зеркало из https://github.com/mozilla/gecko-dev.git
664 строки
19 KiB
C++
664 строки
19 KiB
C++
/* -*- Mode: C++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#include "LocaleService.h"
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#include <algorithm> // find_if()
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#include "mozilla/ClearOnShutdown.h"
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#include "mozilla/Services.h"
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#include "mozilla/Preferences.h"
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#include "mozilla/intl/OSPreferences.h"
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#include "nsIObserverService.h"
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#include "nsIToolkitChromeRegistry.h"
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#ifdef ENABLE_INTL_API
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#include "unicode/uloc.h"
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#endif
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#define MATCH_OS_LOCALE_PREF "intl.locale.matchOS"
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#define SELECTED_LOCALE_PREF "general.useragent.locale"
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static const char* kObservedPrefs[] = {
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MATCH_OS_LOCALE_PREF,
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SELECTED_LOCALE_PREF,
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nullptr
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};
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using namespace mozilla::intl;
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NS_IMPL_ISUPPORTS(LocaleService, mozILocaleService, nsIObserver)
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mozilla::StaticRefPtr<LocaleService> LocaleService::sInstance;
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/**
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* This function transforms a canonical Mozilla Language Tag, into it's
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* BCP47 compilant form.
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*
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* Example: "ja-JP-mac" -> "ja-JP-x-lvariant-mac"
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*
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* The BCP47 form should be used for all calls to ICU/Intl APIs.
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* The canonical form is used for all internal operations.
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*/
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static void SanitizeForBCP47(nsACString& aLocale)
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{
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#ifdef ENABLE_INTL_API
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// Currently, the only locale code we use that's not BCP47-conformant is
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// "ja-JP-mac" on OS X, but let's try to be more general than just
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// hard-coding that here.
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const int32_t LANG_TAG_CAPACITY = 128;
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char langTag[LANG_TAG_CAPACITY];
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nsAutoCString locale(aLocale);
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UErrorCode err = U_ZERO_ERROR;
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// This is a fail-safe method that will set langTag to "und" if it cannot
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// match any part of the input locale code.
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int32_t len = uloc_toLanguageTag(locale.get(), langTag, LANG_TAG_CAPACITY,
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false, &err);
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if (U_SUCCESS(err) && len > 0) {
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aLocale.Assign(langTag, len);
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}
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#else
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// This is only really needed for Intl API purposes, AFAIK,
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// so probably won't be used in a non-ENABLE_INTL_API build.
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// But let's fix up the single anomalous code we actually ship,
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// just in case:
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if (aLocale.EqualsLiteral("ja-JP-mac")) {
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aLocale.AssignLiteral("ja-JP");
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}
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#endif
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}
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/**
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* This function performs the actual language negotiation for the API.
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*
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* Currently it collects the locale ID used by nsChromeRegistry and
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* adds hardcoded "en-US" locale as a fallback.
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*/
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static void
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ReadAppLocales(nsTArray<nsCString>& aRetVal)
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{
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nsAutoCString uaLangTag;
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nsCOMPtr<nsIToolkitChromeRegistry> cr =
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mozilla::services::GetToolkitChromeRegistryService();
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if (cr) {
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// We don't want to canonicalize the locale from ChromeRegistry into
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// it's BCP47 form because we will use it for direct language
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// negotiation and BCP47 changes `ja-JP-mac` into `ja-JP-x-variant-mac`.
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cr->GetSelectedLocale(NS_LITERAL_CSTRING("global"), false, uaLangTag);
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}
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if (!uaLangTag.IsEmpty()) {
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aRetVal.AppendElement(uaLangTag);
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}
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if (!uaLangTag.EqualsLiteral("en-US")) {
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aRetVal.AppendElement(NS_LITERAL_CSTRING("en-US"));
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}
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}
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LocaleService*
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LocaleService::GetInstance()
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{
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if (!sInstance) {
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sInstance = new LocaleService();
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// We're going to observe for requested languages changes which come
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// from prefs.
