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b75a7d8f A |
1 | /* |
2 | ****************************************************************************** | |
3 | * | |
b331163b | 4 | * Copyright (C) 2002-2015, International Business Machines |
b75a7d8f A |
5 | * Corporation and others. All Rights Reserved. |
6 | * | |
7 | ****************************************************************************** | |
8 | * file name: bocu1tst.c | |
9 | * encoding: US-ASCII | |
10 | * tab size: 8 (not used) | |
11 | * indentation:4 | |
12 | * | |
13 | * created on: 2002may27 | |
14 | * created by: Markus W. Scherer | |
15 | * | |
16 | * This is the reference implementation of BOCU-1, | |
17 | * the MIME-friendly form of the Binary Ordered Compression for Unicode, | |
46f4442e | 18 | * taken directly from ### http://source.icu-project.org/repos/icu/icuhtml/trunk/design/conversion/bocu1/ |
b75a7d8f A |
19 | * The files bocu1.h and bocu1.c from the design folder are taken |
20 | * verbatim (minus copyright and #include) and copied together into this file. | |
21 | * The reference code and some of the reference bocu1tst.c | |
22 | * is modified to run as part of the ICU cintltst | |
23 | * test framework (minus main(), log_ln() etc. instead of printf()). | |
24 | * | |
25 | * This reference implementation is used here to verify | |
26 | * the ICU BOCU-1 implementation, which is | |
27 | * adapted for ICU conversion APIs and optimized. | |
28 | * ### links in design doc to here and to ucnvbocu.c | |
29 | */ | |
30 | ||
31 | #include "unicode/utypes.h" | |
32 | #include "unicode/ustring.h" | |
33 | #include "unicode/ucnv.h" | |
4388f060 | 34 | #include "unicode/utf16.h" |
b75a7d8f A |
35 | #include "cmemory.h" |
36 | #include "cintltst.h" | |
37 | ||
b75a7d8f A |
38 | /* icuhtml/design/conversion/bocu1/bocu1.h ---------------------------------- */ |
39 | ||
40 | /* BOCU-1 constants and macros ---------------------------------------------- */ | |
41 | ||
42 | /* | |
43 | * BOCU-1 encodes the code points of a Unicode string as | |
44 | * a sequence of byte-encoded differences (slope detection), | |
45 | * preserving lexical order. | |
46 | * | |
47 | * Optimize the difference-taking for runs of Unicode text within | |
48 | * small scripts: | |
49 | * | |
50 | * Most small scripts are allocated within aligned 128-blocks of Unicode | |
51 | * code points. Lexical order is preserved if the "previous code point" state | |
52 | * is always moved into the middle of such a block. | |
53 | * | |
54 | * Additionally, "prev" is moved from anywhere in the Unihan and Hangul | |
55 | * areas into the middle of those areas. | |
56 | * | |
57 | * C0 control codes and space are encoded with their US-ASCII bytes. | |
58 | * "prev" is reset for C0 controls but not for space. | |
59 | */ | |
60 | ||
61 | /* initial value for "prev": middle of the ASCII range */ | |
62 | #define BOCU1_ASCII_PREV 0x40 | |
63 | ||
64 | /* bounding byte values for differences */ | |
65 | #define BOCU1_MIN 0x21 | |
66 | #define BOCU1_MIDDLE 0x90 | |
67 | #define BOCU1_MAX_LEAD 0xfe | |
374ca955 A |
68 | |
69 | /* add the L suffix to make computations with BOCU1_MAX_TRAIL work on 16-bit compilers */ | |
70 | #define BOCU1_MAX_TRAIL 0xffL | |
b75a7d8f A |
71 | #define BOCU1_RESET 0xff |
72 | ||
73 | /* number of lead bytes */ | |
74 | #define BOCU1_COUNT (BOCU1_MAX_LEAD-BOCU1_MIN+1) | |
75 | ||
76 | /* adjust trail byte counts for the use of some C0 control byte values */ | |
77 | #define BOCU1_TRAIL_CONTROLS_COUNT 20 | |
78 | #define BOCU1_TRAIL_BYTE_OFFSET (BOCU1_MIN-BOCU1_TRAIL_CONTROLS_COUNT) | |
79 | ||
80 | /* number of trail bytes */ | |
81 | #define BOCU1_TRAIL_COUNT ((BOCU1_MAX_TRAIL-BOCU1_MIN+1)+BOCU1_TRAIL_CONTROLS_COUNT) | |
82 | ||
83 | /* | |
84 | * number of positive and negative single-byte codes | |
85 | * (counting 0==BOCU1_MIDDLE among the positive ones) | |
86 | */ | |
87 | #define BOCU1_SINGLE 64 | |
88 | ||
89 | /* number of lead bytes for positive and negative 2/3/4-byte sequences */ | |
90 | #define BOCU1_LEAD_2 43 | |
91 | #define BOCU1_LEAD_3 3 | |
92 | #define BOCU1_LEAD_4 1 | |
93 | ||
94 | /* The difference value range for single-byters. */ | |
95 | #define BOCU1_REACH_POS_1 (BOCU1_SINGLE-1) | |
96 | #define BOCU1_REACH_NEG_1 (-BOCU1_SINGLE) | |
97 | ||
98 | /* The difference value range for double-byters. */ | |
99 | #define BOCU1_REACH_POS_2 (BOCU1_REACH_POS_1+BOCU1_LEAD_2*BOCU1_TRAIL_COUNT) | |
100 | #define BOCU1_REACH_NEG_2 (BOCU1_REACH_NEG_1-BOCU1_LEAD_2*BOCU1_TRAIL_COUNT) | |
101 | ||
102 | /* The difference value range for 3-byters. */ | |
103 | #define BOCU1_REACH_POS_3 \ | |
104 | (BOCU1_REACH_POS_2+BOCU1_LEAD_3*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT) | |
105 | ||
