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 "unicode/ustring.h"
9 #include "unicode/ures.h"
10 #include "cstring.h"
11 #include "charstr.h"
12 #include "resource.h"
13 #include "number_compact.h"
14 #include "number_microprops.h"
15 #include "uresimp.h"
16
17 using namespace icu;
18 using namespace icu::number;
19 using namespace icu::number::impl;
20
21 namespace {
22
23 // A dummy object used when a "0" compact decimal entry is encountered. This is necessary
24 // in order to prevent falling back to root. Object equality ("==") is intended.
25 const char16_t *USE_FALLBACK = u"<USE FALLBACK>";
26
27 /** Produces a string like "NumberElements/latn/patternsShort/decimalFormat". */
getResourceBundleKey(const char * nsName,CompactStyle compactStyle,CompactType compactType,CharString & sb,UErrorCode & status)28 void getResourceBundleKey(const char *nsName, CompactStyle compactStyle, CompactType compactType,
29 CharString &sb, UErrorCode &status) {
30 sb.clear();
31 sb.append("NumberElements/", status);
32 sb.append(nsName, status);
33 sb.append(compactStyle == CompactStyle::UNUM_SHORT ? "/patternsShort" : "/patternsLong", status);
34 sb.append(compactType == CompactType::TYPE_DECIMAL ? "/decimalFormat" : "/currencyFormat", status);
35 }
36
getIndex(int32_t magnitude,StandardPlural::Form plural)37 int32_t getIndex(int32_t magnitude, StandardPlural::Form plural) {
38 return magnitude * StandardPlural::COUNT + plural;
39 }
40
countZeros(const char16_t * patternString,int32_t patternLength)41 int32_t countZeros(const char16_t *patternString, int32_t patternLength) {
42 // NOTE: This strategy for computing the number of zeros is a hack for efficiency.
43 // It could break if there are any 0s that aren't part of the main pattern.
44 int32_t numZeros = 0;
45 for (int32_t i = 0; i < patternLength; i++) {
46 if (patternString[i] == u'0') {
47 numZeros++;
48 } else if (numZeros > 0) {
49 break; // zeros should always be contiguous
50 }
51 }
52 return numZeros;
53 }
54
55 } // namespace
56
57 // NOTE: patterns and multipliers both get zero-initialized.
CompactData()58 CompactData::CompactData() : patterns(), multipliers(), largestMagnitude(0), isEmpty(true) {
59 }
60
populate(const Locale & locale,const char * nsName,CompactStyle compactStyle,CompactType compactType,UErrorCode & status)61 void CompactData::populate(const Locale &locale, const char *nsName, CompactStyle compactStyle,
62 CompactType compactType, UErrorCode &status) {
63 CompactDataSink sink(*this);
64 LocalUResourceBundlePointer rb(ures_open(nullptr, locale.getName(), &status));
65 if (U_FAILURE(status)) { return; }
66
67 bool nsIsLatn = strcmp(nsName, "latn") == 0;
68 bool compactIsShort = compactStyle == CompactStyle::UNUM_SHORT;
69
70 // Fall back to latn numbering system and/or short compact style.
71 CharString resourceKey;
72 getResourceBundleKey(nsName, compactStyle, compactType, resourceKey, status);
73 UErrorCode localStatus = U_ZERO_ERROR;
74 ures_getAllItemsWithFallback(rb.getAlias(), resourceKey.data(), sink, localStatus);
75 if (isEmpty && !nsIsLatn) {
76 getResourceBundleKey("latn", compactStyle, compactType, resourceKey, status);
77 localStatus = U_ZERO_ERROR;
78 ures_getAllItemsWithFallback(rb.getAlias(), resourceKey.data(), sink, localStatus);
79 }
80 if (isEmpty && !compactIsShort) {
81 getResourceBundleKey(nsName, CompactStyle::UNUM_SHORT, compactType, resourceKey, status);
82 localStatus = U_ZERO_ERROR;
83 ures_getAllItemsWithFallback(rb.getAlias(), resourceKey.data(), sink, localStatus);
84 }
85 if (isEmpty && !nsIsLatn && !compactIsShort) {
86 getResourceBundleKey("latn", CompactStyle::UNUM_SHORT, compactType, resourceKey, status);
87 localStatus = U_ZERO_ERROR;
88 ures_getAllItemsWithFallback(rb.getAlias(), resourceKey.data(), sink, localStatus);
89 }
90
91 // The last fallback should be guaranteed to return data.
