Coverage Report

Created: 2026-09-14 07:05

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/mprintf.c
Line
Count
Source
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
4
 *                             / __| | | | |_) | |
5
 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
9
 *
10
 * This software is licensed as described in the file COPYING, which
11
 * you should have received as part of this distribution. The terms
12
 * are also available at https://curl.se/docs/copyright.html.
13
 *
14
 * You may opt to use, copy, modify, merge, publish, distribute and/or sell
15
 * copies of the Software, and permit persons to whom the Software is
16
 * furnished to do so, under the terms of the COPYING file.
17
 *
18
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19
 * KIND, either express or implied.
20
 *
21
 * SPDX-License-Identifier: curl
22
 *
23
 ***************************************************************************/
24
#include "curl_setup.h"
25
26
#include "curlx/dynbuf.h"
27
#include "curl_printf.h"
28
#include "curlx/strparse.h"
29
#include "curlx/snprintf.h"  /* for curlx_win32_snprintf() */
30
31
218k
#define BUFFSIZE 326 /* buffer for long-to-str and float-to-str calcs, should
32
                        fit negative DBL_MAX (317 letters) */
33
917k
#define MAX_PARAMETERS 128 /* number of input arguments */
34
805k
#define MAX_SEGMENTS   128 /* number of output segments */
35
36
/* Lower-case digits. */
37
const unsigned char Curl_ldigits[] = "0123456789abcdef";
38
39
/* Upper-case digits. */
40
const unsigned char Curl_udigits[] = "0123456789ABCDEF";
41
42
#define OUTCHAR(x)                        \
43
29
  do {                                    \
44
29
    if(stream((unsigned char)(x), userp)) \
45
29
      return TRUE;                        \
46
29
    (*donep)++;                           \
47
29
  } while(0)
48
49
/* Data type to read from the arglist */
50
typedef enum {
51
  MTYPE_STRING,
52
  MTYPE_PTR,
53
  MTYPE_INTPTR,
54
  MTYPE_INT,
55
  MTYPE_LONG,
56
  MTYPE_LONGLONG,
57
  MTYPE_INTU,
58
  MTYPE_LONGU,
59
  MTYPE_LONGLONGU,
60
  MTYPE_DOUBLE,
61
  MTYPE_LONGDOUBLE,
62
  MTYPE_WIDTH,
63
  MTYPE_PRECISION
64
} FormatType;
65
66
/* conversion and display flags */
67
enum {
68
  FLAGS_SPACE      = 1 << 0,
69
  FLAGS_SHOWSIGN   = 1 << 1,
70
  FLAGS_LEFT       = 1 << 2,
71
  FLAGS_ALT        = 1 << 3,
72
  FLAGS_SHORT      = 1 << 4,
73
  FLAGS_LONG       = 1 << 5,
74
  FLAGS_LONGLONG   = 1 << 6,
75
  FLAGS_LONGDOUBLE = 1 << 7,
76
  FLAGS_PAD_NIL    = 1 << 8,
77
  FLAGS_UNSIGNED   = 1 << 9,
78
  FLAGS_OCTAL      = 1 << 10,
79
  FLAGS_HEX        = 1 << 11,
80
  FLAGS_UPPER      = 1 << 12,
81
  FLAGS_WIDTH      = 1 << 13, /* '*' or '*<num>$' used */
82
  FLAGS_WIDTHPARAM = 1 << 14, /* width PARAMETER was specified */
83
  FLAGS_PREC       = 1 << 15, /* precision was specified */
84
  FLAGS_PRECPARAM  = 1 << 16, /* precision PARAMETER was specified */
85
  FLAGS_CHAR       = 1 << 17, /* %c story */
86
  FLAGS_FLOATE     = 1 << 18, /* %e or %E */
87
  FLAGS_FLOATG     = 1 << 19, /* %g or %G */
88
  FLAGS_SUBSTR     = 1 << 20  /* no input, only substring */
89
};
90
91
enum {
92
  DOLLAR_UNKNOWN,
93
  DOLLAR_NOPE,
94
  DOLLAR_USE
95
};
96
97
/*
98
 * Describes an input va_arg type and hold its value.
99
 */
100
struct va_input {
101
  FormatType type; /* FormatType */
102
  union {
103
    const char *str;
104
    void *ptr;
105
    int64_t nums; /* signed */
106
    uint64_t numu; /* unsigned */
107
    double dnum;
108
  } val;
109
};
110
111
/*
112
 * Describes an output segment.
113
 */
114
struct outsegment {
115
  int width;     /* width OR width parameter number */
116
  int precision; /* precision OR precision parameter number */
117
  unsigned int flags;
118
  unsigned int input; /* input argument array index */
119
  const char *start; /* format string start to output */
120
  size_t outlen;     /* number of bytes from the format string to output */
121
};
122
123
struct nsprintf {
124
  char *buffer;
125
  size_t length;
126
  size_t max;
127
};
128
129
/* Output bytes are staged here and appended to the dynbuf in chunks: the
130
   dynbuf append overhead (bounds checks, growth, memcpy, null termination)
131
   once per byte dominates formatting. 512 bytes of stack holds a typical
132
   request line or header in a single flush. */
133
#define ASPRINTF_STAGE_SIZE 512
134
135
struct asprintf {
136
  struct dynbuf *b;
137
  char merr;
138
  size_t nstage;
139
  unsigned char stage[ASPRINTF_STAGE_SIZE];
140
};
141
142
/* the provided input number is 1-based but this returns the number 0-based.
143
 *
144
 * returns -1 if no valid number was provided.
145
 */
146
static int dollarstring(const char *p, const char **end)
147
215k
{
148
215k
  curl_off_t num;
149
215k
  if(curlx_str_number(&p, &num, MAX_PARAMETERS) ||
150
0
     curlx_str_single(&p, '$') || !num)
151
215k
    return -1;
152
0
  *end = p;
153
0
  return (int)num - 1;
154
215k
}
155
156
701k
#define is_arg_used(x, y)   ((x)[(y) / 8] & (1 << ((y) & 7)))
157
701k
#define mark_arg_used(x, y) ((x)[(y) / 8] |= (unsigned char)(1 << ((y) & 7)))
158
159
/*
160
 * Parse the format string.
161
 *
162
 * Create two arrays. One describes the inputs, one describes the outputs.
163
 *
164
 * Returns zero on success.
