793 lines
19 KiB
C++
793 lines
19 KiB
C++
//
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// VMime library (http://www.vmime.org)
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// Copyright (C) 2002-2013 Vincent Richard <vincent@vmime.org>
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License as
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// published by the Free Software Foundation; either version 3 of
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// the License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License along
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// with this program; if not, write to the Free Software Foundation, Inc.,
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// 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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//
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// Linking this library statically or dynamically with other modules is making
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// a combined work based on this library. Thus, the terms and conditions of
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// the GNU General Public License cover the whole combination.
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//
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#include "vmime/word.hpp"
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#include "vmime/text.hpp"
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#include "vmime/utility/stringUtils.hpp"
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#include "vmime/utility/smartPtr.hpp"
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#include "vmime/parserHelpers.hpp"
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#include "vmime/utility/outputStreamStringAdapter.hpp"
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#include "vmime/utility/inputStreamStringAdapter.hpp"
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#include "vmime/utility/encoder/encoder.hpp"
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#include "vmime/utility/encoder/b64Encoder.hpp"
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#include "vmime/utility/encoder/qpEncoder.hpp"
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#include "vmime/wordEncoder.hpp"
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namespace vmime
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{
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word::word()
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: m_charset(charset::getLocalCharset())
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{
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}
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word::word(const word& w)
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: headerFieldValue(), m_buffer(w.m_buffer), m_charset(w.m_charset)
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{
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}
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word::word(const string& buffer) // Defaults to local charset
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: m_buffer(buffer), m_charset(charset::getLocalCharset())
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{
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}
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word::word(const string& buffer, const charset& charset)
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: m_buffer(buffer), m_charset(charset)
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{
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}
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ref <word> word::parseNext
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(const parsingContext& ctx, const string& buffer, const string::size_type position,
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const string::size_type end, string::size_type* newPosition,
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bool prevIsEncoded, bool* isEncoded, bool isFirst)
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{
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string::size_type pos = position;
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// Ignore white-spaces:
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// - before the first word
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// - between two encoded words
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// - after the last word
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string whiteSpaces;
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while (pos < end && parserHelpers::isSpace(buffer[pos]))
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{
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whiteSpaces += buffer[pos];
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++pos;
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}
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string::size_type startPos = pos;
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string unencoded;
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const charset defaultCharset = ctx.getInternationalizedEmailSupport()
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? charset(charsets::UTF_8) : charset(charsets::US_ASCII);
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while (pos < end)
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{
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// End of line: does not occur in the middle of an encoded word. This is
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// used to remove folding white-spaces from unencoded text.
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if (buffer[pos] == '\n')
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{
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string::size_type endPos = pos;
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if (pos > position && buffer[pos - 1] == '\r')
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{
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++pos;
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--endPos;
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}
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while (pos != end && parserHelpers::isSpace(buffer[pos]))
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++pos;
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unencoded += buffer.substr(startPos, endPos - startPos);
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if (pos != end) // ignore white-spaces at end
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unencoded += ' ';
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startPos = pos;
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continue;
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}
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// Start of an encoded word
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else if (pos + 8 < end && // 8 = "=?(.+)?(.+)?(.*)?="
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buffer[pos] == '=' && buffer[pos + 1] == '?')
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{
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// Check whether there is some unencoded text before
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unencoded += buffer.substr(startPos, pos - startPos);
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if (!unencoded.empty())
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{
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if (prevIsEncoded)
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unencoded = whiteSpaces + unencoded;
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ref <word> w = vmime::create <word>(unencoded, defaultCharset);
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w->setParsedBounds(position, pos);
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if (newPosition)
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*newPosition = pos;
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if (isEncoded)
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*isEncoded = false;
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return (w);
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}
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// ...else find the finish sequence '?=' and return an encoded word
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const string::size_type wordStart = pos;
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pos += 2;
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while (pos < end && buffer[pos] != '?')
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++pos;
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if (pos < end)
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{
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++pos; // skip '?' between charset and encoding
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while (pos < end && buffer[pos] != '?')
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++pos;
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if (pos < end)
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{
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++pos; // skip '?' between encoding and encoded data
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}
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}
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while (pos < end)
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{
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if (buffer[pos] == '\n')
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{
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// End of line not allowed in the middle of an encoded word:
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// treat this text as unencoded text (see *).
