Coverage Report

Created: 2024-10-06 07:21

/src/icu/source/common/punycode.cpp
Line
Count
Source (jump to first uncovered line)
1
// © 2016 and later: Unicode, Inc. and others.
2
// License & terms of use: http://www.unicode.org/copyright.html
3
/*
4
*******************************************************************************
5
*
6
*   Copyright (C) 2002-2011, International Business Machines
7
*   Corporation and others.  All Rights Reserved.
8
*
9
*******************************************************************************
10
*   file name:  punycode.cpp
11
*   encoding:   UTF-8
12
*   tab size:   8 (not used)
13
*   indentation:4
14
*
15
*   created on: 2002jan31
16
*   created by: Markus W. Scherer
17
*/
18
19
20
/* This ICU code derived from: */
21
/*
22
punycode.c 0.4.0 (2001-Nov-17-Sat)
23
http://www.cs.berkeley.edu/~amc/idn/
24
Adam M. Costello
25
http://www.nicemice.net/amc/
26
27
Disclaimer and license
28
29
    Regarding this entire document or any portion of it (including
30
    the pseudocode and C code), the author makes no guarantees and
31
    is not responsible for any damage resulting from its use.  The
32
    author grants irrevocable permission to anyone to use, modify,
33
    and distribute it in any way that does not diminish the rights
34
    of anyone else to use, modify, and distribute it, provided that
35
    redistributed derivative works do not contain misleading author or
36
    version information.  Derivative works need not be licensed under
37
    similar terms.
38
*/
39
/*
40
 * ICU modifications:
41
 * - ICU data types and coding conventions
42
 * - ICU string buffer handling with implicit source lengths
43
 *   and destination preflighting
44
 * - UTF-16 handling
45
 */
46
47
#include "unicode/utypes.h"
48
49
#if !UCONFIG_NO_IDNA
50
51
#include "unicode/ustring.h"
52
#include "unicode/utf.h"
53
#include "unicode/utf16.h"
54
#include "ustr_imp.h"
55
#include "cstring.h"
56
#include "cmemory.h"
57
#include "punycode.h"
58
#include "uassert.h"
59
60
61
/* Punycode ----------------------------------------------------------------- */
62
63
/* Punycode parameters for Bootstring */
64
56.3M
#define BASE            36
65
43.7M
#define TMIN            1
66
19.1M
#define TMAX            26
67
6.30M
#define SKEW            38
68
6.12M
#define DAMP            700
69
6.12M
#define INITIAL_BIAS    72
70
6.12M
#define INITIAL_N       0x80
71
72
/* "Basic" Unicode/ASCII code points */
73
193k
#define _HYPHEN         0X2d
74
193k
#define DELIMITER       _HYPHEN
75
76
5.50M
#define _ZERO_          0X30
77
#define _NINE           0x39
78
79
13.1M
#define _SMALL_A        0X61
80
0
#define _SMALL_Z        0X7a
81
82
0
#define _CAPITAL_A      0X41
83
0
#define _CAPITAL_Z      0X5a
84
85
6.42M
#define IS_BASIC(c) ((c)<0x80)
86
0
#define IS_BASIC_UPPERCASE(c) (_CAPITAL_A<=(c) && (c)<=_CAPITAL_Z)
87
88
/**
89
 * digitToBasic() returns the basic code point whose value
90
 * (when used for representing integers) is d, which must be in the
91
 * range 0 to BASE-1. The lowercase form is used unless the uppercase flag is
92
 * nonzero, in which case the uppercase form is used.
93
 */
94
static inline char
95
18.6M
digitToBasic(int32_t digit, UBool uppercase) {
96
    /*  0..25 map to ASCII a..z or A..Z */
97
    /* 26..35 map to ASCII 0..9         */
98
18.6M
    if(digit<26) {
99
13.1M
        if(uppercase) {
100
0
            return (char)(_CAPITAL_A+digit);
101
13.1M
        } else {
102
13.1M
            return (char)(_SMALL_A+digit);
103
13.1M
        }
104
13.1M
    } else {
105
5.50M
        return (char)((_ZERO_-26)+digit);
106
5.50M
    }
107
18.6M
}
108
109
/**
110
 * basicToDigit[] contains the numeric value of a basic code
111
 * point (for use in representing integers) in the range 0 to
112
 * BASE-1, or -1 if b is does not represent a value.
