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1 /********************************************************************
2 * COPYRIGHT:
3 * Copyright (c) 1997-2016, International Business Machines Corporation and
4 * others. All Rights Reserved.
5 ********************************************************************/
6 /********************************************************************************
7 *
8 * File CNUMTST.C
9 *
10 * Madhu Katragadda Creation
11 *
12 * Modification History:
13 *
14 * Date Name Description
15 * 06/24/99 helena Integrated Alan's NF enhancements and Java2 bug fixes
16 * 07/15/99 helena Ported to HPUX 10/11 CC.
17 *********************************************************************************
18 */
19
20 /* C API TEST FOR NUMBER FORMAT */
21
22 #include "unicode/utypes.h"
23
24 #if !UCONFIG_NO_FORMATTING
25
26 #include "unicode/uloc.h"
27 #include "unicode/umisc.h"
28 #include "unicode/unum.h"
29 #include "unicode/unumsys.h"
30 #include "unicode/ustring.h"
31 #include "unicode/udisplaycontext.h"
32
33 #include "cintltst.h"
34 #include "cnumtst.h"
35 #include "cmemory.h"
36 #include "cstring.h"
37 #include "putilimp.h"
38 #include <stdio.h>
39 #include <stdlib.h>
40
41 static const char *tagAssert(const char *f, int32_t l, const char *msg) {
42 static char _fileline[1000];
43 sprintf(_fileline, "%s:%d: ASSERT_TRUE(%s)", f, l, msg);
44 return _fileline;
45 }
46
47 #define ASSERT_TRUE(x) assertTrue(tagAssert(__FILE__, __LINE__, #x), (x))
48
49 void addNumForTest(TestNode** root);
50 static void TestTextAttributeCrash(void);
51 static void TestNBSPInPattern(void);
52 static void TestInt64Parse(void);
53 static void TestParseCurrency(void);
54 static void TestMaxInt(void);
55 static void TestNoExponent(void);
56 static void TestUFormattable(void);
57 static void TestUNumberingSystem(void);
58 static void TestCurrencyIsoPluralFormat(void);
59 static void TestContext(void);
60 static void TestCurrencyUsage(void);
61 static void TestCurrFmtNegSameAsPositive(void);
62 static void TestVariousStylesAndAttributes(void);
63 static void TestParseAltNum(void);
64 static void TestParseCurrPatternWithDecStyle(void);
65
66 #define TESTCASE(x) addTest(root, &x, "tsformat/cnumtst/" #x)
67
68 void addNumForTest(TestNode** root)
69 {
70 TESTCASE(TestNumberFormat);
71 TESTCASE(TestSpelloutNumberParse);
72 TESTCASE(TestSignificantDigits);
73 TESTCASE(TestSigDigRounding);
74 TESTCASE(TestNumberFormatPadding);
75 TESTCASE(TestInt64Format);
76 TESTCASE(TestNonExistentCurrency);
77 TESTCASE(TestCurrencyRegression);
78 TESTCASE(TestTextAttributeCrash);
79 TESTCASE(TestRBNFFormat);
80 TESTCASE(TestNBSPInPattern);
81 TESTCASE(TestInt64Parse);
82 TESTCASE(TestParseZero);
83 TESTCASE(TestParseCurrency);
84 TESTCASE(TestCloneWithRBNF);
85 TESTCASE(TestMaxInt);
86 TESTCASE(TestNoExponent);
87 TESTCASE(TestUFormattable);
88 TESTCASE(TestUNumberingSystem);
89 TESTCASE(TestCurrencyIsoPluralFormat);
90 TESTCASE(TestContext);
91 TESTCASE(TestCurrencyUsage);
92 TESTCASE(TestCurrFmtNegSameAsPositive);
93 TESTCASE(TestVariousStylesAndAttributes);
94 TESTCASE(TestParseAltNum);
95 TESTCASE(TestParseCurrPatternWithDecStyle);
96 }
97
98 /* test Parse int 64 */
99
100 static void TestInt64Parse()
101 {
102
103 UErrorCode st = U_ZERO_ERROR;
104 UErrorCode* status = &st;
105
106 const char* st1 = "009223372036854775808";
107 const int size = 21;
108 UChar text[21];
109
110
111 UNumberFormat* nf;
112
113 int64_t a;
114
115 u_charsToUChars(st1, text, size);
116 nf = unum_open(UNUM_DEFAULT, NULL, -1, NULL, NULL, status);
117
118 if(U_FAILURE(*status))
119 {
120 log_data_err("Error in unum_open() %s \n", myErrorName(*status));
121 return;
122 }
123
124 log_verbose("About to test unum_parseInt64() with out of range number\n");
125
126 a = unum_parseInt64(nf, text, size, 0, status);
127 (void)a; /* Suppress set but not used warning. */
128
129
130 if(!U_FAILURE(*status))
131 {
132 log_err("Error in unum_parseInt64(): %s \n", myErrorName(*status));
133 }
134 else
135 {
136 log_verbose("unum_parseInt64() successful\n");
137 }
138
139 unum_close(nf);
140 return;
141 }
142
143 /* test Number Format API */
144 static void TestNumberFormat()
145 {
146 UChar *result=NULL;
147 UChar temp1[512];
148 UChar temp2[512];
149
150 UChar temp[5];
151
152 UChar prefix[5];
153 UChar suffix[5];
154 UChar symbol[20];
155 int32_t resultlength;
156 int32_t resultlengthneeded;
157 int32_t parsepos;
158 double d1 = -1.0;
159 int32_t l1;
160 double d = -10456.37;
161 double a = 1234.56, a1 = 1235.0;
162 int32_t l = 100000000;
163 UFieldPosition pos1;
164 UFieldPosition pos2;
165 int32_t numlocales;
166 int32_t i;
167
168 UNumberFormatAttribute attr;
169 UNumberFormatSymbol symType = UNUM_DECIMAL_SEPARATOR_SYMBOL;
170 int32_t newvalue;
171 UErrorCode status=U_ZERO_ERROR;
172 UNumberFormatStyle style= UNUM_DEFAULT;
173 UNumberFormat *pattern;
174 UNumberFormat *def, *fr, *cur_def, *cur_fr, *per_def, *per_fr,
175 *cur_frpattern, *myclone, *spellout_def;
176
177 /* Testing unum_open() with various Numberformat styles and locales*/
178 status = U_ZERO_ERROR;
179 log_verbose("Testing unum_open() with default style and locale\n");
180 def=unum_open(style, NULL,0,NULL, NULL,&status);
181
182 /* Might as well pack it in now if we can't even get a default NumberFormat... */
183 if(U_FAILURE(status))
184 {
185 log_data_err("Error in creating default NumberFormat using unum_open(): %s (Are you missing data?)\n", myErrorName(status));
186 return;
187 }
188
189 log_verbose("\nTesting unum_open() with french locale and default style(decimal)\n");
190 fr=unum_open(style,NULL,0, "fr_FR",NULL, &status);
191 if(U_FAILURE(status))
192 log_err("Error: could not create NumberFormat (french): %s\n", myErrorName(status));
193
194 log_verbose("\nTesting unum_open(currency,NULL,status)\n");
195 style=UNUM_CURRENCY;
196 /* Can't hardcode the result to assume the default locale is "en_US". */
197 cur_def=unum_open(style, NULL,0,"en_US", NULL, &status);
198 if(U_FAILURE(status))
199 log_err("Error: could not create NumberFormat using \n unum_open(currency, NULL, &status) %s\n",
200 myErrorName(status) );
201
202 log_verbose("\nTesting unum_open(currency, frenchlocale, status)\n");
203 cur_fr=unum_open(style,NULL,0, "fr_FR", NULL, &status);
204 if(U_FAILURE(status))
205 log_err("Error: could not create NumberFormat using unum_open(currency, french, &status): %s\n",
206 myErrorName(status));
207
208 log_verbose("\nTesting unum_open(percent, NULL, status)\n");
209 style=UNUM_PERCENT;
210 per_def=unum_open(style,NULL,0, NULL,NULL, &status);
211 if(U_FAILURE(status))
212 log_err("Error: could not create NumberFormat using unum_open(percent, NULL, &status): %s\n", myErrorName(status));
213
214 log_verbose("\nTesting unum_open(percent,frenchlocale, status)\n");
215 per_fr=unum_open(style, NULL,0,"fr_FR", NULL,&status);
216 if(U_FAILURE(status))
217 log_err("Error: could not create NumberFormat using unum_open(percent, french, &status): %s\n", myErrorName(status));
218
219 log_verbose("\nTesting unum_open(spellout, NULL, status)");
220 style=UNUM_SPELLOUT;
221 spellout_def=unum_open(style, NULL, 0, "en_US", NULL, &status);
222 if(U_FAILURE(status))
223 log_err("Error: could not create NumberFormat using unum_open(spellout, NULL, &status): %s\n", myErrorName(status));
224
225 /* Testing unum_clone(..) */
226 log_verbose("\nTesting unum_clone(fmt, status)");
227 status = U_ZERO_ERROR;
228 myclone = unum_clone(def,&status);
229 if(U_FAILURE(status))
230 log_err("Error: could not clone unum_clone(def, &status): %s\n", myErrorName(status));
231 else
232 {
233 log_verbose("unum_clone() successful\n");
234 }
235
236 /*Testing unum_getAvailable() and unum_countAvailable()*/
237 log_verbose("\nTesting getAvailableLocales and countAvailable()\n");
238 numlocales=unum_countAvailable();
239 if(numlocales < 0)
240 log_err("error in countAvailable");
241 else{
242 log_verbose("unum_countAvialable() successful\n");
243 log_verbose("The no: of locales where number formattting is applicable is %d\n", numlocales);
244 }
245 for(i=0;i<numlocales;i++)
246 {
247 log_verbose("%s\n", unum_getAvailable(i));
248 if (unum_getAvailable(i) == 0)
249 log_err("No locale for which number formatting patterns are applicable\n");
250 else
251 log_verbose("A locale %s for which number formatting patterns are applicable\n",unum_getAvailable(i));
252 }
253
254
255 /*Testing unum_format() and unum_formatdouble()*/
256 u_uastrcpy(temp1, "$100,000,000.00");
257
258 log_verbose("\nTesting unum_format() \n");
259 resultlength=0;
260 pos1.field = UNUM_INTEGER_FIELD;
261 resultlengthneeded=unum_format(cur_def, l, NULL, resultlength, &pos1, &status);
262 if(status==U_BUFFER_OVERFLOW_ERROR)
263 {
264 status=U_ZERO_ERROR;
265 resultlength=resultlengthneeded+1;
266 result=(UChar*)malloc(sizeof(UChar) * resultlength);
267 /* for (i = 0; i < 100000; i++) */
268 {
269 unum_format(cur_def, l, result, resultlength, &pos1, &status);
270 }
271 }
272
273 if(U_FAILURE(status))
274 {
275 log_err("Error in formatting using unum_format(.....): %s\n", myErrorName(status) );
276 }
277 if(u_strcmp(result, temp1)==0)
278 log_verbose("Pass: Number formatting using unum_format() successful\n");
279 else
280 log_err("Fail: Error in number Formatting using unum_format()\n");
281 if(pos1.beginIndex == 1 && pos1.endIndex == 12)
282 log_verbose("Pass: Complete number formatting using unum_format() successful\n");
283 else
284 log_err("Fail: Error in complete number Formatting using unum_format()\nGot: b=%d end=%d\nExpected: b=1 end=12\n",
285 pos1.beginIndex, pos1.endIndex);
286
287 free(result);
288 result = 0;
289
290 log_verbose("\nTesting unum_formatDouble()\n");
291 u_uastrcpy(temp1, "-$10,456.37");
292 resultlength=0;
293 pos2.field = UNUM_FRACTION_FIELD;
294 resultlengthneeded=unum_formatDouble(cur_def, d, NULL, resultlength, &pos2, &status);
295 if(status==U_BUFFER_OVERFLOW_ERROR)
296 {
297 status=U_ZERO_ERROR;
298 resultlength=resultlengthneeded+1;
299 result=(UChar*)malloc(sizeof(UChar) * resultlength);
300 /* for (i = 0; i < 100000; i++) */
301 {
302 unum_formatDouble(cur_def, d, result, resultlength, &pos2, &status);
303 }
304 }
305 if(U_FAILURE(status))
306 {
307 log_err("Error in formatting using unum_formatDouble(.....): %s\n", myErrorName(status));
308 }
309 if(result && u_strcmp(result, temp1)==0)
310 log_verbose("Pass: Number Formatting using unum_formatDouble() Successful\n");
311 else {
312 log_err("FAIL: Error in number formatting using unum_formatDouble() - got '%s' expected '%s'\n",
313 aescstrdup(result, -1), aescstrdup(temp1, -1));
314 }
315 if(pos2.beginIndex == 9 && pos2.endIndex == 11)
316 log_verbose("Pass: Complete number formatting using unum_format() successful\n");
317 else
318 log_err("Fail: Error in complete number Formatting using unum_formatDouble()\nGot: b=%d end=%d\nExpected: b=9 end=11",
319 pos1.beginIndex, pos1.endIndex);
320
321
322 /* Testing unum_parse() and unum_parseDouble() */
323 log_verbose("\nTesting unum_parseDouble()\n");
324 /* for (i = 0; i < 100000; i++)*/
325 parsepos=0;
326 if (result != NULL) {
327 d1=unum_parseDouble(cur_def, result, u_strlen(result), &parsepos, &status);
328 } else {
329 log_err("result is NULL\n");
330 }
331 if(U_FAILURE(status)) {
332 log_err("parse of '%s' failed. Parsepos=%d. The error is : %s\n", aescstrdup(result,u_strlen(result)),parsepos, myErrorName(status));
333 }
334
335 if(d1!=d)
336 log_err("Fail: Error in parsing\n");
337 else
338 log_verbose("Pass: parsing successful\n");
339 if (result)
340 free(result);
341 result = 0;
342
343 status = U_ZERO_ERROR;
344 /* Testing unum_formatDoubleCurrency / unum_parseDoubleCurrency */
345 log_verbose("\nTesting unum_formatDoubleCurrency\n");
346 u_uastrcpy(temp1, "Y1,235");
347 temp1[0] = 0xA5; /* Yen sign */
348 u_uastrcpy(temp, "JPY");
349 resultlength=0;
350 pos2.field = UNUM_INTEGER_FIELD;
351 resultlengthneeded=unum_formatDoubleCurrency(cur_def, a, temp, NULL, resultlength, &pos2, &status);
352 if (status==U_BUFFER_OVERFLOW_ERROR) {
353 status=U_ZERO_ERROR;
354 resultlength=resultlengthneeded+1;
355 result=(UChar*)malloc(sizeof(UChar) * resultlength);
356 unum_formatDoubleCurrency(cur_def, a, temp, result, resultlength, &pos2, &status);
357 }
358 if (U_FAILURE(status)) {
359 log_err("Error in formatting using unum_formatDoubleCurrency(.....): %s\n", myErrorName(status));
360 }
361 if (result && u_strcmp(result, temp1)==0) {
362 log_verbose("Pass: Number Formatting using unum_formatDoubleCurrency() Successful\n");
363 } else {
364 log_err("FAIL: Error in number formatting using unum_formatDoubleCurrency() - got '%s' expected '%s'\n",
365 aescstrdup(result, -1), aescstrdup(temp1, -1));
366 }
367 if (pos2.beginIndex == 1 && pos2.endIndex == 6) {
368 log_verbose("Pass: Complete number formatting using unum_format() successful\n");
369 } else {
370 log_err("Fail: Error in complete number Formatting using unum_formatDouble()\nGot: b=%d end=%d\nExpected: b=1 end=6\n",
371 pos1.beginIndex, pos1.endIndex);
372 }
373
374 log_verbose("\nTesting unum_parseDoubleCurrency\n");
375 parsepos=0;
376 if (result == NULL) {
377 log_err("result is NULL\n");
378 }
379 else {
380 d1=unum_parseDoubleCurrency(cur_def, result, u_strlen(result), &parsepos, temp2, &status);
381 if (U_FAILURE(status)) {
382 log_err("parseDoubleCurrency '%s' failed. The error is : %s\n", aescstrdup(result, u_strlen(result)), myErrorName(status));
383 }
384 /* Note: a==1234.56, but on parse expect a1=1235.0 */
385 if (d1!=a1) {
386 log_err("Fail: Error in parsing currency, got %f, expected %f\n", d1, a1);
387 } else {
388 log_verbose("Pass: parsed currency amount successfully\n");
389 }
390 if (u_strcmp(temp2, temp)==0) {
391 log_verbose("Pass: parsed correct currency\n");
392 } else {
393 log_err("Fail: parsed incorrect currency\n");
394 }
395 }
396 status = U_ZERO_ERROR; /* reset */
397
398 free(result);
399 result = 0;
400
401
402 /* performance testing */
403 u_uastrcpy(temp1, "$462.12345");
404 resultlength=u_strlen(temp1);
405 /* for (i = 0; i < 100000; i++) */
406 {
407 parsepos=0;
408 d1=unum_parseDouble(cur_def, temp1, resultlength, &parsepos, &status);
409 }
410 if(U_FAILURE(status))
411 {
412 log_err("parseDouble('%s') failed. The error is : %s\n", aescstrdup(temp1, resultlength), myErrorName(status));
413 }
414
415 /*
416 * Note: "for strict standard conformance all operations and constants are now supposed to be
417 evaluated in precision of long double". So, we assign a1 before comparing to a double. Bug #7932.