165
 */
166
167
895k
#define PFMT_OK          0
168
0
#define PFMT_DOLLAR      1 /* bad dollar for main param */
169
0
#define PFMT_DOLLARWIDTH 2 /* bad dollar use for width */
170
0
#define PFMT_DOLLARPREC  3 /* bad dollar use for precision */
171
0
#define PFMT_MANYARGS    4 /* too many input arguments used */
172
0
#define PFMT_PREC        5 /* precision overflow */
173
0
#define PFMT_PRECMIX     6 /* bad mix of precision specifiers */
174
0
#define PFMT_WIDTH       7 /* width overflow */
175
0
#define PFMT_INPUTGAP    8 /* gap in arguments */
176
0
#define PFMT_WIDTHARG    9 /* attempted to use same arg twice, for width */
177
0
#define PFMT_PRECARG    10 /* attempted to use same arg twice, for prec */
178
0
#define PFMT_MANYSEGS   11 /* maxed out output segments */
179
180
static int parse_flags(const char **fmtp, unsigned int *flagsp, int use_dollar,
181
                       int *precp, int *widthp)
182
672k
{
183
672k
  const char *fmt = *fmtp;
184
672k
  bool loopit = TRUE;
185
672k
  unsigned int flags = 0;
186
672k
  int width = 0;
187
672k
  int precision = 0;
188
189
  /* Handle the flags */
190
786k
  do {
191
786k
    switch(*fmt++) {
192
0
    case ' ':
193
0
      flags |= FLAGS_SPACE;
194
0
      break;
195
0
    case '+':
196
0
      flags |= FLAGS_SHOWSIGN;
197
0
      break;
198
0
    case '-':
199
0
      flags |= FLAGS_LEFT;
200
0
      flags &= ~(unsigned int)FLAGS_PAD_NIL;
201
0
      break;
202
0
    case '#':
203
0
      flags |= FLAGS_ALT;
204
0
      break;
205
29.0k
    case '.':
206
29.0k
      if('*' == *fmt) {
207
        /* The precision is picked from a specified parameter */
208
29.0k
        flags |= FLAGS_PRECPARAM;
209
29.0k
        fmt++;
210
211
29.0k
        if(use_dollar == DOLLAR_USE) {
212
0
          precision = dollarstring(fmt, &fmt);
213
0
          if(precision < 0)
214
            /* illegal combo */
215
0
            return PFMT_DOLLARPREC;
216
0
        }
217
29.0k
        else
218
          /* get it from the next argument */
219
29.0k
          precision = -1;
220
29.0k
      }
221
0
      else {
222
0
        bool is_neg;
223
0
        curl_off_t num;
224
0
        flags |= FLAGS_PREC;
225
0
        is_neg = ('-' == *fmt);
226
0
        if(is_neg)
227
0
          fmt++;
228
0
        if(curlx_str_number(&fmt, &num, INT_MAX))
229
0
          return PFMT_PREC;
230
0
        precision = (int)num;
231
0
        if(is_neg)
232
0
          precision = -precision;
233
0
      }
234
29.0k
      if((flags & (FLAGS_PREC | FLAGS_PRECPARAM)) ==
235
29.0k
         (FLAGS_PREC | FLAGS_PRECPARAM))
236
        /* it is not permitted to use both kinds of precision for the same
237
           argument */
238
0
        return PFMT_PRECMIX;
239
29.0k
      break;
240
29.0k
    case 'h':
241
0
      flags |= FLAGS_SHORT;
242
0
      break;
243
#ifdef _WIN32
244
    case 'I':
245
      /* Non-ANSI integer extensions I32 I64 */
246
      if((fmt[0] == '3') && (fmt[1] == '2')) {
247
        flags |= FLAGS_LONG;
248
        fmt += 2;
249
      }
250
      else if((fmt[0] == '6') && (fmt[1] == '4')) {
251
        flags |= FLAGS_LONGLONG;
252
        fmt += 2;
253
      }
254
      else {
255
#if SIZEOF_CURL_OFF_T > SIZEOF_LONG
256
        flags |= FLAGS_LONGLONG;
257
#else
258
        flags |= FLAGS_LONG;
259
#endif
260
      }
261
      break;
262
#endif /* _WIN32 */
263
80.7k
    case 'l':
264
80.7k
      if(flags & FLAGS_LONG)
265
0
        flags |= FLAGS_LONGLONG;
266
80.7k
      else
267
80.7k
        flags |= FLAGS_LONG;
268
80.7k
      break;
269
0
    case 'L':
270
0
      flags |= FLAGS_LONGDOUBLE;
271
0
      break;
272
0
    case 'q':
273
0
      flags |= FLAGS_LONGLONG;
274
0
      break;
275
4.52k
    case 'z':
276
      /* the code below generates a warning if -Wunreachable-code is
277
         used */
278
#if SIZEOF_SIZE_T > SIZEOF_LONG
279
      flags |= FLAGS_LONGLONG;
280
#else
281
4.52k
      flags |= FLAGS_LONG;
282
4.52k
#endif
283
4.52k
      break;
284
0
    case 'O':
285
#if SIZEOF_CURL_OFF_T > SIZEOF_LONG
286
      flags |= FLAGS_LONGLONG;
287
#else
288
0
      flags |= FLAGS_LONG;
289
0
#endif
290
0
      break;
291
0
    case '0':
292
0
      if(!(flags & FLAGS_LEFT))
293
0
        flags |= FLAGS_PAD_NIL;
294
0
      FALLTHROUGH();
295
0
    case '1':
296
0
    case '2':
297
0
    case '3':
298
0
    case '4':
299
0
    case '5':
300
0
    case '6':
301
0
    case '7':
302
0
    case '8':
303
0
    case '9': {
304
0
      curl_off_t num;
305
0
      flags |= FLAGS_WIDTH;
306
0
      fmt--;
307
0
      if(curlx_str_number(&fmt, &num, INT_MAX))
308
0
        return PFMT_WIDTH;
309
0
      width = (int)num;
310
0
      break;
311
0
    }
312
0
    case '*':  /* read width from argument list */
313
0
      flags |= FLAGS_WIDTHPARAM;
314
0
      if(use_dollar == DOLLAR_USE) {
315
0
        width = dollarstring(fmt, &fmt);
316
0
        if(width < 0)
317
          /* illegal combo */
318
0
          return PFMT_DOLLARWIDTH;
319
0
      }
320
0
      else
321
        /* pick from the next argument */
322
0
        width = -1;
323
0
      break;
324
672k
    default:
325
672k
      loopit = FALSE;
326
672k
      fmt--;
327
672k
      break;
328
786k
    } /* switch */
329
786k
  } while(loopit); /* do */
330
672k
  *flagsp = flags;
331
672k
  *precp = precision;
332
672k
  *widthp = width;
333
672k
  *fmtp = fmt;
334
672k
  return PFMT_OK;
335
672k
}
336
337
static bool parse_conversion(const char f, unsigned int *flagp,
338
                             FormatType *typep)
339
672k
{
340
672k
  unsigned int flags = *flagp;
341
672k
  FormatType type;
342
672k
  switch(f) {
343
0
  case 'S':
344
0
    flags |= FLAGS_ALT;
345
0
    type = MTYPE_STRING;
346
0
    break;
347
453k
  case 's':
348
453k
    type = MTYPE_STRING;
349
453k
    break;
350
0
  case 'n':
351
0
    type = MTYPE_INTPTR;
352
0
    break;
353
0
  case 'p':
354
0
    type = MTYPE_PTR;
355
0
    break;
356
169k
  case 'd':
357
169k