106 | #define BOCU1_REACH_NEG_3 (BOCU1_REACH_NEG_2-BOCU1_LEAD_3*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT) | |
107 | ||
108 | /* The lead byte start values. */ | |
109 | #define BOCU1_START_POS_2 (BOCU1_MIDDLE+BOCU1_REACH_POS_1+1) | |
110 | #define BOCU1_START_POS_3 (BOCU1_START_POS_2+BOCU1_LEAD_2) | |
111 | #define BOCU1_START_POS_4 (BOCU1_START_POS_3+BOCU1_LEAD_3) | |
112 | /* ==BOCU1_MAX_LEAD */ | |
113 | ||
114 | #define BOCU1_START_NEG_2 (BOCU1_MIDDLE+BOCU1_REACH_NEG_1) | |
115 | #define BOCU1_START_NEG_3 (BOCU1_START_NEG_2-BOCU1_LEAD_2) | |
116 | #define BOCU1_START_NEG_4 (BOCU1_START_NEG_3-BOCU1_LEAD_3) | |
117 | /* ==BOCU1_MIN+1 */ | |
118 | ||
119 | /* The length of a byte sequence, according to the lead byte (!=BOCU1_RESET). */ | |
120 | #define BOCU1_LENGTH_FROM_LEAD(lead) \ | |
121 | ((BOCU1_START_NEG_2<=(lead) && (lead)<BOCU1_START_POS_2) ? 1 : \ | |
122 | (BOCU1_START_NEG_3<=(lead) && (lead)<BOCU1_START_POS_3) ? 2 : \ | |
123 | (BOCU1_START_NEG_4<=(lead) && (lead)<BOCU1_START_POS_4) ? 3 : 4) | |
124 | ||
125 | /* The length of a byte sequence, according to its packed form. */ | |
126 | #define BOCU1_LENGTH_FROM_PACKED(packed) \ | |
127 | ((uint32_t)(packed)<0x04000000 ? (packed)>>24 : 4) | |
128 | ||
129 | /* | |
130 | * 12 commonly used C0 control codes (and space) are only used to encode | |
131 | * themselves directly, | |
132 | * which makes BOCU-1 MIME-usable and reasonably safe for | |
133 | * ASCII-oriented software. | |
134 | * | |
135 | * These controls are | |
136 | * 0 NUL | |
137 | * | |
138 | * 7 BEL | |
139 | * 8 BS | |
140 | * | |
141 | * 9 TAB | |
142 | * a LF | |
143 | * b VT | |
144 | * c FF | |
145 | * d CR | |
146 | * | |
147 | * e SO | |
148 | * f SI | |
149 | * | |
150 | * 1a SUB | |
151 | * 1b ESC | |
152 | * | |
153 | * The other 20 C0 controls are also encoded directly (to preserve order) | |
154 | * but are also used as trail bytes in difference encoding | |
155 | * (for better compression). | |
156 | */ | |
157 | #define BOCU1_TRAIL_TO_BYTE(t) ((t)>=BOCU1_TRAIL_CONTROLS_COUNT ? (t)+BOCU1_TRAIL_BYTE_OFFSET : bocu1TrailToByte[t]) | |
158 | ||
159 | /* | |
160 | * Byte value map for control codes, | |
161 | * from external byte values 0x00..0x20 | |
162 | * to trail byte values 0..19 (0..0x13) as used in the difference calculation. | |
163 | * External byte values that are illegal as trail bytes are mapped to -1. | |
164 | */ | |
46f4442e | 165 | static const int8_t |
b75a7d8f A |
166 | bocu1ByteToTrail[BOCU1_MIN]={ |
167 | /* 0 1 2 3 4 5 6 7 */ | |
168 | -1, 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, -1, | |
169 | ||
170 | /* 8 9 a b c d e f */ | |
171 | -1, -1, -1, -1, -1, -1, -1, -1, | |
172 | ||
173 | /* 10 11 12 13 14 15 16 17 */ | |
174 | 0x06, 0x07, 0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, | |
175 | ||
176 | /* 18 19 1a 1b 1c 1d 1e 1f */ | |
177 | 0x0e, 0x0f, -1, -1, 0x10, 0x11, 0x12, 0x13, | |
178 | ||
179 | /* 20 */ | |
180 | -1 | |
181 | }; | |
182 | ||
183 | /* | |
184 | * Byte value map for control codes, | |
185 | * from trail byte values 0..19 (0..0x13) as used in the difference calculation | |
186 | * to external byte values 0x00..0x20. | |
187 | */ | |
46f4442e | 188 | static const int8_t |
b75a7d8f A |
189 | bocu1TrailToByte[BOCU1_TRAIL_CONTROLS_COUNT]={ |
190 | /* 0 1 2 3 4 5 6 7 */ | |
191 | 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x10, 0x11, | |
192 | ||
193 | /* 8 9 a b c d e f */ | |
194 | 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18, 0x19, | |
195 | ||
196 | /* 10 11 12 13 */ | |
197 | 0x1c, 0x1d, 0x1e, 0x1f | |
198 | }; | |
199 | ||
200 | /** | |
201 | * Integer division and modulo with negative numerators | |
202 | * yields negative modulo results and quotients that are one more than | |
203 | * what we need here. | |
204 | * This macro adjust the results so that the modulo-value m is always >=0. | |
205 | * | |
206 | * For positive n, the if() condition is always FALSE. | |
207 | * | |
208 | * @param n Number to be split into quotient and rest. | |
209 | * Will be modified to contain the quotient. | |
210 | * @param d Divisor. | |
211 | * @param m Output variable for the rest (modulo result). | |
212 | */ | |
213 | #define NEGDIVMOD(n, d, m) { \ | |
214 | (m)=(n)%(d); \ | |
215 | (n)/=(d); \ | |
216 | if((m)<0) { \ | |
217 | --(n); \ | |
218 | (m)+=(d); \ | |
219 | } \ | |
220 | } | |
221 | ||
222 | /* State for BOCU-1 decoder function. */ | |
223 | struct Bocu1Rx { | |
224 | int32_t prev, count, diff; | |
225 | }; | |
226 | ||
227 | typedef struct Bocu1Rx Bocu1Rx; | |
228 | ||
229 | /* Function prototypes ------------------------------------------------------ */ | |
230 | ||
231 | /* see bocu1.c */ | |
232 | U_CFUNC int32_t | |
233 | packDiff(int32_t diff); | |
234 | ||
235 | U_CFUNC int32_t | |
236 | encodeBocu1(int32_t *pPrev, int32_t c); | |
237 | ||
