Ejemplo n.º 1
0
        internal unsafe Int32 GetWriteBuffSize()
        {
            MEMORYSTATUSEX memStatus = new MEMORYSTATUSEX();

            memStatus.dwLength = (UInt32)sizeof(MEMORYSTATUSEX);
            UInt64 maxSize = 512 * 1024 * 1024UL;

            if (DryadLinqNative.GlobalMemoryStatusEx(ref memStatus))
            {
                maxSize = memStatus.ullAvailPhys / 4;
            }
            if (this.m_vertexParams.RemoteArch == "i386")
            {
                maxSize = Math.Min(maxSize, 1024 * 1024 * 1024UL);
            }
            if (this.NumberOfOutputs > 0)
            {
                maxSize = maxSize / this.NumberOfOutputs;
            }

            UInt64 buffSize = (this.UseLargeBuffer) ? (256 * 1024 * 1024UL) : (8 * 1024 * 1024UL);

            if (buffSize > maxSize)
            {
                buffSize = maxSize;
            }
            if (buffSize < (16 * 1024UL))
            {
                buffSize = 16 * 1024;
            }
            return((Int32)buffSize);
        }
Ejemplo n.º 2
0
        /// <summary>
        /// Initializes an instnace of VertexEnv. This is called in auto-generated vertex code.
        /// </summary>
        /// <param name="args"></param>
        /// <param name="vertexParams"></param>
        public VertexEnv(string args, DryadLinqVertexParams vertexParams)
        {
            this.m_argList         = args.Split('|');
            this.m_nativeHandle    = new IntPtr(Int64.Parse(this.m_argList[0], NumberStyles.HexNumber));
            this.m_numberOfInputs  = DryadLinqNative.GetNumOfInputs(this.m_nativeHandle);
            this.m_numberOfOutputs = DryadLinqNative.GetNumOfOutputs(this.m_nativeHandle);
            this.m_nextInput       = 0;
            this.m_nextInputPort   = 0;
            this.m_nextOutputPort  = 0;
            this.m_vertexParams    = vertexParams;
            this.m_useLargeBuffer  = vertexParams.UseLargeBuffer;
            if (this.m_numberOfOutputs > 0)
            {
                this.SetInitialWriteSizeHint();
            }

            // Set the thread count for DryadLINQ vertex runtime
            string threadCountStr = Environment.GetEnvironmentVariable("DRYAD_THREADS_PER_WORKER");

            DryadLinqVertex.ThreadCount = Environment.ProcessorCount;
            if (!String.IsNullOrEmpty(threadCountStr))
            {
                if (!Int32.TryParse(threadCountStr, out DryadLinqVertex.ThreadCount))
                {
                    throw new DryadLinqException("The env variable DRYAD_THREADS_PER_WORKER was set to " + threadCountStr);
                }
                if (DryadLinqVertex.ThreadCount < 1)
                {
                    DryadLinqVertex.ThreadCount = Environment.ProcessorCount;
                }
            }
        }
Ejemplo n.º 3
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 internal override unsafe void ReleaseDataBlock(IntPtr itemHandle)
 {
     if (itemHandle != IntPtr.Zero)
     {
         DryadLinqNative.ReleaseDataBlock(this.m_vertexInfo, itemHandle);
     }
     // DryadLinqLog.AddInfo("Released data block {0}.", itemHandle);
 }
Ejemplo n.º 4
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        internal void SetInitialWriteSizeHint()
        {
            Int64  inputSize = this.GetInputSize();
            UInt64 hsize     = (inputSize == -1) ? (5 * 1024 * 1024 * 1024UL) : (UInt64)inputSize;

