352#ifndef KR_headers
1353 CONST char decimal_point = localeconv()->decimal_point[0];
1354#else
1355 CONST char decimal_point = '.';
1356#endif
1357
1358#endif /* ANDROID_CHANGES */
1359
1360 sign = nz0 = nz = 0;
1361 value(rv) = 0.;
1362
1363
1364 for(s = s00; isspace((unsigned char) *s); s++)
1365 ;
1366
1367 if (*s == '-') {
1368 sign = 1;
1369 s++;
1370 } else if (*s == '+') {
1371 s++;
1372 }
1373
1374 if (*s == '\0') {
1375 s = s00;
1376 goto ret;
1377 }
1378
1379 /* "INF" or "INFINITY" */
1380 if (tolower((unsigned char)*s) == 'i' && strncasecmp(s, "inf", 3) == 0) {
1381 if (strncasecmp(s + 3, "inity", 5) == 0)
1382 s += 8;
1383 else
1384 s += 3;
1385
1386 value(rv) = HUGE_VAL;
1387 goto ret;
1388 }
1389
1390#ifdef IEEE_Arith
1391 /* "NAN" or "NAN(n-char-sequence-opt)" */
1392 if (tolower((unsigned char)*s) == 'n' && strncasecmp(s, "nan", 3) == 0) {
1393 /* Build a quiet NaN. */
1394 word0(rv) = NAN_WORD0;
1395 word1(rv) = NAN_WORD1;
1396 s+= 3;
1397
1398 /* Don't interpret (n-char-sequence-opt), for now. */
1399 if (*s == '(') {
1400 s0 = s;
1401 for (s++; *s != ')' && *s != '\0'; s++)
1402 ;
1403 if (*s == ')')
1404 s++; /* Skip over closing paren ... */
1405 else
1406 s = s0; /* ... otherwise go back. */
1407 }
1408
1409 goto ret;
1410 }
1411#endif
1412
1413 if (*s == '0') {
1414 nz0 = 1;
1415 while(*++s == '0') ;
1416 if (!*s)
1417 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02001418 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001419 s0 = s;
1420 y = z = 0;
1421 for(nd = nf = 0; (c = *s) >= '0' && c <= '9'; nd++, s++)
1422 if (nd < 9)
1423 y = 10*y + c - '0';
1424 else if (nd < 16)
1425 z = 10*z + c - '0';
1426 nd0 = nd;
1427 if (c == decimal_point) {
1428 c = *++s;
1429 if (!nd) {
1430 for(; c == '0'; c = *++s)
1431 nz++;
1432 if (c > '0' && c <= '9') {
1433 s0 = s;
1434 nf += nz;
1435 nz = 0;
1436 goto have_dig;
1437 }
1438 goto dig_done;
André Goddard Rosae7347692010-02-05 18:32:52 -02001439 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001440 for(; c >= '0' && c <= '9'; c = *++s) {
1441 have_dig:
1442 nz++;
1443 if (c -= '0') {
1444 nf += nz;
1445 for(i = 1; i < nz; i++)
1446 if (nd++ < 9)
1447 y *= 10;
1448 else if (nd <= DBL_DIG + 1)
1449 z *= 10;
1450 if (nd++ < 9)
1451 y = 10*y + c;
1452 else if (nd <= DBL_DIG + 1)
1453 z = 10*z + c;
1454 nz = 0;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001455 }
1456 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001457 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001458 dig_done:
1459 e = 0;
1460 if (c == 'e' || c == 'E') {
1461 if (!nd && !nz && !nz0) {
1462 s = s00;
1463 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02001464 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001465 s00 = s;
1466 esign = 0;
1467 switch(c = *++s) {
1468 case '-':
1469 esign = 1;
1470 /* FALLTHROUGH */
1471 case '+':
1472 c = *++s;
André Goddard Rosae7347692010-02-05 18:32:52 -02001473 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001474 if (c >= '0' && c <= '9') {
1475 while(c == '0')
1476 c = *++s;
1477 if (c > '0' && c <= '9') {
1478 L = c - '0';
1479 s1 = s;
1480 while((c = *++s) >= '0' && c <= '9')
1481 L = 10*L + c - '0';
1482 if (s - s1 > 8 || L > 19999)
1483 /* Avoid confusion from exponents
1484 * so large that e might overflow.
1485 */
1486 e = 19999; /* safe for 16 bit ints */
1487 else
1488 e = (int)L;
1489 if (esign)
1490 e = -e;
André Goddard Rosae7347692010-02-05 18:32:52 -02001491 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001492 else
1493 e = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02001494 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001495 else
1496 s = s00;
André Goddard Rosae7347692010-02-05 18:32:52 -02001497 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001498 if (!nd) {
1499 if (!nz && !nz0)
1500 s = s00;
1501 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02001502 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001503 e1 = e -= nf;
1504
1505 /* Now we have nd0 digits, starting at s0, followed by a
1506 * decimal point, followed by nd-nd0 digits. The number we're
1507 * after is the integer represented by those digits times
1508 * 10**e */
1509
1510 if (!nd0)
1511 nd0 = nd;
1512 k = nd < DBL_DIG + 1 ? nd : DBL_DIG + 1;
1513 value(rv) = y;
1514 if (k > 9)
1515 value(rv) = tens[k - 9] * value(rv) + z;
1516 bd0 = 0;
1517 if (nd <= DBL_DIG
1518#ifndef RND_PRODQUOT
1519 && FLT_ROUNDS == 1
1520#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001521 ) {
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001522 if (!e)
1523 goto ret;
1524 if (e > 0) {
1525 if (e <= Ten_pmax) {
1526#ifdef VAX
1527 goto vax_ovfl_check;
1528#else
1529 /* value(rv) = */ rounded_product(value(rv),
1530 tens[e]);
1531 goto ret;
1532#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001533 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001534 i = DBL_DIG - nd;
1535 if (e <= Ten_pmax + i) {
1536 /* A fancier test would sometimes let us do
1537 * this for larger i values.
1538 */
1539 e -= i;
1540 value(rv) *= tens[i];
1541#ifdef VAX
1542 /* VAX exponent range is so narrow we must
1543 * worry about overflow here...
