Coverage Report

Created: 2025-12-31 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl33/crypto/bio/bio_print.c
Line
Count
Source
1
/*
2
 * Copyright 1995-2025 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License").  You may not use
5
 * this file except in compliance with the License.  You can obtain a copy
6
 * in the file LICENSE in the source distribution or at
7
 * https://www.openssl.org/source/license.html
8
 */
9
10
#include <stdio.h>
11
#include <string.h>
12
#include "internal/cryptlib.h"
13
#include "crypto/ctype.h"
14
#include "internal/numbers.h"
15
#include <openssl/bio.h>
16
#include <openssl/configuration.h>
17
18
/*
19
 * Copyright Patrick Powell 1995
20
 * This code is based on code written by Patrick Powell <papowell@astart.com>
21
 * It may be used for any purpose as long as this notice remains intact
22
 * on all source code distributions.
23
 */
24
25
#ifdef HAVE_LONG_DOUBLE
26
#define LDOUBLE long double
27
#else
28
337M
#define LDOUBLE double
29
#endif
30
31
static int fmtstr(char **, char **, size_t *, size_t *,
32
    const char *, int, int, int);
33
static int fmtint(char **, char **, size_t *, size_t *,
34
    int64_t, int, int, int, int);
35
#ifndef OPENSSL_SYS_UEFI
36
static int fmtfp(char **, char **, size_t *, size_t *,
37
    LDOUBLE, int, int, int, int);
38
#endif
39
static int doapr_outch(char **, char **, size_t *, size_t *, int);
40
static int _dopr(char **sbuffer, char **buffer,
41
    size_t *maxlen, size_t *retlen, int *truncated,
42
    const char *format, va_list args);
43
44
/* format read states */
45
1.96G
#define DP_S_DEFAULT 0
46
1.49G
#define DP_S_FLAGS 1
47
1.52G
#define DP_S_MIN 2
48
1.24G
#define DP_S_DOT 3
49
527k
#define DP_S_MAX 4
50
1.24G
#define DP_S_MOD 5
51
1.24G
#define DP_S_CONV 6
52
5.99G
#define DP_S_DONE 7
53
54
/* format flags - Bits */
55
/* left-aligned padding */
56
481M
#define DP_F_MINUS (1 << 0)
57
/* print an explicit '+' for a value with positive sign */
58
42.5M
#define DP_F_PLUS (1 << 1)
59
/* print an explicit ' ' for a value with positive sign */
60
42.5M
#define DP_F_SPACE (1 << 2)
61
/* print 0/0x prefix for octal/hex and decimal point for floating point */
62
282M
#define DP_F_NUM (1 << 3)
63
/* print leading zeroes */
64
509M
#define DP_F_ZERO (1 << 4)
65
/* print HEX in UPPERcase */
66
363M
#define DP_F_UP (1 << 5)
67
/* treat value as unsigned */
68
522M
#define DP_F_UNSIGNED (1 << 6)
69
70
/* conversion flags */
71
0
#define DP_C_SHORT 1
72
81.8M
#define DP_C_LONG 2
73
0
#define DP_C_LDOUBLE 3
74
119k
#define DP_C_LLONG 4
75
0
#define DP_C_SIZE 5
76
77
/* Floating point formats */
78
0
#define F_FORMAT 0
79
0
#define E_FORMAT 1
80
0
#define G_FORMAT 2
81
82
/* some handy macros */
83
276M
#define char_to_int(p) (p - '0')
84
509M
#define OSSL_MAX(p, q) ((p >= q) ? p : q)
85
86
static int
87
_dopr(char **sbuffer,
88
    char **buffer,
89
    size_t *maxlen,
90
    size_t *retlen, int *truncated, const char *format, va_list args)
91
337M
{
92
337M
    char ch;
93
337M
    int64_t value;
94
337M
#ifndef OPENSSL_SYS_UEFI
95
337M
    LDOUBLE fvalue;
96
337M
#endif
97
337M
    char *strvalue;
98
337M
    int min;
99
337M
    int max;
100
337M
    int state;
101
337M
    int flags;
102
337M
    int cflags;
103
337M
    size_t currlen;
104
105
337M
    state = DP_S_DEFAULT;
106
337M
    flags = currlen = cflags = min = 0;
107
337M
    max = -1;
108
337M
    ch = *format++;
109
110
5.32G
    while (state != DP_S_DONE) {
111
4.98G
        if (ch == '\0' || (buffer == NULL && currlen >= *maxlen))
112
337M
            state = DP_S_DONE;
113
114
4.98G
        switch (state) {
115
1.00G
        case DP_S_DEFAULT:
116
1.00G
            if (ch == '%')
117
623M
                state = DP_S_FLAGS;
118
384M
            else if (!doapr_outch(sbuffer, buffer, &currlen, maxlen, ch))
119
0
                return 0;
120
1.00G
            ch = *format++;
121
1.00G
            break;
122
870M
        case DP_S_FLAGS:
123
870M
            switch (ch) {
124
19.8M
            case '-':
125
19.8M
                flags |= DP_F_MINUS;
126
19.8M
                ch = *format++;
127
19.8M
                break;
128
1.53k
            case '+':
129
1.53k
                flags |= DP_F_PLUS;
130
1.53k
                ch = *format++;
131
1.53k
                break;
132
0
            case ' ':
133
0
                flags |= DP_F_SPACE;
134
0
                ch = *format++;
135
0
                break;
136
0
            case '#':
137
0
                flags |= DP_F_NUM;
138
0
                ch = *format++;