418 */
419 a1 = 462.12345;
420
421 if(d1!=a1)
422 log_err("Fail: Error in parsing\n");
423 else
424 log_verbose("Pass: parsing successful\n");
425
426 free(result);
427
428 u_uastrcpy(temp1, "($10,456.3E1])");
429 parsepos=0;
430 d1=unum_parseDouble(cur_def, temp1, u_strlen(temp1), &parsepos, &status);
431 if(U_SUCCESS(status))
432 {
433 log_err("Error in unum_parseDouble(..., %s, ...): %s\n", temp1, myErrorName(status));
434 }
435
436
437 log_verbose("\nTesting unum_format()\n");
438 status=U_ZERO_ERROR;
439 resultlength=0;
440 parsepos=0;
441 resultlengthneeded=unum_format(per_fr, l, NULL, resultlength, &pos1, &status);
442 if(status==U_BUFFER_OVERFLOW_ERROR)
443 {
444 status=U_ZERO_ERROR;
445 resultlength=resultlengthneeded+1;
446 result=(UChar*)malloc(sizeof(UChar) * resultlength);
447 /* for (i = 0; i < 100000; i++)*/
448 {
449 unum_format(per_fr, l, result, resultlength, &pos1, &status);
450 }
451 }
452 if(U_FAILURE(status))
453 {
454 log_err("Error in formatting using unum_format(.....): %s\n", myErrorName(status));
455 }
456
457
458 log_verbose("\nTesting unum_parse()\n");
459 /* for (i = 0; i < 100000; i++) */
460 {
461 parsepos=0;
462 l1=unum_parse(per_fr, result, u_strlen(result), &parsepos, &status);
463 }
464 if(U_FAILURE(status))
465 {
466 log_err("parse failed. The error is : %s\n", myErrorName(status));
467 }
468
469 if(l1!=l)
470 log_err("Fail: Error in parsing\n");
471 else
472 log_verbose("Pass: parsing successful\n");
473
474 free(result);
475
476 /* create a number format using unum_openPattern(....)*/
477 log_verbose("\nTesting unum_openPattern()\n");
478 u_uastrcpy(temp1, "#,##0.0#;(#,##0.0#)");
479 pattern=unum_open(UNUM_IGNORE,temp1, u_strlen(temp1), NULL, NULL,&status);
480 if(U_FAILURE(status))
481 {
482 log_err("error in unum_openPattern(): %s\n", myErrorName(status) );;
483 }
484 else
485 log_verbose("Pass: unum_openPattern() works fine\n");
486
487 /*test for unum_toPattern()*/
488 log_verbose("\nTesting unum_toPattern()\n");
489 resultlength=0;
490 resultlengthneeded=unum_toPattern(pattern, FALSE, NULL, resultlength, &status);
491 if(status==U_BUFFER_OVERFLOW_ERROR)
492 {
493 status=U_ZERO_ERROR;
494 resultlength=resultlengthneeded+1;
495 result=(UChar*)malloc(sizeof(UChar) * resultlength);
496 unum_toPattern(pattern, FALSE, result, resultlength, &status);
497 }
498 if(U_FAILURE(status))
499 {
500 log_err("error in extracting the pattern from UNumberFormat: %s\n", myErrorName(status));
501 }
502 else
503 {
504 if(u_strcmp(result, temp1)!=0)
505 log_err("FAIL: Error in extracting the pattern using unum_toPattern()\n");
506 else
507 log_verbose("Pass: extracted the pattern correctly using unum_toPattern()\n");
508 free(result);
509 }
510
511 /*Testing unum_getSymbols() and unum_setSymbols()*/
512 log_verbose("\nTesting unum_getSymbols and unum_setSymbols()\n");
513 /*when we try to change the symbols of french to default we need to apply the pattern as well to fetch correct results */
514 resultlength=0;
515 resultlengthneeded=unum_toPattern(cur_def, FALSE, NULL, resultlength, &status);
516 if(status==U_BUFFER_OVERFLOW_ERROR)
517 {
518 status=U_ZERO_ERROR;
519 resultlength=resultlengthneeded+1;
520 result=(UChar*)malloc(sizeof(UChar) * resultlength);
521 unum_toPattern(cur_def, FALSE, result, resultlength, &status);
522 }
523 if(U_FAILURE(status))
524 {
525 log_err("error in extracting the pattern from UNumberFormat: %s\n", myErrorName(status));
526 }
527
528 status=U_ZERO_ERROR;
529 cur_frpattern=unum_open(UNUM_IGNORE,result, u_strlen(result), "fr_FR",NULL, &status);
530 if(U_FAILURE(status))
531 {
532 log_err("error in unum_openPattern(): %s\n", myErrorName(status));
533 }
534
535 free(result);
536
537 /*getting the symbols of cur_def */
538 /*set the symbols of cur_frpattern to cur_def */
539 for (symType = UNUM_DECIMAL_SEPARATOR_SYMBOL; symType < UNUM_FORMAT_SYMBOL_COUNT; symType++) {
540 status=U_ZERO_ERROR;
541 unum_getSymbol(cur_def, symType, temp1, sizeof(temp1), &status);
542 unum_setSymbol(cur_frpattern, symType, temp1, -1, &status);
543 if(U_FAILURE(status))
544 {
545 log_err("Error in get/set symbols: %s\n", myErrorName(status));
546 }
547 }
548
549 /*format to check the result */
550 resultlength=0;
551 resultlengthneeded=unum_format(cur_def, l, NULL, resultlength, &pos1, &status);
552 if(status==U_BUFFER_OVERFLOW_ERROR)
553 {
554 status=U_ZERO_ERROR;
555 resultlength=resultlengthneeded+1;
556 result=(UChar*)malloc(sizeof(UChar) * resultlength);
557 unum_format(cur_def, l, result, resultlength, &pos1, &status);
558 }
559 if(U_FAILURE(status))
560 {
561 log_err("Error in formatting using unum_format(.....): %s\n", myErrorName(status));
562 }
563
564 if(U_FAILURE(status)){
565 log_err("Fail: error in unum_setSymbols: %s\n", myErrorName(status));
566 }
567 unum_applyPattern(cur_frpattern, FALSE, result, u_strlen(result),NULL,NULL);
568
569 for (symType = UNUM_DECIMAL_SEPARATOR_SYMBOL; symType < UNUM_FORMAT_SYMBOL_COUNT; symType++) {
570 status=U_ZERO_ERROR;
571 unum_getSymbol(cur_def, symType, temp1, sizeof(temp1), &status);
572 unum_getSymbol(cur_frpattern, symType, temp2, sizeof(temp2), &status);
573 if(U_FAILURE(status) || u_strcmp(temp1, temp2) != 0)
574 {
575 log_err("Fail: error in getting symbols\n");
576 }
577 else
578 log_verbose("Pass: get and set symbols successful\n");
579 }
580
581 /*format and check with the previous result */
582
583 resultlength=0;
584 resultlengthneeded=unum_format(cur_frpattern, l, NULL, resultlength, &pos1, &status);
585 if(status==U_BUFFER_OVERFLOW_ERROR)
586 {
587 status=U_ZERO_ERROR;
588 resultlength=resultlengthneeded+1;
589 unum_format(cur_frpattern, l, temp1, resultlength, &pos1, &status);
590 }
591 if(U_FAILURE(status))
592 {
593 log_err("Error in formatting using unum_format(.....): %s\n", myErrorName(status));
594 }
595 /* TODO:
596 * This test fails because we have not called unum_applyPattern().
597 * Currently, such an applyPattern() does not exist on the C API, and
598 * we have jitterbug 411 for it.
599 * Since it is close to the 1.5 release, I (markus) am disabling this test just
600 * for this release (I added the test itself only last week).
601 * For the next release, we need to fix this.
602 * Then, remove the uprv_strcmp("1.5", ...) and this comment, and the include "cstring.h" at the beginning of this file.
603 */
604 if(u_strcmp(result, temp1) != 0) {
605 log_err("Formatting failed after setting symbols. result=%s temp1=%s\n", result, temp1);
606 }
607
608
609 /*----------- */
610
611 free(result);
612
613 /* Testing unum_get/setSymbol() */
614 for(i = 0; i < UNUM_FORMAT_SYMBOL_COUNT; ++i) {
615 symbol[0] = (UChar)(0x41 + i);
616 symbol[1] = (UChar)(0x61 + i);
617 unum_setSymbol(cur_frpattern, (UNumberFormatSymbol)i, symbol, 2, &status);
618 if(U_FAILURE(status)) {
619 log_err("Error from unum_setSymbol(%d): %s\n", i, myErrorName(status));
620 return;
621 }
622 }
623 for(i = 0; i < UNUM_FORMAT_SYMBOL_COUNT; ++i) {
624 resultlength = unum_getSymbol(cur_frpattern, (UNumberFormatSymbol)i, symbol, UPRV_LENGTHOF(symbol), &status);
625 if(U_FAILURE(status)) {
626 log_err("Error from unum_getSymbol(%d): %s\n", i, myErrorName(status));
627 return;
628 }
629 if(resultlength != 2 || symbol[0] != 0x41 + i || symbol[1] != 0x61 + i) {
630 log_err("Failure in unum_getSymbol(%d): got unexpected symbol\n", i);
631 }
632 }
633 /*try getting from a bogus symbol*/
634 unum_getSymbol(cur_frpattern, (UNumberFormatSymbol)i, symbol, UPRV_LENGTHOF(symbol), &status);
635 if(U_SUCCESS(status)){
636 log_err("Error : Expected U_ILLEGAL_ARGUMENT_ERROR for bogus symbol");
637 }
638 if(U_FAILURE(status)){
639 if(status != U_ILLEGAL_ARGUMENT_ERROR){
640 log_err("Error: Expected U_ILLEGAL_ARGUMENT_ERROR for bogus symbol, Got %s\n", myErrorName(status));
641 }
642 }
643 status=U_ZERO_ERROR;
644
645 /* Testing unum_getTextAttribute() and unum_setTextAttribute()*/
646 log_verbose("\nTesting getting and setting text attributes\n");
647 resultlength=5;
648 unum_getTextAttribute(cur_fr, UNUM_NEGATIVE_SUFFIX, temp, resultlength, &status);
649 if(U_FAILURE(status))
650 {
651 log_err("Failure in gettting the Text attributes of number format: %s\n", myErrorName(status));
652 }
653 unum_setTextAttribute(cur_def, UNUM_NEGATIVE_SUFFIX, temp, u_strlen(temp), &status);
654 if(U_FAILURE(status))
655 {
656 log_err("Failure in gettting the Text attributes of number format: %s\n", myErrorName(status));
657 }
658 unum_getTextAttribute(cur_def, UNUM_NEGATIVE_SUFFIX, suffix, resultlength, &status);
659 if(U_FAILURE(status))
660 {
661 log_err("Failure in gettting the Text attributes of number format: %s\n", myErrorName(status));
662 }
663 if(u_strcmp(suffix,temp)!=0)
664 log_err("Fail:Error in setTextAttribute or getTextAttribute in setting and getting suffix\n");
665 else
666 log_verbose("Pass: setting and getting suffix works fine\n");
667 /*set it back to normal */
668 u_uastrcpy(temp,"$");
669 unum_setTextAttribute(cur_def, UNUM_NEGATIVE_SUFFIX, temp, u_strlen(temp), &status);
670
671 /*checking some more text setter conditions */
672 u_uastrcpy(prefix, "+");
673 unum_setTextAttribute(def, UNUM_POSITIVE_PREFIX, prefix, u_strlen(prefix) , &status);
674 if(U_FAILURE(status))
675 {
676 log_err("error in setting the text attributes : %s\n", myErrorName(status));
677 }
678 unum_getTextAttribute(def, UNUM_POSITIVE_PREFIX, temp, resultlength, &status);
679 if(U_FAILURE(status))
680 {
681 log_err("error in getting the text attributes : %s\n", myErrorName(status));
682 }
683
684 if(u_strcmp(prefix, temp)!=0)
685 log_err("ERROR: get and setTextAttributes with positive prefix failed\n");
686 else
687 log_verbose("Pass: get and setTextAttributes with positive prefix works fine\n");
688
689 u_uastrcpy(prefix, "+");
690 unum_setTextAttribute(def, UNUM_NEGATIVE_PREFIX, prefix, u_strlen(prefix), &status);
691 if(U_FAILURE(status))
692 {
693 log_err("error in setting the text attributes : %s\n", myErrorName(status));
694 }
695 unum_getTextAttribute(def, UNUM_NEGATIVE_PREFIX, temp, resultlength, &status);
696 if(U_FAILURE(status))
697 {
698 log_err("error in getting the text attributes : %s\n", myErrorName(status));
699 }
700 if(u_strcmp(prefix, temp)!=0)
701 log_err("ERROR: get and setTextAttributes with negative prefix failed\n");
702 else
703 log_verbose("Pass: get and setTextAttributes with negative prefix works fine\n");
704
705 u_uastrcpy(suffix, "+");
706 unum_setTextAttribute(def, UNUM_NEGATIVE_SUFFIX, suffix, u_strlen(suffix) , &status);
707 if(U_FAILURE(status))
708 {
709 log_err("error in setting the text attributes: %s\n", myErrorName(status));
710 }
711
712 unum_getTextAttribute(def, UNUM_NEGATIVE_SUFFIX, temp, resultlength, &status);
713 if(U_FAILURE(status))
714 {
715 log_err("error in getting the text attributes : %s\n", myErrorName(status));
716 }
717 if(u_strcmp(suffix, temp)!=0)
718 log_err("ERROR: get and setTextAttributes with negative suffix failed\n");
719 else
720 log_verbose("Pass: get and settextAttributes with negative suffix works fine\n");
721
722 u_uastrcpy(suffix, "++");
723 unum_setTextAttribute(def, UNUM_POSITIVE_SUFFIX, suffix, u_strlen(suffix) , &status);
724 if(U_FAILURE(status))
725 {
726 log_err("error in setting the text attributes: %s\n", myErrorName(status));
727 }
728
729 unum_getTextAttribute(def, UNUM_POSITIVE_SUFFIX, temp, resultlength, &status);
730 if(U_FAILURE(status))
731 {
732 log_err("error in getting the text attributes : %s\n", myErrorName(status));
733 }
734 if(u_strcmp(suffix, temp)!=0)
735 log_err("ERROR: get and setTextAttributes with negative suffix failed\n");
736 else
737 log_verbose("Pass: get and settextAttributes with negative suffix works fine\n");
738
739 /*Testing unum_getAttribute and unum_setAttribute() */
740 log_verbose("\nTesting get and set Attributes\n");
741 attr=UNUM_GROUPING_SIZE;
742 newvalue=unum_getAttribute(def, attr);
743 newvalue=2;
744 unum_setAttribute(def, attr, newvalue);
745 if(unum_getAttribute(def,attr)!=2)
746 log_err("Fail: error in setting and getting attributes for UNUM_GROUPING_SIZE\n");
747 else
748 log_verbose("Pass: setting and getting attributes for UNUM_GROUPING_SIZE works fine\n");
749
750 attr=UNUM_MULTIPLIER;
751 newvalue=unum_getAttribute(def, attr);
752 newvalue=8;
753 unum_setAttribute(def, attr, newvalue);
754 if(unum_getAttribute(def,attr) != 8)
755 log_err("error in setting and getting attributes for UNUM_MULTIPLIER\n");
756 else
757 log_verbose("Pass:setting and getting attributes for UNUM_MULTIPLIER works fine\n");
758
759 attr=UNUM_SECONDARY_GROUPING_SIZE;
760 newvalue=unum_getAttribute(def, attr);
761 newvalue=2;
762 unum_setAttribute(def, attr, newvalue);
763 if(unum_getAttribute(def,attr) != 2)
764 log_err("error in setting and getting attributes for UNUM_SECONDARY_GROUPING_SIZE\n");
765 else
766 log_verbose("Pass:setting and getting attributes for UNUM_SECONDARY_GROUPING_SIZE works fine\n");
767
768 /*testing set and get Attributes extensively */
769 log_verbose("\nTesting get and set attributes extensively\n");
770 for(attr=UNUM_PARSE_INT_ONLY; attr<= UNUM_PADDING_POSITION; attr=(UNumberFormatAttribute)((int32_t)attr + 1) )
771 {
772 newvalue=unum_getAttribute(fr, attr);
773 unum_setAttribute(def, attr, newvalue);
774 if(unum_getAttribute(def,attr)!=unum_getAttribute(fr, attr))
775 log_err("error in setting and getting attributes\n");
776 else
777 log_verbose("Pass: attributes set and retrieved successfully\n");
778 }
779
780 /*testing spellout format to make sure we can use it successfully.*/
781 log_verbose("\nTesting spellout format\n");
782 if (spellout_def)
783 {
784 static const int32_t values[] = { 0, -5, 105, 1005, 105050 };
785 for (i = 0; i < UPRV_LENGTHOF(values); ++i) {
786 UChar buffer[128];
787 int32_t len;
788 int32_t value = values[i];
789 status = U_ZERO_ERROR;
790 len = unum_format(spellout_def, value, buffer, UPRV_LENGTHOF(buffer), NULL, &status);
791 if(U_FAILURE(status)) {
792 log_err("Error in formatting using unum_format(spellout_fmt, ...): %s\n", myErrorName(status));
793 } else {
794 int32_t pp = 0;
795 int32_t parseResult;
796 /*ustrToAstr(buffer, len, logbuf, UPRV_LENGTHOF(logbuf));*/
797 log_verbose("formatted %d as '%s', length: %d\n", value, aescstrdup(buffer, len), len);
798
799 parseResult = unum_parse(spellout_def, buffer, len, &pp, &status);
800 if (U_FAILURE(status)) {
801 log_err("Error in parsing using unum_format(spellout_fmt, ...): %s\n", myErrorName(status));
802 } else if (parseResult != value) {
