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avsscanf.c
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1/*
2 * Copyright (c) 2005-2014 Rich Felker, et al.
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining
5 * a copy of this software and associated documentation files (the
6 * "Software"), to deal in the Software without restriction, including
7 * without limitation the rights to use, copy, modify, merge, publish,
8 * distribute, sublicense, and/or sell copies of the Software, and to
9 * permit persons to whom the Software is furnished to do so, subject to
10 * the following conditions:
11 *
12 * The above copyright notice and this permission notice shall be
13 * included in all copies or substantial portions of the Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
16 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
17 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
18 * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
19 * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
20 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
21 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
22 */
23
24#include <errno.h>
25#include <limits.h>
26#include <math.h>
27#include <stdarg.h>
28#include <stddef.h>
29#include <stdint.h>
30#include <stdio.h>
31#include <string.h>
32#include <float.h>
33
34#include "avstring.h"
35
36typedef struct FFFILE {
37 size_t buf_size;
38 unsigned char *buf;
39 unsigned char *rpos, *rend;
40 unsigned char *shend;
41 ptrdiff_t shlim, shcnt;
42 void *cookie;
43 size_t (*read)(struct FFFILE *, unsigned char *, size_t);
44} FFFILE;
45
46#define SIZE_hh -2
47#define SIZE_h -1
48#define SIZE_def 0
49#define SIZE_l 1
50#define SIZE_L 2
51#define SIZE_ll 3
52
53#define shcnt(f) ((f)->shcnt + ((f)->rpos - (f)->buf))
54
55static int fftoread(FFFILE *f)
56{
57 f->rpos = f->rend = f->buf + f->buf_size;
58 return 0;
59}
60
61static size_t ffstring_read(FFFILE *f, unsigned char *buf, size_t len)
62{
63 char *src = f->cookie;
64 size_t k = len+256;
65 char *end = memchr(src, 0, k);
66
67 if (end) k = end-src;
68 if (k < len) len = k;
69 memcpy(buf, src, len);
70 f->rpos = (void *)(src+len);
71 f->rend = (void *)(src+k);
72 f->cookie = src+k;
73
74 return len;
75}
76
77static int ffuflow(FFFILE *f)
78{
79 unsigned char c;
80 if (!fftoread(f) && f->read(f, &c, 1)==1) return c;
81 return EOF;
82}
83
84static void ffshlim(FFFILE *f, ptrdiff_t lim)
85{
86 f->shlim = lim;
87 f->shcnt = f->buf - f->rpos;
88 /* If lim is nonzero, rend must be a valid pointer. */
89 if (lim && f->rend - f->rpos > lim)
90 f->shend = f->rpos + lim;
91 else
92 f->shend = f->rend;
93}
94
95static int ffshgetc(FFFILE *f)
96{
97 int c;
98 ptrdiff_t cnt = shcnt(f);
99 if (f->shlim && cnt >= f->shlim || (c=ffuflow(f)) < 0) {
100 f->shcnt = f->buf - f->rpos + cnt;
101 f->shend = 0;
102 return EOF;
103 }
104 cnt++;
105 if (f->shlim && f->rend - f->rpos > f->shlim - cnt)
106 f->shend = f->rpos + (f->shlim - cnt);
107 else
108 f->shend = f->rend;
109 f->shcnt = f->buf - f->rpos + cnt;
110 if (f->rpos[-1] != c) f->rpos[-1] = c;