113
 */
114
static const int8_t
115
basicToDigit[256]={
116
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
117
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
118
119
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
120
    26, 27, 28, 29, 30, 31, 32, 33, 34, 35, -1, -1, -1, -1, -1, -1,
121
122
    -1,  0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14,
123
    15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, -1, -1, -1, -1, -1,
124
125
    -1,  0,  1,  2,  3,  4,  5,  6,  7,  8,  9, 10, 11, 12, 13, 14,
126
    15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, -1, -1, -1, -1, -1,
127
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
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
134
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
135
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
136
137
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1,
138
    -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1
139
};
140
141
static inline char
142
0
asciiCaseMap(char b, UBool uppercase) {
143
0
    if(uppercase) {
144
0
        if(_SMALL_A<=b && b<=_SMALL_Z) {
145
0
            b-=(_SMALL_A-_CAPITAL_A);
146
0
        }
147
0
    } else {
148
0
        if(_CAPITAL_A<=b && b<=_CAPITAL_Z) {
149
0
            b+=(_SMALL_A-_CAPITAL_A);
150
0
        }
151
0
    }
152
0
    return b;
153
0
}
154
155
/* Punycode-specific Bootstring code ---------------------------------------- */
156
157
/*
158
 * The following code omits the {parts} of the pseudo-algorithm in the spec
159
 * that are not used with the Punycode parameter set.
160
 */
161
162
/* Bias adaptation function. */
163
static int32_t
164
6.30M
adaptBias(int32_t delta, int32_t length, UBool firstTime) {
165
6.30M
    int32_t count;
166
167
6.30M
    if(firstTime) {
168
6.12M
        delta/=DAMP;
169
6.12M
    } else {
170
178k
        delta/=2;
171
178k
    }
172
173
6.30M
    delta+=delta/length;
174
6.35M
    for(count=0; delta>((BASE-TMIN)*TMAX)/2; count+=BASE) {
175
55.9k
        delta/=(BASE-TMIN);
176
55.9k
    }
177
178
6.30M
    return count+(((BASE-TMIN+1)*delta)/(delta+SKEW));
179
6.30M
}
180
181
12.6M
#define MAX_CP_COUNT    200
182
183
U_CFUNC int32_t
184
u_strToPunycode(const UChar *src, int32_t srcLength,
185
                UChar *dest, int32_t destCapacity,
186
                const UBool *caseFlags,
187
6.11M
                UErrorCode *pErrorCode) {
188
189
6.11M
    int32_t cpBuffer[MAX_CP_COUNT];
190
6.11M
    int32_t n, delta, handledCPCount, basicLength, destLength, bias, j, m, q, k, t, srcCPCount;
191
6.11M
    UChar c, c2;
192
193
    /* argument checking */
194
6.11M
    if(pErrorCode==NULL || U_FAILURE(*pErrorCode)) {
195
0
        return 0;
196
0
    }
197
198
6.11M
    if(src==NULL || srcLength<-1 || (dest==NULL && destCapacity!=0)) {
199
0
        *pErrorCode=U_ILLEGAL_ARGUMENT_ERROR;
200
0
        return 0;
201
0
    }
202
203
    /*
204
     * Handle the basic code points and
205
     * convert extended ones to UTF-32 in cpBuffer (caseFlag in sign bit):
206
     */
207
6.11M
    srcCPCount=destLength=0;
208
6.11M
    if(srcLength==-1) {
209
        /* NUL-terminated input */
210
0
        for(j=0; /* no condition */; ++j) {
211
0
            if((c=src[j])==0) {
212
0
                break;
213
0
            }
214
0
            if(srcCPCount==MAX_CP_COUNT) {
215
                /* too many input code points */
216
0
                *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
217
0
                return 0;
218
0
            }
219
0
            if(IS_BASIC(c)) {
220
0
                cpBuffer[srcCPCount++]=0;
221
0
                if(destLength<destCapacity) {
222
0
                    dest[destLength]=
223
0
                        caseFlags!=NULL ?