139
0
                break;
140
227M
            case '0':
141
227M
                flags |= DP_F_ZERO;
142
227M
                ch = *format++;
143
227M
                break;
144
623M
            default:
145
623M
                state = DP_S_MIN;
146
623M
                break;
147
870M
            }
148
870M
            break;
149
899M
        case DP_S_MIN:
150
899M
            if (ossl_isdigit(ch)) {
151
275M
                min = 10 * min + char_to_int(ch);
152
275M
                ch = *format++;
153
623M
            } else if (ch == '*') {
154
25.4M
                min = va_arg(args, int);
155
25.4M
                ch = *format++;
156
25.4M
                state = DP_S_DOT;
157
25.4M
            } else
158
597M
                state = DP_S_DOT;
159
899M
            break;
160
623M
        case DP_S_DOT:
161
623M
            if (ch == '.') {
162
186k
                state = DP_S_MAX;
163
186k
                ch = *format++;
164
186k
            } else
165
623M
                state = DP_S_MOD;
166
623M
            break;
167
341k
        case DP_S_MAX:
168
341k
            if (ossl_isdigit(ch)) {
169
154k
                if (max < 0)
170
77.1k
                    max = 0;
171
154k
                max = 10 * max + char_to_int(ch);
172
154k
                ch = *format++;
173
186k
            } else if (ch == '*') {
174
109k
                max = va_arg(args, int);
175
109k
                ch = *format++;
176
109k
                state = DP_S_MOD;
177
109k
            } else
178
77.1k
                state = DP_S_MOD;
179
341k
            break;
180
623M
        case DP_S_MOD:
181
623M
            switch (ch) {
182
0
            case 'h':
183
0
                cflags = DP_C_SHORT;
184
0
                ch = *format++;
185
0
                break;
186
40.9M
            case 'l':
187
40.9M
                if (*format == 'l') {
188
42.2k
                    cflags = DP_C_LLONG;
189
42.2k
                    format++;
190
42.2k
                } else
191
40.9M
                    cflags = DP_C_LONG;
192
40.9M
                ch = *format++;
193
40.9M
                break;
194
0
            case 'q':
195
17.3k
            case 'j':
196
17.3k
                cflags = DP_C_LLONG;
197
17.3k
                ch = *format++;
198
17.3k
                break;
199
0
            case 'L':
200
0
                cflags = DP_C_LDOUBLE;
201
0
                ch = *format++;
202
0
                break;
203
0
            case 'z':
204
0
                cflags = DP_C_SIZE;
205
0
                ch = *format++;
206
0
                break;
207
582M
            default:
208
582M
                break;
209
623M
            }
210
623M
            state = DP_S_CONV;
211
623M
            break;
212
623M
        case DP_S_CONV:
213
623M
            switch (ch) {
214
42.5M
            case 'd':
215
42.5M
            case 'i':
216
42.5M
                switch (cflags) {
217
0
                case DP_C_SHORT:
218
0
                    value = (short int)va_arg(args, int);
219
0
                    break;
220
28.3M
                case DP_C_LONG:
221
28.3M
                    value = va_arg(args, long int);
222
28.3M
                    break;
223
8.21k
                case DP_C_LLONG:
224
8.21k
                    value = va_arg(args, int64_t);
225
8.21k
                    break;
226
0
                case DP_C_SIZE:
227
0
                    value = va_arg(args, ossl_ssize_t);
228
0
                    break;
229
14.2M
                default:
230
14.2M
                    value = va_arg(args, int);
231
14.2M
                    break;
232
42.5M
                }
233
42.5M
                if (!fmtint(sbuffer, buffer, &currlen, maxlen, value, 10, min,
234
42.5M
                        max, flags))
235
0
                    return 0;
236
42.5M
                break;
237
80.3M
            case 'X':
238
80.3M
                flags |= DP_F_UP;
239
                /* FALLTHROUGH */
240
228M
            case 'x':
241
228M
            case 'o':
242
240M
            case 'u':
243
240M
                flags |= DP_F_UNSIGNED;
244
240M
                switch (cflags) {
245
0
                case DP_C_SHORT:
246
0
                    value = (unsigned short int)va_arg(args, unsigned int);
247
0
                    break;
248
12.5M
                case DP_C_LONG:
249
12.5M
                    value = va_arg(args, unsigned long int);
250
12.5M
                    break;
251
51.4k
                case DP_C_LLONG:
252
51.4k
                    value = va_arg(args, uint64_t);