  case 'i':
358
169k
    if(flags & FLAGS_LONGLONG)
359
0
      type = MTYPE_LONGLONG;
360
169k
    else if(flags & FLAGS_LONG)
361
80.7k
      type = MTYPE_LONG;
362
88.9k
    else
363
88.9k
      type = MTYPE_INT;
364
169k
    break;
365
48.7k
  case 'u':
366
48.7k
    if(flags & FLAGS_LONGLONG)
367
0
      type = MTYPE_LONGLONGU;
368
48.7k
    else if(flags & FLAGS_LONG)
369
4.52k
      type = MTYPE_LONGU;
370
44.2k
    else
371
44.2k
      type = MTYPE_INTU;
372
48.7k
    flags |= FLAGS_UNSIGNED;
373
48.7k
    break;
374
0
  case 'o':
375
0
    if(flags & FLAGS_LONGLONG)
376
0
      type = MTYPE_LONGLONGU;
377
0
    else if(flags & FLAGS_LONG)
378
0
      type = MTYPE_LONGU;
379
0
    else
380
0
      type = MTYPE_INTU;
381
0
    flags |= FLAGS_OCTAL | FLAGS_UNSIGNED;
382
0
    break;
383
189
  case 'x':
384
189
    if(flags & FLAGS_LONGLONG)
385
0
      type = MTYPE_LONGLONGU;
386
189
    else if(flags & FLAGS_LONG)
387
0
      type = MTYPE_LONGU;
388
189
    else
389
189
      type = MTYPE_INTU;
390
189
    flags |= FLAGS_HEX | FLAGS_UNSIGNED;
391
189
    break;
392
0
  case 'X':
393
0
    if(flags & FLAGS_LONGLONG)
394
0
      type = MTYPE_LONGLONGU;
395
0
    else if(flags & FLAGS_LONG)
396
0
      type = MTYPE_LONGU;
397
0
    else
398
0
      type = MTYPE_INTU;
399
0
    flags |= FLAGS_HEX | FLAGS_UPPER | FLAGS_UNSIGNED;
400
0
    break;
401
0
  case 'c':
402
0
    type = MTYPE_INT;
403
0
    flags |= FLAGS_CHAR;
404
0
    break;
405
0
  case 'f':
406
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
407
0
    break;
408
0
  case 'F':
409
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
410
0
    flags |= FLAGS_UPPER;
411
0
    break;
412
0
  case 'e':
413
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
414
0
    flags |= FLAGS_FLOATE;
415
0
    break;
416
0
  case 'E':
417
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
418
0
    flags |= FLAGS_FLOATE | FLAGS_UPPER;
419
0
    break;
420
0
  case 'g':
421
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
422
0
    flags |= FLAGS_FLOATG;
423
0
    break;
424
0
  case 'G':
425
0
    type = flags & FLAGS_LONGDOUBLE ? MTYPE_LONGDOUBLE : MTYPE_DOUBLE;
426
0
    flags |= FLAGS_FLOATG | FLAGS_UPPER;
427
0
    break;
428
0
  default:
429
    /* invalid instruction, disregard and continue */
430
0
    return TRUE;
431
672k
  } /* switch */
432
433
672k
  *flagp |= flags;
434
672k
  *typep = type;
435
672k
  return FALSE;
436
672k
}
437
438
static int parsefmt(const char *format,
439
                    struct outsegment *out,
440
                    struct va_input *in,
441
                    int *opieces,
442
                    int *ipieces, va_list arglist)
443
222k
{
444
222k
  const char *fmt = format;
445
222k
  int param_num = 0;
446
222k
  int max_param = -1;
447
222k
  int i;
448
222k
  int ocount = 0;
449
222k
  unsigned char usedinput[MAX_PARAMETERS / 8];
450
222k
  size_t outlen = 0;
451
222k
  struct outsegment *optr;
452
222k
  int use_dollar = DOLLAR_UNKNOWN;
453
222k
  const char *start = fmt;
454
455
  /* clear, set a bit for each used input */
456
222k
  memset(usedinput, 0, sizeof(usedinput));
457
458
2.23M
  while(*fmt) {
459
2.01M
    if(*fmt == '%') {
460
672k
      struct va_input *iptr;
461
672k
      FormatType type;
462
672k
      unsigned int flags = 0;
463
672k
      int width = 0;
464
672k
      int precision = 0;
465
672k
      int param = -1;
466
672k
      int rc;
467
672k
      fmt++;
468
672k
      outlen = (size_t)(fmt - start - 1);
469
672k
      if(*fmt == '%') {
470
        /* this means a %% that should be output only as %. Create an output
471
           segment. */
472
133
        if(outlen) {
473
0
          optr = &out[ocount++];
474
0
          if(ocount > MAX_SEGMENTS)
475
0
            return PFMT_MANYSEGS;
476
0
          optr->input = 0;
477
0
          optr->flags = FLAGS_SUBSTR;
478
0
          optr->start = start;
479
0
          optr->outlen = outlen;
480
0
        }
481
133
        start = fmt;
482
133
        fmt++;
483
133
        continue; /* while */
484
133
      }
485
486
672k
      if(use_dollar != DOLLAR_NOPE) {
487
215k
        param = dollarstring(fmt, &fmt);
488
215k
        if(param < 0) {
489
215k
          if(use_dollar == DOLLAR_USE)
490
            /* illegal combo */
491
0
            return PFMT_DOLLAR;
492
493
          /* we got no positional, get the next arg */
494
215k
          param = -1;
495
215k
          use_dollar = DOLLAR_NOPE;
496
215k
        }
497
0
        else
498
0
          use_dollar = DOLLAR_USE;
499
215k
      }
500
501
672k
      rc = parse_flags(&fmt, &flags, use_dollar, &precision, &width);
502
672k
      if(rc)
503
0
        return rc;
504
505
672k
      if(parse_conversion(*fmt, &flags, &type))
506
0
        continue;
507
508
672k
      if(flags & FLAGS_WIDTHPARAM) {
509
0
        if(width < 0)
510
0
          width = param_num++;
511
0
        else {
512
          /* if this identifies a parameter already used, this is illegal */
513
0
          if(is_arg_used(usedinput, width))
514
0
            return PFMT_WIDTHARG;
515
0
        }
516
0
        if(width >= MAX_PARAMETERS)
517
0
          return PFMT_MANYARGS;
518
0
        if(width >= max_param)
519
0
          max_param = width;
520
521
0
        in[width].type = MTYPE_WIDTH;
522
        /* mark as used */
523
0
        mark_arg_used(usedinput, width);
524
0
      }
525
526
672k
      if(flags & FLAGS_PRECPARAM) {
527
29.0k
        if(precision < 0)
528
29.0k
          precision = param_num++;
529
0
        else {
530
          /* if this identifies a parameter already used, this is illegal */
531
0
          if(is_arg_used(usedinput, precision))
532
0
            return PFMT_PRECARG;
533
0
        }
534
29.0k
        if(precision >= MAX_PARAMETERS)
535
0
          return PFMT_MANYARGS;
536
29.0k
        if(precision >= max_param)
537
29.0k
          max_param = precision;
538
539
29.0k
        in[precision].type = MTYPE_PRECISION;