803 log_err("unum_format result %d != value %d\n", parseResult, value);
804 }
805 }
806 }
807 }
808 else {
809 log_err("Spellout format is unavailable\n");
810 }
811
812 { /* Test for ticket #7079 */
813 UNumberFormat* dec_en;
814 UChar groupingSep[] = { 0 };
815 UChar numPercent[] = { 0x0031, 0x0032, 0x0025, 0 }; /* "12%" */
816 double parseResult = 0.0;
817
818 status=U_ZERO_ERROR;
819 dec_en = unum_open(UNUM_DECIMAL, NULL, 0, "en_US", NULL, &status);
820 unum_setAttribute(dec_en, UNUM_LENIENT_PARSE, 0);
821 unum_setSymbol(dec_en, UNUM_GROUPING_SEPARATOR_SYMBOL, groupingSep, 0, &status);
822 parseResult = unum_parseDouble(dec_en, numPercent, -1, NULL, &status);
823 /* Without the fix in #7079, the above call will hang */
824 if ( U_FAILURE(status) || parseResult != 12.0 ) {
825 log_err("unum_parseDouble with empty groupingSep: status %s, parseResult %f not 12.0\n",
826 myErrorName(status), parseResult);
827 } else {
828 log_verbose("unum_parseDouble with empty groupingSep: no hang, OK\n");
829 }
830 unum_close(dec_en);
831 }
832
833 { /* Test parse & format of big decimals. Use a number with too many digits to fit in a double,
834 to verify that it is taking the pure decimal path. */
835 UNumberFormat *fmt;
836 const char *bdpattern = "#,##0.#########";
837 const char *numInitial = "12345678900987654321.1234567896";
838 const char *numFormatted = "12,345,678,900,987,654,321.12345679";
839 const char *parseExpected = "12345678900987654321.12345679";
840 int32_t resultSize = 0;
841 int32_t parsePos = 0; /* Output parameter for Parse operations. */
842 #define DESTCAPACITY 100
843 UChar dest[DESTCAPACITY];
844 char desta[DESTCAPACITY];
845 UFieldPosition fieldPos = {0};
846
847 /* Format */
848
849 status = U_ZERO_ERROR;
850 u_uastrcpy(dest, bdpattern);
851 fmt = unum_open(UNUM_PATTERN_DECIMAL, dest, -1, "en", NULL /*parseError*/, &status);
852 if (U_FAILURE(status)) log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
853
854 resultSize = unum_formatDecimal(fmt, numInitial, -1, dest, DESTCAPACITY, NULL, &status);
855 if (U_FAILURE(status)) {
856 log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
857 }
858 u_austrncpy(desta, dest, DESTCAPACITY);
859 if (strcmp(numFormatted, desta) != 0) {
860 log_err("File %s, Line %d, (expected, acutal) = (\"%s\", \"%s\")\n",
861 __FILE__, __LINE__, numFormatted, desta);
862 }
863 if (strlen(numFormatted) != resultSize) {
864 log_err("File %s, Line %d, (expected, actual) = (%d, %d)\n",
865 __FILE__, __LINE__, strlen(numFormatted), resultSize);
866 }
867
868 /* Format with a FieldPosition parameter */
869
870 fieldPos.field = UNUM_DECIMAL_SEPARATOR_FIELD;
871 resultSize = unum_formatDecimal(fmt, numInitial, -1, dest, DESTCAPACITY, &fieldPos, &status);
872 if (U_FAILURE(status)) {
873 log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
874 }
875 u_austrncpy(desta, dest, DESTCAPACITY);
876 if (strcmp(numFormatted, desta) != 0) {
877 log_err("File %s, Line %d, (expected, acutal) = (\"%s\", \"%s\")\n",
878 __FILE__, __LINE__, numFormatted, desta);
879 }
880 if (fieldPos.beginIndex != 26) { /* index of "." in formatted number */
881 log_err("File %s, Line %d, (expected, acutal) = (%d, %d)\n",
882 __FILE__, __LINE__, 0, fieldPos.beginIndex);
883 }
884 if (fieldPos.endIndex != 27) {
885 log_err("File %s, Line %d, (expected, acutal) = (%d, %d)\n",
886 __FILE__, __LINE__, 0, fieldPos.endIndex);
887 }
888
889 /* Parse */
890
891 status = U_ZERO_ERROR;
892 u_uastrcpy(dest, numFormatted); /* Parse the expected output of the formatting test */
893 resultSize = unum_parseDecimal(fmt, dest, -1, NULL, desta, DESTCAPACITY, &status);
894 if (U_FAILURE(status)) {
895 log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
896 }
897 if (strcmp(parseExpected, desta) != 0) {
898 log_err("File %s, Line %d, (expected, actual) = (\"%s\", \"%s\")\n",
899 __FILE__, __LINE__, parseExpected, desta);
900 }
901 if (strlen(parseExpected) != resultSize) {
902 log_err("File %s, Line %d, (expected, actual) = (%d, %d)\n",
903 __FILE__, __LINE__, strlen(parseExpected), resultSize);
904 }
905
906 /* Parse with a parsePos parameter */
907
908 status = U_ZERO_ERROR;
909 u_uastrcpy(dest, numFormatted); /* Parse the expected output of the formatting test */
910 parsePos = 3; /* 12,345,678,900,987,654,321.12345679 */
911 /* start parsing at the the third char */
912 resultSize = unum_parseDecimal(fmt, dest, -1, &parsePos, desta, DESTCAPACITY, &status);
913 if (U_FAILURE(status)) {
914 log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
915 }
916 if (strcmp(parseExpected+2, desta) != 0) { /* "345678900987654321.12345679" */
917 log_err("File %s, Line %d, (expected, actual) = (\"%s\", \"%s\")\n",
918 __FILE__, __LINE__, parseExpected+2, desta);
919 }
920 if (strlen(numFormatted) != parsePos) {
921 log_err("File %s, Line %d, parsePos (expected, actual) = (\"%d\", \"%d\")\n",
922 __FILE__, __LINE__, strlen(parseExpected), parsePos);
923 }
924
925 unum_close(fmt);
926 }
927
928 status = U_ZERO_ERROR;
929 /* Test invalid symbol argument */
930 {
931 int32_t badsymbolLarge = UNUM_FORMAT_SYMBOL_COUNT + 1;
932 int32_t badsymbolSmall = -1;
933 UChar value[10];
934 int32_t valueLength = 10;
935 UNumberFormat *fmt = unum_open(UNUM_DEFAULT, NULL, 0, NULL, NULL, &status);
936 if (U_FAILURE(status)) {
937 log_err("File %s, Line %d, status = %s\n", __FILE__, __LINE__, u_errorName(status));
938 } else {
939 unum_getSymbol(fmt, (UNumberFormatSymbol)badsymbolLarge, NULL, 0, &status);
940 if (U_SUCCESS(status)) log_err("unum_getSymbol()'s status should be ILLEGAL_ARGUMENT with invalid symbol (> UNUM_FORMAT_SYMBOL_COUNT) argument\n");
941
942 status = U_ZERO_ERROR;
943 unum_getSymbol(fmt, (UNumberFormatSymbol)badsymbolSmall, NULL, 0, &status);
944 if (U_SUCCESS(status)) log_err("unum_getSymbol()'s status should be ILLEGAL_ARGUMENT with invalid symbol (less than 0) argument\n");
945
946 status = U_ZERO_ERROR;
947 unum_setSymbol(fmt, (UNumberFormatSymbol)badsymbolLarge, value, valueLength, &status);
948 if (U_SUCCESS(status)) log_err("unum_setSymbol()'s status should be ILLEGAL_ARGUMENT with invalid symbol (> UNUM_FORMAT_SYMBOL_COUNT) argument\n");
949
950 status = U_ZERO_ERROR;
951 unum_setSymbol(fmt, (UNumberFormatSymbol)badsymbolSmall, value, valueLength, &status);
952 if (U_SUCCESS(status)) log_err("unum_setSymbol()'s status should be ILLEGAL_ARGUMENT with invalid symbol (less than 0) argument\n");
953
954 unum_close(fmt);
955 }
956 }
957
958
959 /*closing the NumberFormat() using unum_close(UNumberFormat*)")*/
960 unum_close(def);
961 unum_close(fr);
962 unum_close(cur_def);
963 unum_close(cur_fr);
964 unum_close(per_def);
965 unum_close(per_fr);
966 unum_close(spellout_def);
967 unum_close(pattern);
968 unum_close(cur_frpattern);
969 unum_close(myclone);
970
971 }
972
973 static void TestParseZero(void)
974 {
975 UErrorCode errorCode = U_ZERO_ERROR;
976 UChar input[] = {0x30, 0}; /* Input text is decimal '0' */
977 UChar pat[] = {0x0023,0x003b,0x0023,0}; /* {'#', ';', '#', 0}; */
978 double dbl;
979
980 #if 0
981 UNumberFormat* unum = unum_open( UNUM_DECIMAL /*or UNUM_DEFAULT*/, NULL, -1, NULL, NULL, &errorCode);
982 #else
983 UNumberFormat* unum = unum_open( UNUM_PATTERN_DECIMAL /*needs pattern*/, pat, -1, NULL, NULL, &errorCode);
984 #endif
985
986 dbl = unum_parseDouble( unum, input, -1 /*u_strlen(input)*/, 0 /* 0 = start */, &errorCode );
987 if (U_FAILURE(errorCode)) {
988 log_data_err("Result - %s\n", u_errorName(errorCode));
989 } else {
990 log_verbose("Double: %f\n", dbl);
991 }
992 unum_close(unum);
993 }
994
995 static const UChar dollars2Sym[] = { 0x24,0x32,0x2E,0x30,0x30,0 }; /* $2.00 */
996 static const UChar dollars4Sym[] = { 0x24,0x34,0 }; /* $4 */
997 static const UChar dollars9Sym[] = { 0x39,0xA0,0x24,0 }; /* 9 $ */
998 static const UChar pounds3Sym[] = { 0xA3,0x33,0x2E,0x30,0x30,0 }; /* [POUND]3.00 */
999 static const UChar pounds5Sym[] = { 0xA3,0x35,0 }; /* [POUND]5 */
1000 static const UChar pounds7Sym[] = { 0x37,0xA0,0xA3,0 }; /* 7 [POUND] */
1001 static const UChar euros4Sym[] = { 0x34,0x2C,0x30,0x30,0xA0,0x20AC,0 }; /* 4,00 [EURO] */
1002 static const UChar euros6Sym[] = { 0x36,0xA0,0x20AC,0 }; /* 6 [EURO] */
1003 static const UChar euros8Sym[] = { 0x20AC,0x38,0 }; /* [EURO]8 */
1004 static const UChar dollars4PluEn[] = { 0x34,0x20,0x55,0x53,0x20,0x64,0x6F,0x6C,0x6C,0x61,0x72,0x73,0 }; /* 4 US dollars*/
1005 static const UChar pounds5PluEn[] = { 0x35,0x20,0x42,0x72,0x69,0x74,0x69,0x73,0x68,0x20,0x70,0x6F,0x75,0x6E,0x64,0x73,0x20,0x73,0x74,0x65,0x72,0x6C,0x69,0x6E,0x67,0 }; /* 5 British pounds sterling */
1006 static const UChar euros8PluEn[] = { 0x38,0x20,0x65,0x75,0x72,0x6F,0x73,0 }; /* 8 euros*/
1007 static const UChar euros6PluFr[] = { 0x36,0x20,0x65,0x75,0x72,0x6F,0x73,0 }; /* 6 euros*/
1008
1009 typedef struct {
1010 const char * locale;
1011 const char * descrip;
1012 const UChar * currStr;
1013 const UChar * plurStr;
1014 UErrorCode parsDoubExpectErr;
1015 int32_t parsDoubExpectPos;
1016 double parsDoubExpectVal;
1017 UErrorCode parsCurrExpectErr;
1018 int32_t parsCurrExpectPos;
1019 double parsCurrExpectVal;
1020 const char * parsCurrExpectCurr;
1021 } ParseCurrencyItem;
1022
1023 static const ParseCurrencyItem parseCurrencyItems[] = {
1024 { "en_US", "dollars2", dollars2Sym, NULL, U_ZERO_ERROR, 5, 2.0, U_ZERO_ERROR, 5, 2.0, "USD" },
1025 { "en_US", "dollars4", dollars4Sym, dollars4PluEn, U_ZERO_ERROR, 2, 4.0, U_ZERO_ERROR, 2, 4.0, "USD" },
1026 { "en_US", "dollars9", dollars9Sym, NULL, U_PARSE_ERROR, 1, 0.0, U_PARSE_ERROR, 1, 0.0, "" },
1027 { "en_US", "pounds3", pounds3Sym, NULL, U_PARSE_ERROR, 0, 0.0, U_ZERO_ERROR, 5, 3.0, "GBP" },
1028 { "en_US", "pounds5", pounds5Sym, pounds5PluEn, U_PARSE_ERROR, 0, 0.0, U_ZERO_ERROR, 2, 5.0, "GBP" },
1029 { "en_US", "pounds7", pounds7Sym, NULL, U_PARSE_ERROR, 1, 0.0, U_PARSE_ERROR, 1, 0.0, "" },
1030 { "en_US", "euros8", euros8Sym, euros8PluEn, U_PARSE_ERROR, 0, 0.0, U_ZERO_ERROR, 2, 8.0, "EUR" },
1031
1032 { "en_GB", "pounds3", pounds3Sym, NULL, U_ZERO_ERROR, 5, 3.0, U_ZERO_ERROR, 5, 3.0, "GBP" },
1033 { "en_GB", "pounds5", pounds5Sym, pounds5PluEn, U_ZERO_ERROR, 2, 5.0, U_ZERO_ERROR, 2, 5.0, "GBP" },
1034 { "en_GB", "pounds7", pounds7Sym, NULL, U_PARSE_ERROR, 1, 0.0, U_PARSE_ERROR, 1, 0.0, "" },
1035 { "en_GB", "euros4", euros4Sym, NULL, U_PARSE_ERROR, 4, 0.0, U_PARSE_ERROR, 4, 0.0, "" },
1036 { "en_GB", "euros6", euros6Sym, NULL, U_PARSE_ERROR, 1, 0.0, U_PARSE_ERROR, 1, 0.0, "" },
1037 { "en_GB", "euros8", euros8Sym, euros8PluEn, U_PARSE_ERROR, 0, 0.0, U_ZERO_ERROR, 2, 8.0, "EUR" },
1038 { "en_GB", "dollars4", dollars4Sym, dollars4PluEn, U_PARSE_ERROR, 0, 0.0, U_ZERO_ERROR, 2, 4.0, "USD" },
1039
1040 { "fr_FR", "euros4", euros4Sym, NULL, U_ZERO_ERROR, 6, 4.0, U_ZERO_ERROR, 6, 4.0, "EUR" },
1041 { "fr_FR", "euros6", euros6Sym, euros6PluFr, U_ZERO_ERROR, 3, 6.0, U_ZERO_ERROR, 3, 6.0, "EUR" },
1042 { "fr_FR", "euros8", euros8Sym, NULL, U_PARSE_ERROR, 0, 0.0, U_PARSE_ERROR, 0, 0.0, "" },
1043 { "fr_FR", "dollars2", dollars2Sym, NULL, U_PARSE_ERROR, 0, 0.0, U_PARSE_ERROR, 0, 0.0, "" },
1044 { "fr_FR", "dollars4", dollars4Sym, NULL, U_PARSE_ERROR, 0, 0.0, U_PARSE_ERROR, 0, 0.0, "" },
1045
1046 { NULL, NULL, NULL, NULL, 0, 0, 0.0, 0, 0, 0.0, NULL }
1047 };
1048
1049 static void TestParseCurrency()
1050 {
1051 const ParseCurrencyItem * itemPtr;
1052 for (itemPtr = parseCurrencyItems; itemPtr->locale != NULL; ++itemPtr) {
1053 UNumberFormat* unum;
1054 UErrorCode status;
1055 double parseVal;
1056 int32_t parsePos;
1057 UChar parseCurr[4];
1058 char parseCurrB[4];
1059
1060 status = U_ZERO_ERROR;
1061 unum = unum_open(UNUM_CURRENCY, NULL, 0, itemPtr->locale, NULL, &status);
1062 if (U_SUCCESS(status)) {
1063 status = U_ZERO_ERROR;
1064 parsePos = 0;
1065 parseVal = unum_parseDouble(unum, itemPtr->currStr, -1, &parsePos, &status);
1066 if (status != itemPtr->parsDoubExpectErr || parsePos != itemPtr->parsDoubExpectPos || parseVal != itemPtr->parsDoubExpectVal) {
1067 log_err("UNUM_CURRENCY parseDouble %s/%s, expect %s pos %d val %.1f, get %s pos %d val %.1f\n",
1068 itemPtr->locale, itemPtr->descrip,
1069 u_errorName(itemPtr->parsDoubExpectErr), itemPtr->parsDoubExpectPos, itemPtr->parsDoubExpectVal,
1070 u_errorName(status), parsePos, parseVal );
1071 }
1072 status = U_ZERO_ERROR;
1073 parsePos = 0;
1074 parseCurr[0] = 0;
1075 parseVal = unum_parseDoubleCurrency(unum, itemPtr->currStr, -1, &parsePos, parseCurr, &status);
1076 u_austrncpy(parseCurrB, parseCurr, 4);
1077 if (status != itemPtr->parsCurrExpectErr || parsePos != itemPtr->parsCurrExpectPos || parseVal != itemPtr->parsCurrExpectVal ||
1078 strncmp(parseCurrB, itemPtr->parsCurrExpectCurr, 4) != 0) {
1079 log_err("UNUM_CURRENCY parseDoubleCurrency %s/%s, expect %s pos %d val %.1f cur %s, get %s pos %d val %.1f cur %s\n",
1080 itemPtr->locale, itemPtr->descrip,
1081 u_errorName(itemPtr->parsCurrExpectErr), itemPtr->parsCurrExpectPos, itemPtr->parsCurrExpectVal, itemPtr->parsCurrExpectCurr,
1082 u_errorName(status), parsePos, parseVal, parseCurrB );
1083 }
1084 unum_close(unum);
1085 } else {
1086 log_data_err("unexpected error in unum_open UNUM_CURRENCY for locale %s: '%s'\n", itemPtr->locale, u_errorName(status));
1087 }
1088
1089 if (itemPtr->plurStr != NULL) {
1090 status = U_ZERO_ERROR;
1091 unum = unum_open(UNUM_CURRENCY_PLURAL, NULL, 0, itemPtr->locale, NULL, &status);
1092 if (U_SUCCESS(status)) {
1093 status = U_ZERO_ERROR;
1094 parsePos = 0;
1095 parseVal = unum_parseDouble(unum, itemPtr->plurStr, -1, &parsePos, &status);
1096 if (status != itemPtr->parsDoubExpectErr || parseVal != itemPtr->parsDoubExpectVal) {
1097 log_err("UNUM_CURRENCY parseDouble %s/%s, expect %s val %.1f, get %s val %.1f\n",
1098 itemPtr->locale, itemPtr->descrip,
1099 u_errorName(itemPtr->parsDoubExpectErr), itemPtr->parsDoubExpectVal,
1100 u_errorName(status), parseVal );
1101 }
1102 status = U_ZERO_ERROR;
1103 parsePos = 0;
1104 parseCurr[0] = 0;
1105 parseVal = unum_parseDoubleCurrency(unum, itemPtr->plurStr, -1, &parsePos, parseCurr, &status);
1106 u_austrncpy(parseCurrB, parseCurr, 4);
1107 if (status != itemPtr->parsCurrExpectErr || parseVal != itemPtr->parsCurrExpectVal ||
1108 strncmp(parseCurrB, itemPtr->parsCurrExpectCurr, 4) != 0) {
1109 log_err("UNUM_CURRENCY parseDoubleCurrency %s/%s, expect %s val %.1f cur %s, get %s val %.1f cur %s\n",
1110 itemPtr->locale, itemPtr->descrip,
1111 u_errorName(itemPtr->parsCurrExpectErr), itemPtr->parsCurrExpectVal, itemPtr->parsCurrExpectCurr,
1112 u_errorName(status), parseVal, parseCurrB );