253
51.4k
                    break;
254
0
                case DP_C_SIZE:
255
0
                    value = va_arg(args, size_t);
256
0
                    break;
257
227M
                default:
258
227M
                    value = va_arg(args, unsigned int);
259
227M
                    break;
260
240M
                }
261
240M
                if (!fmtint(sbuffer, buffer, &currlen, maxlen, value,
262
240M
                        ch == 'o' ? 8 : (ch == 'u' ? 10 : 16),
263
240M
                        min, max, flags))
264
0
                    return 0;
265
240M
                break;
266
240M
#ifndef OPENSSL_SYS_UEFI
267
240M
            case 'f':
268
0
                if (cflags == DP_C_LDOUBLE)
269
0
                    fvalue = va_arg(args, LDOUBLE);
270
0
                else
271
0
                    fvalue = va_arg(args, double);
272
0
                if (!fmtfp(sbuffer, buffer, &currlen, maxlen, fvalue, min, max,
273
0
                        flags, F_FORMAT))
274
0
                    return 0;
275
0
                break;
276
0
            case 'E':
277
0
                flags |= DP_F_UP;
278
                /* fall through */
279
0
            case 'e':
280
0
                if (cflags == DP_C_LDOUBLE)
281
0
                    fvalue = va_arg(args, LDOUBLE);
282
0
                else
283
0
                    fvalue = va_arg(args, double);
284
0
                if (!fmtfp(sbuffer, buffer, &currlen, maxlen, fvalue, min, max,
285
0
                        flags, E_FORMAT))
286
0
                    return 0;
287
0
                break;
288
0
            case 'G':
289
0
                flags |= DP_F_UP;
290
                /* fall through */
291
0
            case 'g':
292
0
                if (cflags == DP_C_LDOUBLE)
293
0
                    fvalue = va_arg(args, LDOUBLE);
294
0
                else
295
0
                    fvalue = va_arg(args, double);
296
0
                if (!fmtfp(sbuffer, buffer, &currlen, maxlen, fvalue, min, max,
297
0
                        flags, G_FORMAT))
298
0
                    return 0;
299
0
                break;
300
#else
301
            case 'f':
302
            case 'E':
303
            case 'e':
304
            case 'G':
305
            case 'g':
306
                /* not implemented for UEFI */
307
                ERR_raise(ERR_LIB_BIO, ERR_R_UNSUPPORTED);
308
                return 0;
309
#endif
310
161M
            case 'c':
311
161M
                if (!doapr_outch(sbuffer, buffer, &currlen, maxlen,
312
161M
                        va_arg(args, int)))
313
0
                    return 0;
314
161M
                break;
315
179M
            case 's':
316
179M
                strvalue = va_arg(args, char *);
317
179M
                if (max < 0) {
318
178M
                    if (buffer)
319
156M
                        max = INT_MAX;
320
22.8M
                    else
321
22.8M
                        max = *maxlen;
322
178M
                }
323
179M
                if (!fmtstr(sbuffer, buffer, &currlen, maxlen, strvalue,
324
179M
                        flags, min, max))
325
0
                    return 0;
326
179M
                break;
327
179M
            case 'p':
328
0
                value = (size_t)va_arg(args, void *);
329
0
                if (!fmtint(sbuffer, buffer, &currlen, maxlen,
330
0
                        value, 16, min, max, flags | DP_F_NUM))
331
0
                    return 0;
332
0
                break;
333
0
            case 'n': {
334
0
                int *num;
335
0
                num = va_arg(args, int *);
336
0
                *num = currlen;
337
0
            } break;
338
0
            case '%':
339
0
                if (!doapr_outch(sbuffer, buffer, &currlen, maxlen, ch))
340
0
                    return 0;
341
0
                break;
342
0
            case 'w':
343
                /* not supported yet, treat as next char */
344
0
                format++;
345
0
                break;
346
0
            default:
347
                /* unknown, skip */
348
0
                break;
349
623M
            }
350
623M
            ch = *format++;
351
623M
            state = DP_S_DEFAULT;
352
623M
            flags = cflags = min = 0;
353
623M
            max = -1;
354
623M
            break;
355
337M
        case DP_S_DONE:
356
337M
            break;
357
0
        default:
358
0
            break;
359
4.98G
        }
360
4.98G
    }
361
    /*
362
     * We have to truncate if there is no dynamic buffer and we have filled the
363
     * static buffer.