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DebugOnly<nsresult> rv = Preferences::AddStrongObservers(sInstance, kObservedPrefs);
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MOZ_ASSERT(NS_SUCCEEDED(rv), "Adding observers failed.");
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ClearOnShutdown(&sInstance);
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}
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return sInstance;
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}
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LocaleService::~LocaleService()
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{
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Preferences::RemoveObservers(sInstance, kObservedPrefs);
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}
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void
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LocaleService::GetAppLocalesAsLangTags(nsTArray<nsCString>& aRetVal)
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{
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if (mAppLocales.IsEmpty()) {
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ReadAppLocales(mAppLocales);
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}
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aRetVal = mAppLocales;
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}
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void
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LocaleService::GetAppLocalesAsBCP47(nsTArray<nsCString>& aRetVal)
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{
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if (mAppLocales.IsEmpty()) {
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ReadAppLocales(mAppLocales);
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}
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for (uint32_t i = 0; i < mAppLocales.Length(); i++) {
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nsAutoCString locale(mAppLocales[i]);
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SanitizeForBCP47(locale);
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aRetVal.AppendElement(locale);
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}
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}
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bool
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LocaleService::GetRequestedLocales(nsTArray<nsCString>& aRetVal)
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{
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nsAutoCString locale;
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// First, we'll try to check if the user has `matchOS` pref selected
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bool matchOSLocale = Preferences::GetBool(MATCH_OS_LOCALE_PREF);
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if (matchOSLocale) {
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// If he has, we'll pick the locale from the system
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if (OSPreferences::GetInstance()->GetSystemLocales(aRetVal)) {
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// If we succeeded, return.
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return true;
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}
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}
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// Otherwise, we'll try to get the requested locale from the prefs.
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// In some cases, mainly on Fennec and on Linux version,
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// `general.useragent.locale` is a special 'localized' value, like:
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// "chrome://global/locale/intl.properties"
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if (!NS_SUCCEEDED(Preferences::GetLocalizedCString(SELECTED_LOCALE_PREF, &locale))) {
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// If not, we can attempt to retrieve it as a simple string value.
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if (!NS_SUCCEEDED(Preferences::GetCString(SELECTED_LOCALE_PREF, &locale))) {
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return false;
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}
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}
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// At the moment we just take a single locale, but in the future
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// we'll want to allow user to specify a list of requested locales.
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aRetVal.AppendElement(locale);
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return true;
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}
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void
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LocaleService::Refresh()
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{
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nsTArray<nsCString> newLocales;
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ReadAppLocales(newLocales);
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if (mAppLocales != newLocales) {
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mAppLocales = Move(newLocales);
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nsCOMPtr<nsIObserverService> obs = mozilla::services::GetObserverService();
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if (obs) {
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obs->NotifyObservers(nullptr, "intl:app-locales-changed", nullptr);
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}
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}
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}
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// After trying each step of the negotiation algorithm for each requested locale,
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// if a match was found we use this macro to decide whether to return immediately,
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// skip to the next requested locale, or continue searching for additional matches,
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// according to the desired negotiation strategy.
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#define HANDLE_STRATEGY \
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switch (aStrategy) { \
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case LangNegStrategy::Lookup: \
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return; \
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case LangNegStrategy::Matching: \
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continue; \
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case LangNegStrategy::Filtering: \
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break; \
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}
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/**
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* This is the raw algorithm for language negotiation based roughly
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* on RFC4647 language filtering, with changes from LDML language matching.
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*
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* The exact algorithm is custom, and consist of 5 level strategy:
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*
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* 1) Attempt to find an exact match for each requested locale in available
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* locales.
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* Example: ['en-US'] * ['en-US'] = ['en-US']
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*
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* 2) Attempt to match a requested locale to an available locale treated
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* as a locale range.
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* Example: ['en-US'] * ['en'] = ['en']
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* ^^
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* |-- becomes 'en-*-*-*'
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*
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* 3) Attempt to use the maximized version of the requested locale, to
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* find the best match in available locales.