540
29.0k
        mark_arg_used(usedinput, precision);
541
29.0k
      }
542
543
      /* Handle the specifier */
544
672k
      if(param < 0)
545
672k
        param = param_num++;
546
672k
      if(param >= MAX_PARAMETERS)
547
0
        return PFMT_MANYARGS;
548
672k
      if(param >= max_param)
549
672k
        max_param = param;
550
551
672k
      iptr = &in[param];
552
672k
      iptr->type = type;
553
554
      /* mark this input as used */
555
672k
      mark_arg_used(usedinput, param);
556
557
672k
      fmt++;
558
672k
      optr = &out[ocount++];
559
672k
      if(ocount > MAX_SEGMENTS)
560
0
        return PFMT_MANYSEGS;
561
672k
      optr->input = (unsigned int)param;
562
672k
      optr->flags = flags;
563
672k
      optr->width = width;
564
672k
      optr->precision = precision;
565
672k
      optr->start = start;
566
672k
      optr->outlen = outlen;
567
672k
      start = fmt;
568
672k
    }
569
1.34M
    else
570
1.34M
      fmt++;
571
2.01M
  }
572
573
  /* is there a trailing piece */
574
222k
  outlen = (size_t)(fmt - start);
575
222k
  if(outlen) {
576
133k
    optr = &out[ocount++];
577
133k
    if(ocount > MAX_SEGMENTS)
578
0
      return PFMT_MANYSEGS;
579
133k
    optr->input = 0;
580
133k
    optr->flags = FLAGS_SUBSTR;
581
133k
    optr->start = start;
582
133k
    optr->outlen = outlen;
583
133k
  }
584
585
  /* Read the arg list parameters into our data list */
586
924k
  for(i = 0; i < max_param + 1; i++) {
587
701k
    struct va_input *iptr = &in[i];
588
701k
    if(!is_arg_used(usedinput, i))
589
      /* bad input */
590
0
      return PFMT_INPUTGAP;
591
592
    /* based on the type, read the correct argument */
593
701k
    switch(iptr->type) {
594
453k
    case MTYPE_STRING:
595
453k
      iptr->val.str = va_arg(arglist, const char *);
596
453k
      break;
597
598
0
    case MTYPE_INTPTR:
599
0
    case MTYPE_PTR:
600
0
      iptr->val.ptr = va_arg(arglist, void *);
601
0
      break;
602
603
0
    case MTYPE_LONGLONGU:
604
0
      iptr->val.numu = va_arg(arglist, uint64_t);
605
0
      break;
606
607
0
    case MTYPE_LONGLONG:
608
0
      iptr->val.nums = va_arg(arglist, int64_t);
609
0
      break;
610
611
4.52k
    case MTYPE_LONGU:
612
4.52k
      iptr->val.numu = va_arg(arglist, unsigned long);
613
4.52k
      break;
614
615
80.7k
    case MTYPE_LONG:
616
80.7k
      iptr->val.nums = va_arg(arglist, long);
617
80.7k
      break;
618
619
44.3k
    case MTYPE_INTU:
620
44.3k
      iptr->val.numu = va_arg(arglist, unsigned int);
621
44.3k
      break;
622
623
88.9k
    case MTYPE_INT:
624
88.9k
    case MTYPE_WIDTH:
625
118k
    case MTYPE_PRECISION:
626
118k
      iptr->val.nums = va_arg(arglist, int);
627
118k
      break;
628
629
0
    case MTYPE_DOUBLE:
630
0
      iptr->val.dnum = va_arg(arglist, double);
631
0
      break;
632
633
0
    case MTYPE_LONGDOUBLE:
634
0
      iptr->val.dnum = (double)va_arg(arglist, long double);
635
0
      break;
636
637
0
    default:
638
0
      DEBUGASSERT(NULL); /* unexpected */
639
0
      break;
640
701k
    }
641
701k
  }
642
222k
  *ipieces = max_param + 1;
643
222k
  *opieces = ocount;
644
645
222k
  return PFMT_OK;
646
222k
}
647
648
struct mproperty {
649
  int width;            /* Width of a field. */
650
  int prec;             /* Precision of a field. */
651
  unsigned int flags;
652
};
653
654
/* block output callback: consume up to 'len' bytes, return the number of
655
   bytes accepted. Accepting fewer than 'len' bytes aborts formatting, like
656
   the byte callback returning failure. May be NULL, in which case output
657
   falls back to the per-byte 'stream' callback. */
658
typedef size_t (*mp_streamn)(const unsigned char *buf, size_t len, void *f);
659
660
/* commit any output the sink is holding. Returns non-zero on failure. Sinks
661
   whose accepted bytes are already committed do not need one. */
662
typedef int (*mp_flush)(void *f);
663
664
/* emit a run of bytes through the block callback when available, else byte
665
   by byte. Returns TRUE to abort formatting (mirroring OUTCHAR). */
666
static bool stream_run(void *userp,
667
                       int (*stream)(unsigned char, void *),
668
                       mp_streamn streamn,
669
                       const unsigned char *buf, size_t len, int *donep)
670
1.06M
{
671
1.06M
  if(!len)
672
244k
    return FALSE;
673
817k
  if(streamn) {
674
817k
    size_t n = streamn(buf, len, userp);
675
817k
    *donep += (int)n;
676
817k
    return n != len;
677
817k
  }
678
0
  while(len--) {
679
0
    if(stream(*buf++, userp))
680
0
      return TRUE;
681
0
    (*donep)++;
682
0
  }
683
0
  return FALSE;
684
0
}
685
686
/* Padding is always spaces or zeros, so it comes from a constant rather than a
687
   buffer that has to be filled first. 16 keeps every width used in the tree to
688
   a single run; wider padding loops. */
689
static const char pad_spaces[] = "                ";
690
static const char pad_zeros[] = "0000000000000000";
691
0
#define PAD_RUN 16 /* strlen() of both of the above */
692
693
/* emit 'num' copies of the pad byte. Returns TRUE to abort formatting. */
694
static bool stream_pad(void *userp,
695
                       int (*stream)(unsigned char, void *),
696
                       mp_streamn streamn,
697
                       unsigned char pad, int num, int *donep)
698
672k
{
699
672k
  const unsigned char *src;
700
672k
  if(num <= 0)
701
672k
    return FALSE;
702
0
  if(pad == '0')
703
0
    src = (const unsigned char *)pad_zeros;
704
0
  else
705
0
    src = (const unsigned char *)pad_spaces;
706
0
  while(num > PAD_RUN) {
707
0
    if(stream_run(userp, stream, streamn, src, PAD_RUN, donep))
708
0
      return TRUE;
709
0
    num -= PAD_RUN;
710
0
  }
711
0
  return stream_run(userp, stream, streamn, src, (size_t)num, donep);
712
0
}
713
714
/* emit the leading NUL-terminated part of a run of at most 'len' bytes.
715
   Returns TRUE to abort formatting.