111 return c;
112}
113
114#define shlim(f, lim) ffshlim((f), (lim))
115#define shgetc(f) (((f)->rpos < (f)->shend) ? *(f)->rpos++ : ffshgetc(f))
116#define shunget(f) ((f)->shend ? (void)(f)->rpos-- : (void)0)
117
118static const unsigned char table[] = { -1,
119 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
120 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
121 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
122 0, 1, 2, 3, 4, 5, 6, 7, 8, 9,-1,-1,-1,-1,-1,-1,
123 -1,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,
124 25,26,27,28,29,30,31,32,33,34,35,-1,-1,-1,-1,-1,
125 -1,10,11,12,13,14,15,16,17,18,19,20,21,22,23,24,
126 25,26,27,28,29,30,31,32,33,34,35,-1,-1,-1,-1,-1,
127 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
128 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
129 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
130 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
131 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
132 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
133 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
134 -1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,-1,
135};
136
137static unsigned long long ffintscan(FFFILE *f, unsigned base, int pok, unsigned long long lim)
138{
139 const unsigned char *val = table+1;
140 int c, neg=0;
141 unsigned x;
142 unsigned long long y;
143 if (base > 36 || base == 1) {
144 errno = EINVAL;
145 return 0;
146 }
147 while (av_isspace((c=shgetc(f))));
148 if (c=='+' || c=='-') {
149 neg = -(c=='-');
150 c = shgetc(f);
151 }
152 if ((base == 0 || base == 16) && c=='0') {
153 c = shgetc(f);
154 if ((c|32)=='x') {
155 c = shgetc(f);
156 if (val[c]>=16) {
157 shunget(f);
158 if (pok) shunget(f);
159 else shlim(f, 0);
160 return 0;
161 }
162 base = 16;
163 } else if (base == 0) {
164 base = 8;
165 }
166 } else {
167 if (base == 0) base = 10;
168 if (val[c] >= base) {
169 shunget(f);
170 shlim(f, 0);
171 errno = EINVAL;
172 return 0;
173 }
174 }
175 if (base == 10) {
176 for (x=0; c-'0'<10U && x<=UINT_MAX/10-1; c=shgetc(f))
177 x = x*10 + (c-'0');
178 for (y=x; c-'0'<10U && y<=ULLONG_MAX/10 && 10*y<=ULLONG_MAX-(c-'0'); c=shgetc(f))
179 y = y*10 + (c-'0');
180 if (c-'0'>=10U) goto done;
181 } else if (!(base & base-1)) {
182 int bs = "\0\1\2\4\7\3\6\5"[(0x17*base)>>5&7];
183 for (x=0; val[c]<base && x<=UINT_MAX/32; c=shgetc(f))
184 x = x<<bs | val[c];
185 for (y=x; val[c]<base && y<=ULLONG_MAX>>bs; c=shgetc(f))
186 y = y<<bs | val[c];
187 } else {
188 for (x=0; val[c]<base && x<=UINT_MAX/36-1; c=shgetc(f))
189 x = x*base + val[c];
190 for (y=x; val[c]<base && y<=ULLONG_MAX/base && base*y<=ULLONG_MAX-val[c]; c=shgetc(f))
191 y = y*base + val[c];
192 }
193 if (val[c]<base) {
194 for (; val[c]<base; c=shgetc(f));
195 errno = ERANGE;
196 y = lim;
197 if (lim&1) neg = 0;
198 }
199done:
200 shunget(f);
201 if (y>=lim) {
202 if (!(lim&1) && !neg) {
203 errno = ERANGE;
204 return lim-1;
205 } else if (y>lim) {
206 errno = ERANGE;
207 return lim;
208 }
209 }
210 return (y^neg)-neg;
211}
212
213static long long scanexp(FFFILE *f, int pok)