            hsize /= this.NumberOfOutputs;
            for (UInt32 i = 0; i < this.NumberOfOutputs; i++)
            {
                DryadLinqNative.SetInitialSizeHint(this.m_nativeHandle, i, hsize);
            }
        }
Ejemplo n.º 5
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 internal override unsafe Int64 GetTotalLength()
 {
     if (this.m_isInput)
     {
         return(DryadLinqNative.GetExpectedLength(this.m_vertexInfo, this.m_portNum));
     }
     else
     {
         throw new NotImplementedException();
     }
 }
Ejemplo n.º 6
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        internal override unsafe bool WriteDataBlock(IntPtr itemHandle, Int32 numBytesToWrite)
        {
            byte *dataBlock = (byte *)itemHandle;

            if (this.m_compressionScheme == CompressionScheme.None)
            {
                Int32 numBytesWritten = 0;
                Int32 remainingBytes  = numBytesToWrite;

                while (remainingBytes > 0)
                {
                    Int32 *pNumBytesWritten = &numBytesWritten;
                    bool   success          = DryadLinqNative.WriteFile(this.m_fhandle,
                                                                        dataBlock,
                                                                        (UInt32)remainingBytes,
                                                                        (IntPtr)pNumBytesWritten,
                                                                        null);
                    if (!success)
                    {
                        throw new DryadLinqException(DryadLinqErrorCode.WriteFileError,
                                                     String.Format(SR.WriteFileError,
                                                                   Marshal.GetLastWin32Error()));
                    }

                    dataBlock      += numBytesWritten;
                    remainingBytes -= numBytesWritten;
                }
            }
            else
            {
                if (this.m_compressStream == null)
                {
                    if (this.m_compressionScheme == CompressionScheme.Gzip)
                    {
                        this.m_compressStream = new GZipStream(this.m_fstream,
                                                               CompressionMode.Compress);
                    }
                    else
                    {
                        throw new DryadLinqException(DryadLinqErrorCode.UnknownCompressionScheme,
                                                     SR.UnknownCompressionScheme);
                    }
                }
                // YY: Made an extra copy here. Could do better.
                byte[] buffer = new byte[numBytesToWrite];
                fixed(byte *pBuffer = buffer)
                {
                    DryadLinqUtil.memcpy(dataBlock, pBuffer, numBytesToWrite);
                }

                this.m_compressStream.Write(buffer, 0, numBytesToWrite);
            }
            return(true);
        }
Ejemplo n.º 7
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 internal override void Close()
 {
     if (!this.m_isClosed)
     {
         this.m_isClosed = true;
         this.Flush();
         DryadLinqNative.Close(this.m_vertexInfo, this.m_portNum);
         string ctype = (this.m_isInput) ? "Input" : "Output";
         DryadLinqLog.AddInfo(ctype + " channel {0} was closed.", this.m_portNum);
     }
     GC.SuppressFinalize(this);
 }
Ejemplo n.º 8
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        internal override unsafe Int64 GetTotalLength()
        {
            Int64 totalLen;
            bool  success = DryadLinqNative.GetFileSizeEx(this.m_fhandle, out totalLen);

            if (!success)
            {
                throw new DryadLinqException(DryadLinqErrorCode.GetFileSizeError,
                                             String.Format(SR.GetFileSizeError,
                                                           Marshal.GetLastWin32Error()));
            }
            return(totalLen);
        }
Ejemplo n.º 9
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        internal override unsafe string GetURI()
        {
            IntPtr uriPtr;

            if (this.m_isInput)
            {
                uriPtr = DryadLinqNative.GetInputChannelURI(this.m_vertexInfo, this.m_portNum);
            }
            else
            {
                uriPtr = DryadLinqNative.GetOutputChannelURI(this.m_vertexInfo, this.m_portNum);
            }
            return(Marshal.PtrToStringAnsi(uriPtr));
        }
Ejemplo n.º 10
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        internal override unsafe DataBlockInfo AllocateDataBlock(Int32 size)
        {
            DataBlockInfo blockInfo;