238 | U_CFUNC int32_t | |
239 | decodeBocu1(Bocu1Rx *pRx, uint8_t b); | |
240 | ||
241 | /* icuhtml/design/conversion/bocu1/bocu1.c ---------------------------------- */ | |
242 | ||
243 | /* BOCU-1 implementation functions ------------------------------------------ */ | |
244 | ||
245 | /** | |
246 | * Compute the next "previous" value for differencing | |
247 | * from the current code point. | |
248 | * | |
249 | * @param c current code point, 0..0x10ffff | |
250 | * @return "previous code point" state value | |
251 | */ | |
4388f060 | 252 | static int32_t |
b75a7d8f A |
253 | bocu1Prev(int32_t c) { |
254 | /* compute new prev */ | |
255 | if(0x3040<=c && c<=0x309f) { | |
256 | /* Hiragana is not 128-aligned */ | |
257 | return 0x3070; | |
258 | } else if(0x4e00<=c && c<=0x9fa5) { | |
259 | /* CJK Unihan */ | |
260 | return 0x4e00-BOCU1_REACH_NEG_2; | |
261 | } else if(0xac00<=c && c<=0xd7a3) { | |
374ca955 A |
262 | /* Korean Hangul (cast to int32_t to avoid wraparound on 16-bit compilers) */ |
263 | return ((int32_t)0xd7a3+(int32_t)0xac00)/2; | |
b75a7d8f A |
264 | } else { |
265 | /* mostly small scripts */ | |
266 | return (c&~0x7f)+BOCU1_ASCII_PREV; | |
267 | } | |
268 | } | |
269 | ||
270 | /** | |
271 | * Encode a difference -0x10ffff..0x10ffff in 1..4 bytes | |
272 | * and return a packed integer with them. | |
273 | * | |
274 | * The encoding favors small absolut differences with short encodings | |
275 | * to compress runs of same-script characters. | |
276 | * | |
277 | * @param diff difference value -0x10ffff..0x10ffff | |
278 | * @return | |
279 | * 0x010000zz for 1-byte sequence zz | |
280 | * 0x0200yyzz for 2-byte sequence yy zz | |
281 | * 0x03xxyyzz for 3-byte sequence xx yy zz | |
282 | * 0xwwxxyyzz for 4-byte sequence ww xx yy zz (ww>0x03) | |
283 | */ | |
284 | U_CFUNC int32_t | |
285 | packDiff(int32_t diff) { | |
286 | int32_t result, m, lead, count, shift; | |
287 | ||
288 | if(diff>=BOCU1_REACH_NEG_1) { | |
289 | /* mostly positive differences, and single-byte negative ones */ | |
290 | if(diff<=BOCU1_REACH_POS_1) { | |
291 | /* single byte */ | |
292 | return 0x01000000|(BOCU1_MIDDLE+diff); | |
293 | } else if(diff<=BOCU1_REACH_POS_2) { | |
294 | /* two bytes */ | |
295 | diff-=BOCU1_REACH_POS_1+1; | |
296 | lead=BOCU1_START_POS_2; | |
297 | count=1; | |
298 | } else if(diff<=BOCU1_REACH_POS_3) { | |
299 | /* three bytes */ | |
300 | diff-=BOCU1_REACH_POS_2+1; | |
301 | lead=BOCU1_START_POS_3; | |
302 | count=2; | |
303 | } else { | |
304 | /* four bytes */ | |
305 | diff-=BOCU1_REACH_POS_3+1; | |
306 | lead=BOCU1_START_POS_4; | |
307 | count=3; | |
308 | } | |
309 | } else { | |
310 | /* two- and four-byte negative differences */ | |
311 | if(diff>=BOCU1_REACH_NEG_2) { | |
312 | /* two bytes */ | |
313 | diff-=BOCU1_REACH_NEG_1; | |
314 | lead=BOCU1_START_NEG_2; | |
315 | count=1; | |
316 | } else if(diff>=BOCU1_REACH_NEG_3) { | |
317 | /* three bytes */ | |
318 | diff-=BOCU1_REACH_NEG_2; | |
319 | lead=BOCU1_START_NEG_3; | |
320 | count=2; | |
321 | } else { | |
322 | /* four bytes */ | |
323 | diff-=BOCU1_REACH_NEG_3; | |
324 | lead=BOCU1_START_NEG_4; | |
325 | count=3; | |
326 | } | |
327 | } | |
328 | ||
329 | /* encode the length of the packed result */ | |
330 | if(count<3) { | |
331 | result=(count+1)<<24; | |
332 | } else /* count==3, MSB used for the lead byte */ { | |
333 | result=0; | |
334 | } | |
335 | ||
336 | /* calculate trail bytes like digits in itoa() */ | |
337 | shift=0; | |
338 | do { | |
339 | NEGDIVMOD(diff, BOCU1_TRAIL_COUNT, m); | |
340 | result|=BOCU1_TRAIL_TO_BYTE(m)<<shift; | |
341 | shift+=8; | |
342 | } while(--count>0); | |
343 | ||
344 | /* add lead byte */ | |
345 | result|=(lead+diff)<<shift; | |
346 | ||
347 | return result; | |
348 | } | |
349 | ||
350 | /** | |
351 | * BOCU-1 encoder function. | |
352 | * | |
353 | * @param pPrev pointer to the integer that holds | |
354 | * the "previous code point" state; | |
355 | * the initial value should be 0 which | |
356 | * encodeBocu1 will set to the actual BOCU-1 initial state value | |
357 | * @param c the code point to encode | |
358 | * @return the packed 1/2/3/4-byte encoding, see packDiff(), | |
359 | * or 0 if an error occurs | |
360 | * | |
361 | * @see packDiff | |
362 | */ | |
363 | U_CFUNC int32_t | |
364 | encodeBocu1(int32_t *pPrev, int32_t c) { | |
365 | int32_t prev; | |
366 | ||
367 | if(pPrev==NULL || c<0 || c>0x10ffff) { | |
368 | /* illegal argument */ | |
369 | return 0; | |
370 | } | |
371 | ||
372 | prev=*pPrev; | |
373 | if(prev==0) { | |
374 | /* lenient handling of initial value 0 */ | |
375 | prev=*pPrev=BOCU1_ASCII_PREV; | |
376 | } | |
377 | ||
378 | if(c<=0x20) { | |
379 | /* | |
380 | * ISO C0 control & space: | |
381 | * Encode directly for MIME compatibility, | |