214{
215 int c;
216 int x;
217 long long y;
218 int neg = 0;
219
220 c = shgetc(f);
221 if (c=='+' || c=='-') {
222 neg = (c=='-');
223 c = shgetc(f);
224 if (c-'0'>=10U && pok) shunget(f);
225 }
226 if (c-'0'>=10U) {
227 shunget(f);
228 return LLONG_MIN;
229 }
230 for (x=0; c-'0'<10U && x<INT_MAX/10; c = shgetc(f))
231 x = 10*x + (c-'0');
232 for (y=x; c-'0'<10U && y<LLONG_MAX/100; c = shgetc(f))
233 y = 10*y + (c-'0');
234 for (; c-'0'<10U; c = shgetc(f));
235 shunget(f);
236 return neg ? -y : y;
237}
238
239#define LD_B1B_DIG 2
240#define LD_B1B_MAX 9007199, 254740991
241#define KMAX 128
242#define MASK (KMAX-1)
243
244static double decfloat(FFFILE *f, int c, int bits, int emin, int sign, int pok)
245{
246 uint32_t x[KMAX];
247 static const uint32_t th[] = { LD_B1B_MAX };
248 int i, j, k, a, z;
249 long long lrp=0, dc=0;
250 long long e10=0;
251 int lnz = 0;
252 int gotdig = 0, gotrad = 0;
253 int rp;
254 int e2;
255 int emax = -emin-bits+3;
256 int denormal = 0;
257 double y;
258 double frac=0;
259 double bias=0;
260 static const int p10s[] = { 10, 100, 1000, 10000,
261 100000, 1000000, 10000000, 100000000 };
262
263 j=0;
264 k=0;
265
266 /* Don't let leading zeros consume buffer space */
267 for (; c=='0'; c = shgetc(f)) gotdig=1;
268 if (c=='.') {
269 gotrad = 1;
270 for (c = shgetc(f); c=='0'; c = shgetc(f)) gotdig=1, lrp--;
271 }
272
273 x[0] = 0;
274 for (; c-'0'<10U || c=='.'; c = shgetc(f)) {
275 if (c == '.') {
276 if (gotrad) break;
277 gotrad = 1;
278 lrp = dc;
279 } else if (k < KMAX-3) {
280 dc++;
281 if (c!='0') lnz = dc;
282 if (j) x[k] = x[k]*10 + c-'0';
283 else x[k] = c-'0';
284 if (++j==9) {
285 k++;
286 j=0;
287 }
288 gotdig=1;
289 } else {
290 dc++;
291 if (c!='0') {
292 lnz = (KMAX-4)*9;
293 x[KMAX-4] |= 1;
294 }
295 }
296 }
297 if (!gotrad) lrp=dc;
298
299 if (gotdig && (c|32)=='e') {
300 e10 = scanexp(f, pok);
301 if (e10 == LLONG_MIN) {
302 if (pok) {
303 shunget(f);
304 } else {
305 shlim(f, 0);
306 return 0;
307 }
308 e10 = 0;
309 }
310 lrp += e10;
311 } else if (c>=0) {
312 shunget(f);
313 }
314 if (!gotdig) {
315 errno = EINVAL;
316 shlim(f, 0);
317 return 0;
318 }
319
320 /* Handle zero specially to avoid nasty special cases later */
321 if (!x[0]) return sign * 0.0;
322
323 /* Optimize small integers (w/no exponent) and over/under-flow */
324 if (lrp==dc && dc<10 && (bits>30 || x[0]>>bits==0))
325 return sign * (double)x[0];
326 if (lrp > -emin/2) {
327 errno = ERANGE;
328 return sign * DBL_MAX * DBL_MAX;
329 }
330 if (lrp < emin-2*DBL_MANT_DIG) {
331 errno = ERANGE;
332 return sign * DBL_MIN * DBL_MIN;
333 }
334
335 /* Align incomplete final B1B digit */
336 if (j) {
337 for (; j<9; j++) x[k]*=10;
338 k++;
339 j=0;
340 }
341
342 a = 0;
343 z = k;
344 e2 = 0;
345 rp = lrp;
346
347 /* Optimize small to mid-size integers (even in exp. notation) */
348 if (lnz<9 && lnz<=rp && rp < 18) {
349 int bitlim;
350 if (rp == 9) return sign * (double)x[0];
351 if (rp < 9) return sign * (double)x[0] / p10s[8-rp];
352 bitlim = bits-3*(int)(rp-9);
353 if (bitlim>30 || x[0]>>bitlim==0)
354 return sign * (double)x[0] * p10s[rp-10];