716
717
   A byte loop and not memchr(): 'len' is the requested precision, which
718
   out_string() does not clamp to the string length, so "%.64s" on a 10-byte
719
   string arrives with len == 64 and memchr() would read past the object. */
720
static bool stream_zrun(void *userp,
721
                        int (*stream)(unsigned char, void *),
722
                        mp_streamn streamn,
723
                        const char *str, size_t len, int *donep)
724
843k
{
725
843k
  size_t n = 0;
726
17.6M
  while(n < len && str[n])
727
16.8M
    n++;
728
843k
  return stream_run(userp, stream, streamn,
729
843k
                    (const unsigned char *)str, n, donep);
730
843k
}
731
732
static bool out_double(void *userp,
733
                       int (*stream)(unsigned char, void *),
734
                       mp_streamn streamn,
735
                       struct mproperty *p,
736
                       double dnum,
737
                       char *work, int *donep)
738
0
{
739
0
  char fmt[32] = "%";
740
0
  char *fptr = &fmt[1];
741
0
  size_t left = sizeof(fmt) - strlen(fmt);
742
0
  int flags = p->flags;
743
0
  int width = p->width;
744
0
  int prec = p->prec;
745
746
0
  if(flags & FLAGS_LEFT)
747
0
    *fptr++ = '-';
748
0
  if(flags & FLAGS_SHOWSIGN)
749
0
    *fptr++ = '+';
750
0
  if(flags & FLAGS_SPACE)
751
0
    *fptr++ = ' ';
752
0
  if(flags & FLAGS_ALT)
753
0
    *fptr++ = '#';
754
755
0
  *fptr = 0;
756
757
0
  if(width >= 0) {
758
0
    size_t dlen;
759
0
    if(width >= BUFFSIZE)
760
0
      width = BUFFSIZE - 1;
761
    /* RECURSIVE USAGE */
762
0
    dlen = (size_t)curl_msnprintf(fptr, left, "%d", width);
763
0
    fptr += dlen;
764
0
    left -= dlen;
765
0
  }
766
0
  if(prec >= 0) {
767
    /* for each digit in the integer part, we can have one less
768
       precision */
769
0
    int maxprec = BUFFSIZE - 1;
770
0
    double val = dnum;
771
0
    int len;
772
0
    if(prec > maxprec)
773
0
      prec = maxprec - 1;
774
0
    if(width > 0 && prec <= width)
775
0
      maxprec -= width;
776
0
    while(maxprec && (val >= 10.0)) {
777
0
      val /= 10;
778
0
      maxprec--;
779
0
    }
780
781
0
    if(prec > maxprec)
782
0
      prec = maxprec - 1;
783
0
    if(prec < 0)
784
0
      prec = 0;
785
    /* RECURSIVE USAGE */
786
0
    len = curl_msnprintf(fptr, left, ".%d", prec);
787
0
    fptr += len;
788
0
  }
789
0
  if(flags & FLAGS_LONG)
790
0
    *fptr++ = 'l';
791
792
0
  if(flags & FLAGS_FLOATE)
793
0
    *fptr++ = (char)((flags & FLAGS_UPPER) ? 'E' : 'e');
794
0
  else if(flags & FLAGS_FLOATG)
795
0
    *fptr++ = (char)((flags & FLAGS_UPPER) ? 'G' : 'g');
796
0
  else
797
0
    *fptr++ = (flags & FLAGS_UPPER) ? 'F' : 'f';
798
799
0
  *fptr = 0; /* and a final null-termination */
800
801
  /* NOTE NOTE NOTE!! Not all sprintf implementations return number of
802
     output characters */
803
0
#ifdef CURL_HAVE_DIAG
804
0
#pragma GCC diagnostic push
805
0
#pragma GCC diagnostic ignored "-Wformat-nonliteral"
806
0
#endif
807
#ifdef _WIN32
808
  curlx_win32_snprintf(work, BUFFSIZE, fmt, dnum);
809
#else
810
  /* !checksrc! disable BANNEDFUNC 2 */
811
0
  snprintf(work, BUFFSIZE, fmt, dnum);
812
0
#endif
813
0
#ifdef CURL_HAVE_DIAG
814
0
#pragma GCC diagnostic pop
815
0
#endif
816
0
  DEBUGASSERT(strlen(work) < BUFFSIZE);
817
0
  return stream_run(userp, stream, streamn,
818
0
                    (const unsigned char *)work, strlen(work), donep);
819
0
}
820
821
static bool out_number(void *userp,
822
                       int (*stream)(unsigned char, void *),
823
                       mp_streamn streamn,
824
                       struct mproperty *p,
825
                       uint64_t num,
826
                       int64_t nums,
827
                       char *work, int *donep)
828
218k
{
829
218k
  const unsigned char *digits = Curl_ldigits;
830
218k
  int flags = p->flags;
831
218k
  int width = p->width;
832
218k
  int prec = p->prec;
833
218k
  bool is_alt = flags & FLAGS_ALT;
834
218k
  bool is_neg = FALSE;
835
218k
  int base = 10;
836
837
  /* 'workend' points to the final buffer byte position, but with an extra
838
     byte as margin to avoid the (FALSE?) warning Coverity gives us
839
     otherwise */
840
218k
  char *workend = &work[BUFFSIZE - 2];
841
218k
  char *w;
842
843
218k
  if(flags & FLAGS_CHAR) {
844
    /* Character. */
845
0
    if(!(flags & FLAGS_LEFT)) {
846
0
      if(stream_pad(userp, stream, streamn, ' ', width - 1, donep))
847
0
        return TRUE;
848
0
      width = 1;
849
0
    }
850
0
    OUTCHAR((char)num);
851
0
    if(flags & FLAGS_LEFT) {
852
0
      if(stream_pad(userp, stream, streamn, ' ', width - 1, donep))
853
0
        return TRUE;
854
0
    }
855
0
    return FALSE;
856
0
  }
857
218k
  if(flags & FLAGS_OCTAL)
858
    /* Octal unsigned integer */
859
0
    base = 8;
860
861
218k
  else if(flags & FLAGS_HEX) {
862
    /* Hexadecimal unsigned integer */
863
189
    digits = (flags & FLAGS_UPPER) ? Curl_udigits : Curl_ldigits;
864
189
    base = 16;
865
189
  }
866
218k
  else if(flags & FLAGS_UNSIGNED)
867
    /* Decimal unsigned integer */
868
48.7k
    ;
869
870
169k
  else {
871
    /* Decimal integer. */
872
169k
    is_neg = (nums < 0);
873
169k
    if(is_neg) {
874
      /* signed_num might fail to hold absolute negative minimum by 1 */
875
29
      int64_t signed_num; /* Used to convert negative in positive. */
876
29
      signed_num = nums + (int64_t)1;
877
29
      signed_num = -signed_num;
878
29
      num = (uint64_t)signed_num;
879
29
      num += (uint64_t)1;
880
29
    }
881
169k
  }
882
883
  /* Supply a default precision if none was given. */
884
218k
  if(prec == -1)
885
218k
    prec = 1;
886
887
  /* Put the number in WORK. */
888
218k
  w = workend;
889
218k
  DEBUGASSERT(base <= 16);
890
218k
  switch(base) {
891
218k
  case 10:
892
425k
    while(num > 0) {
893
207k
      *w-- = (char)('0' + (num % 10));
894
207k
      num /= 10;
895
207k
    }
896
218k
    break;
897
189
  default:
898
922
    while(num > 0) {
899
733
      *w-- = digits[num % base];
900
733
      num /= base;
901
733
    }
902
189
    break;
903
218k
  }
904
218k
  width -= (int)(workend - w);
905
218k
  prec -= (int)(workend - w);
906
907
218k
  if(is_alt && base == 8 && prec <= 0) {
908
0
    *w-- = '0';
909
0
    --width;
910
0
  }
911
912
218k
  if(prec > 0) {
913
122k
    width -= prec;
914
244k
    while(prec-- > 0 && w >= work)
915
122k
      *w-- = '0';
916
122k
  }
917
918
218k
  if(is_alt && base == 16)
919
0
    width -= 2;
920