224
0
                            asciiCaseMap((char)c, caseFlags[j]) :
225
0
                            (char)c;
226
0
                }
227
0
                ++destLength;
228
0
            } else {
229
0
                n=(caseFlags!=NULL && caseFlags[j])<<31L;
230
0
                if(U16_IS_SINGLE(c)) {
231
0
                    n|=c;
232
0
                } else if(U16_IS_LEAD(c) && U16_IS_TRAIL(c2=src[j+1])) {
233
0
                    ++j;
234
0
                    n|=(int32_t)U16_GET_SUPPLEMENTARY(c, c2);
235
0
                } else {
236
                    /* error: unmatched surrogate */
237
0
                    *pErrorCode=U_INVALID_CHAR_FOUND;
238
0
                    return 0;
239
0
                }
240
0
                cpBuffer[srcCPCount++]=n;
241
0
            }
242
0
        }
243
6.11M
    } else {
244
        /* length-specified input */
245
12.5M
        for(j=0; j<srcLength; ++j) {
246
6.42M
            if(srcCPCount==MAX_CP_COUNT) {
247
                /* too many input code points */
248
212
                *pErrorCode=U_INDEX_OUTOFBOUNDS_ERROR;
249
212
                return 0;
250
212
            }
251
6.42M
            c=src[j];
252
6.42M
            if(IS_BASIC(c)) {
253
179k
                cpBuffer[srcCPCount++]=0;
254
179k
                if(destLength<destCapacity) {
255
155k
                    dest[destLength]=
256
155k
                        caseFlags!=NULL ?
257
0
                            asciiCaseMap((char)c, caseFlags[j]) :
258
155k
                            (char)c;
259
155k
                }
260
179k
                ++destLength;
261
6.24M
            } else {
262
6.24M
                n=(caseFlags!=NULL && caseFlags[j])<<31L;
263
6.24M
                if(U16_IS_SINGLE(c)) {
264
6.24M
                    n|=c;
265
6.24M
                } else if(U16_IS_LEAD(c) && (j+1)<srcLength && U16_IS_TRAIL(c2=src[j+1])) {
266
1.38k
                    ++j;
267
1.38k
                    n|=(int32_t)U16_GET_SUPPLEMENTARY(c, c2);
268
1.38k
                } else {
269
                    /* error: unmatched surrogate */
270
0
                    *pErrorCode=U_INVALID_CHAR_FOUND;
271
0
                    return 0;
272
0
                }
273
6.24M
                cpBuffer[srcCPCount++]=n;
274
6.24M
            }
275
6.42M
        }
276
6.11M
    }
277
278
    /* Finish the basic string - if it is not empty - with a delimiter. */
279
6.11M
    basicLength=destLength;
280
6.11M
    if(basicLength>0) {
281
83.1k
        if(destLength<destCapacity) {
282
82.9k
            dest[destLength]=DELIMITER;
283
82.9k
        }
284
83.1k
        ++destLength;
285
83.1k
    }
286
287
    /*
288
     * handledCPCount is the number of code points that have been handled
289
     * basicLength is the number of basic code points
290
     * destLength is the number of chars that have been output
291
     */
292
293
    /* Initialize the state: */
294
6.11M
    n=INITIAL_N;
295
6.11M
    delta=0;
296
6.11M
    bias=INITIAL_BIAS;
297
298
    /* Main encoding loop: */
299
12.3M
    for(handledCPCount=basicLength; handledCPCount<srcCPCount; /* no op */) {
300
        /*
301
         * All non-basic code points < n have been handled already.