382 | * and reset state except for space, to not disrupt compression. | |
383 | */ | |
384 | if(c!=0x20) { | |
385 | *pPrev=BOCU1_ASCII_PREV; | |
386 | } | |
387 | return 0x01000000|c; | |
388 | } | |
389 | ||
390 | /* | |
391 | * all other Unicode code points c==U+0021..U+10ffff | |
392 | * are encoded with the difference c-prev | |
393 | * | |
394 | * a new prev is computed from c, | |
395 | * placed in the middle of a 0x80-block (for most small scripts) or | |
396 | * in the middle of the Unihan and Hangul blocks | |
397 | * to statistically minimize the following difference | |
398 | */ | |
399 | *pPrev=bocu1Prev(c); | |
400 | return packDiff(c-prev); | |
401 | } | |
402 | ||
403 | /** | |
404 | * Function for BOCU-1 decoder; handles multi-byte lead bytes. | |
405 | * | |
406 | * @param pRx pointer to the decoder state structure | |
407 | * @param b lead byte; | |
408 | * BOCU1_MIN<=b<BOCU1_START_NEG_2 or BOCU1_START_POS_2<=b<=BOCU1_MAX_LEAD | |
409 | * @return -1 (state change only) | |
410 | * | |
411 | * @see decodeBocu1 | |
412 | */ | |
413 | static int32_t | |
414 | decodeBocu1LeadByte(Bocu1Rx *pRx, uint8_t b) { | |
415 | int32_t c, count; | |
416 | ||
417 | if(b>=BOCU1_START_NEG_2) { | |
418 | /* positive difference */ | |
419 | if(b<BOCU1_START_POS_3) { | |
420 | /* two bytes */ | |
421 | c=((int32_t)b-BOCU1_START_POS_2)*BOCU1_TRAIL_COUNT+BOCU1_REACH_POS_1+1; | |
422 | count=1; | |
423 | } else if(b<BOCU1_START_POS_4) { | |
424 | /* three bytes */ | |
425 | c=((int32_t)b-BOCU1_START_POS_3)*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT+BOCU1_REACH_POS_2+1; | |
426 | count=2; | |
427 | } else { | |
428 | /* four bytes */ | |
429 | c=BOCU1_REACH_POS_3+1; | |
430 | count=3; | |
431 | } | |
432 | } else { | |
433 | /* negative difference */ | |
434 | if(b>=BOCU1_START_NEG_3) { | |
435 | /* two bytes */ | |
436 | c=((int32_t)b-BOCU1_START_NEG_2)*BOCU1_TRAIL_COUNT+BOCU1_REACH_NEG_1; | |
437 | count=1; | |
438 | } else if(b>BOCU1_MIN) { | |
439 | /* three bytes */ | |
440 | c=((int32_t)b-BOCU1_START_NEG_3)*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT+BOCU1_REACH_NEG_2; | |
441 | count=2; | |
442 | } else { | |
443 | /* four bytes */ | |
444 | c=-BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT+BOCU1_REACH_NEG_3; | |
445 | count=3; | |
446 | } | |
447 | } | |
448 | ||
449 | /* set the state for decoding the trail byte(s) */ | |
450 | pRx->diff=c; | |
451 | pRx->count=count; | |
452 | return -1; | |
453 | } | |
454 | ||
455 | /** | |
456 | * Function for BOCU-1 decoder; handles multi-byte trail bytes. | |
457 | * | |
458 | * @param pRx pointer to the decoder state structure | |
459 | * @param b trail byte | |
460 | * @return result value, same as decodeBocu1 | |
461 | * | |
462 | * @see decodeBocu1 | |
463 | */ | |
464 | static int32_t | |
465 | decodeBocu1TrailByte(Bocu1Rx *pRx, uint8_t b) { | |
466 | int32_t t, c, count; | |
467 | ||
468 | if(b<=0x20) { | |
469 | /* skip some C0 controls and make the trail byte range contiguous */ | |
470 | t=bocu1ByteToTrail[b]; | |
471 | if(t<0) { | |
472 | /* illegal trail byte value */ | |
473 | pRx->prev=BOCU1_ASCII_PREV; | |
474 | pRx->count=0; | |
475 | return -99; | |
476 | } | |
477 | #if BOCU1_MAX_TRAIL<0xff | |
478 | } else if(b>BOCU1_MAX_TRAIL) { | |
479 | return -99; | |
480 | #endif | |
481 | } else { | |
482 | t=(int32_t)b-BOCU1_TRAIL_BYTE_OFFSET; | |
483 | } | |
484 | ||
485 | /* add trail byte into difference and decrement count */ | |
486 | c=pRx->diff; | |
487 | count=pRx->count; | |
488 | ||
489 | if(count==1) { | |
490 | /* final trail byte, deliver a code point */ | |
491 | c=pRx->prev+c+t; | |
492 | if(0<=c && c<=0x10ffff) { | |
493 | /* valid code point result */ | |
494 | pRx->prev=bocu1Prev(c); | |
495 | pRx->count=0; | |
496 | return c; | |
497 | } else { | |
498 | /* illegal code point result */ | |
499 | pRx->prev=BOCU1_ASCII_PREV; | |
500 | pRx->count=0; | |
501 | return -99; | |
502 | } | |
503 | } | |
504 | ||
505 | /* intermediate trail byte */ | |
506 | if(count==2) { | |
507 | pRx->diff=c+t*BOCU1_TRAIL_COUNT; | |
508 | } else /* count==3 */ { | |
509 | pRx->diff=c+t*BOCU1_TRAIL_COUNT*BOCU1_TRAIL_COUNT; | |
510 | } | |
511 | pRx->count=count-1; | |
512 | return -1; | |
513 | } | |
514 | ||
515 | /** | |
516 | * BOCU-1 decoder function. | |
517 | * | |
518 | * @param pRx pointer to the decoder state structure; | |
519 | * the initial values should be 0 which | |
520 | * decodeBocu1 will set to actual initial state values | |
521 | * @param b an input byte | |
522 | * @return | |
523 | * 0..0x10ffff for a result code point | |
524 | * -1 if only the state changed without code point output | |
525 | * <-1 if an error occurs | |
526 | */ | |
527 | U_CFUNC int32_t | |
528 | decodeBocu1(Bocu1Rx *pRx, uint8_t b) { | |
529 | int32_t prev, c, count; | |