1544 */
1545 vax_ovfl_check:
1546 word0(rv) -= P*Exp_msk1;
1547 /* value(rv) = */ rounded_product(value(rv),
1548 tens[e]);
1549 if ((word0(rv) & Exp_mask)
1550 > Exp_msk1*(DBL_MAX_EXP+Bias-1-P))
1551 goto ovfl;
1552 word0(rv) += P*Exp_msk1;
1553#else
1554 /* value(rv) = */ rounded_product(value(rv),
1555 tens[e]);
1556#endif
1557 goto ret;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001558 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001559 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001560#ifndef Inaccurate_Divide
1561 else if (e >= -Ten_pmax) {
1562 /* value(rv) = */ rounded_quotient(value(rv),
1563 tens[-e]);
1564 goto ret;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001565 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001566#endif
1567 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001568 e1 += nd - k;
1569
1570 /* Get starting approximation = rv * 10**e1 */
1571
1572 if (e1 > 0) {
1573 if ((i = e1 & 15) != 0)
1574 value(rv) *= tens[i];
1575 if (e1 &= ~15) {
1576 if (e1 > DBL_MAX_10_EXP) {
1577 ovfl:
1578 errno = ERANGE;
1579 value(rv) = HUGE_VAL;
1580 if (bd0)
1581 goto retfree;
1582 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02001583 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001584 if ((e1 = (unsigned int)e1 >> 4) != 0) {
1585 for(j = 0; e1 > 1; j++,
1586 e1 = (unsigned int)e1 >> 1)
1587 if (e1 & 1)
1588 value(rv) *= bigtens[j];
1589 /* The last multiplication could overflow. */
1590 word0(rv) -= P*Exp_msk1;
1591 value(rv) *= bigtens[j];
1592 if ((z = word0(rv) & Exp_mask)
1593 > Exp_msk1*(DBL_MAX_EXP+Bias-P))
1594 goto ovfl;
1595 if (z > Exp_msk1*(DBL_MAX_EXP+Bias-1-P)) {
1596 /* set to largest number */
1597 /* (Can't trust DBL_MAX) */
1598 word0(rv) = Big0;
1599 word1(rv) = Big1;
1600 }
1601 else
1602 word0(rv) += P*Exp_msk1;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001603 }
1604 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001605 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001606 else if (e1 < 0) {
1607 e1 = -e1;
1608 if ((i = e1 & 15) != 0)
1609 value(rv) /= tens[i];
1610 if (e1 &= ~15) {
1611 e1 = (unsigned int)e1 >> 4;
1612 if (e1 >= 1 << n_bigtens)
1613 goto undfl;
1614 for(j = 0; e1 > 1; j++,
1615 e1 = (unsigned int)e1 >> 1)
1616 if (e1 & 1)
1617 value(rv) *= tinytens[j];
1618 /* The last multiplication could underflow. */
1619 value(rv0) = value(rv);
1620 value(rv) *= tinytens[j];
1621 if (!value(rv)) {
1622 value(rv) = 2.*value(rv0);
1623 value(rv) *= tinytens[j];
1624 if (!value(rv)) {
1625 undfl:
1626 value(rv) = 0.;
1627 errno = ERANGE;
1628 if (bd0)
1629 goto retfree;
1630 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02001631 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001632 word0(rv) = Tiny0;
1633 word1(rv) = Tiny1;
1634 /* The refinement below will clean
1635 * this approximation up.
1636 */
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001637 }
1638 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001639 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001640
1641 /* Now the hard part -- adjusting rv to the correct value.*/
1642
1643 /* Put digits into bd: true value = bd * 10^e */
1644
1645 bd0 = s2b(s0, nd0, nd, y);
1646
1647 for(;;) {
1648 bd = Balloc(bd0->k);
1649 Bcopy(bd, bd0);
1650 bb = d2b(value(rv), &bbe, &bbbits); /* rv = bb * 2^bbe */
1651 bs = i2b(1);
1652
1653 if (e >= 0) {
1654 bb2 = bb5 = 0;
1655 bd2 = bd5 = e;
André Goddard Rosae7347692010-02-05 18:32:52 -02001656 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001657 else {
1658 bb2 = bb5 = -e;
1659 bd2 = bd5 = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02001660 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001661 if (bbe >= 0)
1662 bb2 += bbe;
1663 else
1664 bd2 -= bbe;
1665 bs2 = bb2;
1666#ifdef Sudden_Underflow
1667#ifdef IBM
1668 j = 1 + 4*P - 3 - bbbits + ((bbe + bbbits - 1) & 3);
1669#else
1670 j = P + 1 - bbbits;
1671#endif
1672#else
1673 i = bbe + bbbits - 1; /* logb(rv) */
1674 if (i < Emin) /* denormal */
1675 j = bbe + (P-Emin);
1676 else
1677 j = P + 1 - bbbits;
1678#endif
1679 bb2 += j;
1680 bd2 += j;
1681 i = bb2 < bd2 ? bb2 : bd2;
1682 if (i > bs2)
1683 i = bs2;
1684 if (i > 0) {
1685 bb2 -= i;
1686 bd2 -= i;
1687 bs2 -= i;
André Goddard Rosae7347692010-02-05 18:32:52 -02001688 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001689 if (bb5 > 0) {
1690 bs = pow5mult(bs, bb5);
1691 bb1 = mult(bs, bb);
1692 Bfree(bb);
1693 bb = bb1;
André Goddard Rosae7347692010-02-05 18:32:52 -02001694 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001695 if (bb2 > 0)
1696 bb = lshift(bb, bb2);
1697 if (bd5 > 0)
1698 bd = pow5mult(bd, bd5);
1699 if (bd2 > 0)
1700 bd = lshift(bd, bd2);
1701 if (bs2 > 0)
1702 bs = lshift(bs, bs2);
1703 delta = diff(bb, bd);
1704 dsign = delta->sign;
1705 delta->sign = 0;
1706 i = cmp(delta, bs);
1707 if (i < 0) {
1708 /* Error is less than half an ulp -- check for
1709 * special case of mantissa a power of two.