            blockInfo.ItemHandle =
                DryadLinqNative.AllocateDataBlock(this.m_vertexInfo, size, &blockInfo.DataBlock);
            blockInfo.BlockSize = size;
            if (blockInfo.ItemHandle == IntPtr.Zero)
            {
                throw new DryadLinqException(DryadLinqErrorCode.FailedToAllocateNewNativeBuffer,
                                             String.Format(SR.FailedToAllocateNewNativeBuffer, size));
            }
            // DryadLinqLog.AddInfo("Allocated data block {0} of {1} bytes.", blockInfo.itemHandle, size);
            return(blockInfo);
        }
Ejemplo n.º 11
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        internal Int64 GetInputSize()
        {
            Int64 totalSize = 0;

            for (UInt32 i = 0; i < this.m_numberOfInputs; i++)
            {
                Int64 channelSize = DryadLinqNative.GetExpectedLength(this.NativeHandle, i);
                if (channelSize == -1)
                {
                    return(-1);
                }
                totalSize += channelSize;
            }
            return(totalSize);
        }
Ejemplo n.º 12
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        internal override unsafe DataBlockInfo ReadDataBlock()
        {
            DataBlockInfo blockInfo;

            blockInfo.DataBlock  = (byte *)Marshal.AllocHGlobal(DefaultBuffSize);
            blockInfo.ItemHandle = (IntPtr)blockInfo.DataBlock;
            if (this.m_compressionScheme == CompressionScheme.None)
            {
                Int32 *pBlockSize = &blockInfo.BlockSize;
                bool   success    = DryadLinqNative.ReadFile(this.m_fhandle,
                                                             blockInfo.DataBlock,
                                                             DefaultBuffSize,
                                                             (IntPtr)pBlockSize,
                                                             null);
                if (!success)
                {
                    throw new DryadLinqException(DryadLinqErrorCode.ReadFileError,
                                                 String.Format(SR.ReadFileError,
                                                               Marshal.GetLastWin32Error()));
                }
            }
            else
            {
                if (this.m_compressStream == null)
                {
                    if (this.m_compressionScheme == CompressionScheme.Gzip)
                    {
                        this.m_compressStream = new GZipStream(this.m_fstream,
                                                               CompressionMode.Decompress);
                    }
                    else
                    {
                        throw new DryadLinqException(DryadLinqErrorCode.UnknownCompressionScheme,
                                                     SR.UnknownCompressionScheme);
                    }
                }
                // YY: Made an extra copy here. Could do better.
                byte[] buffer = new byte[DefaultBuffSize];
                blockInfo.BlockSize = this.m_compressStream.Read(buffer, 0, DefaultBuffSize);
                fixed(byte *pBuffer = buffer)
                {
                    DryadLinqUtil.memcpy(pBuffer, blockInfo.DataBlock, blockInfo.BlockSize);
                }
            }
            return(blockInfo);
        }
Ejemplo n.º 13
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        internal override unsafe DataBlockInfo ReadDataBlock()
        {
            DataBlockInfo blockInfo;
            Int32         errorCode = 0;

            blockInfo.ItemHandle = DryadLinqNative.ReadDataBlock(this.m_vertexInfo,
                                                                 this.m_portNum,
                                                                 &blockInfo.DataBlock,
                                                                 &blockInfo.BlockSize,
                                                                 &errorCode);
            if (errorCode != 0)
            {
                VertexEnv.ErrorCode = errorCode;
                throw new DryadLinqException(DryadLinqErrorCode.FailedToReadFromInputChannel,
                                             String.Format(SR.FailedToReadFromInputChannel,
                                                           this.m_portNum, errorCode));
            }
            return(blockInfo);
        }
Ejemplo n.º 14
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        internal override unsafe bool WriteDataBlock(IntPtr itemHandle, Int32 numBytesToWrite)
        {
            bool success = true;

            if (numBytesToWrite > 0)
            {
                success = DryadLinqNative.WriteDataBlock(this.m_vertexInfo,
                                                         this.m_portNum,
                                                         itemHandle,
                                                         numBytesToWrite);