302
         * Find the next larger one:
303
         */
304
13.8M
        for(m=0x7fffffff, j=0; j<srcCPCount; ++j) {
305
7.68M
            q=cpBuffer[j]&0x7fffffff; /* remove case flag from the sign bit */
306
7.68M
            if(n<=q && q<m) {
307
6.32M
                m=q;
308
6.32M
            }
309
7.68M
        }
310
311
        /*
312
         * Increase delta enough to advance the decoder's
313
         * <n,i> state to <m,0>, but guard against overflow:
314
         */
315
6.20M
        if(m-n>(0x7fffffff-MAX_CP_COUNT-delta)/(handledCPCount+1)) {
316
0
            *pErrorCode=U_INTERNAL_PROGRAM_ERROR;
317
0
            return 0;
318
0
        }
319
6.20M
        delta+=(m-n)*(handledCPCount+1);
320
6.20M
        n=m;
321
322
        /* Encode a sequence of same code points n */
323
13.8M
        for(j=0; j<srcCPCount; ++j) {
324
7.68M
            q=cpBuffer[j]&0x7fffffff; /* remove case flag from the sign bit */
325
7.68M
            if(q<n) {
326
887k
                ++delta;
327
6.79M
            } else if(q==n) {
328
                /* Represent delta as a generalized variable-length integer: */
329
18.6M
                for(q=delta, k=BASE; /* no condition */; k+=BASE) {
330
331
                    /** RAM: comment out the old code for conformance with draft-ietf-idn-punycode-03.txt
332
333
                    t=k-bias;
334
                    if(t<TMIN) {
335
                        t=TMIN;
336
                    } else if(t>TMAX) {
337
                        t=TMAX;
338
                    }
339
                    */
340
341
18.6M
                    t=k-bias;
342
18.6M
                    if(t<TMIN) {
343
12.2M
                        t=TMIN;
344
12.2M
                    } else if(k>=(bias+TMAX)) {
345
6.30M
                        t=TMAX;
346
6.30M
                    }
347
348
18.6M
                    if(q<t) {
349
6.23M
                        break;
350
6.23M
                    }
351
352
12.3M
                    if(destLength<destCapacity) {
353
12.3M
                        dest[destLength]=digitToBasic(t+(q-t)%(BASE-t), 0);
354
12.3M
                    }
355
12.3M
                    ++destLength;
356
12.3M
                    q=(q-t)/(BASE-t);
357
12.3M
                }
358
359
6.23M
                if(destLength<destCapacity) {
360
6.23M
                    dest[destLength]=digitToBasic(q, (UBool)(cpBuffer[j]<0));
361
6.23M
                }
362
6.23M
                ++destLength;
363
6.23M
                bias=adaptBias(delta, handledCPCount+1, (UBool)(handledCPCount==basicLength));
364
6.23M
                delta=0;
365
6.23M
                ++handledCPCount;
366
6.23M
            }
367
7.68M
        }
368
369
6.20M
        ++delta;
370
6.20M
        ++n;
371
6.20M
    }
372
373
6.11M
    return u_terminateUChars(dest, destCapacity, destLength, pErrorCode);
374
6.11M
}
375
376
U_CFUNC int32_t
377
u_strFromPunycode(const UChar *src, int32_t srcLength,
378
                  UChar *dest, int32_t destCapacity,
379
                  UBool *caseFlags,
380
8.27k
                  UErrorCode *pErrorCode) {
381
8.27k
    int32_t n, destLength, i, bias, basicLength, j, in, oldi, w, k, digit, t,
382
8.27k
            destCPCount, firstSupplementaryIndex, cpLength;
383
8.27k
    UChar b;
384
385
    /* argument checking */
386
8.27k
    if(pErrorCode==NULL || U_FAILURE(*pErrorCode)) {
387
0
        return 0;
388
0
    }
389
390
8.27k
    if(src==NULL || srcLength<-1 || (dest==NULL && destCapacity!=0)) {
391
0
        *pErrorCode=U_ILLEGAL_ARGUMENT_ERROR;
392
0
        return 0;
393
0
    }
394
395
8.27k
    if(srcLength==-1) {
396
0
        srcLength=u_strlen(src);
397
0
    }
398
399
    /*
400
     * Handle the basic code points:
401
     * Let basicLength be the number of input code points
402
     * before the last delimiter, or 0 if there is none,
403
     * then copy the first basicLength code points to the output.