1113 }
1114 unum_close(unum);
1115 } else {
1116 log_data_err("unexpected error in unum_open UNUM_CURRENCY_PLURAL for locale %s: '%s'\n", itemPtr->locale, u_errorName(status));
1117 }
1118 }
1119 }
1120 }
1121
1122 typedef struct {
1123 const char * testname;
1124 const char * locale;
1125 UBool lenient;
1126 const UChar * source;
1127 int32_t startPos;
1128 int32_t value;
1129 int32_t endPos;
1130 UErrorCode status;
1131 } NumParseTestItem;
1132
1133 static const UChar ustr_zh50d[] = {0x4E94, 0x3007, 0}; /* decimal 50 */
1134 static const UChar ustr_zh05a[] = {0x96F6, 0x4E94, 0}; /* decimal-alt 05 */
1135 static const UChar ustr_zh05d[] = {0x3007, 0x4E94, 0}; /* decimal 05 */
1136
1137 static const NumParseTestItem altnumParseTests[] = {
1138 /* name loc lenent src start val end status */
1139 { "zh@hd,50dL","zh@numbers=hanidec", TRUE, ustr_zh50d, 0, 50, 2, U_ZERO_ERROR },
1140 { "zh@hd,05aL","zh@numbers=hanidec", TRUE, ustr_zh05a, 0, 5, 2, U_ZERO_ERROR },
1141 { "zh@hd,05dL","zh@numbers=hanidec", TRUE, ustr_zh05d, 0, 5, 2, U_ZERO_ERROR },
1142 { NULL, NULL, FALSE, NULL, 0, 0, 0, 0 } /* terminator */
1143 };
1144
1145 static void TestParseAltNum(void)
1146 {
1147 const NumParseTestItem * testPtr;
1148 for (testPtr = altnumParseTests; testPtr->testname != NULL; ++testPtr) {
1149 UErrorCode status = U_ZERO_ERROR;
1150 int32_t value, position = testPtr->startPos;
1151 UNumberFormat *nf = unum_open(UNUM_DECIMAL, NULL, 0, testPtr->locale, NULL, &status);
1152 if (U_FAILURE(status)) {
1153 log_err_status(status, "unum_open fails for UNUM_DECIMAL with locale %s, status %s\n", testPtr->locale, myErrorName(status));
1154 continue;
1155 }
1156 unum_setAttribute(nf, UNUM_LENIENT_PARSE, testPtr->lenient);
1157 value = unum_parse(nf, testPtr->source, -1, &position, &status);
1158 if ( value != testPtr->value || position != testPtr->endPos || status != testPtr->status ) {
1159 log_err("unum_parse DECIMAL, locale %s, testname %s, startPos %d: for value / endPos / status, expected %d / %d / %s, got %d / %d / %s\n",
1160 testPtr->locale, testPtr->testname, testPtr->startPos,
1161 testPtr->value, testPtr->endPos, myErrorName(testPtr->status),
1162 value, position, myErrorName(status) );
1163 }
1164 unum_close(nf);
1165 }
1166 }
1167
1168 static const UChar ustr_en0[] = {0x7A, 0x65, 0x72, 0x6F, 0}; /* zero */
1169 static const UChar ustr_123[] = {0x31, 0x32, 0x33, 0}; /* 123 */
1170 static const UChar ustr_en123[] = {0x6f, 0x6e, 0x65, 0x20, 0x68, 0x75, 0x6e, 0x64, 0x72, 0x65, 0x64,
1171 0x20, 0x74, 0x77, 0x65, 0x6e, 0x74, 0x79,
1172 0x2d, 0x74, 0x68, 0x72, 0x65, 0x65, 0}; /* one hundred twenty-three */
1173 static const UChar ustr_fr123[] = {0x63, 0x65, 0x6e, 0x74, 0x20, 0x76, 0x69, 0x6e, 0x67, 0x74, 0x2d,
1174 0x74, 0x72, 0x6f, 0x69, 0x73, 0}; /* cent vingt-trois */
1175 static const UChar ustr_ja123[] = {0x767e, 0x4e8c, 0x5341, 0x4e09, 0}; /* kanji 100(+)2(*)10(+)3 */
1176 static const UChar ustr_zh50s[] = {0x4E94, 0x5341, 0}; /* spellout 50 */
1177 //static const UChar ustr_zh50d[] = [reuse from above] /* decimal 50 */
1178 //static const UChar ustr_zh05a[] = [reuse from above] /* decimal-alt 05 */
1179 //static const UChar ustr_zh05d[] = [reuse from above] /* decimal 05 */
1180
1181 #define NUMERIC_STRINGS_NOT_PARSEABLE 1 // ticket/8224
1182
1183 static const NumParseTestItem spelloutParseTests[] = {
1184 /* name loc lenent src start val end status */
1185 { "en0", "en", FALSE, ustr_en0, 0, 0, 4, U_ZERO_ERROR },
1186 { "en0", "en", FALSE, ustr_en0, 2, 0, 2, U_PARSE_ERROR },
1187 { "en0", "ja", FALSE, ustr_en0, 0, 0, 0, U_PARSE_ERROR },
1188 #if NUMERIC_STRINGS_NOT_PARSEABLE
1189 { "123", "en", FALSE, ustr_123, 0, 0, 0, U_PARSE_ERROR },
1190 #else
1191 { "123", "en", FALSE, ustr_123, 0, 123, 3, U_ZERO_ERROR },
1192 #endif
1193 { "123L", "en", TRUE, ustr_123, 0, 123, 3, U_ZERO_ERROR },
1194 { "en123", "en", FALSE, ustr_en123, 0, 123, 24, U_ZERO_ERROR },
1195 { "en123", "en", FALSE, ustr_en123, 12, 23, 24, U_ZERO_ERROR },
1196 { "en123", "fr", FALSE, ustr_en123, 16, 0, 16, U_PARSE_ERROR },
1197 { "fr123", "fr", FALSE, ustr_fr123, 0, 123, 16, U_ZERO_ERROR },
1198 { "fr123", "fr", FALSE, ustr_fr123, 5, 23, 16, U_ZERO_ERROR },
1199 { "fr123", "en", FALSE, ustr_fr123, 0, 0, 0, U_PARSE_ERROR },
1200 { "ja123", "ja", FALSE, ustr_ja123, 0, 123, 4, U_ZERO_ERROR },
1201 { "ja123", "ja", FALSE, ustr_ja123, 1, 23, 4, U_ZERO_ERROR },
1202 { "ja123", "fr", FALSE, ustr_ja123, 0, 0, 0, U_PARSE_ERROR },
1203 { "zh,50s", "zh", FALSE, ustr_zh50s, 0, 50, 2, U_ZERO_ERROR },
1204 // from ICU50m2, NUMERIC_STRINGS_NOT_PARSEABLE no longer affects the next three
1205 { "zh@hd,50d", "zh@numbers=hanidec", FALSE, ustr_zh50d, 0, 50, 2, U_ZERO_ERROR },
1206 { "zh@hd,05a", "zh@numbers=hanidec", FALSE, ustr_zh05a, 0, 5, 2, U_ZERO_ERROR },
1207 { "zh@hd,05d", "zh@numbers=hanidec", FALSE, ustr_zh05d, 0, 5, 2, U_ZERO_ERROR },
1208 { "zh@hd,50dL","zh@numbers=hanidec", TRUE, ustr_zh50d, 0, 50, 2, U_ZERO_ERROR },
1209 { "zh@hd,05aL","zh@numbers=hanidec", TRUE, ustr_zh05a, 0, 5, 2, U_ZERO_ERROR },
1210 { "zh@hd,05dL","zh@numbers=hanidec", TRUE, ustr_zh05d, 0, 5, 2, U_ZERO_ERROR },
1211 { "zh,50dL","zh", TRUE, ustr_zh50d, 0, 50, 2, U_ZERO_ERROR }, /* changed in ICU50m2 */
1212 { "zh,05aL","zh", TRUE, ustr_zh05a, 0, 0, 1, U_ZERO_ERROR },
1213 { "zh,05dL","zh", TRUE, ustr_zh05d, 0, 5, 2, U_ZERO_ERROR }, /* changed in ICU50m2 */
1214 { NULL, NULL, FALSE, NULL, 0, 0, 0, 0 } /* terminator */
1215 };
1216
1217 static void TestSpelloutNumberParse()
1218 {
1219 const NumParseTestItem * testPtr;
1220 for (testPtr = spelloutParseTests; testPtr->testname != NULL; ++testPtr) {
1221 UErrorCode status = U_ZERO_ERROR;
1222 int32_t value, position = testPtr->startPos;
1223 UNumberFormat *nf = unum_open(UNUM_SPELLOUT, NULL, 0, testPtr->locale, NULL, &status);
1224 if (U_FAILURE(status)) {
1225 log_err_status(status, "unum_open fails for UNUM_SPELLOUT with locale %s, status %s\n", testPtr->locale, myErrorName(status));
1226 continue;
1227 }
1228 unum_setAttribute(nf, UNUM_LENIENT_PARSE, testPtr->lenient);
1229 value = unum_parse(nf, testPtr->source, -1, &position, &status);
1230 if ( value != testPtr->value || position != testPtr->endPos || status != testPtr->status ) {
1231 log_err("unum_parse SPELLOUT, locale %s, testname %s, startPos %d: for value / endPos / status, expected %d / %d / %s, got %d / %d / %s\n",
1232 testPtr->locale, testPtr->testname, testPtr->startPos,
1233 testPtr->value, testPtr->endPos, myErrorName(testPtr->status),
1234 value, position, myErrorName(status) );
1235 }
1236 unum_close(nf);
1237 }
1238 }
1239
1240 static void TestSignificantDigits()
1241 {
1242 UChar temp[128];
1243 int32_t resultlengthneeded;
1244 int32_t resultlength;
1245 UErrorCode status = U_ZERO_ERROR;
1246 UChar *result = NULL;
1247 UNumberFormat* fmt;
1248 double d = 123456.789;
1249
1250 u_uastrcpy(temp, "###0.0#");
1251 fmt=unum_open(UNUM_IGNORE, temp, -1, NULL, NULL,&status);
1252 if (U_FAILURE(status)) {
1253 log_data_err("got unexpected error for unum_open: '%s'\n", u_errorName(status));
1254 return;
1255 }
1256 unum_setAttribute(fmt, UNUM_SIGNIFICANT_DIGITS_USED, TRUE);
1257 unum_setAttribute(fmt, UNUM_MAX_SIGNIFICANT_DIGITS, 6);
1258
1259 u_uastrcpy(temp, "123457");
1260 resultlength=0;
1261 resultlengthneeded=unum_formatDouble(fmt, d, NULL, resultlength, NULL, &status);
1262 if(status==U_BUFFER_OVERFLOW_ERROR)
1263 {
1264 status=U_ZERO_ERROR;
1265 resultlength=resultlengthneeded+1;
1266 result=(UChar*)malloc(sizeof(UChar) * resultlength);
1267 unum_formatDouble(fmt, d, result, resultlength, NULL, &status);
1268 }
1269 if(U_FAILURE(status))
1270 {
1271 log_err("Error in formatting using unum_formatDouble(.....): %s\n", myErrorName(status));
1272 return;
1273 }
1274 if(u_strcmp(result, temp)==0)
1275 log_verbose("Pass: Number Formatting using unum_formatDouble() Successful\n");
1276 else
1277 log_err("FAIL: Error in number formatting using unum_formatDouble()\n");
1278 free(result);
1279 unum_close(fmt);
1280 }
1281
1282 static void TestSigDigRounding()
1283 {
1284 UErrorCode status = U_ZERO_ERROR;
1285 UChar expected[128];
1286 UChar result[128];
1287 char temp1[128];
1288 char temp2[128];
1289 UNumberFormat* fmt;
1290 double d = 123.4;
1291
1292 fmt=unum_open(UNUM_DECIMAL, NULL, 0, NULL /* "en_US"*/, NULL, &status);
1293 if (U_FAILURE(status)) {
1294 log_data_err("got unexpected error for unum_open: '%s'\n", u_errorName(status));
1295 return;
1296 }
1297 unum_setAttribute(fmt, UNUM_LENIENT_PARSE, FALSE);
1298 unum_setAttribute(fmt, UNUM_SIGNIFICANT_DIGITS_USED, TRUE);
1299 unum_setAttribute(fmt, UNUM_MAX_SIGNIFICANT_DIGITS, 2);
1300 /* unum_setAttribute(fmt, UNUM_MAX_FRACTION_DIGITS, 0); */
1301
1302 unum_setAttribute(fmt, UNUM_ROUNDING_MODE, UNUM_ROUND_UP);
1303 unum_setDoubleAttribute(fmt, UNUM_ROUNDING_INCREMENT, 20.0);
1304
1305 (void)unum_formatDouble(fmt, d, result, UPRV_LENGTHOF(result), NULL, &status);
1306 if(U_FAILURE(status))
1307 {
1308 log_err("Error in formatting using unum_formatDouble(.....): %s\n", myErrorName(status));
1309 return;
1310 }
1311
1312 u_uastrcpy(expected, "140");
1313 if(u_strcmp(result, expected)!=0)
1314 log_err("FAIL: Error in unum_formatDouble result %s instead of %s\n", u_austrcpy(temp1, result), u_austrcpy(temp2, expected) );
1315
1316 unum_close(fmt);
1317 }
1318
1319 static void TestNumberFormatPadding()
1320 {
1321 UChar *result=NULL;
1322 UChar temp1[512];
1323
1324 UErrorCode status=U_ZERO_ERROR;
1325 int32_t resultlength;
1326 int32_t resultlengthneeded;
1327 UNumberFormat *pattern;
1328 double d1;
1329 double d = -10456.37;
1330 UFieldPosition pos1;
1331 int32_t parsepos;
1332
1333 /* create a number format using unum_openPattern(....)*/
1334 log_verbose("\nTesting unum_openPattern() with padding\n");
1335 u_uastrcpy(temp1, "*#,##0.0#*;(#,##0.0#)");
1336 status=U_ZERO_ERROR;
1337 pattern=unum_open(UNUM_IGNORE,temp1, u_strlen(temp1), NULL, NULL,&status);
1338 if(U_SUCCESS(status))
1339 {
1340 log_err("error in unum_openPattern(%s): %s\n", temp1, myErrorName(status) );
1341 }
1342 else
1343 {
1344 unum_close(pattern);
1345 }
1346
1347 /* u_uastrcpy(temp1, "*x#,###,###,##0.0#;(*x#,###,###,##0.0#)"); */
1348 u_uastrcpy(temp1, "*x#,###,###,##0.0#;*x(###,###,##0.0#)");
1349 status=U_ZERO_ERROR;
1350 pattern=unum_open(UNUM_IGNORE,temp1, u_strlen(temp1), "en_US",NULL, &status);
1351 if(U_FAILURE(status))
1352 {
1353 log_err_status(status, "error in padding unum_openPattern(%s): %s\n", temp1, myErrorName(status) );;
1354 }
1355 else {
1356 log_verbose("Pass: padding unum_openPattern() works fine\n");
1357
1358 /*test for unum_toPattern()*/
1359 log_verbose("\nTesting padding unum_toPattern()\n");
1360 resultlength=0;
1361 resultlengthneeded=unum_toPattern(pattern, FALSE, NULL, resultlength, &status);
1362 if(status==U_BUFFER_OVERFLOW_ERROR)
1363 {
1364 status=U_ZERO_ERROR;
1365 resultlength=resultlengthneeded+1;
1366 result=(UChar*)malloc(sizeof(UChar) * resultlength);
1367 unum_toPattern(pattern, FALSE, result, resultlength, &status);
1368 }
1369 if(U_FAILURE(status))
1370 {
1371 log_err("error in extracting the padding pattern from UNumberFormat: %s\n", myErrorName(status));
1372 }
1373 else
1374 {
1375 if(u_strcmp(result, temp1)!=0)
1376 log_err("FAIL: Error in extracting the padding pattern using unum_toPattern()\n");
1377 else
1378 log_verbose("Pass: extracted the padding pattern correctly using unum_toPattern()\n");
1379 free(result);
1380 }
1381 /* u_uastrcpy(temp1, "(xxxxxxx10,456.37)"); */
1382 u_uastrcpy(temp1, "xxxxx(10,456.37)");
1383 resultlength=0;
1384 pos1.field = UNUM_FRACTION_FIELD;
1385 resultlengthneeded=unum_formatDouble(pattern, d, NULL, resultlength, &pos1, &status);
1386 if(status==U_BUFFER_OVERFLOW_ERROR)
1387 {
1388 status=U_ZERO_ERROR;
1389 resultlength=resultlengthneeded+1;
1390 result=(UChar*)malloc(sizeof(UChar) * resultlength);
1391 unum_formatDouble(pattern, d, result, resultlength, NULL, &status);
1392 }
1393 if(U_FAILURE(status))
1394 {
1395 log_err("Error in formatting using unum_formatDouble(.....) with padding : %s\n", myErrorName(status));
1396 }
1397 else
1398 {
1399 if(u_strcmp(result, temp1)==0)
1400 log_verbose("Pass: Number Formatting using unum_formatDouble() padding Successful\n");
1401 else
1402 log_data_err("FAIL: Error in number formatting using unum_formatDouble() with padding\n");
1403 if(pos1.beginIndex == 13 && pos1.endIndex == 15)
1404 log_verbose("Pass: Complete number formatting using unum_formatDouble() successful\n");
1405 else
1406 log_err("Fail: Error in complete number Formatting using unum_formatDouble()\nGot: b=%d end=%d\nExpected: b=13 end=15\n",
1407 pos1.beginIndex, pos1.endIndex);
1408
1409
1410 /* Testing unum_parse() and unum_parseDouble() */
1411 log_verbose("\nTesting padding unum_parseDouble()\n");
1412 parsepos=0;
1413 d1=unum_parseDouble(pattern, result, u_strlen(result), &parsepos, &status);
1414 if(U_FAILURE(status))
1415 {
1416 log_err("padding parse failed. The error is : %s\n", myErrorName(status));
1417 }
1418
1419 if(d1!=d)
1420 log_err("Fail: Error in padding parsing\n");
1421 else
1422 log_verbose("Pass: padding parsing successful\n");
1423 free(result);
1424 }
1425 }
1426
1427 unum_close(pattern);
1428 }
1429
1430 static UBool
1431 withinErr(double a, double b, double err) {
1432 return uprv_fabs(a - b) < uprv_fabs(a * err);
1433 }
1434
1435 static void TestInt64Format() {
1436 UChar temp1[512];
1437 UChar result[512];
1438 UNumberFormat *fmt;
1439 UErrorCode status = U_ZERO_ERROR;
1440 const double doubleInt64Max = (double)U_INT64_MAX;
1441 const double doubleInt64Min = (double)U_INT64_MIN;
1442 const double doubleBig = 10.0 * (double)U_INT64_MAX;
1443 int32_t val32;
1444 int64_t val64;
1445 double valDouble;
1446 int32_t parsepos;
1447
1448 /* create a number format using unum_openPattern(....) */
1449 log_verbose("\nTesting Int64Format\n");
1450 u_uastrcpy(temp1, "#.#E0");
1451 fmt = unum_open(UNUM_IGNORE, temp1, u_strlen(temp1), NULL, NULL, &status);
1452 if(U_FAILURE(status)) {
1453 log_data_err("error in unum_openPattern() - %s\n", myErrorName(status));
1454 } else {
1455 unum_setAttribute(fmt, UNUM_MAX_FRACTION_DIGITS, 20);
1456 unum_formatInt64(fmt, U_INT64_MAX, result, 512, NULL, &status);
1457 if (U_FAILURE(status)) {
1458 log_err("error in unum_format(): %s\n", myErrorName(status));
1459 } else {
1460 log_verbose("format int64max: '%s'\n", result);
1461 parsepos = 0;
1462 val32 = unum_parse(fmt, result, u_strlen(result), &parsepos, &status);