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* Example: ['en'] * ['en-GB', 'en-US'] = ['en-US']
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* ^^
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* |-- ICU likelySubtags expands it to 'en-Latn-US'
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*
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* 4) Attempt to look up for a different variant of the same locale.
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* Example: ['ja-JP-win'] * ['ja-JP-mac'] = ['ja-JP-mac']
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* ^^^^^^^^^
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* |----------- replace variant with range: 'ja-JP-*'
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*
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* 5) Attempt to look up for a different region of the same locale.
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* Example: ['en-GB'] * ['en-AU'] = ['en-AU']
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* ^^^^^
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* |----- replace region with range: 'en-*'
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*
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* It uses one of the strategies described in LocaleService.h.
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*/
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void
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LocaleService::FilterMatches(const nsTArray<nsCString>& aRequested,
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const nsTArray<nsCString>& aAvailable,
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LangNegStrategy aStrategy,
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nsTArray<nsCString>& aRetVal)
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{
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// Local copy of the list of available locales, in Locale form for flexible
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// matching. We will remove entries from this list as they get appended to
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// aRetVal, so that no available locale will be found more than once.
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AutoTArray<Locale, 100> availLocales;
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for (auto& avail : aAvailable) {
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availLocales.AppendElement(Locale(avail, true));
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}
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// Helper to erase an entry from availLocales once we have copied it to
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// the result list. Returns an iterator pointing to the entry that was
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// immediately after the one that was erased (or availLocales.end() if
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// the target was the last in the array).
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auto eraseFromAvail = [&](nsTArray<Locale>::iterator aIter) {
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nsTArray<Locale>::size_type index = aIter - availLocales.begin();
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availLocales.RemoveElementAt(index);
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return availLocales.begin() + index;
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};
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for (auto& requested : aRequested) {
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// 1) Try to find a simple (case-insensitive) string match for the request.
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auto matchesExactly = [&](const Locale& aLoc) {
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return requested.Equals(aLoc.AsString(),
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nsCaseInsensitiveCStringComparator());
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};
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auto match = std::find_if(availLocales.begin(), availLocales.end(),
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matchesExactly);
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if (match != availLocales.end()) {
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aRetVal.AppendElement(match->AsString());
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eraseFromAvail(match);
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}
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if (!aRetVal.IsEmpty()) {
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HANDLE_STRATEGY;
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}
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// 2) Try to match against the available locales treated as ranges.
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auto findRangeMatches = [&](const Locale& aReq) {
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auto matchesRange = [&](const Locale& aLoc) {
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return aReq.Matches(aLoc);
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};
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bool foundMatch = false;
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auto match = availLocales.begin();
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while ((match = std::find_if(match, availLocales.end(),
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matchesRange)) != availLocales.end()) {
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aRetVal.AppendElement(match->AsString());
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match = eraseFromAvail(match);
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foundMatch = true;
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if (aStrategy != LangNegStrategy::Filtering) {
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return true; // we only want the first match
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}
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}
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return foundMatch;
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};
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Locale requestedLocale = Locale(requested, false);
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if (findRangeMatches(requestedLocale)) {
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HANDLE_STRATEGY;
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}
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// 3) Try to match against a maximized version of the requested locale
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if (requestedLocale.AddLikelySubtags()) {
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if (findRangeMatches(requestedLocale)) {
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HANDLE_STRATEGY;
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}
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}
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// 4) Try to match against a variant as a range
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requestedLocale.SetVariantRange();
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if (findRangeMatches(requestedLocale)) {
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HANDLE_STRATEGY;
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}
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// 5) Try to match against a region as a range
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requestedLocale.SetRegionRange();
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if (findRangeMatches(requestedLocale)) {
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HANDLE_STRATEGY;
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}
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}
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}
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bool
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LocaleService::NegotiateLanguages(const nsTArray<nsCString>& aRequested,
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const nsTArray<nsCString>& aAvailable,
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const nsACString& aDefaultLocale,
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LangNegStrategy aStrategy,
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nsTArray<nsCString>& aRetVal)
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{
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// If the strategy is Lookup, we require the defaultLocale to be set.
