Added 'inputStreamSocketAdapter' and 'stopSequenceFilteredInputStream'.
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6bf5f9192e
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4661d7b735
@ -228,6 +228,35 @@ void CRLFToLFFilteredOutputStream::write
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}
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// stopSequenceFilteredInputStream <1>
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template <>
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const stream::size_type stopSequenceFilteredInputStream <1>::read
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(value_type* const data, const size_type count)
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{
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if (eof() || m_stream.eof())
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{
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m_eof = true;
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return 0;
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}
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const size_type read = m_stream.read(data, count);
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value_type* end = data + read;
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value_type* pos = std::find(data, end, m_sequence[0]);
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if (pos == end)
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{
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return (read);
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}
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else
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{
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m_found = 1;
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return (pos - data);
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}
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}
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} // utility
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} // vmime
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@ -319,11 +319,11 @@ const stream::size_type inputStreamPointerAdapter::skip(const size_type count)
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}
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// outputStreamSocketAdapter
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#ifdef VMIME_HAVE_MESSAGING_FEATURES
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// outputStreamSocketAdapter
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outputStreamSocketAdapter::outputStreamSocketAdapter(messaging::socket& sok)
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: m_socket(sok)
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{
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@ -337,6 +337,42 @@ void outputStreamSocketAdapter::write
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}
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// inputStreamSocketAdapter
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inputStreamSocketAdapter::inputStreamSocketAdapter(messaging::socket& sok)
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: m_socket(sok)
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{
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}
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const bool inputStreamSocketAdapter::eof() const
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{
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// Can't know...
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return false;
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}
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void inputStreamSocketAdapter::reset()
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{
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// Not supported
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}
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const stream::size_type inputStreamSocketAdapter::read
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(value_type* const data, const size_type count)
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{
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return m_socket.receiveRaw(data, count);
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}
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const stream::size_type inputStreamSocketAdapter::skip
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(const size_type /* count */)
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{
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// Not supported
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return 0;
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}
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#endif // VMIME_HAVE_MESSAGING_FEATURES
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@ -53,6 +53,9 @@ namespace
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const size_type read(value_type* const data, const size_type /* count */)
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{
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if (eof())
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return 0;
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const std::string chunk = m_chunks[m_index];
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// Warning: 'count' should be larger than chunk length.
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@ -72,6 +75,25 @@ namespace
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};
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const std::string readWhole(vmime::utility::inputStream& is)
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{
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vmime::utility::stream::value_type buffer[256];
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std::string whole;
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while (!is.eof())
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{
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const vmime::utility::stream::size_type read =
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is.read(buffer, sizeof(buffer));
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whole += std::string(buffer, read);
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}
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return (whole);
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}
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// dotFilteredInputStream
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void testDotFilteredInputStreamHelper
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(const std::string& number, const std::string& expected,
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const std::string& c1, const std::string& c2 = "",
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@ -103,6 +125,9 @@ namespace
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testDotFilteredInputStreamHelper("6", "foo\n.bar", "foo\n", ".", ".", "bar");
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}
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// dotFilteredOutputStream
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// CRLFToLFFilteredOutputStream
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template <typename FILTER>
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void testFilteredOutputStreamHelper
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(const std::string& number, const std::string& expected,
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@ -145,6 +170,102 @@ namespace
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testFilteredOutputStreamHelper<FILTER>("6", "foo\nbar", "foo", "\r", "\n", "bar");
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}
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// stopSequenceFilteredInputStream
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template <int N>
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void testStopSequenceFISHelper
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(const std::string& number, const std::string& sequence,
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const std::string& expected, const std::string& c1,
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const std::string& c2 = "", const std::string& c3 = "",
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const std::string& c4 = "", const std::string& c5 = "")
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{
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chunkInputStream cis;
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cis.addChunk(c1);
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if (!c2.empty()) cis.addChunk(c2);
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if (!c3.empty()) cis.addChunk(c3);
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if (!c4.empty()) cis.addChunk(c4);
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if (!c5.empty()) cis.addChunk(c5);
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vmime::utility::stopSequenceFilteredInputStream <N> is(cis, sequence.data());
