2b316f3843
* refactor: clang-tidy modernize-use-nullptr * refactor: clang-tidy modernize-use-equals-default * refactor: clang-tidy modernize-make-unique * refactor: omit nullptr arg from unique_ptr.reset() As per comment by @miniak
277 lines
9.1 KiB
C++
277 lines
9.1 KiB
C++
// Copyright (c) 2014 GitHub, Inc.
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// Use of this source code is governed by the MIT license that can be
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// found in the LICENSE file.
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#include "shell/renderer/api/atom_api_spell_check_client.h"
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#include <map>
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#include <memory>
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#include <set>
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#include <unordered_set>
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#include <utility>
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#include <vector>
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#include "base/logging.h"
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#include "base/numerics/safe_conversions.h"
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#include "base/threading/thread_task_runner_handle.h"
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#include "components/spellcheck/renderer/spellcheck_worditerator.h"
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#include "native_mate/converter.h"
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#include "native_mate/dictionary.h"
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#include "native_mate/function_template.h"
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#include "shell/common/native_mate_converters/string16_converter.h"
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#include "third_party/blink/public/web/web_text_checking_completion.h"
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#include "third_party/blink/public/web/web_text_checking_result.h"
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#include "third_party/icu/source/common/unicode/uscript.h"
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namespace electron {
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namespace api {
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namespace {
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bool HasWordCharacters(const base::string16& text, int index) {
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const base::char16* data = text.data();
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int length = text.length();
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while (index < length) {
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uint32_t code = 0;
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U16_NEXT(data, index, length, code);
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UErrorCode error = U_ZERO_ERROR;
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if (uscript_getScript(code, &error) != USCRIPT_COMMON)
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return true;
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}
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return false;
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}
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struct Word {
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blink::WebTextCheckingResult result;
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base::string16 text;
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std::vector<base::string16> contraction_words;
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};
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} // namespace
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class SpellCheckClient::SpellcheckRequest {
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public:
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SpellcheckRequest(
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const base::string16& text,
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std::unique_ptr<blink::WebTextCheckingCompletion> completion)
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: text_(text), completion_(std::move(completion)) {}
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~SpellcheckRequest() = default;
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const base::string16& text() const { return text_; }
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blink::WebTextCheckingCompletion* completion() { return completion_.get(); }
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std::vector<Word>& wordlist() { return word_list_; }
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private:
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base::string16 text_; // Text to be checked in this task.
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std::vector<Word> word_list_; // List of Words found in text
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// The interface to send the misspelled ranges to WebKit.
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std::unique_ptr<blink::WebTextCheckingCompletion> completion_;
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DISALLOW_COPY_AND_ASSIGN(SpellcheckRequest);
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};
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SpellCheckClient::SpellCheckClient(const std::string& language,
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v8::Isolate* isolate,
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v8::Local<v8::Object> provider)
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: pending_request_param_(nullptr),
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isolate_(isolate),
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context_(isolate, isolate->GetCurrentContext()),
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provider_(isolate, provider) {
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DCHECK(!context_.IsEmpty());
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character_attributes_.SetDefaultLanguage(language);
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// Persistent the method.
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mate::Dictionary dict(isolate, provider);
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dict.Get("spellCheck", &spell_check_);
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}
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SpellCheckClient::~SpellCheckClient() {
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context_.Reset();
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}
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void SpellCheckClient::RequestCheckingOfText(
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const blink::WebString& textToCheck,
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std::unique_ptr<blink::WebTextCheckingCompletion> completionCallback) {
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base::string16 text(textToCheck.Utf16());
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// Ignore invalid requests.
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if (text.empty() || !HasWordCharacters(text, 0)) {
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completionCallback->DidCancelCheckingText();
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return;
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}
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// Clean up the previous request before starting a new request.
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if (pending_request_param_) {
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pending_request_param_->completion()->DidCancelCheckingText();
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}
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pending_request_param_ =
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std::make_unique<SpellcheckRequest>(text, std::move(completionCallback));
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base::ThreadTaskRunnerHandle::Get()->PostTask(
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FROM_HERE,
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base::BindOnce(&SpellCheckClient::SpellCheckText, AsWeakPtr()));
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}
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bool SpellCheckClient::IsSpellCheckingEnabled() const {
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return true;
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}
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void SpellCheckClient::ShowSpellingUI(bool show) {}
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bool SpellCheckClient::IsShowingSpellingUI() {
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return false;
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}
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void SpellCheckClient::UpdateSpellingUIWithMisspelledWord(
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const blink::WebString& word) {}
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void SpellCheckClient::SpellCheckText() {
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const auto& text = pending_request_param_->text();
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if (text.empty() || spell_check_.IsEmpty()) {
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pending_request_param_->completion()->DidCancelCheckingText();
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pending_request_param_ = nullptr;
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return;
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}
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if (!text_iterator_.IsInitialized() &&
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!text_iterator_.Initialize(&character_attributes_, true)) {
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// We failed to initialize text_iterator_, return as spelled correctly.
