2012-01-08 21:11:52 +00:00
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// This file is part Floppy I/O, a Virtual Machine - Hypervisor intercommunication system.
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// Copyright (C) 2011 Ioannis Charalampidis
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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// File: FloppyIO.cpp
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// Author: Ioannis Charalampidis <ioannis.charalampidis AT cern DOT ch>
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// License: GNU Lesser General Public License - Version 3.0
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//
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// Hypervisor-Virtual machine bi-directional communication
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// through floppy disk.
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//
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// This class provides the hypervisor-side of the script.
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// For the guest-side, check the perl scripts that
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// were available with this code.
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//
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// Here is the layout of the floppy disk image (Example of 28k):
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//
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// +-----------------+------------------------------------------------+
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// | 0x0000 - 0x37FF | Hypervisor -> Guest Buffer |
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// | 0x3800 - 0x6FFE | Guest -> Hypervisor Buffer |
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// | 0x6FFF | "Data available for guest" flag byte |
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// | 0x7000 | "Data available for hypervisor" flag byte |
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// +-----------------+------------------------------------------------+
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//
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// Updated at January 5, 2012, 13:06 PM
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2011-12-21 14:24:50 +00:00
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#ifdef _WIN32
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#include "boinc_win.h"
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#else
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2012-01-06 18:44:34 +00:00
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#include <typeinfo>
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2011-12-20 22:12:07 +00:00
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#include <iostream>
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#include <fstream>
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2012-01-08 21:11:52 +00:00
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#include <sstream>
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#include <stdexcept>
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2011-12-20 22:12:07 +00:00
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#include <string.h>
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2011-12-21 14:24:50 +00:00
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#endif
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2011-12-20 22:12:07 +00:00
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2012-01-06 18:44:34 +00:00
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#include "util.h"
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2011-12-20 22:12:07 +00:00
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#include "floppyio.h"
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using namespace std;
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2012-01-08 21:11:52 +00:00
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// FloppyIO Exception singleton
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static FloppyIOException __FloppyIOExceptionSingleton;
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// Advanced Floppy file constructor
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//
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// This constructor allows you to open a floppy disk image with extra flags.
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//
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// F_NOINIT Disables the reseting of the image file at open
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// F_NOCREATE Does not truncate the file at open (If not exists, the file will be created)
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// F_SYNCHRONIZED The communication is synchronized, meaning that the code will block until the
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// data are read/written from the guest.
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// F_EXCEPTIONS Throw exceptions if something goes wrong.
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// F_CLIENT Swap in/out buffers for use from within the guest.
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//
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// @param filename The filename of the floppy disk image
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// @param flags The flags that define how the FloppyIO class should function
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//
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FloppyIO::FloppyIO(const char * filename, int flags) {
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// Clear error flag
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this->error = 0;
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// Prepare open flags and create file stream
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ios_base::openmode fOpenFlags = fstream::in | fstream::out;
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if ((flags & F_NOCREATE) == 0) fOpenFlags |= fstream::trunc;
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2012-01-11 23:21:17 +00:00
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this->fIO = new fstream( );
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2012-01-08 21:11:52 +00:00
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// Enable exceptions on fIO if told so
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if ((flags & F_EXCEPTIONS) != 0) {
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fIO->exceptions( ifstream::failbit | ifstream::badbit );
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this->useExceptions=true;
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} else {
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this->useExceptions=false;
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}
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// Try to open the file
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fIO->open(filename, fOpenFlags);
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// Check for errors while F_NOCREATE is there
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if ((flags & F_NOCREATE) != 0) {
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if ( fIO->fail() ) {
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// Clear error flags
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fIO->clear();
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// Try to create file
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fOpenFlags |= fstream::trunc;
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fIO->open(filename, fOpenFlags);
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// Still errors?
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if ( fIO->fail() ) {
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this->setError(-3, "Error while creating floppy I/O file, because it wasn't found even though F_NOCREATE was specified!");
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return;
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}
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// Managed to open it? Reset it...