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break;
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}
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else if (buffer[pos] == '?' && pos + 1 < end && buffer[pos + 1] == '=')
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{
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// Found the finish sequence
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break;
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}
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++pos;
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}
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if (pos == end) // not a valid word (no finish sequence)
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continue;
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else if (buffer[pos] == '\n') // (*)
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continue;
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pos += 2; // ?=
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ref <word> w = vmime::create <word>();
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w->parse(buffer, wordStart, pos, NULL);
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if (newPosition)
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*newPosition = pos;
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if (isEncoded)
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*isEncoded = true;
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return (w);
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}
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++pos;
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}
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if (startPos != end && !isFirst && prevIsEncoded)
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unencoded += whiteSpaces;
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if (startPos != end)
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unencoded += buffer.substr(startPos, end - startPos);
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// Treat unencoded text at the end of the buffer
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if (!unencoded.empty())
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{
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ref <word> w = vmime::create <word>(unencoded, defaultCharset);
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w->setParsedBounds(position, end);
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if (newPosition)
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*newPosition = end;
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if (isEncoded)
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*isEncoded = false;
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return (w);
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}
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return (null);
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}
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const std::vector <ref <word> > word::parseMultiple
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(const parsingContext& ctx, const string& buffer, const string::size_type position,
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const string::size_type end, string::size_type* newPosition)
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{
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std::vector <ref <word> > res;
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ref <word> w;
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string::size_type pos = position;
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bool prevIsEncoded = false;
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while ((w = word::parseNext(ctx, buffer, pos, end, &pos, prevIsEncoded, &prevIsEncoded, (w == NULL))) != NULL)
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res.push_back(w);
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if (newPosition)
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*newPosition = pos;
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return (res);
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}
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void word::parseImpl
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(const parsingContext& ctx, const string& buffer, const string::size_type position,
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const string::size_type end, string::size_type* newPosition)
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{
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if (position + 6 < end && // 6 = "=?(.+)?(.*)?="
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buffer[position] == '=' && buffer[position + 1] == '?')
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{
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string::const_iterator p = buffer.begin() + position + 2;
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const string::const_iterator pend = buffer.begin() + end;
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const string::const_iterator charsetPos = p;
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for ( ; p != pend && *p != '?' ; ++p) {}
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if (p != pend) // a charset is specified
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{
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const string::const_iterator charsetEnd = p;
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const string::const_iterator encPos = ++p; // skip '?'
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for ( ; p != pend && *p != '?' ; ++p) {}
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if (p != pend) // an encoding is specified
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{
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//const string::const_iterator encEnd = p;
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const string::const_iterator dataPos = ++p; // skip '?'
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for ( ; p != pend && !(*p == '?' && *(p + 1) == '=') ; ++p) {}
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if (p != pend) // some data is specified
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{
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const string::const_iterator dataEnd = p;
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p += 2; // skip '?='
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utility::encoder::encoder* theEncoder = NULL;
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// Base-64 encoding
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if (*encPos == 'B' || *encPos == 'b')
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{
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theEncoder = new utility::encoder::b64Encoder();
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}
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// Quoted-Printable encoding
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else if (*encPos == 'Q' || *encPos == 'q')
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{
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theEncoder = new utility::encoder::qpEncoder();
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theEncoder->getProperties()["rfc2047"] = true;
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}
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if (theEncoder)
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{
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// Decode text
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string decodedBuffer;
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utility::inputStreamStringAdapter ein(string(dataPos, dataEnd));
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utility::outputStreamStringAdapter eout(decodedBuffer);
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theEncoder->decode(ein, eout);
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delete (theEncoder);
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m_buffer = decodedBuffer;
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m_charset = charset(string(charsetPos, charsetEnd));
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setParsedBounds(position, p - buffer.begin());
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if (newPosition)
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*newPosition = (p - buffer.begin());
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return;
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}
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}
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}
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}
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}
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// Unknown encoding or malformed encoded word: treat the buffer as ordinary text (RFC-2047, Page 9).
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m_buffer = string(buffer.begin() + position, buffer.begin() + end);
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m_charset = ctx.getInternationalizedEmailSupport()
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? charset(charsets::UTF_8) : charset(charsets::US_ASCII);
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setParsedBounds(position, end);
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if (newPosition)
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*newPosition = end;
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}
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void word::generateImpl(const generationContext& ctx, utility::outputStream& os,
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const string::size_type curLinePos, string::size_type* newLinePos) const
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{
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generate(ctx, os, curLinePos, newLinePos, 0, NULL);
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}
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void word::generate(const generationContext& ctx, utility::outputStream& os,
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const string::size_type curLinePos, string::size_type* newLinePos, const int flags,
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generatorState* state) const
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{
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string::size_type curLineLength = curLinePos;
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generatorState defaultGeneratorState;
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if (state == NULL)
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state = &defaultGeneratorState;
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// Find out if encoding is forced or required by contents + charset
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bool encodingNeeded = false;
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if ((flags & text::FORCE_NO_ENCODING) != 0)
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encodingNeeded = false;
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else if ((flags & text::FORCE_ENCODING) != 0)
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encodingNeeded = true;
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else // auto-detect
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encodingNeeded = wordEncoder::isEncodingNeeded(ctx, m_buffer, m_charset);
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// If text does not need to be encoded, quote the buffer (no folding is performed).