364
     */
365
337M
    if (buffer == NULL) {
366
103M
        *truncated = (currlen > *maxlen - 1);
367
103M
        if (*truncated)
368
8.36k
            currlen = *maxlen - 1;
369
103M
    }
370
337M
    if (!doapr_outch(sbuffer, buffer, &currlen, maxlen, '\0'))
371
0
        return 0;
372
337M
    *retlen = currlen - 1;
373
337M
    return 1;
374
337M
}
375
376
static int
377
fmtstr(char **sbuffer,
378
    char **buffer,
379
    size_t *currlen,
380
    size_t *maxlen, const char *value, int flags, int min, int max)
381
179M
{
382
179M
    int padlen;
383
179M
    size_t strln;
384
179M
    int cnt = 0;
385
386
179M
    if (value == 0)
387
34.8k
        value = "<NULL>";
388
389
179M
    strln = OPENSSL_strnlen(value, max < 0 ? SIZE_MAX : (size_t)max);
390
391
179M
    padlen = min - strln;
392
179M
    if (min < 0 || padlen < 0)
393
137M
        padlen = 0;
394
179M
    if (max >= 0) {
395
        /*
396
         * Calculate the maximum output including padding.
397
         * Make sure max doesn't overflow into negativity
398
         */
399
179M
        if (max < INT_MAX - padlen)
400
23.0M
            max += padlen;
401
156M
        else
402
156M
            max = INT_MAX;
403
179M
    }
404
179M
    if (flags & DP_F_MINUS)
405
9.90M
        padlen = -padlen;
406
407
358M
    while ((padlen > 0) && (max < 0 || cnt < max)) {
408
179M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
409
0
            return 0;
410
179M
        --padlen;
411
179M
        ++cnt;
412
179M
    }
413
612M
    while (strln > 0 && (max < 0 || cnt < max)) {
414
433M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, *value++))
415
0
            return 0;
416
433M
        --strln;
417
433M
        ++cnt;
418
433M
    }
419
290M
    while ((padlen < 0) && (max < 0 || cnt < max)) {
420
111M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
421
0
            return 0;
422
111M
        ++padlen;
423
111M
        ++cnt;
424
111M
    }
425
179M
    return 1;
426
179M
}
427
428
static int
429
fmtint(char **sbuffer,
430
    char **buffer,
431
    size_t *currlen,
432
    size_t *maxlen, int64_t value, int base, int min, int max, int flags)
433
282M
{
434
282M
    int signvalue = 0;
435
282M
    const char *prefix = "";
436
282M
    uint64_t uvalue;
437
282M
    char convert[DECIMAL_SIZE(value) + 3];
438
282M
    int place = 0;
439
282M
    int spadlen = 0;
440
282M
    int zpadlen = 0;
441
282M
    int caps = 0;
442
443
282M
    if (max < 0)
444
282M
        max = 0;
445
282M
    uvalue = value;
446
282M
    if (!(flags & DP_F_UNSIGNED)) {
447
42.5M
        if (value < 0) {
448
58.7k
            signvalue = '-';
449
58.7k
            uvalue = 0 - (uint64_t)value;
450
42.5M
        } else if (flags & DP_F_PLUS)
451
1.44k
            signvalue = '+';
452
42.5M
        else if (flags & DP_F_SPACE)
453
0
            signvalue = ' ';
454
42.5M
    }
455
282M
    if (flags & DP_F_NUM) {
456
0
        if (base == 8)
457
0
            prefix = "0";
458
0
        if (base == 16)
459
0
            prefix = "0x";
460
0
    }
461
282M
    if (flags & DP_F_UP)
462
80.3M
        caps = 1;
463
515M
    do {
464
515M
        convert[place++] = (caps ? "0123456789ABCDEF" : "0123456789abcdef")
465
515M
            [uvalue % (unsigned)base];
466
515M
        uvalue = (uvalue / (unsigned)base);
467
515M
    } while (uvalue && (place < (int)sizeof(convert)));
468
282M
    if (place == sizeof(convert))
469
0
        place--;
470
282M
    convert[place] = 0;
471
472
282M
    zpadlen = max - place;
473
282M
    spadlen = min - OSSL_MAX(max, place) - (signvalue ? 1 : 0) - strlen(prefix);