1710 */
1711 if (dsign || word1(rv) || word0(rv) & Bndry_mask)
1712 break;
1713 delta = lshift(delta,Log2P);
1714 if (cmp(delta, bs) > 0)
1715 goto drop_down;
1716 break;
André Goddard Rosae7347692010-02-05 18:32:52 -02001717 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001718 if (i == 0) {
1719 /* exactly half-way between */
1720 if (dsign) {
1721 if ((word0(rv) & Bndry_mask1) == Bndry_mask1
1722 && word1(rv) == 0xffffffff) {
1723 /*boundary case -- increment exponent*/
1724 word0(rv) = (word0(rv) & Exp_mask)
1725 + Exp_msk1
1726#ifdef IBM
1727 | Exp_msk1 >> 4
1728#endif
1729 ;
1730 word1(rv) = 0;
1731 break;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001732 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001733 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001734 else if (!(word0(rv) & Bndry_mask) && !word1(rv)) {
1735 drop_down:
1736 /* boundary case -- decrement exponent */
1737#ifdef Sudden_Underflow
1738 L = word0(rv) & Exp_mask;
1739#ifdef IBM
1740 if (L < Exp_msk1)
1741#else
1742 if (L <= Exp_msk1)
1743#endif
1744 goto undfl;
1745 L -= Exp_msk1;
1746#else
1747 L = (word0(rv) & Exp_mask) - Exp_msk1;
1748#endif
1749 word0(rv) = L | Bndry_mask1;
1750 word1(rv) = 0xffffffff;
1751#ifdef IBM
1752 goto cont;
1753#else
1754 break;
1755#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001756 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001757#ifndef ROUND_BIASED
1758 if (!(word1(rv) & LSB))
1759 break;
1760#endif
1761 if (dsign)
1762 value(rv) += ulp(value(rv));
1763#ifndef ROUND_BIASED
1764 else {
1765 value(rv) -= ulp(value(rv));
1766#ifndef Sudden_Underflow
1767 if (!value(rv))
1768 goto undfl;
1769#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001770 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001771#endif
1772 break;
André Goddard Rosae7347692010-02-05 18:32:52 -02001773 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001774 if ((aadj = ratio(delta, bs)) <= 2.) {
1775 if (dsign)
1776 aadj = aadj1 = 1.;
1777 else if (word1(rv) || word0(rv) & Bndry_mask) {
1778#ifndef Sudden_Underflow
1779 if (word1(rv) == Tiny1 && !word0(rv))
1780 goto undfl;
1781#endif
1782 aadj = 1.;
1783 aadj1 = -1.;
André Goddard Rosae7347692010-02-05 18:32:52 -02001784 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001785 else {
1786 /* special case -- power of FLT_RADIX to be */
1787 /* rounded down... */
1788
1789 if (aadj < 2./FLT_RADIX)
1790 aadj = 1./FLT_RADIX;
1791 else
1792 aadj *= 0.5;
1793 aadj1 = -aadj;
1794 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001795 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001796 else {
1797 aadj *= 0.5;
1798 aadj1 = dsign ? aadj : -aadj;
1799#ifdef Check_FLT_ROUNDS
1800 switch(FLT_ROUNDS) {
1801 case 2: /* towards +infinity */
1802 aadj1 -= 0.5;
1803 break;
1804 case 0: /* towards 0 */
1805 case 3: /* towards -infinity */
1806 aadj1 += 0.5;
André Goddard Rosae7347692010-02-05 18:32:52 -02001807 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001808#else
1809 if (FLT_ROUNDS == 0)
1810 aadj1 += 0.5;
1811#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001812 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001813 y = word0(rv) & Exp_mask;
1814
1815 /* Check for overflow */
1816
1817 if (y == Exp_msk1*(DBL_MAX_EXP+Bias-1)) {
1818 value(rv0) = value(rv);
1819 word0(rv) -= P*Exp_msk1;
1820 adj = aadj1 * ulp(value(rv));
1821 value(rv) += adj;
1822 if ((word0(rv) & Exp_mask) >=
1823 Exp_msk1*(DBL_MAX_EXP+Bias-P)) {
1824 if (word0(rv0) == Big0 && word1(rv0) == Big1)
1825 goto ovfl;
1826 word0(rv) = Big0;
1827 word1(rv) = Big1;
1828 goto cont;
André Goddard Rosae7347692010-02-05 18:32:52 -02001829 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001830 else
1831 word0(rv) += P*Exp_msk1;
André Goddard Rosae7347692010-02-05 18:32:52 -02001832 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001833 else {
1834#ifdef Sudden_Underflow
1835 if ((word0(rv) & Exp_mask) <= P*Exp_msk1) {
1836 value(rv0) = value(rv);
1837 word0(rv) += P*Exp_msk1;
1838 adj = aadj1 * ulp(value(rv));
1839 value(rv) += adj;
1840#ifdef IBM
1841 if ((word0(rv) & Exp_mask) < P*Exp_msk1)
1842#else
1843 if ((word0(rv) & Exp_mask) <= P*Exp_msk1)
1844#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001845 {
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001846 if (word0(rv0) == Tiny0
1847 && word1(rv0) == Tiny1)
1848 goto undfl;
1849 word0(rv) = Tiny0;
1850 word1(rv) = Tiny1;
1851 goto cont;
André Goddard Rosae7347692010-02-05 18:32:52 -02001852 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001853 else
1854 word0(rv) -= P*Exp_msk1;
1855 }
1856 else {
1857 adj = aadj1 * ulp(value(rv));
1858 value(rv) += adj;
André Goddard Rosae7347692010-02-05 18:32:52 -02001859 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001860#else
1861 /* Compute adj so that the IEEE rounding rules will
1862 * correctly round rv + adj in some half-way cases.
1863 * If rv * ulp(rv) is denormalized (i.e.,
1864 * y <= (P-1)*Exp_msk1), we must adjust aadj to avoid
1865 * trouble from bits lost to denormalization;
1866 * example: 1.2e-307 .