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if (aStrategy == LangNegStrategy::Lookup && aDefaultLocale.IsEmpty()) {
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return false;
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}
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FilterMatches(aRequested, aAvailable, aStrategy, aRetVal);
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if (aStrategy == LangNegStrategy::Lookup) {
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if (aRetVal.Length() == 0) {
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// If the strategy is Lookup and Filtering returned no matches, use
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// the default locale.
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aRetVal.AppendElement(aDefaultLocale);
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}
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} else if (!aDefaultLocale.IsEmpty() && !aRetVal.Contains(aDefaultLocale)) {
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// If it's not a Lookup strategy, add the default locale only if it's
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// set and it's not in the results already.
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aRetVal.AppendElement(aDefaultLocale);
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}
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return true;
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}
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NS_IMETHODIMP
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LocaleService::Observe(nsISupports *aSubject, const char *aTopic,
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const char16_t *aData)
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{
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// At the moment the only thing we're observing are settings indicating
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// user requested locales.
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NS_ConvertUTF16toUTF8 pref(aData);
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if (pref.EqualsLiteral(MATCH_OS_LOCALE_PREF) || pref.EqualsLiteral(SELECTED_LOCALE_PREF)) {
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nsCOMPtr<nsIObserverService> obs = mozilla::services::GetObserverService();
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if (obs) {
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obs->NotifyObservers(nullptr, "intl:requested-locales-changed", nullptr);
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}
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}
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return NS_OK;
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}
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/**
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* mozILocaleService methods
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*/
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static char**
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CreateOutArray(const nsTArray<nsCString>& aArray)
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{
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uint32_t n = aArray.Length();
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char** result = static_cast<char**>(moz_xmalloc(n * sizeof(char*)));
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for (uint32_t i = 0; i < n; i++) {
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result[i] = moz_xstrdup(aArray[i].get());
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}
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return result;
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}
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NS_IMETHODIMP
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LocaleService::GetDefaultLocale(nsACString& aRetVal)
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{
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aRetVal.AssignLiteral("en-US");
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return NS_OK;
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}
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NS_IMETHODIMP
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LocaleService::GetAppLocalesAsLangTags(uint32_t* aCount, char*** aOutArray)
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{
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if (mAppLocales.IsEmpty()) {
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ReadAppLocales(mAppLocales);
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}
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*aCount = mAppLocales.Length();
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*aOutArray = CreateOutArray(mAppLocales);
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return NS_OK;
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}
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NS_IMETHODIMP
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LocaleService::GetAppLocalesAsBCP47(uint32_t* aCount, char*** aOutArray)
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{
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AutoTArray<nsCString, 32> locales;
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GetAppLocalesAsBCP47(locales);
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*aCount = locales.Length();
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*aOutArray = CreateOutArray(locales);
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return NS_OK;
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}
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NS_IMETHODIMP
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LocaleService::GetAppLocaleAsLangTag(nsACString& aRetVal)
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{
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if (mAppLocales.IsEmpty()) {
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ReadAppLocales(mAppLocales);
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}
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aRetVal = mAppLocales[0];
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return NS_OK;
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}
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NS_IMETHODIMP
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LocaleService::GetAppLocaleAsBCP47(nsACString& aRetVal)
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{
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if (mAppLocales.IsEmpty()) {
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ReadAppLocales(mAppLocales);
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}
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aRetVal = mAppLocales[0];
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SanitizeForBCP47(aRetVal);
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return NS_OK;
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}
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static LocaleService::LangNegStrategy
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ToLangNegStrategy(int32_t aStrategy)
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{
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switch (aStrategy) {
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case 1:
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return LocaleService::LangNegStrategy::Matching;
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case 2:
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return LocaleService::LangNegStrategy::Lookup;
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default:
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return LocaleService::LangNegStrategy::Filtering;
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}
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}
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NS_IMETHODIMP
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LocaleService::NegotiateLanguages(const char** aRequested,
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const char** aAvailable,
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const char* aDefaultLocale,
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int32_t aStrategy,
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uint32_t aRequestedCount,
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uint32_t aAvailableCount,
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uint32_t* aCount, char*** aRetVal)
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{
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if (aStrategy < 0 || aStrategy > 2) {
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return NS_ERROR_INVALID_ARG;
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}
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// Check that the given string contains only ASCII characters valid in tags
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// (i.e. alphanumerics, plus '-' and '_'), and is non-empty.
