1 // © 2017 and later: Unicode, Inc. and others.
2 // License & terms of use: http://www.unicode.org/copyright.html
3
4 #include "unicode/utypes.h"
5
6 #if !UCONFIG_NO_FORMATTING
7
8 #include "uassert.h"
9 #include "unicode/numberformatter.h"
10 #include "number_decimalquantity.h"
11 #include "number_formatimpl.h"
12 #include "umutex.h"
13 #include "number_asformat.h"
14 #include "number_utils.h"
15 #include "number_utypes.h"
16 #include "number_mapper.h"
17 #include "util.h"
18 #include "fphdlimp.h"
19
20 using namespace icu;
21 using namespace icu::number;
22 using namespace icu::number::impl;
23
24 #if (U_PF_WINDOWS <= U_PLATFORM && U_PLATFORM <= U_PF_CYGWIN) && defined(_MSC_VER)
25 // Ignore MSVC warning 4661. This is generated for NumberFormatterSettings<>::toSkeleton() as this method
26 // is defined elsewhere (in number_skeletons.cpp). The compiler is warning that the explicit template instantiation
27 // inside this single translation unit (CPP file) is incomplete, and thus it isn't sure if the template class is
28 // fully defined. However, since each translation unit explicitly instantiates all the necessary template classes,
29 // they will all be passed to the linker, and the linker will still find and export all the class members.
30 #pragma warning(push)
31 #pragma warning(disable: 4661)
32 #endif
33
34 template<typename Derived>
notation(const Notation & notation) const35 Derived NumberFormatterSettings<Derived>::notation(const Notation& notation) const& {
36 Derived copy(*this);
37 // NOTE: Slicing is OK.
38 copy.fMacros.notation = notation;
39 return copy;
40 }
41
42 template<typename Derived>
notation(const Notation & notation)43 Derived NumberFormatterSettings<Derived>::notation(const Notation& notation)&& {
44 Derived move(std::move(*this));
45 // NOTE: Slicing is OK.
46 move.fMacros.notation = notation;
47 return move;
48 }
49
50 template<typename Derived>
unit(const icu::MeasureUnit & unit) const51 Derived NumberFormatterSettings<Derived>::unit(const icu::MeasureUnit& unit) const& {
52 Derived copy(*this);
53 // NOTE: Slicing occurs here. However, CurrencyUnit can be restored from MeasureUnit.
54 // TimeUnit may be affected, but TimeUnit is not as relevant to number formatting.
55 copy.fMacros.unit = unit;
56 return copy;
57 }
58
59 template<typename Derived>
unit(const icu::MeasureUnit & unit)60 Derived NumberFormatterSettings<Derived>::unit(const icu::MeasureUnit& unit)&& {
61 Derived move(std::move(*this));
62 // See comments above about slicing.
63 move.fMacros.unit = unit;
64 return move;
65 }
66
67 template<typename Derived>
adoptUnit(icu::MeasureUnit * unit) const68 Derived NumberFormatterSettings<Derived>::adoptUnit(icu::MeasureUnit* unit) const& {
69 Derived copy(*this);
70 // Just move the unit into the MacroProps by value, and delete it since we have ownership.
71 // NOTE: Slicing occurs here. However, CurrencyUnit can be restored from MeasureUnit.
72 // TimeUnit may be affected, but TimeUnit is not as relevant to number formatting.
73 if (unit != nullptr) {
74 // TODO: On nullptr, reset to default value?
75 copy.fMacros.unit = std::move(*unit);
76 delete unit;
77 }
78 return copy;
79 }
80
81 template<typename Derived>
adoptUnit(icu::MeasureUnit * unit)82 Derived NumberFormatterSettings<Derived>::adoptUnit(icu::MeasureUnit* unit)&& {
83 Derived move(std::move(*this));
84 // See comments above about slicing and ownership.
85 if (unit != nullptr) {
86 // TODO: On nullptr, reset to default value?