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if (!encodingNeeded &&
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(flags & text::QUOTE_IF_NEEDED) &&
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utility::stringUtils::needQuoting(m_buffer))
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{
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const string quoted = utility::stringUtils::quote(m_buffer, "\\\"", "\\");
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os << '"' << quoted << '"';
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curLineLength += 1 + quoted.length() + 1;
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}
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// If possible and requested (with flag), quote the buffer (no folding is performed).
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// Quoting is possible if and only if:
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// - the buffer does not need to be encoded
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// - the buffer does not contain quoting character (")
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// - there is enough remaining space on the current line to hold the whole buffer
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else if (!encodingNeeded &&
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(flags & text::QUOTE_IF_POSSIBLE) &&
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m_buffer.find('"') == string::npos &&
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(curLineLength + 2 /* 2 x " */ + m_buffer.length()) < ctx.getMaxLineLength())
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{
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os << '"' << m_buffer << '"';
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curLineLength += 2 + m_buffer.length();
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}
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// We will fold lines without encoding them.
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else if (!encodingNeeded)
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{
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string buffer;
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if (ctx.getInternationalizedEmailSupport())
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{
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// Convert the buffer to UTF-8
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charset::convert(m_buffer, buffer, m_charset, charsets::UTF_8);
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}
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else
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{
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// Leave the buffer as-is
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buffer = m_buffer;
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}
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// Here, we could have the following conditions:
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//
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// * a maximum line length of N bytes
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// * a buffer containing N+1 bytes, with no whitespace
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//
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// Look in the buffer for any run (ie. whitespace-separated sequence) which
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// is longer than the maximum line length. If there is one, then force encoding,
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// so that no generated line is longer than the maximum line length.
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string::size_type maxRunLength = 0;
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string::size_type curRunLength = 0;
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for (string::const_iterator p = buffer.begin(), end = buffer.end() ; p != end ; ++p)
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{
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if (parserHelpers::isSpace(*p))
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{
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maxRunLength = std::max(maxRunLength, curRunLength);
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curRunLength = 0;
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}
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else
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{
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curRunLength++;
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}
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}
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maxRunLength = std::max(maxRunLength, curRunLength);
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if (((flags & text::FORCE_NO_ENCODING) == 0) && maxRunLength >= ctx.getMaxLineLength() - 3)
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{
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// Generate with encoding forced
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generate(ctx, os, curLinePos, newLinePos, flags | text::FORCE_ENCODING, state);
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return;
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}
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// Output runs, and fold line when a whitespace is encountered
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string::const_iterator lastWSpos = buffer.end(); // last white-space position
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string::const_iterator curLineStart = buffer.begin(); // current line start
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string::const_iterator p = buffer.begin();
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const string::const_iterator end = buffer.end();
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bool finished = false;
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bool newLine = false;
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while (!finished)
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{
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for ( ; p != end ; ++p, ++curLineLength)
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{
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// Exceeded maximum line length, but we have found a white-space
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// where we can cut the line...
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if (curLineLength >= ctx.getMaxLineLength() && lastWSpos != end)
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break;
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if (*p == ' ' || *p == '\t')
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{
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// Remember the position of this white-space character
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lastWSpos = p;
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}
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}
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if (p != end)
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++curLineLength;
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if (p == end || lastWSpos == end)
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{
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// If we are here, it means that we have found no whitespace
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// before the first "maxLineLength" characters. In this case,
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// we write the full line no matter of the max line length...
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if (!newLine && p != end && lastWSpos == end &&
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!state->isFirstWord && curLineStart == buffer.begin())
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{
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// Here, we are continuing on the line of previous encoded
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// word, but there is not even enough space to put the
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// first word of this line, so we start a new line.