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auto validTagChars = [](const char* s) {
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if (!s || !*s) {
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return false;
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}
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while (*s) {
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if (isalnum((unsigned char)*s) || *s == '-' || *s == '_' || *s == '*') {
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s++;
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} else {
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return false;
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}
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}
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return true;
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};
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AutoTArray<nsCString, 100> requestedLocales;
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for (uint32_t i = 0; i < aRequestedCount; i++) {
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if (!validTagChars(aRequested[i])) {
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continue;
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}
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requestedLocales.AppendElement(aRequested[i]);
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}
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AutoTArray<nsCString, 100> availableLocales;
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for (uint32_t i = 0; i < aAvailableCount; i++) {
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if (!validTagChars(aAvailable[i])) {
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continue;
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}
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availableLocales.AppendElement(aAvailable[i]);
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}
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nsAutoCString defaultLocale(aDefaultLocale);
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LangNegStrategy strategy = ToLangNegStrategy(aStrategy);
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AutoTArray<nsCString, 100> supportedLocales;
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bool result = NegotiateLanguages(requestedLocales, availableLocales,
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defaultLocale, strategy, supportedLocales);
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if (!result) {
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return NS_ERROR_INVALID_ARG;
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}
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*aRetVal =
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static_cast<char**>(moz_xmalloc(sizeof(char*) * supportedLocales.Length()));
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*aCount = 0;
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for (const auto& supported : supportedLocales) {
|
|
(*aRetVal)[(*aCount)++] = moz_xstrdup(supported.get());
|
|
}
|
|
|
|
return NS_OK;
|
|
}
|
|
|
|
LocaleService::Locale::Locale(const nsCString& aLocale, bool aRange)
|
|
: mLocaleStr(aLocale)
|
|
{
|
|
int32_t partNum = 0;
|
|
|
|
nsAutoCString normLocale(aLocale);
|
|