1463 if (status != U_INVALID_FORMAT_ERROR) {
1464 log_err("parse didn't report error: %s\n", myErrorName(status));
1465 } else if (val32 != INT32_MAX) {
1466 log_err("parse didn't pin return value, got: %d\n", val32);
1467 }
1468
1469 status = U_ZERO_ERROR;
1470 parsepos = 0;
1471 val64 = unum_parseInt64(fmt, result, u_strlen(result), &parsepos, &status);
1472 if (U_FAILURE(status)) {
1473 log_err("parseInt64 returned error: %s\n", myErrorName(status));
1474 } else if (val64 != U_INT64_MAX) {
1475 log_err("parseInt64 returned incorrect value, got: %ld\n", val64);
1476 }
1477
1478 status = U_ZERO_ERROR;
1479 parsepos = 0;
1480 valDouble = unum_parseDouble(fmt, result, u_strlen(result), &parsepos, &status);
1481 if (U_FAILURE(status)) {
1482 log_err("parseDouble returned error: %s\n", myErrorName(status));
1483 } else if (valDouble != doubleInt64Max) {
1484 log_err("parseDouble returned incorrect value, got: %g\n", valDouble);
1485 }
1486 }
1487
1488 unum_formatInt64(fmt, U_INT64_MIN, result, 512, NULL, &status);
1489 if (U_FAILURE(status)) {
1490 log_err("error in unum_format(): %s\n", myErrorName(status));
1491 } else {
1492 log_verbose("format int64min: '%s'\n", result);
1493 parsepos = 0;
1494 val32 = unum_parse(fmt, result, u_strlen(result), &parsepos, &status);
1495 if (status != U_INVALID_FORMAT_ERROR) {
1496 log_err("parse didn't report error: %s\n", myErrorName(status));
1497 } else if (val32 != INT32_MIN) {
1498 log_err("parse didn't pin return value, got: %d\n", val32);
1499 }
1500
1501 status = U_ZERO_ERROR;
1502 parsepos = 0;
1503 val64 = unum_parseInt64(fmt, result, u_strlen(result), &parsepos, &status);
1504 if (U_FAILURE(status)) {
1505 log_err("parseInt64 returned error: %s\n", myErrorName(status));
1506 } else if (val64 != U_INT64_MIN) {
1507 log_err("parseInt64 returned incorrect value, got: %ld\n", val64);
1508 }
1509
1510 status = U_ZERO_ERROR;
1511 parsepos = 0;
1512 valDouble = unum_parseDouble(fmt, result, u_strlen(result), &parsepos, &status);
1513 if (U_FAILURE(status)) {
1514 log_err("parseDouble returned error: %s\n", myErrorName(status));
1515 } else if (valDouble != doubleInt64Min) {
1516 log_err("parseDouble returned incorrect value, got: %g\n", valDouble);
1517 }
1518 }
1519
1520 unum_formatDouble(fmt, doubleBig, result, 512, NULL, &status);
1521 if (U_FAILURE(status)) {
1522 log_err("error in unum_format(): %s\n", myErrorName(status));
1523 } else {
1524 log_verbose("format doubleBig: '%s'\n", result);
1525 parsepos = 0;
1526 val32 = unum_parse(fmt, result, u_strlen(result), &parsepos, &status);
1527 if (status != U_INVALID_FORMAT_ERROR) {
1528 log_err("parse didn't report error: %s\n", myErrorName(status));
1529 } else if (val32 != INT32_MAX) {
1530 log_err("parse didn't pin return value, got: %d\n", val32);
1531 }
1532
1533 status = U_ZERO_ERROR;
1534 parsepos = 0;
1535 val64 = unum_parseInt64(fmt, result, u_strlen(result), &parsepos, &status);
1536 if (status != U_INVALID_FORMAT_ERROR) {
1537 log_err("parseInt64 didn't report error error: %s\n", myErrorName(status));
1538 } else if (val64 != U_INT64_MAX) {
1539 log_err("parseInt64 returned incorrect value, got: %ld\n", val64);
1540 }
1541
1542 status = U_ZERO_ERROR;
1543 parsepos = 0;
1544 valDouble = unum_parseDouble(fmt, result, u_strlen(result), &parsepos, &status);
1545 if (U_FAILURE(status)) {
1546 log_err("parseDouble returned error: %s\n", myErrorName(status));
1547 } else if (!withinErr(valDouble, doubleBig, 1e-15)) {
1548 log_err("parseDouble returned incorrect value, got: %g\n", valDouble);
1549 }
1550 }
1551
1552 u_uastrcpy(result, "5.06e-27");
1553 parsepos = 0;
1554 valDouble = unum_parseDouble(fmt, result, u_strlen(result), &parsepos, &status);
1555 if (U_FAILURE(status)) {
1556 log_err("parseDouble() returned error: %s\n", myErrorName(status));
1557 } else if (!withinErr(valDouble, 5.06e-27, 1e-15)) {
1558 log_err("parseDouble() returned incorrect value, got: %g\n", valDouble);
1559 }
1560 }
1561 unum_close(fmt);
1562 }
1563
1564
1565 static void test_fmt(UNumberFormat* fmt, UBool isDecimal) {
1566 char temp[512];
1567 UChar buffer[512];
1568 int32_t BUFSIZE = UPRV_LENGTHOF(buffer);
1569 double vals[] = {
1570 -.2, 0, .2, 5.5, 15.2, 250, 123456789
1571 };
1572 int i;
1573
1574 for (i = 0; i < UPRV_LENGTHOF(vals); ++i) {
1575 UErrorCode status = U_ZERO_ERROR;
1576 unum_formatDouble(fmt, vals[i], buffer, BUFSIZE, NULL, &status);
1577 if (U_FAILURE(status)) {
1578 log_err("failed to format: %g, returned %s\n", vals[i], u_errorName(status));
1579 } else {
1580 u_austrcpy(temp, buffer);
1581 log_verbose("formatting %g returned '%s'\n", vals[i], temp);
1582 }
1583 }
1584
1585 /* check APIs now */
1586 {
1587 UErrorCode status = U_ZERO_ERROR;
1588 UParseError perr;
1589 u_uastrcpy(buffer, "#,##0.0#");
1590 unum_applyPattern(fmt, FALSE, buffer, -1, &perr, &status);
1591 if (isDecimal ? U_FAILURE(status) : (status != U_UNSUPPORTED_ERROR)) {
1592 log_err("got unexpected error for applyPattern: '%s'\n", u_errorName(status));
1593 }
1594 }
1595
1596 {
1597 int isLenient = unum_getAttribute(fmt, UNUM_LENIENT_PARSE);
1598 log_verbose("lenient: 0x%x\n", isLenient);
1599 if (isLenient != FALSE) {
1600 log_err("didn't expect lenient value: %d\n", isLenient);
1601 }
1602
1603 unum_setAttribute(fmt, UNUM_LENIENT_PARSE, TRUE);
1604 isLenient = unum_getAttribute(fmt, UNUM_LENIENT_PARSE);
1605 if (isLenient != TRUE) {
1606 log_err("didn't expect lenient value after set: %d\n", isLenient);
1607 }
1608 }
1609
1610 {
1611 double val2;
1612 double val = unum_getDoubleAttribute(fmt, UNUM_LENIENT_PARSE);
1613 if (val != -1) {
1614 log_err("didn't expect double attribute\n");
1615 }
1616 val = unum_getDoubleAttribute(fmt, UNUM_ROUNDING_INCREMENT);
1617 if ((val == -1) == isDecimal) {
1618 log_err("didn't expect -1 rounding increment\n");
1619 }
1620 unum_setDoubleAttribute(fmt, UNUM_ROUNDING_INCREMENT, val+.5);
1621 val2 = unum_getDoubleAttribute(fmt, UNUM_ROUNDING_INCREMENT);
1622 if (isDecimal && (val2 - val != .5)) {
1623 log_err("set rounding increment had no effect on decimal format");
1624 }
1625 }
1626
1627 {
1628 UErrorCode status = U_ZERO_ERROR;
1629 int len = unum_getTextAttribute(fmt, UNUM_DEFAULT_RULESET, buffer, BUFSIZE, &status);
1630 if (isDecimal ? (status != U_UNSUPPORTED_ERROR) : U_FAILURE(status)) {
1631 log_err("got unexpected error for get default ruleset: '%s'\n", u_errorName(status));
1632 }
1633 if (U_SUCCESS(status)) {
1634 u_austrcpy(temp, buffer);
1635 log_verbose("default ruleset: '%s'\n", temp);
1636 }
1637
1638 status = U_ZERO_ERROR;
1639 len = unum_getTextAttribute(fmt, UNUM_PUBLIC_RULESETS, buffer, BUFSIZE, &status);
1640 if (isDecimal ? (status != U_UNSUPPORTED_ERROR) : U_FAILURE(status)) {
1641 log_err("got unexpected error for get public rulesets: '%s'\n", u_errorName(status));
1642 }
1643 if (U_SUCCESS(status)) {
1644 u_austrcpy(temp, buffer);
1645 log_verbose("public rulesets: '%s'\n", temp);
1646
1647 /* set the default ruleset to the first one found, and retry */
1648
1649 if (len > 0) {
1650 for (i = 0; i < len && temp[i] != ';'; ++i){};
1651 if (i < len) {
1652 buffer[i] = 0;
1653 unum_setTextAttribute(fmt, UNUM_DEFAULT_RULESET, buffer, -1, &status);
1654 if (U_FAILURE(status)) {
1655 log_err("unexpected error setting default ruleset: '%s'\n", u_errorName(status));
1656 } else {
1657 int len2 = unum_getTextAttribute(fmt, UNUM_DEFAULT_RULESET, buffer, BUFSIZE, &status);
1658 if (U_FAILURE(status)) {
1659 log_err("could not fetch default ruleset: '%s'\n", u_errorName(status));
1660 } else if (len2 != i) {
1661 u_austrcpy(temp, buffer);
1662 log_err("unexpected ruleset len: %d ex: %d val: %s\n", len2, i, temp);
1663 } else {
1664 for (i = 0; i < UPRV_LENGTHOF(vals); ++i) {
1665 status = U_ZERO_ERROR;
1666 unum_formatDouble(fmt, vals[i], buffer, BUFSIZE, NULL, &status);
1667 if (U_FAILURE(status)) {
1668 log_err("failed to format: %g, returned %s\n", vals[i], u_errorName(status));
1669 } else {
1670 u_austrcpy(temp, buffer);
1671 log_verbose("formatting %g returned '%s'\n", vals[i], temp);
1672 }
1673 }
1674 }
1675 }
1676 }
1677 }
1678 }
1679 }
1680
1681 {
1682 UErrorCode status = U_ZERO_ERROR;
1683 unum_toPattern(fmt, FALSE, buffer, BUFSIZE, &status);
1684 if (U_SUCCESS(status)) {
1685 u_austrcpy(temp, buffer);
1686 log_verbose("pattern: '%s'\n", temp);
1687 } else if (status != U_BUFFER_OVERFLOW_ERROR) {
1688 log_err("toPattern failed unexpectedly: %s\n", u_errorName(status));
1689 } else {
1690 log_verbose("pattern too long to display\n");
1691 }
1692 }
1693
1694 {
1695 UErrorCode status = U_ZERO_ERROR;
1696 int len = unum_getSymbol(fmt, UNUM_CURRENCY_SYMBOL, buffer, BUFSIZE, &status);
1697 if (isDecimal ? U_FAILURE(status) : (status != U_UNSUPPORTED_ERROR)) {
1698 log_err("unexpected error getting symbol: '%s'\n", u_errorName(status));
1699 }
1700
1701 unum_setSymbol(fmt, UNUM_CURRENCY_SYMBOL, buffer, len, &status);
1702 if (isDecimal ? U_FAILURE(status) : (status != U_UNSUPPORTED_ERROR)) {
1703 log_err("unexpected error setting symbol: '%s'\n", u_errorName(status));
1704 }
1705 }
1706 }
1707
1708 static void TestNonExistentCurrency() {
1709 UNumberFormat *format;
1710 UErrorCode status = U_ZERO_ERROR;
1711 UChar currencySymbol[8];
1712 static const UChar QQQ[] = {0x51, 0x51, 0x51, 0};
1713
1714 /* Get a non-existent currency and make sure it returns the correct currency code. */
1715 format = unum_open(UNUM_CURRENCY, NULL, 0, "th_TH@currency=QQQ", NULL, &status);
1716 if (format == NULL || U_FAILURE(status)) {
1717 log_data_err("unum_open did not return expected result for non-existent requested currency: '%s' (Are you missing data?)\n", u_errorName(status));
1718 }
1719 else {
1720 unum_getSymbol(format,
1721 UNUM_CURRENCY_SYMBOL,
1722 currencySymbol,
1723 UPRV_LENGTHOF(currencySymbol),
1724 &status);
1725 if (u_strcmp(currencySymbol, QQQ) != 0) {
1726 log_err("unum_open set the currency to QQQ\n");
1727 }
1728 }
1729 unum_close(format);
1730 }
1731
1732 static void TestRBNFFormat() {
1733 UErrorCode status;
1734 UParseError perr;
1735 UChar pat[1024];
1736 UChar tempUChars[512];
1737 UNumberFormat *formats[5];
1738 int COUNT = UPRV_LENGTHOF(formats);
1739 int i;
1740
1741 for (i = 0; i < COUNT; ++i) {
1742 formats[i] = 0;
1743 }
1744
1745 /* instantiation */
1746 status = U_ZERO_ERROR;
1747 u_uastrcpy(pat, "#,##0.0#;(#,##0.0#)");
1748 formats[0] = unum_open(UNUM_PATTERN_DECIMAL, pat, -1, "en_US", &perr, &status);
1749 if (U_FAILURE(status)) {
1750 log_err_status(status, "unable to open decimal pattern -> %s\n", u_errorName(status));
1751 return;
1752 }
1753
1754 status = U_ZERO_ERROR;
1755 formats[1] = unum_open(UNUM_SPELLOUT, NULL, 0, "en_US", &perr, &status);
1756 if (U_FAILURE(status)) {
1757 log_err_status(status, "unable to open spellout -> %s\n", u_errorName(status));
1758 return;
1759 }
1760
1761 status = U_ZERO_ERROR;
1762 formats[2] = unum_open(UNUM_ORDINAL, NULL, 0, "en_US", &perr, &status);
1763 if (U_FAILURE(status)) {
1764 log_err_status(status, "unable to open ordinal -> %s\n", u_errorName(status));
1765 return;
1766 }
1767
1768 status = U_ZERO_ERROR;
1769 formats[3] = unum_open(UNUM_DURATION, NULL, 0, "en_US", &perr, &status);
1770 if (U_FAILURE(status)) {
1771 log_err_status(status, "unable to open duration %s\n", u_errorName(status));
1772 return;
1773 }
1774
1775 status = U_ZERO_ERROR;
1776 u_uastrcpy(pat,
1777 "%standard:\n"
1778 "-x: minus >>;\n"
1779 "x.x: << point >>;\n"
1780 "zero; one; two; three; four; five; six; seven; eight; nine;\n"
1781 "ten; eleven; twelve; thirteen; fourteen; fifteen; sixteen;\n"
1782 "seventeen; eighteen; nineteen;\n"
1783 "20: twenty[->>];\n"
1784 "30: thirty[->>];\n"
1785 "40: forty[->>];\n"
1786 "50: fifty[->>];\n"
1787 "60: sixty[->>];\n"
1788 "70: seventy[->>];\n"
1789 "80: eighty[->>];\n"
1790 "90: ninety[->>];\n"
1791 "100: =#,##0=;\n");
1792 u_uastrcpy(tempUChars,
1793 "%simple:\n"
1794 "=%standard=;\n"
1795 "20: twenty[ and change];\n"
1796 "30: thirty[ and change];\n"
1797 "40: forty[ and change];\n"
1798 "50: fifty[ and change];\n"
1799 "60: sixty[ and change];\n"
1800 "70: seventy[ and change];\n"
1801 "80: eighty[ and change];\n"
1802 "90: ninety[ and change];\n"
1803 "100: =#,##0=;\n"
1804 "%bogus:\n"
1805 "0.x: tiny;\n"
1806 "x.x: << point something;\n"
1807 "=%standard=;\n"
1808 "20: some reasonable number;\n"
1809 "100: some substantial number;\n"
1810 "100,000,000: some huge number;\n");
1811 /* This is to get around some compiler warnings about char * string length. */
1812 u_strcat(pat, tempUChars);
1813 formats[4] = unum_open(UNUM_PATTERN_RULEBASED, pat, -1, "en_US", &perr, &status);
1814 if (U_FAILURE(status)) {
1815 log_err_status(status, "unable to open rulebased pattern -> %s\n", u_errorName(status));
1816 }
1817 if (U_FAILURE(status)) {
1818 log_err_status(status, "Something failed with %s\n", u_errorName(status));
1819 return;
1820 }
1821
1822 for (i = 0; i < COUNT; ++i) {
1823 log_verbose("\n\ntesting format %d\n", i);
1824 test_fmt(formats[i], (UBool)(i == 0));
1825 }
1826
1827 #define FORMAT_BUF_CAPACITY 64
1828 {
1829 UChar fmtbuf[FORMAT_BUF_CAPACITY];
1830 int32_t len;
1831 double nanvalue = uprv_getNaN();
1832 status = U_ZERO_ERROR;
1833 len = unum_formatDouble(formats[1], nanvalue, fmtbuf, FORMAT_BUF_CAPACITY, NULL, &status);
1834 if (U_FAILURE(status)) {
1835 log_err_status(status, "unum_formatDouble NAN failed with %s\n", u_errorName(status));
1836 } else {
1837 UChar nansym[] = { 0x4E, 0x61, 0x4E, 0 }; /* NaN */
1838 if ( len != 3 || u_strcmp(fmtbuf, nansym) != 0 ) {
1839 log_err("unum_formatDouble NAN produced wrong answer for en_US\n");
1840 }
1841 }
1842 }
1843
1844 for (i = 0; i < COUNT; ++i) {
1845 unum_close(formats[i]);
1846 }
1847 }
1848
1849 static void TestCurrencyRegression(void) {
1850 /*
1851 I've found a case where unum_parseDoubleCurrency is not doing what I
1852 expect. The value I pass in is $1234567890q123460000.00 and this
1853 returns with a status of zero error & a parse pos of 22 (I would
1854 expect a parse error at position 11).
1855
1856 I stepped into DecimalFormat::subparse() and it looks like it parses
1857 the first 10 digits and then stops parsing at the q but doesn't set an
1858 error. Then later in DecimalFormat::parse() the value gets crammed
1859 into a long (which greatly truncates the value).
1860
1861 This is very problematic for me 'cause I try to remove chars that are
1862 invalid but this allows my users to enter bad chars and truncates
1863 their data!