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if (flags & text::NO_NEW_LINE_SEQUENCE)
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{
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os << CRLF;
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curLineLength = 0;
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state->lastCharIsSpace = true;
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}
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else
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{
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os << NEW_LINE_SEQUENCE;
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curLineLength = NEW_LINE_SEQUENCE_LENGTH;
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state->lastCharIsSpace = true;
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}
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p = curLineStart;
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lastWSpos = end;
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newLine = true;
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}
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else
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{
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if (!state->isFirstWord && state->prevWordIsEncoded && !state->lastCharIsSpace && !parserHelpers::isSpace(*curLineStart))
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os << " "; // Separate from previous word
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os << string(curLineStart, p);
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if (p != buffer.begin() && parserHelpers::isSpace(*(p - 1)))
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state->lastCharIsSpace = true;
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else
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state->lastCharIsSpace = false;
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if (p == end)
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{
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finished = true;
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}
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else
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{
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if (flags & text::NO_NEW_LINE_SEQUENCE)
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{
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os << CRLF;
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curLineLength = 0;
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}
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else
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{
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os << NEW_LINE_SEQUENCE;
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curLineLength = NEW_LINE_SEQUENCE_LENGTH;
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}
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curLineStart = p;
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lastWSpos = end;
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newLine = true;
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}
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}
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}
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else
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{
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// In this case, there will not be enough space on the line for all the
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// characters _after_ the last white-space; so we cut the line at this
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// last white-space.
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#if 1
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if (curLineLength != NEW_LINE_SEQUENCE_LENGTH && !state->isFirstWord && state->prevWordIsEncoded)
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os << " "; // Separate from previous word
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#endif
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os << string(curLineStart, lastWSpos);
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if (lastWSpos > curLineStart && parserHelpers::isSpace(*(lastWSpos - 1)))
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state->lastCharIsSpace = true;
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else
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state->lastCharIsSpace = false;
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if (flags & text::NO_NEW_LINE_SEQUENCE)
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{
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os << CRLF;
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curLineLength = 0;
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state->lastCharIsSpace = true;
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}
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else
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{
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os << NEW_LINE_SEQUENCE;
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curLineLength = NEW_LINE_SEQUENCE_LENGTH;
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state->lastCharIsSpace = true;
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}
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curLineStart = lastWSpos + 1;
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p = lastWSpos + 1;
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lastWSpos = end;
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newLine = true;
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}
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}
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}
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/*
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RFC #2047:
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4. Encodings
|
|
|
|
Initially, the legal values for "encoding" are "Q" and "B". These
|
|
encodings are described below. The "Q" encoding is recommended for
|
|
use when most of the characters to be encoded are in the ASCII
|
|
character set; otherwise, the "B" encoding should be used.
|
|
Nevertheless, a mail reader which claims to recognize 'encoded-word's
|
|
MUST be able to accept either encoding for any character set which it
|
|
supports.
|
|
*/
|
|
else
|
|
{
|
|
// We will encode _AND_ fold lines
|
|
|
|
/*
|
|
RFC #2047:
|
|
2. Syntax of encoded-words
|
|
|
|
" While there is no limit to the length of a multiple-line header
|
|
field, each line of a header field that contains one or more
|
|
'encoded-word's is limited to 76 characters. "
|
|
*/
|
|
|
|
const string::size_type maxLineLength3 =
|
|
(ctx.getMaxLineLength() == lineLengthLimits::infinite)
|
|
? ctx.getMaxLineLength()
|
|
: std::min(ctx.getMaxLineLength(), static_cast <string::size_type>(76));
|
|
|
|
wordEncoder wordEnc(m_buffer, m_charset);
|
|
|
|
const string wordStart("=?" + m_charset.getName() + "?" +
|
|
(wordEnc.getEncoding() == wordEncoder::ENCODING_B64 ? 'B' : 'Q') + "?");
|
|
const string wordEnd("?=");
|
|
|
|
const string::size_type minWordLength = wordStart.length() + wordEnd.length();
|
|
const string::size_type maxLineLength2 = (maxLineLength3 < minWordLength + 1)
|
|
? maxLineLength3 + minWordLength + 1 : maxLineLength3;
|
|
|
|
// Checks whether remaining space on this line is usable. If too few
|
|
// characters can be encoded, start a new line.
|
|
bool startNewLine = true;
|
|
|
|
if (curLineLength + 2 < maxLineLength2)
|
|
{
|
|
const string::size_type remainingSpaceOnLine = maxLineLength2 - curLineLength - 2;
|
|
|
|
if (remainingSpaceOnLine < minWordLength + 10)
|
|
{
|
|
// Space for no more than 10 encoded chars!
|
|
// It is not worth while to continue on this line...
|
|
startNewLine = true;
|
|
}
|
|
else
|
|
{
|
|
// OK, there is enough usable space on the current line.