87 move.fMacros.unit = std::move(*unit);
88 delete unit;
89 }
90 return move;
91 }
92
93 template<typename Derived>
perUnit(const icu::MeasureUnit & perUnit) const94 Derived NumberFormatterSettings<Derived>::perUnit(const icu::MeasureUnit& perUnit) const& {
95 Derived copy(*this);
96 // See comments above about slicing.
97 copy.fMacros.perUnit = perUnit;
98 return copy;
99 }
100
101 template<typename Derived>
perUnit(const icu::MeasureUnit & perUnit)102 Derived NumberFormatterSettings<Derived>::perUnit(const icu::MeasureUnit& perUnit)&& {
103 Derived move(std::move(*this));
104 // See comments above about slicing.
105 move.fMacros.perUnit = perUnit;
106 return move;
107 }
108
109 template<typename Derived>
adoptPerUnit(icu::MeasureUnit * perUnit) const110 Derived NumberFormatterSettings<Derived>::adoptPerUnit(icu::MeasureUnit* perUnit) const& {
111 Derived copy(*this);
112 // See comments above about slicing and ownership.
113 if (perUnit != nullptr) {
114 // TODO: On nullptr, reset to default value?
115 copy.fMacros.perUnit = std::move(*perUnit);
116 delete perUnit;
117 }
118 return copy;
119 }
120
121 template<typename Derived>
adoptPerUnit(icu::MeasureUnit * perUnit)122 Derived NumberFormatterSettings<Derived>::adoptPerUnit(icu::MeasureUnit* perUnit)&& {
123 Derived move(std::move(*this));
124 // See comments above about slicing and ownership.
125 if (perUnit != nullptr) {
126 // TODO: On nullptr, reset to default value?
127 move.fMacros.perUnit = std::move(*perUnit);
128 delete perUnit;
129 }
130 return move;
131 }
132
133 template<typename Derived>
precision(const Precision & precision) const134 Derived NumberFormatterSettings<Derived>::precision(const Precision& precision) const& {
135 Derived copy(*this);
136 // NOTE: Slicing is OK.
137 copy.fMacros.precision = precision;
138 return copy;
139 }
140
141 template<typename Derived>
precision(const Precision & precision)142 Derived NumberFormatterSettings<Derived>::precision(const Precision& precision)&& {
143 Derived move(std::move(*this));
144 // NOTE: Slicing is OK.
145 move.fMacros.precision = precision;
146 return move;
147 }
148
149 template<typename Derived>
roundingMode(UNumberFormatRoundingMode roundingMode) const150 Derived NumberFormatterSettings<Derived>::roundingMode(UNumberFormatRoundingMode roundingMode) const& {
151 Derived copy(*this);
152 copy.fMacros.roundingMode = roundingMode;
153 return copy;
154 }
155
156 template<typename Derived>
roundingMode(UNumberFormatRoundingMode roundingMode)157 Derived NumberFormatterSettings<Derived>::roundingMode(UNumberFormatRoundingMode roundingMode)&& {
158 Derived move(std::move(*this));
159 move.fMacros.roundingMode = roundingMode;
160 return move;
161 }
162
163 template<typename Derived>
grouping(UNumberGroupingStrategy strategy) const164 Derived NumberFormatterSettings<Derived>::grouping(UNumberGroupingStrategy strategy) const& {
165 Derived copy(*this);
166 // NOTE: This is slightly different than how the setting is stored in Java
167 // because we want to put it on the stack.