474
282M
    if (zpadlen < 0)
475
282M
        zpadlen = 0;
476
282M
    if (spadlen < 0)
477
30.4M
        spadlen = 0;
478
282M
    if (flags & DP_F_ZERO) {
479
227M
        zpadlen = OSSL_MAX(zpadlen, spadlen);
480
227M
        spadlen = 0;
481
227M
    }
482
282M
    if (flags & DP_F_MINUS)
483
9.90M
        spadlen = -spadlen;
484
485
    /* spaces */
486
325M
    while (spadlen > 0) {
487
42.7M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
488
0
            return 0;
489
42.7M
        --spadlen;
490
42.7M
    }
491
492
    /* sign */
493
282M
    if (signvalue)
494
60.2k
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, signvalue))
495
0
            return 0;
496
497
    /* prefix */
498
282M
    while (*prefix) {
499
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, *prefix))
500
0
            return 0;
501
0
        prefix++;
502
0
    }
503
504
    /* zeros */
505
282M
    if (zpadlen > 0) {
506
127M
        while (zpadlen > 0) {
507
64.0M
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '0'))
508
0
                return 0;
509
64.0M
            --zpadlen;
510
64.0M
        }
511
63.4M
    }
512
    /* digits */
513
798M
    while (place > 0) {
514
515M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, convert[--place]))
515
0
            return 0;
516
515M
    }
517
518
    /* left justified spaces */
519
292M
    while (spadlen < 0) {
520
9.41M
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
521
0
            return 0;
522
9.41M
        ++spadlen;
523
9.41M
    }
524
282M
    return 1;
525
282M
}
526
527
#ifndef OPENSSL_SYS_UEFI
528
529
static LDOUBLE abs_val(LDOUBLE value)
530
0
{
531
0
    LDOUBLE result = value;
532
0
    if (value < 0)
533
0
        result = -value;
534
0
    if (result > 0 && result / 2 == result) /* INF */
535
0
        result = 0;
536
0
    else if (result != result) /* NAN */
537
0
        result = 0;
538
0
    return result;
539
0
}
540
541
static LDOUBLE pow_10(int in_exp)
542
0
{
543
0
    LDOUBLE result = 1;
544
0
    while (in_exp) {
545
0
        result *= 10;
546
0
        in_exp--;
547
0
    }
548
0
    return result;
549
0
}
550
551
static long roundv(LDOUBLE value)
552
0
{
553
0
    long intpart;
554
0
    intpart = (long)value;
555
0
    value = value - intpart;
556
0
    if (value >= 0.5)
557
0
        intpart++;
558
0
    return intpart;
559
0
}
560
561
static int
562
fmtfp(char **sbuffer,
563
    char **buffer,
564
    size_t *currlen,
565
    size_t *maxlen, LDOUBLE fvalue, int min, int max, int flags, int style)
566
0
{
567
0
    int signvalue = 0;
568
0
    LDOUBLE ufvalue;
569
0
    LDOUBLE tmpvalue;
570
0
    char iconvert[20];
571
0
    char fconvert[20];
572
0
    char econvert[20];
573
0
    int iplace = 0;
574
0
    int fplace = 0;
575
0
    int eplace = 0;
576
0
    int padlen = 0;
577
0
    int zpadlen = 0;
578
0
    long exp = 0;
579
0
    unsigned long intpart;
580
0
    unsigned long fracpart;
581
0
    unsigned long max10;
582
0
    int realstyle;
583
584
0
    if (max < 0)
585
0
        max = 6;
586
587
0
    if (fvalue < 0)
588
0
        signvalue = '-';
589
0
    else if (flags & DP_F_PLUS)
590
0
        signvalue = '+';
591
0
    else if (flags & DP_F_SPACE)
592
0
        signvalue = ' ';
593
0
    ufvalue = abs_val(fvalue);
594
0
    if (ufvalue == 0 && fvalue != 0) /* INF or NAN? */
595
0
        signvalue = '?';
596
597
    /*
598
     * G_FORMAT sometimes prints like E_FORMAT and sometimes like F_FORMAT
599
     * depending on the number to be printed. Work out which one it is and use
600
     * that from here on.