1864 */
1865
1866 UChar buf[1024];
1867 UChar currency[8];
1868 char acurrency[16];
1869 double d;
1870 UNumberFormat *cur;
1871 int32_t pos;
1872 UErrorCode status = U_ZERO_ERROR;
1873 const int32_t expected = 11;
1874
1875 currency[0]=0;
1876 u_uastrcpy(buf, "$1234567890q643210000.00");
1877 cur = unum_open(UNUM_CURRENCY, NULL,0,"en_US", NULL, &status);
1878
1879 if(U_FAILURE(status)) {
1880 log_data_err("unum_open failed: %s (Are you missing data?)\n", u_errorName(status));
1881 return;
1882 }
1883
1884 status = U_ZERO_ERROR; /* so we can test it later. */
1885 pos = 0;
1886
1887 d = unum_parseDoubleCurrency(cur,
1888 buf,
1889 -1,
1890 &pos, /* 0 = start */
1891 currency,
1892 &status);
1893
1894 u_austrcpy(acurrency, currency);
1895
1896 if(U_FAILURE(status) || (pos != expected)) {
1897 log_err("unum_parseDoubleCurrency should have failed with pos %d, but gave: value %.9f, err %s, pos=%d, currency [%s]\n",
1898 expected, d, u_errorName(status), pos, acurrency);
1899 } else {
1900 log_verbose("unum_parseDoubleCurrency failed, value %.9f err %s, pos %d, currency [%s]\n", d, u_errorName(status), pos, acurrency);
1901 }
1902
1903 unum_close(cur);
1904 }
1905
1906 static void TestTextAttributeCrash(void) {
1907 UChar ubuffer[64] = {0x0049,0x004E,0x0052,0};
1908 static const UChar expectedNeg[] = {0x0049,0x004E,0x0052,0x0031,0x0032,0x0033,0x0034,0x002E,0x0035,0};
1909 static const UChar expectedPos[] = {0x0031,0x0032,0x0033,0x0034,0x002E,0x0035,0};
1910 int32_t used;
1911 UErrorCode status = U_ZERO_ERROR;
1912 UNumberFormat *nf = unum_open(UNUM_CURRENCY, NULL, 0, "en_US", NULL, &status);
1913 if (U_FAILURE(status)) {
1914 log_data_err("FAILED 1 -> %s (Are you missing data?)\n", u_errorName(status));
1915 return;
1916 }
1917 unum_setTextAttribute(nf, UNUM_CURRENCY_CODE, ubuffer, 3, &status);
1918 /*
1919 * the usual negative prefix and suffix seem to be '($' and ')' at this point
1920 * also crashes if UNUM_NEGATIVE_SUFFIX is substituted for UNUM_NEGATIVE_PREFIX here
1921 */
1922 used = unum_getTextAttribute(nf, UNUM_NEGATIVE_PREFIX, ubuffer, 64, &status);
1923 unum_setTextAttribute(nf, UNUM_NEGATIVE_PREFIX, ubuffer, used, &status);
1924 if (U_FAILURE(status)) {
1925 log_err("FAILED 2\n"); exit(1);
1926 }
1927 log_verbose("attempting to format...\n");
1928 used = unum_formatDouble(nf, -1234.5, ubuffer, 64, NULL, &status);
1929 if (U_FAILURE(status) || 64 < used) {
1930 log_err("Failed formatting %s\n", u_errorName(status));
1931 return;
1932 }
1933 if (u_strcmp(expectedNeg, ubuffer) == 0) {
1934 log_err("Didn't get expected negative result\n");
1935 }
1936 used = unum_formatDouble(nf, 1234.5, ubuffer, 64, NULL, &status);
1937 if (U_FAILURE(status) || 64 < used) {
1938 log_err("Failed formatting %s\n", u_errorName(status));
1939 return;
1940 }
1941 if (u_strcmp(expectedPos, ubuffer) == 0) {
1942 log_err("Didn't get expected positive result\n");
1943 }
1944 unum_close(nf);
1945 }
1946
1947 static void TestNBSPPatternRtNum(const char *testcase, int line, UNumberFormat *nf, double myNumber) {
1948 UErrorCode status = U_ZERO_ERROR;
1949 UChar myString[20];
1950 char tmpbuf[200];
1951 double aNumber = -1.0;
1952 unum_formatDouble(nf, myNumber, myString, 20, NULL, &status);
1953 log_verbose("%s:%d: formatted %.2f into %s\n", testcase, line, myNumber, u_austrcpy(tmpbuf, myString));
1954 if(U_FAILURE(status)) {
1955 log_err("%s:%d: failed format of %.2g with %s\n", testcase, line, myNumber, u_errorName(status));
1956 return;
1957 }
1958 aNumber = unum_parse(nf, myString, -1, NULL, &status);
1959 if(U_FAILURE(status)) {
1960 log_err("%s:%d: failed parse with %s\n", testcase, line, u_errorName(status));
1961 return;
1962 }
1963 if(uprv_fabs(aNumber-myNumber)>.001) {
1964 log_err("FAIL: %s:%d formatted %.2f, parsed into %.2f\n", testcase, line, myNumber, aNumber);
1965 } else {
1966 log_verbose("PASS: %s:%d formatted %.2f, parsed into %.2f\n", testcase, line, myNumber, aNumber);
1967 }
1968 }
1969
1970 static void TestNBSPPatternRT(const char *testcase, UNumberFormat *nf) {
1971 TestNBSPPatternRtNum(testcase, __LINE__, nf, 12345.);
1972 TestNBSPPatternRtNum(testcase, __LINE__, nf, -12345.);
1973 }
1974
1975 static void TestNBSPInPattern(void) {
1976 UErrorCode status = U_ZERO_ERROR;
1977 UNumberFormat* nf = NULL;
1978 const char *testcase;
1979
1980
1981 testcase="ar_AE UNUM_CURRENCY";
1982 nf = unum_open(UNUM_CURRENCY, NULL, -1, "ar_AE", NULL, &status);
1983 if(U_FAILURE(status) || nf == NULL) {
1984 log_data_err("%s:%d: %s: unum_open failed with %s (Are you missing data?)\n", __FILE__, __LINE__, testcase, u_errorName(status));
1985 return;
1986 }
1987 TestNBSPPatternRT(testcase, nf);
1988
1989 /* if we don't have CLDR 1.6 data, bring out the problem anyways */
1990 {
1991 #define SPECIAL_PATTERN "\\u00A4\\u00A4'\\u062f.\\u0625.\\u200f\\u00a0'###0.00"
1992 UChar pat[200];
1993 testcase = "ar_AE special pattern: " SPECIAL_PATTERN;
1994 u_unescape(SPECIAL_PATTERN, pat, UPRV_LENGTHOF(pat));
1995 unum_applyPattern(nf, FALSE, pat, -1, NULL, &status);
1996 if(U_FAILURE(status)) {
1997 log_err("%s: unum_applyPattern failed with %s\n", testcase, u_errorName(status));
1998 } else {
1999 TestNBSPPatternRT(testcase, nf);
2000 }
2001 #undef SPECIAL_PATTERN
2002 }
2003 unum_close(nf); status = U_ZERO_ERROR;
2004
2005 testcase="ar_AE UNUM_DECIMAL";
2006 nf = unum_open(UNUM_DECIMAL, NULL, -1, "ar_AE", NULL, &status);
2007 if(U_FAILURE(status)) {
2008 log_err("%s: unum_open failed with %s\n", testcase, u_errorName(status));
2009 }
2010 TestNBSPPatternRT(testcase, nf);
2011 unum_close(nf); status = U_ZERO_ERROR;
2012
2013 testcase="ar_AE UNUM_PERCENT";
2014 nf = unum_open(UNUM_PERCENT, NULL, -1, "ar_AE", NULL, &status);
2015 if(U_FAILURE(status)) {
2016 log_err("%s: unum_open failed with %s\n", testcase, u_errorName(status));
2017 }
2018 TestNBSPPatternRT(testcase, nf);
2019 unum_close(nf); status = U_ZERO_ERROR;
2020
2021
2022
2023 }
2024 static void TestCloneWithRBNF(void) {
2025 UChar pattern[1024];
2026 UChar pat2[512];
2027 UErrorCode status = U_ZERO_ERROR;
2028 UChar buffer[256];
2029 UChar buffer_cloned[256];
2030 char temp1[256];
2031 char temp2[256];
2032 UNumberFormat *pform_cloned;
2033 UNumberFormat *pform;
2034
2035 u_uastrcpy(pattern,
2036 "%main:\n"
2037 "0.x: >%%millis-only>;\n"
2038 "x.0: <%%duration<;\n"
2039 "x.x: <%%durationwithmillis<>%%millis-added>;\n"
2040 "-x: ->>;%%millis-only:\n"
2041 "1000: 00:00.<%%millis<;\n"
2042 "%%millis-added:\n"
2043 "1000: .<%%millis<;\n"
2044 "%%millis:\n"
2045 "0: =000=;\n"
2046 "%%duration:\n"
2047 "0: =%%seconds-only=;\n"
2048 "60: =%%min-sec=;\n"
2049 "3600: =%%hr-min-sec=;\n"
2050 "86400/86400: <%%ddaayyss<[, >>];\n"
2051 "%%durationwithmillis:\n"
2052 "0: =%%seconds-only=;\n"
2053 "60: =%%min-sec=;\n"
2054 "3600: =%%hr-min-sec=;\n"
2055 "86400/86400: <%%ddaayyss<, >>;\n");
2056 u_uastrcpy(pat2,
2057 "%%seconds-only:\n"
2058 "0: 0:00:=00=;\n"
2059 "%%min-sec:\n"
2060 "0: :=00=;\n"
2061 "0/60: 0:<00<>>;\n"
2062 "%%hr-min-sec:\n"
2063 "0: :=00=;\n"
2064 "60/60: <00<>>;\n"
2065 "3600/60: <0<:>>>;\n"
2066 "%%ddaayyss:\n"
2067 "0 days;\n"
2068 "1 day;\n"
2069 "=0= days;");
2070
2071 /* This is to get around some compiler warnings about char * string length. */
2072 u_strcat(pattern, pat2);
2073
2074 pform = unum_open(UNUM_PATTERN_RULEBASED, pattern, -1, "en_US", NULL, &status);
2075 unum_formatDouble(pform, 3600, buffer, 256, NULL, &status);
2076
2077 pform_cloned = unum_clone(pform,&status);
2078 unum_formatDouble(pform_cloned, 3600, buffer_cloned, 256, NULL, &status);
2079
2080 unum_close(pform);
2081 unum_close(pform_cloned);
2082
2083 if (u_strcmp(buffer,buffer_cloned)) {
2084 log_data_err("Result from cloned formatter not identical to the original. Original: %s Cloned: %s - (Are you missing data?)",u_austrcpy(temp1, buffer),u_austrcpy(temp2,buffer_cloned));
2085 }
2086 }
2087
2088
2089 static void TestNoExponent(void) {
2090 UErrorCode status = U_ZERO_ERROR;
2091 UChar str[100];
2092 const char *cstr;
2093 UNumberFormat *fmt;
2094 int32_t pos;
2095 int32_t expect = 0;
2096 int32_t num;
2097
2098 fmt = unum_open(UNUM_DECIMAL, NULL, -1, "en_US", NULL, &status);
2099
2100 if(U_FAILURE(status) || fmt == NULL) {
2101 log_data_err("%s:%d: unum_open failed with %s (Are you missing data?)\n", __FILE__, __LINE__, u_errorName(status));
2102 return;
2103 }
2104
2105 cstr = "10E6";
2106 u_uastrcpy(str, cstr);
2107 expect = 10000000;
2108 pos = 0;
2109 num = unum_parse(fmt, str, -1, &pos, &status);
2110 ASSERT_TRUE(pos==4);
2111 if(U_FAILURE(status)) {
2112 log_data_err("%s:%d: unum_parse failed with %s for %s (Are you missing data?)\n", __FILE__, __LINE__, u_errorName(status), cstr);
2113 } else if(expect!=num) {
2114 log_data_err("%s:%d: unum_parse failed, got %d expected %d for '%s'(Are you missing data?)\n", __FILE__, __LINE__, num, expect, cstr);
2115 } else {
2116 log_verbose("%s:%d: unum_parse returned %d for '%s'\n", __FILE__, __LINE__, num, cstr);
2117 }
2118
2119 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_PARSE_NO_EXPONENT)==0);
2120
2121 unum_setAttribute(fmt, UNUM_PARSE_NO_EXPONENT, 1); /* no error code */
2122 log_verbose("set UNUM_PARSE_NO_EXPONENT\n");
2123
2124 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_PARSE_NO_EXPONENT)==1);
2125
2126 pos = 0;
2127 expect=10;
2128 num = unum_parse(fmt, str, -1, &pos, &status);
2129 if(num==10000000) {
2130 log_err("%s:%d: FAIL: unum_parse should have returned 10, not 10000000 on %s after UNUM_PARSE_NO_EXPONENT\n", __FILE__, __LINE__, cstr);
2131 } else if(num==expect) {
2132 log_verbose("%s:%d: unum_parse gave %d for %s - good.\n", __FILE__, __LINE__, num, cstr);
2133 }
2134 ASSERT_TRUE(pos==2);
2135
2136 status = U_ZERO_ERROR;
2137
2138 unum_close(fmt);
2139
2140 /* ok, now try scientific */
2141 fmt = unum_open(UNUM_SCIENTIFIC, NULL, -1, "en_US", NULL, &status);
2142 assertSuccess("unum_open(UNUM_SCIENTIFIC, ...)", &status);
2143
2144 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_PARSE_NO_EXPONENT)==0);
2145
2146 cstr = "10E6";
2147 u_uastrcpy(str, cstr);
2148 expect = 10000000;
2149 pos = 0;
2150 num = unum_parse(fmt, str, -1, &pos, &status);
2151 ASSERT_TRUE(pos==4);
2152 if(U_FAILURE(status)) {
2153 log_data_err("%s:%d: unum_parse failed with %s for %s (Are you missing data?)\n", __FILE__, __LINE__, u_errorName(status), cstr);
2154 } else if(expect!=num) {
2155 log_data_err("%s:%d: unum_parse failed, got %d expected %d for '%s'(Are you missing data?)\n", __FILE__, __LINE__, num, expect, cstr);
2156 } else {
2157 log_verbose("%s:%d: unum_parse returned %d for '%s'\n", __FILE__, __LINE__, num, cstr);
2158 }
2159
2160 unum_setAttribute(fmt, UNUM_PARSE_NO_EXPONENT, 1); /* no error code */
2161 log_verbose("set UNUM_PARSE_NO_EXPONENT\n");
2162
2163 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_PARSE_NO_EXPONENT)==1);
2164
2165
2166 cstr = "10E6";
2167 u_uastrcpy(str, cstr);
2168 expect = 10000000;
2169 pos = 0;
2170 num = unum_parse(fmt, str, -1, &pos, &status);
2171 ASSERT_TRUE(pos==4);
2172 if(U_FAILURE(status)) {
2173 log_data_err("%s:%d: unum_parse failed with %s for %s (Are you missing data?)\n", __FILE__, __LINE__, u_errorName(status), cstr);
2174 } else if(expect!=num) {
2175 log_data_err("%s:%d: unum_parse failed, got %d expected %d for '%s'(Are you missing data?)\n", __FILE__, __LINE__, num, expect, cstr);
2176 } else {
2177 log_verbose("%s:%d: unum_parse returned %d for '%s'\n", __FILE__, __LINE__, num, cstr);
2178 }
2179
2180 unum_close(fmt);
2181 }
2182
2183 static void TestMaxInt(void) {
2184 UErrorCode status = U_ZERO_ERROR;
2185 UChar pattern_hash[] = { 0x23, 0x00 }; /* "#" */
2186 UChar result1[1024] = { 0 }, result2[1024] = { 0 };
2187 int32_t len1, len2;
2188 UChar expect[] = { 0x0039, 0x0037, 0 };
2189 UNumberFormat *fmt = unum_open(
2190 UNUM_PATTERN_DECIMAL, /* style */
2191 &pattern_hash[0], /* pattern */
2192 u_strlen(pattern_hash), /* patternLength */
2193 0,
2194 0, /* parseErr */
2195 &status);
2196 if(U_FAILURE(status) || fmt == NULL) {
2197 log_data_err("%s:%d: %s: unum_open failed with %s (Are you missing data?)\n", __FILE__, __LINE__, "TestMaxInt", u_errorName(status));
2198 return;
2199 }
2200
2201 unum_setAttribute(fmt, UNUM_MAX_INTEGER_DIGITS, 2);
2202
2203 status = U_ZERO_ERROR;
2204 /* #1 */
2205 len1 = unum_formatInt64(fmt, 1997, result1, 1024, NULL, &status);
2206 result1[len1]=0;
2207 if(U_FAILURE(status) || u_strcmp(expect, result1)) {
2208 log_err("unum_formatInt64 Expected %s but got %s status %s\n", austrdup(expect), austrdup(result1), u_errorName(status));
2209 }
2210
2211 status = U_ZERO_ERROR;
2212 /* #2 */
2213 len2 = unum_formatDouble(fmt, 1997.0, result2, 1024, NULL, &status);
2214 result2[len2]=0;
2215 if(U_FAILURE(status) || u_strcmp(expect, result2)) {
2216 log_err("unum_formatDouble Expected %s but got %s status %s\n", austrdup(expect), austrdup(result2), u_errorName(status));
2217 }
2218
2219
2220
2221 /* test UNUM_FORMAT_FAIL_IF_MORE_THAN_MAX_DIGITS */
2222 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_FORMAT_FAIL_IF_MORE_THAN_MAX_DIGITS)==0);
2223
2224 unum_setAttribute(fmt, UNUM_FORMAT_FAIL_IF_MORE_THAN_MAX_DIGITS, 1);
2225 /* test UNUM_FORMAT_FAIL_IF_MORE_THAN_MAX_DIGITS */
2226 ASSERT_TRUE(unum_getAttribute(fmt, UNUM_FORMAT_FAIL_IF_MORE_THAN_MAX_DIGITS)==1);
2227
2228 status = U_ZERO_ERROR;
2229 /* max int digits still '2' */
2230 len1 = unum_formatInt64(fmt, 1997, result1, 1024, NULL, &status);
2231 ASSERT_TRUE(status==U_ILLEGAL_ARGUMENT_ERROR);
2232 status = U_ZERO_ERROR;
2233
2234 /* But, formatting 97->'97' works fine. */
2235
2236 /* #1 */
2237 len1 = unum_formatInt64(fmt, 97, result1, 1024, NULL, &status);
2238 result1[len1]=0;
2239 if(U_FAILURE(status) || u_strcmp(expect, result1)) {
2240 log_err("unum_formatInt64 Expected %s but got %s status %s\n", austrdup(expect), austrdup(result1), u_errorName(status));
2241 }
2242
2243 status = U_ZERO_ERROR;
2244 /* #2 */
2245 len2 = unum_formatDouble(fmt, 97.0, result2, 1024, NULL, &status);
2246 result2[len2]=0;
2247 if(U_FAILURE(status) || u_strcmp(expect, result2)) {
2248 log_err("unum_formatDouble Expected %s but got %s status %s\n", austrdup(expect), austrdup(result2), u_errorName(status));
2249 }
2250
2251
2252 unum_close(fmt);
2253 }
2254
2255 static void TestUFormattable(void) {
2256 UChar out2k[2048];
2257 // simple test for API docs
2258 {
2259 UErrorCode status = U_ZERO_ERROR;
2260 UNumberFormat *unum = unum_open(UNUM_DEFAULT, NULL, -1, "en_US_POSIX", NULL, &status);
2261 if(assertSuccessCheck("calling unum_open()", &status, TRUE)) {
2262 //! [unum_parseToUFormattable]
2263 const UChar str[] = { 0x0031, 0x0032, 0x0033, 0x0000 }; /* 123 */
2264 int32_t result = 0;
2265 UFormattable *ufmt = ufmt_open(&status);
2266 unum_parseToUFormattable(unum, ufmt, str, -1, NULL, &status);
2267 if (ufmt_isNumeric(ufmt)) {
2268 result = ufmt_getLong(ufmt, &status); /* == 123 */
2269 } /* else { ... } */
2270 ufmt_close(ufmt);
2271 //! [unum_parseToUFormattable]
2272 assertTrue("result == 123", (result == 123));
2273 }
2274 unum_close(unum);
2275 }
2276 // test with explicitly created ufmt_open
2277 {
2278 UChar buffer[2048];
2279 UErrorCode status = U_ZERO_ERROR;
2280 UFormattable *ufmt;
2281 UNumberFormat *unum;
2282 const char *pattern = "";
2283
2284 ufmt = ufmt_open(&status);
2285 unum = unum_open(UNUM_DEFAULT, NULL, -1, "en_US_POSIX", NULL, &status);
2286 if(assertSuccessCheck("calling ufmt_open() || unum_open()", &status, TRUE)) {
2287
2288 pattern = "31337";
2289 log_verbose("-- pattern: %s\n", pattern);
2290 u_uastrcpy(buffer, pattern);
2291 unum_parseToUFormattable(unum, ufmt, buffer, -1, NULL, &status);
2292 if(assertSuccess("unum_parseToUFormattable(31337)", &status)) {
2293 assertTrue("ufmt_getLong()=31337", ufmt_getLong(ufmt, &status) == 31337);
2294 assertTrue("ufmt_getType()=UFMT_LONG", ufmt_getType(ufmt, &status) == UFMT_LONG);
2295 log_verbose("long = %d\n", ufmt_getLong(ufmt, &status));
2296 assertSuccess("ufmt_getLong()", &status);
2297 }
2298 unum_formatUFormattable(unum, ufmt, out2k, 2048, NULL, &status);
2299 if(assertSuccess("unum_formatUFormattable(31337)", &status)) {
2300 assertEquals("unum_formatUFormattable r/t", austrdup(buffer), austrdup(out2k));
2301 }
2302
2303 pattern = "3.14159";
2304 log_verbose("-- pattern: %s\n", pattern);
2305 u_uastrcpy(buffer, pattern);
2306 unum_parseToUFormattable(unum, ufmt, buffer, -1, NULL, &status);
2307 if(assertSuccess("unum_parseToUFormattable(3.14159)", &status)) {
2308 assertTrue("ufmt_getDouble()==3.14159", withinErr(ufmt_getDouble(ufmt, &status), 3.14159, 1e-15));
2309 assertSuccess("ufmt_getDouble()", &status);
2310 assertTrue("ufmt_getType()=UFMT_DOUBLE", ufmt_getType(ufmt, &status) == UFMT_DOUBLE);
2311 log_verbose("double = %g\n", ufmt_getDouble(ufmt, &status));
2312 }
2313 unum_formatUFormattable(unum, ufmt, out2k, 2048, NULL, &status);
2314 if(assertSuccess("unum_formatUFormattable(3.14159)", &status)) {
2315 assertEquals("unum_formatUFormattable r/t", austrdup(buffer), austrdup(out2k));
2316 }
2317 }
2318 ufmt_close(ufmt);
2319 unum_close(unum);
2320 }
2321
2322 // test with auto-generated ufmt
2323 {
2324 UChar buffer[2048];
2325 UErrorCode status = U_ZERO_ERROR;
2326 UFormattable *ufmt = NULL;
2327 UNumberFormat *unum;
2328 const char *pattern = "73476730924573500000000"; // weight of the moon, kg
2329
2330 log_verbose("-- pattern: %s (testing auto-opened UFormattable)\n", pattern);
2331 u_uastrcpy(buffer, pattern);
2332
2333 unum = unum_open(UNUM_DEFAULT, NULL, -1, "en_US_POSIX", NULL, &status);
2334 if(assertSuccessCheck("calling unum_open()", &status, TRUE)) {
2335
2336 ufmt = unum_parseToUFormattable(unum, NULL, /* will be ufmt_open()'ed for us */
2337 buffer, -1, NULL, &status);
2338 if(assertSuccess("unum_parseToUFormattable(weight of the moon)", &status)) {
2339 log_verbose("new formattable allocated at %p\n", (void*)ufmt);
2340 assertTrue("ufmt_isNumeric() TRUE", ufmt_isNumeric(ufmt));
2341 unum_formatUFormattable(unum, ufmt, out2k, 2048, NULL, &status);
2342 if(assertSuccess("unum_formatUFormattable(3.14159)", &status)) {
2343 assertEquals("unum_formatUFormattable r/t", austrdup(buffer), austrdup(out2k));
2344 }
2345
2346 log_verbose("double: %g\n", ufmt_getDouble(ufmt, &status));
2347 assertSuccess("ufmt_getDouble()", &status);
2348
2349 log_verbose("long: %ld\n", ufmt_getLong(ufmt, &status));
2350 assertTrue("failure on ufmt_getLong() for huge number:", U_FAILURE(status));
2351 // status is now a failure due to ufmt_getLong() above.