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assert_eq(number, expected, readWhole(is));
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}
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void testStopSequenceFilteredInputStream1()
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{
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testStopSequenceFISHelper <1>("1", "x", "foo", "fooxbar");
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testStopSequenceFISHelper <1>("2", "x", "foo", "foox", "bar");
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testStopSequenceFISHelper <1>("3", "x", "foo", "foo", "x", "bar");
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testStopSequenceFISHelper <1>("4", "x", "foo", "fo", "o", "x", "bar");
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testStopSequenceFISHelper <1>("5", "x", "foo", "fo", "o", "x", "b", "ar");
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testStopSequenceFISHelper <1>("6", "x", "foobar", "fo", "o", "b", "ar");
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testStopSequenceFISHelper <1>("7", "x", "foobar", "foo", "bar");
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testStopSequenceFISHelper <1>("8", "x", "foobar", "foo", "b", "ar");
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testStopSequenceFISHelper <1>("9", "x", "foobar", "foobar");
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testStopSequenceFISHelper <1>("10", "x", "foobar", "foobarx");
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testStopSequenceFISHelper <1>("11", "x", "", "");
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testStopSequenceFISHelper <1>("12", "x", "", "x");
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testStopSequenceFISHelper <1>("13", "x", "", "", "x");
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}
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void testStopSequenceFilteredInputStreamN_2()
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{
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testStopSequenceFISHelper <2>("1", "xy", "foo", "fooxybar");
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testStopSequenceFISHelper <2>("2", "xy", "foo", "foox", "ybar");
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testStopSequenceFISHelper <2>("3", "xy", "foo", "foox", "y", "bar");
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testStopSequenceFISHelper <2>("4", "xy", "foo", "foo", "x", "ybar");
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testStopSequenceFISHelper <2>("5", "xy", "foo", "foo", "xy", "bar");
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testStopSequenceFISHelper <2>("6", "xy", "foo", "foo", "x", "y", "bar");
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testStopSequenceFISHelper <2>("7", "xy", "fooxbar", "foox", "bar");
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testStopSequenceFISHelper <2>("8", "xy", "fooxbar", "foo", "xbar");
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testStopSequenceFISHelper <2>("9", "xy", "fooxbar", "foo", "x", "bar");
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testStopSequenceFISHelper <2>("10", "xy", "foobarx", "foo", "barx");
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testStopSequenceFISHelper <2>("11", "xy", "foobar", "foobarxy");
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testStopSequenceFISHelper <2>("12", "xy", "foobar", "foo", "barxy");
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testStopSequenceFISHelper <2>("13", "xy", "foobar", "foo", "bar", "xy");
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testStopSequenceFISHelper <2>("14", "xy", "", "");
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testStopSequenceFISHelper <2>("15", "xy", "x", "x");
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testStopSequenceFISHelper <2>("16", "xy", "", "xy");
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testStopSequenceFISHelper <2>("17", "xy", "", "x", "y");
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}
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void testStopSequenceFilteredInputStreamN_3()
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{
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testStopSequenceFISHelper <3>("1", "xyz", "foo", "fooxyzbar");
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testStopSequenceFISHelper <3>("2", "xyz", "foo", "foox", "yzbar");
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testStopSequenceFISHelper <3>("3", "xyz", "foo", "foox", "y", "zbar");
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testStopSequenceFISHelper <3>("4", "xyz", "foo", "foox", "yz", "bar");
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testStopSequenceFISHelper <3>("5", "xyz", "foo", "foo", "xyz", "bar");
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testStopSequenceFISHelper <3>("6", "xyz", "foo", "foo", "xy", "zbar");
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testStopSequenceFISHelper <3>("7", "xyz", "foo", "foo", "x", "y", "zbar");
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testStopSequenceFISHelper <3>("8", "xyz", "foo", "foo", "x", "y", "z", "bar");
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testStopSequenceFISHelper <3>("9", "xyz", "foo", "fooxy", "z", "bar");
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testStopSequenceFISHelper <3>("10", "xyz", "fooxybar", "foox", "y", "bar");
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testStopSequenceFISHelper <3>("11", "xyz", "fooxybar", "fooxy", "bar");
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testStopSequenceFISHelper <3>("12", "xyz", "fooxybar", "fo", "ox", "y", "bar");
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testStopSequenceFISHelper <3>("13", "xyz", "fooxybar", "fo", "o", "x", "y", "bar");
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testStopSequenceFISHelper <3>("14", "xyz", "fooxybar", "foo", "x", "ybar");
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testStopSequenceFISHelper <3>("15", "xyz", "fooxybar", "foo", "xybar");
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testStopSequenceFISHelper <3>("16", "xyz", "xfoxoxybxar", "xfoxo", "xybxar");
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testStopSequenceFISHelper <3>("17", "xyz", "xfoxoxybxarx", "xfoxo", "xybxarx");
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testStopSequenceFISHelper <3>("18", "xyz", "xfoxoxybxarxy", "xfoxo", "xybxarxy");
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testStopSequenceFISHelper <3>("19", "xyz", "", "");
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testStopSequenceFISHelper <3>("20", "xyz", "x", "x");
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testStopSequenceFISHelper <3>("21", "xyz", "xy", "xy");
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testStopSequenceFISHelper <3>("22", "xyz", "", "xyz");
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testStopSequenceFISHelper <3>("23", "xyz", "", "x", "yz");
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testStopSequenceFISHelper <3>("24", "xyz", "", "x", "y", "z");
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}
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public:
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filteredStreamTest() : suite("vmime::utility::filteredStream")
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@ -155,6 +276,9 @@ namespace
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add("dotFilteredInputStream", testcase(this, "dotFilteredInputStream", &filteredStreamTest::testDotFilteredInputStream));
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add("dotFilteredOutputStream", testcase(this, "dotFilteredOutputStream", &filteredStreamTest::testDotFilteredOutputStream));
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add("CRLFToLFFilteredOutputStream", testcase(this, "CRLFToLFFilteredOutputStream", &filteredStreamTest::testCRLFToLFFilteredOutputStream));
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add("stopSequenceFilteredInputStream1", testcase(this, "stopSequenceFilteredInputStream1", &filteredStreamTest::testStopSequenceFilteredInputStream1));
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add("stopSequenceFilteredInputStreamN_2", testcase(this, "stopSequenceFilteredInputStreamN_2", &filteredStreamTest::testStopSequenceFilteredInputStreamN_2));
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add("stopSequenceFilteredInputStreamN_3", testcase(this, "stopSequenceFilteredInputStreamN_3", &filteredStreamTest::testStopSequenceFilteredInputStreamN_3));
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suite::main().add("vmime::utility::filteredStream", this);
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}
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@ -141,6 +141,202 @@ private:
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};
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/** A filtered input stream which stops when a specified sequence
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* is found (eof() method will return 'true').