601
     */
602
0
    if (style == G_FORMAT) {
603
0
        if (ufvalue == 0.0) {
604
0
            realstyle = F_FORMAT;
605
0
        } else if (ufvalue < 0.0001) {
606
0
            realstyle = E_FORMAT;
607
0
        } else if ((max == 0 && ufvalue >= 10)
608
0
            || (max > 0 && ufvalue >= pow_10(max))) {
609
0
            realstyle = E_FORMAT;
610
0
        } else {
611
0
            realstyle = F_FORMAT;
612
0
        }
613
0
    } else {
614
0
        realstyle = style;
615
0
    }
616
617
0
    if (style != F_FORMAT) {
618
0
        tmpvalue = ufvalue;
619
        /* Calculate the exponent */
620
0
        if (ufvalue != 0.0) {
621
0
            while (tmpvalue < 1) {
622
0
                tmpvalue *= 10;
623
0
                exp--;
624
0
            }
625
0
            while (tmpvalue > 10) {
626
0
                tmpvalue /= 10;
627
0
                exp++;
628
0
            }
629
0
        }
630
0
        if (style == G_FORMAT) {
631
            /*
632
             * In G_FORMAT the "precision" represents significant digits. We
633
             * always have at least 1 significant digit.
634
             */
635
0
            if (max == 0)
636
0
                max = 1;
637
            /* Now convert significant digits to decimal places */
638
0
            if (realstyle == F_FORMAT) {
639
0
                max -= (exp + 1);
640
0
                if (max < 0) {
641
                    /*
642
                     * Should not happen. If we're in F_FORMAT then exp < max?
643
                     */
644
0
                    (void)doapr_outch(sbuffer, buffer, currlen, maxlen, '\0');
645
0
                    return 0;
646
0
                }
647
0
            } else {
648
                /*
649
                 * In E_FORMAT there is always one significant digit in front
650
                 * of the decimal point, so:
651
                 * significant digits == 1 + decimal places
652
                 */
653
0
                max--;
654
0
            }
655
0
        }
656
0
        if (realstyle == E_FORMAT)
657
0
            ufvalue = tmpvalue;
658
0
    }
659
660
    /*
661
     * By subtracting 65535 (2^16-1) we cancel the low order 15 bits
662
     * of ULONG_MAX to avoid using imprecise floating point values.
663
     */
664
0
    if (ufvalue >= (double)(ULONG_MAX - 65535) + 65536.0) {
665
        /* Number too big */
666
0
        (void)doapr_outch(sbuffer, buffer, currlen, maxlen, '\0');
667
0
        return 0;
668
0
    }
669
0
    intpart = (unsigned long)ufvalue;
670
671
    /*
672
     * sorry, we only support 9 digits past the decimal because of our
673
     * conversion method
674
     */
675
0
    if (max > 9)
676
0
        max = 9;
677
678
    /*
679
     * we "cheat" by converting the fractional part to integer by multiplying
680
     * by a factor of 10
681
     */
682
0
    max10 = roundv(pow_10(max));
683
0
    fracpart = roundv(pow_10(max) * (ufvalue - intpart));
684
685
0
    if (fracpart >= max10) {
686
0
        intpart++;
687
0
        fracpart -= max10;
688
0
    }
689
690
    /* convert integer part */
691
0
    do {
692
0
        iconvert[iplace++] = "0123456789"[intpart % 10];
693
0
        intpart = (intpart / 10);
694
0
    } while (intpart && (iplace < (int)sizeof(iconvert)));
695
0
    if (iplace == sizeof(iconvert))
696
0
        iplace--;
697
0
    iconvert[iplace] = 0;
698
699
    /* convert fractional part */
700
0
    while (fplace < max) {
701
0
        if (style == G_FORMAT && fplace == 0 && (fracpart % 10) == 0) {
702
            /* We strip trailing zeros in G_FORMAT */
703
0
            max--;
704
0
            fracpart = fracpart / 10;
705
0
            if (fplace < max)
706
0
                continue;
707
0
            break;
708
0
        }
709
0
        fconvert[fplace++] = "0123456789"[fracpart % 10];
710
0
        fracpart = (fracpart / 10);
711
0
    }
712
713
0
    fconvert[fplace] = 0;
714
715
    /* convert exponent part */
716
0
    if (realstyle == E_FORMAT) {