355 }
356
357 /* Drop trailing zeros */
358 for (; !x[z-1]; z--);
359
360 /* Align radix point to B1B digit boundary */
361 if (rp % 9) {
362 int rpm9 = rp>=0 ? rp%9 : rp%9+9;
363 int p10 = p10s[8-rpm9];
364 uint32_t carry = 0;
365 for (k=a; k!=z; k++) {
366 uint32_t tmp = x[k] % p10;
367 x[k] = x[k]/p10 + carry;
368 carry = 1000000000/p10 * tmp;
369 if (k==a && !x[k]) {
370 a = (a+1 & MASK);
371 rp -= 9;
372 }
373 }
374 if (carry) x[z++] = carry;
375 rp += 9-rpm9;
376 }
377
378 /* Upscale until desired number of bits are left of radix point */
379 while (rp < 9*LD_B1B_DIG || (rp == 9*LD_B1B_DIG && x[a]<th[0])) {
380 uint32_t carry = 0;
381 e2 -= 29;
382 for (k=(z-1 & MASK); ; k=(k-1 & MASK)) {
383 uint64_t tmp = ((uint64_t)x[k] << 29) + carry;
384 if (tmp > 1000000000) {
385 carry = tmp / 1000000000;
386 x[k] = tmp % 1000000000;
387 } else {
388 carry = 0;
389 x[k] = tmp;
390 }
391 if (k==(z-1 & MASK) && k!=a && !x[k]) z = k;
392 if (k==a) break;
393 }
394 if (carry) {
395 rp += 9;
396 a = (a-1 & MASK);
397 if (a == z) {
398 z = (z-1 & MASK);
399 x[z-1 & MASK] |= x[z];
400 }
401 x[a] = carry;
402 }
403 }
404
405 /* Downscale until exactly number of bits are left of radix point */
406 for (;;) {
407 uint32_t carry = 0;
408 int sh = 1;
409 for (i=0; i<LD_B1B_DIG; i++) {
410 k = (a+i & MASK);
411 if (k == z || x[k] < th[i]) {
413 break;
414 }
415 if (x[a+i & MASK] > th[i]) break;
416 }
417 if (i==LD_B1B_DIG && rp==9*LD_B1B_DIG) break;
418 /* FIXME: find a way to compute optimal sh */
419 if (rp > 9+9*LD_B1B_DIG) sh = 9;
420 e2 += sh;
421 for (k=a; k!=z; k=(k+1 & MASK)) {
422 uint32_t tmp = x[k] & (1<<sh)-1;
423 x[k] = (x[k]>>sh) + carry;
424 carry = (1000000000>>sh) * tmp;
425 if (k==a && !x[k]) {
426 a = (a+1 & MASK);
427 i--;
428 rp -= 9;
429 }
430 }
431 if (carry) {
432 if ((z+1 & MASK) != a) {
433 x[z] = carry;
434 z = (z+1 & MASK);
435 } else x[z-1 & MASK] |= 1;
436 }
437 }
438
439 /* Assemble desired bits into floating point variable */
440 for (y=i=0; i<LD_B1B_DIG; i++) {
441 if ((a+i & MASK)==z) x[(z=(z+1 & MASK))-1] = 0;
442 y = 1000000000.0L * y + x[a+i & MASK];
443 }
444
445 y *= sign;
446
447 /* Limit precision for denormal results */
448 if (bits > DBL_MANT_DIG+e2-emin) {
449 bits = DBL_MANT_DIG+e2-emin;
450 if (bits<0) bits=0;
451 denormal = 1;
452 }
453
454 /* Calculate bias term to force rounding, move out lower bits */
455 if (bits < DBL_MANT_DIG) {
456 bias = copysign(scalbn(1, 2*DBL_MANT_DIG-bits-1), y);
457 frac = fmod(y, scalbn(1, DBL_MANT_DIG-bits));
458 y -= frac;
459 y += bias;
460 }
461
462 /* Process tail of decimal input so it can affect rounding */
463 if ((a+i & MASK) != z) {
464 uint32_t t = x[a+i & MASK];
465 if (t < 500000000 && (t || (a+i+1 & MASK) != z))
466 frac += 0.25*sign;
467 else if (t > 500000000)
468 frac += 0.75*sign;
469 else if (t == 500000000) {
470 if ((a+i+1 & MASK) == z)
471 frac += 0.5*sign;
472 else
473 frac += 0.75*sign;
474 }
475 if (DBL_MANT_DIG-bits >= 2 && !fmod(frac, 1))
476 frac++;
477 }
478
479 y += frac;
480 y -= bias;
481
482 if ((e2+DBL_MANT_DIG & INT_MAX) > emax-5) {
