* Make the import operation through the daemon much more efficient
(way fewer roundtrips) by allowing the client to send data in bigger chunks. * Some refactoring.
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78598d06f0
commit
e0bd307802
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@ -1199,10 +1199,11 @@ struct HashAndReadSource : Source
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{
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hashing = true;
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}
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virtual void operator () (unsigned char * data, size_t len)
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size_t read(unsigned char * data, size_t len)
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{
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readSource(data, len);
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if (hashing) hashSink(data, len);
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size_t n = readSource.read(data, len);
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if (hashing) hashSink(data, n);
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return n;
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}
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};
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@ -501,11 +501,11 @@ void RemoteStore::processStderr(Sink * sink, Source * source)
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}
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else if (msg == STDERR_READ) {
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if (!source) throw Error("no source");
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unsigned int len = readInt(from);
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size_t len = readInt(from);
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unsigned char * buf = new unsigned char[len];
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AutoDeleteArray<unsigned char> d(buf);
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(*source)(buf, len);
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writeString(string((const char *) buf, len), to);
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size_t n = source->read(buf, len);
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writeString(string((const char *) buf, n), to); // !!! inefficient
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to.flush();
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}
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else {
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@ -8,7 +8,7 @@ namespace nix {
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#define WORKER_MAGIC_1 0x6e697863
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#define WORKER_MAGIC_2 0x6478696f
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#define PROTOCOL_VERSION 0x108
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#define PROTOCOL_VERSION 0x109
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#define GET_PROTOCOL_MAJOR(x) ((x) & 0xff00)
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#define GET_PROTOCOL_MINOR(x) ((x) & 0x00ff)
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@ -23,8 +23,9 @@ void BufferedSink::operator () (const unsigned char * data, size_t len)
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while (len) {
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/* Optimisation: bypass the buffer if the data exceeds the
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buffer size and there is no unflushed data. */
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if (bufPos == 0 && len >= bufSize) {
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buffer size. */
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if (bufPos + len >= bufSize) {
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flush();
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write(data, len);
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break;
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}
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@ -59,29 +60,37 @@ void FdSink::write(const unsigned char * data, size_t len)
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}
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void Source::operator () (unsigned char * data, size_t len)
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{
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while (len) {
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size_t n = read(data, len);
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data += n; len -= n;
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}
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}
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BufferedSource::~BufferedSource()
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{
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if (buffer) delete[] buffer;
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}
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void BufferedSource::operator () (unsigned char * data, size_t len)
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size_t BufferedSource::read(unsigned char * data, size_t len)
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{
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if (!buffer) buffer = new unsigned char[bufSize];
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while (len) {
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if (!bufPosIn) bufPosIn = read(buffer, bufSize);
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if (!bufPosIn) bufPosIn = readUnbuffered(buffer, bufSize);
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/* Copy out the data in the buffer. */
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size_t n = len > bufPosIn - bufPosOut ? bufPosIn - bufPosOut : len;
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memcpy(data, buffer + bufPosOut, n);
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data += n; bufPosOut += n; len -= n;
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bufPosOut += n;
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if (bufPosIn == bufPosOut) bufPosIn = bufPosOut = 0;
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}
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return n;
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}
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size_t FdSource::read(unsigned char * data, size_t len)
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size_t FdSource::readUnbuffered(unsigned char * data, size_t len)
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{
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ssize_t n;
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do {
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@ -94,6 +103,15 @@ size_t FdSource::read(unsigned char * data, size_t len)
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}
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size_t StringSource::read(unsigned char * data, size_t len)
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{
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if (pos == s.size()) throw EndOfFile("end of string reached");
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size_t n = s.copy((char *) data, len, pos);
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pos += n;
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return n;
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}
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void writePadding(size_t len, Sink & sink)
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{
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if (len % 8) {
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@ -39,9 +39,14 @@ struct Source
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virtual ~Source() { }
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/* Store exactly ‘len’ bytes in the buffer pointed to by ‘data’.
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It blocks if that much data is not yet available, or throws an
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error if it is not going to be available. */
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virtual void operator () (unsigned char * data, size_t len) = 0;
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It blocks until all the requested data is available, or throws
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an error if it is not going to be available. */
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void operator () (unsigned char * data, size_t len);
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/* Store up to ‘len’ in the buffer pointed to by ‘data’, and
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return the number of bytes stored. If blocks until at least
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one byte is available. */
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virtual size_t read(unsigned char * data, size_t len) = 0;
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};
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@ -55,12 +60,10 @@ struct BufferedSource : Source
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: bufSize(bufSize), bufPosIn(0), bufPosOut(0), buffer(0) { }
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~BufferedSource();
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void operator () (unsigned char * data, size_t len);
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size_t read(unsigned char * data, size_t len);
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/* Store up to ‘len’ in the buffer pointed to by ‘data’, and
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return the number of bytes stored. If should block until at
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least one byte is available. */
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virtual size_t read(unsigned char * data, size_t len) = 0;
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/* Underlying read call, to be overriden. */
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virtual size_t readUnbuffered(unsigned char * data, size_t len) = 0;
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};
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@ -83,7 +86,7 @@ struct FdSource : BufferedSource
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int fd;
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FdSource() : fd(-1) { }
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FdSource(int fd) : fd(fd) { }
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size_t read(unsigned char * data, size_t len);
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size_t readUnbuffered(unsigned char * data, size_t len);
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};
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@ -104,13 +107,7 @@ struct StringSource : Source
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const string & s;
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size_t pos;
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StringSource(const string & _s) : s(_s), pos(0) { }
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virtual void operator () (unsigned char * data, size_t len)
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{
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s.copy((char *) data, len, pos);
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pos += len;
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if (pos > s.size())
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throw Error("end of string reached");
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}
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size_t read(unsigned char * data, size_t len);
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};
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@ -210,11 +210,11 @@ struct TunnelSink : Sink
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};
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struct TunnelSource : Source
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struct TunnelSource : BufferedSource
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{
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Source & from;
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TunnelSource(Source & from) : from(from) { }
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virtual void operator () (unsigned char * data, size_t len)
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size_t readUnbuffered(unsigned char * data, size_t len)
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{
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/* Careful: we're going to receive data from the client now,
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so we have to disable the SIGPOLL handler. */
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writeInt(STDERR_READ, to);
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writeInt(len, to);
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to.flush();
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string s = readString(from);
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if (s.size() != len) throw Error("not enough data");
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memcpy(data, (const unsigned char *) s.c_str(), len);
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string s = readString(from); // !!! inefficient
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startWork();
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if (s.empty()) throw EndOfFile("unexpected end-of-file");
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if (s.size() > len) throw Error("client sent too much data");
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memcpy(data, (const unsigned char *) s.c_str(), s.size());
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return s.size();
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}
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};
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Source & orig;
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string s;
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SavingSourceAdapter(Source & orig) : orig(orig) { }
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void operator () (unsigned char * data, size_t len)
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size_t read(unsigned char * data, size_t len)
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{
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orig(data, len);
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s.append((const char *) data, len);
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size_t n = orig.read(data, len);
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s.append((const char *) data, n);
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return n;
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}
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};
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@ -397,6 +403,8 @@ static void performOp(unsigned int clientVersion,
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case wopImportPath: {
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startWork();
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if (GET_PROTOCOL_MINOR(clientVersion) < 9)
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throw Error("import not supported; upgrade your client");
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TunnelSource source(from);
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Path path = store->importPath(true, source);
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stopWork();
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