404
     *
405
     * The two following loops iterate backward.
406
     */
407
117k
    for(j=srcLength; j>0;) {
408
110k
        if(src[--j]==DELIMITER) {
409
1.30k
            break;
410
1.30k
        }
411
110k
    }
412
8.27k
    destLength=basicLength=destCPCount=j;
413
8.27k
    U_ASSERT(destLength>=0);
414
415
10.7k
    while(j>0) {
416
2.74k
        b=src[--j];
417
2.74k
        if(!IS_BASIC(b)) {
418
237
            *pErrorCode=U_INVALID_CHAR_FOUND;
419
237
            return 0;
420
237
        }
421
422
2.50k
        if(j<destCapacity) {
423
1.95k
            dest[j]=(UChar)b;
424
425
1.95k
            if(caseFlags!=NULL) {
426
0
                caseFlags[j]=IS_BASIC_UPPERCASE(b);
427
0
            }
428
1.95k
        }
429
2.50k
    }
430
431
    /* Initialize the state: */
432
8.04k
    n=INITIAL_N;
433
8.04k
    i=0;
434
8.04k
    bias=INITIAL_BIAS;
435
8.04k
    firstSupplementaryIndex=1000000000;
436
437
    /*
438
     * Main decoding loop:
439
     * Start just after the last delimiter if any
440
     * basic code points were copied; start at the beginning otherwise.
441
     */
442
74.3k
    for(in=basicLength>0 ? basicLength+1 : 0; in<srcLength; /* no op */) {
443
        /*
444
         * in is the index of the next character to be consumed, and
445
         * destCPCount is the number of code points in the output array.
446
         *
447
         * Decode a generalized variable-length integer into delta,
448
         * which gets added to i.  The overflow checking is easier
449
         * if we increase i as we go, then subtract off its starting
450
         * value at the end to obtain delta.
451
         */
452
103k
        for(oldi=i, w=1, k=BASE; /* no condition */; k+=BASE) {
453
103k
            if(in>=srcLength) {
454
653
                *pErrorCode=U_ILLEGAL_CHAR_FOUND;
455
653
                return 0;
456
653
            }
457
458
103k
            digit=basicToDigit[(uint8_t)src[in++]];
459
103k
            if(digit<0) {
460
1.21k
                *pErrorCode=U_INVALID_CHAR_FOUND;
461
1.21k
                return 0;
462
1.21k
            }
463
101k
            if(digit>(0x7fffffff-i)/w) {
464
                /* integer overflow */
465
345
                *pErrorCode=U_ILLEGAL_CHAR_FOUND;
466
345
                return 0;
467
345
            }
468
469
101k
            i+=digit*w;
470
            /** RAM: comment out the old code for conformance with draft-ietf-idn-punycode-03.txt  
471
            t=k-bias;
472
            if(t<TMIN) {
473
                t=TMIN;
474
            } else if(t>TMAX) {
475
                t=TMAX;
476
            }
477
            */
478
101k
            t=k-bias;
479
101k
            if(t<TMIN) {
480
14.2k
                t=TMIN;
481
87.4k
            } else if(k>=(bias+TMAX)) {
482
72.5k
                t=TMAX;
483
72.5k
            }
484
101k
            if(digit<t) {
485
66.9k
                break;
486
66.9k
            }
487
488
34.6k
            if(w>0x7fffffff/(BASE-t)) {
489
                /* integer overflow */
490
0
                *pErrorCode=U_ILLEGAL_CHAR_FOUND;
491
0
                return 0;
492
0
            }
493
34.6k
            w*=BASE-t;
494
34.6k
        }
495
496
        /*
497
         * Modification from sample code:
498
         * Increments destCPCount here,
499
         * where needed instead of in for() loop tail.