483 if (fabs(y) >= pow(2, DBL_MANT_DIG)) {
484 if (denormal && bits==DBL_MANT_DIG+e2-emin)
485 denormal = 0;
486 y *= 0.5;
487 e2++;
488 }
489 if (e2+DBL_MANT_DIG>emax || (denormal && frac))
490 errno = ERANGE;
491 }
492
493 return scalbn(y, e2);
494}
495
496static double hexfloat(FFFILE *f, int bits, int emin, int sign, int pok)
497{
498 uint32_t x = 0;
499 double y = 0;
500 double scale = 1;
501 double bias = 0;
502 int gottail = 0, gotrad = 0, gotdig = 0;
503 long long rp = 0;
504 long long dc = 0;
505 long long e2 = 0;
506 int d;
507 int c;
508
509 c = shgetc(f);
510
511 /* Skip leading zeros */
512 for (; c=='0'; c = shgetc(f))
513 gotdig = 1;
514
515 if (c=='.') {
516 gotrad = 1;
517 c = shgetc(f);
518 /* Count zeros after the radix point before significand */
519 for (rp=0; c=='0'; c = shgetc(f), rp--) gotdig = 1;
520 }
521
522 for (; c-'0'<10U || (c|32)-'a'<6U || c=='.'; c = shgetc(f)) {
523 if (c=='.') {
524 if (gotrad) break;
525 rp = dc;
526 gotrad = 1;
527 } else {
528 gotdig = 1;
529 if (c > '9') d = (c|32)+10-'a';
530 else d = c-'0';
531 if (dc<8) {
532 x = x*16 + d;
533 } else if (dc < DBL_MANT_DIG/4+1) {
534 y += d*(scale/=16);
535 } else if (d && !gottail) {
536 y += 0.5*scale;
537 gottail = 1;
538 }
539 dc++;
540 }
541 }
542 if (!gotdig) {
543 shunget(f);
544 if (pok) {
545 shunget(f);
546 if (gotrad) shunget(f);
547 } else {
548 shlim(f, 0);
549 }
550 return sign * 0.0;
551 }
552 if (!gotrad) rp = dc;
553 while (dc<8) x *= 16, dc++;
554 if ((c|32)=='p') {
555 e2 = scanexp(f, pok);
556 if (e2 == LLONG_MIN) {
557 if (pok) {
558 shunget(f);
559 } else {
560 shlim(f, 0);
561 return 0;
562 }
563 e2 = 0;
564 }
565 } else {
566 shunget(f);
567 }
568 e2 += 4*rp - 32;
569
570 if (!x) return sign * 0.0;
571 if (e2 > -emin) {
572 errno = ERANGE;
573 return sign * DBL_MAX * DBL_MAX;
574 }
575 if (e2 < emin-2*DBL_MANT_DIG) {
576 errno = ERANGE;
577 return sign * DBL_MIN * DBL_MIN;
578 }
579
580 while (x < 0x80000000) {
581 if (y>=0.5) {
582 x += x + 1;
583 y += y - 1;
584 } else {
585 x += x;
586 y += y;
587 }
588 e2--;
589 }
590
591 if (bits > 32+e2-emin) {
592 bits = 32+e2-emin;
593 if (bits<0) bits=0;
594 }
595
596 if (bits < DBL_MANT_DIG)
597 bias = copysign(scalbn(1, 32+DBL_MANT_DIG-bits-1), sign);
598
599 if (bits<32 && y && !(x&1)) x++, y=0;
600
601 y = bias + sign*(double)x + sign*y;
602 y -= bias;
603
604 if (!y) errno = ERANGE;
605
606 return scalbn(y, e2);
607}
608
609static double fffloatscan(FFFILE *f, int prec, int pok)
610{
611 int sign = 1;
612 size_t i;
613 int bits;
614 int emin;
615 int c;
616
617 switch (prec) {
618 case 0:
619 bits = FLT_MANT_DIG;
620 emin = FLT_MIN_EXP-bits;
621 break;
622 case 1:
623 bits = DBL_MANT_DIG;
624 emin = DBL_MIN_EXP-bits;
625 break;
626 case 2:
627 bits = DBL_MANT_DIG;
628 emin = DBL_MIN_EXP-bits;
629 break;
630 default:
631 return 0;
632 }
633
634 while (av_isspace((c = shgetc(f))));
635
636 if (c=='+' || c=='-') {
637 sign -= 2*(c=='-');
638 c = shgetc(f);
639 }
640
641 for (i=0; i<8 && (c|32)=="infinity"[i]; i++)
642 if (i<7) c = shgetc(f);
643 if (i==3 || i==8 || (i>3 && pok)) {
644 if (i!=8) {
