/* This file is part of Telegram Desktop, the official desktop version of Telegram messaging app, see https://telegram.org Telegram Desktop is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. It is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. In addition, as a special exception, the copyright holders give permission to link the code of portions of this program with the OpenSSL library. Full license: https://github.com/telegramdesktop/tdesktop/blob/master/LICENSE Copyright (c) 2014-2017 John Preston, https://desktop.telegram.org */ #include "mtproto/core_types.h" #include "zlib.h" uint32 MTPstring::innerLength() const { uint32 l = v.length(); if (l < 254) { l += 1; } else { l += 4; } uint32 d = l & 0x03; if (d) l += (4 - d); return l; } void MTPstring::read(const mtpPrime *&from, const mtpPrime *end, mtpTypeId cons) { if (from + 1 > end) throw mtpErrorInsufficient(); if (cons != mtpc_string) throw mtpErrorUnexpected(cons, "MTPstring"); uint32 l; const uchar *buf = (const uchar*)from; if (buf[0] == 254) { l = (uint32)buf[1] + ((uint32)buf[2] << 8) + ((uint32)buf[3] << 16); buf += 4; from += ((l + 4) >> 2) + (((l + 4) & 0x03) ? 1 : 0); } else { l = (uint32)buf[0]; ++buf; from += ((l + 1) >> 2) + (((l + 1) & 0x03) ? 1 : 0); } if (from > end) throw mtpErrorInsufficient(); v = QByteArray(reinterpret_cast(buf), l); } void MTPstring::write(mtpBuffer &to) const { uint32 l = v.length(), s = l + ((l < 254) ? 1 : 4), was = to.size(); if (s & 0x03) { s += 4; } s >>= 2; to.resize(was + s); char *buf = (char*)&to[was]; if (l < 254) { uchar sl = (uchar)l; *(buf++) = *(char*)(&sl); } else { *(buf++) = (char)254; *(buf++) = (char)(l & 0xFF); *(buf++) = (char)((l >> 8) & 0xFF); *(buf++) = (char)((l >> 16) & 0xFF); } memcpy(buf, v.constData(), l); } uint32 mtpRequest::innerLength() const { // for template MTP requests and MTPBoxed instanciation mtpRequestData *value = data(); if (!value || value->size() < 9) return 0; return value->at(7); } void mtpRequest::write(mtpBuffer &to) const { mtpRequestData *value = data(); if (!value || value->size() < 9) return; uint32 was = to.size(), s = innerLength() / sizeof(mtpPrime); to.resize(was + s); memcpy(to.data() + was, value->constData() + 8, s * sizeof(mtpPrime)); } bool mtpRequestData::isSentContainer(const mtpRequest &request) { // "request-like" wrap for msgIds vector if (request->size() < 9) return false; return (!request->msDate && !(*request)[6]); // msDate = 0, seqNo = 0 } bool mtpRequestData::isStateRequest(const mtpRequest &request) { if (request->size() < 9) return false; return (mtpTypeId((*request)[8]) == mtpc_msgs_state_req); } bool mtpRequestData::needAckByType(mtpTypeId type) { switch (type) { case mtpc_msg_container: case mtpc_msgs_ack: case mtpc_http_wait: case mtpc_bad_msg_notification: case mtpc_msgs_all_info: case mtpc_msgs_state_info: case mtpc_msg_detailed_info: case mtpc_msg_new_detailed_info: return false; } return true; } mtpRequest mtpRequestData::prepare(uint32 requestSize, uint32 maxSize) { if (!maxSize) maxSize = requestSize; mtpRequest result(new mtpRequestData(true)); result->reserve(8 + maxSize + _padding(maxSize)); // 2: salt, 2: session_id, 2: msg_id, 1: seq_no, 1: message_length result->resize(7); result->push_back(requestSize << 2); return result; } void mtpRequestData::padding(mtpRequest &request) { if (request->size() < 9) return; uint32 requestSize = (request.innerLength() >> 2), padding = _padding(requestSize), fullSize = 8 + requestSize + padding; // 2: salt, 2: session_id, 2: msg_id, 1: seq_no, 1: message_length if (uint32(request->size()) != fullSize) { request->resize(fullSize); if (padding) { memset_rand(request->data() + (fullSize - padding), padding * sizeof(mtpPrime)); } } } uint32 mtpRequestData::_padding(uint32 requestSize) { #ifdef TDESKTOP_MTPROTO_OLD return ((8 + requestSize) & 0x03) ? (4 - ((8 + requestSize) & 0x03)) : 0; #else // TDESKTOP_MTPROTO_OLD auto result = ((8 + requestSize) & 0x03) ? (4 - ((8 + requestSize) & 0x03)) : 0; // At least 12 