168 copy.fMacros.grouper = Grouper::forStrategy(strategy);
169 return copy;
170 }
171
172 template<typename Derived>
grouping(UNumberGroupingStrategy strategy)173 Derived NumberFormatterSettings<Derived>::grouping(UNumberGroupingStrategy strategy)&& {
174 Derived move(std::move(*this));
175 move.fMacros.grouper = Grouper::forStrategy(strategy);
176 return move;
177 }
178
179 template<typename Derived>
integerWidth(const IntegerWidth & style) const180 Derived NumberFormatterSettings<Derived>::integerWidth(const IntegerWidth& style) const& {
181 Derived copy(*this);
182 copy.fMacros.integerWidth = style;
183 return copy;
184 }
185
186 template<typename Derived>
integerWidth(const IntegerWidth & style)187 Derived NumberFormatterSettings<Derived>::integerWidth(const IntegerWidth& style)&& {
188 Derived move(std::move(*this));
189 move.fMacros.integerWidth = style;
190 return move;
191 }
192
193 template<typename Derived>
symbols(const DecimalFormatSymbols & symbols) const194 Derived NumberFormatterSettings<Derived>::symbols(const DecimalFormatSymbols& symbols) const& {
195 Derived copy(*this);
196 copy.fMacros.symbols.setTo(symbols);
197 return copy;
198 }
199
200 template<typename Derived>
symbols(const DecimalFormatSymbols & symbols)201 Derived NumberFormatterSettings<Derived>::symbols(const DecimalFormatSymbols& symbols)&& {
202 Derived move(std::move(*this));
203 move.fMacros.symbols.setTo(symbols);
204 return move;
205 }
206
207 template<typename Derived>
adoptSymbols(NumberingSystem * ns) const208 Derived NumberFormatterSettings<Derived>::adoptSymbols(NumberingSystem* ns) const& {
209 Derived copy(*this);
210 copy.fMacros.symbols.setTo(ns);
211 return copy;
212 }
213
214 template<typename Derived>
adoptSymbols(NumberingSystem * ns)215 Derived NumberFormatterSettings<Derived>::adoptSymbols(NumberingSystem* ns)&& {
216 Derived move(std::move(*this));
217 move.fMacros.symbols.setTo(ns);
218 return move;
219 }
220
221 template<typename Derived>
unitWidth(UNumberUnitWidth width) const222 Derived NumberFormatterSettings<Derived>::unitWidth(UNumberUnitWidth width) const& {
223 Derived copy(*this);
224 copy.fMacros.unitWidth = width;
225 return copy;
226 }
227
228 template<typename Derived>
unitWidth(UNumberUnitWidth width)229 Derived NumberFormatterSettings<Derived>::unitWidth(UNumberUnitWidth width)&& {
230 Derived move(std::move(*this));
231 move.fMacros.unitWidth = width;
232 return move;
233 }
234
235 template<typename Derived>
sign(UNumberSignDisplay style) const236 Derived NumberFormatterSettings<Derived>::sign(UNumberSignDisplay style) const& {
237 Derived copy(*this);
238 copy.fMacros.sign = style;
239 return copy;
240 }
241
242 template<typename Derived>
sign(UNumberSignDisplay style)243 Derived NumberFormatterSettings<Derived>::sign(UNumberSignDisplay style)&& {
244 Derived move(std::move(*this));
245 move.fMacros.sign = style;
246 return move;
247 }
248
249 template<typename Derived>
decimal(UNumberDecimalSeparatorDisplay style) const250 Derived NumberFormatterSettings<Derived>::decimal(UNumberDecimalSeparatorDisplay style) const& {
251 Derived copy(*this);
252 copy.fMacros.decimal = style;
253 return copy;
254 }
255
256 template<typename Derived>
decimal(UNumberDecimalSeparatorDisplay style)257 Derived NumberFormatterSettings<Derived>::decimal(UNumberDecimalSeparatorDisplay style)&& {
258 Derived move(std::move(*this));
259 move.fMacros.decimal = style;
260 return move;
261 }
262
263 template<typename Derived>
scale(const Scale & scale) const264 Derived NumberFormatterSettings<Derived>::scale(const Scale& scale) const& {
265 Derived copy(*this);
266 copy.fMacros.scale = scale;
267 return copy;
268 }
269
270 template<typename Derived>
scale(const Scale & scale)271 Derived NumberFormatterSettings<Derived>::scale(const Scale& scale)&& {
272 Derived move(std::move(*this));
273 move.fMacros.scale = scale;
274 return move;
275 }
276
277 template<typename Derived>
usage(const StringPiece usage) const278 Derived NumberFormatterSettings<Derived>::usage(const StringPiece usage) const& {
279 Derived copy(*this);
280 copy.fMacros.usage.set(usage);
281 return copy;
282 }
283
284 template<typename Derived>
usage(const StringPiece usage)285 Derived NumberFormatterSettings<Derived>::usage(const StringPiece usage)&& {
286 Derived move(std::move(*this));