645 shunget(f);
646 if (pok) for (; i>3; i--) shunget(f);
647 }
648 return sign * INFINITY;
649 }
650 if (!i) for (i=0; i<3 && (c|32)=="nan"[i]; i++)
651 if (i<2) c = shgetc(f);
652 if (i==3) {
653 if (shgetc(f) != '(') {
654 shunget(f);
655 return NAN;
656 }
657 for (i=1; ; i++) {
658 c = shgetc(f);
659 if (c-'0'<10U || c-'A'<26U || c-'a'<26U || c=='_')
660 continue;
661 if (c==')') return NAN;
662 shunget(f);
663 if (!pok) {
664 errno = EINVAL;
665 shlim(f, 0);
666 return 0;
667 }
668 while (i--) shunget(f);
669 return NAN;
670 }
671 }
672
673 if (i) {
674 shunget(f);
675 errno = EINVAL;
676 shlim(f, 0);
677 return 0;
678 }
679
680 if (c=='0') {
681 c = shgetc(f);
682 if ((c|32) == 'x')
683 return hexfloat(f, bits, emin, sign, pok);
684 shunget(f);
685 c = '0';
686 }
687
688 return decfloat(f, c, bits, emin, sign, pok);
689}
690
691static void *arg_n(va_list ap, unsigned int n)
692{
693 void *p;
694 unsigned int i;
695 va_list ap2;
696 va_copy(ap2, ap);
697 for (i=n; i>1; i--) va_arg(ap2, void *);
698 p = va_arg(ap2, void *);
699 va_end(ap2);
700 return p;
701}
702
703static void store_int(void *dest, int size, unsigned long long i)
704{
705 if (!dest) return;
706 switch (size) {
707 case SIZE_hh:
708 *(char *)dest = i;
709 break;
710 case SIZE_h:
711 *(short *)dest = i;
712 break;
713 case SIZE_def:
714 *(int *)dest = i;
715 break;
716 case SIZE_l:
717 *(long *)dest = i;
718 break;
719 case SIZE_ll:
720 *(long long *)dest = i;
721 break;
722 }
723}
724
725static int ff_vfscanf(FFFILE *f, const char *fmt, va_list ap)
726{
727 int width;
728 int size;
729 int base;
730 const unsigned char *p;
731 int c, t;
732 char *s;
733 void *dest=NULL;
734 int invert;
735 int matches=0;
736 unsigned long long x;
737 double y;
738 ptrdiff_t pos = 0;
739 unsigned char scanset[257];
740 size_t i;
741
742 for (p=(const unsigned char *)fmt; *p; p++) {
743
744 if (av_isspace(*p)) {
745 while (av_isspace(p[1])) p++;
746 shlim(f, 0);
747 while (av_isspace(shgetc(f)));
748 shunget(f);
749 pos += shcnt(f);
750 continue;
751 }
752 if (*p != '%' || p[1] == '%') {
753 shlim(f, 0);
754 if (*p == '%') {
755 p++;
756 while (av_isspace((c=shgetc(f))));
757 } else {
758 c = shgetc(f);
759 }
760 if (c!=*p) {
761 shunget(f);
762 if (c<0) goto input_fail;
763 goto match_fail;
764 }
765 pos += shcnt(f);
766 continue;
767 }
768
769 p++;
770 if (*p=='*') {
771 dest = 0; p++;
772 } else if (av_isdigit(*p) && p[1]=='$') {
773 dest = arg_n(ap, *p-'0'); p+=2;
774 } else {
775 dest = va_arg(ap, void *);
776 }
777
778 for (width=0; av_isdigit(*p); p++) {
779 width = 10*width + *p - '0';
780 }
781
782 if (*p=='m') {
783 s = 0;
784 p++;
785 }
786
787 size = SIZE_def;
788 switch (*p++) {
789 case 'h':
790 if (*p == 'h') p++, size = SIZE_hh;
791 else size = SIZE_h;
792 break;
793 case 'l':
794 if (*p == 'l') p++, size = SIZE_ll;
795 else size = SIZE_l;
796 break;
797 case 'j':
798 size = SIZE_ll;
799 break;
800 case 'z':
801 case 't':
802 size = SIZE_l;
803 break;
804 case 'L':
805 size = SIZE_L;
806 break;
807 case 'd': case 'i': case 'o': case 'u': case 'x':
808 case 'a': case 'e': case 'f': case 'g':