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VLOG(1) << "Failed to initialize SpellcheckWordIterator";
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return;
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}
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if (!contraction_iterator_.IsInitialized() &&
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!contraction_iterator_.Initialize(&character_attributes_, false)) {
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// We failed to initialize the word iterator, return as spelled correctly.
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VLOG(1) << "Failed to initialize contraction_iterator_";
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return;
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}
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text_iterator_.SetText(text.c_str(), text.size());
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SpellCheckScope scope(*this);
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base::string16 word;
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size_t word_start;
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size_t word_length;
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std::set<base::string16> words;
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auto& word_list = pending_request_param_->wordlist();
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Word word_entry;
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for (;;) { // Run until end of text
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const auto status =
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text_iterator_.GetNextWord(&word, &word_start, &word_length);
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if (status == SpellcheckWordIterator::IS_END_OF_TEXT)
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break;
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if (status == SpellcheckWordIterator::IS_SKIPPABLE)
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continue;
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word_entry.result.location = base::checked_cast<int>(word_start);
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word_entry.result.length = base::checked_cast<int>(word_length);
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word_entry.text = word;
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word_entry.contraction_words.clear();
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word_list.push_back(word_entry);
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words.insert(word);
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// If the given word is a concatenated word of two or more valid words
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// (e.g. "hello:hello"), we should treat it as a valid word.
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if (IsContraction(scope, word, &word_entry.contraction_words)) {
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for (const auto& w : word_entry.contraction_words) {
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words.insert(w);
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}
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}
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}
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// Send out all the words data to the spellchecker to check
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SpellCheckWords(scope, words);
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}
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void SpellCheckClient::OnSpellCheckDone(
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const std::vector<base::string16>& misspelled_words) {
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std::vector<blink::WebTextCheckingResult> results;
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std::unordered_set<base::string16> misspelled(misspelled_words.begin(),
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misspelled_words.end());
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auto& word_list = pending_request_param_->wordlist();
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for (const auto& word : word_list) {
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if (misspelled.find(word.text) != misspelled.end()) {
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// If this is a contraction, iterate through parts and accept the word
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// if none of them are misspelled
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if (!word.contraction_words.empty()) {
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auto all_correct = true;
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for (const auto& contraction_word : word.contraction_words) {
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if (misspelled.find(contraction_word) != misspelled.end()) {
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all_correct = false;
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break;
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}
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}
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if (all_correct)
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continue;
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}
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results.push_back(word.result);
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}
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}
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pending_request_param_->completion()->DidFinishCheckingText(results);
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pending_request_param_ = nullptr;
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}
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void SpellCheckClient::SpellCheckWords(const SpellCheckScope& scope,
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const std::set<base::string16>& words) {
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DCHECK(!scope.spell_check_.IsEmpty());
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v8::Local<v8::FunctionTemplate> templ = mate::CreateFunctionTemplate(
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isolate_,
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base::BindRepeating(&SpellCheckClient::OnSpellCheckDone, AsWeakPtr()));
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auto context = isolate_->GetCurrentContext();
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v8::Local<v8::Value> args[] = {mate::ConvertToV8(isolate_, words),
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templ->GetFunction(context).ToLocalChecked()};
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// Call javascript with the words and the callback function
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scope.spell_check_->Call(context, scope.provider_, 2, args).IsEmpty();
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}
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// Returns whether or not the given string is a contraction.
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// This function is a fall-back when the SpellcheckWordIterator class
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// returns a concatenated word which is not in the selected dictionary
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// (e.g. "in'n'out") but each word is valid.
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// Output variable contraction_words will contain individual
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// words in the contraction.
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bool SpellCheckClient::IsContraction(
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const SpellCheckScope& scope,
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const base::string16& contraction,
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std::vector<base::string16>* contraction_words) {
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DCHECK(contraction_iterator_.IsInitialized());
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contraction_iterator_.SetText(contraction.c_str(), contraction.length());
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base::string16 word;
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size_t word_start;
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size_t word_length;
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for (auto status =
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contraction_iterator_.GetNextWord(&word, &word_start, &word_length);
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status != SpellcheckWordIterator::IS_END_OF_TEXT;
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status = contraction_iterator_.GetNextWord(&word, &word_start,
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&word_length)) {
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if (status == SpellcheckWordIterator::IS_SKIPPABLE)
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continue;
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contraction_words->push_back(word);
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}
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return contraction_words->size() > 1;
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}
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SpellCheckClient::SpellCheckScope::SpellCheckScope(
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const SpellCheckClient& client)
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: handle_scope_(client.isolate_),
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context_scope_(
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v8::Local<v8::Context>::New(client.isolate_, client.context_)),
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provider_(client.provider_.NewHandle()),
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spell_check_(client.spell_check_.NewHandle()) {}
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SpellCheckClient::SpellCheckScope::~SpellCheckScope() = default;
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} // namespace api
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} // namespace electron
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