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484 lines
11 KiB
484 lines
11 KiB
/*
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* Copyright (C) 2015 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "compile/Pseudolocalizer.h"
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#include "util/Util.h"
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using android::StringPiece;
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namespace aapt {
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// String basis to generate expansion
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static const std::string kExpansionString =
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"one two three "
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"four five six seven eight nine ten eleven twelve thirteen "
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"fourteen fiveteen sixteen seventeen nineteen twenty";
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// Special unicode characters to override directionality of the words
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static const std::string kRlm = "\u200f";
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static const std::string kRlo = "\u202e";
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static const std::string kPdf = "\u202c";
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// Placeholder marks
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static const std::string kPlaceholderOpen = "\u00bb";
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static const std::string kPlaceholderClose = "\u00ab";
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static const char kArgStart = '{';
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static const char kArgEnd = '}';
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class PseudoMethodNone : public PseudoMethodImpl {
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public:
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std::string Text(const StringPiece& text) override { return text.to_string(); }
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std::string Placeholder(const StringPiece& text) override { return text.to_string(); }
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};
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class PseudoMethodBidi : public PseudoMethodImpl {
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public:
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std::string Text(const StringPiece& text) override;
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std::string Placeholder(const StringPiece& text) override;
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};
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class PseudoMethodAccent : public PseudoMethodImpl {
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public:
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PseudoMethodAccent() : depth_(0), word_count_(0), length_(0) {}
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std::string Start() override;
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std::string End() override;
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std::string Text(const StringPiece& text) override;
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std::string Placeholder(const StringPiece& text) override;
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private:
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size_t depth_;
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size_t word_count_;
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size_t length_;
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};
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Pseudolocalizer::Pseudolocalizer(Method method) : last_depth_(0) {
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SetMethod(method);
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}
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void Pseudolocalizer::SetMethod(Method method) {
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switch (method) {
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case Method::kNone:
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impl_ = util::make_unique<PseudoMethodNone>();
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break;
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case Method::kAccent:
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impl_ = util::make_unique<PseudoMethodAccent>();
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break;
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case Method::kBidi:
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impl_ = util::make_unique<PseudoMethodBidi>();
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break;
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}
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}
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std::string Pseudolocalizer::Text(const StringPiece& text) {
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std::string out;
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size_t depth = last_depth_;
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size_t lastpos, pos;
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const size_t length = text.size();
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const char* str = text.data();
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bool escaped = false;
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for (lastpos = pos = 0; pos < length; pos++) {
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char16_t c = str[pos];
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if (escaped) {
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escaped = false;
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continue;
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}
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if (c == '\'') {
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escaped = true;
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continue;
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}
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if (c == kArgStart) {
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depth++;
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} else if (c == kArgEnd && depth) {
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depth--;
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}
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if (last_depth_ != depth || pos == length - 1) {
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bool pseudo = ((last_depth_ % 2) == 0);
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size_t nextpos = pos;
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if (!pseudo || depth == last_depth_) {
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nextpos++;
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}
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size_t size = nextpos - lastpos;
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if (size) {
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std::string chunk = text.substr(lastpos, size).to_string();
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if (pseudo) {
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chunk = impl_->Text(chunk);
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} else if (str[lastpos] == kArgStart && str[nextpos - 1] == kArgEnd) {
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chunk = impl_->Placeholder(chunk);
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}
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out.append(chunk);
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}
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if (pseudo && depth < last_depth_) { // End of message
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out.append(impl_->End());
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} else if (!pseudo && depth > last_depth_) { // Start of message
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out.append(impl_->Start());
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}
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lastpos = nextpos;
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last_depth_ = depth;
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}
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}
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return out;
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}
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static const char* PseudolocalizeChar(const char c) {
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switch (c) {
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case 'a':
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return "\u00e5";
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case 'b':
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return "\u0253";
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case 'c':
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return "\u00e7";
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case 'd':
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return "\u00f0";
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case 'e':
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return "\u00e9";
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case 'f':
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return "\u0192";
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case 'g':
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return "\u011d";
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case 'h':
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return "\u0125";
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case 'i':
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return "\u00ee";
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case 'j':
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return "\u0135";
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case 'k':
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return "\u0137";
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case 'l':
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return "\u013c";
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case 'm':
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return "\u1e3f";
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case 'n':
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return "\u00f1";
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case 'o':
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return "\u00f6";
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case 'p':
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return "\u00fe";
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case 'q':
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return "\u0051";
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case 'r':
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return "\u0155";
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case 's':