                if (!success)
                {
                    throw new DryadLinqException(DryadLinqErrorCode.FailedToWriteToOutputChannel,
                                                 String.Format(SR.FailedToWriteToOutputChannel,
                                                               this.m_portNum));
                }
            }
            return(success);
        }
Ejemplo n.º 15
0
        /// <summary>
        /// Initializes an instnace of VertexEnv. This is called in auto-generated code.
        /// </summary>
        /// <param name="args"></param>
        /// <param name="vertexParams"></param>
        public VertexEnv(string args, DryadLinqVertexParams vertexParams)
        {
            this.m_argList         = args.Split('|');
            this.m_nativeHandle    = new IntPtr(Int64.Parse(this.m_argList[0], NumberStyles.HexNumber));
            this.m_numberOfInputs  = DryadLinqNative.GetNumOfInputs(this.m_nativeHandle);
            this.m_numberOfOutputs = DryadLinqNative.GetNumOfOutputs(this.m_nativeHandle);
            this.m_nextInput       = 0;
            this.m_nextInputPort   = 0;
            this.m_nextOutputPort  = 0;
            this.m_vertexParams    = vertexParams;
            this.m_useLargeBuffer  = vertexParams.UseLargeBuffer;
            this.m_multiThreading  = vertexParams.MultiThreading;
            if (this.m_numberOfOutputs > 0)
            {
                this.SetInitialWriteSizeHint();
            }

            Debug.Assert(vertexParams.InputArity <= this.m_numberOfInputs);
            Debug.Assert(vertexParams.OutputArity <= this.m_numberOfOutputs);
        }
Ejemplo n.º 16
0
        public static IEnumerable<K> Phase1Sampling<T, K>(IEnumerable<T> source,
                                                          Func<T, K> keySelector,
                                                          VertexEnv denv)
        {
            // note: vertexID is constant for each repetition of a specific vertex (eg in fail-and-retry scenarios)
            //       this is very good as it ensure the sampling is idempotent w.r.t. retries.

            long vertexID = DryadLinqNative.GetVertexId(denv.NativeHandle);
            int seed = unchecked((int)(vertexID));
            long nEmitted = 0;

            Random rdm = new Random(seed);
            
            List<K> allSoFar = new List<K>();
            List<K> samples = new List<K>();
            
            // try to collect 10 samples, but keep all the records just in case
            IEnumerator<T> sourceEnumerator = source.GetEnumerator();
            while (sourceEnumerator.MoveNext())
            {
                T elem = sourceEnumerator.Current;
                K key = keySelector(elem);
                allSoFar.Add(key);
                if (rdm.NextDouble() < SAMPLE_RATE)
                {
                    samples.Add(key);
                    if (samples.Count >= 10)
                        break;
                }
            }

            if (samples.Count >= 10)
            {
                // we have lots of samples.. emit them and continue sampling
                allSoFar = null; // not needed.
                foreach (K key in samples)
                {
                    yield return key;
                    nEmitted++;
                }
                while (sourceEnumerator.MoveNext())
                {
                    T elem = sourceEnumerator.Current;
                    if (rdm.NextDouble() < SAMPLE_RATE)
                    {
                        yield return keySelector(elem);
                        nEmitted++;
                    }
                }
            }
            else
            {
                // sampling didn't produce much, so emit all the records instead.
                DryadLinqLog.AddInfo("Sampling produced only {0} records.  Emitting all records instead.", samples.Count());
                Debug.Assert(sourceEnumerator.MoveNext() == false, "The source enumerator wasn't finished");
                samples = null; // the samples list is not needed.
                foreach (K key in allSoFar)
                {
                    yield return key;
                    nEmitted++;
                }
            }

            DryadLinqLog.AddInfo("Stage1 sampling: num keys emitted = {0}", nEmitted);
        }
Ejemplo n.º 17
0
 internal override void Flush()
 {
     DryadLinqNative.Flush(this.m_vertexInfo, this.m_portNum);
 }