1867 */
1868 if (y <= (P-1)*Exp_msk1 && aadj >= 1.) {
1869 aadj1 = (double)(int)(aadj + 0.5);
1870 if (!dsign)
1871 aadj1 = -aadj1;
André Goddard Rosae7347692010-02-05 18:32:52 -02001872 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001873 adj = aadj1 * ulp(value(rv));
1874 value(rv) += adj;
1875#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001876 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001877 z = word0(rv) & Exp_mask;
1878 if (y == z) {
1879 /* Can we stop now? */
1880 L = aadj;
1881 aadj -= L;
1882 /* The tolerances below are conservative. */
1883 if (dsign || word1(rv) || word0(rv) & Bndry_mask) {
1884 if (aadj < .4999999 || aadj > .5000001)
1885 break;
André Goddard Rosae7347692010-02-05 18:32:52 -02001886 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001887 else if (aadj < .4999999/FLT_RADIX)
1888 break;
André Goddard Rosae7347692010-02-05 18:32:52 -02001889 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001890 cont:
1891 Bfree(bb);
1892 Bfree(bd);
1893 Bfree(bs);
1894 Bfree(delta);
André Goddard Rosae7347692010-02-05 18:32:52 -02001895 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001896 retfree:
1897 Bfree(bb);
1898 Bfree(bd);
1899 Bfree(bs);
1900 Bfree(bd0);
1901 Bfree(delta);
1902 ret:
1903 if (se)
1904 /* LINTED interface specification */
1905 *se = (char *)s;
1906 return sign ? -value(rv) : value(rv);
André Goddard Rosae7347692010-02-05 18:32:52 -02001907}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001908
1909 static int
1910quorem
1911#ifdef KR_headers
1912 (b, S) Bigint *b, *S;
1913#else
1914 (Bigint *b, Bigint *S)
1915#endif
1916{
1917 int n;
1918 Long borrow, y;
1919 ULong carry, q, ys;
1920 ULong *bx, *bxe, *sx, *sxe;
1921#ifdef Pack_32
1922 Long z;
1923 ULong si, zs;
1924#endif
1925
David 'Digit' Turner81326262010-03-04 11:51:42 -08001926 if (b == BIGINT_INVALID || S == BIGINT_INVALID)
1927 return 0;
1928
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001929 n = S->wds;
1930#ifdef DEBUG
1931 /*debug*/ if (b->wds > n)
1932 /*debug*/ Bug("oversize b in quorem");
1933#endif
1934 if (b->wds < n)
1935 return 0;
1936 sx = S->x;
1937 sxe = sx + --n;
1938 bx = b->x;
1939 bxe = bx + n;
1940 q = *bxe / (*sxe + 1); /* ensure q <= true quotient */
1941#ifdef DEBUG
1942 /*debug*/ if (q > 9)
1943 /*debug*/ Bug("oversized quotient in quorem");
1944#endif
1945 if (q) {
1946 borrow = 0;
1947 carry = 0;
1948 do {
1949#ifdef Pack_32
1950 si = *sx++;
1951 ys = (si & 0xffff) * q + carry;
1952 zs = (si >> 16) * q + (ys >> 16);
1953 carry = zs >> 16;
1954 y = (*bx & 0xffff) - (ys & 0xffff) + borrow;
1955 borrow = (ULong)y >> 16;
1956 Sign_Extend(borrow, y);
1957 z = (*bx >> 16) - (zs & 0xffff) + borrow;
1958 borrow = (ULong)z >> 16;
1959 Sign_Extend(borrow, z);
1960 Storeinc(bx, z, y);
1961#else
1962 ys = *sx++ * q + carry;
1963 carry = ys >> 16;
1964 y = *bx - (ys & 0xffff) + borrow;
1965 borrow = y >> 16;
1966 Sign_Extend(borrow, y);
1967 *bx++ = y & 0xffff;
1968#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02001969 }
1970 while(sx <= sxe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001971 if (!*bxe) {
1972 bx = b->x;
1973 while(--bxe > bx && !*bxe)
1974 --n;
1975 b->wds = n;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001976 }
André Goddard Rosae7347692010-02-05 18:32:52 -02001977 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08001978 if (cmp(b, S) >= 0) {
1979 q++;
1980 borrow = 0;
1981 carry = 0;
1982 bx = b->x;
1983 sx = S->x;
1984 do {
1985#ifdef Pack_32
1986 si = *sx++;
1987 ys = (si & 0xffff) + carry;
1988 zs = (si >> 16) + (ys >> 16);
1989 carry = zs >> 16;
1990 y = (*bx & 0xffff) - (ys & 0xffff) + borrow;
1991 borrow = (ULong)y >> 16;
1992 Sign_Extend(borrow, y);
1993 z = (*bx >> 16) - (zs & 0xffff) + borrow;
1994 borrow = (ULong)z >> 16;
1995 Sign_Extend(borrow, z);
1996 Storeinc(bx, z, y);
1997#else
1998 ys = *sx++ + carry;
1999 carry = ys >> 16;
2000 y = *bx - (ys & 0xffff) + borrow;
2001 borrow = y >> 16;
2002 Sign_Extend(borrow, y);
2003 *bx++ = y & 0xffff;
2004#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02002005 }
2006 while(sx <= sxe);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002007 bx = b->x;
2008 bxe = bx + n;
2009 if (!*bxe) {
2010 while(--bxe > bx && !*bxe)
2011 --n;
2012 b->wds = n;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002013 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002014 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002015 return q;
2016}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002017
2018/* freedtoa(s) must be used to free values s returned by dtoa
2019 * when MULTIPLE_THREADS is #defined. It should be used in all cases,
2020 * but for consistency with earlier versions of dtoa, it is optional
2021 * when MULTIPLE_THREADS is not defined.
2022 */
2023
2024void
2025#ifdef KR_headers
2026freedtoa(s) char *s;
2027#else
2028freedtoa(char *s)
2029#endif
2030{
2031 free(s);
2032}
2033
2034
2035
2036/* dtoa for IEEE arithmetic (dmg): convert double to ASCII string.
2037 *
2038 * Inspired by "How to Print Floating-Point Numbers Accurately" by
2039 * Guy L. Steele, Jr. and Jon L. White [Proc. ACM SIGPLAN '90, pp. 92-101].
2040 *
2041 * Modifications:
2042 * 1. Rather than iterating, we use a simple numeric overestimate
2043 * to determine k = floor(log10(d)). We scale relevant
2044 * quantities using O(log2(k)) rather than O(k) multiplications.
2045 * 2. For some modes > 2 (corresponding to ecvt and fcvt), we don't
2046 * try to generate digits strictly left to right. Instead, we
2047 * compute with fewer bits and propagate the carry if necessary
2048 * when rounding the final digit up. This is often faster.