92 if (isEmpty) {
93 status = U_INTERNAL_PROGRAM_ERROR;
94 }
95 }
96
getMultiplier(int32_t magnitude) const97 int32_t CompactData::getMultiplier(int32_t magnitude) const {
98 if (magnitude < 0) {
99 return 0;
100 }
101 if (magnitude > largestMagnitude) {
102 magnitude = largestMagnitude;
103 }
104 return multipliers[magnitude];
105 }
106
getPattern(int32_t magnitude,const PluralRules * rules,const DecimalQuantity & dq) const107 const char16_t *CompactData::getPattern(
108 int32_t magnitude,
109 const PluralRules *rules,
110 const DecimalQuantity &dq) const {
111 if (magnitude < 0) {
112 return nullptr;
113 }
114 if (magnitude > largestMagnitude) {
115 magnitude = largestMagnitude;
116 }
117 const char16_t *patternString = nullptr;
118 if (dq.hasIntegerValue()) {
119 int64_t i = dq.toLong(true);
120 if (i == 0) {
121 patternString = patterns[getIndex(magnitude, StandardPlural::Form::EQ_0)];
122 } else if (i == 1) {
123 patternString = patterns[getIndex(magnitude, StandardPlural::Form::EQ_1)];
124 }
125 if (patternString != nullptr) {
126 return patternString;
127 }
128 }
129 StandardPlural::Form plural = utils::getStandardPlural(rules, dq);
130 patternString = patterns[getIndex(magnitude, plural)];
131 if (patternString == nullptr && plural != StandardPlural::OTHER) {
132 // Fall back to "other" plural variant
133 patternString = patterns[getIndex(magnitude, StandardPlural::OTHER)];
134 }
135 if (patternString == USE_FALLBACK) { // == is intended
136 // Return null if USE_FALLBACK is present
137 patternString = nullptr;
138 }
139 return patternString;
140 }
141
getUniquePatterns(UVector & output,UErrorCode & status) const142 void CompactData::getUniquePatterns(UVector &output, UErrorCode &status) const {
143 U_ASSERT(output.isEmpty());
144 // NOTE: In C++, this is done more manually with a UVector.
145 // In Java, we can take advantage of JDK HashSet.
146 for (auto pattern : patterns) {
147 if (pattern == nullptr || pattern == USE_FALLBACK) {
148 continue;
149 }
150
151 // Insert pattern into the UVector if the UVector does not already contain the pattern.
152 // Search the UVector from the end since identical patterns are likely to be adjacent.
153 for (int32_t i = output.size() - 1; i >= 0; i--) {
154 if (u_strcmp(pattern, static_cast<const char16_t *>(output[i])) == 0) {
155 goto continue_outer;
156 }
157 }
158
159 // The string was not found; add it to the UVector.
160 // Note: must cast off const from pattern to store it in a UVector, which expects (void *)
161 output.addElement(const_cast<char16_t *>(pattern), status);
162
163 continue_outer:
164 continue;
165 }
166 }
167
put(const char * key,ResourceValue & value,UBool,UErrorCode & status)168 void CompactData::CompactDataSink::put(const char *key, ResourceValue &value, UBool /*noFallback*/,
169 UErrorCode &status) {
170 // traverse into the table of powers of ten
171 ResourceTable powersOfTenTable = value.getTable(status);
172 if (U_FAILURE(status)) { return; }
173 for (int i3 = 0; powersOfTenTable.getKeyAndValue(i3, key, value); ++i3) {
174
175 // Assumes that the keys are always of the form "10000" where the magnitude is the
176 // length of the key minus one. We only support magnitudes less than COMPACT_MAX_DIGITS;
177 // ignore entries that have greater magnitude.