717
0
        int tmpexp;
718
0
        if (exp < 0)
719
0
            tmpexp = -exp;
720
0
        else
721
0
            tmpexp = exp;
722
723
0
        do {
724
0
            econvert[eplace++] = "0123456789"[tmpexp % 10];
725
0
            tmpexp = (tmpexp / 10);
726
0
        } while (tmpexp > 0 && eplace < (int)sizeof(econvert));
727
        /* Exponent is huge!! Too big to print */
728
0
        if (tmpexp > 0) {
729
0
            (void)doapr_outch(sbuffer, buffer, currlen, maxlen, '\0');
730
0
            return 0;
731
0
        }
732
        /* Add a leading 0 for single digit exponents */
733
0
        if (eplace == 1)
734
0
            econvert[eplace++] = '0';
735
0
    }
736
737
    /*
738
     * -1 for decimal point (if we have one, i.e. max > 0),
739
     * another -1 if we are printing a sign
740
     */
741
0
    padlen = min - iplace - max - (max > 0 ? 1 : 0) - ((signvalue) ? 1 : 0);
742
    /* Take some off for exponent prefix "+e" and exponent */
743
0
    if (realstyle == E_FORMAT)
744
0
        padlen -= 2 + eplace;
745
0
    zpadlen = max - fplace;
746
0
    if (zpadlen < 0)
747
0
        zpadlen = 0;
748
0
    if (padlen < 0)
749
0
        padlen = 0;
750
0
    if (flags & DP_F_MINUS)
751
0
        padlen = -padlen;
752
753
0
    if ((flags & DP_F_ZERO) && (padlen > 0)) {
754
0
        if (signvalue) {
755
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen, signvalue))
756
0
                return 0;
757
0
            --padlen;
758
0
            signvalue = 0;
759
0
        }
760
0
        while (padlen > 0) {
761
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '0'))
762
0
                return 0;
763
0
            --padlen;
764
0
        }
765
0
    }
766
0
    while (padlen > 0) {
767
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
768
0
            return 0;
769
0
        --padlen;
770
0
    }
771
0
    if (signvalue && !doapr_outch(sbuffer, buffer, currlen, maxlen, signvalue))
772
0
        return 0;
773
774
0
    while (iplace > 0) {
775
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, iconvert[--iplace]))
776
0
            return 0;
777
0
    }
778
779
    /*
780
     * Decimal point. This should probably use locale to find the correct
781
     * char to print out.
782
     */
783
0
    if (max > 0 || (flags & DP_F_NUM)) {
784
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '.'))
785
0
            return 0;
786
787
0
        while (fplace > 0) {
788
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen,
789
0
                    fconvert[--fplace]))
790
0
                return 0;
791
0
        }
792
0
    }
793
0
    while (zpadlen > 0) {
794
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '0'))
795
0
            return 0;
796
0
        --zpadlen;
797
0
    }
798
0
    if (realstyle == E_FORMAT) {
799
0
        char ech;
800
801
0
        if ((flags & DP_F_UP) == 0)
802
0
            ech = 'e';
803
0
        else
804
0
            ech = 'E';
805
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ech))
806
0
            return 0;
807
0
        if (exp < 0) {
808
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '-'))
809
0
                return 0;
810
0
        } else {
811
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen, '+'))
812
0
                return 0;
813
0
        }
814
0
        while (eplace > 0) {
815
0
            if (!doapr_outch(sbuffer, buffer, currlen, maxlen,
816
0
                    econvert[--eplace]))
817
0
                return 0;
818
0
        }
819
0
    }
820
821
0
    while (padlen < 0) {
822
0
        if (!doapr_outch(sbuffer, buffer, currlen, maxlen, ' '))
823
0
            return 0;
824
0
        ++padlen;
825
0
    }
826
0
    return 1;
827
0
}
828
829
#endif /* OPENSSL_SYS_UEFI */
830
831
58.3k
#define BUFFER_INC 1024
832
833
static int
834
doapr_outch(char **sbuffer,
835
    char **buffer, size_t *currlen, size_t *maxlen, int c)
836
2.23G
{
837
    /* If we haven't at least one buffer, someone has done a big booboo */