2049 * 3. Under the assumption that input will be rounded nearest,
2050 * mode 0 renders 1e23 as 1e23 rather than 9.999999999999999e22.
2051 * That is, we allow equality in stopping tests when the
2052 * round-nearest rule will give the same floating-point value
2053 * as would satisfaction of the stopping test with strict
2054 * inequality.
2055 * 4. We remove common factors of powers of 2 from relevant
2056 * quantities.
2057 * 5. When converting floating-point integers less than 1e16,
2058 * we use floating-point arithmetic rather than resorting
2059 * to multiple-precision integers.
2060 * 6. When asked to produce fewer than 15 digits, we first try
2061 * to get by with floating-point arithmetic; we resort to
2062 * multiple-precision integer arithmetic only if we cannot
2063 * guarantee that the floating-point calculation has given
2064 * the correctly rounded result. For k requested digits and
2065 * "uniformly" distributed input, the probability is
2066 * something like 10^(k-15) that we must resort to the Long
2067 * calculation.
2068 */
2069
Jim Huangcec75a72010-10-15 01:35:08 +08002070__LIBC_HIDDEN__ char *
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002071__dtoa
2072#ifdef KR_headers
2073 (_d, mode, ndigits, decpt, sign, rve)
2074 double _d; int mode, ndigits, *decpt, *sign; char **rve;
2075#else
2076 (double _d, int mode, int ndigits, int *decpt, int *sign, char **rve)
2077#endif
2078{
2079 /* Arguments ndigits, decpt, sign are similar to those
2080 of ecvt and fcvt; trailing zeros are suppressed from
2081 the returned string. If not null, *rve is set to point
2082 to the end of the return value. If d is +-Infinity or NaN,
2083 then *decpt is set to 9999.
2084
2085 mode:
2086 0 ==> shortest string that yields d when read in
2087 and rounded to nearest.
2088 1 ==> like 0, but with Steele & White stopping rule;
2089 e.g. with IEEE P754 arithmetic , mode 0 gives
2090 1e23 whereas mode 1 gives 9.999999999999999e22.
2091 2 ==> max(1,ndigits) significant digits. This gives a
2092 return value similar to that of ecvt, except
2093 that trailing zeros are suppressed.
2094 3 ==> through ndigits past the decimal point. This
2095 gives a return value similar to that from fcvt,
2096 except that trailing zeros are suppressed, and
2097 ndigits can be negative.
2098 4-9 should give the same return values as 2-3, i.e.,
2099 4 <= mode <= 9 ==> same return as mode
2100 2 + (mode & 1). These modes are mainly for
2101 debugging; often they run slower but sometimes
2102 faster than modes 2-3.
2103 4,5,8,9 ==> left-to-right digit generation.
2104 6-9 ==> don't try fast floating-point estimate
2105 (if applicable).
2106
2107 Values of mode other than 0-9 are treated as mode 0.
2108
2109 Sufficient space is allocated to the return value
2110 to hold the suppressed trailing zeros.
2111 */
2112
2113 int bbits, b2, b5, be, dig, i, ieps, ilim0,
2114 j, jj1, k, k0, k_check, leftright, m2, m5, s2, s5,
2115 try_quick;
2116 int ilim = 0, ilim1 = 0, spec_case = 0; /* pacify gcc */
2117 Long L;
2118#ifndef Sudden_Underflow
2119 int denorm;
2120 ULong x;
2121#endif
2122 Bigint *b, *b1, *delta, *mhi, *S;
2123 Bigint *mlo = NULL; /* pacify gcc */
2124 double ds;
2125 char *s, *s0;
2126 Bigint *result = NULL;
2127 int result_k = 0;
2128 _double d, d2, eps;
2129
2130 value(d) = _d;
2131
2132 if (word0(d) & Sign_bit) {
2133 /* set sign for everything, including 0's and NaNs */
2134 *sign = 1;
2135 word0(d) &= ~Sign_bit; /* clear sign bit */
André Goddard Rosae7347692010-02-05 18:32:52 -02002136 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002137 else
2138 *sign = 0;
2139
2140#if defined(IEEE_Arith) + defined(VAX)
2141#ifdef IEEE_Arith
2142 if ((word0(d) & Exp_mask) == Exp_mask)
2143#else
2144 if (word0(d) == 0x8000)
2145#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02002146 {
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002147 /* Infinity or NaN */
2148 *decpt = 9999;
2149 s =
2150#ifdef IEEE_Arith
2151 !word1(d) && !(word0(d) & 0xfffff) ? "Infinity" :
2152#endif
2153 "NaN";
David 'Digit' Turner81326262010-03-04 11:51:42 -08002154 result = Balloc(strlen(s)+1);
2155 if (result == BIGINT_INVALID)
2156 return NULL;
2157 s0 = (char *)(void *)result;
2158 strcpy(s0, s);
2159 if (rve)
2160 *rve =
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002161#ifdef IEEE_Arith
David 'Digit' Turner81326262010-03-04 11:51:42 -08002162 s0[3] ? s0 + 8 :
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002163#endif
David 'Digit' Turner81326262010-03-04 11:51:42 -08002164 s0 + 3;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002165 return s0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002166 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002167#endif
2168#ifdef IBM
2169 value(d) += 0; /* normalize */
2170#endif
2171 if (!value(d)) {
2172 *decpt = 1;
David 'Digit' Turner81326262010-03-04 11:51:42 -08002173 result = Balloc(2);
2174 if (result == BIGINT_INVALID)
2175 return NULL;
André Goddard Rosae7347692010-02-05 18:32:52 -02002176 s0 = (char *)(void *)result;
2177 strcpy(s0, "0");
2178 if (rve)
David 'Digit' Turner81326262010-03-04 11:51:42 -08002179 *rve = s0 + 1;
André Goddard Rosae7347692010-02-05 18:32:52 -02002180 return s0;
2181 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002182
2183 b = d2b(value(d), &be, &bbits);
2184#ifdef Sudden_Underflow
2185 i = (int)(word0(d) >> Exp_shift1 & (Exp_mask>>Exp_shift1));
2186#else
2187 if ((i = (int)(word0(d) >> Exp_shift1 & (Exp_mask>>Exp_shift1))) != 0) {
2188#endif
2189 value(d2) = value(d);
2190 word0(d2) &= Frac_mask1;
2191 word0(d2) |= Exp_11;
2192#ifdef IBM
2193 if (j = 11 - hi0bits(word0(d2) & Frac_mask))
2194 value(d2) /= 1 << j;
2195#endif
2196
2197 /* log(x) ~=~ log(1.5) + (x-1.5)/1.5
2198 * log10(x) = log(x) / log(10)
2199 * ~=~ log(1.5)/log(10) + (x-1.5)/(1.5*log(10))
2200 * log10(d) = (i-Bias)*log(2)/log(10) + log10(d2)
2201 *
2202 * This suggests computing an approximation k to log10(d) by
2203 *
2204 * k = (i - Bias)*0.301029995663981
2205 * + ( (d2-1.5)*0.289529654602168 + 0.176091259055681 );
2206 *
2207 * We want k to be too large rather than too small.