178 auto magnitude = static_cast<int8_t> (strlen(key) - 1);
179 U_ASSERT(magnitude < COMPACT_MAX_DIGITS); // debug assert
180 if (magnitude >= COMPACT_MAX_DIGITS) { // skip in production
181 continue;
182 }
183 int8_t multiplier = data.multipliers[magnitude];
184
185 // Iterate over the plural variants ("one", "other", etc)
186 ResourceTable pluralVariantsTable = value.getTable(status);
187 if (U_FAILURE(status)) { return; }
188 for (int i4 = 0; pluralVariantsTable.getKeyAndValue(i4, key, value); ++i4) {
189 // Skip this magnitude/plural if we already have it from a child locale.
190 // Note: This also skips USE_FALLBACK entries.
191 StandardPlural::Form plural = StandardPlural::fromString(key, status);
192 if (U_FAILURE(status)) { return; }
193 if (data.patterns[getIndex(magnitude, plural)] != nullptr) {
194 continue;
195 }
196
197 // The value "0" means that we need to use the default pattern and not fall back
198 // to parent locales. Example locale where this is relevant: 'it'.
199 int32_t patternLength;
200 const char16_t *patternString = value.getString(patternLength, status);
201 if (U_FAILURE(status)) { return; }
202 if (u_strcmp(patternString, u"0") == 0) {
203 patternString = USE_FALLBACK;
204 patternLength = 0;
205 }
206
207 // Save the pattern string. We will parse it lazily.
208 data.patterns[getIndex(magnitude, plural)] = patternString;
209
210 // If necessary, compute the multiplier: the difference between the magnitude
211 // and the number of zeros in the pattern.
212 if (multiplier == 0) {
213 int32_t numZeros = countZeros(patternString, patternLength);
214 if (numZeros > 0) { // numZeros==0 in certain cases, like Somali "Kun"
215 multiplier = static_cast<int8_t> (numZeros - magnitude - 1);
216 }
217 }
218 }
219
220 // Save the multiplier.
221 if (data.multipliers[magnitude] == 0) {
222 data.multipliers[magnitude] = multiplier;
223 if (magnitude > data.largestMagnitude) {
224 data.largestMagnitude = magnitude;
225 }
226 data.isEmpty = false;
227 } else {
228 U_ASSERT(data.multipliers[magnitude] == multiplier);
229 }
230 }
231 }
232
233 ///////////////////////////////////////////////////////////
234 /// END OF CompactData.java; BEGIN CompactNotation.java ///
235 ///////////////////////////////////////////////////////////
236
CompactHandler(CompactStyle compactStyle,const Locale & locale,const char * nsName,CompactType compactType,const PluralRules * rules,MutablePatternModifier * buildReference,bool safe,const MicroPropsGenerator * parent,UErrorCode & status)237 CompactHandler::CompactHandler(
238 CompactStyle compactStyle,
239 const Locale &locale,
240 const char *nsName,
241 CompactType compactType,
242 const PluralRules *rules,
243 MutablePatternModifier *buildReference,
244 bool safe,
245 const MicroPropsGenerator *parent,
246 UErrorCode &status)
247 : rules(rules), parent(parent), safe(safe) {
248 data.populate(locale, nsName, compactStyle, compactType, status);
249 if (safe) {
250 // Safe code path
251 precomputeAllModifiers(*buildReference, status);
252 } else {
253 // Unsafe code path
254 // Store the MutablePatternModifier reference.
255 unsafePatternModifier = buildReference;
256 }
257 }
258
~CompactHandler()259 CompactHandler::~CompactHandler() {
260 for (int32_t i = 0; i < precomputedModsLength; i++) {
261 delete precomputedMods[i].mod;
262 }
263 }
264
precomputeAllModifiers(MutablePatternModifier & buildReference,UErrorCode & status)265 void CompactHandler::precomputeAllModifiers(MutablePatternModifier &buildReference, UErrorCode &status) {
266 if (U_FAILURE(status)) { return; }
267
268 // Initial capacity of 12 for 0K, 00K, 000K, ...M, ...B, and ...T
269 UVector allPatterns(12, status);
270 if (U_FAILURE(status)) { return; }
271 data.getUniquePatterns(allPatterns, status);
272 if (U_FAILURE(status)) { return; }
273
274 // C++ only: ensure that precomputedMods has room.