530 | ||
531 | if(pRx==NULL) { | |
532 | /* illegal argument */ | |
533 | return -99; | |
534 | } | |
535 | ||
536 | prev=pRx->prev; | |
537 | if(prev==0) { | |
538 | /* lenient handling of initial 0 values */ | |
539 | prev=pRx->prev=BOCU1_ASCII_PREV; | |
540 | count=pRx->count=0; | |
541 | } else { | |
542 | count=pRx->count; | |
543 | } | |
544 | ||
545 | if(count==0) { | |
546 | /* byte in lead position */ | |
547 | if(b<=0x20) { | |
548 | /* | |
549 | * Direct-encoded C0 control code or space. | |
550 | * Reset prev for C0 control codes but not for space. | |
551 | */ | |
552 | if(b!=0x20) { | |
553 | pRx->prev=BOCU1_ASCII_PREV; | |
554 | } | |
555 | return b; | |
556 | } | |
557 | ||
558 | /* | |
559 | * b is a difference lead byte. | |
560 | * | |
561 | * Return a code point directly from a single-byte difference. | |
562 | * | |
563 | * For multi-byte difference lead bytes, set the decoder state | |
564 | * with the partial difference value from the lead byte and | |
565 | * with the number of trail bytes. | |
566 | * | |
567 | * For four-byte differences, the signedness also affects the | |
568 | * first trail byte, which has special handling farther below. | |
569 | */ | |
570 | if(b>=BOCU1_START_NEG_2 && b<BOCU1_START_POS_2) { | |
571 | /* single-byte difference */ | |
572 | c=prev+((int32_t)b-BOCU1_MIDDLE); | |
573 | pRx->prev=bocu1Prev(c); | |
574 | return c; | |
575 | } else if(b==BOCU1_RESET) { | |
576 | /* only reset the state, no code point */ | |
577 | pRx->prev=BOCU1_ASCII_PREV; | |
578 | return -1; | |
579 | } else { | |
580 | return decodeBocu1LeadByte(pRx, b); | |
581 | } | |
582 | } else { | |
583 | /* trail byte in any position */ | |
584 | return decodeBocu1TrailByte(pRx, b); | |
585 | } | |
586 | } | |
587 | ||
588 | /* icuhtml/design/conversion/bocu1/bocu1tst.c ------------------------------- */ | |
589 | ||
590 | /* test code ---------------------------------------------------------------- */ | |
591 | ||
592 | /* test code options */ | |
593 | ||
594 | /* ignore comma when processing name lists in testText() */ | |
595 | #define TEST_IGNORE_COMMA 1 | |
596 | ||
597 | /** | |
598 | * Write a packed BOCU-1 byte sequence into a byte array, | |
599 | * without overflow check. | |
600 | * Test function. | |
601 | * | |
602 | * @param packed packed BOCU-1 byte sequence, see packDiff() | |
603 | * @param p pointer to byte array | |
604 | * @return number of bytes | |
605 | * | |
606 | * @see packDiff | |
607 | */ | |
608 | static int32_t | |
609 | writePacked(int32_t packed, uint8_t *p) { | |
610 | int32_t count=BOCU1_LENGTH_FROM_PACKED(packed); | |
611 | switch(count) { | |
612 | case 4: | |
613 | *p++=(uint8_t)(packed>>24); | |
614 | case 3: | |
615 | *p++=(uint8_t)(packed>>16); | |
616 | case 2: | |
617 | *p++=(uint8_t)(packed>>8); | |
618 | case 1: | |
619 | *p++=(uint8_t)packed; | |
620 | default: | |
621 | break; | |
622 | } | |
623 | ||
624 | return count; | |
625 | } | |
626 | ||
627 | /** | |
628 | * Unpack a packed BOCU-1 non-C0/space byte sequence and get | |
629 | * the difference to initialPrev. | |
630 | * Used only for round-trip testing of the difference encoding and decoding. | |
631 | * Test function. | |
632 | * | |
633 | * @param initialPrev bogus "previous code point" value to make sure that | |
634 | * the resulting code point is in the range 0..0x10ffff | |
635 | * @param packed packed BOCU-1 byte sequence | |
636 | * @return the difference to initialPrev | |
637 | * | |
638 | * @see packDiff | |
639 | * @see writeDiff | |
640 | */ | |
641 | static int32_t | |
642 | unpackDiff(int32_t initialPrev, int32_t packed) { | |
643 | Bocu1Rx rx={ 0, 0, 0 }; | |
644 | int32_t count; | |
645 | ||
646 | rx.prev=initialPrev; | |
647 | count=BOCU1_LENGTH_FROM_PACKED(packed); | |
648 | switch(count) { | |
649 | case 4: | |
650 | decodeBocu1(&rx, (uint8_t)(packed>>24)); | |
651 | case 3: | |
652 | decodeBocu1(&rx, (uint8_t)(packed>>16)); | |
653 | case 2: | |
654 | decodeBocu1(&rx, (uint8_t)(packed>>8)); | |
655 | case 1: | |
656 | /* subtract initial prev */ | |
657 | return decodeBocu1(&rx, (uint8_t)packed)-initialPrev; | |
658 | default: | |
659 | return -0x7fffffff; | |
660 | } | |
661 | } | |
662 | ||
663 | /** | |
664 | * Encode one difference value -0x10ffff..+0x10ffff in 1..4 bytes, | |
665 | * preserving lexical order. | |
666 | * Also checks for roundtripping of the difference encoding. | |
667 | * Test function. | |
668 | * | |
669 | * @param diff difference value to test, -0x10ffff..0x10ffff | |
670 | * @param p pointer to output byte array | |
671 | * @return p advanced by number of bytes output | |
672 | * | |
673 | * @see unpackDiff | |
674 | */ | |
675 | static uint8_t * | |
676 | writeDiff(int32_t diff, uint8_t *p) { | |
677 | /* generate the difference as a packed value and serialize it */ | |