921
218k
  if(is_neg || (flags & FLAGS_SHOWSIGN) || (flags & FLAGS_SPACE))
922
29
    --width;
923
924
218k
  if(!(flags & FLAGS_LEFT) && !(flags & FLAGS_PAD_NIL)) {
925
218k
    if(stream_pad(userp, stream, streamn, ' ', width, donep))
926
0
      return TRUE;
927
218k
    width = 0;
928
218k
  }
929
930
218k
  if(is_neg)
931
29
    OUTCHAR('-');
932
218k
  else if(flags & FLAGS_SHOWSIGN)
933
0
    OUTCHAR('+');
934
218k
  else if(flags & FLAGS_SPACE)
935
0
    OUTCHAR(' ');
936
937
218k
  if(is_alt && base == 16) {
938
0
    OUTCHAR('0');
939
0
    if(flags & FLAGS_UPPER)
940
0
      OUTCHAR('X');
941
0
    else
942
0
      OUTCHAR('x');
943
0
  }
944
945
218k
  if(!(flags & FLAGS_LEFT) && (flags & FLAGS_PAD_NIL)) {
946
0
    if(stream_pad(userp, stream, streamn, '0', width, donep))
947
0
      return TRUE;
948
0
    width = 0;
949
0
  }
950
951
  /* Write the number. */
952
218k
  if(stream_run(userp, stream, streamn, (const unsigned char *)w + 1,
953
218k
                (size_t)(workend - w), donep))
954
71
    return TRUE;
955
956
218k
  if(flags & FLAGS_LEFT) {
957
0
    if(stream_pad(userp, stream, streamn, ' ', width, donep))
958
0
      return TRUE;
959
0
  }
960
961
218k
  return FALSE;
962
218k
}
963
964
static const char nilstr[] = "(nil)";
965
966
static bool out_string(void *userp,
967
                       int (*stream)(unsigned char, void *),
968
                       mp_streamn streamn,
969
                       struct mproperty *p,
970
                       const char *str,
971
                       int *donep)
972
453k
{
973
453k
  int flags = p->flags;
974
453k
  int width = p->width;
975
453k
  int prec = p->prec;
976
453k
  size_t len;
977
978
453k
  if(!str) {
979
    /* Write null string if there is space. */
980
0
    if(prec == -1 || prec >= (int)CURL_CSTRLEN(nilstr)) {
981
0
      str = nilstr;
982
0
      len = CURL_CSTRLEN(nilstr);
983
      /* Disable quotes around (nil) */
984
0
      flags &= ~(unsigned int)FLAGS_ALT;
985
0
    }
986
0
    else {
987
0
      str = "";
988
0
      len = 0;
989
0
    }
990
0
  }
991
453k
  else if(prec != -1)
992
29.0k
    len = (size_t)prec;
993
424k
  else if(*str == '\0')
994
243k
    len = 0;
995
180k
  else
996
180k
    len = strlen(str);
997
998
453k
  width -= (len > INT_MAX) ? INT_MAX : (int)len;
999
1000
453k
  if(flags & FLAGS_ALT)
1001
0
    OUTCHAR('"');
1002
1003
453k
  if(!(flags & FLAGS_LEFT)) {
1004
453k
    if(stream_pad(userp, stream, streamn, ' ', width, donep))
1005
0
      return TRUE;
1006
453k
    width = 0;
1007
453k
  }
1008
1009
453k
  if(stream_zrun(userp, stream, streamn, str, len, donep))
1010
736
    return TRUE;
1011
452k
  if(flags & FLAGS_LEFT) {
1012
0
    if(stream_pad(userp, stream, streamn, ' ', width, donep))
1013
0
      return TRUE;
1014
0
  }
1015
1016
452k
  if(flags & FLAGS_ALT)
1017
0
    OUTCHAR('"');
1018
1019
452k
  return FALSE;
1020
452k
}
1021
1022
static bool out_pointer(void *userp,
1023
                        int (*stream)(unsigned char, void *),
1024
                        mp_streamn streamn,
1025
                        struct mproperty *p,
1026
                        const char *ptr,
1027
                        char *work,
1028
                        int *donep)
1029
0
{
1030
  /* Generic pointer. */
1031
0
  if(ptr) {
1032
0
    size_t num = (size_t)ptr;
1033
1034
    /* If the pointer is not NULL, write it as a %#x spec. */
1035
0
    p->flags |= FLAGS_HEX | FLAGS_ALT;
1036
0
    if(out_number(userp, stream, streamn, p, num, 0, work, donep))
1037
0
      return TRUE;
1038
0
  }
1039
0
  else {
1040
    /* Write "(nil)" for a nil pointer. */
1041
0
    int width = p->width;
1042
0
    int flags = p->flags;
1043
1044
0
    width -= (int)CURL_CSTRLEN(nilstr);
1045
0
    if(flags & FLAGS_LEFT) {
1046
0
      if(stream_pad(userp, stream, streamn, ' ', width, donep))
1047
0
        return TRUE;
1048
0
      width = 0;
1049
0
    }
1050
0
    if(stream_run(userp, stream, streamn, (const unsigned char *)nilstr,
1051
0
                  sizeof(nilstr) - 1, donep))
1052
0
      return TRUE;
1053
0
    if(!(flags & FLAGS_LEFT)) {
1054
0
      if(stream_pad(userp, stream, streamn, ' ', width, donep))
1055
0
        return TRUE;
1056
0
    }
1057
0
  }
1058
0
  return FALSE;
1059
0
}
1060
1061
/*
1062
 * formatf() - the general printf function.
1063
 *
1064
 * It calls parsefmt() to parse the format string. It populates two arrays;
1065
 * one that describes the input arguments and one that describes a number of
1066
 * output segments.
1067
 *
1068
 * On success, the input array describes the type of all arguments and their
1069
 * values.
1070
 *
1071
 * The function then iterates over the output segments and outputs them one
1072
 * by one until done. Using the appropriate input arguments (if any).
1073
 *
1074
 * All output is sent to the 'stream()' callback, one byte at a time.
1075
 */
1076
static int formatf(void *userp, /* untouched by format(), sent to the
1077
                                   stream() function in the second argument */
1078
                   /* function pointer called for each output character */
1079
                   int (*stream)(unsigned char, void *),
1080
                   /* optional block-output function pointer */
1081
                   mp_streamn streamn,
1082
                   /* optional, commits output the sink is holding */
1083
                   mp_flush flush,
1084
                   const char *format, /* %-formatted string */
1085
                   va_list ap_save) /* list of parameters */
1086
222k
{
1087
222k
  int done = 0;   /* number of characters written */
1088
222k
  int i;
1089
222k
  int ocount = 0; /* number of output segments */
1090
222k
  int icount = 0; /* number of input arguments */
1091
1092
222k
  struct outsegment output[MAX_SEGMENTS];
1093
222k
  struct va_input input[MAX_PARAMETERS];
1094
222k
  char work[BUFFSIZE + 2];
1095
1096
  /* Parse the format string */
1097
222k
  if(parsefmt(format, output, input, &ocount, &icount, ap_save))
1098
0
    return 0;
1099
1100
1.02M
  for(i = 0; i < ocount; i++) {
1101
805k
    struct outsegment *optr = &output[i];
1102
805k
    struct va_input *iptr = &input[optr->input];
1103
805k
    struct mproperty p;
1104
805k
    size_t outlen = optr->outlen;
1105
1106
805k
    if(outlen) {
1107
389k
      if(stream_zrun(userp, stream, streamn, optr->start, outlen, &done))
1108
115
        return done;
1109
389k
      if(optr->flags & FLAGS_SUBSTR)
1110
        /* this is a substring */
1111
