203 lines
5.9 KiB
C++
203 lines
5.9 KiB
C++
/*
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PIP - Platform Independent Primitives
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Simple packet wrap aroud any PIIODevice
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Ivan Pelipenko peri4ko@yandex.ru, Andrey Bychkov work.a.b@yandex.ru
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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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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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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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*/
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#ifdef __GNUC__
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# pragma GCC diagnostic push
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# pragma GCC diagnostic ignored "-Wnonnull"
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#endif
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#include "pistreampacker.h"
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#include "piiodevice.h"
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#ifdef __GNUC__
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# pragma GCC diagnostic pop
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#endif
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/** \class PIStreamPacker
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* @brief Simple packet wrap aroud any PIIODevice
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*
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* \section PIStreamPacker_synopsis Synopsis
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* %PIStreamPacker provides simple pack/unpack logic for any data packets.
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*
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* When you call \a send() function data splited into several
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* parts, \a packetSign() prepended to first part and \a sendRequest()
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* event raised several times.
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*
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* When your device receive some data, call \a received() function.
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* \a packetReceiveEvent() event will be raised when packet will be
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* collected.
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*
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* Use \a assignDevice() to connect device to this %PIStreamPacker.
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*
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*/
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PIStreamPacker::PIStreamPacker(PIIODevice * dev): PIObject() {
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crypt_frag = crypt_size = false;
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aggressive_optimization = true;
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packet_size = -1;
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size_crypted_size = sizeof(int);
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crypt_frag_size = 1024*1024;
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max_packet_size = 1400;
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packet_sign = 0xAFBE;
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assignDevice(dev);
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}
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void PIStreamPacker::setCryptSizeEnabled(bool on) {
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crypt_size = on;
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if (crypt_size) {
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PIByteArray ba; ba << int(0);
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size_crypted_size = cryptData(ba).size_s();
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} else
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size_crypted_size = sizeof(int);
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}
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void PIStreamPacker::clear() {
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packet.clear();
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packet_size = -1;
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stream.clear();
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}
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void PIStreamPacker::send(const PIByteArray & data) {
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if (data.isEmpty()) return;
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PIByteArray cd;
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if (crypt_frag) {
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int fcnt = (data.size_s() - 1) / crypt_frag_size + 1, fst = 0;
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//piCout << "crypt_frag send" << fcnt << "frags";
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PIByteArray frag;
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for (int i = 0; i < fcnt; ++i) {
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if (i == fcnt - 1) frag = PIByteArray(data.data(fst), data.size_s() - fst);
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else frag = PIByteArray(data.data(fst), crypt_frag_size);
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fst += crypt_frag_size;
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cd << cryptData(frag);
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}
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} else {
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cd = cryptData(data);
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}
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//piCout << "crypt" << data.size() << "->" << cd.size() << key().size();
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PIByteArray hdr, part;
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hdr << packet_sign;
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if (crypt_size) {
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PIByteArray crsz; crsz << int(cd.size_s());
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hdr.append(cryptData(crsz));
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} else
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hdr << int(cd.size_s());
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cd.insert(0, hdr);
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int pcnt = (cd.size_s() - 1) / max_packet_size + 1, pst = 0;
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for (int i = 0; i < pcnt; ++i) {
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if (i == pcnt - 1) part = PIByteArray(cd.data(pst), cd.size_s() - pst);
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else part = PIByteArray(cd.data(pst), max_packet_size);
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//piCout << "send" << part.size();
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sendRequest(part);
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pst += max_packet_size;
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}
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}
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void PIStreamPacker::received(uchar * readed, int size) {
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received(PIByteArray(readed, size));
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}
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void PIStreamPacker::received(const PIByteArray & data) {
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stream.append(data);
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//piCout << "rec" << data.size();
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while (!stream.isEmpty()) {
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int hdr_size = sizeof(packet_sign) + size_crypted_size;
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if (packet_size < 0) {
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if (stream.size_s() < hdr_size) return;
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ushort sign(0);
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memcpy(&sign, stream.data(), 2);
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if (sign != packet_sign) {
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if (aggressive_optimization) stream.clear();
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else stream.pop_front();
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continue;
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}
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int sz = -1;
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if (crypt_size) {
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PIByteArray crsz((uint)size_crypted_size);
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memcpy(crsz.data(), stream.data(2), size_crypted_size);
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crsz = decryptData(crsz);
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if (crsz.size() < sizeof(sz)) {
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if (aggressive_optimization) stream.clear();
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else stream.pop_front();
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continue;
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}
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crsz >> sz;
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} else {
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memcpy(&sz, stream.data(2), size_crypted_size);
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}
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if (sz < 0) {
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if (aggressive_optimization) stream.clear();
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else stream.pop_front();
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continue;
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}
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stream.remove(0, hdr_size);
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packet.clear();
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packet_size = sz;
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if (packet_size == 0)
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packet_size = -1;
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continue;
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} else {
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int ps = piMini(stream.size_s(), packet_size - packet.size_s());
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packet.append(stream.data(), ps);
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stream.remove(0, ps);
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if (packet.size_s() == packet_size) {
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PIByteArray cd;
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if (crypt_frag) {
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//piCout << "decrypt frags ..." << packet_size;
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while (packet.size_s() >= 4) {
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//piCout << "decrypt frags take data ...";
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PIByteArray frag;
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//piCout << "decrypt frags take data done" << frag.size_s();
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packet >> frag;
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if (frag.isEmpty()) {
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//piCout << "decrypt frags corrupt, break";
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cd.clear();
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break;
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}
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cd.append(decryptData(frag));
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//piCout << "decrypt frags add" << frag.size_s();
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}
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//piCout << "decrypt frags done" << cd.size();
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} else {
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cd = decryptData(packet);
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}
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//piCout << "decrypt" << packet.size() << "->" << cd.size() << key().size();
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if (!cd.isEmpty()) {
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packetReceived(cd);
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packetReceiveEvent(cd);
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}
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packet.clear();
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packet_size = -1;
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}
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}
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}
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}
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void PIStreamPacker::assignDevice(PIIODevice * dev) {
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if (!dev) return;
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if (!dev->infoFlags()[PIIODevice::Reliable])
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piCoutObj << "Warning! Not recommended to use with non-reliable" << dev;
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CONNECTU(dev, threadedReadEvent, this, received);
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CONNECTU(this, sendRequest, dev, write);
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}
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