275 precomputedModsLength = allPatterns.size();
276 if (precomputedMods.getCapacity() < precomputedModsLength) {
277 precomputedMods.resize(allPatterns.size(), status);
278 if (U_FAILURE(status)) { return; }
279 }
280
281 for (int32_t i = 0; i < precomputedModsLength; i++) {
282 auto patternString = static_cast<const char16_t *>(allPatterns[i]);
283 UnicodeString hello(patternString);
284 CompactModInfo &info = precomputedMods[i];
285 ParsedPatternInfo patternInfo;
286 PatternParser::parseToPatternInfo(UnicodeString(patternString), patternInfo, status);
287 if (U_FAILURE(status)) { return; }
288 buildReference.setPatternInfo(&patternInfo, {UFIELD_CATEGORY_NUMBER, UNUM_COMPACT_FIELD});
289 info.mod = buildReference.createImmutable(status);
290 if (U_FAILURE(status)) { return; }
291 info.patternString = patternString;
292 }
293 }
294
processQuantity(DecimalQuantity & quantity,MicroProps & micros,UErrorCode & status) const295 void CompactHandler::processQuantity(DecimalQuantity &quantity, MicroProps µs,
296 UErrorCode &status) const {
297 parent->processQuantity(quantity, micros, status);
298 if (U_FAILURE(status)) { return; }
299
300 // Treat zero, NaN, and infinity as if they had magnitude 0
301 int32_t magnitude;
302 int32_t multiplier = 0;
303 if (quantity.isZeroish()) {
304 magnitude = 0;
305 micros.rounder.apply(quantity, status);
306 } else {
307 // TODO: Revisit chooseMultiplierAndApply
308 multiplier = micros.rounder.chooseMultiplierAndApply(quantity, data, status);
309 magnitude = quantity.isZeroish() ? 0 : quantity.getMagnitude();
310 magnitude -= multiplier;
311 }
312
313 const char16_t *patternString = data.getPattern(magnitude, rules, quantity);
314 if (patternString == nullptr) {
315 // Use the default (non-compact) modifier.
316 // No need to take any action.
317 } else if (safe) {
318 // Safe code path.
319 // Java uses a hash set here for O(1) lookup. C++ uses a linear search.
320 // TODO: Benchmark this and maybe change to a binary search or hash table.
321 int32_t i = 0;
322 for (; i < precomputedModsLength; i++) {
323 const CompactModInfo &info = precomputedMods[i];
324 if (u_strcmp(patternString, info.patternString) == 0) {
325 info.mod->applyToMicros(micros, quantity, status);
326 break;
327 }
328 }
329 // It should be guaranteed that we found the entry.
330 U_ASSERT(i < precomputedModsLength);
331 } else {
332 // Unsafe code path.
333 // Overwrite the PatternInfo in the existing modMiddle.
334 // C++ Note: Use unsafePatternInfo for proper lifecycle.
335 ParsedPatternInfo &patternInfo = const_cast<CompactHandler *>(this)->unsafePatternInfo;
336 PatternParser::parseToPatternInfo(UnicodeString(patternString), patternInfo, status);
337 unsafePatternModifier->setPatternInfo(
338 &unsafePatternInfo,
339 {UFIELD_CATEGORY_NUMBER, UNUM_COMPACT_FIELD});
340 unsafePatternModifier->setNumberProperties(quantity.signum(), StandardPlural::Form::COUNT);
341 micros.modMiddle = unsafePatternModifier;
342 }
343
344 // Change the exponent only after we select appropriate plural form
345 // for formatting purposes so that we preserve expected formatted
346 // string behavior.
347 quantity.adjustExponent(-1 * multiplier);
348
349 // We already performed rounding. Do not perform it again.
350 micros.rounder = RoundingImpl::passThrough();
351 }
352
353 #endif /* #if !UCONFIG_NO_FORMATTING */
354