500
         */
501
66.9k
        ++destCPCount;
502
66.9k
        bias=adaptBias(i-oldi, destCPCount, (UBool)(oldi==0));
503
504
        /*
505
         * i was supposed to wrap around from (incremented) destCPCount to 0,
506
         * incrementing n each time, so we'll fix that now:
507
         */
508
66.9k
        if(i/destCPCount>(0x7fffffff-n)) {
509
            /* integer overflow */
510
230
            *pErrorCode=U_ILLEGAL_CHAR_FOUND;
511
230
            return 0;
512
230
        }
513
514
66.7k
        n+=i/destCPCount;
515
66.7k
        i%=destCPCount;
516
        /* not needed for Punycode: */
517
        /* if (decode_digit(n) <= BASE) return punycode_invalid_input; */
518
519
66.7k
        if(n>0x10ffff || U_IS_SURROGATE(n)) {
520
            /* Unicode code point overflow */
521
442
            *pErrorCode=U_ILLEGAL_CHAR_FOUND;
522
442
            return 0;
523
442
        }
524
525
        /* Insert n at position i of the output: */
526
66.3k
        cpLength=U16_LENGTH(n);
527
66.3k
        if(dest!=NULL && ((destLength+cpLength)<=destCapacity)) {
528
55.8k
            int32_t codeUnitIndex;
529
530
            /*
531
             * Handle indexes when supplementary code points are present.
532
             *
533
             * In almost all cases, there will be only BMP code points before i
534
             * and even in the entire string.
535
             * This is handled with the same efficiency as with UTF-32.
536
             *
537
             * Only the rare cases with supplementary code points are handled
538
             * more slowly - but not too bad since this is an insertion anyway.
539
             */
540
55.8k
            if(i<=firstSupplementaryIndex) {
541
33.9k
                codeUnitIndex=i;
542
33.9k
                if(cpLength>1) {
543
3.63k
                    firstSupplementaryIndex=codeUnitIndex;
544
30.2k
                } else {
545
30.2k
                    ++firstSupplementaryIndex;
546
30.2k
                }
547
33.9k
            } else {
548
21.8k
                codeUnitIndex=firstSupplementaryIndex;
549
21.8k
                U16_FWD_N(dest, codeUnitIndex, destLength, i-codeUnitIndex);
550
21.8k
            }
551
552
            /* use the UChar index codeUnitIndex instead of the code point index i */
553
55.8k
            if(codeUnitIndex<destLength) {
554
35.6k
                uprv_memmove(dest+codeUnitIndex+cpLength,
555
35.6k
                             dest+codeUnitIndex,
556
35.6k
                             (destLength-codeUnitIndex)*U_SIZEOF_UCHAR);
557
35.6k
                if(caseFlags!=NULL) {
558
0
                    uprv_memmove(caseFlags+codeUnitIndex+cpLength,
559
0
                                 caseFlags+codeUnitIndex,
560
0
                                 destLength-codeUnitIndex);
561
0
                }
562
35.6k
            }
563
55.8k
            if(cpLength==1) {
564
                /* BMP, insert one code unit */
565
30.2k
                dest[codeUnitIndex]=(UChar)n;
566
30.2k
            } else {
567
                /* supplementary character, insert two code units */
568
25.5k
                dest[codeUnitIndex]=U16_LEAD(n);
569
25.5k
                dest[codeUnitIndex+1]=U16_TRAIL(n);
570
25.5k
            }
571
55.8k
            if(caseFlags!=NULL) {
572
                /* Case of last character determines uppercase flag: */
573
0
                caseFlags[codeUnitIndex]=IS_BASIC_UPPERCASE(src[in-1]);
574
0
                if(cpLength==2) {
575
0
                    caseFlags[codeUnitIndex+1]=FALSE;
576
0
                }
577
0
            }
578
55.8k
        }
579
66.3k
        destLength+=cpLength;
580
66.3k
        U_ASSERT(destLength>=0);
581
66.3k
        ++i;
582
66.3k
    }
583
584
5.16k
    return u_terminateUChars(dest, destCapacity, destLength, pErrorCode);
585
8.04k
}
586
587
/* ### check notes on overflow handling - only necessary if not IDNA? are these Punycode functions to be public? */
588
589
#endif /* #if !UCONFIG_NO_IDNA */