287 move.fMacros.usage.set(usage);
288 return move;
289 }
290
291 template<typename Derived>
unitDisplayCase(const StringPiece unitDisplayCase) const292 Derived NumberFormatterSettings<Derived>::unitDisplayCase(const StringPiece unitDisplayCase) const& {
293 Derived copy(*this);
294 copy.fMacros.unitDisplayCase.set(unitDisplayCase);
295 return copy;
296 }
297
298 template<typename Derived>
unitDisplayCase(const StringPiece unitDisplayCase)299 Derived NumberFormatterSettings<Derived>::unitDisplayCase(const StringPiece unitDisplayCase)&& {
300 Derived move(std::move(*this));
301 move.fMacros.unitDisplayCase.set(unitDisplayCase);
302 return move;
303 }
304
305 template<typename Derived>
padding(const Padder & padder) const306 Derived NumberFormatterSettings<Derived>::padding(const Padder& padder) const& {
307 Derived copy(*this);
308 copy.fMacros.padder = padder;
309 return copy;
310 }
311
312 template<typename Derived>
padding(const Padder & padder)313 Derived NumberFormatterSettings<Derived>::padding(const Padder& padder)&& {
314 Derived move(std::move(*this));
315 move.fMacros.padder = padder;
316 return move;
317 }
318
319 template<typename Derived>
threshold(int32_t threshold) const320 Derived NumberFormatterSettings<Derived>::threshold(int32_t threshold) const& {
321 Derived copy(*this);
322 copy.fMacros.threshold = threshold;
323 return copy;
324 }
325
326 template<typename Derived>
threshold(int32_t threshold)327 Derived NumberFormatterSettings<Derived>::threshold(int32_t threshold)&& {
328 Derived move(std::move(*this));
329 move.fMacros.threshold = threshold;
330 return move;
331 }
332
333 template<typename Derived>
macros(const impl::MacroProps & macros) const334 Derived NumberFormatterSettings<Derived>::macros(const impl::MacroProps& macros) const& {
335 Derived copy(*this);
336 copy.fMacros = macros;
337 return copy;
338 }
339
340 template<typename Derived>
macros(const impl::MacroProps & macros)341 Derived NumberFormatterSettings<Derived>::macros(const impl::MacroProps& macros)&& {
342 Derived move(std::move(*this));
343 move.fMacros = macros;
344 return move;
345 }
346
347 template<typename Derived>
macros(impl::MacroProps && macros) const348 Derived NumberFormatterSettings<Derived>::macros(impl::MacroProps&& macros) const& {
349 Derived copy(*this);
350 copy.fMacros = std::move(macros);
351 return copy;
352 }
353
354 template<typename Derived>
macros(impl::MacroProps && macros)355 Derived NumberFormatterSettings<Derived>::macros(impl::MacroProps&& macros)&& {
356 Derived move(std::move(*this));
357 move.fMacros = std::move(macros);
358 return move;
359 }
360
361 // Note: toSkeleton defined in number_skeletons.cpp
362
363 template<typename Derived>
clone() const364 LocalPointer<Derived> NumberFormatterSettings<Derived>::clone() const & {
365 return LocalPointer<Derived>(new Derived(*this));
366 }
367
368 template<typename Derived>
clone()369 LocalPointer<Derived> NumberFormatterSettings<Derived>::clone() && {
370 return LocalPointer<Derived>(new Derived(std::move(*this)));
371 }
372
373 // Declare all classes that implement NumberFormatterSettings
374 // See https://stackoverflow.com/a/495056/1407170
375 template
376 class icu::number::NumberFormatterSettings<icu::number::UnlocalizedNumberFormatter>;
377 template
378 class icu::number::NumberFormatterSettings<icu::number::LocalizedNumberFormatter>;
379
380
with()381 UnlocalizedNumberFormatter NumberFormatter::with() {
382 UnlocalizedNumberFormatter result;
383 return result;
384 }
385
withLocale(const Locale & locale)386 LocalizedNumberFormatter NumberFormatter::withLocale(const Locale& locale) {
387 return with().locale(locale);
388 }
389
390 // Note: forSkeleton defined in number_skeletons.cpp
391
392
393 template<typename T> using NFS = NumberFormatterSettings<T>;
394 using LNF = LocalizedNumberFormatter;
395 using UNF = UnlocalizedNumberFormatter;
396
UnlocalizedNumberFormatter(const UNF & other)397 UnlocalizedNumberFormatter::UnlocalizedNumberFormatter(const UNF& other)
398 : UNF(static_cast<const NFS<UNF>&>(other)) {}
399
UnlocalizedNumberFormatter(const NFS<UNF> & other)400 UnlocalizedNumberFormatter::UnlocalizedNumberFormatter(const NFS<UNF>& other)
401 : NFS<UNF>(other) {
402 // No additional fields to assign
403 }
404
405 // Make default copy constructor call the NumberFormatterSettings copy constructor.