678 | int32_t packed, initialPrev; | |
679 | ||
680 | packed=packDiff(diff); | |
681 | ||
682 | /* | |
683 | * bogus initial "prev" to work around | |
684 | * code point range check in decodeBocu1() | |
685 | */ | |
686 | if(diff<=0) { | |
687 | initialPrev=0x10ffff; | |
688 | } else { | |
689 | initialPrev=-1; | |
690 | } | |
691 | ||
692 | if(diff!=unpackDiff(initialPrev, packed)) { | |
693 | log_err("error: unpackDiff(packDiff(diff=%ld)=0x%08lx)=%ld!=diff\n", | |
694 | diff, packed, unpackDiff(initialPrev, packed)); | |
695 | } | |
696 | return p+writePacked(packed, p); | |
697 | } | |
698 | ||
699 | /** | |
700 | * Encode a UTF-16 string in BOCU-1. | |
701 | * Does not check for overflows, but otherwise useful function. | |
702 | * | |
703 | * @param s input UTF-16 string | |
704 | * @param length number of UChar code units in s | |
705 | * @param p pointer to output byte array | |
706 | * @return number of bytes output | |
707 | */ | |
708 | static int32_t | |
709 | writeString(const UChar *s, int32_t length, uint8_t *p) { | |
710 | uint8_t *p0; | |
711 | int32_t c, prev, i; | |
712 | ||
713 | prev=0; | |
714 | p0=p; | |
715 | i=0; | |
716 | while(i<length) { | |
4388f060 | 717 | U16_NEXT(s, i, length, c); |
b75a7d8f A |
718 | p+=writePacked(encodeBocu1(&prev, c), p); |
719 | } | |
73c04bcf | 720 | return (int32_t)(p-p0); |
b75a7d8f A |
721 | } |
722 | ||
723 | /** | |
724 | * Decode a BOCU-1 byte sequence to a UTF-16 string. | |
725 | * Does not check for overflows, but otherwise useful function. | |
726 | * | |
727 | * @param p pointer to input BOCU-1 bytes | |
728 | * @param length number of input bytes | |
729 | * @param s point to output UTF-16 string array | |
730 | * @return number of UChar code units output | |
731 | */ | |
732 | static int32_t | |
733 | readString(const uint8_t *p, int32_t length, UChar *s) { | |
734 | Bocu1Rx rx={ 0, 0, 0 }; | |
735 | int32_t c, i, sLength; | |
736 | ||
737 | i=sLength=0; | |
738 | while(i<length) { | |
739 | c=decodeBocu1(&rx, p[i++]); | |
740 | if(c<-1) { | |
741 | log_err("error: readString detects encoding error at string index %ld\n", i); | |
742 | return -1; | |
743 | } | |
744 | if(c>=0) { | |
4388f060 | 745 | U16_APPEND_UNSAFE(s, sLength, c); |
b75a7d8f A |
746 | } |
747 | } | |
748 | return sLength; | |
749 | } | |
750 | ||
4388f060 | 751 | static char |
b75a7d8f A |
752 | hexDigit(uint8_t digit) { |
753 | return digit<=9 ? (char)('0'+digit) : (char)('a'-10+digit); | |
754 | } | |
755 | ||
756 | /** | |
757 | * Pretty-print 0-terminated byte values. | |
758 | * Helper function for test output. | |
759 | * | |
760 | * @param bytes 0-terminated byte array to print | |
761 | */ | |
762 | static void | |
763 | printBytes(uint8_t *bytes, char *out) { | |
764 | int i; | |
765 | uint8_t b; | |
766 | ||
767 | i=0; | |
768 | while((b=*bytes++)!=0) { | |
769 | *out++=' '; | |
770 | *out++=hexDigit((uint8_t)(b>>4)); | |
771 | *out++=hexDigit((uint8_t)(b&0xf)); | |
772 | ++i; | |
773 | } | |
774 | i=3*(5-i); | |
775 | while(i>0) { | |
776 | *out++=' '; | |
777 | --i; | |
778 | } | |
779 | *out=0; | |
780 | } | |
781 | ||
782 | /** | |
783 | * Basic BOCU-1 test function, called when there are no command line arguments. | |
784 | * Prints some of the #define values and performs round-trip tests of the | |
785 | * difference encoding and decoding. | |
786 | */ | |
787 | static void | |
788 | TestBOCU1RefDiff(void) { | |
789 | char buf1[80], buf2[80]; | |
790 | uint8_t prev[5], level[5]; | |
791 | int32_t i, cmp, countErrors; | |
792 | ||
793 | log_verbose("reach of single bytes: %ld\n", 1+BOCU1_REACH_POS_1-BOCU1_REACH_NEG_1); | |
794 | log_verbose("reach of 2 bytes : %ld\n", 1+BOCU1_REACH_POS_2-BOCU1_REACH_NEG_2); | |
795 | log_verbose("reach of 3 bytes : %ld\n\n", 1+BOCU1_REACH_POS_3-BOCU1_REACH_NEG_3); | |
796 | ||
797 | log_verbose(" BOCU1_REACH_NEG_1 %8ld BOCU1_REACH_POS_1 %8ld\n", BOCU1_REACH_NEG_1, BOCU1_REACH_POS_1); | |
798 | log_verbose(" BOCU1_REACH_NEG_2 %8ld BOCU1_REACH_POS_2 %8ld\n", BOCU1_REACH_NEG_2, BOCU1_REACH_POS_2); | |
799 | log_verbose(" BOCU1_REACH_NEG_3 %8ld BOCU1_REACH_POS_3 %8ld\n\n", BOCU1_REACH_NEG_3, BOCU1_REACH_POS_3); | |
800 | ||
801 | log_verbose(" BOCU1_MIDDLE 0x%02x\n", BOCU1_MIDDLE); | |
802 | log_verbose(" BOCU1_START_NEG_2 0x%02x BOCU1_START_POS_2 0x%02x\n", BOCU1_START_NEG_2, BOCU1_START_POS_2); | |
803 | log_verbose(" BOCU1_START_NEG_3 0x%02x BOCU1_START_POS_3 0x%02x\n\n", BOCU1_START_NEG_3, BOCU1_START_POS_3); | |
804 | ||
805 | /* test packDiff() & unpackDiff() with some specific values */ | |
806 | writeDiff(0, level); | |
807 | writeDiff(1, level); | |
808 | writeDiff(65, level); | |
809 | writeDiff(130, level); | |
810 | writeDiff(30000, level); | |
811 | writeDiff(1000000, level); | |
812 | writeDiff(-65, level); | |