133k
        continue;
1112
389k
    }
1113
1114
672k
    p.flags = optr->flags;
1115
1116
    /* pick up the specified width */
1117
672k
    if(p.flags & FLAGS_WIDTHPARAM) {
1118
0
      p.width = (int)input[optr->width].val.nums;
1119
0
      if(p.width < 0) {
1120
        /* "A negative field width is taken as a '-' flag followed by a
1121
           positive field width." */
1122
0
        if(p.width == INT_MIN)
1123
0
          p.width = INT_MAX;
1124
0
        else
1125
0
          p.width = -p.width;
1126
0
        p.flags |= FLAGS_LEFT;
1127
0
        p.flags &= ~(unsigned int)FLAGS_PAD_NIL;
1128
0
      }
1129
0
    }
1130
672k
    else
1131
672k
      p.width = optr->width;
1132
1133
    /* pick up the specified precision */
1134
672k
    if(p.flags & FLAGS_PRECPARAM) {
1135
29.0k
      p.prec = (int)input[optr->precision].val.nums;
1136
29.0k
      if(p.prec < 0)
1137
        /* "A negative precision is taken as if the precision were
1138
           omitted." */
1139
0
        p.prec = -1;
1140
29.0k
    }
1141
642k
    else if(p.flags & FLAGS_PREC)
1142
0
      p.prec = optr->precision;
1143
642k
    else
1144
642k
      p.prec = -1;
1145
1146
672k
    switch(iptr->type) {
1147
44.3k
    case MTYPE_INTU:
1148
48.9k
    case MTYPE_LONGU:
1149
48.9k
    case MTYPE_LONGLONGU:
1150
48.9k
      p.flags |= FLAGS_UNSIGNED;
1151
48.9k
      if(out_number(userp, stream, streamn, &p, iptr->val.numu, 0, work,
1152
48.9k
                    &done))
1153
1
        return done;
1154
48.9k
      break;
1155
1156
88.9k
    case MTYPE_INT:
1157
169k
    case MTYPE_LONG:
1158
169k
    case MTYPE_LONGLONG:
1159
169k
      if(out_number(userp, stream, streamn, &p, iptr->val.numu,
1160
169k
                    iptr->val.nums, work, &done))
1161
70
        return done;
1162
169k
      break;
1163
1164
453k
    case MTYPE_STRING:
1165
453k
      if(out_string(userp, stream, streamn, &p, iptr->val.str, &done))
1166
736
        return done;
1167
452k
      break;
1168
1169
452k
    case MTYPE_PTR:
1170
0
      if(out_pointer(userp, stream, streamn, &p, iptr->val.ptr, work,
1171
0
                     &done))
1172
0
        return done;
1173
0
      break;
1174
1175
0
    case MTYPE_DOUBLE:
1176
0
    case MTYPE_LONGDOUBLE:
1177
0
      if(out_double(userp, stream, streamn, &p, iptr->val.dnum, work,
1178
0
                    &done))
1179
0
        return done;
1180
0
      break;
1181
1182
0
    case MTYPE_INTPTR:
1183
      /* %n is observable by the caller, so commit what is pending first and
1184
         perform it only if that succeeded, as a sink that never holds output
1185
         would. */
1186
0
      if(flush && flush(userp))
1187
0
        return done;
1188
      /* Answer the count of characters written. */
1189
0
      if(p.flags & FLAGS_LONGLONG)
1190
0
        *(int64_t *)iptr->val.ptr = (int64_t)done;
1191
0
      else if(p.flags & FLAGS_LONG)
1192
0
        *(long *)iptr->val.ptr = (long)done;
1193
0
      else if(!(p.flags & FLAGS_SHORT))
1194
0
        *(int *)iptr->val.ptr = done;
1195
0
      else
1196
0
        *(short *)iptr->val.ptr = (short)done;
1197
0
      break;
1198
1199
0
    default:
1200
0
      break;
1201
672k
    }
1202
672k
  }
1203
221k
  return done;
1204
222k
}
1205
1206
/* fputc() look-alike */
1207
static int addbyter(unsigned char outc, void *f)
1208
22
{
1209
22
  struct nsprintf *infop = f;
1210
22
  if(infop->length < infop->max) {
1211
    /* only do this if we have not reached max length yet */
1212
22
    *infop->buffer++ = (char)outc; /* store */
1213
22
    infop->length++; /* we are now one byte larger */
1214
22
    return 0;     /* fputc() returns like this on success */
1215
22
  }
1216
0
  return 1;
1217
22
}
1218
1219
/* block variant of addbyter */
1220
static size_t addrun(const unsigned char *buf, size_t len, void *f)
1221
495k
{
1222
495k
  struct nsprintf *infop = f;
1223
495k
  size_t fit = infop->max - infop->length;
1224
495k
  if(len > fit)
1225
922
    len = fit;
1226
495k
  if(len) {
1227
495k
    memcpy(infop->buffer, buf, len);
1228
495k
    infop->buffer += len;
1229
495k
    infop->length += len;
1230
495k
  }
1231
495k
  return len;
1232
495k
}
1233
1234
int curl_mvsnprintf(char *buffer, size_t maxlength, const char *format,
1235
                    va_list args)
1236
121k
{
1237
121k
  int retcode;
1238
121k
  struct nsprintf info;
1239
1240
121k
  info.buffer = buffer;
1241
121k
  info.length = 0;
1242
121k
  info.max = maxlength;
1243
1244
121k
  retcode = formatf(&info, addbyter, addrun, NULL, format, args);
1245
121k
  if(info.max) {
1246
    /* we terminate this with a zero byte */
1247
121k
    if(info.max == info.length) {
1248
      /* we are at maximum, scrap the last letter */
1249
923
      info.buffer[-1] = 0;
1250
923
      DEBUGASSERT(retcode);
1251
923
      retcode--; /* do not count the nul byte */
1252
923
    }
1253
120k
    else
1254
120k
      info.buffer[0] = 0;
1255
121k
  }
1256
121k
  return retcode;
1257
121k
}
1258
1259
int curl_msnprintf(char *buffer, size_t maxlength, const char *format, ...)
1260
96.2k
{
1261
96.2k
  int retcode;
1262
96.2k
  va_list args; /* argument pointer */
1263
96.2k
  va_start(args, format);
1264
96.2k
  retcode = curl_mvsnprintf(buffer, maxlength, format, args);
1265
96.2k
  va_end(args);
1266
96.2k
  return retcode;
1267
96.2k
}
1268
1269
/* append the staged bytes to the dynbuf. Returns 1 on failure (and sets
1270
   merr), 0 on success. */
1271
static int alloc_flush(void *f)
1272
114k
{
1273
114k
  struct asprintf *infop = f;
1274
114k
  if(infop->nstage) {
1275
114k
    CURLcode result = curlx_dyn_addn(infop->b, infop->stage, infop->nstage);
1276
114k
    infop->nstage = 0;
1277
114k
    if(result) {
1278
0
      infop->merr = result == CURLE_TOO_LARGE ? MERR_TOO_LARGE : MERR_MEM;
1279
0
      return 1; /* fail */
1280
0
    }
1281
114k
  }
1282
114k
  return 0;
1283
114k
}
1284
1285
/* append directly, bypassing the stage. Returns 1 on failure. */
1286
static int alloc_addn(struct asprintf *infop, const unsigned char *buf,
1287
                      size_t len)
1288
0
{
1289
0
  CURLcode result = curlx_dyn_addn(infop->b, buf, len);
1290
0
  if(result) {
1291
0
    infop->merr = result == CURLE_TOO_LARGE ? MERR_TOO_LARGE : MERR_MEM;
1292
0
    return 1; /* fail */
1293
0
  }
1294
0
  return 0;
1295
0
}
1296
1297
/* TRUE if 'more' additional bytes still fit the dynbuf size limit, counting
1298
   what is already staged. curlx_dyn_addn() rejects an append when
1299
   len + leng + 1 exceeds it. */