2352 // the intltest does extensive r/t testing of Formattable vs. UFormattable.
2353 }
2354 }
2355
2356 unum_close(unum);
2357 ufmt_close(ufmt); // was implicitly opened for us by the first unum_parseToUFormattable()
2358 }
2359 }
2360
2361 typedef struct {
2362 const char* locale;
2363 const char* numsys;
2364 int32_t radix;
2365 UBool isAlgorithmic;
2366 const UChar* description;
2367 } NumSysTestItem;
2368
2369
2370 static const UChar latnDesc[] = {0x0030,0x0031,0x0032,0x0033,0x0034,0x0035,0x0036,0x0037,0x0038,0x0039,0}; // 0123456789
2371 static const UChar romanDesc[] = {0x25,0x72,0x6F,0x6D,0x61,0x6E,0x2D,0x75,0x70,0x70,0x65,0x72,0}; // %roman-upper
2372 static const UChar arabDesc[] = {0x0660,0x0661,0x0662,0x0663,0x0664,0x0665,0x0666,0x0667,0x0668,0x0669,0}; //
2373 static const UChar arabextDesc[] = {0x06F0,0x06F1,0x06F2,0x06F3,0x06F4,0x06F5,0x06F6,0x06F7,0x06F8,0x06F9,0}; //
2374 static const UChar hanidecDesc[] = {0x3007,0x4E00,0x4E8C,0x4E09,0x56DB,0x4E94,0x516D,0x4E03,0x516B,0x4E5D,0}; //
2375 static const UChar hantDesc[] = {0x7A,0x68,0x5F,0x48,0x61,0x6E,0x74,0x2F,0x53,0x70,0x65,0x6C,0x6C,0x6F,0x75,0x74,
2376 0x52,0x75,0x6C,0x65,0x73,0x2F,0x25,0x73,0x70,0x65,0x6C,0x6C,0x6F,0x75,0x74,0x2D,
2377 0x63,0x61,0x72,0x64,0x69,0x6E,0x61,0x6C,0}; // zh_Hant/SpelloutRules/%spellout-cardinal
2378
2379 static const NumSysTestItem numSysTestItems[] = {
2380 //locale numsys radix isAlgo description
2381 { "en", "latn", 10, FALSE, latnDesc },
2382 { "en@numbers=roman", "roman", 10, TRUE, romanDesc },
2383 { "en@numbers=finance", "latn", 10, FALSE, latnDesc },
2384 { "ar", "arab", 10, FALSE, arabDesc },
2385 { "fa", "arabext", 10, FALSE, arabextDesc },
2386 { "zh_Hans@numbers=hanidec", "hanidec", 10, FALSE, hanidecDesc },
2387 { "zh_Hant@numbers=traditional", "hant", 10, TRUE, hantDesc },
2388 { NULL, NULL, 0, FALSE, NULL },
2389 };
2390 enum { kNumSysDescripBufMax = 64 };
2391
2392 static void TestUNumberingSystem(void) {
2393 const NumSysTestItem * itemPtr;
2394 UNumberingSystem * unumsys;
2395 UEnumeration * uenum;
2396 const char * numsys;
2397 UErrorCode status;
2398
2399 for (itemPtr = numSysTestItems; itemPtr->locale != NULL; itemPtr++) {
2400 status = U_ZERO_ERROR;
2401 unumsys = unumsys_open(itemPtr->locale, &status);
2402 if ( U_SUCCESS(status) ) {
2403 UChar ubuf[kNumSysDescripBufMax];
2404 int32_t ulen, radix = unumsys_getRadix(unumsys);
2405 UBool isAlgorithmic = unumsys_isAlgorithmic(unumsys);
2406 numsys = unumsys_getName(unumsys);
2407 if ( uprv_strcmp(numsys, itemPtr->numsys) != 0 || radix != itemPtr->radix || !isAlgorithmic != !itemPtr->isAlgorithmic ) {
2408 log_data_err("unumsys name/radix/isAlgorithmic for locale %s, expected %s/%d/%d, got %s/%d/%d\n",
2409 itemPtr->locale, itemPtr->numsys, itemPtr->radix, itemPtr->isAlgorithmic, numsys, radix, isAlgorithmic);
2410 }
2411 ulen = unumsys_getDescription(unumsys, ubuf, kNumSysDescripBufMax, &status);
2412 (void)ulen; // Suppress variable not used warning.
2413 if ( U_FAILURE(status) || u_strcmp(ubuf, itemPtr->description) != 0 ) {
2414 log_data_err("unumsys description for locale %s, description unexpected and/or status %\n", myErrorName(status));
2415 }
2416 unumsys_close(unumsys);
2417 } else {
2418 log_data_err("unumsys_open for locale %s fails with status %s\n", itemPtr->locale, myErrorName(status));
2419 }
2420 }
2421
2422 status = U_ZERO_ERROR;
2423 uenum = unumsys_openAvailableNames(&status);
2424 if ( U_SUCCESS(status) ) {
2425 int32_t numsysCount = 0;
2426 // sanity check for a couple of number systems that must be in the enumeration
2427 UBool foundLatn = FALSE;
2428 UBool foundArab = FALSE;
2429 while ( (numsys = uenum_next(uenum, NULL, &status)) != NULL && U_SUCCESS(status) ) {
2430 status = U_ZERO_ERROR;
2431 unumsys = unumsys_openByName(numsys, &status);
2432 if ( U_SUCCESS(status) ) {
2433 numsysCount++;
2434 if ( uprv_strcmp(numsys, "latn") ) foundLatn = TRUE;
2435 if ( uprv_strcmp(numsys, "arab") ) foundArab = TRUE;
2436 unumsys_close(unumsys);
2437 } else {
2438 log_err("unumsys_openAvailableNames includes %s but unumsys_openByName on it fails with status %s\n",
2439 numsys, myErrorName(status));
2440 }
2441 }
2442 uenum_close(uenum);
2443 if ( numsysCount < 40 || !foundLatn || !foundArab ) {
2444 log_err("unumsys_openAvailableNames results incomplete: numsysCount %d, foundLatn %d, foundArab %d\n",
2445 numsysCount, foundLatn, foundArab);
2446 }
2447 } else {
2448 log_data_err("unumsys_openAvailableNames fails with status %s\n", myErrorName(status));
2449 }
2450 }
2451
2452 /* plain-C version of test in numfmtst.cpp */
2453 enum { kUBufMax = 64 };
2454 static void TestCurrencyIsoPluralFormat(void) {
2455 static const char* DATA[][8] = {
2456 // the data are:
2457 // locale,
2458 // currency amount to be formatted,
2459 // currency ISO code to be formatted,
2460 // format result using CURRENCYSTYLE,
2461 // format result using CURRENCY_STANDARD,
2462 // format result using CURRENCY_ACCOUNTING,
2463 // format result using ISOCURRENCYSTYLE,
2464 // format result using PLURALCURRENCYSTYLE,
2465
2466 // locale amount ISOcode CURRENCYSTYLE CURRENCY_STANDARD CURRENCY_ACCOUNTING ISOCURRENCYSTYLE PLURALCURRENCYSTYLE
2467 {"en_US", "1", "USD", "$1.00", "$1.00", "$1.00", "USD1.00", "1.00 US dollars"},
2468 {"en_US", "1234.56", "USD", "$1,234.56", "$1,234.56", "$1,234.56", "USD1,234.56", "1,234.56 US dollars"},
2469 {"en_US@cf=account", "1234.56", "USD", "$1,234.56", "$1,234.56", "$1,234.56", "USD1,234.56", "1,234.56 US dollars"},
2470 {"en_US", "-1234.56", "USD", "-$1,234.56", "-$1,234.56", "($1,234.56)", "-USD1,234.56", "-1,234.56 US dollars"},
2471 {"en_US@cf=account", "-1234.56", "USD", "($1,234.56)", "-$1,234.56", "($1,234.56)", "-USD1,234.56", "-1,234.56 US dollars"},
2472 {"en_US@cf=standard", "-1234.56", "USD", "-$1,234.56", "-$1,234.56", "($1,234.56)", "-USD1,234.56", "-1,234.56 US dollars"},
2473 {"zh_CN", "1", "USD", "US$1.00", "US$1.00", "US$1.00", "USD1.00", "1.00\\u7F8E\\u5143"},
2474 {"zh_CN", "-1", "USD", "-US$1.00", "-US$1.00", "(US$1.00)", "-USD1.00", "-1.00\\u7F8E\\u5143"},
2475 {"zh_CN@cf=account", "-1", "USD", "(US$1.00)", "-US$1.00", "(US$1.00)", "-USD1.00", "-1.00\\u7F8E\\u5143"},
2476 {"zh_CN@cf=standard", "-1", "USD", "-US$1.00", "-US$1.00", "(US$1.00)", "-USD1.00", "-1.00\\u7F8E\\u5143"},
2477 {"zh_CN", "1234.56", "USD", "US$1,234.56", "US$1,234.56", "US$1,234.56", "USD1,234.56", "1,234.56\\u7F8E\\u5143"},
2478 // {"zh_CN", "1", "CHY", "CHY1.00", "CHY1.00", "CHY1.00", "CHY1.00", "1.00 CHY"}, // wrong ISO code
2479 // {"zh_CN", "1234.56", "CHY", "CHY1,234.56", "CHY1,234.56", "CHY1,234.56", "CHY1,234.56", "1,234.56 CHY"}, // wrong ISO code
2480 {"zh_CN", "1", "CNY", "\\uFFE51.00", "\\uFFE51.00", "\\uFFE51.00", "CNY1.00", "1.00\\u4EBA\\u6C11\\u5E01"},
2481 {"zh_CN", "1234.56", "CNY", "\\uFFE51,234.56", "\\uFFE51,234.56", "\\uFFE51,234.56", "CNY1,234.56", "1,234.56\\u4EBA\\u6C11\\u5E01"},
2482 {"ru_RU", "1", "RUB", "1,00\\u00A0\\u20BD", "1,00\\u00A0\\u20BD", "1,00\\u00A0\\u20BD", "1,00\\u00A0RUB", "1,00 \\u0440\\u043E\\u0441\\u0441\\u0438\\u0439\\u0441\\u043A\\u043E\\u0433\\u043E "
2483 "\\u0440\\u0443\\u0431\\u043B\\u044F"},
2484 {"ru_RU", "2", "RUB", "2,00\\u00A0\\u20BD", "2,00\\u00A0\\u20BD", "2,00\\u00A0\\u20BD", "2,00\\u00A0RUB", "2,00 \\u0440\\u043E\\u0441\\u0441\\u0438\\u0439\\u0441\\u043A\\u043E\\u0433\\u043E "
2485 "\\u0440\\u0443\\u0431\\u043B\\u044F"},
2486 {"ru_RU", "5", "RUB", "5,00\\u00A0\\u20BD", "5,00\\u00A0\\u20BD", "5,00\\u00A0\\u20BD", "5,00\\u00A0RUB", "5,00 \\u0440\\u043E\\u0441\\u0441\\u0438\\u0439\\u0441\\u043A\\u043E\\u0433\\u043E "
2487 "\\u0440\\u0443\\u0431\\u043B\\u044F"},
2488 // test locale without currency information
2489 {"root", "-1.23", "USD", "-US$\\u00A01.23", "-US$\\u00A01.23", "-US$\\u00A01.23", "-USD\\u00A01.23", "-1.23 USD"},
2490 {"root@cf=account", "-1.23", "USD", "-US$\\u00A01.23", "-US$\\u00A01.23", "-US$\\u00A01.23", "-USD\\u00A01.23", "-1.23 USD"},
2491 // test choice format
2492 {"es_AR", "1", "INR", "INR\\u00A01,00", "INR\\u00A01,00", "INR\\u00A01,00", "INR\\u00A01,00", "1,00 rupia india"},
2493 };
2494 static const UNumberFormatStyle currencyStyles[] = {
2495 UNUM_CURRENCY,
2496 UNUM_CURRENCY_STANDARD,
2497 UNUM_CURRENCY_ACCOUNTING,
2498 UNUM_CURRENCY_ISO,
2499 UNUM_CURRENCY_PLURAL
2500 };
2501
2502 int32_t i, sIndex;
2503
2504 for (i=0; i<UPRV_LENGTHOF(DATA); ++i) {
2505 const char* localeString = DATA[i][0];
2506 double numberToBeFormat = atof(DATA[i][1]);
2507 const char* currencyISOCode = DATA[i][2];
2508 for (sIndex = 0; sIndex < UPRV_LENGTHOF(currencyStyles); ++sIndex) {
2509 UNumberFormatStyle style = currencyStyles[sIndex];
2510 UErrorCode status = U_ZERO_ERROR;
2511 UChar currencyCode[4];
2512 UChar ubufResult[kUBufMax];
2513 UChar ubufExpected[kUBufMax];
2514 int32_t ulenRes;
2515
2516 UNumberFormat* unumFmt = unum_open(style, NULL, 0, localeString, NULL, &status);
2517 if (U_FAILURE(status)) {
2518 log_data_err("FAIL: unum_open, locale %s, style %d - %s\n", localeString, (int)style, myErrorName(status));
2519 continue;
2520 }
2521 u_charsToUChars(currencyISOCode, currencyCode, 4);
2522 unum_setTextAttribute(unumFmt, UNUM_CURRENCY_CODE, currencyCode, 3, &status);
2523 if (U_FAILURE(status)) {
2524 log_err("FAIL: unum_setTextAttribute, locale %s, UNUM_CURRENCY_CODE %s\n", localeString, currencyISOCode);
2525 }
2526 ulenRes = unum_formatDouble(unumFmt, numberToBeFormat, ubufResult, kUBufMax, NULL, &status);
2527 if (U_FAILURE(status)) {
2528 log_err("FAIL: unum_formatDouble, locale %s, UNUM_CURRENCY_CODE %s - %s\n", localeString, currencyISOCode, myErrorName(status));
2529 } else {
2530 int32_t ulenExp = u_unescape(DATA[i][3 + sIndex], ubufExpected, kUBufMax);
2531 if (ulenRes != ulenExp || u_strncmp(ubufResult, ubufExpected, ulenExp) != 0) {
2532 log_err("FAIL: unum_formatDouble, locale %s, UNUM_CURRENCY_CODE %s, expected %s, got something else\n",
2533 localeString, currencyISOCode, DATA[i][3 + sIndex]);
2534 }
2535 }
2536 unum_close(unumFmt);
2537 }
2538 }
2539 }
2540
2541 typedef struct {
2542 const char * locale;
2543 UNumberFormatStyle style;
2544 UDisplayContext context;
2545 const char * expectedResult;
2546 } TestContextItem;
2547
2548 /* currently no locales have contextTransforms data for "symbol" type */
2549 static const TestContextItem tcItems[] = { /* results for 123.45 */
2550 { "sv", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_MIDDLE_OF_SENTENCE, "ett\\u00ADhundra\\u00ADtjugo\\u00ADtre komma fyra fem" },
2551 { "sv", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_BEGINNING_OF_SENTENCE, "Ett\\u00ADhundra\\u00ADtjugo\\u00ADtre komma fyra fem" },
2552 { "sv", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_UI_LIST_OR_MENU, "ett\\u00ADhundra\\u00ADtjugo\\u00ADtre komma fyra fem" },
2553 { "sv", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_STANDALONE, "ett\\u00ADhundra\\u00ADtjugo\\u00ADtre komma fyra fem" },
2554 { "en", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_MIDDLE_OF_SENTENCE, "one hundred twenty-three point four five" },
2555 { "en", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_BEGINNING_OF_SENTENCE, "One hundred twenty-three point four five" },
2556 { "en", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_UI_LIST_OR_MENU, "One hundred twenty-three point four five" },
2557 { "en", UNUM_SPELLOUT, UDISPCTX_CAPITALIZATION_FOR_STANDALONE, "One hundred twenty-three point four five" },
2558 { NULL, (UNumberFormatStyle)0, (UDisplayContext)0, NULL }
2559 };
2560
2561 static void TestContext(void) {
2562 UErrorCode status = U_ZERO_ERROR;
2563 const TestContextItem* itemPtr;
2564
2565 UNumberFormat *unum = unum_open(UNUM_SPELLOUT, NULL, 0, "en", NULL, &status);
2566 if ( U_SUCCESS(status) ) {
2567 UDisplayContext context = unum_getContext(unum, UDISPCTX_TYPE_CAPITALIZATION, &status);
2568 if ( U_FAILURE(status) || context != UDISPCTX_CAPITALIZATION_NONE) {
2569 log_err("FAIL: Initial unum_getContext is not UDISPCTX_CAPITALIZATION_NONE\n");
2570 status = U_ZERO_ERROR;
2571 }
2572 unum_setContext(unum, UDISPCTX_CAPITALIZATION_FOR_STANDALONE, &status);
2573 context = unum_getContext(unum, UDISPCTX_TYPE_CAPITALIZATION, &status);
2574 if ( U_FAILURE(status) || context != UDISPCTX_CAPITALIZATION_FOR_STANDALONE) {
2575 log_err("FAIL: unum_getContext does not return the value set, UDISPCTX_CAPITALIZATION_FOR_STANDALONE\n");
2576 }
2577 unum_close(unum);
2578 } else {
2579 log_data_err("unum_open UNUM_SPELLOUT for en fails with status %s\n", myErrorName(status));
2580 }
2581 #if !UCONFIG_NO_NORMALIZATION && !UCONFIG_NO_BREAK_ITERATION
2582 for (itemPtr = tcItems; itemPtr->locale != NULL; itemPtr++) {
2583 UChar ubufResult[kUBufMax];
2584 int32_t ulenRes;
2585
2586 status = U_ZERO_ERROR;
2587 unum = unum_open(itemPtr->style, NULL, 0, itemPtr->locale, NULL, &status);
2588 if (U_FAILURE(status)) {
2589 log_data_err("FAIL: unum_open, locale %s, style %d - %s\n",
2590 itemPtr->locale, (int)itemPtr->style, myErrorName(status));
2591 continue;
2592 }
2593 unum_setContext(unum, itemPtr->context, &status);
2594 ulenRes = unum_formatDouble(unum, 123.45, ubufResult, kUBufMax, NULL, &status);
2595 if (U_FAILURE(status)) {
2596 log_err("FAIL: unum_formatDouble, locale %s, style %d, context %d - %s\n",
2597 itemPtr->locale, (int)itemPtr->style, (int)itemPtr->context, myErrorName(status));
2598 } else {
2599 UChar ubufExpected[kUBufMax];
2600 int32_t ulenExp = u_unescape(itemPtr->expectedResult, ubufExpected, kUBufMax);
2601 if (ulenRes != ulenExp || u_strncmp(ubufResult, ubufExpected, ulenExp) != 0) {
2602 char bbuf[kUBufMax*2];
2603 u_austrncpy(bbuf, ubufResult, sizeof(bbuf));
2604 log_err("FAIL: unum_formatDouble, locale %s, style %d, context %d, expected %d:\"%s\", got %d:\"%s\"\n",