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flags &= ~F_NOINIT;
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}
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} else {
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// Check for failures on open
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if ( fIO->fail() ) {
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this->setError(-3, "Error while creating floppy I/O file!");
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return;
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}
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}
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// Prepare floppy info
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this->szFloppy = DEFAULT_FIO_FLOPPY_SIZE;
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// Setup offsets and sizes of the I/O parts
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if ((flags & F_CLIENT) != 0) {
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// Guest mode
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this->szOutput = this->szFloppy/2-1;
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this->szInput = this->szOutput;
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this->ofsOutput = this->szInput;
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this->ofsInput = 0;
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this->ofsCtrlByteIn = this->szInput+this->szOutput;
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this->ofsCtrlByteOut = this->szInput+this->szOutput+1;
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} else {
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// Hypervisor mode
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this->szOutput = this->szFloppy/2-1;
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this->szInput = this->szOutput;
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this->ofsOutput = 0;
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this->ofsInput = this->szOutput;
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this->ofsCtrlByteOut = this->szInput+this->szOutput;
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this->ofsCtrlByteIn = this->szInput+this->szOutput+1;
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}
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// Update synchronization flags
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this->synchronized = false;
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this->syncTimeout = DEFAULT_FIO_SYNC_TIMEOUT;
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if ((flags & F_SYNCHRONIZED) != 0) this->synchronized=true;
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// Reset floppy file
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if ((flags & F_NOINIT) == 0) this->reset();
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}
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// FloppyIO Destructor
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// Closes the file descriptor and releases used memory
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FloppyIO::~FloppyIO() {
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// Close file
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this->fIO->close();
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// Release memory
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delete this->fIO;
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}
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// Reset the floppy disk image
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// This function zeroes-out the contents of the FD image
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void FloppyIO::reset() {
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// Check for ready state
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if (!this->ready()) {
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this->setError(-4, "Stream is not ready!");
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return;
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}
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// Reset to the beginnig of file and fill with zeroes
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this->fIO->seekp(0);
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char * buffer = new char[this->szFloppy];
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memset(buffer, 0, this->szFloppy);
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this->fIO->write(buffer, this->szFloppy);
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delete[] buffer;
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}
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// Send data to the floppy image I/O
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//
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// @param strData The string to send
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// @return The number of bytes sent if successful or -1 if an error occured.
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//
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int FloppyIO::send(string strData) {
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// Prepare send buffer
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char * dataToSend = new char[this->szOutput];
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memset(dataToSend, 0, this->szOutput);
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// Check for ready state
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if (!this->ready()) return this->setError(-4, "Stream is not ready!");
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// Initialize variables
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int szData = (int)strData.length();
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int bytesSent = szData;
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// Copy the first szInput bytes
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if (szData > this->szOutput-1) { // -1 for the null-termination
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// Data more than the pad size? Trim...
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strData.copy(dataToSend, this->szOutput-1, 0);
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bytesSent = this->szOutput-1;
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} else {
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// Else, copy the string to send buffer
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strData.copy(dataToSend, szData, 0);
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}
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// Check for stream status
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if (!this->fIO->good()) return this->setError(-1, "I/O Stream reported no-good state while sending!");
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// Write the data to file
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this->fIO->seekp(this->ofsOutput);
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this->fIO->write(dataToSend, this->szOutput);
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// Check if something went wrong after writing
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if (!this->fIO->good()) return this->setError(-1, "I/O Stream reported no-good state while sending!");
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// Notify the client that we placed data (Client should clear this on read)
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this->fIO->seekp(this->ofsCtrlByteOut);
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this->fIO->write("\x01", 1);
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this->fIO->flush();
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// If synchronized, wait for data to be written
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if (this->synchronized) {
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// Wait for input control byte to become 1
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int iState = this->waitForSync(this->ofsCtrlByteOut, 0, this->syncTimeout);
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if (iState<0) return iState;
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}
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// Return number of bytes sent
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return bytesSent;
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}
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//
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// Receive the input buffer contents
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//
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// @return Returns a string object with the buffer contents
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//
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string FloppyIO::receive() {
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static string ansBuffer;
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this->receive(&ansBuffer);
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return ansBuffer;
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}
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//
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// Receive the input buffer contents
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//
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// @param string A pointer to a string object that will receive the data
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// @return Returns the length of the data received or -1 if an error occured.