1300
static bool alloc_fits(struct asprintf *infop, size_t more)
1301
332k
{
1302
332k
  return (infop->b->leng + infop->nstage + more + 1) <= infop->b->toobig;
1303
332k
}
1304
1305
/* fputc() look-alike */
1306
static int alloc_addbyter(unsigned char outc, void *f)
1307
7
{
1308
7
  struct asprintf *infop = f;
1309
7
  if(infop->nstage == sizeof(infop->stage) && alloc_flush(infop))
1310
0
    return 1; /* fail */
1311
7
  if(!alloc_fits(infop, 1)) {
1312
    /* Does not fit the dynbuf size limit. Flush and append this byte on
1313
       its own, so the limit is reported at exactly this byte and formatting
1314
       stops where it would without staging. %n depends on that. */
1315
0
    if(alloc_flush(infop))
1316
0
      return 1;
1317
0
    return alloc_addn(infop, &outc, 1);
1318
0
  }
1319
7
  infop->stage[infop->nstage++] = outc;
1320
7
  return 0;
1321
7
}
1322
1323
/* block variant of alloc_addbyter */
1324
static size_t alloc_addrun(const unsigned char *buf, size_t len, void *f)
1325
317k
{
1326
317k
  struct asprintf *infop = f;
1327
317k
  size_t accepted = 0;
1328
650k
  while(accepted < len) {
1329
332k
    size_t room = sizeof(infop->stage) - infop->nstage;
1330
332k
    size_t n;
1331
332k
    if(!room) {
1332
15.0k
      if(alloc_flush(infop))
1333
0
        return accepted; /* accepted < len aborts formatting */
1334
15.0k
      room = sizeof(infop->stage);
1335
15.0k
    }
1336
332k
    n = len - accepted;
1337
332k
    if(n > room)
1338
14.9k
      n = room;
1339
332k
    if(!alloc_fits(infop, n)) {
1340
      /* Run does not fit the dynbuf size limit. Stage what does, then
1341
         append the first byte that does not on its own, so the limit is
1342
         reported at exactly that byte. */
1343
0
      size_t fits = infop->b->toobig - infop->b->leng - infop->nstage - 1;
1344
0
      if(fits) {
1345
0
        memcpy(&infop->stage[infop->nstage], buf + accepted, fits);
1346
0
        infop->nstage += fits;
1347
0
        accepted += fits;
1348
0
      }
1349
0
      if(alloc_flush(infop))
1350
0
        return accepted;
1351
0
      if(alloc_addn(infop, buf + accepted, 1))
1352
0
        return accepted; /* accepted < len aborts formatting */
1353
0
      accepted++;
1354
0
      continue;
1355
0
    }
1356
332k
    memcpy(&infop->stage[infop->nstage], buf + accepted, n);
1357
332k
    infop->nstage += n;
1358
332k
    accepted += n;
1359
332k
  }
1360
317k
  return accepted;
1361
317k
}
1362
1363
/* appends the formatted string, returns MERR error code */
1364
int curlx_dyn_vprintf(struct dynbuf *dyn, const char *format, va_list args)
1365
56.8k
{
1366
56.8k
  struct asprintf info;
1367
56.8k
  info.b = dyn;
1368
56.8k
  info.merr = MERR_OK;
1369
56.8k
  info.nstage = 0;
1370
1371
56.8k
  (void)formatf(&info, alloc_addbyter, alloc_addrun, alloc_flush,
1372
56.8k
                format, args);
1373
56.8k
  if(!info.merr)
1374
56.8k
    (void)alloc_flush(&info);
1375
56.8k
  if(info.merr) {
1376
0
    curlx_dyn_free(info.b);
1377
0
    return info.merr;
1378
0
  }
1379
56.8k
  return 0;
1380
56.8k
}
1381
1382
char *curl_mvaprintf(const char *format, va_list args)
1383
43.0k
{
1384
43.0k
  struct asprintf info;
1385
43.0k
  struct dynbuf dyn;
1386
43.0k
  info.b = &dyn;
1387
43.0k
  curlx_dyn_init(info.b, DYN_APRINTF);
1388
43.0k
  info.merr = MERR_OK;
1389
43.0k
  info.nstage = 0;
1390
1391
43.0k
  (void)formatf(&info, alloc_addbyter, alloc_addrun, alloc_flush,
1392
43.0k
                format, args);
1393
43.0k
  if(!info.merr)
1394
43.0k
    (void)alloc_flush(&info);
1395
43.0k
  if(info.merr) {
1396
0
    curlx_dyn_free(info.b);
1397
0
    return NULL;
1398
0
  }
1399
43.0k
  if(curlx_dyn_len(info.b))
1400
43.0k
    return curlx_dyn_ptr(info.b);
1401
0
  return curlx_strdup("");
1402
43.0k
}
1403
1404
char *curl_maprintf(const char *format, ...)
1405
43.0k
{
1406
43.0k
  va_list args;
1407
43.0k
  char *s;
1408
43.0k
  va_start(args, format);
1409
43.0k
  s = curl_mvaprintf(format, args);
1410
43.0k
  va_end(args);
1411
43.0k
  return s;
1412
43.0k
}
1413
1414
static int storebuffer(unsigned char outc, void *f)
1415
0
{
1416
0
  char **buffer = f;
1417
0
  **buffer = (char)outc;
1418
0
  (*buffer)++;
1419
0
  return 0;
1420
0
}
1421
1422
/* block variant of storebuffer */
1423
static size_t storerun(const unsigned char *buf, size_t len, void *f)
1424
0
{
1425
0
  char **buffer = f;
1426
0
  memcpy(*buffer, buf, len);
1427
0
  *buffer += len;
1428
0
  return len;
1429
0
}
1430
1431
int curl_msprintf(char *buffer, const char *format, ...)
1432
0
{
1433
0
  va_list args; /* argument pointer */
1434
0
  int retcode;
1435
0
  va_start(args, format);
1436
0
  retcode = formatf(&buffer, storebuffer, storerun, NULL, format, args);
1437
0
  va_end(args);
1438
0
  *buffer = 0; /* we terminate this with a zero byte */
1439
0
  return retcode;
1440
0
}
1441
1442
static int fputc_wrapper(unsigned char outc, void *f)
1443
0
{
1444
0
  int out = outc;
1445
0
  FILE *s = f;
1446
0
  int rc = fputc(out, s);
1447
0
  return rc == EOF;
1448
0
}
1449
1450
/* block variant of fputc_wrapper */
1451
static size_t fwrite_wrapper(const unsigned char *buf, size_t len, void *f)
1452
3.75k
{
1453
3.75k
  FILE *s = f;
1454
3.75k
  return fwrite(buf, 1, len, s);
1455
3.75k
}
1456
1457
int curl_mprintf(const char *format, ...)
1458
0
{
1459
0
  int retcode;
1460
0
  va_list args; /* argument pointer */
1461
0
  va_start(args, format);
1462
0
  retcode = formatf(stdout, fputc_wrapper, fwrite_wrapper, NULL, format, args);
1463
0
  va_end(args);
1464
0
  return retcode;
1465
0
}
1466
1467
int curl_mfprintf(FILE *fd, const char *format, ...)
1468
1.87k
{
1469
1.87k
  int retcode;
1470
1.87k
  va_list args; /* argument pointer */
1471
1.87k
  va_start(args, format);
1472
1.87k
  retcode = formatf(fd, fputc_wrapper, fwrite_wrapper, NULL, format, args);
1473
1.87k
  va_end(args);
1474
1.87k
  return retcode;
1475
1.87k
}
1476
1477
int curl_mvsprintf(char *buffer, const char *format, va_list args)
1478
0
{
1479
0
  int retcode = formatf(&buffer, storebuffer, storerun, NULL, format, args);
1480
0
  *buffer = 0; /* we terminate this with a zero byte */
1481
0
  return retcode;
1482
0
}
1483
1484
int curl_mvprintf(const char *format, va_list args)
1485
0
{
1486
0
  return formatf(stdout, fputc_wrapper, fwrite_wrapper, NULL, format, args);
1487
0
}
1488
1489
int curl_mvfprintf(FILE *fd, const char *format, va_list args)
1490
0
{
1491
  return formatf(fd, fputc_wrapper, fwrite_wrapper, NULL, format, args);
1492
0
}