2208 * The error in the first-order Taylor series approximation
2209 * is in our favor, so we just round up the constant enough
2210 * to compensate for any error in the multiplication of
2211 * (i - Bias) by 0.301029995663981; since |i - Bias| <= 1077,
2212 * and 1077 * 0.30103 * 2^-52 ~=~ 7.2e-14,
2213 * adding 1e-13 to the constant term more than suffices.
2214 * Hence we adjust the constant term to 0.1760912590558.
2215 * (We could get a more accurate k by invoking log10,
2216 * but this is probably not worthwhile.)
2217 */
2218
2219 i -= Bias;
2220#ifdef IBM
2221 i <<= 2;
2222 i += j;
2223#endif
2224#ifndef Sudden_Underflow
2225 denorm = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002226 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002227 else {
2228 /* d is denormalized */
2229
2230 i = bbits + be + (Bias + (P-1) - 1);
2231 x = i > 32 ? word0(d) << (64 - i) | word1(d) >> (i - 32)
2232 : word1(d) << (32 - i);
2233 value(d2) = x;
2234 word0(d2) -= 31*Exp_msk1; /* adjust exponent */
2235 i -= (Bias + (P-1) - 1) + 1;
2236 denorm = 1;
André Goddard Rosae7347692010-02-05 18:32:52 -02002237 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002238#endif
2239 ds = (value(d2)-1.5)*0.289529654602168 + 0.1760912590558 +
2240 i*0.301029995663981;
2241 k = (int)ds;
2242 if (ds < 0. && ds != k)
2243 k--; /* want k = floor(ds) */
2244 k_check = 1;
2245 if (k >= 0 && k <= Ten_pmax) {
2246 if (value(d) < tens[k])
2247 k--;
2248 k_check = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002249 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002250 j = bbits - i - 1;
2251 if (j >= 0) {
2252 b2 = 0;
2253 s2 = j;
André Goddard Rosae7347692010-02-05 18:32:52 -02002254 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002255 else {
2256 b2 = -j;
2257 s2 = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002258 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002259 if (k >= 0) {
2260 b5 = 0;
2261 s5 = k;
2262 s2 += k;
André Goddard Rosae7347692010-02-05 18:32:52 -02002263 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002264 else {
2265 b2 -= k;
2266 b5 = -k;
2267 s5 = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002268 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002269 if (mode < 0 || mode > 9)
2270 mode = 0;
2271 try_quick = 1;
2272 if (mode > 5) {
2273 mode -= 4;
2274 try_quick = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002275 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002276 leftright = 1;
2277 switch(mode) {
2278 case 0:
2279 case 1:
2280 ilim = ilim1 = -1;
2281 i = 18;
2282 ndigits = 0;
2283 break;
2284 case 2:
2285 leftright = 0;
2286 /* FALLTHROUGH */
2287 case 4:
2288 if (ndigits <= 0)
2289 ndigits = 1;
2290 ilim = ilim1 = i = ndigits;
2291 break;
2292 case 3:
2293 leftright = 0;
2294 /* FALLTHROUGH */
2295 case 5:
2296 i = ndigits + k + 1;
2297 ilim = i;
2298 ilim1 = i - 1;
2299 if (i <= 0)
2300 i = 1;
André Goddard Rosae7347692010-02-05 18:32:52 -02002301 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002302 j = sizeof(ULong);
2303 for(result_k = 0; (int)(sizeof(Bigint) - sizeof(ULong)) + j <= i;
2304 j <<= 1) result_k++;
2305 // this is really a ugly hack, the code uses Balloc
2306 // instead of malloc, but casts the result into a char*
2307 // it seems the only reason to do that is due to the
2308 // complicated way the block size need to be computed
2309 // buuurk....
2310 result = Balloc(result_k);
David 'Digit' Turner81326262010-03-04 11:51:42 -08002311 if (result == BIGINT_INVALID) {
2312 Bfree(b);
2313 return NULL;
2314 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002315 s = s0 = (char *)(void *)result;
2316
2317 if (ilim >= 0 && ilim <= Quick_max && try_quick) {
2318
2319 /* Try to get by with floating-point arithmetic. */
2320
2321 i = 0;
2322 value(d2) = value(d);
2323 k0 = k;
2324 ilim0 = ilim;
2325 ieps = 2; /* conservative */
2326 if (k > 0) {
2327 ds = tens[k&0xf];
2328 j = (unsigned int)k >> 4;
2329 if (j & Bletch) {
2330 /* prevent overflows */
2331 j &= Bletch - 1;
2332 value(d) /= bigtens[n_bigtens-1];
2333 ieps++;
2334 }
2335 for(; j; j = (unsigned int)j >> 1, i++)
2336 if (j & 1) {
2337 ieps++;
2338 ds *= bigtens[i];
2339 }
2340 value(d) /= ds;
André Goddard Rosae7347692010-02-05 18:32:52 -02002341 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002342 else if ((jj1 = -k) != 0) {
2343 value(d) *= tens[jj1 & 0xf];
2344 for(j = (unsigned int)jj1 >> 4; j;
2345 j = (unsigned int)j >> 1, i++)
2346 if (j & 1) {
2347 ieps++;
2348 value(d) *= bigtens[i];
André Goddard Rosae7347692010-02-05 18:32:52 -02002349 }
2350 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002351 if (k_check && value(d) < 1. && ilim > 0) {
2352 if (ilim1 <= 0)
2353 goto fast_failed;
2354 ilim = ilim1;
2355 k--;
2356 value(d) *= 10.;
2357 ieps++;
André Goddard Rosae7347692010-02-05 18:32:52 -02002358 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002359 value(eps) = ieps*value(d) + 7.;
2360 word0(eps) -= (P-1)*Exp_msk1;
2361 if (ilim == 0) {
2362 S = mhi = 0;
2363 value(d) -= 5.;
2364 if (value(d) > value(eps))
2365 goto one_digit;
2366 if (value(d) < -value(eps))
2367 goto no_digits;
2368 goto fast_failed;
André Goddard Rosae7347692010-02-05 18:32:52 -02002369 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002370#ifndef No_leftright
2371 if (leftright) {
2372 /* Use Steele & White method of only
2373 * generating digits needed.
