Github user vanzin commented on a diff in the pull request:

    https://github.com/apache/spark/pull/8880#discussion_r41584529
  
    --- Diff: 
core/src/main/scala/org/apache/spark/crypto/CryptoOutputStream.scala ---
    @@ -0,0 +1,224 @@
    +/*
    + * Licensed to the Apache Software Foundation (ASF) under one or more
    + * contributor license agreements.  See the NOTICE file distributed with
    + * this work for additional information regarding copyright ownership.
    + * The ASF licenses this file to You under the Apache License, Version 2.0
    + * (the "License"); you may not use this file except in compliance with
    + * the License.  You may obtain a copy of the License at
    + *
    + *    http://www.apache.org/licenses/LICENSE-2.0
    + *
    + * Unless required by applicable law or agreed to in writing, software
    + * distributed under the License is distributed on an "AS IS" BASIS,
    + * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    + * See the License for the specific language governing permissions and
    + * limitations under the License.
    + */
    +package org.apache.spark.crypto
    +
    +import java.io.{IOException, FilterOutputStream, OutputStream}
    +import java.nio.ByteBuffer
    +import java.security.GeneralSecurityException
    +
    +import com.google.common.base.Preconditions
    +
    +import org.apache.spark.Logging
    +
    +/**
    + * CryptoOutputStream encrypts data. It is not thread-safe. AES CTR mode is
    + * required in order to ensure that the plain text and cipher text have a 
1:1
    + * mapping. The encryption is buffer based. The key points of the 
encryption are
    + * (1) calculating counter and (2) padding through stream position.
    + * <p/>
    + * counter = base + pos/(algorithm blocksize);
    + * padding = pos%(algorithm blocksize);
    + * <p/>
    + * The underlying stream offset is maintained as state.
    + */
    +class CryptoOutputStream(out: OutputStream, codecVal: CryptoCodec, 
bufferSizeVal: Int,
    +                         keyVal: Array[Byte], ivVal: Array[Byte], 
streamOffsetVal: Long) extends
    +FilterOutputStream(out: OutputStream) with Logging {
    +  var codec: CryptoCodec = null
    +  var encryptor: Encryptor = null
    +  var bufferSize: Int = 0
    +  /**
    +   * Input data buffer. The data starts at inBuffer.position() and ends at
    +   * inBuffer.limit().
    +   */
    +  var inBuffer: ByteBuffer = null
    +  /**
    +   * Encrypted data buffer. The data starts at outBuffer.position() and 
ends at
    +   * outBuffer.limit();
    +   */
    +  var outBuffer: ByteBuffer = null
    +  var streamOffset: Long = 0
    +  /**
    +   * Padding = pos%(algorithm blocksize); Padding is put into {@link 
#inBuffer}
    +   * before any other data goes in. The purpose of padding is to put input 
data
    +   * at proper position.
    +   */
    +  var padding: Byte = 0
    +  var closed: Boolean = false
    +  var key: Array[Byte] = null
    +  var initIV: Array[Byte] = null
    +  var iv: Array[Byte] = null
    +  var tmpBuf: Array[Byte] = null
    +  val oneByteBuf: Array[Byte] = new Array[Byte](1)
    +
    +  CryptoStreamUtils.checkCodec(codecVal)
    +  bufferSize = CryptoStreamUtils.checkBufferSize(codecVal, bufferSizeVal)
    +  codec = codecVal
    +  key = keyVal.clone
    +  initIV = ivVal.clone
    +  iv = ivVal.clone
    +  inBuffer = ByteBuffer.allocateDirect(bufferSize)
    +  outBuffer = ByteBuffer.allocateDirect(bufferSize)
    +  streamOffset = streamOffsetVal
    +  try {
    +    encryptor = codec.createEncryptor
    +  }
    +  catch {
    +    case e: GeneralSecurityException => {
    +      throw e
    +    }
    +  }
    +  updateEncryptor
    +
    +
    +  def this(out: OutputStream, codec: CryptoCodec, bufferSize: Int, key: 
Array[Byte],
    +           iv: Array[Byte]) {
    +    this(out, codec, bufferSize, key, iv, 0)
    +  }
    +
    +  def this(out: OutputStream, codec: CryptoCodec, key: Array[Byte], iv: 
Array[Byte], streamOffset:
    +  Long) {
    +    this(out, codec, CryptoStreamUtils.getBufferSize, key, iv, 
streamOffset)
    +  }
    +
    +  def this(out: OutputStream, codec: CryptoCodec, key: Array[Byte], iv: 
Array[Byte]) {
    +    this(out, codec, key, iv, 0)
    +  }
    +
    +  def getWrappedStream: OutputStream = {
    +    out
    +  }
    +
    +  /**
    +   * Encryption is buffer based.
    +   * If there is enough room in {@link #inBuffer}, then write to this 
buffer.
    +   * If {@link #inBuffer} is full, then do encryption and write data to the
    +   * underlying stream.
    +   * @param b the data.
    +   * @param offVal the start offset in the data.
    +   * @param lenVal the number of bytes to write.
    +   * @throws IOException
    +   */
    +  override def write(b: Array[Byte], offVal: Int, lenVal: Int) {
    +    var off = offVal
    +    var len = lenVal
    +    checkStream
    +    if (b == null) {
    +      throw new NullPointerException
    +    }
    +    else if (off < 0 || len < 0 || off > b.length || len > b.length - off) 
{
    +      throw new IndexOutOfBoundsException
    +    }
    +    while (len > 0) {
    +      val remaining: Int = inBuffer.remaining
    +      if (len < remaining) {
    +        inBuffer.put(b, off, len)
    +        len = 0
    +      }
    +      else {
    +        inBuffer.put(b, off, remaining)
    +        off += remaining
    +        len -= remaining
    +        encrypt
    +      }
    +    }
    +  }
    +
    +  /**
    +   * Do the encryption, input is {@link #inBuffer} and output is
    +   * {@link #outBuffer}.
    +   */
    +  def encrypt {
    --- End diff --
    
    These methods need to be properly declared. I'll stop pointing these out.


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