838
2.23G
    if (!ossl_assert(*sbuffer != NULL || buffer != NULL))
839
0
        return 0;
840
841
    /* |currlen| must always be <= |*maxlen| */
842
2.23G
    if (!ossl_assert(*currlen <= *maxlen))
843
0
        return 0;
844
845
2.23G
    if (buffer && *currlen == *maxlen) {
846
29.1k
        if (*maxlen > INT_MAX - BUFFER_INC)
847
0
            return 0;
848
849
29.1k
        *maxlen += BUFFER_INC;
850
29.1k
        if (*buffer == NULL) {
851
666
            if ((*buffer = OPENSSL_malloc(*maxlen)) == NULL)
852
0
                return 0;
853
666
            if (*currlen > 0) {
854
666
                if (!ossl_assert(*sbuffer != NULL))
855
0
                    return 0;
856
666
                memcpy(*buffer, *sbuffer, *currlen);
857
666
            }
858
666
            *sbuffer = NULL;
859
28.4k
        } else {
860
28.4k
            char *tmpbuf;
861
862
28.4k
            tmpbuf = OPENSSL_realloc(*buffer, *maxlen);
863
28.4k
            if (tmpbuf == NULL)
864
0
                return 0;
865
28.4k
            *buffer = tmpbuf;
866
28.4k
        }
867
29.1k
    }
868
869
2.23G
    if (*currlen < *maxlen) {
870
2.23G
        if (*sbuffer)
871
2.20G
            (*sbuffer)[(*currlen)++] = (char)c;
872
29.3M
        else
873
29.3M
            (*buffer)[(*currlen)++] = (char)c;
874
2.23G
    }
875
876
2.23G
    return 1;
877
2.23G
}
878
879
/***************************************************************************/
880
881
int BIO_printf(BIO *bio, const char *format, ...)
882
344M
{
883
344M
    va_list args;
884
344M
    int ret;
885
886
344M
    va_start(args, format);
887
888
344M
    ret = BIO_vprintf(bio, format, args);
889
890
344M
    va_end(args);
891
344M
    return ret;
892
344M
}
893
894
int BIO_vprintf(BIO *bio, const char *format, va_list args)
895
275M
{
896
275M
    int ret;
897
275M
    size_t retlen;
898
275M
    char hugebuf[1024 * 2]; /* Was previously 10k, which is unreasonable
899
                             * in small-stack environments, like threads
900
                             * or DOS programs. */
901
275M
    char *hugebufp = hugebuf;
902
275M
    size_t hugebufsize = sizeof(hugebuf);
903
275M
    char *dynbuf = NULL;
904
275M
    int ignored;
905
906
275M
    dynbuf = NULL;
907
275M
    if (!_dopr(&hugebufp, &dynbuf, &hugebufsize, &retlen, &ignored, format,
908
275M
            args)) {
909
0
        OPENSSL_free(dynbuf);
910
0
        return -1;
911
0
    }
912
275M
    if (dynbuf) {
913
720
        ret = BIO_write(bio, dynbuf, (int)retlen);
914
720
        OPENSSL_free(dynbuf);
915
275M
    } else {
916
275M
        ret = BIO_write(bio, hugebuf, (int)retlen);
917
275M
    }
918
275M
    return ret;
919
275M
}
920
921
/*
922
 * As snprintf is not available everywhere, we provide our own
923
 * implementation. This function has nothing to do with BIOs, but it's
924
 * closely related to BIO_printf, and we need *some* name prefix ... (XXX the
925
 * function should be renamed, but to what?)
926
 */
927
int BIO_snprintf(char *buf, size_t n, const char *format, ...)
928
121M
{
929
121M
    va_list args;
930
121M
    int ret;
931
932
121M
    va_start(args, format);
933
934
121M
    ret = BIO_vsnprintf(buf, n, format, args);
935
936
121M
    va_end(args);
937
121M
    return ret;
938
121M
}
939
940
int BIO_vsnprintf(char *buf, size_t n, const char *format, va_list args)
941
124M
{
942
124M
    size_t retlen;
943
124M
    int truncated;
944
945
124M
    if (!_dopr(&buf, NULL, &n, &retlen, &truncated, format, args))
946
0
        return -1;
947
948
124M
    if (truncated)
949
        /*
950
         * In case of truncation, return -1 like traditional snprintf.
951
         * (Current drafts for ISO/IEC 9899 say snprintf should return the
952
         * number of characters that would have been written, had the buffer
953
         * been large enough.)
954
         */
955
8.83k
        return -1;
956
124M
    return (retlen <= INT_MAX) ? (int)retlen : -1;
957
124M
}