UnlocalizedNumberFormatter(UNF && src)406 UnlocalizedNumberFormatter::UnlocalizedNumberFormatter(UNF&& src) U_NOEXCEPT
407 : UNF(static_cast<NFS<UNF>&&>(src)) {}
408
UnlocalizedNumberFormatter(NFS<UNF> && src)409 UnlocalizedNumberFormatter::UnlocalizedNumberFormatter(NFS<UNF>&& src) U_NOEXCEPT
410 : NFS<UNF>(std::move(src)) {
411 // No additional fields to assign
412 }
413
operator =(const UNF & other)414 UnlocalizedNumberFormatter& UnlocalizedNumberFormatter::operator=(const UNF& other) {
415 NFS<UNF>::operator=(static_cast<const NFS<UNF>&>(other));
416 // No additional fields to assign
417 return *this;
418 }
419
operator =(UNF && src)420 UnlocalizedNumberFormatter& UnlocalizedNumberFormatter::operator=(UNF&& src) U_NOEXCEPT {
421 NFS<UNF>::operator=(static_cast<NFS<UNF>&&>(src));
422 // No additional fields to assign
423 return *this;
424 }
425
426 // Make default copy constructor call the NumberFormatterSettings copy constructor.
LocalizedNumberFormatter(const LNF & other)427 LocalizedNumberFormatter::LocalizedNumberFormatter(const LNF& other)
428 : LNF(static_cast<const NFS<LNF>&>(other)) {}
429
LocalizedNumberFormatter(const NFS<LNF> & other)430 LocalizedNumberFormatter::LocalizedNumberFormatter(const NFS<LNF>& other)
431 : NFS<LNF>(other) {
432 UErrorCode localStatus = U_ZERO_ERROR; // Can't bubble up the error
433 lnfCopyHelper(static_cast<const LNF&>(other), localStatus);
434 }
435
LocalizedNumberFormatter(LocalizedNumberFormatter && src)436 LocalizedNumberFormatter::LocalizedNumberFormatter(LocalizedNumberFormatter&& src) U_NOEXCEPT
437 : LNF(static_cast<NFS<LNF>&&>(src)) {}
438
LocalizedNumberFormatter(NFS<LNF> && src)439 LocalizedNumberFormatter::LocalizedNumberFormatter(NFS<LNF>&& src) U_NOEXCEPT
440 : NFS<LNF>(std::move(src)) {
441 lnfMoveHelper(std::move(static_cast<LNF&&>(src)));
442 }
443
operator =(const LNF & other)444 LocalizedNumberFormatter& LocalizedNumberFormatter::operator=(const LNF& other) {
445 if (this == &other) { return *this; } // self-assignment: no-op
446 NFS<LNF>::operator=(static_cast<const NFS<LNF>&>(other));
447 UErrorCode localStatus = U_ZERO_ERROR; // Can't bubble up the error
448 lnfCopyHelper(other, localStatus);
449 return *this;
450 }
451
operator =(LNF && src)452 LocalizedNumberFormatter& LocalizedNumberFormatter::operator=(LNF&& src) U_NOEXCEPT {
453 NFS<LNF>::operator=(static_cast<NFS<LNF>&&>(src));
454 lnfMoveHelper(std::move(src));
455 return *this;
456 }
457
resetCompiled()458 void LocalizedNumberFormatter::resetCompiled() {
459 auto* callCount = reinterpret_cast<u_atomic_int32_t*>(fUnsafeCallCount);
460 umtx_storeRelease(*callCount, 0);
461 fCompiled = nullptr;
462 }
463
lnfMoveHelper(LNF && src)464 void LocalizedNumberFormatter::lnfMoveHelper(LNF&& src) {
465 // Copy over the compiled formatter and set call count to INT32_MIN as in computeCompiled().