2374 */
2375 value(eps) = 0.5/tens[ilim-1] - value(eps);
2376 for(i = 0;;) {
2377 L = value(d);
2378 value(d) -= L;
2379 *s++ = '0' + (int)L;
2380 if (value(d) < value(eps))
2381 goto ret1;
2382 if (1. - value(d) < value(eps))
2383 goto bump_up;
2384 if (++i >= ilim)
2385 break;
2386 value(eps) *= 10.;
2387 value(d) *= 10.;
2388 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002389 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002390 else {
2391#endif
2392 /* Generate ilim digits, then fix them up. */
2393 value(eps) *= tens[ilim-1];
2394 for(i = 1;; i++, value(d) *= 10.) {
2395 L = value(d);
2396 value(d) -= L;
2397 *s++ = '0' + (int)L;
2398 if (i == ilim) {
2399 if (value(d) > 0.5 + value(eps))
2400 goto bump_up;
2401 else if (value(d) < 0.5 - value(eps)) {
2402 while(*--s == '0');
2403 s++;
2404 goto ret1;
2405 }
2406 break;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002407 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002408 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002409#ifndef No_leftright
2410 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002411#endif
2412 fast_failed:
2413 s = s0;
2414 value(d) = value(d2);
2415 k = k0;
2416 ilim = ilim0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002417 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002418
2419 /* Do we have a "small" integer? */
2420
2421 if (be >= 0 && k <= Int_max) {
2422 /* Yes. */
2423 ds = tens[k];
2424 if (ndigits < 0 && ilim <= 0) {
2425 S = mhi = 0;
2426 if (ilim < 0 || value(d) <= 5*ds)
2427 goto no_digits;
2428 goto one_digit;
André Goddard Rosae7347692010-02-05 18:32:52 -02002429 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002430 for(i = 1;; i++) {
2431 L = value(d) / ds;
2432 value(d) -= L*ds;
2433#ifdef Check_FLT_ROUNDS
2434 /* If FLT_ROUNDS == 2, L will usually be high by 1 */
2435 if (value(d) < 0) {
2436 L--;
2437 value(d) += ds;
André Goddard Rosae7347692010-02-05 18:32:52 -02002438 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002439#endif
2440 *s++ = '0' + (int)L;
2441 if (i == ilim) {
2442 value(d) += value(d);
2443 if (value(d) > ds || (value(d) == ds && L & 1)) {
2444 bump_up:
2445 while(*--s == '9')
2446 if (s == s0) {
2447 k++;
2448 *s = '0';
2449 break;
André Goddard Rosae7347692010-02-05 18:32:52 -02002450 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002451 ++*s++;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002452 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002453 break;
2454 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002455 if (!(value(d) *= 10.))
2456 break;
2457 }
2458 goto ret1;
André Goddard Rosae7347692010-02-05 18:32:52 -02002459 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002460
2461 m2 = b2;
2462 m5 = b5;
2463 mhi = mlo = 0;
2464 if (leftright) {
2465 if (mode < 2) {
2466 i =
2467#ifndef Sudden_Underflow
2468 denorm ? be + (Bias + (P-1) - 1 + 1) :
2469#endif
2470#ifdef IBM
2471 1 + 4*P - 3 - bbits + ((bbits + be - 1) & 3);
2472#else
2473 1 + P - bbits;
2474#endif
André Goddard Rosae7347692010-02-05 18:32:52 -02002475 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002476 else {
2477 j = ilim - 1;
2478 if (m5 >= j)
2479 m5 -= j;
2480 else {
2481 s5 += j -= m5;
2482 b5 += j;
2483 m5 = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002484 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002485 if ((i = ilim) < 0) {
2486 m2 -= i;
2487 i = 0;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002488 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002489 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002490 b2 += i;
2491 s2 += i;
2492 mhi = i2b(1);
André Goddard Rosae7347692010-02-05 18:32:52 -02002493 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002494 if (m2 > 0 && s2 > 0) {
2495 i = m2 < s2 ? m2 : s2;
2496 b2 -= i;
2497 m2 -= i;
2498 s2 -= i;
André Goddard Rosae7347692010-02-05 18:32:52 -02002499 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002500 if (b5 > 0) {
2501 if (leftright) {
2502 if (m5 > 0) {
2503 mhi = pow5mult(mhi, m5);
2504 b1 = mult(mhi, b);
2505 Bfree(b);
2506 b = b1;
André Goddard Rosae7347692010-02-05 18:32:52 -02002507 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002508 if ((j = b5 - m5) != 0)
2509 b = pow5mult(b, j);
2510 }
2511 else
2512 b = pow5mult(b, b5);
André Goddard Rosae7347692010-02-05 18:32:52 -02002513 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002514 S = i2b(1);
2515 if (s5 > 0)
2516 S = pow5mult(S, s5);
2517
2518 /* Check for special case that d is a normalized power of 2. */
2519
2520 if (mode < 2) {
2521 if (!word1(d) && !(word0(d) & Bndry_mask)
2522#ifndef Sudden_Underflow
2523 && word0(d) & Exp_mask
2524#endif
2525 ) {
2526 /* The special case */
2527 b2 += Log2P;
2528 s2 += Log2P;
2529 spec_case = 1;
2530 }
2531 else
2532 spec_case = 0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002533 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002534
2535 /* Arrange for convenient computation of quotients:
2536 * shift left if necessary so divisor has 4 leading 0 bits.