809 case 'A': case 'E': case 'F': case 'G': case 'X':
810 case 's': case 'c': case '[':
811 case 'S': case 'C':
812 case 'p': case 'n':
813 p--;
814 break;
815 default:
816 goto fmt_fail;
817 }
818
819 t = *p;
820
821 /* C or S */
822 if ((t&0x2f) == 3) {
823 t |= 32;
824 size = SIZE_l;
825 }
826
827 switch (t) {
828 case 'c':
829 if (width < 1) width = 1;
830 break;
831 case '[':
832 break;
833 case 'n':
834 store_int(dest, size, pos);
835 /* do not increment match count, etc! */
836 continue;
837 default:
838 shlim(f, 0);
839 while (av_isspace(shgetc(f)));
840 shunget(f);
841 pos += shcnt(f);
842 }
843
844 shlim(f, width);
845 if (shgetc(f) < 0) goto input_fail;
846 shunget(f);
847
848 switch (t) {
849 case 's':
850 case 'c':
851 case '[':
852 if (t == 'c' || t == 's') {
853 memset(scanset, -1, sizeof scanset);
854 scanset[0] = 0;
855 if (t == 's') {
856 scanset[1 + '\t'] = 0;
857 scanset[1 + '\n'] = 0;
858 scanset[1 + '\v'] = 0;
859 scanset[1 + '\f'] = 0;
860 scanset[1 + '\r'] = 0;
861 scanset[1 + ' ' ] = 0;
862 }
863 } else {
864 if (*++p == '^') p++, invert = 1;
865 else invert = 0;
866 memset(scanset, invert, sizeof scanset);
867 scanset[0] = 0;
868 if (*p == '-') p++, scanset[1+'-'] = 1-invert;
869 else if (*p == ']') p++, scanset[1+']'] = 1-invert;
870 for (; *p != ']'; p++) {
871 if (!*p) goto fmt_fail;
872 if (*p=='-' && p[1] && p[1] != ']')
873 for (c=p++[-1]; c<*p; c++)
874 scanset[1+c] = 1-invert;
875 scanset[1+*p] = 1-invert;
876 }
877 }
878 s = 0;
879 i = 0;
880 if ((s = dest)) {
881 while (scanset[(c=shgetc(f))+1])
882 s[i++] = c;
883 } else {
884 while (scanset[(c=shgetc(f))+1]);
885 }
886 shunget(f);
887 if (!shcnt(f)) goto match_fail;
888 if (t == 'c' && shcnt(f) != width) goto match_fail;
889 if (t != 'c') {
890 if (s) s[i] = 0;
891 }
892 break;
893 case 'p':
894 case 'X':
895 case 'x':
896 base = 16;
897 goto int_common;
898 case 'o':
899 base = 8;
900 goto int_common;
901 case 'd':
902 case 'u':
903 base = 10;
904 goto int_common;
905 case 'i':
906 base = 0;
907int_common:
908 x = ffintscan(f, base, 0, ULLONG_MAX);
909 if (!shcnt(f))
910 goto match_fail;
911 if (t=='p' && dest)
912 *(void **)dest = (void *)(uintptr_t)x;
913 else
914 store_int(dest, size, x);
915 break;
916 case 'a': case 'A':
917 case 'e': case 'E':
918 case 'f': case 'F':
919 case 'g': case 'G':
920 y = fffloatscan(f, size, 0);
921 if (!shcnt(f))
922 goto match_fail;
923 if (dest) {
924 switch (size) {
925 case SIZE_def:
926 *(float *)dest = y;
927 break;
928 case SIZE_l:
929 *(double *)dest = y;
930 break;
931 case SIZE_L:
932 *(double *)dest = y;
933 break;
934 }
935 }
936 break;
937 }
938
939 pos += shcnt(f);
940 if (dest) matches++;
941 }
942 if (0) {
943fmt_fail:
944input_fail:
945 if (!matches) matches--;
946 }
947match_fail:
948 return matches;
949}
950
951static int ff_vsscanf(const char *s, const char *fmt, va_list ap)
952{
953 FFFILE f = {
954 .buf = (void *)s, .cookie = (void *)s,
955 .read = ffstring_read,
956 };
957
958 return ff_vfscanf(&f, fmt, ap);
959}
960
961int av_sscanf(const char *string, const char *format, ...)