466 // Don't copy the call count directly because doing so requires a loadAcquire/storeRelease.
467 // The bits themselves appear to be platform-dependent, so copying them might not be safe.
468 delete fCompiled;
469 if (src.fCompiled != nullptr) {
470 auto* callCount = reinterpret_cast<u_atomic_int32_t*>(fUnsafeCallCount);
471 umtx_storeRelease(*callCount, INT32_MIN);
472 fCompiled = src.fCompiled;
473 // Reset the source object to leave it in a safe state.
474 src.resetCompiled();
475 } else {
476 resetCompiled();
477 }
478
479 // Unconditionally move the warehouse
480 delete fWarehouse;
481 fWarehouse = src.fWarehouse;
482 src.fWarehouse = nullptr;
483 }
484
lnfCopyHelper(const LNF &,UErrorCode & status)485 void LocalizedNumberFormatter::lnfCopyHelper(const LNF&, UErrorCode& status) {
486 // When copying, always reset the compiled formatter.
487 delete fCompiled;
488 resetCompiled();
489
490 // If MacroProps has a reference to AffixPatternProvider, we need to copy it.
491 // If MacroProps has a reference to PluralRules, copy that one, too.
492 delete fWarehouse;
493 if (fMacros.affixProvider || fMacros.rules) {
494 LocalPointer<DecimalFormatWarehouse> warehouse(new DecimalFormatWarehouse(), status);
495 if (U_FAILURE(status)) {
496 fWarehouse = nullptr;
497 return;
498 }
499 if (fMacros.affixProvider) {
500 warehouse->affixProvider.setTo(fMacros.affixProvider, status);
501 fMacros.affixProvider = &warehouse->affixProvider.get();
502 }
503 if (fMacros.rules) {
504 warehouse->rules.adoptInsteadAndCheckErrorCode(
505 new PluralRules(*fMacros.rules), status);
506 fMacros.rules = warehouse->rules.getAlias();
507 }
508 fWarehouse = warehouse.orphan();
509 } else {
510 fWarehouse = nullptr;
511 }
512 }
513
514
~LocalizedNumberFormatter()515 LocalizedNumberFormatter::~LocalizedNumberFormatter() {
516 delete fCompiled;
517 delete fWarehouse;
518 }
519
LocalizedNumberFormatter(const MacroProps & macros,const Locale & locale)520 LocalizedNumberFormatter::LocalizedNumberFormatter(const MacroProps& macros, const Locale& locale) {
521 fMacros = macros;
522 fMacros.locale = locale;
523 }
524
LocalizedNumberFormatter(MacroProps && macros,const Locale & locale)525 LocalizedNumberFormatter::LocalizedNumberFormatter(MacroProps&& macros, const Locale& locale) {
526 fMacros = std::move(macros);
527 fMacros.locale = locale;
528 }
529
locale(const Locale & locale) const530 LocalizedNumberFormatter UnlocalizedNumberFormatter::locale(const Locale& locale) const& {
531 return LocalizedNumberFormatter(fMacros, locale);
532 }
533
locale(const Locale & locale)534 LocalizedNumberFormatter UnlocalizedNumberFormatter::locale(const Locale& locale)&& {
535 return LocalizedNumberFormatter(std::move(fMacros), locale);
536 }
537
formatInt(int64_t value,UErrorCode & status) const538 FormattedNumber LocalizedNumberFormatter::formatInt(int64_t value, UErrorCode& status) const {
539 if (U_FAILURE(status)) { return FormattedNumber(U_ILLEGAL_ARGUMENT_ERROR); }
540 auto results = new UFormattedNumberData();
541 if (results == nullptr) {
542 status = U_MEMORY_ALLOCATION_ERROR;
543 return FormattedNumber(status);
544 }
545 results->quantity.setToLong(value);
546 formatImpl(results, status);
547
548 // Do not save the results object if we encountered a failure.