bytes of random padding. if (result < 3) { result += 4; } return result; #endif // TDESKTOP_MTPROTO_OLD } void mtpTextSerializeCore(MTPStringLogger &to, const mtpPrime *&from, const mtpPrime *end, mtpTypeId cons, uint32 level, mtpPrime vcons) { switch (mtpTypeId(cons)) { case mtpc_int: { MTPint value; value.read(from, end, cons); to.add(QString::number(value.v)).add(" [INT]"); } break; case mtpc_long: { MTPlong value; value.read(from, end, cons); to.add(QString::number(value.v)).add(" [LONG]"); } break; case mtpc_int128: { MTPint128 value; value.read(from, end, cons); to.add(QString::number(value.h)).add(" * 2^64 + ").add(QString::number(value.l)).add(" [INT128]"); } break; case mtpc_int256: { MTPint256 value; value.read(from, end, cons); to.add(QString::number(value.h.h)).add(" * 2^192 + ").add(QString::number(value.h.l)).add(" * 2^128 + ").add(QString::number(value.l.h)).add(" * 2 ^ 64 + ").add(QString::number(value.l.l)).add(" [INT256]"); } break; case mtpc_double: { MTPdouble value; value.read(from, end, cons); to.add(QString::number(value.v)).add(" [DOUBLE]"); } break; case mtpc_string: { MTPstring value; value.read(from, end, cons); auto strUtf8 = value.v; auto str = QString::fromUtf8(strUtf8); if (str.toUtf8() == strUtf8) { to.add("\"").add(str.replace('\\', "\\\\").replace('"', "\\\"").replace('\n', "\\n")).add("\" [STRING]"); } else if (strUtf8.size() < 64) { to.add(Logs::mb(strUtf8.constData(), strUtf8.size()).str()).add(" [").add(QString::number(strUtf8.size())).add(" BYTES]"); } else { to.add(Logs::mb(strUtf8.constData(), 16).str()).add("... [").add(QString::number(strUtf8.size())).add(" BYTES]"); } } break; case mtpc_vector: { if (from >= end) { throw Exception("from >= end in vector"); } int32 cnt = *(from++); to.add("[ vector<0x").add(QString::number(vcons, 16)).add(">"); if (cnt) { to.add("\n").addSpaces(level); for (int32 i = 0; i < cnt; ++i) { to.add(" "); mtpTextSerializeType(to, from, end, vcons, level + 1); to.add(",\n").addSpaces(level); } } else { to.add(" "); } to.add("]"); } break; case mtpc_gzip_packed: { MTPstring packed; packed.read(from, end); // read packed string as serialized mtp string type uint32 packedLen = packed.v.size(), unpackedChunk = packedLen; mtpBuffer result; // * 4 because of mtpPrime type result.resize(0); z_stream stream; stream.zalloc = 0; stream.zfree = 0; stream.opaque = 0; stream.avail_in = 0; stream.next_in = 0; int res = inflateInit2(&stream, 16 + MAX_WBITS); if (res != Z_OK) { throw Exception(QString("ungzip init, code: %1").arg(res)); } stream.avail_in = packedLen; stream.next_in = reinterpret_cast(packed.v.data()); stream.avail_out = 0; while (!stream.avail_out) { result.resize(result.size() + unpackedChunk); stream.avail_out = unpackedChunk * sizeof(mtpPrime); stream.next_out = (Bytef*)&result[result.size() - unpackedChunk]; int res = inflate(&stream, Z_NO_FLUSH); if (res != Z_OK && res != Z_STREAM_END) { inflateEnd(&stream); throw Exception(QString("ungzip unpack, code: %1").arg(res)); } } if (stream.avail_out & 0x03) { uint32 badSize = result.size() * sizeof(mtpPrime) - stream.avail_out; throw Exception(QString("ungzip bad length, size: %1").arg(badSize)); } result.resize(result.size() - (stream.avail_out >> 2)); inflateEnd(&stream); if (!result.size()) { throw Exception("ungzip void data"); } const mtpPrime *newFrom = result.constData(), *newEnd = result.constData() + result.size(); to.add("[GZIPPED] "); mtpTextSerializeType(to, newFrom, newEnd, 0, level); } break; default: { for (uint32 i = 1; i < mtpLayerMaxSingle; ++i) { if (cons == mtpLayers[i]) { to.add("[LAYER").add(QString::number(i + 1)).add("] "); mtpTextSerializeType(to, from, end, 0, level); return; } } if (cons == mtpc_invokeWithLayer) { if (from >= end) { throw Exception("from >= end in invokeWithLayer"); } int32 layer = *(from++); to.add("[LAYER").add(QString::number(layer)).add("] "); mtpTextSerializeType(to, from, end, 0, level); return; } throw Exception(QString("unknown cons 0x%1").arg(cons, 0, 16)); } break; } }