2537 *
2538 * Perhaps we should just compute leading 28 bits of S once
2539 * and for all and pass them and a shift to quorem, so it
2540 * can do shifts and ors to compute the numerator for q.
2541 */
David 'Digit' Turner81326262010-03-04 11:51:42 -08002542 if (S == BIGINT_INVALID) {
2543 i = 0;
2544 } else {
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002545#ifdef Pack_32
David 'Digit' Turner81326262010-03-04 11:51:42 -08002546 if ((i = ((s5 ? 32 - hi0bits(S->x[S->wds-1]) : 1) + s2) & 0x1f) != 0)
2547 i = 32 - i;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002548#else
David 'Digit' Turner81326262010-03-04 11:51:42 -08002549 if (i = ((s5 ? 32 - hi0bits(S->x[S->wds-1]) : 1) + s2) & 0xf)
2550 i = 16 - i;
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002551#endif
David 'Digit' Turner81326262010-03-04 11:51:42 -08002552 }
2553
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002554 if (i > 4) {
2555 i -= 4;
2556 b2 += i;
2557 m2 += i;
2558 s2 += i;
André Goddard Rosae7347692010-02-05 18:32:52 -02002559 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002560 else if (i < 4) {
2561 i += 28;
2562 b2 += i;
2563 m2 += i;
2564 s2 += i;
André Goddard Rosae7347692010-02-05 18:32:52 -02002565 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002566 if (b2 > 0)
2567 b = lshift(b, b2);
2568 if (s2 > 0)
2569 S = lshift(S, s2);
2570 if (k_check) {
2571 if (cmp(b,S) < 0) {
2572 k--;
2573 b = multadd(b, 10, 0); /* we botched the k estimate */
2574 if (leftright)
2575 mhi = multadd(mhi, 10, 0);
2576 ilim = ilim1;
2577 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002578 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002579 if (ilim <= 0 && mode > 2) {
2580 if (ilim < 0 || cmp(b,S = multadd(S,5,0)) <= 0) {
2581 /* no digits, fcvt style */
2582 no_digits:
2583 k = -1 - ndigits;
2584 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02002585 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002586 one_digit:
2587 *s++ = '1';
2588 k++;
2589 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02002590 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002591 if (leftright) {
2592 if (m2 > 0)
2593 mhi = lshift(mhi, m2);
2594
2595 /* Compute mlo -- check for special case
2596 * that d is a normalized power of 2.
2597 */
2598
2599 mlo = mhi;
2600 if (spec_case) {
2601 mhi = Balloc(mhi->k);
2602 Bcopy(mhi, mlo);
2603 mhi = lshift(mhi, Log2P);
André Goddard Rosae7347692010-02-05 18:32:52 -02002604 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002605
2606 for(i = 1;;i++) {
2607 dig = quorem(b,S) + '0';
2608 /* Do we yet have the shortest decimal string
2609 * that will round to d?
2610 */
2611 j = cmp(b, mlo);
2612 delta = diff(S, mhi);
2613 jj1 = delta->sign ? 1 : cmp(b, delta);
2614 Bfree(delta);
2615#ifndef ROUND_BIASED
2616 if (jj1 == 0 && !mode && !(word1(d) & 1)) {
2617 if (dig == '9')
2618 goto round_9_up;
2619 if (j > 0)
2620 dig++;
2621 *s++ = dig;
2622 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02002623 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002624#endif
2625 if (j < 0 || (j == 0 && !mode
2626#ifndef ROUND_BIASED
2627 && !(word1(d) & 1)
2628#endif
2629 )) {
2630 if (jj1 > 0) {
2631 b = lshift(b, 1);
2632 jj1 = cmp(b, S);
2633 if ((jj1 > 0 || (jj1 == 0 && dig & 1))
2634 && dig++ == '9')
2635 goto round_9_up;
2636 }
2637 *s++ = dig;
2638 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02002639 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002640 if (jj1 > 0) {
2641 if (dig == '9') { /* possible if i == 1 */
2642 round_9_up:
2643 *s++ = '9';
2644 goto roundoff;
2645 }
2646 *s++ = dig + 1;
2647 goto ret;
André Goddard Rosae7347692010-02-05 18:32:52 -02002648 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002649 *s++ = dig;
2650 if (i == ilim)
2651 break;
2652 b = multadd(b, 10, 0);
2653 if (mlo == mhi)
2654 mlo = mhi = multadd(mhi, 10, 0);
2655 else {
2656 mlo = multadd(mlo, 10, 0);
2657 mhi = multadd(mhi, 10, 0);
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002658 }
2659 }
André Goddard Rosae7347692010-02-05 18:32:52 -02002660 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002661 else
2662 for(i = 1;; i++) {
2663 *s++ = dig = quorem(b,S) + '0';
2664 if (i >= ilim)
2665 break;
2666 b = multadd(b, 10, 0);
André Goddard Rosae7347692010-02-05 18:32:52 -02002667 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002668
2669 /* Round off last digit */
2670
2671 b = lshift(b, 1);
2672 j = cmp(b, S);
2673 if (j > 0 || (j == 0 && dig & 1)) {
2674 roundoff:
2675 while(*--s == '9')
2676 if (s == s0) {
2677 k++;
2678 *s++ = '1';
2679 goto ret;
2680 }
2681 ++*s++;
André Goddard Rosae7347692010-02-05 18:32:52 -02002682 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002683 else {
2684 while(*--s == '0');
2685 s++;
André Goddard Rosae7347692010-02-05 18:32:52 -02002686 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002687 ret:
2688 Bfree(S);
2689 if (mhi) {
2690 if (mlo && mlo != mhi)
2691 Bfree(mlo);
2692 Bfree(mhi);
André Goddard Rosae7347692010-02-05 18:32:52 -02002693 }
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002694 ret1:
2695 Bfree(b);
2696 if (s == s0) { /* don't return empty string */
2697 *s++ = '0';
2698 k = 0;
2699 }
2700 *s = 0;
2701 *decpt = k + 1;
2702 if (rve)
2703 *rve = s;
2704 return s0;
André Goddard Rosae7347692010-02-05 18:32:52 -02002705}
The Android Open Source Project1dc9e472009-03-03 19:28:35 -08002706#ifdef __cplusplus
2707}
2708#endif