|
|
startNewLine = false;
|
|
}
|
|
}
|
|
|
|
if (startNewLine)
|
|
{
|
|
os << NEW_LINE_SEQUENCE;
|
|
curLineLength = NEW_LINE_SEQUENCE_LENGTH;
|
|
|
|
state->lastCharIsSpace = true;
|
|
}
|
|
|
|
// Encode and fold input buffer
|
|
if (!startNewLine && !state->isFirstWord && !state->lastCharIsSpace)
|
|
{
|
|
os << " "; // Separate from previous word
|
|
++curLineLength;
|
|
|
|
state->lastCharIsSpace = true;
|
|
}
|
|
|
|
for (unsigned int i = 0 ; ; ++i)
|
|
{
|
|
// Compute the number of encoded chars that will fit on this line
|
|
const string::size_type fit = maxLineLength2 - minWordLength
|
|
- (i == 0 ? curLineLength : NEW_LINE_SEQUENCE_LENGTH);
|
|
|
|
// Get the next encoded chunk
|
|
const string chunk = wordEnc.getNextChunk(fit);
|
|
|
|
if (chunk.empty())
|
|
break;
|
|
|
|
// Start a new encoded word
|
|
if (i != 0)
|
|
{
|
|
os << NEW_LINE_SEQUENCE;
|
|
curLineLength = NEW_LINE_SEQUENCE_LENGTH;
|
|
}
|
|
|
|
os << wordStart;
|
|
curLineLength += minWordLength;
|
|
|
|
os << chunk;
|
|
curLineLength += chunk.length();
|
|
|
|
// End of the encoded word
|
|
os << wordEnd;
|
|
|
|
state->prevWordIsEncoded = true;
|
|
state->lastCharIsSpace = false;
|
|
}
|
|
}
|
|
|
|
if (newLinePos)
|
|
*newLinePos = curLineLength;
|
|
|
|
state->isFirstWord = false;
|
|
}
|
|
|
|
|
|
word& word::operator=(const word& w)
|
|
{
|
|
m_buffer = w.m_buffer;
|
|
m_charset = w.m_charset;
|
|
return (*this);
|
|
}
|
|
|
|
|
|
word& word::operator=(const string& s)
|
|
{
|
|
m_buffer = s;
|
|
m_charset = charset::getLocalCharset();
|
|
return (*this);
|
|
}
|
|
|
|
|
|
void word::copyFrom(const component& other)
|
|
{
|
|
const word& w = dynamic_cast <const word&>(other);
|
|
|
|
m_buffer = w.m_buffer;
|
|
m_charset = w.m_charset;
|
|
}
|
|
|
|
|
|
bool word::operator==(const word& w) const
|
|
{
|
|
return (m_charset == w.m_charset && m_buffer == w.m_buffer);
|
|
}
|
|
|
|
|
|
bool word::operator!=(const word& w) const
|
|
{
|
|
return (m_charset != w.m_charset || m_buffer != w.m_buffer);
|
|
}
|
|
|
|
|
|
const string word::getConvertedText(const charset& dest, const charsetConverterOptions& opts) const
|
|
{
|
|
string out;
|
|
|
|
try
|
|
{
|
|
charset::convert(m_buffer, out, m_charset, dest, opts);
|
|
}
|
|
catch (vmime::exceptions::charset_conv_error& e)
|
|
{
|
|
// Do not fail if charset is not recognized:
|
|
// copy 'word' as raw text
|
|
out = m_buffer;
|
|
}
|
|
|
|
return (out);
|
|
}
|
|
|
|
|
|
ref <component> word::clone() const
|
|
{
|
|
return vmime::create <word>(m_buffer, m_charset);
|
|
}
|
|
|
|
|
|
const charset& word::getCharset() const
|
|
{
|
|
return (m_charset);
|
|
}
|
|
|
|
|
|
void word::setCharset(const charset& ch)
|
|
{
|
|
m_charset = ch;
|
|
}
|
|
|
|
|
|
const string& word::getBuffer() const
|
|
{
|
|
return (m_buffer);
|
|
}
|
|
|
|
|
|
string& word::getBuffer()
|
|
{
|
|
return (m_buffer);
|
|
}
|
|
|
|
|
|
bool word::isEmpty() const
|
|
{
|
|
return m_buffer.empty();
|
|
}
|
|
|
|
|
|
void word::setBuffer(const string& buffer)
|
|
{
|
|
m_buffer = buffer;
|
|
}
|
|
|
|
|
|
const std::vector <ref <component> > word::getChildComponents()
|
|
{
|
|
return std::vector <ref <component> >();
|
|
}
|
|
|
|
|
|
} // vmime
|