549 if (U_SUCCESS(status)) {
550 return FormattedNumber(results);
551 } else {
552 delete results;
553 return FormattedNumber(status);
554 }
555 }
556
formatDouble(double value,UErrorCode & status) const557 FormattedNumber LocalizedNumberFormatter::formatDouble(double value, UErrorCode& status) const {
558 if (U_FAILURE(status)) { return FormattedNumber(U_ILLEGAL_ARGUMENT_ERROR); }
559 auto results = new UFormattedNumberData();
560 if (results == nullptr) {
561 status = U_MEMORY_ALLOCATION_ERROR;
562 return FormattedNumber(status);
563 }
564 results->quantity.setToDouble(value);
565 formatImpl(results, status);
566
567 // Do not save the results object if we encountered a failure.
568 if (U_SUCCESS(status)) {
569 return FormattedNumber(results);
570 } else {
571 delete results;
572 return FormattedNumber(status);
573 }
574 }
575
formatDecimal(StringPiece value,UErrorCode & status) const576 FormattedNumber LocalizedNumberFormatter::formatDecimal(StringPiece value, UErrorCode& status) const {
577 if (U_FAILURE(status)) { return FormattedNumber(U_ILLEGAL_ARGUMENT_ERROR); }
578 auto results = new UFormattedNumberData();
579 if (results == nullptr) {
580 status = U_MEMORY_ALLOCATION_ERROR;
581 return FormattedNumber(status);
582 }
583 results->quantity.setToDecNumber(value, status);
584 formatImpl(results, status);
585
586 // Do not save the results object if we encountered a failure.
587 if (U_SUCCESS(status)) {
588 return FormattedNumber(results);
589 } else {
590 delete results;
591 return FormattedNumber(status);
592 }
593 }
594
595 FormattedNumber
formatDecimalQuantity(const DecimalQuantity & dq,UErrorCode & status) const596 LocalizedNumberFormatter::formatDecimalQuantity(const DecimalQuantity& dq, UErrorCode& status) const {
597 if (U_FAILURE(status)) { return FormattedNumber(U_ILLEGAL_ARGUMENT_ERROR); }
598 auto results = new UFormattedNumberData();
599 if (results == nullptr) {
600 status = U_MEMORY_ALLOCATION_ERROR;
601 return FormattedNumber(status);
602 }
603 results->quantity = dq;
604 formatImpl(results, status);
605
606 // Do not save the results object if we encountered a failure.
607 if (U_SUCCESS(status)) {
608 return FormattedNumber(results);
609 } else {
610 delete results;
611 return FormattedNumber(status);
612 }
613 }
614
formatImpl(impl::UFormattedNumberData * results,UErrorCode & status) const615 void LocalizedNumberFormatter::formatImpl(impl::UFormattedNumberData* results, UErrorCode& status) const {
616 if (computeCompiled(status)) {
617 fCompiled->format(results, status);
618 } else {
619 NumberFormatterImpl::formatStatic(fMacros, results, status);
620 }
621 if (U_FAILURE(status)) {
622 return;
623 }
624 results->getStringRef().writeTerminator(status);
625 }
626
getAffixImpl(bool isPrefix,bool isNegative,UnicodeString & result,UErrorCode & status) const627 void LocalizedNumberFormatter::getAffixImpl(bool isPrefix, bool isNegative, UnicodeString& result,
628 UErrorCode& status) const {
629 FormattedStringBuilder string;
630 auto signum = static_cast<Signum>(isNegative ? SIGNUM_NEG : SIGNUM_POS);
631 // Always return affixes for plural form OTHER.