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//
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int FloppyIO::receive(string * ansBuffer) {
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char * dataToReceive = new char[this->szInput];
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// Check for ready state
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if (!this->ready()) return this->setError(-4, "Stream is not ready!");
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// If synchronized, wait for input data
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if (this->synchronized) {
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// Wait for input control byte to become 1
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int iState = this->waitForSync(this->ofsCtrlByteIn, 1, this->syncTimeout);
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if (iState<0) return iState;
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}
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// Check for stream status
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if (!this->fIO->good()) return this->setError(-1, "I/O Stream reported no-good state while receiving!");
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// Read the input bytes from FD
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this->fIO->seekg(this->ofsInput, ios_base::beg);
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this->fIO->read(dataToReceive, this->szInput);
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// Notify the client that we have read the data
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this->fIO->seekp(this->ofsCtrlByteIn);
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this->fIO->write("\x00", 1);
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this->fIO->flush();
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// Copy input data to string object
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*ansBuffer = dataToReceive;
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return (int)ansBuffer->length();
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}
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// Wait for synchronization byte to be cleared.
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// This function blocks until the byte at controlByteOffset has
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// the synchronization bit cleared.
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//
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// @param controlByteOffset The offset (from the beginning of file) where to look for the control byte
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// @param state The state the controlByte must be for this function to exit.
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// @param timeout The time (in seconds) to wait for a change. 0 Will wait forever
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// @return Returns 0 if everything succeeded, -1 if an error occured, -2 if timed out.
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int FloppyIO::waitForSync(int controlByteOffset, char state, int timeout) {
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time_t tExpired = time (NULL) + timeout;
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char cStatusByte;
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// Wait until expired or forever.
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while ((timeout == 0) || ( time(NULL) <= tExpired)) {
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// Check for stream status
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if (!this->fIO->good()) return this->setError(-1, "I/O Stream reported no-good state while waiting for sync!");
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// Check the synchronization byte
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this->fIO->seekg(controlByteOffset, ios_base::beg);
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this->fIO->read(&cStatusByte, 1);
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// Is the control byte 0? Our job is finished...
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if (cStatusByte == state) return 0;
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// Sleep for a few milliseconds to decrease CPU-load
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boinc_sleep(0.250);
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}
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// If we reached this point, we timed out
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return this->setError(-2, "Timed-out while waiting for sync!");
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}
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//
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// Set last error.
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// This is a short-hand function to update the error variables.
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//
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// @param code The error code
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// @param message The error message
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// @return The error code
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//
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int FloppyIO::setError(int code, const string message) {
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this->error = code;
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// Chain errors
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if (this->errorStr.empty()) {
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this->errorStr = message;
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} else {
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this->errorStr = message + " (" + this->errorStr + ")";
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}
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// Should we raise an exception?
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if (this->useExceptions)
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throw *__FloppyIOExceptionSingleton.set(code, message);
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// Otherwise return code
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// (Useful for using single-lined: return this->setError(-1, "message..');
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return code;
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}
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//
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// Clear error state flags
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//
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void FloppyIO::clear() {
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this->error = 0;
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this->errorStr = "";
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this->fIO->clear();
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}
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//
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// Check if everything is in ready state
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// @return Returns true if there are no errors and stream hasn't failed
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//
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bool FloppyIO::ready() {
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if (this->error!=0) return false;
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return this->fIO->good();
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}
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