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return "\u0161";
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case 't':
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return "\u0163";
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case 'u':
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return "\u00fb";
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case 'v':
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return "\u0056";
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case 'w':
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return "\u0175";
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case 'x':
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return "\u0445";
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case 'y':
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return "\u00fd";
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case 'z':
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return "\u017e";
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case 'A':
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return "\u00c5";
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case 'B':
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return "\u03b2";
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case 'C':
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return "\u00c7";
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case 'D':
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return "\u00d0";
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case 'E':
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return "\u00c9";
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case 'G':
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return "\u011c";
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case 'H':
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return "\u0124";
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case 'I':
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return "\u00ce";
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case 'J':
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return "\u0134";
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case 'K':
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return "\u0136";
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case 'L':
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return "\u013b";
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case 'M':
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return "\u1e3e";
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case 'N':
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return "\u00d1";
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case 'O':
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return "\u00d6";
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case 'P':
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return "\u00de";
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case 'Q':
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return "\u0071";
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case 'R':
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return "\u0154";
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case 'S':
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return "\u0160";
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case 'T':
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return "\u0162";
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case 'U':
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return "\u00db";
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case 'V':
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return "\u03bd";
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case 'W':
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return "\u0174";
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case 'X':
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return "\u00d7";
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case 'Y':
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return "\u00dd";
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case 'Z':
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return "\u017d";
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case '!':
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return "\u00a1";
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case '?':
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return "\u00bf";
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case '$':
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return "\u20ac";
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default:
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return nullptr;
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}
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}
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static bool IsPossibleNormalPlaceholderEnd(const char c) {
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switch (c) {
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case 's':
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return true;
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case 'S':
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return true;
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case 'c':
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return true;
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case 'C':
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return true;
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case 'd':
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return true;
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case 'o':
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return true;
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case 'x':
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return true;
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case 'X':
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return true;
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case 'f':
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return true;
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case 'e':
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return true;
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case 'E':
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return true;
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case 'g':
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return true;
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case 'G':
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return true;
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case 'a':
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return true;
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case 'A':
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return true;
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case 'b':
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return true;
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case 'B':
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return true;
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case 'h':
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return true;
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case 'H':
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return true;
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case '%':
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return true;
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case 'n':
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return true;
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default:
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return false;
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}
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}
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static std::string PseudoGenerateExpansion(const unsigned int length) {
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std::string result = kExpansionString;
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const char* s = result.data();
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if (result.size() < length) {
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result += " ";
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result += PseudoGenerateExpansion(length - result.size());
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} else {
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int ext = 0;
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// Should contain only whole words, so looking for a space
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for (unsigned int i = length + 1; i < result.size(); ++i) {
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++ext;
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if (s[i] == ' ') {
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break;
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}
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}
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result = result.substr(0, length + ext);
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}
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return result;
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}
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std::string PseudoMethodAccent::Start() {
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std::string result;
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if (depth_ == 0) {
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result = "[";
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}
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word_count_ = length_ = 0;
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depth_++;
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return result;
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}
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std::string PseudoMethodAccent::End() {
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std::string result;
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if (length_) {
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result += " ";
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result += PseudoGenerateExpansion(word_count_ > 3 ? length_ : length_ / 2);
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}
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word_count_ = length_ = 0;
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depth_--;
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if (depth_ == 0) {
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result += "]";
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}
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return result;
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}
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/**
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* Converts characters so they look like they've been localized.