813 | writeDiff(-130, level); | |
814 | writeDiff(-30000, level); | |
815 | writeDiff(-1000000, level); | |
816 | ||
817 | /* test that each value is smaller than any following one */ | |
818 | countErrors=0; | |
819 | i=-0x10ffff; | |
820 | *writeDiff(i, prev)=0; | |
821 | ||
822 | /* show first number and bytes */ | |
823 | printBytes(prev, buf1); | |
824 | log_verbose(" wD(%8ld) %s\n", i, buf1); | |
825 | ||
826 | for(++i; i<=0x10ffff; ++i) { | |
827 | *writeDiff(i, level)=0; | |
828 | cmp=strcmp((const char *)prev, (const char *)level); | |
829 | if(BOCU1_LENGTH_FROM_LEAD(level[0])!=(int32_t)strlen((const char *)level)) { | |
830 | log_verbose("BOCU1_LENGTH_FROM_LEAD(0x%02x)=%ld!=%ld=strlen(writeDiff(%ld))\n", | |
831 | level[0], BOCU1_LENGTH_FROM_LEAD(level[0]), strlen((const char *)level), i); | |
832 | } | |
833 | if(cmp<0) { | |
834 | if(i==0 || i==1 || strlen((const char *)prev)!=strlen((const char *)level)) { | |
835 | /* | |
836 | * if the result is good, then print only if the length changed | |
837 | * to get little but interesting output | |
838 | */ | |
839 | printBytes(prev, buf1); | |
840 | printBytes(level, buf2); | |
841 | log_verbose("ok: strcmp(wD(%8ld), wD(%8ld))=%2d %s%s\n", i-1, i, cmp, buf1, buf2); | |
842 | } | |
843 | } else { | |
844 | ++countErrors; | |
845 | printBytes(prev, buf1); | |
846 | printBytes(level, buf2); | |
847 | log_verbose("wrong: strcmp(wD(%8ld), wD(%8ld))=%2d %s%s\n", i-1, i, cmp, buf1, buf2); | |
848 | } | |
849 | /* remember the previous bytes */ | |
850 | memcpy(prev, level, 4); | |
851 | } | |
852 | ||
853 | /* show last number and bytes */ | |
854 | printBytes((uint8_t *)"", buf1); | |
855 | printBytes(prev, buf2); | |
856 | log_verbose(" wD(%8ld) %s%s\n", i-1, buf1, buf2); | |
857 | ||
858 | if(countErrors==0) { | |
859 | log_verbose("writeDiff(-0x10ffff..0x10ffff) works fine\n"); | |
860 | } else { | |
861 | log_err("writeDiff(-0x10ffff..0x10ffff) violates lexical ordering in %d cases\n", countErrors); | |
862 | } | |
863 | ||
864 | /* output signature byte sequence */ | |
865 | i=0; | |
866 | writePacked(encodeBocu1(&i, 0xfeff), level); | |
867 | log_verbose("\nBOCU-1 signature byte sequence: %02x %02x %02x\n", | |
868 | level[0], level[1], level[2]); | |
869 | } | |
870 | ||
871 | /* cintltst code ------------------------------------------------------------ */ | |
872 | ||
46f4442e A |
873 | static const int32_t DEFAULT_BUFFER_SIZE = 30000; |
874 | ||
875 | ||
b75a7d8f A |
876 | /* test one string with the ICU and the reference BOCU-1 implementations */ |
877 | static void | |
878 | roundtripBOCU1(UConverter *bocu1, int32_t number, const UChar *text, int32_t length) { | |
46f4442e A |
879 | UChar *roundtripRef, *roundtripICU; |
880 | char *bocu1Ref, *bocu1ICU; | |
b75a7d8f A |
881 | |
882 | int32_t bocu1RefLength, bocu1ICULength, roundtripRefLength, roundtripICULength; | |
883 | UErrorCode errorCode; | |
884 | ||
46f4442e A |
885 | roundtripRef = malloc(DEFAULT_BUFFER_SIZE * sizeof(UChar)); |
886 | roundtripICU = malloc(DEFAULT_BUFFER_SIZE * sizeof(UChar)); | |
887 | bocu1Ref = malloc(DEFAULT_BUFFER_SIZE); | |
888 | bocu1ICU = malloc(DEFAULT_BUFFER_SIZE); | |
889 | ||
b75a7d8f A |
890 | /* Unicode -> BOCU-1 */ |
891 | bocu1RefLength=writeString(text, length, (uint8_t *)bocu1Ref); | |
892 | ||
893 | errorCode=U_ZERO_ERROR; | |
46f4442e | 894 | bocu1ICULength=ucnv_fromUChars(bocu1, bocu1ICU, DEFAULT_BUFFER_SIZE, text, length, &errorCode); |
b75a7d8f A |
895 | if(U_FAILURE(errorCode)) { |
896 | log_err("ucnv_fromUChars(BOCU-1, text(%d)[%d]) failed: %s\n", number, length, u_errorName(errorCode)); | |
4388f060 | 897 | goto cleanup; |
b75a7d8f A |
898 | } |
899 | ||
900 | if(bocu1RefLength!=bocu1ICULength || 0!=uprv_memcmp(bocu1Ref, bocu1ICU, bocu1RefLength)) { | |
901 | log_err("Unicode(%d)[%d] -> BOCU-1: reference[%d]!=ICU[%d]\n", number, length, bocu1RefLength, bocu1ICULength); | |
4388f060 | 902 | goto cleanup; |
b75a7d8f A |
903 | } |
904 | ||
905 | /* BOCU-1 -> Unicode */ | |
906 | roundtripRefLength=readString((uint8_t *)bocu1Ref, bocu1RefLength, roundtripRef); | |
907 | if(roundtripRefLength<0) { | |
4388f060 | 908 | goto cleanup; /* readString() found an error and reported it */ |
b75a7d8f A |
909 | } |
910 | ||
46f4442e | 911 | roundtripICULength=ucnv_toUChars(bocu1, roundtripICU, DEFAULT_BUFFER_SIZE, bocu1ICU, bocu1ICULength, &errorCode); |
b75a7d8f A |
912 | if(U_FAILURE(errorCode)) { |
913 | log_err("ucnv_toUChars(BOCU-1, text(%d)[%d]) failed: %s\n", number, length, u_errorName(errorCode)); | |
4388f060 | 914 | goto cleanup; |
b75a7d8f A |
915 | } |
916 | ||
917 | if(length!=roundtripRefLength || 0!=u_memcmp(text, roundtripRef, length)) { | |
918 | log_err("BOCU-1 -> Unicode: original(%d)[%d]!=reference[%d]\n", number, length, roundtripRefLength); | |