632 static const StandardPlural::Form plural = StandardPlural::OTHER;
633 int32_t prefixLength;
634 if (computeCompiled(status)) {
635 prefixLength = fCompiled->getPrefixSuffix(signum, plural, string, status);
636 } else {
637 prefixLength = NumberFormatterImpl::getPrefixSuffixStatic(fMacros, signum, plural, string, status);
638 }
639 result.remove();
640 if (isPrefix) {
641 result.append(string.toTempUnicodeString().tempSubStringBetween(0, prefixLength));
642 } else {
643 result.append(string.toTempUnicodeString().tempSubStringBetween(prefixLength, string.length()));
644 }
645 }
646
computeCompiled(UErrorCode & status) const647 bool LocalizedNumberFormatter::computeCompiled(UErrorCode& status) const {
648 // fUnsafeCallCount contains memory to be interpreted as an atomic int, most commonly
649 // std::atomic<int32_t>. Since the type of atomic int is platform-dependent, we cast the
650 // bytes in fUnsafeCallCount to u_atomic_int32_t, a typedef for the platform-dependent
651 // atomic int type defined in umutex.h.
652 static_assert(
653 sizeof(u_atomic_int32_t) <= sizeof(fUnsafeCallCount),
654 "Atomic integer size on this platform exceeds the size allocated by fUnsafeCallCount");
655 auto* callCount = reinterpret_cast<u_atomic_int32_t*>(
656 const_cast<LocalizedNumberFormatter*>(this)->fUnsafeCallCount);
657
658 // A positive value in the atomic int indicates that the data structure is not yet ready;
659 // a negative value indicates that it is ready. If, after the increment, the atomic int
660 // is exactly threshold, then it is the current thread's job to build the data structure.
661 // Note: We set the callCount to INT32_MIN so that if another thread proceeds to increment
662 // the atomic int, the value remains below zero.
663 int32_t currentCount = umtx_loadAcquire(*callCount);
664 if (0 <= currentCount && currentCount <= fMacros.threshold && fMacros.threshold > 0) {
665 currentCount = umtx_atomic_inc(callCount);
666 }
667
668 if (currentCount == fMacros.threshold && fMacros.threshold > 0) {
669 // Build the data structure and then use it (slow to fast path).
670 const NumberFormatterImpl* compiled = new NumberFormatterImpl(fMacros, status);
671 if (compiled == nullptr) {
672 status = U_MEMORY_ALLOCATION_ERROR;
673 return false;
674 }
675 U_ASSERT(fCompiled == nullptr);
676 const_cast<LocalizedNumberFormatter*>(this)->fCompiled = compiled;
677 umtx_storeRelease(*callCount, INT32_MIN);
678 return true;
679 } else if (currentCount < 0) {
680 // The data structure is already built; use it (fast path).
681 U_ASSERT(fCompiled != nullptr);
682 return true;
683 } else {
684 // Format the number without building the data structure (slow path).
685 return false;
686 }
687 }
688
getCompiled() const689 const impl::NumberFormatterImpl* LocalizedNumberFormatter::getCompiled() const {
690 return fCompiled;
691 }
692
getCallCount() const693 int32_t LocalizedNumberFormatter::getCallCount() const {
694 auto* callCount = reinterpret_cast<u_atomic_int32_t*>(
695 const_cast<LocalizedNumberFormatter*>(this)->fUnsafeCallCount);
696 return umtx_loadAcquire(*callCount);
697 }
698
699 // Note: toFormat defined in number_asformat.cpp
700
701 #if (U_PF_WINDOWS <= U_PLATFORM && U_PLATFORM <= U_PF_CYGWIN) && defined(_MSC_VER)
702 // Warning 4661.
703 #pragma warning(pop)
704 #endif
705
706 #endif /* #if !UCONFIG_NO_FORMATTING */
707