2605 itemPtr->locale, (int)itemPtr->style, (int)itemPtr->context, ulenExp,
2606 itemPtr->expectedResult, ulenRes, bbuf);
2607 }
2608 }
2609 unum_close(unum);
2610 }
2611 #endif /* #if !UCONFIG_NO_NORMALIZATION && !UCONFIG_NO_BREAK_ITERATION */
2612 }
2613
2614 static void TestCurrencyUsage(void) {
2615 static const char* DATA[][2] = {
2616 /* the data are:
2617 * currency ISO code to be formatted,
2618 * format result using CURRENCYSTYLE with CASH purpose,-
2619 * Note that as of CLDR 26:-
2620 * - TWD switches from 0 decimals to 2; PKR still has 0, so change test to that
2621 * - CAD rounds to .05
2622 */
2623
2624 {"PKR", "PKR124"},
2625 {"CAD", "CA$123.55"},
2626 {"USD", "$123.57"}
2627 };
2628
2629 // 1st time for getter/setter, 2nd for factory method
2630 int32_t i;
2631 for(i=0; i<2; i++){
2632 const char* localeString = "en_US";
2633 double numberToBeFormat = 123.567;
2634 UNumberFormat* unumFmt;
2635 UNumberFormatStyle style = UNUM_CURRENCY;
2636 UErrorCode status = U_ZERO_ERROR;
2637 int32_t j;
2638
2639 if(i == 1){ // change for factory method
2640 style = UNUM_CASH_CURRENCY;
2641 }
2642
2643 unumFmt = unum_open(style, NULL, 0, localeString, NULL, &status);
2644 if (U_FAILURE(status)) {
2645 log_data_err("FAIL: unum_open, locale %s, style %d - %s\n",
2646 localeString, (int)style, myErrorName(status));
2647 continue;
2648 }
2649
2650 if(i == 0){ // this is for the getter/setter
2651 if(unum_getAttribute(unumFmt, UNUM_CURRENCY_USAGE) != UCURR_USAGE_STANDARD) {
2652 log_err("FAIL: currency usage attribute is not UNUM_CURRENCY_STANDARD\n");
2653 }
2654
2655 unum_setAttribute(unumFmt, UNUM_CURRENCY_USAGE, UCURR_USAGE_CASH);
2656 }
2657
2658 if(unum_getAttribute(unumFmt, UNUM_CURRENCY_USAGE) != UCURR_USAGE_CASH) {
2659 log_err("FAIL: currency usage attribute is not UNUM_CURRENCY_CASH\n");
2660 }
2661
2662 for (j=0; j<UPRV_LENGTHOF(DATA); ++j) {
2663 UChar expect[64];
2664 int32_t expectLen;
2665 UChar currencyCode[4];
2666 UChar result[64];
2667 int32_t resultLen;
2668 UFieldPosition pos = {0};
2669
2670 u_charsToUChars(DATA[j][0], currencyCode, 3);
2671 expectLen = u_unescape(DATA[j][1], expect, UPRV_LENGTHOF(expect));
2672
2673 unum_setTextAttribute(unumFmt, UNUM_CURRENCY_CODE, currencyCode, 3, &status);
2674 assertSuccess("num_setTextAttribute()", &status);
2675
2676 resultLen = unum_formatDouble(unumFmt, numberToBeFormat, result, UPRV_LENGTHOF(result),
2677 &pos, &status);
2678 assertSuccess("num_formatDouble()", &status);
2679
2680 if(resultLen != expectLen || u_strcmp(result, expect) != 0) {
2681 log_err("Fail: Error in Number Format Currency Purpose using unum_setAttribute() expected: %s, got %s\n",
2682 aescstrdup(expect, expectLen), aescstrdup(result, resultLen));
2683 }
2684
2685 }
2686
2687 unum_close(unumFmt);
2688 }
2689 }
2690
2691 static UChar currFmtNegSameAsPos[] = /* "\u00A4#,##0.00;\u00A4#,##0.00" */
2692 {0xA4,0x23,0x2C,0x23,0x23,0x30,0x2E,0x30,0x30,0x3B,0xA4,0x23,0x2C,0x23,0x23,0x30,0x2E,0x30,0x30,0};
2693
2694 static UChar currFmtToPatExpected[] = /* "\u00A4#,##0.00" */
2695 {0xA4,0x23,0x2C,0x23,0x23,0x30,0x2E,0x30,0x30,0};
2696
2697 static UChar currFmtResultExpected[] = /* "$100.00" */
2698 {0x24,0x31,0x30,0x30,0x2E,0x30,0x30,0};
2699
2700 static UChar emptyString[] = {0};
2701
2702 enum { kUBufSize = 64, kBBufSize = 128 };
2703
2704 static void TestCurrFmtNegSameAsPositive(void) {
2705 UErrorCode status = U_ZERO_ERROR;
2706 UNumberFormat* unumfmt = unum_open(UNUM_CURRENCY, NULL, 0, "en_US", NULL, &status);
2707 if ( U_SUCCESS(status) ) {
2708 unum_applyPattern(unumfmt, FALSE, currFmtNegSameAsPos, -1, NULL, &status);
2709 if (U_SUCCESS(status)) {
2710 UChar ubuf[kUBufSize];
2711 int32_t ulen = unum_toPattern(unumfmt, FALSE, ubuf, kUBufSize, &status);
2712 if (U_FAILURE(status)) {
2713 log_err("unum_toPattern fails with status %s\n", myErrorName(status));
2714 } else if (u_strcmp(ubuf, currFmtToPatExpected) != 0) {
2715 log_err("unum_toPattern result wrong, expected %s, got %s\n", aescstrdup(currFmtToPatExpected,-1), aescstrdup(ubuf,ulen));
2716 }
2717 unum_setSymbol(unumfmt, UNUM_MINUS_SIGN_SYMBOL, emptyString, 0, &status);
2718 if (U_SUCCESS(status)) {
2719 ulen = unum_formatDouble(unumfmt, -100.0, ubuf, kUBufSize, NULL, &status);
2720 if (U_FAILURE(status)) {
2721 log_err("unum_formatDouble fails with status %s\n", myErrorName(status));
2722 } else if (u_strcmp(ubuf, currFmtResultExpected) != 0) {
2723 log_err("unum_formatDouble result wrong, expected %s, got %s\n", aescstrdup(currFmtResultExpected,-1), aescstrdup(ubuf,ulen));
2724 }
2725 } else {
2726 log_err("unum_setSymbol fails with status %s\n", myErrorName(status));
2727 }
2728 } else {
2729 log_err("unum_applyPattern fails with status %s\n", myErrorName(status));
2730 }
2731 unum_close(unumfmt);
2732 } else {
2733 log_data_err("unum_open UNUM_CURRENCY for en_US fails with status %s\n", myErrorName(status));
2734 }
2735 }
2736
2737
2738 typedef struct {
2739 double value;
2740 const char *expected;
2741 } ValueAndExpectedString;
2742
2743 static const ValueAndExpectedString enShort[] = {
2744 {0.0, "0"},
2745 {0.17, "0.17"},
2746 {1.0, "1"},
2747 {1234.0, "1.23K"},
2748 {12345.0, "12.3K"},
2749 {123456.0, "123K"},
2750 {1234567.0, "1.23M"},
2751 {12345678.0, "12.3M"},
2752 {123456789.0, "123M"},
2753 {1.23456789E9, "1.23B"},
2754 {1.23456789E10, "12.3B"},
2755 {1.23456789E11, "123B"},
2756 {1.23456789E12, "1.23T"},
2757 {1.23456789E13, "12.3T"},
2758 {1.23456789E14, "123T"},
2759 {1.23456789E15, "1230T"},
2760 {0.0, NULL}
2761 };
2762
2763 static const ValueAndExpectedString enShortMax2[] = {
2764 {0.0, "0"},
2765 {0.17, "0.17"},
2766 {1.0, "1"},
2767 {1234.0, "1.2K"},
2768 {12345.0, "12K"},
2769 {123456.0, "120K"},
2770 {1234567.0, "1.2M"},
2771 {12345678.0, "12M"},
2772 {123456789.0, "120M"},
2773 {1.23456789E9, "1.2B"},
2774 {1.23456789E10, "12B"},
2775 {1.23456789E11, "120B"},
2776 {1.23456789E12, "1.2T"},
2777 {1.23456789E13, "12T"},
2778 {1.23456789E14, "120T"},
2779 {1.23456789E15, "1200T"},
2780 {0.0, NULL}
2781 };
2782
2783 static const ValueAndExpectedString enShortMax5[] = {
2784 {0.0, "0"},
2785 {0.17, "0.17"},
2786 {1.0, "1"},
2787 {1234.0, "1.234K"},
2788 {12345.0, "12.345K"},
2789 {123456.0, "123.46K"},
2790 {1234567.0, "1.2346M"},
2791 {12345678.0, "12.346M"},
2792 {123456789.0, "123.46M"},
2793 {1.23456789E9, "1.2346B"},
2794 {1.23456789E10, "12.346B"},
2795 {1.23456789E11, "123.46B"},
2796 {1.23456789E12, "1.2346T"},
2797 {1.23456789E13, "12.346T"},
2798 {1.23456789E14, "123.46T"},
2799 {1.23456789E15, "1234.6T"},
2800 {0.0, NULL}
2801 };
2802
2803 static const ValueAndExpectedString enShortMin3[] = {
2804 {0.0, "0.00"},
2805 {0.17, "0.170"},
2806 {1.0, "1.00"},
2807 {1234.0, "1.23K"},
2808 {12345.0, "12.3K"},
2809 {123456.0, "123K"},
2810 {1234567.0, "1.23M"},
2811 {12345678.0, "12.3M"},
2812 {123456789.0, "123M"},
2813 {1.23456789E9, "1.23B"},
2814 {1.23456789E10, "12.3B"},
2815 {1.23456789E11, "123B"},
2816 {1.23456789E12, "1.23T"},
2817 {1.23456789E13, "12.3T"},
2818 {1.23456789E14, "123T"},
2819 {1.23456789E15, "1230T"},
2820 {0.0, NULL}
2821 };
2822
2823 static const ValueAndExpectedString jaShortMax2[] = {
2824 {1234.0, "1200"},
2825 {12345.0, "1.2\\u4E07"},
2826 {123456.0, "12\\u4E07"},
2827 {1234567.0, "120\\u4E07"},
2828 {12345678.0, "1200\\u4E07"},
2829 {123456789.0, "1.2\\u5104"},
2830 {1.23456789E9, "12\\u5104"},
2831 {1.23456789E10, "120\\u5104"},
2832 {1.23456789E11, "1200\\u5104"},
2833 {1.23456789E12, "1.2\\u5146"},
2834 {1.23456789E13, "12\\u5146"},
2835 {1.23456789E14, "120\\u5146"},
2836 {0.0, NULL}
2837 };
2838
2839 static const ValueAndExpectedString srLongMax2[] = {
2840 {1234.0, "1,2 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0435"}, // 10^3 few
2841 {12345.0, "12 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0430"}, // 10^3 other
2842 {21789.0, "22 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0435"}, // 10^3 few
2843 {123456.0, "120 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0430"}, // 10^3 other
2844 {999999.0, "1 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D"}, // 10^6 one
2845 {1234567.0, "1,2 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"}, // 10^6 few
2846 {12345678.0, "12 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"}, // 10^6 other
2847 {123456789.0, "120 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"}, // 10^6 other
2848 {1.23456789E9, "1,2 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0435"}, // 10^9 few
2849 {1.23456789E10, "12 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0438"}, // 10^9 other
2850 {2.08901234E10, "21 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0430"}, // 10^9 one
2851 {2.18901234E10, "22 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0435"}, // 10^9 few
2852 {1.23456789E11, "120 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0438"}, // 10^9 other
2853 {-1234.0, "-1,2 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0435"},
2854 {-12345.0, "-12 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0430"},
2855 {-21789.0, "-22 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0435"},
2856 {-123456.0, "-120 \\u0445\\u0438\\u0459\\u0430\\u0434\\u0430"},
2857 {-999999.0, "-1 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D"},
2858 {-1234567.0, "-1,2 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"},
2859 {-12345678.0, "-12 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"},
2860 {-123456789.0, "-120 \\u043C\\u0438\\u043B\\u0438\\u043E\\u043D\\u0430"},
2861 {-1.23456789E9, "-1,2 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0435"},
2862 {-1.23456789E10, "-12 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0438"},
2863 {-2.08901234E10, "-21 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0430"},
2864 {-2.18901234E10, "-22 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0435"},
2865 {-1.23456789E11, "-120 \\u043C\\u0438\\u043B\\u0438\\u0458\\u0430\\u0440\\u0434\\u0438"},
2866 {0.0, NULL}
2867 };
2868
2869 typedef struct {
2870 const char * locale;
2871 UNumberFormatStyle style;
2872 int32_t attribute; // UNumberFormatAttribute, or -1 for none
2873 int32_t attrValue; //
2874 const ValueAndExpectedString * veItems;
2875 } LocStyleAttributeTest;
2876
2877 static const LocStyleAttributeTest lsaTests[] = {
2878 { "en", UNUM_DECIMAL_COMPACT_SHORT, -1, 0, enShort },
2879 { "en", UNUM_DECIMAL_COMPACT_SHORT, UNUM_MAX_SIGNIFICANT_DIGITS, 2, enShortMax2 },
2880 { "en", UNUM_DECIMAL_COMPACT_SHORT, UNUM_MAX_SIGNIFICANT_DIGITS, 5, enShortMax5 },
2881 { "en", UNUM_DECIMAL_COMPACT_SHORT, UNUM_MIN_SIGNIFICANT_DIGITS, 3, enShortMin3 },
2882 { "ja", UNUM_DECIMAL_COMPACT_SHORT, UNUM_MAX_SIGNIFICANT_DIGITS, 2, jaShortMax2 },
2883 { "sr", UNUM_DECIMAL_COMPACT_LONG, UNUM_MAX_SIGNIFICANT_DIGITS, 2, srLongMax2 },
2884 { NULL, (UNumberFormatStyle)0, -1, 0, NULL }
2885 };
2886
2887 static void TestVariousStylesAndAttributes(void) {
2888 const LocStyleAttributeTest * lsaTestPtr;
2889 for (lsaTestPtr = lsaTests; lsaTestPtr->locale != NULL; lsaTestPtr++) {
2890 UErrorCode status = U_ZERO_ERROR;
2891 UNumberFormat * unum = unum_open(lsaTestPtr->style, NULL, 0, lsaTestPtr->locale, NULL, &status);
2892 if ( U_FAILURE(status) ) {
2893 log_data_err("FAIL: unum_open style %d, locale %s: error %s\n", (int)lsaTestPtr->style, lsaTestPtr->locale, u_errorName(status));
2894 } else {
2895 const ValueAndExpectedString * veItemPtr;
2896 if (lsaTestPtr->attribute >= 0) {
2897 unum_setAttribute(unum, (UNumberFormatAttribute)lsaTestPtr->attribute, lsaTestPtr->attrValue);
2898 }
2899 for (veItemPtr = lsaTestPtr->veItems; veItemPtr->expected != NULL; veItemPtr++) {
2900 UChar uexp[kUBufSize];
2901 UChar uget[kUBufSize];
2902 int32_t uexplen, ugetlen;
2903
2904 status = U_ZERO_ERROR;
2905 uexplen = u_unescape(veItemPtr->expected, uexp, kUBufSize);
2906 ugetlen = unum_formatDouble(unum, veItemPtr->value, uget, kUBufSize, NULL, &status);
2907 if ( U_FAILURE(status) ) {
2908 log_err("FAIL: unum_formatDouble style %d, locale %s, attr %d, value %.2f: error %s\n",
2909 (int)lsaTestPtr->style, lsaTestPtr->locale, lsaTestPtr->attribute, veItemPtr->value, u_errorName(status));
2910 } else if (ugetlen != uexplen || u_strncmp(uget, uexp, uexplen) != 0) {
2911 char bexp[kBBufSize];
2912 char bget[kBBufSize];
2913 u_strToUTF8(bexp, kBBufSize, NULL, uexp, uexplen, &status);
2914 u_strToUTF8(bget, kBBufSize, NULL, uget, ugetlen, &status);
2915 log_err("FAIL: unum_formatDouble style %d, locale %s, attr %d, value %.2f: expect \"%s\", get \"%s\"\n",
2916 (int)lsaTestPtr->style, lsaTestPtr->locale, lsaTestPtr->attribute, veItemPtr->value, bexp, bget);
2917 }
2918 }
2919 unum_close(unum);
2920 }
2921 }
2922 }
2923
2924 static const UChar currpat[] = { 0xA4,0x23,0x2C,0x23,0x23,0x30,0x2E,0x30,0x30,0}; /* ยค#,##0.00 */
2925 static const UChar parsetxt[] = { 0x78,0x30,0x79,0x24,0 }; /* x0y$ */
2926
2927 static void TestParseCurrPatternWithDecStyle() {
2928 UErrorCode status = U_ZERO_ERROR;
2929 UNumberFormat *unumfmt = unum_open(UNUM_DECIMAL, NULL, 0, "en_US", NULL, &status);
2930 if (U_FAILURE(status)) {
2931 log_data_err("unum_open DECIMAL failed for en_US: %s (Are you missing data?)\n", u_errorName(status));
2932 } else {
2933 unum_applyPattern(unumfmt, FALSE, currpat, -1, NULL, &status);
2934 if (U_FAILURE(status)) {
2935 log_err_status(status, "unum_applyPattern failed: %s\n", u_errorName(status));
2936 } else {
2937 int32_t pos = 0;
2938 double value = unum_parseDouble(unumfmt, parsetxt, -1, &pos, &status);
2939 if (U_SUCCESS(status)) {
2940 log_err_status(status, "unum_parseDouble expected to fail but got: %s\n", u_errorName(status));
2941 }
2942 }
2943 unum_close(unumfmt);
2944 }
2945 }
2946
2947 #endif /* #if !UCONFIG_NO_FORMATTING */