4388f060 | 919 | goto cleanup; |
b75a7d8f A |
920 | } |
921 | if(roundtripRefLength!=roundtripICULength || 0!=u_memcmp(roundtripRef, roundtripICU, roundtripRefLength)) { | |
922 | log_err("BOCU-1 -> Unicode: reference(%d)[%d]!=ICU[%d]\n", number, roundtripRefLength, roundtripICULength); | |
4388f060 | 923 | goto cleanup; |
b75a7d8f | 924 | } |
4388f060 | 925 | cleanup: |
46f4442e A |
926 | free(roundtripRef); |
927 | free(roundtripICU); | |
928 | free(bocu1Ref); | |
929 | free(bocu1ICU); | |
b75a7d8f A |
930 | } |
931 | ||
932 | static const UChar feff[]={ 0xfeff }; | |
933 | static const UChar ascii[]={ 0x61, 0x62, 0x20, 0x63, 0x61 }; | |
934 | static const UChar crlf[]={ 0xd, 0xa, 0x20 }; | |
935 | static const UChar nul[]={ 0 }; | |
936 | static const UChar latin[]={ 0xdf, 0xe6 }; | |
937 | static const UChar devanagari[]={ 0x930, 0x20, 0x918, 0x909 }; | |
938 | static const UChar hiragana[]={ 0x3086, 0x304d, 0x20, 0x3053, 0x4000 }; | |
939 | static const UChar unihan[]={ 0x4e00, 0x7777, 0x20, 0x9fa5, 0x4e00 }; | |
940 | static const UChar hangul[]={ 0xac00, 0xbcde, 0x20, 0xd7a3 }; | |
941 | static const UChar surrogates[]={ 0xdc00, 0xd800 }; /* single surrogates, unmatched! */ | |
942 | static const UChar plane1[]={ 0xd800, 0xdc00 }; | |
943 | static const UChar plane2[]={ 0xd845, 0xdddd }; | |
944 | static const UChar plane15[]={ 0xdbbb, 0xddee, 0x20 }; | |
945 | static const UChar plane16[]={ 0xdbff, 0xdfff }; | |
946 | static const UChar c0[]={ 1, 0xe40, 0x20, 9 }; | |
947 | ||
948 | static const struct { | |
949 | const UChar *s; | |
950 | int32_t length; | |
951 | } strings[]={ | |
b331163b A |
952 | { feff, UPRV_LENGTHOF(feff) }, |
953 | { ascii, UPRV_LENGTHOF(ascii) }, | |
954 | { crlf, UPRV_LENGTHOF(crlf) }, | |
955 | { nul, UPRV_LENGTHOF(nul) }, | |
956 | { latin, UPRV_LENGTHOF(latin) }, | |
957 | { devanagari, UPRV_LENGTHOF(devanagari) }, | |
958 | { hiragana, UPRV_LENGTHOF(hiragana) }, | |
959 | { unihan, UPRV_LENGTHOF(unihan) }, | |
960 | { hangul, UPRV_LENGTHOF(hangul) }, | |
961 | { surrogates, UPRV_LENGTHOF(surrogates) }, | |
962 | { plane1, UPRV_LENGTHOF(plane1) }, | |
963 | { plane2, UPRV_LENGTHOF(plane2) }, | |
964 | { plane15, UPRV_LENGTHOF(plane15) }, | |
965 | { plane16, UPRV_LENGTHOF(plane16) }, | |
966 | { c0, UPRV_LENGTHOF(c0) } | |
b75a7d8f A |
967 | }; |
968 | ||
969 | /* | |
970 | * Verify that the ICU BOCU-1 implementation produces the same results as | |
971 | * the reference implementation from the design folder. | |
972 | * Generate some texts and convert them with both converters, verifying | |
973 | * identical results and roundtripping. | |
974 | */ | |
975 | static void | |
976 | TestBOCU1(void) { | |
46f4442e | 977 | UChar *text; |
b75a7d8f A |
978 | int32_t i, length; |
979 | ||
980 | UConverter *bocu1; | |
981 | UErrorCode errorCode; | |
982 | ||
983 | errorCode=U_ZERO_ERROR; | |
984 | bocu1=ucnv_open("BOCU-1", &errorCode); | |
985 | if(U_FAILURE(errorCode)) { | |
b331163b | 986 | log_data_err("error: unable to open BOCU-1 converter: %s\n", u_errorName(errorCode)); |
b75a7d8f A |
987 | return; |
988 | } | |
989 | ||
46f4442e A |
990 | text = malloc(DEFAULT_BUFFER_SIZE * sizeof(UChar)); |
991 | ||
b75a7d8f A |
992 | /* text 1: each of strings[] once */ |
993 | length=0; | |
b331163b | 994 | for(i=0; i<UPRV_LENGTHOF(strings); ++i) { |
b75a7d8f A |
995 | u_memcpy(text+length, strings[i].s, strings[i].length); |
996 | length+=strings[i].length; | |
997 | } | |
998 | roundtripBOCU1(bocu1, 1, text, length); | |
999 | ||
1000 | /* text 2: each of strings[] twice */ | |
1001 | length=0; | |
b331163b | 1002 | for(i=0; i<UPRV_LENGTHOF(strings); ++i) { |
b75a7d8f A |
1003 | u_memcpy(text+length, strings[i].s, strings[i].length); |
1004 | length+=strings[i].length; | |
1005 | u_memcpy(text+length, strings[i].s, strings[i].length); | |
1006 | length+=strings[i].length; | |
1007 | } | |
1008 | roundtripBOCU1(bocu1, 2, text, length); | |
1009 | ||
1010 | /* text 3: each of strings[] many times (set step vs. |strings| so that all strings are used) */ | |
1011 | length=0; | |
1012 | for(i=1; length<5000; i+=7) { | |
b331163b A |
1013 | if(i>=UPRV_LENGTHOF(strings)) { |
1014 | i-=UPRV_LENGTHOF(strings); | |
b75a7d8f A |
1015 | } |
1016 | u_memcpy(text+length, strings[i].s, strings[i].length); | |
1017 | length+=strings[i].length; | |
1018 | } | |
1019 | roundtripBOCU1(bocu1, 3, text, length); | |
1020 | ||
1021 | ucnv_close(bocu1); | |
46f4442e | 1022 | free(text); |
b75a7d8f A |
1023 | } |
1024 | ||
1025 | U_CFUNC void addBOCU1Tests(TestNode** root); | |
1026 | ||
1027 | U_CFUNC void | |
1028 | addBOCU1Tests(TestNode** root) { | |
1029 | addTest(root, TestBOCU1RefDiff, "tsconv/bocu1tst/TestBOCU1RefDiff"); | |
1030 | addTest(root, TestBOCU1, "tsconv/bocu1tst/TestBOCU1"); | |
1031 | } |