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*/
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template <int COUNT>
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class stopSequenceFilteredInputStream : public filteredInputStream
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{
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public:
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/** Construct a new filter for the specified input stream.
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*
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* @param is stream from which to read data to be filtered
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*/
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stopSequenceFilteredInputStream(inputStream& is, const value_type* sequence)
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: m_stream(is), m_sequence(sequence), m_found(0), m_eof(false)
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{
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}
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inputStream& getPreviousInputStream()
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{
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return (m_stream);
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}
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const bool eof() const
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{
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return (m_found == COUNT || m_eof);
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}
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void reset()
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{
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m_found = 0;
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m_stream.reset();
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}
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const size_type read(value_type* const data, const size_type count);
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const size_type skip(const size_type /* count */)
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{
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// Not supported
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return 0;
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}
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private:
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inputStream& m_stream;
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const value_type* m_sequence;
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size_type m_found;
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bool m_eof;
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};
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template <>
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const stream::size_type stopSequenceFilteredInputStream <1>::read
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(value_type* const data, const size_type count);
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template <int COUNT>
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const stream::size_type stopSequenceFilteredInputStream <COUNT>::read
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(value_type* const data, const size_type count)
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{
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// Read buffer must be at least 'COUNT' size + 1 byte
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if (eof() || count <= COUNT)
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return 0;
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if (m_stream.eof())
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{
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if (m_found != 0)
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{
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const size_type found = m_found;
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for (size_type f = 0 ; f < found ; ++f)
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data[f] = m_sequence[f];
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m_found = 0;
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m_eof = true;
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return (found);
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}
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else
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{
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m_eof = true;
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return 0;
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}
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}
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size_type read = m_stream.read(data, count - COUNT);
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value_type* end = data + read;
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value_type* pos = data;
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while (pos < end)
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{
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// Very simple case, search for the whole sequence
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if (m_found == 0)
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{
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while (pos < end)
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{
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pos = std::find(pos, end, m_sequence[0]);
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if (pos == end)
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return (read);
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m_found = 1;
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++pos;
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while (pos < end && m_found < COUNT && m_sequence[m_found] == *pos)
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{
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++m_found;
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++pos;
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}
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// Didn't found whole sequence
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if (m_found != COUNT)
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{
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// We reached the end of the buffer
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if (pos == end)
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{
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return (read - m_found);
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}
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// Common prefix but not whole sequence
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else
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{
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m_found = 0;
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}
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}
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// Whole sequence found
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else
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{
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// End of stream
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return (pos - data - m_found);
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}
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}
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}
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// More complex case: search for a sequence which has begun
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// in a previous buffer
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else
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{
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// Search for the end of the previously started sequence
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while (pos < end && m_found < COUNT && m_sequence[m_found] == *pos)
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{
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++m_found;
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++pos;
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}
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if (m_found != COUNT)
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{
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// End of buffer
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if (pos == end)
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{
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// No data: this buffer is a sub-sequence of the
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// searched sequence
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return 0;
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}
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// Common prefix
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else
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{
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// We have to reinject the incomplete sequence into
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// the stream data
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// -- shift right data
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const size_type n = pos - data;
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value_type* newEnd = data + read + m_found - n;
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value_type* oldEnd = data + read;
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for (size_type i = 0 ; i < read - n ; ++i)
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{
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--newEnd;
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--oldEnd;
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*newEnd = *oldEnd;
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}
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// -- copy the prefix just before data
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for (size_type f = 0 ; f < m_found ; ++f)
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data[f] = m_sequence[f];
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read += m_found - n;
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end += m_found - n;
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m_found = 0;
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}
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}
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else
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{
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return 0; // no more data
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}
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}
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}
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return read;
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}
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} // utility
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} // vmime
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@ -340,6 +340,26 @@ private:
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};
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/** An input stream that is connected to a socket.
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*/
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class inputStreamSocketAdapter : public inputStream
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{
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public:
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inputStreamSocketAdapter(messaging::socket& sok);
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const bool eof() const;
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void reset();
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const size_type read(value_type* const data, const size_type count);
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const size_type skip(const size_type count);
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private:
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messaging::socket& m_socket;
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};
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#endif // VMIME_HAVE_MESSAGING_FEATURES
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