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*
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* Note: This leaves placeholder syntax untouched.
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*/
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std::string PseudoMethodAccent::Text(const StringPiece& source) {
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const char* s = source.data();
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std::string result;
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const size_t I = source.size();
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bool lastspace = true;
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for (size_t i = 0; i < I; i++) {
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char c = s[i];
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if (c == '%') {
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// Placeholder syntax, no need to pseudolocalize
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std::string chunk;
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bool end = false;
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chunk.append(&c, 1);
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while (!end && i + 1 < I) {
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++i;
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c = s[i];
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chunk.append(&c, 1);
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if (IsPossibleNormalPlaceholderEnd(c)) {
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end = true;
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} else if (i + 1 < I && c == 't') {
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++i;
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c = s[i];
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chunk.append(&c, 1);
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end = true;
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}
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}
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// Treat chunk as a placeholder unless it ends with %.
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result += ((c == '%') ? chunk : Placeholder(chunk));
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} else if (c == '<' || c == '&') {
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// html syntax, no need to pseudolocalize
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bool tag_closed = false;
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while (!tag_closed && i < I) {
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if (c == '&') {
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std::string escape_text;
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escape_text.append(&c, 1);
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bool end = false;
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size_t html_code_pos = i;
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while (!end && html_code_pos < I) {
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++html_code_pos;
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c = s[html_code_pos];
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escape_text.append(&c, 1);
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// Valid html code
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if (c == ';') {
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end = true;
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i = html_code_pos;
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}
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// Wrong html code
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else if (!((c == '#' || (c >= 'a' && c <= 'z') ||
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(c >= 'A' && c <= 'Z') || (c >= '0' && c <= '9')))) {
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end = true;
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}
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}
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result += escape_text;
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if (escape_text != "<") {
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tag_closed = true;
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}
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continue;
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}
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if (c == '>') {
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tag_closed = true;
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result.append(&c, 1);
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continue;
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}
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result.append(&c, 1);
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i++;
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c = s[i];
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}
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} else {
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// This is a pure text that should be pseudolocalized
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const char* p = PseudolocalizeChar(c);
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if (p != nullptr) {
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result += p;
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} else {
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bool space = isspace(c);
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if (lastspace && !space) {
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word_count_++;
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}
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lastspace = space;
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result.append(&c, 1);
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}
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// Count only pseudolocalizable chars and delimiters
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length_++;
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}
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}
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return result;
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}
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std::string PseudoMethodAccent::Placeholder(const StringPiece& source) {
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// Surround a placeholder with brackets
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return kPlaceholderOpen + source.to_string() + kPlaceholderClose;
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}
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std::string PseudoMethodBidi::Text(const StringPiece& source) {
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const char* s = source.data();
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std::string result;
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bool lastspace = true;
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bool space = true;
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bool escape = false;
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const char ESCAPE_CHAR = '\\';
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for (size_t i = 0; i < source.size(); i++) {
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char c = s[i];
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if (!escape && c == ESCAPE_CHAR) {
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escape = true;
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continue;
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}
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space = (!escape && isspace(c)) || (escape && (c == 'n' || c == 't'));
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if (lastspace && !space) {
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// Word start
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result += kRlm + kRlo;
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} else if (!lastspace && space) {
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// Word end
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result += kPdf + kRlm;
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}
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lastspace = space;
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if (escape) {
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result.append(&ESCAPE_CHAR, 1);
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escape=false;
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}
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result.append(&c, 1);
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}
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if (!lastspace) {
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// End of last word
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result += kPdf + kRlm;
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}
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return result;
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}
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std::string PseudoMethodBidi::Placeholder(const StringPiece& source) {
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// Surround a placeholder with directionality change sequence
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return kRlm + kRlo + source.to_string() + kPdf + kRlm;
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}
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} // namespace aapt
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