/* * 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. */ #include "ByteArrayInputStream.h" #include using namespace std; using namespace decaf; using namespace decaf::io; using namespace decaf::lang; using namespace decaf::lang::exceptions; //////////////////////////////////////////////////////////////////////////////// ByteArrayInputStream::ByteArrayInputStream() : InputStream(), buffer(NULL), size(0), own(false), count(0), pos(0), markpos(0) { } //////////////////////////////////////////////////////////////////////////////// ByteArrayInputStream::ByteArrayInputStream(const vector& buffer) : InputStream(), buffer(NULL), size(0), own(false), count(0), pos(0), markpos(0) { if (buffer.size() > 0) { setByteArray(&buffer[0], (int) buffer.size(), 0, (int) buffer.size()); } } //////////////////////////////////////////////////////////////////////////////// ByteArrayInputStream::ByteArrayInputStream(const unsigned char* buffer, int bufferSize, bool own) : InputStream(), buffer(NULL), size(0), own(own), count(0), pos(0), markpos(0) { setByteArray(buffer, bufferSize, 0, bufferSize); } //////////////////////////////////////////////////////////////////////////////// ByteArrayInputStream::ByteArrayInputStream(const unsigned char* buffer, int bufferSize, int offset, int length, bool own) : InputStream(), buffer(NULL), size(0), own(own), count(0), pos(0), markpos(0) { setByteArray(buffer, bufferSize, offset, length); } //////////////////////////////////////////////////////////////////////////////// ByteArrayInputStream::~ByteArrayInputStream() { try { if (this->own) { delete[] this->buffer; } } DECAF_CATCHALL_NOTHROW() } //////////////////////////////////////////////////////////////////////////////// void ByteArrayInputStream::setByteArray(const vector& buffer) { if (buffer.size() > 0) { setByteArray(&buffer[0], (int) buffer.size(), 0, (int) buffer.size()); } } //////////////////////////////////////////////////////////////////////////////// void ByteArrayInputStream::setByteArray(const unsigned char* buffer, int bufferSize) { setByteArray(buffer, bufferSize, 0, bufferSize); } //////////////////////////////////////////////////////////////////////////////// void ByteArrayInputStream::setByteArray(const unsigned char* buffer, int bufferSize, int offset, int length) { if (buffer == NULL) { throw NullPointerException(__FILE__, __LINE__, "Input Buffer cannot be NULL."); } if (bufferSize < 0) { throw IllegalArgumentException(__FILE__, __LINE__, "Size given for input buffer was negative."); } if (offset < 0) { throw IllegalArgumentException(__FILE__, __LINE__, "Offset given was negative: %d.", offset); } if (length < 0) { throw IllegalArgumentException(__FILE__, __LINE__, "Length given was negative: %d.", offset); } // We're using the default buffer. this->buffer = buffer; this->size = bufferSize; this->pos = offset; this->markpos = offset; this->count = offset + length > bufferSize ? bufferSize : offset + length; } //////////////////////////////////////////////////////////////////////////////// int ByteArrayInputStream::available() const { return this->count - this->pos; } //////////////////////////////////////////////////////////////////////////////// void ByteArrayInputStream::mark(int readLimit DECAF_UNUSED) { // the reset point is now the marked position until a new byte buffer // is set on this stream. this->markpos = this->pos; } //////////////////////////////////////////////////////////////////////////////// void ByteArrayInputStream::reset() { try { // Begin at the Beginning if mark hasn't been called otherwise it // starts at the marked pos. this->pos = this->markpos; } DECAF_CATCH_RETHROW(IOException) DECAF_CATCHALL_THROW(IOException) } //////////////////////////////////////////////////////////////////////////////// int ByteArrayInputStream::doReadByte() { try { return pos < count ? buffer[pos++] : -1; } DECAF_CATCH_RETHROW(IOException) DECAF_CATCHALL_THROW(IOException) } //////////////////////////////////////////////////////////////////////////////// int ByteArrayInputStream::doReadArrayBounded(unsigned char* buffer, int size, int offset, int length) { try { if (length == 0) { return 0; } if (buffer == NULL) { throw NullPointerException(__FILE__, __LINE__, "ByteArrayInputStream::read - Buffer passed is Null"); } if (size < 0) { throw IndexOutOfBoundsException(__FILE__, __LINE__, "size parameter out of Bounds: %d.", size); } if (offset > size || offset < 0) { throw IndexOutOfBoundsException(__FILE__, __LINE__, "offset parameter out of Bounds: %d.", offset); } if (length < 0 || length > size - offset) { throw IndexOutOfBoundsException(__FILE__, __LINE__, "length parameter out of Bounds: %d.", length); } if (this->pos >= this->count) { return -1; } int copylen = this->count - this->pos < length ? this->count - this->pos : length; System::arraycopy(this->buffer, this->pos, buffer, offset, copylen); this->pos += copylen; return copylen; } DECAF_CATCH_RETHROW(IOException) DECAF_CATCH_RETHROW(IndexOutOfBoundsException) DECAF_CATCH_RETHROW(NullPointerException) DECAF_CATCHALL_THROW(IOException) } //////////////////////////////////////////////////////////////////////////////// long long ByteArrayInputStream::skip(long long num) { try { if (num <= 0) { return 0; } int temp = this->pos; this->pos = this->count - this->pos < num ? this->count : (int) (this->pos + num); return this->pos - temp; } DECAF_CATCH_RETHROW(IOException) DECAF_CATCHALL_THROW(IOException) }