962{
963 int ret;
964 va_list ap;
965 va_start(ap, format);
966 ret = ff_vsscanf(string, format, ap);
967 va_end(ap);
968 return ret;
969}
static double val(void *priv, double ch)
Definition aeval.c:77
static const char *const format[]
Definition af_aiir.c:445
static void invert(float *h, int n)
Definition asrc_sinc.c:186
static unsigned long long ffintscan(FFFILE *f, unsigned base, int pok, unsigned long long lim)
Definition avsscanf.c:137
static int ffshgetc(FFFILE *f)
Definition avsscanf.c:95
static int fftoread(FFFILE *f)
Definition avsscanf.c:55
static double hexfloat(FFFILE *f, int bits, int emin, int sign, int pok)
Definition avsscanf.c:496
#define LD_B1B_MAX
Definition avsscanf.c:240
#define SIZE_ll
Definition avsscanf.c:51
#define SIZE_l
Definition avsscanf.c:49
#define shcnt(f)
Definition avsscanf.c:53
#define SIZE_def
Definition avsscanf.c:48
static void store_int(void *dest, int size, unsigned long long i)
Definition avsscanf.c:703
static long long scanexp(FFFILE *f, int pok)
Definition avsscanf.c:213
static int ff_vsscanf(const char *s, const char *fmt, va_list ap)
Definition avsscanf.c:951
static double fffloatscan(FFFILE *f, int prec, int pok)
Definition avsscanf.c:609
#define shlim(f, lim)
Definition avsscanf.c:114
static int ffuflow(FFFILE *f)
Definition avsscanf.c:77
#define SIZE_h
Definition avsscanf.c:47
#define KMAX
Definition avsscanf.c:241
static double decfloat(FFFILE *f, int c, int bits, int emin, int sign, int pok)
Definition avsscanf.c:244
int av_sscanf(const char *string, const char *format,...)
Definition avsscanf.c:961
static void * arg_n(va_list ap, unsigned int n)
Definition avsscanf.c:691
static size_t ffstring_read(FFFILE *f, unsigned char *buf, size_t len)
Definition avsscanf.c:61
#define LD_B1B_DIG
Definition avsscanf.c:239
#define SIZE_L
Definition avsscanf.c:50
#define shgetc(f)
Definition avsscanf.c:115
static void ffshlim(FFFILE *f, ptrdiff_t lim)
Definition avsscanf.c:84
static int ff_vfscanf(FFFILE *f, const char *fmt, va_list ap)
Definition avsscanf.c:725
#define SIZE_hh
Definition avsscanf.c:46
#define shunget(f)
Definition avsscanf.c:116
#define i(width, name, range_min, range_max)
Definition cbs_h264.c:63
#define f(width, name)
Definition cbs_vp8.c:236
#define s(width, name)
Definition cbs_vp9.c:198
#define NULL
Definition coverity.c:32
static __device__ float fabs(float a)
static const uint8_t bits[8]
Definition fastaudio.c:100
static av_const int av_isdigit(int c)
Locale-independent conversion of ASCII isdigit.
Definition avstring.h:202
static av_const int av_isspace(int c)
Locale-independent conversion of ASCII isspace.
Definition avstring.h:218
int a
static void scale(int *out, const int *in, const int w, const int h, const int shift)
Definition intra.c:278
#define NAN
#define INFINITY
#define MASK
static const uint16_t table[]
Definition prosumer.c:203
unsigned int pos
Definition spdifenc.c:431
void * cookie
Definition avsscanf.c:42
unsigned char * rend
Definition avsscanf.c:39
unsigned char * rpos
Definition avsscanf.c:39
size_t buf_size
Definition avsscanf.c:37
unsigned char * shend
Definition avsscanf.c:40
size_t(* read)(struct FFFILE *, unsigned char *, size_t)
Definition avsscanf.c:43
ptrdiff_t shcnt
Definition avsscanf.c:41
unsigned char * buf
Definition avsscanf.c:38
ptrdiff_t shlim
Definition avsscanf.c:41
static uint8_t tmp[40]
Definition aes_ctr.c:52
#define src
Definition vp8dsp.c:248
#define width
Definition dsp.h:89
int size
int len
uint8_t base
Definition vp3data.h:128
static int bias(int x, int c)
Definition vqcdec.c:115
static double c[64]