forked from lix-project/lix
* Buffer writes in FdSink. This significantly reduces the number of
system calls / context switches when dumping a NAR and in the worker protocol.
This commit is contained in:
parent
893cac1402
commit
3a48282b06
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@ -65,6 +65,7 @@ void RemoteStore::openConnection()
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/* Send the magic greeting, check for the reply. */
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try {
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writeInt(WORKER_MAGIC_1, to);
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to.flush();
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unsigned int magic = readInt(from);
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if (magic != WORKER_MAGIC_2) throw Error("protocol mismatch");
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@ -166,6 +167,7 @@ void RemoteStore::connectToDaemon()
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RemoteStore::~RemoteStore()
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{
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try {
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to.flush();
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fdSocket.close();
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if (child != -1)
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child.wait(true);
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@ -488,6 +490,7 @@ void RemoteStore::clearFailedPaths(const PathSet & paths)
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void RemoteStore::processStderr(Sink * sink, Source * source)
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{
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to.flush();
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unsigned int msg;
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while ((msg = readInt(from)) == STDERR_NEXT
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|| msg == STDERR_READ || msg == STDERR_WRITE) {
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@ -503,6 +506,7 @@ void RemoteStore::processStderr(Sink * sink, Source * source)
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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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to.flush();
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}
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else {
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string s = readString(from);
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@ -9,7 +9,30 @@ namespace nix {
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void FdSink::operator () (const unsigned char * data, unsigned int len)
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{
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writeFull(fd, data, len);
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if (!buffer) buffer = new unsigned char[bufSize];
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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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writeFull(fd, data, len);
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break;
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}
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/* Otherwise, copy the bytes to the buffer. Flush the buffer
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when it's full. */
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size_t n = bufPos + len > bufSize ? bufSize - bufPos : len;
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memcpy(buffer + bufPos, data, n);
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data += n; bufPos += n; len -= n;
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if (bufPos == bufSize) flush();
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}
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}
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void FdSink::flush()
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{
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if (fd == -1 || bufPos == 0) return;
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writeFull(fd, buffer, bufPos);
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bufPos = 0;
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}
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@ -28,22 +28,29 @@ struct Source
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};
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/* A sink that writes data to a file descriptor. */
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/* A sink that writes data to a file descriptor (using a buffer). */
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struct FdSink : Sink
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{
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int fd;
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unsigned int bufSize, bufPos;
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unsigned char * buffer;
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FdSink()
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{
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fd = -1;
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}
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FdSink() : fd(-1), bufSize(32 * 1024), bufPos(0), buffer(0) { }
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FdSink(int fd)
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FdSink(int fd, unsigned int bufSize = 32 * 1024)
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: fd(fd), bufSize(bufSize), bufPos(0), buffer(0)
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{
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this->fd = fd;
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}
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~FdSink()
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{
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flush();
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if (buffer) delete[] buffer;
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}
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void operator () (const unsigned char * data, unsigned int len);
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void flush();
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};
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@ -57,6 +57,7 @@ static void tunnelStderr(const unsigned char * buf, size_t count)
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try {
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writeInt(STDERR_NEXT, to);
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writeString(string((char *) buf, count), to);
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to.flush();
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} catch (...) {
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/* Write failed; that means that the other side is
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gone. */
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@ -200,9 +201,7 @@ static void stopWork(bool success = true, const string & msg = "", unsigned int
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struct TunnelSink : Sink
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{
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Sink & to;
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TunnelSink(Sink & to) : to(to)
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{
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}
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TunnelSink(Sink & to) : to(to) { }
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virtual void operator ()
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(const unsigned char * data, unsigned int len)
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{
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@ -215,9 +214,7 @@ struct TunnelSink : Sink
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struct TunnelSource : Source
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{
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Source & from;
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TunnelSource(Source & from) : from(from)
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{
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}
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TunnelSource(Source & from) : from(from) { }
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virtual void operator ()
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(unsigned char * data, unsigned int len)
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{
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@ -228,6 +225,7 @@ struct TunnelSource : Source
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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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@ -596,8 +594,8 @@ static void processConnection()
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unsigned int magic = readInt(from);
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if (magic != WORKER_MAGIC_1) throw Error("protocol mismatch");
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writeInt(WORKER_MAGIC_2, to);
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writeInt(PROTOCOL_VERSION, to);
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to.flush();
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unsigned int clientVersion = readInt(from);
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/* Send startup error messages to the client. */
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@ -619,9 +617,11 @@ static void processConnection()
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store = boost::shared_ptr<StoreAPI>(new LocalStore());
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stopWork();
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to.flush();
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} catch (Error & e) {
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stopWork(false, e.msg());
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to.flush();
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return;
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}
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@ -652,6 +652,8 @@ static void processConnection()
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if (!errorAllowed) break;
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}
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to.flush();
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assert(!canSendStderr);
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};
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