normLocale.ReplaceChar('_', '-');
|
|
|
|
for (const nsCSubstring& part : normLocale.Split('-')) {
|
|
switch (partNum) {
|
|
case 0:
|
|
if (part.EqualsLiteral("*") ||
|
|
part.Length() == 2 || part.Length() == 3) {
|
|
mLanguage.Assign(part);
|
|
}
|
|
break;
|
|
case 1:
|
|
if (part.EqualsLiteral("*") || part.Length() == 4) {
|
|
mScript.Assign(part);
|
|
break;
|
|
}
|
|
|
|
// fallover to region case
|
|
partNum++;
|
|
MOZ_FALLTHROUGH;
|
|
case 2:
|
|
if (part.EqualsLiteral("*") || part.Length() == 2) {
|
|
mRegion.Assign(part);
|
|
}
|
|
break;
|
|
case 3:
|
|
if (part.EqualsLiteral("*") || part.Length() == 3) {
|
|
mVariant.Assign(part);
|
|
}
|
|
break;
|
|
}
|
|
partNum++;
|
|
}
|
|
|
|
if (aRange) {
|
|
if (mLanguage.IsEmpty()) {
|
|
mLanguage.Assign(NS_LITERAL_CSTRING("*"));
|
|
}
|
|
if (mScript.IsEmpty()) {
|
|
mScript.Assign(NS_LITERAL_CSTRING("*"));
|
|
}
|
|
if (mRegion.IsEmpty()) {
|
|
mRegion.Assign(NS_LITERAL_CSTRING("*"));
|
|
}
|
|
if (mVariant.IsEmpty()) {
|
|
mVariant.Assign(NS_LITERAL_CSTRING("*"));
|
|
}
|
|
}
|
|
}
|
|
|
|
bool
|
|
LocaleService::Locale::Matches(const LocaleService::Locale& aLocale) const
|
|
{
|
|
auto subtagMatches = [](const nsCString& aSubtag1,
|
|
const nsCString& aSubtag2) {
|
|
return aSubtag1.EqualsLiteral("*") ||
|
|
aSubtag2.EqualsLiteral("*") ||
|
|
aSubtag1.Equals(aSubtag2, nsCaseInsensitiveCStringComparator());
|
|
};
|
|
|
|
return subtagMatches(mLanguage, aLocale.mLanguage) &&
|
|
subtagMatches(mScript, aLocale.mScript) &&
|
|
subtagMatches(mRegion, aLocale.mRegion) &&
|
|
subtagMatches(mVariant, aLocale.mVariant);
|
|
}
|
|
|
|
void
|
|
LocaleService::Locale::SetVariantRange()
|
|
{
|
|
mVariant.AssignLiteral("*");
|
|
}
|
|
|
|
void
|
|
LocaleService::Locale::SetRegionRange()
|
|
{
|
|
mRegion.AssignLiteral("*");
|
|
}
|
|
|
|
bool
|
|
LocaleService::Locale::AddLikelySubtags()
|
|
{
|
|
#ifdef ENABLE_INTL_API
|
|
const int32_t kLocaleMax = 160;
|
|
char maxLocale[kLocaleMax];
|
|
|
|
UErrorCode status = U_ZERO_ERROR;
|
|
uloc_addLikelySubtags(mLocaleStr.get(), maxLocale, kLocaleMax, &status);
|
|
|
|
if (U_FAILURE(status)) {
|
|
return false;
|
|
}
|
|
|
|
nsDependentCString maxLocStr(maxLocale);
|
|
Locale loc = Locale(maxLocStr, false);
|
|
|
|
if (loc == *this) {
|
|
return false;
|
|
}
|
|
|
|
mLanguage = loc.mLanguage;
|
|
mScript = loc.mScript;
|
|
mRegion = loc.mRegion;
|
|
mVariant = loc.mVariant;
|
|
return true;
|
|
#else
|
|
return false;
|
|
#endif
|
|
}
|
|
|
|
NS_IMETHODIMP
|
|
LocaleService::GetRequestedLocales(uint32_t* aCount, char*** aOutArray)
|
|
{
|
|
AutoTArray<nsCString, 16> requestedLocales;
|
|
bool res = GetRequestedLocales(requestedLocales);
|
|
|
|
if (!res) {
|
|
NS_ERROR("Couldn't retrieve selected locales from prefs!");
|
|
return NS_ERROR_FAILURE;
|
|
}
|
|
|
|
*aCount = requestedLocales.Length();
|
|
*aOutArray = CreateOutArray(requestedLocales);
|
|
|
|
return NS_OK;
|
|
}
|
|
|
|
NS_IMETHODIMP
|
|
LocaleService::SetRequestedLocales(const char** aRequested,
|
|
uint32_t aRequestedCount)
|
|
{
|
|
MOZ_ASSERT(aRequestedCount < 2, "We can only handle one requested locale");
|
|
|
|
if (aRequestedCount == 0) {
|
|
Preferences::ClearUser(SELECTED_LOCALE_PREF);
|
|
} else {
|
|
Preferences::SetCString(SELECTED_LOCALE_PREF, aRequested[0]);
|
|
}
|
|
|
|
Preferences::SetBool(MATCH_OS_LOCALE_PREF, aRequestedCount == 0);
|
|
return NS_OK;
|
|
}
|